/******/ (() => { // webpackBootstrap /******/ var __webpack_modules__ = ({ /***/ 5116: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.FinalizeCacheError = exports.ReserveCacheError = exports.ValidationError = void 0; exports.isFeatureAvailable = isFeatureAvailable; exports.restoreCache = restoreCache; exports.saveCache = saveCache; const core = __importStar(__nccwpck_require__(37484)); const path = __importStar(__nccwpck_require__(16928)); const utils = __importStar(__nccwpck_require__(98299)); const cacheHttpClient = __importStar(__nccwpck_require__(73171)); const cacheTwirpClient = __importStar(__nccwpck_require__(96819)); const config_1 = __nccwpck_require__(17606); const tar_1 = __nccwpck_require__(95321); const http_client_1 = __nccwpck_require__(54844); class ValidationError extends Error { constructor(message) { super(message); this.name = 'ValidationError'; Object.setPrototypeOf(this, ValidationError.prototype); } } exports.ValidationError = ValidationError; class ReserveCacheError extends Error { constructor(message) { super(message); this.name = 'ReserveCacheError'; Object.setPrototypeOf(this, ReserveCacheError.prototype); } } exports.ReserveCacheError = ReserveCacheError; class FinalizeCacheError extends Error { constructor(message) { super(message); this.name = 'FinalizeCacheError'; Object.setPrototypeOf(this, FinalizeCacheError.prototype); } } exports.FinalizeCacheError = FinalizeCacheError; function checkPaths(paths) { if (!paths || paths.length === 0) { throw new ValidationError(`Path Validation Error: At least one directory or file path is required`); } } function checkKey(key) { if (key.length > 512) { throw new ValidationError(`Key Validation Error: ${key} cannot be larger than 512 characters.`); } const regex = /^[^,]*$/; if (!regex.test(key)) { throw new ValidationError(`Key Validation Error: ${key} cannot contain commas.`); } } /** * isFeatureAvailable to check the presence of Actions cache service * * @returns boolean return true if Actions cache service feature is available, otherwise false */ function isFeatureAvailable() { const cacheServiceVersion = (0, config_1.getCacheServiceVersion)(); // Check availability based on cache service version switch (cacheServiceVersion) { case 'v2': // For v2, we need ACTIONS_RESULTS_URL return !!process.env['ACTIONS_RESULTS_URL']; case 'v1': default: // For v1, we only need ACTIONS_CACHE_URL return !!process.env['ACTIONS_CACHE_URL']; } } /** * Restores cache from keys * * @param paths a list of file paths to restore from the cache * @param primaryKey an explicit key for restoring the cache. Lookup is done with prefix matching. * @param restoreKeys an optional ordered list of keys to use for restoring the cache if no cache hit occurred for primaryKey * @param downloadOptions cache download options * @param enableCrossOsArchive an optional boolean enabled to restore on windows any cache created on any platform * @returns string returns the key for the cache hit, otherwise returns undefined */ function restoreCache(paths_1, primaryKey_1, restoreKeys_1, options_1) { return __awaiter(this, arguments, void 0, function* (paths, primaryKey, restoreKeys, options, enableCrossOsArchive = false) { const cacheServiceVersion = (0, config_1.getCacheServiceVersion)(); core.debug(`Cache service version: ${cacheServiceVersion}`); checkPaths(paths); switch (cacheServiceVersion) { case 'v2': return yield restoreCacheV2(paths, primaryKey, restoreKeys, options, enableCrossOsArchive); case 'v1': default: return yield restoreCacheV1(paths, primaryKey, restoreKeys, options, enableCrossOsArchive); } }); } /** * Restores cache using the legacy Cache Service * * @param paths a list of file paths to restore from the cache * @param primaryKey an explicit key for restoring the cache. Lookup is done with prefix matching. * @param restoreKeys an optional ordered list of keys to use for restoring the cache if no cache hit occurred for primaryKey * @param options cache download options * @param enableCrossOsArchive an optional boolean enabled to restore on Windows any cache created on any platform * @returns string returns the key for the cache hit, otherwise returns undefined */ function restoreCacheV1(paths_1, primaryKey_1, restoreKeys_1, options_1) { return __awaiter(this, arguments, void 0, function* (paths, primaryKey, restoreKeys, options, enableCrossOsArchive = false) { restoreKeys = restoreKeys || []; const keys = [primaryKey, ...restoreKeys]; core.debug('Resolved Keys:'); core.debug(JSON.stringify(keys)); if (keys.length > 10) { throw new ValidationError(`Key Validation Error: Keys are limited to a maximum of 10.`); } for (const key of keys) { checkKey(key); } const compressionMethod = yield utils.getCompressionMethod(); let archivePath = ''; try { // path are needed to compute version const cacheEntry = yield cacheHttpClient.getCacheEntry(keys, paths, { compressionMethod, enableCrossOsArchive }); if (!(cacheEntry === null || cacheEntry === void 0 ? void 0 : cacheEntry.archiveLocation)) { // Cache not found return undefined; } if (options === null || options === void 0 ? void 0 : options.lookupOnly) { core.info('Lookup only - skipping download'); return cacheEntry.cacheKey; } archivePath = path.join(yield utils.createTempDirectory(), utils.getCacheFileName(compressionMethod)); core.debug(`Archive Path: ${archivePath}`); // Download the cache from the cache entry yield cacheHttpClient.downloadCache(cacheEntry.archiveLocation, archivePath, options); if (core.isDebug()) { yield (0, tar_1.listTar)(archivePath, compressionMethod); } const archiveFileSize = utils.getArchiveFileSizeInBytes(archivePath); core.info(`Cache Size: ~${Math.round(archiveFileSize / (1024 * 1024))} MB (${archiveFileSize} B)`); yield (0, tar_1.extractTar)(archivePath, compressionMethod); core.info('Cache restored successfully'); return cacheEntry.cacheKey; } catch (error) { const typedError = error; if (typedError.name === ValidationError.name) { throw error; } else { // warn on cache restore failure and continue build // Log server errors (5xx) as errors, all other errors as warnings if (typedError instanceof http_client_1.HttpClientError && typeof typedError.statusCode === 'number' && typedError.statusCode >= 500) { core.error(`Failed to restore: ${error.message}`); } else { core.warning(`Failed to restore: ${error.message}`); } } } finally { // Try to delete the archive to save space try { yield utils.unlinkFile(archivePath); } catch (error) { core.debug(`Failed to delete archive: ${error}`); } } return undefined; }); } /** * Restores cache using Cache Service v2 * * @param paths a list of file paths to restore from the cache * @param primaryKey an explicit key for restoring the cache. Lookup is done with prefix matching * @param restoreKeys an optional ordered list of keys to use for restoring the cache if no cache hit occurred for primaryKey * @param downloadOptions cache download options * @param enableCrossOsArchive an optional boolean enabled to restore on windows any cache created on any platform * @returns string returns the key for the cache hit, otherwise returns undefined */ function restoreCacheV2(paths_1, primaryKey_1, restoreKeys_1, options_1) { return __awaiter(this, arguments, void 0, function* (paths, primaryKey, restoreKeys, options, enableCrossOsArchive = false) { // Override UploadOptions to force the use of Azure options = Object.assign(Object.assign({}, options), { useAzureSdk: true }); restoreKeys = restoreKeys || []; const keys = [primaryKey, ...restoreKeys]; core.debug('Resolved Keys:'); core.debug(JSON.stringify(keys)); if (keys.length > 10) { throw new ValidationError(`Key Validation Error: Keys are limited to a maximum of 10.`); } for (const key of keys) { checkKey(key); } let archivePath = ''; try { const twirpClient = cacheTwirpClient.internalCacheTwirpClient(); const compressionMethod = yield utils.getCompressionMethod(); const request = { key: primaryKey, restoreKeys, version: utils.getCacheVersion(paths, compressionMethod, enableCrossOsArchive) }; const response = yield twirpClient.GetCacheEntryDownloadURL(request); if (!response.ok) { core.debug(`Cache not found for version ${request.version} of keys: ${keys.join(', ')}`); return undefined; } const isRestoreKeyMatch = request.key !== response.matchedKey; if (isRestoreKeyMatch) { core.info(`Cache hit for restore-key: ${response.matchedKey}`); } else { core.info(`Cache hit for: ${response.matchedKey}`); } if (options === null || options === void 0 ? void 0 : options.lookupOnly) { core.info('Lookup only - skipping download'); return response.matchedKey; } archivePath = path.join(yield utils.createTempDirectory(), utils.getCacheFileName(compressionMethod)); core.debug(`Archive path: ${archivePath}`); core.debug(`Starting download of archive to: ${archivePath}`); yield cacheHttpClient.downloadCache(response.signedDownloadUrl, archivePath, options); const archiveFileSize = utils.getArchiveFileSizeInBytes(archivePath); core.info(`Cache Size: ~${Math.round(archiveFileSize / (1024 * 1024))} MB (${archiveFileSize} B)`); if (core.isDebug()) { yield (0, tar_1.listTar)(archivePath, compressionMethod); } yield (0, tar_1.extractTar)(archivePath, compressionMethod); core.info('Cache restored successfully'); return response.matchedKey; } catch (error) { const typedError = error; if (typedError.name === ValidationError.name) { throw error; } else { // Supress all non-validation cache related errors because caching should be optional // Log server errors (5xx) as errors, all other errors as warnings if (typedError instanceof http_client_1.HttpClientError && typeof typedError.statusCode === 'number' && typedError.statusCode >= 500) { core.error(`Failed to restore: ${error.message}`); } else { core.warning(`Failed to restore: ${error.message}`); } } } finally { try { if (archivePath) { yield utils.unlinkFile(archivePath); } } catch (error) { core.debug(`Failed to delete archive: ${error}`); } } return undefined; }); } /** * Saves a list of files with the specified key * * @param paths a list of file paths to be cached * @param key an explicit key for restoring the cache * @param enableCrossOsArchive an optional boolean enabled to save cache on windows which could be restored on any platform * @param options cache upload options * @returns number returns cacheId if the cache was saved successfully and throws an error if save fails */ function saveCache(paths_1, key_1, options_1) { return __awaiter(this, arguments, void 0, function* (paths, key, options, enableCrossOsArchive = false) { const cacheServiceVersion = (0, config_1.getCacheServiceVersion)(); core.debug(`Cache service version: ${cacheServiceVersion}`); checkPaths(paths); checkKey(key); switch (cacheServiceVersion) { case 'v2': return yield saveCacheV2(paths, key, options, enableCrossOsArchive); case 'v1': default: return yield saveCacheV1(paths, key, options, enableCrossOsArchive); } }); } /** * Save cache using the legacy Cache Service * * @param paths * @param key * @param options * @param enableCrossOsArchive * @returns */ function saveCacheV1(paths_1, key_1, options_1) { return __awaiter(this, arguments, void 0, function* (paths, key, options, enableCrossOsArchive = false) { var _a, _b, _c, _d, _e; const compressionMethod = yield utils.getCompressionMethod(); let cacheId = -1; const cachePaths = yield utils.resolvePaths(paths); core.debug('Cache Paths:'); core.debug(`${JSON.stringify(cachePaths)}`); if (cachePaths.length === 0) { throw new Error(`Path Validation Error: Path(s) specified in the action for caching do(es) not exist, hence no cache is being saved.`); } const archiveFolder = yield utils.createTempDirectory(); const archivePath = path.join(archiveFolder, utils.getCacheFileName(compressionMethod)); core.debug(`Archive Path: ${archivePath}`); try { yield (0, tar_1.createTar)(archiveFolder, cachePaths, compressionMethod); if (core.isDebug()) { yield (0, tar_1.listTar)(archivePath, compressionMethod); } const fileSizeLimit = 10 * 1024 * 1024 * 1024; // 10GB per repo limit const archiveFileSize = utils.getArchiveFileSizeInBytes(archivePath); core.debug(`File Size: ${archiveFileSize}`); // For GHES, this check will take place in ReserveCache API with enterprise file size limit if (archiveFileSize > fileSizeLimit && !(0, config_1.isGhes)()) { throw new Error(`Cache size of ~${Math.round(archiveFileSize / (1024 * 1024))} MB (${archiveFileSize} B) is over the 10GB limit, not saving cache.`); } core.debug('Reserving Cache'); const reserveCacheResponse = yield cacheHttpClient.reserveCache(key, paths, { compressionMethod, enableCrossOsArchive, cacheSize: archiveFileSize }); if ((_a = reserveCacheResponse === null || reserveCacheResponse === void 0 ? void 0 : reserveCacheResponse.result) === null || _a === void 0 ? void 0 : _a.cacheId) { cacheId = (_b = reserveCacheResponse === null || reserveCacheResponse === void 0 ? void 0 : reserveCacheResponse.result) === null || _b === void 0 ? void 0 : _b.cacheId; } else if ((reserveCacheResponse === null || reserveCacheResponse === void 0 ? void 0 : reserveCacheResponse.statusCode) === 400) { throw new Error((_d = (_c = reserveCacheResponse === null || reserveCacheResponse === void 0 ? void 0 : reserveCacheResponse.error) === null || _c === void 0 ? void 0 : _c.message) !== null && _d !== void 0 ? _d : `Cache size of ~${Math.round(archiveFileSize / (1024 * 1024))} MB (${archiveFileSize} B) is over the data cap limit, not saving cache.`); } else { throw new ReserveCacheError(`Unable to reserve cache with key ${key}, another job may be creating this cache. More details: ${(_e = reserveCacheResponse === null || reserveCacheResponse === void 0 ? void 0 : reserveCacheResponse.error) === null || _e === void 0 ? void 0 : _e.message}`); } core.debug(`Saving Cache (ID: ${cacheId})`); yield cacheHttpClient.saveCache(cacheId, archivePath, '', options); } catch (error) { const typedError = error; if (typedError.name === ValidationError.name) { throw error; } else if (typedError.name === ReserveCacheError.name) { core.info(`Failed to save: ${typedError.message}`); } else { // Log server errors (5xx) as errors, all other errors as warnings if (typedError instanceof http_client_1.HttpClientError && typeof typedError.statusCode === 'number' && typedError.statusCode >= 500) { core.error(`Failed to save: ${typedError.message}`); } else { core.warning(`Failed to save: ${typedError.message}`); } } } finally { // Try to delete the archive to save space try { yield utils.unlinkFile(archivePath); } catch (error) { core.debug(`Failed to delete archive: ${error}`); } } return cacheId; }); } /** * Save cache using Cache Service v2 * * @param paths a list of file paths to restore from the cache * @param key an explicit key for restoring the cache * @param options cache upload options * @param enableCrossOsArchive an optional boolean enabled to save cache on windows which could be restored on any platform * @returns */ function saveCacheV2(paths_1, key_1, options_1) { return __awaiter(this, arguments, void 0, function* (paths, key, options, enableCrossOsArchive = false) { // Override UploadOptions to force the use of Azure // ...options goes first because we want to override the default values // set in UploadOptions with these specific figures options = Object.assign(Object.assign({}, options), { uploadChunkSize: 64 * 1024 * 1024, uploadConcurrency: 8, useAzureSdk: true }); const compressionMethod = yield utils.getCompressionMethod(); const twirpClient = cacheTwirpClient.internalCacheTwirpClient(); let cacheId = -1; const cachePaths = yield utils.resolvePaths(paths); core.debug('Cache Paths:'); core.debug(`${JSON.stringify(cachePaths)}`); if (cachePaths.length === 0) { throw new Error(`Path Validation Error: Path(s) specified in the action for caching do(es) not exist, hence no cache is being saved.`); } const archiveFolder = yield utils.createTempDirectory(); const archivePath = path.join(archiveFolder, utils.getCacheFileName(compressionMethod)); core.debug(`Archive Path: ${archivePath}`); try { yield (0, tar_1.createTar)(archiveFolder, cachePaths, compressionMethod); if (core.isDebug()) { yield (0, tar_1.listTar)(archivePath, compressionMethod); } const archiveFileSize = utils.getArchiveFileSizeInBytes(archivePath); core.debug(`File Size: ${archiveFileSize}`); // Set the archive size in the options, will be used to display the upload progress options.archiveSizeBytes = archiveFileSize; core.debug('Reserving Cache'); const version = utils.getCacheVersion(paths, compressionMethod, enableCrossOsArchive); const request = { key, version }; let signedUploadUrl; try { const response = yield twirpClient.CreateCacheEntry(request); if (!response.ok) { if (response.message) { core.warning(`Cache reservation failed: ${response.message}`); } throw new Error(response.message || 'Response was not ok'); } signedUploadUrl = response.signedUploadUrl; } catch (error) { core.debug(`Failed to reserve cache: ${error}`); throw new ReserveCacheError(`Unable to reserve cache with key ${key}, another job may be creating this cache.`); } core.debug(`Attempting to upload cache located at: ${archivePath}`); yield cacheHttpClient.saveCache(cacheId, archivePath, signedUploadUrl, options); const finalizeRequest = { key, version, sizeBytes: `${archiveFileSize}` }; const finalizeResponse = yield twirpClient.FinalizeCacheEntryUpload(finalizeRequest); core.debug(`FinalizeCacheEntryUploadResponse: ${finalizeResponse.ok}`); if (!finalizeResponse.ok) { if (finalizeResponse.message) { throw new FinalizeCacheError(finalizeResponse.message); } throw new Error(`Unable to finalize cache with key ${key}, another job may be finalizing this cache.`); } cacheId = parseInt(finalizeResponse.entryId); } catch (error) { const typedError = error; if (typedError.name === ValidationError.name) { throw error; } else if (typedError.name === ReserveCacheError.name) { core.info(`Failed to save: ${typedError.message}`); } else if (typedError.name === FinalizeCacheError.name) { core.warning(typedError.message); } else { // Log server errors (5xx) as errors, all other errors as warnings if (typedError instanceof http_client_1.HttpClientError && typeof typedError.statusCode === 'number' && typedError.statusCode >= 500) { core.error(`Failed to save: ${typedError.message}`); } else { core.warning(`Failed to save: ${typedError.message}`); } } } finally { // Try to delete the archive to save space try { yield utils.unlinkFile(archivePath); } catch (error) { core.debug(`Failed to delete archive: ${error}`); } } return cacheId; }); } //# sourceMappingURL=cache.js.map /***/ }), /***/ 93156: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.CacheService = exports.GetCacheEntryDownloadURLResponse = exports.GetCacheEntryDownloadURLRequest = exports.FinalizeCacheEntryUploadResponse = exports.FinalizeCacheEntryUploadRequest = exports.CreateCacheEntryResponse = exports.CreateCacheEntryRequest = void 0; // @generated by protobuf-ts 2.9.1 with parameter long_type_string,client_none,generate_dependencies // @generated from protobuf file "results/api/v1/cache.proto" (package "github.actions.results.api.v1", syntax proto3) // tslint:disable const runtime_rpc_1 = __nccwpck_require__(44420); const runtime_1 = __nccwpck_require__(68886); const runtime_2 = __nccwpck_require__(68886); const runtime_3 = __nccwpck_require__(68886); const runtime_4 = __nccwpck_require__(68886); const runtime_5 = __nccwpck_require__(68886); const cachemetadata_1 = __nccwpck_require__(89444); // @generated message type with reflection information, may provide speed optimized methods class CreateCacheEntryRequest$Type extends runtime_5.MessageType { constructor() { super("github.actions.results.api.v1.CreateCacheEntryRequest", [ { no: 1, name: "metadata", kind: "message", T: () => cachemetadata_1.CacheMetadata }, { no: 2, name: "key", kind: "scalar", T: 9 /*ScalarType.STRING*/ }, { no: 3, name: "version", kind: "scalar", T: 9 /*ScalarType.STRING*/ } ]); } create(value) { const message = { key: "", version: "" }; globalThis.Object.defineProperty(message, runtime_4.MESSAGE_TYPE, { enumerable: false, value: this }); if (value !== undefined) (0, runtime_3.reflectionMergePartial)(this, message, value); return message; } internalBinaryRead(reader, length, options, target) { let message = target !== null && target !== void 0 ? target : this.create(), end = reader.pos + length; while (reader.pos < end) { let [fieldNo, wireType] = reader.tag(); switch (fieldNo) { case /* github.actions.results.entities.v1.CacheMetadata metadata */ 1: message.metadata = cachemetadata_1.CacheMetadata.internalBinaryRead(reader, reader.uint32(), options, message.metadata); break; case /* string key */ 2: message.key = reader.string(); break; case /* string version */ 3: message.version = reader.string(); break; default: let u = options.readUnknownField; if (u === "throw") throw new globalThis.Error(`Unknown field ${fieldNo} (wire type ${wireType}) for ${this.typeName}`); let d = reader.skip(wireType); if (u !== false) (u === true ? runtime_2.UnknownFieldHandler.onRead : u)(this.typeName, message, fieldNo, wireType, d); } } return message; } internalBinaryWrite(message, writer, options) { /* github.actions.results.entities.v1.CacheMetadata metadata = 1; */ if (message.metadata) cachemetadata_1.CacheMetadata.internalBinaryWrite(message.metadata, writer.tag(1, runtime_1.WireType.LengthDelimited).fork(), options).join(); /* string key = 2; */ if (message.key !== "") writer.tag(2, runtime_1.WireType.LengthDelimited).string(message.key); /* string version = 3; */ if (message.version !== "") writer.tag(3, runtime_1.WireType.LengthDelimited).string(message.version); let u = options.writeUnknownFields; if (u !== false) (u == true ? runtime_2.UnknownFieldHandler.onWrite : u)(this.typeName, message, writer); return writer; } } /** * @generated MessageType for protobuf message github.actions.results.api.v1.CreateCacheEntryRequest */ exports.CreateCacheEntryRequest = new CreateCacheEntryRequest$Type(); // @generated message type with reflection information, may provide speed optimized methods class CreateCacheEntryResponse$Type extends runtime_5.MessageType { constructor() { super("github.actions.results.api.v1.CreateCacheEntryResponse", [ { no: 1, name: "ok", kind: "scalar", T: 8 /*ScalarType.BOOL*/ }, { no: 2, name: "signed_upload_url", kind: "scalar", T: 9 /*ScalarType.STRING*/ }, { no: 3, name: "message", kind: "scalar", T: 9 /*ScalarType.STRING*/ } ]); } create(value) { const message = { ok: false, signedUploadUrl: "", message: "" }; globalThis.Object.defineProperty(message, runtime_4.MESSAGE_TYPE, { enumerable: false, value: this }); if (value !== undefined) (0, runtime_3.reflectionMergePartial)(this, message, value); return message; } internalBinaryRead(reader, length, options, target) { let message = target !== null && target !== void 0 ? target : this.create(), end = reader.pos + length; while (reader.pos < end) { let [fieldNo, wireType] = reader.tag(); switch (fieldNo) { case /* bool ok */ 1: message.ok = reader.bool(); break; case /* string signed_upload_url */ 2: message.signedUploadUrl = reader.string(); break; case /* string message */ 3: message.message = reader.string(); break; default: let u = options.readUnknownField; if (u === "throw") throw new globalThis.Error(`Unknown field ${fieldNo} (wire type ${wireType}) for ${this.typeName}`); let d = reader.skip(wireType); if (u !== false) (u === true ? runtime_2.UnknownFieldHandler.onRead : u)(this.typeName, message, fieldNo, wireType, d); } } return message; } internalBinaryWrite(message, writer, options) { /* bool ok = 1; */ if (message.ok !== false) writer.tag(1, runtime_1.WireType.Varint).bool(message.ok); /* string signed_upload_url = 2; */ if (message.signedUploadUrl !== "") writer.tag(2, runtime_1.WireType.LengthDelimited).string(message.signedUploadUrl); /* string message = 3; */ if (message.message !== "") writer.tag(3, runtime_1.WireType.LengthDelimited).string(message.message); let u = options.writeUnknownFields; if (u !== false) (u == true ? runtime_2.UnknownFieldHandler.onWrite : u)(this.typeName, message, writer); return writer; } } /** * @generated MessageType for protobuf message github.actions.results.api.v1.CreateCacheEntryResponse */ exports.CreateCacheEntryResponse = new CreateCacheEntryResponse$Type(); // @generated message type with reflection information, may provide speed optimized methods class FinalizeCacheEntryUploadRequest$Type extends runtime_5.MessageType { constructor() { super("github.actions.results.api.v1.FinalizeCacheEntryUploadRequest", [ { no: 1, name: "metadata", kind: "message", T: () => cachemetadata_1.CacheMetadata }, { no: 2, name: "key", kind: "scalar", T: 9 /*ScalarType.STRING*/ }, { no: 3, name: "size_bytes", kind: "scalar", T: 3 /*ScalarType.INT64*/ }, { no: 4, name: "version", kind: "scalar", T: 9 /*ScalarType.STRING*/ } ]); } create(value) { const message = { key: "", sizeBytes: "0", version: "" }; globalThis.Object.defineProperty(message, runtime_4.MESSAGE_TYPE, { enumerable: false, value: this }); if (value !== undefined) (0, runtime_3.reflectionMergePartial)(this, message, value); return message; } internalBinaryRead(reader, length, options, target) { let message = target !== null && target !== void 0 ? target : this.create(), end = reader.pos + length; while (reader.pos < end) { let [fieldNo, wireType] = reader.tag(); switch (fieldNo) { case /* github.actions.results.entities.v1.CacheMetadata metadata */ 1: message.metadata = cachemetadata_1.CacheMetadata.internalBinaryRead(reader, reader.uint32(), options, message.metadata); break; case /* string key */ 2: message.key = reader.string(); break; case /* int64 size_bytes */ 3: message.sizeBytes = reader.int64().toString(); break; case /* string version */ 4: message.version = reader.string(); break; default: let u = options.readUnknownField; if (u === "throw") throw new globalThis.Error(`Unknown field ${fieldNo} (wire type ${wireType}) for ${this.typeName}`); let d = reader.skip(wireType); if (u !== false) (u === true ? runtime_2.UnknownFieldHandler.onRead : u)(this.typeName, message, fieldNo, wireType, d); } } return message; } internalBinaryWrite(message, writer, options) { /* github.actions.results.entities.v1.CacheMetadata metadata = 1; */ if (message.metadata) cachemetadata_1.CacheMetadata.internalBinaryWrite(message.metadata, writer.tag(1, runtime_1.WireType.LengthDelimited).fork(), options).join(); /* string key = 2; */ if (message.key !== "") writer.tag(2, runtime_1.WireType.LengthDelimited).string(message.key); /* int64 size_bytes = 3; */ if (message.sizeBytes !== "0") writer.tag(3, runtime_1.WireType.Varint).int64(message.sizeBytes); /* string version = 4; */ if (message.version !== "") writer.tag(4, runtime_1.WireType.LengthDelimited).string(message.version); let u = options.writeUnknownFields; if (u !== false) (u == true ? runtime_2.UnknownFieldHandler.onWrite : u)(this.typeName, message, writer); return writer; } } /** * @generated MessageType for protobuf message github.actions.results.api.v1.FinalizeCacheEntryUploadRequest */ exports.FinalizeCacheEntryUploadRequest = new FinalizeCacheEntryUploadRequest$Type(); // @generated message type with reflection information, may provide speed optimized methods class FinalizeCacheEntryUploadResponse$Type extends runtime_5.MessageType { constructor() { super("github.actions.results.api.v1.FinalizeCacheEntryUploadResponse", [ { no: 1, name: "ok", kind: "scalar", T: 8 /*ScalarType.BOOL*/ }, { no: 2, name: "entry_id", kind: "scalar", T: 3 /*ScalarType.INT64*/ }, { no: 3, name: "message", kind: "scalar", T: 9 /*ScalarType.STRING*/ } ]); } create(value) { const message = { ok: false, entryId: "0", message: "" }; globalThis.Object.defineProperty(message, runtime_4.MESSAGE_TYPE, { enumerable: false, value: this }); if (value !== undefined) (0, runtime_3.reflectionMergePartial)(this, message, value); return message; } internalBinaryRead(reader, length, options, target) { let message = target !== null && target !== void 0 ? target : this.create(), end = reader.pos + length; while (reader.pos < end) { let [fieldNo, wireType] = reader.tag(); switch (fieldNo) { case /* bool ok */ 1: message.ok = reader.bool(); break; case /* int64 entry_id */ 2: message.entryId = reader.int64().toString(); break; case /* string message */ 3: message.message = reader.string(); break; default: let u = options.readUnknownField; if (u === "throw") throw new globalThis.Error(`Unknown field ${fieldNo} (wire type ${wireType}) for ${this.typeName}`); let d = reader.skip(wireType); if (u !== false) (u === true ? runtime_2.UnknownFieldHandler.onRead : u)(this.typeName, message, fieldNo, wireType, d); } } return message; } internalBinaryWrite(message, writer, options) { /* bool ok = 1; */ if (message.ok !== false) writer.tag(1, runtime_1.WireType.Varint).bool(message.ok); /* int64 entry_id = 2; */ if (message.entryId !== "0") writer.tag(2, runtime_1.WireType.Varint).int64(message.entryId); /* string message = 3; */ if (message.message !== "") writer.tag(3, runtime_1.WireType.LengthDelimited).string(message.message); let u = options.writeUnknownFields; if (u !== false) (u == true ? runtime_2.UnknownFieldHandler.onWrite : u)(this.typeName, message, writer); return writer; } } /** * @generated MessageType for protobuf message github.actions.results.api.v1.FinalizeCacheEntryUploadResponse */ exports.FinalizeCacheEntryUploadResponse = new FinalizeCacheEntryUploadResponse$Type(); // @generated message type with reflection information, may provide speed optimized methods class GetCacheEntryDownloadURLRequest$Type extends runtime_5.MessageType { constructor() { super("github.actions.results.api.v1.GetCacheEntryDownloadURLRequest", [ { no: 1, name: "metadata", kind: "message", T: () => cachemetadata_1.CacheMetadata }, { no: 2, name: "key", kind: "scalar", T: 9 /*ScalarType.STRING*/ }, { no: 3, name: "restore_keys", kind: "scalar", repeat: 2 /*RepeatType.UNPACKED*/, T: 9 /*ScalarType.STRING*/ }, { no: 4, name: "version", kind: "scalar", T: 9 /*ScalarType.STRING*/ } ]); } create(value) { const message = { key: "", restoreKeys: [], version: "" }; globalThis.Object.defineProperty(message, runtime_4.MESSAGE_TYPE, { enumerable: false, value: this }); if (value !== undefined) (0, runtime_3.reflectionMergePartial)(this, message, value); return message; } internalBinaryRead(reader, length, options, target) { let message = target !== null && target !== void 0 ? target : this.create(), end = reader.pos + length; while (reader.pos < end) { let [fieldNo, wireType] = reader.tag(); switch (fieldNo) { case /* github.actions.results.entities.v1.CacheMetadata metadata */ 1: message.metadata = cachemetadata_1.CacheMetadata.internalBinaryRead(reader, reader.uint32(), options, message.metadata); break; case /* string key */ 2: message.key = reader.string(); break; case /* repeated string restore_keys */ 3: message.restoreKeys.push(reader.string()); break; case /* string version */ 4: message.version = reader.string(); break; default: let u = options.readUnknownField; if (u === "throw") throw new globalThis.Error(`Unknown field ${fieldNo} (wire type ${wireType}) for ${this.typeName}`); let d = reader.skip(wireType); if (u !== false) (u === true ? runtime_2.UnknownFieldHandler.onRead : u)(this.typeName, message, fieldNo, wireType, d); } } return message; } internalBinaryWrite(message, writer, options) { /* github.actions.results.entities.v1.CacheMetadata metadata = 1; */ if (message.metadata) cachemetadata_1.CacheMetadata.internalBinaryWrite(message.metadata, writer.tag(1, runtime_1.WireType.LengthDelimited).fork(), options).join(); /* string key = 2; */ if (message.key !== "") writer.tag(2, runtime_1.WireType.LengthDelimited).string(message.key); /* repeated string restore_keys = 3; */ for (let i = 0; i < message.restoreKeys.length; i++) writer.tag(3, runtime_1.WireType.LengthDelimited).string(message.restoreKeys[i]); /* string version = 4; */ if (message.version !== "") writer.tag(4, runtime_1.WireType.LengthDelimited).string(message.version); let u = options.writeUnknownFields; if (u !== false) (u == true ? runtime_2.UnknownFieldHandler.onWrite : u)(this.typeName, message, writer); return writer; } } /** * @generated MessageType for protobuf message github.actions.results.api.v1.GetCacheEntryDownloadURLRequest */ exports.GetCacheEntryDownloadURLRequest = new GetCacheEntryDownloadURLRequest$Type(); // @generated message type with reflection information, may provide speed optimized methods class GetCacheEntryDownloadURLResponse$Type extends runtime_5.MessageType { constructor() { super("github.actions.results.api.v1.GetCacheEntryDownloadURLResponse", [ { no: 1, name: "ok", kind: "scalar", T: 8 /*ScalarType.BOOL*/ }, { no: 2, name: "signed_download_url", kind: "scalar", T: 9 /*ScalarType.STRING*/ }, { no: 3, name: "matched_key", kind: "scalar", T: 9 /*ScalarType.STRING*/ } ]); } create(value) { const message = { ok: false, signedDownloadUrl: "", matchedKey: "" }; globalThis.Object.defineProperty(message, runtime_4.MESSAGE_TYPE, { enumerable: false, value: this }); if (value !== undefined) (0, runtime_3.reflectionMergePartial)(this, message, value); return message; } internalBinaryRead(reader, length, options, target) { let message = target !== null && target !== void 0 ? target : this.create(), end = reader.pos + length; while (reader.pos < end) { let [fieldNo, wireType] = reader.tag(); switch (fieldNo) { case /* bool ok */ 1: message.ok = reader.bool(); break; case /* string signed_download_url */ 2: message.signedDownloadUrl = reader.string(); break; case /* string matched_key */ 3: message.matchedKey = reader.string(); break; default: let u = options.readUnknownField; if (u === "throw") throw new globalThis.Error(`Unknown field ${fieldNo} (wire type ${wireType}) for ${this.typeName}`); let d = reader.skip(wireType); if (u !== false) (u === true ? runtime_2.UnknownFieldHandler.onRead : u)(this.typeName, message, fieldNo, wireType, d); } } return message; } internalBinaryWrite(message, writer, options) { /* bool ok = 1; */ if (message.ok !== false) writer.tag(1, runtime_1.WireType.Varint).bool(message.ok); /* string signed_download_url = 2; */ if (message.signedDownloadUrl !== "") writer.tag(2, runtime_1.WireType.LengthDelimited).string(message.signedDownloadUrl); /* string matched_key = 3; */ if (message.matchedKey !== "") writer.tag(3, runtime_1.WireType.LengthDelimited).string(message.matchedKey); let u = options.writeUnknownFields; if (u !== false) (u == true ? runtime_2.UnknownFieldHandler.onWrite : u)(this.typeName, message, writer); return writer; } } /** * @generated MessageType for protobuf message github.actions.results.api.v1.GetCacheEntryDownloadURLResponse */ exports.GetCacheEntryDownloadURLResponse = new GetCacheEntryDownloadURLResponse$Type(); /** * @generated ServiceType for protobuf service github.actions.results.api.v1.CacheService */ exports.CacheService = new runtime_rpc_1.ServiceType("github.actions.results.api.v1.CacheService", [ { name: "CreateCacheEntry", options: {}, I: exports.CreateCacheEntryRequest, O: exports.CreateCacheEntryResponse }, { name: "FinalizeCacheEntryUpload", options: {}, I: exports.FinalizeCacheEntryUploadRequest, O: exports.FinalizeCacheEntryUploadResponse }, { name: "GetCacheEntryDownloadURL", options: {}, I: exports.GetCacheEntryDownloadURLRequest, O: exports.GetCacheEntryDownloadURLResponse } ]); //# sourceMappingURL=cache.js.map /***/ }), /***/ 11486: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.CacheServiceClientProtobuf = exports.CacheServiceClientJSON = void 0; const cache_1 = __nccwpck_require__(93156); class CacheServiceClientJSON { constructor(rpc) { this.rpc = rpc; this.CreateCacheEntry.bind(this); this.FinalizeCacheEntryUpload.bind(this); this.GetCacheEntryDownloadURL.bind(this); } CreateCacheEntry(request) { const data = cache_1.CreateCacheEntryRequest.toJson(request, { useProtoFieldName: true, emitDefaultValues: false, }); const promise = this.rpc.request("github.actions.results.api.v1.CacheService", "CreateCacheEntry", "application/json", data); return promise.then((data) => cache_1.CreateCacheEntryResponse.fromJson(data, { ignoreUnknownFields: true, })); } FinalizeCacheEntryUpload(request) { const data = cache_1.FinalizeCacheEntryUploadRequest.toJson(request, { useProtoFieldName: true, emitDefaultValues: false, }); const promise = this.rpc.request("github.actions.results.api.v1.CacheService", "FinalizeCacheEntryUpload", "application/json", data); return promise.then((data) => cache_1.FinalizeCacheEntryUploadResponse.fromJson(data, { ignoreUnknownFields: true, })); } GetCacheEntryDownloadURL(request) { const data = cache_1.GetCacheEntryDownloadURLRequest.toJson(request, { useProtoFieldName: true, emitDefaultValues: false, }); const promise = this.rpc.request("github.actions.results.api.v1.CacheService", "GetCacheEntryDownloadURL", "application/json", data); return promise.then((data) => cache_1.GetCacheEntryDownloadURLResponse.fromJson(data, { ignoreUnknownFields: true, })); } } exports.CacheServiceClientJSON = CacheServiceClientJSON; class CacheServiceClientProtobuf { constructor(rpc) { this.rpc = rpc; this.CreateCacheEntry.bind(this); this.FinalizeCacheEntryUpload.bind(this); this.GetCacheEntryDownloadURL.bind(this); } CreateCacheEntry(request) { const data = cache_1.CreateCacheEntryRequest.toBinary(request); const promise = this.rpc.request("github.actions.results.api.v1.CacheService", "CreateCacheEntry", "application/protobuf", data); return promise.then((data) => cache_1.CreateCacheEntryResponse.fromBinary(data)); } FinalizeCacheEntryUpload(request) { const data = cache_1.FinalizeCacheEntryUploadRequest.toBinary(request); const promise = this.rpc.request("github.actions.results.api.v1.CacheService", "FinalizeCacheEntryUpload", "application/protobuf", data); return promise.then((data) => cache_1.FinalizeCacheEntryUploadResponse.fromBinary(data)); } GetCacheEntryDownloadURL(request) { const data = cache_1.GetCacheEntryDownloadURLRequest.toBinary(request); const promise = this.rpc.request("github.actions.results.api.v1.CacheService", "GetCacheEntryDownloadURL", "application/protobuf", data); return promise.then((data) => cache_1.GetCacheEntryDownloadURLResponse.fromBinary(data)); } } exports.CacheServiceClientProtobuf = CacheServiceClientProtobuf; //# sourceMappingURL=cache.twirp-client.js.map /***/ }), /***/ 89444: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.CacheMetadata = void 0; const runtime_1 = __nccwpck_require__(68886); const runtime_2 = __nccwpck_require__(68886); const runtime_3 = __nccwpck_require__(68886); const runtime_4 = __nccwpck_require__(68886); const runtime_5 = __nccwpck_require__(68886); const cachescope_1 = __nccwpck_require__(29425); // @generated message type with reflection information, may provide speed optimized methods class CacheMetadata$Type extends runtime_5.MessageType { constructor() { super("github.actions.results.entities.v1.CacheMetadata", [ { no: 1, name: "repository_id", kind: "scalar", T: 3 /*ScalarType.INT64*/ }, { no: 2, name: "scope", kind: "message", repeat: 1 /*RepeatType.PACKED*/, T: () => cachescope_1.CacheScope } ]); } create(value) { const message = { repositoryId: "0", scope: [] }; globalThis.Object.defineProperty(message, runtime_4.MESSAGE_TYPE, { enumerable: false, value: this }); if (value !== undefined) (0, runtime_3.reflectionMergePartial)(this, message, value); return message; } internalBinaryRead(reader, length, options, target) { let message = target !== null && target !== void 0 ? target : this.create(), end = reader.pos + length; while (reader.pos < end) { let [fieldNo, wireType] = reader.tag(); switch (fieldNo) { case /* int64 repository_id */ 1: message.repositoryId = reader.int64().toString(); break; case /* repeated github.actions.results.entities.v1.CacheScope scope */ 2: message.scope.push(cachescope_1.CacheScope.internalBinaryRead(reader, reader.uint32(), options)); break; default: let u = options.readUnknownField; if (u === "throw") throw new globalThis.Error(`Unknown field ${fieldNo} (wire type ${wireType}) for ${this.typeName}`); let d = reader.skip(wireType); if (u !== false) (u === true ? runtime_2.UnknownFieldHandler.onRead : u)(this.typeName, message, fieldNo, wireType, d); } } return message; } internalBinaryWrite(message, writer, options) { /* int64 repository_id = 1; */ if (message.repositoryId !== "0") writer.tag(1, runtime_1.WireType.Varint).int64(message.repositoryId); /* repeated github.actions.results.entities.v1.CacheScope scope = 2; */ for (let i = 0; i < message.scope.length; i++) cachescope_1.CacheScope.internalBinaryWrite(message.scope[i], writer.tag(2, runtime_1.WireType.LengthDelimited).fork(), options).join(); let u = options.writeUnknownFields; if (u !== false) (u == true ? runtime_2.UnknownFieldHandler.onWrite : u)(this.typeName, message, writer); return writer; } } /** * @generated MessageType for protobuf message github.actions.results.entities.v1.CacheMetadata */ exports.CacheMetadata = new CacheMetadata$Type(); //# sourceMappingURL=cachemetadata.js.map /***/ }), /***/ 29425: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.CacheScope = void 0; const runtime_1 = __nccwpck_require__(68886); const runtime_2 = __nccwpck_require__(68886); const runtime_3 = __nccwpck_require__(68886); const runtime_4 = __nccwpck_require__(68886); const runtime_5 = __nccwpck_require__(68886); // @generated message type with reflection information, may provide speed optimized methods class CacheScope$Type extends runtime_5.MessageType { constructor() { super("github.actions.results.entities.v1.CacheScope", [ { no: 1, name: "scope", kind: "scalar", T: 9 /*ScalarType.STRING*/ }, { no: 2, name: "permission", kind: "scalar", T: 3 /*ScalarType.INT64*/ } ]); } create(value) { const message = { scope: "", permission: "0" }; globalThis.Object.defineProperty(message, runtime_4.MESSAGE_TYPE, { enumerable: false, value: this }); if (value !== undefined) (0, runtime_3.reflectionMergePartial)(this, message, value); return message; } internalBinaryRead(reader, length, options, target) { let message = target !== null && target !== void 0 ? target : this.create(), end = reader.pos + length; while (reader.pos < end) { let [fieldNo, wireType] = reader.tag(); switch (fieldNo) { case /* string scope */ 1: message.scope = reader.string(); break; case /* int64 permission */ 2: message.permission = reader.int64().toString(); break; default: let u = options.readUnknownField; if (u === "throw") throw new globalThis.Error(`Unknown field ${fieldNo} (wire type ${wireType}) for ${this.typeName}`); let d = reader.skip(wireType); if (u !== false) (u === true ? runtime_2.UnknownFieldHandler.onRead : u)(this.typeName, message, fieldNo, wireType, d); } } return message; } internalBinaryWrite(message, writer, options) { /* string scope = 1; */ if (message.scope !== "") writer.tag(1, runtime_1.WireType.LengthDelimited).string(message.scope); /* int64 permission = 2; */ if (message.permission !== "0") writer.tag(2, runtime_1.WireType.Varint).int64(message.permission); let u = options.writeUnknownFields; if (u !== false) (u == true ? runtime_2.UnknownFieldHandler.onWrite : u)(this.typeName, message, writer); return writer; } } /** * @generated MessageType for protobuf message github.actions.results.entities.v1.CacheScope */ exports.CacheScope = new CacheScope$Type(); //# sourceMappingURL=cachescope.js.map /***/ }), /***/ 73171: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.getCacheEntry = getCacheEntry; exports.downloadCache = downloadCache; exports.reserveCache = reserveCache; exports.saveCache = saveCache; const core = __importStar(__nccwpck_require__(37484)); const http_client_1 = __nccwpck_require__(54844); const auth_1 = __nccwpck_require__(44552); const fs = __importStar(__nccwpck_require__(79896)); const url_1 = __nccwpck_require__(87016); const utils = __importStar(__nccwpck_require__(98299)); const uploadUtils_1 = __nccwpck_require__(35268); const downloadUtils_1 = __nccwpck_require__(75067); const options_1 = __nccwpck_require__(98356); const requestUtils_1 = __nccwpck_require__(32846); const config_1 = __nccwpck_require__(17606); const user_agent_1 = __nccwpck_require__(41899); function getCacheApiUrl(resource) { const baseUrl = (0, config_1.getCacheServiceURL)(); if (!baseUrl) { throw new Error('Cache Service Url not found, unable to restore cache.'); } const url = `${baseUrl}_apis/artifactcache/${resource}`; core.debug(`Resource Url: ${url}`); return url; } function createAcceptHeader(type, apiVersion) { return `${type};api-version=${apiVersion}`; } function getRequestOptions() { const requestOptions = { headers: { Accept: createAcceptHeader('application/json', '6.0-preview.1') } }; return requestOptions; } function createHttpClient() { const token = process.env['ACTIONS_RUNTIME_TOKEN'] || ''; const bearerCredentialHandler = new auth_1.BearerCredentialHandler(token); return new http_client_1.HttpClient((0, user_agent_1.getUserAgentString)(), [bearerCredentialHandler], getRequestOptions()); } function getCacheEntry(keys, paths, options) { return __awaiter(this, void 0, void 0, function* () { const httpClient = createHttpClient(); const version = utils.getCacheVersion(paths, options === null || options === void 0 ? void 0 : options.compressionMethod, options === null || options === void 0 ? void 0 : options.enableCrossOsArchive); const resource = `cache?keys=${encodeURIComponent(keys.join(','))}&version=${version}`; const response = yield (0, requestUtils_1.retryTypedResponse)('getCacheEntry', () => __awaiter(this, void 0, void 0, function* () { return httpClient.getJson(getCacheApiUrl(resource)); })); // Cache not found if (response.statusCode === 204) { // List cache for primary key only if cache miss occurs if (core.isDebug()) { yield printCachesListForDiagnostics(keys[0], httpClient, version); } return null; } if (!(0, requestUtils_1.isSuccessStatusCode)(response.statusCode)) { throw new Error(`Cache service responded with ${response.statusCode}`); } const cacheResult = response.result; const cacheDownloadUrl = cacheResult === null || cacheResult === void 0 ? void 0 : cacheResult.archiveLocation; if (!cacheDownloadUrl) { // Cache achiveLocation not found. This should never happen, and hence bail out. throw new Error('Cache not found.'); } core.setSecret(cacheDownloadUrl); core.debug(`Cache Result:`); core.debug(JSON.stringify(cacheResult)); return cacheResult; }); } function printCachesListForDiagnostics(key, httpClient, version) { return __awaiter(this, void 0, void 0, function* () { const resource = `caches?key=${encodeURIComponent(key)}`; const response = yield (0, requestUtils_1.retryTypedResponse)('listCache', () => __awaiter(this, void 0, void 0, function* () { return httpClient.getJson(getCacheApiUrl(resource)); })); if (response.statusCode === 200) { const cacheListResult = response.result; const totalCount = cacheListResult === null || cacheListResult === void 0 ? void 0 : cacheListResult.totalCount; if (totalCount && totalCount > 0) { core.debug(`No matching cache found for cache key '${key}', version '${version} and scope ${process.env['GITHUB_REF']}. There exist one or more cache(s) with similar key but they have different version or scope. See more info on cache matching here: https://docs.github.com/en/actions/using-workflows/caching-dependencies-to-speed-up-workflows#matching-a-cache-key \nOther caches with similar key:`); for (const cacheEntry of (cacheListResult === null || cacheListResult === void 0 ? void 0 : cacheListResult.artifactCaches) || []) { core.debug(`Cache Key: ${cacheEntry === null || cacheEntry === void 0 ? void 0 : cacheEntry.cacheKey}, Cache Version: ${cacheEntry === null || cacheEntry === void 0 ? void 0 : cacheEntry.cacheVersion}, Cache Scope: ${cacheEntry === null || cacheEntry === void 0 ? void 0 : cacheEntry.scope}, Cache Created: ${cacheEntry === null || cacheEntry === void 0 ? void 0 : cacheEntry.creationTime}`); } } } }); } function downloadCache(archiveLocation, archivePath, options) { return __awaiter(this, void 0, void 0, function* () { const archiveUrl = new url_1.URL(archiveLocation); const downloadOptions = (0, options_1.getDownloadOptions)(options); if (archiveUrl.hostname.endsWith('.blob.core.windows.net')) { if (downloadOptions.useAzureSdk) { // Use Azure storage SDK to download caches hosted on Azure to improve speed and reliability. yield (0, downloadUtils_1.downloadCacheStorageSDK)(archiveLocation, archivePath, downloadOptions); } else if (downloadOptions.concurrentBlobDownloads) { // Use concurrent implementation with HttpClient to work around blob SDK issue yield (0, downloadUtils_1.downloadCacheHttpClientConcurrent)(archiveLocation, archivePath, downloadOptions); } else { // Otherwise, download using the Actions http-client. yield (0, downloadUtils_1.downloadCacheHttpClient)(archiveLocation, archivePath); } } else { yield (0, downloadUtils_1.downloadCacheHttpClient)(archiveLocation, archivePath); } }); } // Reserve Cache function reserveCache(key, paths, options) { return __awaiter(this, void 0, void 0, function* () { const httpClient = createHttpClient(); const version = utils.getCacheVersion(paths, options === null || options === void 0 ? void 0 : options.compressionMethod, options === null || options === void 0 ? void 0 : options.enableCrossOsArchive); const reserveCacheRequest = { key, version, cacheSize: options === null || options === void 0 ? void 0 : options.cacheSize }; const response = yield (0, requestUtils_1.retryTypedResponse)('reserveCache', () => __awaiter(this, void 0, void 0, function* () { return httpClient.postJson(getCacheApiUrl('caches'), reserveCacheRequest); })); return response; }); } function getContentRange(start, end) { // Format: `bytes start-end/filesize // start and end are inclusive // filesize can be * // For a 200 byte chunk starting at byte 0: // Content-Range: bytes 0-199/* return `bytes ${start}-${end}/*`; } function uploadChunk(httpClient, resourceUrl, openStream, start, end) { return __awaiter(this, void 0, void 0, function* () { core.debug(`Uploading chunk of size ${end - start + 1} bytes at offset ${start} with content range: ${getContentRange(start, end)}`); const additionalHeaders = { 'Content-Type': 'application/octet-stream', 'Content-Range': getContentRange(start, end) }; const uploadChunkResponse = yield (0, requestUtils_1.retryHttpClientResponse)(`uploadChunk (start: ${start}, end: ${end})`, () => __awaiter(this, void 0, void 0, function* () { return httpClient.sendStream('PATCH', resourceUrl, openStream(), additionalHeaders); })); if (!(0, requestUtils_1.isSuccessStatusCode)(uploadChunkResponse.message.statusCode)) { throw new Error(`Cache service responded with ${uploadChunkResponse.message.statusCode} during upload chunk.`); } }); } function uploadFile(httpClient, cacheId, archivePath, options) { return __awaiter(this, void 0, void 0, function* () { // Upload Chunks const fileSize = utils.getArchiveFileSizeInBytes(archivePath); const resourceUrl = getCacheApiUrl(`caches/${cacheId.toString()}`); const fd = fs.openSync(archivePath, 'r'); const uploadOptions = (0, options_1.getUploadOptions)(options); const concurrency = utils.assertDefined('uploadConcurrency', uploadOptions.uploadConcurrency); const maxChunkSize = utils.assertDefined('uploadChunkSize', uploadOptions.uploadChunkSize); const parallelUploads = [...new Array(concurrency).keys()]; core.debug('Awaiting all uploads'); let offset = 0; try { yield Promise.all(parallelUploads.map(() => __awaiter(this, void 0, void 0, function* () { while (offset < fileSize) { const chunkSize = Math.min(fileSize - offset, maxChunkSize); const start = offset; const end = offset + chunkSize - 1; offset += maxChunkSize; yield uploadChunk(httpClient, resourceUrl, () => fs .createReadStream(archivePath, { fd, start, end, autoClose: false }) .on('error', error => { throw new Error(`Cache upload failed because file read failed with ${error.message}`); }), start, end); } }))); } finally { fs.closeSync(fd); } return; }); } function commitCache(httpClient, cacheId, filesize) { return __awaiter(this, void 0, void 0, function* () { const commitCacheRequest = { size: filesize }; return yield (0, requestUtils_1.retryTypedResponse)('commitCache', () => __awaiter(this, void 0, void 0, function* () { return httpClient.postJson(getCacheApiUrl(`caches/${cacheId.toString()}`), commitCacheRequest); })); }); } function saveCache(cacheId, archivePath, signedUploadURL, options) { return __awaiter(this, void 0, void 0, function* () { const uploadOptions = (0, options_1.getUploadOptions)(options); if (uploadOptions.useAzureSdk) { // Use Azure storage SDK to upload caches directly to Azure if (!signedUploadURL) { throw new Error('Azure Storage SDK can only be used when a signed URL is provided.'); } yield (0, uploadUtils_1.uploadCacheArchiveSDK)(signedUploadURL, archivePath, options); } else { const httpClient = createHttpClient(); core.debug('Upload cache'); yield uploadFile(httpClient, cacheId, archivePath, options); // Commit Cache core.debug('Commiting cache'); const cacheSize = utils.getArchiveFileSizeInBytes(archivePath); core.info(`Cache Size: ~${Math.round(cacheSize / (1024 * 1024))} MB (${cacheSize} B)`); const commitCacheResponse = yield commitCache(httpClient, cacheId, cacheSize); if (!(0, requestUtils_1.isSuccessStatusCode)(commitCacheResponse.statusCode)) { throw new Error(`Cache service responded with ${commitCacheResponse.statusCode} during commit cache.`); } core.info('Cache saved successfully'); } }); } //# sourceMappingURL=cacheHttpClient.js.map /***/ }), /***/ 98299: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; var __asyncValues = (this && this.__asyncValues) || function (o) { if (!Symbol.asyncIterator) throw new TypeError("Symbol.asyncIterator is not defined."); var m = o[Symbol.asyncIterator], i; return m ? m.call(o) : (o = typeof __values === "function" ? __values(o) : o[Symbol.iterator](), i = {}, verb("next"), verb("throw"), verb("return"), i[Symbol.asyncIterator] = function () { return this; }, i); function verb(n) { i[n] = o[n] && function (v) { return new Promise(function (resolve, reject) { v = o[n](v), settle(resolve, reject, v.done, v.value); }); }; } function settle(resolve, reject, d, v) { Promise.resolve(v).then(function(v) { resolve({ value: v, done: d }); }, reject); } }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.createTempDirectory = createTempDirectory; exports.getArchiveFileSizeInBytes = getArchiveFileSizeInBytes; exports.resolvePaths = resolvePaths; exports.unlinkFile = unlinkFile; exports.getCompressionMethod = getCompressionMethod; exports.getCacheFileName = getCacheFileName; exports.getGnuTarPathOnWindows = getGnuTarPathOnWindows; exports.assertDefined = assertDefined; exports.getCacheVersion = getCacheVersion; exports.getRuntimeToken = getRuntimeToken; const core = __importStar(__nccwpck_require__(37484)); const exec = __importStar(__nccwpck_require__(95236)); const glob = __importStar(__nccwpck_require__(47206)); const io = __importStar(__nccwpck_require__(91028)); const crypto = __importStar(__nccwpck_require__(76982)); const fs = __importStar(__nccwpck_require__(79896)); const path = __importStar(__nccwpck_require__(16928)); const semver = __importStar(__nccwpck_require__(39318)); const util = __importStar(__nccwpck_require__(39023)); const constants_1 = __nccwpck_require__(58287); const versionSalt = '1.0'; // From https://github.com/actions/toolkit/blob/main/packages/tool-cache/src/tool-cache.ts#L23 function createTempDirectory() { return __awaiter(this, void 0, void 0, function* () { const IS_WINDOWS = process.platform === 'win32'; let tempDirectory = process.env['RUNNER_TEMP'] || ''; if (!tempDirectory) { let baseLocation; if (IS_WINDOWS) { // On Windows use the USERPROFILE env variable baseLocation = process.env['USERPROFILE'] || 'C:\\'; } else { if (process.platform === 'darwin') { baseLocation = '/Users'; } else { baseLocation = '/home'; } } tempDirectory = path.join(baseLocation, 'actions', 'temp'); } const dest = path.join(tempDirectory, crypto.randomUUID()); yield io.mkdirP(dest); return dest; }); } function getArchiveFileSizeInBytes(filePath) { return fs.statSync(filePath).size; } function resolvePaths(patterns) { return __awaiter(this, void 0, void 0, function* () { var _a, e_1, _b, _c; var _d; const paths = []; const workspace = (_d = process.env['GITHUB_WORKSPACE']) !== null && _d !== void 0 ? _d : process.cwd(); const globber = yield glob.create(patterns.join('\n'), { implicitDescendants: false }); try { for (var _e = true, _f = __asyncValues(globber.globGenerator()), _g; _g = yield _f.next(), _a = _g.done, !_a; _e = true) { _c = _g.value; _e = false; const file = _c; const relativeFile = path .relative(workspace, file) .replace(new RegExp(`\\${path.sep}`, 'g'), '/'); core.debug(`Matched: ${relativeFile}`); // Paths are made relative so the tar entries are all relative to the root of the workspace. if (relativeFile === '') { // path.relative returns empty string if workspace and file are equal paths.push('.'); } else { paths.push(`${relativeFile}`); } } } catch (e_1_1) { e_1 = { error: e_1_1 }; } finally { try { if (!_e && !_a && (_b = _f.return)) yield _b.call(_f); } finally { if (e_1) throw e_1.error; } } return paths; }); } function unlinkFile(filePath) { return __awaiter(this, void 0, void 0, function* () { return util.promisify(fs.unlink)(filePath); }); } function getVersion(app_1) { return __awaiter(this, arguments, void 0, function* (app, additionalArgs = []) { let versionOutput = ''; additionalArgs.push('--version'); core.debug(`Checking ${app} ${additionalArgs.join(' ')}`); try { yield exec.exec(`${app}`, additionalArgs, { ignoreReturnCode: true, silent: true, listeners: { stdout: (data) => (versionOutput += data.toString()), stderr: (data) => (versionOutput += data.toString()) } }); } catch (err) { core.debug(err.message); } versionOutput = versionOutput.trim(); core.debug(versionOutput); return versionOutput; }); } // Use zstandard if possible to maximize cache performance function getCompressionMethod() { return __awaiter(this, void 0, void 0, function* () { const versionOutput = yield getVersion('zstd', ['--quiet']); const version = semver.clean(versionOutput); core.debug(`zstd version: ${version}`); if (versionOutput === '') { return constants_1.CompressionMethod.Gzip; } else { return constants_1.CompressionMethod.ZstdWithoutLong; } }); } function getCacheFileName(compressionMethod) { return compressionMethod === constants_1.CompressionMethod.Gzip ? constants_1.CacheFilename.Gzip : constants_1.CacheFilename.Zstd; } function getGnuTarPathOnWindows() { return __awaiter(this, void 0, void 0, function* () { if (fs.existsSync(constants_1.GnuTarPathOnWindows)) { return constants_1.GnuTarPathOnWindows; } const versionOutput = yield getVersion('tar'); return versionOutput.toLowerCase().includes('gnu tar') ? io.which('tar') : ''; }); } function assertDefined(name, value) { if (value === undefined) { throw Error(`Expected ${name} but value was undefiend`); } return value; } function getCacheVersion(paths, compressionMethod, enableCrossOsArchive = false) { // don't pass changes upstream const components = paths.slice(); // Add compression method to cache version to restore // compressed cache as per compression method if (compressionMethod) { components.push(compressionMethod); } // Only check for windows platforms if enableCrossOsArchive is false if (process.platform === 'win32' && !enableCrossOsArchive) { components.push('windows-only'); } // Add salt to cache version to support breaking changes in cache entry components.push(versionSalt); return crypto.createHash('sha256').update(components.join('|')).digest('hex'); } function getRuntimeToken() { const token = process.env['ACTIONS_RUNTIME_TOKEN']; if (!token) { throw new Error('Unable to get the ACTIONS_RUNTIME_TOKEN env variable'); } return token; } //# sourceMappingURL=cacheUtils.js.map /***/ }), /***/ 17606: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.isGhes = isGhes; exports.getCacheServiceVersion = getCacheServiceVersion; exports.getCacheServiceURL = getCacheServiceURL; function isGhes() { const ghUrl = new URL(process.env['GITHUB_SERVER_URL'] || 'https://github.com'); const hostname = ghUrl.hostname.trimEnd().toUpperCase(); const isGitHubHost = hostname === 'GITHUB.COM'; const isGheHost = hostname.endsWith('.GHE.COM'); const isLocalHost = hostname.endsWith('.LOCALHOST'); return !isGitHubHost && !isGheHost && !isLocalHost; } function getCacheServiceVersion() { // Cache service v2 is not supported on GHES. We will default to // cache service v1 even if the feature flag was enabled by user. if (isGhes()) return 'v1'; return process.env['ACTIONS_CACHE_SERVICE_V2'] ? 'v2' : 'v1'; } function getCacheServiceURL() { const version = getCacheServiceVersion(); // Based on the version of the cache service, we will determine which // URL to use. switch (version) { case 'v1': return (process.env['ACTIONS_CACHE_URL'] || process.env['ACTIONS_RESULTS_URL'] || ''); case 'v2': return process.env['ACTIONS_RESULTS_URL'] || ''; default: throw new Error(`Unsupported cache service version: ${version}`); } } //# sourceMappingURL=config.js.map /***/ }), /***/ 58287: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.CacheFileSizeLimit = exports.ManifestFilename = exports.TarFilename = exports.SystemTarPathOnWindows = exports.GnuTarPathOnWindows = exports.SocketTimeout = exports.DefaultRetryDelay = exports.DefaultRetryAttempts = exports.ArchiveToolType = exports.CompressionMethod = exports.CacheFilename = void 0; var CacheFilename; (function (CacheFilename) { CacheFilename["Gzip"] = "cache.tgz"; CacheFilename["Zstd"] = "cache.tzst"; })(CacheFilename || (exports.CacheFilename = CacheFilename = {})); var CompressionMethod; (function (CompressionMethod) { CompressionMethod["Gzip"] = "gzip"; // Long range mode was added to zstd in v1.3.2. // This enum is for earlier version of zstd that does not have --long support CompressionMethod["ZstdWithoutLong"] = "zstd-without-long"; CompressionMethod["Zstd"] = "zstd"; })(CompressionMethod || (exports.CompressionMethod = CompressionMethod = {})); var ArchiveToolType; (function (ArchiveToolType) { ArchiveToolType["GNU"] = "gnu"; ArchiveToolType["BSD"] = "bsd"; })(ArchiveToolType || (exports.ArchiveToolType = ArchiveToolType = {})); // The default number of retry attempts. exports.DefaultRetryAttempts = 2; // The default delay in milliseconds between retry attempts. exports.DefaultRetryDelay = 5000; // Socket timeout in milliseconds during download. If no traffic is received // over the socket during this period, the socket is destroyed and the download // is aborted. exports.SocketTimeout = 5000; // The default path of GNUtar on hosted Windows runners exports.GnuTarPathOnWindows = `${process.env['PROGRAMFILES']}\\Git\\usr\\bin\\tar.exe`; // The default path of BSDtar on hosted Windows runners exports.SystemTarPathOnWindows = `${process.env['SYSTEMDRIVE']}\\Windows\\System32\\tar.exe`; exports.TarFilename = 'cache.tar'; exports.ManifestFilename = 'manifest.txt'; exports.CacheFileSizeLimit = 10 * Math.pow(1024, 3); // 10GiB per repository //# sourceMappingURL=constants.js.map /***/ }), /***/ 75067: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.DownloadProgress = void 0; exports.downloadCacheHttpClient = downloadCacheHttpClient; exports.downloadCacheHttpClientConcurrent = downloadCacheHttpClientConcurrent; exports.downloadCacheStorageSDK = downloadCacheStorageSDK; const core = __importStar(__nccwpck_require__(37484)); const http_client_1 = __nccwpck_require__(54844); const storage_blob_1 = __nccwpck_require__(71400); const buffer = __importStar(__nccwpck_require__(20181)); const fs = __importStar(__nccwpck_require__(79896)); const stream = __importStar(__nccwpck_require__(2203)); const util = __importStar(__nccwpck_require__(39023)); const utils = __importStar(__nccwpck_require__(98299)); const constants_1 = __nccwpck_require__(58287); const requestUtils_1 = __nccwpck_require__(32846); const abort_controller_1 = __nccwpck_require__(68110); /** * Pipes the body of a HTTP response to a stream * * @param response the HTTP response * @param output the writable stream */ function pipeResponseToStream(response, output) { return __awaiter(this, void 0, void 0, function* () { const pipeline = util.promisify(stream.pipeline); yield pipeline(response.message, output); }); } /** * Class for tracking the download state and displaying stats. */ class DownloadProgress { constructor(contentLength) { this.contentLength = contentLength; this.segmentIndex = 0; this.segmentSize = 0; this.segmentOffset = 0; this.receivedBytes = 0; this.displayedComplete = false; this.startTime = Date.now(); } /** * Progress to the next segment. Only call this method when the previous segment * is complete. * * @param segmentSize the length of the next segment */ nextSegment(segmentSize) { this.segmentOffset = this.segmentOffset + this.segmentSize; this.segmentIndex = this.segmentIndex + 1; this.segmentSize = segmentSize; this.receivedBytes = 0; core.debug(`Downloading segment at offset ${this.segmentOffset} with length ${this.segmentSize}...`); } /** * Sets the number of bytes received for the current segment. * * @param receivedBytes the number of bytes received */ setReceivedBytes(receivedBytes) { this.receivedBytes = receivedBytes; } /** * Returns the total number of bytes transferred. */ getTransferredBytes() { return this.segmentOffset + this.receivedBytes; } /** * Returns true if the download is complete. */ isDone() { return this.getTransferredBytes() === this.contentLength; } /** * Prints the current download stats. Once the download completes, this will print one * last line and then stop. */ display() { if (this.displayedComplete) { return; } const transferredBytes = this.segmentOffset + this.receivedBytes; const percentage = (100 * (transferredBytes / this.contentLength)).toFixed(1); const elapsedTime = Date.now() - this.startTime; const downloadSpeed = (transferredBytes / (1024 * 1024) / (elapsedTime / 1000)).toFixed(1); core.info(`Received ${transferredBytes} of ${this.contentLength} (${percentage}%), ${downloadSpeed} MBs/sec`); if (this.isDone()) { this.displayedComplete = true; } } /** * Returns a function used to handle TransferProgressEvents. */ onProgress() { return (progress) => { this.setReceivedBytes(progress.loadedBytes); }; } /** * Starts the timer that displays the stats. * * @param delayInMs the delay between each write */ startDisplayTimer(delayInMs = 1000) { const displayCallback = () => { this.display(); if (!this.isDone()) { this.timeoutHandle = setTimeout(displayCallback, delayInMs); } }; this.timeoutHandle = setTimeout(displayCallback, delayInMs); } /** * Stops the timer that displays the stats. As this typically indicates the download * is complete, this will display one last line, unless the last line has already * been written. */ stopDisplayTimer() { if (this.timeoutHandle) { clearTimeout(this.timeoutHandle); this.timeoutHandle = undefined; } this.display(); } } exports.DownloadProgress = DownloadProgress; /** * Download the cache using the Actions toolkit http-client * * @param archiveLocation the URL for the cache * @param archivePath the local path where the cache is saved */ function downloadCacheHttpClient(archiveLocation, archivePath) { return __awaiter(this, void 0, void 0, function* () { const writeStream = fs.createWriteStream(archivePath); const httpClient = new http_client_1.HttpClient('actions/cache'); const downloadResponse = yield (0, requestUtils_1.retryHttpClientResponse)('downloadCache', () => __awaiter(this, void 0, void 0, function* () { return httpClient.get(archiveLocation); })); // Abort download if no traffic received over the socket. downloadResponse.message.socket.setTimeout(constants_1.SocketTimeout, () => { downloadResponse.message.destroy(); core.debug(`Aborting download, socket timed out after ${constants_1.SocketTimeout} ms`); }); yield pipeResponseToStream(downloadResponse, writeStream); // Validate download size. const contentLengthHeader = downloadResponse.message.headers['content-length']; if (contentLengthHeader) { const expectedLength = parseInt(contentLengthHeader); const actualLength = utils.getArchiveFileSizeInBytes(archivePath); if (actualLength !== expectedLength) { throw new Error(`Incomplete download. Expected file size: ${expectedLength}, actual file size: ${actualLength}`); } } else { core.debug('Unable to validate download, no Content-Length header'); } }); } /** * Download the cache using the Actions toolkit http-client concurrently * * @param archiveLocation the URL for the cache * @param archivePath the local path where the cache is saved */ function downloadCacheHttpClientConcurrent(archiveLocation, archivePath, options) { return __awaiter(this, void 0, void 0, function* () { var _a; const archiveDescriptor = yield fs.promises.open(archivePath, 'w'); const httpClient = new http_client_1.HttpClient('actions/cache', undefined, { socketTimeout: options.timeoutInMs, keepAlive: true }); try { const res = yield (0, requestUtils_1.retryHttpClientResponse)('downloadCacheMetadata', () => __awaiter(this, void 0, void 0, function* () { return yield httpClient.request('HEAD', archiveLocation, null, {}); })); const lengthHeader = res.message.headers['content-length']; if (lengthHeader === undefined || lengthHeader === null) { throw new Error('Content-Length not found on blob response'); } const length = parseInt(lengthHeader); if (Number.isNaN(length)) { throw new Error(`Could not interpret Content-Length: ${length}`); } const downloads = []; const blockSize = 4 * 1024 * 1024; for (let offset = 0; offset < length; offset += blockSize) { const count = Math.min(blockSize, length - offset); downloads.push({ offset, promiseGetter: () => __awaiter(this, void 0, void 0, function* () { return yield downloadSegmentRetry(httpClient, archiveLocation, offset, count); }) }); } // reverse to use .pop instead of .shift downloads.reverse(); let actives = 0; let bytesDownloaded = 0; const progress = new DownloadProgress(length); progress.startDisplayTimer(); const progressFn = progress.onProgress(); const activeDownloads = []; let nextDownload; const waitAndWrite = () => __awaiter(this, void 0, void 0, function* () { const segment = yield Promise.race(Object.values(activeDownloads)); yield archiveDescriptor.write(segment.buffer, 0, segment.count, segment.offset); actives--; delete activeDownloads[segment.offset]; bytesDownloaded += segment.count; progressFn({ loadedBytes: bytesDownloaded }); }); while ((nextDownload = downloads.pop())) { activeDownloads[nextDownload.offset] = nextDownload.promiseGetter(); actives++; if (actives >= ((_a = options.downloadConcurrency) !== null && _a !== void 0 ? _a : 10)) { yield waitAndWrite(); } } while (actives > 0) { yield waitAndWrite(); } } finally { httpClient.dispose(); yield archiveDescriptor.close(); } }); } function downloadSegmentRetry(httpClient, archiveLocation, offset, count) { return __awaiter(this, void 0, void 0, function* () { const retries = 5; let failures = 0; while (true) { try { const timeout = 30000; const result = yield promiseWithTimeout(timeout, downloadSegment(httpClient, archiveLocation, offset, count)); if (typeof result === 'string') { throw new Error('downloadSegmentRetry failed due to timeout'); } return result; } catch (err) { if (failures >= retries) { throw err; } failures++; } } }); } function downloadSegment(httpClient, archiveLocation, offset, count) { return __awaiter(this, void 0, void 0, function* () { const partRes = yield (0, requestUtils_1.retryHttpClientResponse)('downloadCachePart', () => __awaiter(this, void 0, void 0, function* () { return yield httpClient.get(archiveLocation, { Range: `bytes=${offset}-${offset + count - 1}` }); })); if (!partRes.readBodyBuffer) { throw new Error('Expected HttpClientResponse to implement readBodyBuffer'); } return { offset, count, buffer: yield partRes.readBodyBuffer() }; }); } /** * Download the cache using the Azure Storage SDK. Only call this method if the * URL points to an Azure Storage endpoint. * * @param archiveLocation the URL for the cache * @param archivePath the local path where the cache is saved * @param options the download options with the defaults set */ function downloadCacheStorageSDK(archiveLocation, archivePath, options) { return __awaiter(this, void 0, void 0, function* () { var _a; const client = new storage_blob_1.BlockBlobClient(archiveLocation, undefined, { retryOptions: { // Override the timeout used when downloading each 4 MB chunk // The default is 2 min / MB, which is way too slow tryTimeoutInMs: options.timeoutInMs } }); const properties = yield client.getProperties(); const contentLength = (_a = properties.contentLength) !== null && _a !== void 0 ? _a : -1; if (contentLength < 0) { // We should never hit this condition, but just in case fall back to downloading the // file as one large stream core.debug('Unable to determine content length, downloading file with http-client...'); yield downloadCacheHttpClient(archiveLocation, archivePath); } else { // Use downloadToBuffer for faster downloads, since internally it splits the // file into 4 MB chunks which can then be parallelized and retried independently // // If the file exceeds the buffer maximum length (~1 GB on 32-bit systems and ~2 GB // on 64-bit systems), split the download into multiple segments // ~2 GB = 2147483647, beyond this, we start getting out of range error. So, capping it accordingly. // Updated segment size to 128MB = 134217728 bytes, to complete a segment faster and fail fast const maxSegmentSize = Math.min(134217728, buffer.constants.MAX_LENGTH); const downloadProgress = new DownloadProgress(contentLength); const fd = fs.openSync(archivePath, 'w'); try { downloadProgress.startDisplayTimer(); const controller = new abort_controller_1.AbortController(); const abortSignal = controller.signal; while (!downloadProgress.isDone()) { const segmentStart = downloadProgress.segmentOffset + downloadProgress.segmentSize; const segmentSize = Math.min(maxSegmentSize, contentLength - segmentStart); downloadProgress.nextSegment(segmentSize); const result = yield promiseWithTimeout(options.segmentTimeoutInMs || 3600000, client.downloadToBuffer(segmentStart, segmentSize, { abortSignal, concurrency: options.downloadConcurrency, onProgress: downloadProgress.onProgress() })); if (result === 'timeout') { controller.abort(); throw new Error('Aborting cache download as the download time exceeded the timeout.'); } else if (Buffer.isBuffer(result)) { fs.writeFileSync(fd, result); } } } finally { downloadProgress.stopDisplayTimer(); fs.closeSync(fd); } } }); } const promiseWithTimeout = (timeoutMs, promise) => __awaiter(void 0, void 0, void 0, function* () { let timeoutHandle; const timeoutPromise = new Promise(resolve => { timeoutHandle = setTimeout(() => resolve('timeout'), timeoutMs); }); return Promise.race([promise, timeoutPromise]).then(result => { clearTimeout(timeoutHandle); return result; }); }); //# sourceMappingURL=downloadUtils.js.map /***/ }), /***/ 32846: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.isSuccessStatusCode = isSuccessStatusCode; exports.isServerErrorStatusCode = isServerErrorStatusCode; exports.isRetryableStatusCode = isRetryableStatusCode; exports.retry = retry; exports.retryTypedResponse = retryTypedResponse; exports.retryHttpClientResponse = retryHttpClientResponse; const core = __importStar(__nccwpck_require__(37484)); const http_client_1 = __nccwpck_require__(54844); const constants_1 = __nccwpck_require__(58287); function isSuccessStatusCode(statusCode) { if (!statusCode) { return false; } return statusCode >= 200 && statusCode < 300; } function isServerErrorStatusCode(statusCode) { if (!statusCode) { return true; } return statusCode >= 500; } function isRetryableStatusCode(statusCode) { if (!statusCode) { return false; } const retryableStatusCodes = [ http_client_1.HttpCodes.BadGateway, http_client_1.HttpCodes.ServiceUnavailable, http_client_1.HttpCodes.GatewayTimeout ]; return retryableStatusCodes.includes(statusCode); } function sleep(milliseconds) { return __awaiter(this, void 0, void 0, function* () { return new Promise(resolve => setTimeout(resolve, milliseconds)); }); } function retry(name_1, method_1, getStatusCode_1) { return __awaiter(this, arguments, void 0, function* (name, method, getStatusCode, maxAttempts = constants_1.DefaultRetryAttempts, delay = constants_1.DefaultRetryDelay, onError = undefined) { let errorMessage = ''; let attempt = 1; while (attempt <= maxAttempts) { let response = undefined; let statusCode = undefined; let isRetryable = false; try { response = yield method(); } catch (error) { if (onError) { response = onError(error); } isRetryable = true; errorMessage = error.message; } if (response) { statusCode = getStatusCode(response); if (!isServerErrorStatusCode(statusCode)) { return response; } } if (statusCode) { isRetryable = isRetryableStatusCode(statusCode); errorMessage = `Cache service responded with ${statusCode}`; } core.debug(`${name} - Attempt ${attempt} of ${maxAttempts} failed with error: ${errorMessage}`); if (!isRetryable) { core.debug(`${name} - Error is not retryable`); break; } yield sleep(delay); attempt++; } throw Error(`${name} failed: ${errorMessage}`); }); } function retryTypedResponse(name_1, method_1) { return __awaiter(this, arguments, void 0, function* (name, method, maxAttempts = constants_1.DefaultRetryAttempts, delay = constants_1.DefaultRetryDelay) { return yield retry(name, method, (response) => response.statusCode, maxAttempts, delay, // If the error object contains the statusCode property, extract it and return // an TypedResponse so it can be processed by the retry logic. (error) => { if (error instanceof http_client_1.HttpClientError) { return { statusCode: error.statusCode, result: null, headers: {}, error }; } else { return undefined; } }); }); } function retryHttpClientResponse(name_1, method_1) { return __awaiter(this, arguments, void 0, function* (name, method, maxAttempts = constants_1.DefaultRetryAttempts, delay = constants_1.DefaultRetryDelay) { return yield retry(name, method, (response) => response.message.statusCode, maxAttempts, delay); }); } //# sourceMappingURL=requestUtils.js.map /***/ }), /***/ 96819: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.internalCacheTwirpClient = internalCacheTwirpClient; const core_1 = __nccwpck_require__(37484); const user_agent_1 = __nccwpck_require__(41899); const errors_1 = __nccwpck_require__(50263); const config_1 = __nccwpck_require__(17606); const cacheUtils_1 = __nccwpck_require__(98299); const auth_1 = __nccwpck_require__(44552); const http_client_1 = __nccwpck_require__(54844); const cache_twirp_client_1 = __nccwpck_require__(11486); const util_1 = __nccwpck_require__(27564); /** * This class is a wrapper around the CacheServiceClientJSON class generated by Twirp. * * It adds retry logic to the request method, which is not present in the generated client. * * This class is used to interact with cache service v2. */ class CacheServiceClient { constructor(userAgent, maxAttempts, baseRetryIntervalMilliseconds, retryMultiplier) { this.maxAttempts = 5; this.baseRetryIntervalMilliseconds = 3000; this.retryMultiplier = 1.5; const token = (0, cacheUtils_1.getRuntimeToken)(); this.baseUrl = (0, config_1.getCacheServiceURL)(); if (maxAttempts) { this.maxAttempts = maxAttempts; } if (baseRetryIntervalMilliseconds) { this.baseRetryIntervalMilliseconds = baseRetryIntervalMilliseconds; } if (retryMultiplier) { this.retryMultiplier = retryMultiplier; } this.httpClient = new http_client_1.HttpClient(userAgent, [ new auth_1.BearerCredentialHandler(token) ]); } // This function satisfies the Rpc interface. It is compatible with the JSON // JSON generated client. request(service, method, contentType, data) { return __awaiter(this, void 0, void 0, function* () { const url = new URL(`/twirp/${service}/${method}`, this.baseUrl).href; (0, core_1.debug)(`[Request] ${method} ${url}`); const headers = { 'Content-Type': contentType }; try { const { body } = yield this.retryableRequest(() => __awaiter(this, void 0, void 0, function* () { return this.httpClient.post(url, JSON.stringify(data), headers); })); return body; } catch (error) { throw new Error(`Failed to ${method}: ${error.message}`); } }); } retryableRequest(operation) { return __awaiter(this, void 0, void 0, function* () { let attempt = 0; let errorMessage = ''; let rawBody = ''; while (attempt < this.maxAttempts) { let isRetryable = false; try { const response = yield operation(); const statusCode = response.message.statusCode; rawBody = yield response.readBody(); (0, core_1.debug)(`[Response] - ${response.message.statusCode}`); (0, core_1.debug)(`Headers: ${JSON.stringify(response.message.headers, null, 2)}`); const body = JSON.parse(rawBody); (0, util_1.maskSecretUrls)(body); (0, core_1.debug)(`Body: ${JSON.stringify(body, null, 2)}`); if (this.isSuccessStatusCode(statusCode)) { return { response, body }; } isRetryable = this.isRetryableHttpStatusCode(statusCode); errorMessage = `Failed request: (${statusCode}) ${response.message.statusMessage}`; if (body.msg) { if (errors_1.UsageError.isUsageErrorMessage(body.msg)) { throw new errors_1.UsageError(); } errorMessage = `${errorMessage}: ${body.msg}`; } // Handle rate limiting - don't retry, just warn and exit // For more info, see https://docs.github.com/en/actions/reference/limits if (statusCode === http_client_1.HttpCodes.TooManyRequests) { const retryAfterHeader = response.message.headers['retry-after']; if (retryAfterHeader) { const parsedSeconds = parseInt(retryAfterHeader, 10); if (!isNaN(parsedSeconds) && parsedSeconds > 0) { (0, core_1.warning)(`You've hit a rate limit, your rate limit will reset in ${parsedSeconds} seconds`); } } throw new errors_1.RateLimitError(`Rate limited: ${errorMessage}`); } } catch (error) { if (error instanceof SyntaxError) { (0, core_1.debug)(`Raw Body: ${rawBody}`); } if (error instanceof errors_1.UsageError) { throw error; } if (error instanceof errors_1.RateLimitError) { throw error; } if (errors_1.NetworkError.isNetworkErrorCode(error === null || error === void 0 ? void 0 : error.code)) { throw new errors_1.NetworkError(error === null || error === void 0 ? void 0 : error.code); } isRetryable = true; errorMessage = error.message; } if (!isRetryable) { throw new Error(`Received non-retryable error: ${errorMessage}`); } if (attempt + 1 === this.maxAttempts) { throw new Error(`Failed to make request after ${this.maxAttempts} attempts: ${errorMessage}`); } const retryTimeMilliseconds = this.getExponentialRetryTimeMilliseconds(attempt); (0, core_1.info)(`Attempt ${attempt + 1} of ${this.maxAttempts} failed with error: ${errorMessage}. Retrying request in ${retryTimeMilliseconds} ms...`); yield this.sleep(retryTimeMilliseconds); attempt++; } throw new Error(`Request failed`); }); } isSuccessStatusCode(statusCode) { if (!statusCode) return false; return statusCode >= 200 && statusCode < 300; } isRetryableHttpStatusCode(statusCode) { if (!statusCode) return false; const retryableStatusCodes = [ http_client_1.HttpCodes.BadGateway, http_client_1.HttpCodes.GatewayTimeout, http_client_1.HttpCodes.InternalServerError, http_client_1.HttpCodes.ServiceUnavailable ]; return retryableStatusCodes.includes(statusCode); } sleep(milliseconds) { return __awaiter(this, void 0, void 0, function* () { return new Promise(resolve => setTimeout(resolve, milliseconds)); }); } getExponentialRetryTimeMilliseconds(attempt) { if (attempt < 0) { throw new Error('attempt should be a positive integer'); } if (attempt === 0) { return this.baseRetryIntervalMilliseconds; } const minTime = this.baseRetryIntervalMilliseconds * Math.pow(this.retryMultiplier, attempt); const maxTime = minTime * this.retryMultiplier; // returns a random number between minTime and maxTime (exclusive) return Math.trunc(Math.random() * (maxTime - minTime) + minTime); } } function internalCacheTwirpClient(options) { const client = new CacheServiceClient((0, user_agent_1.getUserAgentString)(), options === null || options === void 0 ? void 0 : options.maxAttempts, options === null || options === void 0 ? void 0 : options.retryIntervalMs, options === null || options === void 0 ? void 0 : options.retryMultiplier); return new cache_twirp_client_1.CacheServiceClientJSON(client); } //# sourceMappingURL=cacheTwirpClient.js.map /***/ }), /***/ 50263: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.RateLimitError = exports.UsageError = exports.NetworkError = exports.GHESNotSupportedError = exports.CacheNotFoundError = exports.InvalidResponseError = exports.FilesNotFoundError = void 0; class FilesNotFoundError extends Error { constructor(files = []) { let message = 'No files were found to upload'; if (files.length > 0) { message += `: ${files.join(', ')}`; } super(message); this.files = files; this.name = 'FilesNotFoundError'; } } exports.FilesNotFoundError = FilesNotFoundError; class InvalidResponseError extends Error { constructor(message) { super(message); this.name = 'InvalidResponseError'; } } exports.InvalidResponseError = InvalidResponseError; class CacheNotFoundError extends Error { constructor(message = 'Cache not found') { super(message); this.name = 'CacheNotFoundError'; } } exports.CacheNotFoundError = CacheNotFoundError; class GHESNotSupportedError extends Error { constructor(message = '@actions/cache v4.1.4+, actions/cache/save@v4+ and actions/cache/restore@v4+ are not currently supported on GHES.') { super(message); this.name = 'GHESNotSupportedError'; } } exports.GHESNotSupportedError = GHESNotSupportedError; class NetworkError extends Error { constructor(code) { const message = `Unable to make request: ${code}\nIf you are using self-hosted runners, please make sure your runner has access to all GitHub endpoints: https://docs.github.com/en/actions/hosting-your-own-runners/managing-self-hosted-runners/about-self-hosted-runners#communication-between-self-hosted-runners-and-github`; super(message); this.code = code; this.name = 'NetworkError'; } } exports.NetworkError = NetworkError; NetworkError.isNetworkErrorCode = (code) => { if (!code) return false; return [ 'ECONNRESET', 'ENOTFOUND', 'ETIMEDOUT', 'ECONNREFUSED', 'EHOSTUNREACH' ].includes(code); }; class UsageError extends Error { constructor() { const message = `Cache storage quota has been hit. Unable to upload any new cache entries. Usage is recalculated every 6-12 hours.\nMore info on storage limits: https://docs.github.com/en/billing/managing-billing-for-github-actions/about-billing-for-github-actions#calculating-minute-and-storage-spending`; super(message); this.name = 'UsageError'; } } exports.UsageError = UsageError; UsageError.isUsageErrorMessage = (msg) => { if (!msg) return false; return msg.includes('insufficient usage'); }; class RateLimitError extends Error { constructor(message) { super(message); this.name = 'RateLimitError'; } } exports.RateLimitError = RateLimitError; //# sourceMappingURL=errors.js.map /***/ }), /***/ 41899: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.getUserAgentString = getUserAgentString; // eslint-disable-next-line @typescript-eslint/no-var-requires, @typescript-eslint/no-require-imports const packageJson = __nccwpck_require__(64012); /** * Ensure that this User Agent String is used in all HTTP calls so that we can monitor telemetry between different versions of this package */ function getUserAgentString() { return `@actions/cache-${packageJson.version}`; } //# sourceMappingURL=user-agent.js.map /***/ }), /***/ 27564: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.maskSigUrl = maskSigUrl; exports.maskSecretUrls = maskSecretUrls; const core_1 = __nccwpck_require__(37484); /** * Masks the `sig` parameter in a URL and sets it as a secret. * * @param url - The URL containing the signature parameter to mask * @remarks * This function attempts to parse the provided URL and identify the 'sig' query parameter. * If found, it registers both the raw and URL-encoded signature values as secrets using * the Actions `setSecret` API, which prevents them from being displayed in logs. * * The function handles errors gracefully if URL parsing fails, logging them as debug messages. * * @example * ```typescript * // Mask a signature in an Azure SAS token URL * maskSigUrl('https://example.blob.core.windows.net/container/file.txt?sig=abc123&se=2023-01-01'); * ``` */ function maskSigUrl(url) { if (!url) return; try { const parsedUrl = new URL(url); const signature = parsedUrl.searchParams.get('sig'); if (signature) { (0, core_1.setSecret)(signature); (0, core_1.setSecret)(encodeURIComponent(signature)); } } catch (error) { (0, core_1.debug)(`Failed to parse URL: ${url} ${error instanceof Error ? error.message : String(error)}`); } } /** * Masks sensitive information in URLs containing signature parameters. * Currently supports masking 'sig' parameters in the 'signed_upload_url' * and 'signed_download_url' properties of the provided object. * * @param body - The object should contain a signature * @remarks * This function extracts URLs from the object properties and calls maskSigUrl * on each one to redact sensitive signature information. The function doesn't * modify the original object; it only marks the signatures as secrets for * logging purposes. * * @example * ```typescript * const responseBody = { * signed_upload_url: 'https://blob.core.windows.net/?sig=abc123', * signed_download_url: 'https://blob.core/windows.net/?sig=def456' * }; * maskSecretUrls(responseBody); * ``` */ function maskSecretUrls(body) { if (typeof body !== 'object' || body === null) { (0, core_1.debug)('body is not an object or is null'); return; } if ('signed_upload_url' in body && typeof body.signed_upload_url === 'string') { maskSigUrl(body.signed_upload_url); } if ('signed_download_url' in body && typeof body.signed_download_url === 'string') { maskSigUrl(body.signed_download_url); } } //# sourceMappingURL=util.js.map /***/ }), /***/ 95321: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.listTar = listTar; exports.extractTar = extractTar; exports.createTar = createTar; const exec_1 = __nccwpck_require__(95236); const io = __importStar(__nccwpck_require__(91028)); const fs_1 = __nccwpck_require__(79896); const path = __importStar(__nccwpck_require__(16928)); const utils = __importStar(__nccwpck_require__(98299)); const constants_1 = __nccwpck_require__(58287); const IS_WINDOWS = process.platform === 'win32'; // Returns tar path and type: BSD or GNU function getTarPath() { return __awaiter(this, void 0, void 0, function* () { switch (process.platform) { case 'win32': { const gnuTar = yield utils.getGnuTarPathOnWindows(); const systemTar = constants_1.SystemTarPathOnWindows; if (gnuTar) { // Use GNUtar as default on windows return { path: gnuTar, type: constants_1.ArchiveToolType.GNU }; } else if ((0, fs_1.existsSync)(systemTar)) { return { path: systemTar, type: constants_1.ArchiveToolType.BSD }; } break; } case 'darwin': { const gnuTar = yield io.which('gtar', false); if (gnuTar) { // fix permission denied errors when extracting BSD tar archive with GNU tar - https://github.com/actions/cache/issues/527 return { path: gnuTar, type: constants_1.ArchiveToolType.GNU }; } else { return { path: yield io.which('tar', true), type: constants_1.ArchiveToolType.BSD }; } } default: break; } // Default assumption is GNU tar is present in path return { path: yield io.which('tar', true), type: constants_1.ArchiveToolType.GNU }; }); } // Return arguments for tar as per tarPath, compressionMethod, method type and os function getTarArgs(tarPath_1, compressionMethod_1, type_1) { return __awaiter(this, arguments, void 0, function* (tarPath, compressionMethod, type, archivePath = '') { const args = [`"${tarPath.path}"`]; const cacheFileName = utils.getCacheFileName(compressionMethod); const tarFile = 'cache.tar'; const workingDirectory = getWorkingDirectory(); // Speficic args for BSD tar on windows for workaround const BSD_TAR_ZSTD = tarPath.type === constants_1.ArchiveToolType.BSD && compressionMethod !== constants_1.CompressionMethod.Gzip && IS_WINDOWS; // Method specific args switch (type) { case 'create': args.push('--posix', '-cf', BSD_TAR_ZSTD ? tarFile : cacheFileName.replace(new RegExp(`\\${path.sep}`, 'g'), '/'), '--exclude', BSD_TAR_ZSTD ? tarFile : cacheFileName.replace(new RegExp(`\\${path.sep}`, 'g'), '/'), '-P', '-C', workingDirectory.replace(new RegExp(`\\${path.sep}`, 'g'), '/'), '--files-from', constants_1.ManifestFilename); break; case 'extract': args.push('-xf', BSD_TAR_ZSTD ? tarFile : archivePath.replace(new RegExp(`\\${path.sep}`, 'g'), '/'), '-P', '-C', workingDirectory.replace(new RegExp(`\\${path.sep}`, 'g'), '/')); break; case 'list': args.push('-tf', BSD_TAR_ZSTD ? tarFile : archivePath.replace(new RegExp(`\\${path.sep}`, 'g'), '/'), '-P'); break; } // Platform specific args if (tarPath.type === constants_1.ArchiveToolType.GNU) { switch (process.platform) { case 'win32': args.push('--force-local'); break; case 'darwin': args.push('--delay-directory-restore'); break; } } return args; }); } // Returns commands to run tar and compression program function getCommands(compressionMethod_1, type_1) { return __awaiter(this, arguments, void 0, function* (compressionMethod, type, archivePath = '') { let args; const tarPath = yield getTarPath(); const tarArgs = yield getTarArgs(tarPath, compressionMethod, type, archivePath); const compressionArgs = type !== 'create' ? yield getDecompressionProgram(tarPath, compressionMethod, archivePath) : yield getCompressionProgram(tarPath, compressionMethod); const BSD_TAR_ZSTD = tarPath.type === constants_1.ArchiveToolType.BSD && compressionMethod !== constants_1.CompressionMethod.Gzip && IS_WINDOWS; if (BSD_TAR_ZSTD && type !== 'create') { args = [[...compressionArgs].join(' '), [...tarArgs].join(' ')]; } else { args = [[...tarArgs].join(' '), [...compressionArgs].join(' ')]; } if (BSD_TAR_ZSTD) { return args; } return [args.join(' ')]; }); } function getWorkingDirectory() { var _a; return (_a = process.env['GITHUB_WORKSPACE']) !== null && _a !== void 0 ? _a : process.cwd(); } // Common function for extractTar and listTar to get the compression method function getDecompressionProgram(tarPath, compressionMethod, archivePath) { return __awaiter(this, void 0, void 0, function* () { // -d: Decompress. // unzstd is equivalent to 'zstd -d' // --long=#: Enables long distance matching with # bits. Maximum is 30 (1GB) on 32-bit OS and 31 (2GB) on 64-bit. // Using 30 here because we also support 32-bit self-hosted runners. const BSD_TAR_ZSTD = tarPath.type === constants_1.ArchiveToolType.BSD && compressionMethod !== constants_1.CompressionMethod.Gzip && IS_WINDOWS; switch (compressionMethod) { case constants_1.CompressionMethod.Zstd: return BSD_TAR_ZSTD ? [ 'zstd -d --long=30 --force -o', constants_1.TarFilename, archivePath.replace(new RegExp(`\\${path.sep}`, 'g'), '/') ] : [ '--use-compress-program', IS_WINDOWS ? '"zstd -d --long=30"' : 'unzstd --long=30' ]; case constants_1.CompressionMethod.ZstdWithoutLong: return BSD_TAR_ZSTD ? [ 'zstd -d --force -o', constants_1.TarFilename, archivePath.replace(new RegExp(`\\${path.sep}`, 'g'), '/') ] : ['--use-compress-program', IS_WINDOWS ? '"zstd -d"' : 'unzstd']; default: return ['-z']; } }); } // Used for creating the archive // -T#: Compress using # working thread. If # is 0, attempt to detect and use the number of physical CPU cores. // zstdmt is equivalent to 'zstd -T0' // --long=#: Enables long distance matching with # bits. Maximum is 30 (1GB) on 32-bit OS and 31 (2GB) on 64-bit. // Using 30 here because we also support 32-bit self-hosted runners. // Long range mode is added to zstd in v1.3.2 release, so we will not use --long in older version of zstd. function getCompressionProgram(tarPath, compressionMethod) { return __awaiter(this, void 0, void 0, function* () { const cacheFileName = utils.getCacheFileName(compressionMethod); const BSD_TAR_ZSTD = tarPath.type === constants_1.ArchiveToolType.BSD && compressionMethod !== constants_1.CompressionMethod.Gzip && IS_WINDOWS; switch (compressionMethod) { case constants_1.CompressionMethod.Zstd: return BSD_TAR_ZSTD ? [ 'zstd -T0 --long=30 --force -o', cacheFileName.replace(new RegExp(`\\${path.sep}`, 'g'), '/'), constants_1.TarFilename ] : [ '--use-compress-program', IS_WINDOWS ? '"zstd -T0 --long=30"' : 'zstdmt --long=30' ]; case constants_1.CompressionMethod.ZstdWithoutLong: return BSD_TAR_ZSTD ? [ 'zstd -T0 --force -o', cacheFileName.replace(new RegExp(`\\${path.sep}`, 'g'), '/'), constants_1.TarFilename ] : ['--use-compress-program', IS_WINDOWS ? '"zstd -T0"' : 'zstdmt']; default: return ['-z']; } }); } // Executes all commands as separate processes function execCommands(commands, cwd) { return __awaiter(this, void 0, void 0, function* () { for (const command of commands) { try { yield (0, exec_1.exec)(command, undefined, { cwd, env: Object.assign(Object.assign({}, process.env), { MSYS: 'winsymlinks:nativestrict' }) }); } catch (error) { throw new Error(`${command.split(' ')[0]} failed with error: ${error === null || error === void 0 ? void 0 : error.message}`); } } }); } // List the contents of a tar function listTar(archivePath, compressionMethod) { return __awaiter(this, void 0, void 0, function* () { const commands = yield getCommands(compressionMethod, 'list', archivePath); yield execCommands(commands); }); } // Extract a tar function extractTar(archivePath, compressionMethod) { return __awaiter(this, void 0, void 0, function* () { // Create directory to extract tar into const workingDirectory = getWorkingDirectory(); yield io.mkdirP(workingDirectory); const commands = yield getCommands(compressionMethod, 'extract', archivePath); yield execCommands(commands); }); } // Create a tar function createTar(archiveFolder, sourceDirectories, compressionMethod) { return __awaiter(this, void 0, void 0, function* () { // Write source directories to manifest.txt to avoid command length limits (0, fs_1.writeFileSync)(path.join(archiveFolder, constants_1.ManifestFilename), sourceDirectories.join('\n')); const commands = yield getCommands(compressionMethod, 'create'); yield execCommands(commands, archiveFolder); }); } //# sourceMappingURL=tar.js.map /***/ }), /***/ 35268: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.UploadProgress = void 0; exports.uploadCacheArchiveSDK = uploadCacheArchiveSDK; const core = __importStar(__nccwpck_require__(37484)); const storage_blob_1 = __nccwpck_require__(71400); const errors_1 = __nccwpck_require__(50263); /** * Class for tracking the upload state and displaying stats. */ class UploadProgress { constructor(contentLength) { this.contentLength = contentLength; this.sentBytes = 0; this.displayedComplete = false; this.startTime = Date.now(); } /** * Sets the number of bytes sent * * @param sentBytes the number of bytes sent */ setSentBytes(sentBytes) { this.sentBytes = sentBytes; } /** * Returns the total number of bytes transferred. */ getTransferredBytes() { return this.sentBytes; } /** * Returns true if the upload is complete. */ isDone() { return this.getTransferredBytes() === this.contentLength; } /** * Prints the current upload stats. Once the upload completes, this will print one * last line and then stop. */ display() { if (this.displayedComplete) { return; } const transferredBytes = this.sentBytes; const percentage = (100 * (transferredBytes / this.contentLength)).toFixed(1); const elapsedTime = Date.now() - this.startTime; const uploadSpeed = (transferredBytes / (1024 * 1024) / (elapsedTime / 1000)).toFixed(1); core.info(`Sent ${transferredBytes} of ${this.contentLength} (${percentage}%), ${uploadSpeed} MBs/sec`); if (this.isDone()) { this.displayedComplete = true; } } /** * Returns a function used to handle TransferProgressEvents. */ onProgress() { return (progress) => { this.setSentBytes(progress.loadedBytes); }; } /** * Starts the timer that displays the stats. * * @param delayInMs the delay between each write */ startDisplayTimer(delayInMs = 1000) { const displayCallback = () => { this.display(); if (!this.isDone()) { this.timeoutHandle = setTimeout(displayCallback, delayInMs); } }; this.timeoutHandle = setTimeout(displayCallback, delayInMs); } /** * Stops the timer that displays the stats. As this typically indicates the upload * is complete, this will display one last line, unless the last line has already * been written. */ stopDisplayTimer() { if (this.timeoutHandle) { clearTimeout(this.timeoutHandle); this.timeoutHandle = undefined; } this.display(); } } exports.UploadProgress = UploadProgress; /** * Uploads a cache archive directly to Azure Blob Storage using the Azure SDK. * This function will display progress information to the console. Concurrency of the * upload is determined by the calling functions. * * @param signedUploadURL * @param archivePath * @param options * @returns */ function uploadCacheArchiveSDK(signedUploadURL, archivePath, options) { return __awaiter(this, void 0, void 0, function* () { var _a; const blobClient = new storage_blob_1.BlobClient(signedUploadURL); const blockBlobClient = blobClient.getBlockBlobClient(); const uploadProgress = new UploadProgress((_a = options === null || options === void 0 ? void 0 : options.archiveSizeBytes) !== null && _a !== void 0 ? _a : 0); // Specify data transfer options const uploadOptions = { blockSize: options === null || options === void 0 ? void 0 : options.uploadChunkSize, concurrency: options === null || options === void 0 ? void 0 : options.uploadConcurrency, // maximum number of parallel transfer workers maxSingleShotSize: 128 * 1024 * 1024, // 128 MiB initial transfer size onProgress: uploadProgress.onProgress() }; try { uploadProgress.startDisplayTimer(); core.debug(`BlobClient: ${blobClient.name}:${blobClient.accountName}:${blobClient.containerName}`); const response = yield blockBlobClient.uploadFile(archivePath, uploadOptions); // TODO: better management of non-retryable errors if (response._response.status >= 400) { throw new errors_1.InvalidResponseError(`uploadCacheArchiveSDK: upload failed with status code ${response._response.status}`); } return response; } catch (error) { core.warning(`uploadCacheArchiveSDK: internal error uploading cache archive: ${error.message}`); throw error; } finally { uploadProgress.stopDisplayTimer(); } }); } //# sourceMappingURL=uploadUtils.js.map /***/ }), /***/ 98356: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); Object.defineProperty(exports, "__esModule", ({ value: true })); exports.getUploadOptions = getUploadOptions; exports.getDownloadOptions = getDownloadOptions; const core = __importStar(__nccwpck_require__(37484)); /** * Returns a copy of the upload options with defaults filled in. * * @param copy the original upload options */ function getUploadOptions(copy) { // Defaults if not overriden const result = { useAzureSdk: false, uploadConcurrency: 4, uploadChunkSize: 32 * 1024 * 1024 }; if (copy) { if (typeof copy.useAzureSdk === 'boolean') { result.useAzureSdk = copy.useAzureSdk; } if (typeof copy.uploadConcurrency === 'number') { result.uploadConcurrency = copy.uploadConcurrency; } if (typeof copy.uploadChunkSize === 'number') { result.uploadChunkSize = copy.uploadChunkSize; } } /** * Add env var overrides */ // Cap the uploadConcurrency at 32 result.uploadConcurrency = !isNaN(Number(process.env['CACHE_UPLOAD_CONCURRENCY'])) ? Math.min(32, Number(process.env['CACHE_UPLOAD_CONCURRENCY'])) : result.uploadConcurrency; // Cap the uploadChunkSize at 128MiB result.uploadChunkSize = !isNaN(Number(process.env['CACHE_UPLOAD_CHUNK_SIZE'])) ? Math.min(128 * 1024 * 1024, Number(process.env['CACHE_UPLOAD_CHUNK_SIZE']) * 1024 * 1024) : result.uploadChunkSize; core.debug(`Use Azure SDK: ${result.useAzureSdk}`); core.debug(`Upload concurrency: ${result.uploadConcurrency}`); core.debug(`Upload chunk size: ${result.uploadChunkSize}`); return result; } /** * Returns a copy of the download options with defaults filled in. * * @param copy the original download options */ function getDownloadOptions(copy) { const result = { useAzureSdk: false, concurrentBlobDownloads: true, downloadConcurrency: 8, timeoutInMs: 30000, segmentTimeoutInMs: 600000, lookupOnly: false }; if (copy) { if (typeof copy.useAzureSdk === 'boolean') { result.useAzureSdk = copy.useAzureSdk; } if (typeof copy.concurrentBlobDownloads === 'boolean') { result.concurrentBlobDownloads = copy.concurrentBlobDownloads; } if (typeof copy.downloadConcurrency === 'number') { result.downloadConcurrency = copy.downloadConcurrency; } if (typeof copy.timeoutInMs === 'number') { result.timeoutInMs = copy.timeoutInMs; } if (typeof copy.segmentTimeoutInMs === 'number') { result.segmentTimeoutInMs = copy.segmentTimeoutInMs; } if (typeof copy.lookupOnly === 'boolean') { result.lookupOnly = copy.lookupOnly; } } const segmentDownloadTimeoutMins = process.env['SEGMENT_DOWNLOAD_TIMEOUT_MINS']; if (segmentDownloadTimeoutMins && !isNaN(Number(segmentDownloadTimeoutMins)) && isFinite(Number(segmentDownloadTimeoutMins))) { result.segmentTimeoutInMs = Number(segmentDownloadTimeoutMins) * 60 * 1000; } core.debug(`Use Azure SDK: ${result.useAzureSdk}`); core.debug(`Download concurrency: ${result.downloadConcurrency}`); core.debug(`Request timeout (ms): ${result.timeoutInMs}`); core.debug(`Cache segment download timeout mins env var: ${process.env['SEGMENT_DOWNLOAD_TIMEOUT_MINS']}`); core.debug(`Segment download timeout (ms): ${result.segmentTimeoutInMs}`); core.debug(`Lookup only: ${result.lookupOnly}`); return result; } //# sourceMappingURL=options.js.map /***/ }), /***/ 35509: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; var _a; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.READONLY = exports.UV_FS_O_EXLOCK = exports.IS_WINDOWS = exports.unlink = exports.symlink = exports.stat = exports.rmdir = exports.rm = exports.rename = exports.readdir = exports.open = exports.mkdir = exports.lstat = exports.copyFile = exports.chmod = void 0; exports.readlink = readlink; exports.exists = exists; exports.isDirectory = isDirectory; exports.isRooted = isRooted; exports.tryGetExecutablePath = tryGetExecutablePath; exports.getCmdPath = getCmdPath; const fs = __importStar(__nccwpck_require__(79896)); const path = __importStar(__nccwpck_require__(16928)); _a = fs.promises // export const {open} = 'fs' , exports.chmod = _a.chmod, exports.copyFile = _a.copyFile, exports.lstat = _a.lstat, exports.mkdir = _a.mkdir, exports.open = _a.open, exports.readdir = _a.readdir, exports.rename = _a.rename, exports.rm = _a.rm, exports.rmdir = _a.rmdir, exports.stat = _a.stat, exports.symlink = _a.symlink, exports.unlink = _a.unlink; // export const {open} = 'fs' exports.IS_WINDOWS = process.platform === 'win32'; /** * Custom implementation of readlink to ensure Windows junctions * maintain trailing backslash for backward compatibility with Node.js < 24 * * In Node.js 20, Windows junctions (directory symlinks) always returned paths * with trailing backslashes. Node.js 24 removed this behavior, which breaks * code that relied on this format for path operations. * * This implementation restores the Node 20 behavior by adding a trailing * backslash to all junction results on Windows. */ function readlink(fsPath) { return __awaiter(this, void 0, void 0, function* () { const result = yield fs.promises.readlink(fsPath); // On Windows, restore Node 20 behavior: add trailing backslash to all results // since junctions on Windows are always directory links if (exports.IS_WINDOWS && !result.endsWith('\\')) { return `${result}\\`; } return result; }); } // See https://github.com/nodejs/node/blob/d0153aee367422d0858105abec186da4dff0a0c5/deps/uv/include/uv/win.h#L691 exports.UV_FS_O_EXLOCK = 0x10000000; exports.READONLY = fs.constants.O_RDONLY; function exists(fsPath) { return __awaiter(this, void 0, void 0, function* () { try { yield (0, exports.stat)(fsPath); } catch (err) { if (err.code === 'ENOENT') { return false; } throw err; } return true; }); } function isDirectory(fsPath_1) { return __awaiter(this, arguments, void 0, function* (fsPath, useStat = false) { const stats = useStat ? yield (0, exports.stat)(fsPath) : yield (0, exports.lstat)(fsPath); return stats.isDirectory(); }); } /** * On OSX/Linux, true if path starts with '/'. On Windows, true for paths like: * \, \hello, \\hello\share, C:, and C:\hello (and corresponding alternate separator cases). */ function isRooted(p) { p = normalizeSeparators(p); if (!p) { throw new Error('isRooted() parameter "p" cannot be empty'); } if (exports.IS_WINDOWS) { return (p.startsWith('\\') || /^[A-Z]:/i.test(p) // e.g. \ or \hello or \\hello ); // e.g. C: or C:\hello } return p.startsWith('/'); } /** * Best effort attempt to determine whether a file exists and is executable. * @param filePath file path to check * @param extensions additional file extensions to try * @return if file exists and is executable, returns the file path. otherwise empty string. */ function tryGetExecutablePath(filePath, extensions) { return __awaiter(this, void 0, void 0, function* () { let stats = undefined; try { // test file exists stats = yield (0, exports.stat)(filePath); } catch (err) { if (err.code !== 'ENOENT') { // eslint-disable-next-line no-console console.log(`Unexpected error attempting to determine if executable file exists '${filePath}': ${err}`); } } if (stats && stats.isFile()) { if (exports.IS_WINDOWS) { // on Windows, test for valid extension const upperExt = path.extname(filePath).toUpperCase(); if (extensions.some(validExt => validExt.toUpperCase() === upperExt)) { return filePath; } } else { if (isUnixExecutable(stats)) { return filePath; } } } // try each extension const originalFilePath = filePath; for (const extension of extensions) { filePath = originalFilePath + extension; stats = undefined; try { stats = yield (0, exports.stat)(filePath); } catch (err) { if (err.code !== 'ENOENT') { // eslint-disable-next-line no-console console.log(`Unexpected error attempting to determine if executable file exists '${filePath}': ${err}`); } } if (stats && stats.isFile()) { if (exports.IS_WINDOWS) { // preserve the case of the actual file (since an extension was appended) try { const directory = path.dirname(filePath); const upperName = path.basename(filePath).toUpperCase(); for (const actualName of yield (0, exports.readdir)(directory)) { if (upperName === actualName.toUpperCase()) { filePath = path.join(directory, actualName); break; } } } catch (err) { // eslint-disable-next-line no-console console.log(`Unexpected error attempting to determine the actual case of the file '${filePath}': ${err}`); } return filePath; } else { if (isUnixExecutable(stats)) { return filePath; } } } } return ''; }); } function normalizeSeparators(p) { p = p || ''; if (exports.IS_WINDOWS) { // convert slashes on Windows p = p.replace(/\//g, '\\'); // remove redundant slashes return p.replace(/\\\\+/g, '\\'); } // remove redundant slashes return p.replace(/\/\/+/g, '/'); } // on Mac/Linux, test the execute bit // R W X R W X R W X // 256 128 64 32 16 8 4 2 1 function isUnixExecutable(stats) { return ((stats.mode & 1) > 0 || ((stats.mode & 8) > 0 && process.getgid !== undefined && stats.gid === process.getgid()) || ((stats.mode & 64) > 0 && process.getuid !== undefined && stats.uid === process.getuid())); } // Get the path of cmd.exe in windows function getCmdPath() { var _a; return (_a = process.env['COMSPEC']) !== null && _a !== void 0 ? _a : `cmd.exe`; } //# sourceMappingURL=io-util.js.map /***/ }), /***/ 91028: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.cp = cp; exports.mv = mv; exports.rmRF = rmRF; exports.mkdirP = mkdirP; exports.which = which; exports.findInPath = findInPath; const assert_1 = __nccwpck_require__(42613); const path = __importStar(__nccwpck_require__(16928)); const ioUtil = __importStar(__nccwpck_require__(35509)); /** * Copies a file or folder. * Based off of shelljs - https://github.com/shelljs/shelljs/blob/9237f66c52e5daa40458f94f9565e18e8132f5a6/src/cp.js * * @param source source path * @param dest destination path * @param options optional. See CopyOptions. */ function cp(source_1, dest_1) { return __awaiter(this, arguments, void 0, function* (source, dest, options = {}) { const { force, recursive, copySourceDirectory } = readCopyOptions(options); const destStat = (yield ioUtil.exists(dest)) ? yield ioUtil.stat(dest) : null; // Dest is an existing file, but not forcing if (destStat && destStat.isFile() && !force) { return; } // If dest is an existing directory, should copy inside. const newDest = destStat && destStat.isDirectory() && copySourceDirectory ? path.join(dest, path.basename(source)) : dest; if (!(yield ioUtil.exists(source))) { throw new Error(`no such file or directory: ${source}`); } const sourceStat = yield ioUtil.stat(source); if (sourceStat.isDirectory()) { if (!recursive) { throw new Error(`Failed to copy. ${source} is a directory, but tried to copy without recursive flag.`); } else { yield cpDirRecursive(source, newDest, 0, force); } } else { if (path.relative(source, newDest) === '') { // a file cannot be copied to itself throw new Error(`'${newDest}' and '${source}' are the same file`); } yield copyFile(source, newDest, force); } }); } /** * Moves a path. * * @param source source path * @param dest destination path * @param options optional. See MoveOptions. */ function mv(source_1, dest_1) { return __awaiter(this, arguments, void 0, function* (source, dest, options = {}) { if (yield ioUtil.exists(dest)) { let destExists = true; if (yield ioUtil.isDirectory(dest)) { // If dest is directory copy src into dest dest = path.join(dest, path.basename(source)); destExists = yield ioUtil.exists(dest); } if (destExists) { if (options.force == null || options.force) { yield rmRF(dest); } else { throw new Error('Destination already exists'); } } } yield mkdirP(path.dirname(dest)); yield ioUtil.rename(source, dest); }); } /** * Remove a path recursively with force * * @param inputPath path to remove */ function rmRF(inputPath) { return __awaiter(this, void 0, void 0, function* () { if (ioUtil.IS_WINDOWS) { // Check for invalid characters // https://docs.microsoft.com/en-us/windows/win32/fileio/naming-a-file if (/[*"<>|]/.test(inputPath)) { throw new Error('File path must not contain `*`, `"`, `<`, `>` or `|` on Windows'); } } try { // note if path does not exist, error is silent yield ioUtil.rm(inputPath, { force: true, maxRetries: 3, recursive: true, retryDelay: 300 }); } catch (err) { throw new Error(`File was unable to be removed ${err}`); } }); } /** * Make a directory. Creates the full path with folders in between * Will throw if it fails * * @param fsPath path to create * @returns Promise */ function mkdirP(fsPath) { return __awaiter(this, void 0, void 0, function* () { (0, assert_1.ok)(fsPath, 'a path argument must be provided'); yield ioUtil.mkdir(fsPath, { recursive: true }); }); } /** * Returns path of a tool had the tool actually been invoked. Resolves via paths. * If you check and the tool does not exist, it will throw. * * @param tool name of the tool * @param check whether to check if tool exists * @returns Promise path to tool */ function which(tool, check) { return __awaiter(this, void 0, void 0, function* () { if (!tool) { throw new Error("parameter 'tool' is required"); } // recursive when check=true if (check) { const result = yield which(tool, false); if (!result) { if (ioUtil.IS_WINDOWS) { throw new Error(`Unable to locate executable file: ${tool}. Please verify either the file path exists or the file can be found within a directory specified by the PATH environment variable. Also verify the file has a valid extension for an executable file.`); } else { throw new Error(`Unable to locate executable file: ${tool}. Please verify either the file path exists or the file can be found within a directory specified by the PATH environment variable. Also check the file mode to verify the file is executable.`); } } return result; } const matches = yield findInPath(tool); if (matches && matches.length > 0) { return matches[0]; } return ''; }); } /** * Returns a list of all occurrences of the given tool on the system path. * * @returns Promise the paths of the tool */ function findInPath(tool) { return __awaiter(this, void 0, void 0, function* () { if (!tool) { throw new Error("parameter 'tool' is required"); } // build the list of extensions to try const extensions = []; if (ioUtil.IS_WINDOWS && process.env['PATHEXT']) { for (const extension of process.env['PATHEXT'].split(path.delimiter)) { if (extension) { extensions.push(extension); } } } // if it's rooted, return it if exists. otherwise return empty. if (ioUtil.isRooted(tool)) { const filePath = yield ioUtil.tryGetExecutablePath(tool, extensions); if (filePath) { return [filePath]; } return []; } // if any path separators, return empty if (tool.includes(path.sep)) { return []; } // build the list of directories // // Note, technically "where" checks the current directory on Windows. From a toolkit perspective, // it feels like we should not do this. Checking the current directory seems like more of a use // case of a shell, and the which() function exposed by the toolkit should strive for consistency // across platforms. const directories = []; if (process.env.PATH) { for (const p of process.env.PATH.split(path.delimiter)) { if (p) { directories.push(p); } } } // find all matches const matches = []; for (const directory of directories) { const filePath = yield ioUtil.tryGetExecutablePath(path.join(directory, tool), extensions); if (filePath) { matches.push(filePath); } } return matches; }); } function readCopyOptions(options) { const force = options.force == null ? true : options.force; const recursive = Boolean(options.recursive); const copySourceDirectory = options.copySourceDirectory == null ? true : Boolean(options.copySourceDirectory); return { force, recursive, copySourceDirectory }; } function cpDirRecursive(sourceDir, destDir, currentDepth, force) { return __awaiter(this, void 0, void 0, function* () { // Ensure there is not a run away recursive copy if (currentDepth >= 255) return; currentDepth++; yield mkdirP(destDir); const files = yield ioUtil.readdir(sourceDir); for (const fileName of files) { const srcFile = `${sourceDir}/${fileName}`; const destFile = `${destDir}/${fileName}`; const srcFileStat = yield ioUtil.lstat(srcFile); if (srcFileStat.isDirectory()) { // Recurse yield cpDirRecursive(srcFile, destFile, currentDepth, force); } else { yield copyFile(srcFile, destFile, force); } } // Change the mode for the newly created directory yield ioUtil.chmod(destDir, (yield ioUtil.stat(sourceDir)).mode); }); } // Buffered file copy function copyFile(srcFile, destFile, force) { return __awaiter(this, void 0, void 0, function* () { if ((yield ioUtil.lstat(srcFile)).isSymbolicLink()) { // unlink/re-link it try { yield ioUtil.lstat(destFile); yield ioUtil.unlink(destFile); } catch (e) { // Try to override file permission if (e.code === 'EPERM') { yield ioUtil.chmod(destFile, '0666'); yield ioUtil.unlink(destFile); } // other errors = it doesn't exist, no work to do } // Copy over symlink const symlinkFull = yield ioUtil.readlink(srcFile); yield ioUtil.symlink(symlinkFull, destFile, ioUtil.IS_WINDOWS ? 'junction' : null); } else if (!(yield ioUtil.exists(destFile)) || force) { yield ioUtil.copyFile(srcFile, destFile); } }); } //# sourceMappingURL=io.js.map /***/ }), /***/ 44914: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); Object.defineProperty(exports, "__esModule", ({ value: true })); exports.issueCommand = issueCommand; exports.issue = issue; const os = __importStar(__nccwpck_require__(70857)); const utils_1 = __nccwpck_require__(30302); /** * Issues a command to the GitHub Actions runner * * @param command - The command name to issue * @param properties - Additional properties for the command (key-value pairs) * @param message - The message to include with the command * @remarks * This function outputs a specially formatted string to stdout that the Actions * runner interprets as a command. These commands can control workflow behavior, * set outputs, create annotations, mask values, and more. * * Command Format: * ::name key=value,key=value::message * * @example * ```typescript * // Issue a warning annotation * issueCommand('warning', {}, 'This is a warning message'); * // Output: ::warning::This is a warning message * * // Set an environment variable * issueCommand('set-env', { name: 'MY_VAR' }, 'some value'); * // Output: ::set-env name=MY_VAR::some value * * // Add a secret mask * issueCommand('add-mask', {}, 'secretValue123'); * // Output: ::add-mask::secretValue123 * ``` * * @internal * This is an internal utility function that powers the public API functions * such as setSecret, warning, error, and exportVariable. */ function issueCommand(command, properties, message) { const cmd = new Command(command, properties, message); process.stdout.write(cmd.toString() + os.EOL); } function issue(name, message = '') { issueCommand(name, {}, message); } const CMD_STRING = '::'; class Command { constructor(command, properties, message) { if (!command) { command = 'missing.command'; } this.command = command; this.properties = properties; this.message = message; } toString() { let cmdStr = CMD_STRING + this.command; if (this.properties && Object.keys(this.properties).length > 0) { cmdStr += ' '; let first = true; for (const key in this.properties) { if (this.properties.hasOwnProperty(key)) { const val = this.properties[key]; if (val) { if (first) { first = false; } else { cmdStr += ','; } cmdStr += `${key}=${escapeProperty(val)}`; } } } } cmdStr += `${CMD_STRING}${escapeData(this.message)}`; return cmdStr; } } function escapeData(s) { return (0, utils_1.toCommandValue)(s) .replace(/%/g, '%25') .replace(/\r/g, '%0D') .replace(/\n/g, '%0A'); } function escapeProperty(s) { return (0, utils_1.toCommandValue)(s) .replace(/%/g, '%25') .replace(/\r/g, '%0D') .replace(/\n/g, '%0A') .replace(/:/g, '%3A') .replace(/,/g, '%2C'); } //# sourceMappingURL=command.js.map /***/ }), /***/ 37484: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.platform = exports.toPlatformPath = exports.toWin32Path = exports.toPosixPath = exports.markdownSummary = exports.summary = exports.ExitCode = void 0; exports.exportVariable = exportVariable; exports.setSecret = setSecret; exports.addPath = addPath; exports.getInput = getInput; exports.getMultilineInput = getMultilineInput; exports.getBooleanInput = getBooleanInput; exports.setOutput = setOutput; exports.setCommandEcho = setCommandEcho; exports.setFailed = setFailed; exports.isDebug = isDebug; exports.debug = debug; exports.error = error; exports.warning = warning; exports.notice = notice; exports.info = info; exports.startGroup = startGroup; exports.endGroup = endGroup; exports.group = group; exports.saveState = saveState; exports.getState = getState; exports.getIDToken = getIDToken; const command_1 = __nccwpck_require__(44914); const file_command_1 = __nccwpck_require__(24753); const utils_1 = __nccwpck_require__(30302); const os = __importStar(__nccwpck_require__(70857)); const path = __importStar(__nccwpck_require__(16928)); const oidc_utils_1 = __nccwpck_require__(35306); /** * The code to exit an action */ var ExitCode; (function (ExitCode) { /** * A code indicating that the action was successful */ ExitCode[ExitCode["Success"] = 0] = "Success"; /** * A code indicating that the action was a failure */ ExitCode[ExitCode["Failure"] = 1] = "Failure"; })(ExitCode || (exports.ExitCode = ExitCode = {})); //----------------------------------------------------------------------- // Variables //----------------------------------------------------------------------- /** * Sets env variable for this action and future actions in the job * @param name the name of the variable to set * @param val the value of the variable. Non-string values will be converted to a string via JSON.stringify */ // eslint-disable-next-line @typescript-eslint/no-explicit-any function exportVariable(name, val) { const convertedVal = (0, utils_1.toCommandValue)(val); process.env[name] = convertedVal; const filePath = process.env['GITHUB_ENV'] || ''; if (filePath) { return (0, file_command_1.issueFileCommand)('ENV', (0, file_command_1.prepareKeyValueMessage)(name, val)); } (0, command_1.issueCommand)('set-env', { name }, convertedVal); } /** * Registers a secret which will get masked from logs * * @param secret - Value of the secret to be masked * @remarks * This function instructs the Actions runner to mask the specified value in any * logs produced during the workflow run. Once registered, the secret value will * be replaced with asterisks (***) whenever it appears in console output, logs, * or error messages. * * This is useful for protecting sensitive information such as: * - API keys * - Access tokens * - Authentication credentials * - URL parameters containing signatures (SAS tokens) * * Note that masking only affects future logs; any previous appearances of the * secret in logs before calling this function will remain unmasked. * * @example * ```typescript * // Register an API token as a secret * const apiToken = "abc123xyz456"; * setSecret(apiToken); * * // Now any logs containing this value will show *** instead * console.log(`Using token: ${apiToken}`); // Outputs: "Using token: ***" * ``` */ function setSecret(secret) { (0, command_1.issueCommand)('add-mask', {}, secret); } /** * Prepends inputPath to the PATH (for this action and future actions) * @param inputPath */ function addPath(inputPath) { const filePath = process.env['GITHUB_PATH'] || ''; if (filePath) { (0, file_command_1.issueFileCommand)('PATH', inputPath); } else { (0, command_1.issueCommand)('add-path', {}, inputPath); } process.env['PATH'] = `${inputPath}${path.delimiter}${process.env['PATH']}`; } /** * Gets the value of an input. * Unless trimWhitespace is set to false in InputOptions, the value is also trimmed. * Returns an empty string if the value is not defined. * * @param name name of the input to get * @param options optional. See InputOptions. * @returns string */ function getInput(name, options) { const val = process.env[`INPUT_${name.replace(/ /g, '_').toUpperCase()}`] || ''; if (options && options.required && !val) { throw new Error(`Input required and not supplied: ${name}`); } if (options && options.trimWhitespace === false) { return val; } return val.trim(); } /** * Gets the values of an multiline input. Each value is also trimmed. * * @param name name of the input to get * @param options optional. See InputOptions. * @returns string[] * */ function getMultilineInput(name, options) { const inputs = getInput(name, options) .split('\n') .filter(x => x !== ''); if (options && options.trimWhitespace === false) { return inputs; } return inputs.map(input => input.trim()); } /** * Gets the input value of the boolean type in the YAML 1.2 "core schema" specification. * Support boolean input list: `true | True | TRUE | false | False | FALSE` . * The return value is also in boolean type. * ref: https://yaml.org/spec/1.2/spec.html#id2804923 * * @param name name of the input to get * @param options optional. See InputOptions. * @returns boolean */ function getBooleanInput(name, options) { const trueValue = ['true', 'True', 'TRUE']; const falseValue = ['false', 'False', 'FALSE']; const val = getInput(name, options); if (trueValue.includes(val)) return true; if (falseValue.includes(val)) return false; throw new TypeError(`Input does not meet YAML 1.2 "Core Schema" specification: ${name}\n` + `Support boolean input list: \`true | True | TRUE | false | False | FALSE\``); } /** * Sets the value of an output. * * @param name name of the output to set * @param value value to store. Non-string values will be converted to a string via JSON.stringify */ // eslint-disable-next-line @typescript-eslint/no-explicit-any function setOutput(name, value) { const filePath = process.env['GITHUB_OUTPUT'] || ''; if (filePath) { return (0, file_command_1.issueFileCommand)('OUTPUT', (0, file_command_1.prepareKeyValueMessage)(name, value)); } process.stdout.write(os.EOL); (0, command_1.issueCommand)('set-output', { name }, (0, utils_1.toCommandValue)(value)); } /** * Enables or disables the echoing of commands into stdout for the rest of the step. * Echoing is disabled by default if ACTIONS_STEP_DEBUG is not set. * */ function setCommandEcho(enabled) { (0, command_1.issue)('echo', enabled ? 'on' : 'off'); } //----------------------------------------------------------------------- // Results //----------------------------------------------------------------------- /** * Sets the action status to failed. * When the action exits it will be with an exit code of 1 * @param message add error issue message */ function setFailed(message) { process.exitCode = ExitCode.Failure; error(message); } //----------------------------------------------------------------------- // Logging Commands //----------------------------------------------------------------------- /** * Gets whether Actions Step Debug is on or not */ function isDebug() { return process.env['RUNNER_DEBUG'] === '1'; } /** * Writes debug message to user log * @param message debug message */ function debug(message) { (0, command_1.issueCommand)('debug', {}, message); } /** * Adds an error issue * @param message error issue message. Errors will be converted to string via toString() * @param properties optional properties to add to the annotation. */ function error(message, properties = {}) { (0, command_1.issueCommand)('error', (0, utils_1.toCommandProperties)(properties), message instanceof Error ? message.toString() : message); } /** * Adds a warning issue * @param message warning issue message. Errors will be converted to string via toString() * @param properties optional properties to add to the annotation. */ function warning(message, properties = {}) { (0, command_1.issueCommand)('warning', (0, utils_1.toCommandProperties)(properties), message instanceof Error ? message.toString() : message); } /** * Adds a notice issue * @param message notice issue message. Errors will be converted to string via toString() * @param properties optional properties to add to the annotation. */ function notice(message, properties = {}) { (0, command_1.issueCommand)('notice', (0, utils_1.toCommandProperties)(properties), message instanceof Error ? message.toString() : message); } /** * Writes info to log with console.log. * @param message info message */ function info(message) { process.stdout.write(message + os.EOL); } /** * Begin an output group. * * Output until the next `groupEnd` will be foldable in this group * * @param name The name of the output group */ function startGroup(name) { (0, command_1.issue)('group', name); } /** * End an output group. */ function endGroup() { (0, command_1.issue)('endgroup'); } /** * Wrap an asynchronous function call in a group. * * Returns the same type as the function itself. * * @param name The name of the group * @param fn The function to wrap in the group */ function group(name, fn) { return __awaiter(this, void 0, void 0, function* () { startGroup(name); let result; try { result = yield fn(); } finally { endGroup(); } return result; }); } //----------------------------------------------------------------------- // Wrapper action state //----------------------------------------------------------------------- /** * Saves state for current action, the state can only be retrieved by this action's post job execution. * * @param name name of the state to store * @param value value to store. Non-string values will be converted to a string via JSON.stringify */ // eslint-disable-next-line @typescript-eslint/no-explicit-any function saveState(name, value) { const filePath = process.env['GITHUB_STATE'] || ''; if (filePath) { return (0, file_command_1.issueFileCommand)('STATE', (0, file_command_1.prepareKeyValueMessage)(name, value)); } (0, command_1.issueCommand)('save-state', { name }, (0, utils_1.toCommandValue)(value)); } /** * Gets the value of an state set by this action's main execution. * * @param name name of the state to get * @returns string */ function getState(name) { return process.env[`STATE_${name}`] || ''; } function getIDToken(aud) { return __awaiter(this, void 0, void 0, function* () { return yield oidc_utils_1.OidcClient.getIDToken(aud); }); } /** * Summary exports */ var summary_1 = __nccwpck_require__(71847); Object.defineProperty(exports, "summary", ({ enumerable: true, get: function () { return summary_1.summary; } })); /** * @deprecated use core.summary */ var summary_2 = __nccwpck_require__(71847); Object.defineProperty(exports, "markdownSummary", ({ enumerable: true, get: function () { return summary_2.markdownSummary; } })); /** * Path exports */ var path_utils_1 = __nccwpck_require__(31976); Object.defineProperty(exports, "toPosixPath", ({ enumerable: true, get: function () { return path_utils_1.toPosixPath; } })); Object.defineProperty(exports, "toWin32Path", ({ enumerable: true, get: function () { return path_utils_1.toWin32Path; } })); Object.defineProperty(exports, "toPlatformPath", ({ enumerable: true, get: function () { return path_utils_1.toPlatformPath; } })); /** * Platform utilities exports */ exports.platform = __importStar(__nccwpck_require__(18968)); //# sourceMappingURL=core.js.map /***/ }), /***/ 24753: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; // For internal use, subject to change. var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); Object.defineProperty(exports, "__esModule", ({ value: true })); exports.issueFileCommand = issueFileCommand; exports.prepareKeyValueMessage = prepareKeyValueMessage; // We use any as a valid input type /* eslint-disable @typescript-eslint/no-explicit-any */ const crypto = __importStar(__nccwpck_require__(76982)); const fs = __importStar(__nccwpck_require__(79896)); const os = __importStar(__nccwpck_require__(70857)); const utils_1 = __nccwpck_require__(30302); function issueFileCommand(command, message) { const filePath = process.env[`GITHUB_${command}`]; if (!filePath) { throw new Error(`Unable to find environment variable for file command ${command}`); } if (!fs.existsSync(filePath)) { throw new Error(`Missing file at path: ${filePath}`); } fs.appendFileSync(filePath, `${(0, utils_1.toCommandValue)(message)}${os.EOL}`, { encoding: 'utf8' }); } function prepareKeyValueMessage(key, value) { const delimiter = `ghadelimiter_${crypto.randomUUID()}`; const convertedValue = (0, utils_1.toCommandValue)(value); // These should realistically never happen, but just in case someone finds a // way to exploit uuid generation let's not allow keys or values that contain // the delimiter. if (key.includes(delimiter)) { throw new Error(`Unexpected input: name should not contain the delimiter "${delimiter}"`); } if (convertedValue.includes(delimiter)) { throw new Error(`Unexpected input: value should not contain the delimiter "${delimiter}"`); } return `${key}<<${delimiter}${os.EOL}${convertedValue}${os.EOL}${delimiter}`; } //# sourceMappingURL=file-command.js.map /***/ }), /***/ 35306: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.OidcClient = void 0; const http_client_1 = __nccwpck_require__(54844); const auth_1 = __nccwpck_require__(44552); const core_1 = __nccwpck_require__(37484); class OidcClient { static createHttpClient(allowRetry = true, maxRetry = 10) { const requestOptions = { allowRetries: allowRetry, maxRetries: maxRetry }; return new http_client_1.HttpClient('actions/oidc-client', [new auth_1.BearerCredentialHandler(OidcClient.getRequestToken())], requestOptions); } static getRequestToken() { const token = process.env['ACTIONS_ID_TOKEN_REQUEST_TOKEN']; if (!token) { throw new Error('Unable to get ACTIONS_ID_TOKEN_REQUEST_TOKEN env variable'); } return token; } static getIDTokenUrl() { const runtimeUrl = process.env['ACTIONS_ID_TOKEN_REQUEST_URL']; if (!runtimeUrl) { throw new Error('Unable to get ACTIONS_ID_TOKEN_REQUEST_URL env variable'); } return runtimeUrl; } static getCall(id_token_url) { return __awaiter(this, void 0, void 0, function* () { var _a; const httpclient = OidcClient.createHttpClient(); const res = yield httpclient .getJson(id_token_url) .catch(error => { throw new Error(`Failed to get ID Token. \n Error Code : ${error.statusCode}\n Error Message: ${error.message}`); }); const id_token = (_a = res.result) === null || _a === void 0 ? void 0 : _a.value; if (!id_token) { throw new Error('Response json body do not have ID Token field'); } return id_token; }); } static getIDToken(audience) { return __awaiter(this, void 0, void 0, function* () { try { // New ID Token is requested from action service let id_token_url = OidcClient.getIDTokenUrl(); if (audience) { const encodedAudience = encodeURIComponent(audience); id_token_url = `${id_token_url}&audience=${encodedAudience}`; } (0, core_1.debug)(`ID token url is ${id_token_url}`); const id_token = yield OidcClient.getCall(id_token_url); (0, core_1.setSecret)(id_token); return id_token; } catch (error) { throw new Error(`Error message: ${error.message}`); } }); } } exports.OidcClient = OidcClient; //# sourceMappingURL=oidc-utils.js.map /***/ }), /***/ 31976: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); Object.defineProperty(exports, "__esModule", ({ value: true })); exports.toPosixPath = toPosixPath; exports.toWin32Path = toWin32Path; exports.toPlatformPath = toPlatformPath; const path = __importStar(__nccwpck_require__(16928)); /** * toPosixPath converts the given path to the posix form. On Windows, \\ will be * replaced with /. * * @param pth. Path to transform. * @return string Posix path. */ function toPosixPath(pth) { return pth.replace(/[\\]/g, '/'); } /** * toWin32Path converts the given path to the win32 form. On Linux, / will be * replaced with \\. * * @param pth. Path to transform. * @return string Win32 path. */ function toWin32Path(pth) { return pth.replace(/[/]/g, '\\'); } /** * toPlatformPath converts the given path to a platform-specific path. It does * this by replacing instances of / and \ with the platform-specific path * separator. * * @param pth The path to platformize. * @return string The platform-specific path. */ function toPlatformPath(pth) { return pth.replace(/[/\\]/g, path.sep); } //# sourceMappingURL=path-utils.js.map /***/ }), /***/ 18968: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; var __importDefault = (this && this.__importDefault) || function (mod) { return (mod && mod.__esModule) ? mod : { "default": mod }; }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.isLinux = exports.isMacOS = exports.isWindows = exports.arch = exports.platform = void 0; exports.getDetails = getDetails; const os_1 = __importDefault(__nccwpck_require__(70857)); const exec = __importStar(__nccwpck_require__(95236)); const getWindowsInfo = () => __awaiter(void 0, void 0, void 0, function* () { const { stdout: version } = yield exec.getExecOutput('powershell -command "(Get-CimInstance -ClassName Win32_OperatingSystem).Version"', undefined, { silent: true }); const { stdout: name } = yield exec.getExecOutput('powershell -command "(Get-CimInstance -ClassName Win32_OperatingSystem).Caption"', undefined, { silent: true }); return { name: name.trim(), version: version.trim() }; }); const getMacOsInfo = () => __awaiter(void 0, void 0, void 0, function* () { var _a, _b, _c, _d; const { stdout } = yield exec.getExecOutput('sw_vers', undefined, { silent: true }); const version = (_b = (_a = stdout.match(/ProductVersion:\s*(.+)/)) === null || _a === void 0 ? void 0 : _a[1]) !== null && _b !== void 0 ? _b : ''; const name = (_d = (_c = stdout.match(/ProductName:\s*(.+)/)) === null || _c === void 0 ? void 0 : _c[1]) !== null && _d !== void 0 ? _d : ''; return { name, version }; }); const getLinuxInfo = () => __awaiter(void 0, void 0, void 0, function* () { const { stdout } = yield exec.getExecOutput('lsb_release', ['-i', '-r', '-s'], { silent: true }); const [name, version] = stdout.trim().split('\n'); return { name, version }; }); exports.platform = os_1.default.platform(); exports.arch = os_1.default.arch(); exports.isWindows = exports.platform === 'win32'; exports.isMacOS = exports.platform === 'darwin'; exports.isLinux = exports.platform === 'linux'; function getDetails() { return __awaiter(this, void 0, void 0, function* () { return Object.assign(Object.assign({}, (yield (exports.isWindows ? getWindowsInfo() : exports.isMacOS ? getMacOsInfo() : getLinuxInfo()))), { platform: exports.platform, arch: exports.arch, isWindows: exports.isWindows, isMacOS: exports.isMacOS, isLinux: exports.isLinux }); }); } //# sourceMappingURL=platform.js.map /***/ }), /***/ 71847: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.summary = exports.markdownSummary = exports.SUMMARY_DOCS_URL = exports.SUMMARY_ENV_VAR = void 0; const os_1 = __nccwpck_require__(70857); const fs_1 = __nccwpck_require__(79896); const { access, appendFile, writeFile } = fs_1.promises; exports.SUMMARY_ENV_VAR = 'GITHUB_STEP_SUMMARY'; exports.SUMMARY_DOCS_URL = 'https://docs.github.com/actions/using-workflows/workflow-commands-for-github-actions#adding-a-job-summary'; class Summary { constructor() { this._buffer = ''; } /** * Finds the summary file path from the environment, rejects if env var is not found or file does not exist * Also checks r/w permissions. * * @returns step summary file path */ filePath() { return __awaiter(this, void 0, void 0, function* () { if (this._filePath) { return this._filePath; } const pathFromEnv = process.env[exports.SUMMARY_ENV_VAR]; if (!pathFromEnv) { throw new Error(`Unable to find environment variable for $${exports.SUMMARY_ENV_VAR}. Check if your runtime environment supports job summaries.`); } try { yield access(pathFromEnv, fs_1.constants.R_OK | fs_1.constants.W_OK); } catch (_a) { throw new Error(`Unable to access summary file: '${pathFromEnv}'. Check if the file has correct read/write permissions.`); } this._filePath = pathFromEnv; return this._filePath; }); } /** * Wraps content in an HTML tag, adding any HTML attributes * * @param {string} tag HTML tag to wrap * @param {string | null} content content within the tag * @param {[attribute: string]: string} attrs key-value list of HTML attributes to add * * @returns {string} content wrapped in HTML element */ wrap(tag, content, attrs = {}) { const htmlAttrs = Object.entries(attrs) .map(([key, value]) => ` ${key}="${value}"`) .join(''); if (!content) { return `<${tag}${htmlAttrs}>`; } return `<${tag}${htmlAttrs}>${content}`; } /** * Writes text in the buffer to the summary buffer file and empties buffer. Will append by default. * * @param {SummaryWriteOptions} [options] (optional) options for write operation * * @returns {Promise} summary instance */ write(options) { return __awaiter(this, void 0, void 0, function* () { const overwrite = !!(options === null || options === void 0 ? void 0 : options.overwrite); const filePath = yield this.filePath(); const writeFunc = overwrite ? writeFile : appendFile; yield writeFunc(filePath, this._buffer, { encoding: 'utf8' }); return this.emptyBuffer(); }); } /** * Clears the summary buffer and wipes the summary file * * @returns {Summary} summary instance */ clear() { return __awaiter(this, void 0, void 0, function* () { return this.emptyBuffer().write({ overwrite: true }); }); } /** * Returns the current summary buffer as a string * * @returns {string} string of summary buffer */ stringify() { return this._buffer; } /** * If the summary buffer is empty * * @returns {boolen} true if the buffer is empty */ isEmptyBuffer() { return this._buffer.length === 0; } /** * Resets the summary buffer without writing to summary file * * @returns {Summary} summary instance */ emptyBuffer() { this._buffer = ''; return this; } /** * Adds raw text to the summary buffer * * @param {string} text content to add * @param {boolean} [addEOL=false] (optional) append an EOL to the raw text (default: false) * * @returns {Summary} summary instance */ addRaw(text, addEOL = false) { this._buffer += text; return addEOL ? this.addEOL() : this; } /** * Adds the operating system-specific end-of-line marker to the buffer * * @returns {Summary} summary instance */ addEOL() { return this.addRaw(os_1.EOL); } /** * Adds an HTML codeblock to the summary buffer * * @param {string} code content to render within fenced code block * @param {string} lang (optional) language to syntax highlight code * * @returns {Summary} summary instance */ addCodeBlock(code, lang) { const attrs = Object.assign({}, (lang && { lang })); const element = this.wrap('pre', this.wrap('code', code), attrs); return this.addRaw(element).addEOL(); } /** * Adds an HTML list to the summary buffer * * @param {string[]} items list of items to render * @param {boolean} [ordered=false] (optional) if the rendered list should be ordered or not (default: false) * * @returns {Summary} summary instance */ addList(items, ordered = false) { const tag = ordered ? 'ol' : 'ul'; const listItems = items.map(item => this.wrap('li', item)).join(''); const element = this.wrap(tag, listItems); return this.addRaw(element).addEOL(); } /** * Adds an HTML table to the summary buffer * * @param {SummaryTableCell[]} rows table rows * * @returns {Summary} summary instance */ addTable(rows) { const tableBody = rows .map(row => { const cells = row .map(cell => { if (typeof cell === 'string') { return this.wrap('td', cell); } const { header, data, colspan, rowspan } = cell; const tag = header ? 'th' : 'td'; const attrs = Object.assign(Object.assign({}, (colspan && { colspan })), (rowspan && { rowspan })); return this.wrap(tag, data, attrs); }) .join(''); return this.wrap('tr', cells); }) .join(''); const element = this.wrap('table', tableBody); return this.addRaw(element).addEOL(); } /** * Adds a collapsable HTML details element to the summary buffer * * @param {string} label text for the closed state * @param {string} content collapsable content * * @returns {Summary} summary instance */ addDetails(label, content) { const element = this.wrap('details', this.wrap('summary', label) + content); return this.addRaw(element).addEOL(); } /** * Adds an HTML image tag to the summary buffer * * @param {string} src path to the image you to embed * @param {string} alt text description of the image * @param {SummaryImageOptions} options (optional) addition image attributes * * @returns {Summary} summary instance */ addImage(src, alt, options) { const { width, height } = options || {}; const attrs = Object.assign(Object.assign({}, (width && { width })), (height && { height })); const element = this.wrap('img', null, Object.assign({ src, alt }, attrs)); return this.addRaw(element).addEOL(); } /** * Adds an HTML section heading element * * @param {string} text heading text * @param {number | string} [level=1] (optional) the heading level, default: 1 * * @returns {Summary} summary instance */ addHeading(text, level) { const tag = `h${level}`; const allowedTag = ['h1', 'h2', 'h3', 'h4', 'h5', 'h6'].includes(tag) ? tag : 'h1'; const element = this.wrap(allowedTag, text); return this.addRaw(element).addEOL(); } /** * Adds an HTML thematic break (
) to the summary buffer * * @returns {Summary} summary instance */ addSeparator() { const element = this.wrap('hr', null); return this.addRaw(element).addEOL(); } /** * Adds an HTML line break (
) to the summary buffer * * @returns {Summary} summary instance */ addBreak() { const element = this.wrap('br', null); return this.addRaw(element).addEOL(); } /** * Adds an HTML blockquote to the summary buffer * * @param {string} text quote text * @param {string} cite (optional) citation url * * @returns {Summary} summary instance */ addQuote(text, cite) { const attrs = Object.assign({}, (cite && { cite })); const element = this.wrap('blockquote', text, attrs); return this.addRaw(element).addEOL(); } /** * Adds an HTML anchor tag to the summary buffer * * @param {string} text link text/content * @param {string} href hyperlink * * @returns {Summary} summary instance */ addLink(text, href) { const element = this.wrap('a', text, { href }); return this.addRaw(element).addEOL(); } } const _summary = new Summary(); /** * @deprecated use `core.summary` */ exports.markdownSummary = _summary; exports.summary = _summary; //# sourceMappingURL=summary.js.map /***/ }), /***/ 30302: /***/ ((__unused_webpack_module, exports) => { "use strict"; // We use any as a valid input type /* eslint-disable @typescript-eslint/no-explicit-any */ Object.defineProperty(exports, "__esModule", ({ value: true })); exports.toCommandValue = toCommandValue; exports.toCommandProperties = toCommandProperties; /** * Sanitizes an input into a string so it can be passed into issueCommand safely * @param input input to sanitize into a string */ function toCommandValue(input) { if (input === null || input === undefined) { return ''; } else if (typeof input === 'string' || input instanceof String) { return input; } return JSON.stringify(input); } /** * * @param annotationProperties * @returns The command properties to send with the actual annotation command * See IssueCommandProperties: https://github.com/actions/runner/blob/main/src/Runner.Worker/ActionCommandManager.cs#L646 */ function toCommandProperties(annotationProperties) { if (!Object.keys(annotationProperties).length) { return {}; } return { title: annotationProperties.title, file: annotationProperties.file, line: annotationProperties.startLine, endLine: annotationProperties.endLine, col: annotationProperties.startColumn, endColumn: annotationProperties.endColumn }; } //# sourceMappingURL=utils.js.map /***/ }), /***/ 95236: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.exec = exec; exports.getExecOutput = getExecOutput; const string_decoder_1 = __nccwpck_require__(13193); const tr = __importStar(__nccwpck_require__(6665)); /** * Exec a command. * Output will be streamed to the live console. * Returns promise with return code * * @param commandLine command to execute (can include additional args). Must be correctly escaped. * @param args optional arguments for tool. Escaping is handled by the lib. * @param options optional exec options. See ExecOptions * @returns Promise exit code */ function exec(commandLine, args, options) { return __awaiter(this, void 0, void 0, function* () { const commandArgs = tr.argStringToArray(commandLine); if (commandArgs.length === 0) { throw new Error(`Parameter 'commandLine' cannot be null or empty.`); } // Path to tool to execute should be first arg const toolPath = commandArgs[0]; args = commandArgs.slice(1).concat(args || []); const runner = new tr.ToolRunner(toolPath, args, options); return runner.exec(); }); } /** * Exec a command and get the output. * Output will be streamed to the live console. * Returns promise with the exit code and collected stdout and stderr * * @param commandLine command to execute (can include additional args). Must be correctly escaped. * @param args optional arguments for tool. Escaping is handled by the lib. * @param options optional exec options. See ExecOptions * @returns Promise exit code, stdout, and stderr */ function getExecOutput(commandLine, args, options) { return __awaiter(this, void 0, void 0, function* () { var _a, _b; let stdout = ''; let stderr = ''; //Using string decoder covers the case where a mult-byte character is split const stdoutDecoder = new string_decoder_1.StringDecoder('utf8'); const stderrDecoder = new string_decoder_1.StringDecoder('utf8'); const originalStdoutListener = (_a = options === null || options === void 0 ? void 0 : options.listeners) === null || _a === void 0 ? void 0 : _a.stdout; const originalStdErrListener = (_b = options === null || options === void 0 ? void 0 : options.listeners) === null || _b === void 0 ? void 0 : _b.stderr; const stdErrListener = (data) => { stderr += stderrDecoder.write(data); if (originalStdErrListener) { originalStdErrListener(data); } }; const stdOutListener = (data) => { stdout += stdoutDecoder.write(data); if (originalStdoutListener) { originalStdoutListener(data); } }; const listeners = Object.assign(Object.assign({}, options === null || options === void 0 ? void 0 : options.listeners), { stdout: stdOutListener, stderr: stdErrListener }); const exitCode = yield exec(commandLine, args, Object.assign(Object.assign({}, options), { listeners })); //flush any remaining characters stdout += stdoutDecoder.end(); stderr += stderrDecoder.end(); return { exitCode, stdout, stderr }; }); } //# sourceMappingURL=exec.js.map /***/ }), /***/ 6665: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.ToolRunner = void 0; exports.argStringToArray = argStringToArray; const os = __importStar(__nccwpck_require__(70857)); const events = __importStar(__nccwpck_require__(24434)); const child = __importStar(__nccwpck_require__(35317)); const path = __importStar(__nccwpck_require__(16928)); const io = __importStar(__nccwpck_require__(18191)); const ioUtil = __importStar(__nccwpck_require__(87120)); const timers_1 = __nccwpck_require__(53557); /* eslint-disable @typescript-eslint/unbound-method */ const IS_WINDOWS = process.platform === 'win32'; /* * Class for running command line tools. Handles quoting and arg parsing in a platform agnostic way. */ class ToolRunner extends events.EventEmitter { constructor(toolPath, args, options) { super(); if (!toolPath) { throw new Error("Parameter 'toolPath' cannot be null or empty."); } this.toolPath = toolPath; this.args = args || []; this.options = options || {}; } _debug(message) { if (this.options.listeners && this.options.listeners.debug) { this.options.listeners.debug(message); } } _getCommandString(options, noPrefix) { const toolPath = this._getSpawnFileName(); const args = this._getSpawnArgs(options); let cmd = noPrefix ? '' : '[command]'; // omit prefix when piped to a second tool if (IS_WINDOWS) { // Windows + cmd file if (this._isCmdFile()) { cmd += toolPath; for (const a of args) { cmd += ` ${a}`; } } // Windows + verbatim else if (options.windowsVerbatimArguments) { cmd += `"${toolPath}"`; for (const a of args) { cmd += ` ${a}`; } } // Windows (regular) else { cmd += this._windowsQuoteCmdArg(toolPath); for (const a of args) { cmd += ` ${this._windowsQuoteCmdArg(a)}`; } } } else { // OSX/Linux - this can likely be improved with some form of quoting. // creating processes on Unix is fundamentally different than Windows. // on Unix, execvp() takes an arg array. cmd += toolPath; for (const a of args) { cmd += ` ${a}`; } } return cmd; } _processLineBuffer(data, strBuffer, onLine) { try { let s = strBuffer + data.toString(); let n = s.indexOf(os.EOL); while (n > -1) { const line = s.substring(0, n); onLine(line); // the rest of the string ... s = s.substring(n + os.EOL.length); n = s.indexOf(os.EOL); } return s; } catch (err) { // streaming lines to console is best effort. Don't fail a build. this._debug(`error processing line. Failed with error ${err}`); return ''; } } _getSpawnFileName() { if (IS_WINDOWS) { if (this._isCmdFile()) { return process.env['COMSPEC'] || 'cmd.exe'; } } return this.toolPath; } _getSpawnArgs(options) { if (IS_WINDOWS) { if (this._isCmdFile()) { let argline = `/D /S /C "${this._windowsQuoteCmdArg(this.toolPath)}`; for (const a of this.args) { argline += ' '; argline += options.windowsVerbatimArguments ? a : this._windowsQuoteCmdArg(a); } argline += '"'; return [argline]; } } return this.args; } _endsWith(str, end) { return str.endsWith(end); } _isCmdFile() { const upperToolPath = this.toolPath.toUpperCase(); return (this._endsWith(upperToolPath, '.CMD') || this._endsWith(upperToolPath, '.BAT')); } _windowsQuoteCmdArg(arg) { // for .exe, apply the normal quoting rules that libuv applies if (!this._isCmdFile()) { return this._uvQuoteCmdArg(arg); } // otherwise apply quoting rules specific to the cmd.exe command line parser. // the libuv rules are generic and are not designed specifically for cmd.exe // command line parser. // // for a detailed description of the cmd.exe command line parser, refer to // http://stackoverflow.com/questions/4094699/how-does-the-windows-command-interpreter-cmd-exe-parse-scripts/7970912#7970912 // need quotes for empty arg if (!arg) { return '""'; } // determine whether the arg needs to be quoted const cmdSpecialChars = [ ' ', '\t', '&', '(', ')', '[', ']', '{', '}', '^', '=', ';', '!', "'", '+', ',', '`', '~', '|', '<', '>', '"' ]; let needsQuotes = false; for (const char of arg) { if (cmdSpecialChars.some(x => x === char)) { needsQuotes = true; break; } } // short-circuit if quotes not needed if (!needsQuotes) { return arg; } // the following quoting rules are very similar to the rules that by libuv applies. // // 1) wrap the string in quotes // // 2) double-up quotes - i.e. " => "" // // this is different from the libuv quoting rules. libuv replaces " with \", which unfortunately // doesn't work well with a cmd.exe command line. // // note, replacing " with "" also works well if the arg is passed to a downstream .NET console app. // for example, the command line: // foo.exe "myarg:""my val""" // is parsed by a .NET console app into an arg array: // [ "myarg:\"my val\"" ] // which is the same end result when applying libuv quoting rules. although the actual // command line from libuv quoting rules would look like: // foo.exe "myarg:\"my val\"" // // 3) double-up slashes that precede a quote, // e.g. hello \world => "hello \world" // hello\"world => "hello\\""world" // hello\\"world => "hello\\\\""world" // hello world\ => "hello world\\" // // technically this is not required for a cmd.exe command line, or the batch argument parser. // the reasons for including this as a .cmd quoting rule are: // // a) this is optimized for the scenario where the argument is passed from the .cmd file to an // external program. many programs (e.g. .NET console apps) rely on the slash-doubling rule. // // b) it's what we've been doing previously (by deferring to node default behavior) and we // haven't heard any complaints about that aspect. // // note, a weakness of the quoting rules chosen here, is that % is not escaped. in fact, % cannot be // escaped when used on the command line directly - even though within a .cmd file % can be escaped // by using %%. // // the saving grace is, on the command line, %var% is left as-is if var is not defined. this contrasts // the line parsing rules within a .cmd file, where if var is not defined it is replaced with nothing. // // one option that was explored was replacing % with ^% - i.e. %var% => ^%var^%. this hack would // often work, since it is unlikely that var^ would exist, and the ^ character is removed when the // variable is used. the problem, however, is that ^ is not removed when %* is used to pass the args // to an external program. // // an unexplored potential solution for the % escaping problem, is to create a wrapper .cmd file. // % can be escaped within a .cmd file. let reverse = '"'; let quoteHit = true; for (let i = arg.length; i > 0; i--) { // walk the string in reverse reverse += arg[i - 1]; if (quoteHit && arg[i - 1] === '\\') { reverse += '\\'; // double the slash } else if (arg[i - 1] === '"') { quoteHit = true; reverse += '"'; // double the quote } else { quoteHit = false; } } reverse += '"'; return reverse.split('').reverse().join(''); } _uvQuoteCmdArg(arg) { // Tool runner wraps child_process.spawn() and needs to apply the same quoting as // Node in certain cases where the undocumented spawn option windowsVerbatimArguments // is used. // // Since this function is a port of quote_cmd_arg from Node 4.x (technically, lib UV, // see https://github.com/nodejs/node/blob/v4.x/deps/uv/src/win/process.c for details), // pasting copyright notice from Node within this function: // // Copyright Joyent, Inc. and other Node contributors. All rights reserved. // // Permission is hereby granted, free of charge, to any person obtaining a copy // of this software and associated documentation files (the "Software"), to // deal in the Software without restriction, including without limitation the // rights to use, copy, modify, merge, publish, distribute, sublicense, and/or // sell copies of the Software, and to permit persons to whom the Software is // furnished to do so, subject to the following conditions: // // The above copyright notice and this permission notice shall be included in // all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING // FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS // IN THE SOFTWARE. if (!arg) { // Need double quotation for empty argument return '""'; } if (!arg.includes(' ') && !arg.includes('\t') && !arg.includes('"')) { // No quotation needed return arg; } if (!arg.includes('"') && !arg.includes('\\')) { // No embedded double quotes or backslashes, so I can just wrap // quote marks around the whole thing. return `"${arg}"`; } // Expected input/output: // input : hello"world // output: "hello\"world" // input : hello""world // output: "hello\"\"world" // input : hello\world // output: hello\world // input : hello\\world // output: hello\\world // input : hello\"world // output: "hello\\\"world" // input : hello\\"world // output: "hello\\\\\"world" // input : hello world\ // output: "hello world\\" - note the comment in libuv actually reads "hello world\" // but it appears the comment is wrong, it should be "hello world\\" let reverse = '"'; let quoteHit = true; for (let i = arg.length; i > 0; i--) { // walk the string in reverse reverse += arg[i - 1]; if (quoteHit && arg[i - 1] === '\\') { reverse += '\\'; } else if (arg[i - 1] === '"') { quoteHit = true; reverse += '\\'; } else { quoteHit = false; } } reverse += '"'; return reverse.split('').reverse().join(''); } _cloneExecOptions(options) { options = options || {}; const result = { cwd: options.cwd || process.cwd(), env: options.env || process.env, silent: options.silent || false, windowsVerbatimArguments: options.windowsVerbatimArguments || false, failOnStdErr: options.failOnStdErr || false, ignoreReturnCode: options.ignoreReturnCode || false, delay: options.delay || 10000 }; result.outStream = options.outStream || process.stdout; result.errStream = options.errStream || process.stderr; return result; } _getSpawnOptions(options, toolPath) { options = options || {}; const result = {}; result.cwd = options.cwd; result.env = options.env; result['windowsVerbatimArguments'] = options.windowsVerbatimArguments || this._isCmdFile(); if (options.windowsVerbatimArguments) { result.argv0 = `"${toolPath}"`; } return result; } /** * Exec a tool. * Output will be streamed to the live console. * Returns promise with return code * * @param tool path to tool to exec * @param options optional exec options. See ExecOptions * @returns number */ exec() { return __awaiter(this, void 0, void 0, function* () { // root the tool path if it is unrooted and contains relative pathing if (!ioUtil.isRooted(this.toolPath) && (this.toolPath.includes('/') || (IS_WINDOWS && this.toolPath.includes('\\')))) { // prefer options.cwd if it is specified, however options.cwd may also need to be rooted this.toolPath = path.resolve(process.cwd(), this.options.cwd || process.cwd(), this.toolPath); } // if the tool is only a file name, then resolve it from the PATH // otherwise verify it exists (add extension on Windows if necessary) this.toolPath = yield io.which(this.toolPath, true); return new Promise((resolve, reject) => __awaiter(this, void 0, void 0, function* () { this._debug(`exec tool: ${this.toolPath}`); this._debug('arguments:'); for (const arg of this.args) { this._debug(` ${arg}`); } const optionsNonNull = this._cloneExecOptions(this.options); if (!optionsNonNull.silent && optionsNonNull.outStream) { optionsNonNull.outStream.write(this._getCommandString(optionsNonNull) + os.EOL); } const state = new ExecState(optionsNonNull, this.toolPath); state.on('debug', (message) => { this._debug(message); }); if (this.options.cwd && !(yield ioUtil.exists(this.options.cwd))) { return reject(new Error(`The cwd: ${this.options.cwd} does not exist!`)); } const fileName = this._getSpawnFileName(); const cp = child.spawn(fileName, this._getSpawnArgs(optionsNonNull), this._getSpawnOptions(this.options, fileName)); let stdbuffer = ''; if (cp.stdout) { cp.stdout.on('data', (data) => { if (this.options.listeners && this.options.listeners.stdout) { this.options.listeners.stdout(data); } if (!optionsNonNull.silent && optionsNonNull.outStream) { optionsNonNull.outStream.write(data); } stdbuffer = this._processLineBuffer(data, stdbuffer, (line) => { if (this.options.listeners && this.options.listeners.stdline) { this.options.listeners.stdline(line); } }); }); } let errbuffer = ''; if (cp.stderr) { cp.stderr.on('data', (data) => { state.processStderr = true; if (this.options.listeners && this.options.listeners.stderr) { this.options.listeners.stderr(data); } if (!optionsNonNull.silent && optionsNonNull.errStream && optionsNonNull.outStream) { const s = optionsNonNull.failOnStdErr ? optionsNonNull.errStream : optionsNonNull.outStream; s.write(data); } errbuffer = this._processLineBuffer(data, errbuffer, (line) => { if (this.options.listeners && this.options.listeners.errline) { this.options.listeners.errline(line); } }); }); } cp.on('error', (err) => { state.processError = err.message; state.processExited = true; state.processClosed = true; state.CheckComplete(); }); cp.on('exit', (code) => { state.processExitCode = code; state.processExited = true; this._debug(`Exit code ${code} received from tool '${this.toolPath}'`); state.CheckComplete(); }); cp.on('close', (code) => { state.processExitCode = code; state.processExited = true; state.processClosed = true; this._debug(`STDIO streams have closed for tool '${this.toolPath}'`); state.CheckComplete(); }); state.on('done', (error, exitCode) => { if (stdbuffer.length > 0) { this.emit('stdline', stdbuffer); } if (errbuffer.length > 0) { this.emit('errline', errbuffer); } cp.removeAllListeners(); if (error) { reject(error); } else { resolve(exitCode); } }); if (this.options.input) { if (!cp.stdin) { throw new Error('child process missing stdin'); } cp.stdin.end(this.options.input); } })); }); } } exports.ToolRunner = ToolRunner; /** * Convert an arg string to an array of args. Handles escaping * * @param argString string of arguments * @returns string[] array of arguments */ function argStringToArray(argString) { const args = []; let inQuotes = false; let escaped = false; let arg = ''; function append(c) { // we only escape double quotes. if (escaped && c !== '"') { arg += '\\'; } arg += c; escaped = false; } for (let i = 0; i < argString.length; i++) { const c = argString.charAt(i); if (c === '"') { if (!escaped) { inQuotes = !inQuotes; } else { append(c); } continue; } if (c === '\\' && escaped) { append(c); continue; } if (c === '\\' && inQuotes) { escaped = true; continue; } if (c === ' ' && !inQuotes) { if (arg.length > 0) { args.push(arg); arg = ''; } continue; } append(c); } if (arg.length > 0) { args.push(arg.trim()); } return args; } class ExecState extends events.EventEmitter { constructor(options, toolPath) { super(); this.processClosed = false; // tracks whether the process has exited and stdio is closed this.processError = ''; this.processExitCode = 0; this.processExited = false; // tracks whether the process has exited this.processStderr = false; // tracks whether stderr was written to this.delay = 10000; // 10 seconds this.done = false; this.timeout = null; if (!toolPath) { throw new Error('toolPath must not be empty'); } this.options = options; this.toolPath = toolPath; if (options.delay) { this.delay = options.delay; } } CheckComplete() { if (this.done) { return; } if (this.processClosed) { this._setResult(); } else if (this.processExited) { this.timeout = (0, timers_1.setTimeout)(ExecState.HandleTimeout, this.delay, this); } } _debug(message) { this.emit('debug', message); } _setResult() { // determine whether there is an error let error; if (this.processExited) { if (this.processError) { error = new Error(`There was an error when attempting to execute the process '${this.toolPath}'. This may indicate the process failed to start. Error: ${this.processError}`); } else if (this.processExitCode !== 0 && !this.options.ignoreReturnCode) { error = new Error(`The process '${this.toolPath}' failed with exit code ${this.processExitCode}`); } else if (this.processStderr && this.options.failOnStdErr) { error = new Error(`The process '${this.toolPath}' failed because one or more lines were written to the STDERR stream`); } } // clear the timeout if (this.timeout) { clearTimeout(this.timeout); this.timeout = null; } this.done = true; this.emit('done', error, this.processExitCode); } static HandleTimeout(state) { if (state.done) { return; } if (!state.processClosed && state.processExited) { const message = `The STDIO streams did not close within ${state.delay / 1000} seconds of the exit event from process '${state.toolPath}'. This may indicate a child process inherited the STDIO streams and has not yet exited.`; state._debug(message); } state._setResult(); } } //# sourceMappingURL=toolrunner.js.map /***/ }), /***/ 87120: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; var _a; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.READONLY = exports.UV_FS_O_EXLOCK = exports.IS_WINDOWS = exports.unlink = exports.symlink = exports.stat = exports.rmdir = exports.rm = exports.rename = exports.readdir = exports.open = exports.mkdir = exports.lstat = exports.copyFile = exports.chmod = void 0; exports.readlink = readlink; exports.exists = exists; exports.isDirectory = isDirectory; exports.isRooted = isRooted; exports.tryGetExecutablePath = tryGetExecutablePath; exports.getCmdPath = getCmdPath; const fs = __importStar(__nccwpck_require__(79896)); const path = __importStar(__nccwpck_require__(16928)); _a = fs.promises // export const {open} = 'fs' , exports.chmod = _a.chmod, exports.copyFile = _a.copyFile, exports.lstat = _a.lstat, exports.mkdir = _a.mkdir, exports.open = _a.open, exports.readdir = _a.readdir, exports.rename = _a.rename, exports.rm = _a.rm, exports.rmdir = _a.rmdir, exports.stat = _a.stat, exports.symlink = _a.symlink, exports.unlink = _a.unlink; // export const {open} = 'fs' exports.IS_WINDOWS = process.platform === 'win32'; /** * Custom implementation of readlink to ensure Windows junctions * maintain trailing backslash for backward compatibility with Node.js < 24 * * In Node.js 20, Windows junctions (directory symlinks) always returned paths * with trailing backslashes. Node.js 24 removed this behavior, which breaks * code that relied on this format for path operations. * * This implementation restores the Node 20 behavior by adding a trailing * backslash to all junction results on Windows. */ function readlink(fsPath) { return __awaiter(this, void 0, void 0, function* () { const result = yield fs.promises.readlink(fsPath); // On Windows, restore Node 20 behavior: add trailing backslash to all results // since junctions on Windows are always directory links if (exports.IS_WINDOWS && !result.endsWith('\\')) { return `${result}\\`; } return result; }); } // See https://github.com/nodejs/node/blob/d0153aee367422d0858105abec186da4dff0a0c5/deps/uv/include/uv/win.h#L691 exports.UV_FS_O_EXLOCK = 0x10000000; exports.READONLY = fs.constants.O_RDONLY; function exists(fsPath) { return __awaiter(this, void 0, void 0, function* () { try { yield (0, exports.stat)(fsPath); } catch (err) { if (err.code === 'ENOENT') { return false; } throw err; } return true; }); } function isDirectory(fsPath_1) { return __awaiter(this, arguments, void 0, function* (fsPath, useStat = false) { const stats = useStat ? yield (0, exports.stat)(fsPath) : yield (0, exports.lstat)(fsPath); return stats.isDirectory(); }); } /** * On OSX/Linux, true if path starts with '/'. On Windows, true for paths like: * \, \hello, \\hello\share, C:, and C:\hello (and corresponding alternate separator cases). */ function isRooted(p) { p = normalizeSeparators(p); if (!p) { throw new Error('isRooted() parameter "p" cannot be empty'); } if (exports.IS_WINDOWS) { return (p.startsWith('\\') || /^[A-Z]:/i.test(p) // e.g. \ or \hello or \\hello ); // e.g. C: or C:\hello } return p.startsWith('/'); } /** * Best effort attempt to determine whether a file exists and is executable. * @param filePath file path to check * @param extensions additional file extensions to try * @return if file exists and is executable, returns the file path. otherwise empty string. */ function tryGetExecutablePath(filePath, extensions) { return __awaiter(this, void 0, void 0, function* () { let stats = undefined; try { // test file exists stats = yield (0, exports.stat)(filePath); } catch (err) { if (err.code !== 'ENOENT') { // eslint-disable-next-line no-console console.log(`Unexpected error attempting to determine if executable file exists '${filePath}': ${err}`); } } if (stats && stats.isFile()) { if (exports.IS_WINDOWS) { // on Windows, test for valid extension const upperExt = path.extname(filePath).toUpperCase(); if (extensions.some(validExt => validExt.toUpperCase() === upperExt)) { return filePath; } } else { if (isUnixExecutable(stats)) { return filePath; } } } // try each extension const originalFilePath = filePath; for (const extension of extensions) { filePath = originalFilePath + extension; stats = undefined; try { stats = yield (0, exports.stat)(filePath); } catch (err) { if (err.code !== 'ENOENT') { // eslint-disable-next-line no-console console.log(`Unexpected error attempting to determine if executable file exists '${filePath}': ${err}`); } } if (stats && stats.isFile()) { if (exports.IS_WINDOWS) { // preserve the case of the actual file (since an extension was appended) try { const directory = path.dirname(filePath); const upperName = path.basename(filePath).toUpperCase(); for (const actualName of yield (0, exports.readdir)(directory)) { if (upperName === actualName.toUpperCase()) { filePath = path.join(directory, actualName); break; } } } catch (err) { // eslint-disable-next-line no-console console.log(`Unexpected error attempting to determine the actual case of the file '${filePath}': ${err}`); } return filePath; } else { if (isUnixExecutable(stats)) { return filePath; } } } } return ''; }); } function normalizeSeparators(p) { p = p || ''; if (exports.IS_WINDOWS) { // convert slashes on Windows p = p.replace(/\//g, '\\'); // remove redundant slashes return p.replace(/\\\\+/g, '\\'); } // remove redundant slashes return p.replace(/\/\/+/g, '/'); } // on Mac/Linux, test the execute bit // R W X R W X R W X // 256 128 64 32 16 8 4 2 1 function isUnixExecutable(stats) { return ((stats.mode & 1) > 0 || ((stats.mode & 8) > 0 && process.getgid !== undefined && stats.gid === process.getgid()) || ((stats.mode & 64) > 0 && process.getuid !== undefined && stats.uid === process.getuid())); } // Get the path of cmd.exe in windows function getCmdPath() { var _a; return (_a = process.env['COMSPEC']) !== null && _a !== void 0 ? _a : `cmd.exe`; } //# sourceMappingURL=io-util.js.map /***/ }), /***/ 18191: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.cp = cp; exports.mv = mv; exports.rmRF = rmRF; exports.mkdirP = mkdirP; exports.which = which; exports.findInPath = findInPath; const assert_1 = __nccwpck_require__(42613); const path = __importStar(__nccwpck_require__(16928)); const ioUtil = __importStar(__nccwpck_require__(87120)); /** * Copies a file or folder. * Based off of shelljs - https://github.com/shelljs/shelljs/blob/9237f66c52e5daa40458f94f9565e18e8132f5a6/src/cp.js * * @param source source path * @param dest destination path * @param options optional. See CopyOptions. */ function cp(source_1, dest_1) { return __awaiter(this, arguments, void 0, function* (source, dest, options = {}) { const { force, recursive, copySourceDirectory } = readCopyOptions(options); const destStat = (yield ioUtil.exists(dest)) ? yield ioUtil.stat(dest) : null; // Dest is an existing file, but not forcing if (destStat && destStat.isFile() && !force) { return; } // If dest is an existing directory, should copy inside. const newDest = destStat && destStat.isDirectory() && copySourceDirectory ? path.join(dest, path.basename(source)) : dest; if (!(yield ioUtil.exists(source))) { throw new Error(`no such file or directory: ${source}`); } const sourceStat = yield ioUtil.stat(source); if (sourceStat.isDirectory()) { if (!recursive) { throw new Error(`Failed to copy. ${source} is a directory, but tried to copy without recursive flag.`); } else { yield cpDirRecursive(source, newDest, 0, force); } } else { if (path.relative(source, newDest) === '') { // a file cannot be copied to itself throw new Error(`'${newDest}' and '${source}' are the same file`); } yield copyFile(source, newDest, force); } }); } /** * Moves a path. * * @param source source path * @param dest destination path * @param options optional. See MoveOptions. */ function mv(source_1, dest_1) { return __awaiter(this, arguments, void 0, function* (source, dest, options = {}) { if (yield ioUtil.exists(dest)) { let destExists = true; if (yield ioUtil.isDirectory(dest)) { // If dest is directory copy src into dest dest = path.join(dest, path.basename(source)); destExists = yield ioUtil.exists(dest); } if (destExists) { if (options.force == null || options.force) { yield rmRF(dest); } else { throw new Error('Destination already exists'); } } } yield mkdirP(path.dirname(dest)); yield ioUtil.rename(source, dest); }); } /** * Remove a path recursively with force * * @param inputPath path to remove */ function rmRF(inputPath) { return __awaiter(this, void 0, void 0, function* () { if (ioUtil.IS_WINDOWS) { // Check for invalid characters // https://docs.microsoft.com/en-us/windows/win32/fileio/naming-a-file if (/[*"<>|]/.test(inputPath)) { throw new Error('File path must not contain `*`, `"`, `<`, `>` or `|` on Windows'); } } try { // note if path does not exist, error is silent yield ioUtil.rm(inputPath, { force: true, maxRetries: 3, recursive: true, retryDelay: 300 }); } catch (err) { throw new Error(`File was unable to be removed ${err}`); } }); } /** * Make a directory. Creates the full path with folders in between * Will throw if it fails * * @param fsPath path to create * @returns Promise */ function mkdirP(fsPath) { return __awaiter(this, void 0, void 0, function* () { (0, assert_1.ok)(fsPath, 'a path argument must be provided'); yield ioUtil.mkdir(fsPath, { recursive: true }); }); } /** * Returns path of a tool had the tool actually been invoked. Resolves via paths. * If you check and the tool does not exist, it will throw. * * @param tool name of the tool * @param check whether to check if tool exists * @returns Promise path to tool */ function which(tool, check) { return __awaiter(this, void 0, void 0, function* () { if (!tool) { throw new Error("parameter 'tool' is required"); } // recursive when check=true if (check) { const result = yield which(tool, false); if (!result) { if (ioUtil.IS_WINDOWS) { throw new Error(`Unable to locate executable file: ${tool}. Please verify either the file path exists or the file can be found within a directory specified by the PATH environment variable. Also verify the file has a valid extension for an executable file.`); } else { throw new Error(`Unable to locate executable file: ${tool}. Please verify either the file path exists or the file can be found within a directory specified by the PATH environment variable. Also check the file mode to verify the file is executable.`); } } return result; } const matches = yield findInPath(tool); if (matches && matches.length > 0) { return matches[0]; } return ''; }); } /** * Returns a list of all occurrences of the given tool on the system path. * * @returns Promise the paths of the tool */ function findInPath(tool) { return __awaiter(this, void 0, void 0, function* () { if (!tool) { throw new Error("parameter 'tool' is required"); } // build the list of extensions to try const extensions = []; if (ioUtil.IS_WINDOWS && process.env['PATHEXT']) { for (const extension of process.env['PATHEXT'].split(path.delimiter)) { if (extension) { extensions.push(extension); } } } // if it's rooted, return it if exists. otherwise return empty. if (ioUtil.isRooted(tool)) { const filePath = yield ioUtil.tryGetExecutablePath(tool, extensions); if (filePath) { return [filePath]; } return []; } // if any path separators, return empty if (tool.includes(path.sep)) { return []; } // build the list of directories // // Note, technically "where" checks the current directory on Windows. From a toolkit perspective, // it feels like we should not do this. Checking the current directory seems like more of a use // case of a shell, and the which() function exposed by the toolkit should strive for consistency // across platforms. const directories = []; if (process.env.PATH) { for (const p of process.env.PATH.split(path.delimiter)) { if (p) { directories.push(p); } } } // find all matches const matches = []; for (const directory of directories) { const filePath = yield ioUtil.tryGetExecutablePath(path.join(directory, tool), extensions); if (filePath) { matches.push(filePath); } } return matches; }); } function readCopyOptions(options) { const force = options.force == null ? true : options.force; const recursive = Boolean(options.recursive); const copySourceDirectory = options.copySourceDirectory == null ? true : Boolean(options.copySourceDirectory); return { force, recursive, copySourceDirectory }; } function cpDirRecursive(sourceDir, destDir, currentDepth, force) { return __awaiter(this, void 0, void 0, function* () { // Ensure there is not a run away recursive copy if (currentDepth >= 255) return; currentDepth++; yield mkdirP(destDir); const files = yield ioUtil.readdir(sourceDir); for (const fileName of files) { const srcFile = `${sourceDir}/${fileName}`; const destFile = `${destDir}/${fileName}`; const srcFileStat = yield ioUtil.lstat(srcFile); if (srcFileStat.isDirectory()) { // Recurse yield cpDirRecursive(srcFile, destFile, currentDepth, force); } else { yield copyFile(srcFile, destFile, force); } } // Change the mode for the newly created directory yield ioUtil.chmod(destDir, (yield ioUtil.stat(sourceDir)).mode); }); } // Buffered file copy function copyFile(srcFile, destFile, force) { return __awaiter(this, void 0, void 0, function* () { if ((yield ioUtil.lstat(srcFile)).isSymbolicLink()) { // unlink/re-link it try { yield ioUtil.lstat(destFile); yield ioUtil.unlink(destFile); } catch (e) { // Try to override file permission if (e.code === 'EPERM') { yield ioUtil.chmod(destFile, '0666'); yield ioUtil.unlink(destFile); } // other errors = it doesn't exist, no work to do } // Copy over symlink const symlinkFull = yield ioUtil.readlink(srcFile); yield ioUtil.symlink(symlinkFull, destFile, ioUtil.IS_WINDOWS ? 'junction' : null); } else if (!(yield ioUtil.exists(destFile)) || force) { yield ioUtil.copyFile(srcFile, destFile); } }); } //# sourceMappingURL=io.js.map /***/ }), /***/ 51648: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.Context = void 0; const fs_1 = __nccwpck_require__(79896); const os_1 = __nccwpck_require__(70857); class Context { /** * Hydrate the context from the environment */ constructor() { var _a, _b, _c; this.payload = {}; if (process.env.GITHUB_EVENT_PATH) { if ((0, fs_1.existsSync)(process.env.GITHUB_EVENT_PATH)) { this.payload = JSON.parse((0, fs_1.readFileSync)(process.env.GITHUB_EVENT_PATH, { encoding: 'utf8' })); } else { const path = process.env.GITHUB_EVENT_PATH; process.stdout.write(`GITHUB_EVENT_PATH ${path} does not exist${os_1.EOL}`); } } this.eventName = process.env.GITHUB_EVENT_NAME; this.sha = process.env.GITHUB_SHA; this.ref = process.env.GITHUB_REF; this.workflow = process.env.GITHUB_WORKFLOW; this.action = process.env.GITHUB_ACTION; this.actor = process.env.GITHUB_ACTOR; this.job = process.env.GITHUB_JOB; this.runAttempt = parseInt(process.env.GITHUB_RUN_ATTEMPT, 10); this.runNumber = parseInt(process.env.GITHUB_RUN_NUMBER, 10); this.runId = parseInt(process.env.GITHUB_RUN_ID, 10); this.apiUrl = (_a = process.env.GITHUB_API_URL) !== null && _a !== void 0 ? _a : `https://api.github.com`; this.serverUrl = (_b = process.env.GITHUB_SERVER_URL) !== null && _b !== void 0 ? _b : `https://github.com`; this.graphqlUrl = (_c = process.env.GITHUB_GRAPHQL_URL) !== null && _c !== void 0 ? _c : `https://api.github.com/graphql`; } get issue() { const payload = this.payload; return Object.assign(Object.assign({}, this.repo), { number: (payload.issue || payload.pull_request || payload).number }); } get repo() { if (process.env.GITHUB_REPOSITORY) { const [owner, repo] = process.env.GITHUB_REPOSITORY.split('/'); return { owner, repo }; } if (this.payload.repository) { return { owner: this.payload.repository.owner.login, repo: this.payload.repository.name }; } throw new Error("context.repo requires a GITHUB_REPOSITORY environment variable like 'owner/repo'"); } } exports.Context = Context; //# sourceMappingURL=context.js.map /***/ }), /***/ 93228: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); Object.defineProperty(exports, "__esModule", ({ value: true })); exports.context = void 0; exports.getOctokit = getOctokit; const Context = __importStar(__nccwpck_require__(51648)); const utils_1 = __nccwpck_require__(38006); exports.context = new Context.Context(); /** * Returns a hydrated octokit ready to use for GitHub Actions * * @param token the repo PAT or GITHUB_TOKEN * @param options other options to set */ function getOctokit(token, options, ...additionalPlugins) { const GitHubWithPlugins = utils_1.GitHub.plugin(...additionalPlugins); return new GitHubWithPlugins((0, utils_1.getOctokitOptions)(token, options)); } //# sourceMappingURL=github.js.map /***/ }), /***/ 65156: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.getAuthString = getAuthString; exports.getProxyAgent = getProxyAgent; exports.getProxyAgentDispatcher = getProxyAgentDispatcher; exports.getProxyFetch = getProxyFetch; exports.getApiBaseUrl = getApiBaseUrl; const httpClient = __importStar(__nccwpck_require__(54844)); const undici_1 = __nccwpck_require__(46752); function getAuthString(token, options) { if (!token && !options.auth) { throw new Error('Parameter token or opts.auth is required'); } else if (token && options.auth) { throw new Error('Parameters token and opts.auth may not both be specified'); } return typeof options.auth === 'string' ? options.auth : `token ${token}`; } function getProxyAgent(destinationUrl) { const hc = new httpClient.HttpClient(); return hc.getAgent(destinationUrl); } function getProxyAgentDispatcher(destinationUrl) { const hc = new httpClient.HttpClient(); return hc.getAgentDispatcher(destinationUrl); } function getProxyFetch(destinationUrl) { const httpDispatcher = getProxyAgentDispatcher(destinationUrl); const proxyFetch = (url, opts) => __awaiter(this, void 0, void 0, function* () { return (0, undici_1.fetch)(url, Object.assign(Object.assign({}, opts), { dispatcher: httpDispatcher })); }); return proxyFetch; } function getApiBaseUrl() { return process.env['GITHUB_API_URL'] || 'https://api.github.com'; } //# sourceMappingURL=utils.js.map /***/ }), /***/ 38006: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); Object.defineProperty(exports, "__esModule", ({ value: true })); exports.GitHub = exports.defaults = exports.context = void 0; exports.getOctokitOptions = getOctokitOptions; const Context = __importStar(__nccwpck_require__(51648)); const Utils = __importStar(__nccwpck_require__(65156)); // octokit + plugins const core_1 = __nccwpck_require__(61897); const plugin_rest_endpoint_methods_1 = __nccwpck_require__(84935); const plugin_paginate_rest_1 = __nccwpck_require__(38082); exports.context = new Context.Context(); const baseUrl = Utils.getApiBaseUrl(); exports.defaults = { baseUrl, request: { agent: Utils.getProxyAgent(baseUrl), fetch: Utils.getProxyFetch(baseUrl) } }; exports.GitHub = core_1.Octokit.plugin(plugin_rest_endpoint_methods_1.restEndpointMethods, plugin_paginate_rest_1.paginateRest).defaults(exports.defaults); /** * Convience function to correctly format Octokit Options to pass into the constructor. * * @param token the repo PAT or GITHUB_TOKEN * @param options other options to set */ function getOctokitOptions(token, options) { const opts = Object.assign({}, options || {}); // Shallow clone - don't mutate the object provided by the caller // Auth const auth = Utils.getAuthString(token, opts); if (auth) { opts.auth = auth; } return opts; } //# sourceMappingURL=utils.js.map /***/ }), /***/ 47206: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.hashFiles = exports.create = void 0; const internal_globber_1 = __nccwpck_require__(10103); const internal_hash_files_1 = __nccwpck_require__(73608); /** * Constructs a globber * * @param patterns Patterns separated by newlines * @param options Glob options */ function create(patterns, options) { return __awaiter(this, void 0, void 0, function* () { return yield internal_globber_1.DefaultGlobber.create(patterns, options); }); } exports.create = create; /** * Computes the sha256 hash of a glob * * @param patterns Patterns separated by newlines * @param currentWorkspace Workspace used when matching files * @param options Glob options * @param verbose Enables verbose logging */ function hashFiles(patterns, currentWorkspace = '', options, verbose = false) { return __awaiter(this, void 0, void 0, function* () { let followSymbolicLinks = true; if (options && typeof options.followSymbolicLinks === 'boolean') { followSymbolicLinks = options.followSymbolicLinks; } const globber = yield create(patterns, { followSymbolicLinks }); return (0, internal_hash_files_1.hashFiles)(globber, currentWorkspace, verbose); }); } exports.hashFiles = hashFiles; //# sourceMappingURL=glob.js.map /***/ }), /***/ 18164: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.getOptions = void 0; const core = __importStar(__nccwpck_require__(54270)); /** * Returns a copy with defaults filled in. */ function getOptions(copy) { const result = { followSymbolicLinks: true, implicitDescendants: true, matchDirectories: true, omitBrokenSymbolicLinks: true, excludeHiddenFiles: false }; if (copy) { if (typeof copy.followSymbolicLinks === 'boolean') { result.followSymbolicLinks = copy.followSymbolicLinks; core.debug(`followSymbolicLinks '${result.followSymbolicLinks}'`); } if (typeof copy.implicitDescendants === 'boolean') { result.implicitDescendants = copy.implicitDescendants; core.debug(`implicitDescendants '${result.implicitDescendants}'`); } if (typeof copy.matchDirectories === 'boolean') { result.matchDirectories = copy.matchDirectories; core.debug(`matchDirectories '${result.matchDirectories}'`); } if (typeof copy.omitBrokenSymbolicLinks === 'boolean') { result.omitBrokenSymbolicLinks = copy.omitBrokenSymbolicLinks; core.debug(`omitBrokenSymbolicLinks '${result.omitBrokenSymbolicLinks}'`); } if (typeof copy.excludeHiddenFiles === 'boolean') { result.excludeHiddenFiles = copy.excludeHiddenFiles; core.debug(`excludeHiddenFiles '${result.excludeHiddenFiles}'`); } } return result; } exports.getOptions = getOptions; //# sourceMappingURL=internal-glob-options-helper.js.map /***/ }), /***/ 10103: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; var __asyncValues = (this && this.__asyncValues) || function (o) { if (!Symbol.asyncIterator) throw new TypeError("Symbol.asyncIterator is not defined."); var m = o[Symbol.asyncIterator], i; return m ? m.call(o) : (o = typeof __values === "function" ? __values(o) : o[Symbol.iterator](), i = {}, verb("next"), verb("throw"), verb("return"), i[Symbol.asyncIterator] = function () { return this; }, i); function verb(n) { i[n] = o[n] && function (v) { return new Promise(function (resolve, reject) { v = o[n](v), settle(resolve, reject, v.done, v.value); }); }; } function settle(resolve, reject, d, v) { Promise.resolve(v).then(function(v) { resolve({ value: v, done: d }); }, reject); } }; var __await = (this && this.__await) || function (v) { return this instanceof __await ? (this.v = v, this) : new __await(v); } var __asyncGenerator = (this && this.__asyncGenerator) || function (thisArg, _arguments, generator) { if (!Symbol.asyncIterator) throw new TypeError("Symbol.asyncIterator is not defined."); var g = generator.apply(thisArg, _arguments || []), i, q = []; return i = {}, verb("next"), verb("throw"), verb("return"), i[Symbol.asyncIterator] = function () { return this; }, i; function verb(n) { if (g[n]) i[n] = function (v) { return new Promise(function (a, b) { q.push([n, v, a, b]) > 1 || resume(n, v); }); }; } function resume(n, v) { try { step(g[n](v)); } catch (e) { settle(q[0][3], e); } } function step(r) { r.value instanceof __await ? Promise.resolve(r.value.v).then(fulfill, reject) : settle(q[0][2], r); } function fulfill(value) { resume("next", value); } function reject(value) { resume("throw", value); } function settle(f, v) { if (f(v), q.shift(), q.length) resume(q[0][0], q[0][1]); } }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.DefaultGlobber = void 0; const core = __importStar(__nccwpck_require__(54270)); const fs = __importStar(__nccwpck_require__(79896)); const globOptionsHelper = __importStar(__nccwpck_require__(18164)); const path = __importStar(__nccwpck_require__(16928)); const patternHelper = __importStar(__nccwpck_require__(98891)); const internal_match_kind_1 = __nccwpck_require__(62644); const internal_pattern_1 = __nccwpck_require__(25370); const internal_search_state_1 = __nccwpck_require__(79890); const IS_WINDOWS = process.platform === 'win32'; class DefaultGlobber { constructor(options) { this.patterns = []; this.searchPaths = []; this.options = globOptionsHelper.getOptions(options); } getSearchPaths() { // Return a copy return this.searchPaths.slice(); } glob() { var _a, e_1, _b, _c; return __awaiter(this, void 0, void 0, function* () { const result = []; try { for (var _d = true, _e = __asyncValues(this.globGenerator()), _f; _f = yield _e.next(), _a = _f.done, !_a; _d = true) { _c = _f.value; _d = false; const itemPath = _c; result.push(itemPath); } } catch (e_1_1) { e_1 = { error: e_1_1 }; } finally { try { if (!_d && !_a && (_b = _e.return)) yield _b.call(_e); } finally { if (e_1) throw e_1.error; } } return result; }); } globGenerator() { return __asyncGenerator(this, arguments, function* globGenerator_1() { // Fill in defaults options const options = globOptionsHelper.getOptions(this.options); // Implicit descendants? const patterns = []; for (const pattern of this.patterns) { patterns.push(pattern); if (options.implicitDescendants && (pattern.trailingSeparator || pattern.segments[pattern.segments.length - 1] !== '**')) { patterns.push(new internal_pattern_1.Pattern(pattern.negate, true, pattern.segments.concat('**'))); } } // Push the search paths const stack = []; for (const searchPath of patternHelper.getSearchPaths(patterns)) { core.debug(`Search path '${searchPath}'`); // Exists? try { // Intentionally using lstat. Detection for broken symlink // will be performed later (if following symlinks). yield __await(fs.promises.lstat(searchPath)); } catch (err) { if (err.code === 'ENOENT') { continue; } throw err; } stack.unshift(new internal_search_state_1.SearchState(searchPath, 1)); } // Search const traversalChain = []; // used to detect cycles while (stack.length) { // Pop const item = stack.pop(); // Match? const match = patternHelper.match(patterns, item.path); const partialMatch = !!match || patternHelper.partialMatch(patterns, item.path); if (!match && !partialMatch) { continue; } // Stat const stats = yield __await(DefaultGlobber.stat(item, options, traversalChain) // Broken symlink, or symlink cycle detected, or no longer exists ); // Broken symlink, or symlink cycle detected, or no longer exists if (!stats) { continue; } // Hidden file or directory? if (options.excludeHiddenFiles && path.basename(item.path).match(/^\./)) { continue; } // Directory if (stats.isDirectory()) { // Matched if (match & internal_match_kind_1.MatchKind.Directory && options.matchDirectories) { yield yield __await(item.path); } // Descend? else if (!partialMatch) { continue; } // Push the child items in reverse const childLevel = item.level + 1; const childItems = (yield __await(fs.promises.readdir(item.path))).map(x => new internal_search_state_1.SearchState(path.join(item.path, x), childLevel)); stack.push(...childItems.reverse()); } // File else if (match & internal_match_kind_1.MatchKind.File) { yield yield __await(item.path); } } }); } /** * Constructs a DefaultGlobber */ static create(patterns, options) { return __awaiter(this, void 0, void 0, function* () { const result = new DefaultGlobber(options); if (IS_WINDOWS) { patterns = patterns.replace(/\r\n/g, '\n'); patterns = patterns.replace(/\r/g, '\n'); } const lines = patterns.split('\n').map(x => x.trim()); for (const line of lines) { // Empty or comment if (!line || line.startsWith('#')) { continue; } // Pattern else { result.patterns.push(new internal_pattern_1.Pattern(line)); } } result.searchPaths.push(...patternHelper.getSearchPaths(result.patterns)); return result; }); } static stat(item, options, traversalChain) { return __awaiter(this, void 0, void 0, function* () { // Note: // `stat` returns info about the target of a symlink (or symlink chain) // `lstat` returns info about a symlink itself let stats; if (options.followSymbolicLinks) { try { // Use `stat` (following symlinks) stats = yield fs.promises.stat(item.path); } catch (err) { if (err.code === 'ENOENT') { if (options.omitBrokenSymbolicLinks) { core.debug(`Broken symlink '${item.path}'`); return undefined; } throw new Error(`No information found for the path '${item.path}'. This may indicate a broken symbolic link.`); } throw err; } } else { // Use `lstat` (not following symlinks) stats = yield fs.promises.lstat(item.path); } // Note, isDirectory() returns false for the lstat of a symlink if (stats.isDirectory() && options.followSymbolicLinks) { // Get the realpath const realPath = yield fs.promises.realpath(item.path); // Fixup the traversal chain to match the item level while (traversalChain.length >= item.level) { traversalChain.pop(); } // Test for a cycle if (traversalChain.some((x) => x === realPath)) { core.debug(`Symlink cycle detected for path '${item.path}' and realpath '${realPath}'`); return undefined; } // Update the traversal chain traversalChain.push(realPath); } return stats; }); } } exports.DefaultGlobber = DefaultGlobber; //# sourceMappingURL=internal-globber.js.map /***/ }), /***/ 73608: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; var __asyncValues = (this && this.__asyncValues) || function (o) { if (!Symbol.asyncIterator) throw new TypeError("Symbol.asyncIterator is not defined."); var m = o[Symbol.asyncIterator], i; return m ? m.call(o) : (o = typeof __values === "function" ? __values(o) : o[Symbol.iterator](), i = {}, verb("next"), verb("throw"), verb("return"), i[Symbol.asyncIterator] = function () { return this; }, i); function verb(n) { i[n] = o[n] && function (v) { return new Promise(function (resolve, reject) { v = o[n](v), settle(resolve, reject, v.done, v.value); }); }; } function settle(resolve, reject, d, v) { Promise.resolve(v).then(function(v) { resolve({ value: v, done: d }); }, reject); } }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.hashFiles = void 0; const crypto = __importStar(__nccwpck_require__(76982)); const core = __importStar(__nccwpck_require__(54270)); const fs = __importStar(__nccwpck_require__(79896)); const stream = __importStar(__nccwpck_require__(2203)); const util = __importStar(__nccwpck_require__(39023)); const path = __importStar(__nccwpck_require__(16928)); function hashFiles(globber, currentWorkspace, verbose = false) { var _a, e_1, _b, _c; var _d; return __awaiter(this, void 0, void 0, function* () { const writeDelegate = verbose ? core.info : core.debug; let hasMatch = false; const githubWorkspace = currentWorkspace ? currentWorkspace : (_d = process.env['GITHUB_WORKSPACE']) !== null && _d !== void 0 ? _d : process.cwd(); const result = crypto.createHash('sha256'); let count = 0; try { for (var _e = true, _f = __asyncValues(globber.globGenerator()), _g; _g = yield _f.next(), _a = _g.done, !_a; _e = true) { _c = _g.value; _e = false; const file = _c; writeDelegate(file); if (!file.startsWith(`${githubWorkspace}${path.sep}`)) { writeDelegate(`Ignore '${file}' since it is not under GITHUB_WORKSPACE.`); continue; } if (fs.statSync(file).isDirectory()) { writeDelegate(`Skip directory '${file}'.`); continue; } const hash = crypto.createHash('sha256'); const pipeline = util.promisify(stream.pipeline); yield pipeline(fs.createReadStream(file), hash); result.write(hash.digest()); count++; if (!hasMatch) { hasMatch = true; } } } catch (e_1_1) { e_1 = { error: e_1_1 }; } finally { try { if (!_e && !_a && (_b = _f.return)) yield _b.call(_f); } finally { if (e_1) throw e_1.error; } } result.end(); if (hasMatch) { writeDelegate(`Found ${count} files to hash.`); return result.digest('hex'); } else { writeDelegate(`No matches found for glob`); return ''; } }); } exports.hashFiles = hashFiles; //# sourceMappingURL=internal-hash-files.js.map /***/ }), /***/ 62644: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.MatchKind = void 0; /** * Indicates whether a pattern matches a path */ var MatchKind; (function (MatchKind) { /** Not matched */ MatchKind[MatchKind["None"] = 0] = "None"; /** Matched if the path is a directory */ MatchKind[MatchKind["Directory"] = 1] = "Directory"; /** Matched if the path is a regular file */ MatchKind[MatchKind["File"] = 2] = "File"; /** Matched */ MatchKind[MatchKind["All"] = 3] = "All"; })(MatchKind || (exports.MatchKind = MatchKind = {})); //# sourceMappingURL=internal-match-kind.js.map /***/ }), /***/ 84138: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; var __importDefault = (this && this.__importDefault) || function (mod) { return (mod && mod.__esModule) ? mod : { "default": mod }; }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.safeTrimTrailingSeparator = exports.normalizeSeparators = exports.hasRoot = exports.hasAbsoluteRoot = exports.ensureAbsoluteRoot = exports.dirname = void 0; const path = __importStar(__nccwpck_require__(16928)); const assert_1 = __importDefault(__nccwpck_require__(42613)); const IS_WINDOWS = process.platform === 'win32'; /** * Similar to path.dirname except normalizes the path separators and slightly better handling for Windows UNC paths. * * For example, on Linux/macOS: * - `/ => /` * - `/hello => /` * * For example, on Windows: * - `C:\ => C:\` * - `C:\hello => C:\` * - `C: => C:` * - `C:hello => C:` * - `\ => \` * - `\hello => \` * - `\\hello => \\hello` * - `\\hello\world => \\hello\world` */ function dirname(p) { // Normalize slashes and trim unnecessary trailing slash p = safeTrimTrailingSeparator(p); // Windows UNC root, e.g. \\hello or \\hello\world if (IS_WINDOWS && /^\\\\[^\\]+(\\[^\\]+)?$/.test(p)) { return p; } // Get dirname let result = path.dirname(p); // Trim trailing slash for Windows UNC root, e.g. \\hello\world\ if (IS_WINDOWS && /^\\\\[^\\]+\\[^\\]+\\$/.test(result)) { result = safeTrimTrailingSeparator(result); } return result; } exports.dirname = dirname; /** * Roots the path if not already rooted. On Windows, relative roots like `\` * or `C:` are expanded based on the current working directory. */ function ensureAbsoluteRoot(root, itemPath) { (0, assert_1.default)(root, `ensureAbsoluteRoot parameter 'root' must not be empty`); (0, assert_1.default)(itemPath, `ensureAbsoluteRoot parameter 'itemPath' must not be empty`); // Already rooted if (hasAbsoluteRoot(itemPath)) { return itemPath; } // Windows if (IS_WINDOWS) { // Check for itemPath like C: or C:foo if (itemPath.match(/^[A-Z]:[^\\/]|^[A-Z]:$/i)) { let cwd = process.cwd(); (0, assert_1.default)(cwd.match(/^[A-Z]:\\/i), `Expected current directory to start with an absolute drive root. Actual '${cwd}'`); // Drive letter matches cwd? Expand to cwd if (itemPath[0].toUpperCase() === cwd[0].toUpperCase()) { // Drive only, e.g. C: if (itemPath.length === 2) { // Preserve specified drive letter case (upper or lower) return `${itemPath[0]}:\\${cwd.substr(3)}`; } // Drive + path, e.g. C:foo else { if (!cwd.endsWith('\\')) { cwd += '\\'; } // Preserve specified drive letter case (upper or lower) return `${itemPath[0]}:\\${cwd.substr(3)}${itemPath.substr(2)}`; } } // Different drive else { return `${itemPath[0]}:\\${itemPath.substr(2)}`; } } // Check for itemPath like \ or \foo else if (normalizeSeparators(itemPath).match(/^\\$|^\\[^\\]/)) { const cwd = process.cwd(); (0, assert_1.default)(cwd.match(/^[A-Z]:\\/i), `Expected current directory to start with an absolute drive root. Actual '${cwd}'`); return `${cwd[0]}:\\${itemPath.substr(1)}`; } } (0, assert_1.default)(hasAbsoluteRoot(root), `ensureAbsoluteRoot parameter 'root' must have an absolute root`); // Otherwise ensure root ends with a separator if (root.endsWith('/') || (IS_WINDOWS && root.endsWith('\\'))) { // Intentionally empty } else { // Append separator root += path.sep; } return root + itemPath; } exports.ensureAbsoluteRoot = ensureAbsoluteRoot; /** * On Linux/macOS, true if path starts with `/`. On Windows, true for paths like: * `\\hello\share` and `C:\hello` (and using alternate separator). */ function hasAbsoluteRoot(itemPath) { (0, assert_1.default)(itemPath, `hasAbsoluteRoot parameter 'itemPath' must not be empty`); // Normalize separators itemPath = normalizeSeparators(itemPath); // Windows if (IS_WINDOWS) { // E.g. \\hello\share or C:\hello return itemPath.startsWith('\\\\') || /^[A-Z]:\\/i.test(itemPath); } // E.g. /hello return itemPath.startsWith('/'); } exports.hasAbsoluteRoot = hasAbsoluteRoot; /** * On Linux/macOS, true if path starts with `/`. On Windows, true for paths like: * `\`, `\hello`, `\\hello\share`, `C:`, and `C:\hello` (and using alternate separator). */ function hasRoot(itemPath) { (0, assert_1.default)(itemPath, `isRooted parameter 'itemPath' must not be empty`); // Normalize separators itemPath = normalizeSeparators(itemPath); // Windows if (IS_WINDOWS) { // E.g. \ or \hello or \\hello // E.g. C: or C:\hello return itemPath.startsWith('\\') || /^[A-Z]:/i.test(itemPath); } // E.g. /hello return itemPath.startsWith('/'); } exports.hasRoot = hasRoot; /** * Removes redundant slashes and converts `/` to `\` on Windows */ function normalizeSeparators(p) { p = p || ''; // Windows if (IS_WINDOWS) { // Convert slashes on Windows p = p.replace(/\//g, '\\'); // Remove redundant slashes const isUnc = /^\\\\+[^\\]/.test(p); // e.g. \\hello return (isUnc ? '\\' : '') + p.replace(/\\\\+/g, '\\'); // preserve leading \\ for UNC } // Remove redundant slashes return p.replace(/\/\/+/g, '/'); } exports.normalizeSeparators = normalizeSeparators; /** * Normalizes the path separators and trims the trailing separator (when safe). * For example, `/foo/ => /foo` but `/ => /` */ function safeTrimTrailingSeparator(p) { // Short-circuit if empty if (!p) { return ''; } // Normalize separators p = normalizeSeparators(p); // No trailing slash if (!p.endsWith(path.sep)) { return p; } // Check '/' on Linux/macOS and '\' on Windows if (p === path.sep) { return p; } // On Windows check if drive root. E.g. C:\ if (IS_WINDOWS && /^[A-Z]:\\$/i.test(p)) { return p; } // Otherwise trim trailing slash return p.substr(0, p.length - 1); } exports.safeTrimTrailingSeparator = safeTrimTrailingSeparator; //# sourceMappingURL=internal-path-helper.js.map /***/ }), /***/ 76617: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; var __importDefault = (this && this.__importDefault) || function (mod) { return (mod && mod.__esModule) ? mod : { "default": mod }; }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.Path = void 0; const path = __importStar(__nccwpck_require__(16928)); const pathHelper = __importStar(__nccwpck_require__(84138)); const assert_1 = __importDefault(__nccwpck_require__(42613)); const IS_WINDOWS = process.platform === 'win32'; /** * Helper class for parsing paths into segments */ class Path { /** * Constructs a Path * @param itemPath Path or array of segments */ constructor(itemPath) { this.segments = []; // String if (typeof itemPath === 'string') { (0, assert_1.default)(itemPath, `Parameter 'itemPath' must not be empty`); // Normalize slashes and trim unnecessary trailing slash itemPath = pathHelper.safeTrimTrailingSeparator(itemPath); // Not rooted if (!pathHelper.hasRoot(itemPath)) { this.segments = itemPath.split(path.sep); } // Rooted else { // Add all segments, while not at the root let remaining = itemPath; let dir = pathHelper.dirname(remaining); while (dir !== remaining) { // Add the segment const basename = path.basename(remaining); this.segments.unshift(basename); // Truncate the last segment remaining = dir; dir = pathHelper.dirname(remaining); } // Remainder is the root this.segments.unshift(remaining); } } // Array else { // Must not be empty (0, assert_1.default)(itemPath.length > 0, `Parameter 'itemPath' must not be an empty array`); // Each segment for (let i = 0; i < itemPath.length; i++) { let segment = itemPath[i]; // Must not be empty (0, assert_1.default)(segment, `Parameter 'itemPath' must not contain any empty segments`); // Normalize slashes segment = pathHelper.normalizeSeparators(itemPath[i]); // Root segment if (i === 0 && pathHelper.hasRoot(segment)) { segment = pathHelper.safeTrimTrailingSeparator(segment); (0, assert_1.default)(segment === pathHelper.dirname(segment), `Parameter 'itemPath' root segment contains information for multiple segments`); this.segments.push(segment); } // All other segments else { // Must not contain slash (0, assert_1.default)(!segment.includes(path.sep), `Parameter 'itemPath' contains unexpected path separators`); this.segments.push(segment); } } } } /** * Converts the path to it's string representation */ toString() { // First segment let result = this.segments[0]; // All others let skipSlash = result.endsWith(path.sep) || (IS_WINDOWS && /^[A-Z]:$/i.test(result)); for (let i = 1; i < this.segments.length; i++) { if (skipSlash) { skipSlash = false; } else { result += path.sep; } result += this.segments[i]; } return result; } } exports.Path = Path; //# sourceMappingURL=internal-path.js.map /***/ }), /***/ 98891: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.partialMatch = exports.match = exports.getSearchPaths = void 0; const pathHelper = __importStar(__nccwpck_require__(84138)); const internal_match_kind_1 = __nccwpck_require__(62644); const IS_WINDOWS = process.platform === 'win32'; /** * Given an array of patterns, returns an array of paths to search. * Duplicates and paths under other included paths are filtered out. */ function getSearchPaths(patterns) { // Ignore negate patterns patterns = patterns.filter(x => !x.negate); // Create a map of all search paths const searchPathMap = {}; for (const pattern of patterns) { const key = IS_WINDOWS ? pattern.searchPath.toUpperCase() : pattern.searchPath; searchPathMap[key] = 'candidate'; } const result = []; for (const pattern of patterns) { // Check if already included const key = IS_WINDOWS ? pattern.searchPath.toUpperCase() : pattern.searchPath; if (searchPathMap[key] === 'included') { continue; } // Check for an ancestor search path let foundAncestor = false; let tempKey = key; let parent = pathHelper.dirname(tempKey); while (parent !== tempKey) { if (searchPathMap[parent]) { foundAncestor = true; break; } tempKey = parent; parent = pathHelper.dirname(tempKey); } // Include the search pattern in the result if (!foundAncestor) { result.push(pattern.searchPath); searchPathMap[key] = 'included'; } } return result; } exports.getSearchPaths = getSearchPaths; /** * Matches the patterns against the path */ function match(patterns, itemPath) { let result = internal_match_kind_1.MatchKind.None; for (const pattern of patterns) { if (pattern.negate) { result &= ~pattern.match(itemPath); } else { result |= pattern.match(itemPath); } } return result; } exports.match = match; /** * Checks whether to descend further into the directory */ function partialMatch(patterns, itemPath) { return patterns.some(x => !x.negate && x.partialMatch(itemPath)); } exports.partialMatch = partialMatch; //# sourceMappingURL=internal-pattern-helper.js.map /***/ }), /***/ 25370: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; var __importDefault = (this && this.__importDefault) || function (mod) { return (mod && mod.__esModule) ? mod : { "default": mod }; }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.Pattern = void 0; const os = __importStar(__nccwpck_require__(70857)); const path = __importStar(__nccwpck_require__(16928)); const pathHelper = __importStar(__nccwpck_require__(84138)); const assert_1 = __importDefault(__nccwpck_require__(42613)); const minimatch_1 = __nccwpck_require__(43772); const internal_match_kind_1 = __nccwpck_require__(62644); const internal_path_1 = __nccwpck_require__(76617); const IS_WINDOWS = process.platform === 'win32'; class Pattern { constructor(patternOrNegate, isImplicitPattern = false, segments, homedir) { /** * Indicates whether matches should be excluded from the result set */ this.negate = false; // Pattern overload let pattern; if (typeof patternOrNegate === 'string') { pattern = patternOrNegate.trim(); } // Segments overload else { // Convert to pattern segments = segments || []; (0, assert_1.default)(segments.length, `Parameter 'segments' must not empty`); const root = Pattern.getLiteral(segments[0]); (0, assert_1.default)(root && pathHelper.hasAbsoluteRoot(root), `Parameter 'segments' first element must be a root path`); pattern = new internal_path_1.Path(segments).toString().trim(); if (patternOrNegate) { pattern = `!${pattern}`; } } // Negate while (pattern.startsWith('!')) { this.negate = !this.negate; pattern = pattern.substr(1).trim(); } // Normalize slashes and ensures absolute root pattern = Pattern.fixupPattern(pattern, homedir); // Segments this.segments = new internal_path_1.Path(pattern).segments; // Trailing slash indicates the pattern should only match directories, not regular files this.trailingSeparator = pathHelper .normalizeSeparators(pattern) .endsWith(path.sep); pattern = pathHelper.safeTrimTrailingSeparator(pattern); // Search path (literal path prior to the first glob segment) let foundGlob = false; const searchSegments = this.segments .map(x => Pattern.getLiteral(x)) .filter(x => !foundGlob && !(foundGlob = x === '')); this.searchPath = new internal_path_1.Path(searchSegments).toString(); // Root RegExp (required when determining partial match) this.rootRegExp = new RegExp(Pattern.regExpEscape(searchSegments[0]), IS_WINDOWS ? 'i' : ''); this.isImplicitPattern = isImplicitPattern; // Create minimatch const minimatchOptions = { dot: true, nobrace: true, nocase: IS_WINDOWS, nocomment: true, noext: true, nonegate: true }; pattern = IS_WINDOWS ? pattern.replace(/\\/g, '/') : pattern; this.minimatch = new minimatch_1.Minimatch(pattern, minimatchOptions); } /** * Matches the pattern against the specified path */ match(itemPath) { // Last segment is globstar? if (this.segments[this.segments.length - 1] === '**') { // Normalize slashes itemPath = pathHelper.normalizeSeparators(itemPath); // Append a trailing slash. Otherwise Minimatch will not match the directory immediately // preceding the globstar. For example, given the pattern `/foo/**`, Minimatch returns // false for `/foo` but returns true for `/foo/`. Append a trailing slash to handle that quirk. if (!itemPath.endsWith(path.sep) && this.isImplicitPattern === false) { // Note, this is safe because the constructor ensures the pattern has an absolute root. // For example, formats like C: and C:foo on Windows are resolved to an absolute root. itemPath = `${itemPath}${path.sep}`; } } else { // Normalize slashes and trim unnecessary trailing slash itemPath = pathHelper.safeTrimTrailingSeparator(itemPath); } // Match if (this.minimatch.match(itemPath)) { return this.trailingSeparator ? internal_match_kind_1.MatchKind.Directory : internal_match_kind_1.MatchKind.All; } return internal_match_kind_1.MatchKind.None; } /** * Indicates whether the pattern may match descendants of the specified path */ partialMatch(itemPath) { // Normalize slashes and trim unnecessary trailing slash itemPath = pathHelper.safeTrimTrailingSeparator(itemPath); // matchOne does not handle root path correctly if (pathHelper.dirname(itemPath) === itemPath) { return this.rootRegExp.test(itemPath); } return this.minimatch.matchOne(itemPath.split(IS_WINDOWS ? /\\+/ : /\/+/), this.minimatch.set[0], true); } /** * Escapes glob patterns within a path */ static globEscape(s) { return (IS_WINDOWS ? s : s.replace(/\\/g, '\\\\')) // escape '\' on Linux/macOS .replace(/(\[)(?=[^/]+\])/g, '[[]') // escape '[' when ']' follows within the path segment .replace(/\?/g, '[?]') // escape '?' .replace(/\*/g, '[*]'); // escape '*' } /** * Normalizes slashes and ensures absolute root */ static fixupPattern(pattern, homedir) { // Empty (0, assert_1.default)(pattern, 'pattern cannot be empty'); // Must not contain `.` segment, unless first segment // Must not contain `..` segment const literalSegments = new internal_path_1.Path(pattern).segments.map(x => Pattern.getLiteral(x)); (0, assert_1.default)(literalSegments.every((x, i) => (x !== '.' || i === 0) && x !== '..'), `Invalid pattern '${pattern}'. Relative pathing '.' and '..' is not allowed.`); // Must not contain globs in root, e.g. Windows UNC path \\foo\b*r (0, assert_1.default)(!pathHelper.hasRoot(pattern) || literalSegments[0], `Invalid pattern '${pattern}'. Root segment must not contain globs.`); // Normalize slashes pattern = pathHelper.normalizeSeparators(pattern); // Replace leading `.` segment if (pattern === '.' || pattern.startsWith(`.${path.sep}`)) { pattern = Pattern.globEscape(process.cwd()) + pattern.substr(1); } // Replace leading `~` segment else if (pattern === '~' || pattern.startsWith(`~${path.sep}`)) { homedir = homedir || os.homedir(); (0, assert_1.default)(homedir, 'Unable to determine HOME directory'); (0, assert_1.default)(pathHelper.hasAbsoluteRoot(homedir), `Expected HOME directory to be a rooted path. Actual '${homedir}'`); pattern = Pattern.globEscape(homedir) + pattern.substr(1); } // Replace relative drive root, e.g. pattern is C: or C:foo else if (IS_WINDOWS && (pattern.match(/^[A-Z]:$/i) || pattern.match(/^[A-Z]:[^\\]/i))) { let root = pathHelper.ensureAbsoluteRoot('C:\\dummy-root', pattern.substr(0, 2)); if (pattern.length > 2 && !root.endsWith('\\')) { root += '\\'; } pattern = Pattern.globEscape(root) + pattern.substr(2); } // Replace relative root, e.g. pattern is \ or \foo else if (IS_WINDOWS && (pattern === '\\' || pattern.match(/^\\[^\\]/))) { let root = pathHelper.ensureAbsoluteRoot('C:\\dummy-root', '\\'); if (!root.endsWith('\\')) { root += '\\'; } pattern = Pattern.globEscape(root) + pattern.substr(1); } // Otherwise ensure absolute root else { pattern = pathHelper.ensureAbsoluteRoot(Pattern.globEscape(process.cwd()), pattern); } return pathHelper.normalizeSeparators(pattern); } /** * Attempts to unescape a pattern segment to create a literal path segment. * Otherwise returns empty string. */ static getLiteral(segment) { let literal = ''; for (let i = 0; i < segment.length; i++) { const c = segment[i]; // Escape if (c === '\\' && !IS_WINDOWS && i + 1 < segment.length) { literal += segment[++i]; continue; } // Wildcard else if (c === '*' || c === '?') { return ''; } // Character set else if (c === '[' && i + 1 < segment.length) { let set = ''; let closed = -1; for (let i2 = i + 1; i2 < segment.length; i2++) { const c2 = segment[i2]; // Escape if (c2 === '\\' && !IS_WINDOWS && i2 + 1 < segment.length) { set += segment[++i2]; continue; } // Closed else if (c2 === ']') { closed = i2; break; } // Otherwise else { set += c2; } } // Closed? if (closed >= 0) { // Cannot convert if (set.length > 1) { return ''; } // Convert to literal if (set) { literal += set; i = closed; continue; } } // Otherwise fall thru } // Append literal += c; } return literal; } /** * Escapes regexp special characters * https://javascript.info/regexp-escaping */ static regExpEscape(s) { return s.replace(/[[\\^$.|?*+()]/g, '\\$&'); } } exports.Pattern = Pattern; //# sourceMappingURL=internal-pattern.js.map /***/ }), /***/ 79890: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.SearchState = void 0; class SearchState { constructor(path, level) { this.path = path; this.level = level; } } exports.SearchState = SearchState; //# sourceMappingURL=internal-search-state.js.map /***/ }), /***/ 76240: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.issue = exports.issueCommand = void 0; const os = __importStar(__nccwpck_require__(70857)); const utils_1 = __nccwpck_require__(6804); /** * Commands * * Command Format: * ::name key=value,key=value::message * * Examples: * ::warning::This is the message * ::set-env name=MY_VAR::some value */ function issueCommand(command, properties, message) { const cmd = new Command(command, properties, message); process.stdout.write(cmd.toString() + os.EOL); } exports.issueCommand = issueCommand; function issue(name, message = '') { issueCommand(name, {}, message); } exports.issue = issue; const CMD_STRING = '::'; class Command { constructor(command, properties, message) { if (!command) { command = 'missing.command'; } this.command = command; this.properties = properties; this.message = message; } toString() { let cmdStr = CMD_STRING + this.command; if (this.properties && Object.keys(this.properties).length > 0) { cmdStr += ' '; let first = true; for (const key in this.properties) { if (this.properties.hasOwnProperty(key)) { const val = this.properties[key]; if (val) { if (first) { first = false; } else { cmdStr += ','; } cmdStr += `${key}=${escapeProperty(val)}`; } } } } cmdStr += `${CMD_STRING}${escapeData(this.message)}`; return cmdStr; } } function escapeData(s) { return (0, utils_1.toCommandValue)(s) .replace(/%/g, '%25') .replace(/\r/g, '%0D') .replace(/\n/g, '%0A'); } function escapeProperty(s) { return (0, utils_1.toCommandValue)(s) .replace(/%/g, '%25') .replace(/\r/g, '%0D') .replace(/\n/g, '%0A') .replace(/:/g, '%3A') .replace(/,/g, '%2C'); } //# sourceMappingURL=command.js.map /***/ }), /***/ 54270: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.platform = exports.toPlatformPath = exports.toWin32Path = exports.toPosixPath = exports.markdownSummary = exports.summary = exports.getIDToken = exports.getState = exports.saveState = exports.group = exports.endGroup = exports.startGroup = exports.info = exports.notice = exports.warning = exports.error = exports.debug = exports.isDebug = exports.setFailed = exports.setCommandEcho = exports.setOutput = exports.getBooleanInput = exports.getMultilineInput = exports.getInput = exports.addPath = exports.setSecret = exports.exportVariable = exports.ExitCode = void 0; const command_1 = __nccwpck_require__(76240); const file_command_1 = __nccwpck_require__(86359); const utils_1 = __nccwpck_require__(6804); const os = __importStar(__nccwpck_require__(70857)); const path = __importStar(__nccwpck_require__(16928)); const oidc_utils_1 = __nccwpck_require__(76228); /** * The code to exit an action */ var ExitCode; (function (ExitCode) { /** * A code indicating that the action was successful */ ExitCode[ExitCode["Success"] = 0] = "Success"; /** * A code indicating that the action was a failure */ ExitCode[ExitCode["Failure"] = 1] = "Failure"; })(ExitCode || (exports.ExitCode = ExitCode = {})); //----------------------------------------------------------------------- // Variables //----------------------------------------------------------------------- /** * Sets env variable for this action and future actions in the job * @param name the name of the variable to set * @param val the value of the variable. Non-string values will be converted to a string via JSON.stringify */ // eslint-disable-next-line @typescript-eslint/no-explicit-any function exportVariable(name, val) { const convertedVal = (0, utils_1.toCommandValue)(val); process.env[name] = convertedVal; const filePath = process.env['GITHUB_ENV'] || ''; if (filePath) { return (0, file_command_1.issueFileCommand)('ENV', (0, file_command_1.prepareKeyValueMessage)(name, val)); } (0, command_1.issueCommand)('set-env', { name }, convertedVal); } exports.exportVariable = exportVariable; /** * Registers a secret which will get masked from logs * @param secret value of the secret */ function setSecret(secret) { (0, command_1.issueCommand)('add-mask', {}, secret); } exports.setSecret = setSecret; /** * Prepends inputPath to the PATH (for this action and future actions) * @param inputPath */ function addPath(inputPath) { const filePath = process.env['GITHUB_PATH'] || ''; if (filePath) { (0, file_command_1.issueFileCommand)('PATH', inputPath); } else { (0, command_1.issueCommand)('add-path', {}, inputPath); } process.env['PATH'] = `${inputPath}${path.delimiter}${process.env['PATH']}`; } exports.addPath = addPath; /** * Gets the value of an input. * Unless trimWhitespace is set to false in InputOptions, the value is also trimmed. * Returns an empty string if the value is not defined. * * @param name name of the input to get * @param options optional. See InputOptions. * @returns string */ function getInput(name, options) { const val = process.env[`INPUT_${name.replace(/ /g, '_').toUpperCase()}`] || ''; if (options && options.required && !val) { throw new Error(`Input required and not supplied: ${name}`); } if (options && options.trimWhitespace === false) { return val; } return val.trim(); } exports.getInput = getInput; /** * Gets the values of an multiline input. Each value is also trimmed. * * @param name name of the input to get * @param options optional. See InputOptions. * @returns string[] * */ function getMultilineInput(name, options) { const inputs = getInput(name, options) .split('\n') .filter(x => x !== ''); if (options && options.trimWhitespace === false) { return inputs; } return inputs.map(input => input.trim()); } exports.getMultilineInput = getMultilineInput; /** * Gets the input value of the boolean type in the YAML 1.2 "core schema" specification. * Support boolean input list: `true | True | TRUE | false | False | FALSE` . * The return value is also in boolean type. * ref: https://yaml.org/spec/1.2/spec.html#id2804923 * * @param name name of the input to get * @param options optional. See InputOptions. * @returns boolean */ function getBooleanInput(name, options) { const trueValue = ['true', 'True', 'TRUE']; const falseValue = ['false', 'False', 'FALSE']; const val = getInput(name, options); if (trueValue.includes(val)) return true; if (falseValue.includes(val)) return false; throw new TypeError(`Input does not meet YAML 1.2 "Core Schema" specification: ${name}\n` + `Support boolean input list: \`true | True | TRUE | false | False | FALSE\``); } exports.getBooleanInput = getBooleanInput; /** * Sets the value of an output. * * @param name name of the output to set * @param value value to store. Non-string values will be converted to a string via JSON.stringify */ // eslint-disable-next-line @typescript-eslint/no-explicit-any function setOutput(name, value) { const filePath = process.env['GITHUB_OUTPUT'] || ''; if (filePath) { return (0, file_command_1.issueFileCommand)('OUTPUT', (0, file_command_1.prepareKeyValueMessage)(name, value)); } process.stdout.write(os.EOL); (0, command_1.issueCommand)('set-output', { name }, (0, utils_1.toCommandValue)(value)); } exports.setOutput = setOutput; /** * Enables or disables the echoing of commands into stdout for the rest of the step. * Echoing is disabled by default if ACTIONS_STEP_DEBUG is not set. * */ function setCommandEcho(enabled) { (0, command_1.issue)('echo', enabled ? 'on' : 'off'); } exports.setCommandEcho = setCommandEcho; //----------------------------------------------------------------------- // Results //----------------------------------------------------------------------- /** * Sets the action status to failed. * When the action exits it will be with an exit code of 1 * @param message add error issue message */ function setFailed(message) { process.exitCode = ExitCode.Failure; error(message); } exports.setFailed = setFailed; //----------------------------------------------------------------------- // Logging Commands //----------------------------------------------------------------------- /** * Gets whether Actions Step Debug is on or not */ function isDebug() { return process.env['RUNNER_DEBUG'] === '1'; } exports.isDebug = isDebug; /** * Writes debug message to user log * @param message debug message */ function debug(message) { (0, command_1.issueCommand)('debug', {}, message); } exports.debug = debug; /** * Adds an error issue * @param message error issue message. Errors will be converted to string via toString() * @param properties optional properties to add to the annotation. */ function error(message, properties = {}) { (0, command_1.issueCommand)('error', (0, utils_1.toCommandProperties)(properties), message instanceof Error ? message.toString() : message); } exports.error = error; /** * Adds a warning issue * @param message warning issue message. Errors will be converted to string via toString() * @param properties optional properties to add to the annotation. */ function warning(message, properties = {}) { (0, command_1.issueCommand)('warning', (0, utils_1.toCommandProperties)(properties), message instanceof Error ? message.toString() : message); } exports.warning = warning; /** * Adds a notice issue * @param message notice issue message. Errors will be converted to string via toString() * @param properties optional properties to add to the annotation. */ function notice(message, properties = {}) { (0, command_1.issueCommand)('notice', (0, utils_1.toCommandProperties)(properties), message instanceof Error ? message.toString() : message); } exports.notice = notice; /** * Writes info to log with console.log. * @param message info message */ function info(message) { process.stdout.write(message + os.EOL); } exports.info = info; /** * Begin an output group. * * Output until the next `groupEnd` will be foldable in this group * * @param name The name of the output group */ function startGroup(name) { (0, command_1.issue)('group', name); } exports.startGroup = startGroup; /** * End an output group. */ function endGroup() { (0, command_1.issue)('endgroup'); } exports.endGroup = endGroup; /** * Wrap an asynchronous function call in a group. * * Returns the same type as the function itself. * * @param name The name of the group * @param fn The function to wrap in the group */ function group(name, fn) { return __awaiter(this, void 0, void 0, function* () { startGroup(name); let result; try { result = yield fn(); } finally { endGroup(); } return result; }); } exports.group = group; //----------------------------------------------------------------------- // Wrapper action state //----------------------------------------------------------------------- /** * Saves state for current action, the state can only be retrieved by this action's post job execution. * * @param name name of the state to store * @param value value to store. Non-string values will be converted to a string via JSON.stringify */ // eslint-disable-next-line @typescript-eslint/no-explicit-any function saveState(name, value) { const filePath = process.env['GITHUB_STATE'] || ''; if (filePath) { return (0, file_command_1.issueFileCommand)('STATE', (0, file_command_1.prepareKeyValueMessage)(name, value)); } (0, command_1.issueCommand)('save-state', { name }, (0, utils_1.toCommandValue)(value)); } exports.saveState = saveState; /** * Gets the value of an state set by this action's main execution. * * @param name name of the state to get * @returns string */ function getState(name) { return process.env[`STATE_${name}`] || ''; } exports.getState = getState; function getIDToken(aud) { return __awaiter(this, void 0, void 0, function* () { return yield oidc_utils_1.OidcClient.getIDToken(aud); }); } exports.getIDToken = getIDToken; /** * Summary exports */ var summary_1 = __nccwpck_require__(3345); Object.defineProperty(exports, "summary", ({ enumerable: true, get: function () { return summary_1.summary; } })); /** * @deprecated use core.summary */ var summary_2 = __nccwpck_require__(3345); Object.defineProperty(exports, "markdownSummary", ({ enumerable: true, get: function () { return summary_2.markdownSummary; } })); /** * Path exports */ var path_utils_1 = __nccwpck_require__(85642); Object.defineProperty(exports, "toPosixPath", ({ enumerable: true, get: function () { return path_utils_1.toPosixPath; } })); Object.defineProperty(exports, "toWin32Path", ({ enumerable: true, get: function () { return path_utils_1.toWin32Path; } })); Object.defineProperty(exports, "toPlatformPath", ({ enumerable: true, get: function () { return path_utils_1.toPlatformPath; } })); /** * Platform utilities exports */ exports.platform = __importStar(__nccwpck_require__(93458)); //# sourceMappingURL=core.js.map /***/ }), /***/ 86359: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; // For internal use, subject to change. var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.prepareKeyValueMessage = exports.issueFileCommand = void 0; // We use any as a valid input type /* eslint-disable @typescript-eslint/no-explicit-any */ const crypto = __importStar(__nccwpck_require__(76982)); const fs = __importStar(__nccwpck_require__(79896)); const os = __importStar(__nccwpck_require__(70857)); const utils_1 = __nccwpck_require__(6804); function issueFileCommand(command, message) { const filePath = process.env[`GITHUB_${command}`]; if (!filePath) { throw new Error(`Unable to find environment variable for file command ${command}`); } if (!fs.existsSync(filePath)) { throw new Error(`Missing file at path: ${filePath}`); } fs.appendFileSync(filePath, `${(0, utils_1.toCommandValue)(message)}${os.EOL}`, { encoding: 'utf8' }); } exports.issueFileCommand = issueFileCommand; function prepareKeyValueMessage(key, value) { const delimiter = `ghadelimiter_${crypto.randomUUID()}`; const convertedValue = (0, utils_1.toCommandValue)(value); // These should realistically never happen, but just in case someone finds a // way to exploit uuid generation let's not allow keys or values that contain // the delimiter. if (key.includes(delimiter)) { throw new Error(`Unexpected input: name should not contain the delimiter "${delimiter}"`); } if (convertedValue.includes(delimiter)) { throw new Error(`Unexpected input: value should not contain the delimiter "${delimiter}"`); } return `${key}<<${delimiter}${os.EOL}${convertedValue}${os.EOL}${delimiter}`; } exports.prepareKeyValueMessage = prepareKeyValueMessage; //# sourceMappingURL=file-command.js.map /***/ }), /***/ 76228: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.OidcClient = void 0; const http_client_1 = __nccwpck_require__(55074); const auth_1 = __nccwpck_require__(23950); const core_1 = __nccwpck_require__(54270); class OidcClient { static createHttpClient(allowRetry = true, maxRetry = 10) { const requestOptions = { allowRetries: allowRetry, maxRetries: maxRetry }; return new http_client_1.HttpClient('actions/oidc-client', [new auth_1.BearerCredentialHandler(OidcClient.getRequestToken())], requestOptions); } static getRequestToken() { const token = process.env['ACTIONS_ID_TOKEN_REQUEST_TOKEN']; if (!token) { throw new Error('Unable to get ACTIONS_ID_TOKEN_REQUEST_TOKEN env variable'); } return token; } static getIDTokenUrl() { const runtimeUrl = process.env['ACTIONS_ID_TOKEN_REQUEST_URL']; if (!runtimeUrl) { throw new Error('Unable to get ACTIONS_ID_TOKEN_REQUEST_URL env variable'); } return runtimeUrl; } static getCall(id_token_url) { var _a; return __awaiter(this, void 0, void 0, function* () { const httpclient = OidcClient.createHttpClient(); const res = yield httpclient .getJson(id_token_url) .catch(error => { throw new Error(`Failed to get ID Token. \n Error Code : ${error.statusCode}\n Error Message: ${error.message}`); }); const id_token = (_a = res.result) === null || _a === void 0 ? void 0 : _a.value; if (!id_token) { throw new Error('Response json body do not have ID Token field'); } return id_token; }); } static getIDToken(audience) { return __awaiter(this, void 0, void 0, function* () { try { // New ID Token is requested from action service let id_token_url = OidcClient.getIDTokenUrl(); if (audience) { const encodedAudience = encodeURIComponent(audience); id_token_url = `${id_token_url}&audience=${encodedAudience}`; } (0, core_1.debug)(`ID token url is ${id_token_url}`); const id_token = yield OidcClient.getCall(id_token_url); (0, core_1.setSecret)(id_token); return id_token; } catch (error) { throw new Error(`Error message: ${error.message}`); } }); } } exports.OidcClient = OidcClient; //# sourceMappingURL=oidc-utils.js.map /***/ }), /***/ 85642: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.toPlatformPath = exports.toWin32Path = exports.toPosixPath = void 0; const path = __importStar(__nccwpck_require__(16928)); /** * toPosixPath converts the given path to the posix form. On Windows, \\ will be * replaced with /. * * @param pth. Path to transform. * @return string Posix path. */ function toPosixPath(pth) { return pth.replace(/[\\]/g, '/'); } exports.toPosixPath = toPosixPath; /** * toWin32Path converts the given path to the win32 form. On Linux, / will be * replaced with \\. * * @param pth. Path to transform. * @return string Win32 path. */ function toWin32Path(pth) { return pth.replace(/[/]/g, '\\'); } exports.toWin32Path = toWin32Path; /** * toPlatformPath converts the given path to a platform-specific path. It does * this by replacing instances of / and \ with the platform-specific path * separator. * * @param pth The path to platformize. * @return string The platform-specific path. */ function toPlatformPath(pth) { return pth.replace(/[/\\]/g, path.sep); } exports.toPlatformPath = toPlatformPath; //# sourceMappingURL=path-utils.js.map /***/ }), /***/ 93458: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; var __importDefault = (this && this.__importDefault) || function (mod) { return (mod && mod.__esModule) ? mod : { "default": mod }; }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.getDetails = exports.isLinux = exports.isMacOS = exports.isWindows = exports.arch = exports.platform = void 0; const os_1 = __importDefault(__nccwpck_require__(70857)); const exec = __importStar(__nccwpck_require__(50318)); const getWindowsInfo = () => __awaiter(void 0, void 0, void 0, function* () { const { stdout: version } = yield exec.getExecOutput('powershell -command "(Get-CimInstance -ClassName Win32_OperatingSystem).Version"', undefined, { silent: true }); const { stdout: name } = yield exec.getExecOutput('powershell -command "(Get-CimInstance -ClassName Win32_OperatingSystem).Caption"', undefined, { silent: true }); return { name: name.trim(), version: version.trim() }; }); const getMacOsInfo = () => __awaiter(void 0, void 0, void 0, function* () { var _a, _b, _c, _d; const { stdout } = yield exec.getExecOutput('sw_vers', undefined, { silent: true }); const version = (_b = (_a = stdout.match(/ProductVersion:\s*(.+)/)) === null || _a === void 0 ? void 0 : _a[1]) !== null && _b !== void 0 ? _b : ''; const name = (_d = (_c = stdout.match(/ProductName:\s*(.+)/)) === null || _c === void 0 ? void 0 : _c[1]) !== null && _d !== void 0 ? _d : ''; return { name, version }; }); const getLinuxInfo = () => __awaiter(void 0, void 0, void 0, function* () { const { stdout } = yield exec.getExecOutput('lsb_release', ['-i', '-r', '-s'], { silent: true }); const [name, version] = stdout.trim().split('\n'); return { name, version }; }); exports.platform = os_1.default.platform(); exports.arch = os_1.default.arch(); exports.isWindows = exports.platform === 'win32'; exports.isMacOS = exports.platform === 'darwin'; exports.isLinux = exports.platform === 'linux'; function getDetails() { return __awaiter(this, void 0, void 0, function* () { return Object.assign(Object.assign({}, (yield (exports.isWindows ? getWindowsInfo() : exports.isMacOS ? getMacOsInfo() : getLinuxInfo()))), { platform: exports.platform, arch: exports.arch, isWindows: exports.isWindows, isMacOS: exports.isMacOS, isLinux: exports.isLinux }); }); } exports.getDetails = getDetails; //# sourceMappingURL=platform.js.map /***/ }), /***/ 3345: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.summary = exports.markdownSummary = exports.SUMMARY_DOCS_URL = exports.SUMMARY_ENV_VAR = void 0; const os_1 = __nccwpck_require__(70857); const fs_1 = __nccwpck_require__(79896); const { access, appendFile, writeFile } = fs_1.promises; exports.SUMMARY_ENV_VAR = 'GITHUB_STEP_SUMMARY'; exports.SUMMARY_DOCS_URL = 'https://docs.github.com/actions/using-workflows/workflow-commands-for-github-actions#adding-a-job-summary'; class Summary { constructor() { this._buffer = ''; } /** * Finds the summary file path from the environment, rejects if env var is not found or file does not exist * Also checks r/w permissions. * * @returns step summary file path */ filePath() { return __awaiter(this, void 0, void 0, function* () { if (this._filePath) { return this._filePath; } const pathFromEnv = process.env[exports.SUMMARY_ENV_VAR]; if (!pathFromEnv) { throw new Error(`Unable to find environment variable for $${exports.SUMMARY_ENV_VAR}. Check if your runtime environment supports job summaries.`); } try { yield access(pathFromEnv, fs_1.constants.R_OK | fs_1.constants.W_OK); } catch (_a) { throw new Error(`Unable to access summary file: '${pathFromEnv}'. Check if the file has correct read/write permissions.`); } this._filePath = pathFromEnv; return this._filePath; }); } /** * Wraps content in an HTML tag, adding any HTML attributes * * @param {string} tag HTML tag to wrap * @param {string | null} content content within the tag * @param {[attribute: string]: string} attrs key-value list of HTML attributes to add * * @returns {string} content wrapped in HTML element */ wrap(tag, content, attrs = {}) { const htmlAttrs = Object.entries(attrs) .map(([key, value]) => ` ${key}="${value}"`) .join(''); if (!content) { return `<${tag}${htmlAttrs}>`; } return `<${tag}${htmlAttrs}>${content}`; } /** * Writes text in the buffer to the summary buffer file and empties buffer. Will append by default. * * @param {SummaryWriteOptions} [options] (optional) options for write operation * * @returns {Promise} summary instance */ write(options) { return __awaiter(this, void 0, void 0, function* () { const overwrite = !!(options === null || options === void 0 ? void 0 : options.overwrite); const filePath = yield this.filePath(); const writeFunc = overwrite ? writeFile : appendFile; yield writeFunc(filePath, this._buffer, { encoding: 'utf8' }); return this.emptyBuffer(); }); } /** * Clears the summary buffer and wipes the summary file * * @returns {Summary} summary instance */ clear() { return __awaiter(this, void 0, void 0, function* () { return this.emptyBuffer().write({ overwrite: true }); }); } /** * Returns the current summary buffer as a string * * @returns {string} string of summary buffer */ stringify() { return this._buffer; } /** * If the summary buffer is empty * * @returns {boolen} true if the buffer is empty */ isEmptyBuffer() { return this._buffer.length === 0; } /** * Resets the summary buffer without writing to summary file * * @returns {Summary} summary instance */ emptyBuffer() { this._buffer = ''; return this; } /** * Adds raw text to the summary buffer * * @param {string} text content to add * @param {boolean} [addEOL=false] (optional) append an EOL to the raw text (default: false) * * @returns {Summary} summary instance */ addRaw(text, addEOL = false) { this._buffer += text; return addEOL ? this.addEOL() : this; } /** * Adds the operating system-specific end-of-line marker to the buffer * * @returns {Summary} summary instance */ addEOL() { return this.addRaw(os_1.EOL); } /** * Adds an HTML codeblock to the summary buffer * * @param {string} code content to render within fenced code block * @param {string} lang (optional) language to syntax highlight code * * @returns {Summary} summary instance */ addCodeBlock(code, lang) { const attrs = Object.assign({}, (lang && { lang })); const element = this.wrap('pre', this.wrap('code', code), attrs); return this.addRaw(element).addEOL(); } /** * Adds an HTML list to the summary buffer * * @param {string[]} items list of items to render * @param {boolean} [ordered=false] (optional) if the rendered list should be ordered or not (default: false) * * @returns {Summary} summary instance */ addList(items, ordered = false) { const tag = ordered ? 'ol' : 'ul'; const listItems = items.map(item => this.wrap('li', item)).join(''); const element = this.wrap(tag, listItems); return this.addRaw(element).addEOL(); } /** * Adds an HTML table to the summary buffer * * @param {SummaryTableCell[]} rows table rows * * @returns {Summary} summary instance */ addTable(rows) { const tableBody = rows .map(row => { const cells = row .map(cell => { if (typeof cell === 'string') { return this.wrap('td', cell); } const { header, data, colspan, rowspan } = cell; const tag = header ? 'th' : 'td'; const attrs = Object.assign(Object.assign({}, (colspan && { colspan })), (rowspan && { rowspan })); return this.wrap(tag, data, attrs); }) .join(''); return this.wrap('tr', cells); }) .join(''); const element = this.wrap('table', tableBody); return this.addRaw(element).addEOL(); } /** * Adds a collapsable HTML details element to the summary buffer * * @param {string} label text for the closed state * @param {string} content collapsable content * * @returns {Summary} summary instance */ addDetails(label, content) { const element = this.wrap('details', this.wrap('summary', label) + content); return this.addRaw(element).addEOL(); } /** * Adds an HTML image tag to the summary buffer * * @param {string} src path to the image you to embed * @param {string} alt text description of the image * @param {SummaryImageOptions} options (optional) addition image attributes * * @returns {Summary} summary instance */ addImage(src, alt, options) { const { width, height } = options || {}; const attrs = Object.assign(Object.assign({}, (width && { width })), (height && { height })); const element = this.wrap('img', null, Object.assign({ src, alt }, attrs)); return this.addRaw(element).addEOL(); } /** * Adds an HTML section heading element * * @param {string} text heading text * @param {number | string} [level=1] (optional) the heading level, default: 1 * * @returns {Summary} summary instance */ addHeading(text, level) { const tag = `h${level}`; const allowedTag = ['h1', 'h2', 'h3', 'h4', 'h5', 'h6'].includes(tag) ? tag : 'h1'; const element = this.wrap(allowedTag, text); return this.addRaw(element).addEOL(); } /** * Adds an HTML thematic break (
) to the summary buffer * * @returns {Summary} summary instance */ addSeparator() { const element = this.wrap('hr', null); return this.addRaw(element).addEOL(); } /** * Adds an HTML line break (
) to the summary buffer * * @returns {Summary} summary instance */ addBreak() { const element = this.wrap('br', null); return this.addRaw(element).addEOL(); } /** * Adds an HTML blockquote to the summary buffer * * @param {string} text quote text * @param {string} cite (optional) citation url * * @returns {Summary} summary instance */ addQuote(text, cite) { const attrs = Object.assign({}, (cite && { cite })); const element = this.wrap('blockquote', text, attrs); return this.addRaw(element).addEOL(); } /** * Adds an HTML anchor tag to the summary buffer * * @param {string} text link text/content * @param {string} href hyperlink * * @returns {Summary} summary instance */ addLink(text, href) { const element = this.wrap('a', text, { href }); return this.addRaw(element).addEOL(); } } const _summary = new Summary(); /** * @deprecated use `core.summary` */ exports.markdownSummary = _summary; exports.summary = _summary; //# sourceMappingURL=summary.js.map /***/ }), /***/ 6804: /***/ ((__unused_webpack_module, exports) => { "use strict"; // We use any as a valid input type /* eslint-disable @typescript-eslint/no-explicit-any */ Object.defineProperty(exports, "__esModule", ({ value: true })); exports.toCommandProperties = exports.toCommandValue = void 0; /** * Sanitizes an input into a string so it can be passed into issueCommand safely * @param input input to sanitize into a string */ function toCommandValue(input) { if (input === null || input === undefined) { return ''; } else if (typeof input === 'string' || input instanceof String) { return input; } return JSON.stringify(input); } exports.toCommandValue = toCommandValue; /** * * @param annotationProperties * @returns The command properties to send with the actual annotation command * See IssueCommandProperties: https://github.com/actions/runner/blob/main/src/Runner.Worker/ActionCommandManager.cs#L646 */ function toCommandProperties(annotationProperties) { if (!Object.keys(annotationProperties).length) { return {}; } return { title: annotationProperties.title, file: annotationProperties.file, line: annotationProperties.startLine, endLine: annotationProperties.endLine, col: annotationProperties.startColumn, endColumn: annotationProperties.endColumn }; } exports.toCommandProperties = toCommandProperties; //# sourceMappingURL=utils.js.map /***/ }), /***/ 50318: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; Object.defineProperty(o, k2, { enumerable: true, get: function() { return m[k]; } }); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.getExecOutput = exports.exec = void 0; const string_decoder_1 = __nccwpck_require__(13193); const tr = __importStar(__nccwpck_require__(18311)); /** * Exec a command. * Output will be streamed to the live console. * Returns promise with return code * * @param commandLine command to execute (can include additional args). Must be correctly escaped. * @param args optional arguments for tool. Escaping is handled by the lib. * @param options optional exec options. See ExecOptions * @returns Promise exit code */ function exec(commandLine, args, options) { return __awaiter(this, void 0, void 0, function* () { const commandArgs = tr.argStringToArray(commandLine); if (commandArgs.length === 0) { throw new Error(`Parameter 'commandLine' cannot be null or empty.`); } // Path to tool to execute should be first arg const toolPath = commandArgs[0]; args = commandArgs.slice(1).concat(args || []); const runner = new tr.ToolRunner(toolPath, args, options); return runner.exec(); }); } exports.exec = exec; /** * Exec a command and get the output. * Output will be streamed to the live console. * Returns promise with the exit code and collected stdout and stderr * * @param commandLine command to execute (can include additional args). Must be correctly escaped. * @param args optional arguments for tool. Escaping is handled by the lib. * @param options optional exec options. See ExecOptions * @returns Promise exit code, stdout, and stderr */ function getExecOutput(commandLine, args, options) { var _a, _b; return __awaiter(this, void 0, void 0, function* () { let stdout = ''; let stderr = ''; //Using string decoder covers the case where a mult-byte character is split const stdoutDecoder = new string_decoder_1.StringDecoder('utf8'); const stderrDecoder = new string_decoder_1.StringDecoder('utf8'); const originalStdoutListener = (_a = options === null || options === void 0 ? void 0 : options.listeners) === null || _a === void 0 ? void 0 : _a.stdout; const originalStdErrListener = (_b = options === null || options === void 0 ? void 0 : options.listeners) === null || _b === void 0 ? void 0 : _b.stderr; const stdErrListener = (data) => { stderr += stderrDecoder.write(data); if (originalStdErrListener) { originalStdErrListener(data); } }; const stdOutListener = (data) => { stdout += stdoutDecoder.write(data); if (originalStdoutListener) { originalStdoutListener(data); } }; const listeners = Object.assign(Object.assign({}, options === null || options === void 0 ? void 0 : options.listeners), { stdout: stdOutListener, stderr: stdErrListener }); const exitCode = yield exec(commandLine, args, Object.assign(Object.assign({}, options), { listeners })); //flush any remaining characters stdout += stdoutDecoder.end(); stderr += stderrDecoder.end(); return { exitCode, stdout, stderr }; }); } exports.getExecOutput = getExecOutput; //# sourceMappingURL=exec.js.map /***/ }), /***/ 18311: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; Object.defineProperty(o, k2, { enumerable: true, get: function() { return m[k]; } }); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.argStringToArray = exports.ToolRunner = void 0; const os = __importStar(__nccwpck_require__(70857)); const events = __importStar(__nccwpck_require__(24434)); const child = __importStar(__nccwpck_require__(35317)); const path = __importStar(__nccwpck_require__(16928)); const io = __importStar(__nccwpck_require__(94994)); const ioUtil = __importStar(__nccwpck_require__(75207)); const timers_1 = __nccwpck_require__(53557); /* eslint-disable @typescript-eslint/unbound-method */ const IS_WINDOWS = process.platform === 'win32'; /* * Class for running command line tools. Handles quoting and arg parsing in a platform agnostic way. */ class ToolRunner extends events.EventEmitter { constructor(toolPath, args, options) { super(); if (!toolPath) { throw new Error("Parameter 'toolPath' cannot be null or empty."); } this.toolPath = toolPath; this.args = args || []; this.options = options || {}; } _debug(message) { if (this.options.listeners && this.options.listeners.debug) { this.options.listeners.debug(message); } } _getCommandString(options, noPrefix) { const toolPath = this._getSpawnFileName(); const args = this._getSpawnArgs(options); let cmd = noPrefix ? '' : '[command]'; // omit prefix when piped to a second tool if (IS_WINDOWS) { // Windows + cmd file if (this._isCmdFile()) { cmd += toolPath; for (const a of args) { cmd += ` ${a}`; } } // Windows + verbatim else if (options.windowsVerbatimArguments) { cmd += `"${toolPath}"`; for (const a of args) { cmd += ` ${a}`; } } // Windows (regular) else { cmd += this._windowsQuoteCmdArg(toolPath); for (const a of args) { cmd += ` ${this._windowsQuoteCmdArg(a)}`; } } } else { // OSX/Linux - this can likely be improved with some form of quoting. // creating processes on Unix is fundamentally different than Windows. // on Unix, execvp() takes an arg array. cmd += toolPath; for (const a of args) { cmd += ` ${a}`; } } return cmd; } _processLineBuffer(data, strBuffer, onLine) { try { let s = strBuffer + data.toString(); let n = s.indexOf(os.EOL); while (n > -1) { const line = s.substring(0, n); onLine(line); // the rest of the string ... s = s.substring(n + os.EOL.length); n = s.indexOf(os.EOL); } return s; } catch (err) { // streaming lines to console is best effort. Don't fail a build. this._debug(`error processing line. Failed with error ${err}`); return ''; } } _getSpawnFileName() { if (IS_WINDOWS) { if (this._isCmdFile()) { return process.env['COMSPEC'] || 'cmd.exe'; } } return this.toolPath; } _getSpawnArgs(options) { if (IS_WINDOWS) { if (this._isCmdFile()) { let argline = `/D /S /C "${this._windowsQuoteCmdArg(this.toolPath)}`; for (const a of this.args) { argline += ' '; argline += options.windowsVerbatimArguments ? a : this._windowsQuoteCmdArg(a); } argline += '"'; return [argline]; } } return this.args; } _endsWith(str, end) { return str.endsWith(end); } _isCmdFile() { const upperToolPath = this.toolPath.toUpperCase(); return (this._endsWith(upperToolPath, '.CMD') || this._endsWith(upperToolPath, '.BAT')); } _windowsQuoteCmdArg(arg) { // for .exe, apply the normal quoting rules that libuv applies if (!this._isCmdFile()) { return this._uvQuoteCmdArg(arg); } // otherwise apply quoting rules specific to the cmd.exe command line parser. // the libuv rules are generic and are not designed specifically for cmd.exe // command line parser. // // for a detailed description of the cmd.exe command line parser, refer to // http://stackoverflow.com/questions/4094699/how-does-the-windows-command-interpreter-cmd-exe-parse-scripts/7970912#7970912 // need quotes for empty arg if (!arg) { return '""'; } // determine whether the arg needs to be quoted const cmdSpecialChars = [ ' ', '\t', '&', '(', ')', '[', ']', '{', '}', '^', '=', ';', '!', "'", '+', ',', '`', '~', '|', '<', '>', '"' ]; let needsQuotes = false; for (const char of arg) { if (cmdSpecialChars.some(x => x === char)) { needsQuotes = true; break; } } // short-circuit if quotes not needed if (!needsQuotes) { return arg; } // the following quoting rules are very similar to the rules that by libuv applies. // // 1) wrap the string in quotes // // 2) double-up quotes - i.e. " => "" // // this is different from the libuv quoting rules. libuv replaces " with \", which unfortunately // doesn't work well with a cmd.exe command line. // // note, replacing " with "" also works well if the arg is passed to a downstream .NET console app. // for example, the command line: // foo.exe "myarg:""my val""" // is parsed by a .NET console app into an arg array: // [ "myarg:\"my val\"" ] // which is the same end result when applying libuv quoting rules. although the actual // command line from libuv quoting rules would look like: // foo.exe "myarg:\"my val\"" // // 3) double-up slashes that precede a quote, // e.g. hello \world => "hello \world" // hello\"world => "hello\\""world" // hello\\"world => "hello\\\\""world" // hello world\ => "hello world\\" // // technically this is not required for a cmd.exe command line, or the batch argument parser. // the reasons for including this as a .cmd quoting rule are: // // a) this is optimized for the scenario where the argument is passed from the .cmd file to an // external program. many programs (e.g. .NET console apps) rely on the slash-doubling rule. // // b) it's what we've been doing previously (by deferring to node default behavior) and we // haven't heard any complaints about that aspect. // // note, a weakness of the quoting rules chosen here, is that % is not escaped. in fact, % cannot be // escaped when used on the command line directly - even though within a .cmd file % can be escaped // by using %%. // // the saving grace is, on the command line, %var% is left as-is if var is not defined. this contrasts // the line parsing rules within a .cmd file, where if var is not defined it is replaced with nothing. // // one option that was explored was replacing % with ^% - i.e. %var% => ^%var^%. this hack would // often work, since it is unlikely that var^ would exist, and the ^ character is removed when the // variable is used. the problem, however, is that ^ is not removed when %* is used to pass the args // to an external program. // // an unexplored potential solution for the % escaping problem, is to create a wrapper .cmd file. // % can be escaped within a .cmd file. let reverse = '"'; let quoteHit = true; for (let i = arg.length; i > 0; i--) { // walk the string in reverse reverse += arg[i - 1]; if (quoteHit && arg[i - 1] === '\\') { reverse += '\\'; // double the slash } else if (arg[i - 1] === '"') { quoteHit = true; reverse += '"'; // double the quote } else { quoteHit = false; } } reverse += '"'; return reverse .split('') .reverse() .join(''); } _uvQuoteCmdArg(arg) { // Tool runner wraps child_process.spawn() and needs to apply the same quoting as // Node in certain cases where the undocumented spawn option windowsVerbatimArguments // is used. // // Since this function is a port of quote_cmd_arg from Node 4.x (technically, lib UV, // see https://github.com/nodejs/node/blob/v4.x/deps/uv/src/win/process.c for details), // pasting copyright notice from Node within this function: // // Copyright Joyent, Inc. and other Node contributors. All rights reserved. // // Permission is hereby granted, free of charge, to any person obtaining a copy // of this software and associated documentation files (the "Software"), to // deal in the Software without restriction, including without limitation the // rights to use, copy, modify, merge, publish, distribute, sublicense, and/or // sell copies of the Software, and to permit persons to whom the Software is // furnished to do so, subject to the following conditions: // // The above copyright notice and this permission notice shall be included in // all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING // FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS // IN THE SOFTWARE. if (!arg) { // Need double quotation for empty argument return '""'; } if (!arg.includes(' ') && !arg.includes('\t') && !arg.includes('"')) { // No quotation needed return arg; } if (!arg.includes('"') && !arg.includes('\\')) { // No embedded double quotes or backslashes, so I can just wrap // quote marks around the whole thing. return `"${arg}"`; } // Expected input/output: // input : hello"world // output: "hello\"world" // input : hello""world // output: "hello\"\"world" // input : hello\world // output: hello\world // input : hello\\world // output: hello\\world // input : hello\"world // output: "hello\\\"world" // input : hello\\"world // output: "hello\\\\\"world" // input : hello world\ // output: "hello world\\" - note the comment in libuv actually reads "hello world\" // but it appears the comment is wrong, it should be "hello world\\" let reverse = '"'; let quoteHit = true; for (let i = arg.length; i > 0; i--) { // walk the string in reverse reverse += arg[i - 1]; if (quoteHit && arg[i - 1] === '\\') { reverse += '\\'; } else if (arg[i - 1] === '"') { quoteHit = true; reverse += '\\'; } else { quoteHit = false; } } reverse += '"'; return reverse .split('') .reverse() .join(''); } _cloneExecOptions(options) { options = options || {}; const result = { cwd: options.cwd || process.cwd(), env: options.env || process.env, silent: options.silent || false, windowsVerbatimArguments: options.windowsVerbatimArguments || false, failOnStdErr: options.failOnStdErr || false, ignoreReturnCode: options.ignoreReturnCode || false, delay: options.delay || 10000 }; result.outStream = options.outStream || process.stdout; result.errStream = options.errStream || process.stderr; return result; } _getSpawnOptions(options, toolPath) { options = options || {}; const result = {}; result.cwd = options.cwd; result.env = options.env; result['windowsVerbatimArguments'] = options.windowsVerbatimArguments || this._isCmdFile(); if (options.windowsVerbatimArguments) { result.argv0 = `"${toolPath}"`; } return result; } /** * Exec a tool. * Output will be streamed to the live console. * Returns promise with return code * * @param tool path to tool to exec * @param options optional exec options. See ExecOptions * @returns number */ exec() { return __awaiter(this, void 0, void 0, function* () { // root the tool path if it is unrooted and contains relative pathing if (!ioUtil.isRooted(this.toolPath) && (this.toolPath.includes('/') || (IS_WINDOWS && this.toolPath.includes('\\')))) { // prefer options.cwd if it is specified, however options.cwd may also need to be rooted this.toolPath = path.resolve(process.cwd(), this.options.cwd || process.cwd(), this.toolPath); } // if the tool is only a file name, then resolve it from the PATH // otherwise verify it exists (add extension on Windows if necessary) this.toolPath = yield io.which(this.toolPath, true); return new Promise((resolve, reject) => __awaiter(this, void 0, void 0, function* () { this._debug(`exec tool: ${this.toolPath}`); this._debug('arguments:'); for (const arg of this.args) { this._debug(` ${arg}`); } const optionsNonNull = this._cloneExecOptions(this.options); if (!optionsNonNull.silent && optionsNonNull.outStream) { optionsNonNull.outStream.write(this._getCommandString(optionsNonNull) + os.EOL); } const state = new ExecState(optionsNonNull, this.toolPath); state.on('debug', (message) => { this._debug(message); }); if (this.options.cwd && !(yield ioUtil.exists(this.options.cwd))) { return reject(new Error(`The cwd: ${this.options.cwd} does not exist!`)); } const fileName = this._getSpawnFileName(); const cp = child.spawn(fileName, this._getSpawnArgs(optionsNonNull), this._getSpawnOptions(this.options, fileName)); let stdbuffer = ''; if (cp.stdout) { cp.stdout.on('data', (data) => { if (this.options.listeners && this.options.listeners.stdout) { this.options.listeners.stdout(data); } if (!optionsNonNull.silent && optionsNonNull.outStream) { optionsNonNull.outStream.write(data); } stdbuffer = this._processLineBuffer(data, stdbuffer, (line) => { if (this.options.listeners && this.options.listeners.stdline) { this.options.listeners.stdline(line); } }); }); } let errbuffer = ''; if (cp.stderr) { cp.stderr.on('data', (data) => { state.processStderr = true; if (this.options.listeners && this.options.listeners.stderr) { this.options.listeners.stderr(data); } if (!optionsNonNull.silent && optionsNonNull.errStream && optionsNonNull.outStream) { const s = optionsNonNull.failOnStdErr ? optionsNonNull.errStream : optionsNonNull.outStream; s.write(data); } errbuffer = this._processLineBuffer(data, errbuffer, (line) => { if (this.options.listeners && this.options.listeners.errline) { this.options.listeners.errline(line); } }); }); } cp.on('error', (err) => { state.processError = err.message; state.processExited = true; state.processClosed = true; state.CheckComplete(); }); cp.on('exit', (code) => { state.processExitCode = code; state.processExited = true; this._debug(`Exit code ${code} received from tool '${this.toolPath}'`); state.CheckComplete(); }); cp.on('close', (code) => { state.processExitCode = code; state.processExited = true; state.processClosed = true; this._debug(`STDIO streams have closed for tool '${this.toolPath}'`); state.CheckComplete(); }); state.on('done', (error, exitCode) => { if (stdbuffer.length > 0) { this.emit('stdline', stdbuffer); } if (errbuffer.length > 0) { this.emit('errline', errbuffer); } cp.removeAllListeners(); if (error) { reject(error); } else { resolve(exitCode); } }); if (this.options.input) { if (!cp.stdin) { throw new Error('child process missing stdin'); } cp.stdin.end(this.options.input); } })); }); } } exports.ToolRunner = ToolRunner; /** * Convert an arg string to an array of args. Handles escaping * * @param argString string of arguments * @returns string[] array of arguments */ function argStringToArray(argString) { const args = []; let inQuotes = false; let escaped = false; let arg = ''; function append(c) { // we only escape double quotes. if (escaped && c !== '"') { arg += '\\'; } arg += c; escaped = false; } for (let i = 0; i < argString.length; i++) { const c = argString.charAt(i); if (c === '"') { if (!escaped) { inQuotes = !inQuotes; } else { append(c); } continue; } if (c === '\\' && escaped) { append(c); continue; } if (c === '\\' && inQuotes) { escaped = true; continue; } if (c === ' ' && !inQuotes) { if (arg.length > 0) { args.push(arg); arg = ''; } continue; } append(c); } if (arg.length > 0) { args.push(arg.trim()); } return args; } exports.argStringToArray = argStringToArray; class ExecState extends events.EventEmitter { constructor(options, toolPath) { super(); this.processClosed = false; // tracks whether the process has exited and stdio is closed this.processError = ''; this.processExitCode = 0; this.processExited = false; // tracks whether the process has exited this.processStderr = false; // tracks whether stderr was written to this.delay = 10000; // 10 seconds this.done = false; this.timeout = null; if (!toolPath) { throw new Error('toolPath must not be empty'); } this.options = options; this.toolPath = toolPath; if (options.delay) { this.delay = options.delay; } } CheckComplete() { if (this.done) { return; } if (this.processClosed) { this._setResult(); } else if (this.processExited) { this.timeout = timers_1.setTimeout(ExecState.HandleTimeout, this.delay, this); } } _debug(message) { this.emit('debug', message); } _setResult() { // determine whether there is an error let error; if (this.processExited) { if (this.processError) { error = new Error(`There was an error when attempting to execute the process '${this.toolPath}'. This may indicate the process failed to start. Error: ${this.processError}`); } else if (this.processExitCode !== 0 && !this.options.ignoreReturnCode) { error = new Error(`The process '${this.toolPath}' failed with exit code ${this.processExitCode}`); } else if (this.processStderr && this.options.failOnStdErr) { error = new Error(`The process '${this.toolPath}' failed because one or more lines were written to the STDERR stream`); } } // clear the timeout if (this.timeout) { clearTimeout(this.timeout); this.timeout = null; } this.done = true; this.emit('done', error, this.processExitCode); } static HandleTimeout(state) { if (state.done) { return; } if (!state.processClosed && state.processExited) { const message = `The STDIO streams did not close within ${state.delay / 1000} seconds of the exit event from process '${state.toolPath}'. This may indicate a child process inherited the STDIO streams and has not yet exited.`; state._debug(message); } state._setResult(); } } //# sourceMappingURL=toolrunner.js.map /***/ }), /***/ 23950: /***/ (function(__unused_webpack_module, exports) { "use strict"; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.PersonalAccessTokenCredentialHandler = exports.BearerCredentialHandler = exports.BasicCredentialHandler = void 0; class BasicCredentialHandler { constructor(username, password) { this.username = username; this.password = password; } prepareRequest(options) { if (!options.headers) { throw Error('The request has no headers'); } options.headers['Authorization'] = `Basic ${Buffer.from(`${this.username}:${this.password}`).toString('base64')}`; } // This handler cannot handle 401 canHandleAuthentication() { return false; } handleAuthentication() { return __awaiter(this, void 0, void 0, function* () { throw new Error('not implemented'); }); } } exports.BasicCredentialHandler = BasicCredentialHandler; class BearerCredentialHandler { constructor(token) { this.token = token; } // currently implements pre-authorization // TODO: support preAuth = false where it hooks on 401 prepareRequest(options) { if (!options.headers) { throw Error('The request has no headers'); } options.headers['Authorization'] = `Bearer ${this.token}`; } // This handler cannot handle 401 canHandleAuthentication() { return false; } handleAuthentication() { return __awaiter(this, void 0, void 0, function* () { throw new Error('not implemented'); }); } } exports.BearerCredentialHandler = BearerCredentialHandler; class PersonalAccessTokenCredentialHandler { constructor(token) { this.token = token; } // currently implements pre-authorization // TODO: support preAuth = false where it hooks on 401 prepareRequest(options) { if (!options.headers) { throw Error('The request has no headers'); } options.headers['Authorization'] = `Basic ${Buffer.from(`PAT:${this.token}`).toString('base64')}`; } // This handler cannot handle 401 canHandleAuthentication() { return false; } handleAuthentication() { return __awaiter(this, void 0, void 0, function* () { throw new Error('not implemented'); }); } } exports.PersonalAccessTokenCredentialHandler = PersonalAccessTokenCredentialHandler; //# sourceMappingURL=auth.js.map /***/ }), /***/ 55074: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; /* eslint-disable @typescript-eslint/no-explicit-any */ var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.HttpClient = exports.isHttps = exports.HttpClientResponse = exports.HttpClientError = exports.getProxyUrl = exports.MediaTypes = exports.Headers = exports.HttpCodes = void 0; const http = __importStar(__nccwpck_require__(58611)); const https = __importStar(__nccwpck_require__(65692)); const pm = __importStar(__nccwpck_require__(35486)); const tunnel = __importStar(__nccwpck_require__(20770)); const undici_1 = __nccwpck_require__(46752); var HttpCodes; (function (HttpCodes) { HttpCodes[HttpCodes["OK"] = 200] = "OK"; HttpCodes[HttpCodes["MultipleChoices"] = 300] = "MultipleChoices"; HttpCodes[HttpCodes["MovedPermanently"] = 301] = "MovedPermanently"; HttpCodes[HttpCodes["ResourceMoved"] = 302] = "ResourceMoved"; HttpCodes[HttpCodes["SeeOther"] = 303] = "SeeOther"; HttpCodes[HttpCodes["NotModified"] = 304] = "NotModified"; HttpCodes[HttpCodes["UseProxy"] = 305] = "UseProxy"; HttpCodes[HttpCodes["SwitchProxy"] = 306] = "SwitchProxy"; HttpCodes[HttpCodes["TemporaryRedirect"] = 307] = "TemporaryRedirect"; HttpCodes[HttpCodes["PermanentRedirect"] = 308] = "PermanentRedirect"; HttpCodes[HttpCodes["BadRequest"] = 400] = "BadRequest"; HttpCodes[HttpCodes["Unauthorized"] = 401] = "Unauthorized"; HttpCodes[HttpCodes["PaymentRequired"] = 402] = "PaymentRequired"; HttpCodes[HttpCodes["Forbidden"] = 403] = "Forbidden"; HttpCodes[HttpCodes["NotFound"] = 404] = "NotFound"; HttpCodes[HttpCodes["MethodNotAllowed"] = 405] = "MethodNotAllowed"; HttpCodes[HttpCodes["NotAcceptable"] = 406] = "NotAcceptable"; HttpCodes[HttpCodes["ProxyAuthenticationRequired"] = 407] = "ProxyAuthenticationRequired"; HttpCodes[HttpCodes["RequestTimeout"] = 408] = "RequestTimeout"; HttpCodes[HttpCodes["Conflict"] = 409] = "Conflict"; HttpCodes[HttpCodes["Gone"] = 410] = "Gone"; HttpCodes[HttpCodes["TooManyRequests"] = 429] = "TooManyRequests"; HttpCodes[HttpCodes["InternalServerError"] = 500] = "InternalServerError"; HttpCodes[HttpCodes["NotImplemented"] = 501] = "NotImplemented"; HttpCodes[HttpCodes["BadGateway"] = 502] = "BadGateway"; HttpCodes[HttpCodes["ServiceUnavailable"] = 503] = "ServiceUnavailable"; HttpCodes[HttpCodes["GatewayTimeout"] = 504] = "GatewayTimeout"; })(HttpCodes || (exports.HttpCodes = HttpCodes = {})); var Headers; (function (Headers) { Headers["Accept"] = "accept"; Headers["ContentType"] = "content-type"; })(Headers || (exports.Headers = Headers = {})); var MediaTypes; (function (MediaTypes) { MediaTypes["ApplicationJson"] = "application/json"; })(MediaTypes || (exports.MediaTypes = MediaTypes = {})); /** * Returns the proxy URL, depending upon the supplied url and proxy environment variables. * @param serverUrl The server URL where the request will be sent. For example, https://api.github.com */ function getProxyUrl(serverUrl) { const proxyUrl = pm.getProxyUrl(new URL(serverUrl)); return proxyUrl ? proxyUrl.href : ''; } exports.getProxyUrl = getProxyUrl; const HttpRedirectCodes = [ HttpCodes.MovedPermanently, HttpCodes.ResourceMoved, HttpCodes.SeeOther, HttpCodes.TemporaryRedirect, HttpCodes.PermanentRedirect ]; const HttpResponseRetryCodes = [ HttpCodes.BadGateway, HttpCodes.ServiceUnavailable, HttpCodes.GatewayTimeout ]; const RetryableHttpVerbs = ['OPTIONS', 'GET', 'DELETE', 'HEAD']; const ExponentialBackoffCeiling = 10; const ExponentialBackoffTimeSlice = 5; class HttpClientError extends Error { constructor(message, statusCode) { super(message); this.name = 'HttpClientError'; this.statusCode = statusCode; Object.setPrototypeOf(this, HttpClientError.prototype); } } exports.HttpClientError = HttpClientError; class HttpClientResponse { constructor(message) { this.message = message; } readBody() { return __awaiter(this, void 0, void 0, function* () { return new Promise((resolve) => __awaiter(this, void 0, void 0, function* () { let output = Buffer.alloc(0); this.message.on('data', (chunk) => { output = Buffer.concat([output, chunk]); }); this.message.on('end', () => { resolve(output.toString()); }); })); }); } readBodyBuffer() { return __awaiter(this, void 0, void 0, function* () { return new Promise((resolve) => __awaiter(this, void 0, void 0, function* () { const chunks = []; this.message.on('data', (chunk) => { chunks.push(chunk); }); this.message.on('end', () => { resolve(Buffer.concat(chunks)); }); })); }); } } exports.HttpClientResponse = HttpClientResponse; function isHttps(requestUrl) { const parsedUrl = new URL(requestUrl); return parsedUrl.protocol === 'https:'; } exports.isHttps = isHttps; class HttpClient { constructor(userAgent, handlers, requestOptions) { this._ignoreSslError = false; this._allowRedirects = true; this._allowRedirectDowngrade = false; this._maxRedirects = 50; this._allowRetries = false; this._maxRetries = 1; this._keepAlive = false; this._disposed = false; this.userAgent = userAgent; this.handlers = handlers || []; this.requestOptions = requestOptions; if (requestOptions) { if (requestOptions.ignoreSslError != null) { this._ignoreSslError = requestOptions.ignoreSslError; } this._socketTimeout = requestOptions.socketTimeout; if (requestOptions.allowRedirects != null) { this._allowRedirects = requestOptions.allowRedirects; } if (requestOptions.allowRedirectDowngrade != null) { this._allowRedirectDowngrade = requestOptions.allowRedirectDowngrade; } if (requestOptions.maxRedirects != null) { this._maxRedirects = Math.max(requestOptions.maxRedirects, 0); } if (requestOptions.keepAlive != null) { this._keepAlive = requestOptions.keepAlive; } if (requestOptions.allowRetries != null) { this._allowRetries = requestOptions.allowRetries; } if (requestOptions.maxRetries != null) { this._maxRetries = requestOptions.maxRetries; } } } options(requestUrl, additionalHeaders) { return __awaiter(this, void 0, void 0, function* () { return this.request('OPTIONS', requestUrl, null, additionalHeaders || {}); }); } get(requestUrl, additionalHeaders) { return __awaiter(this, void 0, void 0, function* () { return this.request('GET', requestUrl, null, additionalHeaders || {}); }); } del(requestUrl, additionalHeaders) { return __awaiter(this, void 0, void 0, function* () { return this.request('DELETE', requestUrl, null, additionalHeaders || {}); }); } post(requestUrl, data, additionalHeaders) { return __awaiter(this, void 0, void 0, function* () { return this.request('POST', requestUrl, data, additionalHeaders || {}); }); } patch(requestUrl, data, additionalHeaders) { return __awaiter(this, void 0, void 0, function* () { return this.request('PATCH', requestUrl, data, additionalHeaders || {}); }); } put(requestUrl, data, additionalHeaders) { return __awaiter(this, void 0, void 0, function* () { return this.request('PUT', requestUrl, data, additionalHeaders || {}); }); } head(requestUrl, additionalHeaders) { return __awaiter(this, void 0, void 0, function* () { return this.request('HEAD', requestUrl, null, additionalHeaders || {}); }); } sendStream(verb, requestUrl, stream, additionalHeaders) { return __awaiter(this, void 0, void 0, function* () { return this.request(verb, requestUrl, stream, additionalHeaders); }); } /** * Gets a typed object from an endpoint * Be aware that not found returns a null. Other errors (4xx, 5xx) reject the promise */ getJson(requestUrl, additionalHeaders = {}) { return __awaiter(this, void 0, void 0, function* () { additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); const res = yield this.get(requestUrl, additionalHeaders); return this._processResponse(res, this.requestOptions); }); } postJson(requestUrl, obj, additionalHeaders = {}) { return __awaiter(this, void 0, void 0, function* () { const data = JSON.stringify(obj, null, 2); additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); additionalHeaders[Headers.ContentType] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.ContentType, MediaTypes.ApplicationJson); const res = yield this.post(requestUrl, data, additionalHeaders); return this._processResponse(res, this.requestOptions); }); } putJson(requestUrl, obj, additionalHeaders = {}) { return __awaiter(this, void 0, void 0, function* () { const data = JSON.stringify(obj, null, 2); additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); additionalHeaders[Headers.ContentType] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.ContentType, MediaTypes.ApplicationJson); const res = yield this.put(requestUrl, data, additionalHeaders); return this._processResponse(res, this.requestOptions); }); } patchJson(requestUrl, obj, additionalHeaders = {}) { return __awaiter(this, void 0, void 0, function* () { const data = JSON.stringify(obj, null, 2); additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); additionalHeaders[Headers.ContentType] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.ContentType, MediaTypes.ApplicationJson); const res = yield this.patch(requestUrl, data, additionalHeaders); return this._processResponse(res, this.requestOptions); }); } /** * Makes a raw http request. * All other methods such as get, post, patch, and request ultimately call this. * Prefer get, del, post and patch */ request(verb, requestUrl, data, headers) { return __awaiter(this, void 0, void 0, function* () { if (this._disposed) { throw new Error('Client has already been disposed.'); } const parsedUrl = new URL(requestUrl); let info = this._prepareRequest(verb, parsedUrl, headers); // Only perform retries on reads since writes may not be idempotent. const maxTries = this._allowRetries && RetryableHttpVerbs.includes(verb) ? this._maxRetries + 1 : 1; let numTries = 0; let response; do { response = yield this.requestRaw(info, data); // Check if it's an authentication challenge if (response && response.message && response.message.statusCode === HttpCodes.Unauthorized) { let authenticationHandler; for (const handler of this.handlers) { if (handler.canHandleAuthentication(response)) { authenticationHandler = handler; break; } } if (authenticationHandler) { return authenticationHandler.handleAuthentication(this, info, data); } else { // We have received an unauthorized response but have no handlers to handle it. // Let the response return to the caller. return response; } } let redirectsRemaining = this._maxRedirects; while (response.message.statusCode && HttpRedirectCodes.includes(response.message.statusCode) && this._allowRedirects && redirectsRemaining > 0) { const redirectUrl = response.message.headers['location']; if (!redirectUrl) { // if there's no location to redirect to, we won't break; } const parsedRedirectUrl = new URL(redirectUrl); if (parsedUrl.protocol === 'https:' && parsedUrl.protocol !== parsedRedirectUrl.protocol && !this._allowRedirectDowngrade) { throw new Error('Redirect from HTTPS to HTTP protocol. This downgrade is not allowed for security reasons. If you want to allow this behavior, set the allowRedirectDowngrade option to true.'); } // we need to finish reading the response before reassigning response // which will leak the open socket. yield response.readBody(); // strip authorization header if redirected to a different hostname if (parsedRedirectUrl.hostname !== parsedUrl.hostname) { for (const header in headers) { // header names are case insensitive if (header.toLowerCase() === 'authorization') { delete headers[header]; } } } // let's make the request with the new redirectUrl info = this._prepareRequest(verb, parsedRedirectUrl, headers); response = yield this.requestRaw(info, data); redirectsRemaining--; } if (!response.message.statusCode || !HttpResponseRetryCodes.includes(response.message.statusCode)) { // If not a retry code, return immediately instead of retrying return response; } numTries += 1; if (numTries < maxTries) { yield response.readBody(); yield this._performExponentialBackoff(numTries); } } while (numTries < maxTries); return response; }); } /** * Needs to be called if keepAlive is set to true in request options. */ dispose() { if (this._agent) { this._agent.destroy(); } this._disposed = true; } /** * Raw request. * @param info * @param data */ requestRaw(info, data) { return __awaiter(this, void 0, void 0, function* () { return new Promise((resolve, reject) => { function callbackForResult(err, res) { if (err) { reject(err); } else if (!res) { // If `err` is not passed, then `res` must be passed. reject(new Error('Unknown error')); } else { resolve(res); } } this.requestRawWithCallback(info, data, callbackForResult); }); }); } /** * Raw request with callback. * @param info * @param data * @param onResult */ requestRawWithCallback(info, data, onResult) { if (typeof data === 'string') { if (!info.options.headers) { info.options.headers = {}; } info.options.headers['Content-Length'] = Buffer.byteLength(data, 'utf8'); } let callbackCalled = false; function handleResult(err, res) { if (!callbackCalled) { callbackCalled = true; onResult(err, res); } } const req = info.httpModule.request(info.options, (msg) => { const res = new HttpClientResponse(msg); handleResult(undefined, res); }); let socket; req.on('socket', sock => { socket = sock; }); // If we ever get disconnected, we want the socket to timeout eventually req.setTimeout(this._socketTimeout || 3 * 60000, () => { if (socket) { socket.end(); } handleResult(new Error(`Request timeout: ${info.options.path}`)); }); req.on('error', function (err) { // err has statusCode property // res should have headers handleResult(err); }); if (data && typeof data === 'string') { req.write(data, 'utf8'); } if (data && typeof data !== 'string') { data.on('close', function () { req.end(); }); data.pipe(req); } else { req.end(); } } /** * Gets an http agent. This function is useful when you need an http agent that handles * routing through a proxy server - depending upon the url and proxy environment variables. * @param serverUrl The server URL where the request will be sent. For example, https://api.github.com */ getAgent(serverUrl) { const parsedUrl = new URL(serverUrl); return this._getAgent(parsedUrl); } getAgentDispatcher(serverUrl) { const parsedUrl = new URL(serverUrl); const proxyUrl = pm.getProxyUrl(parsedUrl); const useProxy = proxyUrl && proxyUrl.hostname; if (!useProxy) { return; } return this._getProxyAgentDispatcher(parsedUrl, proxyUrl); } _prepareRequest(method, requestUrl, headers) { const info = {}; info.parsedUrl = requestUrl; const usingSsl = info.parsedUrl.protocol === 'https:'; info.httpModule = usingSsl ? https : http; const defaultPort = usingSsl ? 443 : 80; info.options = {}; info.options.host = info.parsedUrl.hostname; info.options.port = info.parsedUrl.port ? parseInt(info.parsedUrl.port) : defaultPort; info.options.path = (info.parsedUrl.pathname || '') + (info.parsedUrl.search || ''); info.options.method = method; info.options.headers = this._mergeHeaders(headers); if (this.userAgent != null) { info.options.headers['user-agent'] = this.userAgent; } info.options.agent = this._getAgent(info.parsedUrl); // gives handlers an opportunity to participate if (this.handlers) { for (const handler of this.handlers) { handler.prepareRequest(info.options); } } return info; } _mergeHeaders(headers) { if (this.requestOptions && this.requestOptions.headers) { return Object.assign({}, lowercaseKeys(this.requestOptions.headers), lowercaseKeys(headers || {})); } return lowercaseKeys(headers || {}); } _getExistingOrDefaultHeader(additionalHeaders, header, _default) { let clientHeader; if (this.requestOptions && this.requestOptions.headers) { clientHeader = lowercaseKeys(this.requestOptions.headers)[header]; } return additionalHeaders[header] || clientHeader || _default; } _getAgent(parsedUrl) { let agent; const proxyUrl = pm.getProxyUrl(parsedUrl); const useProxy = proxyUrl && proxyUrl.hostname; if (this._keepAlive && useProxy) { agent = this._proxyAgent; } if (!useProxy) { agent = this._agent; } // if agent is already assigned use that agent. if (agent) { return agent; } const usingSsl = parsedUrl.protocol === 'https:'; let maxSockets = 100; if (this.requestOptions) { maxSockets = this.requestOptions.maxSockets || http.globalAgent.maxSockets; } // This is `useProxy` again, but we need to check `proxyURl` directly for TypeScripts's flow analysis. if (proxyUrl && proxyUrl.hostname) { const agentOptions = { maxSockets, keepAlive: this._keepAlive, proxy: Object.assign(Object.assign({}, ((proxyUrl.username || proxyUrl.password) && { proxyAuth: `${proxyUrl.username}:${proxyUrl.password}` })), { host: proxyUrl.hostname, port: proxyUrl.port }) }; let tunnelAgent; const overHttps = proxyUrl.protocol === 'https:'; if (usingSsl) { tunnelAgent = overHttps ? tunnel.httpsOverHttps : tunnel.httpsOverHttp; } else { tunnelAgent = overHttps ? tunnel.httpOverHttps : tunnel.httpOverHttp; } agent = tunnelAgent(agentOptions); this._proxyAgent = agent; } // if tunneling agent isn't assigned create a new agent if (!agent) { const options = { keepAlive: this._keepAlive, maxSockets }; agent = usingSsl ? new https.Agent(options) : new http.Agent(options); this._agent = agent; } if (usingSsl && this._ignoreSslError) { // we don't want to set NODE_TLS_REJECT_UNAUTHORIZED=0 since that will affect request for entire process // http.RequestOptions doesn't expose a way to modify RequestOptions.agent.options // we have to cast it to any and change it directly agent.options = Object.assign(agent.options || {}, { rejectUnauthorized: false }); } return agent; } _getProxyAgentDispatcher(parsedUrl, proxyUrl) { let proxyAgent; if (this._keepAlive) { proxyAgent = this._proxyAgentDispatcher; } // if agent is already assigned use that agent. if (proxyAgent) { return proxyAgent; } const usingSsl = parsedUrl.protocol === 'https:'; proxyAgent = new undici_1.ProxyAgent(Object.assign({ uri: proxyUrl.href, pipelining: !this._keepAlive ? 0 : 1 }, ((proxyUrl.username || proxyUrl.password) && { token: `Basic ${Buffer.from(`${proxyUrl.username}:${proxyUrl.password}`).toString('base64')}` }))); this._proxyAgentDispatcher = proxyAgent; if (usingSsl && this._ignoreSslError) { // we don't want to set NODE_TLS_REJECT_UNAUTHORIZED=0 since that will affect request for entire process // http.RequestOptions doesn't expose a way to modify RequestOptions.agent.options // we have to cast it to any and change it directly proxyAgent.options = Object.assign(proxyAgent.options.requestTls || {}, { rejectUnauthorized: false }); } return proxyAgent; } _performExponentialBackoff(retryNumber) { return __awaiter(this, void 0, void 0, function* () { retryNumber = Math.min(ExponentialBackoffCeiling, retryNumber); const ms = ExponentialBackoffTimeSlice * Math.pow(2, retryNumber); return new Promise(resolve => setTimeout(() => resolve(), ms)); }); } _processResponse(res, options) { return __awaiter(this, void 0, void 0, function* () { return new Promise((resolve, reject) => __awaiter(this, void 0, void 0, function* () { const statusCode = res.message.statusCode || 0; const response = { statusCode, result: null, headers: {} }; // not found leads to null obj returned if (statusCode === HttpCodes.NotFound) { resolve(response); } // get the result from the body function dateTimeDeserializer(key, value) { if (typeof value === 'string') { const a = new Date(value); if (!isNaN(a.valueOf())) { return a; } } return value; } let obj; let contents; try { contents = yield res.readBody(); if (contents && contents.length > 0) { if (options && options.deserializeDates) { obj = JSON.parse(contents, dateTimeDeserializer); } else { obj = JSON.parse(contents); } response.result = obj; } response.headers = res.message.headers; } catch (err) { // Invalid resource (contents not json); leaving result obj null } // note that 3xx redirects are handled by the http layer. if (statusCode > 299) { let msg; // if exception/error in body, attempt to get better error if (obj && obj.message) { msg = obj.message; } else if (contents && contents.length > 0) { // it may be the case that the exception is in the body message as string msg = contents; } else { msg = `Failed request: (${statusCode})`; } const err = new HttpClientError(msg, statusCode); err.result = response.result; reject(err); } else { resolve(response); } })); }); } } exports.HttpClient = HttpClient; const lowercaseKeys = (obj) => Object.keys(obj).reduce((c, k) => ((c[k.toLowerCase()] = obj[k]), c), {}); //# sourceMappingURL=index.js.map /***/ }), /***/ 35486: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.checkBypass = exports.getProxyUrl = void 0; function getProxyUrl(reqUrl) { const usingSsl = reqUrl.protocol === 'https:'; if (checkBypass(reqUrl)) { return undefined; } const proxyVar = (() => { if (usingSsl) { return process.env['https_proxy'] || process.env['HTTPS_PROXY']; } else { return process.env['http_proxy'] || process.env['HTTP_PROXY']; } })(); if (proxyVar) { try { return new DecodedURL(proxyVar); } catch (_a) { if (!proxyVar.startsWith('http://') && !proxyVar.startsWith('https://')) return new DecodedURL(`http://${proxyVar}`); } } else { return undefined; } } exports.getProxyUrl = getProxyUrl; function checkBypass(reqUrl) { if (!reqUrl.hostname) { return false; } const reqHost = reqUrl.hostname; if (isLoopbackAddress(reqHost)) { return true; } const noProxy = process.env['no_proxy'] || process.env['NO_PROXY'] || ''; if (!noProxy) { return false; } // Determine the request port let reqPort; if (reqUrl.port) { reqPort = Number(reqUrl.port); } else if (reqUrl.protocol === 'http:') { reqPort = 80; } else if (reqUrl.protocol === 'https:') { reqPort = 443; } // Format the request hostname and hostname with port const upperReqHosts = [reqUrl.hostname.toUpperCase()]; if (typeof reqPort === 'number') { upperReqHosts.push(`${upperReqHosts[0]}:${reqPort}`); } // Compare request host against noproxy for (const upperNoProxyItem of noProxy .split(',') .map(x => x.trim().toUpperCase()) .filter(x => x)) { if (upperNoProxyItem === '*' || upperReqHosts.some(x => x === upperNoProxyItem || x.endsWith(`.${upperNoProxyItem}`) || (upperNoProxyItem.startsWith('.') && x.endsWith(`${upperNoProxyItem}`)))) { return true; } } return false; } exports.checkBypass = checkBypass; function isLoopbackAddress(host) { const hostLower = host.toLowerCase(); return (hostLower === 'localhost' || hostLower.startsWith('127.') || hostLower.startsWith('[::1]') || hostLower.startsWith('[0:0:0:0:0:0:0:1]')); } class DecodedURL extends URL { constructor(url, base) { super(url, base); this._decodedUsername = decodeURIComponent(super.username); this._decodedPassword = decodeURIComponent(super.password); } get username() { return this._decodedUsername; } get password() { return this._decodedPassword; } } //# sourceMappingURL=proxy.js.map /***/ }), /***/ 44552: /***/ (function(__unused_webpack_module, exports) { "use strict"; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.PersonalAccessTokenCredentialHandler = exports.BearerCredentialHandler = exports.BasicCredentialHandler = void 0; class BasicCredentialHandler { constructor(username, password) { this.username = username; this.password = password; } prepareRequest(options) { if (!options.headers) { throw Error('The request has no headers'); } options.headers['Authorization'] = `Basic ${Buffer.from(`${this.username}:${this.password}`).toString('base64')}`; } // This handler cannot handle 401 canHandleAuthentication() { return false; } handleAuthentication() { return __awaiter(this, void 0, void 0, function* () { throw new Error('not implemented'); }); } } exports.BasicCredentialHandler = BasicCredentialHandler; class BearerCredentialHandler { constructor(token) { this.token = token; } // currently implements pre-authorization // TODO: support preAuth = false where it hooks on 401 prepareRequest(options) { if (!options.headers) { throw Error('The request has no headers'); } options.headers['Authorization'] = `Bearer ${this.token}`; } // This handler cannot handle 401 canHandleAuthentication() { return false; } handleAuthentication() { return __awaiter(this, void 0, void 0, function* () { throw new Error('not implemented'); }); } } exports.BearerCredentialHandler = BearerCredentialHandler; class PersonalAccessTokenCredentialHandler { constructor(token) { this.token = token; } // currently implements pre-authorization // TODO: support preAuth = false where it hooks on 401 prepareRequest(options) { if (!options.headers) { throw Error('The request has no headers'); } options.headers['Authorization'] = `Basic ${Buffer.from(`PAT:${this.token}`).toString('base64')}`; } // This handler cannot handle 401 canHandleAuthentication() { return false; } handleAuthentication() { return __awaiter(this, void 0, void 0, function* () { throw new Error('not implemented'); }); } } exports.PersonalAccessTokenCredentialHandler = PersonalAccessTokenCredentialHandler; //# sourceMappingURL=auth.js.map /***/ }), /***/ 54844: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; /* eslint-disable @typescript-eslint/no-explicit-any */ var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.HttpClient = exports.HttpClientResponse = exports.HttpClientError = exports.MediaTypes = exports.Headers = exports.HttpCodes = void 0; exports.getProxyUrl = getProxyUrl; exports.isHttps = isHttps; const http = __importStar(__nccwpck_require__(58611)); const https = __importStar(__nccwpck_require__(65692)); const pm = __importStar(__nccwpck_require__(54988)); const tunnel = __importStar(__nccwpck_require__(20770)); const undici_1 = __nccwpck_require__(46752); var HttpCodes; (function (HttpCodes) { HttpCodes[HttpCodes["OK"] = 200] = "OK"; HttpCodes[HttpCodes["MultipleChoices"] = 300] = "MultipleChoices"; HttpCodes[HttpCodes["MovedPermanently"] = 301] = "MovedPermanently"; HttpCodes[HttpCodes["ResourceMoved"] = 302] = "ResourceMoved"; HttpCodes[HttpCodes["SeeOther"] = 303] = "SeeOther"; HttpCodes[HttpCodes["NotModified"] = 304] = "NotModified"; HttpCodes[HttpCodes["UseProxy"] = 305] = "UseProxy"; HttpCodes[HttpCodes["SwitchProxy"] = 306] = "SwitchProxy"; HttpCodes[HttpCodes["TemporaryRedirect"] = 307] = "TemporaryRedirect"; HttpCodes[HttpCodes["PermanentRedirect"] = 308] = "PermanentRedirect"; HttpCodes[HttpCodes["BadRequest"] = 400] = "BadRequest"; HttpCodes[HttpCodes["Unauthorized"] = 401] = "Unauthorized"; HttpCodes[HttpCodes["PaymentRequired"] = 402] = "PaymentRequired"; HttpCodes[HttpCodes["Forbidden"] = 403] = "Forbidden"; HttpCodes[HttpCodes["NotFound"] = 404] = "NotFound"; HttpCodes[HttpCodes["MethodNotAllowed"] = 405] = "MethodNotAllowed"; HttpCodes[HttpCodes["NotAcceptable"] = 406] = "NotAcceptable"; HttpCodes[HttpCodes["ProxyAuthenticationRequired"] = 407] = "ProxyAuthenticationRequired"; HttpCodes[HttpCodes["RequestTimeout"] = 408] = "RequestTimeout"; HttpCodes[HttpCodes["Conflict"] = 409] = "Conflict"; HttpCodes[HttpCodes["Gone"] = 410] = "Gone"; HttpCodes[HttpCodes["TooManyRequests"] = 429] = "TooManyRequests"; HttpCodes[HttpCodes["InternalServerError"] = 500] = "InternalServerError"; HttpCodes[HttpCodes["NotImplemented"] = 501] = "NotImplemented"; HttpCodes[HttpCodes["BadGateway"] = 502] = "BadGateway"; HttpCodes[HttpCodes["ServiceUnavailable"] = 503] = "ServiceUnavailable"; HttpCodes[HttpCodes["GatewayTimeout"] = 504] = "GatewayTimeout"; })(HttpCodes || (exports.HttpCodes = HttpCodes = {})); var Headers; (function (Headers) { Headers["Accept"] = "accept"; Headers["ContentType"] = "content-type"; })(Headers || (exports.Headers = Headers = {})); var MediaTypes; (function (MediaTypes) { MediaTypes["ApplicationJson"] = "application/json"; })(MediaTypes || (exports.MediaTypes = MediaTypes = {})); /** * Returns the proxy URL, depending upon the supplied url and proxy environment variables. * @param serverUrl The server URL where the request will be sent. For example, https://api.github.com */ function getProxyUrl(serverUrl) { const proxyUrl = pm.getProxyUrl(new URL(serverUrl)); return proxyUrl ? proxyUrl.href : ''; } const HttpRedirectCodes = [ HttpCodes.MovedPermanently, HttpCodes.ResourceMoved, HttpCodes.SeeOther, HttpCodes.TemporaryRedirect, HttpCodes.PermanentRedirect ]; const HttpResponseRetryCodes = [ HttpCodes.BadGateway, HttpCodes.ServiceUnavailable, HttpCodes.GatewayTimeout ]; const RetryableHttpVerbs = ['OPTIONS', 'GET', 'DELETE', 'HEAD']; const ExponentialBackoffCeiling = 10; const ExponentialBackoffTimeSlice = 5; class HttpClientError extends Error { constructor(message, statusCode) { super(message); this.name = 'HttpClientError'; this.statusCode = statusCode; Object.setPrototypeOf(this, HttpClientError.prototype); } } exports.HttpClientError = HttpClientError; class HttpClientResponse { constructor(message) { this.message = message; } readBody() { return __awaiter(this, void 0, void 0, function* () { return new Promise((resolve) => __awaiter(this, void 0, void 0, function* () { let output = Buffer.alloc(0); this.message.on('data', (chunk) => { output = Buffer.concat([output, chunk]); }); this.message.on('end', () => { resolve(output.toString()); }); })); }); } readBodyBuffer() { return __awaiter(this, void 0, void 0, function* () { return new Promise((resolve) => __awaiter(this, void 0, void 0, function* () { const chunks = []; this.message.on('data', (chunk) => { chunks.push(chunk); }); this.message.on('end', () => { resolve(Buffer.concat(chunks)); }); })); }); } } exports.HttpClientResponse = HttpClientResponse; function isHttps(requestUrl) { const parsedUrl = new URL(requestUrl); return parsedUrl.protocol === 'https:'; } class HttpClient { constructor(userAgent, handlers, requestOptions) { this._ignoreSslError = false; this._allowRedirects = true; this._allowRedirectDowngrade = false; this._maxRedirects = 50; this._allowRetries = false; this._maxRetries = 1; this._keepAlive = false; this._disposed = false; this.userAgent = this._getUserAgentWithOrchestrationId(userAgent); this.handlers = handlers || []; this.requestOptions = requestOptions; if (requestOptions) { if (requestOptions.ignoreSslError != null) { this._ignoreSslError = requestOptions.ignoreSslError; } this._socketTimeout = requestOptions.socketTimeout; if (requestOptions.allowRedirects != null) { this._allowRedirects = requestOptions.allowRedirects; } if (requestOptions.allowRedirectDowngrade != null) { this._allowRedirectDowngrade = requestOptions.allowRedirectDowngrade; } if (requestOptions.maxRedirects != null) { this._maxRedirects = Math.max(requestOptions.maxRedirects, 0); } if (requestOptions.keepAlive != null) { this._keepAlive = requestOptions.keepAlive; } if (requestOptions.allowRetries != null) { this._allowRetries = requestOptions.allowRetries; } if (requestOptions.maxRetries != null) { this._maxRetries = requestOptions.maxRetries; } } } options(requestUrl, additionalHeaders) { return __awaiter(this, void 0, void 0, function* () { return this.request('OPTIONS', requestUrl, null, additionalHeaders || {}); }); } get(requestUrl, additionalHeaders) { return __awaiter(this, void 0, void 0, function* () { return this.request('GET', requestUrl, null, additionalHeaders || {}); }); } del(requestUrl, additionalHeaders) { return __awaiter(this, void 0, void 0, function* () { return this.request('DELETE', requestUrl, null, additionalHeaders || {}); }); } post(requestUrl, data, additionalHeaders) { return __awaiter(this, void 0, void 0, function* () { return this.request('POST', requestUrl, data, additionalHeaders || {}); }); } patch(requestUrl, data, additionalHeaders) { return __awaiter(this, void 0, void 0, function* () { return this.request('PATCH', requestUrl, data, additionalHeaders || {}); }); } put(requestUrl, data, additionalHeaders) { return __awaiter(this, void 0, void 0, function* () { return this.request('PUT', requestUrl, data, additionalHeaders || {}); }); } head(requestUrl, additionalHeaders) { return __awaiter(this, void 0, void 0, function* () { return this.request('HEAD', requestUrl, null, additionalHeaders || {}); }); } sendStream(verb, requestUrl, stream, additionalHeaders) { return __awaiter(this, void 0, void 0, function* () { return this.request(verb, requestUrl, stream, additionalHeaders); }); } /** * Gets a typed object from an endpoint * Be aware that not found returns a null. Other errors (4xx, 5xx) reject the promise */ getJson(requestUrl_1) { return __awaiter(this, arguments, void 0, function* (requestUrl, additionalHeaders = {}) { additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); const res = yield this.get(requestUrl, additionalHeaders); return this._processResponse(res, this.requestOptions); }); } postJson(requestUrl_1, obj_1) { return __awaiter(this, arguments, void 0, function* (requestUrl, obj, additionalHeaders = {}) { const data = JSON.stringify(obj, null, 2); additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); additionalHeaders[Headers.ContentType] = this._getExistingOrDefaultContentTypeHeader(additionalHeaders, MediaTypes.ApplicationJson); const res = yield this.post(requestUrl, data, additionalHeaders); return this._processResponse(res, this.requestOptions); }); } putJson(requestUrl_1, obj_1) { return __awaiter(this, arguments, void 0, function* (requestUrl, obj, additionalHeaders = {}) { const data = JSON.stringify(obj, null, 2); additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); additionalHeaders[Headers.ContentType] = this._getExistingOrDefaultContentTypeHeader(additionalHeaders, MediaTypes.ApplicationJson); const res = yield this.put(requestUrl, data, additionalHeaders); return this._processResponse(res, this.requestOptions); }); } patchJson(requestUrl_1, obj_1) { return __awaiter(this, arguments, void 0, function* (requestUrl, obj, additionalHeaders = {}) { const data = JSON.stringify(obj, null, 2); additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); additionalHeaders[Headers.ContentType] = this._getExistingOrDefaultContentTypeHeader(additionalHeaders, MediaTypes.ApplicationJson); const res = yield this.patch(requestUrl, data, additionalHeaders); return this._processResponse(res, this.requestOptions); }); } /** * Makes a raw http request. * All other methods such as get, post, patch, and request ultimately call this. * Prefer get, del, post and patch */ request(verb, requestUrl, data, headers) { return __awaiter(this, void 0, void 0, function* () { if (this._disposed) { throw new Error('Client has already been disposed.'); } const parsedUrl = new URL(requestUrl); let info = this._prepareRequest(verb, parsedUrl, headers); // Only perform retries on reads since writes may not be idempotent. const maxTries = this._allowRetries && RetryableHttpVerbs.includes(verb) ? this._maxRetries + 1 : 1; let numTries = 0; let response; do { response = yield this.requestRaw(info, data); // Check if it's an authentication challenge if (response && response.message && response.message.statusCode === HttpCodes.Unauthorized) { let authenticationHandler; for (const handler of this.handlers) { if (handler.canHandleAuthentication(response)) { authenticationHandler = handler; break; } } if (authenticationHandler) { return authenticationHandler.handleAuthentication(this, info, data); } else { // We have received an unauthorized response but have no handlers to handle it. // Let the response return to the caller. return response; } } let redirectsRemaining = this._maxRedirects; while (response.message.statusCode && HttpRedirectCodes.includes(response.message.statusCode) && this._allowRedirects && redirectsRemaining > 0) { const redirectUrl = response.message.headers['location']; if (!redirectUrl) { // if there's no location to redirect to, we won't break; } const parsedRedirectUrl = new URL(redirectUrl); if (parsedUrl.protocol === 'https:' && parsedUrl.protocol !== parsedRedirectUrl.protocol && !this._allowRedirectDowngrade) { throw new Error('Redirect from HTTPS to HTTP protocol. This downgrade is not allowed for security reasons. If you want to allow this behavior, set the allowRedirectDowngrade option to true.'); } // we need to finish reading the response before reassigning response // which will leak the open socket. yield response.readBody(); // strip authorization header if redirected to a different hostname if (parsedRedirectUrl.hostname !== parsedUrl.hostname) { for (const header in headers) { // header names are case insensitive if (header.toLowerCase() === 'authorization') { delete headers[header]; } } } // let's make the request with the new redirectUrl info = this._prepareRequest(verb, parsedRedirectUrl, headers); response = yield this.requestRaw(info, data); redirectsRemaining--; } if (!response.message.statusCode || !HttpResponseRetryCodes.includes(response.message.statusCode)) { // If not a retry code, return immediately instead of retrying return response; } numTries += 1; if (numTries < maxTries) { yield response.readBody(); yield this._performExponentialBackoff(numTries); } } while (numTries < maxTries); return response; }); } /** * Needs to be called if keepAlive is set to true in request options. */ dispose() { if (this._agent) { this._agent.destroy(); } this._disposed = true; } /** * Raw request. * @param info * @param data */ requestRaw(info, data) { return __awaiter(this, void 0, void 0, function* () { return new Promise((resolve, reject) => { function callbackForResult(err, res) { if (err) { reject(err); } else if (!res) { // If `err` is not passed, then `res` must be passed. reject(new Error('Unknown error')); } else { resolve(res); } } this.requestRawWithCallback(info, data, callbackForResult); }); }); } /** * Raw request with callback. * @param info * @param data * @param onResult */ requestRawWithCallback(info, data, onResult) { if (typeof data === 'string') { if (!info.options.headers) { info.options.headers = {}; } info.options.headers['Content-Length'] = Buffer.byteLength(data, 'utf8'); } let callbackCalled = false; function handleResult(err, res) { if (!callbackCalled) { callbackCalled = true; onResult(err, res); } } const req = info.httpModule.request(info.options, (msg) => { const res = new HttpClientResponse(msg); handleResult(undefined, res); }); let socket; req.on('socket', sock => { socket = sock; }); // If we ever get disconnected, we want the socket to timeout eventually req.setTimeout(this._socketTimeout || 3 * 60000, () => { if (socket) { socket.end(); } handleResult(new Error(`Request timeout: ${info.options.path}`)); }); req.on('error', function (err) { // err has statusCode property // res should have headers handleResult(err); }); if (data && typeof data === 'string') { req.write(data, 'utf8'); } if (data && typeof data !== 'string') { data.on('close', function () { req.end(); }); data.pipe(req); } else { req.end(); } } /** * Gets an http agent. This function is useful when you need an http agent that handles * routing through a proxy server - depending upon the url and proxy environment variables. * @param serverUrl The server URL where the request will be sent. For example, https://api.github.com */ getAgent(serverUrl) { const parsedUrl = new URL(serverUrl); return this._getAgent(parsedUrl); } getAgentDispatcher(serverUrl) { const parsedUrl = new URL(serverUrl); const proxyUrl = pm.getProxyUrl(parsedUrl); const useProxy = proxyUrl && proxyUrl.hostname; if (!useProxy) { return; } return this._getProxyAgentDispatcher(parsedUrl, proxyUrl); } _prepareRequest(method, requestUrl, headers) { const info = {}; info.parsedUrl = requestUrl; const usingSsl = info.parsedUrl.protocol === 'https:'; info.httpModule = usingSsl ? https : http; const defaultPort = usingSsl ? 443 : 80; info.options = {}; info.options.host = info.parsedUrl.hostname; info.options.port = info.parsedUrl.port ? parseInt(info.parsedUrl.port) : defaultPort; info.options.path = (info.parsedUrl.pathname || '') + (info.parsedUrl.search || ''); info.options.method = method; info.options.headers = this._mergeHeaders(headers); if (this.userAgent != null) { info.options.headers['user-agent'] = this.userAgent; } info.options.agent = this._getAgent(info.parsedUrl); // gives handlers an opportunity to participate if (this.handlers) { for (const handler of this.handlers) { handler.prepareRequest(info.options); } } return info; } _mergeHeaders(headers) { if (this.requestOptions && this.requestOptions.headers) { return Object.assign({}, lowercaseKeys(this.requestOptions.headers), lowercaseKeys(headers || {})); } return lowercaseKeys(headers || {}); } /** * Gets an existing header value or returns a default. * Handles converting number header values to strings since HTTP headers must be strings. * Note: This returns string | string[] since some headers can have multiple values. * For headers that must always be a single string (like Content-Type), use the * specialized _getExistingOrDefaultContentTypeHeader method instead. */ _getExistingOrDefaultHeader(additionalHeaders, header, _default) { let clientHeader; if (this.requestOptions && this.requestOptions.headers) { const headerValue = lowercaseKeys(this.requestOptions.headers)[header]; if (headerValue) { clientHeader = typeof headerValue === 'number' ? headerValue.toString() : headerValue; } } const additionalValue = additionalHeaders[header]; if (additionalValue !== undefined) { return typeof additionalValue === 'number' ? additionalValue.toString() : additionalValue; } if (clientHeader !== undefined) { return clientHeader; } return _default; } /** * Specialized version of _getExistingOrDefaultHeader for Content-Type header. * Always returns a single string (not an array) since Content-Type should be a single value. * Converts arrays to comma-separated strings and numbers to strings to ensure type safety. * This was split from _getExistingOrDefaultHeader to provide stricter typing for callers * that assign the result to places expecting a string (e.g., additionalHeaders[Headers.ContentType]). */ _getExistingOrDefaultContentTypeHeader(additionalHeaders, _default) { let clientHeader; if (this.requestOptions && this.requestOptions.headers) { const headerValue = lowercaseKeys(this.requestOptions.headers)[Headers.ContentType]; if (headerValue) { if (typeof headerValue === 'number') { clientHeader = String(headerValue); } else if (Array.isArray(headerValue)) { clientHeader = headerValue.join(', '); } else { clientHeader = headerValue; } } } const additionalValue = additionalHeaders[Headers.ContentType]; // Return the first non-undefined value, converting numbers or arrays to strings if necessary if (additionalValue !== undefined) { if (typeof additionalValue === 'number') { return String(additionalValue); } else if (Array.isArray(additionalValue)) { return additionalValue.join(', '); } else { return additionalValue; } } if (clientHeader !== undefined) { return clientHeader; } return _default; } _getAgent(parsedUrl) { let agent; const proxyUrl = pm.getProxyUrl(parsedUrl); const useProxy = proxyUrl && proxyUrl.hostname; if (this._keepAlive && useProxy) { agent = this._proxyAgent; } if (!useProxy) { agent = this._agent; } // if agent is already assigned use that agent. if (agent) { return agent; } const usingSsl = parsedUrl.protocol === 'https:'; let maxSockets = 100; if (this.requestOptions) { maxSockets = this.requestOptions.maxSockets || http.globalAgent.maxSockets; } // This is `useProxy` again, but we need to check `proxyURl` directly for TypeScripts's flow analysis. if (proxyUrl && proxyUrl.hostname) { const agentOptions = { maxSockets, keepAlive: this._keepAlive, proxy: Object.assign(Object.assign({}, ((proxyUrl.username || proxyUrl.password) && { proxyAuth: `${proxyUrl.username}:${proxyUrl.password}` })), { host: proxyUrl.hostname, port: proxyUrl.port }) }; let tunnelAgent; const overHttps = proxyUrl.protocol === 'https:'; if (usingSsl) { tunnelAgent = overHttps ? tunnel.httpsOverHttps : tunnel.httpsOverHttp; } else { tunnelAgent = overHttps ? tunnel.httpOverHttps : tunnel.httpOverHttp; } agent = tunnelAgent(agentOptions); this._proxyAgent = agent; } // if tunneling agent isn't assigned create a new agent if (!agent) { const options = { keepAlive: this._keepAlive, maxSockets }; agent = usingSsl ? new https.Agent(options) : new http.Agent(options); this._agent = agent; } if (usingSsl && this._ignoreSslError) { // we don't want to set NODE_TLS_REJECT_UNAUTHORIZED=0 since that will affect request for entire process // http.RequestOptions doesn't expose a way to modify RequestOptions.agent.options // we have to cast it to any and change it directly agent.options = Object.assign(agent.options || {}, { rejectUnauthorized: false }); } return agent; } _getProxyAgentDispatcher(parsedUrl, proxyUrl) { let proxyAgent; if (this._keepAlive) { proxyAgent = this._proxyAgentDispatcher; } // if agent is already assigned use that agent. if (proxyAgent) { return proxyAgent; } const usingSsl = parsedUrl.protocol === 'https:'; proxyAgent = new undici_1.ProxyAgent(Object.assign({ uri: proxyUrl.href, pipelining: !this._keepAlive ? 0 : 1 }, ((proxyUrl.username || proxyUrl.password) && { token: `Basic ${Buffer.from(`${proxyUrl.username}:${proxyUrl.password}`).toString('base64')}` }))); this._proxyAgentDispatcher = proxyAgent; if (usingSsl && this._ignoreSslError) { // we don't want to set NODE_TLS_REJECT_UNAUTHORIZED=0 since that will affect request for entire process // http.RequestOptions doesn't expose a way to modify RequestOptions.agent.options // we have to cast it to any and change it directly proxyAgent.options = Object.assign(proxyAgent.options.requestTls || {}, { rejectUnauthorized: false }); } return proxyAgent; } _getUserAgentWithOrchestrationId(userAgent) { const baseUserAgent = userAgent || 'actions/http-client'; const orchId = process.env['ACTIONS_ORCHESTRATION_ID']; if (orchId) { // Sanitize the orchestration ID to ensure it contains only valid characters // Valid characters: 0-9, a-z, _, -, . const sanitizedId = orchId.replace(/[^a-z0-9_.-]/gi, '_'); return `${baseUserAgent} actions_orchestration_id/${sanitizedId}`; } return baseUserAgent; } _performExponentialBackoff(retryNumber) { return __awaiter(this, void 0, void 0, function* () { retryNumber = Math.min(ExponentialBackoffCeiling, retryNumber); const ms = ExponentialBackoffTimeSlice * Math.pow(2, retryNumber); return new Promise(resolve => setTimeout(() => resolve(), ms)); }); } _processResponse(res, options) { return __awaiter(this, void 0, void 0, function* () { return new Promise((resolve, reject) => __awaiter(this, void 0, void 0, function* () { const statusCode = res.message.statusCode || 0; const response = { statusCode, result: null, headers: {} }; // not found leads to null obj returned if (statusCode === HttpCodes.NotFound) { resolve(response); } // get the result from the body function dateTimeDeserializer(key, value) { if (typeof value === 'string') { const a = new Date(value); if (!isNaN(a.valueOf())) { return a; } } return value; } let obj; let contents; try { contents = yield res.readBody(); if (contents && contents.length > 0) { if (options && options.deserializeDates) { obj = JSON.parse(contents, dateTimeDeserializer); } else { obj = JSON.parse(contents); } response.result = obj; } response.headers = res.message.headers; } catch (err) { // Invalid resource (contents not json); leaving result obj null } // note that 3xx redirects are handled by the http layer. if (statusCode > 299) { let msg; // if exception/error in body, attempt to get better error if (obj && obj.message) { msg = obj.message; } else if (contents && contents.length > 0) { // it may be the case that the exception is in the body message as string msg = contents; } else { msg = `Failed request: (${statusCode})`; } const err = new HttpClientError(msg, statusCode); err.result = response.result; reject(err); } else { resolve(response); } })); }); } } exports.HttpClient = HttpClient; const lowercaseKeys = (obj) => Object.keys(obj).reduce((c, k) => ((c[k.toLowerCase()] = obj[k]), c), {}); //# sourceMappingURL=index.js.map /***/ }), /***/ 54988: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.getProxyUrl = getProxyUrl; exports.checkBypass = checkBypass; function getProxyUrl(reqUrl) { const usingSsl = reqUrl.protocol === 'https:'; if (checkBypass(reqUrl)) { return undefined; } const proxyVar = (() => { if (usingSsl) { return process.env['https_proxy'] || process.env['HTTPS_PROXY']; } else { return process.env['http_proxy'] || process.env['HTTP_PROXY']; } })(); if (proxyVar) { try { return new DecodedURL(proxyVar); } catch (_a) { if (!proxyVar.startsWith('http://') && !proxyVar.startsWith('https://')) return new DecodedURL(`http://${proxyVar}`); } } else { return undefined; } } function checkBypass(reqUrl) { if (!reqUrl.hostname) { return false; } const reqHost = reqUrl.hostname; if (isLoopbackAddress(reqHost)) { return true; } const noProxy = process.env['no_proxy'] || process.env['NO_PROXY'] || ''; if (!noProxy) { return false; } // Determine the request port let reqPort; if (reqUrl.port) { reqPort = Number(reqUrl.port); } else if (reqUrl.protocol === 'http:') { reqPort = 80; } else if (reqUrl.protocol === 'https:') { reqPort = 443; } // Format the request hostname and hostname with port const upperReqHosts = [reqUrl.hostname.toUpperCase()]; if (typeof reqPort === 'number') { upperReqHosts.push(`${upperReqHosts[0]}:${reqPort}`); } // Compare request host against noproxy for (const upperNoProxyItem of noProxy .split(',') .map(x => x.trim().toUpperCase()) .filter(x => x)) { if (upperNoProxyItem === '*' || upperReqHosts.some(x => x === upperNoProxyItem || x.endsWith(`.${upperNoProxyItem}`) || (upperNoProxyItem.startsWith('.') && x.endsWith(`${upperNoProxyItem}`)))) { return true; } } return false; } function isLoopbackAddress(host) { const hostLower = host.toLowerCase(); return (hostLower === 'localhost' || hostLower.startsWith('127.') || hostLower.startsWith('[::1]') || hostLower.startsWith('[0:0:0:0:0:0:0:1]')); } class DecodedURL extends URL { constructor(url, base) { super(url, base); this._decodedUsername = decodeURIComponent(super.username); this._decodedPassword = decodeURIComponent(super.password); } get username() { return this._decodedUsername; } get password() { return this._decodedPassword; } } //# sourceMappingURL=proxy.js.map /***/ }), /***/ 75207: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; Object.defineProperty(o, k2, { enumerable: true, get: function() { return m[k]; } }); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; var _a; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.getCmdPath = exports.tryGetExecutablePath = exports.isRooted = exports.isDirectory = exports.exists = exports.READONLY = exports.UV_FS_O_EXLOCK = exports.IS_WINDOWS = exports.unlink = exports.symlink = exports.stat = exports.rmdir = exports.rm = exports.rename = exports.readlink = exports.readdir = exports.open = exports.mkdir = exports.lstat = exports.copyFile = exports.chmod = void 0; const fs = __importStar(__nccwpck_require__(79896)); const path = __importStar(__nccwpck_require__(16928)); _a = fs.promises // export const {open} = 'fs' , exports.chmod = _a.chmod, exports.copyFile = _a.copyFile, exports.lstat = _a.lstat, exports.mkdir = _a.mkdir, exports.open = _a.open, exports.readdir = _a.readdir, exports.readlink = _a.readlink, exports.rename = _a.rename, exports.rm = _a.rm, exports.rmdir = _a.rmdir, exports.stat = _a.stat, exports.symlink = _a.symlink, exports.unlink = _a.unlink; // export const {open} = 'fs' exports.IS_WINDOWS = process.platform === 'win32'; // See https://github.com/nodejs/node/blob/d0153aee367422d0858105abec186da4dff0a0c5/deps/uv/include/uv/win.h#L691 exports.UV_FS_O_EXLOCK = 0x10000000; exports.READONLY = fs.constants.O_RDONLY; function exists(fsPath) { return __awaiter(this, void 0, void 0, function* () { try { yield exports.stat(fsPath); } catch (err) { if (err.code === 'ENOENT') { return false; } throw err; } return true; }); } exports.exists = exists; function isDirectory(fsPath, useStat = false) { return __awaiter(this, void 0, void 0, function* () { const stats = useStat ? yield exports.stat(fsPath) : yield exports.lstat(fsPath); return stats.isDirectory(); }); } exports.isDirectory = isDirectory; /** * On OSX/Linux, true if path starts with '/'. On Windows, true for paths like: * \, \hello, \\hello\share, C:, and C:\hello (and corresponding alternate separator cases). */ function isRooted(p) { p = normalizeSeparators(p); if (!p) { throw new Error('isRooted() parameter "p" cannot be empty'); } if (exports.IS_WINDOWS) { return (p.startsWith('\\') || /^[A-Z]:/i.test(p) // e.g. \ or \hello or \\hello ); // e.g. C: or C:\hello } return p.startsWith('/'); } exports.isRooted = isRooted; /** * Best effort attempt to determine whether a file exists and is executable. * @param filePath file path to check * @param extensions additional file extensions to try * @return if file exists and is executable, returns the file path. otherwise empty string. */ function tryGetExecutablePath(filePath, extensions) { return __awaiter(this, void 0, void 0, function* () { let stats = undefined; try { // test file exists stats = yield exports.stat(filePath); } catch (err) { if (err.code !== 'ENOENT') { // eslint-disable-next-line no-console console.log(`Unexpected error attempting to determine if executable file exists '${filePath}': ${err}`); } } if (stats && stats.isFile()) { if (exports.IS_WINDOWS) { // on Windows, test for valid extension const upperExt = path.extname(filePath).toUpperCase(); if (extensions.some(validExt => validExt.toUpperCase() === upperExt)) { return filePath; } } else { if (isUnixExecutable(stats)) { return filePath; } } } // try each extension const originalFilePath = filePath; for (const extension of extensions) { filePath = originalFilePath + extension; stats = undefined; try { stats = yield exports.stat(filePath); } catch (err) { if (err.code !== 'ENOENT') { // eslint-disable-next-line no-console console.log(`Unexpected error attempting to determine if executable file exists '${filePath}': ${err}`); } } if (stats && stats.isFile()) { if (exports.IS_WINDOWS) { // preserve the case of the actual file (since an extension was appended) try { const directory = path.dirname(filePath); const upperName = path.basename(filePath).toUpperCase(); for (const actualName of yield exports.readdir(directory)) { if (upperName === actualName.toUpperCase()) { filePath = path.join(directory, actualName); break; } } } catch (err) { // eslint-disable-next-line no-console console.log(`Unexpected error attempting to determine the actual case of the file '${filePath}': ${err}`); } return filePath; } else { if (isUnixExecutable(stats)) { return filePath; } } } } return ''; }); } exports.tryGetExecutablePath = tryGetExecutablePath; function normalizeSeparators(p) { p = p || ''; if (exports.IS_WINDOWS) { // convert slashes on Windows p = p.replace(/\//g, '\\'); // remove redundant slashes return p.replace(/\\\\+/g, '\\'); } // remove redundant slashes return p.replace(/\/\/+/g, '/'); } // on Mac/Linux, test the execute bit // R W X R W X R W X // 256 128 64 32 16 8 4 2 1 function isUnixExecutable(stats) { return ((stats.mode & 1) > 0 || ((stats.mode & 8) > 0 && stats.gid === process.getgid()) || ((stats.mode & 64) > 0 && stats.uid === process.getuid())); } // Get the path of cmd.exe in windows function getCmdPath() { var _a; return (_a = process.env['COMSPEC']) !== null && _a !== void 0 ? _a : `cmd.exe`; } exports.getCmdPath = getCmdPath; //# sourceMappingURL=io-util.js.map /***/ }), /***/ 94994: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; Object.defineProperty(o, k2, { enumerable: true, get: function() { return m[k]; } }); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.findInPath = exports.which = exports.mkdirP = exports.rmRF = exports.mv = exports.cp = void 0; const assert_1 = __nccwpck_require__(42613); const path = __importStar(__nccwpck_require__(16928)); const ioUtil = __importStar(__nccwpck_require__(75207)); /** * Copies a file or folder. * Based off of shelljs - https://github.com/shelljs/shelljs/blob/9237f66c52e5daa40458f94f9565e18e8132f5a6/src/cp.js * * @param source source path * @param dest destination path * @param options optional. See CopyOptions. */ function cp(source, dest, options = {}) { return __awaiter(this, void 0, void 0, function* () { const { force, recursive, copySourceDirectory } = readCopyOptions(options); const destStat = (yield ioUtil.exists(dest)) ? yield ioUtil.stat(dest) : null; // Dest is an existing file, but not forcing if (destStat && destStat.isFile() && !force) { return; } // If dest is an existing directory, should copy inside. const newDest = destStat && destStat.isDirectory() && copySourceDirectory ? path.join(dest, path.basename(source)) : dest; if (!(yield ioUtil.exists(source))) { throw new Error(`no such file or directory: ${source}`); } const sourceStat = yield ioUtil.stat(source); if (sourceStat.isDirectory()) { if (!recursive) { throw new Error(`Failed to copy. ${source} is a directory, but tried to copy without recursive flag.`); } else { yield cpDirRecursive(source, newDest, 0, force); } } else { if (path.relative(source, newDest) === '') { // a file cannot be copied to itself throw new Error(`'${newDest}' and '${source}' are the same file`); } yield copyFile(source, newDest, force); } }); } exports.cp = cp; /** * Moves a path. * * @param source source path * @param dest destination path * @param options optional. See MoveOptions. */ function mv(source, dest, options = {}) { return __awaiter(this, void 0, void 0, function* () { if (yield ioUtil.exists(dest)) { let destExists = true; if (yield ioUtil.isDirectory(dest)) { // If dest is directory copy src into dest dest = path.join(dest, path.basename(source)); destExists = yield ioUtil.exists(dest); } if (destExists) { if (options.force == null || options.force) { yield rmRF(dest); } else { throw new Error('Destination already exists'); } } } yield mkdirP(path.dirname(dest)); yield ioUtil.rename(source, dest); }); } exports.mv = mv; /** * Remove a path recursively with force * * @param inputPath path to remove */ function rmRF(inputPath) { return __awaiter(this, void 0, void 0, function* () { if (ioUtil.IS_WINDOWS) { // Check for invalid characters // https://docs.microsoft.com/en-us/windows/win32/fileio/naming-a-file if (/[*"<>|]/.test(inputPath)) { throw new Error('File path must not contain `*`, `"`, `<`, `>` or `|` on Windows'); } } try { // note if path does not exist, error is silent yield ioUtil.rm(inputPath, { force: true, maxRetries: 3, recursive: true, retryDelay: 300 }); } catch (err) { throw new Error(`File was unable to be removed ${err}`); } }); } exports.rmRF = rmRF; /** * Make a directory. Creates the full path with folders in between * Will throw if it fails * * @param fsPath path to create * @returns Promise */ function mkdirP(fsPath) { return __awaiter(this, void 0, void 0, function* () { assert_1.ok(fsPath, 'a path argument must be provided'); yield ioUtil.mkdir(fsPath, { recursive: true }); }); } exports.mkdirP = mkdirP; /** * Returns path of a tool had the tool actually been invoked. Resolves via paths. * If you check and the tool does not exist, it will throw. * * @param tool name of the tool * @param check whether to check if tool exists * @returns Promise path to tool */ function which(tool, check) { return __awaiter(this, void 0, void 0, function* () { if (!tool) { throw new Error("parameter 'tool' is required"); } // recursive when check=true if (check) { const result = yield which(tool, false); if (!result) { if (ioUtil.IS_WINDOWS) { throw new Error(`Unable to locate executable file: ${tool}. Please verify either the file path exists or the file can be found within a directory specified by the PATH environment variable. Also verify the file has a valid extension for an executable file.`); } else { throw new Error(`Unable to locate executable file: ${tool}. Please verify either the file path exists or the file can be found within a directory specified by the PATH environment variable. Also check the file mode to verify the file is executable.`); } } return result; } const matches = yield findInPath(tool); if (matches && matches.length > 0) { return matches[0]; } return ''; }); } exports.which = which; /** * Returns a list of all occurrences of the given tool on the system path. * * @returns Promise the paths of the tool */ function findInPath(tool) { return __awaiter(this, void 0, void 0, function* () { if (!tool) { throw new Error("parameter 'tool' is required"); } // build the list of extensions to try const extensions = []; if (ioUtil.IS_WINDOWS && process.env['PATHEXT']) { for (const extension of process.env['PATHEXT'].split(path.delimiter)) { if (extension) { extensions.push(extension); } } } // if it's rooted, return it if exists. otherwise return empty. if (ioUtil.isRooted(tool)) { const filePath = yield ioUtil.tryGetExecutablePath(tool, extensions); if (filePath) { return [filePath]; } return []; } // if any path separators, return empty if (tool.includes(path.sep)) { return []; } // build the list of directories // // Note, technically "where" checks the current directory on Windows. From a toolkit perspective, // it feels like we should not do this. Checking the current directory seems like more of a use // case of a shell, and the which() function exposed by the toolkit should strive for consistency // across platforms. const directories = []; if (process.env.PATH) { for (const p of process.env.PATH.split(path.delimiter)) { if (p) { directories.push(p); } } } // find all matches const matches = []; for (const directory of directories) { const filePath = yield ioUtil.tryGetExecutablePath(path.join(directory, tool), extensions); if (filePath) { matches.push(filePath); } } return matches; }); } exports.findInPath = findInPath; function readCopyOptions(options) { const force = options.force == null ? true : options.force; const recursive = Boolean(options.recursive); const copySourceDirectory = options.copySourceDirectory == null ? true : Boolean(options.copySourceDirectory); return { force, recursive, copySourceDirectory }; } function cpDirRecursive(sourceDir, destDir, currentDepth, force) { return __awaiter(this, void 0, void 0, function* () { // Ensure there is not a run away recursive copy if (currentDepth >= 255) return; currentDepth++; yield mkdirP(destDir); const files = yield ioUtil.readdir(sourceDir); for (const fileName of files) { const srcFile = `${sourceDir}/${fileName}`; const destFile = `${destDir}/${fileName}`; const srcFileStat = yield ioUtil.lstat(srcFile); if (srcFileStat.isDirectory()) { // Recurse yield cpDirRecursive(srcFile, destFile, currentDepth, force); } else { yield copyFile(srcFile, destFile, force); } } // Change the mode for the newly created directory yield ioUtil.chmod(destDir, (yield ioUtil.stat(sourceDir)).mode); }); } // Buffered file copy function copyFile(srcFile, destFile, force) { return __awaiter(this, void 0, void 0, function* () { if ((yield ioUtil.lstat(srcFile)).isSymbolicLink()) { // unlink/re-link it try { yield ioUtil.lstat(destFile); yield ioUtil.unlink(destFile); } catch (e) { // Try to override file permission if (e.code === 'EPERM') { yield ioUtil.chmod(destFile, '0666'); yield ioUtil.unlink(destFile); } // other errors = it doesn't exist, no work to do } // Copy over symlink const symlinkFull = yield ioUtil.readlink(srcFile); yield ioUtil.symlink(symlinkFull, destFile, ioUtil.IS_WINDOWS ? 'junction' : null); } else if (!(yield ioUtil.exists(destFile)) || force) { yield ioUtil.copyFile(srcFile, destFile); } }); } //# sourceMappingURL=io.js.map /***/ }), /***/ 58036: /***/ (function(module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports._findMatch = _findMatch; exports._getOsVersion = _getOsVersion; exports._readLinuxVersionFile = _readLinuxVersionFile; const semver = __importStar(__nccwpck_require__(39318)); const core_1 = __nccwpck_require__(37484); // needs to be require for core node modules to be mocked /* eslint @typescript-eslint/no-require-imports: 0 */ const os = __nccwpck_require__(70857); const cp = __nccwpck_require__(35317); const fs = __nccwpck_require__(79896); function _findMatch(versionSpec, stable, candidates, archFilter) { return __awaiter(this, void 0, void 0, function* () { const platFilter = os.platform(); let result; let match; let file; for (const candidate of candidates) { const version = candidate.version; (0, core_1.debug)(`check ${version} satisfies ${versionSpec}`); if (semver.satisfies(version, versionSpec) && (!stable || candidate.stable === stable)) { file = candidate.files.find(item => { (0, core_1.debug)(`${item.arch}===${archFilter} && ${item.platform}===${platFilter}`); let chk = item.arch === archFilter && item.platform === platFilter; if (chk && item.platform_version) { const osVersion = module.exports._getOsVersion(); if (osVersion === item.platform_version) { chk = true; } else { chk = semver.satisfies(osVersion, item.platform_version); } } return chk; }); if (file) { (0, core_1.debug)(`matched ${candidate.version}`); match = candidate; break; } } } if (match && file) { // clone since we're mutating the file list to be only the file that matches result = Object.assign({}, match); result.files = [file]; } return result; }); } function _getOsVersion() { // TODO: add windows and other linux, arm variants // right now filtering on version is only an ubuntu and macos scenario for tools we build for hosted (python) const plat = os.platform(); let version = ''; if (plat === 'darwin') { version = cp.execSync('sw_vers -productVersion').toString(); } else if (plat === 'linux') { // lsb_release process not in some containers, readfile // Run cat /etc/lsb-release // DISTRIB_ID=Ubuntu // DISTRIB_RELEASE=18.04 // DISTRIB_CODENAME=bionic // DISTRIB_DESCRIPTION="Ubuntu 18.04.4 LTS" const lsbContents = module.exports._readLinuxVersionFile(); if (lsbContents) { const lines = lsbContents.split('\n'); for (const line of lines) { const parts = line.split('='); if (parts.length === 2 && (parts[0].trim() === 'VERSION_ID' || parts[0].trim() === 'DISTRIB_RELEASE')) { version = parts[1].trim().replace(/^"/, '').replace(/"$/, ''); break; } } } } return version; } function _readLinuxVersionFile() { const lsbReleaseFile = '/etc/lsb-release'; const osReleaseFile = '/etc/os-release'; let contents = ''; if (fs.existsSync(lsbReleaseFile)) { contents = fs.readFileSync(lsbReleaseFile).toString(); } else if (fs.existsSync(osReleaseFile)) { contents = fs.readFileSync(osReleaseFile).toString(); } return contents; } //# sourceMappingURL=manifest.js.map /***/ }), /***/ 67380: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.RetryHelper = void 0; const core = __importStar(__nccwpck_require__(37484)); /** * Internal class for retries */ class RetryHelper { constructor(maxAttempts, minSeconds, maxSeconds) { if (maxAttempts < 1) { throw new Error('max attempts should be greater than or equal to 1'); } this.maxAttempts = maxAttempts; this.minSeconds = Math.floor(minSeconds); this.maxSeconds = Math.floor(maxSeconds); if (this.minSeconds > this.maxSeconds) { throw new Error('min seconds should be less than or equal to max seconds'); } } execute(action, isRetryable) { return __awaiter(this, void 0, void 0, function* () { let attempt = 1; while (attempt < this.maxAttempts) { // Try try { return yield action(); } catch (err) { if (isRetryable && !isRetryable(err)) { throw err; } core.info(err.message); } // Sleep const seconds = this.getSleepAmount(); core.info(`Waiting ${seconds} seconds before trying again`); yield this.sleep(seconds); attempt++; } // Last attempt return yield action(); }); } getSleepAmount() { return (Math.floor(Math.random() * (this.maxSeconds - this.minSeconds + 1)) + this.minSeconds); } sleep(seconds) { return __awaiter(this, void 0, void 0, function* () { return new Promise(resolve => setTimeout(resolve, seconds * 1000)); }); } } exports.RetryHelper = RetryHelper; //# sourceMappingURL=retry-helper.js.map /***/ }), /***/ 33472: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.HTTPError = void 0; exports.downloadTool = downloadTool; exports.extract7z = extract7z; exports.extractTar = extractTar; exports.extractXar = extractXar; exports.extractZip = extractZip; exports.cacheDir = cacheDir; exports.cacheFile = cacheFile; exports.find = find; exports.findAllVersions = findAllVersions; exports.getManifestFromRepo = getManifestFromRepo; exports.findFromManifest = findFromManifest; exports.isExplicitVersion = isExplicitVersion; exports.evaluateVersions = evaluateVersions; const core = __importStar(__nccwpck_require__(37484)); const io = __importStar(__nccwpck_require__(67523)); const crypto = __importStar(__nccwpck_require__(76982)); const fs = __importStar(__nccwpck_require__(79896)); const mm = __importStar(__nccwpck_require__(58036)); const os = __importStar(__nccwpck_require__(70857)); const path = __importStar(__nccwpck_require__(16928)); const httpm = __importStar(__nccwpck_require__(54844)); const semver = __importStar(__nccwpck_require__(39318)); const stream = __importStar(__nccwpck_require__(2203)); const util = __importStar(__nccwpck_require__(39023)); const assert_1 = __nccwpck_require__(42613); const exec_1 = __nccwpck_require__(95236); const retry_helper_1 = __nccwpck_require__(67380); class HTTPError extends Error { constructor(httpStatusCode) { super(`Unexpected HTTP response: ${httpStatusCode}`); this.httpStatusCode = httpStatusCode; Object.setPrototypeOf(this, new.target.prototype); } } exports.HTTPError = HTTPError; const IS_WINDOWS = process.platform === 'win32'; const IS_MAC = process.platform === 'darwin'; const userAgent = 'actions/tool-cache'; /** * Download a tool from an url and stream it into a file * * @param url url of tool to download * @param dest path to download tool * @param auth authorization header * @param headers other headers * @returns path to downloaded tool */ function downloadTool(url, dest, auth, headers) { return __awaiter(this, void 0, void 0, function* () { dest = dest || path.join(_getTempDirectory(), crypto.randomUUID()); yield io.mkdirP(path.dirname(dest)); core.debug(`Downloading ${url}`); core.debug(`Destination ${dest}`); const maxAttempts = 3; const minSeconds = _getGlobal('TEST_DOWNLOAD_TOOL_RETRY_MIN_SECONDS', 10); const maxSeconds = _getGlobal('TEST_DOWNLOAD_TOOL_RETRY_MAX_SECONDS', 20); const retryHelper = new retry_helper_1.RetryHelper(maxAttempts, minSeconds, maxSeconds); return yield retryHelper.execute(() => __awaiter(this, void 0, void 0, function* () { return yield downloadToolAttempt(url, dest || '', auth, headers); }), (err) => { if (err instanceof HTTPError && err.httpStatusCode) { // Don't retry anything less than 500, except 408 Request Timeout and 429 Too Many Requests if (err.httpStatusCode < 500 && err.httpStatusCode !== 408 && err.httpStatusCode !== 429) { return false; } } // Otherwise retry return true; }); }); } function downloadToolAttempt(url, dest, auth, headers) { return __awaiter(this, void 0, void 0, function* () { if (fs.existsSync(dest)) { throw new Error(`Destination file path ${dest} already exists`); } // Get the response headers const http = new httpm.HttpClient(userAgent, [], { allowRetries: false }); if (auth) { core.debug('set auth'); if (headers === undefined) { headers = {}; } headers.authorization = auth; } const response = yield http.get(url, headers); if (response.message.statusCode !== 200) { const err = new HTTPError(response.message.statusCode); core.debug(`Failed to download from "${url}". Code(${response.message.statusCode}) Message(${response.message.statusMessage})`); throw err; } // Download the response body const pipeline = util.promisify(stream.pipeline); const responseMessageFactory = _getGlobal('TEST_DOWNLOAD_TOOL_RESPONSE_MESSAGE_FACTORY', () => response.message); const readStream = responseMessageFactory(); let succeeded = false; try { yield pipeline(readStream, fs.createWriteStream(dest)); core.debug('download complete'); succeeded = true; return dest; } finally { // Error, delete dest before retry if (!succeeded) { core.debug('download failed'); try { yield io.rmRF(dest); } catch (err) { core.debug(`Failed to delete '${dest}'. ${err.message}`); } } } }); } /** * Extract a .7z file * * @param file path to the .7z file * @param dest destination directory. Optional. * @param _7zPath path to 7zr.exe. Optional, for long path support. Most .7z archives do not have this * problem. If your .7z archive contains very long paths, you can pass the path to 7zr.exe which will * gracefully handle long paths. By default 7zdec.exe is used because it is a very small program and is * bundled with the tool lib. However it does not support long paths. 7zr.exe is the reduced command line * interface, it is smaller than the full command line interface, and it does support long paths. At the * time of this writing, it is freely available from the LZMA SDK that is available on the 7zip website. * Be sure to check the current license agreement. If 7zr.exe is bundled with your action, then the path * to 7zr.exe can be pass to this function. * @returns path to the destination directory */ function extract7z(file, dest, _7zPath) { return __awaiter(this, void 0, void 0, function* () { (0, assert_1.ok)(IS_WINDOWS, 'extract7z() not supported on current OS'); (0, assert_1.ok)(file, 'parameter "file" is required'); dest = yield _createExtractFolder(dest); const originalCwd = process.cwd(); process.chdir(dest); if (_7zPath) { try { const logLevel = core.isDebug() ? '-bb1' : '-bb0'; const args = [ 'x', // eXtract files with full paths logLevel, // -bb[0-3] : set output log level '-bd', // disable progress indicator '-sccUTF-8', // set charset for for console input/output file ]; const options = { silent: true }; yield (0, exec_1.exec)(`"${_7zPath}"`, args, options); } finally { process.chdir(originalCwd); } } else { const escapedScript = path .join(__dirname, '..', 'scripts', 'Invoke-7zdec.ps1') .replace(/'/g, "''") .replace(/"|\n|\r/g, ''); // double-up single quotes, remove double quotes and newlines const escapedFile = file.replace(/'/g, "''").replace(/"|\n|\r/g, ''); const escapedTarget = dest.replace(/'/g, "''").replace(/"|\n|\r/g, ''); const command = `& '${escapedScript}' -Source '${escapedFile}' -Target '${escapedTarget}'`; const args = [ '-NoLogo', '-Sta', '-NoProfile', '-NonInteractive', '-ExecutionPolicy', 'Unrestricted', '-Command', command ]; const options = { silent: true }; try { const powershellPath = yield io.which('powershell', true); yield (0, exec_1.exec)(`"${powershellPath}"`, args, options); } finally { process.chdir(originalCwd); } } return dest; }); } /** * Extract a compressed tar archive * * @param file path to the tar * @param dest destination directory. Optional. * @param flags flags for the tar command to use for extraction. Defaults to 'xz' (extracting gzipped tars). Optional. * @returns path to the destination directory */ function extractTar(file_1, dest_1) { return __awaiter(this, arguments, void 0, function* (file, dest, flags = 'xz') { if (!file) { throw new Error("parameter 'file' is required"); } // Create dest dest = yield _createExtractFolder(dest); // Determine whether GNU tar core.debug('Checking tar --version'); let versionOutput = ''; yield (0, exec_1.exec)('tar --version', [], { ignoreReturnCode: true, silent: true, listeners: { stdout: (data) => (versionOutput += data.toString()), stderr: (data) => (versionOutput += data.toString()) } }); core.debug(versionOutput.trim()); const isGnuTar = versionOutput.toUpperCase().includes('GNU TAR'); // Initialize args let args; if (flags instanceof Array) { args = flags; } else { args = [flags]; } if (core.isDebug() && !flags.includes('v')) { args.push('-v'); } let destArg = dest; let fileArg = file; if (IS_WINDOWS && isGnuTar) { args.push('--force-local'); destArg = dest.replace(/\\/g, '/'); // Technically only the dest needs to have `/` but for aesthetic consistency // convert slashes in the file arg too. fileArg = file.replace(/\\/g, '/'); } if (isGnuTar) { // Suppress warnings when using GNU tar to extract archives created by BSD tar args.push('--warning=no-unknown-keyword'); args.push('--overwrite'); } args.push('-C', destArg, '-f', fileArg); yield (0, exec_1.exec)(`tar`, args); return dest; }); } /** * Extract a xar compatible archive * * @param file path to the archive * @param dest destination directory. Optional. * @param flags flags for the xar. Optional. * @returns path to the destination directory */ function extractXar(file_1, dest_1) { return __awaiter(this, arguments, void 0, function* (file, dest, flags = []) { (0, assert_1.ok)(IS_MAC, 'extractXar() not supported on current OS'); (0, assert_1.ok)(file, 'parameter "file" is required'); dest = yield _createExtractFolder(dest); let args; if (flags instanceof Array) { args = flags; } else { args = [flags]; } args.push('-x', '-C', dest, '-f', file); if (core.isDebug()) { args.push('-v'); } const xarPath = yield io.which('xar', true); yield (0, exec_1.exec)(`"${xarPath}"`, _unique(args)); return dest; }); } /** * Extract a zip * * @param file path to the zip * @param dest destination directory. Optional. * @returns path to the destination directory */ function extractZip(file, dest) { return __awaiter(this, void 0, void 0, function* () { if (!file) { throw new Error("parameter 'file' is required"); } dest = yield _createExtractFolder(dest); if (IS_WINDOWS) { yield extractZipWin(file, dest); } else { yield extractZipNix(file, dest); } return dest; }); } function extractZipWin(file, dest) { return __awaiter(this, void 0, void 0, function* () { // build the powershell command const escapedFile = file.replace(/'/g, "''").replace(/"|\n|\r/g, ''); // double-up single quotes, remove double quotes and newlines const escapedDest = dest.replace(/'/g, "''").replace(/"|\n|\r/g, ''); const pwshPath = yield io.which('pwsh', false); //To match the file overwrite behavior on nix systems, we use the overwrite = true flag for ExtractToDirectory //and the -Force flag for Expand-Archive as a fallback if (pwshPath) { //attempt to use pwsh with ExtractToDirectory, if this fails attempt Expand-Archive const pwshCommand = [ `$ErrorActionPreference = 'Stop' ;`, `try { Add-Type -AssemblyName System.IO.Compression.ZipFile } catch { } ;`, `try { [System.IO.Compression.ZipFile]::ExtractToDirectory('${escapedFile}', '${escapedDest}', $true) }`, `catch { if (($_.Exception.GetType().FullName -eq 'System.Management.Automation.MethodException') -or ($_.Exception.GetType().FullName -eq 'System.Management.Automation.RuntimeException') ){ Expand-Archive -LiteralPath '${escapedFile}' -DestinationPath '${escapedDest}' -Force } else { throw $_ } } ;` ].join(' '); const args = [ '-NoLogo', '-NoProfile', '-NonInteractive', '-ExecutionPolicy', 'Unrestricted', '-Command', pwshCommand ]; core.debug(`Using pwsh at path: ${pwshPath}`); yield (0, exec_1.exec)(`"${pwshPath}"`, args); } else { const powershellCommand = [ `$ErrorActionPreference = 'Stop' ;`, `try { Add-Type -AssemblyName System.IO.Compression.FileSystem } catch { } ;`, `if ((Get-Command -Name Expand-Archive -Module Microsoft.PowerShell.Archive -ErrorAction Ignore)) { Expand-Archive -LiteralPath '${escapedFile}' -DestinationPath '${escapedDest}' -Force }`, `else {[System.IO.Compression.ZipFile]::ExtractToDirectory('${escapedFile}', '${escapedDest}', $true) }` ].join(' '); const args = [ '-NoLogo', '-Sta', '-NoProfile', '-NonInteractive', '-ExecutionPolicy', 'Unrestricted', '-Command', powershellCommand ]; const powershellPath = yield io.which('powershell', true); core.debug(`Using powershell at path: ${powershellPath}`); yield (0, exec_1.exec)(`"${powershellPath}"`, args); } }); } function extractZipNix(file, dest) { return __awaiter(this, void 0, void 0, function* () { const unzipPath = yield io.which('unzip', true); const args = [file]; if (!core.isDebug()) { args.unshift('-q'); } args.unshift('-o'); //overwrite with -o, otherwise a prompt is shown which freezes the run yield (0, exec_1.exec)(`"${unzipPath}"`, args, { cwd: dest }); }); } /** * Caches a directory and installs it into the tool cacheDir * * @param sourceDir the directory to cache into tools * @param tool tool name * @param version version of the tool. semver format * @param arch architecture of the tool. Optional. Defaults to machine architecture */ function cacheDir(sourceDir, tool, version, arch) { return __awaiter(this, void 0, void 0, function* () { version = semver.clean(version) || version; arch = arch || os.arch(); core.debug(`Caching tool ${tool} ${version} ${arch}`); core.debug(`source dir: ${sourceDir}`); if (!fs.statSync(sourceDir).isDirectory()) { throw new Error('sourceDir is not a directory'); } // Create the tool dir const destPath = yield _createToolPath(tool, version, arch); // copy each child item. do not move. move can fail on Windows // due to anti-virus software having an open handle on a file. for (const itemName of fs.readdirSync(sourceDir)) { const s = path.join(sourceDir, itemName); yield io.cp(s, destPath, { recursive: true }); } // write .complete _completeToolPath(tool, version, arch); return destPath; }); } /** * Caches a downloaded file (GUID) and installs it * into the tool cache with a given targetName * * @param sourceFile the file to cache into tools. Typically a result of downloadTool which is a guid. * @param targetFile the name of the file name in the tools directory * @param tool tool name * @param version version of the tool. semver format * @param arch architecture of the tool. Optional. Defaults to machine architecture */ function cacheFile(sourceFile, targetFile, tool, version, arch) { return __awaiter(this, void 0, void 0, function* () { version = semver.clean(version) || version; arch = arch || os.arch(); core.debug(`Caching tool ${tool} ${version} ${arch}`); core.debug(`source file: ${sourceFile}`); if (!fs.statSync(sourceFile).isFile()) { throw new Error('sourceFile is not a file'); } // create the tool dir const destFolder = yield _createToolPath(tool, version, arch); // copy instead of move. move can fail on Windows due to // anti-virus software having an open handle on a file. const destPath = path.join(destFolder, targetFile); core.debug(`destination file ${destPath}`); yield io.cp(sourceFile, destPath); // write .complete _completeToolPath(tool, version, arch); return destFolder; }); } /** * Finds the path to a tool version in the local installed tool cache * * @param toolName name of the tool * @param versionSpec version of the tool * @param arch optional arch. defaults to arch of computer */ function find(toolName, versionSpec, arch) { if (!toolName) { throw new Error('toolName parameter is required'); } if (!versionSpec) { throw new Error('versionSpec parameter is required'); } arch = arch || os.arch(); // attempt to resolve an explicit version if (!isExplicitVersion(versionSpec)) { const localVersions = findAllVersions(toolName, arch); const match = evaluateVersions(localVersions, versionSpec); versionSpec = match; } // check for the explicit version in the cache let toolPath = ''; if (versionSpec) { versionSpec = semver.clean(versionSpec) || ''; const cachePath = path.join(_getCacheDirectory(), toolName, versionSpec, arch); core.debug(`checking cache: ${cachePath}`); if (fs.existsSync(cachePath) && fs.existsSync(`${cachePath}.complete`)) { core.debug(`Found tool in cache ${toolName} ${versionSpec} ${arch}`); toolPath = cachePath; } else { core.debug('not found'); } } return toolPath; } /** * Finds the paths to all versions of a tool that are installed in the local tool cache * * @param toolName name of the tool * @param arch optional arch. defaults to arch of computer */ function findAllVersions(toolName, arch) { const versions = []; arch = arch || os.arch(); const toolPath = path.join(_getCacheDirectory(), toolName); if (fs.existsSync(toolPath)) { const children = fs.readdirSync(toolPath); for (const child of children) { if (isExplicitVersion(child)) { const fullPath = path.join(toolPath, child, arch || ''); if (fs.existsSync(fullPath) && fs.existsSync(`${fullPath}.complete`)) { versions.push(child); } } } } return versions; } function getManifestFromRepo(owner_1, repo_1, auth_1) { return __awaiter(this, arguments, void 0, function* (owner, repo, auth, branch = 'master') { let releases = []; const treeUrl = `https://api.github.com/repos/${owner}/${repo}/git/trees/${branch}`; const http = new httpm.HttpClient('tool-cache'); const headers = {}; if (auth) { core.debug('set auth'); headers.authorization = auth; } const response = yield http.getJson(treeUrl, headers); if (!response.result) { return releases; } let manifestUrl = ''; for (const item of response.result.tree) { if (item.path === 'versions-manifest.json') { manifestUrl = item.url; break; } } headers['accept'] = 'application/vnd.github.VERSION.raw'; let versionsRaw = yield (yield http.get(manifestUrl, headers)).readBody(); if (versionsRaw) { // shouldn't be needed but protects against invalid json saved with BOM versionsRaw = versionsRaw.replace(/^\uFEFF/, ''); try { releases = JSON.parse(versionsRaw); } catch (_a) { core.debug('Invalid json'); } } return releases; }); } function findFromManifest(versionSpec_1, stable_1, manifest_1) { return __awaiter(this, arguments, void 0, function* (versionSpec, stable, manifest, archFilter = os.arch()) { // wrap the internal impl const match = yield mm._findMatch(versionSpec, stable, manifest, archFilter); return match; }); } function _createExtractFolder(dest) { return __awaiter(this, void 0, void 0, function* () { if (!dest) { // create a temp dir dest = path.join(_getTempDirectory(), crypto.randomUUID()); } yield io.mkdirP(dest); return dest; }); } function _createToolPath(tool, version, arch) { return __awaiter(this, void 0, void 0, function* () { const folderPath = path.join(_getCacheDirectory(), tool, semver.clean(version) || version, arch || ''); core.debug(`destination ${folderPath}`); const markerPath = `${folderPath}.complete`; yield io.rmRF(folderPath); yield io.rmRF(markerPath); yield io.mkdirP(folderPath); return folderPath; }); } function _completeToolPath(tool, version, arch) { const folderPath = path.join(_getCacheDirectory(), tool, semver.clean(version) || version, arch || ''); const markerPath = `${folderPath}.complete`; fs.writeFileSync(markerPath, ''); core.debug('finished caching tool'); } /** * Check if version string is explicit * * @param versionSpec version string to check */ function isExplicitVersion(versionSpec) { const c = semver.clean(versionSpec) || ''; core.debug(`isExplicit: ${c}`); const valid = semver.valid(c) != null; core.debug(`explicit? ${valid}`); return valid; } /** * Get the highest satisfiying semantic version in `versions` which satisfies `versionSpec` * * @param versions array of versions to evaluate * @param versionSpec semantic version spec to satisfy */ function evaluateVersions(versions, versionSpec) { let version = ''; core.debug(`evaluating ${versions.length} versions`); versions = versions.sort((a, b) => { if (semver.gt(a, b)) { return 1; } return -1; }); for (let i = versions.length - 1; i >= 0; i--) { const potential = versions[i]; const satisfied = semver.satisfies(potential, versionSpec); if (satisfied) { version = potential; break; } } if (version) { core.debug(`matched: ${version}`); } else { core.debug('match not found'); } return version; } /** * Gets RUNNER_TOOL_CACHE */ function _getCacheDirectory() { const cacheDirectory = process.env['RUNNER_TOOL_CACHE'] || ''; (0, assert_1.ok)(cacheDirectory, 'Expected RUNNER_TOOL_CACHE to be defined'); return cacheDirectory; } /** * Gets RUNNER_TEMP */ function _getTempDirectory() { const tempDirectory = process.env['RUNNER_TEMP'] || ''; (0, assert_1.ok)(tempDirectory, 'Expected RUNNER_TEMP to be defined'); return tempDirectory; } /** * Gets a global variable */ function _getGlobal(key, defaultValue) { /* eslint-disable @typescript-eslint/no-explicit-any */ const value = global[key]; /* eslint-enable @typescript-eslint/no-explicit-any */ return value !== undefined ? value : defaultValue; } /** * Returns an array of unique values. * @param values Values to make unique. */ function _unique(values) { return Array.from(new Set(values)); } //# sourceMappingURL=tool-cache.js.map /***/ }), /***/ 55996: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; var _a; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.READONLY = exports.UV_FS_O_EXLOCK = exports.IS_WINDOWS = exports.unlink = exports.symlink = exports.stat = exports.rmdir = exports.rm = exports.rename = exports.readdir = exports.open = exports.mkdir = exports.lstat = exports.copyFile = exports.chmod = void 0; exports.readlink = readlink; exports.exists = exists; exports.isDirectory = isDirectory; exports.isRooted = isRooted; exports.tryGetExecutablePath = tryGetExecutablePath; exports.getCmdPath = getCmdPath; const fs = __importStar(__nccwpck_require__(79896)); const path = __importStar(__nccwpck_require__(16928)); _a = fs.promises // export const {open} = 'fs' , exports.chmod = _a.chmod, exports.copyFile = _a.copyFile, exports.lstat = _a.lstat, exports.mkdir = _a.mkdir, exports.open = _a.open, exports.readdir = _a.readdir, exports.rename = _a.rename, exports.rm = _a.rm, exports.rmdir = _a.rmdir, exports.stat = _a.stat, exports.symlink = _a.symlink, exports.unlink = _a.unlink; // export const {open} = 'fs' exports.IS_WINDOWS = process.platform === 'win32'; /** * Custom implementation of readlink to ensure Windows junctions * maintain trailing backslash for backward compatibility with Node.js < 24 * * In Node.js 20, Windows junctions (directory symlinks) always returned paths * with trailing backslashes. Node.js 24 removed this behavior, which breaks * code that relied on this format for path operations. * * This implementation restores the Node 20 behavior by adding a trailing * backslash to all junction results on Windows. */ function readlink(fsPath) { return __awaiter(this, void 0, void 0, function* () { const result = yield fs.promises.readlink(fsPath); // On Windows, restore Node 20 behavior: add trailing backslash to all results // since junctions on Windows are always directory links if (exports.IS_WINDOWS && !result.endsWith('\\')) { return `${result}\\`; } return result; }); } // See https://github.com/nodejs/node/blob/d0153aee367422d0858105abec186da4dff0a0c5/deps/uv/include/uv/win.h#L691 exports.UV_FS_O_EXLOCK = 0x10000000; exports.READONLY = fs.constants.O_RDONLY; function exists(fsPath) { return __awaiter(this, void 0, void 0, function* () { try { yield (0, exports.stat)(fsPath); } catch (err) { if (err.code === 'ENOENT') { return false; } throw err; } return true; }); } function isDirectory(fsPath_1) { return __awaiter(this, arguments, void 0, function* (fsPath, useStat = false) { const stats = useStat ? yield (0, exports.stat)(fsPath) : yield (0, exports.lstat)(fsPath); return stats.isDirectory(); }); } /** * On OSX/Linux, true if path starts with '/'. On Windows, true for paths like: * \, \hello, \\hello\share, C:, and C:\hello (and corresponding alternate separator cases). */ function isRooted(p) { p = normalizeSeparators(p); if (!p) { throw new Error('isRooted() parameter "p" cannot be empty'); } if (exports.IS_WINDOWS) { return (p.startsWith('\\') || /^[A-Z]:/i.test(p) // e.g. \ or \hello or \\hello ); // e.g. C: or C:\hello } return p.startsWith('/'); } /** * Best effort attempt to determine whether a file exists and is executable. * @param filePath file path to check * @param extensions additional file extensions to try * @return if file exists and is executable, returns the file path. otherwise empty string. */ function tryGetExecutablePath(filePath, extensions) { return __awaiter(this, void 0, void 0, function* () { let stats = undefined; try { // test file exists stats = yield (0, exports.stat)(filePath); } catch (err) { if (err.code !== 'ENOENT') { // eslint-disable-next-line no-console console.log(`Unexpected error attempting to determine if executable file exists '${filePath}': ${err}`); } } if (stats && stats.isFile()) { if (exports.IS_WINDOWS) { // on Windows, test for valid extension const upperExt = path.extname(filePath).toUpperCase(); if (extensions.some(validExt => validExt.toUpperCase() === upperExt)) { return filePath; } } else { if (isUnixExecutable(stats)) { return filePath; } } } // try each extension const originalFilePath = filePath; for (const extension of extensions) { filePath = originalFilePath + extension; stats = undefined; try { stats = yield (0, exports.stat)(filePath); } catch (err) { if (err.code !== 'ENOENT') { // eslint-disable-next-line no-console console.log(`Unexpected error attempting to determine if executable file exists '${filePath}': ${err}`); } } if (stats && stats.isFile()) { if (exports.IS_WINDOWS) { // preserve the case of the actual file (since an extension was appended) try { const directory = path.dirname(filePath); const upperName = path.basename(filePath).toUpperCase(); for (const actualName of yield (0, exports.readdir)(directory)) { if (upperName === actualName.toUpperCase()) { filePath = path.join(directory, actualName); break; } } } catch (err) { // eslint-disable-next-line no-console console.log(`Unexpected error attempting to determine the actual case of the file '${filePath}': ${err}`); } return filePath; } else { if (isUnixExecutable(stats)) { return filePath; } } } } return ''; }); } function normalizeSeparators(p) { p = p || ''; if (exports.IS_WINDOWS) { // convert slashes on Windows p = p.replace(/\//g, '\\'); // remove redundant slashes return p.replace(/\\\\+/g, '\\'); } // remove redundant slashes return p.replace(/\/\/+/g, '/'); } // on Mac/Linux, test the execute bit // R W X R W X R W X // 256 128 64 32 16 8 4 2 1 function isUnixExecutable(stats) { return ((stats.mode & 1) > 0 || ((stats.mode & 8) > 0 && process.getgid !== undefined && stats.gid === process.getgid()) || ((stats.mode & 64) > 0 && process.getuid !== undefined && stats.uid === process.getuid())); } // Get the path of cmd.exe in windows function getCmdPath() { var _a; return (_a = process.env['COMSPEC']) !== null && _a !== void 0 ? _a : `cmd.exe`; } //# sourceMappingURL=io-util.js.map /***/ }), /***/ 67523: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.cp = cp; exports.mv = mv; exports.rmRF = rmRF; exports.mkdirP = mkdirP; exports.which = which; exports.findInPath = findInPath; const assert_1 = __nccwpck_require__(42613); const path = __importStar(__nccwpck_require__(16928)); const ioUtil = __importStar(__nccwpck_require__(55996)); /** * Copies a file or folder. * Based off of shelljs - https://github.com/shelljs/shelljs/blob/9237f66c52e5daa40458f94f9565e18e8132f5a6/src/cp.js * * @param source source path * @param dest destination path * @param options optional. See CopyOptions. */ function cp(source_1, dest_1) { return __awaiter(this, arguments, void 0, function* (source, dest, options = {}) { const { force, recursive, copySourceDirectory } = readCopyOptions(options); const destStat = (yield ioUtil.exists(dest)) ? yield ioUtil.stat(dest) : null; // Dest is an existing file, but not forcing if (destStat && destStat.isFile() && !force) { return; } // If dest is an existing directory, should copy inside. const newDest = destStat && destStat.isDirectory() && copySourceDirectory ? path.join(dest, path.basename(source)) : dest; if (!(yield ioUtil.exists(source))) { throw new Error(`no such file or directory: ${source}`); } const sourceStat = yield ioUtil.stat(source); if (sourceStat.isDirectory()) { if (!recursive) { throw new Error(`Failed to copy. ${source} is a directory, but tried to copy without recursive flag.`); } else { yield cpDirRecursive(source, newDest, 0, force); } } else { if (path.relative(source, newDest) === '') { // a file cannot be copied to itself throw new Error(`'${newDest}' and '${source}' are the same file`); } yield copyFile(source, newDest, force); } }); } /** * Moves a path. * * @param source source path * @param dest destination path * @param options optional. See MoveOptions. */ function mv(source_1, dest_1) { return __awaiter(this, arguments, void 0, function* (source, dest, options = {}) { if (yield ioUtil.exists(dest)) { let destExists = true; if (yield ioUtil.isDirectory(dest)) { // If dest is directory copy src into dest dest = path.join(dest, path.basename(source)); destExists = yield ioUtil.exists(dest); } if (destExists) { if (options.force == null || options.force) { yield rmRF(dest); } else { throw new Error('Destination already exists'); } } } yield mkdirP(path.dirname(dest)); yield ioUtil.rename(source, dest); }); } /** * Remove a path recursively with force * * @param inputPath path to remove */ function rmRF(inputPath) { return __awaiter(this, void 0, void 0, function* () { if (ioUtil.IS_WINDOWS) { // Check for invalid characters // https://docs.microsoft.com/en-us/windows/win32/fileio/naming-a-file if (/[*"<>|]/.test(inputPath)) { throw new Error('File path must not contain `*`, `"`, `<`, `>` or `|` on Windows'); } } try { // note if path does not exist, error is silent yield ioUtil.rm(inputPath, { force: true, maxRetries: 3, recursive: true, retryDelay: 300 }); } catch (err) { throw new Error(`File was unable to be removed ${err}`); } }); } /** * Make a directory. Creates the full path with folders in between * Will throw if it fails * * @param fsPath path to create * @returns Promise */ function mkdirP(fsPath) { return __awaiter(this, void 0, void 0, function* () { (0, assert_1.ok)(fsPath, 'a path argument must be provided'); yield ioUtil.mkdir(fsPath, { recursive: true }); }); } /** * Returns path of a tool had the tool actually been invoked. Resolves via paths. * If you check and the tool does not exist, it will throw. * * @param tool name of the tool * @param check whether to check if tool exists * @returns Promise path to tool */ function which(tool, check) { return __awaiter(this, void 0, void 0, function* () { if (!tool) { throw new Error("parameter 'tool' is required"); } // recursive when check=true if (check) { const result = yield which(tool, false); if (!result) { if (ioUtil.IS_WINDOWS) { throw new Error(`Unable to locate executable file: ${tool}. Please verify either the file path exists or the file can be found within a directory specified by the PATH environment variable. Also verify the file has a valid extension for an executable file.`); } else { throw new Error(`Unable to locate executable file: ${tool}. Please verify either the file path exists or the file can be found within a directory specified by the PATH environment variable. Also check the file mode to verify the file is executable.`); } } return result; } const matches = yield findInPath(tool); if (matches && matches.length > 0) { return matches[0]; } return ''; }); } /** * Returns a list of all occurrences of the given tool on the system path. * * @returns Promise the paths of the tool */ function findInPath(tool) { return __awaiter(this, void 0, void 0, function* () { if (!tool) { throw new Error("parameter 'tool' is required"); } // build the list of extensions to try const extensions = []; if (ioUtil.IS_WINDOWS && process.env['PATHEXT']) { for (const extension of process.env['PATHEXT'].split(path.delimiter)) { if (extension) { extensions.push(extension); } } } // if it's rooted, return it if exists. otherwise return empty. if (ioUtil.isRooted(tool)) { const filePath = yield ioUtil.tryGetExecutablePath(tool, extensions); if (filePath) { return [filePath]; } return []; } // if any path separators, return empty if (tool.includes(path.sep)) { return []; } // build the list of directories // // Note, technically "where" checks the current directory on Windows. From a toolkit perspective, // it feels like we should not do this. Checking the current directory seems like more of a use // case of a shell, and the which() function exposed by the toolkit should strive for consistency // across platforms. const directories = []; if (process.env.PATH) { for (const p of process.env.PATH.split(path.delimiter)) { if (p) { directories.push(p); } } } // find all matches const matches = []; for (const directory of directories) { const filePath = yield ioUtil.tryGetExecutablePath(path.join(directory, tool), extensions); if (filePath) { matches.push(filePath); } } return matches; }); } function readCopyOptions(options) { const force = options.force == null ? true : options.force; const recursive = Boolean(options.recursive); const copySourceDirectory = options.copySourceDirectory == null ? true : Boolean(options.copySourceDirectory); return { force, recursive, copySourceDirectory }; } function cpDirRecursive(sourceDir, destDir, currentDepth, force) { return __awaiter(this, void 0, void 0, function* () { // Ensure there is not a run away recursive copy if (currentDepth >= 255) return; currentDepth++; yield mkdirP(destDir); const files = yield ioUtil.readdir(sourceDir); for (const fileName of files) { const srcFile = `${sourceDir}/${fileName}`; const destFile = `${destDir}/${fileName}`; const srcFileStat = yield ioUtil.lstat(srcFile); if (srcFileStat.isDirectory()) { // Recurse yield cpDirRecursive(srcFile, destFile, currentDepth, force); } else { yield copyFile(srcFile, destFile, force); } } // Change the mode for the newly created directory yield ioUtil.chmod(destDir, (yield ioUtil.stat(sourceDir)).mode); }); } // Buffered file copy function copyFile(srcFile, destFile, force) { return __awaiter(this, void 0, void 0, function* () { if ((yield ioUtil.lstat(srcFile)).isSymbolicLink()) { // unlink/re-link it try { yield ioUtil.lstat(destFile); yield ioUtil.unlink(destFile); } catch (e) { // Try to override file permission if (e.code === 'EPERM') { yield ioUtil.chmod(destFile, '0666'); yield ioUtil.unlink(destFile); } // other errors = it doesn't exist, no work to do } // Copy over symlink const symlinkFull = yield ioUtil.readlink(srcFile); yield ioUtil.symlink(symlinkFull, destFile, ioUtil.IS_WINDOWS ? 'junction' : null); } else if (!(yield ioUtil.exists(destFile)) || force) { yield ioUtil.copyFile(srcFile, destFile); } }); } //# sourceMappingURL=io.js.map /***/ }), /***/ 68110: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); // Copyright (c) Microsoft Corporation. // Licensed under the MIT license. /// const listenersMap = new WeakMap(); const abortedMap = new WeakMap(); /** * An aborter instance implements AbortSignal interface, can abort HTTP requests. * * - Call AbortSignal.none to create a new AbortSignal instance that cannot be cancelled. * Use `AbortSignal.none` when you are required to pass a cancellation token but the operation * cannot or will not ever be cancelled. * * @example * Abort without timeout * ```ts * await doAsyncWork(AbortSignal.none); * ``` */ class AbortSignal { constructor() { /** * onabort event listener. */ this.onabort = null; listenersMap.set(this, []); abortedMap.set(this, false); } /** * Status of whether aborted or not. * * @readonly */ get aborted() { if (!abortedMap.has(this)) { throw new TypeError("Expected `this` to be an instance of AbortSignal."); } return abortedMap.get(this); } /** * Creates a new AbortSignal instance that will never be aborted. * * @readonly */ static get none() { return new AbortSignal(); } /** * Added new "abort" event listener, only support "abort" event. * * @param _type - Only support "abort" event * @param listener - The listener to be added */ addEventListener( // tslint:disable-next-line:variable-name _type, listener) { if (!listenersMap.has(this)) { throw new TypeError("Expected `this` to be an instance of AbortSignal."); } const listeners = listenersMap.get(this); listeners.push(listener); } /** * Remove "abort" event listener, only support "abort" event. * * @param _type - Only support "abort" event * @param listener - The listener to be removed */ removeEventListener( // tslint:disable-next-line:variable-name _type, listener) { if (!listenersMap.has(this)) { throw new TypeError("Expected `this` to be an instance of AbortSignal."); } const listeners = listenersMap.get(this); const index = listeners.indexOf(listener); if (index > -1) { listeners.splice(index, 1); } } /** * Dispatches a synthetic event to the AbortSignal. */ dispatchEvent(_event) { throw new Error("This is a stub dispatchEvent implementation that should not be used. It only exists for type-checking purposes."); } } /** * Helper to trigger an abort event immediately, the onabort and all abort event listeners will be triggered. * Will try to trigger abort event for all linked AbortSignal nodes. * * - If there is a timeout, the timer will be cancelled. * - If aborted is true, nothing will happen. * * @internal */ // eslint-disable-next-line @azure/azure-sdk/ts-use-interface-parameters function abortSignal(signal) { if (signal.aborted) { return; } if (signal.onabort) { signal.onabort.call(signal); } const listeners = listenersMap.get(signal); if (listeners) { // Create a copy of listeners so mutations to the array // (e.g. via removeListener calls) don't affect the listeners // we invoke. listeners.slice().forEach((listener) => { listener.call(signal, { type: "abort" }); }); } abortedMap.set(signal, true); } // Copyright (c) Microsoft Corporation. /** * This error is thrown when an asynchronous operation has been aborted. * Check for this error by testing the `name` that the name property of the * error matches `"AbortError"`. * * @example * ```ts * const controller = new AbortController(); * controller.abort(); * try { * doAsyncWork(controller.signal) * } catch (e) { * if (e.name === 'AbortError') { * // handle abort error here. * } * } * ``` */ class AbortError extends Error { constructor(message) { super(message); this.name = "AbortError"; } } /** * An AbortController provides an AbortSignal and the associated controls to signal * that an asynchronous operation should be aborted. * * @example * Abort an operation when another event fires * ```ts * const controller = new AbortController(); * const signal = controller.signal; * doAsyncWork(signal); * button.addEventListener('click', () => controller.abort()); * ``` * * @example * Share aborter cross multiple operations in 30s * ```ts * // Upload the same data to 2 different data centers at the same time, * // abort another when any of them is finished * const controller = AbortController.withTimeout(30 * 1000); * doAsyncWork(controller.signal).then(controller.abort); * doAsyncWork(controller.signal).then(controller.abort); *``` * * @example * Cascaded aborting * ```ts * // All operations can't take more than 30 seconds * const aborter = Aborter.timeout(30 * 1000); * * // Following 2 operations can't take more than 25 seconds * await doAsyncWork(aborter.withTimeout(25 * 1000)); * await doAsyncWork(aborter.withTimeout(25 * 1000)); * ``` */ class AbortController { // eslint-disable-next-line @typescript-eslint/explicit-module-boundary-types constructor(parentSignals) { this._signal = new AbortSignal(); if (!parentSignals) { return; } // coerce parentSignals into an array if (!Array.isArray(parentSignals)) { // eslint-disable-next-line prefer-rest-params parentSignals = arguments; } for (const parentSignal of parentSignals) { // if the parent signal has already had abort() called, // then call abort on this signal as well. if (parentSignal.aborted) { this.abort(); } else { // when the parent signal aborts, this signal should as well. parentSignal.addEventListener("abort", () => { this.abort(); }); } } } /** * The AbortSignal associated with this controller that will signal aborted * when the abort method is called on this controller. * * @readonly */ get signal() { return this._signal; } /** * Signal that any operations passed this controller's associated abort signal * to cancel any remaining work and throw an `AbortError`. */ abort() { abortSignal(this._signal); } /** * Creates a new AbortSignal instance that will abort after the provided ms. * @param ms - Elapsed time in milliseconds to trigger an abort. */ static timeout(ms) { const signal = new AbortSignal(); const timer = setTimeout(abortSignal, ms, signal); // Prevent the active Timer from keeping the Node.js event loop active. if (typeof timer.unref === "function") { timer.unref(); } return signal; } } exports.AbortController = AbortController; exports.AbortError = AbortError; exports.AbortSignal = AbortSignal; //# sourceMappingURL=index.js.map /***/ }), /***/ 77864: /***/ ((module) => { "use strict"; var __defProp = Object.defineProperty; var __getOwnPropDesc = Object.getOwnPropertyDescriptor; var __getOwnPropNames = Object.getOwnPropertyNames; var __hasOwnProp = Object.prototype.hasOwnProperty; var __export = (target, all) => { for (var name in all) __defProp(target, name, { get: all[name], enumerable: true }); }; var __copyProps = (to, from, except, desc) => { if (from && typeof from === "object" || typeof from === "function") { for (let key of __getOwnPropNames(from)) if (!__hasOwnProp.call(to, key) && key !== except) __defProp(to, key, { get: () => from[key], enumerable: !(desc = __getOwnPropDesc(from, key)) || desc.enumerable }); } return to; }; var __toCommonJS = (mod) => __copyProps(__defProp({}, "__esModule", { value: true }), mod); // pkg/dist-src/index.js var dist_src_exports = {}; __export(dist_src_exports, { createTokenAuth: () => createTokenAuth }); module.exports = __toCommonJS(dist_src_exports); // pkg/dist-src/auth.js var REGEX_IS_INSTALLATION_LEGACY = /^v1\./; var REGEX_IS_INSTALLATION = /^ghs_/; var REGEX_IS_USER_TO_SERVER = /^ghu_/; async function auth(token) { const isApp = token.split(/\./).length === 3; const isInstallation = REGEX_IS_INSTALLATION_LEGACY.test(token) || REGEX_IS_INSTALLATION.test(token); const isUserToServer = REGEX_IS_USER_TO_SERVER.test(token); const tokenType = isApp ? "app" : isInstallation ? "installation" : isUserToServer ? "user-to-server" : "oauth"; return { type: "token", token, tokenType }; } // pkg/dist-src/with-authorization-prefix.js function withAuthorizationPrefix(token) { if (token.split(/\./).length === 3) { return `bearer ${token}`; } return `token ${token}`; } // pkg/dist-src/hook.js async function hook(token, request, route, parameters) { const endpoint = request.endpoint.merge( route, parameters ); endpoint.headers.authorization = withAuthorizationPrefix(token); return request(endpoint); } // pkg/dist-src/index.js var createTokenAuth = function createTokenAuth2(token) { if (!token) { throw new Error("[@octokit/auth-token] No token passed to createTokenAuth"); } if (typeof token !== "string") { throw new Error( "[@octokit/auth-token] Token passed to createTokenAuth is not a string" ); } token = token.replace(/^(token|bearer) +/i, ""); return Object.assign(auth.bind(null, token), { hook: hook.bind(null, token) }); }; // Annotate the CommonJS export names for ESM import in node: 0 && (0); /***/ }), /***/ 61897: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; var __defProp = Object.defineProperty; var __getOwnPropDesc = Object.getOwnPropertyDescriptor; var __getOwnPropNames = Object.getOwnPropertyNames; var __hasOwnProp = Object.prototype.hasOwnProperty; var __export = (target, all) => { for (var name in all) __defProp(target, name, { get: all[name], enumerable: true }); }; var __copyProps = (to, from, except, desc) => { if (from && typeof from === "object" || typeof from === "function") { for (let key of __getOwnPropNames(from)) if (!__hasOwnProp.call(to, key) && key !== except) __defProp(to, key, { get: () => from[key], enumerable: !(desc = __getOwnPropDesc(from, key)) || desc.enumerable }); } return to; }; var __toCommonJS = (mod) => __copyProps(__defProp({}, "__esModule", { value: true }), mod); // pkg/dist-src/index.js var dist_src_exports = {}; __export(dist_src_exports, { Octokit: () => Octokit }); module.exports = __toCommonJS(dist_src_exports); var import_universal_user_agent = __nccwpck_require__(33843); var import_before_after_hook = __nccwpck_require__(52732); var import_request = __nccwpck_require__(66255); var import_graphql = __nccwpck_require__(70007); var import_auth_token = __nccwpck_require__(77864); // pkg/dist-src/version.js var VERSION = "5.2.0"; // pkg/dist-src/index.js var noop = () => { }; var consoleWarn = console.warn.bind(console); var consoleError = console.error.bind(console); var userAgentTrail = `octokit-core.js/${VERSION} ${(0, import_universal_user_agent.getUserAgent)()}`; var Octokit = class { static { this.VERSION = VERSION; } static defaults(defaults) { const OctokitWithDefaults = class extends this { constructor(...args) { const options = args[0] || {}; if (typeof defaults === "function") { super(defaults(options)); return; } super( Object.assign( {}, defaults, options, options.userAgent && defaults.userAgent ? { userAgent: `${options.userAgent} ${defaults.userAgent}` } : null ) ); } }; return OctokitWithDefaults; } static { this.plugins = []; } /** * Attach a plugin (or many) to your Octokit instance. * * @example * const API = Octokit.plugin(plugin1, plugin2, plugin3, ...) */ static plugin(...newPlugins) { const currentPlugins = this.plugins; const NewOctokit = class extends this { static { this.plugins = currentPlugins.concat( newPlugins.filter((plugin) => !currentPlugins.includes(plugin)) ); } }; return NewOctokit; } constructor(options = {}) { const hook = new import_before_after_hook.Collection(); const requestDefaults = { baseUrl: import_request.request.endpoint.DEFAULTS.baseUrl, headers: {}, request: Object.assign({}, options.request, { // @ts-ignore internal usage only, no need to type hook: hook.bind(null, "request") }), mediaType: { previews: [], format: "" } }; requestDefaults.headers["user-agent"] = options.userAgent ? `${options.userAgent} ${userAgentTrail}` : userAgentTrail; if (options.baseUrl) { requestDefaults.baseUrl = options.baseUrl; } if (options.previews) { requestDefaults.mediaType.previews = options.previews; } if (options.timeZone) { requestDefaults.headers["time-zone"] = options.timeZone; } this.request = import_request.request.defaults(requestDefaults); this.graphql = (0, import_graphql.withCustomRequest)(this.request).defaults(requestDefaults); this.log = Object.assign( { debug: noop, info: noop, warn: consoleWarn, error: consoleError }, options.log ); this.hook = hook; if (!options.authStrategy) { if (!options.auth) { this.auth = async () => ({ type: "unauthenticated" }); } else { const auth = (0, import_auth_token.createTokenAuth)(options.auth); hook.wrap("request", auth.hook); this.auth = auth; } } else { const { authStrategy, ...otherOptions } = options; const auth = authStrategy( Object.assign( { request: this.request, log: this.log, // we pass the current octokit instance as well as its constructor options // to allow for authentication strategies that return a new octokit instance // that shares the same internal state as the current one. The original // requirement for this was the "event-octokit" authentication strategy // of https://github.com/probot/octokit-auth-probot. octokit: this, octokitOptions: otherOptions }, options.auth ) ); hook.wrap("request", auth.hook); this.auth = auth; } const classConstructor = this.constructor; for (let i = 0; i < classConstructor.plugins.length; ++i) { Object.assign(this, classConstructor.plugins[i](this, options)); } } }; // Annotate the CommonJS export names for ESM import in node: 0 && (0); /***/ }), /***/ 54471: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; var __defProp = Object.defineProperty; var __getOwnPropDesc = Object.getOwnPropertyDescriptor; var __getOwnPropNames = Object.getOwnPropertyNames; var __hasOwnProp = Object.prototype.hasOwnProperty; var __export = (target, all) => { for (var name in all) __defProp(target, name, { get: all[name], enumerable: true }); }; var __copyProps = (to, from, except, desc) => { if (from && typeof from === "object" || typeof from === "function") { for (let key of __getOwnPropNames(from)) if (!__hasOwnProp.call(to, key) && key !== except) __defProp(to, key, { get: () => from[key], enumerable: !(desc = __getOwnPropDesc(from, key)) || desc.enumerable }); } return to; }; var __toCommonJS = (mod) => __copyProps(__defProp({}, "__esModule", { value: true }), mod); // pkg/dist-src/index.js var dist_src_exports = {}; __export(dist_src_exports, { endpoint: () => endpoint }); module.exports = __toCommonJS(dist_src_exports); // pkg/dist-src/defaults.js var import_universal_user_agent = __nccwpck_require__(33843); // pkg/dist-src/version.js var VERSION = "9.0.6"; // pkg/dist-src/defaults.js var userAgent = `octokit-endpoint.js/${VERSION} ${(0, import_universal_user_agent.getUserAgent)()}`; var DEFAULTS = { method: "GET", baseUrl: "https://api.github.com", headers: { accept: "application/vnd.github.v3+json", "user-agent": userAgent }, mediaType: { format: "" } }; // pkg/dist-src/util/lowercase-keys.js function lowercaseKeys(object) { if (!object) { return {}; } return Object.keys(object).reduce((newObj, key) => { newObj[key.toLowerCase()] = object[key]; return newObj; }, {}); } // pkg/dist-src/util/is-plain-object.js function isPlainObject(value) { if (typeof value !== "object" || value === null) return false; if (Object.prototype.toString.call(value) !== "[object Object]") return false; const proto = Object.getPrototypeOf(value); if (proto === null) return true; const Ctor = Object.prototype.hasOwnProperty.call(proto, "constructor") && proto.constructor; return typeof Ctor === "function" && Ctor instanceof Ctor && Function.prototype.call(Ctor) === Function.prototype.call(value); } // pkg/dist-src/util/merge-deep.js function mergeDeep(defaults, options) { const result = Object.assign({}, defaults); Object.keys(options).forEach((key) => { if (isPlainObject(options[key])) { if (!(key in defaults)) Object.assign(result, { [key]: options[key] }); else result[key] = mergeDeep(defaults[key], options[key]); } else { Object.assign(result, { [key]: options[key] }); } }); return result; } // pkg/dist-src/util/remove-undefined-properties.js function removeUndefinedProperties(obj) { for (const key in obj) { if (obj[key] === void 0) { delete obj[key]; } } return obj; } // pkg/dist-src/merge.js function merge(defaults, route, options) { if (typeof route === "string") { let [method, url] = route.split(" "); options = Object.assign(url ? { method, url } : { url: method }, options); } else { options = Object.assign({}, route); } options.headers = lowercaseKeys(options.headers); removeUndefinedProperties(options); removeUndefinedProperties(options.headers); const mergedOptions = mergeDeep(defaults || {}, options); if (options.url === "/graphql") { if (defaults && defaults.mediaType.previews?.length) { mergedOptions.mediaType.previews = defaults.mediaType.previews.filter( (preview) => !mergedOptions.mediaType.previews.includes(preview) ).concat(mergedOptions.mediaType.previews); } mergedOptions.mediaType.previews = (mergedOptions.mediaType.previews || []).map((preview) => preview.replace(/-preview/, "")); } return mergedOptions; } // pkg/dist-src/util/add-query-parameters.js function addQueryParameters(url, parameters) { const separator = /\?/.test(url) ? "&" : "?"; const names = Object.keys(parameters); if (names.length === 0) { return url; } return url + separator + names.map((name) => { if (name === "q") { return "q=" + parameters.q.split("+").map(encodeURIComponent).join("+"); } return `${name}=${encodeURIComponent(parameters[name])}`; }).join("&"); } // pkg/dist-src/util/extract-url-variable-names.js var urlVariableRegex = /\{[^{}}]+\}/g; function removeNonChars(variableName) { return variableName.replace(/(?:^\W+)|(?:(? a.concat(b), []); } // pkg/dist-src/util/omit.js function omit(object, keysToOmit) { const result = { __proto__: null }; for (const key of Object.keys(object)) { if (keysToOmit.indexOf(key) === -1) { result[key] = object[key]; } } return result; } // pkg/dist-src/util/url-template.js function encodeReserved(str) { return str.split(/(%[0-9A-Fa-f]{2})/g).map(function(part) { if (!/%[0-9A-Fa-f]/.test(part)) { part = encodeURI(part).replace(/%5B/g, "[").replace(/%5D/g, "]"); } return part; }).join(""); } function encodeUnreserved(str) { return encodeURIComponent(str).replace(/[!'()*]/g, function(c) { return "%" + c.charCodeAt(0).toString(16).toUpperCase(); }); } function encodeValue(operator, value, key) { value = operator === "+" || operator === "#" ? encodeReserved(value) : encodeUnreserved(value); if (key) { return encodeUnreserved(key) + "=" + value; } else { return value; } } function isDefined(value) { return value !== void 0 && value !== null; } function isKeyOperator(operator) { return operator === ";" || operator === "&" || operator === "?"; } function getValues(context, operator, key, modifier) { var value = context[key], result = []; if (isDefined(value) && value !== "") { if (typeof value === "string" || typeof value === "number" || typeof value === "boolean") { value = value.toString(); if (modifier && modifier !== "*") { value = value.substring(0, parseInt(modifier, 10)); } result.push( encodeValue(operator, value, isKeyOperator(operator) ? key : "") ); } else { if (modifier === "*") { if (Array.isArray(value)) { value.filter(isDefined).forEach(function(value2) { result.push( encodeValue(operator, value2, isKeyOperator(operator) ? key : "") ); }); } else { Object.keys(value).forEach(function(k) { if (isDefined(value[k])) { result.push(encodeValue(operator, value[k], k)); } }); } } else { const tmp = []; if (Array.isArray(value)) { value.filter(isDefined).forEach(function(value2) { tmp.push(encodeValue(operator, value2)); }); } else { Object.keys(value).forEach(function(k) { if (isDefined(value[k])) { tmp.push(encodeUnreserved(k)); tmp.push(encodeValue(operator, value[k].toString())); } }); } if (isKeyOperator(operator)) { result.push(encodeUnreserved(key) + "=" + tmp.join(",")); } else if (tmp.length !== 0) { result.push(tmp.join(",")); } } } } else { if (operator === ";") { if (isDefined(value)) { result.push(encodeUnreserved(key)); } } else if (value === "" && (operator === "&" || operator === "?")) { result.push(encodeUnreserved(key) + "="); } else if (value === "") { result.push(""); } } return result; } function parseUrl(template) { return { expand: expand.bind(null, template) }; } function expand(template, context) { var operators = ["+", "#", ".", "/", ";", "?", "&"]; template = template.replace( /\{([^\{\}]+)\}|([^\{\}]+)/g, function(_, expression, literal) { if (expression) { let operator = ""; const values = []; if (operators.indexOf(expression.charAt(0)) !== -1) { operator = expression.charAt(0); expression = expression.substr(1); } expression.split(/,/g).forEach(function(variable) { var tmp = /([^:\*]*)(?::(\d+)|(\*))?/.exec(variable); values.push(getValues(context, operator, tmp[1], tmp[2] || tmp[3])); }); if (operator && operator !== "+") { var separator = ","; if (operator === "?") { separator = "&"; } else if (operator !== "#") { separator = operator; } return (values.length !== 0 ? operator : "") + values.join(separator); } else { return values.join(","); } } else { return encodeReserved(literal); } } ); if (template === "/") { return template; } else { return template.replace(/\/$/, ""); } } // pkg/dist-src/parse.js function parse(options) { let method = options.method.toUpperCase(); let url = (options.url || "/").replace(/:([a-z]\w+)/g, "{$1}"); let headers = Object.assign({}, options.headers); let body; let parameters = omit(options, [ "method", "baseUrl", "url", "headers", "request", "mediaType" ]); const urlVariableNames = extractUrlVariableNames(url); url = parseUrl(url).expand(parameters); if (!/^http/.test(url)) { url = options.baseUrl + url; } const omittedParameters = Object.keys(options).filter((option) => urlVariableNames.includes(option)).concat("baseUrl"); const remainingParameters = omit(parameters, omittedParameters); const isBinaryRequest = /application\/octet-stream/i.test(headers.accept); if (!isBinaryRequest) { if (options.mediaType.format) { headers.accept = headers.accept.split(/,/).map( (format) => format.replace( /application\/vnd(\.\w+)(\.v3)?(\.\w+)?(\+json)?$/, `application/vnd$1$2.${options.mediaType.format}` ) ).join(","); } if (url.endsWith("/graphql")) { if (options.mediaType.previews?.length) { const previewsFromAcceptHeader = headers.accept.match(/(? { const format = options.mediaType.format ? `.${options.mediaType.format}` : "+json"; return `application/vnd.github.${preview}-preview${format}`; }).join(","); } } } if (["GET", "HEAD"].includes(method)) { url = addQueryParameters(url, remainingParameters); } else { if ("data" in remainingParameters) { body = remainingParameters.data; } else { if (Object.keys(remainingParameters).length) { body = remainingParameters; } } } if (!headers["content-type"] && typeof body !== "undefined") { headers["content-type"] = "application/json; charset=utf-8"; } if (["PATCH", "PUT"].includes(method) && typeof body === "undefined") { body = ""; } return Object.assign( { method, url, headers }, typeof body !== "undefined" ? { body } : null, options.request ? { request: options.request } : null ); } // pkg/dist-src/endpoint-with-defaults.js function endpointWithDefaults(defaults, route, options) { return parse(merge(defaults, route, options)); } // pkg/dist-src/with-defaults.js function withDefaults(oldDefaults, newDefaults) { const DEFAULTS2 = merge(oldDefaults, newDefaults); const endpoint2 = endpointWithDefaults.bind(null, DEFAULTS2); return Object.assign(endpoint2, { DEFAULTS: DEFAULTS2, defaults: withDefaults.bind(null, DEFAULTS2), merge: merge.bind(null, DEFAULTS2), parse }); } // pkg/dist-src/index.js var endpoint = withDefaults(null, DEFAULTS); // Annotate the CommonJS export names for ESM import in node: 0 && (0); /***/ }), /***/ 70007: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; var __defProp = Object.defineProperty; var __getOwnPropDesc = Object.getOwnPropertyDescriptor; var __getOwnPropNames = Object.getOwnPropertyNames; var __hasOwnProp = Object.prototype.hasOwnProperty; var __export = (target, all) => { for (var name in all) __defProp(target, name, { get: all[name], enumerable: true }); }; var __copyProps = (to, from, except, desc) => { if (from && typeof from === "object" || typeof from === "function") { for (let key of __getOwnPropNames(from)) if (!__hasOwnProp.call(to, key) && key !== except) __defProp(to, key, { get: () => from[key], enumerable: !(desc = __getOwnPropDesc(from, key)) || desc.enumerable }); } return to; }; var __toCommonJS = (mod) => __copyProps(__defProp({}, "__esModule", { value: true }), mod); // pkg/dist-src/index.js var dist_src_exports = {}; __export(dist_src_exports, { GraphqlResponseError: () => GraphqlResponseError, graphql: () => graphql2, withCustomRequest: () => withCustomRequest }); module.exports = __toCommonJS(dist_src_exports); var import_request3 = __nccwpck_require__(66255); var import_universal_user_agent = __nccwpck_require__(33843); // pkg/dist-src/version.js var VERSION = "7.1.0"; // pkg/dist-src/with-defaults.js var import_request2 = __nccwpck_require__(66255); // pkg/dist-src/graphql.js var import_request = __nccwpck_require__(66255); // pkg/dist-src/error.js function _buildMessageForResponseErrors(data) { return `Request failed due to following response errors: ` + data.errors.map((e) => ` - ${e.message}`).join("\n"); } var GraphqlResponseError = class extends Error { constructor(request2, headers, response) { super(_buildMessageForResponseErrors(response)); this.request = request2; this.headers = headers; this.response = response; this.name = "GraphqlResponseError"; this.errors = response.errors; this.data = response.data; if (Error.captureStackTrace) { Error.captureStackTrace(this, this.constructor); } } }; // pkg/dist-src/graphql.js var NON_VARIABLE_OPTIONS = [ "method", "baseUrl", "url", "headers", "request", "query", "mediaType" ]; var FORBIDDEN_VARIABLE_OPTIONS = ["query", "method", "url"]; var GHES_V3_SUFFIX_REGEX = /\/api\/v3\/?$/; function graphql(request2, query, options) { if (options) { if (typeof query === "string" && "query" in options) { return Promise.reject( new Error(`[@octokit/graphql] "query" cannot be used as variable name`) ); } for (const key in options) { if (!FORBIDDEN_VARIABLE_OPTIONS.includes(key)) continue; return Promise.reject( new Error( `[@octokit/graphql] "${key}" cannot be used as variable name` ) ); } } const parsedOptions = typeof query === "string" ? Object.assign({ query }, options) : query; const requestOptions = Object.keys( parsedOptions ).reduce((result, key) => { if (NON_VARIABLE_OPTIONS.includes(key)) { result[key] = parsedOptions[key]; return result; } if (!result.variables) { result.variables = {}; } result.variables[key] = parsedOptions[key]; return result; }, {}); const baseUrl = parsedOptions.baseUrl || request2.endpoint.DEFAULTS.baseUrl; if (GHES_V3_SUFFIX_REGEX.test(baseUrl)) { requestOptions.url = baseUrl.replace(GHES_V3_SUFFIX_REGEX, "/api/graphql"); } return request2(requestOptions).then((response) => { if (response.data.errors) { const headers = {}; for (const key of Object.keys(response.headers)) { headers[key] = response.headers[key]; } throw new GraphqlResponseError( requestOptions, headers, response.data ); } return response.data.data; }); } // pkg/dist-src/with-defaults.js function withDefaults(request2, newDefaults) { const newRequest = request2.defaults(newDefaults); const newApi = (query, options) => { return graphql(newRequest, query, options); }; return Object.assign(newApi, { defaults: withDefaults.bind(null, newRequest), endpoint: newRequest.endpoint }); } // pkg/dist-src/index.js var graphql2 = withDefaults(import_request3.request, { headers: { "user-agent": `octokit-graphql.js/${VERSION} ${(0, import_universal_user_agent.getUserAgent)()}` }, method: "POST", url: "/graphql" }); function withCustomRequest(customRequest) { return withDefaults(customRequest, { method: "POST", url: "/graphql" }); } // Annotate the CommonJS export names for ESM import in node: 0 && (0); /***/ }), /***/ 38082: /***/ ((module) => { "use strict"; var __defProp = Object.defineProperty; var __getOwnPropDesc = Object.getOwnPropertyDescriptor; var __getOwnPropNames = Object.getOwnPropertyNames; var __hasOwnProp = Object.prototype.hasOwnProperty; var __export = (target, all) => { for (var name in all) __defProp(target, name, { get: all[name], enumerable: true }); }; var __copyProps = (to, from, except, desc) => { if (from && typeof from === "object" || typeof from === "function") { for (let key of __getOwnPropNames(from)) if (!__hasOwnProp.call(to, key) && key !== except) __defProp(to, key, { get: () => from[key], enumerable: !(desc = __getOwnPropDesc(from, key)) || desc.enumerable }); } return to; }; var __toCommonJS = (mod) => __copyProps(__defProp({}, "__esModule", { value: true }), mod); // pkg/dist-src/index.js var dist_src_exports = {}; __export(dist_src_exports, { composePaginateRest: () => composePaginateRest, isPaginatingEndpoint: () => isPaginatingEndpoint, paginateRest: () => paginateRest, paginatingEndpoints: () => paginatingEndpoints }); module.exports = __toCommonJS(dist_src_exports); // pkg/dist-src/version.js var VERSION = "9.2.2"; // pkg/dist-src/normalize-paginated-list-response.js function normalizePaginatedListResponse(response) { if (!response.data) { return { ...response, data: [] }; } const responseNeedsNormalization = "total_count" in response.data && !("url" in response.data); if (!responseNeedsNormalization) return response; const incompleteResults = response.data.incomplete_results; const repositorySelection = response.data.repository_selection; const totalCount = response.data.total_count; delete response.data.incomplete_results; delete response.data.repository_selection; delete response.data.total_count; const namespaceKey = Object.keys(response.data)[0]; const data = response.data[namespaceKey]; response.data = data; if (typeof incompleteResults !== "undefined") { response.data.incomplete_results = incompleteResults; } if (typeof repositorySelection !== "undefined") { response.data.repository_selection = repositorySelection; } response.data.total_count = totalCount; return response; } // pkg/dist-src/iterator.js function iterator(octokit, route, parameters) { const options = typeof route === "function" ? route.endpoint(parameters) : octokit.request.endpoint(route, parameters); const requestMethod = typeof route === "function" ? route : octokit.request; const method = options.method; const headers = options.headers; let url = options.url; return { [Symbol.asyncIterator]: () => ({ async next() { if (!url) return { done: true }; try { const response = await requestMethod({ method, url, headers }); const normalizedResponse = normalizePaginatedListResponse(response); url = ((normalizedResponse.headers.link || "").match( /<([^<>]+)>;\s*rel="next"/ ) || [])[1]; return { value: normalizedResponse }; } catch (error) { if (error.status !== 409) throw error; url = ""; return { value: { status: 200, headers: {}, data: [] } }; } } }) }; } // pkg/dist-src/paginate.js function paginate(octokit, route, parameters, mapFn) { if (typeof parameters === "function") { mapFn = parameters; parameters = void 0; } return gather( octokit, [], iterator(octokit, route, parameters)[Symbol.asyncIterator](), mapFn ); } function gather(octokit, results, iterator2, mapFn) { return iterator2.next().then((result) => { if (result.done) { return results; } let earlyExit = false; function done() { earlyExit = true; } results = results.concat( mapFn ? mapFn(result.value, done) : result.value.data ); if (earlyExit) { return results; } return gather(octokit, results, iterator2, mapFn); }); } // pkg/dist-src/compose-paginate.js var composePaginateRest = Object.assign(paginate, { iterator }); // pkg/dist-src/generated/paginating-endpoints.js var paginatingEndpoints = [ "GET /advisories", "GET /app/hook/deliveries", "GET /app/installation-requests", "GET /app/installations", "GET /assignments/{assignment_id}/accepted_assignments", "GET /classrooms", "GET /classrooms/{classroom_id}/assignments", "GET /enterprises/{enterprise}/dependabot/alerts", "GET /enterprises/{enterprise}/secret-scanning/alerts", "GET /events", "GET /gists", "GET /gists/public", "GET /gists/starred", "GET /gists/{gist_id}/comments", "GET /gists/{gist_id}/commits", "GET /gists/{gist_id}/forks", "GET /installation/repositories", "GET /issues", "GET /licenses", "GET /marketplace_listing/plans", "GET /marketplace_listing/plans/{plan_id}/accounts", "GET /marketplace_listing/stubbed/plans", "GET /marketplace_listing/stubbed/plans/{plan_id}/accounts", "GET /networks/{owner}/{repo}/events", "GET /notifications", "GET /organizations", "GET /orgs/{org}/actions/cache/usage-by-repository", "GET /orgs/{org}/actions/permissions/repositories", "GET /orgs/{org}/actions/runners", "GET /orgs/{org}/actions/secrets", "GET /orgs/{org}/actions/secrets/{secret_name}/repositories", "GET /orgs/{org}/actions/variables", "GET /orgs/{org}/actions/variables/{name}/repositories", "GET /orgs/{org}/blocks", "GET /orgs/{org}/code-scanning/alerts", "GET /orgs/{org}/codespaces", "GET /orgs/{org}/codespaces/secrets", "GET /orgs/{org}/codespaces/secrets/{secret_name}/repositories", "GET /orgs/{org}/copilot/billing/seats", "GET /orgs/{org}/dependabot/alerts", "GET /orgs/{org}/dependabot/secrets", "GET /orgs/{org}/dependabot/secrets/{secret_name}/repositories", "GET /orgs/{org}/events", "GET /orgs/{org}/failed_invitations", "GET /orgs/{org}/hooks", "GET /orgs/{org}/hooks/{hook_id}/deliveries", "GET /orgs/{org}/installations", "GET /orgs/{org}/invitations", "GET /orgs/{org}/invitations/{invitation_id}/teams", "GET /orgs/{org}/issues", "GET /orgs/{org}/members", "GET /orgs/{org}/members/{username}/codespaces", "GET /orgs/{org}/migrations", "GET /orgs/{org}/migrations/{migration_id}/repositories", "GET /orgs/{org}/organization-roles/{role_id}/teams", "GET /orgs/{org}/organization-roles/{role_id}/users", "GET /orgs/{org}/outside_collaborators", "GET /orgs/{org}/packages", "GET /orgs/{org}/packages/{package_type}/{package_name}/versions", "GET /orgs/{org}/personal-access-token-requests", "GET /orgs/{org}/personal-access-token-requests/{pat_request_id}/repositories", "GET /orgs/{org}/personal-access-tokens", "GET /orgs/{org}/personal-access-tokens/{pat_id}/repositories", "GET /orgs/{org}/projects", "GET /orgs/{org}/properties/values", "GET /orgs/{org}/public_members", "GET /orgs/{org}/repos", "GET /orgs/{org}/rulesets", "GET /orgs/{org}/rulesets/rule-suites", "GET /orgs/{org}/secret-scanning/alerts", "GET /orgs/{org}/security-advisories", "GET /orgs/{org}/teams", "GET /orgs/{org}/teams/{team_slug}/discussions", "GET /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments", "GET /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments/{comment_number}/reactions", "GET /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/reactions", "GET /orgs/{org}/teams/{team_slug}/invitations", "GET /orgs/{org}/teams/{team_slug}/members", "GET /orgs/{org}/teams/{team_slug}/projects", "GET /orgs/{org}/teams/{team_slug}/repos", "GET /orgs/{org}/teams/{team_slug}/teams", "GET /projects/columns/{column_id}/cards", "GET /projects/{project_id}/collaborators", "GET /projects/{project_id}/columns", "GET /repos/{owner}/{repo}/actions/artifacts", "GET /repos/{owner}/{repo}/actions/caches", "GET /repos/{owner}/{repo}/actions/organization-secrets", "GET /repos/{owner}/{repo}/actions/organization-variables", "GET /repos/{owner}/{repo}/actions/runners", "GET /repos/{owner}/{repo}/actions/runs", "GET /repos/{owner}/{repo}/actions/runs/{run_id}/artifacts", "GET /repos/{owner}/{repo}/actions/runs/{run_id}/attempts/{attempt_number}/jobs", "GET /repos/{owner}/{repo}/actions/runs/{run_id}/jobs", "GET /repos/{owner}/{repo}/actions/secrets", "GET /repos/{owner}/{repo}/actions/variables", "GET /repos/{owner}/{repo}/actions/workflows", "GET /repos/{owner}/{repo}/actions/workflows/{workflow_id}/runs", "GET /repos/{owner}/{repo}/activity", "GET /repos/{owner}/{repo}/assignees", "GET /repos/{owner}/{repo}/branches", "GET /repos/{owner}/{repo}/check-runs/{check_run_id}/annotations", "GET /repos/{owner}/{repo}/check-suites/{check_suite_id}/check-runs", "GET /repos/{owner}/{repo}/code-scanning/alerts", "GET /repos/{owner}/{repo}/code-scanning/alerts/{alert_number}/instances", "GET /repos/{owner}/{repo}/code-scanning/analyses", "GET /repos/{owner}/{repo}/codespaces", "GET /repos/{owner}/{repo}/codespaces/devcontainers", "GET /repos/{owner}/{repo}/codespaces/secrets", "GET /repos/{owner}/{repo}/collaborators", "GET /repos/{owner}/{repo}/comments", "GET /repos/{owner}/{repo}/comments/{comment_id}/reactions", "GET /repos/{owner}/{repo}/commits", "GET /repos/{owner}/{repo}/commits/{commit_sha}/comments", "GET /repos/{owner}/{repo}/commits/{commit_sha}/pulls", "GET /repos/{owner}/{repo}/commits/{ref}/check-runs", "GET /repos/{owner}/{repo}/commits/{ref}/check-suites", "GET /repos/{owner}/{repo}/commits/{ref}/status", "GET /repos/{owner}/{repo}/commits/{ref}/statuses", "GET /repos/{owner}/{repo}/contributors", "GET /repos/{owner}/{repo}/dependabot/alerts", "GET /repos/{owner}/{repo}/dependabot/secrets", "GET /repos/{owner}/{repo}/deployments", "GET /repos/{owner}/{repo}/deployments/{deployment_id}/statuses", "GET /repos/{owner}/{repo}/environments", "GET /repos/{owner}/{repo}/environments/{environment_name}/deployment-branch-policies", "GET /repos/{owner}/{repo}/environments/{environment_name}/deployment_protection_rules/apps", "GET /repos/{owner}/{repo}/events", "GET /repos/{owner}/{repo}/forks", "GET /repos/{owner}/{repo}/hooks", "GET /repos/{owner}/{repo}/hooks/{hook_id}/deliveries", "GET /repos/{owner}/{repo}/invitations", "GET /repos/{owner}/{repo}/issues", "GET /repos/{owner}/{repo}/issues/comments", "GET /repos/{owner}/{repo}/issues/comments/{comment_id}/reactions", "GET /repos/{owner}/{repo}/issues/events", "GET /repos/{owner}/{repo}/issues/{issue_number}/comments", "GET /repos/{owner}/{repo}/issues/{issue_number}/events", "GET /repos/{owner}/{repo}/issues/{issue_number}/labels", "GET /repos/{owner}/{repo}/issues/{issue_number}/reactions", "GET /repos/{owner}/{repo}/issues/{issue_number}/timeline", "GET /repos/{owner}/{repo}/keys", "GET /repos/{owner}/{repo}/labels", "GET /repos/{owner}/{repo}/milestones", "GET /repos/{owner}/{repo}/milestones/{milestone_number}/labels", "GET /repos/{owner}/{repo}/notifications", "GET /repos/{owner}/{repo}/pages/builds", "GET /repos/{owner}/{repo}/projects", "GET /repos/{owner}/{repo}/pulls", "GET /repos/{owner}/{repo}/pulls/comments", "GET /repos/{owner}/{repo}/pulls/comments/{comment_id}/reactions", "GET /repos/{owner}/{repo}/pulls/{pull_number}/comments", "GET /repos/{owner}/{repo}/pulls/{pull_number}/commits", "GET /repos/{owner}/{repo}/pulls/{pull_number}/files", "GET /repos/{owner}/{repo}/pulls/{pull_number}/reviews", "GET /repos/{owner}/{repo}/pulls/{pull_number}/reviews/{review_id}/comments", "GET /repos/{owner}/{repo}/releases", "GET /repos/{owner}/{repo}/releases/{release_id}/assets", "GET /repos/{owner}/{repo}/releases/{release_id}/reactions", "GET /repos/{owner}/{repo}/rules/branches/{branch}", "GET /repos/{owner}/{repo}/rulesets", "GET /repos/{owner}/{repo}/rulesets/rule-suites", "GET /repos/{owner}/{repo}/secret-scanning/alerts", "GET /repos/{owner}/{repo}/secret-scanning/alerts/{alert_number}/locations", "GET /repos/{owner}/{repo}/security-advisories", "GET /repos/{owner}/{repo}/stargazers", "GET /repos/{owner}/{repo}/subscribers", "GET /repos/{owner}/{repo}/tags", "GET /repos/{owner}/{repo}/teams", "GET /repos/{owner}/{repo}/topics", "GET /repositories", "GET /repositories/{repository_id}/environments/{environment_name}/secrets", "GET /repositories/{repository_id}/environments/{environment_name}/variables", "GET /search/code", "GET /search/commits", "GET /search/issues", "GET /search/labels", "GET /search/repositories", "GET /search/topics", "GET /search/users", "GET /teams/{team_id}/discussions", "GET /teams/{team_id}/discussions/{discussion_number}/comments", "GET /teams/{team_id}/discussions/{discussion_number}/comments/{comment_number}/reactions", "GET /teams/{team_id}/discussions/{discussion_number}/reactions", "GET /teams/{team_id}/invitations", "GET /teams/{team_id}/members", "GET /teams/{team_id}/projects", "GET /teams/{team_id}/repos", "GET /teams/{team_id}/teams", "GET /user/blocks", "GET /user/codespaces", "GET /user/codespaces/secrets", "GET /user/emails", "GET /user/followers", "GET /user/following", "GET /user/gpg_keys", "GET /user/installations", "GET /user/installations/{installation_id}/repositories", "GET /user/issues", "GET /user/keys", "GET /user/marketplace_purchases", "GET /user/marketplace_purchases/stubbed", "GET /user/memberships/orgs", "GET /user/migrations", "GET /user/migrations/{migration_id}/repositories", "GET /user/orgs", "GET /user/packages", "GET /user/packages/{package_type}/{package_name}/versions", "GET /user/public_emails", "GET /user/repos", "GET /user/repository_invitations", "GET /user/social_accounts", "GET /user/ssh_signing_keys", "GET /user/starred", "GET /user/subscriptions", "GET /user/teams", "GET /users", "GET /users/{username}/events", "GET /users/{username}/events/orgs/{org}", "GET /users/{username}/events/public", "GET /users/{username}/followers", "GET /users/{username}/following", "GET /users/{username}/gists", "GET /users/{username}/gpg_keys", "GET /users/{username}/keys", "GET /users/{username}/orgs", "GET /users/{username}/packages", "GET /users/{username}/projects", "GET /users/{username}/received_events", "GET /users/{username}/received_events/public", "GET /users/{username}/repos", "GET /users/{username}/social_accounts", "GET /users/{username}/ssh_signing_keys", "GET /users/{username}/starred", "GET /users/{username}/subscriptions" ]; // pkg/dist-src/paginating-endpoints.js function isPaginatingEndpoint(arg) { if (typeof arg === "string") { return paginatingEndpoints.includes(arg); } else { return false; } } // pkg/dist-src/index.js function paginateRest(octokit) { return { paginate: Object.assign(paginate.bind(null, octokit), { iterator: iterator.bind(null, octokit) }) }; } paginateRest.VERSION = VERSION; // Annotate the CommonJS export names for ESM import in node: 0 && (0); /***/ }), /***/ 84935: /***/ ((module) => { "use strict"; var __defProp = Object.defineProperty; var __getOwnPropDesc = Object.getOwnPropertyDescriptor; var __getOwnPropNames = Object.getOwnPropertyNames; var __hasOwnProp = Object.prototype.hasOwnProperty; var __export = (target, all) => { for (var name in all) __defProp(target, name, { get: all[name], enumerable: true }); }; var __copyProps = (to, from, except, desc) => { if (from && typeof from === "object" || typeof from === "function") { for (let key of __getOwnPropNames(from)) if (!__hasOwnProp.call(to, key) && key !== except) __defProp(to, key, { get: () => from[key], enumerable: !(desc = __getOwnPropDesc(from, key)) || desc.enumerable }); } return to; }; var __toCommonJS = (mod) => __copyProps(__defProp({}, "__esModule", { value: true }), mod); // pkg/dist-src/index.js var dist_src_exports = {}; __export(dist_src_exports, { legacyRestEndpointMethods: () => legacyRestEndpointMethods, restEndpointMethods: () => restEndpointMethods }); module.exports = __toCommonJS(dist_src_exports); // pkg/dist-src/version.js var VERSION = "10.4.1"; // pkg/dist-src/generated/endpoints.js var Endpoints = { actions: { addCustomLabelsToSelfHostedRunnerForOrg: [ "POST /orgs/{org}/actions/runners/{runner_id}/labels" ], addCustomLabelsToSelfHostedRunnerForRepo: [ "POST /repos/{owner}/{repo}/actions/runners/{runner_id}/labels" ], addSelectedRepoToOrgSecret: [ "PUT /orgs/{org}/actions/secrets/{secret_name}/repositories/{repository_id}" ], addSelectedRepoToOrgVariable: [ "PUT /orgs/{org}/actions/variables/{name}/repositories/{repository_id}" ], approveWorkflowRun: [ "POST /repos/{owner}/{repo}/actions/runs/{run_id}/approve" ], cancelWorkflowRun: [ "POST /repos/{owner}/{repo}/actions/runs/{run_id}/cancel" ], createEnvironmentVariable: [ "POST /repositories/{repository_id}/environments/{environment_name}/variables" ], createOrUpdateEnvironmentSecret: [ "PUT /repositories/{repository_id}/environments/{environment_name}/secrets/{secret_name}" ], createOrUpdateOrgSecret: ["PUT /orgs/{org}/actions/secrets/{secret_name}"], createOrUpdateRepoSecret: [ "PUT /repos/{owner}/{repo}/actions/secrets/{secret_name}" ], createOrgVariable: ["POST /orgs/{org}/actions/variables"], createRegistrationTokenForOrg: [ "POST /orgs/{org}/actions/runners/registration-token" ], createRegistrationTokenForRepo: [ "POST /repos/{owner}/{repo}/actions/runners/registration-token" ], createRemoveTokenForOrg: ["POST /orgs/{org}/actions/runners/remove-token"], createRemoveTokenForRepo: [ "POST /repos/{owner}/{repo}/actions/runners/remove-token" ], createRepoVariable: ["POST /repos/{owner}/{repo}/actions/variables"], createWorkflowDispatch: [ "POST /repos/{owner}/{repo}/actions/workflows/{workflow_id}/dispatches" ], deleteActionsCacheById: [ "DELETE /repos/{owner}/{repo}/actions/caches/{cache_id}" ], deleteActionsCacheByKey: [ "DELETE /repos/{owner}/{repo}/actions/caches{?key,ref}" ], deleteArtifact: [ "DELETE /repos/{owner}/{repo}/actions/artifacts/{artifact_id}" ], deleteEnvironmentSecret: [ "DELETE /repositories/{repository_id}/environments/{environment_name}/secrets/{secret_name}" ], deleteEnvironmentVariable: [ "DELETE /repositories/{repository_id}/environments/{environment_name}/variables/{name}" ], deleteOrgSecret: ["DELETE /orgs/{org}/actions/secrets/{secret_name}"], deleteOrgVariable: ["DELETE /orgs/{org}/actions/variables/{name}"], deleteRepoSecret: [ "DELETE /repos/{owner}/{repo}/actions/secrets/{secret_name}" ], deleteRepoVariable: [ "DELETE /repos/{owner}/{repo}/actions/variables/{name}" ], deleteSelfHostedRunnerFromOrg: [ "DELETE /orgs/{org}/actions/runners/{runner_id}" ], deleteSelfHostedRunnerFromRepo: [ "DELETE /repos/{owner}/{repo}/actions/runners/{runner_id}" ], deleteWorkflowRun: ["DELETE /repos/{owner}/{repo}/actions/runs/{run_id}"], deleteWorkflowRunLogs: [ "DELETE /repos/{owner}/{repo}/actions/runs/{run_id}/logs" ], disableSelectedRepositoryGithubActionsOrganization: [ "DELETE /orgs/{org}/actions/permissions/repositories/{repository_id}" ], disableWorkflow: [ "PUT /repos/{owner}/{repo}/actions/workflows/{workflow_id}/disable" ], downloadArtifact: [ "GET /repos/{owner}/{repo}/actions/artifacts/{artifact_id}/{archive_format}" ], downloadJobLogsForWorkflowRun: [ "GET /repos/{owner}/{repo}/actions/jobs/{job_id}/logs" ], downloadWorkflowRunAttemptLogs: [ "GET /repos/{owner}/{repo}/actions/runs/{run_id}/attempts/{attempt_number}/logs" ], downloadWorkflowRunLogs: [ "GET /repos/{owner}/{repo}/actions/runs/{run_id}/logs" ], enableSelectedRepositoryGithubActionsOrganization: [ "PUT /orgs/{org}/actions/permissions/repositories/{repository_id}" ], enableWorkflow: [ "PUT /repos/{owner}/{repo}/actions/workflows/{workflow_id}/enable" ], forceCancelWorkflowRun: [ "POST /repos/{owner}/{repo}/actions/runs/{run_id}/force-cancel" ], generateRunnerJitconfigForOrg: [ "POST /orgs/{org}/actions/runners/generate-jitconfig" ], generateRunnerJitconfigForRepo: [ "POST /repos/{owner}/{repo}/actions/runners/generate-jitconfig" ], getActionsCacheList: ["GET /repos/{owner}/{repo}/actions/caches"], getActionsCacheUsage: ["GET /repos/{owner}/{repo}/actions/cache/usage"], getActionsCacheUsageByRepoForOrg: [ "GET /orgs/{org}/actions/cache/usage-by-repository" ], getActionsCacheUsageForOrg: ["GET /orgs/{org}/actions/cache/usage"], getAllowedActionsOrganization: [ "GET /orgs/{org}/actions/permissions/selected-actions" ], getAllowedActionsRepository: [ "GET /repos/{owner}/{repo}/actions/permissions/selected-actions" ], getArtifact: ["GET /repos/{owner}/{repo}/actions/artifacts/{artifact_id}"], getCustomOidcSubClaimForRepo: [ "GET /repos/{owner}/{repo}/actions/oidc/customization/sub" ], getEnvironmentPublicKey: [ "GET /repositories/{repository_id}/environments/{environment_name}/secrets/public-key" ], getEnvironmentSecret: [ "GET /repositories/{repository_id}/environments/{environment_name}/secrets/{secret_name}" ], getEnvironmentVariable: [ "GET /repositories/{repository_id}/environments/{environment_name}/variables/{name}" ], getGithubActionsDefaultWorkflowPermissionsOrganization: [ "GET /orgs/{org}/actions/permissions/workflow" ], getGithubActionsDefaultWorkflowPermissionsRepository: [ "GET /repos/{owner}/{repo}/actions/permissions/workflow" ], getGithubActionsPermissionsOrganization: [ "GET /orgs/{org}/actions/permissions" ], getGithubActionsPermissionsRepository: [ "GET /repos/{owner}/{repo}/actions/permissions" ], getJobForWorkflowRun: ["GET /repos/{owner}/{repo}/actions/jobs/{job_id}"], getOrgPublicKey: ["GET /orgs/{org}/actions/secrets/public-key"], getOrgSecret: ["GET /orgs/{org}/actions/secrets/{secret_name}"], getOrgVariable: ["GET /orgs/{org}/actions/variables/{name}"], getPendingDeploymentsForRun: [ "GET /repos/{owner}/{repo}/actions/runs/{run_id}/pending_deployments" ], getRepoPermissions: [ "GET /repos/{owner}/{repo}/actions/permissions", {}, { renamed: ["actions", "getGithubActionsPermissionsRepository"] } ], getRepoPublicKey: ["GET /repos/{owner}/{repo}/actions/secrets/public-key"], getRepoSecret: ["GET /repos/{owner}/{repo}/actions/secrets/{secret_name}"], getRepoVariable: ["GET /repos/{owner}/{repo}/actions/variables/{name}"], getReviewsForRun: [ "GET /repos/{owner}/{repo}/actions/runs/{run_id}/approvals" ], getSelfHostedRunnerForOrg: ["GET /orgs/{org}/actions/runners/{runner_id}"], getSelfHostedRunnerForRepo: [ "GET /repos/{owner}/{repo}/actions/runners/{runner_id}" ], getWorkflow: ["GET /repos/{owner}/{repo}/actions/workflows/{workflow_id}"], getWorkflowAccessToRepository: [ "GET /repos/{owner}/{repo}/actions/permissions/access" ], getWorkflowRun: ["GET /repos/{owner}/{repo}/actions/runs/{run_id}"], getWorkflowRunAttempt: [ "GET /repos/{owner}/{repo}/actions/runs/{run_id}/attempts/{attempt_number}" ], getWorkflowRunUsage: [ "GET /repos/{owner}/{repo}/actions/runs/{run_id}/timing" ], getWorkflowUsage: [ "GET /repos/{owner}/{repo}/actions/workflows/{workflow_id}/timing" ], listArtifactsForRepo: ["GET /repos/{owner}/{repo}/actions/artifacts"], listEnvironmentSecrets: [ "GET /repositories/{repository_id}/environments/{environment_name}/secrets" ], listEnvironmentVariables: [ "GET /repositories/{repository_id}/environments/{environment_name}/variables" ], listJobsForWorkflowRun: [ "GET /repos/{owner}/{repo}/actions/runs/{run_id}/jobs" ], listJobsForWorkflowRunAttempt: [ "GET /repos/{owner}/{repo}/actions/runs/{run_id}/attempts/{attempt_number}/jobs" ], listLabelsForSelfHostedRunnerForOrg: [ "GET /orgs/{org}/actions/runners/{runner_id}/labels" ], listLabelsForSelfHostedRunnerForRepo: [ "GET /repos/{owner}/{repo}/actions/runners/{runner_id}/labels" ], listOrgSecrets: ["GET /orgs/{org}/actions/secrets"], listOrgVariables: ["GET /orgs/{org}/actions/variables"], listRepoOrganizationSecrets: [ "GET /repos/{owner}/{repo}/actions/organization-secrets" ], listRepoOrganizationVariables: [ "GET /repos/{owner}/{repo}/actions/organization-variables" ], listRepoSecrets: ["GET /repos/{owner}/{repo}/actions/secrets"], listRepoVariables: ["GET /repos/{owner}/{repo}/actions/variables"], listRepoWorkflows: ["GET /repos/{owner}/{repo}/actions/workflows"], listRunnerApplicationsForOrg: ["GET /orgs/{org}/actions/runners/downloads"], listRunnerApplicationsForRepo: [ "GET /repos/{owner}/{repo}/actions/runners/downloads" ], listSelectedReposForOrgSecret: [ "GET /orgs/{org}/actions/secrets/{secret_name}/repositories" ], listSelectedReposForOrgVariable: [ "GET /orgs/{org}/actions/variables/{name}/repositories" ], listSelectedRepositoriesEnabledGithubActionsOrganization: [ "GET /orgs/{org}/actions/permissions/repositories" ], listSelfHostedRunnersForOrg: ["GET /orgs/{org}/actions/runners"], listSelfHostedRunnersForRepo: ["GET /repos/{owner}/{repo}/actions/runners"], listWorkflowRunArtifacts: [ "GET /repos/{owner}/{repo}/actions/runs/{run_id}/artifacts" ], listWorkflowRuns: [ "GET /repos/{owner}/{repo}/actions/workflows/{workflow_id}/runs" ], listWorkflowRunsForRepo: ["GET /repos/{owner}/{repo}/actions/runs"], reRunJobForWorkflowRun: [ "POST /repos/{owner}/{repo}/actions/jobs/{job_id}/rerun" ], reRunWorkflow: ["POST /repos/{owner}/{repo}/actions/runs/{run_id}/rerun"], reRunWorkflowFailedJobs: [ "POST /repos/{owner}/{repo}/actions/runs/{run_id}/rerun-failed-jobs" ], removeAllCustomLabelsFromSelfHostedRunnerForOrg: [ "DELETE /orgs/{org}/actions/runners/{runner_id}/labels" ], removeAllCustomLabelsFromSelfHostedRunnerForRepo: [ "DELETE /repos/{owner}/{repo}/actions/runners/{runner_id}/labels" ], removeCustomLabelFromSelfHostedRunnerForOrg: [ "DELETE /orgs/{org}/actions/runners/{runner_id}/labels/{name}" ], removeCustomLabelFromSelfHostedRunnerForRepo: [ "DELETE /repos/{owner}/{repo}/actions/runners/{runner_id}/labels/{name}" ], removeSelectedRepoFromOrgSecret: [ "DELETE /orgs/{org}/actions/secrets/{secret_name}/repositories/{repository_id}" ], removeSelectedRepoFromOrgVariable: [ "DELETE /orgs/{org}/actions/variables/{name}/repositories/{repository_id}" ], reviewCustomGatesForRun: [ "POST /repos/{owner}/{repo}/actions/runs/{run_id}/deployment_protection_rule" ], reviewPendingDeploymentsForRun: [ "POST /repos/{owner}/{repo}/actions/runs/{run_id}/pending_deployments" ], setAllowedActionsOrganization: [ "PUT /orgs/{org}/actions/permissions/selected-actions" ], setAllowedActionsRepository: [ "PUT /repos/{owner}/{repo}/actions/permissions/selected-actions" ], setCustomLabelsForSelfHostedRunnerForOrg: [ "PUT /orgs/{org}/actions/runners/{runner_id}/labels" ], setCustomLabelsForSelfHostedRunnerForRepo: [ "PUT /repos/{owner}/{repo}/actions/runners/{runner_id}/labels" ], setCustomOidcSubClaimForRepo: [ "PUT /repos/{owner}/{repo}/actions/oidc/customization/sub" ], setGithubActionsDefaultWorkflowPermissionsOrganization: [ "PUT /orgs/{org}/actions/permissions/workflow" ], setGithubActionsDefaultWorkflowPermissionsRepository: [ "PUT /repos/{owner}/{repo}/actions/permissions/workflow" ], setGithubActionsPermissionsOrganization: [ "PUT /orgs/{org}/actions/permissions" ], setGithubActionsPermissionsRepository: [ "PUT /repos/{owner}/{repo}/actions/permissions" ], setSelectedReposForOrgSecret: [ "PUT /orgs/{org}/actions/secrets/{secret_name}/repositories" ], setSelectedReposForOrgVariable: [ "PUT /orgs/{org}/actions/variables/{name}/repositories" ], setSelectedRepositoriesEnabledGithubActionsOrganization: [ "PUT /orgs/{org}/actions/permissions/repositories" ], setWorkflowAccessToRepository: [ "PUT /repos/{owner}/{repo}/actions/permissions/access" ], updateEnvironmentVariable: [ "PATCH /repositories/{repository_id}/environments/{environment_name}/variables/{name}" ], updateOrgVariable: ["PATCH /orgs/{org}/actions/variables/{name}"], updateRepoVariable: [ "PATCH /repos/{owner}/{repo}/actions/variables/{name}" ] }, activity: { checkRepoIsStarredByAuthenticatedUser: ["GET /user/starred/{owner}/{repo}"], deleteRepoSubscription: ["DELETE /repos/{owner}/{repo}/subscription"], deleteThreadSubscription: [ "DELETE /notifications/threads/{thread_id}/subscription" ], getFeeds: ["GET /feeds"], getRepoSubscription: ["GET /repos/{owner}/{repo}/subscription"], getThread: ["GET /notifications/threads/{thread_id}"], getThreadSubscriptionForAuthenticatedUser: [ "GET /notifications/threads/{thread_id}/subscription" ], listEventsForAuthenticatedUser: ["GET /users/{username}/events"], listNotificationsForAuthenticatedUser: ["GET /notifications"], listOrgEventsForAuthenticatedUser: [ "GET /users/{username}/events/orgs/{org}" ], listPublicEvents: ["GET /events"], listPublicEventsForRepoNetwork: ["GET /networks/{owner}/{repo}/events"], listPublicEventsForUser: ["GET /users/{username}/events/public"], listPublicOrgEvents: ["GET /orgs/{org}/events"], listReceivedEventsForUser: ["GET /users/{username}/received_events"], listReceivedPublicEventsForUser: [ "GET /users/{username}/received_events/public" ], listRepoEvents: ["GET /repos/{owner}/{repo}/events"], listRepoNotificationsForAuthenticatedUser: [ "GET /repos/{owner}/{repo}/notifications" ], listReposStarredByAuthenticatedUser: ["GET /user/starred"], listReposStarredByUser: ["GET /users/{username}/starred"], listReposWatchedByUser: ["GET /users/{username}/subscriptions"], listStargazersForRepo: ["GET /repos/{owner}/{repo}/stargazers"], listWatchedReposForAuthenticatedUser: ["GET /user/subscriptions"], listWatchersForRepo: ["GET /repos/{owner}/{repo}/subscribers"], markNotificationsAsRead: ["PUT /notifications"], markRepoNotificationsAsRead: ["PUT /repos/{owner}/{repo}/notifications"], markThreadAsDone: ["DELETE /notifications/threads/{thread_id}"], markThreadAsRead: ["PATCH /notifications/threads/{thread_id}"], setRepoSubscription: ["PUT /repos/{owner}/{repo}/subscription"], setThreadSubscription: [ "PUT /notifications/threads/{thread_id}/subscription" ], starRepoForAuthenticatedUser: ["PUT /user/starred/{owner}/{repo}"], unstarRepoForAuthenticatedUser: ["DELETE /user/starred/{owner}/{repo}"] }, apps: { addRepoToInstallation: [ "PUT /user/installations/{installation_id}/repositories/{repository_id}", {}, { renamed: ["apps", "addRepoToInstallationForAuthenticatedUser"] } ], addRepoToInstallationForAuthenticatedUser: [ "PUT /user/installations/{installation_id}/repositories/{repository_id}" ], checkToken: ["POST /applications/{client_id}/token"], createFromManifest: ["POST /app-manifests/{code}/conversions"], createInstallationAccessToken: [ "POST /app/installations/{installation_id}/access_tokens" ], deleteAuthorization: ["DELETE /applications/{client_id}/grant"], deleteInstallation: ["DELETE /app/installations/{installation_id}"], deleteToken: ["DELETE /applications/{client_id}/token"], getAuthenticated: ["GET /app"], getBySlug: ["GET /apps/{app_slug}"], getInstallation: ["GET /app/installations/{installation_id}"], getOrgInstallation: ["GET /orgs/{org}/installation"], getRepoInstallation: ["GET /repos/{owner}/{repo}/installation"], getSubscriptionPlanForAccount: [ "GET /marketplace_listing/accounts/{account_id}" ], getSubscriptionPlanForAccountStubbed: [ "GET /marketplace_listing/stubbed/accounts/{account_id}" ], getUserInstallation: ["GET /users/{username}/installation"], getWebhookConfigForApp: ["GET /app/hook/config"], getWebhookDelivery: ["GET /app/hook/deliveries/{delivery_id}"], listAccountsForPlan: ["GET /marketplace_listing/plans/{plan_id}/accounts"], listAccountsForPlanStubbed: [ "GET /marketplace_listing/stubbed/plans/{plan_id}/accounts" ], listInstallationReposForAuthenticatedUser: [ "GET /user/installations/{installation_id}/repositories" ], listInstallationRequestsForAuthenticatedApp: [ "GET /app/installation-requests" ], listInstallations: ["GET /app/installations"], listInstallationsForAuthenticatedUser: ["GET /user/installations"], listPlans: ["GET /marketplace_listing/plans"], listPlansStubbed: ["GET /marketplace_listing/stubbed/plans"], listReposAccessibleToInstallation: ["GET /installation/repositories"], listSubscriptionsForAuthenticatedUser: ["GET /user/marketplace_purchases"], listSubscriptionsForAuthenticatedUserStubbed: [ "GET /user/marketplace_purchases/stubbed" ], listWebhookDeliveries: ["GET /app/hook/deliveries"], redeliverWebhookDelivery: [ "POST /app/hook/deliveries/{delivery_id}/attempts" ], removeRepoFromInstallation: [ "DELETE /user/installations/{installation_id}/repositories/{repository_id}", {}, { renamed: ["apps", "removeRepoFromInstallationForAuthenticatedUser"] } ], removeRepoFromInstallationForAuthenticatedUser: [ "DELETE /user/installations/{installation_id}/repositories/{repository_id}" ], resetToken: ["PATCH /applications/{client_id}/token"], revokeInstallationAccessToken: ["DELETE /installation/token"], scopeToken: ["POST /applications/{client_id}/token/scoped"], suspendInstallation: ["PUT /app/installations/{installation_id}/suspended"], unsuspendInstallation: [ "DELETE /app/installations/{installation_id}/suspended" ], updateWebhookConfigForApp: ["PATCH /app/hook/config"] }, billing: { getGithubActionsBillingOrg: ["GET /orgs/{org}/settings/billing/actions"], getGithubActionsBillingUser: [ "GET /users/{username}/settings/billing/actions" ], getGithubPackagesBillingOrg: ["GET /orgs/{org}/settings/billing/packages"], getGithubPackagesBillingUser: [ "GET /users/{username}/settings/billing/packages" ], getSharedStorageBillingOrg: [ "GET /orgs/{org}/settings/billing/shared-storage" ], getSharedStorageBillingUser: [ "GET /users/{username}/settings/billing/shared-storage" ] }, checks: { create: ["POST /repos/{owner}/{repo}/check-runs"], createSuite: ["POST /repos/{owner}/{repo}/check-suites"], get: ["GET /repos/{owner}/{repo}/check-runs/{check_run_id}"], getSuite: ["GET /repos/{owner}/{repo}/check-suites/{check_suite_id}"], listAnnotations: [ "GET /repos/{owner}/{repo}/check-runs/{check_run_id}/annotations" ], listForRef: ["GET /repos/{owner}/{repo}/commits/{ref}/check-runs"], listForSuite: [ "GET /repos/{owner}/{repo}/check-suites/{check_suite_id}/check-runs" ], listSuitesForRef: ["GET /repos/{owner}/{repo}/commits/{ref}/check-suites"], rerequestRun: [ "POST /repos/{owner}/{repo}/check-runs/{check_run_id}/rerequest" ], rerequestSuite: [ "POST /repos/{owner}/{repo}/check-suites/{check_suite_id}/rerequest" ], setSuitesPreferences: [ "PATCH /repos/{owner}/{repo}/check-suites/preferences" ], update: ["PATCH /repos/{owner}/{repo}/check-runs/{check_run_id}"] }, codeScanning: { deleteAnalysis: [ "DELETE /repos/{owner}/{repo}/code-scanning/analyses/{analysis_id}{?confirm_delete}" ], getAlert: [ "GET /repos/{owner}/{repo}/code-scanning/alerts/{alert_number}", {}, { renamedParameters: { alert_id: "alert_number" } } ], getAnalysis: [ "GET /repos/{owner}/{repo}/code-scanning/analyses/{analysis_id}" ], getCodeqlDatabase: [ "GET /repos/{owner}/{repo}/code-scanning/codeql/databases/{language}" ], getDefaultSetup: ["GET /repos/{owner}/{repo}/code-scanning/default-setup"], getSarif: ["GET /repos/{owner}/{repo}/code-scanning/sarifs/{sarif_id}"], listAlertInstances: [ "GET /repos/{owner}/{repo}/code-scanning/alerts/{alert_number}/instances" ], listAlertsForOrg: ["GET /orgs/{org}/code-scanning/alerts"], listAlertsForRepo: ["GET /repos/{owner}/{repo}/code-scanning/alerts"], listAlertsInstances: [ "GET /repos/{owner}/{repo}/code-scanning/alerts/{alert_number}/instances", {}, { renamed: ["codeScanning", "listAlertInstances"] } ], listCodeqlDatabases: [ "GET /repos/{owner}/{repo}/code-scanning/codeql/databases" ], listRecentAnalyses: ["GET /repos/{owner}/{repo}/code-scanning/analyses"], updateAlert: [ "PATCH /repos/{owner}/{repo}/code-scanning/alerts/{alert_number}" ], updateDefaultSetup: [ "PATCH /repos/{owner}/{repo}/code-scanning/default-setup" ], uploadSarif: ["POST /repos/{owner}/{repo}/code-scanning/sarifs"] }, codesOfConduct: { getAllCodesOfConduct: ["GET /codes_of_conduct"], getConductCode: ["GET /codes_of_conduct/{key}"] }, codespaces: { addRepositoryForSecretForAuthenticatedUser: [ "PUT /user/codespaces/secrets/{secret_name}/repositories/{repository_id}" ], addSelectedRepoToOrgSecret: [ "PUT /orgs/{org}/codespaces/secrets/{secret_name}/repositories/{repository_id}" ], checkPermissionsForDevcontainer: [ "GET /repos/{owner}/{repo}/codespaces/permissions_check" ], codespaceMachinesForAuthenticatedUser: [ "GET /user/codespaces/{codespace_name}/machines" ], createForAuthenticatedUser: ["POST /user/codespaces"], createOrUpdateOrgSecret: [ "PUT /orgs/{org}/codespaces/secrets/{secret_name}" ], createOrUpdateRepoSecret: [ "PUT /repos/{owner}/{repo}/codespaces/secrets/{secret_name}" ], createOrUpdateSecretForAuthenticatedUser: [ "PUT /user/codespaces/secrets/{secret_name}" ], createWithPrForAuthenticatedUser: [ "POST /repos/{owner}/{repo}/pulls/{pull_number}/codespaces" ], createWithRepoForAuthenticatedUser: [ "POST /repos/{owner}/{repo}/codespaces" ], deleteForAuthenticatedUser: ["DELETE /user/codespaces/{codespace_name}"], deleteFromOrganization: [ "DELETE /orgs/{org}/members/{username}/codespaces/{codespace_name}" ], deleteOrgSecret: ["DELETE /orgs/{org}/codespaces/secrets/{secret_name}"], deleteRepoSecret: [ "DELETE /repos/{owner}/{repo}/codespaces/secrets/{secret_name}" ], deleteSecretForAuthenticatedUser: [ "DELETE /user/codespaces/secrets/{secret_name}" ], exportForAuthenticatedUser: [ "POST /user/codespaces/{codespace_name}/exports" ], getCodespacesForUserInOrg: [ "GET /orgs/{org}/members/{username}/codespaces" ], getExportDetailsForAuthenticatedUser: [ "GET /user/codespaces/{codespace_name}/exports/{export_id}" ], getForAuthenticatedUser: ["GET /user/codespaces/{codespace_name}"], getOrgPublicKey: ["GET /orgs/{org}/codespaces/secrets/public-key"], getOrgSecret: ["GET /orgs/{org}/codespaces/secrets/{secret_name}"], getPublicKeyForAuthenticatedUser: [ "GET /user/codespaces/secrets/public-key" ], getRepoPublicKey: [ "GET /repos/{owner}/{repo}/codespaces/secrets/public-key" ], getRepoSecret: [ "GET /repos/{owner}/{repo}/codespaces/secrets/{secret_name}" ], getSecretForAuthenticatedUser: [ "GET /user/codespaces/secrets/{secret_name}" ], listDevcontainersInRepositoryForAuthenticatedUser: [ "GET /repos/{owner}/{repo}/codespaces/devcontainers" ], listForAuthenticatedUser: ["GET /user/codespaces"], listInOrganization: [ "GET /orgs/{org}/codespaces", {}, { renamedParameters: { org_id: "org" } } ], listInRepositoryForAuthenticatedUser: [ "GET /repos/{owner}/{repo}/codespaces" ], listOrgSecrets: ["GET /orgs/{org}/codespaces/secrets"], listRepoSecrets: ["GET /repos/{owner}/{repo}/codespaces/secrets"], listRepositoriesForSecretForAuthenticatedUser: [ "GET /user/codespaces/secrets/{secret_name}/repositories" ], listSecretsForAuthenticatedUser: ["GET /user/codespaces/secrets"], listSelectedReposForOrgSecret: [ "GET /orgs/{org}/codespaces/secrets/{secret_name}/repositories" ], preFlightWithRepoForAuthenticatedUser: [ "GET /repos/{owner}/{repo}/codespaces/new" ], publishForAuthenticatedUser: [ "POST /user/codespaces/{codespace_name}/publish" ], removeRepositoryForSecretForAuthenticatedUser: [ "DELETE /user/codespaces/secrets/{secret_name}/repositories/{repository_id}" ], removeSelectedRepoFromOrgSecret: [ "DELETE /orgs/{org}/codespaces/secrets/{secret_name}/repositories/{repository_id}" ], repoMachinesForAuthenticatedUser: [ "GET /repos/{owner}/{repo}/codespaces/machines" ], setRepositoriesForSecretForAuthenticatedUser: [ "PUT /user/codespaces/secrets/{secret_name}/repositories" ], setSelectedReposForOrgSecret: [ "PUT /orgs/{org}/codespaces/secrets/{secret_name}/repositories" ], startForAuthenticatedUser: ["POST /user/codespaces/{codespace_name}/start"], stopForAuthenticatedUser: ["POST /user/codespaces/{codespace_name}/stop"], stopInOrganization: [ "POST /orgs/{org}/members/{username}/codespaces/{codespace_name}/stop" ], updateForAuthenticatedUser: ["PATCH /user/codespaces/{codespace_name}"] }, copilot: { addCopilotSeatsForTeams: [ "POST /orgs/{org}/copilot/billing/selected_teams" ], addCopilotSeatsForUsers: [ "POST /orgs/{org}/copilot/billing/selected_users" ], cancelCopilotSeatAssignmentForTeams: [ "DELETE /orgs/{org}/copilot/billing/selected_teams" ], cancelCopilotSeatAssignmentForUsers: [ "DELETE /orgs/{org}/copilot/billing/selected_users" ], getCopilotOrganizationDetails: ["GET /orgs/{org}/copilot/billing"], getCopilotSeatDetailsForUser: [ "GET /orgs/{org}/members/{username}/copilot" ], listCopilotSeats: ["GET /orgs/{org}/copilot/billing/seats"] }, dependabot: { addSelectedRepoToOrgSecret: [ "PUT /orgs/{org}/dependabot/secrets/{secret_name}/repositories/{repository_id}" ], createOrUpdateOrgSecret: [ "PUT /orgs/{org}/dependabot/secrets/{secret_name}" ], createOrUpdateRepoSecret: [ "PUT /repos/{owner}/{repo}/dependabot/secrets/{secret_name}" ], deleteOrgSecret: ["DELETE /orgs/{org}/dependabot/secrets/{secret_name}"], deleteRepoSecret: [ "DELETE /repos/{owner}/{repo}/dependabot/secrets/{secret_name}" ], getAlert: ["GET /repos/{owner}/{repo}/dependabot/alerts/{alert_number}"], getOrgPublicKey: ["GET /orgs/{org}/dependabot/secrets/public-key"], getOrgSecret: ["GET /orgs/{org}/dependabot/secrets/{secret_name}"], getRepoPublicKey: [ "GET /repos/{owner}/{repo}/dependabot/secrets/public-key" ], getRepoSecret: [ "GET /repos/{owner}/{repo}/dependabot/secrets/{secret_name}" ], listAlertsForEnterprise: [ "GET /enterprises/{enterprise}/dependabot/alerts" ], listAlertsForOrg: ["GET /orgs/{org}/dependabot/alerts"], listAlertsForRepo: ["GET /repos/{owner}/{repo}/dependabot/alerts"], listOrgSecrets: ["GET /orgs/{org}/dependabot/secrets"], listRepoSecrets: ["GET /repos/{owner}/{repo}/dependabot/secrets"], listSelectedReposForOrgSecret: [ "GET /orgs/{org}/dependabot/secrets/{secret_name}/repositories" ], removeSelectedRepoFromOrgSecret: [ "DELETE /orgs/{org}/dependabot/secrets/{secret_name}/repositories/{repository_id}" ], setSelectedReposForOrgSecret: [ "PUT /orgs/{org}/dependabot/secrets/{secret_name}/repositories" ], updateAlert: [ "PATCH /repos/{owner}/{repo}/dependabot/alerts/{alert_number}" ] }, dependencyGraph: { createRepositorySnapshot: [ "POST /repos/{owner}/{repo}/dependency-graph/snapshots" ], diffRange: [ "GET /repos/{owner}/{repo}/dependency-graph/compare/{basehead}" ], exportSbom: ["GET /repos/{owner}/{repo}/dependency-graph/sbom"] }, emojis: { get: ["GET /emojis"] }, gists: { checkIsStarred: ["GET /gists/{gist_id}/star"], create: ["POST /gists"], createComment: ["POST /gists/{gist_id}/comments"], delete: ["DELETE /gists/{gist_id}"], deleteComment: ["DELETE /gists/{gist_id}/comments/{comment_id}"], fork: ["POST /gists/{gist_id}/forks"], get: ["GET /gists/{gist_id}"], getComment: ["GET /gists/{gist_id}/comments/{comment_id}"], getRevision: ["GET /gists/{gist_id}/{sha}"], list: ["GET /gists"], listComments: ["GET /gists/{gist_id}/comments"], listCommits: ["GET /gists/{gist_id}/commits"], listForUser: ["GET /users/{username}/gists"], listForks: ["GET /gists/{gist_id}/forks"], listPublic: ["GET /gists/public"], listStarred: ["GET /gists/starred"], star: ["PUT /gists/{gist_id}/star"], unstar: ["DELETE /gists/{gist_id}/star"], update: ["PATCH /gists/{gist_id}"], updateComment: ["PATCH /gists/{gist_id}/comments/{comment_id}"] }, git: { createBlob: ["POST /repos/{owner}/{repo}/git/blobs"], createCommit: ["POST /repos/{owner}/{repo}/git/commits"], createRef: ["POST /repos/{owner}/{repo}/git/refs"], createTag: ["POST /repos/{owner}/{repo}/git/tags"], createTree: ["POST /repos/{owner}/{repo}/git/trees"], deleteRef: ["DELETE /repos/{owner}/{repo}/git/refs/{ref}"], getBlob: ["GET /repos/{owner}/{repo}/git/blobs/{file_sha}"], getCommit: ["GET /repos/{owner}/{repo}/git/commits/{commit_sha}"], getRef: ["GET /repos/{owner}/{repo}/git/ref/{ref}"], getTag: ["GET /repos/{owner}/{repo}/git/tags/{tag_sha}"], getTree: ["GET /repos/{owner}/{repo}/git/trees/{tree_sha}"], listMatchingRefs: ["GET /repos/{owner}/{repo}/git/matching-refs/{ref}"], updateRef: ["PATCH /repos/{owner}/{repo}/git/refs/{ref}"] }, gitignore: { getAllTemplates: ["GET /gitignore/templates"], getTemplate: ["GET /gitignore/templates/{name}"] }, interactions: { getRestrictionsForAuthenticatedUser: ["GET /user/interaction-limits"], getRestrictionsForOrg: ["GET /orgs/{org}/interaction-limits"], getRestrictionsForRepo: ["GET /repos/{owner}/{repo}/interaction-limits"], getRestrictionsForYourPublicRepos: [ "GET /user/interaction-limits", {}, { renamed: ["interactions", "getRestrictionsForAuthenticatedUser"] } ], removeRestrictionsForAuthenticatedUser: ["DELETE /user/interaction-limits"], removeRestrictionsForOrg: ["DELETE /orgs/{org}/interaction-limits"], removeRestrictionsForRepo: [ "DELETE /repos/{owner}/{repo}/interaction-limits" ], removeRestrictionsForYourPublicRepos: [ "DELETE /user/interaction-limits", {}, { renamed: ["interactions", "removeRestrictionsForAuthenticatedUser"] } ], setRestrictionsForAuthenticatedUser: ["PUT /user/interaction-limits"], setRestrictionsForOrg: ["PUT /orgs/{org}/interaction-limits"], setRestrictionsForRepo: ["PUT /repos/{owner}/{repo}/interaction-limits"], setRestrictionsForYourPublicRepos: [ "PUT /user/interaction-limits", {}, { renamed: ["interactions", "setRestrictionsForAuthenticatedUser"] } ] }, issues: { addAssignees: [ "POST /repos/{owner}/{repo}/issues/{issue_number}/assignees" ], addLabels: ["POST /repos/{owner}/{repo}/issues/{issue_number}/labels"], checkUserCanBeAssigned: ["GET /repos/{owner}/{repo}/assignees/{assignee}"], checkUserCanBeAssignedToIssue: [ "GET /repos/{owner}/{repo}/issues/{issue_number}/assignees/{assignee}" ], create: ["POST /repos/{owner}/{repo}/issues"], createComment: [ "POST /repos/{owner}/{repo}/issues/{issue_number}/comments" ], createLabel: ["POST /repos/{owner}/{repo}/labels"], createMilestone: ["POST /repos/{owner}/{repo}/milestones"], deleteComment: [ "DELETE /repos/{owner}/{repo}/issues/comments/{comment_id}" ], deleteLabel: ["DELETE /repos/{owner}/{repo}/labels/{name}"], deleteMilestone: [ "DELETE /repos/{owner}/{repo}/milestones/{milestone_number}" ], get: ["GET /repos/{owner}/{repo}/issues/{issue_number}"], getComment: ["GET /repos/{owner}/{repo}/issues/comments/{comment_id}"], getEvent: ["GET /repos/{owner}/{repo}/issues/events/{event_id}"], getLabel: ["GET /repos/{owner}/{repo}/labels/{name}"], getMilestone: ["GET /repos/{owner}/{repo}/milestones/{milestone_number}"], list: ["GET /issues"], listAssignees: ["GET /repos/{owner}/{repo}/assignees"], listComments: ["GET /repos/{owner}/{repo}/issues/{issue_number}/comments"], listCommentsForRepo: ["GET /repos/{owner}/{repo}/issues/comments"], listEvents: ["GET /repos/{owner}/{repo}/issues/{issue_number}/events"], listEventsForRepo: ["GET /repos/{owner}/{repo}/issues/events"], listEventsForTimeline: [ "GET /repos/{owner}/{repo}/issues/{issue_number}/timeline" ], listForAuthenticatedUser: ["GET /user/issues"], listForOrg: ["GET /orgs/{org}/issues"], listForRepo: ["GET /repos/{owner}/{repo}/issues"], listLabelsForMilestone: [ "GET /repos/{owner}/{repo}/milestones/{milestone_number}/labels" ], listLabelsForRepo: ["GET /repos/{owner}/{repo}/labels"], listLabelsOnIssue: [ "GET /repos/{owner}/{repo}/issues/{issue_number}/labels" ], listMilestones: ["GET /repos/{owner}/{repo}/milestones"], lock: ["PUT /repos/{owner}/{repo}/issues/{issue_number}/lock"], removeAllLabels: [ "DELETE /repos/{owner}/{repo}/issues/{issue_number}/labels" ], removeAssignees: [ "DELETE /repos/{owner}/{repo}/issues/{issue_number}/assignees" ], removeLabel: [ "DELETE /repos/{owner}/{repo}/issues/{issue_number}/labels/{name}" ], setLabels: ["PUT /repos/{owner}/{repo}/issues/{issue_number}/labels"], unlock: ["DELETE /repos/{owner}/{repo}/issues/{issue_number}/lock"], update: ["PATCH /repos/{owner}/{repo}/issues/{issue_number}"], updateComment: ["PATCH /repos/{owner}/{repo}/issues/comments/{comment_id}"], updateLabel: ["PATCH /repos/{owner}/{repo}/labels/{name}"], updateMilestone: [ "PATCH /repos/{owner}/{repo}/milestones/{milestone_number}" ] }, licenses: { get: ["GET /licenses/{license}"], getAllCommonlyUsed: ["GET /licenses"], getForRepo: ["GET /repos/{owner}/{repo}/license"] }, markdown: { render: ["POST /markdown"], renderRaw: [ "POST /markdown/raw", { headers: { "content-type": "text/plain; charset=utf-8" } } ] }, meta: { get: ["GET /meta"], getAllVersions: ["GET /versions"], getOctocat: ["GET /octocat"], getZen: ["GET /zen"], root: ["GET /"] }, migrations: { cancelImport: [ "DELETE /repos/{owner}/{repo}/import", {}, { deprecated: "octokit.rest.migrations.cancelImport() is deprecated, see https://docs.github.com/rest/migrations/source-imports#cancel-an-import" } ], deleteArchiveForAuthenticatedUser: [ "DELETE /user/migrations/{migration_id}/archive" ], deleteArchiveForOrg: [ "DELETE /orgs/{org}/migrations/{migration_id}/archive" ], downloadArchiveForOrg: [ "GET /orgs/{org}/migrations/{migration_id}/archive" ], getArchiveForAuthenticatedUser: [ "GET /user/migrations/{migration_id}/archive" ], getCommitAuthors: [ "GET /repos/{owner}/{repo}/import/authors", {}, { deprecated: "octokit.rest.migrations.getCommitAuthors() is deprecated, see https://docs.github.com/rest/migrations/source-imports#get-commit-authors" } ], getImportStatus: [ "GET /repos/{owner}/{repo}/import", {}, { deprecated: "octokit.rest.migrations.getImportStatus() is deprecated, see https://docs.github.com/rest/migrations/source-imports#get-an-import-status" } ], getLargeFiles: [ "GET /repos/{owner}/{repo}/import/large_files", {}, { deprecated: "octokit.rest.migrations.getLargeFiles() is deprecated, see https://docs.github.com/rest/migrations/source-imports#get-large-files" } ], getStatusForAuthenticatedUser: ["GET /user/migrations/{migration_id}"], getStatusForOrg: ["GET /orgs/{org}/migrations/{migration_id}"], listForAuthenticatedUser: ["GET /user/migrations"], listForOrg: ["GET /orgs/{org}/migrations"], listReposForAuthenticatedUser: [ "GET /user/migrations/{migration_id}/repositories" ], listReposForOrg: ["GET /orgs/{org}/migrations/{migration_id}/repositories"], listReposForUser: [ "GET /user/migrations/{migration_id}/repositories", {}, { renamed: ["migrations", "listReposForAuthenticatedUser"] } ], mapCommitAuthor: [ "PATCH /repos/{owner}/{repo}/import/authors/{author_id}", {}, { deprecated: "octokit.rest.migrations.mapCommitAuthor() is deprecated, see https://docs.github.com/rest/migrations/source-imports#map-a-commit-author" } ], setLfsPreference: [ "PATCH /repos/{owner}/{repo}/import/lfs", {}, { deprecated: "octokit.rest.migrations.setLfsPreference() is deprecated, see https://docs.github.com/rest/migrations/source-imports#update-git-lfs-preference" } ], startForAuthenticatedUser: ["POST /user/migrations"], startForOrg: ["POST /orgs/{org}/migrations"], startImport: [ "PUT /repos/{owner}/{repo}/import", {}, { deprecated: "octokit.rest.migrations.startImport() is deprecated, see https://docs.github.com/rest/migrations/source-imports#start-an-import" } ], unlockRepoForAuthenticatedUser: [ "DELETE /user/migrations/{migration_id}/repos/{repo_name}/lock" ], unlockRepoForOrg: [ "DELETE /orgs/{org}/migrations/{migration_id}/repos/{repo_name}/lock" ], updateImport: [ "PATCH /repos/{owner}/{repo}/import", {}, { deprecated: "octokit.rest.migrations.updateImport() is deprecated, see https://docs.github.com/rest/migrations/source-imports#update-an-import" } ] }, oidc: { getOidcCustomSubTemplateForOrg: [ "GET /orgs/{org}/actions/oidc/customization/sub" ], updateOidcCustomSubTemplateForOrg: [ "PUT /orgs/{org}/actions/oidc/customization/sub" ] }, orgs: { addSecurityManagerTeam: [ "PUT /orgs/{org}/security-managers/teams/{team_slug}" ], assignTeamToOrgRole: [ "PUT /orgs/{org}/organization-roles/teams/{team_slug}/{role_id}" ], assignUserToOrgRole: [ "PUT /orgs/{org}/organization-roles/users/{username}/{role_id}" ], blockUser: ["PUT /orgs/{org}/blocks/{username}"], cancelInvitation: ["DELETE /orgs/{org}/invitations/{invitation_id}"], checkBlockedUser: ["GET /orgs/{org}/blocks/{username}"], checkMembershipForUser: ["GET /orgs/{org}/members/{username}"], checkPublicMembershipForUser: ["GET /orgs/{org}/public_members/{username}"], convertMemberToOutsideCollaborator: [ "PUT /orgs/{org}/outside_collaborators/{username}" ], createCustomOrganizationRole: ["POST /orgs/{org}/organization-roles"], createInvitation: ["POST /orgs/{org}/invitations"], createOrUpdateCustomProperties: ["PATCH /orgs/{org}/properties/schema"], createOrUpdateCustomPropertiesValuesForRepos: [ "PATCH /orgs/{org}/properties/values" ], createOrUpdateCustomProperty: [ "PUT /orgs/{org}/properties/schema/{custom_property_name}" ], createWebhook: ["POST /orgs/{org}/hooks"], delete: ["DELETE /orgs/{org}"], deleteCustomOrganizationRole: [ "DELETE /orgs/{org}/organization-roles/{role_id}" ], deleteWebhook: ["DELETE /orgs/{org}/hooks/{hook_id}"], enableOrDisableSecurityProductOnAllOrgRepos: [ "POST /orgs/{org}/{security_product}/{enablement}" ], get: ["GET /orgs/{org}"], getAllCustomProperties: ["GET /orgs/{org}/properties/schema"], getCustomProperty: [ "GET /orgs/{org}/properties/schema/{custom_property_name}" ], getMembershipForAuthenticatedUser: ["GET /user/memberships/orgs/{org}"], getMembershipForUser: ["GET /orgs/{org}/memberships/{username}"], getOrgRole: ["GET /orgs/{org}/organization-roles/{role_id}"], getWebhook: ["GET /orgs/{org}/hooks/{hook_id}"], getWebhookConfigForOrg: ["GET /orgs/{org}/hooks/{hook_id}/config"], getWebhookDelivery: [ "GET /orgs/{org}/hooks/{hook_id}/deliveries/{delivery_id}" ], list: ["GET /organizations"], listAppInstallations: ["GET /orgs/{org}/installations"], listBlockedUsers: ["GET /orgs/{org}/blocks"], listCustomPropertiesValuesForRepos: ["GET /orgs/{org}/properties/values"], listFailedInvitations: ["GET /orgs/{org}/failed_invitations"], listForAuthenticatedUser: ["GET /user/orgs"], listForUser: ["GET /users/{username}/orgs"], listInvitationTeams: ["GET /orgs/{org}/invitations/{invitation_id}/teams"], listMembers: ["GET /orgs/{org}/members"], listMembershipsForAuthenticatedUser: ["GET /user/memberships/orgs"], listOrgRoleTeams: ["GET /orgs/{org}/organization-roles/{role_id}/teams"], listOrgRoleUsers: ["GET /orgs/{org}/organization-roles/{role_id}/users"], listOrgRoles: ["GET /orgs/{org}/organization-roles"], listOrganizationFineGrainedPermissions: [ "GET /orgs/{org}/organization-fine-grained-permissions" ], listOutsideCollaborators: ["GET /orgs/{org}/outside_collaborators"], listPatGrantRepositories: [ "GET /orgs/{org}/personal-access-tokens/{pat_id}/repositories" ], listPatGrantRequestRepositories: [ "GET /orgs/{org}/personal-access-token-requests/{pat_request_id}/repositories" ], listPatGrantRequests: ["GET /orgs/{org}/personal-access-token-requests"], listPatGrants: ["GET /orgs/{org}/personal-access-tokens"], listPendingInvitations: ["GET /orgs/{org}/invitations"], listPublicMembers: ["GET /orgs/{org}/public_members"], listSecurityManagerTeams: ["GET /orgs/{org}/security-managers"], listWebhookDeliveries: ["GET /orgs/{org}/hooks/{hook_id}/deliveries"], listWebhooks: ["GET /orgs/{org}/hooks"], patchCustomOrganizationRole: [ "PATCH /orgs/{org}/organization-roles/{role_id}" ], pingWebhook: ["POST /orgs/{org}/hooks/{hook_id}/pings"], redeliverWebhookDelivery: [ "POST /orgs/{org}/hooks/{hook_id}/deliveries/{delivery_id}/attempts" ], removeCustomProperty: [ "DELETE /orgs/{org}/properties/schema/{custom_property_name}" ], removeMember: ["DELETE /orgs/{org}/members/{username}"], removeMembershipForUser: ["DELETE /orgs/{org}/memberships/{username}"], removeOutsideCollaborator: [ "DELETE /orgs/{org}/outside_collaborators/{username}" ], removePublicMembershipForAuthenticatedUser: [ "DELETE /orgs/{org}/public_members/{username}" ], removeSecurityManagerTeam: [ "DELETE /orgs/{org}/security-managers/teams/{team_slug}" ], reviewPatGrantRequest: [ "POST /orgs/{org}/personal-access-token-requests/{pat_request_id}" ], reviewPatGrantRequestsInBulk: [ "POST /orgs/{org}/personal-access-token-requests" ], revokeAllOrgRolesTeam: [ "DELETE /orgs/{org}/organization-roles/teams/{team_slug}" ], revokeAllOrgRolesUser: [ "DELETE /orgs/{org}/organization-roles/users/{username}" ], revokeOrgRoleTeam: [ "DELETE /orgs/{org}/organization-roles/teams/{team_slug}/{role_id}" ], revokeOrgRoleUser: [ "DELETE /orgs/{org}/organization-roles/users/{username}/{role_id}" ], setMembershipForUser: ["PUT /orgs/{org}/memberships/{username}"], setPublicMembershipForAuthenticatedUser: [ "PUT /orgs/{org}/public_members/{username}" ], unblockUser: ["DELETE /orgs/{org}/blocks/{username}"], update: ["PATCH /orgs/{org}"], updateMembershipForAuthenticatedUser: [ "PATCH /user/memberships/orgs/{org}" ], updatePatAccess: ["POST /orgs/{org}/personal-access-tokens/{pat_id}"], updatePatAccesses: ["POST /orgs/{org}/personal-access-tokens"], updateWebhook: ["PATCH /orgs/{org}/hooks/{hook_id}"], updateWebhookConfigForOrg: ["PATCH /orgs/{org}/hooks/{hook_id}/config"] }, packages: { deletePackageForAuthenticatedUser: [ "DELETE /user/packages/{package_type}/{package_name}" ], deletePackageForOrg: [ "DELETE /orgs/{org}/packages/{package_type}/{package_name}" ], deletePackageForUser: [ "DELETE /users/{username}/packages/{package_type}/{package_name}" ], deletePackageVersionForAuthenticatedUser: [ "DELETE /user/packages/{package_type}/{package_name}/versions/{package_version_id}" ], deletePackageVersionForOrg: [ "DELETE /orgs/{org}/packages/{package_type}/{package_name}/versions/{package_version_id}" ], deletePackageVersionForUser: [ "DELETE /users/{username}/packages/{package_type}/{package_name}/versions/{package_version_id}" ], getAllPackageVersionsForAPackageOwnedByAnOrg: [ "GET /orgs/{org}/packages/{package_type}/{package_name}/versions", {}, { renamed: ["packages", "getAllPackageVersionsForPackageOwnedByOrg"] } ], getAllPackageVersionsForAPackageOwnedByTheAuthenticatedUser: [ "GET /user/packages/{package_type}/{package_name}/versions", {}, { renamed: [ "packages", "getAllPackageVersionsForPackageOwnedByAuthenticatedUser" ] } ], getAllPackageVersionsForPackageOwnedByAuthenticatedUser: [ "GET /user/packages/{package_type}/{package_name}/versions" ], getAllPackageVersionsForPackageOwnedByOrg: [ "GET /orgs/{org}/packages/{package_type}/{package_name}/versions" ], getAllPackageVersionsForPackageOwnedByUser: [ "GET /users/{username}/packages/{package_type}/{package_name}/versions" ], getPackageForAuthenticatedUser: [ "GET /user/packages/{package_type}/{package_name}" ], getPackageForOrganization: [ "GET /orgs/{org}/packages/{package_type}/{package_name}" ], getPackageForUser: [ "GET /users/{username}/packages/{package_type}/{package_name}" ], getPackageVersionForAuthenticatedUser: [ "GET /user/packages/{package_type}/{package_name}/versions/{package_version_id}" ], getPackageVersionForOrganization: [ "GET /orgs/{org}/packages/{package_type}/{package_name}/versions/{package_version_id}" ], getPackageVersionForUser: [ "GET /users/{username}/packages/{package_type}/{package_name}/versions/{package_version_id}" ], listDockerMigrationConflictingPackagesForAuthenticatedUser: [ "GET /user/docker/conflicts" ], listDockerMigrationConflictingPackagesForOrganization: [ "GET /orgs/{org}/docker/conflicts" ], listDockerMigrationConflictingPackagesForUser: [ "GET /users/{username}/docker/conflicts" ], listPackagesForAuthenticatedUser: ["GET /user/packages"], listPackagesForOrganization: ["GET /orgs/{org}/packages"], listPackagesForUser: ["GET /users/{username}/packages"], restorePackageForAuthenticatedUser: [ "POST /user/packages/{package_type}/{package_name}/restore{?token}" ], restorePackageForOrg: [ "POST /orgs/{org}/packages/{package_type}/{package_name}/restore{?token}" ], restorePackageForUser: [ "POST /users/{username}/packages/{package_type}/{package_name}/restore{?token}" ], restorePackageVersionForAuthenticatedUser: [ "POST /user/packages/{package_type}/{package_name}/versions/{package_version_id}/restore" ], restorePackageVersionForOrg: [ "POST /orgs/{org}/packages/{package_type}/{package_name}/versions/{package_version_id}/restore" ], restorePackageVersionForUser: [ "POST /users/{username}/packages/{package_type}/{package_name}/versions/{package_version_id}/restore" ] }, projects: { addCollaborator: ["PUT /projects/{project_id}/collaborators/{username}"], createCard: ["POST /projects/columns/{column_id}/cards"], createColumn: ["POST /projects/{project_id}/columns"], createForAuthenticatedUser: ["POST /user/projects"], createForOrg: ["POST /orgs/{org}/projects"], createForRepo: ["POST /repos/{owner}/{repo}/projects"], delete: ["DELETE /projects/{project_id}"], deleteCard: ["DELETE /projects/columns/cards/{card_id}"], deleteColumn: ["DELETE /projects/columns/{column_id}"], get: ["GET /projects/{project_id}"], getCard: ["GET /projects/columns/cards/{card_id}"], getColumn: ["GET /projects/columns/{column_id}"], getPermissionForUser: [ "GET /projects/{project_id}/collaborators/{username}/permission" ], listCards: ["GET /projects/columns/{column_id}/cards"], listCollaborators: ["GET /projects/{project_id}/collaborators"], listColumns: ["GET /projects/{project_id}/columns"], listForOrg: ["GET /orgs/{org}/projects"], listForRepo: ["GET /repos/{owner}/{repo}/projects"], listForUser: ["GET /users/{username}/projects"], moveCard: ["POST /projects/columns/cards/{card_id}/moves"], moveColumn: ["POST /projects/columns/{column_id}/moves"], removeCollaborator: [ "DELETE /projects/{project_id}/collaborators/{username}" ], update: ["PATCH /projects/{project_id}"], updateCard: ["PATCH /projects/columns/cards/{card_id}"], updateColumn: ["PATCH /projects/columns/{column_id}"] }, pulls: { checkIfMerged: ["GET /repos/{owner}/{repo}/pulls/{pull_number}/merge"], create: ["POST /repos/{owner}/{repo}/pulls"], createReplyForReviewComment: [ "POST /repos/{owner}/{repo}/pulls/{pull_number}/comments/{comment_id}/replies" ], createReview: ["POST /repos/{owner}/{repo}/pulls/{pull_number}/reviews"], createReviewComment: [ "POST /repos/{owner}/{repo}/pulls/{pull_number}/comments" ], deletePendingReview: [ "DELETE /repos/{owner}/{repo}/pulls/{pull_number}/reviews/{review_id}" ], deleteReviewComment: [ "DELETE /repos/{owner}/{repo}/pulls/comments/{comment_id}" ], dismissReview: [ "PUT /repos/{owner}/{repo}/pulls/{pull_number}/reviews/{review_id}/dismissals" ], get: ["GET /repos/{owner}/{repo}/pulls/{pull_number}"], getReview: [ "GET /repos/{owner}/{repo}/pulls/{pull_number}/reviews/{review_id}" ], getReviewComment: ["GET /repos/{owner}/{repo}/pulls/comments/{comment_id}"], list: ["GET /repos/{owner}/{repo}/pulls"], listCommentsForReview: [ "GET /repos/{owner}/{repo}/pulls/{pull_number}/reviews/{review_id}/comments" ], listCommits: ["GET /repos/{owner}/{repo}/pulls/{pull_number}/commits"], listFiles: ["GET /repos/{owner}/{repo}/pulls/{pull_number}/files"], listRequestedReviewers: [ "GET /repos/{owner}/{repo}/pulls/{pull_number}/requested_reviewers" ], listReviewComments: [ "GET /repos/{owner}/{repo}/pulls/{pull_number}/comments" ], listReviewCommentsForRepo: ["GET /repos/{owner}/{repo}/pulls/comments"], listReviews: ["GET /repos/{owner}/{repo}/pulls/{pull_number}/reviews"], merge: ["PUT /repos/{owner}/{repo}/pulls/{pull_number}/merge"], removeRequestedReviewers: [ "DELETE /repos/{owner}/{repo}/pulls/{pull_number}/requested_reviewers" ], requestReviewers: [ "POST /repos/{owner}/{repo}/pulls/{pull_number}/requested_reviewers" ], submitReview: [ "POST /repos/{owner}/{repo}/pulls/{pull_number}/reviews/{review_id}/events" ], update: ["PATCH /repos/{owner}/{repo}/pulls/{pull_number}"], updateBranch: [ "PUT /repos/{owner}/{repo}/pulls/{pull_number}/update-branch" ], updateReview: [ "PUT /repos/{owner}/{repo}/pulls/{pull_number}/reviews/{review_id}" ], updateReviewComment: [ "PATCH /repos/{owner}/{repo}/pulls/comments/{comment_id}" ] }, rateLimit: { get: ["GET /rate_limit"] }, reactions: { createForCommitComment: [ "POST /repos/{owner}/{repo}/comments/{comment_id}/reactions" ], createForIssue: [ "POST /repos/{owner}/{repo}/issues/{issue_number}/reactions" ], createForIssueComment: [ "POST /repos/{owner}/{repo}/issues/comments/{comment_id}/reactions" ], createForPullRequestReviewComment: [ "POST /repos/{owner}/{repo}/pulls/comments/{comment_id}/reactions" ], createForRelease: [ "POST /repos/{owner}/{repo}/releases/{release_id}/reactions" ], createForTeamDiscussionCommentInOrg: [ "POST /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments/{comment_number}/reactions" ], createForTeamDiscussionInOrg: [ "POST /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/reactions" ], deleteForCommitComment: [ "DELETE /repos/{owner}/{repo}/comments/{comment_id}/reactions/{reaction_id}" ], deleteForIssue: [ "DELETE /repos/{owner}/{repo}/issues/{issue_number}/reactions/{reaction_id}" ], deleteForIssueComment: [ "DELETE /repos/{owner}/{repo}/issues/comments/{comment_id}/reactions/{reaction_id}" ], deleteForPullRequestComment: [ "DELETE /repos/{owner}/{repo}/pulls/comments/{comment_id}/reactions/{reaction_id}" ], deleteForRelease: [ "DELETE /repos/{owner}/{repo}/releases/{release_id}/reactions/{reaction_id}" ], deleteForTeamDiscussion: [ "DELETE /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/reactions/{reaction_id}" ], deleteForTeamDiscussionComment: [ "DELETE /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments/{comment_number}/reactions/{reaction_id}" ], listForCommitComment: [ "GET /repos/{owner}/{repo}/comments/{comment_id}/reactions" ], listForIssue: ["GET /repos/{owner}/{repo}/issues/{issue_number}/reactions"], listForIssueComment: [ "GET /repos/{owner}/{repo}/issues/comments/{comment_id}/reactions" ], listForPullRequestReviewComment: [ "GET /repos/{owner}/{repo}/pulls/comments/{comment_id}/reactions" ], listForRelease: [ "GET /repos/{owner}/{repo}/releases/{release_id}/reactions" ], listForTeamDiscussionCommentInOrg: [ "GET /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments/{comment_number}/reactions" ], listForTeamDiscussionInOrg: [ "GET /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/reactions" ] }, repos: { acceptInvitation: [ "PATCH /user/repository_invitations/{invitation_id}", {}, { renamed: ["repos", "acceptInvitationForAuthenticatedUser"] } ], acceptInvitationForAuthenticatedUser: [ "PATCH /user/repository_invitations/{invitation_id}" ], addAppAccessRestrictions: [ "POST /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/apps", {}, { mapToData: "apps" } ], addCollaborator: ["PUT /repos/{owner}/{repo}/collaborators/{username}"], addStatusCheckContexts: [ "POST /repos/{owner}/{repo}/branches/{branch}/protection/required_status_checks/contexts", {}, { mapToData: "contexts" } ], addTeamAccessRestrictions: [ "POST /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/teams", {}, { mapToData: "teams" } ], addUserAccessRestrictions: [ "POST /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/users", {}, { mapToData: "users" } ], cancelPagesDeployment: [ "POST /repos/{owner}/{repo}/pages/deployments/{pages_deployment_id}/cancel" ], checkAutomatedSecurityFixes: [ "GET /repos/{owner}/{repo}/automated-security-fixes" ], checkCollaborator: ["GET /repos/{owner}/{repo}/collaborators/{username}"], checkVulnerabilityAlerts: [ "GET /repos/{owner}/{repo}/vulnerability-alerts" ], codeownersErrors: ["GET /repos/{owner}/{repo}/codeowners/errors"], compareCommits: ["GET /repos/{owner}/{repo}/compare/{base}...{head}"], compareCommitsWithBasehead: [ "GET /repos/{owner}/{repo}/compare/{basehead}" ], createAutolink: ["POST /repos/{owner}/{repo}/autolinks"], createCommitComment: [ "POST /repos/{owner}/{repo}/commits/{commit_sha}/comments" ], createCommitSignatureProtection: [ "POST /repos/{owner}/{repo}/branches/{branch}/protection/required_signatures" ], createCommitStatus: ["POST /repos/{owner}/{repo}/statuses/{sha}"], createDeployKey: ["POST /repos/{owner}/{repo}/keys"], createDeployment: ["POST /repos/{owner}/{repo}/deployments"], createDeploymentBranchPolicy: [ "POST /repos/{owner}/{repo}/environments/{environment_name}/deployment-branch-policies" ], createDeploymentProtectionRule: [ "POST /repos/{owner}/{repo}/environments/{environment_name}/deployment_protection_rules" ], createDeploymentStatus: [ "POST /repos/{owner}/{repo}/deployments/{deployment_id}/statuses" ], createDispatchEvent: ["POST /repos/{owner}/{repo}/dispatches"], createForAuthenticatedUser: ["POST /user/repos"], createFork: ["POST /repos/{owner}/{repo}/forks"], createInOrg: ["POST /orgs/{org}/repos"], createOrUpdateCustomPropertiesValues: [ "PATCH /repos/{owner}/{repo}/properties/values" ], createOrUpdateEnvironment: [ "PUT /repos/{owner}/{repo}/environments/{environment_name}" ], createOrUpdateFileContents: ["PUT /repos/{owner}/{repo}/contents/{path}"], createOrgRuleset: ["POST /orgs/{org}/rulesets"], createPagesDeployment: ["POST /repos/{owner}/{repo}/pages/deployments"], createPagesSite: ["POST /repos/{owner}/{repo}/pages"], createRelease: ["POST /repos/{owner}/{repo}/releases"], createRepoRuleset: ["POST /repos/{owner}/{repo}/rulesets"], createTagProtection: ["POST /repos/{owner}/{repo}/tags/protection"], createUsingTemplate: [ "POST /repos/{template_owner}/{template_repo}/generate" ], createWebhook: ["POST /repos/{owner}/{repo}/hooks"], declineInvitation: [ "DELETE /user/repository_invitations/{invitation_id}", {}, { renamed: ["repos", "declineInvitationForAuthenticatedUser"] } ], declineInvitationForAuthenticatedUser: [ "DELETE /user/repository_invitations/{invitation_id}" ], delete: ["DELETE /repos/{owner}/{repo}"], deleteAccessRestrictions: [ "DELETE /repos/{owner}/{repo}/branches/{branch}/protection/restrictions" ], deleteAdminBranchProtection: [ "DELETE /repos/{owner}/{repo}/branches/{branch}/protection/enforce_admins" ], deleteAnEnvironment: [ "DELETE /repos/{owner}/{repo}/environments/{environment_name}" ], deleteAutolink: ["DELETE /repos/{owner}/{repo}/autolinks/{autolink_id}"], deleteBranchProtection: [ "DELETE /repos/{owner}/{repo}/branches/{branch}/protection" ], deleteCommitComment: ["DELETE /repos/{owner}/{repo}/comments/{comment_id}"], deleteCommitSignatureProtection: [ "DELETE /repos/{owner}/{repo}/branches/{branch}/protection/required_signatures" ], deleteDeployKey: ["DELETE /repos/{owner}/{repo}/keys/{key_id}"], deleteDeployment: [ "DELETE /repos/{owner}/{repo}/deployments/{deployment_id}" ], deleteDeploymentBranchPolicy: [ "DELETE /repos/{owner}/{repo}/environments/{environment_name}/deployment-branch-policies/{branch_policy_id}" ], deleteFile: ["DELETE /repos/{owner}/{repo}/contents/{path}"], deleteInvitation: [ "DELETE /repos/{owner}/{repo}/invitations/{invitation_id}" ], deleteOrgRuleset: ["DELETE /orgs/{org}/rulesets/{ruleset_id}"], deletePagesSite: ["DELETE /repos/{owner}/{repo}/pages"], deletePullRequestReviewProtection: [ "DELETE /repos/{owner}/{repo}/branches/{branch}/protection/required_pull_request_reviews" ], deleteRelease: ["DELETE /repos/{owner}/{repo}/releases/{release_id}"], deleteReleaseAsset: [ "DELETE /repos/{owner}/{repo}/releases/assets/{asset_id}" ], deleteRepoRuleset: ["DELETE /repos/{owner}/{repo}/rulesets/{ruleset_id}"], deleteTagProtection: [ "DELETE /repos/{owner}/{repo}/tags/protection/{tag_protection_id}" ], deleteWebhook: ["DELETE /repos/{owner}/{repo}/hooks/{hook_id}"], disableAutomatedSecurityFixes: [ "DELETE /repos/{owner}/{repo}/automated-security-fixes" ], disableDeploymentProtectionRule: [ "DELETE /repos/{owner}/{repo}/environments/{environment_name}/deployment_protection_rules/{protection_rule_id}" ], disablePrivateVulnerabilityReporting: [ "DELETE /repos/{owner}/{repo}/private-vulnerability-reporting" ], disableVulnerabilityAlerts: [ "DELETE /repos/{owner}/{repo}/vulnerability-alerts" ], downloadArchive: [ "GET /repos/{owner}/{repo}/zipball/{ref}", {}, { renamed: ["repos", "downloadZipballArchive"] } ], downloadTarballArchive: ["GET /repos/{owner}/{repo}/tarball/{ref}"], downloadZipballArchive: ["GET /repos/{owner}/{repo}/zipball/{ref}"], enableAutomatedSecurityFixes: [ "PUT /repos/{owner}/{repo}/automated-security-fixes" ], enablePrivateVulnerabilityReporting: [ "PUT /repos/{owner}/{repo}/private-vulnerability-reporting" ], enableVulnerabilityAlerts: [ "PUT /repos/{owner}/{repo}/vulnerability-alerts" ], generateReleaseNotes: [ "POST /repos/{owner}/{repo}/releases/generate-notes" ], get: ["GET /repos/{owner}/{repo}"], getAccessRestrictions: [ "GET /repos/{owner}/{repo}/branches/{branch}/protection/restrictions" ], getAdminBranchProtection: [ "GET /repos/{owner}/{repo}/branches/{branch}/protection/enforce_admins" ], getAllDeploymentProtectionRules: [ "GET /repos/{owner}/{repo}/environments/{environment_name}/deployment_protection_rules" ], getAllEnvironments: ["GET /repos/{owner}/{repo}/environments"], getAllStatusCheckContexts: [ "GET /repos/{owner}/{repo}/branches/{branch}/protection/required_status_checks/contexts" ], getAllTopics: ["GET /repos/{owner}/{repo}/topics"], getAppsWithAccessToProtectedBranch: [ "GET /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/apps" ], getAutolink: ["GET /repos/{owner}/{repo}/autolinks/{autolink_id}"], getBranch: ["GET /repos/{owner}/{repo}/branches/{branch}"], getBranchProtection: [ "GET /repos/{owner}/{repo}/branches/{branch}/protection" ], getBranchRules: ["GET /repos/{owner}/{repo}/rules/branches/{branch}"], getClones: ["GET /repos/{owner}/{repo}/traffic/clones"], getCodeFrequencyStats: ["GET /repos/{owner}/{repo}/stats/code_frequency"], getCollaboratorPermissionLevel: [ "GET /repos/{owner}/{repo}/collaborators/{username}/permission" ], getCombinedStatusForRef: ["GET /repos/{owner}/{repo}/commits/{ref}/status"], getCommit: ["GET /repos/{owner}/{repo}/commits/{ref}"], getCommitActivityStats: ["GET /repos/{owner}/{repo}/stats/commit_activity"], getCommitComment: ["GET /repos/{owner}/{repo}/comments/{comment_id}"], getCommitSignatureProtection: [ "GET /repos/{owner}/{repo}/branches/{branch}/protection/required_signatures" ], getCommunityProfileMetrics: ["GET /repos/{owner}/{repo}/community/profile"], getContent: ["GET /repos/{owner}/{repo}/contents/{path}"], getContributorsStats: ["GET /repos/{owner}/{repo}/stats/contributors"], getCustomDeploymentProtectionRule: [ "GET /repos/{owner}/{repo}/environments/{environment_name}/deployment_protection_rules/{protection_rule_id}" ], getCustomPropertiesValues: ["GET /repos/{owner}/{repo}/properties/values"], getDeployKey: ["GET /repos/{owner}/{repo}/keys/{key_id}"], getDeployment: ["GET /repos/{owner}/{repo}/deployments/{deployment_id}"], getDeploymentBranchPolicy: [ "GET /repos/{owner}/{repo}/environments/{environment_name}/deployment-branch-policies/{branch_policy_id}" ], getDeploymentStatus: [ "GET /repos/{owner}/{repo}/deployments/{deployment_id}/statuses/{status_id}" ], getEnvironment: [ "GET /repos/{owner}/{repo}/environments/{environment_name}" ], getLatestPagesBuild: ["GET /repos/{owner}/{repo}/pages/builds/latest"], getLatestRelease: ["GET /repos/{owner}/{repo}/releases/latest"], getOrgRuleSuite: ["GET /orgs/{org}/rulesets/rule-suites/{rule_suite_id}"], getOrgRuleSuites: ["GET /orgs/{org}/rulesets/rule-suites"], getOrgRuleset: ["GET /orgs/{org}/rulesets/{ruleset_id}"], getOrgRulesets: ["GET /orgs/{org}/rulesets"], getPages: ["GET /repos/{owner}/{repo}/pages"], getPagesBuild: ["GET /repos/{owner}/{repo}/pages/builds/{build_id}"], getPagesDeployment: [ "GET /repos/{owner}/{repo}/pages/deployments/{pages_deployment_id}" ], getPagesHealthCheck: ["GET /repos/{owner}/{repo}/pages/health"], getParticipationStats: ["GET /repos/{owner}/{repo}/stats/participation"], getPullRequestReviewProtection: [ "GET /repos/{owner}/{repo}/branches/{branch}/protection/required_pull_request_reviews" ], getPunchCardStats: ["GET /repos/{owner}/{repo}/stats/punch_card"], getReadme: ["GET /repos/{owner}/{repo}/readme"], getReadmeInDirectory: ["GET /repos/{owner}/{repo}/readme/{dir}"], getRelease: ["GET /repos/{owner}/{repo}/releases/{release_id}"], getReleaseAsset: ["GET /repos/{owner}/{repo}/releases/assets/{asset_id}"], getReleaseByTag: ["GET /repos/{owner}/{repo}/releases/tags/{tag}"], getRepoRuleSuite: [ "GET /repos/{owner}/{repo}/rulesets/rule-suites/{rule_suite_id}" ], getRepoRuleSuites: ["GET /repos/{owner}/{repo}/rulesets/rule-suites"], getRepoRuleset: ["GET /repos/{owner}/{repo}/rulesets/{ruleset_id}"], getRepoRulesets: ["GET /repos/{owner}/{repo}/rulesets"], getStatusChecksProtection: [ "GET /repos/{owner}/{repo}/branches/{branch}/protection/required_status_checks" ], getTeamsWithAccessToProtectedBranch: [ "GET /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/teams" ], getTopPaths: ["GET /repos/{owner}/{repo}/traffic/popular/paths"], getTopReferrers: ["GET /repos/{owner}/{repo}/traffic/popular/referrers"], getUsersWithAccessToProtectedBranch: [ "GET /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/users" ], getViews: ["GET /repos/{owner}/{repo}/traffic/views"], getWebhook: ["GET /repos/{owner}/{repo}/hooks/{hook_id}"], getWebhookConfigForRepo: [ "GET /repos/{owner}/{repo}/hooks/{hook_id}/config" ], getWebhookDelivery: [ "GET /repos/{owner}/{repo}/hooks/{hook_id}/deliveries/{delivery_id}" ], listActivities: ["GET /repos/{owner}/{repo}/activity"], listAutolinks: ["GET /repos/{owner}/{repo}/autolinks"], listBranches: ["GET /repos/{owner}/{repo}/branches"], listBranchesForHeadCommit: [ "GET /repos/{owner}/{repo}/commits/{commit_sha}/branches-where-head" ], listCollaborators: ["GET /repos/{owner}/{repo}/collaborators"], listCommentsForCommit: [ "GET /repos/{owner}/{repo}/commits/{commit_sha}/comments" ], listCommitCommentsForRepo: ["GET /repos/{owner}/{repo}/comments"], listCommitStatusesForRef: [ "GET /repos/{owner}/{repo}/commits/{ref}/statuses" ], listCommits: ["GET /repos/{owner}/{repo}/commits"], listContributors: ["GET /repos/{owner}/{repo}/contributors"], listCustomDeploymentRuleIntegrations: [ "GET /repos/{owner}/{repo}/environments/{environment_name}/deployment_protection_rules/apps" ], listDeployKeys: ["GET /repos/{owner}/{repo}/keys"], listDeploymentBranchPolicies: [ "GET /repos/{owner}/{repo}/environments/{environment_name}/deployment-branch-policies" ], listDeploymentStatuses: [ "GET /repos/{owner}/{repo}/deployments/{deployment_id}/statuses" ], listDeployments: ["GET /repos/{owner}/{repo}/deployments"], listForAuthenticatedUser: ["GET /user/repos"], listForOrg: ["GET /orgs/{org}/repos"], listForUser: ["GET /users/{username}/repos"], listForks: ["GET /repos/{owner}/{repo}/forks"], listInvitations: ["GET /repos/{owner}/{repo}/invitations"], listInvitationsForAuthenticatedUser: ["GET /user/repository_invitations"], listLanguages: ["GET /repos/{owner}/{repo}/languages"], listPagesBuilds: ["GET /repos/{owner}/{repo}/pages/builds"], listPublic: ["GET /repositories"], listPullRequestsAssociatedWithCommit: [ "GET /repos/{owner}/{repo}/commits/{commit_sha}/pulls" ], listReleaseAssets: [ "GET /repos/{owner}/{repo}/releases/{release_id}/assets" ], listReleases: ["GET /repos/{owner}/{repo}/releases"], listTagProtection: ["GET /repos/{owner}/{repo}/tags/protection"], listTags: ["GET /repos/{owner}/{repo}/tags"], listTeams: ["GET /repos/{owner}/{repo}/teams"], listWebhookDeliveries: [ "GET /repos/{owner}/{repo}/hooks/{hook_id}/deliveries" ], listWebhooks: ["GET /repos/{owner}/{repo}/hooks"], merge: ["POST /repos/{owner}/{repo}/merges"], mergeUpstream: ["POST /repos/{owner}/{repo}/merge-upstream"], pingWebhook: ["POST /repos/{owner}/{repo}/hooks/{hook_id}/pings"], redeliverWebhookDelivery: [ "POST /repos/{owner}/{repo}/hooks/{hook_id}/deliveries/{delivery_id}/attempts" ], removeAppAccessRestrictions: [ "DELETE /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/apps", {}, { mapToData: "apps" } ], removeCollaborator: [ "DELETE /repos/{owner}/{repo}/collaborators/{username}" ], removeStatusCheckContexts: [ "DELETE /repos/{owner}/{repo}/branches/{branch}/protection/required_status_checks/contexts", {}, { mapToData: "contexts" } ], removeStatusCheckProtection: [ "DELETE /repos/{owner}/{repo}/branches/{branch}/protection/required_status_checks" ], removeTeamAccessRestrictions: [ "DELETE /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/teams", {}, { mapToData: "teams" } ], removeUserAccessRestrictions: [ "DELETE /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/users", {}, { mapToData: "users" } ], renameBranch: ["POST /repos/{owner}/{repo}/branches/{branch}/rename"], replaceAllTopics: ["PUT /repos/{owner}/{repo}/topics"], requestPagesBuild: ["POST /repos/{owner}/{repo}/pages/builds"], setAdminBranchProtection: [ "POST /repos/{owner}/{repo}/branches/{branch}/protection/enforce_admins" ], setAppAccessRestrictions: [ "PUT /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/apps", {}, { mapToData: "apps" } ], setStatusCheckContexts: [ "PUT /repos/{owner}/{repo}/branches/{branch}/protection/required_status_checks/contexts", {}, { mapToData: "contexts" } ], setTeamAccessRestrictions: [ "PUT /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/teams", {}, { mapToData: "teams" } ], setUserAccessRestrictions: [ "PUT /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/users", {}, { mapToData: "users" } ], testPushWebhook: ["POST /repos/{owner}/{repo}/hooks/{hook_id}/tests"], transfer: ["POST /repos/{owner}/{repo}/transfer"], update: ["PATCH /repos/{owner}/{repo}"], updateBranchProtection: [ "PUT /repos/{owner}/{repo}/branches/{branch}/protection" ], updateCommitComment: ["PATCH /repos/{owner}/{repo}/comments/{comment_id}"], updateDeploymentBranchPolicy: [ "PUT /repos/{owner}/{repo}/environments/{environment_name}/deployment-branch-policies/{branch_policy_id}" ], updateInformationAboutPagesSite: ["PUT /repos/{owner}/{repo}/pages"], updateInvitation: [ "PATCH /repos/{owner}/{repo}/invitations/{invitation_id}" ], updateOrgRuleset: ["PUT /orgs/{org}/rulesets/{ruleset_id}"], updatePullRequestReviewProtection: [ "PATCH /repos/{owner}/{repo}/branches/{branch}/protection/required_pull_request_reviews" ], updateRelease: ["PATCH /repos/{owner}/{repo}/releases/{release_id}"], updateReleaseAsset: [ "PATCH /repos/{owner}/{repo}/releases/assets/{asset_id}" ], updateRepoRuleset: ["PUT /repos/{owner}/{repo}/rulesets/{ruleset_id}"], updateStatusCheckPotection: [ "PATCH /repos/{owner}/{repo}/branches/{branch}/protection/required_status_checks", {}, { renamed: ["repos", "updateStatusCheckProtection"] } ], updateStatusCheckProtection: [ "PATCH /repos/{owner}/{repo}/branches/{branch}/protection/required_status_checks" ], updateWebhook: ["PATCH /repos/{owner}/{repo}/hooks/{hook_id}"], updateWebhookConfigForRepo: [ "PATCH /repos/{owner}/{repo}/hooks/{hook_id}/config" ], uploadReleaseAsset: [ "POST /repos/{owner}/{repo}/releases/{release_id}/assets{?name,label}", { baseUrl: "https://uploads.github.com" } ] }, search: { code: ["GET /search/code"], commits: ["GET /search/commits"], issuesAndPullRequests: ["GET /search/issues"], labels: ["GET /search/labels"], repos: ["GET /search/repositories"], topics: ["GET /search/topics"], users: ["GET /search/users"] }, secretScanning: { getAlert: [ "GET /repos/{owner}/{repo}/secret-scanning/alerts/{alert_number}" ], listAlertsForEnterprise: [ "GET /enterprises/{enterprise}/secret-scanning/alerts" ], listAlertsForOrg: ["GET /orgs/{org}/secret-scanning/alerts"], listAlertsForRepo: ["GET /repos/{owner}/{repo}/secret-scanning/alerts"], listLocationsForAlert: [ "GET /repos/{owner}/{repo}/secret-scanning/alerts/{alert_number}/locations" ], updateAlert: [ "PATCH /repos/{owner}/{repo}/secret-scanning/alerts/{alert_number}" ] }, securityAdvisories: { createFork: [ "POST /repos/{owner}/{repo}/security-advisories/{ghsa_id}/forks" ], createPrivateVulnerabilityReport: [ "POST /repos/{owner}/{repo}/security-advisories/reports" ], createRepositoryAdvisory: [ "POST /repos/{owner}/{repo}/security-advisories" ], createRepositoryAdvisoryCveRequest: [ "POST /repos/{owner}/{repo}/security-advisories/{ghsa_id}/cve" ], getGlobalAdvisory: ["GET /advisories/{ghsa_id}"], getRepositoryAdvisory: [ "GET /repos/{owner}/{repo}/security-advisories/{ghsa_id}" ], listGlobalAdvisories: ["GET /advisories"], listOrgRepositoryAdvisories: ["GET /orgs/{org}/security-advisories"], listRepositoryAdvisories: ["GET /repos/{owner}/{repo}/security-advisories"], updateRepositoryAdvisory: [ "PATCH /repos/{owner}/{repo}/security-advisories/{ghsa_id}" ] }, teams: { addOrUpdateMembershipForUserInOrg: [ "PUT /orgs/{org}/teams/{team_slug}/memberships/{username}" ], addOrUpdateProjectPermissionsInOrg: [ "PUT /orgs/{org}/teams/{team_slug}/projects/{project_id}" ], addOrUpdateRepoPermissionsInOrg: [ "PUT /orgs/{org}/teams/{team_slug}/repos/{owner}/{repo}" ], checkPermissionsForProjectInOrg: [ "GET /orgs/{org}/teams/{team_slug}/projects/{project_id}" ], checkPermissionsForRepoInOrg: [ "GET /orgs/{org}/teams/{team_slug}/repos/{owner}/{repo}" ], create: ["POST /orgs/{org}/teams"], createDiscussionCommentInOrg: [ "POST /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments" ], createDiscussionInOrg: ["POST /orgs/{org}/teams/{team_slug}/discussions"], deleteDiscussionCommentInOrg: [ "DELETE /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments/{comment_number}" ], deleteDiscussionInOrg: [ "DELETE /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}" ], deleteInOrg: ["DELETE /orgs/{org}/teams/{team_slug}"], getByName: ["GET /orgs/{org}/teams/{team_slug}"], getDiscussionCommentInOrg: [ "GET /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments/{comment_number}" ], getDiscussionInOrg: [ "GET /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}" ], getMembershipForUserInOrg: [ "GET /orgs/{org}/teams/{team_slug}/memberships/{username}" ], list: ["GET /orgs/{org}/teams"], listChildInOrg: ["GET /orgs/{org}/teams/{team_slug}/teams"], listDiscussionCommentsInOrg: [ "GET /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments" ], listDiscussionsInOrg: ["GET /orgs/{org}/teams/{team_slug}/discussions"], listForAuthenticatedUser: ["GET /user/teams"], listMembersInOrg: ["GET /orgs/{org}/teams/{team_slug}/members"], listPendingInvitationsInOrg: [ "GET /orgs/{org}/teams/{team_slug}/invitations" ], listProjectsInOrg: ["GET /orgs/{org}/teams/{team_slug}/projects"], listReposInOrg: ["GET /orgs/{org}/teams/{team_slug}/repos"], removeMembershipForUserInOrg: [ "DELETE /orgs/{org}/teams/{team_slug}/memberships/{username}" ], removeProjectInOrg: [ "DELETE /orgs/{org}/teams/{team_slug}/projects/{project_id}" ], removeRepoInOrg: [ "DELETE /orgs/{org}/teams/{team_slug}/repos/{owner}/{repo}" ], updateDiscussionCommentInOrg: [ "PATCH /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments/{comment_number}" ], updateDiscussionInOrg: [ "PATCH /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}" ], updateInOrg: ["PATCH /orgs/{org}/teams/{team_slug}"] }, users: { addEmailForAuthenticated: [ "POST /user/emails", {}, { renamed: ["users", "addEmailForAuthenticatedUser"] } ], addEmailForAuthenticatedUser: ["POST /user/emails"], addSocialAccountForAuthenticatedUser: ["POST /user/social_accounts"], block: ["PUT /user/blocks/{username}"], checkBlocked: ["GET /user/blocks/{username}"], checkFollowingForUser: ["GET /users/{username}/following/{target_user}"], checkPersonIsFollowedByAuthenticated: ["GET /user/following/{username}"], createGpgKeyForAuthenticated: [ "POST /user/gpg_keys", {}, { renamed: ["users", "createGpgKeyForAuthenticatedUser"] } ], createGpgKeyForAuthenticatedUser: ["POST /user/gpg_keys"], createPublicSshKeyForAuthenticated: [ "POST /user/keys", {}, { renamed: ["users", "createPublicSshKeyForAuthenticatedUser"] } ], createPublicSshKeyForAuthenticatedUser: ["POST /user/keys"], createSshSigningKeyForAuthenticatedUser: ["POST /user/ssh_signing_keys"], deleteEmailForAuthenticated: [ "DELETE /user/emails", {}, { renamed: ["users", "deleteEmailForAuthenticatedUser"] } ], deleteEmailForAuthenticatedUser: ["DELETE /user/emails"], deleteGpgKeyForAuthenticated: [ "DELETE /user/gpg_keys/{gpg_key_id}", {}, { renamed: ["users", "deleteGpgKeyForAuthenticatedUser"] } ], deleteGpgKeyForAuthenticatedUser: ["DELETE /user/gpg_keys/{gpg_key_id}"], deletePublicSshKeyForAuthenticated: [ "DELETE /user/keys/{key_id}", {}, { renamed: ["users", "deletePublicSshKeyForAuthenticatedUser"] } ], deletePublicSshKeyForAuthenticatedUser: ["DELETE /user/keys/{key_id}"], deleteSocialAccountForAuthenticatedUser: ["DELETE /user/social_accounts"], deleteSshSigningKeyForAuthenticatedUser: [ "DELETE /user/ssh_signing_keys/{ssh_signing_key_id}" ], follow: ["PUT /user/following/{username}"], getAuthenticated: ["GET /user"], getByUsername: ["GET /users/{username}"], getContextForUser: ["GET /users/{username}/hovercard"], getGpgKeyForAuthenticated: [ "GET /user/gpg_keys/{gpg_key_id}", {}, { renamed: ["users", "getGpgKeyForAuthenticatedUser"] } ], getGpgKeyForAuthenticatedUser: ["GET /user/gpg_keys/{gpg_key_id}"], getPublicSshKeyForAuthenticated: [ "GET /user/keys/{key_id}", {}, { renamed: ["users", "getPublicSshKeyForAuthenticatedUser"] } ], getPublicSshKeyForAuthenticatedUser: ["GET /user/keys/{key_id}"], getSshSigningKeyForAuthenticatedUser: [ "GET /user/ssh_signing_keys/{ssh_signing_key_id}" ], list: ["GET /users"], listBlockedByAuthenticated: [ "GET /user/blocks", {}, { renamed: ["users", "listBlockedByAuthenticatedUser"] } ], listBlockedByAuthenticatedUser: ["GET /user/blocks"], listEmailsForAuthenticated: [ "GET /user/emails", {}, { renamed: ["users", "listEmailsForAuthenticatedUser"] } ], listEmailsForAuthenticatedUser: ["GET /user/emails"], listFollowedByAuthenticated: [ "GET /user/following", {}, { renamed: ["users", "listFollowedByAuthenticatedUser"] } ], listFollowedByAuthenticatedUser: ["GET /user/following"], listFollowersForAuthenticatedUser: ["GET /user/followers"], listFollowersForUser: ["GET /users/{username}/followers"], listFollowingForUser: ["GET /users/{username}/following"], listGpgKeysForAuthenticated: [ "GET /user/gpg_keys", {}, { renamed: ["users", "listGpgKeysForAuthenticatedUser"] } ], listGpgKeysForAuthenticatedUser: ["GET /user/gpg_keys"], listGpgKeysForUser: ["GET /users/{username}/gpg_keys"], listPublicEmailsForAuthenticated: [ "GET /user/public_emails", {}, { renamed: ["users", "listPublicEmailsForAuthenticatedUser"] } ], listPublicEmailsForAuthenticatedUser: ["GET /user/public_emails"], listPublicKeysForUser: ["GET /users/{username}/keys"], listPublicSshKeysForAuthenticated: [ "GET /user/keys", {}, { renamed: ["users", "listPublicSshKeysForAuthenticatedUser"] } ], listPublicSshKeysForAuthenticatedUser: ["GET /user/keys"], listSocialAccountsForAuthenticatedUser: ["GET /user/social_accounts"], listSocialAccountsForUser: ["GET /users/{username}/social_accounts"], listSshSigningKeysForAuthenticatedUser: ["GET /user/ssh_signing_keys"], listSshSigningKeysForUser: ["GET /users/{username}/ssh_signing_keys"], setPrimaryEmailVisibilityForAuthenticated: [ "PATCH /user/email/visibility", {}, { renamed: ["users", "setPrimaryEmailVisibilityForAuthenticatedUser"] } ], setPrimaryEmailVisibilityForAuthenticatedUser: [ "PATCH /user/email/visibility" ], unblock: ["DELETE /user/blocks/{username}"], unfollow: ["DELETE /user/following/{username}"], updateAuthenticated: ["PATCH /user"] } }; var endpoints_default = Endpoints; // pkg/dist-src/endpoints-to-methods.js var endpointMethodsMap = /* @__PURE__ */ new Map(); for (const [scope, endpoints] of Object.entries(endpoints_default)) { for (const [methodName, endpoint] of Object.entries(endpoints)) { const [route, defaults, decorations] = endpoint; const [method, url] = route.split(/ /); const endpointDefaults = Object.assign( { method, url }, defaults ); if (!endpointMethodsMap.has(scope)) { endpointMethodsMap.set(scope, /* @__PURE__ */ new Map()); } endpointMethodsMap.get(scope).set(methodName, { scope, methodName, endpointDefaults, decorations }); } } var handler = { has({ scope }, methodName) { return endpointMethodsMap.get(scope).has(methodName); }, getOwnPropertyDescriptor(target, methodName) { return { value: this.get(target, methodName), // ensures method is in the cache configurable: true, writable: true, enumerable: true }; }, defineProperty(target, methodName, descriptor) { Object.defineProperty(target.cache, methodName, descriptor); return true; }, deleteProperty(target, methodName) { delete target.cache[methodName]; return true; }, ownKeys({ scope }) { return [...endpointMethodsMap.get(scope).keys()]; }, set(target, methodName, value) { return target.cache[methodName] = value; }, get({ octokit, scope, cache }, methodName) { if (cache[methodName]) { return cache[methodName]; } const method = endpointMethodsMap.get(scope).get(methodName); if (!method) { return void 0; } const { endpointDefaults, decorations } = method; if (decorations) { cache[methodName] = decorate( octokit, scope, methodName, endpointDefaults, decorations ); } else { cache[methodName] = octokit.request.defaults(endpointDefaults); } return cache[methodName]; } }; function endpointsToMethods(octokit) { const newMethods = {}; for (const scope of endpointMethodsMap.keys()) { newMethods[scope] = new Proxy({ octokit, scope, cache: {} }, handler); } return newMethods; } function decorate(octokit, scope, methodName, defaults, decorations) { const requestWithDefaults = octokit.request.defaults(defaults); function withDecorations(...args) { let options = requestWithDefaults.endpoint.merge(...args); if (decorations.mapToData) { options = Object.assign({}, options, { data: options[decorations.mapToData], [decorations.mapToData]: void 0 }); return requestWithDefaults(options); } if (decorations.renamed) { const [newScope, newMethodName] = decorations.renamed; octokit.log.warn( `octokit.${scope}.${methodName}() has been renamed to octokit.${newScope}.${newMethodName}()` ); } if (decorations.deprecated) { octokit.log.warn(decorations.deprecated); } if (decorations.renamedParameters) { const options2 = requestWithDefaults.endpoint.merge(...args); for (const [name, alias] of Object.entries( decorations.renamedParameters )) { if (name in options2) { octokit.log.warn( `"${name}" parameter is deprecated for "octokit.${scope}.${methodName}()". Use "${alias}" instead` ); if (!(alias in options2)) { options2[alias] = options2[name]; } delete options2[name]; } } return requestWithDefaults(options2); } return requestWithDefaults(...args); } return Object.assign(withDecorations, requestWithDefaults); } // pkg/dist-src/index.js function restEndpointMethods(octokit) { const api = endpointsToMethods(octokit); return { rest: api }; } restEndpointMethods.VERSION = VERSION; function legacyRestEndpointMethods(octokit) { const api = endpointsToMethods(octokit); return { ...api, rest: api }; } legacyRestEndpointMethods.VERSION = VERSION; // Annotate the CommonJS export names for ESM import in node: 0 && (0); /***/ }), /***/ 33450: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; var __create = Object.create; var __defProp = Object.defineProperty; var __getOwnPropDesc = Object.getOwnPropertyDescriptor; var __getOwnPropNames = Object.getOwnPropertyNames; var __getProtoOf = Object.getPrototypeOf; var __hasOwnProp = Object.prototype.hasOwnProperty; var __export = (target, all) => { for (var name in all) __defProp(target, name, { get: all[name], enumerable: true }); }; var __copyProps = (to, from, except, desc) => { if (from && typeof from === "object" || typeof from === "function") { for (let key of __getOwnPropNames(from)) if (!__hasOwnProp.call(to, key) && key !== except) __defProp(to, key, { get: () => from[key], enumerable: !(desc = __getOwnPropDesc(from, key)) || desc.enumerable }); } return to; }; var __toESM = (mod, isNodeMode, target) => (target = mod != null ? __create(__getProtoOf(mod)) : {}, __copyProps( // If the importer is in node compatibility mode or this is not an ESM // file that has been converted to a CommonJS file using a Babel- // compatible transform (i.e. "__esModule" has not been set), then set // "default" to the CommonJS "module.exports" for node compatibility. isNodeMode || !mod || !mod.__esModule ? __defProp(target, "default", { value: mod, enumerable: true }) : target, mod )); var __toCommonJS = (mod) => __copyProps(__defProp({}, "__esModule", { value: true }), mod); // pkg/dist-src/index.js var dist_src_exports = {}; __export(dist_src_exports, { VERSION: () => VERSION, retry: () => retry }); module.exports = __toCommonJS(dist_src_exports); var import_core = __nccwpck_require__(61897); // pkg/dist-src/error-request.js async function errorRequest(state, octokit, error, options) { if (!error.request || !error.request.request) { throw error; } if (error.status >= 400 && !state.doNotRetry.includes(error.status)) { const retries = options.request.retries != null ? options.request.retries : state.retries; const retryAfter = Math.pow((options.request.retryCount || 0) + 1, 2); throw octokit.retry.retryRequest(error, retries, retryAfter); } throw error; } // pkg/dist-src/wrap-request.js var import_light = __toESM(__nccwpck_require__(63251)); var import_request_error = __nccwpck_require__(93708); async function wrapRequest(state, octokit, request, options) { const limiter = new import_light.default(); limiter.on("failed", function(error, info) { const maxRetries = ~~error.request.request.retries; const after = ~~error.request.request.retryAfter; options.request.retryCount = info.retryCount + 1; if (maxRetries > info.retryCount) { return after * state.retryAfterBaseValue; } }); return limiter.schedule( requestWithGraphqlErrorHandling.bind(null, state, octokit, request), options ); } async function requestWithGraphqlErrorHandling(state, octokit, request, options) { const response = await request(request, options); if (response.data && response.data.errors && response.data.errors.length > 0 && /Something went wrong while executing your query/.test( response.data.errors[0].message )) { const error = new import_request_error.RequestError(response.data.errors[0].message, 500, { request: options, response }); return errorRequest(state, octokit, error, options); } return response; } // pkg/dist-src/index.js var VERSION = "6.1.0"; function retry(octokit, octokitOptions) { const state = Object.assign( { enabled: true, retryAfterBaseValue: 1e3, doNotRetry: [400, 401, 403, 404, 422, 451], retries: 3 }, octokitOptions.retry ); if (state.enabled) { octokit.hook.error("request", errorRequest.bind(null, state, octokit)); octokit.hook.wrap("request", wrapRequest.bind(null, state, octokit)); } return { retry: { retryRequest: (error, retries, retryAfter) => { error.request.request = Object.assign({}, error.request.request, { retries, retryAfter }); return error; } } }; } retry.VERSION = VERSION; // Annotate the CommonJS export names for ESM import in node: 0 && (0); /***/ }), /***/ 93708: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; var __create = Object.create; var __defProp = Object.defineProperty; var __getOwnPropDesc = Object.getOwnPropertyDescriptor; var __getOwnPropNames = Object.getOwnPropertyNames; var __getProtoOf = Object.getPrototypeOf; var __hasOwnProp = Object.prototype.hasOwnProperty; var __export = (target, all) => { for (var name in all) __defProp(target, name, { get: all[name], enumerable: true }); }; var __copyProps = (to, from, except, desc) => { if (from && typeof from === "object" || typeof from === "function") { for (let key of __getOwnPropNames(from)) if (!__hasOwnProp.call(to, key) && key !== except) __defProp(to, key, { get: () => from[key], enumerable: !(desc = __getOwnPropDesc(from, key)) || desc.enumerable }); } return to; }; var __toESM = (mod, isNodeMode, target) => (target = mod != null ? __create(__getProtoOf(mod)) : {}, __copyProps( // If the importer is in node compatibility mode or this is not an ESM // file that has been converted to a CommonJS file using a Babel- // compatible transform (i.e. "__esModule" has not been set), then set // "default" to the CommonJS "module.exports" for node compatibility. isNodeMode || !mod || !mod.__esModule ? __defProp(target, "default", { value: mod, enumerable: true }) : target, mod )); var __toCommonJS = (mod) => __copyProps(__defProp({}, "__esModule", { value: true }), mod); // pkg/dist-src/index.js var dist_src_exports = {}; __export(dist_src_exports, { RequestError: () => RequestError }); module.exports = __toCommonJS(dist_src_exports); var import_deprecation = __nccwpck_require__(14150); var import_once = __toESM(__nccwpck_require__(55560)); var logOnceCode = (0, import_once.default)((deprecation) => console.warn(deprecation)); var logOnceHeaders = (0, import_once.default)((deprecation) => console.warn(deprecation)); var RequestError = class extends Error { constructor(message, statusCode, options) { super(message); if (Error.captureStackTrace) { Error.captureStackTrace(this, this.constructor); } this.name = "HttpError"; this.status = statusCode; let headers; if ("headers" in options && typeof options.headers !== "undefined") { headers = options.headers; } if ("response" in options) { this.response = options.response; headers = options.response.headers; } const requestCopy = Object.assign({}, options.request); if (options.request.headers.authorization) { requestCopy.headers = Object.assign({}, options.request.headers, { authorization: options.request.headers.authorization.replace( /(? { "use strict"; var __defProp = Object.defineProperty; var __getOwnPropDesc = Object.getOwnPropertyDescriptor; var __getOwnPropNames = Object.getOwnPropertyNames; var __hasOwnProp = Object.prototype.hasOwnProperty; var __export = (target, all) => { for (var name in all) __defProp(target, name, { get: all[name], enumerable: true }); }; var __copyProps = (to, from, except, desc) => { if (from && typeof from === "object" || typeof from === "function") { for (let key of __getOwnPropNames(from)) if (!__hasOwnProp.call(to, key) && key !== except) __defProp(to, key, { get: () => from[key], enumerable: !(desc = __getOwnPropDesc(from, key)) || desc.enumerable }); } return to; }; var __toCommonJS = (mod) => __copyProps(__defProp({}, "__esModule", { value: true }), mod); // pkg/dist-src/index.js var dist_src_exports = {}; __export(dist_src_exports, { request: () => request }); module.exports = __toCommonJS(dist_src_exports); var import_endpoint = __nccwpck_require__(54471); var import_universal_user_agent = __nccwpck_require__(33843); // pkg/dist-src/version.js var VERSION = "8.4.1"; // pkg/dist-src/is-plain-object.js function isPlainObject(value) { if (typeof value !== "object" || value === null) return false; if (Object.prototype.toString.call(value) !== "[object Object]") return false; const proto = Object.getPrototypeOf(value); if (proto === null) return true; const Ctor = Object.prototype.hasOwnProperty.call(proto, "constructor") && proto.constructor; return typeof Ctor === "function" && Ctor instanceof Ctor && Function.prototype.call(Ctor) === Function.prototype.call(value); } // pkg/dist-src/fetch-wrapper.js var import_request_error = __nccwpck_require__(93708); // pkg/dist-src/get-buffer-response.js function getBufferResponse(response) { return response.arrayBuffer(); } // pkg/dist-src/fetch-wrapper.js function fetchWrapper(requestOptions) { var _a, _b, _c, _d; const log = requestOptions.request && requestOptions.request.log ? requestOptions.request.log : console; const parseSuccessResponseBody = ((_a = requestOptions.request) == null ? void 0 : _a.parseSuccessResponseBody) !== false; if (isPlainObject(requestOptions.body) || Array.isArray(requestOptions.body)) { requestOptions.body = JSON.stringify(requestOptions.body); } let headers = {}; let status; let url; let { fetch } = globalThis; if ((_b = requestOptions.request) == null ? void 0 : _b.fetch) { fetch = requestOptions.request.fetch; } if (!fetch) { throw new Error( "fetch is not set. Please pass a fetch implementation as new Octokit({ request: { fetch }}). Learn more at https://github.com/octokit/octokit.js/#fetch-missing" ); } return fetch(requestOptions.url, { method: requestOptions.method, body: requestOptions.body, redirect: (_c = requestOptions.request) == null ? void 0 : _c.redirect, headers: requestOptions.headers, signal: (_d = requestOptions.request) == null ? void 0 : _d.signal, // duplex must be set if request.body is ReadableStream or Async Iterables. // See https://fetch.spec.whatwg.org/#dom-requestinit-duplex. ...requestOptions.body && { duplex: "half" } }).then(async (response) => { url = response.url; status = response.status; for (const keyAndValue of response.headers) { headers[keyAndValue[0]] = keyAndValue[1]; } if ("deprecation" in headers) { const matches = headers.link && headers.link.match(/<([^<>]+)>; rel="deprecation"/); const deprecationLink = matches && matches.pop(); log.warn( `[@octokit/request] "${requestOptions.method} ${requestOptions.url}" is deprecated. It is scheduled to be removed on ${headers.sunset}${deprecationLink ? `. See ${deprecationLink}` : ""}` ); } if (status === 204 || status === 205) { return; } if (requestOptions.method === "HEAD") { if (status < 400) { return; } throw new import_request_error.RequestError(response.statusText, status, { response: { url, status, headers, data: void 0 }, request: requestOptions }); } if (status === 304) { throw new import_request_error.RequestError("Not modified", status, { response: { url, status, headers, data: await getResponseData(response) }, request: requestOptions }); } if (status >= 400) { const data = await getResponseData(response); const error = new import_request_error.RequestError(toErrorMessage(data), status, { response: { url, status, headers, data }, request: requestOptions }); throw error; } return parseSuccessResponseBody ? await getResponseData(response) : response.body; }).then((data) => { return { status, url, headers, data }; }).catch((error) => { if (error instanceof import_request_error.RequestError) throw error; else if (error.name === "AbortError") throw error; let message = error.message; if (error.name === "TypeError" && "cause" in error) { if (error.cause instanceof Error) { message = error.cause.message; } else if (typeof error.cause === "string") { message = error.cause; } } throw new import_request_error.RequestError(message, 500, { request: requestOptions }); }); } async function getResponseData(response) { const contentType = response.headers.get("content-type"); if (/application\/json/.test(contentType)) { return response.json().catch(() => response.text()).catch(() => ""); } if (!contentType || /^text\/|charset=utf-8$/.test(contentType)) { return response.text(); } return getBufferResponse(response); } function toErrorMessage(data) { if (typeof data === "string") return data; let suffix; if ("documentation_url" in data) { suffix = ` - ${data.documentation_url}`; } else { suffix = ""; } if ("message" in data) { if (Array.isArray(data.errors)) { return `${data.message}: ${data.errors.map(JSON.stringify).join(", ")}${suffix}`; } return `${data.message}${suffix}`; } return `Unknown error: ${JSON.stringify(data)}`; } // pkg/dist-src/with-defaults.js function withDefaults(oldEndpoint, newDefaults) { const endpoint2 = oldEndpoint.defaults(newDefaults); const newApi = function(route, parameters) { const endpointOptions = endpoint2.merge(route, parameters); if (!endpointOptions.request || !endpointOptions.request.hook) { return fetchWrapper(endpoint2.parse(endpointOptions)); } const request2 = (route2, parameters2) => { return fetchWrapper( endpoint2.parse(endpoint2.merge(route2, parameters2)) ); }; Object.assign(request2, { endpoint: endpoint2, defaults: withDefaults.bind(null, endpoint2) }); return endpointOptions.request.hook(request2, endpointOptions); }; return Object.assign(newApi, { endpoint: endpoint2, defaults: withDefaults.bind(null, endpoint2) }); } // pkg/dist-src/index.js var request = withDefaults(import_endpoint.endpoint, { headers: { "user-agent": `octokit-request.js/${VERSION} ${(0, import_universal_user_agent.getUserAgent)()}` } }); // Annotate the CommonJS export names for ESM import in node: 0 && (0); /***/ }), /***/ 37889: /***/ (function(__unused_webpack_module, exports) { "use strict"; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.ClientStreamingCall = void 0; /** * A client streaming RPC call. This means that the clients sends 0, 1, or * more messages to the server, and the server replies with exactly one * message. */ class ClientStreamingCall { constructor(method, requestHeaders, request, headers, response, status, trailers) { this.method = method; this.requestHeaders = requestHeaders; this.requests = request; this.headers = headers; this.response = response; this.status = status; this.trailers = trailers; } /** * Instead of awaiting the response status and trailers, you can * just as well await this call itself to receive the server outcome. * Note that it may still be valid to send more request messages. */ then(onfulfilled, onrejected) { return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); } promiseFinished() { return __awaiter(this, void 0, void 0, function* () { let [headers, response, status, trailers] = yield Promise.all([this.headers, this.response, this.status, this.trailers]); return { method: this.method, requestHeaders: this.requestHeaders, headers, response, status, trailers }; }); } } exports.ClientStreamingCall = ClientStreamingCall; /***/ }), /***/ 71409: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.Deferred = exports.DeferredState = void 0; var DeferredState; (function (DeferredState) { DeferredState[DeferredState["PENDING"] = 0] = "PENDING"; DeferredState[DeferredState["REJECTED"] = 1] = "REJECTED"; DeferredState[DeferredState["RESOLVED"] = 2] = "RESOLVED"; })(DeferredState = exports.DeferredState || (exports.DeferredState = {})); /** * A deferred promise. This is a "controller" for a promise, which lets you * pass a promise around and reject or resolve it from the outside. * * Warning: This class is to be used with care. Using it can make code very * difficult to read. It is intended for use in library code that exposes * promises, not for regular business logic. */ class Deferred { /** * @param preventUnhandledRejectionWarning - prevents the warning * "Unhandled Promise rejection" by adding a noop rejection handler. * Working with calls returned from the runtime-rpc package in an * async function usually means awaiting one call property after * the other. This means that the "status" is not being awaited when * an earlier await for the "headers" is rejected. This causes the * "unhandled promise reject" warning. A more correct behaviour for * calls might be to become aware whether at least one of the * promises is handled and swallow the rejection warning for the * others. */ constructor(preventUnhandledRejectionWarning = true) { this._state = DeferredState.PENDING; this._promise = new Promise((resolve, reject) => { this._resolve = resolve; this._reject = reject; }); if (preventUnhandledRejectionWarning) { this._promise.catch(_ => { }); } } /** * Get the current state of the promise. */ get state() { return this._state; } /** * Get the deferred promise. */ get promise() { return this._promise; } /** * Resolve the promise. Throws if the promise is already resolved or rejected. */ resolve(value) { if (this.state !== DeferredState.PENDING) throw new Error(`cannot resolve ${DeferredState[this.state].toLowerCase()}`); this._resolve(value); this._state = DeferredState.RESOLVED; } /** * Reject the promise. Throws if the promise is already resolved or rejected. */ reject(reason) { if (this.state !== DeferredState.PENDING) throw new Error(`cannot reject ${DeferredState[this.state].toLowerCase()}`); this._reject(reason); this._state = DeferredState.REJECTED; } /** * Resolve the promise. Ignore if not pending. */ resolvePending(val) { if (this._state === DeferredState.PENDING) this.resolve(val); } /** * Reject the promise. Ignore if not pending. */ rejectPending(reason) { if (this._state === DeferredState.PENDING) this.reject(reason); } } exports.Deferred = Deferred; /***/ }), /***/ 36826: /***/ (function(__unused_webpack_module, exports) { "use strict"; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.DuplexStreamingCall = void 0; /** * A duplex streaming RPC call. This means that the clients sends an * arbitrary amount of messages to the server, while at the same time, * the server sends an arbitrary amount of messages to the client. */ class DuplexStreamingCall { constructor(method, requestHeaders, request, headers, response, status, trailers) { this.method = method; this.requestHeaders = requestHeaders; this.requests = request; this.headers = headers; this.responses = response; this.status = status; this.trailers = trailers; } /** * Instead of awaiting the response status and trailers, you can * just as well await this call itself to receive the server outcome. * Note that it may still be valid to send more request messages. */ then(onfulfilled, onrejected) { return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); } promiseFinished() { return __awaiter(this, void 0, void 0, function* () { let [headers, status, trailers] = yield Promise.all([this.headers, this.status, this.trailers]); return { method: this.method, requestHeaders: this.requestHeaders, headers, status, trailers, }; }); } } exports.DuplexStreamingCall = DuplexStreamingCall; /***/ }), /***/ 44420: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; // Public API of the rpc runtime. // Note: we do not use `export * from ...` to help tree shakers, // webpack verbose output hints that this should be useful Object.defineProperty(exports, "__esModule", ({ value: true })); var service_type_1 = __nccwpck_require__(56892); Object.defineProperty(exports, "ServiceType", ({ enumerable: true, get: function () { return service_type_1.ServiceType; } })); var reflection_info_1 = __nccwpck_require__(62496); Object.defineProperty(exports, "readMethodOptions", ({ enumerable: true, get: function () { return reflection_info_1.readMethodOptions; } })); Object.defineProperty(exports, "readMethodOption", ({ enumerable: true, get: function () { return reflection_info_1.readMethodOption; } })); Object.defineProperty(exports, "readServiceOption", ({ enumerable: true, get: function () { return reflection_info_1.readServiceOption; } })); var rpc_error_1 = __nccwpck_require__(78636); Object.defineProperty(exports, "RpcError", ({ enumerable: true, get: function () { return rpc_error_1.RpcError; } })); var rpc_options_1 = __nccwpck_require__(28576); Object.defineProperty(exports, "mergeRpcOptions", ({ enumerable: true, get: function () { return rpc_options_1.mergeRpcOptions; } })); var rpc_output_stream_1 = __nccwpck_require__(72726); Object.defineProperty(exports, "RpcOutputStreamController", ({ enumerable: true, get: function () { return rpc_output_stream_1.RpcOutputStreamController; } })); var test_transport_1 = __nccwpck_require__(79122); Object.defineProperty(exports, "TestTransport", ({ enumerable: true, get: function () { return test_transport_1.TestTransport; } })); var deferred_1 = __nccwpck_require__(71409); Object.defineProperty(exports, "Deferred", ({ enumerable: true, get: function () { return deferred_1.Deferred; } })); Object.defineProperty(exports, "DeferredState", ({ enumerable: true, get: function () { return deferred_1.DeferredState; } })); var duplex_streaming_call_1 = __nccwpck_require__(36826); Object.defineProperty(exports, "DuplexStreamingCall", ({ enumerable: true, get: function () { return duplex_streaming_call_1.DuplexStreamingCall; } })); var client_streaming_call_1 = __nccwpck_require__(37889); Object.defineProperty(exports, "ClientStreamingCall", ({ enumerable: true, get: function () { return client_streaming_call_1.ClientStreamingCall; } })); var server_streaming_call_1 = __nccwpck_require__(46173); Object.defineProperty(exports, "ServerStreamingCall", ({ enumerable: true, get: function () { return server_streaming_call_1.ServerStreamingCall; } })); var unary_call_1 = __nccwpck_require__(29288); Object.defineProperty(exports, "UnaryCall", ({ enumerable: true, get: function () { return unary_call_1.UnaryCall; } })); var rpc_interceptor_1 = __nccwpck_require__(52849); Object.defineProperty(exports, "stackIntercept", ({ enumerable: true, get: function () { return rpc_interceptor_1.stackIntercept; } })); Object.defineProperty(exports, "stackDuplexStreamingInterceptors", ({ enumerable: true, get: function () { return rpc_interceptor_1.stackDuplexStreamingInterceptors; } })); Object.defineProperty(exports, "stackClientStreamingInterceptors", ({ enumerable: true, get: function () { return rpc_interceptor_1.stackClientStreamingInterceptors; } })); Object.defineProperty(exports, "stackServerStreamingInterceptors", ({ enumerable: true, get: function () { return rpc_interceptor_1.stackServerStreamingInterceptors; } })); Object.defineProperty(exports, "stackUnaryInterceptors", ({ enumerable: true, get: function () { return rpc_interceptor_1.stackUnaryInterceptors; } })); var server_call_context_1 = __nccwpck_require__(43352); Object.defineProperty(exports, "ServerCallContextController", ({ enumerable: true, get: function () { return server_call_context_1.ServerCallContextController; } })); /***/ }), /***/ 62496: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.readServiceOption = exports.readMethodOption = exports.readMethodOptions = exports.normalizeMethodInfo = void 0; const runtime_1 = __nccwpck_require__(68886); /** * Turns PartialMethodInfo into MethodInfo. */ function normalizeMethodInfo(method, service) { var _a, _b, _c; let m = method; m.service = service; m.localName = (_a = m.localName) !== null && _a !== void 0 ? _a : runtime_1.lowerCamelCase(m.name); // noinspection PointlessBooleanExpressionJS m.serverStreaming = !!m.serverStreaming; // noinspection PointlessBooleanExpressionJS m.clientStreaming = !!m.clientStreaming; m.options = (_b = m.options) !== null && _b !== void 0 ? _b : {}; m.idempotency = (_c = m.idempotency) !== null && _c !== void 0 ? _c : undefined; return m; } exports.normalizeMethodInfo = normalizeMethodInfo; /** * Read custom method options from a generated service client. * * @deprecated use readMethodOption() */ function readMethodOptions(service, methodName, extensionName, extensionType) { var _a; const options = (_a = service.methods.find((m, i) => m.localName === methodName || i === methodName)) === null || _a === void 0 ? void 0 : _a.options; return options && options[extensionName] ? extensionType.fromJson(options[extensionName]) : undefined; } exports.readMethodOptions = readMethodOptions; function readMethodOption(service, methodName, extensionName, extensionType) { var _a; const options = (_a = service.methods.find((m, i) => m.localName === methodName || i === methodName)) === null || _a === void 0 ? void 0 : _a.options; if (!options) { return undefined; } const optionVal = options[extensionName]; if (optionVal === undefined) { return optionVal; } return extensionType ? extensionType.fromJson(optionVal) : optionVal; } exports.readMethodOption = readMethodOption; function readServiceOption(service, extensionName, extensionType) { const options = service.options; if (!options) { return undefined; } const optionVal = options[extensionName]; if (optionVal === undefined) { return optionVal; } return extensionType ? extensionType.fromJson(optionVal) : optionVal; } exports.readServiceOption = readServiceOption; /***/ }), /***/ 78636: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.RpcError = void 0; /** * An error that occurred while calling a RPC method. */ class RpcError extends Error { constructor(message, code = 'UNKNOWN', meta) { super(message); this.name = 'RpcError'; // see https://www.typescriptlang.org/docs/handbook/release-notes/typescript-2-2.html#example Object.setPrototypeOf(this, new.target.prototype); this.code = code; this.meta = meta !== null && meta !== void 0 ? meta : {}; } toString() { const l = [this.name + ': ' + this.message]; if (this.code) { l.push(''); l.push('Code: ' + this.code); } if (this.serviceName && this.methodName) { l.push('Method: ' + this.serviceName + '/' + this.methodName); } let m = Object.entries(this.meta); if (m.length) { l.push(''); l.push('Meta:'); for (let [k, v] of m) { l.push(` ${k}: ${v}`); } } return l.join('\n'); } } exports.RpcError = RpcError; /***/ }), /***/ 52849: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.stackDuplexStreamingInterceptors = exports.stackClientStreamingInterceptors = exports.stackServerStreamingInterceptors = exports.stackUnaryInterceptors = exports.stackIntercept = void 0; const runtime_1 = __nccwpck_require__(68886); /** * Creates a "stack" of of all interceptors specified in the given `RpcOptions`. * Used by generated client implementations. * @internal */ function stackIntercept(kind, transport, method, options, input) { var _a, _b, _c, _d; if (kind == "unary") { let tail = (mtd, inp, opt) => transport.unary(mtd, inp, opt); for (const curr of ((_a = options.interceptors) !== null && _a !== void 0 ? _a : []).filter(i => i.interceptUnary).reverse()) { const next = tail; tail = (mtd, inp, opt) => curr.interceptUnary(next, mtd, inp, opt); } return tail(method, input, options); } if (kind == "serverStreaming") { let tail = (mtd, inp, opt) => transport.serverStreaming(mtd, inp, opt); for (const curr of ((_b = options.interceptors) !== null && _b !== void 0 ? _b : []).filter(i => i.interceptServerStreaming).reverse()) { const next = tail; tail = (mtd, inp, opt) => curr.interceptServerStreaming(next, mtd, inp, opt); } return tail(method, input, options); } if (kind == "clientStreaming") { let tail = (mtd, opt) => transport.clientStreaming(mtd, opt); for (const curr of ((_c = options.interceptors) !== null && _c !== void 0 ? _c : []).filter(i => i.interceptClientStreaming).reverse()) { const next = tail; tail = (mtd, opt) => curr.interceptClientStreaming(next, mtd, opt); } return tail(method, options); } if (kind == "duplex") { let tail = (mtd, opt) => transport.duplex(mtd, opt); for (const curr of ((_d = options.interceptors) !== null && _d !== void 0 ? _d : []).filter(i => i.interceptDuplex).reverse()) { const next = tail; tail = (mtd, opt) => curr.interceptDuplex(next, mtd, opt); } return tail(method, options); } runtime_1.assertNever(kind); } exports.stackIntercept = stackIntercept; /** * @deprecated replaced by `stackIntercept()`, still here to support older generated code */ function stackUnaryInterceptors(transport, method, input, options) { return stackIntercept("unary", transport, method, options, input); } exports.stackUnaryInterceptors = stackUnaryInterceptors; /** * @deprecated replaced by `stackIntercept()`, still here to support older generated code */ function stackServerStreamingInterceptors(transport, method, input, options) { return stackIntercept("serverStreaming", transport, method, options, input); } exports.stackServerStreamingInterceptors = stackServerStreamingInterceptors; /** * @deprecated replaced by `stackIntercept()`, still here to support older generated code */ function stackClientStreamingInterceptors(transport, method, options) { return stackIntercept("clientStreaming", transport, method, options); } exports.stackClientStreamingInterceptors = stackClientStreamingInterceptors; /** * @deprecated replaced by `stackIntercept()`, still here to support older generated code */ function stackDuplexStreamingInterceptors(transport, method, options) { return stackIntercept("duplex", transport, method, options); } exports.stackDuplexStreamingInterceptors = stackDuplexStreamingInterceptors; /***/ }), /***/ 28576: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.mergeRpcOptions = void 0; const runtime_1 = __nccwpck_require__(68886); /** * Merges custom RPC options with defaults. Returns a new instance and keeps * the "defaults" and the "options" unmodified. * * Merges `RpcMetadata` "meta", overwriting values from "defaults" with * values from "options". Does not append values to existing entries. * * Merges "jsonOptions", including "jsonOptions.typeRegistry", by creating * a new array that contains types from "options.jsonOptions.typeRegistry" * first, then types from "defaults.jsonOptions.typeRegistry". * * Merges "binaryOptions". * * Merges "interceptors" by creating a new array that contains interceptors * from "defaults" first, then interceptors from "options". * * Works with objects that extend `RpcOptions`, but only if the added * properties are of type Date, primitive like string, boolean, or Array * of primitives. If you have other property types, you have to merge them * yourself. */ function mergeRpcOptions(defaults, options) { if (!options) return defaults; let o = {}; copy(defaults, o); copy(options, o); for (let key of Object.keys(options)) { let val = options[key]; switch (key) { case "jsonOptions": o.jsonOptions = runtime_1.mergeJsonOptions(defaults.jsonOptions, o.jsonOptions); break; case "binaryOptions": o.binaryOptions = runtime_1.mergeBinaryOptions(defaults.binaryOptions, o.binaryOptions); break; case "meta": o.meta = {}; copy(defaults.meta, o.meta); copy(options.meta, o.meta); break; case "interceptors": o.interceptors = defaults.interceptors ? defaults.interceptors.concat(val) : val.concat(); break; } } return o; } exports.mergeRpcOptions = mergeRpcOptions; function copy(a, into) { if (!a) return; let c = into; for (let [k, v] of Object.entries(a)) { if (v instanceof Date) c[k] = new Date(v.getTime()); else if (Array.isArray(v)) c[k] = v.concat(); else c[k] = v; } } /***/ }), /***/ 72726: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.RpcOutputStreamController = void 0; const deferred_1 = __nccwpck_require__(71409); const runtime_1 = __nccwpck_require__(68886); /** * A `RpcOutputStream` that you control. */ class RpcOutputStreamController { constructor() { this._lis = { nxt: [], msg: [], err: [], cmp: [], }; this._closed = false; // --- RpcOutputStream async iterator API // iterator state. // is undefined when no iterator has been acquired yet. this._itState = { q: [] }; } // --- RpcOutputStream callback API onNext(callback) { return this.addLis(callback, this._lis.nxt); } onMessage(callback) { return this.addLis(callback, this._lis.msg); } onError(callback) { return this.addLis(callback, this._lis.err); } onComplete(callback) { return this.addLis(callback, this._lis.cmp); } addLis(callback, list) { list.push(callback); return () => { let i = list.indexOf(callback); if (i >= 0) list.splice(i, 1); }; } // remove all listeners clearLis() { for (let l of Object.values(this._lis)) l.splice(0, l.length); } // --- Controller API /** * Is this stream already closed by a completion or error? */ get closed() { return this._closed !== false; } /** * Emit message, close with error, or close successfully, but only one * at a time. * Can be used to wrap a stream by using the other stream's `onNext`. */ notifyNext(message, error, complete) { runtime_1.assert((message ? 1 : 0) + (error ? 1 : 0) + (complete ? 1 : 0) <= 1, 'only one emission at a time'); if (message) this.notifyMessage(message); if (error) this.notifyError(error); if (complete) this.notifyComplete(); } /** * Emits a new message. Throws if stream is closed. * * Triggers onNext and onMessage callbacks. */ notifyMessage(message) { runtime_1.assert(!this.closed, 'stream is closed'); this.pushIt({ value: message, done: false }); this._lis.msg.forEach(l => l(message)); this._lis.nxt.forEach(l => l(message, undefined, false)); } /** * Closes the stream with an error. Throws if stream is closed. * * Triggers onNext and onError callbacks. */ notifyError(error) { runtime_1.assert(!this.closed, 'stream is closed'); this._closed = error; this.pushIt(error); this._lis.err.forEach(l => l(error)); this._lis.nxt.forEach(l => l(undefined, error, false)); this.clearLis(); } /** * Closes the stream successfully. Throws if stream is closed. * * Triggers onNext and onComplete callbacks. */ notifyComplete() { runtime_1.assert(!this.closed, 'stream is closed'); this._closed = true; this.pushIt({ value: null, done: true }); this._lis.cmp.forEach(l => l()); this._lis.nxt.forEach(l => l(undefined, undefined, true)); this.clearLis(); } /** * Creates an async iterator (that can be used with `for await {...}`) * to consume the stream. * * Some things to note: * - If an error occurs, the `for await` will throw it. * - If an error occurred before the `for await` was started, `for await` * will re-throw it. * - If the stream is already complete, the `for await` will be empty. * - If your `for await` consumes slower than the stream produces, * for example because you are relaying messages in a slow operation, * messages are queued. */ [Symbol.asyncIterator]() { // if we are closed, we are definitely not receiving any more messages. // but we can't let the iterator get stuck. we want to either: // a) finish the new iterator immediately, because we are completed // b) reject the new iterator, because we errored if (this._closed === true) this.pushIt({ value: null, done: true }); else if (this._closed !== false) this.pushIt(this._closed); // the async iterator return { next: () => { let state = this._itState; runtime_1.assert(state, "bad state"); // if we don't have a state here, code is broken // there should be no pending result. // did the consumer call next() before we resolved our previous result promise? runtime_1.assert(!state.p, "iterator contract broken"); // did we produce faster than the iterator consumed? // return the oldest result from the queue. let first = state.q.shift(); if (first) return ("value" in first) ? Promise.resolve(first) : Promise.reject(first); // we have no result ATM, but we promise one. // as soon as we have a result, we must resolve promise. state.p = new deferred_1.Deferred(); return state.p.promise; }, }; } // "push" a new iterator result. // this either resolves a pending promise, or enqueues the result. pushIt(result) { let state = this._itState; // is the consumer waiting for us? if (state.p) { // yes, consumer is waiting for this promise. const p = state.p; runtime_1.assert(p.state == deferred_1.DeferredState.PENDING, "iterator contract broken"); // resolve the promise ("value" in result) ? p.resolve(result) : p.reject(result); // must cleanup, otherwise iterator.next() would pick it up again. delete state.p; } else { // we are producing faster than the iterator consumes. // push result onto queue. state.q.push(result); } } } exports.RpcOutputStreamController = RpcOutputStreamController; /***/ }), /***/ 43352: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.ServerCallContextController = void 0; class ServerCallContextController { constructor(method, headers, deadline, sendResponseHeadersFn, defaultStatus = { code: 'OK', detail: '' }) { this._cancelled = false; this._listeners = []; this.method = method; this.headers = headers; this.deadline = deadline; this.trailers = {}; this._sendRH = sendResponseHeadersFn; this.status = defaultStatus; } /** * Set the call cancelled. * * Invokes all callbacks registered with onCancel() and * sets `cancelled = true`. */ notifyCancelled() { if (!this._cancelled) { this._cancelled = true; for (let l of this._listeners) { l(); } } } /** * Send response headers. */ sendResponseHeaders(data) { this._sendRH(data); } /** * Is the call cancelled? * * When the client closes the connection before the server * is done, the call is cancelled. * * If you want to cancel a request on the server, throw a * RpcError with the CANCELLED status code. */ get cancelled() { return this._cancelled; } /** * Add a callback for cancellation. */ onCancel(callback) { const l = this._listeners; l.push(callback); return () => { let i = l.indexOf(callback); if (i >= 0) l.splice(i, 1); }; } } exports.ServerCallContextController = ServerCallContextController; /***/ }), /***/ 46173: /***/ (function(__unused_webpack_module, exports) { "use strict"; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.ServerStreamingCall = void 0; /** * A server streaming RPC call. The client provides exactly one input message * but the server may respond with 0, 1, or more messages. */ class ServerStreamingCall { constructor(method, requestHeaders, request, headers, response, status, trailers) { this.method = method; this.requestHeaders = requestHeaders; this.request = request; this.headers = headers; this.responses = response; this.status = status; this.trailers = trailers; } /** * Instead of awaiting the response status and trailers, you can * just as well await this call itself to receive the server outcome. * You should first setup some listeners to the `request` to * see the actual messages the server replied with. */ then(onfulfilled, onrejected) { return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); } promiseFinished() { return __awaiter(this, void 0, void 0, function* () { let [headers, status, trailers] = yield Promise.all([this.headers, this.status, this.trailers]); return { method: this.method, requestHeaders: this.requestHeaders, request: this.request, headers, status, trailers, }; }); } } exports.ServerStreamingCall = ServerStreamingCall; /***/ }), /***/ 56892: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.ServiceType = void 0; const reflection_info_1 = __nccwpck_require__(62496); class ServiceType { constructor(typeName, methods, options) { this.typeName = typeName; this.methods = methods.map(i => reflection_info_1.normalizeMethodInfo(i, this)); this.options = options !== null && options !== void 0 ? options : {}; } } exports.ServiceType = ServiceType; /***/ }), /***/ 79122: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.TestTransport = void 0; const rpc_error_1 = __nccwpck_require__(78636); const runtime_1 = __nccwpck_require__(68886); const rpc_output_stream_1 = __nccwpck_require__(72726); const rpc_options_1 = __nccwpck_require__(28576); const unary_call_1 = __nccwpck_require__(29288); const server_streaming_call_1 = __nccwpck_require__(46173); const client_streaming_call_1 = __nccwpck_require__(37889); const duplex_streaming_call_1 = __nccwpck_require__(36826); /** * Transport for testing. */ class TestTransport { /** * Initialize with mock data. Omitted fields have default value. */ constructor(data) { /** * Suppress warning / error about uncaught rejections of * "status" and "trailers". */ this.suppressUncaughtRejections = true; this.headerDelay = 10; this.responseDelay = 50; this.betweenResponseDelay = 10; this.afterResponseDelay = 10; this.data = data !== null && data !== void 0 ? data : {}; } /** * Sent message(s) during the last operation. */ get sentMessages() { if (this.lastInput instanceof TestInputStream) { return this.lastInput.sent; } else if (typeof this.lastInput == "object") { return [this.lastInput.single]; } return []; } /** * Sending message(s) completed? */ get sendComplete() { if (this.lastInput instanceof TestInputStream) { return this.lastInput.completed; } else if (typeof this.lastInput == "object") { return true; } return false; } // Creates a promise for response headers from the mock data. promiseHeaders() { var _a; const headers = (_a = this.data.headers) !== null && _a !== void 0 ? _a : TestTransport.defaultHeaders; return headers instanceof rpc_error_1.RpcError ? Promise.reject(headers) : Promise.resolve(headers); } // Creates a promise for a single, valid, message from the mock data. promiseSingleResponse(method) { if (this.data.response instanceof rpc_error_1.RpcError) { return Promise.reject(this.data.response); } let r; if (Array.isArray(this.data.response)) { runtime_1.assert(this.data.response.length > 0); r = this.data.response[0]; } else if (this.data.response !== undefined) { r = this.data.response; } else { r = method.O.create(); } runtime_1.assert(method.O.is(r)); return Promise.resolve(r); } /** * Pushes response messages from the mock data to the output stream. * If an error response, status or trailers are mocked, the stream is * closed with the respective error. * Otherwise, stream is completed successfully. * * The returned promise resolves when the stream is closed. It should * not reject. If it does, code is broken. */ streamResponses(method, stream, abort) { return __awaiter(this, void 0, void 0, function* () { // normalize "data.response" into an array of valid output messages const messages = []; if (this.data.response === undefined) { messages.push(method.O.create()); } else if (Array.isArray(this.data.response)) { for (let msg of this.data.response) { runtime_1.assert(method.O.is(msg)); messages.push(msg); } } else if (!(this.data.response instanceof rpc_error_1.RpcError)) { runtime_1.assert(method.O.is(this.data.response)); messages.push(this.data.response); } // start the stream with an initial delay. // if the request is cancelled, notify() error and exit. try { yield delay(this.responseDelay, abort)(undefined); } catch (error) { stream.notifyError(error); return; } // if error response was mocked, notify() error (stream is now closed with error) and exit. if (this.data.response instanceof rpc_error_1.RpcError) { stream.notifyError(this.data.response); return; } // regular response messages were mocked. notify() them. for (let msg of messages) { stream.notifyMessage(msg); // add a short delay between responses // if the request is cancelled, notify() error and exit. try { yield delay(this.betweenResponseDelay, abort)(undefined); } catch (error) { stream.notifyError(error); return; } } // error status was mocked, notify() error (stream is now closed with error) and exit. if (this.data.status instanceof rpc_error_1.RpcError) { stream.notifyError(this.data.status); return; } // error trailers were mocked, notify() error (stream is now closed with error) and exit. if (this.data.trailers instanceof rpc_error_1.RpcError) { stream.notifyError(this.data.trailers); return; } // stream completed successfully stream.notifyComplete(); }); } // Creates a promise for response status from the mock data. promiseStatus() { var _a; const status = (_a = this.data.status) !== null && _a !== void 0 ? _a : TestTransport.defaultStatus; return status instanceof rpc_error_1.RpcError ? Promise.reject(status) : Promise.resolve(status); } // Creates a promise for response trailers from the mock data. promiseTrailers() { var _a; const trailers = (_a = this.data.trailers) !== null && _a !== void 0 ? _a : TestTransport.defaultTrailers; return trailers instanceof rpc_error_1.RpcError ? Promise.reject(trailers) : Promise.resolve(trailers); } maybeSuppressUncaught(...promise) { if (this.suppressUncaughtRejections) { for (let p of promise) { p.catch(() => { }); } } } mergeOptions(options) { return rpc_options_1.mergeRpcOptions({}, options); } unary(method, input, options) { var _a; const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() .then(delay(this.headerDelay, options.abort)), responsePromise = headersPromise .catch(_ => { }) .then(delay(this.responseDelay, options.abort)) .then(_ => this.promiseSingleResponse(method)), statusPromise = responsePromise .catch(_ => { }) .then(delay(this.afterResponseDelay, options.abort)) .then(_ => this.promiseStatus()), trailersPromise = responsePromise .catch(_ => { }) .then(delay(this.afterResponseDelay, options.abort)) .then(_ => this.promiseTrailers()); this.maybeSuppressUncaught(statusPromise, trailersPromise); this.lastInput = { single: input }; return new unary_call_1.UnaryCall(method, requestHeaders, input, headersPromise, responsePromise, statusPromise, trailersPromise); } serverStreaming(method, input, options) { var _a; const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() .then(delay(this.headerDelay, options.abort)), outputStream = new rpc_output_stream_1.RpcOutputStreamController(), responseStreamClosedPromise = headersPromise .then(delay(this.responseDelay, options.abort)) .catch(() => { }) .then(() => this.streamResponses(method, outputStream, options.abort)) .then(delay(this.afterResponseDelay, options.abort)), statusPromise = responseStreamClosedPromise .then(() => this.promiseStatus()), trailersPromise = responseStreamClosedPromise .then(() => this.promiseTrailers()); this.maybeSuppressUncaught(statusPromise, trailersPromise); this.lastInput = { single: input }; return new server_streaming_call_1.ServerStreamingCall(method, requestHeaders, input, headersPromise, outputStream, statusPromise, trailersPromise); } clientStreaming(method, options) { var _a; const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() .then(delay(this.headerDelay, options.abort)), responsePromise = headersPromise .catch(_ => { }) .then(delay(this.responseDelay, options.abort)) .then(_ => this.promiseSingleResponse(method)), statusPromise = responsePromise .catch(_ => { }) .then(delay(this.afterResponseDelay, options.abort)) .then(_ => this.promiseStatus()), trailersPromise = responsePromise .catch(_ => { }) .then(delay(this.afterResponseDelay, options.abort)) .then(_ => this.promiseTrailers()); this.maybeSuppressUncaught(statusPromise, trailersPromise); this.lastInput = new TestInputStream(this.data, options.abort); return new client_streaming_call_1.ClientStreamingCall(method, requestHeaders, this.lastInput, headersPromise, responsePromise, statusPromise, trailersPromise); } duplex(method, options) { var _a; const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() .then(delay(this.headerDelay, options.abort)), outputStream = new rpc_output_stream_1.RpcOutputStreamController(), responseStreamClosedPromise = headersPromise .then(delay(this.responseDelay, options.abort)) .catch(() => { }) .then(() => this.streamResponses(method, outputStream, options.abort)) .then(delay(this.afterResponseDelay, options.abort)), statusPromise = responseStreamClosedPromise .then(() => this.promiseStatus()), trailersPromise = responseStreamClosedPromise .then(() => this.promiseTrailers()); this.maybeSuppressUncaught(statusPromise, trailersPromise); this.lastInput = new TestInputStream(this.data, options.abort); return new duplex_streaming_call_1.DuplexStreamingCall(method, requestHeaders, this.lastInput, headersPromise, outputStream, statusPromise, trailersPromise); } } exports.TestTransport = TestTransport; TestTransport.defaultHeaders = { responseHeader: "test" }; TestTransport.defaultStatus = { code: "OK", detail: "all good" }; TestTransport.defaultTrailers = { responseTrailer: "test" }; function delay(ms, abort) { return (v) => new Promise((resolve, reject) => { if (abort === null || abort === void 0 ? void 0 : abort.aborted) { reject(new rpc_error_1.RpcError("user cancel", "CANCELLED")); } else { const id = setTimeout(() => resolve(v), ms); if (abort) { abort.addEventListener("abort", ev => { clearTimeout(id); reject(new rpc_error_1.RpcError("user cancel", "CANCELLED")); }); } } }); } class TestInputStream { constructor(data, abort) { this._completed = false; this._sent = []; this.data = data; this.abort = abort; } get sent() { return this._sent; } get completed() { return this._completed; } send(message) { if (this.data.inputMessage instanceof rpc_error_1.RpcError) { return Promise.reject(this.data.inputMessage); } const delayMs = this.data.inputMessage === undefined ? 10 : this.data.inputMessage; return Promise.resolve(undefined) .then(() => { this._sent.push(message); }) .then(delay(delayMs, this.abort)); } complete() { if (this.data.inputComplete instanceof rpc_error_1.RpcError) { return Promise.reject(this.data.inputComplete); } const delayMs = this.data.inputComplete === undefined ? 10 : this.data.inputComplete; return Promise.resolve(undefined) .then(() => { this._completed = true; }) .then(delay(delayMs, this.abort)); } } /***/ }), /***/ 29288: /***/ (function(__unused_webpack_module, exports) { "use strict"; var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } return new (P || (P = Promise))(function (resolve, reject) { function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.UnaryCall = void 0; /** * A unary RPC call. Unary means there is exactly one input message and * exactly one output message unless an error occurred. */ class UnaryCall { constructor(method, requestHeaders, request, headers, response, status, trailers) { this.method = method; this.requestHeaders = requestHeaders; this.request = request; this.headers = headers; this.response = response; this.status = status; this.trailers = trailers; } /** * If you are only interested in the final outcome of this call, * you can await it to receive a `FinishedUnaryCall`. */ then(onfulfilled, onrejected) { return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); } promiseFinished() { return __awaiter(this, void 0, void 0, function* () { let [headers, response, status, trailers] = yield Promise.all([this.headers, this.response, this.status, this.trailers]); return { method: this.method, requestHeaders: this.requestHeaders, request: this.request, headers, response, status, trailers }; }); } } exports.UnaryCall = UnaryCall; /***/ }), /***/ 8602: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.assertFloat32 = exports.assertUInt32 = exports.assertInt32 = exports.assertNever = exports.assert = void 0; /** * assert that condition is true or throw error (with message) */ function assert(condition, msg) { if (!condition) { throw new Error(msg); } } exports.assert = assert; /** * assert that value cannot exist = type `never`. throw runtime error if it does. */ function assertNever(value, msg) { throw new Error(msg !== null && msg !== void 0 ? msg : 'Unexpected object: ' + value); } exports.assertNever = assertNever; const FLOAT32_MAX = 3.4028234663852886e+38, FLOAT32_MIN = -3.4028234663852886e+38, UINT32_MAX = 0xFFFFFFFF, INT32_MAX = 0X7FFFFFFF, INT32_MIN = -0X80000000; function assertInt32(arg) { if (typeof arg !== "number") throw new Error('invalid int 32: ' + typeof arg); if (!Number.isInteger(arg) || arg > INT32_MAX || arg < INT32_MIN) throw new Error('invalid int 32: ' + arg); } exports.assertInt32 = assertInt32; function assertUInt32(arg) { if (typeof arg !== "number") throw new Error('invalid uint 32: ' + typeof arg); if (!Number.isInteger(arg) || arg > UINT32_MAX || arg < 0) throw new Error('invalid uint 32: ' + arg); } exports.assertUInt32 = assertUInt32; function assertFloat32(arg) { if (typeof arg !== "number") throw new Error('invalid float 32: ' + typeof arg); if (!Number.isFinite(arg)) return; if (arg > FLOAT32_MAX || arg < FLOAT32_MIN) throw new Error('invalid float 32: ' + arg); } exports.assertFloat32 = assertFloat32; /***/ }), /***/ 26335: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.base64encode = exports.base64decode = void 0; // lookup table from base64 character to byte let encTable = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/'.split(''); // lookup table from base64 character *code* to byte because lookup by number is fast let decTable = []; for (let i = 0; i < encTable.length; i++) decTable[encTable[i].charCodeAt(0)] = i; // support base64url variants decTable["-".charCodeAt(0)] = encTable.indexOf("+"); decTable["_".charCodeAt(0)] = encTable.indexOf("/"); /** * Decodes a base64 string to a byte array. * * - ignores white-space, including line breaks and tabs * - allows inner padding (can decode concatenated base64 strings) * - does not require padding * - understands base64url encoding: * "-" instead of "+", * "_" instead of "/", * no padding */ function base64decode(base64Str) { // estimate byte size, not accounting for inner padding and whitespace let es = base64Str.length * 3 / 4; // if (es % 3 !== 0) // throw new Error('invalid base64 string'); if (base64Str[base64Str.length - 2] == '=') es -= 2; else if (base64Str[base64Str.length - 1] == '=') es -= 1; let bytes = new Uint8Array(es), bytePos = 0, // position in byte array groupPos = 0, // position in base64 group b, // current byte p = 0 // previous byte ; for (let i = 0; i < base64Str.length; i++) { b = decTable[base64Str.charCodeAt(i)]; if (b === undefined) { // noinspection FallThroughInSwitchStatementJS switch (base64Str[i]) { case '=': groupPos = 0; // reset state when padding found case '\n': case '\r': case '\t': case ' ': continue; // skip white-space, and padding default: throw Error(`invalid base64 string.`); } } switch (groupPos) { case 0: p = b; groupPos = 1; break; case 1: bytes[bytePos++] = p << 2 | (b & 48) >> 4; p = b; groupPos = 2; break; case 2: bytes[bytePos++] = (p & 15) << 4 | (b & 60) >> 2; p = b; groupPos = 3; break; case 3: bytes[bytePos++] = (p & 3) << 6 | b; groupPos = 0; break; } } if (groupPos == 1) throw Error(`invalid base64 string.`); return bytes.subarray(0, bytePos); } exports.base64decode = base64decode; /** * Encodes a byte array to a base64 string. * Adds padding at the end. * Does not insert newlines. */ function base64encode(bytes) { let base64 = '', groupPos = 0, // position in base64 group b, // current byte p = 0; // carry over from previous byte for (let i = 0; i < bytes.length; i++) { b = bytes[i]; switch (groupPos) { case 0: base64 += encTable[b >> 2]; p = (b & 3) << 4; groupPos = 1; break; case 1: base64 += encTable[p | b >> 4]; p = (b & 15) << 2; groupPos = 2; break; case 2: base64 += encTable[p | b >> 6]; base64 += encTable[b & 63]; groupPos = 0; break; } } // padding required? if (groupPos) { base64 += encTable[p]; base64 += '='; if (groupPos == 1) base64 += '='; } return base64; } exports.base64encode = base64encode; /***/ }), /***/ 54816: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.WireType = exports.mergeBinaryOptions = exports.UnknownFieldHandler = void 0; /** * This handler implements the default behaviour for unknown fields. * When reading data, unknown fields are stored on the message, in a * symbol property. * When writing data, the symbol property is queried and unknown fields * are serialized into the output again. */ var UnknownFieldHandler; (function (UnknownFieldHandler) { /** * The symbol used to store unknown fields for a message. * The property must conform to `UnknownFieldContainer`. */ UnknownFieldHandler.symbol = Symbol.for("protobuf-ts/unknown"); /** * Store an unknown field during binary read directly on the message. * This method is compatible with `BinaryReadOptions.readUnknownField`. */ UnknownFieldHandler.onRead = (typeName, message, fieldNo, wireType, data) => { let container = is(message) ? message[UnknownFieldHandler.symbol] : message[UnknownFieldHandler.symbol] = []; container.push({ no: fieldNo, wireType, data }); }; /** * Write unknown fields stored for the message to the writer. * This method is compatible with `BinaryWriteOptions.writeUnknownFields`. */ UnknownFieldHandler.onWrite = (typeName, message, writer) => { for (let { no, wireType, data } of UnknownFieldHandler.list(message)) writer.tag(no, wireType).raw(data); }; /** * List unknown fields stored for the message. * Note that there may be multiples fields with the same number. */ UnknownFieldHandler.list = (message, fieldNo) => { if (is(message)) { let all = message[UnknownFieldHandler.symbol]; return fieldNo ? all.filter(uf => uf.no == fieldNo) : all; } return []; }; /** * Returns the last unknown field by field number. */ UnknownFieldHandler.last = (message, fieldNo) => UnknownFieldHandler.list(message, fieldNo).slice(-1)[0]; const is = (message) => message && Array.isArray(message[UnknownFieldHandler.symbol]); })(UnknownFieldHandler = exports.UnknownFieldHandler || (exports.UnknownFieldHandler = {})); /** * Merges binary write or read options. Later values override earlier values. */ function mergeBinaryOptions(a, b) { return Object.assign(Object.assign({}, a), b); } exports.mergeBinaryOptions = mergeBinaryOptions; /** * Protobuf binary format wire types. * * A wire type provides just enough information to find the length of the * following value. * * See https://developers.google.com/protocol-buffers/docs/encoding#structure */ var WireType; (function (WireType) { /** * Used for int32, int64, uint32, uint64, sint32, sint64, bool, enum */ WireType[WireType["Varint"] = 0] = "Varint"; /** * Used for fixed64, sfixed64, double. * Always 8 bytes with little-endian byte order. */ WireType[WireType["Bit64"] = 1] = "Bit64"; /** * Used for string, bytes, embedded messages, packed repeated fields * * Only repeated numeric types (types which use the varint, 32-bit, * or 64-bit wire types) can be packed. In proto3, such fields are * packed by default. */ WireType[WireType["LengthDelimited"] = 2] = "LengthDelimited"; /** * Used for groups * @deprecated */ WireType[WireType["StartGroup"] = 3] = "StartGroup"; /** * Used for groups * @deprecated */ WireType[WireType["EndGroup"] = 4] = "EndGroup"; /** * Used for fixed32, sfixed32, float. * Always 4 bytes with little-endian byte order. */ WireType[WireType["Bit32"] = 5] = "Bit32"; })(WireType = exports.WireType || (exports.WireType = {})); /***/ }), /***/ 92889: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.BinaryReader = exports.binaryReadOptions = void 0; const binary_format_contract_1 = __nccwpck_require__(54816); const pb_long_1 = __nccwpck_require__(61753); const goog_varint_1 = __nccwpck_require__(93223); const defaultsRead = { readUnknownField: true, readerFactory: bytes => new BinaryReader(bytes), }; /** * Make options for reading binary data form partial options. */ function binaryReadOptions(options) { return options ? Object.assign(Object.assign({}, defaultsRead), options) : defaultsRead; } exports.binaryReadOptions = binaryReadOptions; class BinaryReader { constructor(buf, textDecoder) { this.varint64 = goog_varint_1.varint64read; // dirty cast for `this` /** * Read a `uint32` field, an unsigned 32 bit varint. */ this.uint32 = goog_varint_1.varint32read; // dirty cast for `this` and access to protected `buf` this.buf = buf; this.len = buf.length; this.pos = 0; this.view = new DataView(buf.buffer, buf.byteOffset, buf.byteLength); this.textDecoder = textDecoder !== null && textDecoder !== void 0 ? textDecoder : new TextDecoder("utf-8", { fatal: true, ignoreBOM: true, }); } /** * Reads a tag - field number and wire type. */ tag() { let tag = this.uint32(), fieldNo = tag >>> 3, wireType = tag & 7; if (fieldNo <= 0 || wireType < 0 || wireType > 5) throw new Error("illegal tag: field no " + fieldNo + " wire type " + wireType); return [fieldNo, wireType]; } /** * Skip one element on the wire and return the skipped data. * Supports WireType.StartGroup since v2.0.0-alpha.23. */ skip(wireType) { let start = this.pos; // noinspection FallThroughInSwitchStatementJS switch (wireType) { case binary_format_contract_1.WireType.Varint: while (this.buf[this.pos++] & 0x80) { // ignore } break; case binary_format_contract_1.WireType.Bit64: this.pos += 4; case binary_format_contract_1.WireType.Bit32: this.pos += 4; break; case binary_format_contract_1.WireType.LengthDelimited: let len = this.uint32(); this.pos += len; break; case binary_format_contract_1.WireType.StartGroup: // From descriptor.proto: Group type is deprecated, not supported in proto3. // But we must still be able to parse and treat as unknown. let t; while ((t = this.tag()[1]) !== binary_format_contract_1.WireType.EndGroup) { this.skip(t); } break; default: throw new Error("cant skip wire type " + wireType); } this.assertBounds(); return this.buf.subarray(start, this.pos); } /** * Throws error if position in byte array is out of range. */ assertBounds() { if (this.pos > this.len) throw new RangeError("premature EOF"); } /** * Read a `int32` field, a signed 32 bit varint. */ int32() { return this.uint32() | 0; } /** * Read a `sint32` field, a signed, zigzag-encoded 32-bit varint. */ sint32() { let zze = this.uint32(); // decode zigzag return (zze >>> 1) ^ -(zze & 1); } /** * Read a `int64` field, a signed 64-bit varint. */ int64() { return new pb_long_1.PbLong(...this.varint64()); } /** * Read a `uint64` field, an unsigned 64-bit varint. */ uint64() { return new pb_long_1.PbULong(...this.varint64()); } /** * Read a `sint64` field, a signed, zig-zag-encoded 64-bit varint. */ sint64() { let [lo, hi] = this.varint64(); // decode zig zag let s = -(lo & 1); lo = ((lo >>> 1 | (hi & 1) << 31) ^ s); hi = (hi >>> 1 ^ s); return new pb_long_1.PbLong(lo, hi); } /** * Read a `bool` field, a variant. */ bool() { let [lo, hi] = this.varint64(); return lo !== 0 || hi !== 0; } /** * Read a `fixed32` field, an unsigned, fixed-length 32-bit integer. */ fixed32() { return this.view.getUint32((this.pos += 4) - 4, true); } /** * Read a `sfixed32` field, a signed, fixed-length 32-bit integer. */ sfixed32() { return this.view.getInt32((this.pos += 4) - 4, true); } /** * Read a `fixed64` field, an unsigned, fixed-length 64 bit integer. */ fixed64() { return new pb_long_1.PbULong(this.sfixed32(), this.sfixed32()); } /** * Read a `fixed64` field, a signed, fixed-length 64-bit integer. */ sfixed64() { return new pb_long_1.PbLong(this.sfixed32(), this.sfixed32()); } /** * Read a `float` field, 32-bit floating point number. */ float() { return this.view.getFloat32((this.pos += 4) - 4, true); } /** * Read a `double` field, a 64-bit floating point number. */ double() { return this.view.getFloat64((this.pos += 8) - 8, true); } /** * Read a `bytes` field, length-delimited arbitrary data. */ bytes() { let len = this.uint32(); let start = this.pos; this.pos += len; this.assertBounds(); return this.buf.subarray(start, start + len); } /** * Read a `string` field, length-delimited data converted to UTF-8 text. */ string() { return this.textDecoder.decode(this.bytes()); } } exports.BinaryReader = BinaryReader; /***/ }), /***/ 23957: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.BinaryWriter = exports.binaryWriteOptions = void 0; const pb_long_1 = __nccwpck_require__(61753); const goog_varint_1 = __nccwpck_require__(93223); const assert_1 = __nccwpck_require__(8602); const defaultsWrite = { writeUnknownFields: true, writerFactory: () => new BinaryWriter(), }; /** * Make options for writing binary data form partial options. */ function binaryWriteOptions(options) { return options ? Object.assign(Object.assign({}, defaultsWrite), options) : defaultsWrite; } exports.binaryWriteOptions = binaryWriteOptions; class BinaryWriter { constructor(textEncoder) { /** * Previous fork states. */ this.stack = []; this.textEncoder = textEncoder !== null && textEncoder !== void 0 ? textEncoder : new TextEncoder(); this.chunks = []; this.buf = []; } /** * Return all bytes written and reset this writer. */ finish() { this.chunks.push(new Uint8Array(this.buf)); // flush the buffer let len = 0; for (let i = 0; i < this.chunks.length; i++) len += this.chunks[i].length; let bytes = new Uint8Array(len); let offset = 0; for (let i = 0; i < this.chunks.length; i++) { bytes.set(this.chunks[i], offset); offset += this.chunks[i].length; } this.chunks = []; return bytes; } /** * Start a new fork for length-delimited data like a message * or a packed repeated field. * * Must be joined later with `join()`. */ fork() { this.stack.push({ chunks: this.chunks, buf: this.buf }); this.chunks = []; this.buf = []; return this; } /** * Join the last fork. Write its length and bytes, then * return to the previous state. */ join() { // get chunk of fork let chunk = this.finish(); // restore previous state let prev = this.stack.pop(); if (!prev) throw new Error('invalid state, fork stack empty'); this.chunks = prev.chunks; this.buf = prev.buf; // write length of chunk as varint this.uint32(chunk.byteLength); return this.raw(chunk); } /** * Writes a tag (field number and wire type). * * Equivalent to `uint32( (fieldNo << 3 | type) >>> 0 )`. * * Generated code should compute the tag ahead of time and call `uint32()`. */ tag(fieldNo, type) { return this.uint32((fieldNo << 3 | type) >>> 0); } /** * Write a chunk of raw bytes. */ raw(chunk) { if (this.buf.length) { this.chunks.push(new Uint8Array(this.buf)); this.buf = []; } this.chunks.push(chunk); return this; } /** * Write a `uint32` value, an unsigned 32 bit varint. */ uint32(value) { assert_1.assertUInt32(value); // write value as varint 32, inlined for speed while (value > 0x7f) { this.buf.push((value & 0x7f) | 0x80); value = value >>> 7; } this.buf.push(value); return this; } /** * Write a `int32` value, a signed 32 bit varint. */ int32(value) { assert_1.assertInt32(value); goog_varint_1.varint32write(value, this.buf); return this; } /** * Write a `bool` value, a variant. */ bool(value) { this.buf.push(value ? 1 : 0); return this; } /** * Write a `bytes` value, length-delimited arbitrary data. */ bytes(value) { this.uint32(value.byteLength); // write length of chunk as varint return this.raw(value); } /** * Write a `string` value, length-delimited data converted to UTF-8 text. */ string(value) { let chunk = this.textEncoder.encode(value); this.uint32(chunk.byteLength); // write length of chunk as varint return this.raw(chunk); } /** * Write a `float` value, 32-bit floating point number. */ float(value) { assert_1.assertFloat32(value); let chunk = new Uint8Array(4); new DataView(chunk.buffer).setFloat32(0, value, true); return this.raw(chunk); } /** * Write a `double` value, a 64-bit floating point number. */ double(value) { let chunk = new Uint8Array(8); new DataView(chunk.buffer).setFloat64(0, value, true); return this.raw(chunk); } /** * Write a `fixed32` value, an unsigned, fixed-length 32-bit integer. */ fixed32(value) { assert_1.assertUInt32(value); let chunk = new Uint8Array(4); new DataView(chunk.buffer).setUint32(0, value, true); return this.raw(chunk); } /** * Write a `sfixed32` value, a signed, fixed-length 32-bit integer. */ sfixed32(value) { assert_1.assertInt32(value); let chunk = new Uint8Array(4); new DataView(chunk.buffer).setInt32(0, value, true); return this.raw(chunk); } /** * Write a `sint32` value, a signed, zigzag-encoded 32-bit varint. */ sint32(value) { assert_1.assertInt32(value); // zigzag encode value = ((value << 1) ^ (value >> 31)) >>> 0; goog_varint_1.varint32write(value, this.buf); return this; } /** * Write a `fixed64` value, a signed, fixed-length 64-bit integer. */ sfixed64(value) { let chunk = new Uint8Array(8); let view = new DataView(chunk.buffer); let long = pb_long_1.PbLong.from(value); view.setInt32(0, long.lo, true); view.setInt32(4, long.hi, true); return this.raw(chunk); } /** * Write a `fixed64` value, an unsigned, fixed-length 64 bit integer. */ fixed64(value) { let chunk = new Uint8Array(8); let view = new DataView(chunk.buffer); let long = pb_long_1.PbULong.from(value); view.setInt32(0, long.lo, true); view.setInt32(4, long.hi, true); return this.raw(chunk); } /** * Write a `int64` value, a signed 64-bit varint. */ int64(value) { let long = pb_long_1.PbLong.from(value); goog_varint_1.varint64write(long.lo, long.hi, this.buf); return this; } /** * Write a `sint64` value, a signed, zig-zag-encoded 64-bit varint. */ sint64(value) { let long = pb_long_1.PbLong.from(value), // zigzag encode sign = long.hi >> 31, lo = (long.lo << 1) ^ sign, hi = ((long.hi << 1) | (long.lo >>> 31)) ^ sign; goog_varint_1.varint64write(lo, hi, this.buf); return this; } /** * Write a `uint64` value, an unsigned 64-bit varint. */ uint64(value) { let long = pb_long_1.PbULong.from(value); goog_varint_1.varint64write(long.lo, long.hi, this.buf); return this; } } exports.BinaryWriter = BinaryWriter; /***/ }), /***/ 70257: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.listEnumNumbers = exports.listEnumNames = exports.listEnumValues = exports.isEnumObject = void 0; /** * Is this a lookup object generated by Typescript, for a Typescript enum * generated by protobuf-ts? * * - No `const enum` (enum must not be inlined, we need reverse mapping). * - No string enum (we need int32 for protobuf). * - Must have a value for 0 (otherwise, we would need to support custom default values). */ function isEnumObject(arg) { if (typeof arg != 'object' || arg === null) { return false; } if (!arg.hasOwnProperty(0)) { return false; } for (let k of Object.keys(arg)) { let num = parseInt(k); if (!Number.isNaN(num)) { // is there a name for the number? let nam = arg[num]; if (nam === undefined) return false; // does the name resolve back to the number? if (arg[nam] !== num) return false; } else { // is there a number for the name? let num = arg[k]; if (num === undefined) return false; // is it a string enum? if (typeof num !== 'number') return false; // do we know the number? if (arg[num] === undefined) return false; } } return true; } exports.isEnumObject = isEnumObject; /** * Lists all values of a Typescript enum, as an array of objects with a "name" * property and a "number" property. * * Note that it is possible that a number appears more than once, because it is * possible to have aliases in an enum. * * Throws if the enum does not adhere to the rules of enums generated by * protobuf-ts. See `isEnumObject()`. */ function listEnumValues(enumObject) { if (!isEnumObject(enumObject)) throw new Error("not a typescript enum object"); let values = []; for (let [name, number] of Object.entries(enumObject)) if (typeof number == "number") values.push({ name, number }); return values; } exports.listEnumValues = listEnumValues; /** * Lists the names of a Typescript enum. * * Throws if the enum does not adhere to the rules of enums generated by * protobuf-ts. See `isEnumObject()`. */ function listEnumNames(enumObject) { return listEnumValues(enumObject).map(val => val.name); } exports.listEnumNames = listEnumNames; /** * Lists the numbers of a Typescript enum. * * Throws if the enum does not adhere to the rules of enums generated by * protobuf-ts. See `isEnumObject()`. */ function listEnumNumbers(enumObject) { return listEnumValues(enumObject) .map(val => val.number) .filter((num, index, arr) => arr.indexOf(num) == index); } exports.listEnumNumbers = listEnumNumbers; /***/ }), /***/ 93223: /***/ ((__unused_webpack_module, exports) => { "use strict"; // Copyright 2008 Google Inc. All rights reserved. // // Redistribution and use in source and binary forms, with or without // modification, are permitted provided that the following conditions are // met: // // * Redistributions of source code must retain the above copyright // notice, this list of conditions and the following disclaimer. // * Redistributions in binary form must reproduce the above // copyright notice, this list of conditions and the following disclaimer // in the documentation and/or other materials provided with the // distribution. // * Neither the name of Google Inc. nor the names of its // contributors may be used to endorse or promote products derived from // this software without specific prior written permission. // // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. // // Code generated by the Protocol Buffer compiler is owned by the owner // of the input file used when generating it. This code is not // standalone and requires a support library to be linked with it. This // support library is itself covered by the above license. Object.defineProperty(exports, "__esModule", ({ value: true })); exports.varint32read = exports.varint32write = exports.int64toString = exports.int64fromString = exports.varint64write = exports.varint64read = void 0; /** * Read a 64 bit varint as two JS numbers. * * Returns tuple: * [0]: low bits * [0]: high bits * * Copyright 2008 Google Inc. All rights reserved. * * See https://github.com/protocolbuffers/protobuf/blob/8a71927d74a4ce34efe2d8769fda198f52d20d12/js/experimental/runtime/kernel/buffer_decoder.js#L175 */ function varint64read() { let lowBits = 0; let highBits = 0; for (let shift = 0; shift < 28; shift += 7) { let b = this.buf[this.pos++]; lowBits |= (b & 0x7F) << shift; if ((b & 0x80) == 0) { this.assertBounds(); return [lowBits, highBits]; } } let middleByte = this.buf[this.pos++]; // last four bits of the first 32 bit number lowBits |= (middleByte & 0x0F) << 28; // 3 upper bits are part of the next 32 bit number highBits = (middleByte & 0x70) >> 4; if ((middleByte & 0x80) == 0) { this.assertBounds(); return [lowBits, highBits]; } for (let shift = 3; shift <= 31; shift += 7) { let b = this.buf[this.pos++]; highBits |= (b & 0x7F) << shift; if ((b & 0x80) == 0) { this.assertBounds(); return [lowBits, highBits]; } } throw new Error('invalid varint'); } exports.varint64read = varint64read; /** * Write a 64 bit varint, given as two JS numbers, to the given bytes array. * * Copyright 2008 Google Inc. All rights reserved. * * See https://github.com/protocolbuffers/protobuf/blob/8a71927d74a4ce34efe2d8769fda198f52d20d12/js/experimental/runtime/kernel/writer.js#L344 */ function varint64write(lo, hi, bytes) { for (let i = 0; i < 28; i = i + 7) { const shift = lo >>> i; const hasNext = !((shift >>> 7) == 0 && hi == 0); const byte = (hasNext ? shift | 0x80 : shift) & 0xFF; bytes.push(byte); if (!hasNext) { return; } } const splitBits = ((lo >>> 28) & 0x0F) | ((hi & 0x07) << 4); const hasMoreBits = !((hi >> 3) == 0); bytes.push((hasMoreBits ? splitBits | 0x80 : splitBits) & 0xFF); if (!hasMoreBits) { return; } for (let i = 3; i < 31; i = i + 7) { const shift = hi >>> i; const hasNext = !((shift >>> 7) == 0); const byte = (hasNext ? shift | 0x80 : shift) & 0xFF; bytes.push(byte); if (!hasNext) { return; } } bytes.push((hi >>> 31) & 0x01); } exports.varint64write = varint64write; // constants for binary math const TWO_PWR_32_DBL = (1 << 16) * (1 << 16); /** * Parse decimal string of 64 bit integer value as two JS numbers. * * Returns tuple: * [0]: minus sign? * [1]: low bits * [2]: high bits * * Copyright 2008 Google Inc. */ function int64fromString(dec) { // Check for minus sign. let minus = dec[0] == '-'; if (minus) dec = dec.slice(1); // Work 6 decimal digits at a time, acting like we're converting base 1e6 // digits to binary. This is safe to do with floating point math because // Number.isSafeInteger(ALL_32_BITS * 1e6) == true. const base = 1e6; let lowBits = 0; let highBits = 0; function add1e6digit(begin, end) { // Note: Number('') is 0. const digit1e6 = Number(dec.slice(begin, end)); highBits *= base; lowBits = lowBits * base + digit1e6; // Carry bits from lowBits to highBits if (lowBits >= TWO_PWR_32_DBL) { highBits = highBits + ((lowBits / TWO_PWR_32_DBL) | 0); lowBits = lowBits % TWO_PWR_32_DBL; } } add1e6digit(-24, -18); add1e6digit(-18, -12); add1e6digit(-12, -6); add1e6digit(-6); return [minus, lowBits, highBits]; } exports.int64fromString = int64fromString; /** * Format 64 bit integer value (as two JS numbers) to decimal string. * * Copyright 2008 Google Inc. */ function int64toString(bitsLow, bitsHigh) { // Skip the expensive conversion if the number is small enough to use the // built-in conversions. if ((bitsHigh >>> 0) <= 0x1FFFFF) { return '' + (TWO_PWR_32_DBL * bitsHigh + (bitsLow >>> 0)); } // What this code is doing is essentially converting the input number from // base-2 to base-1e7, which allows us to represent the 64-bit range with // only 3 (very large) digits. Those digits are then trivial to convert to // a base-10 string. // The magic numbers used here are - // 2^24 = 16777216 = (1,6777216) in base-1e7. // 2^48 = 281474976710656 = (2,8147497,6710656) in base-1e7. // Split 32:32 representation into 16:24:24 representation so our // intermediate digits don't overflow. let low = bitsLow & 0xFFFFFF; let mid = (((bitsLow >>> 24) | (bitsHigh << 8)) >>> 0) & 0xFFFFFF; let high = (bitsHigh >> 16) & 0xFFFF; // Assemble our three base-1e7 digits, ignoring carries. The maximum // value in a digit at this step is representable as a 48-bit integer, which // can be stored in a 64-bit floating point number. let digitA = low + (mid * 6777216) + (high * 6710656); let digitB = mid + (high * 8147497); let digitC = (high * 2); // Apply carries from A to B and from B to C. let base = 10000000; if (digitA >= base) { digitB += Math.floor(digitA / base); digitA %= base; } if (digitB >= base) { digitC += Math.floor(digitB / base); digitB %= base; } // Convert base-1e7 digits to base-10, with optional leading zeroes. function decimalFrom1e7(digit1e7, needLeadingZeros) { let partial = digit1e7 ? String(digit1e7) : ''; if (needLeadingZeros) { return '0000000'.slice(partial.length) + partial; } return partial; } return decimalFrom1e7(digitC, /*needLeadingZeros=*/ 0) + decimalFrom1e7(digitB, /*needLeadingZeros=*/ digitC) + // If the final 1e7 digit didn't need leading zeros, we would have // returned via the trivial code path at the top. decimalFrom1e7(digitA, /*needLeadingZeros=*/ 1); } exports.int64toString = int64toString; /** * Write a 32 bit varint, signed or unsigned. Same as `varint64write(0, value, bytes)` * * Copyright 2008 Google Inc. All rights reserved. * * See https://github.com/protocolbuffers/protobuf/blob/1b18833f4f2a2f681f4e4a25cdf3b0a43115ec26/js/binary/encoder.js#L144 */ function varint32write(value, bytes) { if (value >= 0) { // write value as varint 32 while (value > 0x7f) { bytes.push((value & 0x7f) | 0x80); value = value >>> 7; } bytes.push(value); } else { for (let i = 0; i < 9; i++) { bytes.push(value & 127 | 128); value = value >> 7; } bytes.push(1); } } exports.varint32write = varint32write; /** * Read an unsigned 32 bit varint. * * See https://github.com/protocolbuffers/protobuf/blob/8a71927d74a4ce34efe2d8769fda198f52d20d12/js/experimental/runtime/kernel/buffer_decoder.js#L220 */ function varint32read() { let b = this.buf[this.pos++]; let result = b & 0x7F; if ((b & 0x80) == 0) { this.assertBounds(); return result; } b = this.buf[this.pos++]; result |= (b & 0x7F) << 7; if ((b & 0x80) == 0) { this.assertBounds(); return result; } b = this.buf[this.pos++]; result |= (b & 0x7F) << 14; if ((b & 0x80) == 0) { this.assertBounds(); return result; } b = this.buf[this.pos++]; result |= (b & 0x7F) << 21; if ((b & 0x80) == 0) { this.assertBounds(); return result; } // Extract only last 4 bits b = this.buf[this.pos++]; result |= (b & 0x0F) << 28; for (let readBytes = 5; ((b & 0x80) !== 0) && readBytes < 10; readBytes++) b = this.buf[this.pos++]; if ((b & 0x80) != 0) throw new Error('invalid varint'); this.assertBounds(); // Result can have 32 bits, convert it to unsigned return result >>> 0; } exports.varint32read = varint32read; /***/ }), /***/ 68886: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; // Public API of the protobuf-ts runtime. // Note: we do not use `export * from ...` to help tree shakers, // webpack verbose output hints that this should be useful Object.defineProperty(exports, "__esModule", ({ value: true })); // Convenience JSON typings and corresponding type guards var json_typings_1 = __nccwpck_require__(49999); Object.defineProperty(exports, "typeofJsonValue", ({ enumerable: true, get: function () { return json_typings_1.typeofJsonValue; } })); Object.defineProperty(exports, "isJsonObject", ({ enumerable: true, get: function () { return json_typings_1.isJsonObject; } })); // Base 64 encoding var base64_1 = __nccwpck_require__(26335); Object.defineProperty(exports, "base64decode", ({ enumerable: true, get: function () { return base64_1.base64decode; } })); Object.defineProperty(exports, "base64encode", ({ enumerable: true, get: function () { return base64_1.base64encode; } })); // UTF8 encoding var protobufjs_utf8_1 = __nccwpck_require__(58950); Object.defineProperty(exports, "utf8read", ({ enumerable: true, get: function () { return protobufjs_utf8_1.utf8read; } })); // Binary format contracts, options for reading and writing, for example var binary_format_contract_1 = __nccwpck_require__(54816); Object.defineProperty(exports, "WireType", ({ enumerable: true, get: function () { return binary_format_contract_1.WireType; } })); Object.defineProperty(exports, "mergeBinaryOptions", ({ enumerable: true, get: function () { return binary_format_contract_1.mergeBinaryOptions; } })); Object.defineProperty(exports, "UnknownFieldHandler", ({ enumerable: true, get: function () { return binary_format_contract_1.UnknownFieldHandler; } })); // Standard IBinaryReader implementation var binary_reader_1 = __nccwpck_require__(92889); Object.defineProperty(exports, "BinaryReader", ({ enumerable: true, get: function () { return binary_reader_1.BinaryReader; } })); Object.defineProperty(exports, "binaryReadOptions", ({ enumerable: true, get: function () { return binary_reader_1.binaryReadOptions; } })); // Standard IBinaryWriter implementation var binary_writer_1 = __nccwpck_require__(23957); Object.defineProperty(exports, "BinaryWriter", ({ enumerable: true, get: function () { return binary_writer_1.BinaryWriter; } })); Object.defineProperty(exports, "binaryWriteOptions", ({ enumerable: true, get: function () { return binary_writer_1.binaryWriteOptions; } })); // Int64 and UInt64 implementations required for the binary format var pb_long_1 = __nccwpck_require__(61753); Object.defineProperty(exports, "PbLong", ({ enumerable: true, get: function () { return pb_long_1.PbLong; } })); Object.defineProperty(exports, "PbULong", ({ enumerable: true, get: function () { return pb_long_1.PbULong; } })); // JSON format contracts, options for reading and writing, for example var json_format_contract_1 = __nccwpck_require__(29367); Object.defineProperty(exports, "jsonReadOptions", ({ enumerable: true, get: function () { return json_format_contract_1.jsonReadOptions; } })); Object.defineProperty(exports, "jsonWriteOptions", ({ enumerable: true, get: function () { return json_format_contract_1.jsonWriteOptions; } })); Object.defineProperty(exports, "mergeJsonOptions", ({ enumerable: true, get: function () { return json_format_contract_1.mergeJsonOptions; } })); // Message type contract var message_type_contract_1 = __nccwpck_require__(43785); Object.defineProperty(exports, "MESSAGE_TYPE", ({ enumerable: true, get: function () { return message_type_contract_1.MESSAGE_TYPE; } })); // Message type implementation via reflection var message_type_1 = __nccwpck_require__(15106); Object.defineProperty(exports, "MessageType", ({ enumerable: true, get: function () { return message_type_1.MessageType; } })); // Reflection info, generated by the plugin, exposed to the user, used by reflection ops var reflection_info_1 = __nccwpck_require__(67910); Object.defineProperty(exports, "ScalarType", ({ enumerable: true, get: function () { return reflection_info_1.ScalarType; } })); Object.defineProperty(exports, "LongType", ({ enumerable: true, get: function () { return reflection_info_1.LongType; } })); Object.defineProperty(exports, "RepeatType", ({ enumerable: true, get: function () { return reflection_info_1.RepeatType; } })); Object.defineProperty(exports, "normalizeFieldInfo", ({ enumerable: true, get: function () { return reflection_info_1.normalizeFieldInfo; } })); Object.defineProperty(exports, "readFieldOptions", ({ enumerable: true, get: function () { return reflection_info_1.readFieldOptions; } })); Object.defineProperty(exports, "readFieldOption", ({ enumerable: true, get: function () { return reflection_info_1.readFieldOption; } })); Object.defineProperty(exports, "readMessageOption", ({ enumerable: true, get: function () { return reflection_info_1.readMessageOption; } })); // Message operations via reflection var reflection_type_check_1 = __nccwpck_require__(25167); Object.defineProperty(exports, "ReflectionTypeCheck", ({ enumerable: true, get: function () { return reflection_type_check_1.ReflectionTypeCheck; } })); var reflection_create_1 = __nccwpck_require__(75726); Object.defineProperty(exports, "reflectionCreate", ({ enumerable: true, get: function () { return reflection_create_1.reflectionCreate; } })); var reflection_scalar_default_1 = __nccwpck_require__(19526); Object.defineProperty(exports, "reflectionScalarDefault", ({ enumerable: true, get: function () { return reflection_scalar_default_1.reflectionScalarDefault; } })); var reflection_merge_partial_1 = __nccwpck_require__(98044); Object.defineProperty(exports, "reflectionMergePartial", ({ enumerable: true, get: function () { return reflection_merge_partial_1.reflectionMergePartial; } })); var reflection_equals_1 = __nccwpck_require__(4827); Object.defineProperty(exports, "reflectionEquals", ({ enumerable: true, get: function () { return reflection_equals_1.reflectionEquals; } })); var reflection_binary_reader_1 = __nccwpck_require__(89611); Object.defineProperty(exports, "ReflectionBinaryReader", ({ enumerable: true, get: function () { return reflection_binary_reader_1.ReflectionBinaryReader; } })); var reflection_binary_writer_1 = __nccwpck_require__(66907); Object.defineProperty(exports, "ReflectionBinaryWriter", ({ enumerable: true, get: function () { return reflection_binary_writer_1.ReflectionBinaryWriter; } })); var reflection_json_reader_1 = __nccwpck_require__(46790); Object.defineProperty(exports, "ReflectionJsonReader", ({ enumerable: true, get: function () { return reflection_json_reader_1.ReflectionJsonReader; } })); var reflection_json_writer_1 = __nccwpck_require__(11094); Object.defineProperty(exports, "ReflectionJsonWriter", ({ enumerable: true, get: function () { return reflection_json_writer_1.ReflectionJsonWriter; } })); var reflection_contains_message_type_1 = __nccwpck_require__(59946); Object.defineProperty(exports, "containsMessageType", ({ enumerable: true, get: function () { return reflection_contains_message_type_1.containsMessageType; } })); // Oneof helpers var oneof_1 = __nccwpck_require__(18063); Object.defineProperty(exports, "isOneofGroup", ({ enumerable: true, get: function () { return oneof_1.isOneofGroup; } })); Object.defineProperty(exports, "setOneofValue", ({ enumerable: true, get: function () { return oneof_1.setOneofValue; } })); Object.defineProperty(exports, "getOneofValue", ({ enumerable: true, get: function () { return oneof_1.getOneofValue; } })); Object.defineProperty(exports, "clearOneofValue", ({ enumerable: true, get: function () { return oneof_1.clearOneofValue; } })); Object.defineProperty(exports, "getSelectedOneofValue", ({ enumerable: true, get: function () { return oneof_1.getSelectedOneofValue; } })); // Enum object type guard and reflection util, may be interesting to the user. var enum_object_1 = __nccwpck_require__(70257); Object.defineProperty(exports, "listEnumValues", ({ enumerable: true, get: function () { return enum_object_1.listEnumValues; } })); Object.defineProperty(exports, "listEnumNames", ({ enumerable: true, get: function () { return enum_object_1.listEnumNames; } })); Object.defineProperty(exports, "listEnumNumbers", ({ enumerable: true, get: function () { return enum_object_1.listEnumNumbers; } })); Object.defineProperty(exports, "isEnumObject", ({ enumerable: true, get: function () { return enum_object_1.isEnumObject; } })); // lowerCamelCase() is exported for plugin, rpc-runtime and other rpc packages var lower_camel_case_1 = __nccwpck_require__(4073); Object.defineProperty(exports, "lowerCamelCase", ({ enumerable: true, get: function () { return lower_camel_case_1.lowerCamelCase; } })); // assertion functions are exported for plugin, may also be useful to user var assert_1 = __nccwpck_require__(8602); Object.defineProperty(exports, "assert", ({ enumerable: true, get: function () { return assert_1.assert; } })); Object.defineProperty(exports, "assertNever", ({ enumerable: true, get: function () { return assert_1.assertNever; } })); Object.defineProperty(exports, "assertInt32", ({ enumerable: true, get: function () { return assert_1.assertInt32; } })); Object.defineProperty(exports, "assertUInt32", ({ enumerable: true, get: function () { return assert_1.assertUInt32; } })); Object.defineProperty(exports, "assertFloat32", ({ enumerable: true, get: function () { return assert_1.assertFloat32; } })); /***/ }), /***/ 29367: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.mergeJsonOptions = exports.jsonWriteOptions = exports.jsonReadOptions = void 0; const defaultsWrite = { emitDefaultValues: false, enumAsInteger: false, useProtoFieldName: false, prettySpaces: 0, }, defaultsRead = { ignoreUnknownFields: false, }; /** * Make options for reading JSON data from partial options. */ function jsonReadOptions(options) { return options ? Object.assign(Object.assign({}, defaultsRead), options) : defaultsRead; } exports.jsonReadOptions = jsonReadOptions; /** * Make options for writing JSON data from partial options. */ function jsonWriteOptions(options) { return options ? Object.assign(Object.assign({}, defaultsWrite), options) : defaultsWrite; } exports.jsonWriteOptions = jsonWriteOptions; /** * Merges JSON write or read options. Later values override earlier values. Type registries are merged. */ function mergeJsonOptions(a, b) { var _a, _b; let c = Object.assign(Object.assign({}, a), b); c.typeRegistry = [...((_a = a === null || a === void 0 ? void 0 : a.typeRegistry) !== null && _a !== void 0 ? _a : []), ...((_b = b === null || b === void 0 ? void 0 : b.typeRegistry) !== null && _b !== void 0 ? _b : [])]; return c; } exports.mergeJsonOptions = mergeJsonOptions; /***/ }), /***/ 49999: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.isJsonObject = exports.typeofJsonValue = void 0; /** * Get the type of a JSON value. * Distinguishes between array, null and object. */ function typeofJsonValue(value) { let t = typeof value; if (t == "object") { if (Array.isArray(value)) return "array"; if (value === null) return "null"; } return t; } exports.typeofJsonValue = typeofJsonValue; /** * Is this a JSON object (instead of an array or null)? */ function isJsonObject(value) { return value !== null && typeof value == "object" && !Array.isArray(value); } exports.isJsonObject = isJsonObject; /***/ }), /***/ 4073: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.lowerCamelCase = void 0; /** * Converts snake_case to lowerCamelCase. * * Should behave like protoc: * https://github.com/protocolbuffers/protobuf/blob/e8ae137c96444ea313485ed1118c5e43b2099cf1/src/google/protobuf/compiler/java/java_helpers.cc#L118 */ function lowerCamelCase(snakeCase) { let capNext = false; const sb = []; for (let i = 0; i < snakeCase.length; i++) { let next = snakeCase.charAt(i); if (next == '_') { capNext = true; } else if (/\d/.test(next)) { sb.push(next); capNext = true; } else if (capNext) { sb.push(next.toUpperCase()); capNext = false; } else if (i == 0) { sb.push(next.toLowerCase()); } else { sb.push(next); } } return sb.join(''); } exports.lowerCamelCase = lowerCamelCase; /***/ }), /***/ 43785: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.MESSAGE_TYPE = void 0; /** * The symbol used as a key on message objects to store the message type. * * Note that this is an experimental feature - it is here to stay, but * implementation details may change without notice. */ exports.MESSAGE_TYPE = Symbol.for("protobuf-ts/message-type"); /***/ }), /***/ 15106: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.MessageType = void 0; const message_type_contract_1 = __nccwpck_require__(43785); const reflection_info_1 = __nccwpck_require__(67910); const reflection_type_check_1 = __nccwpck_require__(25167); const reflection_json_reader_1 = __nccwpck_require__(46790); const reflection_json_writer_1 = __nccwpck_require__(11094); const reflection_binary_reader_1 = __nccwpck_require__(89611); const reflection_binary_writer_1 = __nccwpck_require__(66907); const reflection_create_1 = __nccwpck_require__(75726); const reflection_merge_partial_1 = __nccwpck_require__(98044); const json_typings_1 = __nccwpck_require__(49999); const json_format_contract_1 = __nccwpck_require__(29367); const reflection_equals_1 = __nccwpck_require__(4827); const binary_writer_1 = __nccwpck_require__(23957); const binary_reader_1 = __nccwpck_require__(92889); const baseDescriptors = Object.getOwnPropertyDescriptors(Object.getPrototypeOf({})); const messageTypeDescriptor = baseDescriptors[message_type_contract_1.MESSAGE_TYPE] = {}; /** * This standard message type provides reflection-based * operations to work with a message. */ class MessageType { constructor(name, fields, options) { this.defaultCheckDepth = 16; this.typeName = name; this.fields = fields.map(reflection_info_1.normalizeFieldInfo); this.options = options !== null && options !== void 0 ? options : {}; messageTypeDescriptor.value = this; this.messagePrototype = Object.create(null, baseDescriptors); this.refTypeCheck = new reflection_type_check_1.ReflectionTypeCheck(this); this.refJsonReader = new reflection_json_reader_1.ReflectionJsonReader(this); this.refJsonWriter = new reflection_json_writer_1.ReflectionJsonWriter(this); this.refBinReader = new reflection_binary_reader_1.ReflectionBinaryReader(this); this.refBinWriter = new reflection_binary_writer_1.ReflectionBinaryWriter(this); } create(value) { let message = reflection_create_1.reflectionCreate(this); if (value !== undefined) { reflection_merge_partial_1.reflectionMergePartial(this, message, value); } return message; } /** * Clone the message. * * Unknown fields are discarded. */ clone(message) { let copy = this.create(); reflection_merge_partial_1.reflectionMergePartial(this, copy, message); return copy; } /** * Determines whether two message of the same type have the same field values. * Checks for deep equality, traversing repeated fields, oneof groups, maps * and messages recursively. * Will also return true if both messages are `undefined`. */ equals(a, b) { return reflection_equals_1.reflectionEquals(this, a, b); } /** * Is the given value assignable to our message type * and contains no [excess properties](https://www.typescriptlang.org/docs/handbook/interfaces.html#excess-property-checks)? */ is(arg, depth = this.defaultCheckDepth) { return this.refTypeCheck.is(arg, depth, false); } /** * Is the given value assignable to our message type, * regardless of [excess properties](https://www.typescriptlang.org/docs/handbook/interfaces.html#excess-property-checks)? */ isAssignable(arg, depth = this.defaultCheckDepth) { return this.refTypeCheck.is(arg, depth, true); } /** * Copy partial data into the target message. */ mergePartial(target, source) { reflection_merge_partial_1.reflectionMergePartial(this, target, source); } /** * Create a new message from binary format. */ fromBinary(data, options) { let opt = binary_reader_1.binaryReadOptions(options); return this.internalBinaryRead(opt.readerFactory(data), data.byteLength, opt); } /** * Read a new message from a JSON value. */ fromJson(json, options) { return this.internalJsonRead(json, json_format_contract_1.jsonReadOptions(options)); } /** * Read a new message from a JSON string. * This is equivalent to `T.fromJson(JSON.parse(json))`. */ fromJsonString(json, options) { let value = JSON.parse(json); return this.fromJson(value, options); } /** * Write the message to canonical JSON value. */ toJson(message, options) { return this.internalJsonWrite(message, json_format_contract_1.jsonWriteOptions(options)); } /** * Convert the message to canonical JSON string. * This is equivalent to `JSON.stringify(T.toJson(t))` */ toJsonString(message, options) { var _a; let value = this.toJson(message, options); return JSON.stringify(value, null, (_a = options === null || options === void 0 ? void 0 : options.prettySpaces) !== null && _a !== void 0 ? _a : 0); } /** * Write the message to binary format. */ toBinary(message, options) { let opt = binary_writer_1.binaryWriteOptions(options); return this.internalBinaryWrite(message, opt.writerFactory(), opt).finish(); } /** * This is an internal method. If you just want to read a message from * JSON, use `fromJson()` or `fromJsonString()`. * * Reads JSON value and merges the fields into the target * according to protobuf rules. If the target is omitted, * a new instance is created first. */ internalJsonRead(json, options, target) { if (json !== null && typeof json == "object" && !Array.isArray(json)) { let message = target !== null && target !== void 0 ? target : this.create(); this.refJsonReader.read(json, message, options); return message; } throw new Error(`Unable to parse message ${this.typeName} from JSON ${json_typings_1.typeofJsonValue(json)}.`); } /** * This is an internal method. If you just want to write a message * to JSON, use `toJson()` or `toJsonString(). * * Writes JSON value and returns it. */ internalJsonWrite(message, options) { return this.refJsonWriter.write(message, options); } /** * This is an internal method. If you just want to write a message * in binary format, use `toBinary()`. * * Serializes the message in binary format and appends it to the given * writer. Returns passed writer. */ internalBinaryWrite(message, writer, options) { this.refBinWriter.write(message, writer, options); return writer; } /** * This is an internal method. If you just want to read a message from * binary data, use `fromBinary()`. * * Reads data from binary format and merges the fields into * the target according to protobuf rules. If the target is * omitted, a new instance is created first. */ internalBinaryRead(reader, length, options, target) { let message = target !== null && target !== void 0 ? target : this.create(); this.refBinReader.read(reader, message, options, length); return message; } } exports.MessageType = MessageType; /***/ }), /***/ 18063: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.getSelectedOneofValue = exports.clearOneofValue = exports.setUnknownOneofValue = exports.setOneofValue = exports.getOneofValue = exports.isOneofGroup = void 0; /** * Is the given value a valid oneof group? * * We represent protobuf `oneof` as algebraic data types (ADT) in generated * code. But when working with messages of unknown type, the ADT does not * help us. * * This type guard checks if the given object adheres to the ADT rules, which * are as follows: * * 1) Must be an object. * * 2) Must have a "oneofKind" discriminator property. * * 3) If "oneofKind" is `undefined`, no member field is selected. The object * must not have any other properties. * * 4) If "oneofKind" is a `string`, the member field with this name is * selected. * * 5) If a member field is selected, the object must have a second property * with this name. The property must not be `undefined`. * * 6) No extra properties are allowed. The object has either one property * (no selection) or two properties (selection). * */ function isOneofGroup(any) { if (typeof any != 'object' || any === null || !any.hasOwnProperty('oneofKind')) { return false; } switch (typeof any.oneofKind) { case "string": if (any[any.oneofKind] === undefined) return false; return Object.keys(any).length == 2; case "undefined": return Object.keys(any).length == 1; default: return false; } } exports.isOneofGroup = isOneofGroup; /** * Returns the value of the given field in a oneof group. */ function getOneofValue(oneof, kind) { return oneof[kind]; } exports.getOneofValue = getOneofValue; function setOneofValue(oneof, kind, value) { if (oneof.oneofKind !== undefined) { delete oneof[oneof.oneofKind]; } oneof.oneofKind = kind; if (value !== undefined) { oneof[kind] = value; } } exports.setOneofValue = setOneofValue; function setUnknownOneofValue(oneof, kind, value) { if (oneof.oneofKind !== undefined) { delete oneof[oneof.oneofKind]; } oneof.oneofKind = kind; if (value !== undefined && kind !== undefined) { oneof[kind] = value; } } exports.setUnknownOneofValue = setUnknownOneofValue; /** * Removes the selected field in a oneof group. * * Note that the recommended way to modify a oneof group is to set * a new object: * * ```ts * message.result = { oneofKind: undefined }; * ``` */ function clearOneofValue(oneof) { if (oneof.oneofKind !== undefined) { delete oneof[oneof.oneofKind]; } oneof.oneofKind = undefined; } exports.clearOneofValue = clearOneofValue; /** * Returns the selected value of the given oneof group. * * Not that the recommended way to access a oneof group is to check * the "oneofKind" property and let TypeScript narrow down the union * type for you: * * ```ts * if (message.result.oneofKind === "error") { * message.result.error; // string * } * ``` * * In the rare case you just need the value, and do not care about * which protobuf field is selected, you can use this function * for convenience. */ function getSelectedOneofValue(oneof) { if (oneof.oneofKind === undefined) { return undefined; } return oneof[oneof.oneofKind]; } exports.getSelectedOneofValue = getSelectedOneofValue; /***/ }), /***/ 61753: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.PbLong = exports.PbULong = exports.detectBi = void 0; const goog_varint_1 = __nccwpck_require__(93223); let BI; function detectBi() { const dv = new DataView(new ArrayBuffer(8)); const ok = globalThis.BigInt !== undefined && typeof dv.getBigInt64 === "function" && typeof dv.getBigUint64 === "function" && typeof dv.setBigInt64 === "function" && typeof dv.setBigUint64 === "function"; BI = ok ? { MIN: BigInt("-9223372036854775808"), MAX: BigInt("9223372036854775807"), UMIN: BigInt("0"), UMAX: BigInt("18446744073709551615"), C: BigInt, V: dv, } : undefined; } exports.detectBi = detectBi; detectBi(); function assertBi(bi) { if (!bi) throw new Error("BigInt unavailable, see https://github.com/timostamm/protobuf-ts/blob/v1.0.8/MANUAL.md#bigint-support"); } // used to validate from(string) input (when bigint is unavailable) const RE_DECIMAL_STR = /^-?[0-9]+$/; // constants for binary math const TWO_PWR_32_DBL = 0x100000000; const HALF_2_PWR_32 = 0x080000000; // base class for PbLong and PbULong provides shared code class SharedPbLong { /** * Create a new instance with the given bits. */ constructor(lo, hi) { this.lo = lo | 0; this.hi = hi | 0; } /** * Is this instance equal to 0? */ isZero() { return this.lo == 0 && this.hi == 0; } /** * Convert to a native number. */ toNumber() { let result = this.hi * TWO_PWR_32_DBL + (this.lo >>> 0); if (!Number.isSafeInteger(result)) throw new Error("cannot convert to safe number"); return result; } } /** * 64-bit unsigned integer as two 32-bit values. * Converts between `string`, `number` and `bigint` representations. */ class PbULong extends SharedPbLong { /** * Create instance from a `string`, `number` or `bigint`. */ static from(value) { if (BI) // noinspection FallThroughInSwitchStatementJS switch (typeof value) { case "string": if (value == "0") return this.ZERO; if (value == "") throw new Error('string is no integer'); value = BI.C(value); case "number": if (value === 0) return this.ZERO; value = BI.C(value); case "bigint": if (!value) return this.ZERO; if (value < BI.UMIN) throw new Error('signed value for ulong'); if (value > BI.UMAX) throw new Error('ulong too large'); BI.V.setBigUint64(0, value, true); return new PbULong(BI.V.getInt32(0, true), BI.V.getInt32(4, true)); } else switch (typeof value) { case "string": if (value == "0") return this.ZERO; value = value.trim(); if (!RE_DECIMAL_STR.test(value)) throw new Error('string is no integer'); let [minus, lo, hi] = goog_varint_1.int64fromString(value); if (minus) throw new Error('signed value for ulong'); return new PbULong(lo, hi); case "number": if (value == 0) return this.ZERO; if (!Number.isSafeInteger(value)) throw new Error('number is no integer'); if (value < 0) throw new Error('signed value for ulong'); return new PbULong(value, value / TWO_PWR_32_DBL); } throw new Error('unknown value ' + typeof value); } /** * Convert to decimal string. */ toString() { return BI ? this.toBigInt().toString() : goog_varint_1.int64toString(this.lo, this.hi); } /** * Convert to native bigint. */ toBigInt() { assertBi(BI); BI.V.setInt32(0, this.lo, true); BI.V.setInt32(4, this.hi, true); return BI.V.getBigUint64(0, true); } } exports.PbULong = PbULong; /** * ulong 0 singleton. */ PbULong.ZERO = new PbULong(0, 0); /** * 64-bit signed integer as two 32-bit values. * Converts between `string`, `number` and `bigint` representations. */ class PbLong extends SharedPbLong { /** * Create instance from a `string`, `number` or `bigint`. */ static from(value) { if (BI) // noinspection FallThroughInSwitchStatementJS switch (typeof value) { case "string": if (value == "0") return this.ZERO; if (value == "") throw new Error('string is no integer'); value = BI.C(value); case "number": if (value === 0) return this.ZERO; value = BI.C(value); case "bigint": if (!value) return this.ZERO; if (value < BI.MIN) throw new Error('signed long too small'); if (value > BI.MAX) throw new Error('signed long too large'); BI.V.setBigInt64(0, value, true); return new PbLong(BI.V.getInt32(0, true), BI.V.getInt32(4, true)); } else switch (typeof value) { case "string": if (value == "0") return this.ZERO; value = value.trim(); if (!RE_DECIMAL_STR.test(value)) throw new Error('string is no integer'); let [minus, lo, hi] = goog_varint_1.int64fromString(value); if (minus) { if (hi > HALF_2_PWR_32 || (hi == HALF_2_PWR_32 && lo != 0)) throw new Error('signed long too small'); } else if (hi >= HALF_2_PWR_32) throw new Error('signed long too large'); let pbl = new PbLong(lo, hi); return minus ? pbl.negate() : pbl; case "number": if (value == 0) return this.ZERO; if (!Number.isSafeInteger(value)) throw new Error('number is no integer'); return value > 0 ? new PbLong(value, value / TWO_PWR_32_DBL) : new PbLong(-value, -value / TWO_PWR_32_DBL).negate(); } throw new Error('unknown value ' + typeof value); } /** * Do we have a minus sign? */ isNegative() { return (this.hi & HALF_2_PWR_32) !== 0; } /** * Negate two's complement. * Invert all the bits and add one to the result. */ negate() { let hi = ~this.hi, lo = this.lo; if (lo) lo = ~lo + 1; else hi += 1; return new PbLong(lo, hi); } /** * Convert to decimal string. */ toString() { if (BI) return this.toBigInt().toString(); if (this.isNegative()) { let n = this.negate(); return '-' + goog_varint_1.int64toString(n.lo, n.hi); } return goog_varint_1.int64toString(this.lo, this.hi); } /** * Convert to native bigint. */ toBigInt() { assertBi(BI); BI.V.setInt32(0, this.lo, true); BI.V.setInt32(4, this.hi, true); return BI.V.getBigInt64(0, true); } } exports.PbLong = PbLong; /** * long 0 singleton. */ PbLong.ZERO = new PbLong(0, 0); /***/ }), /***/ 58950: /***/ ((__unused_webpack_module, exports) => { "use strict"; // Copyright (c) 2016, Daniel Wirtz All rights reserved. // // Redistribution and use in source and binary forms, with or without // modification, are permitted provided that the following conditions are // met: // // * Redistributions of source code must retain the above copyright // notice, this list of conditions and the following disclaimer. // * Redistributions in binary form must reproduce the above copyright // notice, this list of conditions and the following disclaimer in the // documentation and/or other materials provided with the distribution. // * Neither the name of its author, nor the names of its contributors // may be used to endorse or promote products derived from this software // without specific prior written permission. // // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. Object.defineProperty(exports, "__esModule", ({ value: true })); exports.utf8read = void 0; const fromCharCodes = (chunk) => String.fromCharCode.apply(String, chunk); /** * @deprecated This function will no longer be exported with the next major * release, since protobuf-ts has switch to TextDecoder API. If you need this * function, please migrate to @protobufjs/utf8. For context, see * https://github.com/timostamm/protobuf-ts/issues/184 * * Reads UTF8 bytes as a string. * * See [protobufjs / utf8](https://github.com/protobufjs/protobuf.js/blob/9893e35b854621cce64af4bf6be2cff4fb892796/lib/utf8/index.js#L40) * * Copyright (c) 2016, Daniel Wirtz */ function utf8read(bytes) { if (bytes.length < 1) return ""; let pos = 0, // position in bytes parts = [], chunk = [], i = 0, // char offset t; // temporary let len = bytes.length; while (pos < len) { t = bytes[pos++]; if (t < 128) chunk[i++] = t; else if (t > 191 && t < 224) chunk[i++] = (t & 31) << 6 | bytes[pos++] & 63; else if (t > 239 && t < 365) { t = ((t & 7) << 18 | (bytes[pos++] & 63) << 12 | (bytes[pos++] & 63) << 6 | bytes[pos++] & 63) - 0x10000; chunk[i++] = 0xD800 + (t >> 10); chunk[i++] = 0xDC00 + (t & 1023); } else chunk[i++] = (t & 15) << 12 | (bytes[pos++] & 63) << 6 | bytes[pos++] & 63; if (i > 8191) { parts.push(fromCharCodes(chunk)); i = 0; } } if (parts.length) { if (i) parts.push(fromCharCodes(chunk.slice(0, i))); return parts.join(""); } return fromCharCodes(chunk.slice(0, i)); } exports.utf8read = utf8read; /***/ }), /***/ 89611: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.ReflectionBinaryReader = void 0; const binary_format_contract_1 = __nccwpck_require__(54816); const reflection_info_1 = __nccwpck_require__(67910); const reflection_long_convert_1 = __nccwpck_require__(63402); const reflection_scalar_default_1 = __nccwpck_require__(19526); /** * Reads proto3 messages in binary format using reflection information. * * https://developers.google.com/protocol-buffers/docs/encoding */ class ReflectionBinaryReader { constructor(info) { this.info = info; } prepare() { var _a; if (!this.fieldNoToField) { const fieldsInput = (_a = this.info.fields) !== null && _a !== void 0 ? _a : []; this.fieldNoToField = new Map(fieldsInput.map(field => [field.no, field])); } } /** * Reads a message from binary format into the target message. * * Repeated fields are appended. Map entries are added, overwriting * existing keys. * * If a message field is already present, it will be merged with the * new data. */ read(reader, message, options, length) { this.prepare(); const end = length === undefined ? reader.len : reader.pos + length; while (reader.pos < end) { // read the tag and find the field const [fieldNo, wireType] = reader.tag(), field = this.fieldNoToField.get(fieldNo); if (!field) { let u = options.readUnknownField; if (u == "throw") throw new Error(`Unknown field ${fieldNo} (wire type ${wireType}) for ${this.info.typeName}`); let d = reader.skip(wireType); if (u !== false) (u === true ? binary_format_contract_1.UnknownFieldHandler.onRead : u)(this.info.typeName, message, fieldNo, wireType, d); continue; } // target object for the field we are reading let target = message, repeated = field.repeat, localName = field.localName; // if field is member of oneof ADT, use ADT as target if (field.oneof) { target = target[field.oneof]; // if other oneof member selected, set new ADT if (target.oneofKind !== localName) target = message[field.oneof] = { oneofKind: localName }; } // we have handled oneof above, we just have read the value into `target[localName]` switch (field.kind) { case "scalar": case "enum": let T = field.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.T; let L = field.kind == "scalar" ? field.L : undefined; if (repeated) { let arr = target[localName]; // safe to assume presence of array, oneof cannot contain repeated values if (wireType == binary_format_contract_1.WireType.LengthDelimited && T != reflection_info_1.ScalarType.STRING && T != reflection_info_1.ScalarType.BYTES) { let e = reader.uint32() + reader.pos; while (reader.pos < e) arr.push(this.scalar(reader, T, L)); } else arr.push(this.scalar(reader, T, L)); } else target[localName] = this.scalar(reader, T, L); break; case "message": if (repeated) { let arr = target[localName]; // safe to assume presence of array, oneof cannot contain repeated values let msg = field.T().internalBinaryRead(reader, reader.uint32(), options); arr.push(msg); } else target[localName] = field.T().internalBinaryRead(reader, reader.uint32(), options, target[localName]); break; case "map": let [mapKey, mapVal] = this.mapEntry(field, reader, options); // safe to assume presence of map object, oneof cannot contain repeated values target[localName][mapKey] = mapVal; break; } } } /** * Read a map field, expecting key field = 1, value field = 2 */ mapEntry(field, reader, options) { let length = reader.uint32(); let end = reader.pos + length; let key = undefined; // javascript only allows number or string for object properties let val = undefined; while (reader.pos < end) { let [fieldNo, wireType] = reader.tag(); switch (fieldNo) { case 1: if (field.K == reflection_info_1.ScalarType.BOOL) key = reader.bool().toString(); else // long types are read as string, number types are okay as number key = this.scalar(reader, field.K, reflection_info_1.LongType.STRING); break; case 2: switch (field.V.kind) { case "scalar": val = this.scalar(reader, field.V.T, field.V.L); break; case "enum": val = reader.int32(); break; case "message": val = field.V.T().internalBinaryRead(reader, reader.uint32(), options); break; } break; default: throw new Error(`Unknown field ${fieldNo} (wire type ${wireType}) in map entry for ${this.info.typeName}#${field.name}`); } } if (key === undefined) { let keyRaw = reflection_scalar_default_1.reflectionScalarDefault(field.K); key = field.K == reflection_info_1.ScalarType.BOOL ? keyRaw.toString() : keyRaw; } if (val === undefined) switch (field.V.kind) { case "scalar": val = reflection_scalar_default_1.reflectionScalarDefault(field.V.T, field.V.L); break; case "enum": val = 0; break; case "message": val = field.V.T().create(); break; } return [key, val]; } scalar(reader, type, longType) { switch (type) { case reflection_info_1.ScalarType.INT32: return reader.int32(); case reflection_info_1.ScalarType.STRING: return reader.string(); case reflection_info_1.ScalarType.BOOL: return reader.bool(); case reflection_info_1.ScalarType.DOUBLE: return reader.double(); case reflection_info_1.ScalarType.FLOAT: return reader.float(); case reflection_info_1.ScalarType.INT64: return reflection_long_convert_1.reflectionLongConvert(reader.int64(), longType); case reflection_info_1.ScalarType.UINT64: return reflection_long_convert_1.reflectionLongConvert(reader.uint64(), longType); case reflection_info_1.ScalarType.FIXED64: return reflection_long_convert_1.reflectionLongConvert(reader.fixed64(), longType); case reflection_info_1.ScalarType.FIXED32: return reader.fixed32(); case reflection_info_1.ScalarType.BYTES: return reader.bytes(); case reflection_info_1.ScalarType.UINT32: return reader.uint32(); case reflection_info_1.ScalarType.SFIXED32: return reader.sfixed32(); case reflection_info_1.ScalarType.SFIXED64: return reflection_long_convert_1.reflectionLongConvert(reader.sfixed64(), longType); case reflection_info_1.ScalarType.SINT32: return reader.sint32(); case reflection_info_1.ScalarType.SINT64: return reflection_long_convert_1.reflectionLongConvert(reader.sint64(), longType); } } } exports.ReflectionBinaryReader = ReflectionBinaryReader; /***/ }), /***/ 66907: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.ReflectionBinaryWriter = void 0; const binary_format_contract_1 = __nccwpck_require__(54816); const reflection_info_1 = __nccwpck_require__(67910); const assert_1 = __nccwpck_require__(8602); const pb_long_1 = __nccwpck_require__(61753); /** * Writes proto3 messages in binary format using reflection information. * * https://developers.google.com/protocol-buffers/docs/encoding */ class ReflectionBinaryWriter { constructor(info) { this.info = info; } prepare() { if (!this.fields) { const fieldsInput = this.info.fields ? this.info.fields.concat() : []; this.fields = fieldsInput.sort((a, b) => a.no - b.no); } } /** * Writes the message to binary format. */ write(message, writer, options) { this.prepare(); for (const field of this.fields) { let value, // this will be our field value, whether it is member of a oneof or not emitDefault, // whether we emit the default value (only true for oneof members) repeated = field.repeat, localName = field.localName; // handle oneof ADT if (field.oneof) { const group = message[field.oneof]; if (group.oneofKind !== localName) continue; // if field is not selected, skip value = group[localName]; emitDefault = true; } else { value = message[localName]; emitDefault = false; } // we have handled oneof above. we just have to honor `emitDefault`. switch (field.kind) { case "scalar": case "enum": let T = field.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.T; if (repeated) { assert_1.assert(Array.isArray(value)); if (repeated == reflection_info_1.RepeatType.PACKED) this.packed(writer, T, field.no, value); else for (const item of value) this.scalar(writer, T, field.no, item, true); } else if (value === undefined) assert_1.assert(field.opt); else this.scalar(writer, T, field.no, value, emitDefault || field.opt); break; case "message": if (repeated) { assert_1.assert(Array.isArray(value)); for (const item of value) this.message(writer, options, field.T(), field.no, item); } else { this.message(writer, options, field.T(), field.no, value); } break; case "map": assert_1.assert(typeof value == 'object' && value !== null); for (const [key, val] of Object.entries(value)) this.mapEntry(writer, options, field, key, val); break; } } let u = options.writeUnknownFields; if (u !== false) (u === true ? binary_format_contract_1.UnknownFieldHandler.onWrite : u)(this.info.typeName, message, writer); } mapEntry(writer, options, field, key, value) { writer.tag(field.no, binary_format_contract_1.WireType.LengthDelimited); writer.fork(); // javascript only allows number or string for object properties // we convert from our representation to the protobuf type let keyValue = key; switch (field.K) { case reflection_info_1.ScalarType.INT32: case reflection_info_1.ScalarType.FIXED32: case reflection_info_1.ScalarType.UINT32: case reflection_info_1.ScalarType.SFIXED32: case reflection_info_1.ScalarType.SINT32: keyValue = Number.parseInt(key); break; case reflection_info_1.ScalarType.BOOL: assert_1.assert(key == 'true' || key == 'false'); keyValue = key == 'true'; break; } // write key, expecting key field number = 1 this.scalar(writer, field.K, 1, keyValue, true); // write value, expecting value field number = 2 switch (field.V.kind) { case 'scalar': this.scalar(writer, field.V.T, 2, value, true); break; case 'enum': this.scalar(writer, reflection_info_1.ScalarType.INT32, 2, value, true); break; case 'message': this.message(writer, options, field.V.T(), 2, value); break; } writer.join(); } message(writer, options, handler, fieldNo, value) { if (value === undefined) return; handler.internalBinaryWrite(value, writer.tag(fieldNo, binary_format_contract_1.WireType.LengthDelimited).fork(), options); writer.join(); } /** * Write a single scalar value. */ scalar(writer, type, fieldNo, value, emitDefault) { let [wireType, method, isDefault] = this.scalarInfo(type, value); if (!isDefault || emitDefault) { writer.tag(fieldNo, wireType); writer[method](value); } } /** * Write an array of scalar values in packed format. */ packed(writer, type, fieldNo, value) { if (!value.length) return; assert_1.assert(type !== reflection_info_1.ScalarType.BYTES && type !== reflection_info_1.ScalarType.STRING); // write tag writer.tag(fieldNo, binary_format_contract_1.WireType.LengthDelimited); // begin length-delimited writer.fork(); // write values without tags let [, method,] = this.scalarInfo(type); for (let i = 0; i < value.length; i++) writer[method](value[i]); // end length delimited writer.join(); } /** * Get information for writing a scalar value. * * Returns tuple: * [0]: appropriate WireType * [1]: name of the appropriate method of IBinaryWriter * [2]: whether the given value is a default value * * If argument `value` is omitted, [2] is always false. */ scalarInfo(type, value) { let t = binary_format_contract_1.WireType.Varint; let m; let i = value === undefined; let d = value === 0; switch (type) { case reflection_info_1.ScalarType.INT32: m = "int32"; break; case reflection_info_1.ScalarType.STRING: d = i || !value.length; t = binary_format_contract_1.WireType.LengthDelimited; m = "string"; break; case reflection_info_1.ScalarType.BOOL: d = value === false; m = "bool"; break; case reflection_info_1.ScalarType.UINT32: m = "uint32"; break; case reflection_info_1.ScalarType.DOUBLE: t = binary_format_contract_1.WireType.Bit64; m = "double"; break; case reflection_info_1.ScalarType.FLOAT: t = binary_format_contract_1.WireType.Bit32; m = "float"; break; case reflection_info_1.ScalarType.INT64: d = i || pb_long_1.PbLong.from(value).isZero(); m = "int64"; break; case reflection_info_1.ScalarType.UINT64: d = i || pb_long_1.PbULong.from(value).isZero(); m = "uint64"; break; case reflection_info_1.ScalarType.FIXED64: d = i || pb_long_1.PbULong.from(value).isZero(); t = binary_format_contract_1.WireType.Bit64; m = "fixed64"; break; case reflection_info_1.ScalarType.BYTES: d = i || !value.byteLength; t = binary_format_contract_1.WireType.LengthDelimited; m = "bytes"; break; case reflection_info_1.ScalarType.FIXED32: t = binary_format_contract_1.WireType.Bit32; m = "fixed32"; break; case reflection_info_1.ScalarType.SFIXED32: t = binary_format_contract_1.WireType.Bit32; m = "sfixed32"; break; case reflection_info_1.ScalarType.SFIXED64: d = i || pb_long_1.PbLong.from(value).isZero(); t = binary_format_contract_1.WireType.Bit64; m = "sfixed64"; break; case reflection_info_1.ScalarType.SINT32: m = "sint32"; break; case reflection_info_1.ScalarType.SINT64: d = i || pb_long_1.PbLong.from(value).isZero(); m = "sint64"; break; } return [t, m, i || d]; } } exports.ReflectionBinaryWriter = ReflectionBinaryWriter; /***/ }), /***/ 59946: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.containsMessageType = void 0; const message_type_contract_1 = __nccwpck_require__(43785); /** * Check if the provided object is a proto message. * * Note that this is an experimental feature - it is here to stay, but * implementation details may change without notice. */ function containsMessageType(msg) { return msg[message_type_contract_1.MESSAGE_TYPE] != null; } exports.containsMessageType = containsMessageType; /***/ }), /***/ 75726: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.reflectionCreate = void 0; const reflection_scalar_default_1 = __nccwpck_require__(19526); const message_type_contract_1 = __nccwpck_require__(43785); /** * Creates an instance of the generic message, using the field * information. */ function reflectionCreate(type) { /** * This ternary can be removed in the next major version. * The `Object.create()` code path utilizes a new `messagePrototype` * property on the `IMessageType` which has this same `MESSAGE_TYPE` * non-enumerable property on it. Doing it this way means that we only * pay the cost of `Object.defineProperty()` once per `IMessageType` * class of once per "instance". The falsy code path is only provided * for backwards compatibility in cases where the runtime library is * updated without also updating the generated code. */ const msg = type.messagePrototype ? Object.create(type.messagePrototype) : Object.defineProperty({}, message_type_contract_1.MESSAGE_TYPE, { value: type }); for (let field of type.fields) { let name = field.localName; if (field.opt) continue; if (field.oneof) msg[field.oneof] = { oneofKind: undefined }; else if (field.repeat) msg[name] = []; else switch (field.kind) { case "scalar": msg[name] = reflection_scalar_default_1.reflectionScalarDefault(field.T, field.L); break; case "enum": // we require 0 to be default value for all enums msg[name] = 0; break; case "map": msg[name] = {}; break; } } return msg; } exports.reflectionCreate = reflectionCreate; /***/ }), /***/ 4827: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.reflectionEquals = void 0; const reflection_info_1 = __nccwpck_require__(67910); /** * Determines whether two message of the same type have the same field values. * Checks for deep equality, traversing repeated fields, oneof groups, maps * and messages recursively. * Will also return true if both messages are `undefined`. */ function reflectionEquals(info, a, b) { if (a === b) return true; if (!a || !b) return false; for (let field of info.fields) { let localName = field.localName; let val_a = field.oneof ? a[field.oneof][localName] : a[localName]; let val_b = field.oneof ? b[field.oneof][localName] : b[localName]; switch (field.kind) { case "enum": case "scalar": let t = field.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.T; if (!(field.repeat ? repeatedPrimitiveEq(t, val_a, val_b) : primitiveEq(t, val_a, val_b))) return false; break; case "map": if (!(field.V.kind == "message" ? repeatedMsgEq(field.V.T(), objectValues(val_a), objectValues(val_b)) : repeatedPrimitiveEq(field.V.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.V.T, objectValues(val_a), objectValues(val_b)))) return false; break; case "message": let T = field.T(); if (!(field.repeat ? repeatedMsgEq(T, val_a, val_b) : T.equals(val_a, val_b))) return false; break; } } return true; } exports.reflectionEquals = reflectionEquals; const objectValues = Object.values; function primitiveEq(type, a, b) { if (a === b) return true; if (type !== reflection_info_1.ScalarType.BYTES) return false; let ba = a; let bb = b; if (ba.length !== bb.length) return false; for (let i = 0; i < ba.length; i++) if (ba[i] != bb[i]) return false; return true; } function repeatedPrimitiveEq(type, a, b) { if (a.length !== b.length) return false; for (let i = 0; i < a.length; i++) if (!primitiveEq(type, a[i], b[i])) return false; return true; } function repeatedMsgEq(type, a, b) { if (a.length !== b.length) return false; for (let i = 0; i < a.length; i++) if (!type.equals(a[i], b[i])) return false; return true; } /***/ }), /***/ 67910: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.readMessageOption = exports.readFieldOption = exports.readFieldOptions = exports.normalizeFieldInfo = exports.RepeatType = exports.LongType = exports.ScalarType = void 0; const lower_camel_case_1 = __nccwpck_require__(4073); /** * Scalar value types. This is a subset of field types declared by protobuf * enum google.protobuf.FieldDescriptorProto.Type The types GROUP and MESSAGE * are omitted, but the numerical values are identical. */ var ScalarType; (function (ScalarType) { // 0 is reserved for errors. // Order is weird for historical reasons. ScalarType[ScalarType["DOUBLE"] = 1] = "DOUBLE"; ScalarType[ScalarType["FLOAT"] = 2] = "FLOAT"; // Not ZigZag encoded. Negative numbers take 10 bytes. Use TYPE_SINT64 if // negative values are likely. ScalarType[ScalarType["INT64"] = 3] = "INT64"; ScalarType[ScalarType["UINT64"] = 4] = "UINT64"; // Not ZigZag encoded. Negative numbers take 10 bytes. Use TYPE_SINT32 if // negative values are likely. ScalarType[ScalarType["INT32"] = 5] = "INT32"; ScalarType[ScalarType["FIXED64"] = 6] = "FIXED64"; ScalarType[ScalarType["FIXED32"] = 7] = "FIXED32"; ScalarType[ScalarType["BOOL"] = 8] = "BOOL"; ScalarType[ScalarType["STRING"] = 9] = "STRING"; // Tag-delimited aggregate. // Group type is deprecated and not supported in proto3. However, Proto3 // implementations should still be able to parse the group wire format and // treat group fields as unknown fields. // TYPE_GROUP = 10, // TYPE_MESSAGE = 11, // Length-delimited aggregate. // New in version 2. ScalarType[ScalarType["BYTES"] = 12] = "BYTES"; ScalarType[ScalarType["UINT32"] = 13] = "UINT32"; // TYPE_ENUM = 14, ScalarType[ScalarType["SFIXED32"] = 15] = "SFIXED32"; ScalarType[ScalarType["SFIXED64"] = 16] = "SFIXED64"; ScalarType[ScalarType["SINT32"] = 17] = "SINT32"; ScalarType[ScalarType["SINT64"] = 18] = "SINT64"; })(ScalarType = exports.ScalarType || (exports.ScalarType = {})); /** * JavaScript representation of 64 bit integral types. Equivalent to the * field option "jstype". * * By default, protobuf-ts represents 64 bit types as `bigint`. * * You can change the default behaviour by enabling the plugin parameter * `long_type_string`, which will represent 64 bit types as `string`. * * Alternatively, you can change the behaviour for individual fields * with the field option "jstype": * * ```protobuf * uint64 my_field = 1 [jstype = JS_STRING]; * uint64 other_field = 2 [jstype = JS_NUMBER]; * ``` */ var LongType; (function (LongType) { /** * Use JavaScript `bigint`. * * Field option `[jstype = JS_NORMAL]`. */ LongType[LongType["BIGINT"] = 0] = "BIGINT"; /** * Use JavaScript `string`. * * Field option `[jstype = JS_STRING]`. */ LongType[LongType["STRING"] = 1] = "STRING"; /** * Use JavaScript `number`. * * Large values will loose precision. * * Field option `[jstype = JS_NUMBER]`. */ LongType[LongType["NUMBER"] = 2] = "NUMBER"; })(LongType = exports.LongType || (exports.LongType = {})); /** * Protobuf 2.1.0 introduced packed repeated fields. * Setting the field option `[packed = true]` enables packing. * * In proto3, all repeated fields are packed by default. * Setting the field option `[packed = false]` disables packing. * * Packed repeated fields are encoded with a single tag, * then a length-delimiter, then the element values. * * Unpacked repeated fields are encoded with a tag and * value for each element. * * `bytes` and `string` cannot be packed. */ var RepeatType; (function (RepeatType) { /** * The field is not repeated. */ RepeatType[RepeatType["NO"] = 0] = "NO"; /** * The field is repeated and should be packed. * Invalid for `bytes` and `string`, they cannot be packed. */ RepeatType[RepeatType["PACKED"] = 1] = "PACKED"; /** * The field is repeated but should not be packed. * The only valid repeat type for repeated `bytes` and `string`. */ RepeatType[RepeatType["UNPACKED"] = 2] = "UNPACKED"; })(RepeatType = exports.RepeatType || (exports.RepeatType = {})); /** * Turns PartialFieldInfo into FieldInfo. */ function normalizeFieldInfo(field) { var _a, _b, _c, _d; field.localName = (_a = field.localName) !== null && _a !== void 0 ? _a : lower_camel_case_1.lowerCamelCase(field.name); field.jsonName = (_b = field.jsonName) !== null && _b !== void 0 ? _b : lower_camel_case_1.lowerCamelCase(field.name); field.repeat = (_c = field.repeat) !== null && _c !== void 0 ? _c : RepeatType.NO; field.opt = (_d = field.opt) !== null && _d !== void 0 ? _d : (field.repeat ? false : field.oneof ? false : field.kind == "message"); return field; } exports.normalizeFieldInfo = normalizeFieldInfo; /** * Read custom field options from a generated message type. * * @deprecated use readFieldOption() */ function readFieldOptions(messageType, fieldName, extensionName, extensionType) { var _a; const options = (_a = messageType.fields.find((m, i) => m.localName == fieldName || i == fieldName)) === null || _a === void 0 ? void 0 : _a.options; return options && options[extensionName] ? extensionType.fromJson(options[extensionName]) : undefined; } exports.readFieldOptions = readFieldOptions; function readFieldOption(messageType, fieldName, extensionName, extensionType) { var _a; const options = (_a = messageType.fields.find((m, i) => m.localName == fieldName || i == fieldName)) === null || _a === void 0 ? void 0 : _a.options; if (!options) { return undefined; } const optionVal = options[extensionName]; if (optionVal === undefined) { return optionVal; } return extensionType ? extensionType.fromJson(optionVal) : optionVal; } exports.readFieldOption = readFieldOption; function readMessageOption(messageType, extensionName, extensionType) { const options = messageType.options; const optionVal = options[extensionName]; if (optionVal === undefined) { return optionVal; } return extensionType ? extensionType.fromJson(optionVal) : optionVal; } exports.readMessageOption = readMessageOption; /***/ }), /***/ 46790: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.ReflectionJsonReader = void 0; const json_typings_1 = __nccwpck_require__(49999); const base64_1 = __nccwpck_require__(26335); const reflection_info_1 = __nccwpck_require__(67910); const pb_long_1 = __nccwpck_require__(61753); const assert_1 = __nccwpck_require__(8602); const reflection_long_convert_1 = __nccwpck_require__(63402); /** * Reads proto3 messages in canonical JSON format using reflection information. * * https://developers.google.com/protocol-buffers/docs/proto3#json */ class ReflectionJsonReader { constructor(info) { this.info = info; } prepare() { var _a; if (this.fMap === undefined) { this.fMap = {}; const fieldsInput = (_a = this.info.fields) !== null && _a !== void 0 ? _a : []; for (const field of fieldsInput) { this.fMap[field.name] = field; this.fMap[field.jsonName] = field; this.fMap[field.localName] = field; } } } // Cannot parse JSON for #. assert(condition, fieldName, jsonValue) { if (!condition) { let what = json_typings_1.typeofJsonValue(jsonValue); if (what == "number" || what == "boolean") what = jsonValue.toString(); throw new Error(`Cannot parse JSON ${what} for ${this.info.typeName}#${fieldName}`); } } /** * Reads a message from canonical JSON format into the target message. * * Repeated fields are appended. Map entries are added, overwriting * existing keys. * * If a message field is already present, it will be merged with the * new data. */ read(input, message, options) { this.prepare(); const oneofsHandled = []; for (const [jsonKey, jsonValue] of Object.entries(input)) { const field = this.fMap[jsonKey]; if (!field) { if (!options.ignoreUnknownFields) throw new Error(`Found unknown field while reading ${this.info.typeName} from JSON format. JSON key: ${jsonKey}`); continue; } const localName = field.localName; // handle oneof ADT let target; // this will be the target for the field value, whether it is member of a oneof or not if (field.oneof) { if (jsonValue === null && (field.kind !== 'enum' || field.T()[0] !== 'google.protobuf.NullValue')) { continue; } // since json objects are unordered by specification, it is not possible to take the last of multiple oneofs if (oneofsHandled.includes(field.oneof)) throw new Error(`Multiple members of the oneof group "${field.oneof}" of ${this.info.typeName} are present in JSON.`); oneofsHandled.push(field.oneof); target = message[field.oneof] = { oneofKind: localName }; } else { target = message; } // we have handled oneof above. we just have read the value into `target`. if (field.kind == 'map') { if (jsonValue === null) { continue; } // check input this.assert(json_typings_1.isJsonObject(jsonValue), field.name, jsonValue); // our target to put map entries into const fieldObj = target[localName]; // read entries for (const [jsonObjKey, jsonObjValue] of Object.entries(jsonValue)) { this.assert(jsonObjValue !== null, field.name + " map value", null); // read value let val; switch (field.V.kind) { case "message": val = field.V.T().internalJsonRead(jsonObjValue, options); break; case "enum": val = this.enum(field.V.T(), jsonObjValue, field.name, options.ignoreUnknownFields); if (val === false) continue; break; case "scalar": val = this.scalar(jsonObjValue, field.V.T, field.V.L, field.name); break; } this.assert(val !== undefined, field.name + " map value", jsonObjValue); // read key let key = jsonObjKey; if (field.K == reflection_info_1.ScalarType.BOOL) key = key == "true" ? true : key == "false" ? false : key; key = this.scalar(key, field.K, reflection_info_1.LongType.STRING, field.name).toString(); fieldObj[key] = val; } } else if (field.repeat) { if (jsonValue === null) continue; // check input this.assert(Array.isArray(jsonValue), field.name, jsonValue); // our target to put array entries into const fieldArr = target[localName]; // read array entries for (const jsonItem of jsonValue) { this.assert(jsonItem !== null, field.name, null); let val; switch (field.kind) { case "message": val = field.T().internalJsonRead(jsonItem, options); break; case "enum": val = this.enum(field.T(), jsonItem, field.name, options.ignoreUnknownFields); if (val === false) continue; break; case "scalar": val = this.scalar(jsonItem, field.T, field.L, field.name); break; } this.assert(val !== undefined, field.name, jsonValue); fieldArr.push(val); } } else { switch (field.kind) { case "message": if (jsonValue === null && field.T().typeName != 'google.protobuf.Value') { this.assert(field.oneof === undefined, field.name + " (oneof member)", null); continue; } target[localName] = field.T().internalJsonRead(jsonValue, options, target[localName]); break; case "enum": if (jsonValue === null) continue; let val = this.enum(field.T(), jsonValue, field.name, options.ignoreUnknownFields); if (val === false) continue; target[localName] = val; break; case "scalar": if (jsonValue === null) continue; target[localName] = this.scalar(jsonValue, field.T, field.L, field.name); break; } } } } /** * Returns `false` for unrecognized string representations. * * google.protobuf.NullValue accepts only JSON `null` (or the old `"NULL_VALUE"`). */ enum(type, json, fieldName, ignoreUnknownFields) { if (type[0] == 'google.protobuf.NullValue') assert_1.assert(json === null || json === "NULL_VALUE", `Unable to parse field ${this.info.typeName}#${fieldName}, enum ${type[0]} only accepts null.`); if (json === null) // we require 0 to be default value for all enums return 0; switch (typeof json) { case "number": assert_1.assert(Number.isInteger(json), `Unable to parse field ${this.info.typeName}#${fieldName}, enum can only be integral number, got ${json}.`); return json; case "string": let localEnumName = json; if (type[2] && json.substring(0, type[2].length) === type[2]) // lookup without the shared prefix localEnumName = json.substring(type[2].length); let enumNumber = type[1][localEnumName]; if (typeof enumNumber === 'undefined' && ignoreUnknownFields) { return false; } assert_1.assert(typeof enumNumber == "number", `Unable to parse field ${this.info.typeName}#${fieldName}, enum ${type[0]} has no value for "${json}".`); return enumNumber; } assert_1.assert(false, `Unable to parse field ${this.info.typeName}#${fieldName}, cannot parse enum value from ${typeof json}".`); } scalar(json, type, longType, fieldName) { let e; try { switch (type) { // float, double: JSON value will be a number or one of the special string values "NaN", "Infinity", and "-Infinity". // Either numbers or strings are accepted. Exponent notation is also accepted. case reflection_info_1.ScalarType.DOUBLE: case reflection_info_1.ScalarType.FLOAT: if (json === null) return .0; if (json === "NaN") return Number.NaN; if (json === "Infinity") return Number.POSITIVE_INFINITY; if (json === "-Infinity") return Number.NEGATIVE_INFINITY; if (json === "") { e = "empty string"; break; } if (typeof json == "string" && json.trim().length !== json.length) { e = "extra whitespace"; break; } if (typeof json != "string" && typeof json != "number") { break; } let float = Number(json); if (Number.isNaN(float)) { e = "not a number"; break; } if (!Number.isFinite(float)) { // infinity and -infinity are handled by string representation above, so this is an error e = "too large or small"; break; } if (type == reflection_info_1.ScalarType.FLOAT) assert_1.assertFloat32(float); return float; // int32, fixed32, uint32: JSON value will be a decimal number. Either numbers or strings are accepted. case reflection_info_1.ScalarType.INT32: case reflection_info_1.ScalarType.FIXED32: case reflection_info_1.ScalarType.SFIXED32: case reflection_info_1.ScalarType.SINT32: case reflection_info_1.ScalarType.UINT32: if (json === null) return 0; let int32; if (typeof json == "number") int32 = json; else if (json === "") e = "empty string"; else if (typeof json == "string") { if (json.trim().length !== json.length) e = "extra whitespace"; else int32 = Number(json); } if (int32 === undefined) break; if (type == reflection_info_1.ScalarType.UINT32) assert_1.assertUInt32(int32); else assert_1.assertInt32(int32); return int32; // int64, fixed64, uint64: JSON value will be a decimal string. Either numbers or strings are accepted. case reflection_info_1.ScalarType.INT64: case reflection_info_1.ScalarType.SFIXED64: case reflection_info_1.ScalarType.SINT64: if (json === null) return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.ZERO, longType); if (typeof json != "number" && typeof json != "string") break; return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.from(json), longType); case reflection_info_1.ScalarType.FIXED64: case reflection_info_1.ScalarType.UINT64: if (json === null) return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.ZERO, longType); if (typeof json != "number" && typeof json != "string") break; return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.from(json), longType); // bool: case reflection_info_1.ScalarType.BOOL: if (json === null) return false; if (typeof json !== "boolean") break; return json; // string: case reflection_info_1.ScalarType.STRING: if (json === null) return ""; if (typeof json !== "string") { e = "extra whitespace"; break; } try { encodeURIComponent(json); } catch (e) { e = "invalid UTF8"; break; } return json; // bytes: JSON value will be the data encoded as a string using standard base64 encoding with paddings. // Either standard or URL-safe base64 encoding with/without paddings are accepted. case reflection_info_1.ScalarType.BYTES: if (json === null || json === "") return new Uint8Array(0); if (typeof json !== 'string') break; return base64_1.base64decode(json); } } catch (error) { e = error.message; } this.assert(false, fieldName + (e ? " - " + e : ""), json); } } exports.ReflectionJsonReader = ReflectionJsonReader; /***/ }), /***/ 11094: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.ReflectionJsonWriter = void 0; const base64_1 = __nccwpck_require__(26335); const pb_long_1 = __nccwpck_require__(61753); const reflection_info_1 = __nccwpck_require__(67910); const assert_1 = __nccwpck_require__(8602); /** * Writes proto3 messages in canonical JSON format using reflection * information. * * https://developers.google.com/protocol-buffers/docs/proto3#json */ class ReflectionJsonWriter { constructor(info) { var _a; this.fields = (_a = info.fields) !== null && _a !== void 0 ? _a : []; } /** * Converts the message to a JSON object, based on the field descriptors. */ write(message, options) { const json = {}, source = message; for (const field of this.fields) { // field is not part of a oneof, simply write as is if (!field.oneof) { let jsonValue = this.field(field, source[field.localName], options); if (jsonValue !== undefined) json[options.useProtoFieldName ? field.name : field.jsonName] = jsonValue; continue; } // field is part of a oneof const group = source[field.oneof]; if (group.oneofKind !== field.localName) continue; // not selected, skip const opt = field.kind == 'scalar' || field.kind == 'enum' ? Object.assign(Object.assign({}, options), { emitDefaultValues: true }) : options; let jsonValue = this.field(field, group[field.localName], opt); assert_1.assert(jsonValue !== undefined); json[options.useProtoFieldName ? field.name : field.jsonName] = jsonValue; } return json; } field(field, value, options) { let jsonValue = undefined; if (field.kind == 'map') { assert_1.assert(typeof value == "object" && value !== null); const jsonObj = {}; switch (field.V.kind) { case "scalar": for (const [entryKey, entryValue] of Object.entries(value)) { const val = this.scalar(field.V.T, entryValue, field.name, false, true); assert_1.assert(val !== undefined); jsonObj[entryKey.toString()] = val; // JSON standard allows only (double quoted) string as property key } break; case "message": const messageType = field.V.T(); for (const [entryKey, entryValue] of Object.entries(value)) { const val = this.message(messageType, entryValue, field.name, options); assert_1.assert(val !== undefined); jsonObj[entryKey.toString()] = val; // JSON standard allows only (double quoted) string as property key } break; case "enum": const enumInfo = field.V.T(); for (const [entryKey, entryValue] of Object.entries(value)) { assert_1.assert(entryValue === undefined || typeof entryValue == 'number'); const val = this.enum(enumInfo, entryValue, field.name, false, true, options.enumAsInteger); assert_1.assert(val !== undefined); jsonObj[entryKey.toString()] = val; // JSON standard allows only (double quoted) string as property key } break; } if (options.emitDefaultValues || Object.keys(jsonObj).length > 0) jsonValue = jsonObj; } else if (field.repeat) { assert_1.assert(Array.isArray(value)); const jsonArr = []; switch (field.kind) { case "scalar": for (let i = 0; i < value.length; i++) { const val = this.scalar(field.T, value[i], field.name, field.opt, true); assert_1.assert(val !== undefined); jsonArr.push(val); } break; case "enum": const enumInfo = field.T(); for (let i = 0; i < value.length; i++) { assert_1.assert(value[i] === undefined || typeof value[i] == 'number'); const val = this.enum(enumInfo, value[i], field.name, field.opt, true, options.enumAsInteger); assert_1.assert(val !== undefined); jsonArr.push(val); } break; case "message": const messageType = field.T(); for (let i = 0; i < value.length; i++) { const val = this.message(messageType, value[i], field.name, options); assert_1.assert(val !== undefined); jsonArr.push(val); } break; } // add converted array to json output if (options.emitDefaultValues || jsonArr.length > 0 || options.emitDefaultValues) jsonValue = jsonArr; } else { switch (field.kind) { case "scalar": jsonValue = this.scalar(field.T, value, field.name, field.opt, options.emitDefaultValues); break; case "enum": jsonValue = this.enum(field.T(), value, field.name, field.opt, options.emitDefaultValues, options.enumAsInteger); break; case "message": jsonValue = this.message(field.T(), value, field.name, options); break; } } return jsonValue; } /** * Returns `null` as the default for google.protobuf.NullValue. */ enum(type, value, fieldName, optional, emitDefaultValues, enumAsInteger) { if (type[0] == 'google.protobuf.NullValue') return !emitDefaultValues && !optional ? undefined : null; if (value === undefined) { assert_1.assert(optional); return undefined; } if (value === 0 && !emitDefaultValues && !optional) // we require 0 to be default value for all enums return undefined; assert_1.assert(typeof value == 'number'); assert_1.assert(Number.isInteger(value)); if (enumAsInteger || !type[1].hasOwnProperty(value)) // if we don't now the enum value, just return the number return value; if (type[2]) // restore the dropped prefix return type[2] + type[1][value]; return type[1][value]; } message(type, value, fieldName, options) { if (value === undefined) return options.emitDefaultValues ? null : undefined; return type.internalJsonWrite(value, options); } scalar(type, value, fieldName, optional, emitDefaultValues) { if (value === undefined) { assert_1.assert(optional); return undefined; } const ed = emitDefaultValues || optional; // noinspection FallThroughInSwitchStatementJS switch (type) { // int32, fixed32, uint32: JSON value will be a decimal number. Either numbers or strings are accepted. case reflection_info_1.ScalarType.INT32: case reflection_info_1.ScalarType.SFIXED32: case reflection_info_1.ScalarType.SINT32: if (value === 0) return ed ? 0 : undefined; assert_1.assertInt32(value); return value; case reflection_info_1.ScalarType.FIXED32: case reflection_info_1.ScalarType.UINT32: if (value === 0) return ed ? 0 : undefined; assert_1.assertUInt32(value); return value; // float, double: JSON value will be a number or one of the special string values "NaN", "Infinity", and "-Infinity". // Either numbers or strings are accepted. Exponent notation is also accepted. case reflection_info_1.ScalarType.FLOAT: assert_1.assertFloat32(value); case reflection_info_1.ScalarType.DOUBLE: if (value === 0) return ed ? 0 : undefined; assert_1.assert(typeof value == 'number'); if (Number.isNaN(value)) return 'NaN'; if (value === Number.POSITIVE_INFINITY) return 'Infinity'; if (value === Number.NEGATIVE_INFINITY) return '-Infinity'; return value; // string: case reflection_info_1.ScalarType.STRING: if (value === "") return ed ? '' : undefined; assert_1.assert(typeof value == 'string'); return value; // bool: case reflection_info_1.ScalarType.BOOL: if (value === false) return ed ? false : undefined; assert_1.assert(typeof value == 'boolean'); return value; // JSON value will be a decimal string. Either numbers or strings are accepted. case reflection_info_1.ScalarType.UINT64: case reflection_info_1.ScalarType.FIXED64: assert_1.assert(typeof value == 'number' || typeof value == 'string' || typeof value == 'bigint'); let ulong = pb_long_1.PbULong.from(value); if (ulong.isZero() && !ed) return undefined; return ulong.toString(); // JSON value will be a decimal string. Either numbers or strings are accepted. case reflection_info_1.ScalarType.INT64: case reflection_info_1.ScalarType.SFIXED64: case reflection_info_1.ScalarType.SINT64: assert_1.assert(typeof value == 'number' || typeof value == 'string' || typeof value == 'bigint'); let long = pb_long_1.PbLong.from(value); if (long.isZero() && !ed) return undefined; return long.toString(); // bytes: JSON value will be the data encoded as a string using standard base64 encoding with paddings. // Either standard or URL-safe base64 encoding with/without paddings are accepted. case reflection_info_1.ScalarType.BYTES: assert_1.assert(value instanceof Uint8Array); if (!value.byteLength) return ed ? "" : undefined; return base64_1.base64encode(value); } } } exports.ReflectionJsonWriter = ReflectionJsonWriter; /***/ }), /***/ 63402: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.reflectionLongConvert = void 0; const reflection_info_1 = __nccwpck_require__(67910); /** * Utility method to convert a PbLong or PbUlong to a JavaScript * representation during runtime. * * Works with generated field information, `undefined` is equivalent * to `STRING`. */ function reflectionLongConvert(long, type) { switch (type) { case reflection_info_1.LongType.BIGINT: return long.toBigInt(); case reflection_info_1.LongType.NUMBER: return long.toNumber(); default: // case undefined: // case LongType.STRING: return long.toString(); } } exports.reflectionLongConvert = reflectionLongConvert; /***/ }), /***/ 98044: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.reflectionMergePartial = void 0; /** * Copy partial data into the target message. * * If a singular scalar or enum field is present in the source, it * replaces the field in the target. * * If a singular message field is present in the source, it is merged * with the target field by calling mergePartial() of the responsible * message type. * * If a repeated field is present in the source, its values replace * all values in the target array, removing extraneous values. * Repeated message fields are copied, not merged. * * If a map field is present in the source, entries are added to the * target map, replacing entries with the same key. Entries that only * exist in the target remain. Entries with message values are copied, * not merged. * * Note that this function differs from protobuf merge semantics, * which appends repeated fields. */ function reflectionMergePartial(info, target, source) { let fieldValue, // the field value we are working with input = source, output; // where we want our field value to go for (let field of info.fields) { let name = field.localName; if (field.oneof) { const group = input[field.oneof]; // this is the oneof`s group in the source if ((group === null || group === void 0 ? void 0 : group.oneofKind) == undefined) { // the user is free to omit continue; // we skip this field, and all other members too } fieldValue = group[name]; // our value comes from the the oneof group of the source output = target[field.oneof]; // and our output is the oneof group of the target output.oneofKind = group.oneofKind; // always update discriminator if (fieldValue == undefined) { delete output[name]; // remove any existing value continue; // skip further work on field } } else { fieldValue = input[name]; // we are using the source directly output = target; // we want our field value to go directly into the target if (fieldValue == undefined) { continue; // skip further work on field, existing value is used as is } } if (field.repeat) output[name].length = fieldValue.length; // resize target array to match source array // now we just work with `fieldValue` and `output` to merge the value switch (field.kind) { case "scalar": case "enum": if (field.repeat) for (let i = 0; i < fieldValue.length; i++) output[name][i] = fieldValue[i]; // not a reference type else output[name] = fieldValue; // not a reference type break; case "message": let T = field.T(); if (field.repeat) for (let i = 0; i < fieldValue.length; i++) output[name][i] = T.create(fieldValue[i]); else if (output[name] === undefined) output[name] = T.create(fieldValue); // nothing to merge with else T.mergePartial(output[name], fieldValue); break; case "map": // Map and repeated fields are simply overwritten, not appended or merged switch (field.V.kind) { case "scalar": case "enum": Object.assign(output[name], fieldValue); // elements are not reference types break; case "message": let T = field.V.T(); for (let k of Object.keys(fieldValue)) output[name][k] = T.create(fieldValue[k]); break; } break; } } } exports.reflectionMergePartial = reflectionMergePartial; /***/ }), /***/ 19526: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.reflectionScalarDefault = void 0; const reflection_info_1 = __nccwpck_require__(67910); const reflection_long_convert_1 = __nccwpck_require__(63402); const pb_long_1 = __nccwpck_require__(61753); /** * Creates the default value for a scalar type. */ function reflectionScalarDefault(type, longType = reflection_info_1.LongType.STRING) { switch (type) { case reflection_info_1.ScalarType.BOOL: return false; case reflection_info_1.ScalarType.UINT64: case reflection_info_1.ScalarType.FIXED64: return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.ZERO, longType); case reflection_info_1.ScalarType.INT64: case reflection_info_1.ScalarType.SFIXED64: case reflection_info_1.ScalarType.SINT64: return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.ZERO, longType); case reflection_info_1.ScalarType.DOUBLE: case reflection_info_1.ScalarType.FLOAT: return 0.0; case reflection_info_1.ScalarType.BYTES: return new Uint8Array(0); case reflection_info_1.ScalarType.STRING: return ""; default: // case ScalarType.INT32: // case ScalarType.UINT32: // case ScalarType.SINT32: // case ScalarType.FIXED32: // case ScalarType.SFIXED32: return 0; } } exports.reflectionScalarDefault = reflectionScalarDefault; /***/ }), /***/ 25167: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.ReflectionTypeCheck = void 0; const reflection_info_1 = __nccwpck_require__(67910); const oneof_1 = __nccwpck_require__(18063); // noinspection JSMethodCanBeStatic class ReflectionTypeCheck { constructor(info) { var _a; this.fields = (_a = info.fields) !== null && _a !== void 0 ? _a : []; } prepare() { if (this.data) return; const req = [], known = [], oneofs = []; for (let field of this.fields) { if (field.oneof) { if (!oneofs.includes(field.oneof)) { oneofs.push(field.oneof); req.push(field.oneof); known.push(field.oneof); } } else { known.push(field.localName); switch (field.kind) { case "scalar": case "enum": if (!field.opt || field.repeat) req.push(field.localName); break; case "message": if (field.repeat) req.push(field.localName); break; case "map": req.push(field.localName); break; } } } this.data = { req, known, oneofs: Object.values(oneofs) }; } /** * Is the argument a valid message as specified by the * reflection information? * * Checks all field types recursively. The `depth` * specifies how deep into the structure the check will be. * * With a depth of 0, only the presence of fields * is checked. * * With a depth of 1 or more, the field types are checked. * * With a depth of 2 or more, the members of map, repeated * and message fields are checked. * * Message fields will be checked recursively with depth - 1. * * The number of map entries / repeated values being checked * is < depth. */ is(message, depth, allowExcessProperties = false) { if (depth < 0) return true; if (message === null || message === undefined || typeof message != 'object') return false; this.prepare(); let keys = Object.keys(message), data = this.data; // if a required field is missing in arg, this cannot be a T if (keys.length < data.req.length || data.req.some(n => !keys.includes(n))) return false; if (!allowExcessProperties) { // if the arg contains a key we dont know, this is not a literal T if (keys.some(k => !data.known.includes(k))) return false; } // "With a depth of 0, only the presence and absence of fields is checked." // "With a depth of 1 or more, the field types are checked." if (depth < 1) { return true; } // check oneof group for (const name of data.oneofs) { const group = message[name]; if (!oneof_1.isOneofGroup(group)) return false; if (group.oneofKind === undefined) continue; const field = this.fields.find(f => f.localName === group.oneofKind); if (!field) return false; // we found no field, but have a kind, something is wrong if (!this.field(group[group.oneofKind], field, allowExcessProperties, depth)) return false; } // check types for (const field of this.fields) { if (field.oneof !== undefined) continue; if (!this.field(message[field.localName], field, allowExcessProperties, depth)) return false; } return true; } field(arg, field, allowExcessProperties, depth) { let repeated = field.repeat; switch (field.kind) { case "scalar": if (arg === undefined) return field.opt; if (repeated) return this.scalars(arg, field.T, depth, field.L); return this.scalar(arg, field.T, field.L); case "enum": if (arg === undefined) return field.opt; if (repeated) return this.scalars(arg, reflection_info_1.ScalarType.INT32, depth); return this.scalar(arg, reflection_info_1.ScalarType.INT32); case "message": if (arg === undefined) return true; if (repeated) return this.messages(arg, field.T(), allowExcessProperties, depth); return this.message(arg, field.T(), allowExcessProperties, depth); case "map": if (typeof arg != 'object' || arg === null) return false; if (depth < 2) return true; if (!this.mapKeys(arg, field.K, depth)) return false; switch (field.V.kind) { case "scalar": return this.scalars(Object.values(arg), field.V.T, depth, field.V.L); case "enum": return this.scalars(Object.values(arg), reflection_info_1.ScalarType.INT32, depth); case "message": return this.messages(Object.values(arg), field.V.T(), allowExcessProperties, depth); } break; } return true; } message(arg, type, allowExcessProperties, depth) { if (allowExcessProperties) { return type.isAssignable(arg, depth); } return type.is(arg, depth); } messages(arg, type, allowExcessProperties, depth) { if (!Array.isArray(arg)) return false; if (depth < 2) return true; if (allowExcessProperties) { for (let i = 0; i < arg.length && i < depth; i++) if (!type.isAssignable(arg[i], depth - 1)) return false; } else { for (let i = 0; i < arg.length && i < depth; i++) if (!type.is(arg[i], depth - 1)) return false; } return true; } scalar(arg, type, longType) { let argType = typeof arg; switch (type) { case reflection_info_1.ScalarType.UINT64: case reflection_info_1.ScalarType.FIXED64: case reflection_info_1.ScalarType.INT64: case reflection_info_1.ScalarType.SFIXED64: case reflection_info_1.ScalarType.SINT64: switch (longType) { case reflection_info_1.LongType.BIGINT: return argType == "bigint"; case reflection_info_1.LongType.NUMBER: return argType == "number" && !isNaN(arg); default: return argType == "string"; } case reflection_info_1.ScalarType.BOOL: return argType == 'boolean'; case reflection_info_1.ScalarType.STRING: return argType == 'string'; case reflection_info_1.ScalarType.BYTES: return arg instanceof Uint8Array; case reflection_info_1.ScalarType.DOUBLE: case reflection_info_1.ScalarType.FLOAT: return argType == 'number' && !isNaN(arg); default: // case ScalarType.UINT32: // case ScalarType.FIXED32: // case ScalarType.INT32: // case ScalarType.SINT32: // case ScalarType.SFIXED32: return argType == 'number' && Number.isInteger(arg); } } scalars(arg, type, depth, longType) { if (!Array.isArray(arg)) return false; if (depth < 2) return true; if (Array.isArray(arg)) for (let i = 0; i < arg.length && i < depth; i++) if (!this.scalar(arg[i], type, longType)) return false; return true; } mapKeys(map, type, depth) { let keys = Object.keys(map); switch (type) { case reflection_info_1.ScalarType.INT32: case reflection_info_1.ScalarType.FIXED32: case reflection_info_1.ScalarType.SFIXED32: case reflection_info_1.ScalarType.SINT32: case reflection_info_1.ScalarType.UINT32: return this.scalars(keys.slice(0, depth).map(k => parseInt(k)), type, depth); case reflection_info_1.ScalarType.BOOL: return this.scalars(keys.slice(0, depth).map(k => k == 'true' ? true : k == 'false' ? false : k), type, depth); default: return this.scalars(keys, type, depth, reflection_info_1.LongType.STRING); } } } exports.ReflectionTypeCheck = ReflectionTypeCheck; /***/ }), /***/ 15183: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.req = exports.json = exports.toBuffer = void 0; const http = __importStar(__nccwpck_require__(58611)); const https = __importStar(__nccwpck_require__(65692)); async function toBuffer(stream) { let length = 0; const chunks = []; for await (const chunk of stream) { length += chunk.length; chunks.push(chunk); } return Buffer.concat(chunks, length); } exports.toBuffer = toBuffer; // eslint-disable-next-line @typescript-eslint/no-explicit-any async function json(stream) { const buf = await toBuffer(stream); const str = buf.toString('utf8'); try { return JSON.parse(str); } catch (_err) { const err = _err; err.message += ` (input: ${str})`; throw err; } } exports.json = json; function req(url, opts = {}) { const href = typeof url === 'string' ? url : url.href; const req = (href.startsWith('https:') ? https : http).request(url, opts); const promise = new Promise((resolve, reject) => { req .once('response', resolve) .once('error', reject) .end(); }); req.then = promise.then.bind(promise); return req; } exports.req = req; //# sourceMappingURL=helpers.js.map /***/ }), /***/ 98894: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; var __exportStar = (this && this.__exportStar) || function(m, exports) { for (var p in m) if (p !== "default" && !Object.prototype.hasOwnProperty.call(exports, p)) __createBinding(exports, m, p); }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.Agent = void 0; const net = __importStar(__nccwpck_require__(69278)); const http = __importStar(__nccwpck_require__(58611)); const https_1 = __nccwpck_require__(65692); __exportStar(__nccwpck_require__(15183), exports); const INTERNAL = Symbol('AgentBaseInternalState'); class Agent extends http.Agent { constructor(opts) { super(opts); this[INTERNAL] = {}; } /** * Determine whether this is an `http` or `https` request. */ isSecureEndpoint(options) { if (options) { // First check the `secureEndpoint` property explicitly, since this // means that a parent `Agent` is "passing through" to this instance. // eslint-disable-next-line @typescript-eslint/no-explicit-any if (typeof options.secureEndpoint === 'boolean') { return options.secureEndpoint; } // If no explicit `secure` endpoint, check if `protocol` property is // set. This will usually be the case since using a full string URL // or `URL` instance should be the most common usage. if (typeof options.protocol === 'string') { return options.protocol === 'https:'; } } // Finally, if no `protocol` property was set, then fall back to // checking the stack trace of the current call stack, and try to // detect the "https" module. const { stack } = new Error(); if (typeof stack !== 'string') return false; return stack .split('\n') .some((l) => l.indexOf('(https.js:') !== -1 || l.indexOf('node:https:') !== -1); } // In order to support async signatures in `connect()` and Node's native // connection pooling in `http.Agent`, the array of sockets for each origin // has to be updated synchronously. This is so the length of the array is // accurate when `addRequest()` is next called. We achieve this by creating a // fake socket and adding it to `sockets[origin]` and incrementing // `totalSocketCount`. incrementSockets(name) { // If `maxSockets` and `maxTotalSockets` are both Infinity then there is no // need to create a fake socket because Node.js native connection pooling // will never be invoked. if (this.maxSockets === Infinity && this.maxTotalSockets === Infinity) { return null; } // All instances of `sockets` are expected TypeScript errors. The // alternative is to add it as a private property of this class but that // will break TypeScript subclassing. if (!this.sockets[name]) { // @ts-expect-error `sockets` is readonly in `@types/node` this.sockets[name] = []; } const fakeSocket = new net.Socket({ writable: false }); this.sockets[name].push(fakeSocket); // @ts-expect-error `totalSocketCount` isn't defined in `@types/node` this.totalSocketCount++; return fakeSocket; } decrementSockets(name, socket) { if (!this.sockets[name] || socket === null) { return; } const sockets = this.sockets[name]; const index = sockets.indexOf(socket); if (index !== -1) { sockets.splice(index, 1); // @ts-expect-error `totalSocketCount` isn't defined in `@types/node` this.totalSocketCount--; if (sockets.length === 0) { // @ts-expect-error `sockets` is readonly in `@types/node` delete this.sockets[name]; } } } // In order to properly update the socket pool, we need to call `getName()` on // the core `https.Agent` if it is a secureEndpoint. getName(options) { const secureEndpoint = this.isSecureEndpoint(options); if (secureEndpoint) { // @ts-expect-error `getName()` isn't defined in `@types/node` return https_1.Agent.prototype.getName.call(this, options); } // @ts-expect-error `getName()` isn't defined in `@types/node` return super.getName(options); } createSocket(req, options, cb) { const connectOpts = { ...options, secureEndpoint: this.isSecureEndpoint(options), }; const name = this.getName(connectOpts); const fakeSocket = this.incrementSockets(name); Promise.resolve() .then(() => this.connect(req, connectOpts)) .then((socket) => { this.decrementSockets(name, fakeSocket); if (socket instanceof http.Agent) { try { // @ts-expect-error `addRequest()` isn't defined in `@types/node` return socket.addRequest(req, connectOpts); } catch (err) { return cb(err); } } this[INTERNAL].currentSocket = socket; // @ts-expect-error `createSocket()` isn't defined in `@types/node` super.createSocket(req, options, cb); }, (err) => { this.decrementSockets(name, fakeSocket); cb(err); }); } createConnection() { const socket = this[INTERNAL].currentSocket; this[INTERNAL].currentSocket = undefined; if (!socket) { throw new Error('No socket was returned in the `connect()` function'); } return socket; } get defaultPort() { return (this[INTERNAL].defaultPort ?? (this.protocol === 'https:' ? 443 : 80)); } set defaultPort(v) { if (this[INTERNAL]) { this[INTERNAL].defaultPort = v; } } get protocol() { return (this[INTERNAL].protocol ?? (this.isSecureEndpoint() ? 'https:' : 'http:')); } set protocol(v) { if (this[INTERNAL]) { this[INTERNAL].protocol = v; } } } exports.Agent = Agent; //# sourceMappingURL=index.js.map /***/ }), /***/ 59380: /***/ ((module) => { "use strict"; module.exports = balanced; function balanced(a, b, str) { if (a instanceof RegExp) a = maybeMatch(a, str); if (b instanceof RegExp) b = maybeMatch(b, str); var r = range(a, b, str); return r && { start: r[0], end: r[1], pre: str.slice(0, r[0]), body: str.slice(r[0] + a.length, r[1]), post: str.slice(r[1] + b.length) }; } function maybeMatch(reg, str) { var m = str.match(reg); return m ? m[0] : null; } balanced.range = range; function range(a, b, str) { var begs, beg, left, right, result; var ai = str.indexOf(a); var bi = str.indexOf(b, ai + 1); var i = ai; if (ai >= 0 && bi > 0) { if(a===b) { return [ai, bi]; } begs = []; left = str.length; while (i >= 0 && !result) { if (i == ai) { begs.push(i); ai = str.indexOf(a, i + 1); } else if (begs.length == 1) { result = [ begs.pop(), bi ]; } else { beg = begs.pop(); if (beg < left) { left = beg; right = bi; } bi = str.indexOf(b, i + 1); } i = ai < bi && ai >= 0 ? ai : bi; } if (begs.length) { result = [ left, right ]; } } return result; } /***/ }), /***/ 52732: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { var register = __nccwpck_require__(11063); var addHook = __nccwpck_require__(22027); var removeHook = __nccwpck_require__(59934); // bind with array of arguments: https://stackoverflow.com/a/21792913 var bind = Function.bind; var bindable = bind.bind(bind); function bindApi(hook, state, name) { var removeHookRef = bindable(removeHook, null).apply( null, name ? [state, name] : [state] ); hook.api = { remove: removeHookRef }; hook.remove = removeHookRef; ["before", "error", "after", "wrap"].forEach(function (kind) { var args = name ? [state, kind, name] : [state, kind]; hook[kind] = hook.api[kind] = bindable(addHook, null).apply(null, args); }); } function HookSingular() { var singularHookName = "h"; var singularHookState = { registry: {}, }; var singularHook = register.bind(null, singularHookState, singularHookName); bindApi(singularHook, singularHookState, singularHookName); return singularHook; } function HookCollection() { var state = { registry: {}, }; var hook = register.bind(null, state); bindApi(hook, state); return hook; } var collectionHookDeprecationMessageDisplayed = false; function Hook() { if (!collectionHookDeprecationMessageDisplayed) { console.warn( '[before-after-hook]: "Hook()" repurposing warning, use "Hook.Collection()". Read more: https://git.io/upgrade-before-after-hook-to-1.4' ); collectionHookDeprecationMessageDisplayed = true; } return HookCollection(); } Hook.Singular = HookSingular.bind(); Hook.Collection = HookCollection.bind(); module.exports = Hook; // expose constructors as a named property for TypeScript module.exports.Hook = Hook; module.exports.Singular = Hook.Singular; module.exports.Collection = Hook.Collection; /***/ }), /***/ 22027: /***/ ((module) => { module.exports = addHook; function addHook(state, kind, name, hook) { var orig = hook; if (!state.registry[name]) { state.registry[name] = []; } if (kind === "before") { hook = function (method, options) { return Promise.resolve() .then(orig.bind(null, options)) .then(method.bind(null, options)); }; } if (kind === "after") { hook = function (method, options) { var result; return Promise.resolve() .then(method.bind(null, options)) .then(function (result_) { result = result_; return orig(result, options); }) .then(function () { return result; }); }; } if (kind === "error") { hook = function (method, options) { return Promise.resolve() .then(method.bind(null, options)) .catch(function (error) { return orig(error, options); }); }; } state.registry[name].push({ hook: hook, orig: orig, }); } /***/ }), /***/ 11063: /***/ ((module) => { module.exports = register; function register(state, name, method, options) { if (typeof method !== "function") { throw new Error("method for before hook must be a function"); } if (!options) { options = {}; } if (Array.isArray(name)) { return name.reverse().reduce(function (callback, name) { return register.bind(null, state, name, callback, options); }, method)(); } return Promise.resolve().then(function () { if (!state.registry[name]) { return method(options); } return state.registry[name].reduce(function (method, registered) { return registered.hook.bind(null, method, options); }, method)(); }); } /***/ }), /***/ 59934: /***/ ((module) => { module.exports = removeHook; function removeHook(state, name, method) { if (!state.registry[name]) { return; } var index = state.registry[name] .map(function (registered) { return registered.orig; }) .indexOf(method); if (index === -1) { return; } state.registry[name].splice(index, 1); } /***/ }), /***/ 63251: /***/ (function(module) { /** * This file contains the Bottleneck library (MIT), compiled to ES2017, and without Clustering support. * https://github.com/SGrondin/bottleneck */ (function (global, factory) { true ? module.exports = factory() : 0; }(this, (function () { 'use strict'; var commonjsGlobal = typeof globalThis !== 'undefined' ? globalThis : typeof window !== 'undefined' ? window : typeof global !== 'undefined' ? global : typeof self !== 'undefined' ? self : {}; function getCjsExportFromNamespace (n) { return n && n['default'] || n; } var load = function(received, defaults, onto = {}) { var k, ref, v; for (k in defaults) { v = defaults[k]; onto[k] = (ref = received[k]) != null ? ref : v; } return onto; }; var overwrite = function(received, defaults, onto = {}) { var k, v; for (k in received) { v = received[k]; if (defaults[k] !== void 0) { onto[k] = v; } } return onto; }; var parser = { load: load, overwrite: overwrite }; var DLList; DLList = class DLList { constructor(incr, decr) { this.incr = incr; this.decr = decr; this._first = null; this._last = null; this.length = 0; } push(value) { var node; this.length++; if (typeof this.incr === "function") { this.incr(); } node = { value, prev: this._last, next: null }; if (this._last != null) { this._last.next = node; this._last = node; } else { this._first = this._last = node; } return void 0; } shift() { var value; if (this._first == null) { return; } else { this.length--; if (typeof this.decr === "function") { this.decr(); } } value = this._first.value; if ((this._first = this._first.next) != null) { this._first.prev = null; } else { this._last = null; } return value; } first() { if (this._first != null) { return this._first.value; } } getArray() { var node, ref, results; node = this._first; results = []; while (node != null) { results.push((ref = node, node = node.next, ref.value)); } return results; } forEachShift(cb) { var node; node = this.shift(); while (node != null) { (cb(node), node = this.shift()); } return void 0; } debug() { var node, ref, ref1, ref2, results; node = this._first; results = []; while (node != null) { results.push((ref = node, node = node.next, { value: ref.value, prev: (ref1 = ref.prev) != null ? ref1.value : void 0, next: (ref2 = ref.next) != null ? ref2.value : void 0 })); } return results; } }; var DLList_1 = DLList; var Events; Events = class Events { constructor(instance) { this.instance = instance; this._events = {}; if ((this.instance.on != null) || (this.instance.once != null) || (this.instance.removeAllListeners != null)) { throw new Error("An Emitter already exists for this object"); } this.instance.on = (name, cb) => { return this._addListener(name, "many", cb); }; this.instance.once = (name, cb) => { return this._addListener(name, "once", cb); }; this.instance.removeAllListeners = (name = null) => { if (name != null) { return delete this._events[name]; } else { return this._events = {}; } }; } _addListener(name, status, cb) { var base; if ((base = this._events)[name] == null) { base[name] = []; } this._events[name].push({cb, status}); return this.instance; } listenerCount(name) { if (this._events[name] != null) { return this._events[name].length; } else { return 0; } } async trigger(name, ...args) { var e, promises; try { if (name !== "debug") { this.trigger("debug", `Event triggered: ${name}`, args); } if (this._events[name] == null) { return; } this._events[name] = this._events[name].filter(function(listener) { return listener.status !== "none"; }); promises = this._events[name].map(async(listener) => { var e, returned; if (listener.status === "none") { return; } if (listener.status === "once") { listener.status = "none"; } try { returned = typeof listener.cb === "function" ? listener.cb(...args) : void 0; if (typeof (returned != null ? returned.then : void 0) === "function") { return (await returned); } else { return returned; } } catch (error) { e = error; { this.trigger("error", e); } return null; } }); return ((await Promise.all(promises))).find(function(x) { return x != null; }); } catch (error) { e = error; { this.trigger("error", e); } return null; } } }; var Events_1 = Events; var DLList$1, Events$1, Queues; DLList$1 = DLList_1; Events$1 = Events_1; Queues = class Queues { constructor(num_priorities) { var i; this.Events = new Events$1(this); this._length = 0; this._lists = (function() { var j, ref, results; results = []; for (i = j = 1, ref = num_priorities; (1 <= ref ? j <= ref : j >= ref); i = 1 <= ref ? ++j : --j) { results.push(new DLList$1((() => { return this.incr(); }), (() => { return this.decr(); }))); } return results; }).call(this); } incr() { if (this._length++ === 0) { return this.Events.trigger("leftzero"); } } decr() { if (--this._length === 0) { return this.Events.trigger("zero"); } } push(job) { return this._lists[job.options.priority].push(job); } queued(priority) { if (priority != null) { return this._lists[priority].length; } else { return this._length; } } shiftAll(fn) { return this._lists.forEach(function(list) { return list.forEachShift(fn); }); } getFirst(arr = this._lists) { var j, len, list; for (j = 0, len = arr.length; j < len; j++) { list = arr[j]; if (list.length > 0) { return list; } } return []; } shiftLastFrom(priority) { return this.getFirst(this._lists.slice(priority).reverse()).shift(); } }; var Queues_1 = Queues; var BottleneckError; BottleneckError = class BottleneckError extends Error {}; var BottleneckError_1 = BottleneckError; var BottleneckError$1, DEFAULT_PRIORITY, Job, NUM_PRIORITIES, parser$1; NUM_PRIORITIES = 10; DEFAULT_PRIORITY = 5; parser$1 = parser; BottleneckError$1 = BottleneckError_1; Job = class Job { constructor(task, args, options, jobDefaults, rejectOnDrop, Events, _states, Promise) { this.task = task; this.args = args; this.rejectOnDrop = rejectOnDrop; this.Events = Events; this._states = _states; this.Promise = Promise; this.options = parser$1.load(options, jobDefaults); this.options.priority = this._sanitizePriority(this.options.priority); if (this.options.id === jobDefaults.id) { this.options.id = `${this.options.id}-${this._randomIndex()}`; } this.promise = new this.Promise((_resolve, _reject) => { this._resolve = _resolve; this._reject = _reject; }); this.retryCount = 0; } _sanitizePriority(priority) { var sProperty; sProperty = ~~priority !== priority ? DEFAULT_PRIORITY : priority; if (sProperty < 0) { return 0; } else if (sProperty > NUM_PRIORITIES - 1) { return NUM_PRIORITIES - 1; } else { return sProperty; } } _randomIndex() { return Math.random().toString(36).slice(2); } doDrop({error, message = "This job has been dropped by Bottleneck"} = {}) { if (this._states.remove(this.options.id)) { if (this.rejectOnDrop) { this._reject(error != null ? error : new BottleneckError$1(message)); } this.Events.trigger("dropped", {args: this.args, options: this.options, task: this.task, promise: this.promise}); return true; } else { return false; } } _assertStatus(expected) { var status; status = this._states.jobStatus(this.options.id); if (!(status === expected || (expected === "DONE" && status === null))) { throw new BottleneckError$1(`Invalid job status ${status}, expected ${expected}. Please open an issue at https://github.com/SGrondin/bottleneck/issues`); } } doReceive() { this._states.start(this.options.id); return this.Events.trigger("received", {args: this.args, options: this.options}); } doQueue(reachedHWM, blocked) { this._assertStatus("RECEIVED"); this._states.next(this.options.id); return this.Events.trigger("queued", {args: this.args, options: this.options, reachedHWM, blocked}); } doRun() { if (this.retryCount === 0) { this._assertStatus("QUEUED"); this._states.next(this.options.id); } else { this._assertStatus("EXECUTING"); } return this.Events.trigger("scheduled", {args: this.args, options: this.options}); } async doExecute(chained, clearGlobalState, run, free) { var error, eventInfo, passed; if (this.retryCount === 0) { this._assertStatus("RUNNING"); this._states.next(this.options.id); } else { this._assertStatus("EXECUTING"); } eventInfo = {args: this.args, options: this.options, retryCount: this.retryCount}; this.Events.trigger("executing", eventInfo); try { passed = (await (chained != null ? chained.schedule(this.options, this.task, ...this.args) : this.task(...this.args))); if (clearGlobalState()) { this.doDone(eventInfo); await free(this.options, eventInfo); this._assertStatus("DONE"); return this._resolve(passed); } } catch (error1) { error = error1; return this._onFailure(error, eventInfo, clearGlobalState, run, free); } } doExpire(clearGlobalState, run, free) { var error, eventInfo; if (this._states.jobStatus(this.options.id === "RUNNING")) { this._states.next(this.options.id); } this._assertStatus("EXECUTING"); eventInfo = {args: this.args, options: this.options, retryCount: this.retryCount}; error = new BottleneckError$1(`This job timed out after ${this.options.expiration} ms.`); return this._onFailure(error, eventInfo, clearGlobalState, run, free); } async _onFailure(error, eventInfo, clearGlobalState, run, free) { var retry, retryAfter; if (clearGlobalState()) { retry = (await this.Events.trigger("failed", error, eventInfo)); if (retry != null) { retryAfter = ~~retry; this.Events.trigger("retry", `Retrying ${this.options.id} after ${retryAfter} ms`, eventInfo); this.retryCount++; return run(retryAfter); } else { this.doDone(eventInfo); await free(this.options, eventInfo); this._assertStatus("DONE"); return this._reject(error); } } } doDone(eventInfo) { this._assertStatus("EXECUTING"); this._states.next(this.options.id); return this.Events.trigger("done", eventInfo); } }; var Job_1 = Job; var BottleneckError$2, LocalDatastore, parser$2; parser$2 = parser; BottleneckError$2 = BottleneckError_1; LocalDatastore = class LocalDatastore { constructor(instance, storeOptions, storeInstanceOptions) { this.instance = instance; this.storeOptions = storeOptions; this.clientId = this.instance._randomIndex(); parser$2.load(storeInstanceOptions, storeInstanceOptions, this); this._nextRequest = this._lastReservoirRefresh = this._lastReservoirIncrease = Date.now(); this._running = 0; this._done = 0; this._unblockTime = 0; this.ready = this.Promise.resolve(); this.clients = {}; this._startHeartbeat(); } _startHeartbeat() { var base; if ((this.heartbeat == null) && (((this.storeOptions.reservoirRefreshInterval != null) && (this.storeOptions.reservoirRefreshAmount != null)) || ((this.storeOptions.reservoirIncreaseInterval != null) && (this.storeOptions.reservoirIncreaseAmount != null)))) { return typeof (base = (this.heartbeat = setInterval(() => { var amount, incr, maximum, now, reservoir; now = Date.now(); if ((this.storeOptions.reservoirRefreshInterval != null) && now >= this._lastReservoirRefresh + this.storeOptions.reservoirRefreshInterval) { this._lastReservoirRefresh = now; this.storeOptions.reservoir = this.storeOptions.reservoirRefreshAmount; this.instance._drainAll(this.computeCapacity()); } if ((this.storeOptions.reservoirIncreaseInterval != null) && now >= this._lastReservoirIncrease + this.storeOptions.reservoirIncreaseInterval) { ({ reservoirIncreaseAmount: amount, reservoirIncreaseMaximum: maximum, reservoir } = this.storeOptions); this._lastReservoirIncrease = now; incr = maximum != null ? Math.min(amount, maximum - reservoir) : amount; if (incr > 0) { this.storeOptions.reservoir += incr; return this.instance._drainAll(this.computeCapacity()); } } }, this.heartbeatInterval))).unref === "function" ? base.unref() : void 0; } else { return clearInterval(this.heartbeat); } } async __publish__(message) { await this.yieldLoop(); return this.instance.Events.trigger("message", message.toString()); } async __disconnect__(flush) { await this.yieldLoop(); clearInterval(this.heartbeat); return this.Promise.resolve(); } yieldLoop(t = 0) { return new this.Promise(function(resolve, reject) { return setTimeout(resolve, t); }); } computePenalty() { var ref; return (ref = this.storeOptions.penalty) != null ? ref : (15 * this.storeOptions.minTime) || 5000; } async __updateSettings__(options) { await this.yieldLoop(); parser$2.overwrite(options, options, this.storeOptions); this._startHeartbeat(); this.instance._drainAll(this.computeCapacity()); return true; } async __running__() { await this.yieldLoop(); return this._running; } async __queued__() { await this.yieldLoop(); return this.instance.queued(); } async __done__() { await this.yieldLoop(); return this._done; } async __groupCheck__(time) { await this.yieldLoop(); return (this._nextRequest + this.timeout) < time; } computeCapacity() { var maxConcurrent, reservoir; ({maxConcurrent, reservoir} = this.storeOptions); if ((maxConcurrent != null) && (reservoir != null)) { return Math.min(maxConcurrent - this._running, reservoir); } else if (maxConcurrent != null) { return maxConcurrent - this._running; } else if (reservoir != null) { return reservoir; } else { return null; } } conditionsCheck(weight) { var capacity; capacity = this.computeCapacity(); return (capacity == null) || weight <= capacity; } async __incrementReservoir__(incr) { var reservoir; await this.yieldLoop(); reservoir = this.storeOptions.reservoir += incr; this.instance._drainAll(this.computeCapacity()); return reservoir; } async __currentReservoir__() { await this.yieldLoop(); return this.storeOptions.reservoir; } isBlocked(now) { return this._unblockTime >= now; } check(weight, now) { return this.conditionsCheck(weight) && (this._nextRequest - now) <= 0; } async __check__(weight) { var now; await this.yieldLoop(); now = Date.now(); return this.check(weight, now); } async __register__(index, weight, expiration) { var now, wait; await this.yieldLoop(); now = Date.now(); if (this.conditionsCheck(weight)) { this._running += weight; if (this.storeOptions.reservoir != null) { this.storeOptions.reservoir -= weight; } wait = Math.max(this._nextRequest - now, 0); this._nextRequest = now + wait + this.storeOptions.minTime; return { success: true, wait, reservoir: this.storeOptions.reservoir }; } else { return { success: false }; } } strategyIsBlock() { return this.storeOptions.strategy === 3; } async __submit__(queueLength, weight) { var blocked, now, reachedHWM; await this.yieldLoop(); if ((this.storeOptions.maxConcurrent != null) && weight > this.storeOptions.maxConcurrent) { throw new BottleneckError$2(`Impossible to add a job having a weight of ${weight} to a limiter having a maxConcurrent setting of ${this.storeOptions.maxConcurrent}`); } now = Date.now(); reachedHWM = (this.storeOptions.highWater != null) && queueLength === this.storeOptions.highWater && !this.check(weight, now); blocked = this.strategyIsBlock() && (reachedHWM || this.isBlocked(now)); if (blocked) { this._unblockTime = now + this.computePenalty(); this._nextRequest = this._unblockTime + this.storeOptions.minTime; this.instance._dropAllQueued(); } return { reachedHWM, blocked, strategy: this.storeOptions.strategy }; } async __free__(index, weight) { await this.yieldLoop(); this._running -= weight; this._done += weight; this.instance._drainAll(this.computeCapacity()); return { running: this._running }; } }; var LocalDatastore_1 = LocalDatastore; var BottleneckError$3, States; BottleneckError$3 = BottleneckError_1; States = class States { constructor(status1) { this.status = status1; this._jobs = {}; this.counts = this.status.map(function() { return 0; }); } next(id) { var current, next; current = this._jobs[id]; next = current + 1; if ((current != null) && next < this.status.length) { this.counts[current]--; this.counts[next]++; return this._jobs[id]++; } else if (current != null) { this.counts[current]--; return delete this._jobs[id]; } } start(id) { var initial; initial = 0; this._jobs[id] = initial; return this.counts[initial]++; } remove(id) { var current; current = this._jobs[id]; if (current != null) { this.counts[current]--; delete this._jobs[id]; } return current != null; } jobStatus(id) { var ref; return (ref = this.status[this._jobs[id]]) != null ? ref : null; } statusJobs(status) { var k, pos, ref, results, v; if (status != null) { pos = this.status.indexOf(status); if (pos < 0) { throw new BottleneckError$3(`status must be one of ${this.status.join(', ')}`); } ref = this._jobs; results = []; for (k in ref) { v = ref[k]; if (v === pos) { results.push(k); } } return results; } else { return Object.keys(this._jobs); } } statusCounts() { return this.counts.reduce(((acc, v, i) => { acc[this.status[i]] = v; return acc; }), {}); } }; var States_1 = States; var DLList$2, Sync; DLList$2 = DLList_1; Sync = class Sync { constructor(name, Promise) { this.schedule = this.schedule.bind(this); this.name = name; this.Promise = Promise; this._running = 0; this._queue = new DLList$2(); } isEmpty() { return this._queue.length === 0; } async _tryToRun() { var args, cb, error, reject, resolve, returned, task; if ((this._running < 1) && this._queue.length > 0) { this._running++; ({task, args, resolve, reject} = this._queue.shift()); cb = (await (async function() { try { returned = (await task(...args)); return function() { return resolve(returned); }; } catch (error1) { error = error1; return function() { return reject(error); }; } })()); this._running--; this._tryToRun(); return cb(); } } schedule(task, ...args) { var promise, reject, resolve; resolve = reject = null; promise = new this.Promise(function(_resolve, _reject) { resolve = _resolve; return reject = _reject; }); this._queue.push({task, args, resolve, reject}); this._tryToRun(); return promise; } }; var Sync_1 = Sync; var version = "2.19.5"; var version$1 = { version: version }; var version$2 = /*#__PURE__*/Object.freeze({ version: version, default: version$1 }); var require$$2 = () => console.log('You must import the full version of Bottleneck in order to use this feature.'); var require$$3 = () => console.log('You must import the full version of Bottleneck in order to use this feature.'); var require$$4 = () => console.log('You must import the full version of Bottleneck in order to use this feature.'); var Events$2, Group, IORedisConnection$1, RedisConnection$1, Scripts$1, parser$3; parser$3 = parser; Events$2 = Events_1; RedisConnection$1 = require$$2; IORedisConnection$1 = require$$3; Scripts$1 = require$$4; Group = (function() { class Group { constructor(limiterOptions = {}) { this.deleteKey = this.deleteKey.bind(this); this.limiterOptions = limiterOptions; parser$3.load(this.limiterOptions, this.defaults, this); this.Events = new Events$2(this); this.instances = {}; this.Bottleneck = Bottleneck_1; this._startAutoCleanup(); this.sharedConnection = this.connection != null; if (this.connection == null) { if (this.limiterOptions.datastore === "redis") { this.connection = new RedisConnection$1(Object.assign({}, this.limiterOptions, {Events: this.Events})); } else if (this.limiterOptions.datastore === "ioredis") { this.connection = new IORedisConnection$1(Object.assign({}, this.limiterOptions, {Events: this.Events})); } } } key(key = "") { var ref; return (ref = this.instances[key]) != null ? ref : (() => { var limiter; limiter = this.instances[key] = new this.Bottleneck(Object.assign(this.limiterOptions, { id: `${this.id}-${key}`, timeout: this.timeout, connection: this.connection })); this.Events.trigger("created", limiter, key); return limiter; })(); } async deleteKey(key = "") { var deleted, instance; instance = this.instances[key]; if (this.connection) { deleted = (await this.connection.__runCommand__(['del', ...Scripts$1.allKeys(`${this.id}-${key}`)])); } if (instance != null) { delete this.instances[key]; await instance.disconnect(); } return (instance != null) || deleted > 0; } limiters() { var k, ref, results, v; ref = this.instances; results = []; for (k in ref) { v = ref[k]; results.push({ key: k, limiter: v }); } return results; } keys() { return Object.keys(this.instances); } async clusterKeys() { var cursor, end, found, i, k, keys, len, next, start; if (this.connection == null) { return this.Promise.resolve(this.keys()); } keys = []; cursor = null; start = `b_${this.id}-`.length; end = "_settings".length; while (cursor !== 0) { [next, found] = (await this.connection.__runCommand__(["scan", cursor != null ? cursor : 0, "match", `b_${this.id}-*_settings`, "count", 10000])); cursor = ~~next; for (i = 0, len = found.length; i < len; i++) { k = found[i]; keys.push(k.slice(start, -end)); } } return keys; } _startAutoCleanup() { var base; clearInterval(this.interval); return typeof (base = (this.interval = setInterval(async() => { var e, k, ref, results, time, v; time = Date.now(); ref = this.instances; results = []; for (k in ref) { v = ref[k]; try { if ((await v._store.__groupCheck__(time))) { results.push(this.deleteKey(k)); } else { results.push(void 0); } } catch (error) { e = error; results.push(v.Events.trigger("error", e)); } } return results; }, this.timeout / 2))).unref === "function" ? base.unref() : void 0; } updateSettings(options = {}) { parser$3.overwrite(options, this.defaults, this); parser$3.overwrite(options, options, this.limiterOptions); if (options.timeout != null) { return this._startAutoCleanup(); } } disconnect(flush = true) { var ref; if (!this.sharedConnection) { return (ref = this.connection) != null ? ref.disconnect(flush) : void 0; } } } Group.prototype.defaults = { timeout: 1000 * 60 * 5, connection: null, Promise: Promise, id: "group-key" }; return Group; }).call(commonjsGlobal); var Group_1 = Group; var Batcher, Events$3, parser$4; parser$4 = parser; Events$3 = Events_1; Batcher = (function() { class Batcher { constructor(options = {}) { this.options = options; parser$4.load(this.options, this.defaults, this); this.Events = new Events$3(this); this._arr = []; this._resetPromise(); this._lastFlush = Date.now(); } _resetPromise() { return this._promise = new this.Promise((res, rej) => { return this._resolve = res; }); } _flush() { clearTimeout(this._timeout); this._lastFlush = Date.now(); this._resolve(); this.Events.trigger("batch", this._arr); this._arr = []; return this._resetPromise(); } add(data) { var ret; this._arr.push(data); ret = this._promise; if (this._arr.length === this.maxSize) { this._flush(); } else if ((this.maxTime != null) && this._arr.length === 1) { this._timeout = setTimeout(() => { return this._flush(); }, this.maxTime); } return ret; } } Batcher.prototype.defaults = { maxTime: null, maxSize: null, Promise: Promise }; return Batcher; }).call(commonjsGlobal); var Batcher_1 = Batcher; var require$$4$1 = () => console.log('You must import the full version of Bottleneck in order to use this feature.'); var require$$8 = getCjsExportFromNamespace(version$2); var Bottleneck, DEFAULT_PRIORITY$1, Events$4, Job$1, LocalDatastore$1, NUM_PRIORITIES$1, Queues$1, RedisDatastore$1, States$1, Sync$1, parser$5, splice = [].splice; NUM_PRIORITIES$1 = 10; DEFAULT_PRIORITY$1 = 5; parser$5 = parser; Queues$1 = Queues_1; Job$1 = Job_1; LocalDatastore$1 = LocalDatastore_1; RedisDatastore$1 = require$$4$1; Events$4 = Events_1; States$1 = States_1; Sync$1 = Sync_1; Bottleneck = (function() { class Bottleneck { constructor(options = {}, ...invalid) { var storeInstanceOptions, storeOptions; this._addToQueue = this._addToQueue.bind(this); this._validateOptions(options, invalid); parser$5.load(options, this.instanceDefaults, this); this._queues = new Queues$1(NUM_PRIORITIES$1); this._scheduled = {}; this._states = new States$1(["RECEIVED", "QUEUED", "RUNNING", "EXECUTING"].concat(this.trackDoneStatus ? ["DONE"] : [])); this._limiter = null; this.Events = new Events$4(this); this._submitLock = new Sync$1("submit", this.Promise); this._registerLock = new Sync$1("register", this.Promise); storeOptions = parser$5.load(options, this.storeDefaults, {}); this._store = (function() { if (this.datastore === "redis" || this.datastore === "ioredis" || (this.connection != null)) { storeInstanceOptions = parser$5.load(options, this.redisStoreDefaults, {}); return new RedisDatastore$1(this, storeOptions, storeInstanceOptions); } else if (this.datastore === "local") { storeInstanceOptions = parser$5.load(options, this.localStoreDefaults, {}); return new LocalDatastore$1(this, storeOptions, storeInstanceOptions); } else { throw new Bottleneck.prototype.BottleneckError(`Invalid datastore type: ${this.datastore}`); } }).call(this); this._queues.on("leftzero", () => { var ref; return (ref = this._store.heartbeat) != null ? typeof ref.ref === "function" ? ref.ref() : void 0 : void 0; }); this._queues.on("zero", () => { var ref; return (ref = this._store.heartbeat) != null ? typeof ref.unref === "function" ? ref.unref() : void 0 : void 0; }); } _validateOptions(options, invalid) { if (!((options != null) && typeof options === "object" && invalid.length === 0)) { throw new Bottleneck.prototype.BottleneckError("Bottleneck v2 takes a single object argument. Refer to https://github.com/SGrondin/bottleneck#upgrading-to-v2 if you're upgrading from Bottleneck v1."); } } ready() { return this._store.ready; } clients() { return this._store.clients; } channel() { return `b_${this.id}`; } channel_client() { return `b_${this.id}_${this._store.clientId}`; } publish(message) { return this._store.__publish__(message); } disconnect(flush = true) { return this._store.__disconnect__(flush); } chain(_limiter) { this._limiter = _limiter; return this; } queued(priority) { return this._queues.queued(priority); } clusterQueued() { return this._store.__queued__(); } empty() { return this.queued() === 0 && this._submitLock.isEmpty(); } running() { return this._store.__running__(); } done() { return this._store.__done__(); } jobStatus(id) { return this._states.jobStatus(id); } jobs(status) { return this._states.statusJobs(status); } counts() { return this._states.statusCounts(); } _randomIndex() { return Math.random().toString(36).slice(2); } check(weight = 1) { return this._store.__check__(weight); } _clearGlobalState(index) { if (this._scheduled[index] != null) { clearTimeout(this._scheduled[index].expiration); delete this._scheduled[index]; return true; } else { return false; } } async _free(index, job, options, eventInfo) { var e, running; try { ({running} = (await this._store.__free__(index, options.weight))); this.Events.trigger("debug", `Freed ${options.id}`, eventInfo); if (running === 0 && this.empty()) { return this.Events.trigger("idle"); } } catch (error1) { e = error1; return this.Events.trigger("error", e); } } _run(index, job, wait) { var clearGlobalState, free, run; job.doRun(); clearGlobalState = this._clearGlobalState.bind(this, index); run = this._run.bind(this, index, job); free = this._free.bind(this, index, job); return this._scheduled[index] = { timeout: setTimeout(() => { return job.doExecute(this._limiter, clearGlobalState, run, free); }, wait), expiration: job.options.expiration != null ? setTimeout(function() { return job.doExpire(clearGlobalState, run, free); }, wait + job.options.expiration) : void 0, job: job }; } _drainOne(capacity) { return this._registerLock.schedule(() => { var args, index, next, options, queue; if (this.queued() === 0) { return this.Promise.resolve(null); } queue = this._queues.getFirst(); ({options, args} = next = queue.first()); if ((capacity != null) && options.weight > capacity) { return this.Promise.resolve(null); } this.Events.trigger("debug", `Draining ${options.id}`, {args, options}); index = this._randomIndex(); return this._store.__register__(index, options.weight, options.expiration).then(({success, wait, reservoir}) => { var empty; this.Events.trigger("debug", `Drained ${options.id}`, {success, args, options}); if (success) { queue.shift(); empty = this.empty(); if (empty) { this.Events.trigger("empty"); } if (reservoir === 0) { this.Events.trigger("depleted", empty); } this._run(index, next, wait); return this.Promise.resolve(options.weight); } else { return this.Promise.resolve(null); } }); }); } _drainAll(capacity, total = 0) { return this._drainOne(capacity).then((drained) => { var newCapacity; if (drained != null) { newCapacity = capacity != null ? capacity - drained : capacity; return this._drainAll(newCapacity, total + drained); } else { return this.Promise.resolve(total); } }).catch((e) => { return this.Events.trigger("error", e); }); } _dropAllQueued(message) { return this._queues.shiftAll(function(job) { return job.doDrop({message}); }); } stop(options = {}) { var done, waitForExecuting; options = parser$5.load(options, this.stopDefaults); waitForExecuting = (at) => { var finished; finished = () => { var counts; counts = this._states.counts; return (counts[0] + counts[1] + counts[2] + counts[3]) === at; }; return new this.Promise((resolve, reject) => { if (finished()) { return resolve(); } else { return this.on("done", () => { if (finished()) { this.removeAllListeners("done"); return resolve(); } }); } }); }; done = options.dropWaitingJobs ? (this._run = function(index, next) { return next.doDrop({ message: options.dropErrorMessage }); }, this._drainOne = () => { return this.Promise.resolve(null); }, this._registerLock.schedule(() => { return this._submitLock.schedule(() => { var k, ref, v; ref = this._scheduled; for (k in ref) { v = ref[k]; if (this.jobStatus(v.job.options.id) === "RUNNING") { clearTimeout(v.timeout); clearTimeout(v.expiration); v.job.doDrop({ message: options.dropErrorMessage }); } } this._dropAllQueued(options.dropErrorMessage); return waitForExecuting(0); }); })) : this.schedule({ priority: NUM_PRIORITIES$1 - 1, weight: 0 }, () => { return waitForExecuting(1); }); this._receive = function(job) { return job._reject(new Bottleneck.prototype.BottleneckError(options.enqueueErrorMessage)); }; this.stop = () => { return this.Promise.reject(new Bottleneck.prototype.BottleneckError("stop() has already been called")); }; return done; } async _addToQueue(job) { var args, blocked, error, options, reachedHWM, shifted, strategy; ({args, options} = job); try { ({reachedHWM, blocked, strategy} = (await this._store.__submit__(this.queued(), options.weight))); } catch (error1) { error = error1; this.Events.trigger("debug", `Could not queue ${options.id}`, {args, options, error}); job.doDrop({error}); return false; } if (blocked) { job.doDrop(); return true; } else if (reachedHWM) { shifted = strategy === Bottleneck.prototype.strategy.LEAK ? this._queues.shiftLastFrom(options.priority) : strategy === Bottleneck.prototype.strategy.OVERFLOW_PRIORITY ? this._queues.shiftLastFrom(options.priority + 1) : strategy === Bottleneck.prototype.strategy.OVERFLOW ? job : void 0; if (shifted != null) { shifted.doDrop(); } if ((shifted == null) || strategy === Bottleneck.prototype.strategy.OVERFLOW) { if (shifted == null) { job.doDrop(); } return reachedHWM; } } job.doQueue(reachedHWM, blocked); this._queues.push(job); await this._drainAll(); return reachedHWM; } _receive(job) { if (this._states.jobStatus(job.options.id) != null) { job._reject(new Bottleneck.prototype.BottleneckError(`A job with the same id already exists (id=${job.options.id})`)); return false; } else { job.doReceive(); return this._submitLock.schedule(this._addToQueue, job); } } submit(...args) { var cb, fn, job, options, ref, ref1, task; if (typeof args[0] === "function") { ref = args, [fn, ...args] = ref, [cb] = splice.call(args, -1); options = parser$5.load({}, this.jobDefaults); } else { ref1 = args, [options, fn, ...args] = ref1, [cb] = splice.call(args, -1); options = parser$5.load(options, this.jobDefaults); } task = (...args) => { return new this.Promise(function(resolve, reject) { return fn(...args, function(...args) { return (args[0] != null ? reject : resolve)(args); }); }); }; job = new Job$1(task, args, options, this.jobDefaults, this.rejectOnDrop, this.Events, this._states, this.Promise); job.promise.then(function(args) { return typeof cb === "function" ? cb(...args) : void 0; }).catch(function(args) { if (Array.isArray(args)) { return typeof cb === "function" ? cb(...args) : void 0; } else { return typeof cb === "function" ? cb(args) : void 0; } }); return this._receive(job); } schedule(...args) { var job, options, task; if (typeof args[0] === "function") { [task, ...args] = args; options = {}; } else { [options, task, ...args] = args; } job = new Job$1(task, args, options, this.jobDefaults, this.rejectOnDrop, this.Events, this._states, this.Promise); this._receive(job); return job.promise; } wrap(fn) { var schedule, wrapped; schedule = this.schedule.bind(this); wrapped = function(...args) { return schedule(fn.bind(this), ...args); }; wrapped.withOptions = function(options, ...args) { return schedule(options, fn, ...args); }; return wrapped; } async updateSettings(options = {}) { await this._store.__updateSettings__(parser$5.overwrite(options, this.storeDefaults)); parser$5.overwrite(options, this.instanceDefaults, this); return this; } currentReservoir() { return this._store.__currentReservoir__(); } incrementReservoir(incr = 0) { return this._store.__incrementReservoir__(incr); } } Bottleneck.default = Bottleneck; Bottleneck.Events = Events$4; Bottleneck.version = Bottleneck.prototype.version = require$$8.version; Bottleneck.strategy = Bottleneck.prototype.strategy = { LEAK: 1, OVERFLOW: 2, OVERFLOW_PRIORITY: 4, BLOCK: 3 }; Bottleneck.BottleneckError = Bottleneck.prototype.BottleneckError = BottleneckError_1; Bottleneck.Group = Bottleneck.prototype.Group = Group_1; Bottleneck.RedisConnection = Bottleneck.prototype.RedisConnection = require$$2; Bottleneck.IORedisConnection = Bottleneck.prototype.IORedisConnection = require$$3; Bottleneck.Batcher = Bottleneck.prototype.Batcher = Batcher_1; Bottleneck.prototype.jobDefaults = { priority: DEFAULT_PRIORITY$1, weight: 1, expiration: null, id: "" }; Bottleneck.prototype.storeDefaults = { maxConcurrent: null, minTime: 0, highWater: null, strategy: Bottleneck.prototype.strategy.LEAK, penalty: null, reservoir: null, reservoirRefreshInterval: null, reservoirRefreshAmount: null, reservoirIncreaseInterval: null, reservoirIncreaseAmount: null, reservoirIncreaseMaximum: null }; Bottleneck.prototype.localStoreDefaults = { Promise: Promise, timeout: null, heartbeatInterval: 250 }; Bottleneck.prototype.redisStoreDefaults = { Promise: Promise, timeout: null, heartbeatInterval: 5000, clientTimeout: 10000, Redis: null, clientOptions: {}, clusterNodes: null, clearDatastore: false, connection: null }; Bottleneck.prototype.instanceDefaults = { datastore: "local", connection: null, id: "", rejectOnDrop: true, trackDoneStatus: false, Promise: Promise }; Bottleneck.prototype.stopDefaults = { enqueueErrorMessage: "This limiter has been stopped and cannot accept new jobs.", dropWaitingJobs: true, dropErrorMessage: "This limiter has been stopped." }; return Bottleneck; }).call(commonjsGlobal); var Bottleneck_1 = Bottleneck; var lib = Bottleneck_1; return lib; }))); /***/ }), /***/ 94691: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { var concatMap = __nccwpck_require__(97087); var balanced = __nccwpck_require__(59380); module.exports = expandTop; var escSlash = '\0SLASH'+Math.random()+'\0'; var escOpen = '\0OPEN'+Math.random()+'\0'; var escClose = '\0CLOSE'+Math.random()+'\0'; var escComma = '\0COMMA'+Math.random()+'\0'; var escPeriod = '\0PERIOD'+Math.random()+'\0'; var EXPANSION_MAX = 100000 // `EXPANSION_MAX` caps the *number* of expansions, but not their length. An // input like `'{a,b}'.repeat(1500)` stays under that count - its output is // truncated to 100k results - while making every result ~1500 characters // long. The result set, and the intermediate arrays built while combining // brace sets, then grow large enough to exhaust memory and crash the process // (CVE-2026-14257). `EXPANSION_MAX_LENGTH` bounds the total number of // characters the accumulator may hold at any point, so memory stays flat no // matter how many brace groups are chained. The limit sits well above any // realistic expansion (100k results hitting `EXPANSION_MAX` measure ~1M // characters) so legitimate input is unaffected. var EXPANSION_MAX_LENGTH = 4000000 function numeric(str) { return parseInt(str, 10) == str ? parseInt(str, 10) : str.charCodeAt(0); } function escapeBraces(str) { return str.split('\\\\').join(escSlash) .split('\\{').join(escOpen) .split('\\}').join(escClose) .split('\\,').join(escComma) .split('\\.').join(escPeriod); } function unescapeBraces(str) { return str.split(escSlash).join('\\') .split(escOpen).join('{') .split(escClose).join('}') .split(escComma).join(',') .split(escPeriod).join('.'); } // Basically just str.split(","), but handling cases // where we have nested braced sections, which should be // treated as individual members, like {a,{b,c},d} function parseCommaParts(str) { if (!str) return ['']; var parts = []; var m = balanced('{', '}', str); if (!m) return str.split(','); var pre = m.pre; var body = m.body; var post = m.post; var p = pre.split(','); p[p.length-1] += '{' + body + '}'; var postParts = parseCommaParts(post); if (post.length) { p[p.length-1] += postParts.shift(); p.push.apply(p, postParts); } parts.push.apply(parts, p); return parts; } function expandTop(str, options) { if (!str) return []; options = options || {}; var max = options.max == null ? EXPANSION_MAX : options.max; var maxLength = options.maxLength == null ? EXPANSION_MAX_LENGTH : options.maxLength; // I don't know why Bash 4.3 does this, but it does. // Anything starting with {} will have the first two bytes preserved // but *only* at the top level, so {},a}b will not expand to anything, // but a{},b}c will be expanded to [a}c,abc]. // One could argue that this is a bug in Bash, but since the goal of // this module is to match Bash's rules, we escape a leading {} if (str.substr(0, 2) === '{}') { str = '\\{\\}' + str.substr(2); } return expand(escapeBraces(str), max, maxLength, true).map(unescapeBraces); } function identity(e) { return e; } function embrace(str) { return '{' + str + '}'; } function isPadded(el) { return /^-?0\d/.test(el); } function lte(i, y) { return i <= y; } function gte(i, y) { return i >= y; } // Build `{ acc[a] + pre + values[v] }` for every combination, capping the // number of results at `max` and the total number of characters at `maxLength`. // This is the one place output grows, so bounding it here keeps the single // accumulator - and therefore memory - flat regardless of how many brace groups // are combined (CVE-2026-14257). // // `base[a]` is the length of the part of `acc[a]` that predates the current // empty-drop baseline (see `expand`). The matching baselines for the results // are appended to `outBase`, which the caller carries forward alongside them. function combine( acc, base, pre, values, max, maxLength, dropEmpties, outBase ) { var out = [] var length = 0 for (var a = 0; a < acc.length; a++) { for (var v = 0; v < values.length; v++) { if (out.length >= max) return out var expansion = acc[a] + pre + values[v] // Bash drops empty results at the top level. Skip them before they count // against `max`, so `max` bounds the number of *kept* results. "Empty" // means "adds nothing past the baseline", not "empty overall". if (dropEmpties && expansion.length === base[a]) continue if (length + expansion.length > maxLength) return out out.push(expansion) outBase.push(base[a]) length += expansion.length } } return out } // The expansion values of a single numeric (`1..5`) or alphabetic (`a..e..2`) // sequence body. function expandSequence( body, isAlphaSequence, max, maxLength ) { var n = body.split(/\.\./) var N = [] // A sequence body always splits into two or three parts, but the compiler // can't know that. /* c8 ignore start */ if (n[0] === undefined || n[1] === undefined) { return N } /* c8 ignore stop */ var x = numeric(n[0]) var y = numeric(n[1]) var width = Math.max(n[0].length, n[1].length) var incr = n.length === 3 && n[2] !== undefined ? Math.max(Math.abs(numeric(n[2])), 1) : 1 var test = lte var reverse = y < x if (reverse) { incr *= -1 test = gte } var pad = n.some(isPadded) var length = 0 for (var i = x; test(i, y) && N.length < max; i += incr) { var c if (isAlphaSequence) { c = String.fromCharCode(i) if (c === '\\') { c = '' } } else { c = String(i) if (pad) { var need = width - c.length if (need > 0) { var z = new Array(need + 1).join('0') if (i < 0) { c = '-' + z + c.slice(1) } else { c = z + c } } } } if (length + c.length > maxLength) break N.push(c) length += c.length } return N } function expand( str, max, maxLength, isTop ) { // Consume the string's top-level brace groups left to right, threading a // running set of combined prefixes (`acc`). Expanding the tail iteratively - // rather than recursing on `m.post` once per group - keeps the native stack // depth constant, so deeply chained input (`'{a,b}'.repeat(3000)`) can no // longer overflow the stack, and leaves a single accumulator whose size // `maxLength` bounds directly (CVE-2026-14257). var acc = [''] // Bash drops empty results, but only when the *first* group of the run is a // comma set - a sequence like `{a..\}` may legitimately yield ''. The drop // is on the final strings, so it is applied to whichever `combine` produces // them (the one with no brace set left in the tail). // // The old implementation recursed on `m.post`, so the drop tested only the // expansion of the current call's substring. The `{a},b}` rewrite below turns // `isTop` back on part-way through a string, starting a fresh such run, so // the drop must ignore whatever `acc` already holds from earlier groups. // `accBase[a]` records how much of `acc[a]` predates the current run; // `combine` treats an expansion as empty when it adds nothing past that. var accBase = [0] var dropEmpties = false var firstGroup = true var nextBase for (;;) { var m = balanced('{', '}', str); // No brace set left: the rest of the string is literal. if (!m) { return combine(acc, accBase, str, [''], max, maxLength, dropEmpties, []) } // no need to expand pre, since it is guaranteed to be free of brace-sets var pre = m.pre; // For compatibility reasons, `${` is not eligible for brace expansion, and // on the 1.x line it suppresses expansion of the rest of the string too: // the whole remainder is literal. The 2.x and 5.x lines instead keep // expanding the tail, which is what bash does, but changing that here would // be a breaking change for 1.x consumers. Routed through `combine` so the // result is still bounded by `max` and `maxLength`. if (/\$$/.test(pre)) { return combine(acc, accBase, str, [''], max, maxLength, dropEmpties, []) } var isNumericSequence = /^-?\d+\.\.-?\d+(?:\.\.-?\d+)?$/.test(m.body); var isAlphaSequence = /^[a-zA-Z]\.\.[a-zA-Z](?:\.\.-?\d+)?$/.test(m.body); var isSequence = isNumericSequence || isAlphaSequence; var isOptions = m.body.indexOf(',') >= 0; if (!isSequence && !isOptions) { // {a},b} if (m.post.match(/,(?!,).*\}/)) { str = m.pre + '{' + m.body + escClose + m.post; // The rewritten string is expanded as if it were a fresh top-level one, // so start a new empty-drop run: anchor the baseline at what `acc` // holds now, and let the next expanding group decide whether to drop. isTop = true firstGroup = true dropEmpties = false accBase = [] for (var b = 0; b < acc.length; b++) { accBase.push(acc[b].length) } continue } // Nothing here expands, so the whole remaining string is literal. return combine( acc, accBase, pre + '{' + m.body + '}' + m.post, [''], max, maxLength, dropEmpties, [] ) } if (firstGroup) { dropEmpties = isTop && !isSequence firstGroup = false } var values; if (isSequence) { values = expandSequence(m.body, isAlphaSequence, max, maxLength); } else { var n = parseCommaParts(m.body); if (n.length === 1 && n[0] !== undefined) { // x{{a,b}}y ==> x{a}y x{b}y n = expand(n[0], max, maxLength, false).map(embrace); //XXX is this necessary? Can't seem to hit it in tests. /* c8 ignore start */ if (n.length === 1) { nextBase = [] acc = combine( acc, accBase, pre + n[0], [''], max, maxLength, dropEmpties && !m.post.length, nextBase ) accBase = nextBase if (!m.post.length) break str = m.post continue } /* c8 ignore stop */ } // Values that `combine` is going to drop as empty produce no result, so // they must not count against `max` - otherwise `{a,,b}` with `max: 2` // would stop at `['a', '']` and yield one result instead of two. Skipping // them outright keeps `values` bounded while leaving `max` a bound on // *kept* results. A value is dropped when it adds nothing past the // baseline, which is what `combine` tests. var dropsEmpties = dropEmpties && !m.post.length && !pre for (var d = 0; dropsEmpties && d < acc.length; d++) { if (acc[d].length !== accBase[d]) { dropsEmpties = false } } values = [] var valuesLength = 0 outer: for (var j = 0; j < n.length; j++) { var expanded = expand(n[j], max, maxLength, false) for (var k = 0; k < expanded.length; k++) { var v = expanded[k] if (dropsEmpties && !v) continue if (values.length >= max || valuesLength + v.length > maxLength) { break outer } values.push(v) valuesLength += v.length } } } nextBase = [] acc = combine( acc, accBase, pre, values, max, maxLength, dropEmpties && !m.post.length, nextBase ) accBase = nextBase if (!m.post.length) break str = m.post } return acc } /***/ }), /***/ 97087: /***/ ((module) => { module.exports = function (xs, fn) { var res = []; for (var i = 0; i < xs.length; i++) { var x = fn(xs[i], i); if (isArray(x)) res.push.apply(res, x); else res.push(x); } return res; }; var isArray = Array.isArray || function (xs) { return Object.prototype.toString.call(xs) === '[object Array]'; }; /***/ }), /***/ 6110: /***/ ((module, exports, __nccwpck_require__) => { /* eslint-env browser */ /** * This is the web browser implementation of `debug()`. */ exports.formatArgs = formatArgs; exports.save = save; exports.load = load; exports.useColors = useColors; exports.storage = localstorage(); exports.destroy = (() => { let warned = false; return () => { if (!warned) { warned = true; console.warn('Instance method `debug.destroy()` is deprecated and no longer does anything. It will be removed in the next major version of `debug`.'); } }; })(); /** * Colors. */ exports.colors = [ '#0000CC', '#0000FF', '#0033CC', '#0033FF', '#0066CC', '#0066FF', '#0099CC', '#0099FF', '#00CC00', '#00CC33', '#00CC66', '#00CC99', '#00CCCC', '#00CCFF', '#3300CC', '#3300FF', '#3333CC', '#3333FF', '#3366CC', '#3366FF', '#3399CC', '#3399FF', '#33CC00', '#33CC33', '#33CC66', '#33CC99', '#33CCCC', '#33CCFF', '#6600CC', '#6600FF', '#6633CC', '#6633FF', '#66CC00', '#66CC33', '#9900CC', '#9900FF', '#9933CC', '#9933FF', '#99CC00', '#99CC33', '#CC0000', '#CC0033', '#CC0066', '#CC0099', '#CC00CC', '#CC00FF', '#CC3300', '#CC3333', '#CC3366', '#CC3399', '#CC33CC', '#CC33FF', '#CC6600', '#CC6633', '#CC9900', '#CC9933', '#CCCC00', '#CCCC33', '#FF0000', '#FF0033', '#FF0066', '#FF0099', '#FF00CC', '#FF00FF', '#FF3300', '#FF3333', '#FF3366', '#FF3399', '#FF33CC', '#FF33FF', '#FF6600', '#FF6633', '#FF9900', '#FF9933', '#FFCC00', '#FFCC33' ]; /** * Currently only WebKit-based Web Inspectors, Firefox >= v31, * and the Firebug extension (any Firefox version) are known * to support "%c" CSS customizations. * * TODO: add a `localStorage` variable to explicitly enable/disable colors */ // eslint-disable-next-line complexity function useColors() { // NB: In an Electron preload script, document will be defined but not fully // initialized. Since we know we're in Chrome, we'll just detect this case // explicitly if (typeof window !== 'undefined' && window.process && (window.process.type === 'renderer' || window.process.__nwjs)) { return true; } // Internet Explorer and Edge do not support colors. if (typeof navigator !== 'undefined' && navigator.userAgent && navigator.userAgent.toLowerCase().match(/(edge|trident)\/(\d+)/)) { return false; } let m; // Is webkit? http://stackoverflow.com/a/16459606/376773 // document is undefined in react-native: https://github.com/facebook/react-native/pull/1632 // eslint-disable-next-line no-return-assign return (typeof document !== 'undefined' && document.documentElement && document.documentElement.style && document.documentElement.style.WebkitAppearance) || // Is firebug? http://stackoverflow.com/a/398120/376773 (typeof window !== 'undefined' && window.console && (window.console.firebug || (window.console.exception && window.console.table))) || // Is firefox >= v31? // https://developer.mozilla.org/en-US/docs/Tools/Web_Console#Styling_messages (typeof navigator !== 'undefined' && navigator.userAgent && (m = navigator.userAgent.toLowerCase().match(/firefox\/(\d+)/)) && parseInt(m[1], 10) >= 31) || // Double check webkit in userAgent just in case we are in a worker (typeof navigator !== 'undefined' && navigator.userAgent && navigator.userAgent.toLowerCase().match(/applewebkit\/(\d+)/)); } /** * Colorize log arguments if enabled. * * @api public */ function formatArgs(args) { args[0] = (this.useColors ? '%c' : '') + this.namespace + (this.useColors ? ' %c' : ' ') + args[0] + (this.useColors ? '%c ' : ' ') + '+' + module.exports.humanize(this.diff); if (!this.useColors) { return; } const c = 'color: ' + this.color; args.splice(1, 0, c, 'color: inherit'); // The final "%c" is somewhat tricky, because there could be other // arguments passed either before or after the %c, so we need to // figure out the correct index to insert the CSS into let index = 0; let lastC = 0; args[0].replace(/%[a-zA-Z%]/g, match => { if (match === '%%') { return; } index++; if (match === '%c') { // We only are interested in the *last* %c // (the user may have provided their own) lastC = index; } }); args.splice(lastC, 0, c); } /** * Invokes `console.debug()` when available. * No-op when `console.debug` is not a "function". * If `console.debug` is not available, falls back * to `console.log`. * * @api public */ exports.log = console.debug || console.log || (() => {}); /** * Save `namespaces`. * * @param {String} namespaces * @api private */ function save(namespaces) { try { if (namespaces) { exports.storage.setItem('debug', namespaces); } else { exports.storage.removeItem('debug'); } } catch (error) { // Swallow // XXX (@Qix-) should we be logging these? } } /** * Load `namespaces`. * * @return {String} returns the previously persisted debug modes * @api private */ function load() { let r; try { r = exports.storage.getItem('debug') || exports.storage.getItem('DEBUG') ; } catch (error) { // Swallow // XXX (@Qix-) should we be logging these? } // If debug isn't set in LS, and we're in Electron, try to load $DEBUG if (!r && typeof process !== 'undefined' && 'env' in process) { r = process.env.DEBUG; } return r; } /** * Localstorage attempts to return the localstorage. * * This is necessary because safari throws * when a user disables cookies/localstorage * and you attempt to access it. * * @return {LocalStorage} * @api private */ function localstorage() { try { // TVMLKit (Apple TV JS Runtime) does not have a window object, just localStorage in the global context // The Browser also has localStorage in the global context. return localStorage; } catch (error) { // Swallow // XXX (@Qix-) should we be logging these? } } module.exports = __nccwpck_require__(40897)(exports); const {formatters} = module.exports; /** * Map %j to `JSON.stringify()`, since no Web Inspectors do that by default. */ formatters.j = function (v) { try { return JSON.stringify(v); } catch (error) { return '[UnexpectedJSONParseError]: ' + error.message; } }; /***/ }), /***/ 40897: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { /** * This is the common logic for both the Node.js and web browser * implementations of `debug()`. */ function setup(env) { createDebug.debug = createDebug; createDebug.default = createDebug; createDebug.coerce = coerce; createDebug.disable = disable; createDebug.enable = enable; createDebug.enabled = enabled; createDebug.humanize = __nccwpck_require__(70744); createDebug.destroy = destroy; Object.keys(env).forEach(key => { createDebug[key] = env[key]; }); /** * The currently active debug mode names, and names to skip. */ createDebug.names = []; createDebug.skips = []; /** * Map of special "%n" handling functions, for the debug "format" argument. * * Valid key names are a single, lower or upper-case letter, i.e. "n" and "N". */ createDebug.formatters = {}; /** * Selects a color for a debug namespace * @param {String} namespace The namespace string for the debug instance to be colored * @return {Number|String} An ANSI color code for the given namespace * @api private */ function selectColor(namespace) { let hash = 0; for (let i = 0; i < namespace.length; i++) { hash = ((hash << 5) - hash) + namespace.charCodeAt(i); hash |= 0; // Convert to 32bit integer } return createDebug.colors[Math.abs(hash) % createDebug.colors.length]; } createDebug.selectColor = selectColor; /** * Create a debugger with the given `namespace`. * * @param {String} namespace * @return {Function} * @api public */ function createDebug(namespace) { let prevTime; let enableOverride = null; let namespacesCache; let enabledCache; function debug(...args) { // Disabled? if (!debug.enabled) { return; } const self = debug; // Set `diff` timestamp const curr = Number(new Date()); const ms = curr - (prevTime || curr); self.diff = ms; self.prev = prevTime; self.curr = curr; prevTime = curr; args[0] = createDebug.coerce(args[0]); if (typeof args[0] !== 'string') { // Anything else let's inspect with %O args.unshift('%O'); } // Apply any `formatters` transformations let index = 0; args[0] = args[0].replace(/%([a-zA-Z%])/g, (match, format) => { // If we encounter an escaped % then don't increase the array index if (match === '%%') { return '%'; } index++; const formatter = createDebug.formatters[format]; if (typeof formatter === 'function') { const val = args[index]; match = formatter.call(self, val); // Now we need to remove `args[index]` since it's inlined in the `format` args.splice(index, 1); index--; } return match; }); // Apply env-specific formatting (colors, etc.) createDebug.formatArgs.call(self, args); const logFn = self.log || createDebug.log; logFn.apply(self, args); } debug.namespace = namespace; debug.useColors = createDebug.useColors(); debug.color = createDebug.selectColor(namespace); debug.extend = extend; debug.destroy = createDebug.destroy; // XXX Temporary. Will be removed in the next major release. Object.defineProperty(debug, 'enabled', { enumerable: true, configurable: false, get: () => { if (enableOverride !== null) { return enableOverride; } if (namespacesCache !== createDebug.namespaces) { namespacesCache = createDebug.namespaces; enabledCache = createDebug.enabled(namespace); } return enabledCache; }, set: v => { enableOverride = v; } }); // Env-specific initialization logic for debug instances if (typeof createDebug.init === 'function') { createDebug.init(debug); } return debug; } function extend(namespace, delimiter) { const newDebug = createDebug(this.namespace + (typeof delimiter === 'undefined' ? ':' : delimiter) + namespace); newDebug.log = this.log; return newDebug; } /** * Enables a debug mode by namespaces. This can include modes * separated by a colon and wildcards. * * @param {String} namespaces * @api public */ function enable(namespaces) { createDebug.save(namespaces); createDebug.namespaces = namespaces; createDebug.names = []; createDebug.skips = []; const split = (typeof namespaces === 'string' ? namespaces : '') .trim() .replace(/\s+/g, ',') .split(',') .filter(Boolean); for (const ns of split) { if (ns[0] === '-') { createDebug.skips.push(ns.slice(1)); } else { createDebug.names.push(ns); } } } /** * Checks if the given string matches a namespace template, honoring * asterisks as wildcards. * * @param {String} search * @param {String} template * @return {Boolean} */ function matchesTemplate(search, template) { let searchIndex = 0; let templateIndex = 0; let starIndex = -1; let matchIndex = 0; while (searchIndex < search.length) { if (templateIndex < template.length && (template[templateIndex] === search[searchIndex] || template[templateIndex] === '*')) { // Match character or proceed with wildcard if (template[templateIndex] === '*') { starIndex = templateIndex; matchIndex = searchIndex; templateIndex++; // Skip the '*' } else { searchIndex++; templateIndex++; } } else if (starIndex !== -1) { // eslint-disable-line no-negated-condition // Backtrack to the last '*' and try to match more characters templateIndex = starIndex + 1; matchIndex++; searchIndex = matchIndex; } else { return false; // No match } } // Handle trailing '*' in template while (templateIndex < template.length && template[templateIndex] === '*') { templateIndex++; } return templateIndex === template.length; } /** * Disable debug output. * * @return {String} namespaces * @api public */ function disable() { const namespaces = [ ...createDebug.names, ...createDebug.skips.map(namespace => '-' + namespace) ].join(','); createDebug.enable(''); return namespaces; } /** * Returns true if the given mode name is enabled, false otherwise. * * @param {String} name * @return {Boolean} * @api public */ function enabled(name) { for (const skip of createDebug.skips) { if (matchesTemplate(name, skip)) { return false; } } for (const ns of createDebug.names) { if (matchesTemplate(name, ns)) { return true; } } return false; } /** * Coerce `val`. * * @param {Mixed} val * @return {Mixed} * @api private */ function coerce(val) { if (val instanceof Error) { return val.stack || val.message; } return val; } /** * XXX DO NOT USE. This is a temporary stub function. * XXX It WILL be removed in the next major release. */ function destroy() { console.warn('Instance method `debug.destroy()` is deprecated and no longer does anything. It will be removed in the next major version of `debug`.'); } createDebug.enable(createDebug.load()); return createDebug; } module.exports = setup; /***/ }), /***/ 2830: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { /** * Detect Electron renderer / nwjs process, which is node, but we should * treat as a browser. */ if (typeof process === 'undefined' || process.type === 'renderer' || process.browser === true || process.__nwjs) { module.exports = __nccwpck_require__(6110); } else { module.exports = __nccwpck_require__(95108); } /***/ }), /***/ 95108: /***/ ((module, exports, __nccwpck_require__) => { /** * Module dependencies. */ const tty = __nccwpck_require__(52018); const util = __nccwpck_require__(39023); /** * This is the Node.js implementation of `debug()`. */ exports.init = init; exports.log = log; exports.formatArgs = formatArgs; exports.save = save; exports.load = load; exports.useColors = useColors; exports.destroy = util.deprecate( () => {}, 'Instance method `debug.destroy()` is deprecated and no longer does anything. It will be removed in the next major version of `debug`.' ); /** * Colors. */ exports.colors = [6, 2, 3, 4, 5, 1]; try { // Optional dependency (as in, doesn't need to be installed, NOT like optionalDependencies in package.json) // eslint-disable-next-line import/no-extraneous-dependencies const supportsColor = __nccwpck_require__(21450); if (supportsColor && (supportsColor.stderr || supportsColor).level >= 2) { exports.colors = [ 20, 21, 26, 27, 32, 33, 38, 39, 40, 41, 42, 43, 44, 45, 56, 57, 62, 63, 68, 69, 74, 75, 76, 77, 78, 79, 80, 81, 92, 93, 98, 99, 112, 113, 128, 129, 134, 135, 148, 149, 160, 161, 162, 163, 164, 165, 166, 167, 168, 169, 170, 171, 172, 173, 178, 179, 184, 185, 196, 197, 198, 199, 200, 201, 202, 203, 204, 205, 206, 207, 208, 209, 214, 215, 220, 221 ]; } } catch (error) { // Swallow - we only care if `supports-color` is available; it doesn't have to be. } /** * Build up the default `inspectOpts` object from the environment variables. * * $ DEBUG_COLORS=no DEBUG_DEPTH=10 DEBUG_SHOW_HIDDEN=enabled node script.js */ exports.inspectOpts = Object.keys(process.env).filter(key => { return /^debug_/i.test(key); }).reduce((obj, key) => { // Camel-case const prop = key .substring(6) .toLowerCase() .replace(/_([a-z])/g, (_, k) => { return k.toUpperCase(); }); // Coerce string value into JS value let val = process.env[key]; if (/^(yes|on|true|enabled)$/i.test(val)) { val = true; } else if (/^(no|off|false|disabled)$/i.test(val)) { val = false; } else if (val === 'null') { val = null; } else { val = Number(val); } obj[prop] = val; return obj; }, {}); /** * Is stdout a TTY? Colored output is enabled when `true`. */ function useColors() { return 'colors' in exports.inspectOpts ? Boolean(exports.inspectOpts.colors) : tty.isatty(process.stderr.fd); } /** * Adds ANSI color escape codes if enabled. * * @api public */ function formatArgs(args) { const {namespace: name, useColors} = this; if (useColors) { const c = this.color; const colorCode = '\u001B[3' + (c < 8 ? c : '8;5;' + c); const prefix = ` ${colorCode};1m${name} \u001B[0m`; args[0] = prefix + args[0].split('\n').join('\n' + prefix); args.push(colorCode + 'm+' + module.exports.humanize(this.diff) + '\u001B[0m'); } else { args[0] = getDate() + name + ' ' + args[0]; } } function getDate() { if (exports.inspectOpts.hideDate) { return ''; } return new Date().toISOString() + ' '; } /** * Invokes `util.formatWithOptions()` with the specified arguments and writes to stderr. */ function log(...args) { return process.stderr.write(util.formatWithOptions(exports.inspectOpts, ...args) + '\n'); } /** * Save `namespaces`. * * @param {String} namespaces * @api private */ function save(namespaces) { if (namespaces) { process.env.DEBUG = namespaces; } else { // If you set a process.env field to null or undefined, it gets cast to the // string 'null' or 'undefined'. Just delete instead. delete process.env.DEBUG; } } /** * Load `namespaces`. * * @return {String} returns the previously persisted debug modes * @api private */ function load() { return process.env.DEBUG; } /** * Init logic for `debug` instances. * * Create a new `inspectOpts` object in case `useColors` is set * differently for a particular `debug` instance. */ function init(debug) { debug.inspectOpts = {}; const keys = Object.keys(exports.inspectOpts); for (let i = 0; i < keys.length; i++) { debug.inspectOpts[keys[i]] = exports.inspectOpts[keys[i]]; } } module.exports = __nccwpck_require__(40897)(exports); const {formatters} = module.exports; /** * Map %o to `util.inspect()`, all on a single line. */ formatters.o = function (v) { this.inspectOpts.colors = this.useColors; return util.inspect(v, this.inspectOpts) .split('\n') .map(str => str.trim()) .join(' '); }; /** * Map %O to `util.inspect()`, allowing multiple lines if needed. */ formatters.O = function (v) { this.inspectOpts.colors = this.useColors; return util.inspect(v, this.inspectOpts); }; /***/ }), /***/ 14150: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); class Deprecation extends Error { constructor(message) { super(message); // Maintains proper stack trace (only available on V8) /* istanbul ignore next */ if (Error.captureStackTrace) { Error.captureStackTrace(this, this.constructor); } this.name = 'Deprecation'; } } exports.Deprecation = Deprecation; /***/ }), /***/ 83813: /***/ ((module) => { "use strict"; module.exports = (flag, argv = process.argv) => { const prefix = flag.startsWith('-') ? '' : (flag.length === 1 ? '-' : '--'); const position = argv.indexOf(prefix + flag); const terminatorPosition = argv.indexOf('--'); return position !== -1 && (terminatorPosition === -1 || position < terminatorPosition); }; /***/ }), /***/ 81970: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; var __importDefault = (this && this.__importDefault) || function (mod) { return (mod && mod.__esModule) ? mod : { "default": mod }; }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.HttpProxyAgent = void 0; const net = __importStar(__nccwpck_require__(69278)); const tls = __importStar(__nccwpck_require__(64756)); const debug_1 = __importDefault(__nccwpck_require__(2830)); const events_1 = __nccwpck_require__(24434); const agent_base_1 = __nccwpck_require__(98894); const url_1 = __nccwpck_require__(87016); const debug = (0, debug_1.default)('http-proxy-agent'); /** * The `HttpProxyAgent` implements an HTTP Agent subclass that connects * to the specified "HTTP proxy server" in order to proxy HTTP requests. */ class HttpProxyAgent extends agent_base_1.Agent { constructor(proxy, opts) { super(opts); this.proxy = typeof proxy === 'string' ? new url_1.URL(proxy) : proxy; this.proxyHeaders = opts?.headers ?? {}; debug('Creating new HttpProxyAgent instance: %o', this.proxy.href); // Trim off the brackets from IPv6 addresses const host = (this.proxy.hostname || this.proxy.host).replace(/^\[|\]$/g, ''); const port = this.proxy.port ? parseInt(this.proxy.port, 10) : this.proxy.protocol === 'https:' ? 443 : 80; this.connectOpts = { ...(opts ? omit(opts, 'headers') : null), host, port, }; } addRequest(req, opts) { req._header = null; this.setRequestProps(req, opts); // @ts-expect-error `addRequest()` isn't defined in `@types/node` super.addRequest(req, opts); } setRequestProps(req, opts) { const { proxy } = this; const protocol = opts.secureEndpoint ? 'https:' : 'http:'; const hostname = req.getHeader('host') || 'localhost'; const base = `${protocol}//${hostname}`; const url = new url_1.URL(req.path, base); if (opts.port !== 80) { url.port = String(opts.port); } // Change the `http.ClientRequest` instance's "path" field // to the absolute path of the URL that will be requested. req.path = String(url); // Inject the `Proxy-Authorization` header if necessary. const headers = typeof this.proxyHeaders === 'function' ? this.proxyHeaders() : { ...this.proxyHeaders }; if (proxy.username || proxy.password) { const auth = `${decodeURIComponent(proxy.username)}:${decodeURIComponent(proxy.password)}`; headers['Proxy-Authorization'] = `Basic ${Buffer.from(auth).toString('base64')}`; } if (!headers['Proxy-Connection']) { headers['Proxy-Connection'] = this.keepAlive ? 'Keep-Alive' : 'close'; } for (const name of Object.keys(headers)) { const value = headers[name]; if (value) { req.setHeader(name, value); } } } async connect(req, opts) { req._header = null; if (!req.path.includes('://')) { this.setRequestProps(req, opts); } // At this point, the http ClientRequest's internal `_header` field // might have already been set. If this is the case then we'll need // to re-generate the string since we just changed the `req.path`. let first; let endOfHeaders; debug('Regenerating stored HTTP header string for request'); req._implicitHeader(); if (req.outputData && req.outputData.length > 0) { debug('Patching connection write() output buffer with updated header'); first = req.outputData[0].data; endOfHeaders = first.indexOf('\r\n\r\n') + 4; req.outputData[0].data = req._header + first.substring(endOfHeaders); debug('Output buffer: %o', req.outputData[0].data); } // Create a socket connection to the proxy server. let socket; if (this.proxy.protocol === 'https:') { debug('Creating `tls.Socket`: %o', this.connectOpts); socket = tls.connect(this.connectOpts); } else { debug('Creating `net.Socket`: %o', this.connectOpts); socket = net.connect(this.connectOpts); } // Wait for the socket's `connect` event, so that this `callback()` // function throws instead of the `http` request machinery. This is // important for i.e. `PacProxyAgent` which determines a failed proxy // connection via the `callback()` function throwing. await (0, events_1.once)(socket, 'connect'); return socket; } } HttpProxyAgent.protocols = ['http', 'https']; exports.HttpProxyAgent = HttpProxyAgent; function omit(obj, ...keys) { const ret = {}; let key; for (key in obj) { if (!keys.includes(key)) { ret[key] = obj[key]; } } return ret; } //# sourceMappingURL=index.js.map /***/ }), /***/ 3669: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; var __importDefault = (this && this.__importDefault) || function (mod) { return (mod && mod.__esModule) ? mod : { "default": mod }; }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.HttpsProxyAgent = void 0; const net = __importStar(__nccwpck_require__(69278)); const tls = __importStar(__nccwpck_require__(64756)); const assert_1 = __importDefault(__nccwpck_require__(42613)); const debug_1 = __importDefault(__nccwpck_require__(2830)); const agent_base_1 = __nccwpck_require__(98894); const url_1 = __nccwpck_require__(87016); const parse_proxy_response_1 = __nccwpck_require__(37943); const debug = (0, debug_1.default)('https-proxy-agent'); const setServernameFromNonIpHost = (options) => { if (options.servername === undefined && options.host && !net.isIP(options.host)) { return { ...options, servername: options.host, }; } return options; }; /** * The `HttpsProxyAgent` implements an HTTP Agent subclass that connects to * the specified "HTTP(s) proxy server" in order to proxy HTTPS requests. * * Outgoing HTTP requests are first tunneled through the proxy server using the * `CONNECT` HTTP request method to establish a connection to the proxy server, * and then the proxy server connects to the destination target and issues the * HTTP request from the proxy server. * * `https:` requests have their socket connection upgraded to TLS once * the connection to the proxy server has been established. */ class HttpsProxyAgent extends agent_base_1.Agent { constructor(proxy, opts) { super(opts); this.options = { path: undefined }; this.proxy = typeof proxy === 'string' ? new url_1.URL(proxy) : proxy; this.proxyHeaders = opts?.headers ?? {}; debug('Creating new HttpsProxyAgent instance: %o', this.proxy.href); // Trim off the brackets from IPv6 addresses const host = (this.proxy.hostname || this.proxy.host).replace(/^\[|\]$/g, ''); const port = this.proxy.port ? parseInt(this.proxy.port, 10) : this.proxy.protocol === 'https:' ? 443 : 80; this.connectOpts = { // Attempt to negotiate http/1.1 for proxy servers that support http/2 ALPNProtocols: ['http/1.1'], ...(opts ? omit(opts, 'headers') : null), host, port, }; } /** * Called when the node-core HTTP client library is creating a * new HTTP request. */ async connect(req, opts) { const { proxy } = this; if (!opts.host) { throw new TypeError('No "host" provided'); } // Create a socket connection to the proxy server. let socket; if (proxy.protocol === 'https:') { debug('Creating `tls.Socket`: %o', this.connectOpts); socket = tls.connect(setServernameFromNonIpHost(this.connectOpts)); } else { debug('Creating `net.Socket`: %o', this.connectOpts); socket = net.connect(this.connectOpts); } const headers = typeof this.proxyHeaders === 'function' ? this.proxyHeaders() : { ...this.proxyHeaders }; const host = net.isIPv6(opts.host) ? `[${opts.host}]` : opts.host; let payload = `CONNECT ${host}:${opts.port} HTTP/1.1\r\n`; // Inject the `Proxy-Authorization` header if necessary. if (proxy.username || proxy.password) { const auth = `${decodeURIComponent(proxy.username)}:${decodeURIComponent(proxy.password)}`; headers['Proxy-Authorization'] = `Basic ${Buffer.from(auth).toString('base64')}`; } headers.Host = `${host}:${opts.port}`; if (!headers['Proxy-Connection']) { headers['Proxy-Connection'] = this.keepAlive ? 'Keep-Alive' : 'close'; } for (const name of Object.keys(headers)) { payload += `${name}: ${headers[name]}\r\n`; } const proxyResponsePromise = (0, parse_proxy_response_1.parseProxyResponse)(socket); socket.write(`${payload}\r\n`); const { connect, buffered } = await proxyResponsePromise; req.emit('proxyConnect', connect); this.emit('proxyConnect', connect, req); if (connect.statusCode === 200) { req.once('socket', resume); if (opts.secureEndpoint) { // The proxy is connecting to a TLS server, so upgrade // this socket connection to a TLS connection. debug('Upgrading socket connection to TLS'); return tls.connect({ ...omit(setServernameFromNonIpHost(opts), 'host', 'path', 'port'), socket, }); } return socket; } // Some other status code that's not 200... need to re-play the HTTP // header "data" events onto the socket once the HTTP machinery is // attached so that the node core `http` can parse and handle the // error status code. // Close the original socket, and a new "fake" socket is returned // instead, so that the proxy doesn't get the HTTP request // written to it (which may contain `Authorization` headers or other // sensitive data). // // See: https://hackerone.com/reports/541502 socket.destroy(); const fakeSocket = new net.Socket({ writable: false }); fakeSocket.readable = true; // Need to wait for the "socket" event to re-play the "data" events. req.once('socket', (s) => { debug('Replaying proxy buffer for failed request'); (0, assert_1.default)(s.listenerCount('data') > 0); // Replay the "buffered" Buffer onto the fake `socket`, since at // this point the HTTP module machinery has been hooked up for // the user. s.push(buffered); s.push(null); }); return fakeSocket; } } HttpsProxyAgent.protocols = ['http', 'https']; exports.HttpsProxyAgent = HttpsProxyAgent; function resume(socket) { socket.resume(); } function omit(obj, ...keys) { const ret = {}; let key; for (key in obj) { if (!keys.includes(key)) { ret[key] = obj[key]; } } return ret; } //# sourceMappingURL=index.js.map /***/ }), /***/ 37943: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { "use strict"; var __importDefault = (this && this.__importDefault) || function (mod) { return (mod && mod.__esModule) ? mod : { "default": mod }; }; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.parseProxyResponse = void 0; const debug_1 = __importDefault(__nccwpck_require__(2830)); const debug = (0, debug_1.default)('https-proxy-agent:parse-proxy-response'); function parseProxyResponse(socket) { return new Promise((resolve, reject) => { // we need to buffer any HTTP traffic that happens with the proxy before we get // the CONNECT response, so that if the response is anything other than an "200" // response code, then we can re-play the "data" events on the socket once the // HTTP parser is hooked up... let buffersLength = 0; const buffers = []; function read() { const b = socket.read(); if (b) ondata(b); else socket.once('readable', read); } function cleanup() { socket.removeListener('end', onend); socket.removeListener('error', onerror); socket.removeListener('readable', read); } function onend() { cleanup(); debug('onend'); reject(new Error('Proxy connection ended before receiving CONNECT response')); } function onerror(err) { cleanup(); debug('onerror %o', err); reject(err); } function ondata(b) { buffers.push(b); buffersLength += b.length; const buffered = Buffer.concat(buffers, buffersLength); const endOfHeaders = buffered.indexOf('\r\n\r\n'); if (endOfHeaders === -1) { // keep buffering debug('have not received end of HTTP headers yet...'); read(); return; } const headerParts = buffered .slice(0, endOfHeaders) .toString('ascii') .split('\r\n'); const firstLine = headerParts.shift(); if (!firstLine) { socket.destroy(); return reject(new Error('No header received from proxy CONNECT response')); } const firstLineParts = firstLine.split(' '); const statusCode = +firstLineParts[1]; const statusText = firstLineParts.slice(2).join(' '); const headers = {}; for (const header of headerParts) { if (!header) continue; const firstColon = header.indexOf(':'); if (firstColon === -1) { socket.destroy(); return reject(new Error(`Invalid header from proxy CONNECT response: "${header}"`)); } const key = header.slice(0, firstColon).toLowerCase(); const value = header.slice(firstColon + 1).trimStart(); const current = headers[key]; if (typeof current === 'string') { headers[key] = [current, value]; } else if (Array.isArray(current)) { current.push(value); } else { headers[key] = value; } } debug('got proxy server response: %o %o', firstLine, headers); cleanup(); resolve({ connect: { statusCode, statusText, headers, }, buffered, }); } socket.on('error', onerror); socket.on('end', onend); read(); }); } exports.parseProxyResponse = parseProxyResponse; //# sourceMappingURL=parse-proxy-response.js.map /***/ }), /***/ 43772: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { module.exports = minimatch minimatch.Minimatch = Minimatch var path = (function () { try { return __nccwpck_require__(16928) } catch (e) {}}()) || { sep: '/' } minimatch.sep = path.sep var GLOBSTAR = minimatch.GLOBSTAR = Minimatch.GLOBSTAR = {} var expand = __nccwpck_require__(94691) var plTypes = { '!': { open: '(?:(?!(?:', close: '))[^/]*?)'}, '?': { open: '(?:', close: ')?' }, '+': { open: '(?:', close: ')+' }, '*': { open: '(?:', close: ')*' }, '@': { open: '(?:', close: ')' } } // any single thing other than / // don't need to escape / when using new RegExp() var qmark = '[^/]' // * => any number of characters var star = qmark + '*?' // ** when dots are allowed. Anything goes, except .. and . // not (^ or / followed by one or two dots followed by $ or /), // followed by anything, any number of times. var twoStarDot = '(?:(?!(?:\\\/|^)(?:\\.{1,2})($|\\\/)).)*?' // not a ^ or / followed by a dot, // followed by anything, any number of times. var twoStarNoDot = '(?:(?!(?:\\\/|^)\\.).)*?' // characters that need to be escaped in RegExp. var reSpecials = charSet('().*{}+?[]^$\\!') // "abc" -> { a:true, b:true, c:true } function charSet (s) { return s.split('').reduce(function (set, c) { set[c] = true return set }, {}) } // normalizes slashes. var slashSplit = /\/+/ minimatch.filter = filter function filter (pattern, options) { options = options || {} return function (p, i, list) { return minimatch(p, pattern, options) } } function ext (a, b) { b = b || {} var t = {} Object.keys(a).forEach(function (k) { t[k] = a[k] }) Object.keys(b).forEach(function (k) { t[k] = b[k] }) return t } minimatch.defaults = function (def) { if (!def || typeof def !== 'object' || !Object.keys(def).length) { return minimatch } var orig = minimatch var m = function minimatch (p, pattern, options) { return orig(p, pattern, ext(def, options)) } m.Minimatch = function Minimatch (pattern, options) { return new orig.Minimatch(pattern, ext(def, options)) } m.Minimatch.defaults = function defaults (options) { return orig.defaults(ext(def, options)).Minimatch } m.filter = function filter (pattern, options) { return orig.filter(pattern, ext(def, options)) } m.defaults = function defaults (options) { return orig.defaults(ext(def, options)) } m.makeRe = function makeRe (pattern, options) { return orig.makeRe(pattern, ext(def, options)) } m.braceExpand = function braceExpand (pattern, options) { return orig.braceExpand(pattern, ext(def, options)) } m.match = function (list, pattern, options) { return orig.match(list, pattern, ext(def, options)) } return m } Minimatch.defaults = function (def) { return minimatch.defaults(def).Minimatch } function minimatch (p, pattern, options) { assertValidPattern(pattern) if (!options) options = {} // shortcut: comments match nothing. if (!options.nocomment && pattern.charAt(0) === '#') { return false } return new Minimatch(pattern, options).match(p) } function Minimatch (pattern, options) { if (!(this instanceof Minimatch)) { return new Minimatch(pattern, options) } assertValidPattern(pattern) if (!options) options = {} pattern = pattern.trim() // windows support: need to use /, not \ if (!options.allowWindowsEscape && path.sep !== '/') { pattern = pattern.split(path.sep).join('/') } this.options = options this.maxGlobstarRecursion = options.maxGlobstarRecursion !== undefined ? options.maxGlobstarRecursion : 200 this.set = [] this.pattern = pattern this.regexp = null this.negate = false this.comment = false this.empty = false this.partial = !!options.partial // make the set of regexps etc. this.make() } Minimatch.prototype.debug = function () {} Minimatch.prototype.make = make function make () { var pattern = this.pattern var options = this.options // empty patterns and comments match nothing. if (!options.nocomment && pattern.charAt(0) === '#') { this.comment = true return } if (!pattern) { this.empty = true return } // step 1: figure out negation, etc. this.parseNegate() // step 2: expand braces var set = this.globSet = this.braceExpand() if (options.debug) this.debug = function debug() { console.error.apply(console, arguments) } this.debug(this.pattern, set) // step 3: now we have a set, so turn each one into a series of path-portion // matching patterns. // These will be regexps, except in the case of "**", which is // set to the GLOBSTAR object for globstar behavior, // and will not contain any / characters set = this.globParts = set.map(function (s) { return s.split(slashSplit) }) this.debug(this.pattern, set) // glob --> regexps set = set.map(function (s, si, set) { return s.map(this.parse, this) }, this) this.debug(this.pattern, set) // filter out everything that didn't compile properly. set = set.filter(function (s) { return s.indexOf(false) === -1 }) this.debug(this.pattern, set) this.set = set } Minimatch.prototype.parseNegate = parseNegate function parseNegate () { var pattern = this.pattern var negate = false var options = this.options var negateOffset = 0 if (options.nonegate) return for (var i = 0, l = pattern.length ; i < l && pattern.charAt(i) === '!' ; i++) { negate = !negate negateOffset++ } if (negateOffset) this.pattern = pattern.substr(negateOffset) this.negate = negate } // Brace expansion: // a{b,c}d -> abd acd // a{b,}c -> abc ac // a{0..3}d -> a0d a1d a2d a3d // a{b,c{d,e}f}g -> abg acdfg acefg // a{b,c}d{e,f}g -> abdeg acdeg abdeg abdfg // // Invalid sets are not expanded. // a{2..}b -> a{2..}b // a{b}c -> a{b}c minimatch.braceExpand = function (pattern, options) { return braceExpand(pattern, options) } Minimatch.prototype.braceExpand = braceExpand function braceExpand (pattern, options) { if (!options) { if (this instanceof Minimatch) { options = this.options } else { options = {} } } pattern = typeof pattern === 'undefined' ? this.pattern : pattern assertValidPattern(pattern) // Thanks to Yeting Li for // improving this regexp to avoid a ReDOS vulnerability. if (options.nobrace || !/\{(?:(?!\{).)*\}/.test(pattern)) { // shortcut. no need to expand. return [pattern] } return expand(pattern) } var MAX_PATTERN_LENGTH = 1024 * 64 var assertValidPattern = function (pattern) { if (typeof pattern !== 'string') { throw new TypeError('invalid pattern') } if (pattern.length > MAX_PATTERN_LENGTH) { throw new TypeError('pattern is too long') } } // parse a component of the expanded set. // At this point, no pattern may contain "/" in it // so we're going to return a 2d array, where each entry is the full // pattern, split on '/', and then turned into a regular expression. // A regexp is made at the end which joins each array with an // escaped /, and another full one which joins each regexp with |. // // Following the lead of Bash 4.1, note that "**" only has special meaning // when it is the *only* thing in a path portion. Otherwise, any series // of * is equivalent to a single *. Globstar behavior is enabled by // default, and can be disabled by setting options.noglobstar. Minimatch.prototype.parse = parse var SUBPARSE = {} function parse (pattern, isSub) { assertValidPattern(pattern) var options = this.options // shortcuts if (pattern === '**') { if (!options.noglobstar) return GLOBSTAR else pattern = '*' } if (pattern === '') return '' var re = '' var hasMagic = !!options.nocase var escaping = false // ? => one single character var patternListStack = [] var negativeLists = [] var stateChar var inClass = false var reClassStart = -1 var classStart = -1 // . and .. never match anything that doesn't start with ., // even when options.dot is set. var patternStart = pattern.charAt(0) === '.' ? '' // anything // not (start or / followed by . or .. followed by / or end) : options.dot ? '(?!(?:^|\\\/)\\.{1,2}(?:$|\\\/))' : '(?!\\.)' var self = this function clearStateChar () { if (stateChar) { // we had some state-tracking character // that wasn't consumed by this pass. switch (stateChar) { case '*': re += star hasMagic = true break case '?': re += qmark hasMagic = true break default: re += '\\' + stateChar break } self.debug('clearStateChar %j %j', stateChar, re) stateChar = false } } for (var i = 0, len = pattern.length, c ; (i < len) && (c = pattern.charAt(i)) ; i++) { this.debug('%s\t%s %s %j', pattern, i, re, c) // skip over any that are escaped. if (escaping && reSpecials[c]) { re += '\\' + c escaping = false continue } switch (c) { /* istanbul ignore next */ case '/': { // completely not allowed, even escaped. // Should already be path-split by now. return false } case '\\': clearStateChar() escaping = true continue // the various stateChar values // for the "extglob" stuff. case '?': case '*': case '+': case '@': case '!': this.debug('%s\t%s %s %j <-- stateChar', pattern, i, re, c) // all of those are literals inside a class, except that // the glob [!a] means [^a] in regexp if (inClass) { this.debug(' in class') if (c === '!' && i === classStart + 1) c = '^' re += c continue } // coalesce consecutive non-globstar * characters if (c === '*' && stateChar === '*') continue // if we already have a stateChar, then it means // that there was something like ** or +? in there. // Handle the stateChar, then proceed with this one. self.debug('call clearStateChar %j', stateChar) clearStateChar() stateChar = c // if extglob is disabled, then +(asdf|foo) isn't a thing. // just clear the statechar *now*, rather than even diving into // the patternList stuff. if (options.noext) clearStateChar() continue case '(': if (inClass) { re += '(' continue } if (!stateChar) { re += '\\(' continue } patternListStack.push({ type: stateChar, start: i - 1, reStart: re.length, open: plTypes[stateChar].open, close: plTypes[stateChar].close }) // negation is (?:(?!js)[^/]*) re += stateChar === '!' ? '(?:(?!(?:' : '(?:' this.debug('plType %j %j', stateChar, re) stateChar = false continue case ')': if (inClass || !patternListStack.length) { re += '\\)' continue } clearStateChar() hasMagic = true var pl = patternListStack.pop() // negation is (?:(?!js)[^/]*) // The others are (?:) re += pl.close if (pl.type === '!') { negativeLists.push(pl) } pl.reEnd = re.length continue case '|': if (inClass || !patternListStack.length || escaping) { re += '\\|' escaping = false continue } clearStateChar() re += '|' continue // these are mostly the same in regexp and glob case '[': // swallow any state-tracking char before the [ clearStateChar() if (inClass) { re += '\\' + c continue } inClass = true classStart = i reClassStart = re.length re += c continue case ']': // a right bracket shall lose its special // meaning and represent itself in // a bracket expression if it occurs // first in the list. -- POSIX.2 2.8.3.2 if (i === classStart + 1 || !inClass) { re += '\\' + c escaping = false continue } // handle the case where we left a class open. // "[z-a]" is valid, equivalent to "\[z-a\]" // split where the last [ was, make sure we don't have // an invalid re. if so, re-walk the contents of the // would-be class to re-translate any characters that // were passed through as-is // TODO: It would probably be faster to determine this // without a try/catch and a new RegExp, but it's tricky // to do safely. For now, this is safe and works. var cs = pattern.substring(classStart + 1, i) try { RegExp('[' + cs + ']') } catch (er) { // not a valid class! var sp = this.parse(cs, SUBPARSE) re = re.substr(0, reClassStart) + '\\[' + sp[0] + '\\]' hasMagic = hasMagic || sp[1] inClass = false continue } // finish up the class. hasMagic = true inClass = false re += c continue default: // swallow any state char that wasn't consumed clearStateChar() if (escaping) { // no need escaping = false } else if (reSpecials[c] && !(c === '^' && inClass)) { re += '\\' } re += c } // switch } // for // handle the case where we left a class open. // "[abc" is valid, equivalent to "\[abc" if (inClass) { // split where the last [ was, and escape it // this is a huge pita. We now have to re-walk // the contents of the would-be class to re-translate // any characters that were passed through as-is cs = pattern.substr(classStart + 1) sp = this.parse(cs, SUBPARSE) re = re.substr(0, reClassStart) + '\\[' + sp[0] hasMagic = hasMagic || sp[1] } // handle the case where we had a +( thing at the *end* // of the pattern. // each pattern list stack adds 3 chars, and we need to go through // and escape any | chars that were passed through as-is for the regexp. // Go through and escape them, taking care not to double-escape any // | chars that were already escaped. for (pl = patternListStack.pop(); pl; pl = patternListStack.pop()) { var tail = re.slice(pl.reStart + pl.open.length) this.debug('setting tail', re, pl) // maybe some even number of \, then maybe 1 \, followed by a | tail = tail.replace(/((?:\\{2}){0,64})(\\?)\|/g, function (_, $1, $2) { if (!$2) { // the | isn't already escaped, so escape it. $2 = '\\' } // need to escape all those slashes *again*, without escaping the // one that we need for escaping the | character. As it works out, // escaping an even number of slashes can be done by simply repeating // it exactly after itself. That's why this trick works. // // I am sorry that you have to see this. return $1 + $1 + $2 + '|' }) this.debug('tail=%j\n %s', tail, tail, pl, re) var t = pl.type === '*' ? star : pl.type === '?' ? qmark : '\\' + pl.type hasMagic = true re = re.slice(0, pl.reStart) + t + '\\(' + tail } // handle trailing things that only matter at the very end. clearStateChar() if (escaping) { // trailing \\ re += '\\\\' } // only need to apply the nodot start if the re starts with // something that could conceivably capture a dot var addPatternStart = false switch (re.charAt(0)) { case '[': case '.': case '(': addPatternStart = true } // Hack to work around lack of negative lookbehind in JS // A pattern like: *.!(x).!(y|z) needs to ensure that a name // like 'a.xyz.yz' doesn't match. So, the first negative // lookahead, has to look ALL the way ahead, to the end of // the pattern. for (var n = negativeLists.length - 1; n > -1; n--) { var nl = negativeLists[n] var nlBefore = re.slice(0, nl.reStart) var nlFirst = re.slice(nl.reStart, nl.reEnd - 8) var nlLast = re.slice(nl.reEnd - 8, nl.reEnd) var nlAfter = re.slice(nl.reEnd) nlLast += nlAfter // Handle nested stuff like *(*.js|!(*.json)), where open parens // mean that we should *not* include the ) in the bit that is considered // "after" the negated section. var openParensBefore = nlBefore.split('(').length - 1 var cleanAfter = nlAfter for (i = 0; i < openParensBefore; i++) { cleanAfter = cleanAfter.replace(/\)[+*?]?/, '') } nlAfter = cleanAfter var dollar = '' if (nlAfter === '' && isSub !== SUBPARSE) { dollar = '$' } var newRe = nlBefore + nlFirst + nlAfter + dollar + nlLast re = newRe } // if the re is not "" at this point, then we need to make sure // it doesn't match against an empty path part. // Otherwise a/* will match a/, which it should not. if (re !== '' && hasMagic) { re = '(?=.)' + re } if (addPatternStart) { re = patternStart + re } // parsing just a piece of a larger pattern. if (isSub === SUBPARSE) { return [re, hasMagic] } // skip the regexp for non-magical patterns // unescape anything in it, though, so that it'll be // an exact match against a file etc. if (!hasMagic) { return globUnescape(pattern) } var flags = options.nocase ? 'i' : '' try { var regExp = new RegExp('^' + re + '$', flags) } catch (er) /* istanbul ignore next - should be impossible */ { // If it was an invalid regular expression, then it can't match // anything. This trick looks for a character after the end of // the string, which is of course impossible, except in multi-line // mode, but it's not a /m regex. return new RegExp('$.') } regExp._glob = pattern regExp._src = re return regExp } minimatch.makeRe = function (pattern, options) { return new Minimatch(pattern, options || {}).makeRe() } Minimatch.prototype.makeRe = makeRe function makeRe () { if (this.regexp || this.regexp === false) return this.regexp // at this point, this.set is a 2d array of partial // pattern strings, or "**". // // It's better to use .match(). This function shouldn't // be used, really, but it's pretty convenient sometimes, // when you just want to work with a regex. var set = this.set if (!set.length) { this.regexp = false return this.regexp } var options = this.options var twoStar = options.noglobstar ? star : options.dot ? twoStarDot : twoStarNoDot var flags = options.nocase ? 'i' : '' var re = set.map(function (pattern) { return pattern.map(function (p) { return (p === GLOBSTAR) ? twoStar : (typeof p === 'string') ? regExpEscape(p) : p._src }).join('\\\/') }).join('|') // must match entire pattern // ending in a * or ** will make it less strict. re = '^(?:' + re + ')$' // can match anything, as long as it's not this. if (this.negate) re = '^(?!' + re + ').*$' try { this.regexp = new RegExp(re, flags) } catch (ex) /* istanbul ignore next - should be impossible */ { this.regexp = false } return this.regexp } minimatch.match = function (list, pattern, options) { options = options || {} var mm = new Minimatch(pattern, options) list = list.filter(function (f) { return mm.match(f) }) if (mm.options.nonull && !list.length) { list.push(pattern) } return list } Minimatch.prototype.match = function match (f, partial) { if (typeof partial === 'undefined') partial = this.partial this.debug('match', f, this.pattern) // short-circuit in the case of busted things. // comments, etc. if (this.comment) return false if (this.empty) return f === '' if (f === '/' && partial) return true var options = this.options // windows: need to use /, not \ if (path.sep !== '/') { f = f.split(path.sep).join('/') } // treat the test path as a set of pathparts. f = f.split(slashSplit) this.debug(this.pattern, 'split', f) // just ONE of the pattern sets in this.set needs to match // in order for it to be valid. If negating, then just one // match means that we have failed. // Either way, return on the first hit. var set = this.set this.debug(this.pattern, 'set', set) // Find the basename of the path by looking for the last non-empty segment var filename var i for (i = f.length - 1; i >= 0; i--) { filename = f[i] if (filename) break } for (i = 0; i < set.length; i++) { var pattern = set[i] var file = f if (options.matchBase && pattern.length === 1) { file = [filename] } var hit = this.matchOne(file, pattern, partial) if (hit) { if (options.flipNegate) return true return !this.negate } } // didn't get any hits. this is success if it's a negative // pattern, failure otherwise. if (options.flipNegate) return false return this.negate } // set partial to true to test if, for example, // "/a/b" matches the start of "/*/b/*/d" // Partial means, if you run out of file before you run // out of pattern, then that's fine, as long as all // the parts match. Minimatch.prototype.matchOne = function (file, pattern, partial) { if (pattern.indexOf(GLOBSTAR) !== -1) { return this._matchGlobstar(file, pattern, partial, 0, 0) } return this._matchOne(file, pattern, partial, 0, 0) } Minimatch.prototype._matchGlobstar = function (file, pattern, partial, fileIndex, patternIndex) { var i // find first globstar from patternIndex var firstgs = -1 for (i = patternIndex; i < pattern.length; i++) { if (pattern[i] === GLOBSTAR) { firstgs = i; break } } // find last globstar var lastgs = -1 for (i = pattern.length - 1; i >= 0; i--) { if (pattern[i] === GLOBSTAR) { lastgs = i; break } } var head = pattern.slice(patternIndex, firstgs) var body = partial ? pattern.slice(firstgs + 1) : pattern.slice(firstgs + 1, lastgs) var tail = partial ? [] : pattern.slice(lastgs + 1) // check the head if (head.length) { var fileHead = file.slice(fileIndex, fileIndex + head.length) if (!this._matchOne(fileHead, head, partial, 0, 0)) { return false } fileIndex += head.length } // check the tail var fileTailMatch = 0 if (tail.length) { if (tail.length + fileIndex > file.length) return false var tailStart = file.length - tail.length if (this._matchOne(file, tail, partial, tailStart, 0)) { fileTailMatch = tail.length } else { // affordance for stuff like a/**/* matching a/b/ if (file[file.length - 1] !== '' || fileIndex + tail.length === file.length) { return false } tailStart-- if (!this._matchOne(file, tail, partial, tailStart, 0)) { return false } fileTailMatch = tail.length + 1 } } // if body is empty (single ** between head and tail) if (!body.length) { var sawSome = !!fileTailMatch for (i = fileIndex; i < file.length - fileTailMatch; i++) { var f = String(file[i]) sawSome = true if (f === '.' || f === '..' || (!this.options.dot && f.charAt(0) === '.')) { return false } } return partial || sawSome } // split body into segments at each GLOBSTAR var bodySegments = [[[], 0]] var currentBody = bodySegments[0] var nonGsParts = 0 var nonGsPartsSums = [0] for (var bi = 0; bi < body.length; bi++) { var b = body[bi] if (b === GLOBSTAR) { nonGsPartsSums.push(nonGsParts) currentBody = [[], 0] bodySegments.push(currentBody) } else { currentBody[0].push(b) nonGsParts++ } } var idx = bodySegments.length - 1 var fileLength = file.length - fileTailMatch for (var si = 0; si < bodySegments.length; si++) { bodySegments[si][1] = fileLength - (nonGsPartsSums[idx--] + bodySegments[si][0].length) } return !!this._matchGlobStarBodySections( file, bodySegments, fileIndex, 0, partial, 0, !!fileTailMatch ) } // return false for "nope, not matching" // return null for "not matching, cannot keep trying" Minimatch.prototype._matchGlobStarBodySections = function ( file, bodySegments, fileIndex, bodyIndex, partial, globStarDepth, sawTail ) { var bs = bodySegments[bodyIndex] if (!bs) { // just make sure there are no bad dots for (var i = fileIndex; i < file.length; i++) { sawTail = true var f = file[i] if (f === '.' || f === '..' || (!this.options.dot && f.charAt(0) === '.')) { return false } } return sawTail } var body = bs[0] var after = bs[1] while (fileIndex <= after) { var m = this._matchOne( file.slice(0, fileIndex + body.length), body, partial, fileIndex, 0 ) // if limit exceeded, no match. intentional false negative, // acceptable break in correctness for security. if (m && globStarDepth < this.maxGlobstarRecursion) { var sub = this._matchGlobStarBodySections( file, bodySegments, fileIndex + body.length, bodyIndex + 1, partial, globStarDepth + 1, sawTail ) if (sub !== false) { return sub } } var f = file[fileIndex] if (f === '.' || f === '..' || (!this.options.dot && f.charAt(0) === '.')) { return false } fileIndex++ } return partial || null } Minimatch.prototype._matchOne = function (file, pattern, partial, fileIndex, patternIndex) { var fi, pi, fl, pl for ( fi = fileIndex, pi = patternIndex, fl = file.length, pl = pattern.length ; (fi < fl) && (pi < pl) ; fi++, pi++ ) { this.debug('matchOne loop') var p = pattern[pi] var f = file[fi] this.debug(pattern, p, f) // should be impossible. // some invalid regexp stuff in the set. /* istanbul ignore if */ if (p === false || p === GLOBSTAR) return false // something other than ** // non-magic patterns just have to match exactly // patterns with magic have been turned into regexps. var hit if (typeof p === 'string') { hit = f === p this.debug('string match', p, f, hit) } else { hit = f.match(p) this.debug('pattern match', p, f, hit) } if (!hit) return false } // now either we fell off the end of the pattern, or we're done. if (fi === fl && pi === pl) { // ran out of pattern and filename at the same time. // an exact hit! return true } else if (fi === fl) { // ran out of file, but still had pattern left. // this is ok if we're doing the match as part of // a glob fs traversal. return partial } else /* istanbul ignore else */ if (pi === pl) { // ran out of pattern, still have file left. // this is only acceptable if we're on the very last // empty segment of a file with a trailing slash. // a/* should match a/b/ return (fi === fl - 1) && (file[fi] === '') } // should be unreachable. /* istanbul ignore next */ throw new Error('wtf?') } // replace stuff like \* with * function globUnescape (s) { return s.replace(/\\(.)/g, '$1') } function regExpEscape (s) { return s.replace(/[-[\]{}()*+?.,\\^$|#\s]/g, '\\$&') } /***/ }), /***/ 70744: /***/ ((module) => { /** * Helpers. */ var s = 1000; var m = s * 60; var h = m * 60; var d = h * 24; var w = d * 7; var y = d * 365.25; /** * Parse or format the given `val`. * * Options: * * - `long` verbose formatting [false] * * @param {String|Number} val * @param {Object} [options] * @throws {Error} throw an error if val is not a non-empty string or a number * @return {String|Number} * @api public */ module.exports = function (val, options) { options = options || {}; var type = typeof val; if (type === 'string' && val.length > 0) { return parse(val); } else if (type === 'number' && isFinite(val)) { return options.long ? fmtLong(val) : fmtShort(val); } throw new Error( 'val is not a non-empty string or a valid number. val=' + JSON.stringify(val) ); }; /** * Parse the given `str` and return milliseconds. * * @param {String} str * @return {Number} * @api private */ function parse(str) { str = String(str); if (str.length > 100) { return; } var match = /^(-?(?:\d+)?\.?\d+) *(milliseconds?|msecs?|ms|seconds?|secs?|s|minutes?|mins?|m|hours?|hrs?|h|days?|d|weeks?|w|years?|yrs?|y)?$/i.exec( str ); if (!match) { return; } var n = parseFloat(match[1]); var type = (match[2] || 'ms').toLowerCase(); switch (type) { case 'years': case 'year': case 'yrs': case 'yr': case 'y': return n * y; case 'weeks': case 'week': case 'w': return n * w; case 'days': case 'day': case 'd': return n * d; case 'hours': case 'hour': case 'hrs': case 'hr': case 'h': return n * h; case 'minutes': case 'minute': case 'mins': case 'min': case 'm': return n * m; case 'seconds': case 'second': case 'secs': case 'sec': case 's': return n * s; case 'milliseconds': case 'millisecond': case 'msecs': case 'msec': case 'ms': return n; default: return undefined; } } /** * Short format for `ms`. * * @param {Number} ms * @return {String} * @api private */ function fmtShort(ms) { var msAbs = Math.abs(ms); if (msAbs >= d) { return Math.round(ms / d) + 'd'; } if (msAbs >= h) { return Math.round(ms / h) + 'h'; } if (msAbs >= m) { return Math.round(ms / m) + 'm'; } if (msAbs >= s) { return Math.round(ms / s) + 's'; } return ms + 'ms'; } /** * Long format for `ms`. * * @param {Number} ms * @return {String} * @api private */ function fmtLong(ms) { var msAbs = Math.abs(ms); if (msAbs >= d) { return plural(ms, msAbs, d, 'day'); } if (msAbs >= h) { return plural(ms, msAbs, h, 'hour'); } if (msAbs >= m) { return plural(ms, msAbs, m, 'minute'); } if (msAbs >= s) { return plural(ms, msAbs, s, 'second'); } return ms + ' ms'; } /** * Pluralization helper. */ function plural(ms, msAbs, n, name) { var isPlural = msAbs >= n * 1.5; return Math.round(ms / n) + ' ' + name + (isPlural ? 's' : ''); } /***/ }), /***/ 55560: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { var wrappy = __nccwpck_require__(58264) module.exports = wrappy(once) module.exports.strict = wrappy(onceStrict) once.proto = once(function () { Object.defineProperty(Function.prototype, 'once', { value: function () { return once(this) }, configurable: true }) Object.defineProperty(Function.prototype, 'onceStrict', { value: function () { return onceStrict(this) }, configurable: true }) }) function once (fn) { var f = function () { if (f.called) return f.value f.called = true return f.value = fn.apply(this, arguments) } f.called = false return f } function onceStrict (fn) { var f = function () { if (f.called) throw new Error(f.onceError) f.called = true return f.value = fn.apply(this, arguments) } var name = fn.name || 'Function wrapped with `once`' f.onceError = name + " shouldn't be called more than once" f.called = false return f } /***/ }), /***/ 39318: /***/ ((module, exports) => { exports = module.exports = SemVer var debug /* istanbul ignore next */ if (typeof process === 'object' && process.env && process.env.NODE_DEBUG && /\bsemver\b/i.test(process.env.NODE_DEBUG)) { debug = function () { var args = Array.prototype.slice.call(arguments, 0) args.unshift('SEMVER') console.log.apply(console, args) } } else { debug = function () {} } // Note: this is the semver.org version of the spec that it implements // Not necessarily the package version of this code. exports.SEMVER_SPEC_VERSION = '2.0.0' var MAX_LENGTH = 256 var MAX_SAFE_INTEGER = Number.MAX_SAFE_INTEGER || /* istanbul ignore next */ 9007199254740991 // Max safe segment length for coercion. var MAX_SAFE_COMPONENT_LENGTH = 16 var MAX_SAFE_BUILD_LENGTH = MAX_LENGTH - 6 // The actual regexps go on exports.re var re = exports.re = [] var safeRe = exports.safeRe = [] var src = exports.src = [] var t = exports.tokens = {} var R = 0 function tok (n) { t[n] = R++ } var LETTERDASHNUMBER = '[a-zA-Z0-9-]' // Replace some greedy regex tokens to prevent regex dos issues. These regex are // used internally via the safeRe object since all inputs in this library get // normalized first to trim and collapse all extra whitespace. The original // regexes are exported for userland consumption and lower level usage. A // future breaking change could export the safer regex only with a note that // all input should have extra whitespace removed. var safeRegexReplacements = [ ['\\s', 1], ['\\d', MAX_LENGTH], [LETTERDASHNUMBER, MAX_SAFE_BUILD_LENGTH], ] function makeSafeRe (value) { for (var i = 0; i < safeRegexReplacements.length; i++) { var token = safeRegexReplacements[i][0] var max = safeRegexReplacements[i][1] value = value .split(token + '*').join(token + '{0,' + max + '}') .split(token + '+').join(token + '{1,' + max + '}') } return value } // The following Regular Expressions can be used for tokenizing, // validating, and parsing SemVer version strings. // ## Numeric Identifier // A single `0`, or a non-zero digit followed by zero or more digits. tok('NUMERICIDENTIFIER') src[t.NUMERICIDENTIFIER] = '0|[1-9]\\d*' tok('NUMERICIDENTIFIERLOOSE') src[t.NUMERICIDENTIFIERLOOSE] = '\\d+' // ## Non-numeric Identifier // Zero or more digits, followed by a letter or hyphen, and then zero or // more letters, digits, or hyphens. tok('NONNUMERICIDENTIFIER') src[t.NONNUMERICIDENTIFIER] = '\\d*[a-zA-Z-]' + LETTERDASHNUMBER + '*' // ## Main Version // Three dot-separated numeric identifiers. tok('MAINVERSION') src[t.MAINVERSION] = '(' + src[t.NUMERICIDENTIFIER] + ')\\.' + '(' + src[t.NUMERICIDENTIFIER] + ')\\.' + '(' + src[t.NUMERICIDENTIFIER] + ')' tok('MAINVERSIONLOOSE') src[t.MAINVERSIONLOOSE] = '(' + src[t.NUMERICIDENTIFIERLOOSE] + ')\\.' + '(' + src[t.NUMERICIDENTIFIERLOOSE] + ')\\.' + '(' + src[t.NUMERICIDENTIFIERLOOSE] + ')' // ## Pre-release Version Identifier // A numeric identifier, or a non-numeric identifier. tok('PRERELEASEIDENTIFIER') src[t.PRERELEASEIDENTIFIER] = '(?:' + src[t.NUMERICIDENTIFIER] + '|' + src[t.NONNUMERICIDENTIFIER] + ')' tok('PRERELEASEIDENTIFIERLOOSE') src[t.PRERELEASEIDENTIFIERLOOSE] = '(?:' + src[t.NUMERICIDENTIFIERLOOSE] + '|' + src[t.NONNUMERICIDENTIFIER] + ')' // ## Pre-release Version // Hyphen, followed by one or more dot-separated pre-release version // identifiers. tok('PRERELEASE') src[t.PRERELEASE] = '(?:-(' + src[t.PRERELEASEIDENTIFIER] + '(?:\\.' + src[t.PRERELEASEIDENTIFIER] + ')*))' tok('PRERELEASELOOSE') src[t.PRERELEASELOOSE] = '(?:-?(' + src[t.PRERELEASEIDENTIFIERLOOSE] + '(?:\\.' + src[t.PRERELEASEIDENTIFIERLOOSE] + ')*))' // ## Build Metadata Identifier // Any combination of digits, letters, or hyphens. tok('BUILDIDENTIFIER') src[t.BUILDIDENTIFIER] = LETTERDASHNUMBER + '+' // ## Build Metadata // Plus sign, followed by one or more period-separated build metadata // identifiers. tok('BUILD') src[t.BUILD] = '(?:\\+(' + src[t.BUILDIDENTIFIER] + '(?:\\.' + src[t.BUILDIDENTIFIER] + ')*))' // ## Full Version String // A main version, followed optionally by a pre-release version and // build metadata. // Note that the only major, minor, patch, and pre-release sections of // the version string are capturing groups. The build metadata is not a // capturing group, because it should not ever be used in version // comparison. tok('FULL') tok('FULLPLAIN') src[t.FULLPLAIN] = 'v?' + src[t.MAINVERSION] + src[t.PRERELEASE] + '?' + src[t.BUILD] + '?' src[t.FULL] = '^' + src[t.FULLPLAIN] + '$' // like full, but allows v1.2.3 and =1.2.3, which people do sometimes. // also, 1.0.0alpha1 (prerelease without the hyphen) which is pretty // common in the npm registry. tok('LOOSEPLAIN') src[t.LOOSEPLAIN] = '[v=\\s]*' + src[t.MAINVERSIONLOOSE] + src[t.PRERELEASELOOSE] + '?' + src[t.BUILD] + '?' tok('LOOSE') src[t.LOOSE] = '^' + src[t.LOOSEPLAIN] + '$' tok('GTLT') src[t.GTLT] = '((?:<|>)?=?)' // Something like "2.*" or "1.2.x". // Note that "x.x" is a valid xRange identifer, meaning "any version" // Only the first item is strictly required. tok('XRANGEIDENTIFIERLOOSE') src[t.XRANGEIDENTIFIERLOOSE] = src[t.NUMERICIDENTIFIERLOOSE] + '|x|X|\\*' tok('XRANGEIDENTIFIER') src[t.XRANGEIDENTIFIER] = src[t.NUMERICIDENTIFIER] + '|x|X|\\*' tok('XRANGEPLAIN') src[t.XRANGEPLAIN] = '[v=\\s]*(' + src[t.XRANGEIDENTIFIER] + ')' + '(?:\\.(' + src[t.XRANGEIDENTIFIER] + ')' + '(?:\\.(' + src[t.XRANGEIDENTIFIER] + ')' + '(?:' + src[t.PRERELEASE] + ')?' + src[t.BUILD] + '?' + ')?)?' tok('XRANGEPLAINLOOSE') src[t.XRANGEPLAINLOOSE] = '[v=\\s]*(' + src[t.XRANGEIDENTIFIERLOOSE] + ')' + '(?:\\.(' + src[t.XRANGEIDENTIFIERLOOSE] + ')' + '(?:\\.(' + src[t.XRANGEIDENTIFIERLOOSE] + ')' + '(?:' + src[t.PRERELEASELOOSE] + ')?' + src[t.BUILD] + '?' + ')?)?' tok('XRANGE') src[t.XRANGE] = '^' + src[t.GTLT] + '\\s*' + src[t.XRANGEPLAIN] + '$' tok('XRANGELOOSE') src[t.XRANGELOOSE] = '^' + src[t.GTLT] + '\\s*' + src[t.XRANGEPLAINLOOSE] + '$' // Coercion. // Extract anything that could conceivably be a part of a valid semver tok('COERCE') src[t.COERCE] = '(^|[^\\d])' + '(\\d{1,' + MAX_SAFE_COMPONENT_LENGTH + '})' + '(?:\\.(\\d{1,' + MAX_SAFE_COMPONENT_LENGTH + '}))?' + '(?:\\.(\\d{1,' + MAX_SAFE_COMPONENT_LENGTH + '}))?' + '(?:$|[^\\d])' tok('COERCERTL') re[t.COERCERTL] = new RegExp(src[t.COERCE], 'g') safeRe[t.COERCERTL] = new RegExp(makeSafeRe(src[t.COERCE]), 'g') // Tilde ranges. // Meaning is "reasonably at or greater than" tok('LONETILDE') src[t.LONETILDE] = '(?:~>?)' tok('TILDETRIM') src[t.TILDETRIM] = '(\\s*)' + src[t.LONETILDE] + '\\s+' re[t.TILDETRIM] = new RegExp(src[t.TILDETRIM], 'g') safeRe[t.TILDETRIM] = new RegExp(makeSafeRe(src[t.TILDETRIM]), 'g') var tildeTrimReplace = '$1~' tok('TILDE') src[t.TILDE] = '^' + src[t.LONETILDE] + src[t.XRANGEPLAIN] + '$' tok('TILDELOOSE') src[t.TILDELOOSE] = '^' + src[t.LONETILDE] + src[t.XRANGEPLAINLOOSE] + '$' // Caret ranges. // Meaning is "at least and backwards compatible with" tok('LONECARET') src[t.LONECARET] = '(?:\\^)' tok('CARETTRIM') src[t.CARETTRIM] = '(\\s*)' + src[t.LONECARET] + '\\s+' re[t.CARETTRIM] = new RegExp(src[t.CARETTRIM], 'g') safeRe[t.CARETTRIM] = new RegExp(makeSafeRe(src[t.CARETTRIM]), 'g') var caretTrimReplace = '$1^' tok('CARET') src[t.CARET] = '^' + src[t.LONECARET] + src[t.XRANGEPLAIN] + '$' tok('CARETLOOSE') src[t.CARETLOOSE] = '^' + src[t.LONECARET] + src[t.XRANGEPLAINLOOSE] + '$' // A simple gt/lt/eq thing, or just "" to indicate "any version" tok('COMPARATORLOOSE') src[t.COMPARATORLOOSE] = '^' + src[t.GTLT] + '\\s*(' + src[t.LOOSEPLAIN] + ')$|^$' tok('COMPARATOR') src[t.COMPARATOR] = '^' + src[t.GTLT] + '\\s*(' + src[t.FULLPLAIN] + ')$|^$' // An expression to strip any whitespace between the gtlt and the thing // it modifies, so that `> 1.2.3` ==> `>1.2.3` tok('COMPARATORTRIM') src[t.COMPARATORTRIM] = '(\\s*)' + src[t.GTLT] + '\\s*(' + src[t.LOOSEPLAIN] + '|' + src[t.XRANGEPLAIN] + ')' // this one has to use the /g flag re[t.COMPARATORTRIM] = new RegExp(src[t.COMPARATORTRIM], 'g') safeRe[t.COMPARATORTRIM] = new RegExp(makeSafeRe(src[t.COMPARATORTRIM]), 'g') var comparatorTrimReplace = '$1$2$3' // Something like `1.2.3 - 1.2.4` // Note that these all use the loose form, because they'll be // checked against either the strict or loose comparator form // later. tok('HYPHENRANGE') src[t.HYPHENRANGE] = '^\\s*(' + src[t.XRANGEPLAIN] + ')' + '\\s+-\\s+' + '(' + src[t.XRANGEPLAIN] + ')' + '\\s*$' tok('HYPHENRANGELOOSE') src[t.HYPHENRANGELOOSE] = '^\\s*(' + src[t.XRANGEPLAINLOOSE] + ')' + '\\s+-\\s+' + '(' + src[t.XRANGEPLAINLOOSE] + ')' + '\\s*$' // Star ranges basically just allow anything at all. tok('STAR') src[t.STAR] = '(<|>)?=?\\s*\\*' // Compile to actual regexp objects. // All are flag-free, unless they were created above with a flag. for (var i = 0; i < R; i++) { debug(i, src[i]) if (!re[i]) { re[i] = new RegExp(src[i]) // Replace all greedy whitespace to prevent regex dos issues. These regex are // used internally via the safeRe object since all inputs in this library get // normalized first to trim and collapse all extra whitespace. The original // regexes are exported for userland consumption and lower level usage. A // future breaking change could export the safer regex only with a note that // all input should have extra whitespace removed. safeRe[i] = new RegExp(makeSafeRe(src[i])) } } exports.parse = parse function parse (version, options) { if (!options || typeof options !== 'object') { options = { loose: !!options, includePrerelease: false } } if (version instanceof SemVer) { return version } if (typeof version !== 'string') { return null } if (version.length > MAX_LENGTH) { return null } var r = options.loose ? safeRe[t.LOOSE] : safeRe[t.FULL] if (!r.test(version)) { return null } try { return new SemVer(version, options) } catch (er) { return null } } exports.valid = valid function valid (version, options) { var v = parse(version, options) return v ? v.version : null } exports.clean = clean function clean (version, options) { var s = parse(version.trim().replace(/^[=v]+/, ''), options) return s ? s.version : null } exports.SemVer = SemVer function SemVer (version, options) { if (!options || typeof options !== 'object') { options = { loose: !!options, includePrerelease: false } } if (version instanceof SemVer) { if (version.loose === options.loose) { return version } else { version = version.version } } else if (typeof version !== 'string') { throw new TypeError('Invalid Version: ' + version) } if (version.length > MAX_LENGTH) { throw new TypeError('version is longer than ' + MAX_LENGTH + ' characters') } if (!(this instanceof SemVer)) { return new SemVer(version, options) } debug('SemVer', version, options) this.options = options this.loose = !!options.loose var m = version.trim().match(options.loose ? safeRe[t.LOOSE] : safeRe[t.FULL]) if (!m) { throw new TypeError('Invalid Version: ' + version) } this.raw = version // these are actually numbers this.major = +m[1] this.minor = +m[2] this.patch = +m[3] if (this.major > MAX_SAFE_INTEGER || this.major < 0) { throw new TypeError('Invalid major version') } if (this.minor > MAX_SAFE_INTEGER || this.minor < 0) { throw new TypeError('Invalid minor version') } if (this.patch > MAX_SAFE_INTEGER || this.patch < 0) { throw new TypeError('Invalid patch version') } // numberify any prerelease numeric ids if (!m[4]) { this.prerelease = [] } else { this.prerelease = m[4].split('.').map(function (id) { if (/^[0-9]+$/.test(id)) { var num = +id if (num >= 0 && num < MAX_SAFE_INTEGER) { return num } } return id }) } this.build = m[5] ? m[5].split('.') : [] this.format() } SemVer.prototype.format = function () { this.version = this.major + '.' + this.minor + '.' + this.patch if (this.prerelease.length) { this.version += '-' + this.prerelease.join('.') } return this.version } SemVer.prototype.toString = function () { return this.version } SemVer.prototype.compare = function (other) { debug('SemVer.compare', this.version, this.options, other) if (!(other instanceof SemVer)) { other = new SemVer(other, this.options) } return this.compareMain(other) || this.comparePre(other) } SemVer.prototype.compareMain = function (other) { if (!(other instanceof SemVer)) { other = new SemVer(other, this.options) } return compareIdentifiers(this.major, other.major) || compareIdentifiers(this.minor, other.minor) || compareIdentifiers(this.patch, other.patch) } SemVer.prototype.comparePre = function (other) { if (!(other instanceof SemVer)) { other = new SemVer(other, this.options) } // NOT having a prerelease is > having one if (this.prerelease.length && !other.prerelease.length) { return -1 } else if (!this.prerelease.length && other.prerelease.length) { return 1 } else if (!this.prerelease.length && !other.prerelease.length) { return 0 } var i = 0 do { var a = this.prerelease[i] var b = other.prerelease[i] debug('prerelease compare', i, a, b) if (a === undefined && b === undefined) { return 0 } else if (b === undefined) { return 1 } else if (a === undefined) { return -1 } else if (a === b) { continue } else { return compareIdentifiers(a, b) } } while (++i) } SemVer.prototype.compareBuild = function (other) { if (!(other instanceof SemVer)) { other = new SemVer(other, this.options) } var i = 0 do { var a = this.build[i] var b = other.build[i] debug('prerelease compare', i, a, b) if (a === undefined && b === undefined) { return 0 } else if (b === undefined) { return 1 } else if (a === undefined) { return -1 } else if (a === b) { continue } else { return compareIdentifiers(a, b) } } while (++i) } // preminor will bump the version up to the next minor release, and immediately // down to pre-release. premajor and prepatch work the same way. SemVer.prototype.inc = function (release, identifier) { switch (release) { case 'premajor': this.prerelease.length = 0 this.patch = 0 this.minor = 0 this.major++ this.inc('pre', identifier) break case 'preminor': this.prerelease.length = 0 this.patch = 0 this.minor++ this.inc('pre', identifier) break case 'prepatch': // If this is already a prerelease, it will bump to the next version // drop any prereleases that might already exist, since they are not // relevant at this point. this.prerelease.length = 0 this.inc('patch', identifier) this.inc('pre', identifier) break // If the input is a non-prerelease version, this acts the same as // prepatch. case 'prerelease': if (this.prerelease.length === 0) { this.inc('patch', identifier) } this.inc('pre', identifier) break case 'major': // If this is a pre-major version, bump up to the same major version. // Otherwise increment major. // 1.0.0-5 bumps to 1.0.0 // 1.1.0 bumps to 2.0.0 if (this.minor !== 0 || this.patch !== 0 || this.prerelease.length === 0) { this.major++ } this.minor = 0 this.patch = 0 this.prerelease = [] break case 'minor': // If this is a pre-minor version, bump up to the same minor version. // Otherwise increment minor. // 1.2.0-5 bumps to 1.2.0 // 1.2.1 bumps to 1.3.0 if (this.patch !== 0 || this.prerelease.length === 0) { this.minor++ } this.patch = 0 this.prerelease = [] break case 'patch': // If this is not a pre-release version, it will increment the patch. // If it is a pre-release it will bump up to the same patch version. // 1.2.0-5 patches to 1.2.0 // 1.2.0 patches to 1.2.1 if (this.prerelease.length === 0) { this.patch++ } this.prerelease = [] break // This probably shouldn't be used publicly. // 1.0.0 "pre" would become 1.0.0-0 which is the wrong direction. case 'pre': if (this.prerelease.length === 0) { this.prerelease = [0] } else { var i = this.prerelease.length while (--i >= 0) { if (typeof this.prerelease[i] === 'number') { this.prerelease[i]++ i = -2 } } if (i === -1) { // didn't increment anything this.prerelease.push(0) } } if (identifier) { // 1.2.0-beta.1 bumps to 1.2.0-beta.2, // 1.2.0-beta.fooblz or 1.2.0-beta bumps to 1.2.0-beta.0 if (this.prerelease[0] === identifier) { if (isNaN(this.prerelease[1])) { this.prerelease = [identifier, 0] } } else { this.prerelease = [identifier, 0] } } break default: throw new Error('invalid increment argument: ' + release) } this.format() this.raw = this.version return this } exports.inc = inc function inc (version, release, loose, identifier) { if (typeof (loose) === 'string') { identifier = loose loose = undefined } try { return new SemVer(version, loose).inc(release, identifier).version } catch (er) { return null } } exports.diff = diff function diff (version1, version2) { if (eq(version1, version2)) { return null } else { var v1 = parse(version1) var v2 = parse(version2) var prefix = '' if (v1.prerelease.length || v2.prerelease.length) { prefix = 'pre' var defaultResult = 'prerelease' } for (var key in v1) { if (key === 'major' || key === 'minor' || key === 'patch') { if (v1[key] !== v2[key]) { return prefix + key } } } return defaultResult // may be undefined } } exports.compareIdentifiers = compareIdentifiers var numeric = /^[0-9]+$/ function compareIdentifiers (a, b) { var anum = numeric.test(a) var bnum = numeric.test(b) if (anum && bnum) { a = +a b = +b } return a === b ? 0 : (anum && !bnum) ? -1 : (bnum && !anum) ? 1 : a < b ? -1 : 1 } exports.rcompareIdentifiers = rcompareIdentifiers function rcompareIdentifiers (a, b) { return compareIdentifiers(b, a) } exports.major = major function major (a, loose) { return new SemVer(a, loose).major } exports.minor = minor function minor (a, loose) { return new SemVer(a, loose).minor } exports.patch = patch function patch (a, loose) { return new SemVer(a, loose).patch } exports.compare = compare function compare (a, b, loose) { return new SemVer(a, loose).compare(new SemVer(b, loose)) } exports.compareLoose = compareLoose function compareLoose (a, b) { return compare(a, b, true) } exports.compareBuild = compareBuild function compareBuild (a, b, loose) { var versionA = new SemVer(a, loose) var versionB = new SemVer(b, loose) return versionA.compare(versionB) || versionA.compareBuild(versionB) } exports.rcompare = rcompare function rcompare (a, b, loose) { return compare(b, a, loose) } exports.sort = sort function sort (list, loose) { return list.sort(function (a, b) { return exports.compareBuild(a, b, loose) }) } exports.rsort = rsort function rsort (list, loose) { return list.sort(function (a, b) { return exports.compareBuild(b, a, loose) }) } exports.gt = gt function gt (a, b, loose) { return compare(a, b, loose) > 0 } exports.lt = lt function lt (a, b, loose) { return compare(a, b, loose) < 0 } exports.eq = eq function eq (a, b, loose) { return compare(a, b, loose) === 0 } exports.neq = neq function neq (a, b, loose) { return compare(a, b, loose) !== 0 } exports.gte = gte function gte (a, b, loose) { return compare(a, b, loose) >= 0 } exports.lte = lte function lte (a, b, loose) { return compare(a, b, loose) <= 0 } exports.cmp = cmp function cmp (a, op, b, loose) { switch (op) { case '===': if (typeof a === 'object') a = a.version if (typeof b === 'object') b = b.version return a === b case '!==': if (typeof a === 'object') a = a.version if (typeof b === 'object') b = b.version return a !== b case '': case '=': case '==': return eq(a, b, loose) case '!=': return neq(a, b, loose) case '>': return gt(a, b, loose) case '>=': return gte(a, b, loose) case '<': return lt(a, b, loose) case '<=': return lte(a, b, loose) default: throw new TypeError('Invalid operator: ' + op) } } exports.Comparator = Comparator function Comparator (comp, options) { if (!options || typeof options !== 'object') { options = { loose: !!options, includePrerelease: false } } if (comp instanceof Comparator) { if (comp.loose === !!options.loose) { return comp } else { comp = comp.value } } if (!(this instanceof Comparator)) { return new Comparator(comp, options) } comp = comp.trim().split(/\s+/).join(' ') debug('comparator', comp, options) this.options = options this.loose = !!options.loose this.parse(comp) if (this.semver === ANY) { this.value = '' } else { this.value = this.operator + this.semver.version } debug('comp', this) } var ANY = {} Comparator.prototype.parse = function (comp) { var r = this.options.loose ? safeRe[t.COMPARATORLOOSE] : safeRe[t.COMPARATOR] var m = comp.match(r) if (!m) { throw new TypeError('Invalid comparator: ' + comp) } this.operator = m[1] !== undefined ? m[1] : '' if (this.operator === '=') { this.operator = '' } // if it literally is just '>' or '' then allow anything. if (!m[2]) { this.semver = ANY } else { this.semver = new SemVer(m[2], this.options.loose) } } Comparator.prototype.toString = function () { return this.value } Comparator.prototype.test = function (version) { debug('Comparator.test', version, this.options.loose) if (this.semver === ANY || version === ANY) { return true } if (typeof version === 'string') { try { version = new SemVer(version, this.options) } catch (er) { return false } } return cmp(version, this.operator, this.semver, this.options) } Comparator.prototype.intersects = function (comp, options) { if (!(comp instanceof Comparator)) { throw new TypeError('a Comparator is required') } if (!options || typeof options !== 'object') { options = { loose: !!options, includePrerelease: false } } var rangeTmp if (this.operator === '') { if (this.value === '') { return true } rangeTmp = new Range(comp.value, options) return satisfies(this.value, rangeTmp, options) } else if (comp.operator === '') { if (comp.value === '') { return true } rangeTmp = new Range(this.value, options) return satisfies(comp.semver, rangeTmp, options) } var sameDirectionIncreasing = (this.operator === '>=' || this.operator === '>') && (comp.operator === '>=' || comp.operator === '>') var sameDirectionDecreasing = (this.operator === '<=' || this.operator === '<') && (comp.operator === '<=' || comp.operator === '<') var sameSemVer = this.semver.version === comp.semver.version var differentDirectionsInclusive = (this.operator === '>=' || this.operator === '<=') && (comp.operator === '>=' || comp.operator === '<=') var oppositeDirectionsLessThan = cmp(this.semver, '<', comp.semver, options) && ((this.operator === '>=' || this.operator === '>') && (comp.operator === '<=' || comp.operator === '<')) var oppositeDirectionsGreaterThan = cmp(this.semver, '>', comp.semver, options) && ((this.operator === '<=' || this.operator === '<') && (comp.operator === '>=' || comp.operator === '>')) return sameDirectionIncreasing || sameDirectionDecreasing || (sameSemVer && differentDirectionsInclusive) || oppositeDirectionsLessThan || oppositeDirectionsGreaterThan } exports.Range = Range function Range (range, options) { if (!options || typeof options !== 'object') { options = { loose: !!options, includePrerelease: false } } if (range instanceof Range) { if (range.loose === !!options.loose && range.includePrerelease === !!options.includePrerelease) { return range } else { return new Range(range.raw, options) } } if (range instanceof Comparator) { return new Range(range.value, options) } if (!(this instanceof Range)) { return new Range(range, options) } this.options = options this.loose = !!options.loose this.includePrerelease = !!options.includePrerelease // First reduce all whitespace as much as possible so we do not have to rely // on potentially slow regexes like \s*. This is then stored and used for // future error messages as well. this.raw = range .trim() .split(/\s+/) .join(' ') // First, split based on boolean or || this.set = this.raw.split('||').map(function (range) { return this.parseRange(range.trim()) }, this).filter(function (c) { // throw out any that are not relevant for whatever reason return c.length }) if (!this.set.length) { throw new TypeError('Invalid SemVer Range: ' + this.raw) } this.format() } Range.prototype.format = function () { this.range = this.set.map(function (comps) { return comps.join(' ').trim() }).join('||').trim() return this.range } Range.prototype.toString = function () { return this.range } Range.prototype.parseRange = function (range) { var loose = this.options.loose // `1.2.3 - 1.2.4` => `>=1.2.3 <=1.2.4` var hr = loose ? safeRe[t.HYPHENRANGELOOSE] : safeRe[t.HYPHENRANGE] range = range.replace(hr, hyphenReplace) debug('hyphen replace', range) // `> 1.2.3 < 1.2.5` => `>1.2.3 <1.2.5` range = range.replace(safeRe[t.COMPARATORTRIM], comparatorTrimReplace) debug('comparator trim', range, safeRe[t.COMPARATORTRIM]) // `~ 1.2.3` => `~1.2.3` range = range.replace(safeRe[t.TILDETRIM], tildeTrimReplace) // `^ 1.2.3` => `^1.2.3` range = range.replace(safeRe[t.CARETTRIM], caretTrimReplace) // normalize spaces range = range.split(/\s+/).join(' ') // At this point, the range is completely trimmed and // ready to be split into comparators. var compRe = loose ? safeRe[t.COMPARATORLOOSE] : safeRe[t.COMPARATOR] var set = range.split(' ').map(function (comp) { return parseComparator(comp, this.options) }, this).join(' ').split(/\s+/) if (this.options.loose) { // in loose mode, throw out any that are not valid comparators set = set.filter(function (comp) { return !!comp.match(compRe) }) } set = set.map(function (comp) { return new Comparator(comp, this.options) }, this) return set } Range.prototype.intersects = function (range, options) { if (!(range instanceof Range)) { throw new TypeError('a Range is required') } return this.set.some(function (thisComparators) { return ( isSatisfiable(thisComparators, options) && range.set.some(function (rangeComparators) { return ( isSatisfiable(rangeComparators, options) && thisComparators.every(function (thisComparator) { return rangeComparators.every(function (rangeComparator) { return thisComparator.intersects(rangeComparator, options) }) }) ) }) ) }) } // take a set of comparators and determine whether there // exists a version which can satisfy it function isSatisfiable (comparators, options) { var result = true var remainingComparators = comparators.slice() var testComparator = remainingComparators.pop() while (result && remainingComparators.length) { result = remainingComparators.every(function (otherComparator) { return testComparator.intersects(otherComparator, options) }) testComparator = remainingComparators.pop() } return result } // Mostly just for testing and legacy API reasons exports.toComparators = toComparators function toComparators (range, options) { return new Range(range, options).set.map(function (comp) { return comp.map(function (c) { return c.value }).join(' ').trim().split(' ') }) } // comprised of xranges, tildes, stars, and gtlt's at this point. // already replaced the hyphen ranges // turn into a set of JUST comparators. function parseComparator (comp, options) { debug('comp', comp, options) comp = replaceCarets(comp, options) debug('caret', comp) comp = replaceTildes(comp, options) debug('tildes', comp) comp = replaceXRanges(comp, options) debug('xrange', comp) comp = replaceStars(comp, options) debug('stars', comp) return comp } function isX (id) { return !id || id.toLowerCase() === 'x' || id === '*' } // ~, ~> --> * (any, kinda silly) // ~2, ~2.x, ~2.x.x, ~>2, ~>2.x ~>2.x.x --> >=2.0.0 <3.0.0 // ~2.0, ~2.0.x, ~>2.0, ~>2.0.x --> >=2.0.0 <2.1.0 // ~1.2, ~1.2.x, ~>1.2, ~>1.2.x --> >=1.2.0 <1.3.0 // ~1.2.3, ~>1.2.3 --> >=1.2.3 <1.3.0 // ~1.2.0, ~>1.2.0 --> >=1.2.0 <1.3.0 function replaceTildes (comp, options) { return comp.trim().split(/\s+/).map(function (comp) { return replaceTilde(comp, options) }).join(' ') } function replaceTilde (comp, options) { var r = options.loose ? safeRe[t.TILDELOOSE] : safeRe[t.TILDE] return comp.replace(r, function (_, M, m, p, pr) { debug('tilde', comp, _, M, m, p, pr) var ret if (isX(M)) { ret = '' } else if (isX(m)) { ret = '>=' + M + '.0.0 <' + (+M + 1) + '.0.0' } else if (isX(p)) { // ~1.2 == >=1.2.0 <1.3.0 ret = '>=' + M + '.' + m + '.0 <' + M + '.' + (+m + 1) + '.0' } else if (pr) { debug('replaceTilde pr', pr) ret = '>=' + M + '.' + m + '.' + p + '-' + pr + ' <' + M + '.' + (+m + 1) + '.0' } else { // ~1.2.3 == >=1.2.3 <1.3.0 ret = '>=' + M + '.' + m + '.' + p + ' <' + M + '.' + (+m + 1) + '.0' } debug('tilde return', ret) return ret }) } // ^ --> * (any, kinda silly) // ^2, ^2.x, ^2.x.x --> >=2.0.0 <3.0.0 // ^2.0, ^2.0.x --> >=2.0.0 <3.0.0 // ^1.2, ^1.2.x --> >=1.2.0 <2.0.0 // ^1.2.3 --> >=1.2.3 <2.0.0 // ^1.2.0 --> >=1.2.0 <2.0.0 function replaceCarets (comp, options) { return comp.trim().split(/\s+/).map(function (comp) { return replaceCaret(comp, options) }).join(' ') } function replaceCaret (comp, options) { debug('caret', comp, options) var r = options.loose ? safeRe[t.CARETLOOSE] : safeRe[t.CARET] return comp.replace(r, function (_, M, m, p, pr) { debug('caret', comp, _, M, m, p, pr) var ret if (isX(M)) { ret = '' } else if (isX(m)) { ret = '>=' + M + '.0.0 <' + (+M + 1) + '.0.0' } else if (isX(p)) { if (M === '0') { ret = '>=' + M + '.' + m + '.0 <' + M + '.' + (+m + 1) + '.0' } else { ret = '>=' + M + '.' + m + '.0 <' + (+M + 1) + '.0.0' } } else if (pr) { debug('replaceCaret pr', pr) if (M === '0') { if (m === '0') { ret = '>=' + M + '.' + m + '.' + p + '-' + pr + ' <' + M + '.' + m + '.' + (+p + 1) } else { ret = '>=' + M + '.' + m + '.' + p + '-' + pr + ' <' + M + '.' + (+m + 1) + '.0' } } else { ret = '>=' + M + '.' + m + '.' + p + '-' + pr + ' <' + (+M + 1) + '.0.0' } } else { debug('no pr') if (M === '0') { if (m === '0') { ret = '>=' + M + '.' + m + '.' + p + ' <' + M + '.' + m + '.' + (+p + 1) } else { ret = '>=' + M + '.' + m + '.' + p + ' <' + M + '.' + (+m + 1) + '.0' } } else { ret = '>=' + M + '.' + m + '.' + p + ' <' + (+M + 1) + '.0.0' } } debug('caret return', ret) return ret }) } function replaceXRanges (comp, options) { debug('replaceXRanges', comp, options) return comp.split(/\s+/).map(function (comp) { return replaceXRange(comp, options) }).join(' ') } function replaceXRange (comp, options) { comp = comp.trim() var r = options.loose ? safeRe[t.XRANGELOOSE] : safeRe[t.XRANGE] return comp.replace(r, function (ret, gtlt, M, m, p, pr) { debug('xRange', comp, ret, gtlt, M, m, p, pr) var xM = isX(M) var xm = xM || isX(m) var xp = xm || isX(p) var anyX = xp if (gtlt === '=' && anyX) { gtlt = '' } // if we're including prereleases in the match, then we need // to fix this to -0, the lowest possible prerelease value pr = options.includePrerelease ? '-0' : '' if (xM) { if (gtlt === '>' || gtlt === '<') { // nothing is allowed ret = '<0.0.0-0' } else { // nothing is forbidden ret = '*' } } else if (gtlt && anyX) { // we know patch is an x, because we have any x at all. // replace X with 0 if (xm) { m = 0 } p = 0 if (gtlt === '>') { // >1 => >=2.0.0 // >1.2 => >=1.3.0 // >1.2.3 => >= 1.2.4 gtlt = '>=' if (xm) { M = +M + 1 m = 0 p = 0 } else { m = +m + 1 p = 0 } } else if (gtlt === '<=') { // <=0.7.x is actually <0.8.0, since any 0.7.x should // pass. Similarly, <=7.x is actually <8.0.0, etc. gtlt = '<' if (xm) { M = +M + 1 } else { m = +m + 1 } } ret = gtlt + M + '.' + m + '.' + p + pr } else if (xm) { ret = '>=' + M + '.0.0' + pr + ' <' + (+M + 1) + '.0.0' + pr } else if (xp) { ret = '>=' + M + '.' + m + '.0' + pr + ' <' + M + '.' + (+m + 1) + '.0' + pr } debug('xRange return', ret) return ret }) } // Because * is AND-ed with everything else in the comparator, // and '' means "any version", just remove the *s entirely. function replaceStars (comp, options) { debug('replaceStars', comp, options) // Looseness is ignored here. star is always as loose as it gets! return comp.trim().replace(safeRe[t.STAR], '') } // This function is passed to string.replace(re[t.HYPHENRANGE]) // M, m, patch, prerelease, build // 1.2 - 3.4.5 => >=1.2.0 <=3.4.5 // 1.2.3 - 3.4 => >=1.2.0 <3.5.0 Any 3.4.x will do // 1.2 - 3.4 => >=1.2.0 <3.5.0 function hyphenReplace ($0, from, fM, fm, fp, fpr, fb, to, tM, tm, tp, tpr, tb) { if (isX(fM)) { from = '' } else if (isX(fm)) { from = '>=' + fM + '.0.0' } else if (isX(fp)) { from = '>=' + fM + '.' + fm + '.0' } else { from = '>=' + from } if (isX(tM)) { to = '' } else if (isX(tm)) { to = '<' + (+tM + 1) + '.0.0' } else if (isX(tp)) { to = '<' + tM + '.' + (+tm + 1) + '.0' } else if (tpr) { to = '<=' + tM + '.' + tm + '.' + tp + '-' + tpr } else { to = '<=' + to } return (from + ' ' + to).trim() } // if ANY of the sets match ALL of its comparators, then pass Range.prototype.test = function (version) { if (!version) { return false } if (typeof version === 'string') { try { version = new SemVer(version, this.options) } catch (er) { return false } } for (var i = 0; i < this.set.length; i++) { if (testSet(this.set[i], version, this.options)) { return true } } return false } function testSet (set, version, options) { for (var i = 0; i < set.length; i++) { if (!set[i].test(version)) { return false } } if (version.prerelease.length && !options.includePrerelease) { // Find the set of versions that are allowed to have prereleases // For example, ^1.2.3-pr.1 desugars to >=1.2.3-pr.1 <2.0.0 // That should allow `1.2.3-pr.2` to pass. // However, `1.2.4-alpha.notready` should NOT be allowed, // even though it's within the range set by the comparators. for (i = 0; i < set.length; i++) { debug(set[i].semver) if (set[i].semver === ANY) { continue } if (set[i].semver.prerelease.length > 0) { var allowed = set[i].semver if (allowed.major === version.major && allowed.minor === version.minor && allowed.patch === version.patch) { return true } } } // Version has a -pre, but it's not one of the ones we like. return false } return true } exports.satisfies = satisfies function satisfies (version, range, options) { try { range = new Range(range, options) } catch (er) { return false } return range.test(version) } exports.maxSatisfying = maxSatisfying function maxSatisfying (versions, range, options) { var max = null var maxSV = null try { var rangeObj = new Range(range, options) } catch (er) { return null } versions.forEach(function (v) { if (rangeObj.test(v)) { // satisfies(v, range, options) if (!max || maxSV.compare(v) === -1) { // compare(max, v, true) max = v maxSV = new SemVer(max, options) } } }) return max } exports.minSatisfying = minSatisfying function minSatisfying (versions, range, options) { var min = null var minSV = null try { var rangeObj = new Range(range, options) } catch (er) { return null } versions.forEach(function (v) { if (rangeObj.test(v)) { // satisfies(v, range, options) if (!min || minSV.compare(v) === 1) { // compare(min, v, true) min = v minSV = new SemVer(min, options) } } }) return min } exports.minVersion = minVersion function minVersion (range, loose) { range = new Range(range, loose) var minver = new SemVer('0.0.0') if (range.test(minver)) { return minver } minver = new SemVer('0.0.0-0') if (range.test(minver)) { return minver } minver = null for (var i = 0; i < range.set.length; ++i) { var comparators = range.set[i] comparators.forEach(function (comparator) { // Clone to avoid manipulating the comparator's semver object. var compver = new SemVer(comparator.semver.version) switch (comparator.operator) { case '>': if (compver.prerelease.length === 0) { compver.patch++ } else { compver.prerelease.push(0) } compver.raw = compver.format() /* fallthrough */ case '': case '>=': if (!minver || gt(minver, compver)) { minver = compver } break case '<': case '<=': /* Ignore maximum versions */ break /* istanbul ignore next */ default: throw new Error('Unexpected operation: ' + comparator.operator) } }) } if (minver && range.test(minver)) { return minver } return null } exports.validRange = validRange function validRange (range, options) { try { // Return '*' instead of '' so that truthiness works. // This will throw if it's invalid anyway return new Range(range, options).range || '*' } catch (er) { return null } } // Determine if version is less than all the versions possible in the range exports.ltr = ltr function ltr (version, range, options) { return outside(version, range, '<', options) } // Determine if version is greater than all the versions possible in the range. exports.gtr = gtr function gtr (version, range, options) { return outside(version, range, '>', options) } exports.outside = outside function outside (version, range, hilo, options) { version = new SemVer(version, options) range = new Range(range, options) var gtfn, ltefn, ltfn, comp, ecomp switch (hilo) { case '>': gtfn = gt ltefn = lte ltfn = lt comp = '>' ecomp = '>=' break case '<': gtfn = lt ltefn = gte ltfn = gt comp = '<' ecomp = '<=' break default: throw new TypeError('Must provide a hilo val of "<" or ">"') } // If it satisifes the range it is not outside if (satisfies(version, range, options)) { return false } // From now on, variable terms are as if we're in "gtr" mode. // but note that everything is flipped for the "ltr" function. for (var i = 0; i < range.set.length; ++i) { var comparators = range.set[i] var high = null var low = null comparators.forEach(function (comparator) { if (comparator.semver === ANY) { comparator = new Comparator('>=0.0.0') } high = high || comparator low = low || comparator if (gtfn(comparator.semver, high.semver, options)) { high = comparator } else if (ltfn(comparator.semver, low.semver, options)) { low = comparator } }) // If the edge version comparator has a operator then our version // isn't outside it if (high.operator === comp || high.operator === ecomp) { return false } // If the lowest version comparator has an operator and our version // is less than it then it isn't higher than the range if ((!low.operator || low.operator === comp) && ltefn(version, low.semver)) { return false } else if (low.operator === ecomp && ltfn(version, low.semver)) { return false } } return true } exports.prerelease = prerelease function prerelease (version, options) { var parsed = parse(version, options) return (parsed && parsed.prerelease.length) ? parsed.prerelease : null } exports.intersects = intersects function intersects (r1, r2, options) { r1 = new Range(r1, options) r2 = new Range(r2, options) return r1.intersects(r2) } exports.coerce = coerce function coerce (version, options) { if (version instanceof SemVer) { return version } if (typeof version === 'number') { version = String(version) } if (typeof version !== 'string') { return null } options = options || {} var match = null if (!options.rtl) { match = version.match(safeRe[t.COERCE]) } else { // Find the right-most coercible string that does not share // a terminus with a more left-ward coercible string. // Eg, '1.2.3.4' wants to coerce '2.3.4', not '3.4' or '4' // // Walk through the string checking with a /g regexp // Manually set the index so as to pick up overlapping matches. // Stop when we get a match that ends at the string end, since no // coercible string can be more right-ward without the same terminus. var next while ((next = safeRe[t.COERCERTL].exec(version)) && (!match || match.index + match[0].length !== version.length) ) { if (!match || next.index + next[0].length !== match.index + match[0].length) { match = next } safeRe[t.COERCERTL].lastIndex = next.index + next[1].length + next[2].length } // leave it in a clean state safeRe[t.COERCERTL].lastIndex = -1 } if (match === null) { return null } return parse(match[2] + '.' + (match[3] || '0') + '.' + (match[4] || '0'), options) } /***/ }), /***/ 21450: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const os = __nccwpck_require__(70857); const tty = __nccwpck_require__(52018); const hasFlag = __nccwpck_require__(83813); const {env} = process; let forceColor; if (hasFlag('no-color') || hasFlag('no-colors') || hasFlag('color=false') || hasFlag('color=never')) { forceColor = 0; } else if (hasFlag('color') || hasFlag('colors') || hasFlag('color=true') || hasFlag('color=always')) { forceColor = 1; } if ('FORCE_COLOR' in env) { if (env.FORCE_COLOR === 'true') { forceColor = 1; } else if (env.FORCE_COLOR === 'false') { forceColor = 0; } else { forceColor = env.FORCE_COLOR.length === 0 ? 1 : Math.min(parseInt(env.FORCE_COLOR, 10), 3); } } function translateLevel(level) { if (level === 0) { return false; } return { level, hasBasic: true, has256: level >= 2, has16m: level >= 3 }; } function supportsColor(haveStream, streamIsTTY) { if (forceColor === 0) { return 0; } if (hasFlag('color=16m') || hasFlag('color=full') || hasFlag('color=truecolor')) { return 3; } if (hasFlag('color=256')) { return 2; } if (haveStream && !streamIsTTY && forceColor === undefined) { return 0; } const min = forceColor || 0; if (env.TERM === 'dumb') { return min; } if (process.platform === 'win32') { // Windows 10 build 10586 is the first Windows release that supports 256 colors. // Windows 10 build 14931 is the first release that supports 16m/TrueColor. const osRelease = os.release().split('.'); if ( Number(osRelease[0]) >= 10 && Number(osRelease[2]) >= 10586 ) { return Number(osRelease[2]) >= 14931 ? 3 : 2; } return 1; } if ('CI' in env) { if (['TRAVIS', 'CIRCLECI', 'APPVEYOR', 'GITLAB_CI', 'GITHUB_ACTIONS', 'BUILDKITE'].some(sign => sign in env) || env.CI_NAME === 'codeship') { return 1; } return min; } if ('TEAMCITY_VERSION' in env) { return /^(9\.(0*[1-9]\d*)\.|\d{2,}\.)/.test(env.TEAMCITY_VERSION) ? 1 : 0; } if (env.COLORTERM === 'truecolor') { return 3; } if ('TERM_PROGRAM' in env) { const version = parseInt((env.TERM_PROGRAM_VERSION || '').split('.')[0], 10); switch (env.TERM_PROGRAM) { case 'iTerm.app': return version >= 3 ? 3 : 2; case 'Apple_Terminal': return 2; // No default } } if (/-256(color)?$/i.test(env.TERM)) { return 2; } if (/^screen|^xterm|^vt100|^vt220|^rxvt|color|ansi|cygwin|linux/i.test(env.TERM)) { return 1; } if ('COLORTERM' in env) { return 1; } return min; } function getSupportLevel(stream) { const level = supportsColor(stream, stream && stream.isTTY); return translateLevel(level); } module.exports = { supportsColor: getSupportLevel, stdout: translateLevel(supportsColor(true, tty.isatty(1))), stderr: translateLevel(supportsColor(true, tty.isatty(2))) }; /***/ }), /***/ 51288: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { /*! * Tmp * * Copyright (c) 2011-2017 KARASZI Istvan * * MIT Licensed */ /* * Module dependencies. */ const fs = __nccwpck_require__(79896); const os = __nccwpck_require__(70857); const path = __nccwpck_require__(16928); const crypto = __nccwpck_require__(76982); const _c = { fs: fs.constants, os: os.constants }; /* * The working inner variables. */ const // the random characters to choose from RANDOM_CHARS = '0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz', TEMPLATE_PATTERN = /XXXXXX/, DEFAULT_TRIES = 3, CREATE_FLAGS = (_c.O_CREAT || _c.fs.O_CREAT) | (_c.O_EXCL || _c.fs.O_EXCL) | (_c.O_RDWR || _c.fs.O_RDWR), // constants are off on the windows platform and will not match the actual errno codes IS_WIN32 = os.platform() === 'win32', EBADF = _c.EBADF || _c.os.errno.EBADF, ENOENT = _c.ENOENT || _c.os.errno.ENOENT, DIR_MODE = 0o700 /* 448 */, FILE_MODE = 0o600 /* 384 */, EXIT = 'exit', // this will hold the objects need to be removed on exit _removeObjects = [], // API change in fs.rmdirSync leads to error when passing in a second parameter, e.g. the callback FN_RMDIR_SYNC = fs.rmdirSync.bind(fs); let _gracefulCleanup = false; /** * Recursively remove a directory and its contents. * * @param {string} dirPath path of directory to remove * @param {Function} callback * @private */ function rimraf(dirPath, callback) { return fs.rm(dirPath, { recursive: true }, callback); } /** * Recursively remove a directory and its contents, synchronously. * * @param {string} dirPath path of directory to remove * @private */ function FN_RIMRAF_SYNC(dirPath) { return fs.rmSync(dirPath, { recursive: true }); } /** * Gets a temporary file name. * * @param {(Options|tmpNameCallback)} options options or callback * @param {?tmpNameCallback} callback the callback function */ function tmpName(options, callback) { const args = _parseArguments(options, callback), opts = args[0], cb = args[1]; _assertAndSanitizeOptions(opts, function (err, sanitizedOptions) { if (err) return cb(err); let tries = sanitizedOptions.tries; (function _getUniqueName() { try { const name = _generateTmpName(sanitizedOptions); // check whether the path exists then retry if needed fs.stat(name, function (err) { /* istanbul ignore else */ if (!err) { /* istanbul ignore else */ if (tries-- > 0) return _getUniqueName(); return cb(new Error('Could not get a unique tmp filename, max tries reached ' + name)); } cb(null, name); }); } catch (err) { cb(err); } })(); }); } /** * Synchronous version of tmpName. * * @param {Object} options * @returns {string} the generated random name * @throws {Error} if the options are invalid or could not generate a filename */ function tmpNameSync(options) { const args = _parseArguments(options), opts = args[0]; const sanitizedOptions = _assertAndSanitizeOptionsSync(opts); let tries = sanitizedOptions.tries; do { const name = _generateTmpName(sanitizedOptions); try { fs.statSync(name); } catch (e) { return name; } } while (tries-- > 0); throw new Error('Could not get a unique tmp filename, max tries reached'); } /** * Creates and opens a temporary file. * * @param {(Options|null|undefined|fileCallback)} options the config options or the callback function or null or undefined * @param {?fileCallback} callback */ function file(options, callback) { const args = _parseArguments(options, callback), opts = args[0], cb = args[1]; // gets a temporary filename tmpName(opts, function _tmpNameCreated(err, name) { /* istanbul ignore else */ if (err) return cb(err); // create and open the file fs.open(name, CREATE_FLAGS, opts.mode || FILE_MODE, function _fileCreated(err, fd) { /* istanbu ignore else */ if (err) return cb(err); if (opts.discardDescriptor) { return fs.close(fd, function _discardCallback(possibleErr) { // the chance of getting an error on close here is rather low and might occur in the most edgiest cases only return cb(possibleErr, name, undefined, _prepareTmpFileRemoveCallback(name, -1, opts, false)); }); } else { // detachDescriptor passes the descriptor whereas discardDescriptor closes it, either way, we no longer care // about the descriptor const discardOrDetachDescriptor = opts.discardDescriptor || opts.detachDescriptor; cb(null, name, fd, _prepareTmpFileRemoveCallback(name, discardOrDetachDescriptor ? -1 : fd, opts, false)); } }); }); } /** * Synchronous version of file. * * @param {Options} options * @returns {FileSyncObject} object consists of name, fd and removeCallback * @throws {Error} if cannot create a file */ function fileSync(options) { const args = _parseArguments(options), opts = args[0]; const discardOrDetachDescriptor = opts.discardDescriptor || opts.detachDescriptor; const name = tmpNameSync(opts); let fd = fs.openSync(name, CREATE_FLAGS, opts.mode || FILE_MODE); /* istanbul ignore else */ if (opts.discardDescriptor) { fs.closeSync(fd); fd = undefined; } return { name: name, fd: fd, removeCallback: _prepareTmpFileRemoveCallback(name, discardOrDetachDescriptor ? -1 : fd, opts, true) }; } /** * Creates a temporary directory. * * @param {(Options|dirCallback)} options the options or the callback function * @param {?dirCallback} callback */ function dir(options, callback) { const args = _parseArguments(options, callback), opts = args[0], cb = args[1]; // gets a temporary filename tmpName(opts, function _tmpNameCreated(err, name) { /* istanbul ignore else */ if (err) return cb(err); // create the directory fs.mkdir(name, opts.mode || DIR_MODE, function _dirCreated(err) { /* istanbul ignore else */ if (err) return cb(err); cb(null, name, _prepareTmpDirRemoveCallback(name, opts, false)); }); }); } /** * Synchronous version of dir. * * @param {Options} options * @returns {DirSyncObject} object consists of name and removeCallback * @throws {Error} if it cannot create a directory */ function dirSync(options) { const args = _parseArguments(options), opts = args[0]; const name = tmpNameSync(opts); fs.mkdirSync(name, opts.mode || DIR_MODE); return { name: name, removeCallback: _prepareTmpDirRemoveCallback(name, opts, true) }; } /** * Removes files asynchronously. * * @param {Object} fdPath * @param {Function} next * @private */ function _removeFileAsync(fdPath, next) { const _handler = function (err) { if (err && !_isENOENT(err)) { // reraise any unanticipated error return next(err); } next(); }; if (0 <= fdPath[0]) fs.close(fdPath[0], function () { fs.unlink(fdPath[1], _handler); }); else fs.unlink(fdPath[1], _handler); } /** * Removes files synchronously. * * @param {Object} fdPath * @private */ function _removeFileSync(fdPath) { let rethrownException = null; try { if (0 <= fdPath[0]) fs.closeSync(fdPath[0]); } catch (e) { // reraise any unanticipated error if (!_isEBADF(e) && !_isENOENT(e)) throw e; } finally { try { fs.unlinkSync(fdPath[1]); } catch (e) { // reraise any unanticipated error if (!_isENOENT(e)) rethrownException = e; } } if (rethrownException !== null) { throw rethrownException; } } /** * Prepares the callback for removal of the temporary file. * * Returns either a sync callback or a async callback depending on whether * fileSync or file was called, which is expressed by the sync parameter. * * @param {string} name the path of the file * @param {number} fd file descriptor * @param {Object} opts * @param {boolean} sync * @returns {fileCallback | fileCallbackSync} * @private */ function _prepareTmpFileRemoveCallback(name, fd, opts, sync) { const removeCallbackSync = _prepareRemoveCallback(_removeFileSync, [fd, name], sync); const removeCallback = _prepareRemoveCallback(_removeFileAsync, [fd, name], sync, removeCallbackSync); if (!opts.keep) _removeObjects.unshift(removeCallbackSync); return sync ? removeCallbackSync : removeCallback; } /** * Prepares the callback for removal of the temporary directory. * * Returns either a sync callback or a async callback depending on whether * tmpFileSync or tmpFile was called, which is expressed by the sync parameter. * * @param {string} name * @param {Object} opts * @param {boolean} sync * @returns {Function} the callback * @private */ function _prepareTmpDirRemoveCallback(name, opts, sync) { const removeFunction = opts.unsafeCleanup ? rimraf : fs.rmdir.bind(fs); const removeFunctionSync = opts.unsafeCleanup ? FN_RIMRAF_SYNC : FN_RMDIR_SYNC; const removeCallbackSync = _prepareRemoveCallback(removeFunctionSync, name, sync); const removeCallback = _prepareRemoveCallback(removeFunction, name, sync, removeCallbackSync); if (!opts.keep) _removeObjects.unshift(removeCallbackSync); return sync ? removeCallbackSync : removeCallback; } /** * Creates a guarded function wrapping the removeFunction call. * * The cleanup callback is save to be called multiple times. * Subsequent invocations will be ignored. * * @param {Function} removeFunction * @param {string} fileOrDirName * @param {boolean} sync * @param {cleanupCallbackSync?} cleanupCallbackSync * @returns {cleanupCallback | cleanupCallbackSync} * @private */ function _prepareRemoveCallback(removeFunction, fileOrDirName, sync, cleanupCallbackSync) { let called = false; // if sync is true, the next parameter will be ignored return function _cleanupCallback(next) { /* istanbul ignore else */ if (!called) { // remove cleanupCallback from cache const toRemove = cleanupCallbackSync || _cleanupCallback; const index = _removeObjects.indexOf(toRemove); /* istanbul ignore else */ if (index >= 0) _removeObjects.splice(index, 1); called = true; if (sync || removeFunction === FN_RMDIR_SYNC || removeFunction === FN_RIMRAF_SYNC) { return removeFunction(fileOrDirName); } else { return removeFunction(fileOrDirName, next || function () {}); } } }; } /** * The garbage collector. * * @private */ function _garbageCollector() { /* istanbul ignore else */ if (!_gracefulCleanup) return; // the function being called removes itself from _removeObjects, // loop until _removeObjects is empty while (_removeObjects.length) { try { _removeObjects[0](); } catch (e) { // already removed? } } } /** * Random name generator based on crypto. * Adapted from http://blog.tompawlak.org/how-to-generate-random-values-nodejs-javascript * * @param {number} howMany * @returns {string} the generated random name * @private */ function _randomChars(howMany) { let value = [], rnd = null; // make sure that we do not fail because we ran out of entropy try { rnd = crypto.randomBytes(howMany); } catch (e) { rnd = crypto.pseudoRandomBytes(howMany); } for (let i = 0; i < howMany; i++) { value.push(RANDOM_CHARS[rnd[i] % RANDOM_CHARS.length]); } return value.join(''); } /** * Checks whether the `obj` parameter is defined or not. * * @param {Object} obj * @returns {boolean} true if the object is undefined * @private */ function _isUndefined(obj) { return typeof obj === 'undefined'; } /** * Parses the function arguments. * * This function helps to have optional arguments. * * @param {(Options|null|undefined|Function)} options * @param {?Function} callback * @returns {Array} parsed arguments * @private */ function _parseArguments(options, callback) { /* istanbul ignore else */ if (typeof options === 'function') { return [{}, options]; } /* istanbul ignore else */ if (_isUndefined(options)) { return [{}, callback]; } // copy options so we do not leak the changes we make internally const actualOptions = {}; for (const key of Object.getOwnPropertyNames(options)) { actualOptions[key] = options[key]; } return [actualOptions, callback]; } /** * Resolve the specified path name in respect to tmpDir. * * The specified name might include relative path components, e.g. ../ * so we need to resolve in order to be sure that is is located inside tmpDir * * @private */ function _resolvePath(name, tmpDir, cb) { const pathToResolve = path.isAbsolute(name) ? name : path.join(tmpDir, name); fs.stat(pathToResolve, function (err) { if (err) { fs.realpath(path.dirname(pathToResolve), function (err, parentDir) { if (err) return cb(err); cb(null, path.join(parentDir, path.basename(pathToResolve))); }); } else { fs.realpath(pathToResolve, cb); } }); } /** * Resolve the specified path name in respect to tmpDir. * * The specified name might include relative path components, e.g. ../ * so we need to resolve in order to be sure that is is located inside tmpDir * * @private */ function _resolvePathSync(name, tmpDir) { const pathToResolve = path.isAbsolute(name) ? name : path.join(tmpDir, name); try { fs.statSync(pathToResolve); return fs.realpathSync(pathToResolve); } catch (_err) { const parentDir = fs.realpathSync(path.dirname(pathToResolve)); return path.join(parentDir, path.basename(pathToResolve)); } } /** * Generates a new temporary name. * * @param {Object} opts * @returns {string} the new random name according to opts * @private */ function _generateTmpName(opts) { const tmpDir = opts.tmpdir; /* istanbul ignore else */ if (!_isUndefined(opts.name)) { return path.join(tmpDir, opts.dir, opts.name); } /* istanbul ignore else */ if (!_isUndefined(opts.template)) { return path.join(tmpDir, opts.dir, opts.template).replace(TEMPLATE_PATTERN, _randomChars(6)); } // prefix and postfix const name = [ opts.prefix ? opts.prefix : 'tmp', '-', process.pid, '-', _randomChars(12), opts.postfix ? '-' + opts.postfix : '' ].join(''); return path.join(tmpDir, opts.dir, name); } /** * Check the prefix, postfix, and template options. * * Rejects non-string inputs so that a non-string `.includes('..')` cannot evade * the substring check (e.g. an Array whose `.includes('..')` is element-wise, * or a duck-typed object with a custom `.includes`), and so that the value is * not later coerced to a string with traversal sequences via `Array.prototype.join` * or `path.join`. * * @private */ function _assertPath(option, value) { if (typeof value !== 'string') { throw new Error(`${option} option must be a string, got "${typeof value}".`); } if (value.includes("..")) { throw new Error("Relative value not allowed"); } return value; } /** * Asserts and sanitizes the basic options. * * @private */ function _assertOptionsBase(options) { if (!_isUndefined(options.name)) { const name = options.name; // assert that name is not absolute and does not contain a path if (path.isAbsolute(name)) throw new Error(`name option must not contain an absolute path, found "${name}".`); // must not fail on valid . or .. or similar such constructs const basename = path.basename(name); if (basename === '..' || basename === '.' || basename !== name) { throw new Error(`name option must not contain a path, found "${name}".`); } } /* istanbul ignore else */ if (!_isUndefined(options.template)) { if (typeof options.template !== 'string') { throw new Error(`template option must be a string, got "${typeof options.template}".`); } if (!options.template.match(TEMPLATE_PATTERN)) { throw new Error(`Invalid template, found "${options.template}".`); } } /* istanbul ignore else */ if ((!_isUndefined(options.tries) && isNaN(options.tries)) || options.tries < 0) { throw new Error(`Invalid tries, found "${options.tries}".`); } // if a name was specified we will try once options.tries = _isUndefined(options.name) ? options.tries || DEFAULT_TRIES : 1; options.keep = !!options.keep; options.detachDescriptor = !!options.detachDescriptor; options.discardDescriptor = !!options.discardDescriptor; options.unsafeCleanup = !!options.unsafeCleanup; // for completeness' sake only, also keep (multiple) blanks if the user, purportedly sane, requests us to options.prefix = _isUndefined(options.prefix) ? '' : _assertPath('prefix', options.prefix); options.postfix = _isUndefined(options.postfix) ? '' : _assertPath('postfix', options.postfix); options.template = _isUndefined(options.template) ? undefined : _assertPath('template', options.template); } /** * Gets the relative directory to tmpDir. * * @private */ function _getRelativePath(option, name, tmpDir, cb) { if (_isUndefined(name)) return cb(null); _resolvePath(name, tmpDir, function (err, resolvedPath) { if (err) return cb(err); const relativePath = path.relative(tmpDir, resolvedPath); if (relativePath.startsWith('..') || path.isAbsolute(relativePath)) { return cb(new Error(`${option} option must be relative to "${tmpDir}", found "${relativePath}".`)); } cb(null, relativePath); }); } /** * Gets the relative path to tmpDir. * * @private */ function _getRelativePathSync(option, name, tmpDir) { if (_isUndefined(name)) return; const resolvedPath = _resolvePathSync(name, tmpDir); const relativePath = path.relative(tmpDir, resolvedPath); if (relativePath.startsWith('..') || path.isAbsolute(relativePath)) { throw new Error(`${option} option must be relative to "${tmpDir}", found "${relativePath}".`); } return relativePath; } /** * Asserts whether the specified options are valid, also sanitizes options and provides sane defaults for missing * options. * * @private */ function _assertAndSanitizeOptions(options, cb) { _getTmpDir(options, function (err, tmpDir) { if (err) return cb(err); options.tmpdir = tmpDir; try { _assertOptionsBase(options, tmpDir); } catch (err) { return cb(err); } // sanitize dir, also keep (multiple) blanks if the user, purportedly sane, requests us to _getRelativePath('dir', options.dir, tmpDir, function (err, dir) { if (err) return cb(err); options.dir = _isUndefined(dir) ? '' : dir; // sanitize further if template is relative to options.dir _getRelativePath('template', options.template, tmpDir, function (err, template) { if (err) return cb(err); options.template = template; cb(null, options); }); }); }); } /** * Asserts whether the specified options are valid, also sanitizes options and provides sane defaults for missing * options. * * @private */ function _assertAndSanitizeOptionsSync(options) { const tmpDir = (options.tmpdir = _getTmpDirSync(options)); _assertOptionsBase(options, tmpDir); const dir = _getRelativePathSync('dir', options.dir, tmpDir); options.dir = _isUndefined(dir) ? '' : dir; options.template = _getRelativePathSync('template', options.template, tmpDir); return options; } /** * Helper for testing against EBADF to compensate changes made to Node 7.x under Windows. * * @private */ function _isEBADF(error) { return _isExpectedError(error, -EBADF, 'EBADF'); } /** * Helper for testing against ENOENT to compensate changes made to Node 7.x under Windows. * * @private */ function _isENOENT(error) { return _isExpectedError(error, -ENOENT, 'ENOENT'); } /** * Helper to determine whether the expected error code matches the actual code and errno, * which will differ between the supported node versions. * * - Node >= 7.0: * error.code {string} * error.errno {number} any numerical value will be negated * * CAVEAT * * On windows, the errno for EBADF is -4083 but os.constants.errno.EBADF is different and we must assume that ENOENT * is no different here. * * @param {SystemError} error * @param {number} errno * @param {string} code * @private */ function _isExpectedError(error, errno, code) { return IS_WIN32 ? error.code === code : error.code === code && error.errno === errno; } /** * Sets the graceful cleanup. * * If graceful cleanup is set, tmp will remove all controlled temporary objects on process exit, otherwise the * temporary objects will remain in place, waiting to be cleaned up on system restart or otherwise scheduled temporary * object removals. */ function setGracefulCleanup() { _gracefulCleanup = true; } /** * Returns the currently configured tmp dir from os.tmpdir(). * * @private */ function _getTmpDir(options, cb) { return fs.realpath((options && options.tmpdir) || os.tmpdir(), cb); } /** * Returns the currently configured tmp dir from os.tmpdir(). * * @private */ function _getTmpDirSync(options) { return fs.realpathSync((options && options.tmpdir) || os.tmpdir()); } // Install process exit listener process.addListener(EXIT, _garbageCollector); /** * Configuration options. * * @typedef {Object} Options * @property {?boolean} keep the temporary object (file or dir) will not be garbage collected * @property {?number} tries the number of tries before give up the name generation * @property (?int) mode the access mode, defaults are 0o700 for directories and 0o600 for files * @property {?string} template the "mkstemp" like filename template * @property {?string} name fixed name relative to tmpdir or the specified dir option * @property {?string} dir tmp directory relative to the root tmp directory in use * @property {?string} prefix prefix for the generated name * @property {?string} postfix postfix for the generated name * @property {?string} tmpdir the root tmp directory which overrides the os tmpdir * @property {?boolean} unsafeCleanup recursively removes the created temporary directory, even when it's not empty * @property {?boolean} detachDescriptor detaches the file descriptor, caller is responsible for closing the file, tmp will no longer try closing the file during garbage collection * @property {?boolean} discardDescriptor discards the file descriptor (closes file, fd is -1), tmp will no longer try closing the file during garbage collection */ /** * @typedef {Object} FileSyncObject * @property {string} name the name of the file * @property {string} fd the file descriptor or -1 if the fd has been discarded * @property {fileCallback} removeCallback the callback function to remove the file */ /** * @typedef {Object} DirSyncObject * @property {string} name the name of the directory * @property {fileCallback} removeCallback the callback function to remove the directory */ /** * @callback tmpNameCallback * @param {?Error} err the error object if anything goes wrong * @param {string} name the temporary file name */ /** * @callback fileCallback * @param {?Error} err the error object if anything goes wrong * @param {string} name the temporary file name * @param {number} fd the file descriptor or -1 if the fd had been discarded * @param {cleanupCallback} fn the cleanup callback function */ /** * @callback fileCallbackSync * @param {?Error} err the error object if anything goes wrong * @param {string} name the temporary file name * @param {number} fd the file descriptor or -1 if the fd had been discarded * @param {cleanupCallbackSync} fn the cleanup callback function */ /** * @callback dirCallback * @param {?Error} err the error object if anything goes wrong * @param {string} name the temporary file name * @param {cleanupCallback} fn the cleanup callback function */ /** * @callback dirCallbackSync * @param {?Error} err the error object if anything goes wrong * @param {string} name the temporary file name * @param {cleanupCallbackSync} fn the cleanup callback function */ /** * Removes the temporary created file or directory. * * @callback cleanupCallback * @param {simpleCallback} [next] function to call whenever the tmp object needs to be removed */ /** * Removes the temporary created file or directory. * * @callback cleanupCallbackSync */ /** * Callback function for function composition. * @see {@link https://github.com/raszi/node-tmp/issues/57|raszi/node-tmp#57} * * @callback simpleCallback */ // exporting all the needed methods // evaluate _getTmpDir() lazily, mainly for simplifying testing but it also will // allow users to reconfigure the temporary directory Object.defineProperty(module.exports, "tmpdir", ({ enumerable: true, configurable: false, get: function () { return _getTmpDirSync(); } })); module.exports.dir = dir; module.exports.dirSync = dirSync; module.exports.file = file; module.exports.fileSync = fileSync; module.exports.tmpName = tmpName; module.exports.tmpNameSync = tmpNameSync; module.exports.setGracefulCleanup = setGracefulCleanup; /***/ }), /***/ 61860: /***/ ((module) => { /****************************************************************************** Copyright (c) Microsoft Corporation. Permission to use, copy, modify, and/or distribute this software for any purpose with or without fee is hereby granted. THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. ***************************************************************************** */ /* global global, define, Symbol, Reflect, Promise, SuppressedError, Iterator */ var __extends; var __assign; var __rest; var __decorate; var __param; var __esDecorate; var __runInitializers; var __propKey; var __setFunctionName; var __metadata; var __awaiter; var __generator; var __exportStar; var __values; var __read; var __spread; var __spreadArrays; var __spreadArray; var __await; var __asyncGenerator; var __asyncDelegator; var __asyncValues; var __makeTemplateObject; var __importStar; var __importDefault; var __classPrivateFieldGet; var __classPrivateFieldSet; var __classPrivateFieldIn; var __createBinding; var __addDisposableResource; var __disposeResources; var __rewriteRelativeImportExtension; (function (factory) { var root = typeof global === "object" ? global : typeof self === "object" ? self : typeof this === "object" ? this : {}; if (typeof define === "function" && define.amd) { define("tslib", ["exports"], function (exports) { factory(createExporter(root, createExporter(exports))); }); } else if ( true && typeof module.exports === "object") { factory(createExporter(root, createExporter(module.exports))); } else { factory(createExporter(root)); } function createExporter(exports, previous) { if (exports !== root) { if (typeof Object.create === "function") { Object.defineProperty(exports, "__esModule", { value: true }); } else { exports.__esModule = true; } } return function (id, v) { return exports[id] = previous ? previous(id, v) : v; }; } }) (function (exporter) { var extendStatics = Object.setPrototypeOf || ({ __proto__: [] } instanceof Array && function (d, b) { d.__proto__ = b; }) || function (d, b) { for (var p in b) if (Object.prototype.hasOwnProperty.call(b, p)) d[p] = b[p]; }; __extends = function (d, b) { if (typeof b !== "function" && b !== null) throw new TypeError("Class extends value " + String(b) + " is not a constructor or null"); extendStatics(d, b); function __() { this.constructor = d; } d.prototype = b === null ? 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".jsx" : ".js" : d && (!ext || !cm) ? m : (d + ext + "." + cm.toLowerCase() + "js"); }); } return path; }; exporter("__extends", __extends); exporter("__assign", __assign); exporter("__rest", __rest); exporter("__decorate", __decorate); exporter("__param", __param); exporter("__esDecorate", __esDecorate); exporter("__runInitializers", __runInitializers); exporter("__propKey", __propKey); exporter("__setFunctionName", __setFunctionName); exporter("__metadata", __metadata); exporter("__awaiter", __awaiter); exporter("__generator", __generator); exporter("__exportStar", __exportStar); exporter("__createBinding", __createBinding); exporter("__values", __values); exporter("__read", __read); exporter("__spread", __spread); exporter("__spreadArrays", __spreadArrays); exporter("__spreadArray", __spreadArray); exporter("__await", __await); exporter("__asyncGenerator", __asyncGenerator); exporter("__asyncDelegator", __asyncDelegator); exporter("__asyncValues", __asyncValues); exporter("__makeTemplateObject", __makeTemplateObject); exporter("__importStar", __importStar); exporter("__importDefault", __importDefault); exporter("__classPrivateFieldGet", __classPrivateFieldGet); exporter("__classPrivateFieldSet", __classPrivateFieldSet); exporter("__classPrivateFieldIn", __classPrivateFieldIn); exporter("__addDisposableResource", __addDisposableResource); exporter("__disposeResources", __disposeResources); exporter("__rewriteRelativeImportExtension", __rewriteRelativeImportExtension); }); 0 && (0); /***/ }), /***/ 20770: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { module.exports = __nccwpck_require__(20218); /***/ }), /***/ 20218: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; var net = __nccwpck_require__(69278); var tls = __nccwpck_require__(64756); var http = __nccwpck_require__(58611); var https = __nccwpck_require__(65692); var events = __nccwpck_require__(24434); var assert = __nccwpck_require__(42613); var util = __nccwpck_require__(39023); exports.httpOverHttp = httpOverHttp; exports.httpsOverHttp = httpsOverHttp; exports.httpOverHttps = httpOverHttps; exports.httpsOverHttps = httpsOverHttps; function httpOverHttp(options) { var agent = new TunnelingAgent(options); agent.request = http.request; return agent; } function httpsOverHttp(options) { var agent = new TunnelingAgent(options); agent.request = http.request; agent.createSocket = createSecureSocket; agent.defaultPort = 443; return agent; } function httpOverHttps(options) { var agent = new TunnelingAgent(options); agent.request = https.request; return agent; } function httpsOverHttps(options) { var agent = new TunnelingAgent(options); agent.request = https.request; agent.createSocket = createSecureSocket; agent.defaultPort = 443; return agent; } function TunnelingAgent(options) { var self = this; self.options = options || {}; self.proxyOptions = self.options.proxy || {}; self.maxSockets = self.options.maxSockets || http.Agent.defaultMaxSockets; self.requests = []; self.sockets = []; self.on('free', function onFree(socket, host, port, localAddress) { var options = toOptions(host, port, localAddress); for (var i = 0, len = self.requests.length; i < len; ++i) { var pending = self.requests[i]; if (pending.host === options.host && pending.port === options.port) { // Detect the request to connect same origin server, // reuse the connection. self.requests.splice(i, 1); pending.request.onSocket(socket); return; } } socket.destroy(); self.removeSocket(socket); }); } util.inherits(TunnelingAgent, events.EventEmitter); TunnelingAgent.prototype.addRequest = function addRequest(req, host, port, localAddress) { var self = this; var options = mergeOptions({request: req}, self.options, toOptions(host, port, localAddress)); if (self.sockets.length >= this.maxSockets) { // We are over limit so we'll add it to the queue. self.requests.push(options); return; } // If we are under maxSockets create a new one. self.createSocket(options, function(socket) { socket.on('free', onFree); socket.on('close', onCloseOrRemove); socket.on('agentRemove', onCloseOrRemove); req.onSocket(socket); function onFree() { self.emit('free', socket, options); } function onCloseOrRemove(err) { self.removeSocket(socket); socket.removeListener('free', onFree); socket.removeListener('close', onCloseOrRemove); socket.removeListener('agentRemove', onCloseOrRemove); } }); }; TunnelingAgent.prototype.createSocket = function createSocket(options, cb) { var self = this; var placeholder = {}; self.sockets.push(placeholder); var connectOptions = mergeOptions({}, self.proxyOptions, { method: 'CONNECT', path: options.host + ':' + options.port, agent: false, headers: { host: options.host + ':' + options.port } }); if (options.localAddress) { connectOptions.localAddress = options.localAddress; } if (connectOptions.proxyAuth) { connectOptions.headers = connectOptions.headers || {}; connectOptions.headers['Proxy-Authorization'] = 'Basic ' + new Buffer(connectOptions.proxyAuth).toString('base64'); } debug('making CONNECT request'); var connectReq = self.request(connectOptions); connectReq.useChunkedEncodingByDefault = false; // for v0.6 connectReq.once('response', onResponse); // for v0.6 connectReq.once('upgrade', onUpgrade); // for v0.6 connectReq.once('connect', onConnect); // for v0.7 or later connectReq.once('error', onError); connectReq.end(); function onResponse(res) { // Very hacky. This is necessary to avoid http-parser leaks. res.upgrade = true; } function onUpgrade(res, socket, head) { // Hacky. process.nextTick(function() { onConnect(res, socket, head); }); } function onConnect(res, socket, head) { connectReq.removeAllListeners(); socket.removeAllListeners(); if (res.statusCode !== 200) { debug('tunneling socket could not be established, statusCode=%d', res.statusCode); socket.destroy(); var error = new Error('tunneling socket could not be established, ' + 'statusCode=' + res.statusCode); error.code = 'ECONNRESET'; options.request.emit('error', error); self.removeSocket(placeholder); return; } if (head.length > 0) { debug('got illegal response body from proxy'); socket.destroy(); var error = new Error('got illegal response body from proxy'); error.code = 'ECONNRESET'; options.request.emit('error', error); self.removeSocket(placeholder); return; } debug('tunneling connection has established'); self.sockets[self.sockets.indexOf(placeholder)] = socket; return cb(socket); } function onError(cause) { connectReq.removeAllListeners(); debug('tunneling socket could not be established, cause=%s\n', cause.message, cause.stack); var error = new Error('tunneling socket could not be established, ' + 'cause=' + cause.message); error.code = 'ECONNRESET'; options.request.emit('error', error); self.removeSocket(placeholder); } }; TunnelingAgent.prototype.removeSocket = function removeSocket(socket) { var pos = this.sockets.indexOf(socket) if (pos === -1) { return; } this.sockets.splice(pos, 1); var pending = this.requests.shift(); if (pending) { // If we have pending requests and a socket gets closed a new one // needs to be created to take over in the pool for the one that closed. this.createSocket(pending, function(socket) { pending.request.onSocket(socket); }); } }; function createSecureSocket(options, cb) { var self = this; TunnelingAgent.prototype.createSocket.call(self, options, function(socket) { var hostHeader = options.request.getHeader('host'); var tlsOptions = mergeOptions({}, self.options, { socket: socket, servername: hostHeader ? hostHeader.replace(/:.*$/, '') : options.host }); // 0 is dummy port for v0.6 var secureSocket = tls.connect(0, tlsOptions); self.sockets[self.sockets.indexOf(socket)] = secureSocket; cb(secureSocket); }); } function toOptions(host, port, localAddress) { if (typeof host === 'string') { // since v0.10 return { host: host, port: port, localAddress: localAddress }; } return host; // for v0.11 or later } function mergeOptions(target) { for (var i = 1, len = arguments.length; i < len; ++i) { var overrides = arguments[i]; if (typeof overrides === 'object') { var keys = Object.keys(overrides); for (var j = 0, keyLen = keys.length; j < keyLen; ++j) { var k = keys[j]; if (overrides[k] !== undefined) { target[k] = overrides[k]; } } } } return target; } var debug; if (process.env.NODE_DEBUG && /\btunnel\b/.test(process.env.NODE_DEBUG)) { debug = function() { var args = Array.prototype.slice.call(arguments); if (typeof args[0] === 'string') { args[0] = 'TUNNEL: ' + args[0]; } else { args.unshift('TUNNEL:'); } console.error.apply(console, args); } } else { debug = function() {}; } exports.debug = debug; // for test /***/ }), /***/ 46752: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const Client = __nccwpck_require__(23701) const Dispatcher = __nccwpck_require__(30883) const Pool = __nccwpck_require__(30628) const BalancedPool = __nccwpck_require__(837) const RoundRobinPool = __nccwpck_require__(45520) const Agent = __nccwpck_require__(57405) const ProxyAgent = __nccwpck_require__(76672) const Socks5ProxyAgent = __nccwpck_require__(87223) const EnvHttpProxyAgent = __nccwpck_require__(53137) const RetryAgent = __nccwpck_require__(30050) const H2CClient = __nccwpck_require__(36815) const errors = __nccwpck_require__(68707) const util = __nccwpck_require__(3440) const { InvalidArgumentError } = errors const api = __nccwpck_require__(56615) const buildConnector = __nccwpck_require__(59136) const MockClient = __nccwpck_require__(47365) const { MockCallHistory, MockCallHistoryLog } = __nccwpck_require__(30431) const MockAgent = __nccwpck_require__(47501) const MockPool = __nccwpck_require__(94004) const SnapshotAgent = __nccwpck_require__(55095) const mockErrors = __nccwpck_require__(52429) const RetryHandler = __nccwpck_require__(17816) const { getGlobalDispatcher, setGlobalDispatcher } = __nccwpck_require__(32581) const DecoratorHandler = __nccwpck_require__(58155) const RedirectHandler = __nccwpck_require__(8754) Object.assign(Dispatcher.prototype, api) module.exports.Dispatcher = Dispatcher module.exports.Client = Client module.exports.Pool = Pool module.exports.BalancedPool = BalancedPool module.exports.RoundRobinPool = RoundRobinPool module.exports.Agent = Agent module.exports.ProxyAgent = ProxyAgent module.exports.Socks5ProxyAgent = Socks5ProxyAgent module.exports.EnvHttpProxyAgent = EnvHttpProxyAgent module.exports.RetryAgent = RetryAgent module.exports.H2CClient = H2CClient module.exports.RetryHandler = RetryHandler module.exports.DecoratorHandler = DecoratorHandler module.exports.RedirectHandler = RedirectHandler module.exports.interceptors = { redirect: __nccwpck_require__(21514), responseError: __nccwpck_require__(8918), retry: __nccwpck_require__(92026), dump: __nccwpck_require__(88060), dns: __nccwpck_require__(70379), cache: __nccwpck_require__(75542), decompress: __nccwpck_require__(40557), deduplicate: __nccwpck_require__(67240) } module.exports.cacheStores = { MemoryCacheStore: __nccwpck_require__(74889) } const SqliteCacheStore = __nccwpck_require__(71522) module.exports.cacheStores.SqliteCacheStore = SqliteCacheStore module.exports.buildConnector = buildConnector module.exports.errors = errors module.exports.util = { parseHeaders: util.parseHeaders, headerNameToString: util.headerNameToString } function makeDispatcher (fn) { return (url, opts, handler) => { if (typeof opts === 'function') { handler = opts opts = null } if (!url || (typeof url !== 'string' && typeof url !== 'object' && !(url instanceof URL))) { throw new InvalidArgumentError('invalid url') } if (opts != null && typeof opts !== 'object') { throw new InvalidArgumentError('invalid opts') } if (opts && opts.path != null) { if (typeof opts.path !== 'string') { throw new InvalidArgumentError('invalid opts.path') } let path = opts.path if (!opts.path.startsWith('/')) { path = `/${path}` } url = new URL(util.parseOrigin(url).origin + path) } else { if (!opts) { opts = typeof url === 'object' ? url : {} } url = util.parseURL(url) } const { agent, dispatcher = getGlobalDispatcher() } = opts if (agent) { throw new InvalidArgumentError('unsupported opts.agent. Did you mean opts.client?') } return fn.call(dispatcher, { ...opts, origin: url.origin, path: url.search ? `${url.pathname}${url.search}` : url.pathname, method: opts.method || (opts.body ? 'PUT' : 'GET') }, handler) } } module.exports.setGlobalDispatcher = setGlobalDispatcher module.exports.getGlobalDispatcher = getGlobalDispatcher const fetchImpl = (__nccwpck_require__(54398).fetch) // Capture __filename at module load time for stack trace augmentation. // This may be undefined when bundled in environments like Node.js internals. const currentFilename = typeof __filename !== 'undefined' ? __filename : undefined function appendFetchStackTrace (err, filename) { if (!err || typeof err !== 'object') { return } const stack = typeof err.stack === 'string' ? err.stack : '' const normalizedFilename = filename.replace(/\\/g, '/') if (stack && (stack.includes(filename) || stack.includes(normalizedFilename))) { return } const capture = {} Error.captureStackTrace(capture, appendFetchStackTrace) if (!capture.stack) { return } const captureLines = capture.stack.split('\n').slice(1).join('\n') err.stack = stack ? `${stack}\n${captureLines}` : capture.stack } module.exports.fetch = function fetch (init, options = undefined) { return fetchImpl(init, options).catch(err => { if (currentFilename) { appendFetchStackTrace(err, currentFilename) } else if (err && typeof err === 'object') { Error.captureStackTrace(err, module.exports.fetch) } throw err }) } module.exports.Headers = __nccwpck_require__(60660).Headers module.exports.Response = __nccwpck_require__(99051).Response module.exports.Request = __nccwpck_require__(9967).Request module.exports.FormData = __nccwpck_require__(35910).FormData const { setGlobalOrigin, getGlobalOrigin } = __nccwpck_require__(51059) module.exports.setGlobalOrigin = setGlobalOrigin module.exports.getGlobalOrigin = getGlobalOrigin const { CacheStorage } = __nccwpck_require__(3245) const { kConstruct } = __nccwpck_require__(36443) module.exports.caches = new CacheStorage(kConstruct) const { deleteCookie, getCookies, getSetCookies, setCookie, parseCookie } = __nccwpck_require__(79061) module.exports.deleteCookie = deleteCookie module.exports.getCookies = getCookies module.exports.getSetCookies = getSetCookies module.exports.setCookie = setCookie module.exports.parseCookie = parseCookie const { parseMIMEType, serializeAMimeType } = __nccwpck_require__(51900) module.exports.parseMIMEType = parseMIMEType module.exports.serializeAMimeType = serializeAMimeType const { CloseEvent, ErrorEvent, MessageEvent } = __nccwpck_require__(15188) const { WebSocket, ping } = __nccwpck_require__(13726) module.exports.WebSocket = WebSocket module.exports.CloseEvent = CloseEvent module.exports.ErrorEvent = ErrorEvent module.exports.MessageEvent = MessageEvent module.exports.ping = ping module.exports.WebSocketStream = __nccwpck_require__(12873).WebSocketStream module.exports.WebSocketError = __nccwpck_require__(56919).WebSocketError module.exports.request = makeDispatcher(api.request) module.exports.stream = makeDispatcher(api.stream) module.exports.pipeline = makeDispatcher(api.pipeline) module.exports.connect = makeDispatcher(api.connect) module.exports.upgrade = makeDispatcher(api.upgrade) module.exports.MockClient = MockClient module.exports.MockCallHistory = MockCallHistory module.exports.MockCallHistoryLog = MockCallHistoryLog module.exports.MockPool = MockPool module.exports.MockAgent = MockAgent module.exports.SnapshotAgent = SnapshotAgent module.exports.mockErrors = mockErrors const { EventSource } = __nccwpck_require__(21238) module.exports.EventSource = EventSource function install () { globalThis.fetch = module.exports.fetch globalThis.Headers = module.exports.Headers globalThis.Response = module.exports.Response globalThis.Request = module.exports.Request globalThis.FormData = module.exports.FormData globalThis.WebSocket = module.exports.WebSocket globalThis.CloseEvent = module.exports.CloseEvent globalThis.ErrorEvent = module.exports.ErrorEvent globalThis.MessageEvent = module.exports.MessageEvent globalThis.EventSource = module.exports.EventSource } module.exports.install = install /***/ }), /***/ 80158: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { addAbortListener } = __nccwpck_require__(3440) const { RequestAbortedError } = __nccwpck_require__(68707) const kListener = Symbol('kListener') const kSignal = Symbol('kSignal') function abort (self) { if (self.abort) { self.abort(self[kSignal]?.reason) } else { self.reason = self[kSignal]?.reason ?? new RequestAbortedError() } removeSignal(self) } function addSignal (self, signal) { self.reason = null self[kSignal] = null self[kListener] = null if (!signal) { return } if (signal.aborted) { abort(self) return } self[kSignal] = signal self[kListener] = () => { abort(self) } addAbortListener(self[kSignal], self[kListener]) } function removeSignal (self) { if (!self[kSignal]) { return } if ('removeEventListener' in self[kSignal]) { self[kSignal].removeEventListener('abort', self[kListener]) } else { self[kSignal].removeListener('abort', self[kListener]) } self[kSignal] = null self[kListener] = null } module.exports = { addSignal, removeSignal } /***/ }), /***/ 34660: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const assert = __nccwpck_require__(34589) const { AsyncResource } = __nccwpck_require__(16698) const { InvalidArgumentError, SocketError } = __nccwpck_require__(68707) const util = __nccwpck_require__(3440) const { addSignal, removeSignal } = __nccwpck_require__(80158) class ConnectHandler extends AsyncResource { constructor (opts, callback) { if (!opts || typeof opts !== 'object') { throw new InvalidArgumentError('invalid opts') } if (typeof callback !== 'function') { throw new InvalidArgumentError('invalid callback') } const { signal, opaque, responseHeaders } = opts if (signal && typeof signal.on !== 'function' && typeof signal.addEventListener !== 'function') { throw new InvalidArgumentError('signal must be an EventEmitter or EventTarget') } super('UNDICI_CONNECT') this.opaque = opaque || null this.responseHeaders = responseHeaders || null this.callback = callback this.abort = null addSignal(this, signal) } onConnect (abort, context) { if (this.reason) { abort(this.reason) return } assert(this.callback) this.abort = abort this.context = context } onHeaders () { throw new SocketError('bad connect', null) } onUpgrade (statusCode, rawHeaders, socket) { const { callback, opaque, context } = this removeSignal(this) this.callback = null let headers = rawHeaders // Indicates is an HTTP2Session if (headers != null) { headers = this.responseHeaders === 'raw' ? util.parseRawHeaders(rawHeaders) : util.parseHeaders(rawHeaders) } this.runInAsyncScope(callback, null, null, { statusCode, headers, socket, opaque, context }) } onError (err) { const { callback, opaque } = this removeSignal(this) if (callback) { this.callback = null queueMicrotask(() => { this.runInAsyncScope(callback, null, err, { opaque }) }) } } } function connect (opts, callback) { if (callback === undefined) { return new Promise((resolve, reject) => { connect.call(this, opts, (err, data) => { return err ? reject(err) : resolve(data) }) }) } try { const connectHandler = new ConnectHandler(opts, callback) const connectOptions = { ...opts, method: 'CONNECT' } this.dispatch(connectOptions, connectHandler) } catch (err) { if (typeof callback !== 'function') { throw err } const opaque = opts?.opaque queueMicrotask(() => callback(err, { opaque })) } } module.exports = connect /***/ }), /***/ 76862: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { Readable, Duplex, PassThrough } = __nccwpck_require__(57075) const assert = __nccwpck_require__(34589) const { AsyncResource } = __nccwpck_require__(16698) const { InvalidArgumentError, InvalidReturnValueError, RequestAbortedError } = __nccwpck_require__(68707) const util = __nccwpck_require__(3440) const { addSignal, removeSignal } = __nccwpck_require__(80158) function noop () {} const kResume = Symbol('resume') class PipelineRequest extends Readable { constructor () { super({ autoDestroy: true }) this[kResume] = null } _read () { const { [kResume]: resume } = this if (resume) { this[kResume] = null resume() } } _destroy (err, callback) { this._read() callback(err) } } class PipelineResponse extends Readable { constructor (resume) { super({ autoDestroy: true }) this[kResume] = resume } _read () { this[kResume]() } _destroy (err, callback) { if (!err && !this._readableState.endEmitted) { err = new RequestAbortedError() } callback(err) } } class PipelineHandler extends AsyncResource { constructor (opts, handler) { if (!opts || typeof opts !== 'object') { throw new InvalidArgumentError('invalid opts') } if (typeof handler !== 'function') { throw new InvalidArgumentError('invalid handler') } const { signal, method, opaque, onInfo, responseHeaders } = opts if (signal && typeof signal.on !== 'function' && typeof signal.addEventListener !== 'function') { throw new InvalidArgumentError('signal must be an EventEmitter or EventTarget') } if (method === 'CONNECT') { throw new InvalidArgumentError('invalid method') } if (onInfo && typeof onInfo !== 'function') { throw new InvalidArgumentError('invalid onInfo callback') } super('UNDICI_PIPELINE') this.opaque = opaque || null this.responseHeaders = responseHeaders || null this.handler = handler this.abort = null this.context = null this.onInfo = onInfo || null this.req = new PipelineRequest().on('error', noop) this.ret = new Duplex({ readableObjectMode: opts.objectMode, autoDestroy: true, read: () => { const { body } = this if (body?.resume) { body.resume() } }, write: (chunk, encoding, callback) => { const { req } = this if (req.push(chunk, encoding) || req._readableState.destroyed) { callback() } else { req[kResume] = callback } }, destroy: (err, callback) => { const { body, req, res, ret, abort } = this if (!err && !ret._readableState.endEmitted) { err = new RequestAbortedError() } if (abort && err) { abort() } util.destroy(body, err) util.destroy(req, err) util.destroy(res, err) removeSignal(this) callback(err) } }).on('prefinish', () => { const { req } = this // Node < 15 does not call _final in same tick. req.push(null) }) this.res = null addSignal(this, signal) } onConnect (abort, context) { const { res } = this if (this.reason) { abort(this.reason) return } assert(!res, 'pipeline cannot be retried') this.abort = abort this.context = context } onHeaders (statusCode, rawHeaders, resume) { const { opaque, handler, context } = this if (statusCode < 200) { if (this.onInfo) { const headers = this.responseHeaders === 'raw' ? util.parseRawHeaders(rawHeaders) : util.parseHeaders(rawHeaders) this.onInfo({ statusCode, headers }) } return } this.res = new PipelineResponse(resume) let body try { this.handler = null const headers = this.responseHeaders === 'raw' ? util.parseRawHeaders(rawHeaders) : util.parseHeaders(rawHeaders) body = this.runInAsyncScope(handler, null, { statusCode, headers, opaque, body: this.res, context }) } catch (err) { this.res.on('error', noop) throw err } if (!body || typeof body.on !== 'function') { throw new InvalidReturnValueError('expected Readable') } body .on('data', (chunk) => { const { ret, body } = this if (!ret.push(chunk) && body.pause) { body.pause() } }) .on('error', (err) => { const { ret } = this util.destroy(ret, err) }) .on('end', () => { const { ret } = this ret.push(null) }) .on('close', () => { const { ret } = this if (!ret._readableState.ended) { util.destroy(ret, new RequestAbortedError()) } }) this.body = body } onData (chunk) { const { res } = this return res.push(chunk) } onComplete (trailers) { const { res } = this res.push(null) } onError (err) { const { ret } = this this.handler = null util.destroy(ret, err) } } function pipeline (opts, handler) { try { const pipelineHandler = new PipelineHandler(opts, handler) this.dispatch({ ...opts, body: pipelineHandler.req }, pipelineHandler) return pipelineHandler.ret } catch (err) { return new PassThrough().destroy(err) } } module.exports = pipeline /***/ }), /***/ 14043: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const assert = __nccwpck_require__(34589) const { AsyncResource } = __nccwpck_require__(16698) const { Readable } = __nccwpck_require__(49927) const { InvalidArgumentError, RequestAbortedError } = __nccwpck_require__(68707) const util = __nccwpck_require__(3440) function noop () {} class RequestHandler extends AsyncResource { constructor (opts, callback) { if (!opts || typeof opts !== 'object') { throw new InvalidArgumentError('invalid opts') } const { signal, method, opaque, body, onInfo, responseHeaders, highWaterMark } = opts try { if (typeof callback !== 'function') { throw new InvalidArgumentError('invalid callback') } if (highWaterMark != null && (!Number.isFinite(highWaterMark) || highWaterMark < 0)) { throw new InvalidArgumentError('invalid highWaterMark') } if (signal && typeof signal.on !== 'function' && typeof signal.addEventListener !== 'function') { throw new InvalidArgumentError('signal must be an EventEmitter or EventTarget') } if (method === 'CONNECT') { throw new InvalidArgumentError('invalid method') } if (onInfo && typeof onInfo !== 'function') { throw new InvalidArgumentError('invalid onInfo callback') } super('UNDICI_REQUEST') } catch (err) { if (util.isStream(body)) { util.destroy(body.on('error', noop), err) } throw err } this.method = method this.responseHeaders = responseHeaders || null this.opaque = opaque || null this.callback = callback this.res = null this.abort = null this.body = body this.trailers = {} this.context = null this.onInfo = onInfo || null this.highWaterMark = highWaterMark this.reason = null this.removeAbortListener = null if (signal?.aborted) { this.reason = signal.reason ?? new RequestAbortedError() } else if (signal) { this.removeAbortListener = util.addAbortListener(signal, () => { this.reason = signal.reason ?? new RequestAbortedError() if (this.res) { util.destroy(this.res.on('error', noop), this.reason) } else if (this.abort) { this.abort(this.reason) } }) } } onConnect (abort, context) { if (this.reason) { abort(this.reason) return } assert(this.callback) this.abort = abort this.context = context } onHeaders (statusCode, rawHeaders, resume, statusMessage) { const { callback, opaque, abort, context, responseHeaders, highWaterMark } = this const headers = responseHeaders === 'raw' ? util.parseRawHeaders(rawHeaders) : util.parseHeaders(rawHeaders) if (statusCode < 200) { if (this.onInfo) { this.onInfo({ statusCode, headers }) } return } const parsedHeaders = responseHeaders === 'raw' ? util.parseHeaders(rawHeaders) : headers const contentType = parsedHeaders['content-type'] const contentLength = parsedHeaders['content-length'] const res = new Readable({ resume, abort, contentType, contentLength: this.method !== 'HEAD' && contentLength ? Number(contentLength) : null, highWaterMark }) if (this.removeAbortListener) { res.on('close', this.removeAbortListener) this.removeAbortListener = null } this.callback = null this.res = res if (callback !== null) { try { this.runInAsyncScope(callback, null, null, { statusCode, statusText: statusMessage, headers, trailers: this.trailers, opaque, body: res, context }) } catch (err) { // If the callback throws synchronously, we need to handle it // Remove reference to res to allow res being garbage collected this.res = null // Destroy the response stream util.destroy(res.on('error', noop), err) // Use queueMicrotask to re-throw the error so it reaches uncaughtException queueMicrotask(() => { throw err }) } } } onData (chunk) { return this.res.push(chunk) } onComplete (trailers) { util.parseHeaders(trailers, this.trailers) this.res.push(null) } onError (err) { const { res, callback, body, opaque } = this if (callback) { // TODO: Does this need queueMicrotask? this.callback = null queueMicrotask(() => { this.runInAsyncScope(callback, null, err, { opaque }) }) } if (res) { this.res = null // Ensure all queued handlers are invoked before destroying res. queueMicrotask(() => { util.destroy(res.on('error', noop), err) }) } if (body) { this.body = null if (util.isStream(body)) { body.on('error', noop) util.destroy(body, err) } } if (this.removeAbortListener) { this.removeAbortListener() this.removeAbortListener = null } } } function request (opts, callback) { if (callback === undefined) { return new Promise((resolve, reject) => { request.call(this, opts, (err, data) => { return err ? reject(err) : resolve(data) }) }) } try { const handler = new RequestHandler(opts, callback) this.dispatch(opts, handler) } catch (err) { if (typeof callback !== 'function') { throw err } const opaque = opts?.opaque queueMicrotask(() => callback(err, { opaque })) } } module.exports = request module.exports.RequestHandler = RequestHandler /***/ }), /***/ 3560: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const assert = __nccwpck_require__(34589) const { finished } = __nccwpck_require__(57075) const { AsyncResource } = __nccwpck_require__(16698) const { InvalidArgumentError, InvalidReturnValueError } = __nccwpck_require__(68707) const util = __nccwpck_require__(3440) const { addSignal, removeSignal } = __nccwpck_require__(80158) function noop () {} class StreamHandler extends AsyncResource { constructor (opts, factory, callback) { if (!opts || typeof opts !== 'object') { throw new InvalidArgumentError('invalid opts') } const { signal, method, opaque, body, onInfo, responseHeaders } = opts try { if (typeof callback !== 'function') { throw new InvalidArgumentError('invalid callback') } if (typeof factory !== 'function') { throw new InvalidArgumentError('invalid factory') } if (signal && typeof signal.on !== 'function' && typeof signal.addEventListener !== 'function') { throw new InvalidArgumentError('signal must be an EventEmitter or EventTarget') } if (method === 'CONNECT') { throw new InvalidArgumentError('invalid method') } if (onInfo && typeof onInfo !== 'function') { throw new InvalidArgumentError('invalid onInfo callback') } super('UNDICI_STREAM') } catch (err) { if (util.isStream(body)) { util.destroy(body.on('error', noop), err) } throw err } this.responseHeaders = responseHeaders || null this.opaque = opaque || null this.factory = factory this.callback = callback this.res = null this.abort = null this.context = null this.trailers = null this.body = body this.onInfo = onInfo || null if (util.isStream(body)) { body.on('error', (err) => { this.onError(err) }) } addSignal(this, signal) } onConnect (abort, context) { if (this.reason) { abort(this.reason) return } assert(this.callback) this.abort = abort this.context = context } onHeaders (statusCode, rawHeaders, resume, statusMessage) { const { factory, opaque, context, responseHeaders } = this const headers = responseHeaders === 'raw' ? util.parseRawHeaders(rawHeaders) : util.parseHeaders(rawHeaders) if (statusCode < 200) { if (this.onInfo) { this.onInfo({ statusCode, headers }) } return } this.factory = null if (factory === null) { return } const res = this.runInAsyncScope(factory, null, { statusCode, headers, opaque, context }) if ( !res || typeof res.write !== 'function' || typeof res.end !== 'function' || typeof res.on !== 'function' ) { throw new InvalidReturnValueError('expected Writable') } // TODO: Avoid finished. It registers an unnecessary amount of listeners. finished(res, { readable: false }, (err) => { const { callback, res, opaque, trailers, abort } = this this.res = null if (err || !res?.readable) { util.destroy(res, err) } this.callback = null this.runInAsyncScope(callback, null, err || null, { opaque, trailers }) if (err) { abort() } }) res.on('drain', resume) this.res = res const needDrain = res.writableNeedDrain !== undefined ? res.writableNeedDrain : res._writableState?.needDrain return needDrain !== true } onData (chunk) { const { res } = this return res ? res.write(chunk) : true } onComplete (trailers) { const { res } = this removeSignal(this) if (!res) { return } this.trailers = util.parseHeaders(trailers) res.end() } onError (err) { const { res, callback, opaque, body } = this removeSignal(this) this.factory = null if (res) { this.res = null util.destroy(res, err) } else if (callback) { this.callback = null queueMicrotask(() => { this.runInAsyncScope(callback, null, err, { opaque }) }) } if (body) { this.body = null util.destroy(body, err) } } } function stream (opts, factory, callback) { if (callback === undefined) { return new Promise((resolve, reject) => { stream.call(this, opts, factory, (err, data) => { return err ? reject(err) : resolve(data) }) }) } try { const handler = new StreamHandler(opts, factory, callback) this.dispatch(opts, handler) } catch (err) { if (typeof callback !== 'function') { throw err } const opaque = opts?.opaque queueMicrotask(() => callback(err, { opaque })) } } module.exports = stream /***/ }), /***/ 61882: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { InvalidArgumentError, SocketError } = __nccwpck_require__(68707) const { AsyncResource } = __nccwpck_require__(16698) const assert = __nccwpck_require__(34589) const util = __nccwpck_require__(3440) const { kHTTP2Stream } = __nccwpck_require__(36443) const { addSignal, removeSignal } = __nccwpck_require__(80158) class UpgradeHandler extends AsyncResource { constructor (opts, callback) { if (!opts || typeof opts !== 'object') { throw new InvalidArgumentError('invalid opts') } if (typeof callback !== 'function') { throw new InvalidArgumentError('invalid callback') } const { signal, opaque, responseHeaders } = opts if (signal && typeof signal.on !== 'function' && typeof signal.addEventListener !== 'function') { throw new InvalidArgumentError('signal must be an EventEmitter or EventTarget') } super('UNDICI_UPGRADE') this.responseHeaders = responseHeaders || null this.opaque = opaque || null this.callback = callback this.abort = null this.context = null addSignal(this, signal) } onConnect (abort, context) { if (this.reason) { abort(this.reason) return } assert(this.callback) this.abort = abort this.context = null } onHeaders () { throw new SocketError('bad upgrade', null) } onUpgrade (statusCode, rawHeaders, socket) { assert(socket[kHTTP2Stream] === true ? statusCode === 200 : statusCode === 101) const { callback, opaque, context } = this removeSignal(this) this.callback = null const headers = this.responseHeaders === 'raw' ? util.parseRawHeaders(rawHeaders) : util.parseHeaders(rawHeaders) this.runInAsyncScope(callback, null, null, { headers, socket, opaque, context }) } onError (err) { const { callback, opaque } = this removeSignal(this) if (callback) { this.callback = null queueMicrotask(() => { this.runInAsyncScope(callback, null, err, { opaque }) }) } } } function upgrade (opts, callback) { if (callback === undefined) { return new Promise((resolve, reject) => { upgrade.call(this, opts, (err, data) => { return err ? reject(err) : resolve(data) }) }) } try { const upgradeHandler = new UpgradeHandler(opts, callback) const upgradeOpts = { ...opts, method: opts.method || 'GET', upgrade: opts.protocol || 'Websocket' } this.dispatch(upgradeOpts, upgradeHandler) } catch (err) { if (typeof callback !== 'function') { throw err } const opaque = opts?.opaque queueMicrotask(() => callback(err, { opaque })) } } module.exports = upgrade /***/ }), /***/ 56615: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; module.exports.request = __nccwpck_require__(14043) module.exports.stream = __nccwpck_require__(3560) module.exports.pipeline = __nccwpck_require__(76862) module.exports.upgrade = __nccwpck_require__(61882) module.exports.connect = __nccwpck_require__(34660) /***/ }), /***/ 49927: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const assert = __nccwpck_require__(34589) const { Readable } = __nccwpck_require__(57075) const { RequestAbortedError, NotSupportedError, InvalidArgumentError, AbortError } = __nccwpck_require__(68707) const util = __nccwpck_require__(3440) const { ReadableStreamFrom } = __nccwpck_require__(3440) const kConsume = Symbol('kConsume') const kReading = Symbol('kReading') const kBody = Symbol('kBody') const kAbort = Symbol('kAbort') const kContentType = Symbol('kContentType') const kContentLength = Symbol('kContentLength') const kUsed = Symbol('kUsed') const kBytesRead = Symbol('kBytesRead') const noop = () => {} /** * @class * @extends {Readable} * @see https://fetch.spec.whatwg.org/#body */ class BodyReadable extends Readable { /** * @param {object} opts * @param {(this: Readable, size: number) => void} opts.resume * @param {() => (void | null)} opts.abort * @param {string} [opts.contentType = ''] * @param {number} [opts.contentLength] * @param {number} [opts.highWaterMark = 64 * 1024] */ constructor ({ resume, abort, contentType = '', contentLength, highWaterMark = 64 * 1024 // Same as nodejs fs streams. }) { super({ autoDestroy: true, read: resume, highWaterMark }) this._readableState.dataEmitted = false this[kAbort] = abort /** @type {Consume | null} */ this[kConsume] = null /** @type {number} */ this[kBytesRead] = 0 /** @type {ReadableStream|null} */ this[kBody] = null /** @type {boolean} */ this[kUsed] = false /** @type {string} */ this[kContentType] = contentType /** @type {number|null} */ this[kContentLength] = Number.isFinite(contentLength) ? contentLength : null /** * Is stream being consumed through Readable API? * This is an optimization so that we avoid checking * for 'data' and 'readable' listeners in the hot path * inside push(). * * @type {boolean} */ this[kReading] = false } /** * @param {Error|null} err * @param {(error:(Error|null)) => void} callback * @returns {void} */ _destroy (err, callback) { if (!err && !this._readableState.endEmitted) { err = new RequestAbortedError() } if (err) { this[kAbort]() } // Workaround for Node "bug". If the stream is destroyed in same // tick as it is created, then a user who is waiting for a // promise (i.e micro tick) for installing an 'error' listener will // never get a chance and will always encounter an unhandled exception. if (!this[kUsed]) { setImmediate(callback, err) } else { callback(err) } } /** * @param {string|symbol} event * @param {(...args: any[]) => void} listener * @returns {this} */ on (event, listener) { if (event === 'data' || event === 'readable') { this[kReading] = true this[kUsed] = true } return super.on(event, listener) } /** * @param {string|symbol} event * @param {(...args: any[]) => void} listener * @returns {this} */ addListener (event, listener) { return this.on(event, listener) } /** * @param {string|symbol} event * @param {(...args: any[]) => void} listener * @returns {this} */ off (event, listener) { const ret = super.off(event, listener) if (event === 'data' || event === 'readable') { this[kReading] = ( this.listenerCount('data') > 0 || this.listenerCount('readable') > 0 ) } return ret } /** * @param {string|symbol} event * @param {(...args: any[]) => void} listener * @returns {this} */ removeListener (event, listener) { return this.off(event, listener) } /** * @param {Buffer|null} chunk * @returns {boolean} */ push (chunk) { if (chunk) { this[kBytesRead] += chunk.length if (this[kConsume]) { consumePush(this[kConsume], chunk) return this[kReading] ? super.push(chunk) : true } } return super.push(chunk) } /** * Consumes and returns the body as a string. * * @see https://fetch.spec.whatwg.org/#dom-body-text * @returns {Promise} */ text () { return consume(this, 'text') } /** * Consumes and returns the body as a JavaScript Object. * * @see https://fetch.spec.whatwg.org/#dom-body-json * @returns {Promise} */ json () { return consume(this, 'json') } /** * Consumes and returns the body as a Blob * * @see https://fetch.spec.whatwg.org/#dom-body-blob * @returns {Promise} */ blob () { return consume(this, 'blob') } /** * Consumes and returns the body as an Uint8Array. * * @see https://fetch.spec.whatwg.org/#dom-body-bytes * @returns {Promise} */ bytes () { return consume(this, 'bytes') } /** * Consumes and returns the body as an ArrayBuffer. * * @see https://fetch.spec.whatwg.org/#dom-body-arraybuffer * @returns {Promise} */ arrayBuffer () { return consume(this, 'arrayBuffer') } /** * Not implemented * * @see https://fetch.spec.whatwg.org/#dom-body-formdata * @throws {NotSupportedError} */ async formData () { // TODO: Implement. throw new NotSupportedError() } /** * Returns true if the body is not null and the body has been consumed. * Otherwise, returns false. * * @see https://fetch.spec.whatwg.org/#dom-body-bodyused * @readonly * @returns {boolean} */ get bodyUsed () { return util.isDisturbed(this) } /** * @see https://fetch.spec.whatwg.org/#dom-body-body * @readonly * @returns {ReadableStream} */ get body () { if (!this[kBody]) { this[kBody] = ReadableStreamFrom(this) if (this[kConsume]) { // TODO: Is this the best way to force a lock? this[kBody].getReader() // Ensure stream is locked. assert(this[kBody].locked) } } return this[kBody] } /** * Dumps the response body by reading `limit` number of bytes. * @param {object} opts * @param {number} [opts.limit = 131072] Number of bytes to read. * @param {AbortSignal} [opts.signal] An AbortSignal to cancel the dump. * @returns {Promise} */ dump (opts) { const signal = opts?.signal if (signal != null && (typeof signal !== 'object' || !('aborted' in signal))) { return Promise.reject(new InvalidArgumentError('signal must be an AbortSignal')) } const limit = opts?.limit && Number.isFinite(opts.limit) ? opts.limit : 128 * 1024 if (signal?.aborted) { return Promise.reject(signal.reason ?? new AbortError()) } if (this._readableState.closeEmitted) { return Promise.resolve(null) } return new Promise((resolve, reject) => { if ( (this[kContentLength] && (this[kContentLength] > limit)) || this[kBytesRead] > limit ) { this.destroy(new AbortError()) } if (signal) { const onAbort = () => { this.destroy(signal.reason ?? new AbortError()) } signal.addEventListener('abort', onAbort) this .on('close', function () { signal.removeEventListener('abort', onAbort) if (signal.aborted) { reject(signal.reason ?? new AbortError()) } else { resolve(null) } }) } else { this.on('close', resolve) } this .on('error', noop) .on('data', () => { if (this[kBytesRead] > limit) { this.destroy() } }) .resume() }) } /** * @param {BufferEncoding} encoding * @returns {this} */ setEncoding (encoding) { if (Buffer.isEncoding(encoding)) { this._readableState.encoding = encoding } return this } } /** * @see https://streams.spec.whatwg.org/#readablestream-locked * @param {BodyReadable} bodyReadable * @returns {boolean} */ function isLocked (bodyReadable) { // Consume is an implicit lock. return bodyReadable[kBody]?.locked === true || bodyReadable[kConsume] !== null } /** * @see https://fetch.spec.whatwg.org/#body-unusable * @param {BodyReadable} bodyReadable * @returns {boolean} */ function isUnusable (bodyReadable) { return util.isDisturbed(bodyReadable) || isLocked(bodyReadable) } /** * @typedef {'text' | 'json' | 'blob' | 'bytes' | 'arrayBuffer'} ConsumeType */ /** * @template {ConsumeType} T * @typedef {T extends 'text' ? string : * T extends 'json' ? unknown : * T extends 'blob' ? Blob : * T extends 'arrayBuffer' ? ArrayBuffer : * T extends 'bytes' ? Uint8Array : * never * } ConsumeReturnType */ /** * @typedef {object} Consume * @property {ConsumeType} type * @property {BodyReadable} stream * @property {((value?: any) => void)} resolve * @property {((err: Error) => void)} reject * @property {number} length * @property {Buffer[]} body */ /** * @template {ConsumeType} T * @param {BodyReadable} stream * @param {T} type * @returns {Promise>} */ function consume (stream, type) { assert(!stream[kConsume]) return new Promise((resolve, reject) => { if (isUnusable(stream)) { const rState = stream._readableState if (rState.destroyed && rState.closeEmitted === false) { stream .on('error', reject) .on('close', () => { reject(new TypeError('unusable')) }) } else { reject(rState.errored ?? new TypeError('unusable')) } } else { queueMicrotask(() => { stream[kConsume] = { type, stream, resolve, reject, length: 0, body: [] } stream .on('error', function (err) { consumeFinish(this[kConsume], err) }) .on('close', function () { if (this[kConsume].body !== null) { consumeFinish(this[kConsume], new RequestAbortedError()) } }) consumeStart(stream[kConsume]) }) } }) } /** * @param {Consume} consume * @returns {void} */ function consumeStart (consume) { if (consume.body === null) { return } const { _readableState: state } = consume.stream if (state.bufferIndex) { const start = state.bufferIndex const end = state.buffer.length for (let n = start; n < end; n++) { consumePush(consume, state.buffer[n]) } } else { for (const chunk of state.buffer) { consumePush(consume, chunk) } } if (state.endEmitted) { consumeEnd(this[kConsume], this._readableState.encoding) } else { consume.stream.on('end', function () { consumeEnd(this[kConsume], this._readableState.encoding) }) } consume.stream.resume() while (consume.stream.read() != null) { // Loop } } /** * @param {Buffer[]} chunks * @param {number} length * @param {BufferEncoding} [encoding='utf8'] * @returns {string} */ function chunksDecode (chunks, length, encoding) { if (chunks.length === 0 || length === 0) { return '' } const buffer = chunks.length === 1 ? chunks[0] : Buffer.concat(chunks, length) const bufferLength = buffer.length // Skip BOM. const start = bufferLength > 2 && buffer[0] === 0xef && buffer[1] === 0xbb && buffer[2] === 0xbf ? 3 : 0 if (!encoding || encoding === 'utf8' || encoding === 'utf-8') { return buffer.utf8Slice(start, bufferLength) } else { return buffer.subarray(start, bufferLength).toString(encoding) } } /** * @param {Buffer[]} chunks * @param {number} length * @returns {Uint8Array} */ function chunksConcat (chunks, length) { if (chunks.length === 0 || length === 0) { return new Uint8Array(0) } if (chunks.length === 1) { // fast-path return new Uint8Array(chunks[0]) } const buffer = new Uint8Array(Buffer.allocUnsafeSlow(length).buffer) let offset = 0 for (let i = 0; i < chunks.length; ++i) { const chunk = chunks[i] buffer.set(chunk, offset) offset += chunk.length } return buffer } /** * @param {Consume} consume * @param {BufferEncoding} encoding * @returns {void} */ function consumeEnd (consume, encoding) { const { type, body, resolve, stream, length } = consume try { if (type === 'text') { resolve(chunksDecode(body, length, encoding)) } else if (type === 'json') { resolve(JSON.parse(chunksDecode(body, length, encoding))) } else if (type === 'arrayBuffer') { resolve(chunksConcat(body, length).buffer) } else if (type === 'blob') { resolve(new Blob(body, { type: stream[kContentType] })) } else if (type === 'bytes') { resolve(chunksConcat(body, length)) } consumeFinish(consume) } catch (err) { stream.destroy(err) } } /** * @param {Consume} consume * @param {Buffer} chunk * @returns {void} */ function consumePush (consume, chunk) { consume.length += chunk.length consume.body.push(chunk) } /** * @param {Consume} consume * @param {Error} [err] * @returns {void} */ function consumeFinish (consume, err) { if (consume.body === null) { return } if (err) { consume.reject(err) } else { consume.resolve() } // Reset the consume object to allow for garbage collection. consume.type = null consume.stream = null consume.resolve = null consume.reject = null consume.length = 0 consume.body = null } module.exports = { Readable: BodyReadable, chunksDecode } /***/ }), /***/ 74889: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { Writable } = __nccwpck_require__(57075) const { EventEmitter } = __nccwpck_require__(78474) const { assertCacheKey, assertCacheValue } = __nccwpck_require__(47659) /** * @typedef {import('../../types/cache-interceptor.d.ts').default.CacheKey} CacheKey * @typedef {import('../../types/cache-interceptor.d.ts').default.CacheValue} CacheValue * @typedef {import('../../types/cache-interceptor.d.ts').default.CacheStore} CacheStore * @typedef {import('../../types/cache-interceptor.d.ts').default.GetResult} GetResult */ /** * @implements {CacheStore} * @extends {EventEmitter} */ class MemoryCacheStore extends EventEmitter { #maxCount = 1024 #maxSize = 104857600 // 100MB #maxEntrySize = 5242880 // 5MB #size = 0 #count = 0 #entries = new Map() #hasEmittedMaxSizeEvent = false /** * @param {import('../../types/cache-interceptor.d.ts').default.MemoryCacheStoreOpts | undefined} [opts] */ constructor (opts) { super() if (opts) { if (typeof opts !== 'object') { throw new TypeError('MemoryCacheStore options must be an object') } if (opts.maxCount !== undefined) { if ( typeof opts.maxCount !== 'number' || !Number.isInteger(opts.maxCount) || opts.maxCount < 0 ) { throw new TypeError('MemoryCacheStore options.maxCount must be a non-negative integer') } this.#maxCount = opts.maxCount } if (opts.maxSize !== undefined) { if ( typeof opts.maxSize !== 'number' || !Number.isInteger(opts.maxSize) || opts.maxSize < 0 ) { throw new TypeError('MemoryCacheStore options.maxSize must be a non-negative integer') } this.#maxSize = opts.maxSize } if (opts.maxEntrySize !== undefined) { if ( typeof opts.maxEntrySize !== 'number' || !Number.isInteger(opts.maxEntrySize) || opts.maxEntrySize < 0 ) { throw new TypeError('MemoryCacheStore options.maxEntrySize must be a non-negative integer') } this.#maxEntrySize = opts.maxEntrySize } } } /** * Get the current size of the cache in bytes * @returns {number} The current size of the cache in bytes */ get size () { return this.#size } /** * Check if the cache is full (either max size or max count reached) * @returns {boolean} True if the cache is full, false otherwise */ isFull () { return this.#size >= this.#maxSize || this.#count >= this.#maxCount } /** * @param {import('../../types/cache-interceptor.d.ts').default.CacheKey} req * @returns {import('../../types/cache-interceptor.d.ts').default.GetResult | undefined} */ get (key) { assertCacheKey(key) const topLevelKey = `${key.origin}:${key.path}` const now = Date.now() const entries = this.#entries.get(topLevelKey) const entry = entries ? findEntry(key, entries, now) : null return entry == null ? undefined : { statusMessage: entry.statusMessage, statusCode: entry.statusCode, headers: entry.headers, body: entry.body, vary: entry.vary ? entry.vary : undefined, etag: entry.etag, cacheControlDirectives: entry.cacheControlDirectives, cachedAt: entry.cachedAt, staleAt: entry.staleAt, deleteAt: entry.deleteAt } } /** * @param {import('../../types/cache-interceptor.d.ts').default.CacheKey} key * @param {import('../../types/cache-interceptor.d.ts').default.CacheValue} val * @returns {Writable | undefined} */ createWriteStream (key, val) { assertCacheKey(key) assertCacheValue(val) const topLevelKey = `${key.origin}:${key.path}` const store = this const entry = { ...key, ...val, body: [], size: 0 } return new Writable({ write (chunk, encoding, callback) { if (typeof chunk === 'string') { chunk = Buffer.from(chunk, encoding) } entry.size += chunk.byteLength if (entry.size >= store.#maxEntrySize) { this.destroy() } else { entry.body.push(chunk) } callback(null) }, final (callback) { let entries = store.#entries.get(topLevelKey) if (!entries) { entries = [] store.#entries.set(topLevelKey, entries) } const previousEntry = findEntry(key, entries, Date.now()) if (previousEntry) { const index = entries.indexOf(previousEntry) entries.splice(index, 1, entry) store.#size -= previousEntry.size } else { entries.push(entry) store.#count += 1 } store.#size += entry.size // Check if cache is full and emit event if needed if (store.#size > store.#maxSize || store.#count > store.#maxCount) { // Emit maxSizeExceeded event if we haven't already if (!store.#hasEmittedMaxSizeEvent) { store.emit('maxSizeExceeded', { size: store.#size, maxSize: store.#maxSize, count: store.#count, maxCount: store.#maxCount }) store.#hasEmittedMaxSizeEvent = true } // Perform eviction for (const [key, entries] of store.#entries) { for (const entry of entries.splice(0, entries.length / 2)) { store.#size -= entry.size store.#count -= 1 } if (entries.length === 0) { store.#entries.delete(key) } } // Reset the event flag after eviction if (store.#size < store.#maxSize && store.#count < store.#maxCount) { store.#hasEmittedMaxSizeEvent = false } } callback(null) } }) } /** * @param {CacheKey} key */ delete (key) { if (typeof key !== 'object') { throw new TypeError(`expected key to be object, got ${typeof key}`) } const topLevelKey = `${key.origin}:${key.path}` for (const entry of this.#entries.get(topLevelKey) ?? []) { this.#size -= entry.size this.#count -= 1 } this.#entries.delete(topLevelKey) } } function findEntry (key, entries, now) { for (let i = 0; i < entries.length; i++) { const entry = entries[i] if ( entry.deleteAt > now && entry.method === key.method && varyMatches(key, entry) ) { return entry } } } function varyMatches (key, entry) { if (entry.vary == null) { return true } for (const headerName in entry.vary) { if (Object.hasOwn(entry.vary, headerName) && !headerValueEquals(key.headers?.[headerName], entry.vary[headerName])) { return false } } return true } /** * @param {string|string[]|null|undefined} lhs * @param {string|string[]|null|undefined} rhs * @returns {boolean} */ function headerValueEquals (lhs, rhs) { if (lhs == null && rhs == null) { return true } if ((lhs == null && rhs != null) || (lhs != null && rhs == null)) { return false } if (Array.isArray(lhs) && Array.isArray(rhs)) { if (lhs.length !== rhs.length) { return false } for (let i = 0; i < lhs.length; i++) { if (lhs[i] !== rhs[i]) { return false } } return true } return lhs === rhs } module.exports = MemoryCacheStore /***/ }), /***/ 71522: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { Writable } = __nccwpck_require__(57075) const { assertCacheKey, assertCacheValue } = __nccwpck_require__(47659) let DatabaseSync const VERSION = 3 // 2gb const MAX_ENTRY_SIZE = 2 * 1000 * 1000 * 1000 /** * @typedef {import('../../types/cache-interceptor.d.ts').default.CacheStore} CacheStore * @implements {CacheStore} * * @typedef {{ * id: Readonly, * body?: Uint8Array * statusCode: number * statusMessage: string * headers?: string * vary?: string * etag?: string * cacheControlDirectives?: string * cachedAt: number * staleAt: number * deleteAt: number * }} SqliteStoreValue */ module.exports = class SqliteCacheStore { #maxEntrySize = MAX_ENTRY_SIZE #maxCount = Infinity /** * @type {import('node:sqlite').DatabaseSync} */ #db /** * @type {import('node:sqlite').StatementSync} */ #getValuesQuery /** * @type {import('node:sqlite').StatementSync} */ #updateValueQuery /** * @type {import('node:sqlite').StatementSync} */ #insertValueQuery /** * @type {import('node:sqlite').StatementSync} */ #deleteExpiredValuesQuery /** * @type {import('node:sqlite').StatementSync} */ #deleteByUrlQuery /** * @type {import('node:sqlite').StatementSync} */ #countEntriesQuery /** * @type {import('node:sqlite').StatementSync | null} */ #deleteOldValuesQuery /** * @param {import('../../types/cache-interceptor.d.ts').default.SqliteCacheStoreOpts | undefined} opts */ constructor (opts) { if (opts) { if (typeof opts !== 'object') { throw new TypeError('SqliteCacheStore options must be an object') } if (opts.maxEntrySize !== undefined) { if ( typeof opts.maxEntrySize !== 'number' || !Number.isInteger(opts.maxEntrySize) || opts.maxEntrySize < 0 ) { throw new TypeError('SqliteCacheStore options.maxEntrySize must be a non-negative integer') } if (opts.maxEntrySize > MAX_ENTRY_SIZE) { throw new TypeError('SqliteCacheStore options.maxEntrySize must be less than 2gb') } this.#maxEntrySize = opts.maxEntrySize } if (opts.maxCount !== undefined) { if ( typeof opts.maxCount !== 'number' || !Number.isInteger(opts.maxCount) || opts.maxCount < 0 ) { throw new TypeError('SqliteCacheStore options.maxCount must be a non-negative integer') } this.#maxCount = opts.maxCount } } if (!DatabaseSync) { DatabaseSync = (__nccwpck_require__(80099).DatabaseSync) } this.#db = new DatabaseSync(opts?.location ?? ':memory:') this.#db.exec(` PRAGMA journal_mode = WAL; PRAGMA synchronous = NORMAL; PRAGMA temp_store = memory; PRAGMA optimize; CREATE TABLE IF NOT EXISTS cacheInterceptorV${VERSION} ( -- Data specific to us id INTEGER PRIMARY KEY AUTOINCREMENT, url TEXT NOT NULL, method TEXT NOT NULL, -- Data returned to the interceptor body BUF NULL, deleteAt INTEGER NOT NULL, statusCode INTEGER NOT NULL, statusMessage TEXT NOT NULL, headers TEXT NULL, cacheControlDirectives TEXT NULL, etag TEXT NULL, vary TEXT NULL, cachedAt INTEGER NOT NULL, staleAt INTEGER NOT NULL ); CREATE INDEX IF NOT EXISTS idx_cacheInterceptorV${VERSION}_getValuesQuery ON cacheInterceptorV${VERSION}(url, method, deleteAt); CREATE INDEX IF NOT EXISTS idx_cacheInterceptorV${VERSION}_deleteByUrlQuery ON cacheInterceptorV${VERSION}(deleteAt); `) this.#getValuesQuery = this.#db.prepare(` SELECT id, body, deleteAt, statusCode, statusMessage, headers, etag, cacheControlDirectives, vary, cachedAt, staleAt FROM cacheInterceptorV${VERSION} WHERE url = ? AND method = ? ORDER BY deleteAt ASC `) this.#updateValueQuery = this.#db.prepare(` UPDATE cacheInterceptorV${VERSION} SET body = ?, deleteAt = ?, statusCode = ?, statusMessage = ?, headers = ?, etag = ?, cacheControlDirectives = ?, cachedAt = ?, staleAt = ? WHERE id = ? `) this.#insertValueQuery = this.#db.prepare(` INSERT INTO cacheInterceptorV${VERSION} ( url, method, body, deleteAt, statusCode, statusMessage, headers, etag, cacheControlDirectives, vary, cachedAt, staleAt ) VALUES (?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?) `) this.#deleteByUrlQuery = this.#db.prepare( `DELETE FROM cacheInterceptorV${VERSION} WHERE url = ?` ) this.#countEntriesQuery = this.#db.prepare( `SELECT COUNT(*) AS total FROM cacheInterceptorV${VERSION}` ) this.#deleteExpiredValuesQuery = this.#db.prepare( `DELETE FROM cacheInterceptorV${VERSION} WHERE deleteAt <= ?` ) this.#deleteOldValuesQuery = this.#maxCount === Infinity ? null : this.#db.prepare(` DELETE FROM cacheInterceptorV${VERSION} WHERE id IN ( SELECT id FROM cacheInterceptorV${VERSION} ORDER BY cachedAt ASC LIMIT ? ) `) } close () { this.#db.close() } /** * @param {import('../../types/cache-interceptor.d.ts').default.CacheKey} key * @returns {(import('../../types/cache-interceptor.d.ts').default.GetResult & { body?: Buffer }) | undefined} */ get (key) { assertCacheKey(key) const value = this.#findValue(key) return value ? { body: value.body ? Buffer.from(value.body.buffer, value.body.byteOffset, value.body.byteLength) : undefined, statusCode: value.statusCode, statusMessage: value.statusMessage, headers: value.headers ? JSON.parse(value.headers) : undefined, etag: value.etag ? value.etag : undefined, vary: value.vary ? JSON.parse(value.vary) : undefined, cacheControlDirectives: value.cacheControlDirectives ? JSON.parse(value.cacheControlDirectives) : undefined, cachedAt: value.cachedAt, staleAt: value.staleAt, deleteAt: value.deleteAt } : undefined } /** * @param {import('../../types/cache-interceptor.d.ts').default.CacheKey} key * @param {import('../../types/cache-interceptor.d.ts').default.CacheValue & { body: null | Buffer | Array}} value */ set (key, value) { assertCacheKey(key) const url = this.#makeValueUrl(key) const body = Array.isArray(value.body) ? Buffer.concat(value.body) : value.body const size = body?.byteLength if (size && size > this.#maxEntrySize) { return } const existingValue = this.#findValue(key, true) if (existingValue) { // Updating an existing response, let's overwrite it this.#updateValueQuery.run( body, value.deleteAt, value.statusCode, value.statusMessage, value.headers ? JSON.stringify(value.headers) : null, value.etag ? value.etag : null, value.cacheControlDirectives ? JSON.stringify(value.cacheControlDirectives) : null, value.cachedAt, value.staleAt, existingValue.id ) } else { // New response, let's insert it this.#insertValueQuery.run( url, key.method, body, value.deleteAt, value.statusCode, value.statusMessage, value.headers ? JSON.stringify(value.headers) : null, value.etag ? value.etag : null, value.cacheControlDirectives ? JSON.stringify(value.cacheControlDirectives) : null, value.vary ? JSON.stringify(value.vary) : null, value.cachedAt, value.staleAt ) this.#prune() } } /** * @param {import('../../types/cache-interceptor.d.ts').default.CacheKey} key * @param {import('../../types/cache-interceptor.d.ts').default.CacheValue} value * @returns {Writable | undefined} */ createWriteStream (key, value) { assertCacheKey(key) assertCacheValue(value) let size = 0 /** * @type {Buffer[] | null} */ const body = [] const store = this return new Writable({ decodeStrings: true, write (chunk, encoding, callback) { size += chunk.byteLength if (size < store.#maxEntrySize) { body.push(chunk) } else { this.destroy() } callback() }, final (callback) { store.set(key, { ...value, body }) callback() } }) } /** * @param {import('../../types/cache-interceptor.d.ts').default.CacheKey} key */ delete (key) { if (typeof key !== 'object') { throw new TypeError(`expected key to be object, got ${typeof key}`) } this.#deleteByUrlQuery.run(this.#makeValueUrl(key)) } #prune () { if (Number.isFinite(this.#maxCount) && this.size <= this.#maxCount) { return 0 } { const removed = this.#deleteExpiredValuesQuery.run(Date.now()).changes if (removed) { return removed } } { const removed = this.#deleteOldValuesQuery?.run(Math.max(Math.floor(this.#maxCount * 0.1), 1)).changes if (removed) { return removed } } return 0 } /** * Counts the number of rows in the cache * @returns {Number} */ get size () { const { total } = this.#countEntriesQuery.get() return total } /** * @param {import('../../types/cache-interceptor.d.ts').default.CacheKey} key * @returns {string} */ #makeValueUrl (key) { return `${key.origin}/${key.path}` } /** * @param {import('../../types/cache-interceptor.d.ts').default.CacheKey} key * @param {boolean} [canBeExpired=false] * @returns {SqliteStoreValue | undefined} */ #findValue (key, canBeExpired = false) { const url = this.#makeValueUrl(key) const { headers, method } = key /** * @type {SqliteStoreValue[]} */ const values = this.#getValuesQuery.all(url, method) if (values.length === 0) { return undefined } const now = Date.now() for (const value of values) { if (now >= value.deleteAt && !canBeExpired) { continue } let matches = true if (value.vary) { const vary = JSON.parse(value.vary) for (const header in vary) { if (!headerValueEquals(headers[header], vary[header])) { matches = false break } } } if (matches) { return value } } return undefined } } /** * @param {string|string[]|null|undefined} lhs * @param {string|string[]|null|undefined} rhs * @returns {boolean} */ function headerValueEquals (lhs, rhs) { if (lhs == null && rhs == null) { return true } if ((lhs == null && rhs != null) || (lhs != null && rhs == null)) { return false } if (Array.isArray(lhs) && Array.isArray(rhs)) { if (lhs.length !== rhs.length) { return false } for (let i = 0; i < lhs.length; i++) { if (lhs[i] !== rhs[i]) { return false } } return true } return lhs === rhs } /***/ }), /***/ 59136: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const net = __nccwpck_require__(77030) const assert = __nccwpck_require__(34589) const util = __nccwpck_require__(3440) const { InvalidArgumentError } = __nccwpck_require__(68707) let tls // include tls conditionally since it is not always available // TODO: session re-use does not wait for the first // connection to resolve the session and might therefore // resolve the same servername multiple times even when // re-use is enabled. const SessionCache = class WeakSessionCache { constructor (maxCachedSessions) { this._maxCachedSessions = maxCachedSessions this._sessionCache = new Map() this._sessionRegistry = new FinalizationRegistry((key) => { if (this._sessionCache.size < this._maxCachedSessions) { return } const ref = this._sessionCache.get(key) if (ref !== undefined && ref.deref() === undefined) { this._sessionCache.delete(key) } }) } get (sessionKey) { const ref = this._sessionCache.get(sessionKey) return ref ? ref.deref() : null } set (sessionKey, session) { if (this._maxCachedSessions === 0) { return } if (this._sessionCache.has(sessionKey)) { this._sessionCache.delete(sessionKey) } else if (this._sessionCache.size >= this._maxCachedSessions) { for (const [key, ref] of this._sessionCache) { if (ref.deref() === undefined) { this._sessionCache.delete(key) return } } const oldest = this._sessionCache.keys().next() if (!oldest.done) { this._sessionCache.delete(oldest.value) } } this._sessionCache.set(sessionKey, new WeakRef(session)) this._sessionRegistry.register(session, sessionKey) } } function buildConnector ({ allowH2, useH2c, maxCachedSessions, socketPath, timeout, session: customSession, ...opts }) { if (maxCachedSessions != null && (!Number.isInteger(maxCachedSessions) || maxCachedSessions < 0)) { throw new InvalidArgumentError('maxCachedSessions must be a positive integer or zero') } const options = { path: socketPath, ...opts } const sessionCache = new SessionCache(maxCachedSessions == null ? 100 : maxCachedSessions) timeout = timeout == null ? 10e3 : timeout allowH2 = allowH2 != null ? allowH2 : false return function connect ({ hostname, host, protocol, port, servername, localAddress, httpSocket }, callback) { let socket if (protocol === 'https:') { if (!tls) { tls = __nccwpck_require__(41692) } servername = servername || options.servername || util.getServerName(host) || null const sessionKey = servername || hostname assert(sessionKey) const session = customSession || sessionCache.get(sessionKey) || null port = port || 443 socket = tls.connect({ highWaterMark: 16384, // TLS in node can't have bigger HWM anyway... ...options, servername, session, localAddress, ALPNProtocols: allowH2 ? ['http/1.1', 'h2'] : ['http/1.1'], socket: httpSocket, // upgrade socket connection port, host: hostname }) socket .on('session', function (session) { // TODO (fix): Can a session become invalid once established? Don't think so? sessionCache.set(sessionKey, session) }) } else { assert(!httpSocket, 'httpSocket can only be sent on TLS update') port = port || 80 socket = net.connect({ highWaterMark: 64 * 1024, // Same as nodejs fs streams. ...options, localAddress, port, host: hostname }) if (useH2c === true) { socket.alpnProtocol = 'h2' } } // Set TCP keep alive options on the socket here instead of in connect() for the case of assigning the socket if (options.keepAlive == null || options.keepAlive) { const keepAliveInitialDelay = options.keepAliveInitialDelay === undefined ? 60e3 : options.keepAliveInitialDelay socket.setKeepAlive(true, keepAliveInitialDelay) } const clearConnectTimeout = util.setupConnectTimeout(new WeakRef(socket), { timeout, hostname, port }) socket .setNoDelay(true) .once(protocol === 'https:' ? 'secureConnect' : 'connect', function () { queueMicrotask(clearConnectTimeout) if (callback) { const cb = callback callback = null cb(null, this) } }) .on('error', function (err) { queueMicrotask(clearConnectTimeout) if (callback) { const cb = callback callback = null cb(err) } }) return socket } } module.exports = buildConnector /***/ }), /***/ 10735: /***/ ((module) => { "use strict"; /** * @see https://developer.mozilla.org/docs/Web/HTTP/Headers */ const wellknownHeaderNames = /** @type {const} */ ([ 'Accept', 'Accept-Encoding', 'Accept-Language', 'Accept-Ranges', 'Access-Control-Allow-Credentials', 'Access-Control-Allow-Headers', 'Access-Control-Allow-Methods', 'Access-Control-Allow-Origin', 'Access-Control-Expose-Headers', 'Access-Control-Max-Age', 'Access-Control-Request-Headers', 'Access-Control-Request-Method', 'Age', 'Allow', 'Alt-Svc', 'Alt-Used', 'Authorization', 'Cache-Control', 'Clear-Site-Data', 'Connection', 'Content-Disposition', 'Content-Encoding', 'Content-Language', 'Content-Length', 'Content-Location', 'Content-Range', 'Content-Security-Policy', 'Content-Security-Policy-Report-Only', 'Content-Type', 'Cookie', 'Cross-Origin-Embedder-Policy', 'Cross-Origin-Opener-Policy', 'Cross-Origin-Resource-Policy', 'Date', 'Device-Memory', 'Downlink', 'ECT', 'ETag', 'Expect', 'Expect-CT', 'Expires', 'Forwarded', 'From', 'Host', 'If-Match', 'If-Modified-Since', 'If-None-Match', 'If-Range', 'If-Unmodified-Since', 'Keep-Alive', 'Last-Modified', 'Link', 'Location', 'Max-Forwards', 'Origin', 'Permissions-Policy', 'Pragma', 'Proxy-Authenticate', 'Proxy-Authorization', 'RTT', 'Range', 'Referer', 'Referrer-Policy', 'Refresh', 'Retry-After', 'Sec-WebSocket-Accept', 'Sec-WebSocket-Extensions', 'Sec-WebSocket-Key', 'Sec-WebSocket-Protocol', 'Sec-WebSocket-Version', 'Server', 'Server-Timing', 'Service-Worker-Allowed', 'Service-Worker-Navigation-Preload', 'Set-Cookie', 'SourceMap', 'Strict-Transport-Security', 'Supports-Loading-Mode', 'TE', 'Timing-Allow-Origin', 'Trailer', 'Transfer-Encoding', 'Upgrade', 'Upgrade-Insecure-Requests', 'User-Agent', 'Vary', 'Via', 'WWW-Authenticate', 'X-Content-Type-Options', 'X-DNS-Prefetch-Control', 'X-Frame-Options', 'X-Permitted-Cross-Domain-Policies', 'X-Powered-By', 'X-Requested-With', 'X-XSS-Protection' ]) /** @type {Record, string>} */ const headerNameLowerCasedRecord = {} // Note: object prototypes should not be able to be referenced. e.g. `Object#hasOwnProperty`. Object.setPrototypeOf(headerNameLowerCasedRecord, null) /** * @type {Record, Buffer>} */ const wellknownHeaderNameBuffers = {} // Note: object prototypes should not be able to be referenced. e.g. `Object#hasOwnProperty`. Object.setPrototypeOf(wellknownHeaderNameBuffers, null) /** * @param {string} header Lowercased header * @returns {Buffer} */ function getHeaderNameAsBuffer (header) { let buffer = wellknownHeaderNameBuffers[header] if (buffer === undefined) { buffer = Buffer.from(header) } return buffer } for (let i = 0; i < wellknownHeaderNames.length; ++i) { const key = wellknownHeaderNames[i] const lowerCasedKey = key.toLowerCase() headerNameLowerCasedRecord[key] = headerNameLowerCasedRecord[lowerCasedKey] = lowerCasedKey } module.exports = { wellknownHeaderNames, headerNameLowerCasedRecord, getHeaderNameAsBuffer } /***/ }), /***/ 42414: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const diagnosticsChannel = __nccwpck_require__(53053) const util = __nccwpck_require__(57975) const undiciDebugLog = util.debuglog('undici') const fetchDebuglog = util.debuglog('fetch') const websocketDebuglog = util.debuglog('websocket') const channels = { // Client beforeConnect: diagnosticsChannel.channel('undici:client:beforeConnect'), connected: diagnosticsChannel.channel('undici:client:connected'), connectError: diagnosticsChannel.channel('undici:client:connectError'), sendHeaders: diagnosticsChannel.channel('undici:client:sendHeaders'), // Request create: diagnosticsChannel.channel('undici:request:create'), bodySent: diagnosticsChannel.channel('undici:request:bodySent'), bodyChunkSent: diagnosticsChannel.channel('undici:request:bodyChunkSent'), bodyChunkReceived: diagnosticsChannel.channel('undici:request:bodyChunkReceived'), headers: diagnosticsChannel.channel('undici:request:headers'), trailers: diagnosticsChannel.channel('undici:request:trailers'), error: diagnosticsChannel.channel('undici:request:error'), // WebSocket open: diagnosticsChannel.channel('undici:websocket:open'), close: diagnosticsChannel.channel('undici:websocket:close'), socketError: diagnosticsChannel.channel('undici:websocket:socket_error'), ping: diagnosticsChannel.channel('undici:websocket:ping'), pong: diagnosticsChannel.channel('undici:websocket:pong'), // ProxyAgent proxyConnected: diagnosticsChannel.channel('undici:proxy:connected') } let isTrackingClientEvents = false function trackClientEvents (debugLog = undiciDebugLog) { if (isTrackingClientEvents) { return } // Check if any of the channels already have subscribers to prevent duplicate subscriptions // This can happen when both Node.js built-in undici and undici as a dependency are present if (channels.beforeConnect.hasSubscribers || channels.connected.hasSubscribers || channels.connectError.hasSubscribers || channels.sendHeaders.hasSubscribers) { isTrackingClientEvents = true return } isTrackingClientEvents = true diagnosticsChannel.subscribe('undici:client:beforeConnect', evt => { const { connectParams: { version, protocol, port, host } } = evt debugLog( 'connecting to %s%s using %s%s', host, port ? `:${port}` : '', protocol, version ) }) diagnosticsChannel.subscribe('undici:client:connected', evt => { const { connectParams: { version, protocol, port, host } } = evt debugLog( 'connected to %s%s using %s%s', host, port ? `:${port}` : '', protocol, version ) }) diagnosticsChannel.subscribe('undici:client:connectError', evt => { const { connectParams: { version, protocol, port, host }, error } = evt debugLog( 'connection to %s%s using %s%s errored - %s', host, port ? `:${port}` : '', protocol, version, error.message ) }) diagnosticsChannel.subscribe('undici:client:sendHeaders', evt => { const { request: { method, path, origin } } = evt debugLog('sending request to %s %s%s', method, origin, path) }) } let isTrackingRequestEvents = false function trackRequestEvents (debugLog = undiciDebugLog) { if (isTrackingRequestEvents) { return } // Check if any of the channels already have subscribers to prevent duplicate subscriptions // This can happen when both Node.js built-in undici and undici as a dependency are present if (channels.headers.hasSubscribers || channels.trailers.hasSubscribers || channels.error.hasSubscribers) { isTrackingRequestEvents = true return } isTrackingRequestEvents = true diagnosticsChannel.subscribe('undici:request:headers', evt => { const { request: { method, path, origin }, response: { statusCode } } = evt debugLog( 'received response to %s %s%s - HTTP %d', method, origin, path, statusCode ) }) diagnosticsChannel.subscribe('undici:request:trailers', evt => { const { request: { method, path, origin } } = evt debugLog('trailers received from %s %s%s', method, origin, path) }) diagnosticsChannel.subscribe('undici:request:error', evt => { const { request: { method, path, origin }, error } = evt debugLog( 'request to %s %s%s errored - %s', method, origin, path, error.message ) }) } let isTrackingWebSocketEvents = false function trackWebSocketEvents (debugLog = websocketDebuglog) { if (isTrackingWebSocketEvents) { return } // Check if any of the channels already have subscribers to prevent duplicate subscriptions // This can happen when both Node.js built-in undici and undici as a dependency are present if (channels.open.hasSubscribers || channels.close.hasSubscribers || channels.socketError.hasSubscribers || channels.ping.hasSubscribers || channels.pong.hasSubscribers) { isTrackingWebSocketEvents = true return } isTrackingWebSocketEvents = true diagnosticsChannel.subscribe('undici:websocket:open', evt => { if (evt.address != null) { const { address, port } = evt.address debugLog('connection opened %s%s', address, port ? `:${port}` : '') } else { debugLog('connection opened') } }) diagnosticsChannel.subscribe('undici:websocket:close', evt => { const { websocket, code, reason } = evt debugLog( 'closed connection to %s - %s %s', websocket.url, code, reason ) }) diagnosticsChannel.subscribe('undici:websocket:socket_error', err => { debugLog('connection errored - %s', err.message) }) diagnosticsChannel.subscribe('undici:websocket:ping', evt => { debugLog('ping received') }) diagnosticsChannel.subscribe('undici:websocket:pong', evt => { debugLog('pong received') }) } if (undiciDebugLog.enabled || fetchDebuglog.enabled) { trackClientEvents(fetchDebuglog.enabled ? fetchDebuglog : undiciDebugLog) trackRequestEvents(fetchDebuglog.enabled ? fetchDebuglog : undiciDebugLog) } if (websocketDebuglog.enabled) { trackClientEvents(undiciDebugLog.enabled ? undiciDebugLog : websocketDebuglog) trackWebSocketEvents(websocketDebuglog) } module.exports = { channels } /***/ }), /***/ 68707: /***/ ((module) => { "use strict"; const kUndiciError = Symbol.for('undici.error.UND_ERR') class UndiciError extends Error { constructor (message, options) { super(message, options) this.name = 'UndiciError' this.code = 'UND_ERR' } static [Symbol.hasInstance] (instance) { return instance && instance[kUndiciError] === true } get [kUndiciError] () { return true } } const kConnectTimeoutError = Symbol.for('undici.error.UND_ERR_CONNECT_TIMEOUT') class ConnectTimeoutError extends UndiciError { constructor (message) { super(message) this.name = 'ConnectTimeoutError' this.message = message || 'Connect Timeout Error' this.code = 'UND_ERR_CONNECT_TIMEOUT' } static [Symbol.hasInstance] (instance) { return instance && instance[kConnectTimeoutError] === true } get [kConnectTimeoutError] () { return true } } const kHeadersTimeoutError = Symbol.for('undici.error.UND_ERR_HEADERS_TIMEOUT') class HeadersTimeoutError extends UndiciError { constructor (message) { super(message) this.name = 'HeadersTimeoutError' this.message = message || 'Headers Timeout Error' this.code = 'UND_ERR_HEADERS_TIMEOUT' } static [Symbol.hasInstance] (instance) { return instance && instance[kHeadersTimeoutError] === true } get [kHeadersTimeoutError] () { return true } } const kHeadersOverflowError = Symbol.for('undici.error.UND_ERR_HEADERS_OVERFLOW') class HeadersOverflowError extends UndiciError { constructor (message) { super(message) this.name = 'HeadersOverflowError' this.message = message || 'Headers Overflow Error' this.code = 'UND_ERR_HEADERS_OVERFLOW' } static [Symbol.hasInstance] (instance) { return instance && instance[kHeadersOverflowError] === true } get [kHeadersOverflowError] () { return true } } const kBodyTimeoutError = Symbol.for('undici.error.UND_ERR_BODY_TIMEOUT') class BodyTimeoutError extends UndiciError { constructor (message) { super(message) this.name = 'BodyTimeoutError' this.message = message || 'Body Timeout Error' this.code = 'UND_ERR_BODY_TIMEOUT' } static [Symbol.hasInstance] (instance) { return instance && instance[kBodyTimeoutError] === true } get [kBodyTimeoutError] () { return true } } const kInvalidArgumentError = Symbol.for('undici.error.UND_ERR_INVALID_ARG') class InvalidArgumentError extends UndiciError { constructor (message) { super(message) this.name = 'InvalidArgumentError' this.message = message || 'Invalid Argument Error' this.code = 'UND_ERR_INVALID_ARG' } static [Symbol.hasInstance] (instance) { return instance && instance[kInvalidArgumentError] === true } get [kInvalidArgumentError] () { return true } } const kInvalidReturnValueError = Symbol.for('undici.error.UND_ERR_INVALID_RETURN_VALUE') class InvalidReturnValueError extends UndiciError { constructor (message) { super(message) this.name = 'InvalidReturnValueError' this.message = message || 'Invalid Return Value Error' this.code = 'UND_ERR_INVALID_RETURN_VALUE' } static [Symbol.hasInstance] (instance) { return instance && instance[kInvalidReturnValueError] === true } get [kInvalidReturnValueError] () { return true } } const kAbortError = Symbol.for('undici.error.UND_ERR_ABORT') class AbortError extends UndiciError { constructor (message) { super(message) this.name = 'AbortError' this.message = message || 'The operation was aborted' this.code = 'UND_ERR_ABORT' } static [Symbol.hasInstance] (instance) { return instance && instance[kAbortError] === true } get [kAbortError] () { return true } } const kRequestAbortedError = Symbol.for('undici.error.UND_ERR_ABORTED') class RequestAbortedError extends AbortError { constructor (message) { super(message) this.name = 'AbortError' this.message = message || 'Request aborted' this.code = 'UND_ERR_ABORTED' } static [Symbol.hasInstance] (instance) { return instance && instance[kRequestAbortedError] === true } get [kRequestAbortedError] () { return true } } const kInformationalError = Symbol.for('undici.error.UND_ERR_INFO') class InformationalError extends UndiciError { constructor (message) { super(message) this.name = 'InformationalError' this.message = message || 'Request information' this.code = 'UND_ERR_INFO' } static [Symbol.hasInstance] (instance) { return instance && instance[kInformationalError] === true } get [kInformationalError] () { return true } } const kRequestContentLengthMismatchError = Symbol.for('undici.error.UND_ERR_REQ_CONTENT_LENGTH_MISMATCH') class RequestContentLengthMismatchError extends UndiciError { constructor (message) { super(message) this.name = 'RequestContentLengthMismatchError' this.message = message || 'Request body length does not match content-length header' this.code = 'UND_ERR_REQ_CONTENT_LENGTH_MISMATCH' } static [Symbol.hasInstance] (instance) { return instance && instance[kRequestContentLengthMismatchError] === true } get [kRequestContentLengthMismatchError] () { return true } } const kResponseContentLengthMismatchError = Symbol.for('undici.error.UND_ERR_RES_CONTENT_LENGTH_MISMATCH') class ResponseContentLengthMismatchError extends UndiciError { constructor (message) { super(message) this.name = 'ResponseContentLengthMismatchError' this.message = message || 'Response body length does not match content-length header' this.code = 'UND_ERR_RES_CONTENT_LENGTH_MISMATCH' } static [Symbol.hasInstance] (instance) { return instance && instance[kResponseContentLengthMismatchError] === true } get [kResponseContentLengthMismatchError] () { return true } } const kClientDestroyedError = Symbol.for('undici.error.UND_ERR_DESTROYED') class ClientDestroyedError extends UndiciError { constructor (message) { super(message) this.name = 'ClientDestroyedError' this.message = message || 'The client is destroyed' this.code = 'UND_ERR_DESTROYED' } static [Symbol.hasInstance] (instance) { return instance && instance[kClientDestroyedError] === true } get [kClientDestroyedError] () { return true } } const kClientClosedError = Symbol.for('undici.error.UND_ERR_CLOSED') class ClientClosedError extends UndiciError { constructor (message) { super(message) this.name = 'ClientClosedError' this.message = message || 'The client is closed' this.code = 'UND_ERR_CLOSED' } static [Symbol.hasInstance] (instance) { return instance && instance[kClientClosedError] === true } get [kClientClosedError] () { return true } } const kSocketError = Symbol.for('undici.error.UND_ERR_SOCKET') class SocketError extends UndiciError { constructor (message, socket) { super(message) this.name = 'SocketError' this.message = message || 'Socket error' this.code = 'UND_ERR_SOCKET' this.socket = socket } static [Symbol.hasInstance] (instance) { return instance && instance[kSocketError] === true } get [kSocketError] () { return true } } const kNotSupportedError = Symbol.for('undici.error.UND_ERR_NOT_SUPPORTED') class NotSupportedError extends UndiciError { constructor (message) { super(message) this.name = 'NotSupportedError' this.message = message || 'Not supported error' this.code = 'UND_ERR_NOT_SUPPORTED' } static [Symbol.hasInstance] (instance) { return instance && instance[kNotSupportedError] === true } get [kNotSupportedError] () { return true } } const kBalancedPoolMissingUpstreamError = Symbol.for('undici.error.UND_ERR_BPL_MISSING_UPSTREAM') class BalancedPoolMissingUpstreamError extends UndiciError { constructor (message) { super(message) this.name = 'MissingUpstreamError' this.message = message || 'No upstream has been added to the BalancedPool' this.code = 'UND_ERR_BPL_MISSING_UPSTREAM' } static [Symbol.hasInstance] (instance) { return instance && instance[kBalancedPoolMissingUpstreamError] === true } get [kBalancedPoolMissingUpstreamError] () { return true } } const kHTTPParserError = Symbol.for('undici.error.UND_ERR_HTTP_PARSER') class HTTPParserError extends Error { constructor (message, code, data) { super(message) this.name = 'HTTPParserError' this.code = code ? `HPE_${code}` : undefined this.data = data ? data.toString() : undefined } static [Symbol.hasInstance] (instance) { return instance && instance[kHTTPParserError] === true } get [kHTTPParserError] () { return true } } const kResponseExceededMaxSizeError = Symbol.for('undici.error.UND_ERR_RES_EXCEEDED_MAX_SIZE') class ResponseExceededMaxSizeError extends UndiciError { constructor (message) { super(message) this.name = 'ResponseExceededMaxSizeError' this.message = message || 'Response content exceeded max size' this.code = 'UND_ERR_RES_EXCEEDED_MAX_SIZE' } static [Symbol.hasInstance] (instance) { return instance && instance[kResponseExceededMaxSizeError] === true } get [kResponseExceededMaxSizeError] () { return true } } const kRequestRetryError = Symbol.for('undici.error.UND_ERR_REQ_RETRY') class RequestRetryError extends UndiciError { constructor (message, code, { headers, data }) { super(message) this.name = 'RequestRetryError' this.message = message || 'Request retry error' this.code = 'UND_ERR_REQ_RETRY' this.statusCode = code this.data = data this.headers = headers } static [Symbol.hasInstance] (instance) { return instance && instance[kRequestRetryError] === true } get [kRequestRetryError] () { return true } } const kResponseError = Symbol.for('undici.error.UND_ERR_RESPONSE') class ResponseError extends UndiciError { constructor (message, code, { headers, body }) { super(message) this.name = 'ResponseError' this.message = message || 'Response error' this.code = 'UND_ERR_RESPONSE' this.statusCode = code this.body = body this.headers = headers } static [Symbol.hasInstance] (instance) { return instance && instance[kResponseError] === true } get [kResponseError] () { return true } } const kSecureProxyConnectionError = Symbol.for('undici.error.UND_ERR_PRX_TLS') class SecureProxyConnectionError extends UndiciError { constructor (cause, message, options = {}) { super(message, { cause, ...options }) this.name = 'SecureProxyConnectionError' this.message = message || 'Secure Proxy Connection failed' this.code = 'UND_ERR_PRX_TLS' this.cause = cause } static [Symbol.hasInstance] (instance) { return instance && instance[kSecureProxyConnectionError] === true } get [kSecureProxyConnectionError] () { return true } } const kMaxOriginsReachedError = Symbol.for('undici.error.UND_ERR_MAX_ORIGINS_REACHED') class MaxOriginsReachedError extends UndiciError { constructor (message) { super(message) this.name = 'MaxOriginsReachedError' this.message = message || 'Maximum allowed origins reached' this.code = 'UND_ERR_MAX_ORIGINS_REACHED' } static [Symbol.hasInstance] (instance) { return instance && instance[kMaxOriginsReachedError] === true } get [kMaxOriginsReachedError] () { return true } } class Socks5ProxyError extends UndiciError { constructor (message, code) { super(message) this.name = 'Socks5ProxyError' this.message = message || 'SOCKS5 proxy error' this.code = code || 'UND_ERR_SOCKS5' } } const kMessageSizeExceededError = Symbol.for('undici.error.UND_ERR_WS_MESSAGE_SIZE_EXCEEDED') class MessageSizeExceededError extends UndiciError { constructor (message) { super(message) this.name = 'MessageSizeExceededError' this.message = message || 'Max decompressed message size exceeded' this.code = 'UND_ERR_WS_MESSAGE_SIZE_EXCEEDED' } static [Symbol.hasInstance] (instance) { return instance && instance[kMessageSizeExceededError] === true } get [kMessageSizeExceededError] () { return true } } module.exports = { AbortError, HTTPParserError, UndiciError, HeadersTimeoutError, HeadersOverflowError, BodyTimeoutError, RequestContentLengthMismatchError, ConnectTimeoutError, InvalidArgumentError, InvalidReturnValueError, RequestAbortedError, ClientDestroyedError, ClientClosedError, InformationalError, SocketError, NotSupportedError, ResponseContentLengthMismatchError, BalancedPoolMissingUpstreamError, ResponseExceededMaxSizeError, RequestRetryError, ResponseError, SecureProxyConnectionError, MaxOriginsReachedError, Socks5ProxyError, MessageSizeExceededError } /***/ }), /***/ 44655: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { InvalidArgumentError, NotSupportedError } = __nccwpck_require__(68707) const assert = __nccwpck_require__(34589) const { isValidHTTPToken, isValidHeaderValue, isStream, destroy, isBuffer, isFormDataLike, isIterable, hasSafeIterator, isBlobLike, serializePathWithQuery, assertRequestHandler, getServerName, normalizedMethodRecords, getProtocolFromUrlString } = __nccwpck_require__(3440) const { channels } = __nccwpck_require__(42414) const { headerNameLowerCasedRecord } = __nccwpck_require__(10735) // Verifies that a given path is valid does not contain control chars \x00 to \x20 const invalidPathRegex = /[^\u0021-\u00ff]/ function isValidContentLengthHeaderValue (val) { if (typeof val !== 'string' || val.length === 0) { return false } for (let i = 0; i < val.length; i++) { const charCode = val.charCodeAt(i) if (charCode < 48 || charCode > 57) { return false } } return true } const kHandler = Symbol('handler') class Request { constructor (origin, { path, method, body, headers, query, idempotent, blocking, upgrade, headersTimeout, bodyTimeout, reset, expectContinue, servername, throwOnError, maxRedirections, typeOfService }, handler) { if (typeof path !== 'string') { throw new InvalidArgumentError('path must be a string') } else if ( path[0] !== '/' && !(path.startsWith('http://') || path.startsWith('https://')) && method !== 'CONNECT' ) { throw new InvalidArgumentError('path must be an absolute URL or start with a slash') } else if (invalidPathRegex.test(path)) { throw new InvalidArgumentError('invalid request path') } if (typeof method !== 'string') { throw new InvalidArgumentError('method must be a string') } else if (normalizedMethodRecords[method] === undefined && !isValidHTTPToken(method)) { throw new InvalidArgumentError('invalid request method') } if (upgrade && typeof upgrade !== 'string') { throw new InvalidArgumentError('upgrade must be a string') } if (upgrade && !isValidHeaderValue(upgrade)) { throw new InvalidArgumentError('invalid upgrade header') } if (headersTimeout != null && (!Number.isFinite(headersTimeout) || headersTimeout < 0)) { throw new InvalidArgumentError('invalid headersTimeout') } if (bodyTimeout != null && (!Number.isFinite(bodyTimeout) || bodyTimeout < 0)) { throw new InvalidArgumentError('invalid bodyTimeout') } if (reset != null && typeof reset !== 'boolean') { throw new InvalidArgumentError('invalid reset') } if (expectContinue != null && typeof expectContinue !== 'boolean') { throw new InvalidArgumentError('invalid expectContinue') } if (throwOnError != null) { throw new InvalidArgumentError('invalid throwOnError') } if (maxRedirections != null && maxRedirections !== 0) { throw new InvalidArgumentError('maxRedirections is not supported, use the redirect interceptor') } if (typeOfService != null && (!Number.isInteger(typeOfService) || typeOfService < 0 || typeOfService > 255)) { throw new InvalidArgumentError('typeOfService must be an integer between 0 and 255') } this.headersTimeout = headersTimeout this.bodyTimeout = bodyTimeout this.method = method this.typeOfService = typeOfService ?? 0 this.abort = null if (body == null) { this.body = null } else if (isStream(body)) { this.body = body const rState = this.body._readableState if (!rState || !rState.autoDestroy) { this.endHandler = function autoDestroy () { destroy(this) } this.body.on('end', this.endHandler) } this.errorHandler = err => { if (this.abort) { this.abort(err) } else { this.error = err } } this.body.on('error', this.errorHandler) } else if (isBuffer(body)) { this.body = body.byteLength ? body : null } else if (ArrayBuffer.isView(body)) { this.body = body.buffer.byteLength ? Buffer.from(body.buffer, body.byteOffset, body.byteLength) : null } else if (body instanceof ArrayBuffer) { this.body = body.byteLength ? Buffer.from(body) : null } else if (typeof body === 'string') { this.body = body.length ? Buffer.from(body) : null } else if (isFormDataLike(body) || isIterable(body) || isBlobLike(body)) { this.body = body } else { throw new InvalidArgumentError('body must be a string, a Buffer, a Readable stream, an iterable, or an async iterable') } this.completed = false this.aborted = false this.upgrade = upgrade || null this.path = query ? serializePathWithQuery(path, query) : path // TODO: shall we maybe standardize it to an URL object? this.origin = origin this.protocol = getProtocolFromUrlString(origin) this.idempotent = idempotent == null ? method === 'HEAD' || method === 'GET' : idempotent this.blocking = blocking ?? this.method !== 'HEAD' this.reset = reset == null ? null : reset this.host = null this.contentLength = null this.contentType = null this.headers = [] // Only for H2 this.expectContinue = expectContinue != null ? expectContinue : false if (Array.isArray(headers)) { if (headers.length % 2 !== 0) { throw new InvalidArgumentError('headers array must be even') } for (let i = 0; i < headers.length; i += 2) { processHeader(this, headers[i], headers[i + 1]) } } else if (headers && typeof headers === 'object') { if (hasSafeIterator(headers)) { for (const header of headers) { if (!Array.isArray(header) || header.length !== 2) { throw new InvalidArgumentError('headers must be in key-value pair format') } processHeader(this, header[0], header[1]) } } else { const keys = Object.keys(headers) for (let i = 0; i < keys.length; ++i) { processHeader(this, keys[i], headers[keys[i]]) } } } else if (headers != null) { throw new InvalidArgumentError('headers must be an object or an array') } assertRequestHandler(handler, method, upgrade) this.servername = servername || getServerName(this.host) || null this[kHandler] = handler if (channels.create.hasSubscribers) { channels.create.publish({ request: this }) } } onBodySent (chunk) { if (channels.bodyChunkSent.hasSubscribers) { channels.bodyChunkSent.publish({ request: this, chunk }) } if (this[kHandler].onBodySent) { try { return this[kHandler].onBodySent(chunk) } catch (err) { this.abort(err) } } } onRequestSent () { if (channels.bodySent.hasSubscribers) { channels.bodySent.publish({ request: this }) } if (this[kHandler].onRequestSent) { try { return this[kHandler].onRequestSent() } catch (err) { this.abort(err) } } } onConnect (abort) { assert(!this.aborted) assert(!this.completed) if (this.error) { abort(this.error) } else { this.abort = abort return this[kHandler].onConnect(abort) } } onResponseStarted () { return this[kHandler].onResponseStarted?.() } onHeaders (statusCode, headers, resume, statusText) { assert(!this.aborted) assert(!this.completed) if (channels.headers.hasSubscribers) { channels.headers.publish({ request: this, response: { statusCode, headers, statusText } }) } try { return this[kHandler].onHeaders(statusCode, headers, resume, statusText) } catch (err) { this.abort(err) } } onData (chunk) { assert(!this.aborted) assert(!this.completed) if (channels.bodyChunkReceived.hasSubscribers) { channels.bodyChunkReceived.publish({ request: this, chunk }) } try { return this[kHandler].onData(chunk) } catch (err) { this.abort(err) return false } } onUpgrade (statusCode, headers, socket) { assert(!this.aborted) assert(!this.completed) return this[kHandler].onUpgrade(statusCode, headers, socket) } onComplete (trailers) { this.onFinally() assert(!this.aborted) assert(!this.completed) this.completed = true if (channels.trailers.hasSubscribers) { channels.trailers.publish({ request: this, trailers }) } try { return this[kHandler].onComplete(trailers) } catch (err) { // TODO (fix): This might be a bad idea? this.onError(err) } } onError (error) { this.onFinally() if (channels.error.hasSubscribers) { channels.error.publish({ request: this, error }) } if (this.aborted) { return } this.aborted = true return this[kHandler].onError(error) } onFinally () { if (this.errorHandler) { this.body.off('error', this.errorHandler) this.errorHandler = null } if (this.endHandler) { this.body.off('end', this.endHandler) this.endHandler = null } } addHeader (key, value) { processHeader(this, key, value) return this } } function processHeader (request, key, val) { if (val && (typeof val === 'object' && !Array.isArray(val))) { throw new InvalidArgumentError(`invalid ${key} header`) } else if (val === undefined) { return } let headerName = headerNameLowerCasedRecord[key] if (headerName === undefined) { headerName = key.toLowerCase() if (headerNameLowerCasedRecord[headerName] === undefined && !isValidHTTPToken(headerName)) { throw new InvalidArgumentError('invalid header key') } } if (Array.isArray(val)) { const arr = [] for (let i = 0; i < val.length; i++) { if (typeof val[i] === 'string') { if (!isValidHeaderValue(val[i])) { throw new InvalidArgumentError(`invalid ${key} header`) } arr.push(val[i]) } else if (val[i] === null) { arr.push('') } else if (typeof val[i] === 'object') { throw new InvalidArgumentError(`invalid ${key} header`) } else { // Coerce primitives (and reject unsafe coercions such as functions // with a crafted toString/Symbol.toPrimitive). const str = `${val[i]}` if (!isValidHeaderValue(str)) { throw new InvalidArgumentError(`invalid ${key} header`) } arr.push(str) } } val = arr } else if (typeof val === 'string') { if (!isValidHeaderValue(val)) { throw new InvalidArgumentError(`invalid ${key} header`) } } else if (val === null) { val = '' } else { // Coerce primitives (and reject unsafe coercions such as functions // with a crafted toString/Symbol.toPrimitive). val = `${val}` if (!isValidHeaderValue(val)) { throw new InvalidArgumentError(`invalid ${key} header`) } } if (headerName === 'host') { if (request.host !== null) { throw new InvalidArgumentError('duplicate host header') } if (typeof val !== 'string') { throw new InvalidArgumentError('invalid host header') } // Consumed by Client request.host = val } else if (headerName === 'content-length') { if (request.contentLength !== null) { throw new InvalidArgumentError('duplicate content-length header') } if (!isValidContentLengthHeaderValue(val)) { throw new InvalidArgumentError('invalid content-length header') } request.contentLength = parseInt(val, 10) } else if (request.contentType === null && headerName === 'content-type') { request.contentType = val request.headers.push(key, val) } else if (headerName === 'transfer-encoding' || headerName === 'keep-alive' || headerName === 'upgrade') { throw new InvalidArgumentError(`invalid ${headerName} header`) } else if (headerName === 'connection') { // Per RFC 7230 Section 6.1, Connection header can contain // a comma-separated list of connection option tokens (header names) const value = typeof val === 'string' ? val : null if (value === null) { throw new InvalidArgumentError('invalid connection header') } for (const token of value.toLowerCase().split(',')) { const trimmed = token.trim() if (!isValidHTTPToken(trimmed)) { throw new InvalidArgumentError('invalid connection header') } if (trimmed === 'close') { request.reset = true } } } else if (headerName === 'expect') { throw new NotSupportedError('expect header not supported') } else { request.headers.push(key, val) } } module.exports = Request /***/ }), /***/ 18082: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { EventEmitter } = __nccwpck_require__(78474) const { Buffer } = __nccwpck_require__(4573) const { InvalidArgumentError, Socks5ProxyError } = __nccwpck_require__(68707) const { debuglog } = __nccwpck_require__(57975) const { parseAddress } = __nccwpck_require__(51732) const debug = debuglog('undici:socks5') const EMPTY_BUFFER = Buffer.alloc(0) // SOCKS5 constants const SOCKS_VERSION = 0x05 // Authentication methods const AUTH_METHODS = { NO_AUTH: 0x00, GSSAPI: 0x01, USERNAME_PASSWORD: 0x02, NO_ACCEPTABLE: 0xFF } // SOCKS5 commands const COMMANDS = { CONNECT: 0x01, BIND: 0x02, UDP_ASSOCIATE: 0x03 } // Address types const ADDRESS_TYPES = { IPV4: 0x01, DOMAIN: 0x03, IPV6: 0x04 } // Reply codes const REPLY_CODES = { SUCCEEDED: 0x00, GENERAL_FAILURE: 0x01, CONNECTION_NOT_ALLOWED: 0x02, NETWORK_UNREACHABLE: 0x03, HOST_UNREACHABLE: 0x04, CONNECTION_REFUSED: 0x05, TTL_EXPIRED: 0x06, COMMAND_NOT_SUPPORTED: 0x07, ADDRESS_TYPE_NOT_SUPPORTED: 0x08 } // State machine states const STATES = { INITIAL: 'initial', HANDSHAKING: 'handshaking', AUTHENTICATING: 'authenticating', AUTHENTICATED: 'authenticated', CONNECTING: 'connecting', CONNECTED: 'connected', ERROR: 'error', CLOSED: 'closed' } /** * SOCKS5 client implementation * Handles SOCKS5 protocol negotiation and connection establishment */ class Socks5Client extends EventEmitter { constructor (socket, options = {}) { super() if (!socket) { throw new InvalidArgumentError('socket is required') } this.socket = socket this.options = options this.state = STATES.INITIAL this.buffer = EMPTY_BUFFER this.onSocketData = this.onData.bind(this) this.onSocketError = this.onError.bind(this) this.onSocketClose = this.onClose.bind(this) // Authentication settings this.authMethods = [] if (options.username && options.password) { this.authMethods.push(AUTH_METHODS.USERNAME_PASSWORD) } this.authMethods.push(AUTH_METHODS.NO_AUTH) // Socket event handlers this.socket.on('data', this.onSocketData) this.socket.on('error', this.onSocketError) this.socket.on('close', this.onSocketClose) } /** * Handle incoming data from the socket */ onData (data) { debug('received data', data.length, 'bytes in state', this.state) this.buffer = Buffer.concat([this.buffer, data]) try { switch (this.state) { case STATES.HANDSHAKING: this.handleHandshakeResponse() break case STATES.AUTHENTICATING: this.handleAuthResponse() break case STATES.CONNECTING: this.handleConnectResponse() break } } catch (err) { this.onError(err) } } /** * Handle socket errors */ onError (err) { debug('socket error', err) this.state = STATES.ERROR this.emit('error', err) this.destroy() } /** * Handle socket close */ onClose () { debug('socket closed') this.state = STATES.CLOSED this.emit('close') } /** * Destroy the client and underlying socket */ destroy () { if (this.socket && !this.socket.destroyed) { this.socket.destroy() } } markAuthenticated () { this.state = STATES.AUTHENTICATED this.emit('authenticated') } /** * Start the SOCKS5 handshake */ handshake () { if (this.state !== STATES.INITIAL) { throw new InvalidArgumentError('Handshake already started') } debug('starting handshake with', this.authMethods.length, 'auth methods') this.state = STATES.HANDSHAKING // Build handshake request // +----+----------+----------+ // |VER | NMETHODS | METHODS | // +----+----------+----------+ // | 1 | 1 | 1 to 255 | // +----+----------+----------+ const request = Buffer.alloc(2 + this.authMethods.length) request[0] = SOCKS_VERSION request[1] = this.authMethods.length this.authMethods.forEach((method, i) => { request[2 + i] = method }) this.socket.write(request) } /** * Handle handshake response from server */ handleHandshakeResponse () { if (this.buffer.length < 2) { return // Not enough data yet } const version = this.buffer[0] const method = this.buffer[1] if (version !== SOCKS_VERSION) { throw new Socks5ProxyError(`Invalid SOCKS version: ${version}`, 'UND_ERR_SOCKS5_VERSION') } if (method === AUTH_METHODS.NO_ACCEPTABLE) { throw new Socks5ProxyError('No acceptable authentication method', 'UND_ERR_SOCKS5_AUTH_REJECTED') } this.buffer = this.buffer.subarray(2) debug('server selected auth method', method) if (method === AUTH_METHODS.NO_AUTH) { this.markAuthenticated() } else if (method === AUTH_METHODS.USERNAME_PASSWORD) { this.state = STATES.AUTHENTICATING this.sendAuthRequest() } else { throw new Socks5ProxyError(`Unsupported authentication method: ${method}`, 'UND_ERR_SOCKS5_AUTH_METHOD') } } /** * Send username/password authentication request */ sendAuthRequest () { const { username, password } = this.options if (!username || !password) { throw new InvalidArgumentError('Username and password required for authentication') } debug('sending username/password auth') // Username/Password authentication request (RFC 1929) // +----+------+----------+------+----------+ // |VER | ULEN | UNAME | PLEN | PASSWD | // +----+------+----------+------+----------+ // | 1 | 1 | 1 to 255 | 1 | 1 to 255 | // +----+------+----------+------+----------+ const usernameBuffer = Buffer.from(username) const passwordBuffer = Buffer.from(password) if (usernameBuffer.length > 255 || passwordBuffer.length > 255) { throw new InvalidArgumentError('Username or password too long') } const request = Buffer.alloc(3 + usernameBuffer.length + passwordBuffer.length) request[0] = 0x01 // Sub-negotiation version request[1] = usernameBuffer.length usernameBuffer.copy(request, 2) request[2 + usernameBuffer.length] = passwordBuffer.length passwordBuffer.copy(request, 3 + usernameBuffer.length) this.socket.write(request) } /** * Handle authentication response */ handleAuthResponse () { if (this.buffer.length < 2) { return // Not enough data yet } const version = this.buffer[0] const status = this.buffer[1] if (version !== 0x01) { throw new Socks5ProxyError(`Invalid auth sub-negotiation version: ${version}`, 'UND_ERR_SOCKS5_AUTH_VERSION') } if (status !== 0x00) { throw new Socks5ProxyError('Authentication failed', 'UND_ERR_SOCKS5_AUTH_FAILED') } this.buffer = this.buffer.subarray(2) debug('authentication successful') this.markAuthenticated() } /** * Send CONNECT command * @param {string} address - Target address (IP or domain) * @param {number} port - Target port */ connect (address, port) { if (this.state === STATES.CONNECTING || this.state === STATES.CONNECTED) { throw new InvalidArgumentError('Connection already in progress') } if (this.state !== STATES.AUTHENTICATED) { throw new InvalidArgumentError('Client must be authenticated before CONNECT') } debug('connecting to', address, port) this.state = STATES.CONNECTING const request = this.buildConnectRequest(COMMANDS.CONNECT, address, port) this.socket.write(request) } /** * Build a SOCKS5 request */ buildConnectRequest (command, address, port) { // Parse address to determine type and buffer const { type: addressType, buffer: addressBuffer } = parseAddress(address) // Build request // +----+-----+-------+------+----------+----------+ // |VER | CMD | RSV | ATYP | DST.ADDR | DST.PORT | // +----+-----+-------+------+----------+----------+ // | 1 | 1 | X'00' | 1 | Variable | 2 | // +----+-----+-------+------+----------+----------+ const request = Buffer.alloc(4 + addressBuffer.length + 2) request[0] = SOCKS_VERSION request[1] = command request[2] = 0x00 // Reserved request[3] = addressType addressBuffer.copy(request, 4) request.writeUInt16BE(port, 4 + addressBuffer.length) return request } /** * Handle CONNECT response */ handleConnectResponse () { if (this.buffer.length < 4) { return // Not enough data for header } const version = this.buffer[0] const reply = this.buffer[1] const addressType = this.buffer[3] if (version !== SOCKS_VERSION) { throw new Socks5ProxyError(`Invalid SOCKS version in reply: ${version}`, 'UND_ERR_SOCKS5_REPLY_VERSION') } // Calculate the expected response length let responseLength = 4 // VER + REP + RSV + ATYP if (addressType === ADDRESS_TYPES.IPV4) { responseLength += 4 + 2 // IPv4 + port } else if (addressType === ADDRESS_TYPES.DOMAIN) { if (this.buffer.length < 5) { return // Need domain length byte } responseLength += 1 + this.buffer[4] + 2 // length byte + domain + port } else if (addressType === ADDRESS_TYPES.IPV6) { responseLength += 16 + 2 // IPv6 + port } else { throw new Socks5ProxyError(`Invalid address type in reply: ${addressType}`, 'UND_ERR_SOCKS5_ADDR_TYPE') } if (this.buffer.length < responseLength) { return // Not enough data for full response } if (reply !== REPLY_CODES.SUCCEEDED) { const errorMessage = this.getReplyErrorMessage(reply) throw new Socks5ProxyError(`SOCKS5 connection failed: ${errorMessage}`, `UND_ERR_SOCKS5_REPLY_${reply}`) } // Parse bound address and port let boundAddress let offset = 4 if (addressType === ADDRESS_TYPES.IPV4) { boundAddress = Array.from(this.buffer.subarray(offset, offset + 4)).join('.') offset += 4 } else if (addressType === ADDRESS_TYPES.DOMAIN) { const domainLength = this.buffer[offset] offset += 1 boundAddress = this.buffer.subarray(offset, offset + domainLength).toString() offset += domainLength } else if (addressType === ADDRESS_TYPES.IPV6) { // Parse IPv6 address from 16-byte buffer const parts = [] for (let i = 0; i < 8; i++) { const value = this.buffer.readUInt16BE(offset + i * 2) parts.push(value.toString(16)) } boundAddress = parts.join(':') offset += 16 } const boundPort = this.buffer.readUInt16BE(offset) this.buffer = EMPTY_BUFFER this.state = STATES.CONNECTED this.socket.removeListener('data', this.onSocketData) debug('connected, bound address:', boundAddress, 'port:', boundPort) this.emit('connected', { address: boundAddress, port: boundPort }) } /** * Get human-readable error message for reply code */ getReplyErrorMessage (reply) { switch (reply) { case REPLY_CODES.GENERAL_FAILURE: return 'General SOCKS server failure' case REPLY_CODES.CONNECTION_NOT_ALLOWED: return 'Connection not allowed by ruleset' case REPLY_CODES.NETWORK_UNREACHABLE: return 'Network unreachable' case REPLY_CODES.HOST_UNREACHABLE: return 'Host unreachable' case REPLY_CODES.CONNECTION_REFUSED: return 'Connection refused' case REPLY_CODES.TTL_EXPIRED: return 'TTL expired' case REPLY_CODES.COMMAND_NOT_SUPPORTED: return 'Command not supported' case REPLY_CODES.ADDRESS_TYPE_NOT_SUPPORTED: return 'Address type not supported' default: return `Unknown error code: ${reply}` } } } module.exports = { Socks5Client, AUTH_METHODS, COMMANDS, ADDRESS_TYPES, REPLY_CODES, STATES } /***/ }), /***/ 51732: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { Buffer } = __nccwpck_require__(4573) const net = __nccwpck_require__(77030) const { InvalidArgumentError } = __nccwpck_require__(68707) /** * Parse an address and determine its type * @param {string} address - The address to parse * @returns {{type: number, buffer: Buffer}} Address type and buffer */ function parseAddress (address) { // Check if it's an IPv4 address if (net.isIPv4(address)) { const parts = address.split('.').map(Number) return { type: 0x01, // IPv4 buffer: Buffer.from(parts) } } // Check if it's an IPv6 address if (net.isIPv6(address)) { return { type: 0x04, // IPv6 buffer: parseIPv6(address) } } // Otherwise, treat as domain name const domainBuffer = Buffer.from(address, 'utf8') if (domainBuffer.length > 255) { throw new InvalidArgumentError('Domain name too long (max 255 bytes)') } return { type: 0x03, // Domain buffer: Buffer.concat([Buffer.from([domainBuffer.length]), domainBuffer]) } } /** * Parse IPv6 address to buffer * @param {string} address - IPv6 address string * @returns {Buffer} 16-byte buffer */ function parseIPv6 (address) { const buffer = Buffer.alloc(16) let normalizedAddress = address // Expand an embedded IPv4 tail into the last two IPv6 groups. if (address.includes('.')) { const lastColonIndex = address.lastIndexOf(':') const ipv4Part = address.slice(lastColonIndex + 1) if (net.isIPv4(ipv4Part)) { const octets = ipv4Part.split('.').map(Number) const high = ((octets[0] << 8) | octets[1]).toString(16) const low = ((octets[2] << 8) | octets[3]).toString(16) normalizedAddress = `${address.slice(0, lastColonIndex)}:${high}:${low}` } } // Handle compressed notation (::) const doubleColonIndex = normalizedAddress.indexOf('::') if (doubleColonIndex !== -1) { const before = normalizedAddress.slice(0, doubleColonIndex) const after = normalizedAddress.slice(doubleColonIndex + 2) const beforeParts = before === '' ? [] : before.split(':') const afterParts = after === '' ? [] : after.split(':') let bufferIndex = 0 for (const part of beforeParts) { buffer.writeUInt16BE(parseInt(part, 16), bufferIndex) bufferIndex += 2 } bufferIndex = 16 - afterParts.length * 2 for (const part of afterParts) { buffer.writeUInt16BE(parseInt(part, 16), bufferIndex) bufferIndex += 2 } } else { const parts = normalizedAddress.split(':') for (let i = 0; i < parts.length; i++) { buffer.writeUInt16BE(parseInt(parts[i], 16), i * 2) } } return buffer } /** * Build a SOCKS5 address buffer * @param {number} type - Address type (1=IPv4, 3=Domain, 4=IPv6) * @param {Buffer} addressBuffer - The address data * @param {number} port - Port number * @returns {Buffer} Complete address buffer including type, address, and port */ function buildAddressBuffer (type, addressBuffer, port) { const portBuffer = Buffer.allocUnsafe(2) portBuffer.writeUInt16BE(port, 0) return Buffer.concat([ Buffer.from([type]), addressBuffer, portBuffer ]) } /** * Parse address from SOCKS5 response * @param {Buffer} buffer - Buffer containing the address * @param {number} offset - Starting offset in buffer * @returns {{address: string, port: number, bytesRead: number}} */ function parseResponseAddress (buffer, offset = 0) { if (buffer.length < offset + 1) { throw new InvalidArgumentError('Buffer too small to contain address type') } const addressType = buffer[offset] let address let currentOffset = offset + 1 switch (addressType) { case 0x01: { // IPv4 if (buffer.length < currentOffset + 6) { throw new InvalidArgumentError('Buffer too small for IPv4 address') } address = Array.from(buffer.subarray(currentOffset, currentOffset + 4)).join('.') currentOffset += 4 break } case 0x03: { // Domain if (buffer.length < currentOffset + 1) { throw new InvalidArgumentError('Buffer too small for domain length') } const domainLength = buffer[currentOffset] currentOffset += 1 if (buffer.length < currentOffset + domainLength + 2) { throw new InvalidArgumentError('Buffer too small for domain address') } address = buffer.subarray(currentOffset, currentOffset + domainLength).toString('utf8') currentOffset += domainLength break } case 0x04: { // IPv6 if (buffer.length < currentOffset + 18) { throw new InvalidArgumentError('Buffer too small for IPv6 address') } // Convert buffer to IPv6 string const parts = [] for (let i = 0; i < 8; i++) { const value = buffer.readUInt16BE(currentOffset + i * 2) parts.push(value.toString(16)) } address = parts.join(':') currentOffset += 16 break } default: throw new InvalidArgumentError(`Invalid address type: ${addressType}`) } // Parse port if (buffer.length < currentOffset + 2) { throw new InvalidArgumentError('Buffer too small for port') } const port = buffer.readUInt16BE(currentOffset) currentOffset += 2 return { address, port, bytesRead: currentOffset - offset } } /** * Create error for SOCKS5 reply code * @param {number} replyCode - SOCKS5 reply code * @returns {Error} Appropriate error object */ function createReplyError (replyCode) { const messages = { 0x01: 'General SOCKS server failure', 0x02: 'Connection not allowed by ruleset', 0x03: 'Network unreachable', 0x04: 'Host unreachable', 0x05: 'Connection refused', 0x06: 'TTL expired', 0x07: 'Command not supported', 0x08: 'Address type not supported' } const message = messages[replyCode] || `Unknown SOCKS5 error code: ${replyCode}` const error = new Error(message) error.code = `SOCKS5_${replyCode}` return error } module.exports = { parseAddress, parseIPv6, buildAddressBuffer, parseResponseAddress, createReplyError } /***/ }), /***/ 36443: /***/ ((module) => { "use strict"; module.exports = { kClose: Symbol('close'), kDestroy: Symbol('destroy'), kDispatch: Symbol('dispatch'), kUrl: Symbol('url'), kWriting: Symbol('writing'), kResuming: Symbol('resuming'), kQueue: Symbol('queue'), kConnect: Symbol('connect'), kConnecting: Symbol('connecting'), kKeepAliveDefaultTimeout: Symbol('default keep alive timeout'), kKeepAliveMaxTimeout: Symbol('max keep alive timeout'), kKeepAliveTimeoutThreshold: Symbol('keep alive timeout threshold'), kKeepAliveTimeoutValue: Symbol('keep alive timeout'), kKeepAlive: Symbol('keep alive'), kHeadersTimeout: Symbol('headers timeout'), kBodyTimeout: Symbol('body timeout'), kServerName: Symbol('server name'), kLocalAddress: Symbol('local address'), kHost: Symbol('host'), kNoRef: Symbol('no ref'), kBodyUsed: Symbol('used'), kBody: Symbol('abstracted request body'), kRunning: Symbol('running'), kBlocking: Symbol('blocking'), kPending: Symbol('pending'), kSize: Symbol('size'), kBusy: Symbol('busy'), kQueued: Symbol('queued'), kFree: Symbol('free'), kConnected: Symbol('connected'), kClosed: Symbol('closed'), kNeedDrain: Symbol('need drain'), kReset: Symbol('reset'), kDestroyed: Symbol.for('nodejs.stream.destroyed'), kResume: Symbol('resume'), kOnError: Symbol('on error'), kMaxHeadersSize: Symbol('max headers size'), kRunningIdx: Symbol('running index'), kPendingIdx: Symbol('pending index'), kError: Symbol('error'), kClients: Symbol('clients'), kClient: Symbol('client'), kParser: Symbol('parser'), kOnDestroyed: Symbol('destroy callbacks'), kPipelining: Symbol('pipelining'), kSocket: Symbol('socket'), kHostHeader: Symbol('host header'), kConnector: Symbol('connector'), kStrictContentLength: Symbol('strict content length'), kMaxRedirections: Symbol('maxRedirections'), kMaxRequests: Symbol('maxRequestsPerClient'), kProxy: Symbol('proxy agent options'), kCounter: Symbol('socket request counter'), kMaxResponseSize: Symbol('max response size'), kHTTP2Session: Symbol('http2Session'), kHTTP2SessionState: Symbol('http2Session state'), kRetryHandlerDefaultRetry: Symbol('retry agent default retry'), kConstruct: Symbol('constructable'), kListeners: Symbol('listeners'), kHTTPContext: Symbol('http context'), kMaxConcurrentStreams: Symbol('max concurrent streams'), kHTTP2InitialWindowSize: Symbol('http2 initial window size'), kHTTP2ConnectionWindowSize: Symbol('http2 connection window size'), kEnableConnectProtocol: Symbol('http2session connect protocol'), kRemoteSettings: Symbol('http2session remote settings'), kHTTP2Stream: Symbol('http2session client stream'), kPingInterval: Symbol('ping interval'), kNoProxyAgent: Symbol('no proxy agent'), kHttpProxyAgent: Symbol('http proxy agent'), kHttpsProxyAgent: Symbol('https proxy agent'), kSocks5ProxyAgent: Symbol('socks5 proxy agent') } /***/ }), /***/ 67752: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { wellknownHeaderNames, headerNameLowerCasedRecord } = __nccwpck_require__(10735) class TstNode { /** @type {any} */ value = null /** @type {null | TstNode} */ left = null /** @type {null | TstNode} */ middle = null /** @type {null | TstNode} */ right = null /** @type {number} */ code /** * @param {string} key * @param {any} value * @param {number} index */ constructor (key, value, index) { if (index === undefined || index >= key.length) { throw new TypeError('Unreachable') } const code = this.code = key.charCodeAt(index) // check code is ascii string if (code > 0x7F) { throw new TypeError('key must be ascii string') } if (key.length !== ++index) { this.middle = new TstNode(key, value, index) } else { this.value = value } } /** * @param {string} key * @param {any} value * @returns {void} */ add (key, value) { const length = key.length if (length === 0) { throw new TypeError('Unreachable') } let index = 0 /** * @type {TstNode} */ let node = this while (true) { const code = key.charCodeAt(index) // check code is ascii string if (code > 0x7F) { throw new TypeError('key must be ascii string') } if (node.code === code) { if (length === ++index) { node.value = value break } else if (node.middle !== null) { node = node.middle } else { node.middle = new TstNode(key, value, index) break } } else if (node.code < code) { if (node.left !== null) { node = node.left } else { node.left = new TstNode(key, value, index) break } } else if (node.right !== null) { node = node.right } else { node.right = new TstNode(key, value, index) break } } } /** * @param {Uint8Array} key * @returns {TstNode | null} */ search (key) { const keylength = key.length let index = 0 /** * @type {TstNode|null} */ let node = this while (node !== null && index < keylength) { let code = key[index] // A-Z // First check if it is bigger than 0x5a. // Lowercase letters have higher char codes than uppercase ones. // Also we assume that headers will mostly contain lowercase characters. if (code <= 0x5a && code >= 0x41) { // Lowercase for uppercase. code |= 32 } while (node !== null) { if (code === node.code) { if (keylength === ++index) { // Returns Node since it is the last key. return node } node = node.middle break } node = node.code < code ? node.left : node.right } } return null } } class TernarySearchTree { /** @type {TstNode | null} */ node = null /** * @param {string} key * @param {any} value * @returns {void} * */ insert (key, value) { if (this.node === null) { this.node = new TstNode(key, value, 0) } else { this.node.add(key, value) } } /** * @param {Uint8Array} key * @returns {any} */ lookup (key) { return this.node?.search(key)?.value ?? null } } const tree = new TernarySearchTree() for (let i = 0; i < wellknownHeaderNames.length; ++i) { const key = headerNameLowerCasedRecord[wellknownHeaderNames[i]] tree.insert(key, key) } module.exports = { TernarySearchTree, tree } /***/ }), /***/ 3440: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const assert = __nccwpck_require__(34589) const { kDestroyed, kBodyUsed, kListeners, kBody } = __nccwpck_require__(36443) const { IncomingMessage } = __nccwpck_require__(37067) const stream = __nccwpck_require__(57075) const net = __nccwpck_require__(77030) const { stringify } = __nccwpck_require__(41792) const { EventEmitter: EE } = __nccwpck_require__(78474) const timers = __nccwpck_require__(96603) const { InvalidArgumentError, ConnectTimeoutError } = __nccwpck_require__(68707) const { headerNameLowerCasedRecord } = __nccwpck_require__(10735) const { tree } = __nccwpck_require__(67752) const [nodeMajor, nodeMinor] = process.versions.node.split('.', 2).map(v => Number(v)) class BodyAsyncIterable { constructor (body) { this[kBody] = body this[kBodyUsed] = false } async * [Symbol.asyncIterator] () { assert(!this[kBodyUsed], 'disturbed') this[kBodyUsed] = true yield * this[kBody] } } function noop () {} /** * @param {*} body * @returns {*} */ function wrapRequestBody (body) { if (isStream(body)) { // TODO (fix): Provide some way for the user to cache the file to e.g. /tmp // so that it can be dispatched again? // TODO (fix): Do we need 100-expect support to provide a way to do this properly? if (bodyLength(body) === 0) { body .on('data', function () { assert(false) }) } if (typeof body.readableDidRead !== 'boolean') { body[kBodyUsed] = false EE.prototype.on.call(body, 'data', function () { this[kBodyUsed] = true }) } return body } else if (body && typeof body.pipeTo === 'function') { // TODO (fix): We can't access ReadableStream internal state // to determine whether or not it has been disturbed. This is just // a workaround. return new BodyAsyncIterable(body) } else if (body && isFormDataLike(body)) { return body } else if ( body && typeof body !== 'string' && !ArrayBuffer.isView(body) && isIterable(body) ) { // TODO: Should we allow re-using iterable if !this.opts.idempotent // or through some other flag? return new BodyAsyncIterable(body) } else { return body } } /** * @param {*} obj * @returns {obj is import('node:stream').Stream} */ function isStream (obj) { return obj && typeof obj === 'object' && typeof obj.pipe === 'function' && typeof obj.on === 'function' } /** * @param {*} object * @returns {object is Blob} * based on https://github.com/node-fetch/fetch-blob/blob/8ab587d34080de94140b54f07168451e7d0b655e/index.js#L229-L241 (MIT License) */ function isBlobLike (object) { if (object === null) { return false } else if (object instanceof Blob) { return true } else if (typeof object !== 'object') { return false } else { const sTag = object[Symbol.toStringTag] return (sTag === 'Blob' || sTag === 'File') && ( ('stream' in object && typeof object.stream === 'function') || ('arrayBuffer' in object && typeof object.arrayBuffer === 'function') ) } } /** * @param {string} url The path to check for query strings or fragments. * @returns {boolean} Returns true if the path contains a query string or fragment. */ function pathHasQueryOrFragment (url) { return ( url.includes('?') || url.includes('#') ) } /** * @param {string} url The URL to add the query params to * @param {import('node:querystring').ParsedUrlQueryInput} queryParams The object to serialize into a URL query string * @returns {string} The URL with the query params added */ function serializePathWithQuery (url, queryParams) { if (pathHasQueryOrFragment(url)) { throw new Error('Query params cannot be passed when url already contains "?" or "#".') } const stringified = stringify(queryParams) if (stringified) { url += '?' + stringified } return url } /** * @param {number|string|undefined} port * @returns {boolean} */ function isValidPort (port) { const value = parseInt(port, 10) return ( value === Number(port) && value >= 0 && value <= 65535 ) } /** * Check if the value is a valid http or https prefixed string. * * @param {string} value * @returns {boolean} */ function isHttpOrHttpsPrefixed (value) { return ( value != null && value[0] === 'h' && value[1] === 't' && value[2] === 't' && value[3] === 'p' && ( value[4] === ':' || ( value[4] === 's' && value[5] === ':' ) ) ) } /** * @param {string|URL|Record} url * @returns {URL} */ function parseURL (url) { if (typeof url === 'string') { /** * @type {URL} */ url = new URL(url) if (!isHttpOrHttpsPrefixed(url.origin || url.protocol)) { throw new InvalidArgumentError('Invalid URL protocol: the URL must start with `http:` or `https:`.') } return url } if (!url || typeof url !== 'object') { throw new InvalidArgumentError('Invalid URL: The URL argument must be a non-null object.') } if (!(url instanceof URL)) { if (url.port != null && url.port !== '' && isValidPort(url.port) === false) { throw new InvalidArgumentError('Invalid URL: port must be a valid integer or a string representation of an integer.') } if (url.path != null && typeof url.path !== 'string') { throw new InvalidArgumentError('Invalid URL path: the path must be a string or null/undefined.') } if (url.pathname != null && typeof url.pathname !== 'string') { throw new InvalidArgumentError('Invalid URL pathname: the pathname must be a string or null/undefined.') } if (url.hostname != null && typeof url.hostname !== 'string') { throw new InvalidArgumentError('Invalid URL hostname: the hostname must be a string or null/undefined.') } if (url.origin != null && typeof url.origin !== 'string') { throw new InvalidArgumentError('Invalid URL origin: the origin must be a string or null/undefined.') } if (!isHttpOrHttpsPrefixed(url.origin || url.protocol)) { throw new InvalidArgumentError('Invalid URL protocol: the URL must start with `http:` or `https:`.') } const port = url.port != null ? url.port : (url.protocol === 'https:' ? 443 : 80) let origin = url.origin != null ? url.origin : `${url.protocol || ''}//${url.hostname || ''}:${port}` let path = url.path != null ? url.path : `${url.pathname || ''}${url.search || ''}` if (origin[origin.length - 1] === '/') { origin = origin.slice(0, origin.length - 1) } if (path && path[0] !== '/') { path = `/${path}` } // new URL(path, origin) is unsafe when `path` contains an absolute URL // From https://developer.mozilla.org/en-US/docs/Web/API/URL/URL: // If first parameter is a relative URL, second param is required, and will be used as the base URL. // If first parameter is an absolute URL, a given second param will be ignored. return new URL(`${origin}${path}`) } if (!isHttpOrHttpsPrefixed(url.origin || url.protocol)) { throw new InvalidArgumentError('Invalid URL protocol: the URL must start with `http:` or `https:`.') } return url } /** * @param {string|URL|Record} url * @returns {URL} */ function parseOrigin (url) { url = parseURL(url) if (url.pathname !== '/' || url.search || url.hash) { throw new InvalidArgumentError('invalid url') } return url } /** * @param {string} host * @returns {string} */ function getHostname (host) { if (host[0] === '[') { const idx = host.indexOf(']') assert(idx !== -1) return host.substring(1, idx) } const idx = host.indexOf(':') if (idx === -1) return host return host.substring(0, idx) } /** * IP addresses are not valid server names per RFC6066 * Currently, the only server names supported are DNS hostnames * @param {string|null} host * @returns {string|null} */ function getServerName (host) { if (!host) { return null } assert(typeof host === 'string') const servername = getHostname(host) if (net.isIP(servername)) { return '' } return servername } /** * @function * @template T * @param {T} obj * @returns {T} */ function deepClone (obj) { return JSON.parse(JSON.stringify(obj)) } /** * @param {*} obj * @returns {obj is AsyncIterable} */ function isAsyncIterable (obj) { return !!(obj != null && typeof obj[Symbol.asyncIterator] === 'function') } /** * @param {*} obj * @returns {obj is Iterable} */ function isIterable (obj) { return !!(obj != null && (typeof obj[Symbol.iterator] === 'function' || typeof obj[Symbol.asyncIterator] === 'function')) } /** * Checks whether an object has a safe Symbol.iterator — i.e. one that is * either own or inherited from a non-Object.prototype chain. This prevents * prototype-pollution attacks from injecting a fake iterator on * Object.prototype. * @param {object} obj * @returns {boolean} */ function hasSafeIterator (obj) { const prototype = Object.getPrototypeOf(obj) const ownIterator = Object.prototype.hasOwnProperty.call(obj, Symbol.iterator) return ownIterator || (prototype != null && prototype !== Object.prototype && typeof obj[Symbol.iterator] === 'function') } /** * @param {Blob|Buffer|import ('stream').Stream} body * @returns {number|null} */ function bodyLength (body) { if (body == null) { return 0 } else if (isStream(body)) { const state = body._readableState return state && state.objectMode === false && state.ended === true && Number.isFinite(state.length) ? state.length : null } else if (isBlobLike(body)) { return body.size != null ? body.size : null } else if (isBuffer(body)) { return body.byteLength } return null } /** * @param {import ('stream').Stream} body * @returns {boolean} */ function isDestroyed (body) { return body && !!(body.destroyed || body[kDestroyed] || (stream.isDestroyed?.(body))) } /** * @param {import ('stream').Stream} stream * @param {Error} [err] * @returns {void} */ function destroy (stream, err) { if (stream == null || !isStream(stream) || isDestroyed(stream)) { return } if (typeof stream.destroy === 'function') { if (Object.getPrototypeOf(stream).constructor === IncomingMessage) { // See: https://github.com/nodejs/node/pull/38505/files stream.socket = null } stream.destroy(err) } else if (err) { queueMicrotask(() => { stream.emit('error', err) }) } if (stream.destroyed !== true) { stream[kDestroyed] = true } } const KEEPALIVE_TIMEOUT_EXPR = /timeout=(\d+)/ /** * @param {string} val * @returns {number | null} */ function parseKeepAliveTimeout (val) { const m = val.match(KEEPALIVE_TIMEOUT_EXPR) return m ? parseInt(m[1], 10) * 1000 : null } /** * Retrieves a header name and returns its lowercase value. * @param {string | Buffer} value Header name * @returns {string} */ function headerNameToString (value) { return typeof value === 'string' ? headerNameLowerCasedRecord[value] ?? value.toLowerCase() : tree.lookup(value) ?? value.toString('latin1').toLowerCase() } /** * Receive the buffer as a string and return its lowercase value. * @param {Buffer} value Header name * @returns {string} */ function bufferToLowerCasedHeaderName (value) { return tree.lookup(value) ?? value.toString('latin1').toLowerCase() } /** * @param {(Buffer | string)[]} headers * @param {Record} [obj] * @returns {Record} */ function parseHeaders (headers, obj) { if (obj === undefined) obj = {} for (let i = 0; i < headers.length; i += 2) { const key = headerNameToString(headers[i]) let val = obj[key] if (val !== undefined) { if (!Object.hasOwn(obj, key)) { const headersValue = typeof headers[i + 1] === 'string' ? headers[i + 1] : Array.isArray(headers[i + 1]) ? headers[i + 1].map(x => x.toString('latin1')) : headers[i + 1].toString('latin1') if (key === '__proto__') { Object.defineProperty(obj, key, { value: headersValue, enumerable: true, configurable: true, writable: true }) } else { obj[key] = headersValue } } else { if (typeof val === 'string') { val = [val] obj[key] = val } val.push(headers[i + 1].toString('latin1')) } } else { const headersValue = typeof headers[i + 1] === 'string' ? headers[i + 1] : Array.isArray(headers[i + 1]) ? headers[i + 1].map(x => x.toString('latin1')) : headers[i + 1].toString('latin1') obj[key] = headersValue } } return obj } /** * @param {Buffer[]} headers * @returns {string[]} */ function parseRawHeaders (headers) { const headersLength = headers.length /** * @type {string[]} */ const ret = new Array(headersLength) let key let val for (let n = 0; n < headersLength; n += 2) { key = headers[n] val = headers[n + 1] typeof key !== 'string' && (key = key.toString()) typeof val !== 'string' && (val = val.toString('latin1')) ret[n] = key ret[n + 1] = val } return ret } /** * @param {string[]} headers * @param {Buffer[]} headers */ function encodeRawHeaders (headers) { if (!Array.isArray(headers)) { throw new TypeError('expected headers to be an array') } return headers.map(x => Buffer.from(x)) } /** * @param {*} buffer * @returns {buffer is Buffer} */ function isBuffer (buffer) { // See, https://github.com/mcollina/undici/pull/319 return buffer instanceof Uint8Array || Buffer.isBuffer(buffer) } /** * Asserts that the handler object is a request handler. * * @param {object} handler * @param {string} method * @param {string} [upgrade] * @returns {asserts handler is import('../api/api-request').RequestHandler} */ function assertRequestHandler (handler, method, upgrade) { if (!handler || typeof handler !== 'object') { throw new InvalidArgumentError('handler must be an object') } if (typeof handler.onRequestStart === 'function') { // TODO (fix): More checks... return } if (typeof handler.onConnect !== 'function') { throw new InvalidArgumentError('invalid onConnect method') } if (typeof handler.onError !== 'function') { throw new InvalidArgumentError('invalid onError method') } if (typeof handler.onBodySent !== 'function' && handler.onBodySent !== undefined) { throw new InvalidArgumentError('invalid onBodySent method') } if (upgrade || method === 'CONNECT') { if (typeof handler.onUpgrade !== 'function') { throw new InvalidArgumentError('invalid onUpgrade method') } } else { if (typeof handler.onHeaders !== 'function') { throw new InvalidArgumentError('invalid onHeaders method') } if (typeof handler.onData !== 'function') { throw new InvalidArgumentError('invalid onData method') } if (typeof handler.onComplete !== 'function') { throw new InvalidArgumentError('invalid onComplete method') } } } /** * A body is disturbed if it has been read from and it cannot be re-used without * losing state or data. * @param {import('node:stream').Readable} body * @returns {boolean} */ function isDisturbed (body) { // TODO (fix): Why is body[kBodyUsed] needed? return !!(body && (stream.isDisturbed(body) || body[kBodyUsed])) } /** * @typedef {object} SocketInfo * @property {string} [localAddress] * @property {number} [localPort] * @property {string} [remoteAddress] * @property {number} [remotePort] * @property {string} [remoteFamily] * @property {number} [timeout] * @property {number} bytesWritten * @property {number} bytesRead */ /** * @param {import('net').Socket} socket * @returns {SocketInfo} */ function getSocketInfo (socket) { return { localAddress: socket.localAddress, localPort: socket.localPort, remoteAddress: socket.remoteAddress, remotePort: socket.remotePort, remoteFamily: socket.remoteFamily, timeout: socket.timeout, bytesWritten: socket.bytesWritten, bytesRead: socket.bytesRead } } /** * @param {Iterable} iterable * @returns {ReadableStream} */ function ReadableStreamFrom (iterable) { // We cannot use ReadableStream.from here because it does not return a byte stream. let iterator return new ReadableStream( { start () { iterator = iterable[Symbol.asyncIterator]() }, pull (controller) { return iterator.next().then(({ done, value }) => { if (done) { return queueMicrotask(() => { controller.close() controller.byobRequest?.respond(0) }) } else { const buf = Buffer.isBuffer(value) ? value : Buffer.from(value) if (buf.byteLength) { return controller.enqueue(new Uint8Array(buf)) } else { return this.pull(controller) } } }) }, cancel () { return iterator.return() }, type: 'bytes' } ) } /** * The object should be a FormData instance and contains all the required * methods. * @param {*} object * @returns {object is FormData} */ function isFormDataLike (object) { return ( object && typeof object === 'object' && typeof object.append === 'function' && typeof object.delete === 'function' && typeof object.get === 'function' && typeof object.getAll === 'function' && typeof object.has === 'function' && typeof object.set === 'function' && object[Symbol.toStringTag] === 'FormData' ) } function addAbortListener (signal, listener) { if ('addEventListener' in signal) { signal.addEventListener('abort', listener, { once: true }) return () => signal.removeEventListener('abort', listener) } signal.once('abort', listener) return () => signal.removeListener('abort', listener) } const validTokenChars = new Uint8Array([ 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 0-15 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 16-31 0, 1, 0, 1, 1, 1, 1, 1, 0, 0, 1, 1, 0, 1, 1, 0, // 32-47 (!"#$%&'()*+,-./) 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, // 48-63 (0-9:;<=>?) 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, // 64-79 (@A-O) 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 1, 1, // 80-95 (P-Z[\]^_) 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, // 96-111 (`a-o) 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 1, 0, 1, 0, // 112-127 (p-z{|}~) 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 128-143 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 144-159 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 160-175 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 176-191 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 192-207 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 208-223 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, // 224-239 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 // 240-255 ]) /** * @see https://tools.ietf.org/html/rfc7230#section-3.2.6 * @param {number} c * @returns {boolean} */ function isTokenCharCode (c) { return (validTokenChars[c] === 1) } const tokenRegExp = /^[\^_`a-zA-Z\-0-9!#$%&'*+.|~]+$/ /** * @param {string} characters * @returns {boolean} */ function isValidHTTPToken (characters) { if (characters.length >= 12) return tokenRegExp.test(characters) if (characters.length === 0) return false for (let i = 0; i < characters.length; i++) { if (validTokenChars[characters.charCodeAt(i)] !== 1) { return false } } return true } // headerCharRegex have been lifted from // https://github.com/nodejs/node/blob/main/lib/_http_common.js /** * Matches if val contains an invalid field-vchar * field-value = *( field-content / obs-fold ) * field-content = field-vchar [ 1*( SP / HTAB ) field-vchar ] * field-vchar = VCHAR / obs-text */ const headerCharRegex = /[^\t\x20-\x7e\x80-\xff]/ /** * @param {string} characters * @returns {boolean} */ function isValidHeaderValue (characters) { return !headerCharRegex.test(characters) } const rangeHeaderRegex = /^bytes (\d+)-(\d+)\/(\d+)?$/ /** * @typedef {object} RangeHeader * @property {number} start * @property {number | null} end * @property {number | null} size */ /** * Parse accordingly to RFC 9110 * @see https://www.rfc-editor.org/rfc/rfc9110#field.content-range * @param {string} [range] * @returns {RangeHeader|null} */ function parseRangeHeader (range) { if (range == null || range === '') return { start: 0, end: null, size: null } const m = range ? range.match(rangeHeaderRegex) : null return m ? { start: parseInt(m[1]), end: m[2] ? parseInt(m[2]) : null, size: m[3] ? parseInt(m[3]) : null } : null } /** * @template {import("events").EventEmitter} T * @param {T} obj * @param {string} name * @param {(...args: any[]) => void} listener * @returns {T} */ function addListener (obj, name, listener) { const listeners = (obj[kListeners] ??= []) listeners.push([name, listener]) obj.on(name, listener) return obj } /** * @template {import("events").EventEmitter} T * @param {T} obj * @returns {T} */ function removeAllListeners (obj) { if (obj[kListeners] != null) { for (const [name, listener] of obj[kListeners]) { obj.removeListener(name, listener) } obj[kListeners] = null } return obj } /** * @param {import ('../dispatcher/client')} client * @param {import ('../core/request')} request * @param {Error} err */ function errorRequest (client, request, err) { try { request.onError(err) assert(request.aborted) } catch (err) { client.emit('error', err) } } /** * @param {WeakRef} socketWeakRef * @param {object} opts * @param {number} opts.timeout * @param {string} opts.hostname * @param {number} opts.port * @returns {() => void} */ const setupConnectTimeout = process.platform === 'win32' ? (socketWeakRef, opts) => { if (!opts.timeout) { return noop } let s1 = null let s2 = null const fastTimer = timers.setFastTimeout(() => { // setImmediate is added to make sure that we prioritize socket error events over timeouts s1 = setImmediate(() => { // Windows needs an extra setImmediate probably due to implementation differences in the socket logic s2 = setImmediate(() => onConnectTimeout(socketWeakRef.deref(), opts)) }) }, opts.timeout) return () => { timers.clearFastTimeout(fastTimer) clearImmediate(s1) clearImmediate(s2) } } : (socketWeakRef, opts) => { if (!opts.timeout) { return noop } let s1 = null const fastTimer = timers.setFastTimeout(() => { // setImmediate is added to make sure that we prioritize socket error events over timeouts s1 = setImmediate(() => { onConnectTimeout(socketWeakRef.deref(), opts) }) }, opts.timeout) return () => { timers.clearFastTimeout(fastTimer) clearImmediate(s1) } } /** * @param {net.Socket} socket * @param {object} opts * @param {number} opts.timeout * @param {string} opts.hostname * @param {number} opts.port */ function onConnectTimeout (socket, opts) { // The socket could be already garbage collected if (socket == null) { return } let message = 'Connect Timeout Error' if (Array.isArray(socket.autoSelectFamilyAttemptedAddresses)) { message += ` (attempted addresses: ${socket.autoSelectFamilyAttemptedAddresses.join(', ')},` } else { message += ` (attempted address: ${opts.hostname}:${opts.port},` } message += ` timeout: ${opts.timeout}ms)` destroy(socket, new ConnectTimeoutError(message)) } /** * @param {string} urlString * @returns {string} */ function getProtocolFromUrlString (urlString) { if ( urlString[0] === 'h' && urlString[1] === 't' && urlString[2] === 't' && urlString[3] === 'p' ) { switch (urlString[4]) { case ':': return 'http:' case 's': if (urlString[5] === ':') { return 'https:' } } } // fallback if none of the usual suspects return urlString.slice(0, urlString.indexOf(':') + 1) } const kEnumerableProperty = Object.create(null) kEnumerableProperty.enumerable = true const normalizedMethodRecordsBase = { delete: 'DELETE', DELETE: 'DELETE', get: 'GET', GET: 'GET', head: 'HEAD', HEAD: 'HEAD', options: 'OPTIONS', OPTIONS: 'OPTIONS', post: 'POST', POST: 'POST', put: 'PUT', PUT: 'PUT' } const normalizedMethodRecords = { ...normalizedMethodRecordsBase, patch: 'patch', PATCH: 'PATCH' } // Note: object prototypes should not be able to be referenced. e.g. `Object#hasOwnProperty`. Object.setPrototypeOf(normalizedMethodRecordsBase, null) Object.setPrototypeOf(normalizedMethodRecords, null) module.exports = { kEnumerableProperty, isDisturbed, isBlobLike, parseOrigin, parseURL, getServerName, isStream, isIterable, hasSafeIterator, isAsyncIterable, isDestroyed, headerNameToString, bufferToLowerCasedHeaderName, addListener, removeAllListeners, errorRequest, parseRawHeaders, encodeRawHeaders, parseHeaders, parseKeepAliveTimeout, destroy, bodyLength, deepClone, ReadableStreamFrom, isBuffer, assertRequestHandler, getSocketInfo, isFormDataLike, pathHasQueryOrFragment, serializePathWithQuery, addAbortListener, isValidHTTPToken, isValidHeaderValue, isTokenCharCode, parseRangeHeader, normalizedMethodRecordsBase, normalizedMethodRecords, isValidPort, isHttpOrHttpsPrefixed, nodeMajor, nodeMinor, safeHTTPMethods: Object.freeze(['GET', 'HEAD', 'OPTIONS', 'TRACE']), wrapRequestBody, setupConnectTimeout, getProtocolFromUrlString } /***/ }), /***/ 57405: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { InvalidArgumentError, MaxOriginsReachedError } = __nccwpck_require__(68707) const { kClients, kRunning, kClose, kDestroy, kDispatch, kUrl } = __nccwpck_require__(36443) const DispatcherBase = __nccwpck_require__(21841) const Pool = __nccwpck_require__(30628) const Client = __nccwpck_require__(23701) const util = __nccwpck_require__(3440) const kOnConnect = Symbol('onConnect') const kOnDisconnect = Symbol('onDisconnect') const kOnConnectionError = Symbol('onConnectionError') const kOnDrain = Symbol('onDrain') const kFactory = Symbol('factory') const kOptions = Symbol('options') const kOrigins = Symbol('origins') function defaultFactory (origin, opts) { return opts && opts.connections === 1 ? new Client(origin, opts) : new Pool(origin, opts) } class Agent extends DispatcherBase { constructor ({ factory = defaultFactory, maxOrigins = Infinity, connect, ...options } = {}) { if (typeof factory !== 'function') { throw new InvalidArgumentError('factory must be a function.') } if (connect != null && typeof connect !== 'function' && typeof connect !== 'object') { throw new InvalidArgumentError('connect must be a function or an object') } if (typeof maxOrigins !== 'number' || Number.isNaN(maxOrigins) || maxOrigins <= 0) { throw new InvalidArgumentError('maxOrigins must be a number greater than 0') } super(options) if (connect && typeof connect !== 'function') { connect = { ...connect } } this[kOptions] = { ...util.deepClone(options), maxOrigins, connect } this[kFactory] = factory this[kClients] = new Map() this[kOrigins] = new Set() this[kOnDrain] = (origin, targets) => { this.emit('drain', origin, [this, ...targets]) } this[kOnConnect] = (origin, targets) => { this.emit('connect', origin, [this, ...targets]) } this[kOnDisconnect] = (origin, targets, err) => { this.emit('disconnect', origin, [this, ...targets], err) } this[kOnConnectionError] = (origin, targets, err) => { this.emit('connectionError', origin, [this, ...targets], err) } } get [kRunning] () { let ret = 0 for (const { dispatcher } of this[kClients].values()) { ret += dispatcher[kRunning] } return ret } [kDispatch] (opts, handler) { let key if (opts.origin && (typeof opts.origin === 'string' || opts.origin instanceof URL)) { key = String(opts.origin) } else { throw new InvalidArgumentError('opts.origin must be a non-empty string or URL.') } if (this[kOrigins].size >= this[kOptions].maxOrigins && !this[kOrigins].has(key)) { throw new MaxOriginsReachedError() } const result = this[kClients].get(key) let dispatcher = result && result.dispatcher if (!dispatcher) { const closeClientIfUnused = (connected) => { const result = this[kClients].get(key) if (result) { if (connected) result.count -= 1 if (result.count <= 0) { this[kClients].delete(key) if (!result.dispatcher.destroyed) { result.dispatcher.close() } } this[kOrigins].delete(key) } } dispatcher = this[kFactory](opts.origin, this[kOptions]) .on('drain', this[kOnDrain]) .on('connect', (origin, targets) => { const result = this[kClients].get(key) if (result) { result.count += 1 } this[kOnConnect](origin, targets) }) .on('disconnect', (origin, targets, err) => { closeClientIfUnused(true) this[kOnDisconnect](origin, targets, err) }) .on('connectionError', (origin, targets, err) => { closeClientIfUnused(false) this[kOnConnectionError](origin, targets, err) }) this[kClients].set(key, { count: 0, dispatcher }) this[kOrigins].add(key) } return dispatcher.dispatch(opts, handler) } [kClose] () { const closePromises = [] for (const { dispatcher } of this[kClients].values()) { closePromises.push(dispatcher.close()) } this[kClients].clear() return Promise.all(closePromises) } [kDestroy] (err) { const destroyPromises = [] for (const { dispatcher } of this[kClients].values()) { destroyPromises.push(dispatcher.destroy(err)) } this[kClients].clear() return Promise.all(destroyPromises) } get stats () { const allClientStats = {} for (const { dispatcher } of this[kClients].values()) { if (dispatcher.stats) { allClientStats[dispatcher[kUrl].origin] = dispatcher.stats } } return allClientStats } } module.exports = Agent /***/ }), /***/ 837: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { BalancedPoolMissingUpstreamError, InvalidArgumentError } = __nccwpck_require__(68707) const { PoolBase, kClients, kNeedDrain, kAddClient, kRemoveClient, kGetDispatcher } = __nccwpck_require__(42128) const Pool = __nccwpck_require__(30628) const { kUrl } = __nccwpck_require__(36443) const util = __nccwpck_require__(3440) const kFactory = Symbol('factory') const kOptions = Symbol('options') const kGreatestCommonDivisor = Symbol('kGreatestCommonDivisor') const kCurrentWeight = Symbol('kCurrentWeight') const kIndex = Symbol('kIndex') const kWeight = Symbol('kWeight') const kMaxWeightPerServer = Symbol('kMaxWeightPerServer') const kErrorPenalty = Symbol('kErrorPenalty') /** * Calculate the greatest common divisor of two numbers by * using the Euclidean algorithm. * * @param {number} a * @param {number} b * @returns {number} */ function getGreatestCommonDivisor (a, b) { if (a === 0) return b while (b !== 0) { const t = b b = a % b a = t } return a } function defaultFactory (origin, opts) { return new Pool(origin, opts) } class BalancedPool extends PoolBase { constructor (upstreams = [], { factory = defaultFactory, ...opts } = {}) { if (typeof factory !== 'function') { throw new InvalidArgumentError('factory must be a function.') } super(opts) this[kOptions] = { ...util.deepClone(opts) } this[kOptions].interceptors = opts.interceptors ? { ...opts.interceptors } : undefined this[kIndex] = -1 this[kCurrentWeight] = 0 this[kMaxWeightPerServer] = this[kOptions].maxWeightPerServer || 100 this[kErrorPenalty] = this[kOptions].errorPenalty || 15 if (!Array.isArray(upstreams)) { upstreams = [upstreams] } this[kFactory] = factory for (const upstream of upstreams) { this.addUpstream(upstream) } this._updateBalancedPoolStats() } addUpstream (upstream) { const upstreamOrigin = util.parseOrigin(upstream).origin if (this[kClients].find((pool) => ( pool[kUrl].origin === upstreamOrigin && pool.closed !== true && pool.destroyed !== true ))) { return this } const pool = this[kFactory](upstreamOrigin, this[kOptions]) this[kAddClient](pool) pool.on('connect', () => { pool[kWeight] = Math.min(this[kMaxWeightPerServer], pool[kWeight] + this[kErrorPenalty]) }) pool.on('connectionError', () => { pool[kWeight] = Math.max(1, pool[kWeight] - this[kErrorPenalty]) this._updateBalancedPoolStats() }) pool.on('disconnect', (...args) => { const err = args[2] if (err && err.code === 'UND_ERR_SOCKET') { // decrease the weight of the pool. pool[kWeight] = Math.max(1, pool[kWeight] - this[kErrorPenalty]) this._updateBalancedPoolStats() } }) for (const client of this[kClients]) { client[kWeight] = this[kMaxWeightPerServer] } this._updateBalancedPoolStats() return this } _updateBalancedPoolStats () { let result = 0 for (let i = 0; i < this[kClients].length; i++) { result = getGreatestCommonDivisor(this[kClients][i][kWeight], result) } this[kGreatestCommonDivisor] = result } removeUpstream (upstream) { const upstreamOrigin = util.parseOrigin(upstream).origin const pool = this[kClients].find((pool) => ( pool[kUrl].origin === upstreamOrigin && pool.closed !== true && pool.destroyed !== true )) if (pool) { this[kRemoveClient](pool) } return this } getUpstream (upstream) { const upstreamOrigin = util.parseOrigin(upstream).origin return this[kClients].find((pool) => ( pool[kUrl].origin === upstreamOrigin && pool.closed !== true && pool.destroyed !== true )) } get upstreams () { return this[kClients] .filter(dispatcher => dispatcher.closed !== true && dispatcher.destroyed !== true) .map((p) => p[kUrl].origin) } [kGetDispatcher] () { // We validate that pools is greater than 0, // otherwise we would have to wait until an upstream // is added, which might never happen. if (this[kClients].length === 0) { throw new BalancedPoolMissingUpstreamError() } const dispatcher = this[kClients].find(dispatcher => ( !dispatcher[kNeedDrain] && dispatcher.closed !== true && dispatcher.destroyed !== true )) if (!dispatcher) { return } const allClientsBusy = this[kClients].map(pool => pool[kNeedDrain]).reduce((a, b) => a && b, true) if (allClientsBusy) { return } let counter = 0 let maxWeightIndex = this[kClients].findIndex(pool => !pool[kNeedDrain]) while (counter++ < this[kClients].length) { this[kIndex] = (this[kIndex] + 1) % this[kClients].length const pool = this[kClients][this[kIndex]] // find pool index with the largest weight if (pool[kWeight] > this[kClients][maxWeightIndex][kWeight] && !pool[kNeedDrain]) { maxWeightIndex = this[kIndex] } // decrease the current weight every `this[kClients].length`. if (this[kIndex] === 0) { // Set the current weight to the next lower weight. this[kCurrentWeight] = this[kCurrentWeight] - this[kGreatestCommonDivisor] if (this[kCurrentWeight] <= 0) { this[kCurrentWeight] = this[kMaxWeightPerServer] } } if (pool[kWeight] >= this[kCurrentWeight] && (!pool[kNeedDrain])) { return pool } } this[kCurrentWeight] = this[kClients][maxWeightIndex][kWeight] this[kIndex] = maxWeightIndex return this[kClients][maxWeightIndex] } } module.exports = BalancedPool /***/ }), /***/ 637: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; /* global WebAssembly */ const assert = __nccwpck_require__(34589) const util = __nccwpck_require__(3440) const { channels } = __nccwpck_require__(42414) const timers = __nccwpck_require__(96603) const { RequestContentLengthMismatchError, ResponseContentLengthMismatchError, RequestAbortedError, InvalidArgumentError, HeadersTimeoutError, HeadersOverflowError, SocketError, InformationalError, BodyTimeoutError, HTTPParserError, ResponseExceededMaxSizeError } = __nccwpck_require__(68707) const { kUrl, kReset, kClient, kParser, kBlocking, kRunning, kPending, kSize, kWriting, kQueue, kNoRef, kKeepAliveDefaultTimeout, kHostHeader, kPendingIdx, kRunningIdx, kError, kPipelining, kSocket, kKeepAliveTimeoutValue, kMaxHeadersSize, kKeepAliveMaxTimeout, kKeepAliveTimeoutThreshold, kHeadersTimeout, kBodyTimeout, kStrictContentLength, kMaxRequests, kCounter, kMaxResponseSize, kOnError, kResume, kHTTPContext, kClosed } = __nccwpck_require__(36443) const constants = __nccwpck_require__(52824) const EMPTY_BUF = Buffer.alloc(0) const FastBuffer = Buffer[Symbol.species] const removeAllListeners = util.removeAllListeners const kIdleSocketValidation = Symbol('kIdleSocketValidation') const kIdleSocketValidationTimeout = Symbol('kIdleSocketValidationTimeout') const kSocketUsed = Symbol('kSocketUsed') let extractBody function lazyllhttp () { const llhttpWasmData = process.env.JEST_WORKER_ID ? __nccwpck_require__(63870) : undefined let mod // We disable wasm SIMD on ppc64 as it seems to be broken on Power 9 architectures. let useWasmSIMD = process.arch !== 'ppc64' // The Env Variable UNDICI_NO_WASM_SIMD allows explicitly overriding the default behavior if (process.env.UNDICI_NO_WASM_SIMD === '1') { useWasmSIMD = false } else if (process.env.UNDICI_NO_WASM_SIMD === '0') { useWasmSIMD = true } if (useWasmSIMD) { try { mod = new WebAssembly.Module(__nccwpck_require__(53434)) } catch { } } if (!mod) { // We could check if the error was caused by the simd option not // being enabled, but the occurring of this other error // * https://github.com/emscripten-core/emscripten/issues/11495 // got me to remove that check to avoid breaking Node 12. mod = new WebAssembly.Module(llhttpWasmData || __nccwpck_require__(63870)) } return new WebAssembly.Instance(mod, { env: { /** * @param {number} p * @param {number} at * @param {number} len * @returns {number} */ wasm_on_url: (p, at, len) => { return 0 }, /** * @param {number} p * @param {number} at * @param {number} len * @returns {number} */ wasm_on_status: (p, at, len) => { assert(currentParser.ptr === p) const start = at - currentBufferPtr + currentBufferRef.byteOffset return currentParser.onStatus(new FastBuffer(currentBufferRef.buffer, start, len)) }, /** * @param {number} p * @returns {number} */ wasm_on_message_begin: (p) => { assert(currentParser.ptr === p) return currentParser.onMessageBegin() }, /** * @param {number} p * @param {number} at * @param {number} len * @returns {number} */ wasm_on_header_field: (p, at, len) => { assert(currentParser.ptr === p) const start = at - currentBufferPtr + currentBufferRef.byteOffset return currentParser.onHeaderField(new FastBuffer(currentBufferRef.buffer, start, len)) }, /** * @param {number} p * @param {number} at * @param {number} len * @returns {number} */ wasm_on_header_value: (p, at, len) => { assert(currentParser.ptr === p) const start = at - currentBufferPtr + currentBufferRef.byteOffset return currentParser.onHeaderValue(new FastBuffer(currentBufferRef.buffer, start, len)) }, /** * @param {number} p * @param {number} statusCode * @param {0|1} upgrade * @param {0|1} shouldKeepAlive * @returns {number} */ wasm_on_headers_complete: (p, statusCode, upgrade, shouldKeepAlive) => { assert(currentParser.ptr === p) return currentParser.onHeadersComplete(statusCode, upgrade === 1, shouldKeepAlive === 1) }, /** * @param {number} p * @param {number} at * @param {number} len * @returns {number} */ wasm_on_body: (p, at, len) => { assert(currentParser.ptr === p) const start = at - currentBufferPtr + currentBufferRef.byteOffset return currentParser.onBody(new FastBuffer(currentBufferRef.buffer, start, len)) }, /** * @param {number} p * @returns {number} */ wasm_on_message_complete: (p) => { assert(currentParser.ptr === p) return currentParser.onMessageComplete() } } }) } let llhttpInstance = null /** * @type {Parser|null} */ let currentParser = null let currentBufferRef = null /** * @type {number} */ let currentBufferSize = 0 let currentBufferPtr = null const USE_NATIVE_TIMER = 0 const USE_FAST_TIMER = 1 // Use fast timers for headers and body to take eventual event loop // latency into account. const TIMEOUT_HEADERS = 2 | USE_FAST_TIMER const TIMEOUT_BODY = 4 | USE_FAST_TIMER // Use native timers to ignore event loop latency for keep-alive // handling. const TIMEOUT_KEEP_ALIVE = 8 | USE_NATIVE_TIMER class Parser { /** * @param {import('./client.js')} client * @param {import('net').Socket} socket * @param {*} llhttp */ constructor (client, socket, { exports }) { this.llhttp = exports this.ptr = this.llhttp.llhttp_alloc(constants.TYPE.RESPONSE) this.client = client /** * @type {import('net').Socket} */ this.socket = socket this.timeout = null this.timeoutWeakRef = new WeakRef(this) this.timeoutValue = null this.timeoutType = null this.statusCode = 0 this.statusText = '' this.upgrade = false this.headers = [] this.headersSize = 0 this.headersMaxSize = client[kMaxHeadersSize] this.shouldKeepAlive = false this.paused = false this.resume = this.resume.bind(this) this.bytesRead = 0 this.keepAlive = '' this.contentLength = '' this.connection = '' this.maxResponseSize = client[kMaxResponseSize] } setTimeout (delay, type) { // If the existing timer and the new timer are of different timer type // (fast or native) or have different delay, we need to clear the existing // timer and set a new one. if ( delay !== this.timeoutValue || (type & USE_FAST_TIMER) ^ (this.timeoutType & USE_FAST_TIMER) ) { // If a timeout is already set, clear it with clearTimeout of the fast // timer implementation, as it can clear fast and native timers. if (this.timeout) { timers.clearTimeout(this.timeout) this.timeout = null } if (delay) { if (type & USE_FAST_TIMER) { this.timeout = timers.setFastTimeout(onParserTimeout, delay, this.timeoutWeakRef) } else { this.timeout = setTimeout(onParserTimeout, delay, this.timeoutWeakRef) this.timeout?.unref() } } this.timeoutValue = delay } else if (this.timeout) { if (this.timeout.refresh) { this.timeout.refresh() } } this.timeoutType = type } resume () { if (this.socket.destroyed || !this.paused) { return } assert(this.ptr != null) assert(currentParser === null) this.llhttp.llhttp_resume(this.ptr) assert(this.timeoutType === TIMEOUT_BODY) if (this.timeout) { if (this.timeout.refresh) { this.timeout.refresh() } } this.paused = false this.execute(this.socket.read() || EMPTY_BUF) // Flush parser. this.readMore() } readMore () { while (!this.paused && this.ptr) { const chunk = this.socket.read() if (chunk === null) { break } this.execute(chunk) } } /** * @param {Buffer} chunk */ execute (chunk) { assert(currentParser === null) assert(this.ptr != null) assert(!this.paused) const { socket, llhttp } = this // Allocate a new buffer if the current buffer is too small. if (chunk.length > currentBufferSize) { if (currentBufferPtr) { llhttp.free(currentBufferPtr) } // Allocate a buffer that is a multiple of 4096 bytes. currentBufferSize = Math.ceil(chunk.length / 4096) * 4096 currentBufferPtr = llhttp.malloc(currentBufferSize) } new Uint8Array(llhttp.memory.buffer, currentBufferPtr, currentBufferSize).set(chunk) // Call `execute` on the wasm parser. // We pass the `llhttp_parser` pointer address, the pointer address of buffer view data, // and finally the length of bytes to parse. // The return value is an error code or `constants.ERROR.OK`. try { let ret try { currentBufferRef = chunk currentParser = this ret = llhttp.llhttp_execute(this.ptr, currentBufferPtr, chunk.length) } finally { currentParser = null currentBufferRef = null } if (ret !== constants.ERROR.OK) { const data = chunk.subarray(llhttp.llhttp_get_error_pos(this.ptr) - currentBufferPtr) if (ret === constants.ERROR.PAUSED_UPGRADE) { this.onUpgrade(data) } else if (ret === constants.ERROR.PAUSED) { this.paused = true socket.unshift(data) } else { throw this.createError(ret, data) } } } catch (err) { util.destroy(socket, err) } } finish () { assert(currentParser === null) assert(this.ptr != null) assert(!this.paused) const { llhttp } = this let ret try { currentParser = this ret = llhttp.llhttp_finish(this.ptr) } finally { currentParser = null } if (ret === constants.ERROR.OK) { return null } if (ret === constants.ERROR.PAUSED || ret === constants.ERROR.PAUSED_UPGRADE) { this.paused = true return null } return this.createError(ret, EMPTY_BUF) } createError (ret, data) { const { llhttp, contentLength, bytesRead } = this if (contentLength && bytesRead !== parseInt(contentLength, 10)) { return new ResponseContentLengthMismatchError() } const ptr = llhttp.llhttp_get_error_reason(this.ptr) let message = '' if (ptr) { const len = new Uint8Array(llhttp.memory.buffer, ptr).indexOf(0) message = 'Response does not match the HTTP/1.1 protocol (' + Buffer.from(llhttp.memory.buffer, ptr, len).toString() + ')' } return new HTTPParserError(message, constants.ERROR[ret], data) } destroy () { assert(currentParser === null) assert(this.ptr != null) this.llhttp.llhttp_free(this.ptr) this.ptr = null this.timeout && timers.clearTimeout(this.timeout) this.timeout = null this.timeoutValue = null this.timeoutType = null this.paused = false } /** * @param {Buffer} buf * @returns {0} */ onStatus (buf) { this.statusText = buf.toString() return 0 } /** * @returns {0|-1} */ onMessageBegin () { const { socket, client } = this if (socket.destroyed) { return -1 } if (client[kRunning] === 0) { util.destroy(socket, new SocketError('bad response', util.getSocketInfo(socket))) return -1 } const request = client[kQueue][client[kRunningIdx]] if (!request) { return -1 } request.onResponseStarted() return 0 } /** * @param {Buffer} buf * @returns {number} */ onHeaderField (buf) { const len = this.headers.length if ((len & 1) === 0) { this.headers.push(buf) } else { this.headers[len - 1] = Buffer.concat([this.headers[len - 1], buf]) } this.trackHeader(buf.length) return 0 } /** * @param {Buffer} buf * @returns {number} */ onHeaderValue (buf) { let len = this.headers.length if ((len & 1) === 1) { this.headers.push(buf) len += 1 } else { this.headers[len - 1] = Buffer.concat([this.headers[len - 1], buf]) } const key = this.headers[len - 2] if (key.length === 10) { const headerName = util.bufferToLowerCasedHeaderName(key) if (headerName === 'keep-alive') { this.keepAlive += buf.toString() } else if (headerName === 'connection') { this.connection += buf.toString() } } else if (key.length === 14 && util.bufferToLowerCasedHeaderName(key) === 'content-length') { this.contentLength += buf.toString() } this.trackHeader(buf.length) return 0 } /** * @param {number} len */ trackHeader (len) { this.headersSize += len if (this.headersSize >= this.headersMaxSize) { util.destroy(this.socket, new HeadersOverflowError()) } } /** * @param {Buffer} head */ onUpgrade (head) { const { upgrade, client, socket, headers, statusCode } = this assert(upgrade) assert(client[kSocket] === socket) assert(!socket.destroyed) assert(!this.paused) assert((headers.length & 1) === 0) const request = client[kQueue][client[kRunningIdx]] assert(request) assert(request.upgrade || request.method === 'CONNECT') this.statusCode = 0 this.statusText = '' this.shouldKeepAlive = false this.headers = [] this.headersSize = 0 socket.unshift(head) socket[kParser].destroy() socket[kParser] = null socket[kClient] = null socket[kError] = null removeAllListeners(socket) client[kSocket] = null client[kHTTPContext] = null // TODO (fix): This is hacky... client[kQueue][client[kRunningIdx]++] = null client.emit('disconnect', client[kUrl], [client], new InformationalError('upgrade')) try { request.onUpgrade(statusCode, headers, socket) } catch (err) { util.destroy(socket, err) } client[kResume]() } /** * @param {number} statusCode * @param {boolean} upgrade * @param {boolean} shouldKeepAlive * @returns {number} */ onHeadersComplete (statusCode, upgrade, shouldKeepAlive) { const { client, socket, headers, statusText } = this if (socket.destroyed) { return -1 } if (client[kRunning] === 0) { util.destroy(socket, new SocketError('bad response', util.getSocketInfo(socket))) return -1 } const request = client[kQueue][client[kRunningIdx]] if (!request) { return -1 } assert(!this.upgrade) assert(this.statusCode < 200) if (statusCode === 100) { util.destroy(socket, new SocketError('bad response', util.getSocketInfo(socket))) return -1 } /* this can only happen if server is misbehaving */ if (upgrade && !request.upgrade) { util.destroy(socket, new SocketError('bad upgrade', util.getSocketInfo(socket))) return -1 } assert(this.timeoutType === TIMEOUT_HEADERS) this.statusCode = statusCode this.shouldKeepAlive = ( shouldKeepAlive || // Override llhttp value which does not allow keepAlive for HEAD. (request.method === 'HEAD' && !socket[kReset] && this.connection.toLowerCase() === 'keep-alive') ) if (this.statusCode >= 200) { const bodyTimeout = request.bodyTimeout != null ? request.bodyTimeout : client[kBodyTimeout] this.setTimeout(bodyTimeout, TIMEOUT_BODY) } else if (this.timeout) { if (this.timeout.refresh) { this.timeout.refresh() } } if (request.method === 'CONNECT') { assert(client[kRunning] === 1) this.upgrade = true return 2 } if (upgrade) { assert(client[kRunning] === 1) this.upgrade = true return 2 } assert((this.headers.length & 1) === 0) this.headers = [] this.headersSize = 0 if (this.shouldKeepAlive && client[kPipelining]) { const keepAliveTimeout = this.keepAlive ? util.parseKeepAliveTimeout(this.keepAlive) : null if (keepAliveTimeout != null) { const timeout = Math.min( keepAliveTimeout - client[kKeepAliveTimeoutThreshold], client[kKeepAliveMaxTimeout] ) if (timeout <= 0) { socket[kReset] = true } else { client[kKeepAliveTimeoutValue] = timeout } } else { client[kKeepAliveTimeoutValue] = client[kKeepAliveDefaultTimeout] } } else { // Stop more requests from being dispatched. socket[kReset] = true } const pause = request.onHeaders(statusCode, headers, this.resume, statusText) === false if (request.aborted) { return -1 } if (request.method === 'HEAD') { return 1 } if (statusCode < 200) { return 1 } if (socket[kBlocking]) { socket[kBlocking] = false client[kResume]() } return pause ? constants.ERROR.PAUSED : 0 } /** * @param {Buffer} buf * @returns {number} */ onBody (buf) { const { client, socket, statusCode, maxResponseSize } = this if (socket.destroyed) { return -1 } const request = client[kQueue][client[kRunningIdx]] assert(request) assert(this.timeoutType === TIMEOUT_BODY) if (this.timeout) { if (this.timeout.refresh) { this.timeout.refresh() } } assert(statusCode >= 200) if (maxResponseSize > -1 && this.bytesRead + buf.length > maxResponseSize) { util.destroy(socket, new ResponseExceededMaxSizeError()) return -1 } this.bytesRead += buf.length if (request.onData(buf) === false) { return constants.ERROR.PAUSED } return 0 } /** * @returns {number} */ onMessageComplete () { const { client, socket, statusCode, upgrade, headers, contentLength, bytesRead, shouldKeepAlive } = this if (socket.destroyed && (!statusCode || shouldKeepAlive)) { return -1 } if (upgrade) { return 0 } assert(statusCode >= 100) assert((this.headers.length & 1) === 0) const request = client[kQueue][client[kRunningIdx]] assert(request) this.statusCode = 0 this.statusText = '' this.bytesRead = 0 this.contentLength = '' this.keepAlive = '' this.connection = '' this.headers = [] this.headersSize = 0 if (statusCode < 200) { return 0 } if (request.method !== 'HEAD' && contentLength && bytesRead !== parseInt(contentLength, 10)) { util.destroy(socket, new ResponseContentLengthMismatchError()) return -1 } request.onComplete(headers) client[kQueue][client[kRunningIdx]++] = null socket[kSocketUsed] = client[kPending] === 0 if (socket[kWriting]) { assert(client[kRunning] === 0) // Response completed before request. util.destroy(socket, new InformationalError('reset')) return constants.ERROR.PAUSED } else if (!shouldKeepAlive) { util.destroy(socket, new InformationalError('reset')) return constants.ERROR.PAUSED } else if (socket[kReset] && client[kRunning] === 0) { // Destroy socket once all requests have completed. // The request at the tail of the pipeline is the one // that requested reset and no further requests should // have been queued since then. util.destroy(socket, new InformationalError('reset')) return constants.ERROR.PAUSED } else if (client[kPipelining] == null || client[kPipelining] === 1) { // We must wait a full event loop cycle to reuse this socket to make sure // that non-spec compliant servers are not closing the connection even if they // said they won't. setImmediate(client[kResume]) } else { client[kResume]() } return 0 } } function onParserTimeout (parserWeakRef) { const parser = parserWeakRef.deref() if (!parser) { return } const { socket, timeoutType, client, paused } = parser if (timeoutType === TIMEOUT_HEADERS) { if (!socket[kWriting] || socket.writableNeedDrain || client[kRunning] > 1) { assert(!paused, 'cannot be paused while waiting for headers') util.destroy(socket, new HeadersTimeoutError()) } } else if (timeoutType === TIMEOUT_BODY) { if (!paused) { util.destroy(socket, new BodyTimeoutError()) } } else if (timeoutType === TIMEOUT_KEEP_ALIVE) { assert(client[kRunning] === 0 && client[kKeepAliveTimeoutValue]) util.destroy(socket, new InformationalError('socket idle timeout')) } } /** * @param {import ('./client.js')} client * @param {import('net').Socket} socket * @returns */ function connectH1 (client, socket) { client[kSocket] = socket if (!llhttpInstance) { llhttpInstance = lazyllhttp() } if (socket.errored) { throw socket.errored } if (socket.destroyed) { throw new SocketError('destroyed') } socket[kNoRef] = false socket[kWriting] = false socket[kReset] = false socket[kBlocking] = false socket[kIdleSocketValidation] = 0 socket[kIdleSocketValidationTimeout] = null socket[kSocketUsed] = false socket[kParser] = new Parser(client, socket, llhttpInstance) util.addListener(socket, 'error', onHttpSocketError) util.addListener(socket, 'readable', onHttpSocketReadable) util.addListener(socket, 'end', onHttpSocketEnd) util.addListener(socket, 'close', onHttpSocketClose) socket[kClosed] = false socket.on('close', onSocketClose) return { version: 'h1', defaultPipelining: 1, write (request) { return writeH1(client, request) }, resume () { resumeH1(client) }, /** * @param {Error|undefined} err * @param {() => void} callback */ destroy (err, callback) { if (socket[kClosed]) { queueMicrotask(callback) } else { socket.on('close', callback) socket.destroy(err) } }, /** * @returns {boolean} */ get destroyed () { return socket.destroyed }, /** * @param {import('../core/request.js')} request * @returns {boolean} */ busy (request) { if (socket[kWriting] || socket[kReset] || socket[kBlocking] || socket[kIdleSocketValidation] === 1) { return true } if (request) { if (client[kRunning] > 0 && !request.idempotent) { // Non-idempotent request cannot be retried. // Ensure that no other requests are inflight and // could cause failure. return true } if (client[kRunning] > 0 && (request.upgrade || request.method === 'CONNECT')) { // Don't dispatch an upgrade until all preceding requests have completed. // A misbehaving server might upgrade the connection before all pipelined // request has completed. return true } if (client[kRunning] > 0 && util.bodyLength(request.body) !== 0 && (util.isStream(request.body) || util.isAsyncIterable(request.body) || util.isFormDataLike(request.body))) { // Request with stream or iterator body can error while other requests // are inflight and indirectly error those as well. // Ensure this doesn't happen by waiting for inflight // to complete before dispatching. // Request with stream or iterator body cannot be retried. // Ensure that no other requests are inflight and // could cause failure. return true } } return false } } } function onHttpSocketError (err) { assert(err.code !== 'ERR_TLS_CERT_ALTNAME_INVALID') const parser = this[kParser] // On Mac OS, we get an ECONNRESET even if there is a full body to be forwarded // to the user. if (err.code === 'ECONNRESET' && parser.statusCode && !parser.shouldKeepAlive) { const parserErr = parser.finish() if (parserErr) { this[kError] = parserErr this[kClient][kOnError](parserErr) } return } this[kError] = err this[kClient][kOnError](err) } function onHttpSocketReadable () { this[kParser]?.readMore() } function onHttpSocketEnd () { const parser = this[kParser] if (parser.statusCode && !parser.shouldKeepAlive) { const parserErr = parser.finish() if (parserErr) { util.destroy(this, parserErr) } return } util.destroy(this, new SocketError('other side closed', util.getSocketInfo(this))) } function onHttpSocketClose () { const parser = this[kParser] clearIdleSocketValidation(this) if (parser) { if (!this[kError] && parser.statusCode && !parser.shouldKeepAlive) { this[kError] = parser.finish() || this[kError] } this[kParser].destroy() this[kParser] = null } const err = this[kError] || new SocketError('closed', util.getSocketInfo(this)) const client = this[kClient] client[kSocket] = null client[kHTTPContext] = null // TODO (fix): This is hacky... if (client.destroyed) { assert(client[kPending] === 0) // Fail entire queue. const requests = client[kQueue].splice(client[kRunningIdx]) for (let i = 0; i < requests.length; i++) { const request = requests[i] util.errorRequest(client, request, err) } } else if (client[kRunning] > 0 && err.code !== 'UND_ERR_INFO') { // Fail head of pipeline. const request = client[kQueue][client[kRunningIdx]] client[kQueue][client[kRunningIdx]++] = null util.errorRequest(client, request, err) } client[kPendingIdx] = client[kRunningIdx] assert(client[kRunning] === 0) client.emit('disconnect', client[kUrl], [client], err) client[kResume]() } function onSocketClose () { this[kClosed] = true } function clearIdleSocketValidation (socket) { if (socket[kIdleSocketValidationTimeout]) { clearTimeout(socket[kIdleSocketValidationTimeout]) socket[kIdleSocketValidationTimeout] = null } socket[kIdleSocketValidation] = 0 } function scheduleIdleSocketValidation (client, socket) { socket[kIdleSocketValidation] = 1 socket[kIdleSocketValidationTimeout] = setTimeout(() => { socket[kIdleSocketValidationTimeout] = null socket[kIdleSocketValidation] = 2 if (client[kSocket] === socket && !socket.destroyed) { client[kResume]() } }, 0) socket[kIdleSocketValidationTimeout].unref?.() } /** * @param {import('./client.js')} client */ function resumeH1 (client) { const socket = client[kSocket] if (socket && !socket.destroyed) { if (client[kSize] === 0) { if (!socket[kNoRef] && socket.unref) { socket.unref() socket[kNoRef] = true } } else if (socket[kNoRef] && socket.ref) { socket.ref() socket[kNoRef] = false } if (client[kRunning] === 0 && client[kPending] > 0 && socket[kSocketUsed]) { if (socket[kIdleSocketValidation] === 0) { scheduleIdleSocketValidation(client, socket) socket[kParser].readMore() if (socket.destroyed) { return } return } if (socket[kIdleSocketValidation] === 1) { socket[kParser].readMore() if (socket.destroyed) { return } return } } if (client[kRunning] === 0) { socket[kParser].readMore() if (socket.destroyed) { return } } if (client[kSize] === 0) { if (socket[kParser].timeoutType !== TIMEOUT_KEEP_ALIVE) { socket[kParser].setTimeout(client[kKeepAliveTimeoutValue], TIMEOUT_KEEP_ALIVE) } } else if (client[kRunning] > 0 && socket[kParser].statusCode < 200) { if (socket[kParser].timeoutType !== TIMEOUT_HEADERS) { const request = client[kQueue][client[kRunningIdx]] const headersTimeout = request.headersTimeout != null ? request.headersTimeout : client[kHeadersTimeout] socket[kParser].setTimeout(headersTimeout, TIMEOUT_HEADERS) } } } } // https://www.rfc-editor.org/rfc/rfc7230#section-3.3.2 function shouldSendContentLength (method) { return method !== 'GET' && method !== 'HEAD' && method !== 'OPTIONS' && method !== 'TRACE' && method !== 'CONNECT' } /** * @param {import('./client.js')} client * @param {import('../core/request.js')} request * @returns */ function writeH1 (client, request) { const { method, path, host, upgrade, blocking, reset } = request let { body, headers, contentLength } = request // https://tools.ietf.org/html/rfc7231#section-4.3.1 // https://tools.ietf.org/html/rfc7231#section-4.3.2 // https://tools.ietf.org/html/rfc7231#section-4.3.5 // Sending a payload body on a request that does not // expect it can cause undefined behavior on some // servers and corrupt connection state. Do not // re-use the connection for further requests. const expectsPayload = ( method === 'PUT' || method === 'POST' || method === 'PATCH' || method === 'QUERY' || method === 'PROPFIND' || method === 'PROPPATCH' ) if (util.isFormDataLike(body)) { if (!extractBody) { extractBody = (__nccwpck_require__(84492).extractBody) } const [bodyStream, contentType] = extractBody(body) if (request.contentType == null) { headers.push('content-type', contentType) } body = bodyStream.stream contentLength = bodyStream.length } else if (util.isBlobLike(body) && request.contentType == null) { const contentType = body.type if (contentType) { const contentTypeValue = `${contentType}` if (!util.isValidHeaderValue(contentTypeValue)) { util.errorRequest(client, request, new InvalidArgumentError('invalid content-type header')) return false } headers.push('content-type', contentTypeValue) } } if (body && typeof body.read === 'function') { // Try to read EOF in order to get length. body.read(0) } const bodyLength = util.bodyLength(body) contentLength = bodyLength ?? contentLength if (contentLength === null) { contentLength = request.contentLength } if (contentLength === 0 && !expectsPayload) { // https://tools.ietf.org/html/rfc7230#section-3.3.2 // A user agent SHOULD NOT send a Content-Length header field when // the request message does not contain a payload body and the method // semantics do not anticipate such a body. contentLength = null } // https://github.com/nodejs/undici/issues/2046 // A user agent may send a Content-Length header with 0 value, this should be allowed. if (shouldSendContentLength(method) && contentLength > 0 && request.contentLength !== null && request.contentLength !== contentLength) { if (client[kStrictContentLength]) { util.errorRequest(client, request, new RequestContentLengthMismatchError()) return false } process.emitWarning(new RequestContentLengthMismatchError()) } const socket = client[kSocket] clearIdleSocketValidation(socket) /** * @param {Error} [err] * @returns {void} */ const abort = (err) => { if (request.aborted || request.completed) { return } util.errorRequest(client, request, err || new RequestAbortedError()) util.destroy(body) util.destroy(socket, new InformationalError('aborted')) } try { request.onConnect(abort) } catch (err) { util.errorRequest(client, request, err) } if (request.aborted) { return false } if (method === 'HEAD') { // https://github.com/mcollina/undici/issues/258 // Close after a HEAD request to interop with misbehaving servers // that may send a body in the response. socket[kReset] = true } if (upgrade || method === 'CONNECT') { // On CONNECT or upgrade, block pipeline from dispatching further // requests on this connection. socket[kReset] = true } if (reset != null) { socket[kReset] = reset } if (client[kMaxRequests] && socket[kCounter]++ >= client[kMaxRequests]) { socket[kReset] = true } if (blocking) { socket[kBlocking] = true } if (socket.setTypeOfService) { socket.setTypeOfService(request.typeOfService) } let header = `${method} ${path} HTTP/1.1\r\n` if (typeof host === 'string') { header += `host: ${host}\r\n` } else { header += client[kHostHeader] } if (upgrade) { header += `connection: upgrade\r\nupgrade: ${upgrade}\r\n` } else if (client[kPipelining] && !socket[kReset]) { header += 'connection: keep-alive\r\n' } else { header += 'connection: close\r\n' } if (Array.isArray(headers)) { for (let n = 0; n < headers.length; n += 2) { const key = headers[n + 0] const val = headers[n + 1] if (Array.isArray(val)) { for (let i = 0; i < val.length; i++) { header += `${key}: ${val[i]}\r\n` } } else { header += `${key}: ${val}\r\n` } } } if (channels.sendHeaders.hasSubscribers) { channels.sendHeaders.publish({ request, headers: header, socket }) } if (!body || bodyLength === 0) { writeBuffer(abort, null, client, request, socket, contentLength, header, expectsPayload) } else if (util.isBuffer(body)) { writeBuffer(abort, body, client, request, socket, contentLength, header, expectsPayload) } else if (util.isBlobLike(body)) { if (typeof body.stream === 'function') { writeIterable(abort, body.stream(), client, request, socket, contentLength, header, expectsPayload) } else { writeBlob(abort, body, client, request, socket, contentLength, header, expectsPayload) } } else if (util.isStream(body)) { writeStream(abort, body, client, request, socket, contentLength, header, expectsPayload) } else if (util.isIterable(body)) { writeIterable(abort, body, client, request, socket, contentLength, header, expectsPayload) } else { assert(false) } return true } /** * @param {AbortCallback} abort * @param {import('stream').Stream} body * @param {import('./client.js')} client * @param {import('../core/request.js')} request * @param {import('net').Socket} socket * @param {number} contentLength * @param {string} header * @param {boolean} expectsPayload */ function writeStream (abort, body, client, request, socket, contentLength, header, expectsPayload) { assert(contentLength !== 0 || client[kRunning] === 0, 'stream body cannot be pipelined') let finished = false const writer = new AsyncWriter({ abort, socket, request, contentLength, client, expectsPayload, header }) /** * @param {Buffer} chunk * @returns {void} */ const onData = function (chunk) { if (finished) { return } try { if (!writer.write(chunk) && this.pause) { this.pause() } } catch (err) { util.destroy(this, err) } } /** * @returns {void} */ const onDrain = function () { if (finished) { return } if (body.resume) { body.resume() } } /** * @returns {void} */ const onClose = function () { // 'close' might be emitted *before* 'error' for // broken streams. Wait a tick to avoid this case. queueMicrotask(() => { // It's only safe to remove 'error' listener after // 'close'. body.removeListener('error', onFinished) }) if (!finished) { const err = new RequestAbortedError() queueMicrotask(() => onFinished(err)) } } /** * @param {Error} [err] * @returns */ const onFinished = function (err) { if (finished) { return } finished = true assert(socket.destroyed || (socket[kWriting] && client[kRunning] <= 1)) socket .off('drain', onDrain) .off('error', onFinished) body .removeListener('data', onData) .removeListener('end', onFinished) .removeListener('close', onClose) if (!err) { try { writer.end() } catch (er) { err = er } } writer.destroy(err) if (err && (err.code !== 'UND_ERR_INFO' || err.message !== 'reset')) { util.destroy(body, err) } else { util.destroy(body) } } body .on('data', onData) .on('end', onFinished) .on('error', onFinished) .on('close', onClose) if (body.resume) { body.resume() } socket .on('drain', onDrain) .on('error', onFinished) if (body.errorEmitted ?? body.errored) { setImmediate(onFinished, body.errored) } else if (body.endEmitted ?? body.readableEnded) { setImmediate(onFinished, null) } if (body.closeEmitted ?? body.closed) { setImmediate(onClose) } } /** * @typedef AbortCallback * @type {Function} * @param {Error} [err] * @returns {void} */ /** * @param {AbortCallback} abort * @param {Uint8Array|null} body * @param {import('./client.js')} client * @param {import('../core/request.js')} request * @param {import('net').Socket} socket * @param {number} contentLength * @param {string} header * @param {boolean} expectsPayload * @returns {void} */ function writeBuffer (abort, body, client, request, socket, contentLength, header, expectsPayload) { try { if (!body) { if (contentLength === 0) { socket.write(`${header}content-length: 0\r\n\r\n`, 'latin1') } else { assert(contentLength === null, 'no body must not have content length') socket.write(`${header}\r\n`, 'latin1') } } else if (util.isBuffer(body)) { assert(contentLength === body.byteLength, 'buffer body must have content length') socket.cork() socket.write(`${header}content-length: ${contentLength}\r\n\r\n`, 'latin1') socket.write(body) socket.uncork() request.onBodySent(body) if (!expectsPayload && request.reset !== false) { socket[kReset] = true } } request.onRequestSent() client[kResume]() } catch (err) { abort(err) } } /** * @param {AbortCallback} abort * @param {Blob} body * @param {import('./client.js')} client * @param {import('../core/request.js')} request * @param {import('net').Socket} socket * @param {number} contentLength * @param {string} header * @param {boolean} expectsPayload * @returns {Promise} */ async function writeBlob (abort, body, client, request, socket, contentLength, header, expectsPayload) { assert(contentLength === body.size, 'blob body must have content length') try { if (contentLength != null && contentLength !== body.size) { throw new RequestContentLengthMismatchError() } const buffer = Buffer.from(await body.arrayBuffer()) socket.cork() socket.write(`${header}content-length: ${contentLength}\r\n\r\n`, 'latin1') socket.write(buffer) socket.uncork() request.onBodySent(buffer) request.onRequestSent() if (!expectsPayload && request.reset !== false) { socket[kReset] = true } client[kResume]() } catch (err) { abort(err) } } /** * @param {AbortCallback} abort * @param {Iterable} body * @param {import('./client.js')} client * @param {import('../core/request.js')} request * @param {import('net').Socket} socket * @param {number} contentLength * @param {string} header * @param {boolean} expectsPayload * @returns {Promise} */ async function writeIterable (abort, body, client, request, socket, contentLength, header, expectsPayload) { assert(contentLength !== 0 || client[kRunning] === 0, 'iterator body cannot be pipelined') let callback = null function onDrain () { if (callback) { const cb = callback callback = null cb() } } const waitForDrain = () => new Promise((resolve, reject) => { assert(callback === null) if (socket[kError]) { reject(socket[kError]) } else { callback = resolve } }) socket .on('close', onDrain) .on('drain', onDrain) const writer = new AsyncWriter({ abort, socket, request, contentLength, client, expectsPayload, header }) try { // It's up to the user to somehow abort the async iterable. for await (const chunk of body) { if (socket[kError]) { throw socket[kError] } if (!writer.write(chunk)) { await waitForDrain() } } writer.end() } catch (err) { writer.destroy(err) } finally { socket .off('close', onDrain) .off('drain', onDrain) } } class AsyncWriter { /** * * @param {object} arg * @param {AbortCallback} arg.abort * @param {import('net').Socket} arg.socket * @param {import('../core/request.js')} arg.request * @param {number} arg.contentLength * @param {import('./client.js')} arg.client * @param {boolean} arg.expectsPayload * @param {string} arg.header */ constructor ({ abort, socket, request, contentLength, client, expectsPayload, header }) { this.socket = socket this.request = request this.contentLength = contentLength this.client = client this.bytesWritten = 0 this.expectsPayload = expectsPayload this.header = header this.abort = abort socket[kWriting] = true } /** * @param {Buffer} chunk * @returns */ write (chunk) { const { socket, request, contentLength, client, bytesWritten, expectsPayload, header } = this if (socket[kError]) { throw socket[kError] } if (socket.destroyed) { return false } const len = Buffer.byteLength(chunk) if (!len) { return true } // We should defer writing chunks. if (contentLength !== null && bytesWritten + len > contentLength) { if (client[kStrictContentLength]) { throw new RequestContentLengthMismatchError() } process.emitWarning(new RequestContentLengthMismatchError()) } socket.cork() if (bytesWritten === 0) { if (!expectsPayload && request.reset !== false) { socket[kReset] = true } if (contentLength === null) { socket.write(`${header}transfer-encoding: chunked\r\n`, 'latin1') } else { socket.write(`${header}content-length: ${contentLength}\r\n\r\n`, 'latin1') } } if (contentLength === null) { socket.write(`\r\n${len.toString(16)}\r\n`, 'latin1') } this.bytesWritten += len const ret = socket.write(chunk) socket.uncork() request.onBodySent(chunk) if (!ret) { if (socket[kParser].timeout && socket[kParser].timeoutType === TIMEOUT_HEADERS) { if (socket[kParser].timeout.refresh) { socket[kParser].timeout.refresh() } } } return ret } /** * @returns {void} */ end () { const { socket, contentLength, client, bytesWritten, expectsPayload, header, request } = this request.onRequestSent() socket[kWriting] = false if (socket[kError]) { throw socket[kError] } if (socket.destroyed) { return } if (bytesWritten === 0) { if (expectsPayload) { // https://tools.ietf.org/html/rfc7230#section-3.3.2 // A user agent SHOULD send a Content-Length in a request message when // no Transfer-Encoding is sent and the request method defines a meaning // for an enclosed payload body. socket.write(`${header}content-length: 0\r\n\r\n`, 'latin1') } else { socket.write(`${header}\r\n`, 'latin1') } } else if (contentLength === null) { socket.write('\r\n0\r\n\r\n', 'latin1') } if (contentLength !== null && bytesWritten !== contentLength) { if (client[kStrictContentLength]) { throw new RequestContentLengthMismatchError() } else { process.emitWarning(new RequestContentLengthMismatchError()) } } if (socket[kParser].timeout && socket[kParser].timeoutType === TIMEOUT_HEADERS) { if (socket[kParser].timeout.refresh) { socket[kParser].timeout.refresh() } } client[kResume]() } /** * @param {Error} [err] * @returns {void} */ destroy (err) { const { socket, client, abort } = this socket[kWriting] = false if (err) { assert(client[kRunning] <= 1, 'pipeline should only contain this request') abort(err) } } } module.exports = connectH1 /***/ }), /***/ 88788: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const assert = __nccwpck_require__(34589) const { pipeline } = __nccwpck_require__(57075) const util = __nccwpck_require__(3440) const { RequestContentLengthMismatchError, RequestAbortedError, SocketError, InformationalError, InvalidArgumentError } = __nccwpck_require__(68707) const { kUrl, kReset, kClient, kRunning, kPending, kQueue, kPendingIdx, kRunningIdx, kError, kSocket, kStrictContentLength, kOnError, kMaxConcurrentStreams, kPingInterval, kHTTP2Session, kHTTP2InitialWindowSize, kHTTP2ConnectionWindowSize, kResume, kSize, kHTTPContext, kClosed, kBodyTimeout, kEnableConnectProtocol, kRemoteSettings, kHTTP2Stream, kHTTP2SessionState } = __nccwpck_require__(36443) const { channels } = __nccwpck_require__(42414) const kOpenStreams = Symbol('open streams') let extractBody /** @type {import('http2')} */ let http2 try { http2 = __nccwpck_require__(32467) } catch { // @ts-ignore http2 = { constants: {} } } const { constants: { HTTP2_HEADER_AUTHORITY, HTTP2_HEADER_METHOD, HTTP2_HEADER_PATH, HTTP2_HEADER_SCHEME, HTTP2_HEADER_CONTENT_LENGTH, HTTP2_HEADER_EXPECT, HTTP2_HEADER_STATUS, HTTP2_HEADER_PROTOCOL, NGHTTP2_REFUSED_STREAM, NGHTTP2_CANCEL } } = http2 function parseH2Headers (headers) { const result = [] for (const [name, value] of Object.entries(headers)) { // h2 may concat the header value by array // e.g. Set-Cookie if (Array.isArray(value)) { for (const subvalue of value) { // we need to provide each header value of header name // because the headers handler expect name-value pair result.push(Buffer.from(name), Buffer.from(subvalue)) } } else { result.push(Buffer.from(name), Buffer.from(value)) } } return result } function connectH2 (client, socket) { client[kSocket] = socket const http2InitialWindowSize = client[kHTTP2InitialWindowSize] const http2ConnectionWindowSize = client[kHTTP2ConnectionWindowSize] const session = http2.connect(client[kUrl], { createConnection: () => socket, peerMaxConcurrentStreams: client[kMaxConcurrentStreams], settings: { // TODO(metcoder95): add support for PUSH enablePush: false, ...(http2InitialWindowSize != null ? { initialWindowSize: http2InitialWindowSize } : null) } }) client[kSocket] = socket session[kOpenStreams] = 0 session[kClient] = client session[kSocket] = socket session[kHTTP2SessionState] = { ping: { interval: client[kPingInterval] === 0 ? null : setInterval(onHttp2SendPing, client[kPingInterval], session).unref() } } // We set it to true by default in a best-effort; however once connected to an H2 server // we will check if extended CONNECT protocol is supported or not // and set this value accordingly. session[kEnableConnectProtocol] = false // States whether or not we have received the remote settings from the server session[kRemoteSettings] = false // Apply connection-level flow control once connected (if supported). if (http2ConnectionWindowSize) { util.addListener(session, 'connect', applyConnectionWindowSize.bind(session, http2ConnectionWindowSize)) } util.addListener(session, 'error', onHttp2SessionError) util.addListener(session, 'frameError', onHttp2FrameError) util.addListener(session, 'end', onHttp2SessionEnd) util.addListener(session, 'goaway', onHttp2SessionGoAway) util.addListener(session, 'close', onHttp2SessionClose) util.addListener(session, 'remoteSettings', onHttp2RemoteSettings) // TODO (@metcoder95): implement SETTINGS support // util.addListener(session, 'localSettings', onHttp2RemoteSettings) session.unref() client[kHTTP2Session] = session socket[kHTTP2Session] = session util.addListener(socket, 'error', onHttp2SocketError) util.addListener(socket, 'end', onHttp2SocketEnd) util.addListener(socket, 'close', onHttp2SocketClose) socket[kClosed] = false socket.on('close', onSocketClose) return { version: 'h2', defaultPipelining: Infinity, /** * @param {import('../core/request.js')} request * @returns {boolean} */ write (request) { return writeH2(client, request) }, /** * @returns {void} */ resume () { resumeH2(client) }, /** * @param {Error | null} err * @param {() => void} callback */ destroy (err, callback) { if (socket[kClosed]) { queueMicrotask(callback) } else { socket.destroy(err).on('close', callback) } }, /** * @type {boolean} */ get destroyed () { return socket.destroyed }, /** * @param {import('../core/request.js')} request * @returns {boolean} */ busy (request) { if (request != null) { if (client[kRunning] > 0) { // We are already processing requests // Non-idempotent request cannot be retried. // Ensure that no other requests are inflight and // could cause failure. if (request.idempotent === false) return true // Don't dispatch an upgrade until all preceding requests have completed. // Possibly, we do not have remote settings confirmed yet. if ((request.upgrade === 'websocket' || request.method === 'CONNECT') && session[kRemoteSettings] === false) return true // Request with stream or iterator body can error while other requests // are inflight and indirectly error those as well. // Ensure this doesn't happen by waiting for inflight // to complete before dispatching. // Request with stream or iterator body cannot be retried. // Ensure that no other requests are inflight and // could cause failure. if (util.bodyLength(request.body) !== 0 && (util.isStream(request.body) || util.isAsyncIterable(request.body) || util.isFormDataLike(request.body))) return true } else { return (request.upgrade === 'websocket' || request.method === 'CONNECT') && session[kRemoteSettings] === false } } return false } } } function resumeH2 (client) { const socket = client[kSocket] if (socket?.destroyed === false) { if (client[kSize] === 0 || client[kMaxConcurrentStreams] === 0) { socket.unref() client[kHTTP2Session].unref() } else { socket.ref() client[kHTTP2Session].ref() } } } function applyConnectionWindowSize (connectionWindowSize) { try { if (typeof this.setLocalWindowSize === 'function') { this.setLocalWindowSize(connectionWindowSize) } } catch { // Best-effort only. } } function onHttp2RemoteSettings (settings) { // Fallbacks are a safe bet, remote setting will always override this[kClient][kMaxConcurrentStreams] = settings.maxConcurrentStreams ?? this[kClient][kMaxConcurrentStreams] /** * From RFC-8441 * A sender MUST NOT send a SETTINGS_ENABLE_CONNECT_PROTOCOL parameter * with the value of 0 after previously sending a value of 1. */ // Note: Cannot be tested in Node, it does not supports disabling the extended CONNECT protocol once enabled if (this[kRemoteSettings] === true && this[kEnableConnectProtocol] === true && settings.enableConnectProtocol === false) { const err = new InformationalError('HTTP/2: Server disabled extended CONNECT protocol against RFC-8441') this[kSocket][kError] = err this[kClient][kOnError](err) return } this[kEnableConnectProtocol] = settings.enableConnectProtocol ?? this[kEnableConnectProtocol] this[kRemoteSettings] = true this[kClient][kResume]() } function onHttp2SendPing (session) { const state = session[kHTTP2SessionState] if ((session.closed || session.destroyed) && state.ping.interval != null) { clearInterval(state.ping.interval) state.ping.interval = null return } // If no ping sent, do nothing session.ping(onPing.bind(session)) function onPing (err, duration) { const client = this[kClient] const socket = this[kClient] if (err != null) { const error = new InformationalError(`HTTP/2: "PING" errored - type ${err.message}`) socket[kError] = error client[kOnError](error) } else { client.emit('ping', duration) } } } function onHttp2SessionError (err) { assert(err.code !== 'ERR_TLS_CERT_ALTNAME_INVALID') this[kSocket][kError] = err this[kClient][kOnError](err) } function onHttp2FrameError (type, code, id) { if (id === 0) { const err = new InformationalError(`HTTP/2: "frameError" received - type ${type}, code ${code}`) this[kSocket][kError] = err this[kClient][kOnError](err) } } function onHttp2SessionEnd () { const err = new SocketError('other side closed', util.getSocketInfo(this[kSocket])) this.destroy(err) util.destroy(this[kSocket], err) } /** * This is the root cause of #3011 * We need to handle GOAWAY frames properly, and trigger the session close * along with the socket right away * * @this {import('http2').ClientHttp2Session} * @param {number} errorCode */ function onHttp2SessionGoAway (errorCode) { // TODO(mcollina): Verify if GOAWAY implements the spec correctly: // https://datatracker.ietf.org/doc/html/rfc7540#section-6.8 // Specifically, we do not verify the "valid" stream id. const err = this[kError] || new SocketError(`HTTP/2: "GOAWAY" frame received with code ${errorCode}`, util.getSocketInfo(this[kSocket])) const client = this[kClient] client[kSocket] = null client[kHTTPContext] = null // this is an HTTP2 session this.close() this[kHTTP2Session] = null util.destroy(this[kSocket], err) // Fail head of pipeline. if (client[kRunningIdx] < client[kQueue].length) { const request = client[kQueue][client[kRunningIdx]] client[kQueue][client[kRunningIdx]++] = null util.errorRequest(client, request, err) client[kPendingIdx] = client[kRunningIdx] } assert(client[kRunning] === 0) client.emit('disconnect', client[kUrl], [client], err) client.emit('connectionError', client[kUrl], [client], err) client[kResume]() } function onHttp2SessionClose () { const { [kClient]: client, [kHTTP2SessionState]: state } = this const { [kSocket]: socket } = client const err = this[kSocket][kError] || this[kError] || new SocketError('closed', util.getSocketInfo(socket)) client[kSocket] = null client[kHTTPContext] = null if (state.ping.interval != null) { clearInterval(state.ping.interval) state.ping.interval = null } if (client.destroyed) { assert(client[kPending] === 0) // Fail entire queue. const requests = client[kQueue].splice(client[kRunningIdx]) for (let i = 0; i < requests.length; i++) { const request = requests[i] util.errorRequest(client, request, err) } } } function onHttp2SocketClose () { const err = this[kError] || new SocketError('closed', util.getSocketInfo(this)) const client = this[kHTTP2Session][kClient] client[kSocket] = null client[kHTTPContext] = null if (this[kHTTP2Session] !== null) { this[kHTTP2Session].destroy(err) } client[kPendingIdx] = client[kRunningIdx] assert(client[kRunning] === 0) client.emit('disconnect', client[kUrl], [client], err) client[kResume]() } function onHttp2SocketError (err) { assert(err.code !== 'ERR_TLS_CERT_ALTNAME_INVALID') this[kError] = err this[kClient][kOnError](err) } function onHttp2SocketEnd () { util.destroy(this, new SocketError('other side closed', util.getSocketInfo(this))) } function onSocketClose () { this[kClosed] = true } // https://www.rfc-editor.org/rfc/rfc7230#section-3.3.2 function shouldSendContentLength (method) { return method !== 'GET' && method !== 'HEAD' && method !== 'OPTIONS' && method !== 'TRACE' && method !== 'CONNECT' } function writeH2 (client, request) { const requestTimeout = request.bodyTimeout ?? client[kBodyTimeout] const session = client[kHTTP2Session] const { method, path, host, upgrade, expectContinue, signal, protocol, headers: reqHeaders } = request let { body } = request if (upgrade != null && upgrade !== 'websocket') { util.errorRequest(client, request, new InvalidArgumentError(`Custom upgrade "${upgrade}" not supported over HTTP/2`)) return false } const headers = {} for (let n = 0; n < reqHeaders.length; n += 2) { const key = reqHeaders[n + 0] const val = reqHeaders[n + 1] if (key === 'cookie') { if (headers[key] != null) { headers[key] = Array.isArray(headers[key]) ? (headers[key].push(val), headers[key]) : [headers[key], val] } else { headers[key] = val } continue } if (Array.isArray(val)) { for (let i = 0; i < val.length; i++) { if (headers[key]) { headers[key] += `, ${val[i]}` } else { headers[key] = val[i] } } } else if (headers[key]) { headers[key] += `, ${val}` } else { headers[key] = val } } /** @type {import('node:http2').ClientHttp2Stream} */ let stream = null const { hostname, port } = client[kUrl] headers[HTTP2_HEADER_AUTHORITY] = host || `${hostname}${port ? `:${port}` : ''}` headers[HTTP2_HEADER_METHOD] = method const abort = (err) => { if (request.aborted || request.completed) { return } err = err || new RequestAbortedError() util.errorRequest(client, request, err) if (stream != null) { // Some chunks might still come after abort, // let's ignore them stream.removeAllListeners('data') // On Abort, we close the stream to send RST_STREAM frame stream.close() // We move the running index to the next request client[kOnError](err) client[kResume]() } // We do not destroy the socket as we can continue using the session // the stream gets destroyed and the session remains to create new streams util.destroy(body, err) } try { // We are already connected, streams are pending. // We can call on connect, and wait for abort request.onConnect(abort) } catch (err) { util.errorRequest(client, request, err) } if (request.aborted) { return false } if (upgrade || method === 'CONNECT') { session.ref() if (upgrade === 'websocket') { // We cannot upgrade to websocket if extended CONNECT protocol is not supported if (session[kEnableConnectProtocol] === false) { util.errorRequest(client, request, new InformationalError('HTTP/2: Extended CONNECT protocol not supported by server')) session.unref() return false } // We force the method to CONNECT // as per RFC-8441 // https://datatracker.ietf.org/doc/html/rfc8441#section-4 headers[HTTP2_HEADER_METHOD] = 'CONNECT' headers[HTTP2_HEADER_PROTOCOL] = 'websocket' // :path and :scheme headers must be omitted when sending CONNECT but set if extended-CONNECT headers[HTTP2_HEADER_PATH] = path if (protocol === 'ws:' || protocol === 'wss:') { headers[HTTP2_HEADER_SCHEME] = protocol === 'ws:' ? 'http' : 'https' } else { headers[HTTP2_HEADER_SCHEME] = protocol === 'http:' ? 'http' : 'https' } stream = session.request(headers, { endStream: false, signal }) stream[kHTTP2Stream] = true stream.once('response', (headers, _flags) => { const { [HTTP2_HEADER_STATUS]: statusCode, ...realHeaders } = headers request.onUpgrade(statusCode, parseH2Headers(realHeaders), stream) ++session[kOpenStreams] client[kQueue][client[kRunningIdx]++] = null }) stream.on('error', () => { if (stream.rstCode === NGHTTP2_REFUSED_STREAM || stream.rstCode === NGHTTP2_CANCEL) { // NGHTTP2_REFUSED_STREAM (7) or NGHTTP2_CANCEL (8) // We do not treat those as errors as the server might // not support websockets and refuse the stream abort(new InformationalError(`HTTP/2: "stream error" received - code ${stream.rstCode}`)) } }) stream.once('close', () => { session[kOpenStreams] -= 1 if (session[kOpenStreams] === 0) session.unref() }) stream.setTimeout(requestTimeout) return true } // TODO: consolidate once we support CONNECT properly // NOTE: We are already connected, streams are pending, first request // will create a new stream. We trigger a request to create the stream and wait until // `ready` event is triggered // We disabled endStream to allow the user to write to the stream stream = session.request(headers, { endStream: false, signal }) stream[kHTTP2Stream] = true stream.on('response', headers => { const { [HTTP2_HEADER_STATUS]: statusCode, ...realHeaders } = headers request.onUpgrade(statusCode, parseH2Headers(realHeaders), stream) ++session[kOpenStreams] client[kQueue][client[kRunningIdx]++] = null }) stream.once('close', () => { session[kOpenStreams] -= 1 if (session[kOpenStreams] === 0) session.unref() }) stream.setTimeout(requestTimeout) return true } // https://tools.ietf.org/html/rfc7540#section-8.3 // :path and :scheme headers must be omitted when sending CONNECT headers[HTTP2_HEADER_PATH] = path headers[HTTP2_HEADER_SCHEME] = protocol === 'http:' ? 'http' : 'https' // https://tools.ietf.org/html/rfc7231#section-4.3.1 // https://tools.ietf.org/html/rfc7231#section-4.3.2 // https://tools.ietf.org/html/rfc7231#section-4.3.5 // Sending a payload body on a request that does not // expect it can cause undefined behavior on some // servers and corrupt connection state. Do not // re-use the connection for further requests. const expectsPayload = ( method === 'PUT' || method === 'POST' || method === 'PATCH' ) if (body && typeof body.read === 'function') { // Try to read EOF in order to get length. body.read(0) } let contentLength = util.bodyLength(body) if (util.isFormDataLike(body)) { extractBody ??= (__nccwpck_require__(84492).extractBody) const [bodyStream, contentType] = extractBody(body) headers['content-type'] = contentType body = bodyStream.stream contentLength = bodyStream.length } if (contentLength == null) { contentLength = request.contentLength } if (!expectsPayload) { // https://tools.ietf.org/html/rfc7230#section-3.3.2 // A user agent SHOULD NOT send a Content-Length header field when // the request message does not contain a payload body and the method // semantics do not anticipate such a body. // And for methods that don't expect a payload, omit Content-Length. contentLength = null } // https://github.com/nodejs/undici/issues/2046 // A user agent may send a Content-Length header with 0 value, this should be allowed. if (shouldSendContentLength(method) && contentLength > 0 && request.contentLength != null && request.contentLength !== contentLength) { if (client[kStrictContentLength]) { util.errorRequest(client, request, new RequestContentLengthMismatchError()) return false } process.emitWarning(new RequestContentLengthMismatchError()) } if (contentLength != null) { assert(body || contentLength === 0, 'no body must not have content length') headers[HTTP2_HEADER_CONTENT_LENGTH] = `${contentLength}` } session.ref() if (channels.sendHeaders.hasSubscribers) { let header = '' for (const key in headers) { header += `${key}: ${headers[key]}\r\n` } channels.sendHeaders.publish({ request, headers: header, socket: session[kSocket] }) } // TODO(metcoder95): add support for sending trailers const shouldEndStream = method === 'GET' || method === 'HEAD' || body === null if (expectContinue) { headers[HTTP2_HEADER_EXPECT] = '100-continue' stream = session.request(headers, { endStream: shouldEndStream, signal }) stream[kHTTP2Stream] = true stream.once('continue', writeBodyH2) } else { stream = session.request(headers, { endStream: shouldEndStream, signal }) stream[kHTTP2Stream] = true writeBodyH2() } // Increment counter as we have new streams open ++session[kOpenStreams] stream.setTimeout(requestTimeout) // Track whether we received a response (headers) let responseReceived = false stream.once('response', headers => { const { [HTTP2_HEADER_STATUS]: statusCode, ...realHeaders } = headers request.onResponseStarted() responseReceived = true // Due to the stream nature, it is possible we face a race condition // where the stream has been assigned, but the request has been aborted // the request remains in-flight and headers hasn't been received yet // for those scenarios, best effort is to destroy the stream immediately // as there's no value to keep it open. if (request.aborted) { stream.removeAllListeners('data') return } if (request.onHeaders(Number(statusCode), parseH2Headers(realHeaders), stream.resume.bind(stream), '') === false) { stream.pause() } stream.on('data', (chunk) => { if (request.aborted || request.completed) { return } if (request.onData(chunk) === false) { stream.pause() } }) }) stream.once('end', () => { stream.removeAllListeners('data') // If we received a response, this is a normal completion if (responseReceived) { if (!request.aborted && !request.completed) { request.onComplete({}) } client[kQueue][client[kRunningIdx]++] = null client[kResume]() } else { // Stream ended without receiving a response - this is an error // (e.g., server destroyed the stream before sending headers) abort(new InformationalError('HTTP/2: stream half-closed (remote)')) client[kQueue][client[kRunningIdx]++] = null client[kPendingIdx] = client[kRunningIdx] client[kResume]() } }) stream.once('close', () => { stream.removeAllListeners('data') session[kOpenStreams] -= 1 if (session[kOpenStreams] === 0) { session.unref() } }) stream.once('error', function (err) { stream.removeAllListeners('data') abort(err) }) stream.once('frameError', (type, code) => { stream.removeAllListeners('data') abort(new InformationalError(`HTTP/2: "frameError" received - type ${type}, code ${code}`)) }) stream.on('aborted', () => { stream.removeAllListeners('data') }) stream.on('timeout', () => { const err = new InformationalError(`HTTP/2: "stream timeout after ${requestTimeout}"`) stream.removeAllListeners('data') session[kOpenStreams] -= 1 if (session[kOpenStreams] === 0) { session.unref() } abort(err) }) stream.once('trailers', trailers => { if (request.aborted || request.completed) { return } stream.removeAllListeners('data') request.onComplete(trailers) }) return true function writeBodyH2 () { if (!body || contentLength === 0) { writeBuffer( abort, stream, null, client, request, client[kSocket], contentLength, expectsPayload ) } else if (util.isBuffer(body)) { writeBuffer( abort, stream, body, client, request, client[kSocket], contentLength, expectsPayload ) } else if (util.isBlobLike(body)) { if (typeof body.stream === 'function') { writeIterable( abort, stream, body.stream(), client, request, client[kSocket], contentLength, expectsPayload ) } else { writeBlob( abort, stream, body, client, request, client[kSocket], contentLength, expectsPayload ) } } else if (util.isStream(body)) { writeStream( abort, client[kSocket], expectsPayload, stream, body, client, request, contentLength ) } else if (util.isIterable(body)) { writeIterable( abort, stream, body, client, request, client[kSocket], contentLength, expectsPayload ) } else { assert(false) } } } function writeBuffer (abort, h2stream, body, client, request, socket, contentLength, expectsPayload) { try { if (body != null && util.isBuffer(body)) { assert(contentLength === body.byteLength, 'buffer body must have content length') h2stream.cork() h2stream.write(body) h2stream.uncork() h2stream.end() request.onBodySent(body) } if (!expectsPayload) { socket[kReset] = true } request.onRequestSent() client[kResume]() } catch (error) { abort(error) } } function writeStream (abort, socket, expectsPayload, h2stream, body, client, request, contentLength) { assert(contentLength !== 0 || client[kRunning] === 0, 'stream body cannot be pipelined') // For HTTP/2, is enough to pipe the stream const pipe = pipeline( body, h2stream, (err) => { if (err) { util.destroy(pipe, err) abort(err) } else { util.removeAllListeners(pipe) request.onRequestSent() if (!expectsPayload) { socket[kReset] = true } client[kResume]() } } ) util.addListener(pipe, 'data', onPipeData) function onPipeData (chunk) { request.onBodySent(chunk) } } async function writeBlob (abort, h2stream, body, client, request, socket, contentLength, expectsPayload) { assert(contentLength === body.size, 'blob body must have content length') try { if (contentLength != null && contentLength !== body.size) { throw new RequestContentLengthMismatchError() } const buffer = Buffer.from(await body.arrayBuffer()) h2stream.cork() h2stream.write(buffer) h2stream.uncork() h2stream.end() request.onBodySent(buffer) request.onRequestSent() if (!expectsPayload) { socket[kReset] = true } client[kResume]() } catch (err) { abort(err) } } async function writeIterable (abort, h2stream, body, client, request, socket, contentLength, expectsPayload) { assert(contentLength !== 0 || client[kRunning] === 0, 'iterator body cannot be pipelined') let callback = null function onDrain () { if (callback) { const cb = callback callback = null cb() } } const waitForDrain = () => new Promise((resolve, reject) => { assert(callback === null) if (socket[kError]) { reject(socket[kError]) } else { callback = resolve } }) h2stream .on('close', onDrain) .on('drain', onDrain) try { // It's up to the user to somehow abort the async iterable. for await (const chunk of body) { if (socket[kError]) { throw socket[kError] } const res = h2stream.write(chunk) request.onBodySent(chunk) if (!res) { await waitForDrain() } } h2stream.end() request.onRequestSent() if (!expectsPayload) { socket[kReset] = true } client[kResume]() } catch (err) { abort(err) } finally { h2stream .off('close', onDrain) .off('drain', onDrain) } } module.exports = connectH2 /***/ }), /***/ 23701: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const assert = __nccwpck_require__(34589) const net = __nccwpck_require__(77030) const http = __nccwpck_require__(37067) const util = __nccwpck_require__(3440) const { ClientStats } = __nccwpck_require__(46854) const { channels } = __nccwpck_require__(42414) const Request = __nccwpck_require__(44655) const DispatcherBase = __nccwpck_require__(21841) const { InvalidArgumentError, InformationalError, ClientDestroyedError } = __nccwpck_require__(68707) const buildConnector = __nccwpck_require__(59136) const { kUrl, kServerName, kClient, kBusy, kConnect, kResuming, kRunning, kPending, kSize, kQueue, kConnected, kConnecting, kNeedDrain, kKeepAliveDefaultTimeout, kHostHeader, kPendingIdx, kRunningIdx, kError, kPipelining, kKeepAliveTimeoutValue, kMaxHeadersSize, kKeepAliveMaxTimeout, kKeepAliveTimeoutThreshold, kHeadersTimeout, kBodyTimeout, kStrictContentLength, kConnector, kMaxRequests, kCounter, kClose, kDestroy, kDispatch, kLocalAddress, kMaxResponseSize, kOnError, kHTTPContext, kMaxConcurrentStreams, kHTTP2InitialWindowSize, kHTTP2ConnectionWindowSize, kResume, kPingInterval } = __nccwpck_require__(36443) const connectH1 = __nccwpck_require__(637) const connectH2 = __nccwpck_require__(88788) const kClosedResolve = Symbol('kClosedResolve') const getDefaultNodeMaxHeaderSize = http && http.maxHeaderSize && Number.isInteger(http.maxHeaderSize) && http.maxHeaderSize > 0 ? () => http.maxHeaderSize : () => { throw new InvalidArgumentError('http module not available or http.maxHeaderSize invalid') } const noop = () => { } function getPipelining (client) { return client[kPipelining] ?? client[kHTTPContext]?.defaultPipelining ?? 1 } /** * @type {import('../../types/client.js').default} */ class Client extends DispatcherBase { /** * * @param {string|URL} url * @param {import('../../types/client.js').Client.Options} options */ constructor (url, { maxHeaderSize, headersTimeout, socketTimeout, requestTimeout, connectTimeout, bodyTimeout, idleTimeout, keepAlive, keepAliveTimeout, maxKeepAliveTimeout, keepAliveMaxTimeout, keepAliveTimeoutThreshold, socketPath, pipelining, tls, strictContentLength, maxCachedSessions, connect, maxRequestsPerClient, localAddress, maxResponseSize, autoSelectFamily, autoSelectFamilyAttemptTimeout, // h2 maxConcurrentStreams, allowH2, useH2c, initialWindowSize, connectionWindowSize, pingInterval, webSocket } = {}) { if (keepAlive !== undefined) { throw new InvalidArgumentError('unsupported keepAlive, use pipelining=0 instead') } if (socketTimeout !== undefined) { throw new InvalidArgumentError('unsupported socketTimeout, use headersTimeout & bodyTimeout instead') } if (requestTimeout !== undefined) { throw new InvalidArgumentError('unsupported requestTimeout, use headersTimeout & bodyTimeout instead') } if (idleTimeout !== undefined) { throw new InvalidArgumentError('unsupported idleTimeout, use keepAliveTimeout instead') } if (maxKeepAliveTimeout !== undefined) { throw new InvalidArgumentError('unsupported maxKeepAliveTimeout, use keepAliveMaxTimeout instead') } if (maxHeaderSize != null) { if (!Number.isInteger(maxHeaderSize) || maxHeaderSize < 1) { throw new InvalidArgumentError('invalid maxHeaderSize') } } else { // If maxHeaderSize is not provided, use the default value from the http module // or if that is not available, throw an error. maxHeaderSize = getDefaultNodeMaxHeaderSize() } if (socketPath != null && typeof socketPath !== 'string') { throw new InvalidArgumentError('invalid socketPath') } if (connectTimeout != null && (!Number.isFinite(connectTimeout) || connectTimeout < 0)) { throw new InvalidArgumentError('invalid connectTimeout') } if (keepAliveTimeout != null && (!Number.isFinite(keepAliveTimeout) || keepAliveTimeout <= 0)) { throw new InvalidArgumentError('invalid keepAliveTimeout') } if (keepAliveMaxTimeout != null && (!Number.isFinite(keepAliveMaxTimeout) || keepAliveMaxTimeout <= 0)) { throw new InvalidArgumentError('invalid keepAliveMaxTimeout') } if (keepAliveTimeoutThreshold != null && !Number.isFinite(keepAliveTimeoutThreshold)) { throw new InvalidArgumentError('invalid keepAliveTimeoutThreshold') } if (headersTimeout != null && (!Number.isInteger(headersTimeout) || headersTimeout < 0)) { throw new InvalidArgumentError('headersTimeout must be a positive integer or zero') } if (bodyTimeout != null && (!Number.isInteger(bodyTimeout) || bodyTimeout < 0)) { throw new InvalidArgumentError('bodyTimeout must be a positive integer or zero') } if (connect != null && typeof connect !== 'function' && typeof connect !== 'object') { throw new InvalidArgumentError('connect must be a function or an object') } if (maxRequestsPerClient != null && (!Number.isInteger(maxRequestsPerClient) || maxRequestsPerClient < 0)) { throw new InvalidArgumentError('maxRequestsPerClient must be a positive number') } if (localAddress != null && (typeof localAddress !== 'string' || net.isIP(localAddress) === 0)) { throw new InvalidArgumentError('localAddress must be valid string IP address') } if (maxResponseSize != null && (!Number.isInteger(maxResponseSize) || maxResponseSize < -1)) { throw new InvalidArgumentError('maxResponseSize must be a positive number') } if ( autoSelectFamilyAttemptTimeout != null && (!Number.isInteger(autoSelectFamilyAttemptTimeout) || autoSelectFamilyAttemptTimeout < -1) ) { throw new InvalidArgumentError('autoSelectFamilyAttemptTimeout must be a positive number') } // h2 if (allowH2 != null && typeof allowH2 !== 'boolean') { throw new InvalidArgumentError('allowH2 must be a valid boolean value') } if (maxConcurrentStreams != null && (typeof maxConcurrentStreams !== 'number' || maxConcurrentStreams < 1)) { throw new InvalidArgumentError('maxConcurrentStreams must be a positive integer, greater than 0') } if (useH2c != null && typeof useH2c !== 'boolean') { throw new InvalidArgumentError('useH2c must be a valid boolean value') } if (initialWindowSize != null && (!Number.isInteger(initialWindowSize) || initialWindowSize < 1)) { throw new InvalidArgumentError('initialWindowSize must be a positive integer, greater than 0') } if (connectionWindowSize != null && (!Number.isInteger(connectionWindowSize) || connectionWindowSize < 1)) { throw new InvalidArgumentError('connectionWindowSize must be a positive integer, greater than 0') } if (pingInterval != null && (typeof pingInterval !== 'number' || !Number.isInteger(pingInterval) || pingInterval < 0)) { throw new InvalidArgumentError('pingInterval must be a positive integer, greater or equal to 0') } super({ webSocket }) if (typeof connect !== 'function') { connect = buildConnector({ ...tls, maxCachedSessions, allowH2, useH2c, socketPath, timeout: connectTimeout, ...(typeof autoSelectFamily === 'boolean' ? { autoSelectFamily, autoSelectFamilyAttemptTimeout } : undefined), ...connect }) } else { const customConnect = connect connect = (opts, callback) => customConnect({ ...opts, ...(socketPath != null ? { socketPath } : null), ...(allowH2 != null ? { allowH2 } : null) }, callback) } this[kUrl] = util.parseOrigin(url) this[kConnector] = connect this[kPipelining] = pipelining != null ? pipelining : 1 this[kMaxHeadersSize] = maxHeaderSize this[kKeepAliveDefaultTimeout] = keepAliveTimeout == null ? 4e3 : keepAliveTimeout this[kKeepAliveMaxTimeout] = keepAliveMaxTimeout == null ? 600e3 : keepAliveMaxTimeout this[kKeepAliveTimeoutThreshold] = keepAliveTimeoutThreshold == null ? 2e3 : keepAliveTimeoutThreshold this[kKeepAliveTimeoutValue] = this[kKeepAliveDefaultTimeout] this[kServerName] = null this[kLocalAddress] = localAddress != null ? localAddress : null this[kResuming] = 0 // 0, idle, 1, scheduled, 2 resuming this[kNeedDrain] = 0 // 0, idle, 1, scheduled, 2 resuming this[kHostHeader] = `host: ${this[kUrl].hostname}${this[kUrl].port ? `:${this[kUrl].port}` : ''}\r\n` this[kBodyTimeout] = bodyTimeout != null ? bodyTimeout : 300e3 this[kHeadersTimeout] = headersTimeout != null ? headersTimeout : 300e3 this[kStrictContentLength] = strictContentLength == null ? true : strictContentLength this[kMaxRequests] = maxRequestsPerClient this[kClosedResolve] = null this[kMaxResponseSize] = maxResponseSize > -1 ? maxResponseSize : -1 this[kHTTPContext] = null // h2 this[kMaxConcurrentStreams] = maxConcurrentStreams != null ? maxConcurrentStreams : 100 // Max peerConcurrentStreams for a Node h2 server // HTTP/2 window sizes are set to higher defaults than Node.js core for better performance: // - initialWindowSize: 262144 (256KB) vs Node.js default 65535 (64KB - 1) // Allows more data to be sent before requiring acknowledgment, improving throughput // especially on high-latency networks. This matches common production HTTP/2 servers. // - connectionWindowSize: 524288 (512KB) vs Node.js default (none set) // Provides better flow control for the entire connection across multiple streams. this[kHTTP2InitialWindowSize] = initialWindowSize != null ? initialWindowSize : 262144 this[kHTTP2ConnectionWindowSize] = connectionWindowSize != null ? connectionWindowSize : 524288 this[kPingInterval] = pingInterval != null ? pingInterval : 60e3 // Default ping interval for h2 - 1 minute // kQueue is built up of 3 sections separated by // the kRunningIdx and kPendingIdx indices. // | complete | running | pending | // ^ kRunningIdx ^ kPendingIdx ^ kQueue.length // kRunningIdx points to the first running element. // kPendingIdx points to the first pending element. // This implements a fast queue with an amortized // time of O(1). this[kQueue] = [] this[kRunningIdx] = 0 this[kPendingIdx] = 0 this[kResume] = (sync) => resume(this, sync) this[kOnError] = (err) => onError(this, err) } get pipelining () { return this[kPipelining] } set pipelining (value) { this[kPipelining] = value this[kResume](true) } get stats () { return new ClientStats(this) } get [kPending] () { return this[kQueue].length - this[kPendingIdx] } get [kRunning] () { return this[kPendingIdx] - this[kRunningIdx] } get [kSize] () { return this[kQueue].length - this[kRunningIdx] } get [kConnected] () { return !!this[kHTTPContext] && !this[kConnecting] && !this[kHTTPContext].destroyed } get [kBusy] () { return Boolean( this[kHTTPContext]?.busy(null) || (this[kSize] >= (getPipelining(this) || 1)) || this[kPending] > 0 ) } [kConnect] (cb) { connect(this) this.once('connect', cb) } [kDispatch] (opts, handler) { const request = new Request(this[kUrl].origin, opts, handler) this[kQueue].push(request) if (this[kResuming]) { // Do nothing. } else if (util.bodyLength(request.body) == null && util.isIterable(request.body)) { // Wait a tick in case stream/iterator is ended in the same tick. this[kResuming] = 1 queueMicrotask(() => resume(this)) } else { this[kResume](true) } if (this[kResuming] && this[kNeedDrain] !== 2 && this[kBusy]) { this[kNeedDrain] = 2 } return this[kNeedDrain] < 2 } [kClose] () { // TODO: for H2 we need to gracefully flush the remaining enqueued // request and close each stream. return new Promise((resolve) => { if (this[kSize]) { this[kClosedResolve] = resolve } else { resolve(null) } }) } [kDestroy] (err) { return new Promise((resolve) => { const requests = this[kQueue].splice(this[kPendingIdx]) for (let i = 0; i < requests.length; i++) { const request = requests[i] util.errorRequest(this, request, err) } const callback = () => { if (this[kClosedResolve]) { // TODO (fix): Should we error here with ClientDestroyedError? this[kClosedResolve]() this[kClosedResolve] = null } resolve(null) } if (this[kHTTPContext]) { this[kHTTPContext].destroy(err, callback) this[kHTTPContext] = null } else { queueMicrotask(callback) } this[kResume]() }) } } function onError (client, err) { if ( client[kRunning] === 0 && err.code !== 'UND_ERR_INFO' && err.code !== 'UND_ERR_SOCKET' ) { // Error is not caused by running request and not a recoverable // socket error. assert(client[kPendingIdx] === client[kRunningIdx]) const requests = client[kQueue].splice(client[kRunningIdx]) for (let i = 0; i < requests.length; i++) { const request = requests[i] util.errorRequest(client, request, err) } assert(client[kSize] === 0) } } /** * @param {Client} client * @returns {void} */ function connect (client) { assert(!client[kConnecting]) assert(!client[kHTTPContext]) let { host, hostname, protocol, port } = client[kUrl] // Resolve ipv6 if (hostname[0] === '[') { const idx = hostname.indexOf(']') assert(idx !== -1) const ip = hostname.substring(1, idx) assert(net.isIPv6(ip)) hostname = ip } client[kConnecting] = true if (channels.beforeConnect.hasSubscribers) { channels.beforeConnect.publish({ connectParams: { host, hostname, protocol, port, version: client[kHTTPContext]?.version, servername: client[kServerName], localAddress: client[kLocalAddress] }, connector: client[kConnector] }) } try { client[kConnector]({ host, hostname, protocol, port, servername: client[kServerName], localAddress: client[kLocalAddress] }, (err, socket) => { if (err) { handleConnectError(client, err, { host, hostname, protocol, port }) client[kResume]() return } if (client.destroyed) { util.destroy(socket.on('error', noop), new ClientDestroyedError()) client[kResume]() return } assert(socket) try { client[kHTTPContext] = socket.alpnProtocol === 'h2' ? connectH2(client, socket) : connectH1(client, socket) } catch (err) { socket.destroy().on('error', noop) handleConnectError(client, err, { host, hostname, protocol, port }) client[kResume]() return } client[kConnecting] = false socket[kCounter] = 0 socket[kMaxRequests] = client[kMaxRequests] socket[kClient] = client socket[kError] = null if (channels.connected.hasSubscribers) { channels.connected.publish({ connectParams: { host, hostname, protocol, port, version: client[kHTTPContext]?.version, servername: client[kServerName], localAddress: client[kLocalAddress] }, connector: client[kConnector], socket }) } client.emit('connect', client[kUrl], [client]) client[kResume]() }) } catch (err) { handleConnectError(client, err, { host, hostname, protocol, port }) client[kResume]() } } function handleConnectError (client, err, { host, hostname, protocol, port }) { if (client.destroyed) { return } client[kConnecting] = false if (channels.connectError.hasSubscribers) { channels.connectError.publish({ connectParams: { host, hostname, protocol, port, version: client[kHTTPContext]?.version, servername: client[kServerName], localAddress: client[kLocalAddress] }, connector: client[kConnector], error: err }) } if (err.code === 'ERR_TLS_CERT_ALTNAME_INVALID') { assert(client[kRunning] === 0) while (client[kPending] > 0 && client[kQueue][client[kPendingIdx]].servername === client[kServerName]) { const request = client[kQueue][client[kPendingIdx]++] util.errorRequest(client, request, err) } } else { onError(client, err) } client.emit('connectionError', client[kUrl], [client], err) } function emitDrain (client) { client[kNeedDrain] = 0 client.emit('drain', client[kUrl], [client]) } function resume (client, sync) { if (client[kResuming] === 2) { return } client[kResuming] = 2 _resume(client, sync) client[kResuming] = 0 if (client[kRunningIdx] > 256) { client[kQueue].splice(0, client[kRunningIdx]) client[kPendingIdx] -= client[kRunningIdx] client[kRunningIdx] = 0 } } function _resume (client, sync) { while (true) { if (client.destroyed) { assert(client[kPending] === 0) return } if (client[kClosedResolve] && !client[kSize]) { client[kClosedResolve]() client[kClosedResolve] = null return } if (client[kHTTPContext]) { client[kHTTPContext].resume() } if (client[kBusy]) { client[kNeedDrain] = 2 } else if (client[kNeedDrain] === 2) { if (sync) { client[kNeedDrain] = 1 queueMicrotask(() => emitDrain(client)) } else { emitDrain(client) } continue } if (client[kPending] === 0) { return } if (client[kRunning] >= (getPipelining(client) || 1)) { return } const request = client[kQueue][client[kPendingIdx]] if (request === null) { return } if (client[kUrl].protocol === 'https:' && client[kServerName] !== request.servername) { if (client[kRunning] > 0) { return } client[kServerName] = request.servername client[kHTTPContext]?.destroy(new InformationalError('servername changed'), () => { client[kHTTPContext] = null resume(client) }) } if (client[kConnecting]) { return } if (!client[kHTTPContext]) { connect(client) return } if (client[kHTTPContext].destroyed) { return } if (client[kHTTPContext].busy(request)) { return } if (!request.aborted && client[kHTTPContext].write(request)) { client[kPendingIdx]++ } else { client[kQueue].splice(client[kPendingIdx], 1) } } } module.exports = Client /***/ }), /***/ 21841: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const Dispatcher = __nccwpck_require__(30883) const UnwrapHandler = __nccwpck_require__(92365) const { ClientDestroyedError, ClientClosedError, InvalidArgumentError } = __nccwpck_require__(68707) const { kDestroy, kClose, kClosed, kDestroyed, kDispatch } = __nccwpck_require__(36443) const kOnDestroyed = Symbol('onDestroyed') const kOnClosed = Symbol('onClosed') const kWebSocketOptions = Symbol('webSocketOptions') class DispatcherBase extends Dispatcher { /** @type {boolean} */ [kDestroyed] = false; /** @type {Array|null} */ [kOnClosed] = null /** * @param {import('../../types/dispatcher').DispatcherOptions} [opts] */ constructor (opts) { super() this[kWebSocketOptions] = opts?.webSocket ?? {} } /** * @returns {import('../../types/dispatcher').WebSocketOptions} */ get webSocketOptions () { return { maxFragments: this[kWebSocketOptions].maxFragments ?? 131072, maxPayloadSize: this[kWebSocketOptions].maxPayloadSize ?? 128 * 1024 * 1024 // 128 MB default } } /** @returns {boolean} */ get destroyed () { return this[kDestroyed] } /** @returns {boolean} */ get closed () { return this[kClosed] } close (callback) { if (callback === undefined) { return new Promise((resolve, reject) => { this.close((err, data) => { return err ? reject(err) : resolve(data) }) }) } if (typeof callback !== 'function') { throw new InvalidArgumentError('invalid callback') } if (this[kDestroyed]) { const err = new ClientDestroyedError() queueMicrotask(() => callback(err, null)) return } if (this[kClosed]) { if (this[kOnClosed]) { this[kOnClosed].push(callback) } else { queueMicrotask(() => callback(null, null)) } return } this[kClosed] = true this[kOnClosed] ??= [] this[kOnClosed].push(callback) const onClosed = () => { const callbacks = this[kOnClosed] this[kOnClosed] = null for (let i = 0; i < callbacks.length; i++) { callbacks[i](null, null) } } // Should not error. this[kClose]() .then(() => this.destroy()) .then(() => queueMicrotask(onClosed)) } destroy (err, callback) { if (typeof err === 'function') { callback = err err = null } if (callback === undefined) { return new Promise((resolve, reject) => { this.destroy(err, (err, data) => { return err ? reject(err) : resolve(data) }) }) } if (typeof callback !== 'function') { throw new InvalidArgumentError('invalid callback') } if (this[kDestroyed]) { if (this[kOnDestroyed]) { this[kOnDestroyed].push(callback) } else { queueMicrotask(() => callback(null, null)) } return } if (!err) { err = new ClientDestroyedError() } this[kDestroyed] = true this[kOnDestroyed] ??= [] this[kOnDestroyed].push(callback) const onDestroyed = () => { const callbacks = this[kOnDestroyed] this[kOnDestroyed] = null for (let i = 0; i < callbacks.length; i++) { callbacks[i](null, null) } } // Should not error. this[kDestroy](err) .then(() => queueMicrotask(onDestroyed)) } dispatch (opts, handler) { if (!handler || typeof handler !== 'object') { throw new InvalidArgumentError('handler must be an object') } handler = UnwrapHandler.unwrap(handler) try { if (!opts || typeof opts !== 'object') { throw new InvalidArgumentError('opts must be an object.') } if (this[kDestroyed] || this[kOnDestroyed]) { throw new ClientDestroyedError() } if (this[kClosed]) { throw new ClientClosedError() } return this[kDispatch](opts, handler) } catch (err) { if (typeof handler.onError !== 'function') { throw err } handler.onError(err) return false } } } module.exports = DispatcherBase /***/ }), /***/ 30883: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const EventEmitter = __nccwpck_require__(78474) const WrapHandler = __nccwpck_require__(99510) const wrapInterceptor = (dispatch) => (opts, handler) => dispatch(opts, WrapHandler.wrap(handler)) class Dispatcher extends EventEmitter { dispatch () { throw new Error('not implemented') } close () { throw new Error('not implemented') } destroy () { throw new Error('not implemented') } compose (...args) { // So we handle [interceptor1, interceptor2] or interceptor1, interceptor2, ... const interceptors = Array.isArray(args[0]) ? args[0] : args let dispatch = this.dispatch.bind(this) for (const interceptor of interceptors) { if (interceptor == null) { continue } if (typeof interceptor !== 'function') { throw new TypeError(`invalid interceptor, expected function received ${typeof interceptor}`) } dispatch = interceptor(dispatch) dispatch = wrapInterceptor(dispatch) if (dispatch == null || typeof dispatch !== 'function' || dispatch.length !== 2) { throw new TypeError('invalid interceptor') } } return new Proxy(this, { get: (target, key) => key === 'dispatch' ? dispatch : target[key] }) } } module.exports = Dispatcher /***/ }), /***/ 53137: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const DispatcherBase = __nccwpck_require__(21841) const { kClose, kDestroy, kClosed, kDestroyed, kDispatch, kNoProxyAgent, kHttpProxyAgent, kHttpsProxyAgent } = __nccwpck_require__(36443) const ProxyAgent = __nccwpck_require__(76672) const Agent = __nccwpck_require__(57405) const DEFAULT_PORTS = { 'http:': 80, 'https:': 443 } class EnvHttpProxyAgent extends DispatcherBase { #noProxyValue = null #noProxyEntries = null #opts = null constructor (opts = {}) { super() this.#opts = opts const { httpProxy, httpsProxy, noProxy, ...agentOpts } = opts this[kNoProxyAgent] = new Agent(agentOpts) const HTTP_PROXY = httpProxy ?? process.env.http_proxy ?? process.env.HTTP_PROXY if (HTTP_PROXY) { this[kHttpProxyAgent] = new ProxyAgent({ ...agentOpts, uri: HTTP_PROXY }) } else { this[kHttpProxyAgent] = this[kNoProxyAgent] } const HTTPS_PROXY = httpsProxy ?? process.env.https_proxy ?? process.env.HTTPS_PROXY if (HTTPS_PROXY) { this[kHttpsProxyAgent] = new ProxyAgent({ ...agentOpts, uri: HTTPS_PROXY }) } else { this[kHttpsProxyAgent] = this[kHttpProxyAgent] } this.#parseNoProxy() } [kDispatch] (opts, handler) { const url = new URL(opts.origin) const agent = this.#getProxyAgentForUrl(url) return agent.dispatch(opts, handler) } [kClose] () { return Promise.all([ this[kNoProxyAgent].close(), !this[kHttpProxyAgent][kClosed] && this[kHttpProxyAgent].close(), !this[kHttpsProxyAgent][kClosed] && this[kHttpsProxyAgent].close() ]) } [kDestroy] (err) { return Promise.all([ this[kNoProxyAgent].destroy(err), !this[kHttpProxyAgent][kDestroyed] && this[kHttpProxyAgent].destroy(err), !this[kHttpsProxyAgent][kDestroyed] && this[kHttpsProxyAgent].destroy(err) ]) } #getProxyAgentForUrl (url) { let { protocol, host: hostname, port } = url // Stripping ports in this way instead of using parsedUrl.hostname to make // sure that the brackets around IPv6 addresses are kept. hostname = hostname.replace(/:\d*$/, '').toLowerCase() port = Number.parseInt(port, 10) || DEFAULT_PORTS[protocol] || 0 if (!this.#shouldProxy(hostname, port)) { return this[kNoProxyAgent] } if (protocol === 'https:') { return this[kHttpsProxyAgent] } return this[kHttpProxyAgent] } #shouldProxy (hostname, port) { if (this.#noProxyChanged) { this.#parseNoProxy() } if (this.#noProxyEntries.length === 0) { return true // Always proxy if NO_PROXY is not set or empty. } if (this.#noProxyValue === '*') { return false // Never proxy if wildcard is set. } for (let i = 0; i < this.#noProxyEntries.length; i++) { const entry = this.#noProxyEntries[i] if (entry.port && entry.port !== port) { continue // Skip if ports don't match. } // Don't proxy if the hostname is equal with the no_proxy host. if (hostname === entry.hostname) { return false } // Don't proxy if the hostname is the subdomain of the no_proxy host. // Reference - https://github.com/denoland/deno/blob/6fbce91e40cc07fc6da74068e5cc56fdd40f7b4c/ext/fetch/proxy.rs#L485 if (hostname.slice(-(entry.hostname.length + 1)) === `.${entry.hostname}`) { return false } } return true } #parseNoProxy () { const noProxyValue = this.#opts.noProxy ?? this.#noProxyEnv const noProxySplit = noProxyValue.split(/[,\s]/) const noProxyEntries = [] for (let i = 0; i < noProxySplit.length; i++) { const entry = noProxySplit[i] if (!entry) { continue } const parsed = entry.match(/^(.+):(\d+)$/) noProxyEntries.push({ // strip leading dot or asterisk with dot hostname: (parsed ? parsed[1] : entry).replace(/^\*?\./, '').toLowerCase(), port: parsed ? Number.parseInt(parsed[2], 10) : 0 }) } this.#noProxyValue = noProxyValue this.#noProxyEntries = noProxyEntries } get #noProxyChanged () { if (this.#opts.noProxy !== undefined) { return false } return this.#noProxyValue !== this.#noProxyEnv } get #noProxyEnv () { return process.env.no_proxy ?? process.env.NO_PROXY ?? '' } } module.exports = EnvHttpProxyAgent /***/ }), /***/ 64660: /***/ ((module) => { "use strict"; // Extracted from node/lib/internal/fixed_queue.js // Currently optimal queue size, tested on V8 6.0 - 6.6. Must be power of two. const kSize = 2048 const kMask = kSize - 1 // The FixedQueue is implemented as a singly-linked list of fixed-size // circular buffers. It looks something like this: // // head tail // | | // v v // +-----------+ <-----\ +-----------+ <------\ +-----------+ // | [null] | \----- | next | \------- | next | // +-----------+ +-----------+ +-----------+ // | item | <-- bottom | item | <-- bottom | undefined | // | item | | item | | undefined | // | item | | item | | undefined | // | item | | item | | undefined | // | item | | item | bottom --> | item | // | item | | item | | item | // | ... | | ... | | ... | // | item | | item | | item | // | item | | item | | item | // | undefined | <-- top | item | | item | // | undefined | | item | | item | // | undefined | | undefined | <-- top top --> | undefined | // +-----------+ +-----------+ +-----------+ // // Or, if there is only one circular buffer, it looks something // like either of these: // // head tail head tail // | | | | // v v v v // +-----------+ +-----------+ // | [null] | | [null] | // +-----------+ +-----------+ // | undefined | | item | // | undefined | | item | // | item | <-- bottom top --> | undefined | // | item | | undefined | // | undefined | <-- top bottom --> | item | // | undefined | | item | // +-----------+ +-----------+ // // Adding a value means moving `top` forward by one, removing means // moving `bottom` forward by one. After reaching the end, the queue // wraps around. // // When `top === bottom` the current queue is empty and when // `top + 1 === bottom` it's full. This wastes a single space of storage // but allows much quicker checks. /** * @type {FixedCircularBuffer} * @template T */ class FixedCircularBuffer { /** @type {number} */ bottom = 0 /** @type {number} */ top = 0 /** @type {Array} */ list = new Array(kSize).fill(undefined) /** @type {T|null} */ next = null /** @returns {boolean} */ isEmpty () { return this.top === this.bottom } /** @returns {boolean} */ isFull () { return ((this.top + 1) & kMask) === this.bottom } /** * @param {T} data * @returns {void} */ push (data) { this.list[this.top] = data this.top = (this.top + 1) & kMask } /** @returns {T|null} */ shift () { const nextItem = this.list[this.bottom] if (nextItem === undefined) { return null } this.list[this.bottom] = undefined this.bottom = (this.bottom + 1) & kMask return nextItem } } /** * @template T */ module.exports = class FixedQueue { constructor () { /** @type {FixedCircularBuffer} */ this.head = this.tail = new FixedCircularBuffer() } /** @returns {boolean} */ isEmpty () { return this.head.isEmpty() } /** @param {T} data */ push (data) { if (this.head.isFull()) { // Head is full: Creates a new queue, sets the old queue's `.next` to it, // and sets it as the new main queue. this.head = this.head.next = new FixedCircularBuffer() } this.head.push(data) } /** @returns {T|null} */ shift () { const tail = this.tail const next = tail.shift() if (tail.isEmpty() && tail.next !== null) { // If there is another queue, it forms the new tail. this.tail = tail.next tail.next = null } return next } } /***/ }), /***/ 36815: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { InvalidArgumentError } = __nccwpck_require__(68707) const Client = __nccwpck_require__(23701) class H2CClient extends Client { constructor (origin, clientOpts) { if (typeof origin === 'string') { origin = new URL(origin) } if (origin.protocol !== 'http:') { throw new InvalidArgumentError( 'h2c-client: Only h2c protocol is supported' ) } const { maxConcurrentStreams, pipelining, ...opts } = clientOpts ?? {} let defaultMaxConcurrentStreams = 100 let defaultPipelining = 100 if ( maxConcurrentStreams != null && Number.isInteger(maxConcurrentStreams) && maxConcurrentStreams > 0 ) { defaultMaxConcurrentStreams = maxConcurrentStreams } if (pipelining != null && Number.isInteger(pipelining) && pipelining > 0) { defaultPipelining = pipelining } if (defaultPipelining > defaultMaxConcurrentStreams) { throw new InvalidArgumentError( 'h2c-client: pipelining cannot be greater than maxConcurrentStreams' ) } super(origin, { ...opts, maxConcurrentStreams: defaultMaxConcurrentStreams, pipelining: defaultPipelining, allowH2: true, useH2c: true }) } } module.exports = H2CClient /***/ }), /***/ 42128: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { PoolStats } = __nccwpck_require__(46854) const DispatcherBase = __nccwpck_require__(21841) const FixedQueue = __nccwpck_require__(64660) const { kConnected, kSize, kRunning, kPending, kQueued, kBusy, kFree, kUrl, kClose, kDestroy, kDispatch } = __nccwpck_require__(36443) const kClients = Symbol('clients') const kNeedDrain = Symbol('needDrain') const kQueue = Symbol('queue') const kClosedResolve = Symbol('closed resolve') const kOnDrain = Symbol('onDrain') const kOnConnect = Symbol('onConnect') const kOnDisconnect = Symbol('onDisconnect') const kOnConnectionError = Symbol('onConnectionError') const kGetDispatcher = Symbol('get dispatcher') const kAddClient = Symbol('add client') const kRemoveClient = Symbol('remove client') class PoolBase extends DispatcherBase { [kQueue] = new FixedQueue(); [kQueued] = 0; [kClients] = []; [kNeedDrain] = false; [kOnDrain] (client, origin, targets) { const queue = this[kQueue] let needDrain = false while (!needDrain) { const item = queue.shift() if (!item) { break } this[kQueued]-- needDrain = !client.dispatch(item.opts, item.handler) } client[kNeedDrain] = needDrain if (!needDrain && this[kNeedDrain]) { this[kNeedDrain] = false this.emit('drain', origin, [this, ...targets]) } if (this[kClosedResolve] && queue.isEmpty()) { const closeAll = [] for (let i = 0; i < this[kClients].length; i++) { const client = this[kClients][i] if (!client.destroyed) { closeAll.push(client.close()) } } return Promise.all(closeAll) .then(this[kClosedResolve]) } } [kOnConnect] = (origin, targets) => { this.emit('connect', origin, [this, ...targets]) }; [kOnDisconnect] = (origin, targets, err) => { this.emit('disconnect', origin, [this, ...targets], err) }; [kOnConnectionError] = (origin, targets, err) => { this.emit('connectionError', origin, [this, ...targets], err) } get [kBusy] () { return this[kNeedDrain] } get [kConnected] () { let ret = 0 for (const { [kConnected]: connected } of this[kClients]) { ret += connected } return ret } get [kFree] () { let ret = 0 for (const { [kConnected]: connected, [kNeedDrain]: needDrain } of this[kClients]) { ret += connected && !needDrain } return ret } get [kPending] () { let ret = this[kQueued] for (const { [kPending]: pending } of this[kClients]) { ret += pending } return ret } get [kRunning] () { let ret = 0 for (const { [kRunning]: running } of this[kClients]) { ret += running } return ret } get [kSize] () { let ret = this[kQueued] for (const { [kSize]: size } of this[kClients]) { ret += size } return ret } get stats () { return new PoolStats(this) } [kClose] () { if (this[kQueue].isEmpty()) { const closeAll = [] for (let i = 0; i < this[kClients].length; i++) { const client = this[kClients][i] if (!client.destroyed) { closeAll.push(client.close()) } } return Promise.all(closeAll) } else { return new Promise((resolve) => { this[kClosedResolve] = resolve }) } } [kDestroy] (err) { while (true) { const item = this[kQueue].shift() if (!item) { break } item.handler.onError(err) } const destroyAll = new Array(this[kClients].length) for (let i = 0; i < this[kClients].length; i++) { destroyAll[i] = this[kClients][i].destroy(err) } return Promise.all(destroyAll) } [kDispatch] (opts, handler) { const dispatcher = this[kGetDispatcher]() if (!dispatcher) { this[kNeedDrain] = true this[kQueue].push({ opts, handler }) this[kQueued]++ } else if (!dispatcher.dispatch(opts, handler)) { dispatcher[kNeedDrain] = true this[kNeedDrain] = !this[kGetDispatcher]() } return !this[kNeedDrain] } [kAddClient] (client) { client .on('drain', this[kOnDrain].bind(this, client)) .on('connect', this[kOnConnect]) .on('disconnect', this[kOnDisconnect]) .on('connectionError', this[kOnConnectionError]) this[kClients].push(client) if (this[kNeedDrain]) { queueMicrotask(() => { if (this[kNeedDrain]) { this[kOnDrain](client, client[kUrl], [client, this]) } }) } return this } [kRemoveClient] (client) { client.close(() => { const idx = this[kClients].indexOf(client) if (idx !== -1) { this[kClients].splice(idx, 1) } }) this[kNeedDrain] = this[kClients].some(dispatcher => ( !dispatcher[kNeedDrain] && dispatcher.closed !== true && dispatcher.destroyed !== true )) } } module.exports = { PoolBase, kClients, kNeedDrain, kAddClient, kRemoveClient, kGetDispatcher } /***/ }), /***/ 30628: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { PoolBase, kClients, kNeedDrain, kAddClient, kGetDispatcher, kRemoveClient } = __nccwpck_require__(42128) const Client = __nccwpck_require__(23701) const { InvalidArgumentError } = __nccwpck_require__(68707) const util = __nccwpck_require__(3440) const { kUrl } = __nccwpck_require__(36443) const buildConnector = __nccwpck_require__(59136) const kOptions = Symbol('options') const kConnections = Symbol('connections') const kFactory = Symbol('factory') function defaultFactory (origin, opts) { return new Client(origin, opts) } class Pool extends PoolBase { constructor (origin, { connections, factory = defaultFactory, connect, connectTimeout, tls, maxCachedSessions, socketPath, autoSelectFamily, autoSelectFamilyAttemptTimeout, allowH2, clientTtl, ...options } = {}) { if (connections != null && (!Number.isFinite(connections) || connections < 0)) { throw new InvalidArgumentError('invalid connections') } if (typeof factory !== 'function') { throw new InvalidArgumentError('factory must be a function.') } if (connect != null && typeof connect !== 'function' && typeof connect !== 'object') { throw new InvalidArgumentError('connect must be a function or an object') } if (typeof connect !== 'function') { connect = buildConnector({ ...tls, maxCachedSessions, allowH2, socketPath, timeout: connectTimeout, ...(typeof autoSelectFamily === 'boolean' ? { autoSelectFamily, autoSelectFamilyAttemptTimeout } : undefined), ...connect }) } super(options) this[kConnections] = connections || null this[kUrl] = util.parseOrigin(origin) this[kOptions] = { ...util.deepClone(options), connect, allowH2, clientTtl, socketPath } this[kOptions].interceptors = options.interceptors ? { ...options.interceptors } : undefined this[kFactory] = factory this.on('connect', (origin, targets) => { if (clientTtl != null && clientTtl > 0) { for (const target of targets) { Object.assign(target, { ttl: Date.now() }) } } }) this.on('connectionError', (origin, targets, error) => { // If a connection error occurs, we remove the client from the pool, // and emit a connectionError event. They will not be re-used. // Fixes https://github.com/nodejs/undici/issues/3895 for (const target of targets) { // Do not use kRemoveClient here, as it will close the client, // but the client cannot be closed in this state. const idx = this[kClients].indexOf(target) if (idx !== -1) { this[kClients].splice(idx, 1) } } }) } [kGetDispatcher] () { const clientTtlOption = this[kOptions].clientTtl for (const client of this[kClients]) { // check ttl of client and if it's stale, remove it from the pool if (clientTtlOption != null && clientTtlOption > 0 && client.ttl && ((Date.now() - client.ttl) > clientTtlOption)) { this[kRemoveClient](client) } else if (!client[kNeedDrain]) { return client } } if (!this[kConnections] || this[kClients].length < this[kConnections]) { const dispatcher = this[kFactory](this[kUrl], this[kOptions]) this[kAddClient](dispatcher) return dispatcher } } } module.exports = Pool /***/ }), /***/ 76672: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { kProxy, kClose, kDestroy, kDispatch } = __nccwpck_require__(36443) const Agent = __nccwpck_require__(57405) const Pool = __nccwpck_require__(30628) const DispatcherBase = __nccwpck_require__(21841) const { InvalidArgumentError, RequestAbortedError, SecureProxyConnectionError } = __nccwpck_require__(68707) const buildConnector = __nccwpck_require__(59136) const Client = __nccwpck_require__(23701) const { channels } = __nccwpck_require__(42414) const Socks5ProxyAgent = __nccwpck_require__(87223) const kAgent = Symbol('proxy agent') const kClient = Symbol('proxy client') const kProxyHeaders = Symbol('proxy headers') const kRequestTls = Symbol('request tls settings') const kProxyTls = Symbol('proxy tls settings') const kConnectEndpoint = Symbol('connect endpoint function') const kTunnelProxy = Symbol('tunnel proxy') function defaultProtocolPort (protocol) { return protocol === 'https:' ? 443 : 80 } function defaultFactory (origin, opts) { return new Pool(origin, opts) } const noop = () => {} function defaultAgentFactory (origin, opts) { if (opts.connections === 1) { return new Client(origin, opts) } return new Pool(origin, opts) } class Http1ProxyWrapper extends DispatcherBase { #client constructor (proxyUrl, { headers = {}, connect, factory }) { if (!proxyUrl) { throw new InvalidArgumentError('Proxy URL is mandatory') } super() this[kProxyHeaders] = headers if (factory) { this.#client = factory(proxyUrl, { connect }) } else { this.#client = new Client(proxyUrl, { connect }) } } [kDispatch] (opts, handler) { const onHeaders = handler.onHeaders handler.onHeaders = function (statusCode, data, resume) { if (statusCode === 407) { if (typeof handler.onError === 'function') { handler.onError(new InvalidArgumentError('Proxy Authentication Required (407)')) } return } if (onHeaders) onHeaders.call(this, statusCode, data, resume) } // Rewrite request as an HTTP1 Proxy request, without tunneling. const { origin, path = '/', headers = {} } = opts opts.path = origin + path if (!('host' in headers) && !('Host' in headers)) { const { host } = new URL(origin) headers.host = host } opts.headers = { ...this[kProxyHeaders], ...headers } return this.#client[kDispatch](opts, handler) } [kClose] () { return this.#client.close() } [kDestroy] (err) { return this.#client.destroy(err) } } class ProxyAgent extends DispatcherBase { constructor (opts) { if (!opts || (typeof opts === 'object' && !(opts instanceof URL) && !opts.uri)) { throw new InvalidArgumentError('Proxy uri is mandatory') } const { clientFactory = defaultFactory } = opts if (typeof clientFactory !== 'function') { throw new InvalidArgumentError('Proxy opts.clientFactory must be a function.') } const { proxyTunnel = true } = opts super() const url = this.#getUrl(opts) const { href, origin, port, protocol, username, password, hostname: proxyHostname } = url this[kProxy] = { uri: href, protocol } this[kRequestTls] = opts.requestTls this[kProxyTls] = opts.proxyTls this[kProxyHeaders] = opts.headers || {} this[kTunnelProxy] = proxyTunnel if (opts.auth && opts.token) { throw new InvalidArgumentError('opts.auth cannot be used in combination with opts.token') } else if (opts.auth) { /* @deprecated in favour of opts.token */ this[kProxyHeaders]['proxy-authorization'] = `Basic ${opts.auth}` } else if (opts.token) { this[kProxyHeaders]['proxy-authorization'] = opts.token } else if (username && password) { this[kProxyHeaders]['proxy-authorization'] = `Basic ${Buffer.from(`${decodeURIComponent(username)}:${decodeURIComponent(password)}`).toString('base64')}` } const connect = buildConnector({ ...opts.proxyTls }) this[kConnectEndpoint] = buildConnector({ ...opts.requestTls }) const agentFactory = opts.factory || defaultAgentFactory const factory = (origin, options) => { const { protocol } = new URL(origin) // Handle SOCKS5 proxy if (this[kProxy].protocol === 'socks5:' || this[kProxy].protocol === 'socks:') { return new Socks5ProxyAgent(this[kProxy].uri, { headers: this[kProxyHeaders], connect, factory: agentFactory, username: opts.username || username, password: opts.password || password, proxyTls: opts.proxyTls, requestTls: opts.requestTls }) } if (!this[kTunnelProxy] && protocol === 'http:' && this[kProxy].protocol === 'http:') { return new Http1ProxyWrapper(this[kProxy].uri, { headers: this[kProxyHeaders], connect, factory: agentFactory }) } return agentFactory(origin, options) } // For SOCKS5 proxies, we don't need a client to the proxy itself // The SOCKS5 connection is handled within Socks5ProxyAgent if (protocol === 'socks5:' || protocol === 'socks:') { this[kClient] = null } else { this[kClient] = clientFactory(url, { connect }) } this[kAgent] = new Agent({ ...opts, factory, connect: async (opts, callback) => { // SOCKS5 proxies handle their own connections via Socks5ProxyAgent, // so this connect function should never be called for them. if (!this[kClient]) { callback(new InvalidArgumentError('Cannot establish tunnel connection without a proxy client')) return } let requestedPath = opts.host if (!opts.port) { requestedPath += `:${defaultProtocolPort(opts.protocol)}` } try { const connectParams = { origin, port, path: requestedPath, signal: opts.signal, headers: { ...this[kProxyHeaders], host: opts.host, ...(opts.connections == null || opts.connections > 0 ? { 'proxy-connection': 'keep-alive' } : {}) }, servername: this[kProxyTls]?.servername || proxyHostname } const { socket, statusCode } = await this[kClient].connect(connectParams) if (statusCode !== 200) { socket.on('error', noop).destroy() callback(new RequestAbortedError(`Proxy response (${statusCode}) !== 200 when HTTP Tunneling`)) return } if (channels.proxyConnected.hasSubscribers) { channels.proxyConnected.publish({ socket, connectParams }) } if (opts.protocol !== 'https:') { callback(null, socket) return } let servername if (this[kRequestTls]) { servername = this[kRequestTls].servername } else { servername = opts.servername } this[kConnectEndpoint]({ ...opts, servername, httpSocket: socket }, callback) } catch (err) { if (err.code === 'ERR_TLS_CERT_ALTNAME_INVALID') { // Throw a custom error to avoid loop in client.js#connect callback(new SecureProxyConnectionError(err)) } else { callback(err) } } } }) } dispatch (opts, handler) { const headers = buildHeaders(opts.headers) throwIfProxyAuthIsSent(headers) if (headers && !('host' in headers) && !('Host' in headers)) { const { host } = new URL(opts.origin) headers.host = host } return this[kAgent].dispatch( { ...opts, headers }, handler ) } /** * @param {import('../../types/proxy-agent').ProxyAgent.Options | string | URL} opts * @returns {URL} */ #getUrl (opts) { if (typeof opts === 'string') { return new URL(opts) } else if (opts instanceof URL) { return opts } else { return new URL(opts.uri) } } [kClose] () { const promises = [this[kAgent].close()] if (this[kClient]) { promises.push(this[kClient].close()) } return Promise.all(promises) } [kDestroy] () { const promises = [this[kAgent].destroy()] if (this[kClient]) { promises.push(this[kClient].destroy()) } return Promise.all(promises) } } /** * @param {string[] | Record} headers * @returns {Record} */ function buildHeaders (headers) { // When using undici.fetch, the headers list is stored // as an array. if (Array.isArray(headers)) { /** @type {Record} */ const headersPair = {} for (let i = 0; i < headers.length; i += 2) { headersPair[headers[i]] = headers[i + 1] } return headersPair } return headers } /** * @param {Record} headers * * Previous versions of ProxyAgent suggests the Proxy-Authorization in request headers * Nevertheless, it was changed and to avoid a security vulnerability by end users * this check was created. * It should be removed in the next major version for performance reasons */ function throwIfProxyAuthIsSent (headers) { const existProxyAuth = headers && Object.keys(headers) .find((key) => key.toLowerCase() === 'proxy-authorization') if (existProxyAuth) { throw new InvalidArgumentError('Proxy-Authorization should be sent in ProxyAgent constructor') } } module.exports = ProxyAgent /***/ }), /***/ 30050: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const Dispatcher = __nccwpck_require__(30883) const RetryHandler = __nccwpck_require__(17816) class RetryAgent extends Dispatcher { #agent = null #options = null constructor (agent, options = {}) { super(options) this.#agent = agent this.#options = options } dispatch (opts, handler) { const retry = new RetryHandler({ ...opts, retryOptions: this.#options }, { dispatch: this.#agent.dispatch.bind(this.#agent), handler }) return this.#agent.dispatch(opts, retry) } close () { return this.#agent.close() } destroy () { return this.#agent.destroy() } } module.exports = RetryAgent /***/ }), /***/ 45520: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { PoolBase, kClients, kNeedDrain, kAddClient, kGetDispatcher, kRemoveClient } = __nccwpck_require__(42128) const Client = __nccwpck_require__(23701) const { InvalidArgumentError } = __nccwpck_require__(68707) const util = __nccwpck_require__(3440) const { kUrl } = __nccwpck_require__(36443) const buildConnector = __nccwpck_require__(59136) const kOptions = Symbol('options') const kConnections = Symbol('connections') const kFactory = Symbol('factory') const kIndex = Symbol('index') function defaultFactory (origin, opts) { return new Client(origin, opts) } class RoundRobinPool extends PoolBase { constructor (origin, { connections, factory = defaultFactory, connect, connectTimeout, tls, maxCachedSessions, socketPath, autoSelectFamily, autoSelectFamilyAttemptTimeout, allowH2, clientTtl, ...options } = {}) { if (connections != null && (!Number.isFinite(connections) || connections < 0)) { throw new InvalidArgumentError('invalid connections') } if (typeof factory !== 'function') { throw new InvalidArgumentError('factory must be a function.') } if (connect != null && typeof connect !== 'function' && typeof connect !== 'object') { throw new InvalidArgumentError('connect must be a function or an object') } if (typeof connect !== 'function') { connect = buildConnector({ ...tls, maxCachedSessions, allowH2, socketPath, timeout: connectTimeout, ...(typeof autoSelectFamily === 'boolean' ? { autoSelectFamily, autoSelectFamilyAttemptTimeout } : undefined), ...connect }) } super() this[kConnections] = connections || null this[kUrl] = util.parseOrigin(origin) this[kOptions] = { ...util.deepClone(options), connect, allowH2, clientTtl, socketPath } this[kOptions].interceptors = options.interceptors ? { ...options.interceptors } : undefined this[kFactory] = factory this[kIndex] = -1 this.on('connect', (origin, targets) => { if (clientTtl != null && clientTtl > 0) { for (const target of targets) { Object.assign(target, { ttl: Date.now() }) } } }) this.on('connectionError', (origin, targets, error) => { for (const target of targets) { const idx = this[kClients].indexOf(target) if (idx !== -1) { this[kClients].splice(idx, 1) } } }) } [kGetDispatcher] () { const clientTtlOption = this[kOptions].clientTtl const clientsLength = this[kClients].length // If we have no clients yet, create one if (clientsLength === 0) { const dispatcher = this[kFactory](this[kUrl], this[kOptions]) this[kAddClient](dispatcher) return dispatcher } // Round-robin through existing clients let checked = 0 while (checked < clientsLength) { this[kIndex] = (this[kIndex] + 1) % clientsLength const client = this[kClients][this[kIndex]] // Check if client is stale (TTL expired) if (clientTtlOption != null && clientTtlOption > 0 && client.ttl && ((Date.now() - client.ttl) > clientTtlOption)) { this[kRemoveClient](client) checked++ continue } // Return client if it's not draining if (!client[kNeedDrain]) { return client } checked++ } // All clients are busy, create a new one if we haven't reached the limit if (!this[kConnections] || clientsLength < this[kConnections]) { const dispatcher = this[kFactory](this[kUrl], this[kOptions]) this[kAddClient](dispatcher) return dispatcher } } } module.exports = RoundRobinPool /***/ }), /***/ 87223: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { URL } = __nccwpck_require__(73136) let tls // include tls conditionally since it is not always available const DispatcherBase = __nccwpck_require__(21841) const { InvalidArgumentError } = __nccwpck_require__(68707) const { Socks5Client, STATES } = __nccwpck_require__(18082) const { kDispatch, kClose, kDestroy } = __nccwpck_require__(36443) const Pool = __nccwpck_require__(30628) const buildConnector = __nccwpck_require__(59136) const { debuglog } = __nccwpck_require__(57975) const debug = debuglog('undici:socks5-proxy') const kProxyUrl = Symbol('proxy url') const kProxyHeaders = Symbol('proxy headers') const kProxyAuth = Symbol('proxy auth') const kProxyProtocol = Symbol('proxy protocol') const kPools = Symbol('pools') const kConnector = Symbol('connector') const kRequestTls = Symbol('request tls settings') // Static flag to ensure warning is only emitted once per process let experimentalWarningEmitted = false /** * SOCKS5 proxy agent for dispatching requests through a SOCKS5 proxy */ class Socks5ProxyAgent extends DispatcherBase { constructor (proxyUrl, options = {}) { super() // Emit experimental warning only once if (!experimentalWarningEmitted) { process.emitWarning( 'SOCKS5 proxy support is experimental and subject to change', 'ExperimentalWarning' ) experimentalWarningEmitted = true } if (!proxyUrl) { throw new InvalidArgumentError('Proxy URL is mandatory') } // Parse proxy URL const url = typeof proxyUrl === 'string' ? new URL(proxyUrl) : proxyUrl if (url.protocol !== 'socks5:' && url.protocol !== 'socks:') { throw new InvalidArgumentError('Proxy URL must use socks5:// or socks:// protocol') } this[kProxyUrl] = url this[kProxyHeaders] = options.headers || {} this[kProxyProtocol] = options.proxyTls ? 'https:' : 'http:' this[kRequestTls] = options.requestTls // Extract auth from URL or options this[kProxyAuth] = { username: options.username || (url.username ? decodeURIComponent(url.username) : null), password: options.password || (url.password ? decodeURIComponent(url.password) : null) } // Create connector for proxy connection this[kConnector] = options.connect || buildConnector({ ...options.proxyTls, servername: options.proxyTls?.servername || url.hostname }) // Pools for the actual HTTP connections (with SOCKS5 tunnel connect function), keyed by origin this[kPools] = new Map() } /** * Create a SOCKS5 connection to the proxy */ async createSocks5Connection (targetHost, targetPort) { const proxyHost = this[kProxyUrl].hostname const proxyPort = parseInt(this[kProxyUrl].port) || 1080 debug('creating SOCKS5 connection to', proxyHost, proxyPort) // Connect to the SOCKS5 proxy const socket = await new Promise((resolve, reject) => { this[kConnector]({ hostname: proxyHost, host: proxyHost, port: proxyPort, protocol: this[kProxyProtocol] }, (err, socket) => { if (err) { reject(err) } else { resolve(socket) } }) }) // Create SOCKS5 client const socks5Client = new Socks5Client(socket, this[kProxyAuth]) // Handle SOCKS5 errors socks5Client.on('error', (err) => { debug('SOCKS5 error:', err) socket.destroy() }) // Perform SOCKS5 handshake await socks5Client.handshake() // Wait for authentication (if required) await new Promise((resolve, reject) => { const timeout = setTimeout(() => { reject(new Error('SOCKS5 authentication timeout')) }, 5000) const onAuthenticated = () => { clearTimeout(timeout) socks5Client.removeListener('error', onError) resolve() } const onError = (err) => { clearTimeout(timeout) socks5Client.removeListener('authenticated', onAuthenticated) reject(err) } // Check if already authenticated (for NO_AUTH method) if (socks5Client.state === STATES.AUTHENTICATED) { clearTimeout(timeout) resolve() } else { socks5Client.once('authenticated', onAuthenticated) socks5Client.once('error', onError) } }) // Send CONNECT command await socks5Client.connect(targetHost, targetPort) // Wait for connection await new Promise((resolve, reject) => { const timeout = setTimeout(() => { reject(new Error('SOCKS5 connection timeout')) }, 5000) const onConnected = (info) => { debug('SOCKS5 tunnel established to', targetHost, targetPort, 'via', info) clearTimeout(timeout) socks5Client.removeListener('error', onError) resolve() } const onError = (err) => { clearTimeout(timeout) socks5Client.removeListener('connected', onConnected) reject(err) } socks5Client.once('connected', onConnected) socks5Client.once('error', onError) }) return socket } /** * Dispatch a request through the SOCKS5 proxy */ [kDispatch] (opts, handler) { const { origin } = opts debug('dispatching request to', origin, 'via SOCKS5') try { const originKey = String(origin) let pool = this[kPools].get(originKey) // Create a Pool per origin so requests are not routed to the wrong host if (!pool || pool.destroyed || pool.closed) { pool = new Pool(origin, { pipelining: opts.pipelining, connections: opts.connections, connect: async (connectOpts, callback) => { try { const url = new URL(origin) const targetHost = url.hostname const targetPort = parseInt(url.port) || (url.protocol === 'https:' ? 443 : 80) debug('establishing SOCKS5 connection to', targetHost, targetPort) // Create SOCKS5 tunnel const socket = await this.createSocks5Connection(targetHost, targetPort) // Handle TLS if needed let finalSocket = socket if (url.protocol === 'https:') { if (!tls) { tls = __nccwpck_require__(41692) } debug('upgrading to TLS') finalSocket = tls.connect({ ...this[kRequestTls], socket, servername: this[kRequestTls]?.servername || targetHost }) await new Promise((resolve, reject) => { finalSocket.once('secureConnect', resolve) finalSocket.once('error', reject) }) } callback(null, finalSocket) } catch (err) { debug('SOCKS5 connection error:', err) callback(err) } } }) this[kPools].set(originKey, pool) } // Dispatch the request through the per-origin pool return pool[kDispatch](opts, handler) } catch (err) { debug('dispatch error:', err) if (typeof handler.onResponseError === 'function') { handler.onResponseError(null, err) return false } else if (typeof handler.onError === 'function') { handler.onError(err) return false } else { throw err } } } async [kClose] () { const closePromises = [] for (const pool of this[kPools].values()) { closePromises.push(pool.close()) } this[kPools].clear() await Promise.all(closePromises) } async [kDestroy] (err) { const destroyPromises = [] for (const pool of this[kPools].values()) { destroyPromises.push(pool.destroy(err)) } this[kPools].clear() await Promise.all(destroyPromises) } } module.exports = Socks5ProxyAgent /***/ }), /***/ 276: /***/ ((module) => { "use strict"; const textDecoder = new TextDecoder() /** * @see https://encoding.spec.whatwg.org/#utf-8-decode * @param {Uint8Array} buffer */ function utf8DecodeBytes (buffer) { if (buffer.length === 0) { return '' } // 1. Let buffer be the result of peeking three bytes from // ioQueue, converted to a byte sequence. // 2. If buffer is 0xEF 0xBB 0xBF, then read three // bytes from ioQueue. (Do nothing with those bytes.) if (buffer[0] === 0xEF && buffer[1] === 0xBB && buffer[2] === 0xBF) { buffer = buffer.subarray(3) } // 3. Process a queue with an instance of UTF-8’s // decoder, ioQueue, output, and "replacement". const output = textDecoder.decode(buffer) // 4. Return output. return output } module.exports = { utf8DecodeBytes } /***/ }), /***/ 32581: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; // We include a version number for the Dispatcher API. In case of breaking changes, // this version number must be increased to avoid conflicts. const globalDispatcher = Symbol.for('undici.globalDispatcher.2') const legacyGlobalDispatcher = Symbol.for('undici.globalDispatcher.1') const { InvalidArgumentError } = __nccwpck_require__(68707) const Agent = __nccwpck_require__(57405) if (getGlobalDispatcher() === undefined) { setGlobalDispatcher(new Agent()) } function setGlobalDispatcher (agent) { if (!agent || typeof agent.dispatch !== 'function') { throw new InvalidArgumentError('Argument agent must implement Agent') } Object.defineProperty(globalThis, globalDispatcher, { value: agent, writable: true, enumerable: false, configurable: false }) Object.defineProperty(globalThis, legacyGlobalDispatcher, { value: agent, writable: true, enumerable: false, configurable: false }) } function getGlobalDispatcher () { return globalThis[legacyGlobalDispatcher] } // These are the globals that can be installed by undici.install(). // Not exported by index.js to avoid use outside of this module. const installedExports = /** @type {const} */ ( [ 'fetch', 'Headers', 'Response', 'Request', 'FormData', 'WebSocket', 'CloseEvent', 'ErrorEvent', 'MessageEvent', 'EventSource' ] ) module.exports = { setGlobalDispatcher, getGlobalDispatcher, installedExports } /***/ }), /***/ 39976: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const util = __nccwpck_require__(3440) const { parseCacheControlHeader, hasInvalidCacheControlDirective, parseVaryHeader, hasVaryStar, isInvalidOrWildcardVaryHeader, isEtagUsable } = __nccwpck_require__(47659) const { parseHttpDate } = __nccwpck_require__(25453) function noop () {} // Status codes that we can use some heuristics on to cache const HEURISTICALLY_CACHEABLE_STATUS_CODES = [ 200, 203, 204, 206, 300, 301, 308, 404, 405, 410, 414, 501 ] // Status codes which semantic is not handled by the cache // https://datatracker.ietf.org/doc/html/rfc9111#section-3 // This list should not grow beyond 206 unless the RFC is updated // by a newer one including more. Please introduce another list if // implementing caching of responses with the 'must-understand' directive. const NOT_UNDERSTOOD_STATUS_CODES = [ 206 ] const MAX_RESPONSE_AGE = 2147483647000 function trimOWS (value) { return value.replace(/^[\t ]+|[\t ]+$/g, '') } function arrayIncludes (array, value) { for (let i = 0; i < array.length; i++) { if (array[i] === value) { return true } } return false } function appendConnectionHeaderTokens (headersToRemove, connectionHeader) { const values = Array.isArray(connectionHeader) ? connectionHeader : [connectionHeader] for (let i = 0; i < values.length; i++) { const tokens = values[i].split(',') for (let j = 0; j < tokens.length; j++) { headersToRemove.push(trimOWS(tokens[j]).toLowerCase()) } } } function getSameOriginPath (cacheKey, location) { if (typeof location !== 'string') { return undefined } let originUrl let requestUrl let locationUrl try { originUrl = new URL(cacheKey.origin) requestUrl = new URL(cacheKey.path, originUrl) locationUrl = new URL(location, requestUrl) } catch { return undefined } if (locationUrl.origin !== originUrl.origin) { return undefined } return locationUrl.pathname + locationUrl.search } function deleteCachedUri (store, cacheKey, path) { deleteCachedValue(store, { ...cacheKey, path }) for (let i = 0; i < util.safeHTTPMethods.length; i++) { const method = util.safeHTTPMethods[i] if (method !== cacheKey.method) { deleteCachedValue(store, { ...cacheKey, method, path }) } } } function deleteLocationTargets (store, cacheKey, headerValue) { if (headerValue === undefined) { return } const values = Array.isArray(headerValue) ? headerValue : [headerValue] for (let i = 0; i < values.length; i++) { const path = getSameOriginPath(cacheKey, values[i]) if (path !== undefined) { deleteCachedUri(store, cacheKey, path) } } } function invalidateUnsafeRequest (store, cacheKey, resHeaders) { deleteCachedUri(store, cacheKey, cacheKey.path) deleteLocationTargets(store, cacheKey, resHeaders.location) deleteLocationTargets(store, cacheKey, resHeaders['content-location']) } /** * @typedef {import('../../types/dispatcher.d.ts').default.DispatchHandler} DispatchHandler * * @implements {DispatchHandler} */ class CacheHandler { /** * @type {import('../../types/cache-interceptor.d.ts').default.CacheKey} */ #cacheKey /** * @type {import('../../types/cache-interceptor.d.ts').default.CacheHandlerOptions['type']} */ #cacheType /** * @type {number | undefined} */ #cacheByDefault /** * @type {import('../../types/cache-interceptor.d.ts').default.CacheStore} */ #store /** * @type {import('../../types/dispatcher.d.ts').default.DispatchHandler} */ #handler /** * @type {import('node:stream').Writable | undefined} */ #writeStream /** * @param {import('../../types/cache-interceptor.d.ts').default.CacheHandlerOptions} opts * @param {import('../../types/cache-interceptor.d.ts').default.CacheKey} cacheKey * @param {import('../../types/dispatcher.d.ts').default.DispatchHandler} handler */ constructor ({ store, type, cacheByDefault }, cacheKey, handler) { this.#store = store this.#cacheType = type this.#cacheByDefault = cacheByDefault this.#cacheKey = cacheKey this.#handler = handler } onRequestStart (controller, context) { this.#writeStream?.destroy() this.#writeStream = undefined this.#handler.onRequestStart?.(controller, context) } onRequestUpgrade (controller, statusCode, headers, socket) { this.#handler.onRequestUpgrade?.(controller, statusCode, headers, socket) } /** * @param {import('../../types/dispatcher.d.ts').default.DispatchController} controller * @param {number} statusCode * @param {import('../../types/header.d.ts').IncomingHttpHeaders} resHeaders * @param {string} statusMessage */ onResponseStart ( controller, statusCode, resHeaders, statusMessage ) { const downstreamOnHeaders = () => this.#handler.onResponseStart?.( controller, statusCode, resHeaders, statusMessage ) const handler = this if ( !arrayIncludes(util.safeHTTPMethods, this.#cacheKey.method) && statusCode >= 200 && statusCode <= 399 ) { // Successful response to an unsafe method, delete it from cache // https://www.rfc-editor.org/rfc/rfc9111.html#name-invalidating-stored-response invalidateUnsafeRequest(this.#store, this.#cacheKey, resHeaders) return downstreamOnHeaders() } const cacheControlHeader = resHeaders['cache-control'] const heuristicallyCacheable = resHeaders['last-modified'] && arrayIncludes(HEURISTICALLY_CACHEABLE_STATUS_CODES, statusCode) if ( !cacheControlHeader && !resHeaders['expires'] && !heuristicallyCacheable && !this.#cacheByDefault ) { if (statusCode === 304 && resHeaders.vary && isInvalidOrWildcardVaryHeader(resHeaders.vary)) { deleteCachedValue(this.#store, this.#cacheKey) } // Don't have anything to tell us this response is cachable and we're not // caching by default return downstreamOnHeaders() } const cacheControlDirectives = cacheControlHeader ? parseCacheControlHeader(cacheControlHeader) : {} if (!canCacheResponse(this.#cacheType, statusCode, resHeaders, cacheControlDirectives, this.#cacheKey.headers)) { if (statusCode === 304 && (cacheControlHeader || revalidationResponseDisallowsCachedReuse(this.#cacheType, resHeaders, cacheControlDirectives))) { deleteCachedValue(this.#store, this.#cacheKey) } return downstreamOnHeaders() } const now = Date.now() const resAge = Object.hasOwn(resHeaders, 'age') ? getAge(resHeaders.age) : undefined if (resAge !== undefined && resAge >= MAX_RESPONSE_AGE) { // Response considered stale deleteCachedValueIfNotModified(statusCode, this.#store, this.#cacheKey) return downstreamOnHeaders() } const resDate = Object.hasOwn(resHeaders, 'date') ? getDate(resHeaders.date) : undefined if (resDate === null) { deleteCachedValueIfNotModified(statusCode, this.#store, this.#cacheKey) return downstreamOnHeaders() } const apparentAge = resDate ? Math.max(0, now - resDate.getTime()) : 0 const currentAge = Math.max(apparentAge, resAge ?? 0) const staleAt = determineStaleAt(this.#cacheType, now, resAge, resHeaders, resDate, cacheControlDirectives) ?? this.#cacheByDefault if (staleAt === undefined || currentAge >= staleAt) { if (cacheControlHeader || staleAt !== undefined) { deleteCachedValueIfNotModified(statusCode, this.#store, this.#cacheKey) } return downstreamOnHeaders() } const baseTime = now - currentAge const absoluteStaleAt = staleAt + baseTime if (now >= absoluteStaleAt) { // Response is already stale deleteCachedValueIfNotModified(statusCode, this.#store, this.#cacheKey) return downstreamOnHeaders() } let varyDirectives if (this.#cacheKey.headers && resHeaders.vary) { varyDirectives = parseVaryHeader(resHeaders.vary, this.#cacheKey.headers) if (!varyDirectives) { // Parse error return downstreamOnHeaders() } } const cachedAt = baseTime const deleteAt = determineDeleteAt(baseTime, now, cacheControlDirectives, absoluteStaleAt) const strippedHeaders = stripNecessaryHeaders(resHeaders, cacheControlDirectives) /** * @type {import('../../types/cache-interceptor.d.ts').default.CacheValue} */ const value = { statusCode, statusMessage, headers: strippedHeaders, vary: varyDirectives, cacheControlDirectives, cachedAt, staleAt: absoluteStaleAt, deleteAt } // Not modified, re-use the cached value // https://www.rfc-editor.org/rfc/rfc9111.html#name-handling-304-not-modified if (statusCode === 304) { const handle304 = (cachedValue) => { if (!cachedValue) { // Do not create a new cache entry, as a 304 won't have a body - so cannot be cached. return downstreamOnHeaders() } // Re-use the cached value: statuscode, statusmessage, headers and body value.statusCode = cachedValue.statusCode value.statusMessage = cachedValue.statusMessage value.etag = cachedValue.etag value.vary = varyDirectives ?? cachedValue.vary value.headers = { ...cachedValue.headers, ...strippedHeaders } downstreamOnHeaders() this.#writeStream = this.#store.createWriteStream(this.#cacheKey, value) if (!this.#writeStream || !cachedValue?.body) { return } if (typeof cachedValue.body.values === 'function') { const bodyIterator = cachedValue.body.values() const streamCachedBody = () => { for (const chunk of bodyIterator) { const full = this.#writeStream.write(chunk) === false this.#handler.onResponseData?.(controller, chunk) // when stream is full stop writing until we get a 'drain' event if (full) { break } } } this.#writeStream .on('error', function () { handler.#writeStream = undefined handler.#store.delete(handler.#cacheKey) }) .on('drain', () => { streamCachedBody() }) .on('close', function () { if (handler.#writeStream === this) { handler.#writeStream = undefined } }) streamCachedBody() } else if (typeof cachedValue.body.on === 'function') { // Readable stream body (e.g. from async/remote cache stores) cachedValue.body .on('data', (chunk) => { this.#writeStream.write(chunk) this.#handler.onResponseData?.(controller, chunk) }) .on('end', () => { this.#writeStream.end() }) .on('error', () => { this.#writeStream = undefined this.#store.delete(this.#cacheKey) }) this.#writeStream .on('error', function () { handler.#writeStream = undefined handler.#store.delete(handler.#cacheKey) }) .on('close', function () { if (handler.#writeStream === this) { handler.#writeStream = undefined } }) } } /** * @type {import('../../types/cache-interceptor.d.ts').default.CacheValue} */ const result = this.#store.get(this.#cacheKey) if (result && typeof result.then === 'function') { result.then(handle304) } else { handle304(result) } } else { if (typeof resHeaders.etag === 'string' && isEtagUsable(resHeaders.etag)) { value.etag = resHeaders.etag } this.#writeStream = this.#store.createWriteStream(this.#cacheKey, value) if (!this.#writeStream) { return downstreamOnHeaders() } this.#writeStream .on('drain', () => controller.resume()) .on('error', function () { // TODO (fix): Make error somehow observable? handler.#writeStream = undefined // Delete the value in case the cache store is holding onto state from // the call to createWriteStream handler.#store.delete(handler.#cacheKey) }) .on('close', function () { if (handler.#writeStream === this) { handler.#writeStream = undefined } // TODO (fix): Should we resume even if was paused downstream? controller.resume() }) downstreamOnHeaders() } } onResponseData (controller, chunk) { if (this.#writeStream?.write(chunk) === false) { controller.pause() } this.#handler.onResponseData?.(controller, chunk) } onResponseEnd (controller, trailers) { this.#writeStream?.end() this.#handler.onResponseEnd?.(controller, trailers) } onResponseError (controller, err) { this.#writeStream?.destroy(err) this.#writeStream = undefined this.#handler.onResponseError?.(controller, err) } } /** * @param {import('../../types/cache-interceptor.d.ts').default.CacheStore} store * @param {import('../../types/cache-interceptor.d.ts').default.CacheKey} cacheKey */ function deleteCachedValue (store, cacheKey) { try { store.delete(cacheKey)?.catch?.(noop) } catch { // Fail silently } } function deleteCachedValueIfNotModified (statusCode, store, cacheKey) { if (statusCode === 304) { deleteCachedValue(store, cacheKey) } } /** * @param {import('../../types/cache-interceptor.d.ts').default.CacheOptions['type']} cacheType * @param {import('../../types/header.d.ts').IncomingHttpHeaders} resHeaders * @param {import('../../types/cache-interceptor.d.ts').default.CacheControlDirectives} cacheControlDirectives * @returns {boolean} */ function revalidationResponseDisallowsCachedReuse (cacheType, resHeaders, cacheControlDirectives) { return cacheControlDirectives['no-store'] === true || (cacheType === 'shared' && cacheControlDirectives.private === true) || (resHeaders.vary ? isInvalidOrWildcardVaryHeader(resHeaders.vary) : false) } /** * @see https://www.rfc-editor.org/rfc/rfc9111.html#name-storing-responses-to-authen * * @param {import('../../types/cache-interceptor.d.ts').default.CacheOptions['type']} cacheType * @param {number} statusCode * @param {import('../../types/header.d.ts').IncomingHttpHeaders} resHeaders * @param {import('../../types/cache-interceptor.d.ts').default.CacheControlDirectives} cacheControlDirectives * @param {import('../../types/header.d.ts').IncomingHttpHeaders} [reqHeaders] */ function canCacheResponse (cacheType, statusCode, resHeaders, cacheControlDirectives, reqHeaders) { // Status code must be final and understood. if (statusCode < 200 || arrayIncludes(NOT_UNDERSTOOD_STATUS_CODES, statusCode)) { return false } // Responses with neither status codes that are heuristically cacheable, nor "explicit enough" caching // directives, are not cacheable. "Explicit enough": see https://www.rfc-editor.org/rfc/rfc9111.html#section-3 if (!arrayIncludes(HEURISTICALLY_CACHEABLE_STATUS_CODES, statusCode) && !resHeaders['expires'] && !cacheControlDirectives.public && cacheControlDirectives['max-age'] === undefined && // RFC 9111: a private response directive, if the cache is not shared !(cacheControlDirectives.private && cacheType === 'private') && !(cacheControlDirectives['s-maxage'] !== undefined && cacheType === 'shared') ) { return false } if (cacheControlDirectives['no-store']) { return false } if (cacheType === 'shared' && cacheControlDirectives.private === true) { return false } // https://www.rfc-editor.org/rfc/rfc9111.html#section-4.1-5 if (resHeaders.vary && hasVaryStar(resHeaders.vary)) { return false } // https://www.rfc-editor.org/rfc/rfc9111.html#name-storing-responses-to-authen if (reqHeaders != null && Object.hasOwn(reqHeaders, 'authorization')) { if ( !cacheControlDirectives.public && !cacheControlDirectives['s-maxage'] && !cacheControlDirectives['must-revalidate'] ) { return false } if (typeof reqHeaders.authorization !== 'string') { return false } if ( Array.isArray(cacheControlDirectives['no-cache']) && arrayIncludes(cacheControlDirectives['no-cache'], 'authorization') ) { return false } if ( Array.isArray(cacheControlDirectives['private']) && arrayIncludes(cacheControlDirectives['private'], 'authorization') ) { return false } } return true } /** * @param {string | string[]} dateHeader * @returns {Date | null | undefined} */ function getDate (dateHeader) { let dateValue = dateHeader if (Array.isArray(dateValue)) { if (dateValue.length !== 1) { return null } dateValue = dateValue[0] } if (typeof dateValue !== 'string') { return null } return parseHttpDate(dateValue) } /** * @param {string | string[]} ageHeader * @returns {number | undefined} */ function getAge (ageHeader) { let ageValue = ageHeader if (Array.isArray(ageValue)) { if (ageValue.length !== 1) { return MAX_RESPONSE_AGE } ageValue = ageValue[0] } if (typeof ageValue !== 'string' || !/^[\t ]*[0-9]+[\t ]*$/.test(ageValue)) { return MAX_RESPONSE_AGE } const age = BigInt(ageValue.replace(/^[\t ]+|[\t ]+$/g, '')) if (age >= BigInt(MAX_RESPONSE_AGE / 1000)) { return MAX_RESPONSE_AGE } return Number(age) * 1000 } /** * @param {import('../../types/cache-interceptor.d.ts').default.CacheOptions['type']} cacheType * @param {number} now * @param {number | undefined} age * @param {import('../../types/header.d.ts').IncomingHttpHeaders} resHeaders * @param {Date | undefined} responseDate * @param {import('../../types/cache-interceptor.d.ts').default.CacheControlDirectives} cacheControlDirectives * * @returns {number | undefined} time that the value is stale at in seconds or undefined if it shouldn't be cached */ function determineStaleAt (cacheType, now, age, resHeaders, responseDate, cacheControlDirectives) { if (cacheType === 'shared') { // Prioritize s-maxage since we're a shared cache // s-maxage > max-age > Expire // https://www.rfc-editor.org/rfc/rfc9111.html#section-5.2.2.10-3 if (hasInvalidCacheControlDirective(cacheControlDirectives, 's-maxage')) { return 0 } const sMaxAge = cacheControlDirectives['s-maxage'] if (sMaxAge !== undefined) { return sMaxAge * 1000 } } if (hasInvalidCacheControlDirective(cacheControlDirectives, 'max-age')) { return 0 } const maxAge = cacheControlDirectives['max-age'] if (maxAge !== undefined) { return maxAge * 1000 } if (Object.hasOwn(resHeaders, 'expires')) { // https://www.rfc-editor.org/rfc/rfc9111.html#section-5.3 if (typeof resHeaders.expires !== 'string') { return 0 } const expiresDate = parseHttpDate(resHeaders.expires) if (!expiresDate) { return 0 } if (now >= expiresDate.getTime()) { return 0 } if (responseDate) { if (responseDate >= expiresDate) { return 0 } const freshnessLifetime = expiresDate.getTime() - responseDate.getTime() if (age !== undefined && age >= freshnessLifetime) { return 0 } return freshnessLifetime } return expiresDate.getTime() - now } if (typeof resHeaders['last-modified'] === 'string') { // https://www.rfc-editor.org/rfc/rfc9111.html#name-calculating-heuristic-fresh const lastModified = parseHttpDate(resHeaders['last-modified']) if (lastModified) { if (lastModified.getTime() >= now) { return undefined } const responseAge = now - lastModified.getTime() return responseAge * 0.1 } } if (cacheControlDirectives.immutable) { // https://www.rfc-editor.org/rfc/rfc8246.html#section-2.2 return 31536000000 } return undefined } /** * @param {number} baseTime * @param {number} cachedAt * @param {import('../../types/cache-interceptor.d.ts').default.CacheControlDirectives} cacheControlDirectives * @param {number} staleAt */ function determineDeleteAt (baseTime, cachedAt, cacheControlDirectives, staleAt) { let staleWhileRevalidate = -Infinity let staleIfError = -Infinity let immutable = -Infinity if (cacheControlDirectives['stale-while-revalidate']) { staleWhileRevalidate = staleAt + (cacheControlDirectives['stale-while-revalidate'] * 1000) } if (cacheControlDirectives['stale-if-error']) { staleIfError = staleAt + (cacheControlDirectives['stale-if-error'] * 1000) } if (cacheControlDirectives.immutable && staleWhileRevalidate === -Infinity && staleIfError === -Infinity) { immutable = cachedAt + 31536000000 } // When no stale directives or immutable flag, add a revalidation buffer // equal to the freshness lifetime so the entry survives past staleAt long // enough to be revalidated instead of silently disappearing. // // Response Date headers only have second precision, so baseTime can trail the // actual cache insertion time by up to ~1s. Pad the buffer by that bounded // skew so short-lived entries do not disappear exactly when they should be // revalidated. if (staleWhileRevalidate === -Infinity && staleIfError === -Infinity && immutable === -Infinity) { const freshnessLifetime = staleAt - baseTime const datePrecisionPadding = Math.min(Math.max(cachedAt - baseTime, 0), 1000) return staleAt + freshnessLifetime + datePrecisionPadding } return Math.max(staleAt, staleWhileRevalidate, staleIfError, immutable) } /** * Strips headers required to be removed in cached responses * @param {import('../../types/header.d.ts').IncomingHttpHeaders} resHeaders * @param {import('../../types/cache-interceptor.d.ts').default.CacheControlDirectives} cacheControlDirectives * @returns {Record} */ function stripNecessaryHeaders (resHeaders, cacheControlDirectives) { const headersToRemove = [ 'connection', 'proxy-authenticate', 'proxy-authentication-info', 'proxy-authorization', 'proxy-connection', 'te', 'transfer-encoding', 'upgrade', // We'll add age back when serving it 'age' ] if (resHeaders['connection']) { appendConnectionHeaderTokens(headersToRemove, resHeaders['connection']) } if (Array.isArray(cacheControlDirectives['no-cache'])) { headersToRemove.push(...cacheControlDirectives['no-cache']) } if (Array.isArray(cacheControlDirectives['private'])) { headersToRemove.push(...cacheControlDirectives['private']) } let strippedHeaders for (const headerName of headersToRemove) { if (Object.hasOwn(resHeaders, headerName)) { strippedHeaders ??= { ...resHeaders } delete strippedHeaders[headerName] } } return strippedHeaders ?? resHeaders } module.exports = CacheHandler /***/ }), /***/ 17133: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const assert = __nccwpck_require__(34589) /** * This takes care of revalidation requests we send to the origin. If we get * a response indicating that what we have is cached (via a HTTP 304), we can * continue using the cached value. Otherwise, we'll receive the new response * here, which we then just pass on to the next handler (most likely a * CacheHandler). Note that this assumes the proper headers were already * included in the request to tell the origin that we want to revalidate the * response (i.e. if-modified-since or if-none-match). * * @see https://www.rfc-editor.org/rfc/rfc9111.html#name-validation * * @implements {import('../../types/dispatcher.d.ts').default.DispatchHandler} */ class CacheRevalidationHandler { #successful = false /** * @type {((success: boolean, context?: any, statusCode?: number, headers?: import('../../types/header.d.ts').IncomingHttpHeaders) => void) | null} */ #callback /** * @type {(import('../../types/dispatcher.d.ts').default.DispatchHandler)} */ #handler #context /** * @type {boolean} */ #allowErrorStatusCodes /** * @param {(success: boolean, context?: any, statusCode?: number, headers?: import('../../types/header.d.ts').IncomingHttpHeaders) => void} callback Function to call if the cached value is valid * @param {import('../../types/dispatcher.d.ts').default.DispatchHandlers} handler * @param {boolean} allowErrorStatusCodes */ constructor (callback, handler, allowErrorStatusCodes) { if (typeof callback !== 'function') { throw new TypeError('callback must be a function') } this.#callback = callback this.#handler = handler this.#allowErrorStatusCodes = allowErrorStatusCodes } onRequestStart (_, context) { this.#successful = false this.#context = context } onRequestUpgrade (controller, statusCode, headers, socket) { this.#handler.onRequestUpgrade?.(controller, statusCode, headers, socket) } onResponseStart ( controller, statusCode, headers, statusMessage ) { assert(this.#callback != null) // https://www.rfc-editor.org/rfc/rfc9111.html#name-handling-a-validation-respo // https://datatracker.ietf.org/doc/html/rfc5861#section-4 this.#successful = statusCode === 304 || (this.#allowErrorStatusCodes && statusCode >= 500 && statusCode <= 504) this.#callback(this.#successful, this.#context, statusCode, headers) this.#callback = null if (this.#successful) { return true } this.#handler.onRequestStart?.(controller, this.#context) this.#handler.onResponseStart?.( controller, statusCode, headers, statusMessage ) } onResponseData (controller, chunk) { if (this.#successful) { return } return this.#handler.onResponseData?.(controller, chunk) } onResponseEnd (controller, trailers) { if (this.#successful) { return } this.#handler.onResponseEnd?.(controller, trailers) } onResponseError (controller, err) { if (this.#successful) { return } if (this.#callback) { this.#callback(false) this.#callback = null } if (typeof this.#handler.onResponseError === 'function') { this.#handler.onResponseError(controller, err) } else { throw err } } } module.exports = CacheRevalidationHandler /***/ }), /***/ 58155: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const assert = __nccwpck_require__(34589) const WrapHandler = __nccwpck_require__(99510) /** * @deprecated */ module.exports = class DecoratorHandler { #handler #onCompleteCalled = false #onErrorCalled = false #onResponseStartCalled = false constructor (handler) { if (typeof handler !== 'object' || handler === null) { throw new TypeError('handler must be an object') } this.#handler = WrapHandler.wrap(handler) } onRequestStart (...args) { this.#handler.onRequestStart?.(...args) } onRequestUpgrade (...args) { assert(!this.#onCompleteCalled) assert(!this.#onErrorCalled) return this.#handler.onRequestUpgrade?.(...args) } onResponseStart (...args) { assert(!this.#onCompleteCalled) assert(!this.#onErrorCalled) assert(!this.#onResponseStartCalled) this.#onResponseStartCalled = true return this.#handler.onResponseStart?.(...args) } onResponseData (...args) { assert(!this.#onCompleteCalled) assert(!this.#onErrorCalled) return this.#handler.onResponseData?.(...args) } onResponseEnd (...args) { assert(!this.#onCompleteCalled) assert(!this.#onErrorCalled) this.#onCompleteCalled = true return this.#handler.onResponseEnd?.(...args) } onResponseError (...args) { this.#onErrorCalled = true return this.#handler.onResponseError?.(...args) } /** * @deprecated */ onBodySent () {} } /***/ }), /***/ 53599: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { RequestAbortedError } = __nccwpck_require__(68707) /** * @typedef {import('../../types/dispatcher.d.ts').default.DispatchHandler} DispatchHandler */ const DEFAULT_MAX_BUFFER_SIZE = 5 * 1024 * 1024 /** * @typedef {Object} WaitingHandler * @property {DispatchHandler} handler * @property {import('../../types/dispatcher.d.ts').default.DispatchController} controller * @property {Buffer[]} bufferedChunks * @property {number} bufferedBytes * @property {object | null} pendingTrailers * @property {boolean} done */ /** * Handler that forwards response events to multiple waiting handlers. * Used for request deduplication. * * @implements {DispatchHandler} */ class DeduplicationHandler { /** * @type {DispatchHandler} */ #primaryHandler /** * @type {WaitingHandler[]} */ #waitingHandlers = [] /** * @type {number} */ #maxBufferSize = DEFAULT_MAX_BUFFER_SIZE /** * @type {number} */ #statusCode = 0 /** * @type {Record} */ #headers = {} /** * @type {string} */ #statusMessage = '' /** * @type {boolean} */ #aborted = false /** * @type {boolean} */ #responseStarted = false /** * @type {boolean} */ #responseDataStarted = false /** * @type {boolean} */ #completed = false /** * @type {import('../../types/dispatcher.d.ts').default.DispatchController | null} */ #controller = null /** * @type {(() => void) | null} */ #onComplete = null /** * @param {DispatchHandler} primaryHandler The primary handler * @param {() => void} onComplete Callback when request completes * @param {number} [maxBufferSize] Maximum paused buffer size per waiting handler */ constructor (primaryHandler, onComplete, maxBufferSize = DEFAULT_MAX_BUFFER_SIZE) { this.#primaryHandler = primaryHandler this.#onComplete = onComplete this.#maxBufferSize = maxBufferSize } /** * Add a waiting handler that will receive response events. * Returns false if deduplication can no longer safely attach this handler. * * @param {DispatchHandler} handler * @returns {boolean} */ addWaitingHandler (handler) { if (this.#completed || this.#responseDataStarted) { return false } const waitingHandler = this.#createWaitingHandler(handler) const waitingController = waitingHandler.controller try { handler.onRequestStart?.(waitingController, null) if (waitingController.aborted) { waitingHandler.done = true return true } if (this.#responseStarted) { handler.onResponseStart?.( waitingController, this.#statusCode, this.#headers, this.#statusMessage ) } } catch { // Ignore errors from waiting handlers waitingHandler.done = true return true } if (!waitingController.aborted) { this.#waitingHandlers.push(waitingHandler) } return true } /** * @param {import('../../types/dispatcher.d.ts').default.DispatchController} controller * @param {any} context */ onRequestStart (controller, context) { this.#controller = controller this.#primaryHandler.onRequestStart?.(controller, context) } /** * @param {import('../../types/dispatcher.d.ts').default.DispatchController} controller * @param {number} statusCode * @param {import('../../types/header.d.ts').IncomingHttpHeaders} headers * @param {Socket} socket */ onRequestUpgrade (controller, statusCode, headers, socket) { this.#primaryHandler.onRequestUpgrade?.(controller, statusCode, headers, socket) } /** * @param {import('../../types/dispatcher.d.ts').default.DispatchController} controller * @param {number} statusCode * @param {Record} headers * @param {string} statusMessage */ onResponseStart (controller, statusCode, headers, statusMessage) { this.#responseStarted = true this.#statusCode = statusCode this.#headers = headers this.#statusMessage = statusMessage this.#primaryHandler.onResponseStart?.(controller, statusCode, headers, statusMessage) for (const waitingHandler of this.#waitingHandlers) { const { handler, controller: waitingController } = waitingHandler if (waitingHandler.done || waitingController.aborted) { waitingHandler.done = true continue } try { handler.onResponseStart?.( waitingController, statusCode, headers, statusMessage ) } catch { // Ignore errors from waiting handlers } if (waitingController.aborted) { waitingHandler.done = true } } this.#pruneDoneWaitingHandlers() } /** * @param {import('../../types/dispatcher.d.ts').default.DispatchController} controller * @param {Buffer} chunk */ onResponseData (controller, chunk) { if (this.#aborted || this.#completed) { return } this.#responseDataStarted = true this.#primaryHandler.onResponseData?.(controller, chunk) for (const waitingHandler of this.#waitingHandlers) { const { handler, controller: waitingController } = waitingHandler if (waitingHandler.done || waitingController.aborted) { waitingHandler.done = true continue } if (waitingController.paused) { this.#bufferWaitingChunk(waitingHandler, chunk) continue } try { handler.onResponseData?.(waitingController, chunk) } catch { // Ignore errors from waiting handlers } if (waitingController.aborted) { waitingHandler.done = true waitingHandler.bufferedChunks = [] waitingHandler.bufferedBytes = 0 } } this.#pruneDoneWaitingHandlers() } /** * @param {import('../../types/dispatcher.d.ts').default.DispatchController} controller * @param {object} trailers */ onResponseEnd (controller, trailers) { if (this.#aborted || this.#completed) { return } this.#completed = true this.#primaryHandler.onResponseEnd?.(controller, trailers) for (const waitingHandler of this.#waitingHandlers) { if (waitingHandler.done || waitingHandler.controller.aborted) { waitingHandler.done = true continue } this.#flushWaitingHandler(waitingHandler) if (waitingHandler.done || waitingHandler.controller.aborted) { waitingHandler.done = true continue } if (waitingHandler.controller.paused && waitingHandler.bufferedChunks.length > 0) { waitingHandler.pendingTrailers = trailers continue } try { waitingHandler.handler.onResponseEnd?.(waitingHandler.controller, trailers) } catch { // Ignore errors from waiting handlers } waitingHandler.done = true } this.#pruneDoneWaitingHandlers() this.#onComplete?.() } /** * @param {import('../../types/dispatcher.d.ts').default.DispatchController} controller * @param {Error} err */ onResponseError (controller, err) { if (this.#completed) { return } this.#aborted = true this.#completed = true this.#primaryHandler.onResponseError?.(controller, err) for (const waitingHandler of this.#waitingHandlers) { this.#errorWaitingHandler(waitingHandler, err) } this.#waitingHandlers = [] this.#onComplete?.() } /** * @param {DispatchHandler} handler * @returns {WaitingHandler} */ #createWaitingHandler (handler) { /** @type {WaitingHandler} */ const waitingHandler = { handler, controller: null, bufferedChunks: [], bufferedBytes: 0, pendingTrailers: null, done: false } const state = { aborted: false, paused: false, reason: null } waitingHandler.controller = { resume: () => { if (state.aborted) { return } state.paused = false this.#flushWaitingHandler(waitingHandler) if ( this.#completed && waitingHandler.pendingTrailers && waitingHandler.bufferedChunks.length === 0 && !state.paused && !state.aborted ) { try { waitingHandler.handler.onResponseEnd?.(waitingHandler.controller, waitingHandler.pendingTrailers) } catch { // Ignore errors from waiting handlers } waitingHandler.pendingTrailers = null waitingHandler.done = true } this.#pruneDoneWaitingHandlers() }, pause: () => { if (!state.aborted) { state.paused = true } }, get paused () { return state.paused }, get aborted () { return state.aborted }, get reason () { return state.reason }, abort: (reason) => { state.aborted = true state.reason = reason ?? null waitingHandler.done = true waitingHandler.pendingTrailers = null waitingHandler.bufferedChunks = [] waitingHandler.bufferedBytes = 0 } } return waitingHandler } /** * @param {WaitingHandler} waitingHandler * @param {Buffer} chunk */ #bufferWaitingChunk (waitingHandler, chunk) { if (waitingHandler.done || waitingHandler.controller.aborted) { waitingHandler.done = true waitingHandler.bufferedChunks = [] waitingHandler.bufferedBytes = 0 return } const bufferedChunk = Buffer.from(chunk) waitingHandler.bufferedChunks.push(bufferedChunk) waitingHandler.bufferedBytes += bufferedChunk.length if (waitingHandler.bufferedBytes > this.#maxBufferSize) { const err = new RequestAbortedError(`Deduplicated waiting handler exceeded maxBufferSize (${this.#maxBufferSize} bytes) while paused`) this.#errorWaitingHandler(waitingHandler, err) } } /** * @param {WaitingHandler} waitingHandler */ #flushWaitingHandler (waitingHandler) { const { handler, controller } = waitingHandler while ( !waitingHandler.done && !controller.aborted && !controller.paused && waitingHandler.bufferedChunks.length > 0 ) { const bufferedChunk = waitingHandler.bufferedChunks.shift() waitingHandler.bufferedBytes -= bufferedChunk.length try { handler.onResponseData?.(controller, bufferedChunk) } catch { // Ignore errors from waiting handlers } if (controller.aborted) { waitingHandler.done = true waitingHandler.pendingTrailers = null waitingHandler.bufferedChunks = [] waitingHandler.bufferedBytes = 0 break } } } /** * @param {WaitingHandler} waitingHandler * @param {Error} err */ #errorWaitingHandler (waitingHandler, err) { if (waitingHandler.done) { return } waitingHandler.done = true waitingHandler.pendingTrailers = null waitingHandler.bufferedChunks = [] waitingHandler.bufferedBytes = 0 try { waitingHandler.controller.abort(err) waitingHandler.handler.onResponseError?.(waitingHandler.controller, err) } catch { // Ignore errors from waiting handlers } } #pruneDoneWaitingHandlers () { this.#waitingHandlers = this.#waitingHandlers.filter(waitingHandler => waitingHandler.done === false) } } module.exports = DeduplicationHandler /***/ }), /***/ 8754: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const util = __nccwpck_require__(3440) const { kBodyUsed } = __nccwpck_require__(36443) const assert = __nccwpck_require__(34589) const { InvalidArgumentError } = __nccwpck_require__(68707) const EE = __nccwpck_require__(78474) const redirectableStatusCodes = [300, 301, 302, 303, 307, 308] const kBody = Symbol('body') const noop = () => {} class BodyAsyncIterable { constructor (body) { this[kBody] = body this[kBodyUsed] = false } async * [Symbol.asyncIterator] () { assert(!this[kBodyUsed], 'disturbed') this[kBodyUsed] = true yield * this[kBody] } } class RedirectHandler { static buildDispatch (dispatcher, maxRedirections) { if (maxRedirections != null && (!Number.isInteger(maxRedirections) || maxRedirections < 0)) { throw new InvalidArgumentError('maxRedirections must be a positive number') } const dispatch = dispatcher.dispatch.bind(dispatcher) return (opts, originalHandler) => dispatch(opts, new RedirectHandler(dispatch, maxRedirections, opts, originalHandler)) } constructor (dispatch, maxRedirections, opts, handler) { if (maxRedirections != null && (!Number.isInteger(maxRedirections) || maxRedirections < 0)) { throw new InvalidArgumentError('maxRedirections must be a positive number') } this.dispatch = dispatch this.location = null const { maxRedirections: _, ...cleanOpts } = opts this.opts = cleanOpts // opts must be a copy, exclude maxRedirections this.maxRedirections = maxRedirections this.handler = handler this.history = [] if (util.isStream(this.opts.body)) { // TODO (fix): Provide some way for the user to cache the file to e.g. /tmp // so that it can be dispatched again? // TODO (fix): Do we need 100-expect support to provide a way to do this properly? if (util.bodyLength(this.opts.body) === 0) { this.opts.body .on('data', function () { assert(false) }) } if (typeof this.opts.body.readableDidRead !== 'boolean') { this.opts.body[kBodyUsed] = false EE.prototype.on.call(this.opts.body, 'data', function () { this[kBodyUsed] = true }) } } else if (this.opts.body && typeof this.opts.body.pipeTo === 'function') { // TODO (fix): We can't access ReadableStream internal state // to determine whether or not it has been disturbed. This is just // a workaround. this.opts.body = new BodyAsyncIterable(this.opts.body) } else if ( this.opts.body && typeof this.opts.body !== 'string' && !ArrayBuffer.isView(this.opts.body) && util.isIterable(this.opts.body) && !util.isFormDataLike(this.opts.body) ) { // TODO: Should we allow re-using iterable if !this.opts.idempotent // or through some other flag? this.opts.body = new BodyAsyncIterable(this.opts.body) } } onRequestStart (controller, context) { this.handler.onRequestStart?.(controller, { ...context, history: this.history }) } onRequestUpgrade (controller, statusCode, headers, socket) { this.handler.onRequestUpgrade?.(controller, statusCode, headers, socket) } onResponseStart (controller, statusCode, headers, statusMessage) { if (this.opts.throwOnMaxRedirect && this.history.length >= this.maxRedirections) { throw new Error('max redirects') } // https://tools.ietf.org/html/rfc7231#section-6.4.2 // https://fetch.spec.whatwg.org/#http-redirect-fetch // In case of HTTP 301 or 302 with POST, change the method to GET if ((statusCode === 301 || statusCode === 302) && this.opts.method === 'POST') { this.opts.method = 'GET' if (util.isStream(this.opts.body)) { util.destroy(this.opts.body.on('error', noop)) } this.opts.body = null } // https://tools.ietf.org/html/rfc7231#section-6.4.4 // In case of HTTP 303, always replace method to be either HEAD or GET if (statusCode === 303 && this.opts.method !== 'HEAD') { this.opts.method = 'GET' if (util.isStream(this.opts.body)) { util.destroy(this.opts.body.on('error', noop)) } this.opts.body = null } this.location = this.history.length >= this.maxRedirections || util.isDisturbed(this.opts.body) || redirectableStatusCodes.indexOf(statusCode) === -1 ? null : headers.location if (this.opts.origin) { this.history.push(new URL(this.opts.path, this.opts.origin)) } if (!this.location) { this.handler.onResponseStart?.(controller, statusCode, headers, statusMessage) return } const { origin, pathname, search } = util.parseURL(new URL(this.location, this.opts.origin && new URL(this.opts.path, this.opts.origin))) const path = search ? `${pathname}${search}` : pathname // Check for redirect loops by seeing if we've already visited this URL in our history // This catches the case where Client/Pool try to handle cross-origin redirects but fail // and keep redirecting to the same URL in an infinite loop const redirectUrlString = `${origin}${path}` for (const historyUrl of this.history) { if (historyUrl.toString() === redirectUrlString) { throw new InvalidArgumentError(`Redirect loop detected. Cannot redirect to ${origin}. This typically happens when using a Client or Pool with cross-origin redirects. Use an Agent for cross-origin redirects.`) } } // Remove headers referring to the original URL. // By default it is Host only, unless it's a 303 (see below), which removes also all Content-* headers. // https://tools.ietf.org/html/rfc7231#section-6.4 this.opts.headers = cleanRequestHeaders(this.opts.headers, statusCode === 303, this.opts.origin !== origin) this.opts.path = path this.opts.origin = origin this.opts.query = null } onResponseData (controller, chunk) { if (this.location) { /* https://tools.ietf.org/html/rfc7231#section-6.4 TLDR: undici always ignores 3xx response bodies. Redirection is used to serve the requested resource from another URL, so it assumes that no body is generated (and thus can be ignored). Even though generating a body is not prohibited. For status 301, 302, 303, 307 and 308 (the latter from RFC 7238), the specs mention that the body usually (which means it's optional and not mandated) contain just an hyperlink to the value of the Location response header, so the body can be ignored safely. For status 300, which is "Multiple Choices", the spec mentions both generating a Location response header AND a response body with the other possible location to follow. Since the spec explicitly chooses not to specify a format for such body and leave it to servers and browsers implementors, we ignore the body as there is no specified way to eventually parse it. */ } else { this.handler.onResponseData?.(controller, chunk) } } onResponseEnd (controller, trailers) { if (this.location) { /* https://tools.ietf.org/html/rfc7231#section-6.4 TLDR: undici always ignores 3xx response trailers as they are not expected in case of redirections and neither are useful if present. See comment on onData method above for more detailed information. */ this.dispatch(this.opts, this) } else { this.handler.onResponseEnd(controller, trailers) } } onResponseError (controller, error) { this.handler.onResponseError?.(controller, error) } } // https://tools.ietf.org/html/rfc7231#section-6.4.4 function shouldRemoveHeader (header, removeContent, unknownOrigin) { if (header.length === 4) { return util.headerNameToString(header) === 'host' } if (removeContent && util.headerNameToString(header).startsWith('content-')) { return true } if (unknownOrigin && (header.length === 13 || header.length === 6 || header.length === 19)) { const name = util.headerNameToString(header) return name === 'authorization' || name === 'cookie' || name === 'proxy-authorization' } return false } // https://tools.ietf.org/html/rfc7231#section-6.4 function cleanRequestHeaders (headers, removeContent, unknownOrigin) { const ret = [] if (Array.isArray(headers)) { for (let i = 0; i < headers.length; i += 2) { if (!shouldRemoveHeader(headers[i], removeContent, unknownOrigin)) { ret.push(headers[i], headers[i + 1]) } } } else if (headers && typeof headers === 'object') { const entries = util.hasSafeIterator(headers) ? headers : Object.entries(headers) for (const [key, value] of entries) { if (!shouldRemoveHeader(key, removeContent, unknownOrigin)) { ret.push(key, value) } } } else { assert(headers == null, 'headers must be an object or an array') } return ret } module.exports = RedirectHandler /***/ }), /***/ 17816: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const assert = __nccwpck_require__(34589) const { kRetryHandlerDefaultRetry } = __nccwpck_require__(36443) const { RequestRetryError } = __nccwpck_require__(68707) const WrapHandler = __nccwpck_require__(99510) const { isDisturbed, parseRangeHeader, wrapRequestBody } = __nccwpck_require__(3440) function calculateRetryAfterHeader (retryAfter) { const retryTime = new Date(retryAfter).getTime() return isNaN(retryTime) ? 0 : retryTime - Date.now() } function validatePartialResponseContentLength (headers, range, statusCode, retryCount) { const contentLength = headers['content-length'] if (contentLength == null) { return } if (!Number.isFinite(range.start) || !Number.isFinite(range.end)) { return } const length = Number(contentLength) const expectedLength = range.end - range.start + 1 if (!Number.isFinite(length) || length !== expectedLength) { throw new RequestRetryError('Content-Length mismatch', statusCode, { headers, data: { count: retryCount } }) } } class RetryHandler { constructor (opts, { dispatch, handler }) { const { retryOptions, ...dispatchOpts } = opts const { // Retry scoped retry: retryFn, maxRetries, maxTimeout, minTimeout, timeoutFactor, // Response scoped methods, errorCodes, retryAfter, statusCodes, throwOnError } = retryOptions ?? {} this.error = null this.dispatch = dispatch this.handler = WrapHandler.wrap(handler) this.opts = { ...dispatchOpts, body: wrapRequestBody(opts.body) } this.retryOpts = { throwOnError: throwOnError ?? true, retry: retryFn ?? RetryHandler[kRetryHandlerDefaultRetry], retryAfter: retryAfter ?? true, maxTimeout: maxTimeout ?? 30 * 1000, // 30s, minTimeout: minTimeout ?? 500, // .5s timeoutFactor: timeoutFactor ?? 2, maxRetries: maxRetries ?? 5, // What errors we should retry methods: methods ?? ['GET', 'HEAD', 'OPTIONS', 'PUT', 'DELETE', 'TRACE'], // Indicates which errors to retry statusCodes: statusCodes ?? [500, 502, 503, 504, 429], // List of errors to retry errorCodes: errorCodes ?? [ 'ECONNRESET', 'ECONNREFUSED', 'ENOTFOUND', 'ENETDOWN', 'ENETUNREACH', 'EHOSTDOWN', 'EHOSTUNREACH', 'EPIPE', 'UND_ERR_SOCKET' ] } this.retryCount = 0 this.retryCountCheckpoint = 0 this.headersSent = false this.start = 0 this.end = null this.etag = null } onResponseStartWithRetry (controller, statusCode, headers, statusMessage, err) { if (this.retryOpts.throwOnError) { // Preserve old behavior for status codes that are not eligible for retry if (this.retryOpts.statusCodes.includes(statusCode) === false) { this.headersSent = true this.handler.onResponseStart?.(controller, statusCode, headers, statusMessage) } else { this.error = err } return } if (isDisturbed(this.opts.body)) { this.headersSent = true this.handler.onResponseStart?.(controller, statusCode, headers, statusMessage) return } function shouldRetry (passedErr) { if (passedErr) { this.headersSent = true this.handler.onResponseStart?.(controller, statusCode, headers, statusMessage) controller.resume() return } this.error = err controller.resume() } controller.pause() this.retryOpts.retry( err, { state: { counter: this.retryCount }, opts: { retryOptions: this.retryOpts, ...this.opts } }, shouldRetry.bind(this) ) } onRequestStart (controller, context) { if (!this.headersSent) { this.handler.onRequestStart?.(controller, context) } } onRequestUpgrade (controller, statusCode, headers, socket) { this.handler.onRequestUpgrade?.(controller, statusCode, headers, socket) } static [kRetryHandlerDefaultRetry] (err, { state, opts }, cb) { const { statusCode, code, headers } = err const { method, retryOptions } = opts const { maxRetries, minTimeout, maxTimeout, timeoutFactor, statusCodes, errorCodes, methods } = retryOptions const { counter } = state // Any code that is not a Undici's originated and allowed to retry if (code && code !== 'UND_ERR_REQ_RETRY' && !errorCodes.includes(code)) { cb(err) return } // If a set of method are provided and the current method is not in the list if (Array.isArray(methods) && !methods.includes(method)) { cb(err) return } // If a set of status code are provided and the current status code is not in the list if ( statusCode != null && Array.isArray(statusCodes) && !statusCodes.includes(statusCode) ) { cb(err) return } // If we reached the max number of retries if (counter > maxRetries) { cb(err) return } let retryAfterHeader = headers?.['retry-after'] if (retryAfterHeader) { retryAfterHeader = Number(retryAfterHeader) retryAfterHeader = Number.isNaN(retryAfterHeader) ? calculateRetryAfterHeader(headers['retry-after']) : retryAfterHeader * 1e3 // Retry-After is in seconds } const retryTimeout = retryAfterHeader > 0 ? Math.min(retryAfterHeader, maxTimeout) : Math.min(minTimeout * timeoutFactor ** (counter - 1), maxTimeout) setTimeout(() => cb(null), retryTimeout) } onResponseStart (controller, statusCode, headers, statusMessage) { this.error = null this.retryCount += 1 if (statusCode >= 300) { const err = new RequestRetryError('Request failed', statusCode, { headers, data: { count: this.retryCount } }) this.onResponseStartWithRetry(controller, statusCode, headers, statusMessage, err) return } // Checkpoint for resume from where we left it if (this.headersSent) { // Only Partial Content 206 supposed to provide Content-Range, // any other status code that partially consumed the payload // should not be retried because it would result in downstream // wrongly concatenate multiple responses. if (statusCode !== 206 && (this.start > 0 || statusCode !== 200)) { throw new RequestRetryError('server does not support the range header and the payload was partially consumed', statusCode, { headers, data: { count: this.retryCount } }) } const contentRange = parseRangeHeader(headers['content-range']) // If no content range if (!contentRange) { // We always throw here as we want to indicate that we entred unexpected path throw new RequestRetryError('Content-Range mismatch', statusCode, { headers, data: { count: this.retryCount } }) } // Let's start with a weak etag check if (this.etag != null && this.etag !== headers.etag) { // We always throw here as we want to indicate that we entred unexpected path throw new RequestRetryError('ETag mismatch', statusCode, { headers, data: { count: this.retryCount } }) } validatePartialResponseContentLength(headers, contentRange, statusCode, this.retryCount) const { start, size, end = size ? size - 1 : null } = contentRange assert(this.start === start, 'content-range mismatch') assert(this.end == null || this.end === end, 'content-range mismatch') return } if (this.end == null) { if (statusCode === 206) { // First time we receive 206 const range = parseRangeHeader(headers['content-range']) if (range == null) { this.headersSent = true this.handler.onResponseStart?.( controller, statusCode, headers, statusMessage ) return } validatePartialResponseContentLength(headers, range, statusCode, this.retryCount) const { start, size, end = size ? size - 1 : null } = range assert( start != null && Number.isFinite(start), 'content-range mismatch' ) assert(end != null && Number.isFinite(end), 'invalid content-length') this.start = start this.end = end } // We make our best to checkpoint the body for further range headers if (this.end == null) { const contentLength = headers['content-length'] this.end = contentLength != null ? Number(contentLength) - 1 : null } assert(Number.isFinite(this.start)) assert( this.end == null || Number.isFinite(this.end), 'invalid content-length' ) this.resume = true this.etag = headers.etag != null ? headers.etag : null // Weak etags are not useful for comparison nor cache // for instance not safe to assume if the response is byte-per-byte // equal if ( this.etag != null && this.etag[0] === 'W' && this.etag[1] === '/' ) { this.etag = null } this.headersSent = true this.handler.onResponseStart?.( controller, statusCode, headers, statusMessage ) } else { throw new RequestRetryError('Request failed', statusCode, { headers, data: { count: this.retryCount } }) } } onResponseData (controller, chunk) { if (this.error) { return } this.start += chunk.length this.handler.onResponseData?.(controller, chunk) } onResponseEnd (controller, trailers) { if (this.error && this.retryOpts.throwOnError) { throw this.error } if (!this.error) { this.retryCount = 0 return this.handler.onResponseEnd?.(controller, trailers) } this.retry(controller) } retry (controller) { if (this.start !== 0) { const headers = { range: `bytes=${this.start}-${this.end ?? ''}` } // Weak etag check - weak etags will make comparison algorithms never match if (this.etag != null) { headers['if-match'] = this.etag } this.opts = { ...this.opts, headers: { ...this.opts.headers, ...headers } } } try { this.retryCountCheckpoint = this.retryCount this.dispatch(this.opts, this) } catch (err) { this.handler.onResponseError?.(controller, err) } } onResponseError (controller, err) { if (controller?.aborted || isDisturbed(this.opts.body)) { this.handler.onResponseError?.(controller, err) return } function shouldRetry (returnedErr) { if (!returnedErr) { this.retry(controller) return } this.handler?.onResponseError?.(controller, returnedErr) } // We reconcile in case of a mix between network errors // and server error response if (this.retryCount - this.retryCountCheckpoint > 0) { // We count the difference between the last checkpoint and the current retry count this.retryCount = this.retryCountCheckpoint + (this.retryCount - this.retryCountCheckpoint) } else { this.retryCount += 1 } this.retryOpts.retry( err, { state: { counter: this.retryCount }, opts: { retryOptions: this.retryOpts, ...this.opts } }, shouldRetry.bind(this) ) } } module.exports = RetryHandler /***/ }), /***/ 92365: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { parseHeaders } = __nccwpck_require__(3440) const { InvalidArgumentError } = __nccwpck_require__(68707) const kResume = Symbol('resume') class UnwrapController { #paused = false #reason = null #aborted = false #abort [kResume] = null rawHeaders = null rawTrailers = null constructor (abort) { this.#abort = abort } pause () { this.#paused = true } resume () { if (this.#paused) { this.#paused = false this[kResume]?.() } } abort (reason) { if (!this.#aborted) { this.#aborted = true this.#reason = reason this.#abort(reason) } } get aborted () { return this.#aborted } get reason () { return this.#reason } get paused () { return this.#paused } } module.exports = class UnwrapHandler { #handler #controller constructor (handler) { this.#handler = handler } static unwrap (handler) { // TODO (fix): More checks... return !handler.onRequestStart ? handler : new UnwrapHandler(handler) } onConnect (abort, context) { this.#controller = new UnwrapController(abort) this.#handler.onRequestStart?.(this.#controller, context) } onResponseStarted () { return this.#handler.onResponseStarted?.() } onUpgrade (statusCode, rawHeaders, socket) { this.#controller.rawHeaders = rawHeaders this.#handler.onRequestUpgrade?.(this.#controller, statusCode, parseHeaders(rawHeaders), socket) } onHeaders (statusCode, rawHeaders, resume, statusMessage) { this.#controller[kResume] = resume this.#controller.rawHeaders = rawHeaders this.#handler.onResponseStart?.(this.#controller, statusCode, parseHeaders(rawHeaders), statusMessage) return !this.#controller.paused } onData (data) { this.#handler.onResponseData?.(this.#controller, data) return !this.#controller.paused } onComplete (rawTrailers) { this.#controller.rawTrailers = rawTrailers this.#handler.onResponseEnd?.(this.#controller, parseHeaders(rawTrailers)) } onError (err) { if (!this.#handler.onResponseError) { throw new InvalidArgumentError('invalid onError method') } this.#handler.onResponseError?.(this.#controller, err) } } /***/ }), /***/ 99510: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { InvalidArgumentError } = __nccwpck_require__(68707) module.exports = class WrapHandler { #handler constructor (handler) { this.#handler = handler } static wrap (handler) { // TODO (fix): More checks... return handler.onRequestStart ? handler : new WrapHandler(handler) } // Unwrap Interface onConnect (abort, context) { return this.#handler.onConnect?.(abort, context) } onResponseStarted () { return this.#handler.onResponseStarted?.() } onHeaders (statusCode, rawHeaders, resume, statusMessage) { return this.#handler.onHeaders?.(statusCode, rawHeaders, resume, statusMessage) } onUpgrade (statusCode, rawHeaders, socket) { return this.#handler.onUpgrade?.(statusCode, rawHeaders, socket) } onData (data) { return this.#handler.onData?.(data) } onComplete (trailers) { return this.#handler.onComplete?.(trailers) } onError (err) { if (!this.#handler.onError) { throw err } return this.#handler.onError?.(err) } // Wrap Interface onRequestStart (controller, context) { this.#handler.onConnect?.((reason) => controller.abort(reason), context) } onRequestUpgrade (controller, statusCode, headers, socket) { const rawHeaders = [] for (const [key, val] of Object.entries(headers)) { rawHeaders.push(Buffer.from(key, 'latin1'), toRawHeaderValue(val)) } this.#handler.onUpgrade?.(statusCode, rawHeaders, socket) } onResponseStart (controller, statusCode, headers, statusMessage) { const rawHeaders = [] for (const [key, val] of Object.entries(headers)) { rawHeaders.push(Buffer.from(key, 'latin1'), toRawHeaderValue(val)) } if (this.#handler.onHeaders?.(statusCode, rawHeaders, () => controller.resume(), statusMessage) === false) { controller.pause() } } onResponseData (controller, data) { if (this.#handler.onData?.(data) === false) { controller.pause() } } onResponseEnd (controller, trailers) { const rawTrailers = [] for (const [key, val] of Object.entries(trailers)) { rawTrailers.push(Buffer.from(key, 'latin1'), toRawHeaderValue(val)) } this.#handler.onComplete?.(rawTrailers) } onResponseError (controller, err) { if (!this.#handler.onError) { throw new InvalidArgumentError('invalid onError method') } this.#handler.onError?.(err) } } function toRawHeaderValue (value) { return Array.isArray(value) ? value.map((item) => Buffer.from(item, 'latin1')) : Buffer.from(value, 'latin1') } /***/ }), /***/ 75542: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const assert = __nccwpck_require__(34589) const { Readable } = __nccwpck_require__(57075) const util = __nccwpck_require__(3440) const CacheHandler = __nccwpck_require__(39976) const MemoryCacheStore = __nccwpck_require__(74889) const CacheRevalidationHandler = __nccwpck_require__(17133) const { assertCacheStore, assertCacheMethods, makeCacheKey, normalizeHeaders, parseCacheControlHeader, isInvalidOrWildcardVaryHeader } = __nccwpck_require__(47659) const { AbortError } = __nccwpck_require__(68707) const { parseHttpDate } = __nccwpck_require__(25453) /** * @param {(string | RegExp)[] | undefined} origins * @param {string} name */ function assertCacheOrigins (origins, name) { if (origins === undefined) return if (!Array.isArray(origins)) { throw new TypeError(`expected ${name} to be an array or undefined, got ${typeof origins}`) } for (let i = 0; i < origins.length; i++) { const origin = origins[i] if (typeof origin !== 'string' && !(origin instanceof RegExp)) { throw new TypeError(`expected ${name}[${i}] to be a string or RegExp, got ${typeof origin}`) } } } const nop = () => {} function trimOWS (value) { return value.replace(/^[\t ]+|[\t ]+$/g, '') } function arrayIncludes (array, value) { for (let i = 0; i < array.length; i++) { if (array[i] === value) { return true } } return false } function hasPragmaNoCache (headers) { const pragma = headers?.pragma if (!pragma) { return false } const values = Array.isArray(pragma) ? pragma : [pragma] for (let i = 0; i < values.length; i++) { const value = values[i] if (typeof value !== 'string') { continue } const directives = value.split(',') for (let j = 0; j < directives.length; j++) { if (trimOWS(directives[j]).toLowerCase() === 'no-cache') { return true } } } return false } /** * @typedef {(options: import('../../types/dispatcher.d.ts').default.DispatchOptions, handler: import('../../types/dispatcher.d.ts').default.DispatchHandler) => void} DispatchFn */ /** * @param {import('../../types/cache-interceptor.d.ts').default.GetResult} result * @param {import('../../types/cache-interceptor.d.ts').default.CacheControlDirectives | undefined} cacheControlDirectives * @param {import('../../types/dispatcher.d.ts').default.RequestOptions} opts * @returns {boolean} */ function needsRevalidation (result, cacheControlDirectives, { headers = {} }) { // Always revalidate requests with the no-cache request directive. if (cacheControlDirectives?.['no-cache']) { return true } // Always revalidate requests with unqualified no-cache response directive. if (result.cacheControlDirectives?.['no-cache'] && !Array.isArray(result.cacheControlDirectives['no-cache'])) { return true } // Always revalidate requests with conditional headers. if (headers['if-modified-since'] || headers['if-none-match']) { return true } return false } /** * @param {import('../../types/cache-interceptor.d.ts').default.GetResult} result * @param {import('../../types/cache-interceptor.d.ts').default.CacheOptions['type']} cacheType * @returns {boolean} */ function staleResponseRequiresRevalidation (result, cacheType) { return result.cacheControlDirectives?.['must-revalidate'] === true || (cacheType === 'shared' && ( result.cacheControlDirectives?.['proxy-revalidate'] === true || // https://www.rfc-editor.org/rfc/rfc9111.html#section-5.2.2.10 // s-maxage implies proxy-revalidate for shared caches. result.cacheControlDirectives?.['s-maxage'] !== undefined )) } /** * @param {import('../../types/cache-interceptor.d.ts').default.CacheOptions['type']} cacheType * @param {import('../../types/header.d.ts').IncomingHttpHeaders} headers * @returns {boolean} */ function revalidationResponseDisallowsCachedReuse (cacheType, headers) { if (headers.vary && isInvalidOrWildcardVaryHeader(headers.vary)) { return true } const cacheControl = headers['cache-control'] if (!cacheControl) { return false } const cacheControlDirectives = parseCacheControlHeader(cacheControl) return cacheControlDirectives['no-store'] === true || (cacheType === 'shared' && cacheControlDirectives.private === true) } function revalidationResponseUpdatesCacheControl (headers) { return headers['cache-control'] !== undefined } function deleteCachedValue (store, cacheKey) { try { store.delete(cacheKey)?.catch?.(nop) } catch { // Fail silently } } function getUsableLastModified (headers) { const lastModified = headers?.['last-modified'] if (typeof lastModified === 'string' && parseHttpDate(lastModified)) { return lastModified } } function makeRevalidationHeaders (opts, result) { const headers = { ...opts.headers, 'if-modified-since': getUsableLastModified(result.headers) ?? new Date(result.cachedAt).toUTCString() } if (result.etag) { headers['if-none-match'] = result.etag } if (result.vary) { for (const key in result.vary) { if (result.vary[key] != null) { headers[key] = result.vary[key] } } } return headers } /** * @param {import('../../types/cache-interceptor.d.ts').default.GetResult} result * @param {import('../../types/cache-interceptor.d.ts').default.CacheControlDirectives | undefined} cacheControlDirectives * @param {import('../../types/cache-interceptor.d.ts').default.CacheOptions['type']} cacheType * @returns {boolean} */ function isStale (result, cacheControlDirectives, cacheType) { const now = Date.now() if (now > result.staleAt) { // Response is stale if (!staleResponseRequiresRevalidation(result, cacheType) && cacheControlDirectives?.['max-stale']) { // There's a threshold where we can serve stale responses, let's see if // we're in it // https://www.rfc-editor.org/rfc/rfc9111.html#name-max-stale const gracePeriod = result.staleAt + (cacheControlDirectives['max-stale'] * 1000) return now > gracePeriod } return true } if (cacheControlDirectives?.['min-fresh']) { // https://www.rfc-editor.org/rfc/rfc9111.html#section-5.2.1.3 // At this point, staleAt is always > now const timeLeftTillStale = result.staleAt - now const threshold = cacheControlDirectives['min-fresh'] * 1000 return timeLeftTillStale <= threshold } return false } /** * Check if we're within the stale-while-revalidate window for a stale response * @param {import('../../types/cache-interceptor.d.ts').default.GetResult} result * @param {import('../../types/cache-interceptor.d.ts').default.CacheOptions['type']} cacheType * @returns {boolean} */ function withinStaleWhileRevalidateWindow (result, cacheType) { const staleWhileRevalidate = result.cacheControlDirectives?.['stale-while-revalidate'] if (!staleWhileRevalidate || staleResponseRequiresRevalidation(result, cacheType)) { return false } const now = Date.now() const staleWhileRevalidateExpiry = result.staleAt + (staleWhileRevalidate * 1000) return now <= staleWhileRevalidateExpiry } /** * @param {DispatchFn} dispatch * @param {import('../../types/cache-interceptor.d.ts').default.CacheHandlerOptions} globalOpts * @param {import('../../types/cache-interceptor.d.ts').default.CacheKey} cacheKey * @param {import('../../types/dispatcher.d.ts').default.DispatchHandler} handler * @param {import('../../types/dispatcher.d.ts').default.RequestOptions} opts * @param {import('../../types/cache-interceptor.d.ts').default.CacheControlDirectives | undefined} reqCacheControl */ function handleUncachedResponse ( dispatch, globalOpts, cacheKey, handler, opts, reqCacheControl ) { if (reqCacheControl?.['only-if-cached']) { let aborted = false try { if (typeof handler.onConnect === 'function') { handler.onConnect(() => { aborted = true }) if (aborted) { return } } if (typeof handler.onHeaders === 'function') { handler.onHeaders(504, [], nop, 'Gateway Timeout') if (aborted) { return } } if (typeof handler.onComplete === 'function') { handler.onComplete([]) } } catch (err) { if (typeof handler.onError === 'function') { handler.onError(err) } } return true } return dispatch(opts, new CacheHandler(globalOpts, cacheKey, handler)) } /** * @param {import('../../types/dispatcher.d.ts').default.DispatchHandler} handler * @param {import('../../types/dispatcher.d.ts').default.RequestOptions} opts * @param {import('../../types/cache-interceptor.d.ts').default.GetResult} result * @param {number} age * @param {any} context * @param {boolean} isStale */ function sendCachedValue (handler, opts, result, age, context, isStale) { // TODO (perf): Readable.from path can be optimized... const stream = util.isStream(result.body) ? result.body : Readable.from(result.body ?? []) assert(!stream.destroyed, 'stream should not be destroyed') assert(!stream.readableDidRead, 'stream should not be readableDidRead') const controller = { resume () { stream.resume() }, pause () { stream.pause() }, get paused () { return stream.isPaused() }, get aborted () { return stream.destroyed }, get reason () { return stream.errored }, abort (reason) { stream.destroy(reason ?? new AbortError()) } } stream .on('error', function (err) { if (!this.readableEnded) { if (typeof handler.onResponseError === 'function') { handler.onResponseError(controller, err) } else { throw err } } }) .on('close', function () { if (!this.errored) { handler.onResponseEnd?.(controller, {}) } }) handler.onRequestStart?.(controller, context) if (stream.destroyed) { return } // Add the age header // https://www.rfc-editor.org/rfc/rfc9111.html#name-age const headers = { ...result.headers, age: String(age) } if (isStale) { // Add warning header // https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/Warning headers.warning = '110 - "response is stale"' } handler.onResponseStart?.(controller, result.statusCode, headers, result.statusMessage) if (opts.method === 'HEAD') { stream.destroy() } else { stream.on('data', function (chunk) { handler.onResponseData?.(controller, chunk) }) } } /** * @param {DispatchFn} dispatch * @param {import('../../types/cache-interceptor.d.ts').default.CacheHandlerOptions} globalOpts * @param {import('../../types/cache-interceptor.d.ts').default.CacheKey} cacheKey * @param {import('../../types/dispatcher.d.ts').default.DispatchHandler} handler * @param {import('../../types/dispatcher.d.ts').default.RequestOptions} opts * @param {import('../../types/cache-interceptor.d.ts').default.CacheControlDirectives | undefined} reqCacheControl * @param {import('../../types/cache-interceptor.d.ts').default.GetResult | undefined} result */ function handleResult ( dispatch, globalOpts, cacheKey, handler, opts, reqCacheControl, result ) { if (!result) { return handleUncachedResponse(dispatch, globalOpts, cacheKey, handler, opts, reqCacheControl) } const now = Date.now() if (now > result.deleteAt) { // Response is expired, cache store shouldn't have given this to us return dispatch(opts, new CacheHandler(globalOpts, cacheKey, handler)) } const age = Math.round((now - result.cachedAt) / 1000) const requestMaxAgeExpired = reqCacheControl?.['max-age'] !== undefined && age >= reqCacheControl['max-age'] const stale = requestMaxAgeExpired || isStale(result, reqCacheControl, globalOpts.type) const revalidate = requestMaxAgeExpired || needsRevalidation(result, reqCacheControl, opts) // Check if the response is stale if (stale || revalidate) { if (util.isStream(opts.body) && util.bodyLength(opts.body) !== 0) { // If body is a stream we can't revalidate... // TODO (fix): This could be less strict... return dispatch(opts, new CacheHandler(globalOpts, cacheKey, handler)) } // RFC 5861: If we're within stale-while-revalidate window, serve stale immediately // and revalidate in background, unless immediate revalidation is necessary if (!revalidate && withinStaleWhileRevalidateWindow(result, globalOpts.type)) { // Serve stale response immediately sendCachedValue(handler, opts, result, age, null, true) // Start background revalidation (fire-and-forget) queueMicrotask(() => { const headers = makeRevalidationHeaders(opts, result) // Background revalidation - update cache if we get new data dispatch( { ...opts, headers }, new CacheHandler(globalOpts, cacheKey, { // Silent handler that just updates the cache onRequestStart () {}, onRequestUpgrade () {}, onResponseStart () {}, onResponseData () {}, onResponseEnd () {}, onResponseError () {} }) ) }) return true } let withinStaleIfErrorThreshold = false if (!staleResponseRequiresRevalidation(result, globalOpts.type)) { const staleIfErrorExpiry = result.cacheControlDirectives['stale-if-error'] ?? reqCacheControl?.['stale-if-error'] if (staleIfErrorExpiry) { withinStaleIfErrorThreshold = now < (result.staleAt + (staleIfErrorExpiry * 1000)) } } const headers = makeRevalidationHeaders(opts, result) // We need to revalidate the response return dispatch( { ...opts, headers }, new CacheRevalidationHandler( (success, context, statusCode, headers) => { if (success) { if (statusCode === 304) { if (revalidationResponseDisallowsCachedReuse(globalOpts.type, headers)) { if (util.isStream(result.body)) { result.body.on('error', nop).destroy() } deleteCachedValue(globalOpts.store, cacheKey) return dispatch(opts, new CacheHandler(globalOpts, cacheKey, handler)) } if (revalidationResponseUpdatesCacheControl(headers)) { deleteCachedValue(globalOpts.store, cacheKey) } } // TODO: successful revalidation should be considered fresh (not give stale warning). sendCachedValue(handler, opts, result, age, context, stale) } else if (util.isStream(result.body)) { result.body.on('error', nop).destroy() } }, new CacheHandler(globalOpts, cacheKey, handler), withinStaleIfErrorThreshold ) ) } // Dump request body. if (util.isStream(opts.body)) { opts.body.on('error', nop).destroy() } sendCachedValue(handler, opts, result, age, null, false) } /** * @param {import('../../types/cache-interceptor.d.ts').default.CacheOptions} [opts] * @returns {import('../../types/dispatcher.d.ts').default.DispatcherComposeInterceptor} */ module.exports = (opts = {}) => { const { store = new MemoryCacheStore(), methods = ['GET'], cacheByDefault = undefined, type = 'shared', origins = undefined } = opts if (typeof opts !== 'object' || opts === null) { throw new TypeError(`expected type of opts to be an Object, got ${opts === null ? 'null' : typeof opts}`) } assertCacheStore(store, 'opts.store') assertCacheMethods(methods, 'opts.methods') assertCacheOrigins(origins, 'opts.origins') if (typeof cacheByDefault !== 'undefined' && typeof cacheByDefault !== 'number') { throw new TypeError(`expected opts.cacheByDefault to be number or undefined, got ${typeof cacheByDefault}`) } if (typeof type !== 'undefined' && type !== 'shared' && type !== 'private') { throw new TypeError(`expected opts.type to be shared, private, or undefined, got ${typeof type}`) } const globalOpts = { store, methods, cacheByDefault, type } const safeMethodsToNotCache = [] for (let i = 0; i < util.safeHTTPMethods.length; i++) { const method = util.safeHTTPMethods[i] if (!arrayIncludes(methods, method)) { safeMethodsToNotCache.push(method) } } return dispatch => { return (opts, handler) => { if (!opts.origin || arrayIncludes(safeMethodsToNotCache, opts.method)) { // Not a method we want to cache or we don't have the origin, skip return dispatch(opts, handler) } // Check if origin is in whitelist if (origins !== undefined) { const requestOrigin = opts.origin.toString().toLowerCase() let isAllowed = false for (let i = 0; i < origins.length; i++) { const allowed = origins[i] if (typeof allowed === 'string') { if (allowed.toLowerCase() === requestOrigin) { isAllowed = true break } } else if (allowed.test(requestOrigin)) { isAllowed = true break } } if (!isAllowed) { return dispatch(opts, handler) } } opts = { ...opts, headers: normalizeHeaders(opts) } const reqCacheControl = opts.headers?.['cache-control'] ? parseCacheControlHeader(opts.headers['cache-control']) : hasPragmaNoCache(opts.headers) ? { 'no-cache': true } : undefined if (reqCacheControl?.['no-store']) { return dispatch(opts, handler) } /** * @type {import('../../types/cache-interceptor.d.ts').default.CacheKey} */ const cacheKey = makeCacheKey(opts) const result = store.get(cacheKey) if (result && typeof result.then === 'function') { return result .then(result => handleResult(dispatch, globalOpts, cacheKey, handler, opts, reqCacheControl, result )) } else { return handleResult( dispatch, globalOpts, cacheKey, handler, opts, reqCacheControl, result ) } } } } /***/ }), /***/ 40557: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { createInflate, createGunzip, createBrotliDecompress, createZstdDecompress } = __nccwpck_require__(38522) const { pipeline } = __nccwpck_require__(57075) const DecoratorHandler = __nccwpck_require__(58155) const { runtimeFeatures } = __nccwpck_require__(313) /** @typedef {import('node:stream').Transform} Transform */ /** @typedef {import('node:stream').Transform} Controller */ /** @typedef {Transform&import('node:zlib').Zlib} DecompressorStream */ /** @type {Record DecompressorStream>} */ const supportedEncodings = { gzip: createGunzip, 'x-gzip': createGunzip, br: createBrotliDecompress, deflate: createInflate, compress: createInflate, 'x-compress': createInflate, ...(runtimeFeatures.has('zstd') ? { zstd: createZstdDecompress } : {}) } const defaultSkipStatusCodes = /** @type {const} */ ([204, 304]) let warningEmitted = /** @type {boolean} */ (false) /** * @typedef {Object} DecompressHandlerOptions * @property {number[]|Readonly} [skipStatusCodes=[204, 304]] - List of status codes to skip decompression for * @property {boolean} [skipErrorResponses] - Whether to skip decompression for error responses (status codes >= 400) */ class DecompressHandler extends DecoratorHandler { /** @type {Transform[]} */ #decompressors = [] /** @type {Readonly} */ #skipStatusCodes /** @type {boolean} */ #skipErrorResponses constructor (handler, { skipStatusCodes = defaultSkipStatusCodes, skipErrorResponses = true } = {}) { super(handler) this.#skipStatusCodes = skipStatusCodes this.#skipErrorResponses = skipErrorResponses } /** * Determines if decompression should be skipped based on encoding and status code * @param {string} contentEncoding - Content-Encoding header value * @param {number} statusCode - HTTP status code of the response * @returns {boolean} - True if decompression should be skipped */ #shouldSkipDecompression (contentEncoding, statusCode) { if (!contentEncoding || statusCode < 200) return true if (this.#skipStatusCodes.includes(statusCode)) return true if (this.#skipErrorResponses && statusCode >= 400) return true return false } /** * Creates a chain of decompressors for multiple content encodings * * @param {string} encodings - Comma-separated list of content encodings * @returns {Array} - Array of decompressor streams * @throws {Error} - If the number of content-encodings exceeds the maximum allowed */ #createDecompressionChain (encodings) { const parts = encodings.split(',') // Limit the number of content-encodings to prevent resource exhaustion. // CVE fix similar to urllib3 (GHSA-gm62-xv2j-4w53) and curl (CVE-2022-32206). const maxContentEncodings = 5 if (parts.length > maxContentEncodings) { throw new Error(`too many content-encodings in response: ${parts.length}, maximum allowed is ${maxContentEncodings}`) } /** @type {DecompressorStream[]} */ const decompressors = [] for (let i = parts.length - 1; i >= 0; i--) { const encoding = parts[i].trim() if (!encoding) continue if (!supportedEncodings[encoding]) { decompressors.length = 0 // Clear if unsupported encoding return decompressors // Unsupported encoding } decompressors.push(supportedEncodings[encoding]()) } return decompressors } /** * Sets up event handlers for a decompressor stream using readable events * @param {DecompressorStream} decompressor - The decompressor stream * @param {Controller} controller - The controller to coordinate with * @returns {void} */ #setupDecompressorEvents (decompressor, controller) { decompressor.on('readable', () => { let chunk while ((chunk = decompressor.read()) !== null) { const result = super.onResponseData(controller, chunk) if (result === false) { break } } }) decompressor.on('error', (error) => { super.onResponseError(controller, error) }) } /** * Sets up event handling for a single decompressor * @param {Controller} controller - The controller to handle events * @returns {void} */ #setupSingleDecompressor (controller) { const decompressor = this.#decompressors[0] this.#setupDecompressorEvents(decompressor, controller) decompressor.on('end', () => { super.onResponseEnd(controller, {}) }) } /** * Sets up event handling for multiple chained decompressors using pipeline * @param {Controller} controller - The controller to handle events * @returns {void} */ #setupMultipleDecompressors (controller) { const lastDecompressor = this.#decompressors[this.#decompressors.length - 1] this.#setupDecompressorEvents(lastDecompressor, controller) pipeline(this.#decompressors, (err) => { if (err) { super.onResponseError(controller, err) return } super.onResponseEnd(controller, {}) }) } /** * Cleans up decompressor references to prevent memory leaks * @returns {void} */ #cleanupDecompressors () { this.#decompressors.length = 0 } /** * @param {Controller} controller * @param {number} statusCode * @param {Record} headers * @param {string} statusMessage * @returns {void} */ onResponseStart (controller, statusCode, headers, statusMessage) { const contentEncoding = headers['content-encoding'] // If content encoding is not supported or status code is in skip list if (this.#shouldSkipDecompression(contentEncoding, statusCode)) { return super.onResponseStart(controller, statusCode, headers, statusMessage) } const decompressors = this.#createDecompressionChain(contentEncoding.toLowerCase()) if (decompressors.length === 0) { this.#cleanupDecompressors() return super.onResponseStart(controller, statusCode, headers, statusMessage) } this.#decompressors = decompressors // Remove compression headers since we're decompressing const { 'content-encoding': _, 'content-length': __, ...newHeaders } = headers if (this.#decompressors.length === 1) { this.#setupSingleDecompressor(controller) } else { this.#setupMultipleDecompressors(controller) } return super.onResponseStart(controller, statusCode, newHeaders, statusMessage) } /** * @param {Controller} controller * @param {Buffer} chunk * @returns {void} */ onResponseData (controller, chunk) { if (this.#decompressors.length > 0) { this.#decompressors[0].write(chunk) return } super.onResponseData(controller, chunk) } /** * @param {Controller} controller * @param {Record | undefined} trailers * @returns {void} */ onResponseEnd (controller, trailers) { if (this.#decompressors.length > 0) { this.#decompressors[0].end() this.#cleanupDecompressors() return } super.onResponseEnd(controller, trailers) } /** * @param {Controller} controller * @param {Error} err * @returns {void} */ onResponseError (controller, err) { if (this.#decompressors.length > 0) { for (const decompressor of this.#decompressors) { decompressor.destroy(err) } this.#cleanupDecompressors() } super.onResponseError(controller, err) } } /** * Creates a decompression interceptor for HTTP responses * @param {DecompressHandlerOptions} [options] - Options for the interceptor * @returns {Function} - Interceptor function */ function createDecompressInterceptor (options = {}) { // Emit experimental warning only once if (!warningEmitted) { process.emitWarning( 'DecompressInterceptor is experimental and subject to change', 'ExperimentalWarning' ) warningEmitted = true } return (dispatch) => { return (opts, handler) => { const decompressHandler = new DecompressHandler(handler, options) return dispatch(opts, decompressHandler) } } } module.exports = createDecompressInterceptor /***/ }), /***/ 67240: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const diagnosticsChannel = __nccwpck_require__(53053) const util = __nccwpck_require__(3440) const DeduplicationHandler = __nccwpck_require__(53599) const { normalizeHeaders, makeCacheKey, makeDeduplicationKey } = __nccwpck_require__(47659) const pendingRequestsChannel = diagnosticsChannel.channel('undici:request:pending-requests') /** * @param {import('../../types/interceptors.d.ts').default.DeduplicateInterceptorOpts} [opts] * @returns {import('../../types/dispatcher.d.ts').default.DispatcherComposeInterceptor} */ module.exports = (opts = {}) => { const { methods = ['GET'], skipHeaderNames = [], excludeHeaderNames = [], maxBufferSize = 5 * 1024 * 1024 } = opts if (typeof opts !== 'object' || opts === null) { throw new TypeError(`expected type of opts to be an Object, got ${opts === null ? 'null' : typeof opts}`) } if (!Array.isArray(methods)) { throw new TypeError(`expected opts.methods to be an array, got ${typeof methods}`) } for (const method of methods) { if (!util.safeHTTPMethods.includes(method)) { throw new TypeError(`expected opts.methods to only contain safe HTTP methods, got ${method}`) } } if (!Array.isArray(skipHeaderNames)) { throw new TypeError(`expected opts.skipHeaderNames to be an array, got ${typeof skipHeaderNames}`) } if (!Array.isArray(excludeHeaderNames)) { throw new TypeError(`expected opts.excludeHeaderNames to be an array, got ${typeof excludeHeaderNames}`) } if (!Number.isFinite(maxBufferSize) || maxBufferSize <= 0) { throw new TypeError(`expected opts.maxBufferSize to be a positive finite number, got ${maxBufferSize}`) } // Convert to lowercase Set for case-insensitive header matching const skipHeaderNamesSet = new Set(skipHeaderNames.map(name => name.toLowerCase())) // Convert to lowercase Set for case-insensitive header exclusion from deduplication key const excludeHeaderNamesSet = new Set(excludeHeaderNames.map(name => name.toLowerCase())) /** * Map of pending requests for deduplication * @type {Map} */ const pendingRequests = new Map() return dispatch => { return (opts, handler) => { if (!opts.origin || methods.includes(opts.method) === false) { return dispatch(opts, handler) } opts = { ...opts, headers: normalizeHeaders(opts) } // Skip deduplication if request contains any of the specified headers if (skipHeaderNamesSet.size > 0) { for (const headerName of Object.keys(opts.headers)) { if (skipHeaderNamesSet.has(headerName.toLowerCase())) { return dispatch(opts, handler) } } } const cacheKey = makeCacheKey(opts) const dedupeKey = makeDeduplicationKey(cacheKey, excludeHeaderNamesSet) // Check if there's already a pending request for this key const pendingHandler = pendingRequests.get(dedupeKey) if (pendingHandler) { // Add this handler to the waiting list when safe. // If body streaming has already started, this request must be sent independently. if (pendingHandler.addWaitingHandler(handler)) { return true } return dispatch(opts, handler) } // Create a new deduplication handler const deduplicationHandler = new DeduplicationHandler( handler, () => { // Clean up when request completes pendingRequests.delete(dedupeKey) if (pendingRequestsChannel.hasSubscribers) { pendingRequestsChannel.publish({ size: pendingRequests.size, key: dedupeKey, type: 'removed' }) } }, maxBufferSize ) // Register the pending request pendingRequests.set(dedupeKey, deduplicationHandler) if (pendingRequestsChannel.hasSubscribers) { pendingRequestsChannel.publish({ size: pendingRequests.size, key: dedupeKey, type: 'added' }) } return dispatch(opts, deduplicationHandler) } } } /***/ }), /***/ 70379: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { isIP } = __nccwpck_require__(77030) const { lookup } = __nccwpck_require__(40610) const DecoratorHandler = __nccwpck_require__(58155) const { InvalidArgumentError, InformationalError } = __nccwpck_require__(68707) const maxInt = Math.pow(2, 31) - 1 function hasSafeIterator (headers) { const prototype = Object.getPrototypeOf(headers) const ownIterator = Object.prototype.hasOwnProperty.call(headers, Symbol.iterator) return ownIterator || (prototype != null && prototype !== Object.prototype && typeof headers[Symbol.iterator] === 'function') } function isHostHeader (key) { return typeof key === 'string' && key.toLowerCase() === 'host' } function normalizeHeaders (headers) { if (headers == null) { return null } if (Array.isArray(headers)) { if (headers.length === 0 || !Array.isArray(headers[0])) { return headers } const normalized = [] for (const header of headers) { if (Array.isArray(header) && header.length === 2) { normalized.push(header[0], header[1]) } else { normalized.push(header) } } return normalized } if (typeof headers === 'object' && hasSafeIterator(headers)) { const normalized = [] for (const header of headers) { if (Array.isArray(header) && header.length === 2) { normalized.push(header[0], header[1]) } else { normalized.push(header) } } return normalized } return headers } function hasHostHeader (headers) { if (headers == null) { return false } if (Array.isArray(headers)) { if (headers.length === 0) { return false } for (let i = 0; i < headers.length; i += 2) { if (isHostHeader(headers[i])) { return true } } return false } if (typeof headers === 'object') { for (const key in headers) { if (isHostHeader(key)) { return true } } } return false } function withHostHeader (host, headers) { const normalizedHeaders = normalizeHeaders(headers) if (hasHostHeader(normalizedHeaders)) { return normalizedHeaders } if (Array.isArray(normalizedHeaders)) { return ['host', host, ...normalizedHeaders] } if (normalizedHeaders && typeof normalizedHeaders === 'object') { return { host, ...normalizedHeaders } } return { host } } class DNSStorage { #maxItems = 0 #records = new Map() constructor (opts) { this.#maxItems = opts.maxItems } get size () { return this.#records.size } get (hostname) { return this.#records.get(hostname) ?? null } set (hostname, records) { this.#records.set(hostname, records) } delete (hostname) { this.#records.delete(hostname) } // Delegate to storage decide can we do more lookups or not full () { return this.size >= this.#maxItems } } class DNSInstance { #maxTTL = 0 #maxItems = 0 dualStack = true affinity = null lookup = null pick = null storage = null constructor (opts) { this.#maxTTL = opts.maxTTL this.#maxItems = opts.maxItems this.dualStack = opts.dualStack this.affinity = opts.affinity this.lookup = opts.lookup ?? this.#defaultLookup this.pick = opts.pick ?? this.#defaultPick this.storage = opts.storage ?? new DNSStorage(opts) } runLookup (origin, opts, cb) { const ips = this.storage.get(origin.hostname) // If full, we just return the origin if (ips == null && this.storage.full()) { cb(null, origin) return } const newOpts = { affinity: this.affinity, dualStack: this.dualStack, lookup: this.lookup, pick: this.pick, ...opts.dns, maxTTL: this.#maxTTL, maxItems: this.#maxItems } // If no IPs we lookup if (ips == null) { this.lookup(origin, newOpts, (err, addresses) => { if (err || addresses == null || addresses.length === 0) { cb(err ?? new InformationalError('No DNS entries found')) return } this.setRecords(origin, addresses) const records = this.storage.get(origin.hostname) const ip = this.pick( origin, records, newOpts.affinity ) let port if (typeof ip.port === 'number') { port = `:${ip.port}` } else if (origin.port !== '') { port = `:${origin.port}` } else { port = '' } cb( null, new URL(`${origin.protocol}//${ ip.family === 6 ? `[${ip.address}]` : ip.address }${port}`) ) }) } else { // If there's IPs we pick const ip = this.pick( origin, ips, newOpts.affinity ) // If no IPs we lookup - deleting old records if (ip == null) { this.storage.delete(origin.hostname) this.runLookup(origin, opts, cb) return } let port if (typeof ip.port === 'number') { port = `:${ip.port}` } else if (origin.port !== '') { port = `:${origin.port}` } else { port = '' } cb( null, new URL(`${origin.protocol}//${ ip.family === 6 ? `[${ip.address}]` : ip.address }${port}`) ) } } #defaultLookup (origin, opts, cb) { lookup( origin.hostname, { all: true, family: this.dualStack === false ? this.affinity : 0, order: 'ipv4first' }, (err, addresses) => { if (err) { return cb(err) } const results = new Map() for (const addr of addresses) { // On linux we found duplicates, we attempt to remove them with // the latest record results.set(`${addr.address}:${addr.family}`, addr) } cb(null, results.values()) } ) } #defaultPick (origin, hostnameRecords, affinity) { let ip = null const { records, offset } = hostnameRecords let family if (this.dualStack) { if (affinity == null) { // Balance between ip families if (offset == null || offset === maxInt) { hostnameRecords.offset = 0 affinity = 4 } else { hostnameRecords.offset++ affinity = (hostnameRecords.offset & 1) === 1 ? 6 : 4 } } if (records[affinity] != null && records[affinity].ips.length > 0) { family = records[affinity] } else { family = records[affinity === 4 ? 6 : 4] } } else { family = records[affinity] } // If no IPs we return null if (family == null || family.ips.length === 0) { return ip } if (family.offset == null || family.offset === maxInt) { family.offset = 0 } else { family.offset++ } const position = family.offset % family.ips.length ip = family.ips[position] ?? null if (ip == null) { return ip } if (Date.now() - ip.timestamp > ip.ttl) { // record TTL is already in ms // We delete expired records // It is possible that they have different TTL, so we manage them individually family.ips.splice(position, 1) return this.pick(origin, hostnameRecords, affinity) } return ip } pickFamily (origin, ipFamily) { const records = this.storage.get(origin.hostname)?.records if (!records) { return null } const family = records[ipFamily] if (!family) { return null } if (family.offset == null || family.offset === maxInt) { family.offset = 0 } else { family.offset++ } const position = family.offset % family.ips.length const ip = family.ips[position] ?? null if (ip == null) { return ip } if (Date.now() - ip.timestamp > ip.ttl) { // record TTL is already in ms // We delete expired records // It is possible that they have different TTL, so we manage them individually family.ips.splice(position, 1) } return ip } setRecords (origin, addresses) { const timestamp = Date.now() const records = { records: { 4: null, 6: null } } let minTTL = this.#maxTTL for (const record of addresses) { record.timestamp = timestamp if (typeof record.ttl === 'number') { // The record TTL is expected to be in ms record.ttl = Math.min(record.ttl, this.#maxTTL) minTTL = Math.min(minTTL, record.ttl) } else { record.ttl = this.#maxTTL } const familyRecords = records.records[record.family] ?? { ips: [] } familyRecords.ips.push(record) records.records[record.family] = familyRecords } // We provide a default TTL if external storage will be used without TTL per record-level support this.storage.set(origin.hostname, records, { ttl: minTTL }) } deleteRecords (origin) { this.storage.delete(origin.hostname) } getHandler (meta, opts) { return new DNSDispatchHandler(this, meta, opts) } } class DNSDispatchHandler extends DecoratorHandler { #state = null #opts = null #dispatch = null #origin = null #controller = null #newOrigin = null #firstTry = true constructor (state, { origin, handler, dispatch, newOrigin }, opts) { super(handler) this.#origin = origin this.#newOrigin = newOrigin this.#opts = { ...opts } this.#state = state this.#dispatch = dispatch } onResponseError (controller, err) { switch (err.code) { case 'ETIMEDOUT': case 'ECONNREFUSED': { if (this.#state.dualStack) { if (!this.#firstTry) { super.onResponseError(controller, err) return } this.#firstTry = false // Pick an ip address from the other family const otherFamily = this.#newOrigin.hostname[0] === '[' ? 4 : 6 const ip = this.#state.pickFamily(this.#origin, otherFamily) if (ip == null) { super.onResponseError(controller, err) return } let port if (typeof ip.port === 'number') { port = `:${ip.port}` } else if (this.#origin.port !== '') { port = `:${this.#origin.port}` } else { port = '' } const dispatchOpts = { ...this.#opts, origin: `${this.#origin.protocol}//${ ip.family === 6 ? `[${ip.address}]` : ip.address }${port}`, headers: withHostHeader(this.#origin.host, this.#opts.headers) } this.#dispatch(dispatchOpts, this) return } // if dual-stack disabled, we error out super.onResponseError(controller, err) break } case 'ENOTFOUND': this.#state.deleteRecords(this.#origin) super.onResponseError(controller, err) break default: super.onResponseError(controller, err) break } } } module.exports = interceptorOpts => { if ( interceptorOpts?.maxTTL != null && (typeof interceptorOpts?.maxTTL !== 'number' || interceptorOpts?.maxTTL < 0) ) { throw new InvalidArgumentError('Invalid maxTTL. Must be a positive number') } if ( interceptorOpts?.maxItems != null && (typeof interceptorOpts?.maxItems !== 'number' || interceptorOpts?.maxItems < 1) ) { throw new InvalidArgumentError( 'Invalid maxItems. Must be a positive number and greater than zero' ) } if ( interceptorOpts?.affinity != null && interceptorOpts?.affinity !== 4 && interceptorOpts?.affinity !== 6 ) { throw new InvalidArgumentError('Invalid affinity. Must be either 4 or 6') } if ( interceptorOpts?.dualStack != null && typeof interceptorOpts?.dualStack !== 'boolean' ) { throw new InvalidArgumentError('Invalid dualStack. Must be a boolean') } if ( interceptorOpts?.lookup != null && typeof interceptorOpts?.lookup !== 'function' ) { throw new InvalidArgumentError('Invalid lookup. Must be a function') } if ( interceptorOpts?.pick != null && typeof interceptorOpts?.pick !== 'function' ) { throw new InvalidArgumentError('Invalid pick. Must be a function') } if ( interceptorOpts?.storage != null && (typeof interceptorOpts?.storage?.get !== 'function' || typeof interceptorOpts?.storage?.set !== 'function' || typeof interceptorOpts?.storage?.full !== 'function' || typeof interceptorOpts?.storage?.delete !== 'function' ) ) { throw new InvalidArgumentError('Invalid storage. Must be a object with methods: { get, set, full, delete }') } const dualStack = interceptorOpts?.dualStack ?? true let affinity if (dualStack) { affinity = interceptorOpts?.affinity ?? null } else { affinity = interceptorOpts?.affinity ?? 4 } const opts = { maxTTL: interceptorOpts?.maxTTL ?? 10e3, // Expressed in ms lookup: interceptorOpts?.lookup ?? null, pick: interceptorOpts?.pick ?? null, dualStack, affinity, maxItems: interceptorOpts?.maxItems ?? Infinity, storage: interceptorOpts?.storage } const instance = new DNSInstance(opts) return dispatch => { return function dnsInterceptor (origDispatchOpts, handler) { const origin = origDispatchOpts.origin.constructor === URL ? origDispatchOpts.origin : new URL(origDispatchOpts.origin) if (isIP(origin.hostname) !== 0) { return dispatch(origDispatchOpts, handler) } instance.runLookup(origin, origDispatchOpts, (err, newOrigin) => { if (err) { return handler.onResponseError(null, err) } const dispatchOpts = { ...origDispatchOpts, servername: origin.hostname, // For SNI on TLS origin: newOrigin.origin, headers: withHostHeader(origin.host, origDispatchOpts.headers) } dispatch( dispatchOpts, instance.getHandler( { origin, dispatch, handler, newOrigin }, origDispatchOpts ) ) }) return true } } } /***/ }), /***/ 88060: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { InvalidArgumentError, RequestAbortedError } = __nccwpck_require__(68707) const DecoratorHandler = __nccwpck_require__(58155) class DumpHandler extends DecoratorHandler { #maxSize = 1024 * 1024 #dumped = false #size = 0 #controller = null aborted = false reason = false constructor ({ maxSize, signal }, handler) { if (maxSize != null && (!Number.isFinite(maxSize) || maxSize < 1)) { throw new InvalidArgumentError('maxSize must be a number greater than 0') } super(handler) this.#maxSize = maxSize ?? this.#maxSize // this.#handler = handler } #abort (reason) { this.aborted = true this.reason = reason } onRequestStart (controller, context) { controller.abort = this.#abort.bind(this) this.#controller = controller return super.onRequestStart(controller, context) } onResponseStart (controller, statusCode, headers, statusMessage) { const contentLength = headers['content-length'] if (contentLength != null && contentLength > this.#maxSize) { throw new RequestAbortedError( `Response size (${contentLength}) larger than maxSize (${ this.#maxSize })` ) } if (this.aborted === true) { return true } return super.onResponseStart(controller, statusCode, headers, statusMessage) } onResponseError (controller, err) { if (this.#dumped) { return } // On network errors before connect, controller will be null err = this.#controller?.reason ?? err super.onResponseError(controller, err) } onResponseData (controller, chunk) { this.#size = this.#size + chunk.length if (this.#size >= this.#maxSize) { this.#dumped = true if (this.aborted === true) { super.onResponseError(controller, this.reason) } else { super.onResponseEnd(controller, {}) } } return true } onResponseEnd (controller, trailers) { if (this.#dumped) { return } if (this.#controller.aborted === true) { super.onResponseError(controller, this.reason) return } super.onResponseEnd(controller, trailers) } } function createDumpInterceptor ( { maxSize: defaultMaxSize } = { maxSize: 1024 * 1024 } ) { return dispatch => { return function Intercept (opts, handler) { const { dumpMaxSize = defaultMaxSize } = opts const dumpHandler = new DumpHandler({ maxSize: dumpMaxSize, signal: opts.signal }, handler) return dispatch(opts, dumpHandler) } } } module.exports = createDumpInterceptor /***/ }), /***/ 21514: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const RedirectHandler = __nccwpck_require__(8754) function createRedirectInterceptor ({ maxRedirections: defaultMaxRedirections } = {}) { return (dispatch) => { return function Intercept (opts, handler) { const { maxRedirections = defaultMaxRedirections, ...rest } = opts if (maxRedirections == null || maxRedirections === 0) { return dispatch(opts, handler) } const dispatchOpts = { ...rest } // Stop sub dispatcher from also redirecting. const redirectHandler = new RedirectHandler(dispatch, maxRedirections, dispatchOpts, handler) return dispatch(dispatchOpts, redirectHandler) } } } module.exports = createRedirectInterceptor /***/ }), /***/ 8918: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; // const { parseHeaders } = require('../core/util') const DecoratorHandler = __nccwpck_require__(58155) const { ResponseError } = __nccwpck_require__(68707) class ResponseErrorHandler extends DecoratorHandler { #statusCode #contentType #decoder #headers #body constructor (_opts, { handler }) { super(handler) } #checkContentType (contentType) { return (this.#contentType ?? '').indexOf(contentType) === 0 } onRequestStart (controller, context) { this.#statusCode = 0 this.#contentType = null this.#decoder = null this.#headers = null this.#body = '' return super.onRequestStart(controller, context) } onResponseStart (controller, statusCode, headers, statusMessage) { this.#statusCode = statusCode this.#headers = headers this.#contentType = headers['content-type'] if (this.#statusCode < 400) { return super.onResponseStart(controller, statusCode, headers, statusMessage) } if (this.#checkContentType('application/json') || this.#checkContentType('text/plain')) { this.#decoder = new TextDecoder('utf-8') } } onResponseData (controller, chunk) { if (this.#statusCode < 400) { return super.onResponseData(controller, chunk) } this.#body += this.#decoder?.decode(chunk, { stream: true }) ?? '' } onResponseEnd (controller, trailers) { if (this.#statusCode >= 400) { this.#body += this.#decoder?.decode(undefined, { stream: false }) ?? '' if (this.#checkContentType('application/json')) { try { this.#body = JSON.parse(this.#body) } catch { // Do nothing... } } let err const stackTraceLimit = Error.stackTraceLimit Error.stackTraceLimit = 0 try { err = new ResponseError('Response Error', this.#statusCode, { body: this.#body, headers: this.#headers }) } finally { Error.stackTraceLimit = stackTraceLimit } super.onResponseError(controller, err) } else { super.onResponseEnd(controller, trailers) } } onResponseError (controller, err) { super.onResponseError(controller, err) } } module.exports = () => { return (dispatch) => { return function Intercept (opts, handler) { return dispatch(opts, new ResponseErrorHandler(opts, { handler })) } } } /***/ }), /***/ 92026: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const RetryHandler = __nccwpck_require__(17816) module.exports = globalOpts => { return dispatch => { return function retryInterceptor (opts, handler) { return dispatch( opts, new RetryHandler( { ...opts, retryOptions: { ...globalOpts, ...opts.retryOptions } }, { handler, dispatch } ) ) } } } /***/ }), /***/ 52824: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.SPECIAL_HEADERS = exports.MINOR = exports.MAJOR = exports.HTAB_SP_VCHAR_OBS_TEXT = exports.QUOTED_STRING = exports.CONNECTION_TOKEN_CHARS = exports.HEADER_CHARS = exports.TOKEN = exports.HEX = exports.URL_CHAR = exports.USERINFO_CHARS = exports.MARK = exports.ALPHANUM = exports.NUM = exports.HEX_MAP = exports.NUM_MAP = exports.ALPHA = exports.STATUSES_HTTP = exports.H_METHOD_MAP = exports.METHOD_MAP = exports.METHODS_RTSP = exports.METHODS_ICE = exports.METHODS_HTTP = exports.HEADER_STATE = exports.FINISH = exports.STATUSES = exports.METHODS = exports.LENIENT_FLAGS = exports.FLAGS = exports.TYPE = exports.ERROR = void 0; const utils_1 = __nccwpck_require__(50172); // Emums exports.ERROR = { OK: 0, INTERNAL: 1, STRICT: 2, CR_EXPECTED: 25, LF_EXPECTED: 3, UNEXPECTED_CONTENT_LENGTH: 4, UNEXPECTED_SPACE: 30, CLOSED_CONNECTION: 5, INVALID_METHOD: 6, INVALID_URL: 7, INVALID_CONSTANT: 8, INVALID_VERSION: 9, INVALID_HEADER_TOKEN: 10, INVALID_CONTENT_LENGTH: 11, INVALID_CHUNK_SIZE: 12, INVALID_STATUS: 13, INVALID_EOF_STATE: 14, INVALID_TRANSFER_ENCODING: 15, CB_MESSAGE_BEGIN: 16, CB_HEADERS_COMPLETE: 17, CB_MESSAGE_COMPLETE: 18, CB_CHUNK_HEADER: 19, CB_CHUNK_COMPLETE: 20, PAUSED: 21, PAUSED_UPGRADE: 22, PAUSED_H2_UPGRADE: 23, USER: 24, CB_URL_COMPLETE: 26, CB_STATUS_COMPLETE: 27, CB_METHOD_COMPLETE: 32, CB_VERSION_COMPLETE: 33, CB_HEADER_FIELD_COMPLETE: 28, CB_HEADER_VALUE_COMPLETE: 29, CB_CHUNK_EXTENSION_NAME_COMPLETE: 34, CB_CHUNK_EXTENSION_VALUE_COMPLETE: 35, CB_RESET: 31, CB_PROTOCOL_COMPLETE: 38, }; exports.TYPE = { BOTH: 0, // default REQUEST: 1, RESPONSE: 2, }; exports.FLAGS = { CONNECTION_KEEP_ALIVE: 1 << 0, CONNECTION_CLOSE: 1 << 1, CONNECTION_UPGRADE: 1 << 2, CHUNKED: 1 << 3, UPGRADE: 1 << 4, CONTENT_LENGTH: 1 << 5, SKIPBODY: 1 << 6, TRAILING: 1 << 7, // 1 << 8 is unused TRANSFER_ENCODING: 1 << 9, }; exports.LENIENT_FLAGS = { HEADERS: 1 << 0, CHUNKED_LENGTH: 1 << 1, KEEP_ALIVE: 1 << 2, TRANSFER_ENCODING: 1 << 3, VERSION: 1 << 4, DATA_AFTER_CLOSE: 1 << 5, OPTIONAL_LF_AFTER_CR: 1 << 6, OPTIONAL_CRLF_AFTER_CHUNK: 1 << 7, OPTIONAL_CR_BEFORE_LF: 1 << 8, SPACES_AFTER_CHUNK_SIZE: 1 << 9, }; exports.METHODS = { 'DELETE': 0, 'GET': 1, 'HEAD': 2, 'POST': 3, 'PUT': 4, /* pathological */ 'CONNECT': 5, 'OPTIONS': 6, 'TRACE': 7, /* WebDAV */ 'COPY': 8, 'LOCK': 9, 'MKCOL': 10, 'MOVE': 11, 'PROPFIND': 12, 'PROPPATCH': 13, 'SEARCH': 14, 'UNLOCK': 15, 'BIND': 16, 'REBIND': 17, 'UNBIND': 18, 'ACL': 19, /* subversion */ 'REPORT': 20, 'MKACTIVITY': 21, 'CHECKOUT': 22, 'MERGE': 23, /* upnp */ 'M-SEARCH': 24, 'NOTIFY': 25, 'SUBSCRIBE': 26, 'UNSUBSCRIBE': 27, /* RFC-5789 */ 'PATCH': 28, 'PURGE': 29, /* CalDAV */ 'MKCALENDAR': 30, /* RFC-2068, section 19.6.1.2 */ 'LINK': 31, 'UNLINK': 32, /* icecast */ 'SOURCE': 33, /* RFC-7540, section 11.6 */ 'PRI': 34, /* RFC-2326 RTSP */ 'DESCRIBE': 35, 'ANNOUNCE': 36, 'SETUP': 37, 'PLAY': 38, 'PAUSE': 39, 'TEARDOWN': 40, 'GET_PARAMETER': 41, 'SET_PARAMETER': 42, 'REDIRECT': 43, 'RECORD': 44, /* RAOP */ 'FLUSH': 45, /* DRAFT https://www.ietf.org/archive/id/draft-ietf-httpbis-safe-method-w-body-02.html */ 'QUERY': 46, }; exports.STATUSES = { CONTINUE: 100, SWITCHING_PROTOCOLS: 101, PROCESSING: 102, EARLY_HINTS: 103, RESPONSE_IS_STALE: 110, // Unofficial REVALIDATION_FAILED: 111, // Unofficial DISCONNECTED_OPERATION: 112, // Unofficial HEURISTIC_EXPIRATION: 113, // Unofficial MISCELLANEOUS_WARNING: 199, // Unofficial OK: 200, CREATED: 201, ACCEPTED: 202, NON_AUTHORITATIVE_INFORMATION: 203, NO_CONTENT: 204, RESET_CONTENT: 205, PARTIAL_CONTENT: 206, MULTI_STATUS: 207, ALREADY_REPORTED: 208, TRANSFORMATION_APPLIED: 214, // Unofficial IM_USED: 226, MISCELLANEOUS_PERSISTENT_WARNING: 299, // Unofficial MULTIPLE_CHOICES: 300, MOVED_PERMANENTLY: 301, FOUND: 302, SEE_OTHER: 303, NOT_MODIFIED: 304, USE_PROXY: 305, SWITCH_PROXY: 306, // No longer used TEMPORARY_REDIRECT: 307, PERMANENT_REDIRECT: 308, BAD_REQUEST: 400, UNAUTHORIZED: 401, PAYMENT_REQUIRED: 402, FORBIDDEN: 403, NOT_FOUND: 404, METHOD_NOT_ALLOWED: 405, NOT_ACCEPTABLE: 406, PROXY_AUTHENTICATION_REQUIRED: 407, REQUEST_TIMEOUT: 408, CONFLICT: 409, GONE: 410, LENGTH_REQUIRED: 411, PRECONDITION_FAILED: 412, PAYLOAD_TOO_LARGE: 413, URI_TOO_LONG: 414, UNSUPPORTED_MEDIA_TYPE: 415, RANGE_NOT_SATISFIABLE: 416, EXPECTATION_FAILED: 417, IM_A_TEAPOT: 418, PAGE_EXPIRED: 419, // Unofficial ENHANCE_YOUR_CALM: 420, // Unofficial MISDIRECTED_REQUEST: 421, UNPROCESSABLE_ENTITY: 422, LOCKED: 423, FAILED_DEPENDENCY: 424, TOO_EARLY: 425, UPGRADE_REQUIRED: 426, PRECONDITION_REQUIRED: 428, TOO_MANY_REQUESTS: 429, REQUEST_HEADER_FIELDS_TOO_LARGE_UNOFFICIAL: 430, // Unofficial REQUEST_HEADER_FIELDS_TOO_LARGE: 431, LOGIN_TIMEOUT: 440, // Unofficial NO_RESPONSE: 444, // Unofficial RETRY_WITH: 449, // Unofficial BLOCKED_BY_PARENTAL_CONTROL: 450, // Unofficial UNAVAILABLE_FOR_LEGAL_REASONS: 451, CLIENT_CLOSED_LOAD_BALANCED_REQUEST: 460, // Unofficial INVALID_X_FORWARDED_FOR: 463, // Unofficial REQUEST_HEADER_TOO_LARGE: 494, // Unofficial SSL_CERTIFICATE_ERROR: 495, // Unofficial SSL_CERTIFICATE_REQUIRED: 496, // Unofficial HTTP_REQUEST_SENT_TO_HTTPS_PORT: 497, // Unofficial INVALID_TOKEN: 498, // Unofficial CLIENT_CLOSED_REQUEST: 499, // Unofficial INTERNAL_SERVER_ERROR: 500, NOT_IMPLEMENTED: 501, BAD_GATEWAY: 502, SERVICE_UNAVAILABLE: 503, GATEWAY_TIMEOUT: 504, HTTP_VERSION_NOT_SUPPORTED: 505, VARIANT_ALSO_NEGOTIATES: 506, INSUFFICIENT_STORAGE: 507, LOOP_DETECTED: 508, BANDWIDTH_LIMIT_EXCEEDED: 509, NOT_EXTENDED: 510, NETWORK_AUTHENTICATION_REQUIRED: 511, WEB_SERVER_UNKNOWN_ERROR: 520, // Unofficial WEB_SERVER_IS_DOWN: 521, // Unofficial CONNECTION_TIMEOUT: 522, // Unofficial ORIGIN_IS_UNREACHABLE: 523, // Unofficial TIMEOUT_OCCURED: 524, // Unofficial SSL_HANDSHAKE_FAILED: 525, // Unofficial INVALID_SSL_CERTIFICATE: 526, // Unofficial RAILGUN_ERROR: 527, // Unofficial SITE_IS_OVERLOADED: 529, // Unofficial SITE_IS_FROZEN: 530, // Unofficial IDENTITY_PROVIDER_AUTHENTICATION_ERROR: 561, // Unofficial NETWORK_READ_TIMEOUT: 598, // Unofficial NETWORK_CONNECT_TIMEOUT: 599, // Unofficial }; exports.FINISH = { SAFE: 0, SAFE_WITH_CB: 1, UNSAFE: 2, }; exports.HEADER_STATE = { GENERAL: 0, CONNECTION: 1, CONTENT_LENGTH: 2, TRANSFER_ENCODING: 3, UPGRADE: 4, CONNECTION_KEEP_ALIVE: 5, CONNECTION_CLOSE: 6, CONNECTION_UPGRADE: 7, TRANSFER_ENCODING_CHUNKED: 8, }; // C headers exports.METHODS_HTTP = [ exports.METHODS.DELETE, exports.METHODS.GET, exports.METHODS.HEAD, exports.METHODS.POST, exports.METHODS.PUT, exports.METHODS.CONNECT, exports.METHODS.OPTIONS, exports.METHODS.TRACE, exports.METHODS.COPY, exports.METHODS.LOCK, exports.METHODS.MKCOL, exports.METHODS.MOVE, exports.METHODS.PROPFIND, exports.METHODS.PROPPATCH, exports.METHODS.SEARCH, exports.METHODS.UNLOCK, exports.METHODS.BIND, exports.METHODS.REBIND, exports.METHODS.UNBIND, exports.METHODS.ACL, exports.METHODS.REPORT, exports.METHODS.MKACTIVITY, exports.METHODS.CHECKOUT, exports.METHODS.MERGE, exports.METHODS['M-SEARCH'], exports.METHODS.NOTIFY, exports.METHODS.SUBSCRIBE, exports.METHODS.UNSUBSCRIBE, exports.METHODS.PATCH, exports.METHODS.PURGE, exports.METHODS.MKCALENDAR, exports.METHODS.LINK, exports.METHODS.UNLINK, exports.METHODS.PRI, // TODO(indutny): should we allow it with HTTP? exports.METHODS.SOURCE, exports.METHODS.QUERY, ]; exports.METHODS_ICE = [ exports.METHODS.SOURCE, ]; exports.METHODS_RTSP = [ exports.METHODS.OPTIONS, exports.METHODS.DESCRIBE, exports.METHODS.ANNOUNCE, exports.METHODS.SETUP, exports.METHODS.PLAY, exports.METHODS.PAUSE, exports.METHODS.TEARDOWN, exports.METHODS.GET_PARAMETER, exports.METHODS.SET_PARAMETER, exports.METHODS.REDIRECT, exports.METHODS.RECORD, exports.METHODS.FLUSH, // For AirPlay exports.METHODS.GET, exports.METHODS.POST, ]; exports.METHOD_MAP = (0, utils_1.enumToMap)(exports.METHODS); exports.H_METHOD_MAP = Object.fromEntries(Object.entries(exports.METHODS).filter(([k]) => k.startsWith('H'))); exports.STATUSES_HTTP = [ exports.STATUSES.CONTINUE, exports.STATUSES.SWITCHING_PROTOCOLS, exports.STATUSES.PROCESSING, exports.STATUSES.EARLY_HINTS, exports.STATUSES.RESPONSE_IS_STALE, exports.STATUSES.REVALIDATION_FAILED, exports.STATUSES.DISCONNECTED_OPERATION, exports.STATUSES.HEURISTIC_EXPIRATION, exports.STATUSES.MISCELLANEOUS_WARNING, exports.STATUSES.OK, exports.STATUSES.CREATED, exports.STATUSES.ACCEPTED, exports.STATUSES.NON_AUTHORITATIVE_INFORMATION, exports.STATUSES.NO_CONTENT, exports.STATUSES.RESET_CONTENT, exports.STATUSES.PARTIAL_CONTENT, exports.STATUSES.MULTI_STATUS, exports.STATUSES.ALREADY_REPORTED, exports.STATUSES.TRANSFORMATION_APPLIED, exports.STATUSES.IM_USED, exports.STATUSES.MISCELLANEOUS_PERSISTENT_WARNING, exports.STATUSES.MULTIPLE_CHOICES, exports.STATUSES.MOVED_PERMANENTLY, exports.STATUSES.FOUND, exports.STATUSES.SEE_OTHER, exports.STATUSES.NOT_MODIFIED, exports.STATUSES.USE_PROXY, exports.STATUSES.SWITCH_PROXY, exports.STATUSES.TEMPORARY_REDIRECT, exports.STATUSES.PERMANENT_REDIRECT, exports.STATUSES.BAD_REQUEST, exports.STATUSES.UNAUTHORIZED, exports.STATUSES.PAYMENT_REQUIRED, exports.STATUSES.FORBIDDEN, exports.STATUSES.NOT_FOUND, exports.STATUSES.METHOD_NOT_ALLOWED, exports.STATUSES.NOT_ACCEPTABLE, exports.STATUSES.PROXY_AUTHENTICATION_REQUIRED, exports.STATUSES.REQUEST_TIMEOUT, exports.STATUSES.CONFLICT, exports.STATUSES.GONE, exports.STATUSES.LENGTH_REQUIRED, exports.STATUSES.PRECONDITION_FAILED, exports.STATUSES.PAYLOAD_TOO_LARGE, exports.STATUSES.URI_TOO_LONG, exports.STATUSES.UNSUPPORTED_MEDIA_TYPE, exports.STATUSES.RANGE_NOT_SATISFIABLE, exports.STATUSES.EXPECTATION_FAILED, exports.STATUSES.IM_A_TEAPOT, exports.STATUSES.PAGE_EXPIRED, exports.STATUSES.ENHANCE_YOUR_CALM, exports.STATUSES.MISDIRECTED_REQUEST, exports.STATUSES.UNPROCESSABLE_ENTITY, exports.STATUSES.LOCKED, exports.STATUSES.FAILED_DEPENDENCY, exports.STATUSES.TOO_EARLY, exports.STATUSES.UPGRADE_REQUIRED, exports.STATUSES.PRECONDITION_REQUIRED, exports.STATUSES.TOO_MANY_REQUESTS, exports.STATUSES.REQUEST_HEADER_FIELDS_TOO_LARGE_UNOFFICIAL, exports.STATUSES.REQUEST_HEADER_FIELDS_TOO_LARGE, exports.STATUSES.LOGIN_TIMEOUT, exports.STATUSES.NO_RESPONSE, exports.STATUSES.RETRY_WITH, exports.STATUSES.BLOCKED_BY_PARENTAL_CONTROL, exports.STATUSES.UNAVAILABLE_FOR_LEGAL_REASONS, exports.STATUSES.CLIENT_CLOSED_LOAD_BALANCED_REQUEST, exports.STATUSES.INVALID_X_FORWARDED_FOR, exports.STATUSES.REQUEST_HEADER_TOO_LARGE, exports.STATUSES.SSL_CERTIFICATE_ERROR, exports.STATUSES.SSL_CERTIFICATE_REQUIRED, exports.STATUSES.HTTP_REQUEST_SENT_TO_HTTPS_PORT, exports.STATUSES.INVALID_TOKEN, exports.STATUSES.CLIENT_CLOSED_REQUEST, exports.STATUSES.INTERNAL_SERVER_ERROR, exports.STATUSES.NOT_IMPLEMENTED, exports.STATUSES.BAD_GATEWAY, exports.STATUSES.SERVICE_UNAVAILABLE, exports.STATUSES.GATEWAY_TIMEOUT, exports.STATUSES.HTTP_VERSION_NOT_SUPPORTED, exports.STATUSES.VARIANT_ALSO_NEGOTIATES, exports.STATUSES.INSUFFICIENT_STORAGE, exports.STATUSES.LOOP_DETECTED, exports.STATUSES.BANDWIDTH_LIMIT_EXCEEDED, exports.STATUSES.NOT_EXTENDED, exports.STATUSES.NETWORK_AUTHENTICATION_REQUIRED, exports.STATUSES.WEB_SERVER_UNKNOWN_ERROR, exports.STATUSES.WEB_SERVER_IS_DOWN, exports.STATUSES.CONNECTION_TIMEOUT, exports.STATUSES.ORIGIN_IS_UNREACHABLE, exports.STATUSES.TIMEOUT_OCCURED, exports.STATUSES.SSL_HANDSHAKE_FAILED, exports.STATUSES.INVALID_SSL_CERTIFICATE, exports.STATUSES.RAILGUN_ERROR, exports.STATUSES.SITE_IS_OVERLOADED, exports.STATUSES.SITE_IS_FROZEN, exports.STATUSES.IDENTITY_PROVIDER_AUTHENTICATION_ERROR, exports.STATUSES.NETWORK_READ_TIMEOUT, exports.STATUSES.NETWORK_CONNECT_TIMEOUT, ]; exports.ALPHA = []; for (let i = 'A'.charCodeAt(0); i <= 'Z'.charCodeAt(0); i++) { // Upper case exports.ALPHA.push(String.fromCharCode(i)); // Lower case exports.ALPHA.push(String.fromCharCode(i + 0x20)); } exports.NUM_MAP = { 0: 0, 1: 1, 2: 2, 3: 3, 4: 4, 5: 5, 6: 6, 7: 7, 8: 8, 9: 9, }; exports.HEX_MAP = { 0: 0, 1: 1, 2: 2, 3: 3, 4: 4, 5: 5, 6: 6, 7: 7, 8: 8, 9: 9, A: 0XA, B: 0XB, C: 0XC, D: 0XD, E: 0XE, F: 0XF, a: 0xa, b: 0xb, c: 0xc, d: 0xd, e: 0xe, f: 0xf, }; exports.NUM = [ '0', '1', '2', '3', '4', '5', '6', '7', '8', '9', ]; exports.ALPHANUM = exports.ALPHA.concat(exports.NUM); exports.MARK = ['-', '_', '.', '!', '~', '*', '\'', '(', ')']; exports.USERINFO_CHARS = exports.ALPHANUM .concat(exports.MARK) .concat(['%', ';', ':', '&', '=', '+', '$', ',']); // TODO(indutny): use RFC exports.URL_CHAR = [ '!', '"', '$', '%', '&', '\'', '(', ')', '*', '+', ',', '-', '.', '/', ':', ';', '<', '=', '>', '@', '[', '\\', ']', '^', '_', '`', '{', '|', '}', '~', ].concat(exports.ALPHANUM); exports.HEX = exports.NUM.concat(['a', 'b', 'c', 'd', 'e', 'f', 'A', 'B', 'C', 'D', 'E', 'F']); /* Tokens as defined by rfc 2616. Also lowercases them. * token = 1* * separators = "(" | ")" | "<" | ">" | "@" * | "," | ";" | ":" | "\" | <"> * | "/" | "[" | "]" | "?" | "=" * | "{" | "}" | SP | HT */ exports.TOKEN = [ '!', '#', '$', '%', '&', '\'', '*', '+', '-', '.', '^', '_', '`', '|', '~', ].concat(exports.ALPHANUM); /* * Verify that a char is a valid visible (printable) US-ASCII * character or %x80-FF */ exports.HEADER_CHARS = ['\t']; for (let i = 32; i <= 255; i++) { if (i !== 127) { exports.HEADER_CHARS.push(i); } } // ',' = \x44 exports.CONNECTION_TOKEN_CHARS = exports.HEADER_CHARS.filter((c) => c !== 44); exports.QUOTED_STRING = ['\t', ' ']; for (let i = 0x21; i <= 0xff; i++) { if (i !== 0x22 && i !== 0x5c) { // All characters in ASCII except \ and " exports.QUOTED_STRING.push(i); } } exports.HTAB_SP_VCHAR_OBS_TEXT = ['\t', ' ']; // VCHAR: https://tools.ietf.org/html/rfc5234#appendix-B.1 for (let i = 0x21; i <= 0x7E; i++) { exports.HTAB_SP_VCHAR_OBS_TEXT.push(i); } // OBS_TEXT: https://datatracker.ietf.org/doc/html/rfc9110#name-collected-abnf for (let i = 0x80; i <= 0xff; i++) { exports.HTAB_SP_VCHAR_OBS_TEXT.push(i); } exports.MAJOR = exports.NUM_MAP; exports.MINOR = exports.MAJOR; exports.SPECIAL_HEADERS = { 'connection': exports.HEADER_STATE.CONNECTION, 'content-length': exports.HEADER_STATE.CONTENT_LENGTH, 'proxy-connection': exports.HEADER_STATE.CONNECTION, 'transfer-encoding': exports.HEADER_STATE.TRANSFER_ENCODING, 'upgrade': exports.HEADER_STATE.UPGRADE, }; exports["default"] = { ERROR: exports.ERROR, TYPE: exports.TYPE, FLAGS: exports.FLAGS, LENIENT_FLAGS: exports.LENIENT_FLAGS, METHODS: exports.METHODS, STATUSES: exports.STATUSES, FINISH: exports.FINISH, HEADER_STATE: exports.HEADER_STATE, ALPHA: exports.ALPHA, NUM_MAP: exports.NUM_MAP, HEX_MAP: exports.HEX_MAP, NUM: exports.NUM, ALPHANUM: exports.ALPHANUM, MARK: exports.MARK, USERINFO_CHARS: exports.USERINFO_CHARS, URL_CHAR: exports.URL_CHAR, HEX: exports.HEX, TOKEN: exports.TOKEN, HEADER_CHARS: exports.HEADER_CHARS, CONNECTION_TOKEN_CHARS: exports.CONNECTION_TOKEN_CHARS, QUOTED_STRING: exports.QUOTED_STRING, HTAB_SP_VCHAR_OBS_TEXT: exports.HTAB_SP_VCHAR_OBS_TEXT, MAJOR: exports.MAJOR, MINOR: exports.MINOR, SPECIAL_HEADERS: exports.SPECIAL_HEADERS, METHODS_HTTP: exports.METHODS_HTTP, METHODS_ICE: exports.METHODS_ICE, METHODS_RTSP: exports.METHODS_RTSP, METHOD_MAP: exports.METHOD_MAP, H_METHOD_MAP: exports.H_METHOD_MAP, STATUSES_HTTP: exports.STATUSES_HTTP, }; /***/ }), /***/ 63870: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; /* module decorator */ module = __nccwpck_require__.nmd(module); const { Buffer } = __nccwpck_require__(4573) const wasmBase64 = 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' let wasmBuffer Object.defineProperty(module, 'exports', { get: () => { return wasmBuffer ? wasmBuffer : (wasmBuffer = Buffer.from(wasmBase64, 'base64')) } }) /***/ }), /***/ 53434: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; /* module decorator */ module = __nccwpck_require__.nmd(module); const { Buffer } = __nccwpck_require__(4573) const wasmBase64 = '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let wasmBuffer Object.defineProperty(module, 'exports', { get: () => { return wasmBuffer ? wasmBuffer : (wasmBuffer = Buffer.from(wasmBase64, 'base64')) } }) /***/ }), /***/ 50172: /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.enumToMap = enumToMap; function enumToMap(obj, filter = [], exceptions = []) { const emptyFilter = (filter?.length ?? 0) === 0; const emptyExceptions = (exceptions?.length ?? 0) === 0; return Object.fromEntries(Object.entries(obj).filter(([, value]) => { return (typeof value === 'number' && (emptyFilter || filter.includes(value)) && (emptyExceptions || !exceptions.includes(value))); })); } /***/ }), /***/ 47501: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { kClients } = __nccwpck_require__(36443) const Agent = __nccwpck_require__(57405) const { kAgent, kMockAgentSet, kMockAgentGet, kDispatches, kIsMockActive, kNetConnect, kGetNetConnect, kOptions, kFactory, kMockAgentRegisterCallHistory, kMockAgentIsCallHistoryEnabled, kMockAgentAddCallHistoryLog, kMockAgentMockCallHistoryInstance, kMockAgentAcceptsNonStandardSearchParameters, kMockCallHistoryAddLog, kIgnoreTrailingSlash } = __nccwpck_require__(91117) const MockClient = __nccwpck_require__(47365) const MockPool = __nccwpck_require__(94004) const { matchValue, normalizeSearchParams, buildAndValidateMockOptions, normalizeOrigin } = __nccwpck_require__(53397) const { InvalidArgumentError, UndiciError } = __nccwpck_require__(68707) const Dispatcher = __nccwpck_require__(30883) const PendingInterceptorsFormatter = __nccwpck_require__(56142) const { MockCallHistory } = __nccwpck_require__(30431) class MockAgent extends Dispatcher { constructor (opts = {}) { super(opts) const mockOptions = buildAndValidateMockOptions(opts) this[kNetConnect] = true this[kIsMockActive] = true this[kMockAgentIsCallHistoryEnabled] = mockOptions.enableCallHistory ?? false this[kMockAgentAcceptsNonStandardSearchParameters] = mockOptions.acceptNonStandardSearchParameters ?? false this[kIgnoreTrailingSlash] = mockOptions.ignoreTrailingSlash ?? false // Instantiate Agent and encapsulate if (opts?.agent && typeof opts.agent.dispatch !== 'function') { throw new InvalidArgumentError('Argument opts.agent must implement Agent') } const agent = opts?.agent ? opts.agent : new Agent(opts) this[kAgent] = agent this[kClients] = agent[kClients] this[kOptions] = mockOptions if (this[kMockAgentIsCallHistoryEnabled]) { this[kMockAgentRegisterCallHistory]() } } get (origin) { // Normalize origin to handle URL objects and case-insensitive hostnames const normalizedOrigin = normalizeOrigin(origin) const originKey = this[kIgnoreTrailingSlash] ? normalizedOrigin.replace(/\/$/, '') : normalizedOrigin let dispatcher = this[kMockAgentGet](originKey) if (!dispatcher) { dispatcher = this[kFactory](originKey) this[kMockAgentSet](originKey, dispatcher) } return dispatcher } dispatch (opts, handler) { opts.origin = normalizeOrigin(opts.origin) // Call MockAgent.get to perform additional setup before dispatching as normal this.get(opts.origin) this[kMockAgentAddCallHistoryLog](opts) const acceptNonStandardSearchParameters = this[kMockAgentAcceptsNonStandardSearchParameters] const dispatchOpts = { ...opts } if (acceptNonStandardSearchParameters && dispatchOpts.path) { const [path, searchParams] = dispatchOpts.path.split('?') const normalizedSearchParams = normalizeSearchParams(searchParams, acceptNonStandardSearchParameters) dispatchOpts.path = `${path}?${normalizedSearchParams}` } return this[kAgent].dispatch(dispatchOpts, handler) } async close () { this.clearCallHistory() await this[kAgent].close() this[kClients].clear() } deactivate () { this[kIsMockActive] = false } activate () { this[kIsMockActive] = true } enableNetConnect (matcher) { if (typeof matcher === 'string' || typeof matcher === 'function' || matcher instanceof RegExp) { if (Array.isArray(this[kNetConnect])) { this[kNetConnect].push(matcher) } else { this[kNetConnect] = [matcher] } } else if (typeof matcher === 'undefined') { this[kNetConnect] = true } else { throw new InvalidArgumentError('Unsupported matcher. Must be one of String|Function|RegExp.') } } disableNetConnect () { this[kNetConnect] = false } enableCallHistory () { this[kMockAgentIsCallHistoryEnabled] = true return this } disableCallHistory () { this[kMockAgentIsCallHistoryEnabled] = false return this } getCallHistory () { return this[kMockAgentMockCallHistoryInstance] } clearCallHistory () { if (this[kMockAgentMockCallHistoryInstance] !== undefined) { this[kMockAgentMockCallHistoryInstance].clear() } } // This is required to bypass issues caused by using global symbols - see: // https://github.com/nodejs/undici/issues/1447 get isMockActive () { return this[kIsMockActive] } [kMockAgentRegisterCallHistory] () { if (this[kMockAgentMockCallHistoryInstance] === undefined) { this[kMockAgentMockCallHistoryInstance] = new MockCallHistory() } } [kMockAgentAddCallHistoryLog] (opts) { if (this[kMockAgentIsCallHistoryEnabled]) { // additional setup when enableCallHistory class method is used after mockAgent instantiation this[kMockAgentRegisterCallHistory]() // add call history log on every call (intercepted or not) this[kMockAgentMockCallHistoryInstance][kMockCallHistoryAddLog](opts) } } [kMockAgentSet] (origin, dispatcher) { this[kClients].set(origin, { count: 0, dispatcher }) } [kFactory] (origin) { const mockOptions = Object.assign({ agent: this }, this[kOptions]) return this[kOptions] && this[kOptions].connections === 1 ? new MockClient(origin, mockOptions) : new MockPool(origin, mockOptions) } [kMockAgentGet] (origin) { // First check if we can immediately find it const result = this[kClients].get(origin) if (result?.dispatcher) { return result.dispatcher } // If the origin is not a string create a dummy parent pool and return to user if (typeof origin !== 'string') { const dispatcher = this[kFactory]('http://localhost:9999') this[kMockAgentSet](origin, dispatcher) return dispatcher } // If we match, create a pool and assign the same dispatches for (const [keyMatcher, result] of Array.from(this[kClients])) { if (result && typeof keyMatcher !== 'string' && matchValue(keyMatcher, origin)) { const dispatcher = this[kFactory](origin) this[kMockAgentSet](origin, dispatcher) dispatcher[kDispatches] = result.dispatcher[kDispatches] return dispatcher } } } [kGetNetConnect] () { return this[kNetConnect] } pendingInterceptors () { const mockAgentClients = this[kClients] return Array.from(mockAgentClients.entries()) .flatMap(([origin, result]) => result.dispatcher[kDispatches].map(dispatch => ({ ...dispatch, origin }))) .filter(({ pending }) => pending) } assertNoPendingInterceptors ({ pendingInterceptorsFormatter = new PendingInterceptorsFormatter() } = {}) { const pending = this.pendingInterceptors() if (pending.length === 0) { return } throw new UndiciError( pending.length === 1 ? `1 interceptor is pending:\n\n${pendingInterceptorsFormatter.format(pending)}`.trim() : `${pending.length} interceptors are pending:\n\n${pendingInterceptorsFormatter.format(pending)}`.trim() ) } } module.exports = MockAgent /***/ }), /***/ 30431: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { kMockCallHistoryAddLog } = __nccwpck_require__(91117) const { InvalidArgumentError } = __nccwpck_require__(68707) function handleFilterCallsWithOptions (criteria, options, handler, store, allLogs) { switch (options.operator) { case 'OR': store.push(...handler(criteria, allLogs)) return store case 'AND': return handler(criteria, store) default: // guard -- should never happens because buildAndValidateFilterCallsOptions is called before throw new InvalidArgumentError('options.operator must to be a case insensitive string equal to \'OR\' or \'AND\'') } } function buildAndValidateFilterCallsOptions (options = {}) { const finalOptions = {} if ('operator' in options) { if (typeof options.operator !== 'string' || (options.operator.toUpperCase() !== 'OR' && options.operator.toUpperCase() !== 'AND')) { throw new InvalidArgumentError('options.operator must to be a case insensitive string equal to \'OR\' or \'AND\'') } return { ...finalOptions, operator: options.operator.toUpperCase() } } return finalOptions } function makeFilterCalls (parameterName) { return (parameterValue, logs) => { if (typeof parameterValue === 'string' || parameterValue == null) { return logs.filter((log) => { return log[parameterName] === parameterValue }) } if (parameterValue instanceof RegExp) { return logs.filter((log) => { return parameterValue.test(log[parameterName]) }) } throw new InvalidArgumentError(`${parameterName} parameter should be one of string, regexp, undefined or null`) } } function computeUrlWithMaybeSearchParameters (requestInit) { // path can contains query url parameters // or query can contains query url parameters try { const url = new URL(requestInit.path, requestInit.origin) // requestInit.path contains query url parameters // requestInit.query is then undefined if (url.search.length !== 0) { return url } // requestInit.query can be populated here url.search = new URLSearchParams(requestInit.query).toString() return url } catch (error) { throw new InvalidArgumentError('An error occurred when computing MockCallHistoryLog.url', { cause: error }) } } class MockCallHistoryLog { constructor (requestInit = {}) { this.body = requestInit.body this.headers = requestInit.headers this.method = requestInit.method const url = computeUrlWithMaybeSearchParameters(requestInit) this.fullUrl = url.toString() this.origin = url.origin this.path = url.pathname this.searchParams = Object.fromEntries(url.searchParams) this.protocol = url.protocol this.host = url.host this.port = url.port this.hash = url.hash } toMap () { return new Map([ ['protocol', this.protocol], ['host', this.host], ['port', this.port], ['origin', this.origin], ['path', this.path], ['hash', this.hash], ['searchParams', this.searchParams], ['fullUrl', this.fullUrl], ['method', this.method], ['body', this.body], ['headers', this.headers]] ) } toString () { const options = { betweenKeyValueSeparator: '->', betweenPairSeparator: '|' } let result = '' this.toMap().forEach((value, key) => { if (typeof value === 'string' || value === undefined || value === null) { result = `${result}${key}${options.betweenKeyValueSeparator}${value}${options.betweenPairSeparator}` } if ((typeof value === 'object' && value !== null) || Array.isArray(value)) { result = `${result}${key}${options.betweenKeyValueSeparator}${JSON.stringify(value)}${options.betweenPairSeparator}` } // maybe miss something for non Record / Array headers and searchParams here }) // delete last betweenPairSeparator return result.slice(0, -1) } } class MockCallHistory { logs = [] calls () { return this.logs } firstCall () { return this.logs.at(0) } lastCall () { return this.logs.at(-1) } nthCall (number) { if (typeof number !== 'number') { throw new InvalidArgumentError('nthCall must be called with a number') } if (!Number.isInteger(number)) { throw new InvalidArgumentError('nthCall must be called with an integer') } if (Math.sign(number) !== 1) { throw new InvalidArgumentError('nthCall must be called with a positive value. use firstCall or lastCall instead') } // non zero based index. this is more human readable return this.logs.at(number - 1) } filterCalls (criteria, options) { // perf if (this.logs.length === 0) { return this.logs } if (typeof criteria === 'function') { return this.logs.filter(criteria) } if (criteria instanceof RegExp) { return this.logs.filter((log) => { return criteria.test(log.toString()) }) } if (typeof criteria === 'object' && criteria !== null) { // no criteria - returning all logs if (Object.keys(criteria).length === 0) { return this.logs } const finalOptions = { operator: 'OR', ...buildAndValidateFilterCallsOptions(options) } let maybeDuplicatedLogsFiltered = finalOptions.operator === 'AND' ? this.logs : [] if ('protocol' in criteria) { maybeDuplicatedLogsFiltered = handleFilterCallsWithOptions(criteria.protocol, finalOptions, this.filterCallsByProtocol, maybeDuplicatedLogsFiltered, this.logs) } if ('host' in criteria) { maybeDuplicatedLogsFiltered = handleFilterCallsWithOptions(criteria.host, finalOptions, this.filterCallsByHost, maybeDuplicatedLogsFiltered, this.logs) } if ('port' in criteria) { maybeDuplicatedLogsFiltered = handleFilterCallsWithOptions(criteria.port, finalOptions, this.filterCallsByPort, maybeDuplicatedLogsFiltered, this.logs) } if ('origin' in criteria) { maybeDuplicatedLogsFiltered = handleFilterCallsWithOptions(criteria.origin, finalOptions, this.filterCallsByOrigin, maybeDuplicatedLogsFiltered, this.logs) } if ('path' in criteria) { maybeDuplicatedLogsFiltered = handleFilterCallsWithOptions(criteria.path, finalOptions, this.filterCallsByPath, maybeDuplicatedLogsFiltered, this.logs) } if ('hash' in criteria) { maybeDuplicatedLogsFiltered = handleFilterCallsWithOptions(criteria.hash, finalOptions, this.filterCallsByHash, maybeDuplicatedLogsFiltered, this.logs) } if ('fullUrl' in criteria) { maybeDuplicatedLogsFiltered = handleFilterCallsWithOptions(criteria.fullUrl, finalOptions, this.filterCallsByFullUrl, maybeDuplicatedLogsFiltered, this.logs) } if ('method' in criteria) { maybeDuplicatedLogsFiltered = handleFilterCallsWithOptions(criteria.method, finalOptions, this.filterCallsByMethod, maybeDuplicatedLogsFiltered, this.logs) } const uniqLogsFiltered = [...new Set(maybeDuplicatedLogsFiltered)] return uniqLogsFiltered } throw new InvalidArgumentError('criteria parameter should be one of function, regexp, or object') } filterCallsByProtocol = makeFilterCalls.call(this, 'protocol') filterCallsByHost = makeFilterCalls.call(this, 'host') filterCallsByPort = makeFilterCalls.call(this, 'port') filterCallsByOrigin = makeFilterCalls.call(this, 'origin') filterCallsByPath = makeFilterCalls.call(this, 'path') filterCallsByHash = makeFilterCalls.call(this, 'hash') filterCallsByFullUrl = makeFilterCalls.call(this, 'fullUrl') filterCallsByMethod = makeFilterCalls.call(this, 'method') clear () { this.logs = [] } [kMockCallHistoryAddLog] (requestInit) { const log = new MockCallHistoryLog(requestInit) this.logs.push(log) return log } * [Symbol.iterator] () { for (const log of this.calls()) { yield log } } } module.exports.MockCallHistory = MockCallHistory module.exports.MockCallHistoryLog = MockCallHistoryLog /***/ }), /***/ 47365: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { promisify } = __nccwpck_require__(57975) const Client = __nccwpck_require__(23701) const { buildMockDispatch } = __nccwpck_require__(53397) const { kDispatches, kMockAgent, kClose, kOriginalClose, kOrigin, kOriginalDispatch, kConnected, kIgnoreTrailingSlash } = __nccwpck_require__(91117) const { MockInterceptor } = __nccwpck_require__(31511) const Symbols = __nccwpck_require__(36443) const { InvalidArgumentError } = __nccwpck_require__(68707) /** * MockClient provides an API that extends the Client to influence the mockDispatches. */ class MockClient extends Client { constructor (origin, opts) { if (!opts || !opts.agent || typeof opts.agent.dispatch !== 'function') { throw new InvalidArgumentError('Argument opts.agent must implement Agent') } super(origin, opts) this[kMockAgent] = opts.agent this[kOrigin] = origin this[kIgnoreTrailingSlash] = opts.ignoreTrailingSlash ?? false this[kDispatches] = [] this[kConnected] = 1 this[kOriginalDispatch] = this.dispatch this[kOriginalClose] = this.close.bind(this) this.dispatch = buildMockDispatch.call(this) this.close = this[kClose] } get [Symbols.kConnected] () { return this[kConnected] } /** * Sets up the base interceptor for mocking replies from undici. */ intercept (opts) { return new MockInterceptor( opts && { ignoreTrailingSlash: this[kIgnoreTrailingSlash], ...opts }, this[kDispatches] ) } cleanMocks () { this[kDispatches] = [] } async [kClose] () { await promisify(this[kOriginalClose])() this[kConnected] = 0 this[kMockAgent][Symbols.kClients].delete(this[kOrigin]) } } module.exports = MockClient /***/ }), /***/ 52429: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { UndiciError } = __nccwpck_require__(68707) const kMockNotMatchedError = Symbol.for('undici.error.UND_MOCK_ERR_MOCK_NOT_MATCHED') /** * The request does not match any registered mock dispatches. */ class MockNotMatchedError extends UndiciError { constructor (message) { super(message) this.name = 'MockNotMatchedError' this.message = message || 'The request does not match any registered mock dispatches' this.code = 'UND_MOCK_ERR_MOCK_NOT_MATCHED' } static [Symbol.hasInstance] (instance) { return instance && instance[kMockNotMatchedError] === true } get [kMockNotMatchedError] () { return true } } module.exports = { MockNotMatchedError } /***/ }), /***/ 31511: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { getResponseData, buildKey, addMockDispatch } = __nccwpck_require__(53397) const { kDispatches, kDispatchKey, kDefaultHeaders, kDefaultTrailers, kContentLength, kMockDispatch, kIgnoreTrailingSlash } = __nccwpck_require__(91117) const { InvalidArgumentError } = __nccwpck_require__(68707) const { serializePathWithQuery } = __nccwpck_require__(3440) /** * Defines the scope API for an interceptor reply */ class MockScope { constructor (mockDispatch) { this[kMockDispatch] = mockDispatch } /** * Delay a reply by a set amount in ms. */ delay (waitInMs) { if (typeof waitInMs !== 'number' || !Number.isInteger(waitInMs) || waitInMs <= 0) { throw new InvalidArgumentError('waitInMs must be a valid integer > 0') } this[kMockDispatch].delay = waitInMs return this } /** * For a defined reply, never mark as consumed. */ persist () { this[kMockDispatch].persist = true return this } /** * Allow one to define a reply for a set amount of matching requests. */ times (repeatTimes) { if (typeof repeatTimes !== 'number' || !Number.isInteger(repeatTimes) || repeatTimes <= 0) { throw new InvalidArgumentError('repeatTimes must be a valid integer > 0') } this[kMockDispatch].times = repeatTimes return this } } /** * Defines an interceptor for a Mock */ class MockInterceptor { constructor (opts, mockDispatches) { if (typeof opts !== 'object') { throw new InvalidArgumentError('opts must be an object') } if (typeof opts.path === 'undefined') { throw new InvalidArgumentError('opts.path must be defined') } if (typeof opts.method === 'undefined') { opts.method = 'GET' } // See https://github.com/nodejs/undici/issues/1245 // As per RFC 3986, clients are not supposed to send URI // fragments to servers when they retrieve a document, if (typeof opts.path === 'string') { if (opts.query) { opts.path = serializePathWithQuery(opts.path, opts.query) } else { // Matches https://github.com/nodejs/undici/blob/main/lib/web/fetch/index.js#L1811 const parsedURL = new URL(opts.path, 'data://') opts.path = parsedURL.pathname + parsedURL.search } } if (typeof opts.method === 'string') { opts.method = opts.method.toUpperCase() } this[kDispatchKey] = buildKey(opts) this[kDispatches] = mockDispatches this[kIgnoreTrailingSlash] = opts.ignoreTrailingSlash ?? false this[kDefaultHeaders] = {} this[kDefaultTrailers] = {} this[kContentLength] = false } createMockScopeDispatchData ({ statusCode, data, responseOptions }) { const responseData = getResponseData(data) const contentLength = this[kContentLength] ? { 'content-length': responseData.length } : {} const headers = { ...this[kDefaultHeaders], ...contentLength, ...responseOptions.headers } const trailers = { ...this[kDefaultTrailers], ...responseOptions.trailers } return { statusCode, data, headers, trailers } } validateReplyParameters (replyParameters) { if (typeof replyParameters.statusCode === 'undefined') { throw new InvalidArgumentError('statusCode must be defined') } if (typeof replyParameters.responseOptions !== 'object' || replyParameters.responseOptions === null) { throw new InvalidArgumentError('responseOptions must be an object') } } /** * Mock an undici request with a defined reply. */ reply (replyOptionsCallbackOrStatusCode) { // Values of reply aren't available right now as they // can only be available when the reply callback is invoked. if (typeof replyOptionsCallbackOrStatusCode === 'function') { // We'll first wrap the provided callback in another function, // this function will properly resolve the data from the callback // when invoked. const wrappedDefaultsCallback = (opts) => { // Our reply options callback contains the parameter for statusCode, data and options. const resolvedData = replyOptionsCallbackOrStatusCode(opts) // Check if it is in the right format if (typeof resolvedData !== 'object' || resolvedData === null) { throw new InvalidArgumentError('reply options callback must return an object') } const replyParameters = { data: '', responseOptions: {}, ...resolvedData } this.validateReplyParameters(replyParameters) // Since the values can be obtained immediately we return them // from this higher order function that will be resolved later. return { ...this.createMockScopeDispatchData(replyParameters) } } // Add usual dispatch data, but this time set the data parameter to function that will eventually provide data. const newMockDispatch = addMockDispatch(this[kDispatches], this[kDispatchKey], wrappedDefaultsCallback, { ignoreTrailingSlash: this[kIgnoreTrailingSlash] }) return new MockScope(newMockDispatch) } // We can have either one or three parameters, if we get here, // we should have 1-3 parameters. So we spread the arguments of // this function to obtain the parameters, since replyData will always // just be the statusCode. const replyParameters = { statusCode: replyOptionsCallbackOrStatusCode, data: arguments[1] === undefined ? '' : arguments[1], responseOptions: arguments[2] === undefined ? {} : arguments[2] } this.validateReplyParameters(replyParameters) // Send in-already provided data like usual const dispatchData = this.createMockScopeDispatchData(replyParameters) const newMockDispatch = addMockDispatch(this[kDispatches], this[kDispatchKey], dispatchData, { ignoreTrailingSlash: this[kIgnoreTrailingSlash] }) return new MockScope(newMockDispatch) } /** * Mock an undici request with a defined error. */ replyWithError (error) { if (typeof error === 'undefined') { throw new InvalidArgumentError('error must be defined') } const newMockDispatch = addMockDispatch(this[kDispatches], this[kDispatchKey], { error }, { ignoreTrailingSlash: this[kIgnoreTrailingSlash] }) return new MockScope(newMockDispatch) } /** * Set default reply headers on the interceptor for subsequent replies */ defaultReplyHeaders (headers) { if (typeof headers === 'undefined') { throw new InvalidArgumentError('headers must be defined') } this[kDefaultHeaders] = headers return this } /** * Set default reply trailers on the interceptor for subsequent replies */ defaultReplyTrailers (trailers) { if (typeof trailers === 'undefined') { throw new InvalidArgumentError('trailers must be defined') } this[kDefaultTrailers] = trailers return this } /** * Set reply content length header for replies on the interceptor */ replyContentLength () { this[kContentLength] = true return this } } module.exports.MockInterceptor = MockInterceptor module.exports.MockScope = MockScope /***/ }), /***/ 94004: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { promisify } = __nccwpck_require__(57975) const Pool = __nccwpck_require__(30628) const { buildMockDispatch } = __nccwpck_require__(53397) const { kDispatches, kMockAgent, kClose, kOriginalClose, kOrigin, kOriginalDispatch, kConnected, kIgnoreTrailingSlash } = __nccwpck_require__(91117) const { MockInterceptor } = __nccwpck_require__(31511) const Symbols = __nccwpck_require__(36443) const { InvalidArgumentError } = __nccwpck_require__(68707) /** * MockPool provides an API that extends the Pool to influence the mockDispatches. */ class MockPool extends Pool { constructor (origin, opts) { if (!opts || !opts.agent || typeof opts.agent.dispatch !== 'function') { throw new InvalidArgumentError('Argument opts.agent must implement Agent') } super(origin, opts) this[kMockAgent] = opts.agent this[kOrigin] = origin this[kIgnoreTrailingSlash] = opts.ignoreTrailingSlash ?? false this[kDispatches] = [] this[kConnected] = 1 this[kOriginalDispatch] = this.dispatch this[kOriginalClose] = this.close.bind(this) this.dispatch = buildMockDispatch.call(this) this.close = this[kClose] } get [Symbols.kConnected] () { return this[kConnected] } /** * Sets up the base interceptor for mocking replies from undici. */ intercept (opts) { return new MockInterceptor( opts && { ignoreTrailingSlash: this[kIgnoreTrailingSlash], ...opts }, this[kDispatches] ) } cleanMocks () { this[kDispatches] = [] } async [kClose] () { await promisify(this[kOriginalClose])() this[kConnected] = 0 this[kMockAgent][Symbols.kClients].delete(this[kOrigin]) } } module.exports = MockPool /***/ }), /***/ 91117: /***/ ((module) => { "use strict"; module.exports = { kAgent: Symbol('agent'), kOptions: Symbol('options'), kFactory: Symbol('factory'), kDispatches: Symbol('dispatches'), kDispatchKey: Symbol('dispatch key'), kDefaultHeaders: Symbol('default headers'), kDefaultTrailers: Symbol('default trailers'), kContentLength: Symbol('content length'), kMockAgent: Symbol('mock agent'), kMockAgentSet: Symbol('mock agent set'), kMockAgentGet: Symbol('mock agent get'), kMockDispatch: Symbol('mock dispatch'), kClose: Symbol('close'), kOriginalClose: Symbol('original agent close'), kOriginalDispatch: Symbol('original dispatch'), kOrigin: Symbol('origin'), kIsMockActive: Symbol('is mock active'), kNetConnect: Symbol('net connect'), kGetNetConnect: Symbol('get net connect'), kConnected: Symbol('connected'), kIgnoreTrailingSlash: Symbol('ignore trailing slash'), kMockAgentMockCallHistoryInstance: Symbol('mock agent mock call history name'), kMockAgentRegisterCallHistory: Symbol('mock agent register mock call history'), kMockAgentAddCallHistoryLog: Symbol('mock agent add call history log'), kMockAgentIsCallHistoryEnabled: Symbol('mock agent is call history enabled'), kMockAgentAcceptsNonStandardSearchParameters: Symbol('mock agent accepts non standard search parameters'), kMockCallHistoryAddLog: Symbol('mock call history add log'), kTotalDispatchCount: Symbol('total dispatch count') } /***/ }), /***/ 53397: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { MockNotMatchedError } = __nccwpck_require__(52429) const { kDispatches, kMockAgent, kOriginalDispatch, kOrigin, kGetNetConnect, kTotalDispatchCount } = __nccwpck_require__(91117) const { serializePathWithQuery } = __nccwpck_require__(3440) const { STATUS_CODES } = __nccwpck_require__(37067) const { types: { isPromise } } = __nccwpck_require__(57975) const { InvalidArgumentError } = __nccwpck_require__(68707) function matchValue (match, value) { if (typeof match === 'string') { return match === value } if (match instanceof RegExp) { return match.test(value) } if (typeof match === 'function') { return match(value) === true } return false } function lowerCaseEntries (headers) { return Object.fromEntries( Object.entries(headers).map(([headerName, headerValue]) => { return [headerName.toLocaleLowerCase(), headerValue] }) ) } /** * @param {import('../../index').Headers|string[]|Record} headers * @param {string} key */ function getHeaderByName (headers, key) { if (Array.isArray(headers)) { for (let i = 0; i < headers.length; i += 2) { if (headers[i].toLocaleLowerCase() === key.toLocaleLowerCase()) { return headers[i + 1] } } return undefined } else if (typeof headers.get === 'function') { return headers.get(key) } else { return lowerCaseEntries(headers)[key.toLocaleLowerCase()] } } /** @param {string[]} headers */ function buildHeadersFromArray (headers) { // fetch HeadersList const clone = headers.slice() const entries = [] for (let index = 0; index < clone.length; index += 2) { entries.push([clone[index], clone[index + 1]]) } return Object.fromEntries(entries) } function matchHeaders (mockDispatch, headers) { if (typeof mockDispatch.headers === 'function') { if (Array.isArray(headers)) { // fetch HeadersList headers = buildHeadersFromArray(headers) } return mockDispatch.headers(headers ? lowerCaseEntries(headers) : {}) } if (typeof mockDispatch.headers === 'undefined') { return true } if (typeof headers !== 'object' || typeof mockDispatch.headers !== 'object') { return false } for (const [matchHeaderName, matchHeaderValue] of Object.entries(mockDispatch.headers)) { const headerValue = getHeaderByName(headers, matchHeaderName) if (!matchValue(matchHeaderValue, headerValue)) { return false } } return true } function normalizeSearchParams (query) { if (typeof query !== 'string') { return query } const originalQp = new URLSearchParams(query) const normalizedQp = new URLSearchParams() for (let [key, value] of originalQp.entries()) { key = key.replace('[]', '') const valueRepresentsString = /^(['"]).*\1$/.test(value) if (valueRepresentsString) { normalizedQp.append(key, value) continue } if (value.includes(',')) { const values = value.split(',') for (const v of values) { normalizedQp.append(key, v) } continue } normalizedQp.append(key, value) } return normalizedQp } function safeUrl (path) { if (typeof path !== 'string') { return path } const pathSegments = path.split('?', 3) if (pathSegments.length !== 2) { return path } const qp = new URLSearchParams(pathSegments.pop()) qp.sort() return [...pathSegments, qp.toString()].join('?') } function matchKey (mockDispatch, { path, method, body, headers }) { const pathMatch = matchValue(mockDispatch.path, path) const methodMatch = matchValue(mockDispatch.method, method) const bodyMatch = typeof mockDispatch.body !== 'undefined' ? matchValue(mockDispatch.body, body) : true const headersMatch = matchHeaders(mockDispatch, headers) return pathMatch && methodMatch && bodyMatch && headersMatch } function getResponseData (data) { if (Buffer.isBuffer(data)) { return data } else if (data instanceof Uint8Array) { return data } else if (data instanceof ArrayBuffer) { return data } else if (typeof data === 'object') { return JSON.stringify(data) } else if (data) { return data.toString() } else { return '' } } function getMockDispatch (mockDispatches, key) { const basePath = key.query ? serializePathWithQuery(key.path, key.query) : key.path const resolvedPath = typeof basePath === 'string' ? safeUrl(basePath) : basePath const resolvedPathWithoutTrailingSlash = removeTrailingSlash(resolvedPath) // Match path let matchedMockDispatches = mockDispatches .filter(({ consumed }) => !consumed) .filter(({ path, ignoreTrailingSlash }) => { return ignoreTrailingSlash ? matchValue(removeTrailingSlash(safeUrl(path)), resolvedPathWithoutTrailingSlash) : matchValue(safeUrl(path), resolvedPath) }) if (matchedMockDispatches.length === 0) { throw new MockNotMatchedError(`Mock dispatch not matched for path '${resolvedPath}'`) } // Match method matchedMockDispatches = matchedMockDispatches.filter(({ method }) => matchValue(method, key.method)) if (matchedMockDispatches.length === 0) { throw new MockNotMatchedError(`Mock dispatch not matched for method '${key.method}' on path '${resolvedPath}'`) } // Match body matchedMockDispatches = matchedMockDispatches.filter(({ body }) => typeof body !== 'undefined' ? matchValue(body, key.body) : true) if (matchedMockDispatches.length === 0) { throw new MockNotMatchedError(`Mock dispatch not matched for body '${key.body}' on path '${resolvedPath}'`) } // Match headers matchedMockDispatches = matchedMockDispatches.filter((mockDispatch) => matchHeaders(mockDispatch, key.headers)) if (matchedMockDispatches.length === 0) { const headers = typeof key.headers === 'object' ? JSON.stringify(key.headers) : key.headers throw new MockNotMatchedError(`Mock dispatch not matched for headers '${headers}' on path '${resolvedPath}'`) } return matchedMockDispatches[0] } function addMockDispatch (mockDispatches, key, data, opts) { const baseData = { timesInvoked: 0, times: 1, persist: false, consumed: false, ...opts } const replyData = typeof data === 'function' ? { callback: data } : { ...data } const newMockDispatch = { ...baseData, ...key, pending: true, data: { error: null, ...replyData } } mockDispatches.push(newMockDispatch) // Track total number of intercepts ever registered for better error messages mockDispatches[kTotalDispatchCount] = (mockDispatches[kTotalDispatchCount] || 0) + 1 return newMockDispatch } function deleteMockDispatch (mockDispatches, key) { const index = mockDispatches.findIndex(dispatch => { if (!dispatch.consumed) { return false } return matchKey(dispatch, key) }) if (index !== -1) { mockDispatches.splice(index, 1) } } /** * @param {string} path Path to remove trailing slash from */ function removeTrailingSlash (path) { while (path.endsWith('/')) { path = path.slice(0, -1) } if (path.length === 0) { path = '/' } return path } function buildKey (opts) { const { path, method, body, headers, query } = opts return { path, method, body, headers, query } } function generateKeyValues (data) { const keys = Object.keys(data) const result = [] for (let i = 0; i < keys.length; ++i) { const key = keys[i] const value = data[key] const name = Buffer.from(`${key}`) if (Array.isArray(value)) { for (let j = 0; j < value.length; ++j) { result.push(name, Buffer.from(`${value[j]}`)) } } else { result.push(name, Buffer.from(`${value}`)) } } return result } /** * @see https://developer.mozilla.org/en-US/docs/Web/HTTP/Status * @param {number} statusCode */ function getStatusText (statusCode) { return STATUS_CODES[statusCode] || 'unknown' } async function getResponse (body) { const buffers = [] for await (const data of body) { buffers.push(data) } return Buffer.concat(buffers).toString('utf8') } /** * Mock dispatch function used to simulate undici dispatches */ function mockDispatch (opts, handler) { // Get mock dispatch from built key const key = buildKey(opts) const mockDispatch = getMockDispatch(this[kDispatches], key) mockDispatch.timesInvoked++ // Here's where we resolve a callback if a callback is present for the dispatch data. if (mockDispatch.data.callback) { mockDispatch.data = { ...mockDispatch.data, ...mockDispatch.data.callback(opts) } } // Parse mockDispatch data const { data: { statusCode, data, headers, trailers, error }, delay, persist } = mockDispatch const { timesInvoked, times } = mockDispatch // If it's used up and not persistent, mark as consumed mockDispatch.consumed = !persist && timesInvoked >= times mockDispatch.pending = timesInvoked < times // If specified, trigger dispatch error if (error !== null) { deleteMockDispatch(this[kDispatches], key) handler.onError(error) return true } // Track whether the request has been aborted let aborted = false let timer = null function abort (err) { if (aborted) { return } aborted = true // Clear the pending delayed response if any if (timer !== null) { clearTimeout(timer) timer = null } // Notify the handler of the abort handler.onError(err) } // Call onConnect to allow the handler to register the abort callback handler.onConnect?.(abort, null) // Handle the request with a delay if necessary if (typeof delay === 'number' && delay > 0) { timer = setTimeout(() => { timer = null handleReply(this[kDispatches]) }, delay) } else { handleReply(this[kDispatches]) } function handleReply (mockDispatches, _data = data) { // Don't send response if the request was aborted if (aborted) { return } // fetch's HeadersList is a 1D string array const optsHeaders = Array.isArray(opts.headers) ? buildHeadersFromArray(opts.headers) : opts.headers const body = typeof _data === 'function' ? _data({ ...opts, headers: optsHeaders }) : _data // util.types.isPromise is likely needed for jest. if (isPromise(body)) { // If handleReply is asynchronous, throwing an error // in the callback will reject the promise, rather than // synchronously throw the error, which breaks some tests. // Rather, we wait for the callback to resolve if it is a // promise, and then re-run handleReply with the new body. return body.then((newData) => handleReply(mockDispatches, newData)) } // Check again if aborted after async body resolution if (aborted) { return } const responseData = getResponseData(body) const responseHeaders = generateKeyValues(headers) const responseTrailers = generateKeyValues(trailers) handler.onHeaders?.(statusCode, responseHeaders, resume, getStatusText(statusCode)) handler.onData?.(Buffer.from(responseData)) handler.onComplete?.(responseTrailers) deleteMockDispatch(mockDispatches, key) } function resume () {} return true } function buildMockDispatch () { const agent = this[kMockAgent] const origin = this[kOrigin] const originalDispatch = this[kOriginalDispatch] return function dispatch (opts, handler) { if (agent.isMockActive) { try { mockDispatch.call(this, opts, handler) } catch (error) { if (error.code === 'UND_MOCK_ERR_MOCK_NOT_MATCHED') { const netConnect = agent[kGetNetConnect]() const totalInterceptsCount = this[kDispatches][kTotalDispatchCount] || this[kDispatches].length const pendingInterceptsCount = this[kDispatches].filter(({ consumed }) => !consumed).length const interceptsMessage = `, ${pendingInterceptsCount} interceptor(s) remaining out of ${totalInterceptsCount} defined` if (netConnect === false) { throw new MockNotMatchedError(`${error.message}: subsequent request to origin ${origin} was not allowed (net.connect disabled)${interceptsMessage}`) } if (checkNetConnect(netConnect, origin)) { originalDispatch.call(this, opts, handler) } else { throw new MockNotMatchedError(`${error.message}: subsequent request to origin ${origin} was not allowed (net.connect is not enabled for this origin)${interceptsMessage}`) } } else { throw error } } } else { originalDispatch.call(this, opts, handler) } } } function checkNetConnect (netConnect, origin) { const url = new URL(origin) if (netConnect === true) { return true } else if (Array.isArray(netConnect) && netConnect.some((matcher) => matchValue(matcher, url.host))) { return true } return false } function normalizeOrigin (origin) { if (typeof origin !== 'string' && !(origin instanceof URL)) { return origin } if (origin instanceof URL) { return origin.origin } return origin.toLowerCase() } function buildAndValidateMockOptions (opts) { const { agent, ...mockOptions } = opts if ('enableCallHistory' in mockOptions && typeof mockOptions.enableCallHistory !== 'boolean') { throw new InvalidArgumentError('options.enableCallHistory must to be a boolean') } if ('acceptNonStandardSearchParameters' in mockOptions && typeof mockOptions.acceptNonStandardSearchParameters !== 'boolean') { throw new InvalidArgumentError('options.acceptNonStandardSearchParameters must to be a boolean') } if ('ignoreTrailingSlash' in mockOptions && typeof mockOptions.ignoreTrailingSlash !== 'boolean') { throw new InvalidArgumentError('options.ignoreTrailingSlash must to be a boolean') } return mockOptions } module.exports = { getResponseData, getMockDispatch, addMockDispatch, deleteMockDispatch, buildKey, generateKeyValues, matchValue, getResponse, getStatusText, mockDispatch, buildMockDispatch, checkNetConnect, buildAndValidateMockOptions, getHeaderByName, buildHeadersFromArray, normalizeSearchParams, normalizeOrigin } /***/ }), /***/ 56142: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { Transform } = __nccwpck_require__(57075) const { Console } = __nccwpck_require__(37540) const PERSISTENT = process.versions.icu ? '✅' : 'Y ' const NOT_PERSISTENT = process.versions.icu ? '❌' : 'N ' /** * Gets the output of `console.table(…)` as a string. */ module.exports = class PendingInterceptorsFormatter { constructor ({ disableColors } = {}) { this.transform = new Transform({ transform (chunk, _enc, cb) { cb(null, chunk) } }) this.logger = new Console({ stdout: this.transform, inspectOptions: { colors: !disableColors && !process.env.CI } }) } format (pendingInterceptors) { const withPrettyHeaders = pendingInterceptors.map( ({ method, path, data: { statusCode }, persist, times, timesInvoked, origin }) => ({ Method: method, Origin: origin, Path: path, 'Status code': statusCode, Persistent: persist ? PERSISTENT : NOT_PERSISTENT, Invocations: timesInvoked, Remaining: persist ? Infinity : times - timesInvoked })) this.logger.table(withPrettyHeaders) return this.transform.read().toString() } } /***/ }), /***/ 55095: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const Agent = __nccwpck_require__(57405) const MockAgent = __nccwpck_require__(47501) const { SnapshotRecorder } = __nccwpck_require__(13766) const WrapHandler = __nccwpck_require__(99510) const { InvalidArgumentError, UndiciError } = __nccwpck_require__(68707) const { validateSnapshotMode } = __nccwpck_require__(9683) const kSnapshotRecorder = Symbol('kSnapshotRecorder') const kSnapshotMode = Symbol('kSnapshotMode') const kSnapshotPath = Symbol('kSnapshotPath') const kSnapshotLoaded = Symbol('kSnapshotLoaded') const kRealAgent = Symbol('kRealAgent') // Static flag to ensure warning is only emitted once per process let warningEmitted = false class SnapshotAgent extends MockAgent { constructor (opts = {}) { // Emit experimental warning only once if (!warningEmitted) { process.emitWarning( 'SnapshotAgent is experimental and subject to change', 'ExperimentalWarning' ) warningEmitted = true } const { mode = 'record', snapshotPath = null, ...mockAgentOpts } = opts super(mockAgentOpts) validateSnapshotMode(mode) // Validate snapshotPath is provided when required if ((mode === 'playback' || mode === 'update') && !snapshotPath) { throw new InvalidArgumentError(`snapshotPath is required when mode is '${mode}'`) } this[kSnapshotMode] = mode this[kSnapshotPath] = snapshotPath this[kSnapshotRecorder] = new SnapshotRecorder({ snapshotPath: this[kSnapshotPath], mode: this[kSnapshotMode], maxSnapshots: opts.maxSnapshots, autoFlush: opts.autoFlush, flushInterval: opts.flushInterval, matchHeaders: opts.matchHeaders, ignoreHeaders: opts.ignoreHeaders, excludeHeaders: opts.excludeHeaders, matchBody: opts.matchBody, matchQuery: opts.matchQuery, caseSensitive: opts.caseSensitive, shouldRecord: opts.shouldRecord, shouldPlayback: opts.shouldPlayback, excludeUrls: opts.excludeUrls }) this[kSnapshotLoaded] = false // For recording/update mode, we need a real agent to make actual requests // For playback mode, we need a real agent if there are excluded URLs if (this[kSnapshotMode] === 'record' || this[kSnapshotMode] === 'update' || (this[kSnapshotMode] === 'playback' && opts.excludeUrls && opts.excludeUrls.length > 0)) { this[kRealAgent] = new Agent(opts) } // Auto-load snapshots in playback/update mode if ((this[kSnapshotMode] === 'playback' || this[kSnapshotMode] === 'update') && this[kSnapshotPath]) { this.loadSnapshots().catch(() => { // Ignore load errors - file might not exist yet }) } } dispatch (opts, handler) { handler = WrapHandler.wrap(handler) const mode = this[kSnapshotMode] // Check if URL should be excluded (pass through without mocking/recording) if (this[kSnapshotRecorder].isUrlExcluded(opts)) { // Real agent is guaranteed by constructor when excludeUrls is configured return this[kRealAgent].dispatch(opts, handler) } if (mode === 'playback' || mode === 'update') { // Ensure snapshots are loaded if (!this[kSnapshotLoaded]) { // Need to load asynchronously, delegate to async version return this.#asyncDispatch(opts, handler) } // Try to find existing snapshot (synchronous) const snapshot = this[kSnapshotRecorder].findSnapshot(opts) if (snapshot) { // Use recorded response (synchronous) return this.#replaySnapshot(snapshot, handler) } else if (mode === 'update') { // Make real request and record it (async required) return this.#recordAndReplay(opts, handler) } else { // Playback mode but no snapshot found const error = new UndiciError(`No snapshot found for ${opts.method || 'GET'} ${opts.path}`) if (handler.onError) { handler.onError(error) return } throw error } } else if (mode === 'record') { // Record mode - make real request and save response (async required) return this.#recordAndReplay(opts, handler) } } /** * Async version of dispatch for when we need to load snapshots first */ async #asyncDispatch (opts, handler) { await this.loadSnapshots() return this.dispatch(opts, handler) } /** * Records a real request and replays the response */ #recordAndReplay (opts, handler) { const responseData = { statusCode: null, headers: {}, trailers: {}, body: [] } const self = this // Capture 'this' context for use within nested handler callbacks const recordingHandler = { onRequestStart (controller, context) { return handler.onRequestStart(controller, { ...context, history: this.history }) }, onRequestUpgrade (controller, statusCode, headers, socket) { return handler.onRequestUpgrade(controller, statusCode, headers, socket) }, onResponseStart (controller, statusCode, headers, statusMessage) { responseData.statusCode = statusCode responseData.headers = headers return handler.onResponseStart(controller, statusCode, headers, statusMessage) }, onResponseData (controller, chunk) { responseData.body.push(chunk) return handler.onResponseData(controller, chunk) }, onResponseEnd (controller, trailers) { responseData.trailers = trailers // Record the interaction using captured 'self' context (fire and forget) const responseBody = Buffer.concat(responseData.body) self[kSnapshotRecorder].record(opts, { statusCode: responseData.statusCode, headers: responseData.headers, body: responseBody, trailers: responseData.trailers }) .then(() => handler.onResponseEnd(controller, trailers)) .catch((error) => handler.onResponseError(controller, error)) } } // Use composed agent if available (includes interceptors), otherwise use real agent const agent = this[kRealAgent] return agent.dispatch(opts, recordingHandler) } /** * Replays a recorded response * * @param {Object} snapshot - The recorded snapshot to replay. * @param {Object} handler - The handler to call with the response data. * @returns {void} */ #replaySnapshot (snapshot, handler) { try { const { response } = snapshot const controller = { pause () { }, resume () { }, abort (reason) { this.aborted = true this.reason = reason }, aborted: false, paused: false } handler.onRequestStart(controller) handler.onResponseStart(controller, response.statusCode, response.headers) // Body is always stored as base64 string const body = Buffer.from(response.body, 'base64') handler.onResponseData(controller, body) handler.onResponseEnd(controller, response.trailers) } catch (error) { handler.onError?.(error) } } /** * Loads snapshots from file * * @param {string} [filePath] - Optional file path to load snapshots from. * @returns {Promise} - Resolves when snapshots are loaded. */ async loadSnapshots (filePath) { await this[kSnapshotRecorder].loadSnapshots(filePath || this[kSnapshotPath]) this[kSnapshotLoaded] = true // In playback mode, set up MockAgent interceptors for all snapshots if (this[kSnapshotMode] === 'playback') { this.#setupMockInterceptors() } } /** * Saves snapshots to file * * @param {string} [filePath] - Optional file path to save snapshots to. * @returns {Promise} - Resolves when snapshots are saved. */ async saveSnapshots (filePath) { return this[kSnapshotRecorder].saveSnapshots(filePath || this[kSnapshotPath]) } /** * Sets up MockAgent interceptors based on recorded snapshots. * * This method creates MockAgent interceptors for each recorded snapshot, * allowing the SnapshotAgent to fall back to MockAgent's standard intercept * mechanism in playback mode. Each interceptor is configured to persist * (remain active for multiple requests) and responds with the recorded * response data. * * Called automatically when loading snapshots in playback mode. * * @returns {void} */ #setupMockInterceptors () { for (const snapshot of this[kSnapshotRecorder].getSnapshots()) { const { request, responses, response } = snapshot const url = new URL(request.url) const mockPool = this.get(url.origin) // Handle both new format (responses array) and legacy format (response object) const responseData = responses ? responses[0] : response if (!responseData) continue mockPool.intercept({ path: url.pathname + url.search, method: request.method, headers: request.headers, body: request.body }).reply(responseData.statusCode, responseData.body, { headers: responseData.headers, trailers: responseData.trailers }).persist() } } /** * Gets the snapshot recorder * @return {SnapshotRecorder} - The snapshot recorder instance */ getRecorder () { return this[kSnapshotRecorder] } /** * Gets the current mode * @return {import('./snapshot-utils').SnapshotMode} - The current snapshot mode */ getMode () { return this[kSnapshotMode] } /** * Clears all snapshots * @returns {void} */ clearSnapshots () { this[kSnapshotRecorder].clear() } /** * Resets call counts for all snapshots (useful for test cleanup) * @returns {void} */ resetCallCounts () { this[kSnapshotRecorder].resetCallCounts() } /** * Deletes a specific snapshot by request options * @param {import('./snapshot-recorder').SnapshotRequestOptions} requestOpts - Request options to identify the snapshot * @return {Promise} - Returns true if the snapshot was deleted, false if not found */ deleteSnapshot (requestOpts) { return this[kSnapshotRecorder].deleteSnapshot(requestOpts) } /** * Gets information about a specific snapshot * @returns {import('./snapshot-recorder').SnapshotInfo|null} - Snapshot information or null if not found */ getSnapshotInfo (requestOpts) { return this[kSnapshotRecorder].getSnapshotInfo(requestOpts) } /** * Replaces all snapshots with new data (full replacement) * @param {Array<{hash: string; snapshot: import('./snapshot-recorder').SnapshotEntryshotEntry}>|Record} snapshotData - New snapshot data to replace existing snapshots * @returns {void} */ replaceSnapshots (snapshotData) { this[kSnapshotRecorder].replaceSnapshots(snapshotData) } /** * Closes the agent, saving snapshots and cleaning up resources. * * @returns {Promise} */ async close () { await this[kSnapshotRecorder].close() await this[kRealAgent]?.close() await super.close() } } module.exports = SnapshotAgent /***/ }), /***/ 13766: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { writeFile, readFile, mkdir } = __nccwpck_require__(51455) const { dirname, resolve } = __nccwpck_require__(76760) const { setTimeout, clearTimeout } = __nccwpck_require__(87997) const { InvalidArgumentError, UndiciError } = __nccwpck_require__(68707) const { hashId, isUrlExcludedFactory, normalizeHeaders, createHeaderFilters } = __nccwpck_require__(9683) /** * @typedef {Object} SnapshotRequestOptions * @property {string} method - HTTP method (e.g. 'GET', 'POST', etc.) * @property {string} path - Request path * @property {string} origin - Request origin (base URL) * @property {import('./snapshot-utils').Headers|import('./snapshot-utils').UndiciHeaders} headers - Request headers * @property {import('./snapshot-utils').NormalizedHeaders} _normalizedHeaders - Request headers as a lowercase object * @property {string|Buffer} [body] - Request body (optional) */ /** * @typedef {Object} SnapshotEntryRequest * @property {string} method - HTTP method (e.g. 'GET', 'POST', etc.) * @property {string} url - Full URL of the request * @property {import('./snapshot-utils').NormalizedHeaders} headers - Normalized headers as a lowercase object * @property {string|Buffer} [body] - Request body (optional) */ /** * @typedef {Object} SnapshotEntryResponse * @property {number} statusCode - HTTP status code of the response * @property {import('./snapshot-utils').NormalizedHeaders} headers - Normalized response headers as a lowercase object * @property {string} body - Response body as a base64url encoded string * @property {Object} [trailers] - Optional response trailers */ /** * @typedef {Object} SnapshotEntry * @property {SnapshotEntryRequest} request - The request object * @property {Array} responses - Array of response objects * @property {number} callCount - Number of times this snapshot has been called * @property {string} timestamp - ISO timestamp of when the snapshot was created */ /** * @typedef {Object} SnapshotRecorderMatchOptions * @property {Array} [matchHeaders=[]] - Headers to match (empty array means match all headers) * @property {Array} [ignoreHeaders=[]] - Headers to ignore for matching * @property {Array} [excludeHeaders=[]] - Headers to exclude from matching * @property {boolean} [matchBody=true] - Whether to match request body * @property {boolean} [matchQuery=true] - Whether to match query properties * @property {boolean} [caseSensitive=false] - Whether header matching is case-sensitive */ /** * @typedef {Object} SnapshotRecorderOptions * @property {string} [snapshotPath] - Path to save/load snapshots * @property {import('./snapshot-utils').SnapshotMode} [mode='record'] - Mode: 'record' or 'playback' * @property {number} [maxSnapshots=Infinity] - Maximum number of snapshots to keep * @property {boolean} [autoFlush=false] - Whether to automatically flush snapshots to disk * @property {number} [flushInterval=30000] - Auto-flush interval in milliseconds (default: 30 seconds) * @property {Array} [excludeUrls=[]] - URLs to exclude from recording * @property {function} [shouldRecord=null] - Function to filter requests for recording * @property {function} [shouldPlayback=null] - Function to filter requests */ /** * @typedef {Object} SnapshotFormattedRequest * @property {string} method - HTTP method (e.g. 'GET', 'POST', etc.) * @property {string} url - Full URL of the request (with query parameters if matchQuery is true) * @property {import('./snapshot-utils').NormalizedHeaders} headers - Normalized headers as a lowercase object * @property {string} body - Request body (optional, only if matchBody is true) */ /** * @typedef {Object} SnapshotInfo * @property {string} hash - Hash key for the snapshot * @property {SnapshotEntryRequest} request - The request object * @property {number} responseCount - Number of responses recorded for this request * @property {number} callCount - Number of times this snapshot has been called * @property {string} timestamp - ISO timestamp of when the snapshot was created */ /** * Formats a request for consistent snapshot storage * Caches normalized headers to avoid repeated processing * * @param {SnapshotRequestOptions} opts - Request options * @param {import('./snapshot-utils').HeaderFilters} headerFilters - Cached header sets for performance * @param {SnapshotRecorderMatchOptions} [matchOptions] - Matching options for headers and body * @returns {SnapshotFormattedRequest} - Formatted request object */ function formatRequestKey (opts, headerFilters, matchOptions = {}) { const url = new URL(opts.path, opts.origin) // Cache normalized headers if not already done const normalized = opts._normalizedHeaders || normalizeHeaders(opts.headers) if (!opts._normalizedHeaders) { opts._normalizedHeaders = normalized } return { method: opts.method || 'GET', url: matchOptions.matchQuery !== false ? url.toString() : `${url.origin}${url.pathname}`, headers: filterHeadersForMatching(normalized, headerFilters, matchOptions), body: matchOptions.matchBody !== false && opts.body ? String(opts.body) : '' } } /** * Filters headers based on matching configuration * * @param {import('./snapshot-utils').Headers} headers - Headers to filter * @param {import('./snapshot-utils').HeaderFilters} headerFilters - Cached sets for ignore, exclude, and match headers * @param {SnapshotRecorderMatchOptions} [matchOptions] - Matching options for headers */ function filterHeadersForMatching (headers, headerFilters, matchOptions = {}) { if (!headers || typeof headers !== 'object') return {} const { caseSensitive = false } = matchOptions const filtered = {} const { ignore, exclude, match } = headerFilters for (const [key, value] of Object.entries(headers)) { const headerKey = caseSensitive ? key : key.toLowerCase() // Skip if in exclude list (for security) if (exclude.has(headerKey)) continue // Skip if in ignore list (for matching) if (ignore.has(headerKey)) continue // If matchHeaders is specified, only include those headers if (match.size !== 0) { if (!match.has(headerKey)) continue } filtered[headerKey] = value } return filtered } /** * Filters headers for storage (only excludes sensitive headers) * * @param {import('./snapshot-utils').Headers} headers - Headers to filter * @param {import('./snapshot-utils').HeaderFilters} headerFilters - Cached sets for ignore, exclude, and match headers * @param {SnapshotRecorderMatchOptions} [matchOptions] - Matching options for headers */ function filterHeadersForStorage (headers, headerFilters, matchOptions = {}) { if (!headers || typeof headers !== 'object') return {} const { caseSensitive = false } = matchOptions const filtered = {} const { exclude: excludeSet } = headerFilters for (const [key, value] of Object.entries(headers)) { const headerKey = caseSensitive ? key : key.toLowerCase() // Skip if in exclude list (for security) if (excludeSet.has(headerKey)) continue filtered[headerKey] = value } return filtered } /** * Creates a hash key for request matching * Properly orders headers to avoid conflicts and uses crypto hashing when available * * @param {SnapshotFormattedRequest} formattedRequest - Request object * @returns {string} - Base64url encoded hash of the request */ function createRequestHash (formattedRequest) { const parts = [ formattedRequest.method, formattedRequest.url ] // Process headers in a deterministic way to avoid conflicts if (formattedRequest.headers && typeof formattedRequest.headers === 'object') { const headerKeys = Object.keys(formattedRequest.headers).sort() for (const key of headerKeys) { const values = Array.isArray(formattedRequest.headers[key]) ? formattedRequest.headers[key] : [formattedRequest.headers[key]] // Add header name parts.push(key) // Add all values for this header, sorted for consistency for (const value of values.sort()) { parts.push(String(value)) } } } // Add body parts.push(formattedRequest.body) const content = parts.join('|') return hashId(content) } class SnapshotRecorder { /** @type {NodeJS.Timeout | null} */ #flushTimeout /** @type {import('./snapshot-utils').IsUrlExcluded} */ #isUrlExcluded /** @type {Map} */ #snapshots = new Map() /** @type {string|undefined} */ #snapshotPath /** @type {number} */ #maxSnapshots = Infinity /** @type {boolean} */ #autoFlush = false /** @type {import('./snapshot-utils').HeaderFilters} */ #headerFilters /** * Creates a new SnapshotRecorder instance * @param {SnapshotRecorderOptions&SnapshotRecorderMatchOptions} [options={}] - Configuration options for the recorder */ constructor (options = {}) { this.#snapshotPath = options.snapshotPath this.#maxSnapshots = options.maxSnapshots || Infinity this.#autoFlush = options.autoFlush || false this.flushInterval = options.flushInterval || 30000 // 30 seconds default this._flushTimer = null // Matching configuration /** @type {Required} */ this.matchOptions = { matchHeaders: options.matchHeaders || [], // empty means match all headers ignoreHeaders: options.ignoreHeaders || [], excludeHeaders: options.excludeHeaders || [], matchBody: options.matchBody !== false, // default: true matchQuery: options.matchQuery !== false, // default: true caseSensitive: options.caseSensitive || false } // Cache processed header sets to avoid recreating them on every request this.#headerFilters = createHeaderFilters(this.matchOptions) // Request filtering callbacks this.shouldRecord = options.shouldRecord || (() => true) // function(requestOpts) -> boolean this.shouldPlayback = options.shouldPlayback || (() => true) // function(requestOpts) -> boolean // URL pattern filtering this.#isUrlExcluded = isUrlExcludedFactory(options.excludeUrls) // Array of regex patterns or strings // Start auto-flush timer if enabled if (this.#autoFlush && this.#snapshotPath) { this.#startAutoFlush() } } /** * Records a request-response interaction * @param {SnapshotRequestOptions} requestOpts - Request options * @param {SnapshotEntryResponse} response - Response data to record * @return {Promise} - Resolves when the recording is complete */ async record (requestOpts, response) { // Check if recording should be filtered out if (!this.shouldRecord(requestOpts)) { return // Skip recording } // Check URL exclusion patterns if (this.isUrlExcluded(requestOpts)) { return // Skip recording } const request = formatRequestKey(requestOpts, this.#headerFilters, this.matchOptions) const hash = createRequestHash(request) // Extract response data - always store body as base64 const normalizedHeaders = normalizeHeaders(response.headers) /** @type {SnapshotEntryResponse} */ const responseData = { statusCode: response.statusCode, headers: filterHeadersForStorage(normalizedHeaders, this.#headerFilters, this.matchOptions), body: Buffer.isBuffer(response.body) ? response.body.toString('base64') : Buffer.from(String(response.body || '')).toString('base64'), trailers: response.trailers } // Remove oldest snapshot if we exceed maxSnapshots limit if (this.#snapshots.size >= this.#maxSnapshots && !this.#snapshots.has(hash)) { const oldestKey = this.#snapshots.keys().next().value this.#snapshots.delete(oldestKey) } // Support sequential responses - if snapshot exists, add to responses array const existingSnapshot = this.#snapshots.get(hash) if (existingSnapshot && existingSnapshot.responses) { existingSnapshot.responses.push(responseData) existingSnapshot.timestamp = new Date().toISOString() } else { this.#snapshots.set(hash, { request, responses: [responseData], // Always store as array for consistency callCount: 0, timestamp: new Date().toISOString() }) } // Auto-flush if enabled if (this.#autoFlush && this.#snapshotPath) { this.#scheduleFlush() } } /** * Checks if a URL should be excluded from recording/playback * @param {SnapshotRequestOptions} requestOpts - Request options to check * @returns {boolean} - True if URL is excluded */ isUrlExcluded (requestOpts) { const url = new URL(requestOpts.path, requestOpts.origin).toString() return this.#isUrlExcluded(url) } /** * Finds a matching snapshot for the given request * Returns the appropriate response based on call count for sequential responses * * @param {SnapshotRequestOptions} requestOpts - Request options to match * @returns {SnapshotEntry&Record<'response', SnapshotEntryResponse>|undefined} - Matching snapshot response or undefined if not found */ findSnapshot (requestOpts) { // Check if playback should be filtered out if (!this.shouldPlayback(requestOpts)) { return undefined // Skip playback } // Check URL exclusion patterns if (this.isUrlExcluded(requestOpts)) { return undefined // Skip playback } const request = formatRequestKey(requestOpts, this.#headerFilters, this.matchOptions) const hash = createRequestHash(request) const snapshot = this.#snapshots.get(hash) if (!snapshot) return undefined // Handle sequential responses const currentCallCount = snapshot.callCount || 0 const responseIndex = Math.min(currentCallCount, snapshot.responses.length - 1) snapshot.callCount = currentCallCount + 1 return { ...snapshot, response: snapshot.responses[responseIndex] } } /** * Loads snapshots from file * @param {string} [filePath] - Optional file path to load snapshots from * @return {Promise} - Resolves when snapshots are loaded */ async loadSnapshots (filePath) { const path = filePath || this.#snapshotPath if (!path) { throw new InvalidArgumentError('Snapshot path is required') } try { const data = await readFile(resolve(path), 'utf8') const parsed = JSON.parse(data) // Convert array format back to Map if (Array.isArray(parsed)) { this.#snapshots.clear() for (const { hash, snapshot } of parsed) { this.#snapshots.set(hash, snapshot) } } else { // Legacy object format this.#snapshots = new Map(Object.entries(parsed)) } } catch (error) { if (error.code === 'ENOENT') { // File doesn't exist yet - that's ok for recording mode this.#snapshots.clear() } else { throw new UndiciError(`Failed to load snapshots from ${path}`, { cause: error }) } } } /** * Saves snapshots to file * * @param {string} [filePath] - Optional file path to save snapshots * @returns {Promise} - Resolves when snapshots are saved */ async saveSnapshots (filePath) { const path = filePath || this.#snapshotPath if (!path) { throw new InvalidArgumentError('Snapshot path is required') } const resolvedPath = resolve(path) // Ensure directory exists await mkdir(dirname(resolvedPath), { recursive: true }) // Convert Map to serializable format const data = Array.from(this.#snapshots.entries()).map(([hash, snapshot]) => ({ hash, snapshot })) await writeFile(resolvedPath, JSON.stringify(data, null, 2), { flush: true }) } /** * Clears all recorded snapshots * @returns {void} */ clear () { this.#snapshots.clear() } /** * Gets all recorded snapshots * @return {Array} - Array of all recorded snapshots */ getSnapshots () { return Array.from(this.#snapshots.values()) } /** * Gets snapshot count * @return {number} - Number of recorded snapshots */ size () { return this.#snapshots.size } /** * Resets call counts for all snapshots (useful for test cleanup) * @returns {void} */ resetCallCounts () { for (const snapshot of this.#snapshots.values()) { snapshot.callCount = 0 } } /** * Deletes a specific snapshot by request options * @param {SnapshotRequestOptions} requestOpts - Request options to match * @returns {boolean} - True if snapshot was deleted, false if not found */ deleteSnapshot (requestOpts) { const request = formatRequestKey(requestOpts, this.#headerFilters, this.matchOptions) const hash = createRequestHash(request) return this.#snapshots.delete(hash) } /** * Gets information about a specific snapshot * @param {SnapshotRequestOptions} requestOpts - Request options to match * @returns {SnapshotInfo|null} - Snapshot information or null if not found */ getSnapshotInfo (requestOpts) { const request = formatRequestKey(requestOpts, this.#headerFilters, this.matchOptions) const hash = createRequestHash(request) const snapshot = this.#snapshots.get(hash) if (!snapshot) return null return { hash, request: snapshot.request, responseCount: snapshot.responses ? snapshot.responses.length : (snapshot.response ? 1 : 0), // .response for legacy snapshots callCount: snapshot.callCount || 0, timestamp: snapshot.timestamp } } /** * Replaces all snapshots with new data (full replacement) * @param {Array<{hash: string; snapshot: SnapshotEntry}>|Record} snapshotData - New snapshot data to replace existing ones * @returns {void} */ replaceSnapshots (snapshotData) { this.#snapshots.clear() if (Array.isArray(snapshotData)) { for (const { hash, snapshot } of snapshotData) { this.#snapshots.set(hash, snapshot) } } else if (snapshotData && typeof snapshotData === 'object') { // Legacy object format this.#snapshots = new Map(Object.entries(snapshotData)) } } /** * Starts the auto-flush timer * @returns {void} */ #startAutoFlush () { return this.#scheduleFlush() } /** * Stops the auto-flush timer * @returns {void} */ #stopAutoFlush () { if (this.#flushTimeout) { clearTimeout(this.#flushTimeout) // Ensure any pending flush is completed this.saveSnapshots().catch(() => { // Ignore flush errors }) this.#flushTimeout = null } } /** * Schedules a flush (debounced to avoid excessive writes) */ #scheduleFlush () { this.#flushTimeout = setTimeout(() => { this.saveSnapshots().catch(() => { // Ignore flush errors }) if (this.#autoFlush) { this.#flushTimeout?.refresh() } else { this.#flushTimeout = null } }, 1000) // 1 second debounce } /** * Cleanup method to stop timers * @returns {void} */ destroy () { this.#stopAutoFlush() if (this.#flushTimeout) { clearTimeout(this.#flushTimeout) this.#flushTimeout = null } } /** * Async close method that saves all recordings and performs cleanup * @returns {Promise} */ async close () { // Save any pending recordings if we have a snapshot path if (this.#snapshotPath && this.#snapshots.size !== 0) { await this.saveSnapshots() } // Perform cleanup this.destroy() } } module.exports = { SnapshotRecorder, formatRequestKey, createRequestHash, filterHeadersForMatching, filterHeadersForStorage, createHeaderFilters } /***/ }), /***/ 9683: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { InvalidArgumentError } = __nccwpck_require__(68707) const { runtimeFeatures } = __nccwpck_require__(313) /** * @typedef {Object} HeaderFilters * @property {Set} ignore - Set of headers to ignore for matching * @property {Set} exclude - Set of headers to exclude from matching * @property {Set} match - Set of headers to match (empty means match */ /** * Creates cached header sets for performance * * @param {import('./snapshot-recorder').SnapshotRecorderMatchOptions} matchOptions - Matching options for headers * @returns {HeaderFilters} - Cached sets for ignore, exclude, and match headers */ function createHeaderFilters (matchOptions = {}) { const { ignoreHeaders = [], excludeHeaders = [], matchHeaders = [], caseSensitive = false } = matchOptions return { ignore: new Set(ignoreHeaders.map(header => caseSensitive ? header : header.toLowerCase())), exclude: new Set(excludeHeaders.map(header => caseSensitive ? header : header.toLowerCase())), match: new Set(matchHeaders.map(header => caseSensitive ? header : header.toLowerCase())) } } const crypto = runtimeFeatures.has('crypto') ? __nccwpck_require__(77598) : null /** * @callback HashIdFunction * @param {string} value - The value to hash * @returns {string} - The base64url encoded hash of the value */ /** * Generates a hash for a given value * @type {HashIdFunction} */ const hashId = crypto?.hash ? (value) => crypto.hash('sha256', value, 'base64url') : (value) => Buffer.from(value).toString('base64url') /** * @typedef {(url: string) => boolean} IsUrlExcluded Checks if a URL matches any of the exclude patterns */ /** @typedef {{[key: Lowercase]: string}} NormalizedHeaders */ /** @typedef {Array} UndiciHeaders */ /** @typedef {Record} Headers */ /** * @param {*} headers * @returns {headers is UndiciHeaders} */ function isUndiciHeaders (headers) { return Array.isArray(headers) && (headers.length & 1) === 0 } /** * Factory function to create a URL exclusion checker * @param {Array} [excludePatterns=[]] - Array of patterns to exclude * @returns {IsUrlExcluded} - A function that checks if a URL matches any of the exclude patterns */ function isUrlExcludedFactory (excludePatterns = []) { if (excludePatterns.length === 0) { return () => false } return function isUrlExcluded (url) { let urlLowerCased for (const pattern of excludePatterns) { if (typeof pattern === 'string') { if (!urlLowerCased) { // Convert URL to lowercase only once urlLowerCased = url.toLowerCase() } // Simple string match (case-insensitive) if (urlLowerCased.includes(pattern.toLowerCase())) { return true } } else if (pattern instanceof RegExp) { // Regex pattern match if (pattern.test(url)) { return true } } } return false } } /** * Normalizes headers for consistent comparison * * @param {Object|UndiciHeaders} headers - Headers to normalize * @returns {NormalizedHeaders} - Normalized headers as a lowercase object */ function normalizeHeaders (headers) { /** @type {NormalizedHeaders} */ const normalizedHeaders = {} if (!headers) return normalizedHeaders // Handle array format (undici internal format: [name, value, name, value, ...]) if (isUndiciHeaders(headers)) { for (let i = 0; i < headers.length; i += 2) { const key = headers[i] const value = headers[i + 1] if (key && value !== undefined) { // Convert Buffers to strings if needed const keyStr = Buffer.isBuffer(key) ? key.toString() : key const valueStr = Buffer.isBuffer(value) ? value.toString() : value normalizedHeaders[keyStr.toLowerCase()] = valueStr } } return normalizedHeaders } // Handle object format if (headers && typeof headers === 'object') { for (const [key, value] of Object.entries(headers)) { if (key && typeof key === 'string') { normalizedHeaders[key.toLowerCase()] = Array.isArray(value) ? value.join(', ') : String(value) } } } return normalizedHeaders } const validSnapshotModes = /** @type {const} */ (['record', 'playback', 'update']) /** @typedef {typeof validSnapshotModes[number]} SnapshotMode */ /** * @param {*} mode - The snapshot mode to validate * @returns {asserts mode is SnapshotMode} */ function validateSnapshotMode (mode) { if (!validSnapshotModes.includes(mode)) { throw new InvalidArgumentError(`Invalid snapshot mode: ${mode}. Must be one of: ${validSnapshotModes.join(', ')}`) } } module.exports = { createHeaderFilters, hashId, isUndiciHeaders, normalizeHeaders, isUrlExcludedFactory, validateSnapshotMode } /***/ }), /***/ 47659: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { safeHTTPMethods, pathHasQueryOrFragment, hasSafeIterator, isValidHTTPToken } = __nccwpck_require__(3440) const { serializePathWithQuery } = __nccwpck_require__(3440) const MAX_DELTA_SECONDS = 2147483647 const RESTRICTIVE_DIRECTIVE_NAMES = ['no-store', 'private', 'no-cache'] const kInvalidCacheControlDirectives = Symbol('invalid cache-control directives') function trimOWS (value) { return value.replace(/^[\t ]+|[\t ]+$/g, '') } function arrayIncludes (array, value) { for (let i = 0; i < array.length; i++) { if (array[i] === value) { return true } } return false } function trimOWSStart (value) { return value.replace(/^[\t ]+/, '') } function trimOWSEnd (value) { return value.replace(/[\t ]+$/, '') } function findUnescapedQuote (value, start) { let escaped = false for (let i = start; i < value.length; i++) { if (escaped) { escaped = false } else if (value[i] === '\\') { escaped = true } else if (value[i] === '"') { return i } } return -1 } function splitCacheControlHeaderValue (value) { const directives = [] let start = 0 let quoteStart = -1 let inQuote = false let escaped = false for (let i = 0; i < value.length; i++) { if (inQuote) { if (escaped) { escaped = false } else if (value[i] === '\\') { escaped = true } else if (value[i] === '"') { inQuote = false quoteStart = -1 } } else if (value[i] === '"') { inQuote = true quoteStart = i } else if (value[i] === ',') { directives.push({ value: value.substring(start, i), fromMalformedQuote: false }) start = i + 1 } } if (!inQuote) { directives.push({ value: value.substring(start), fromMalformedQuote: false }) return directives } const tail = value.substring(start) const quoteOffset = quoteStart - start let tailStart = 0 for (let i = 0; i < tail.length; i++) { if (tail[i] === ',') { directives.push({ value: tail.substring(tailStart, i), fromMalformedQuote: tailStart > quoteOffset }) tailStart = i + 1 } } directives.push({ value: tail.substring(tailStart), fromMalformedQuote: tailStart > quoteOffset }) return directives } function markInvalidCacheControlDirective (directives, key) { let invalidDirectives = directives[kInvalidCacheControlDirectives] if (invalidDirectives === undefined) { invalidDirectives = new Set() Object.defineProperty(directives, kInvalidCacheControlDirectives, { value: invalidDirectives }) } invalidDirectives.add(key) } function hasInvalidCacheControlDirective (directives, key) { return directives[kInvalidCacheControlDirectives]?.has(key) === true } function getMalformedRestrictiveDirectiveName (key) { for (const directiveName of RESTRICTIVE_DIRECTIVE_NAMES) { if ( key.startsWith(directiveName) && key.length > directiveName.length && !isValidHTTPToken(key[directiveName.length]) ) { return directiveName } } let tokenOnlyKey = '' let hasInvalidTokenChar = false for (let i = 0; i < key.length; i++) { if (isValidHTTPToken(key[i])) { tokenOnlyKey += key[i] } else { hasInvalidTokenChar = true } } if (hasInvalidTokenChar && arrayIncludes(RESTRICTIVE_DIRECTIVE_NAMES, tokenOnlyKey)) { return tokenOnlyKey } } /** * @param {import('../../types/dispatcher.d.ts').default.DispatchOptions} opts */ function makeCacheKey (opts) { if (!opts.origin) { throw new Error('opts.origin is undefined') } let fullPath = opts.path || '/' if (opts.query && !pathHasQueryOrFragment(fullPath)) { fullPath = serializePathWithQuery(fullPath, opts.query) } return { origin: opts.origin.toString(), method: opts.method, path: fullPath, headers: opts.headers } } function appendHeader (headers, key, val) { const headerName = key.toLowerCase() const current = headers[headerName] const values = Array.isArray(val) ? val : [val] if (current === undefined) { headers[headerName] = Array.isArray(val) ? val.slice() : val } else if (Array.isArray(current)) { current.push(...values) } else { headers[headerName] = [current, ...values] } } /** * @param {Record} * @returns {Record} */ function normalizeHeaders (opts) { let headers if (opts.headers == null) { headers = {} } else if (typeof opts.headers === 'object') { headers = {} if (hasSafeIterator(opts.headers)) { for (const x of opts.headers) { if (!Array.isArray(x)) { throw new Error('opts.headers is not a valid header map') } const [key, val] = x if (typeof key !== 'string' || typeof val !== 'string') { throw new Error('opts.headers is not a valid header map') } appendHeader(headers, key, val) } } else { for (const key of Object.keys(opts.headers)) { appendHeader(headers, key, opts.headers[key]) } } } else { throw new Error('opts.headers is not an object') } return headers } /** * @param {any} key */ function assertCacheKey (key) { if (typeof key !== 'object') { throw new TypeError(`expected key to be object, got ${typeof key}`) } for (const property of ['origin', 'method', 'path']) { if (typeof key[property] !== 'string') { throw new TypeError(`expected key.${property} to be string, got ${typeof key[property]}`) } } if (key.headers !== undefined && typeof key.headers !== 'object') { throw new TypeError(`expected headers to be object, got ${typeof key}`) } } /** * @param {any} value */ function assertCacheValue (value) { if (typeof value !== 'object') { throw new TypeError(`expected value to be object, got ${typeof value}`) } for (const property of ['statusCode', 'cachedAt', 'staleAt', 'deleteAt']) { if (typeof value[property] !== 'number') { throw new TypeError(`expected value.${property} to be number, got ${typeof value[property]}`) } } if (typeof value.statusMessage !== 'string') { throw new TypeError(`expected value.statusMessage to be string, got ${typeof value.statusMessage}`) } if (value.headers != null && typeof value.headers !== 'object') { throw new TypeError(`expected value.rawHeaders to be object, got ${typeof value.headers}`) } if (value.vary !== undefined && typeof value.vary !== 'object') { throw new TypeError(`expected value.vary to be object, got ${typeof value.vary}`) } if (value.etag !== undefined && typeof value.etag !== 'string') { throw new TypeError(`expected value.etag to be string, got ${typeof value.etag}`) } } /** * @see https://www.rfc-editor.org/rfc/rfc9111.html#name-cache-control * @see https://www.iana.org/assignments/http-cache-directives/http-cache-directives.xhtml * @param {string | string[]} header * @returns {import('../../types/cache-interceptor.d.ts').default.CacheControlDirectives} */ function parseCacheControlHeader (header) { /** * @type {import('../../types/cache-interceptor.d.ts').default.CacheControlDirectives} */ const output = {} const invalidNumericDirectives = new Set() const invalidNoArgumentDirectives = new Set() const directives = splitCacheControlHeaderValue(Array.isArray(header) ? header.join(',') : header) for (let i = 0; i < directives.length; i++) { const directiveRecord = directives[i] const directive = directiveRecord.value.toLowerCase() const fromMalformedQuote = directiveRecord.fromMalformedQuote const keyValueDelimiter = directive.indexOf('=') let key let value let keyHasTrailingWhitespace = false let valueHasLeadingWhitespace = false if (keyValueDelimiter !== -1) { const rawKey = directive.substring(0, keyValueDelimiter) const rawValue = directive.substring(keyValueDelimiter + 1) keyHasTrailingWhitespace = trimOWSEnd(rawKey) !== rawKey valueHasLeadingWhitespace = trimOWSStart(rawValue) !== rawValue key = trimOWS(rawKey) value = trimOWSStart(rawValue) } else { key = trimOWS(directive) } const malformedRestrictiveDirectiveName = getMalformedRestrictiveDirectiveName(key) if (malformedRestrictiveDirectiveName !== undefined) { output[malformedRestrictiveDirectiveName] = true continue } switch (key) { case 'min-fresh': case 'max-stale': case 'max-age': case 's-maxage': case 'stale-while-revalidate': case 'stale-if-error': { if (fromMalformedQuote || invalidNumericDirectives.has(key)) { continue } if (value === undefined || keyHasTrailingWhitespace || valueHasLeadingWhitespace) { delete output[key] invalidNumericDirectives.add(key) markInvalidCacheControlDirective(output, key) continue } if ( value.length >= 2 && value[0] === '"' && value[value.length - 1] === '"' ) { value = value.substring(1, value.length - 1) } if (!/^[0-9]+$/.test(value)) { delete output[key] invalidNumericDirectives.add(key) markInvalidCacheControlDirective(output, key) continue } const parsedValue = Math.min(parseInt(value, 10), MAX_DELTA_SECONDS) if (key === 'min-fresh') { if (!(key in output) || output[key] < parsedValue) { output[key] = parsedValue } } else if (!(key in output) || output[key] > parsedValue) { output[key] = parsedValue } break } case 'private': case 'no-cache': { if (fromMalformedQuote) { output[key] = true break } if (value !== undefined && value.length === 0) { output[key] = true break } if (value) { // The private and no-cache directives can be unqualified (aka just // `private` or `no-cache`) or qualified (w/ a value). When they're // qualified, it's a list of headers like `no-cache=header1`, // `no-cache="header1"`, or `no-cache="header1, header2"` // If we're given multiple headers, the comma messes us up since // we split the full header by commas. So, let's loop through the // remaining parts in front of us until we find one that contains a // closing quote. We can then skip the consumed quoted-list fragments and // continue parsing like normal. // https://www.rfc-editor.org/rfc/rfc9111.html#name-no-cache-2 if (value[0] === '"') { // Something like `no-cache="some-header"` OR `no-cache="some-header, another-header"`. value = trimOWSEnd(value) let fieldList = '' let lastQuotedPart = i let foundEndingQuote = false const closingQuote = findUnescapedQuote(value, 1) if (closingQuote !== -1) { fieldList = value.substring(1, closingQuote) foundEndingQuote = true } else { // Something like `no-cache="some-header, another-header"` // This can still be something invalid, e.g. `no-cache="some-header, ...` const fieldListParts = [value.substring(1)] for (let j = i + 1; j < directives.length; j++) { const nextPart = trimOWS(directives[j].value) const closingQuote = findUnescapedQuote(nextPart, 0) lastQuotedPart = j if (closingQuote !== -1) { fieldListParts.push(nextPart.substring(0, closingQuote)) foundEndingQuote = true break } fieldListParts.push(nextPart) } fieldList = fieldListParts.join(',') } if (!foundEndingQuote) { output[key] = true break } i = lastQuotedPart const headers = fieldList.split(',') let validFieldNames = true for (let j = 0; j < headers.length; j++) { headers[j] = trimOWS(headers[j]) if (!isValidHTTPToken(headers[j])) { validFieldNames = false } } if (!validFieldNames) { output[key] = true } else if (output[key] !== true) { if (key in output) { output[key] = output[key].concat(headers) } else { output[key] = headers } } } else { // Something like `no-cache=some-header` const fieldName = trimOWS(value) if (!isValidHTTPToken(fieldName)) { output[key] = true } else if (output[key] !== true) { if (key in output) { output[key] = output[key].concat(fieldName) } else { output[key] = [fieldName] } } } break } } // eslint-disable-next-line no-fallthrough case 'public': case 'must-revalidate': case 'proxy-revalidate': case 'immutable': case 'no-transform': case 'must-understand': case 'only-if-cached': if (fromMalformedQuote || invalidNoArgumentDirectives.has(key)) { continue } if (value !== undefined) { // These are qualified (something like `public=...`) when they aren't // allowed to be, skip all instances of the malformed directive. delete output[key] invalidNoArgumentDirectives.add(key) continue } output[key] = true break case 'no-store': output[key] = true break default: // Ignore unknown directives as per https://www.rfc-editor.org/rfc/rfc9111.html#section-5.2.3-1 continue } } return output } /** * @param {string | string[]} varyHeader Vary header from the server * @returns {string[]} */ function splitVaryHeader (varyHeader) { const values = Array.isArray(varyHeader) ? varyHeader : [varyHeader] const output = [] for (let i = 0; i < values.length; i++) { const parts = values[i].split(',') for (let j = 0; j < parts.length; j++) { output.push(parts[j]) } } return output } /** * @param {string | string[]} varyHeader Vary header from the server * @returns {boolean} */ function hasVaryStar (varyHeader) { const values = splitVaryHeader(varyHeader) for (let i = 0; i < values.length; i++) { if (trimOWS(values[i]).indexOf('*') !== -1) { return true } } return false } /** * @param {string | string[]} varyHeader Vary header from the server * @param {Record} headers Request headers * @returns {Record | undefined} */ function parseVaryHeader (varyHeader, headers) { if (hasVaryStar(varyHeader)) { return headers } const output = /** @type {Record} */ ({}) const varyingHeaders = splitVaryHeader(varyHeader) for (const header of varyingHeaders) { const trimmedHeader = trimOWS(header).toLowerCase() if (trimmedHeader.length === 0) { continue } if (!isValidHTTPToken(trimmedHeader)) { return undefined } const headerValue = headers[trimmedHeader] output[trimmedHeader] = Array.isArray(headerValue) ? headerValue.slice() : headerValue ?? null } return output } /** * @param {string | string[]} varyHeader Vary header from the server * @returns {boolean} */ function isInvalidOrWildcardVaryHeader (varyHeader) { return hasVaryStar(varyHeader) || parseVaryHeader(varyHeader, {}) === undefined } /** * Note: this deviates from the spec a little. Empty etags ("", W/"") are valid, * however, including them in cached resposnes serves little to no purpose. * * @see https://www.rfc-editor.org/rfc/rfc9110.html#name-etag * * @param {string} etag * @returns {boolean} */ function isEtagUsable (etag) { if (etag.length <= 2) { // Shortest an etag can be is two chars (just ""). This is where we deviate // from the spec requiring a min of 3 chars however return false } if (etag[0] === '"' && etag[etag.length - 1] === '"') { // ETag: ""asd123"" or ETag: "W/"asd123"", kinda undefined behavior in the // spec. Some servers will accept these while others don't. // ETag: "asd123" return !(etag[1] === '"' || etag.startsWith('"W/')) } if (etag.startsWith('W/"') && etag[etag.length - 1] === '"') { // ETag: W/"", also where we deviate from the spec & require a min of 3 // chars // ETag: for W/"", W/"asd123" return etag.length !== 4 } // Anything else return false } /** * @param {unknown} store * @returns {asserts store is import('../../types/cache-interceptor.d.ts').default.CacheStore} */ function assertCacheStore (store, name = 'CacheStore') { if (typeof store !== 'object' || store === null) { throw new TypeError(`expected type of ${name} to be a CacheStore, got ${store === null ? 'null' : typeof store}`) } for (const fn of ['get', 'createWriteStream', 'delete']) { if (typeof store[fn] !== 'function') { throw new TypeError(`${name} needs to have a \`${fn}()\` function`) } } } /** * @param {unknown} methods * @returns {asserts methods is import('../../types/cache-interceptor.d.ts').default.CacheMethods[]} */ function assertCacheMethods (methods, name = 'CacheMethods') { if (!Array.isArray(methods)) { throw new TypeError(`expected type of ${name} needs to be an array, got ${methods === null ? 'null' : typeof methods}`) } if (methods.length === 0) { throw new TypeError(`${name} needs to have at least one method`) } for (const method of methods) { if (!arrayIncludes(safeHTTPMethods, method)) { throw new TypeError(`element of ${name}-array needs to be one of following values: ${safeHTTPMethods.join(', ')}, got ${method}`) } } } /** * Creates a string key for request deduplication purposes. * This key is used to identify in-flight requests that can be shared. * @param {import('../../types/cache-interceptor.d.ts').default.CacheKey} cacheKey * @param {Set} [excludeHeaders] Set of lowercase header names to exclude from the key * @returns {string} */ function makeDeduplicationKey (cacheKey, excludeHeaders) { // Use JSON.stringify to produce a collision-resistant key. // Previous format used `:` and `=` delimiters without escaping, which // allowed different header sets to produce identical keys (e.g. // {a:"x:b=y"} vs {a:"x", b:"y"}). See: https://github.com/nodejs/undici/issues/5012 const headers = {} if (cacheKey.headers) { const sortedHeaders = Object.keys(cacheKey.headers).sort() for (const header of sortedHeaders) { // Skip excluded headers if (excludeHeaders?.has(header.toLowerCase())) { continue } headers[header] = cacheKey.headers[header] } } return JSON.stringify([cacheKey.origin, cacheKey.method, cacheKey.path, headers]) } module.exports = { makeCacheKey, normalizeHeaders, assertCacheKey, assertCacheValue, parseCacheControlHeader, hasInvalidCacheControlDirective, parseVaryHeader, hasVaryStar, isInvalidOrWildcardVaryHeader, isEtagUsable, assertCacheMethods, assertCacheStore, makeDeduplicationKey } /***/ }), /***/ 25453: /***/ ((module) => { "use strict"; /** * @see https://www.rfc-editor.org/rfc/rfc9110.html#name-date-time-formats * * @param {string} date * @returns {Date | undefined} */ function parseHttpDate (date) { // Sun, 06 Nov 1994 08:49:37 GMT ; IMF-fixdate // Sun Nov 6 08:49:37 1994 ; ANSI C's asctime() format // Sunday, 06-Nov-94 08:49:37 GMT ; obsolete RFC 850 format switch (date[3]) { case ',': return parseImfDate(date) case ' ': return parseAscTimeDate(date) default: return parseRfc850Date(date) } } function makeDate (year, monthIdx, day, hour, minute, second, weekday) { const result = new Date(Date.UTC(year, monthIdx, day, hour, minute, second)) // Date.UTC treats years 0-99 as 1900-1999. Reset the full year so component // checks below validate the HTTP date as written. if (year >= 0 && year <= 99) { result.setUTCFullYear(year) } return result.getUTCFullYear() === year && result.getUTCMonth() === monthIdx && result.getUTCDate() === day && result.getUTCHours() === hour && result.getUTCMinutes() === minute && result.getUTCSeconds() === second && result.getUTCDay() === weekday ? result : undefined } /** * @see https://httpwg.org/specs/rfc9110.html#preferred.date.format * * @param {string} date * @returns {Date | undefined} */ function parseImfDate (date) { if ( date.length !== 29 || date[4] !== ' ' || date[7] !== ' ' || date[11] !== ' ' || date[16] !== ' ' || date[19] !== ':' || date[22] !== ':' || date[25] !== ' ' || date[26] !== 'G' || date[27] !== 'M' || date[28] !== 'T' ) { return undefined } let weekday = -1 if (date[0] === 'S' && date[1] === 'u' && date[2] === 'n') { // Sunday weekday = 0 } else if (date[0] === 'M' && date[1] === 'o' && date[2] === 'n') { // Monday weekday = 1 } else if (date[0] === 'T' && date[1] === 'u' && date[2] === 'e') { // Tuesday weekday = 2 } else if (date[0] === 'W' && date[1] === 'e' && date[2] === 'd') { // Wednesday weekday = 3 } else if (date[0] === 'T' && date[1] === 'h' && date[2] === 'u') { // Thursday weekday = 4 } else if (date[0] === 'F' && date[1] === 'r' && date[2] === 'i') { // Friday weekday = 5 } else if (date[0] === 'S' && date[1] === 'a' && date[2] === 't') { // Saturday weekday = 6 } else { return undefined // Not a valid day of the week } let day = 0 if (date[5] === '0') { // Single digit day, e.g. "Sun Nov 6 08:49:37 1994" const code = date.charCodeAt(6) if (code < 49 || code > 57) { return undefined // Not a digit } day = code - 48 // Convert ASCII code to number } else { const code1 = date.charCodeAt(5) if (code1 < 49 || code1 > 51) { return undefined // Not a digit between 1 and 3 } const code2 = date.charCodeAt(6) if (code2 < 48 || code2 > 57) { return undefined // Not a digit } day = (code1 - 48) * 10 + (code2 - 48) // Convert ASCII codes to number } let monthIdx = -1 if ( (date[8] === 'J' && date[9] === 'a' && date[10] === 'n') ) { monthIdx = 0 // Jan } else if ( (date[8] === 'F' && date[9] === 'e' && date[10] === 'b') ) { monthIdx = 1 // Feb } else if ( (date[8] === 'M' && date[9] === 'a') ) { if (date[10] === 'r') { monthIdx = 2 // Mar } else if (date[10] === 'y') { monthIdx = 4 // May } else { return undefined // Invalid month } } else if ( (date[8] === 'J') ) { if (date[9] === 'a' && date[10] === 'n') { monthIdx = 0 // Jan } else if (date[9] === 'u') { if (date[10] === 'n') { monthIdx = 5 // Jun } else if (date[10] === 'l') { monthIdx = 6 // Jul } else { return undefined // Invalid month } } else { return undefined // Invalid month } } else if ( (date[8] === 'A') ) { if (date[9] === 'p' && date[10] === 'r') { monthIdx = 3 // Apr } else if (date[9] === 'u' && date[10] === 'g') { monthIdx = 7 // Aug } else { return undefined // Invalid month } } else if ( (date[8] === 'S' && date[9] === 'e' && date[10] === 'p') ) { monthIdx = 8 // Sep } else if ( (date[8] === 'O' && date[9] === 'c' && date[10] === 't') ) { monthIdx = 9 // Oct } else if ( (date[8] === 'N' && date[9] === 'o' && date[10] === 'v') ) { monthIdx = 10 // Nov } else if ( (date[8] === 'D' && date[9] === 'e' && date[10] === 'c') ) { monthIdx = 11 // Dec } else { // Not a valid month return undefined } const yearDigit1 = date.charCodeAt(12) if (yearDigit1 < 48 || yearDigit1 > 57) { return undefined // Not a digit } const yearDigit2 = date.charCodeAt(13) if (yearDigit2 < 48 || yearDigit2 > 57) { return undefined // Not a digit } const yearDigit3 = date.charCodeAt(14) if (yearDigit3 < 48 || yearDigit3 > 57) { return undefined // Not a digit } const yearDigit4 = date.charCodeAt(15) if (yearDigit4 < 48 || yearDigit4 > 57) { return undefined // Not a digit } const year = (yearDigit1 - 48) * 1000 + (yearDigit2 - 48) * 100 + (yearDigit3 - 48) * 10 + (yearDigit4 - 48) let hour = 0 if (date[17] === '0') { const code = date.charCodeAt(18) if (code < 48 || code > 57) { return undefined // Not a digit } hour = code - 48 // Convert ASCII code to number } else { const code1 = date.charCodeAt(17) if (code1 < 48 || code1 > 50) { return undefined // Not a digit between 0 and 2 } const code2 = date.charCodeAt(18) if (code2 < 48 || code2 > 57) { return undefined // Not a digit } if (code1 === 50 && code2 > 51) { return undefined // Hour cannot be greater than 23 } hour = (code1 - 48) * 10 + (code2 - 48) // Convert ASCII codes to number } let minute = 0 if (date[20] === '0') { const code = date.charCodeAt(21) if (code < 48 || code > 57) { return undefined // Not a digit } minute = code - 48 // Convert ASCII code to number } else { const code1 = date.charCodeAt(20) if (code1 < 48 || code1 > 53) { return undefined // Not a digit between 0 and 5 } const code2 = date.charCodeAt(21) if (code2 < 48 || code2 > 57) { return undefined // Not a digit } minute = (code1 - 48) * 10 + (code2 - 48) // Convert ASCII codes to number } let second = 0 if (date[23] === '0') { const code = date.charCodeAt(24) if (code < 48 || code > 57) { return undefined // Not a digit } second = code - 48 // Convert ASCII code to number } else { const code1 = date.charCodeAt(23) if (code1 < 48 || code1 > 53) { return undefined // Not a digit between 0 and 5 } const code2 = date.charCodeAt(24) if (code2 < 48 || code2 > 57) { return undefined // Not a digit } second = (code1 - 48) * 10 + (code2 - 48) // Convert ASCII codes to number } return makeDate(year, monthIdx, day, hour, minute, second, weekday) } /** * @see https://httpwg.org/specs/rfc9110.html#obsolete.date.formats * * @param {string} date * @returns {Date | undefined} */ function parseAscTimeDate (date) { // This is assumed to be in UTC if ( date.length !== 24 || date[7] !== ' ' || date[10] !== ' ' || date[19] !== ' ' ) { return undefined } let weekday = -1 if (date[0] === 'S' && date[1] === 'u' && date[2] === 'n') { // Sunday weekday = 0 } else if (date[0] === 'M' && date[1] === 'o' && date[2] === 'n') { // Monday weekday = 1 } else if (date[0] === 'T' && date[1] === 'u' && date[2] === 'e') { // Tuesday weekday = 2 } else if (date[0] === 'W' && date[1] === 'e' && date[2] === 'd') { // Wednesday weekday = 3 } else if (date[0] === 'T' && date[1] === 'h' && date[2] === 'u') { // Thursday weekday = 4 } else if (date[0] === 'F' && date[1] === 'r' && date[2] === 'i') { // Friday weekday = 5 } else if (date[0] === 'S' && date[1] === 'a' && date[2] === 't') { // Saturday weekday = 6 } else { return undefined // Not a valid day of the week } let monthIdx = -1 if ( (date[4] === 'J' && date[5] === 'a' && date[6] === 'n') ) { monthIdx = 0 // Jan } else if ( (date[4] === 'F' && date[5] === 'e' && date[6] === 'b') ) { monthIdx = 1 // Feb } else if ( (date[4] === 'M' && date[5] === 'a') ) { if (date[6] === 'r') { monthIdx = 2 // Mar } else if (date[6] === 'y') { monthIdx = 4 // May } else { return undefined // Invalid month } } else if ( (date[4] === 'J') ) { if (date[5] === 'a' && date[6] === 'n') { monthIdx = 0 // Jan } else if (date[5] === 'u') { if (date[6] === 'n') { monthIdx = 5 // Jun } else if (date[6] === 'l') { monthIdx = 6 // Jul } else { return undefined // Invalid month } } else { return undefined // Invalid month } } else if ( (date[4] === 'A') ) { if (date[5] === 'p' && date[6] === 'r') { monthIdx = 3 // Apr } else if (date[5] === 'u' && date[6] === 'g') { monthIdx = 7 // Aug } else { return undefined // Invalid month } } else if ( (date[4] === 'S' && date[5] === 'e' && date[6] === 'p') ) { monthIdx = 8 // Sep } else if ( (date[4] === 'O' && date[5] === 'c' && date[6] === 't') ) { monthIdx = 9 // Oct } else if ( (date[4] === 'N' && date[5] === 'o' && date[6] === 'v') ) { monthIdx = 10 // Nov } else if ( (date[4] === 'D' && date[5] === 'e' && date[6] === 'c') ) { monthIdx = 11 // Dec } else { // Not a valid month return undefined } let day = 0 if (date[8] === ' ') { // Single digit day, e.g. "Sun Nov 6 08:49:37 1994" const code = date.charCodeAt(9) if (code < 49 || code > 57) { return undefined // Not a digit } day = code - 48 // Convert ASCII code to number } else { const code1 = date.charCodeAt(8) if (code1 < 49 || code1 > 51) { return undefined // Not a digit between 1 and 3 } const code2 = date.charCodeAt(9) if (code2 < 48 || code2 > 57) { return undefined // Not a digit } day = (code1 - 48) * 10 + (code2 - 48) // Convert ASCII codes to number } let hour = 0 if (date[11] === '0') { const code = date.charCodeAt(12) if (code < 48 || code > 57) { return undefined // Not a digit } hour = code - 48 // Convert ASCII code to number } else { const code1 = date.charCodeAt(11) if (code1 < 48 || code1 > 50) { return undefined // Not a digit between 0 and 2 } const code2 = date.charCodeAt(12) if (code2 < 48 || code2 > 57) { return undefined // Not a digit } if (code1 === 50 && code2 > 51) { return undefined // Hour cannot be greater than 23 } hour = (code1 - 48) * 10 + (code2 - 48) // Convert ASCII codes to number } let minute = 0 if (date[14] === '0') { const code = date.charCodeAt(15) if (code < 48 || code > 57) { return undefined // Not a digit } minute = code - 48 // Convert ASCII code to number } else { const code1 = date.charCodeAt(14) if (code1 < 48 || code1 > 53) { return undefined // Not a digit between 0 and 5 } const code2 = date.charCodeAt(15) if (code2 < 48 || code2 > 57) { return undefined // Not a digit } minute = (code1 - 48) * 10 + (code2 - 48) // Convert ASCII codes to number } let second = 0 if (date[17] === '0') { const code = date.charCodeAt(18) if (code < 48 || code > 57) { return undefined // Not a digit } second = code - 48 // Convert ASCII code to number } else { const code1 = date.charCodeAt(17) if (code1 < 48 || code1 > 53) { return undefined // Not a digit between 0 and 5 } const code2 = date.charCodeAt(18) if (code2 < 48 || code2 > 57) { return undefined // Not a digit } second = (code1 - 48) * 10 + (code2 - 48) // Convert ASCII codes to number } const yearDigit1 = date.charCodeAt(20) if (yearDigit1 < 48 || yearDigit1 > 57) { return undefined // Not a digit } const yearDigit2 = date.charCodeAt(21) if (yearDigit2 < 48 || yearDigit2 > 57) { return undefined // Not a digit } const yearDigit3 = date.charCodeAt(22) if (yearDigit3 < 48 || yearDigit3 > 57) { return undefined // Not a digit } const yearDigit4 = date.charCodeAt(23) if (yearDigit4 < 48 || yearDigit4 > 57) { return undefined // Not a digit } const year = (yearDigit1 - 48) * 1000 + (yearDigit2 - 48) * 100 + (yearDigit3 - 48) * 10 + (yearDigit4 - 48) return makeDate(year, monthIdx, day, hour, minute, second, weekday) } /** * @see https://httpwg.org/specs/rfc9110.html#obsolete.date.formats * * @param {string} date * @returns {Date | undefined} */ function parseRfc850Date (date) { let commaIndex = -1 let weekday = -1 if (date[0] === 'S') { if (date[1] === 'u' && date[2] === 'n' && date[3] === 'd' && date[4] === 'a' && date[5] === 'y') { weekday = 0 // Sunday commaIndex = 6 } else if (date[1] === 'a' && date[2] === 't' && date[3] === 'u' && date[4] === 'r' && date[5] === 'd' && date[6] === 'a' && date[7] === 'y') { weekday = 6 // Saturday commaIndex = 8 } } else if (date[0] === 'M' && date[1] === 'o' && date[2] === 'n' && date[3] === 'd' && date[4] === 'a' && date[5] === 'y') { weekday = 1 // Monday commaIndex = 6 } else if (date[0] === 'T') { if (date[1] === 'u' && date[2] === 'e' && date[3] === 's' && date[4] === 'd' && date[5] === 'a' && date[6] === 'y') { weekday = 2 // Tuesday commaIndex = 7 } else if (date[1] === 'h' && date[2] === 'u' && date[3] === 'r' && date[4] === 's' && date[5] === 'd' && date[6] === 'a' && date[7] === 'y') { weekday = 4 // Thursday commaIndex = 8 } } else if (date[0] === 'W' && date[1] === 'e' && date[2] === 'd' && date[3] === 'n' && date[4] === 'e' && date[5] === 's' && date[6] === 'd' && date[7] === 'a' && date[8] === 'y') { weekday = 3 // Wednesday commaIndex = 9 } else if (date[0] === 'F' && date[1] === 'r' && date[2] === 'i' && date[3] === 'd' && date[4] === 'a' && date[5] === 'y') { weekday = 5 // Friday commaIndex = 6 } else { // Not a valid day name return undefined } if ( date[commaIndex] !== ',' || (date.length - commaIndex - 1) !== 23 || date[commaIndex + 1] !== ' ' || date[commaIndex + 4] !== '-' || date[commaIndex + 8] !== '-' || date[commaIndex + 11] !== ' ' || date[commaIndex + 14] !== ':' || date[commaIndex + 17] !== ':' || date[commaIndex + 20] !== ' ' || date[commaIndex + 21] !== 'G' || date[commaIndex + 22] !== 'M' || date[commaIndex + 23] !== 'T' ) { return undefined } let day = 0 if (date[commaIndex + 2] === '0') { // Single digit day, e.g. "Sun Nov 6 08:49:37 1994" const code = date.charCodeAt(commaIndex + 3) if (code < 49 || code > 57) { return undefined // Not a digit } day = code - 48 // Convert ASCII code to number } else { const code1 = date.charCodeAt(commaIndex + 2) if (code1 < 49 || code1 > 51) { return undefined // Not a digit between 1 and 3 } const code2 = date.charCodeAt(commaIndex + 3) if (code2 < 48 || code2 > 57) { return undefined // Not a digit } day = (code1 - 48) * 10 + (code2 - 48) // Convert ASCII codes to number } let monthIdx = -1 if ( (date[commaIndex + 5] === 'J' && date[commaIndex + 6] === 'a' && date[commaIndex + 7] === 'n') ) { monthIdx = 0 // Jan } else if ( (date[commaIndex + 5] === 'F' && date[commaIndex + 6] === 'e' && date[commaIndex + 7] === 'b') ) { monthIdx = 1 // Feb } else if ( (date[commaIndex + 5] === 'M' && date[commaIndex + 6] === 'a' && date[commaIndex + 7] === 'r') ) { monthIdx = 2 // Mar } else if ( (date[commaIndex + 5] === 'A' && date[commaIndex + 6] === 'p' && date[commaIndex + 7] === 'r') ) { monthIdx = 3 // Apr } else if ( (date[commaIndex + 5] === 'M' && date[commaIndex + 6] === 'a' && date[commaIndex + 7] === 'y') ) { monthIdx = 4 // May } else if ( (date[commaIndex + 5] === 'J' && date[commaIndex + 6] === 'u' && date[commaIndex + 7] === 'n') ) { monthIdx = 5 // Jun } else if ( (date[commaIndex + 5] === 'J' && date[commaIndex + 6] === 'u' && date[commaIndex + 7] === 'l') ) { monthIdx = 6 // Jul } else if ( (date[commaIndex + 5] === 'A' && date[commaIndex + 6] === 'u' && date[commaIndex + 7] === 'g') ) { monthIdx = 7 // Aug } else if ( (date[commaIndex + 5] === 'S' && date[commaIndex + 6] === 'e' && date[commaIndex + 7] === 'p') ) { monthIdx = 8 // Sep } else if ( (date[commaIndex + 5] === 'O' && date[commaIndex + 6] === 'c' && date[commaIndex + 7] === 't') ) { monthIdx = 9 // Oct } else if ( (date[commaIndex + 5] === 'N' && date[commaIndex + 6] === 'o' && date[commaIndex + 7] === 'v') ) { monthIdx = 10 // Nov } else if ( (date[commaIndex + 5] === 'D' && date[commaIndex + 6] === 'e' && date[commaIndex + 7] === 'c') ) { monthIdx = 11 // Dec } else { // Not a valid month return undefined } const yearDigit1 = date.charCodeAt(commaIndex + 9) if (yearDigit1 < 48 || yearDigit1 > 57) { return undefined // Not a digit } const yearDigit2 = date.charCodeAt(commaIndex + 10) if (yearDigit2 < 48 || yearDigit2 > 57) { return undefined // Not a digit } let year = (yearDigit1 - 48) * 10 + (yearDigit2 - 48) // Convert ASCII codes to number // RFC 6265 states that the year is in the range 1970-2069. // @see https://datatracker.ietf.org/doc/html/rfc6265#section-5.1.1 // // 3. If the year-value is greater than or equal to 70 and less than or // equal to 99, increment the year-value by 1900. // 4. If the year-value is greater than or equal to 0 and less than or // equal to 69, increment the year-value by 2000. year += year < 70 ? 2000 : 1900 let hour = 0 if (date[commaIndex + 12] === '0') { const code = date.charCodeAt(commaIndex + 13) if (code < 48 || code > 57) { return undefined // Not a digit } hour = code - 48 // Convert ASCII code to number } else { const code1 = date.charCodeAt(commaIndex + 12) if (code1 < 48 || code1 > 50) { return undefined // Not a digit between 0 and 2 } const code2 = date.charCodeAt(commaIndex + 13) if (code2 < 48 || code2 > 57) { return undefined // Not a digit } if (code1 === 50 && code2 > 51) { return undefined // Hour cannot be greater than 23 } hour = (code1 - 48) * 10 + (code2 - 48) // Convert ASCII codes to number } let minute = 0 if (date[commaIndex + 15] === '0') { const code = date.charCodeAt(commaIndex + 16) if (code < 48 || code > 57) { return undefined // Not a digit } minute = code - 48 // Convert ASCII code to number } else { const code1 = date.charCodeAt(commaIndex + 15) if (code1 < 48 || code1 > 53) { return undefined // Not a digit between 0 and 5 } const code2 = date.charCodeAt(commaIndex + 16) if (code2 < 48 || code2 > 57) { return undefined // Not a digit } minute = (code1 - 48) * 10 + (code2 - 48) // Convert ASCII codes to number } let second = 0 if (date[commaIndex + 18] === '0') { const code = date.charCodeAt(commaIndex + 19) if (code < 48 || code > 57) { return undefined // Not a digit } second = code - 48 // Convert ASCII code to number } else { const code1 = date.charCodeAt(commaIndex + 18) if (code1 < 48 || code1 > 53) { return undefined // Not a digit between 0 and 5 } const code2 = date.charCodeAt(commaIndex + 19) if (code2 < 48 || code2 > 57) { return undefined // Not a digit } second = (code1 - 48) * 10 + (code2 - 48) // Convert ASCII codes to number } return makeDate(year, monthIdx, day, hour, minute, second, weekday) } module.exports = { parseHttpDate } /***/ }), /***/ 56436: /***/ ((module) => { "use strict"; /** * @template {*} T * @typedef {Object} DeferredPromise * @property {Promise} promise * @property {(value?: T) => void} resolve * @property {(reason?: any) => void} reject */ /** * @template {*} T * @returns {DeferredPromise} An object containing a promise and its resolve/reject methods. */ function createDeferredPromise () { let res let rej const promise = new Promise((resolve, reject) => { res = resolve rej = reject }) return { promise, resolve: res, reject: rej } } module.exports = { createDeferredPromise } /***/ }), /***/ 313: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; /** @typedef {`node:${string}`} NodeModuleName */ /** @type {Record any>} */ const lazyLoaders = { __proto__: null, 'node:crypto': () => __nccwpck_require__(77598), 'node:sqlite': () => __nccwpck_require__(80099), 'node:worker_threads': () => __nccwpck_require__(75919), 'node:zlib': () => __nccwpck_require__(38522) } /** * @param {NodeModuleName} moduleName * @returns {boolean} */ function detectRuntimeFeatureByNodeModule (moduleName) { try { lazyLoaders[moduleName]() return true } catch (err) { if (err.code !== 'ERR_UNKNOWN_BUILTIN_MODULE' && err.code !== 'ERR_NO_CRYPTO') { throw err } return false } } /** * @param {NodeModuleName} moduleName * @param {string} property * @returns {boolean} */ function detectRuntimeFeatureByExportedProperty (moduleName, property) { const module = lazyLoaders[moduleName]() return typeof module[property] !== 'undefined' } const runtimeFeaturesByExportedProperty = /** @type {const} */ (['markAsUncloneable', 'zstd']) /** @type {Record} */ const exportedPropertyLookup = { markAsUncloneable: ['node:worker_threads', 'markAsUncloneable'], zstd: ['node:zlib', 'createZstdDecompress'] } /** @typedef {typeof runtimeFeaturesByExportedProperty[number]} RuntimeFeatureByExportedProperty */ const runtimeFeaturesAsNodeModule = /** @type {const} */ (['crypto', 'sqlite']) /** @typedef {typeof runtimeFeaturesAsNodeModule[number]} RuntimeFeatureByNodeModule */ const features = /** @type {const} */ ([ ...runtimeFeaturesAsNodeModule, ...runtimeFeaturesByExportedProperty ]) /** @typedef {typeof features[number]} Feature */ /** * @param {Feature} feature * @returns {boolean} */ function detectRuntimeFeature (feature) { if (runtimeFeaturesAsNodeModule.includes(/** @type {RuntimeFeatureByNodeModule} */ (feature))) { return detectRuntimeFeatureByNodeModule(`node:${feature}`) } else if (runtimeFeaturesByExportedProperty.includes(/** @type {RuntimeFeatureByExportedProperty} */ (feature))) { const [moduleName, property] = exportedPropertyLookup[feature] return detectRuntimeFeatureByExportedProperty(moduleName, property) } throw new TypeError(`unknown feature: ${feature}`) } /** * @class * @name RuntimeFeatures */ class RuntimeFeatures { /** @type {Map} */ #map = new Map() /** * Clears all cached feature detections. */ clear () { this.#map.clear() } /** * @param {Feature} feature * @returns {boolean} */ has (feature) { return ( this.#map.get(feature) ?? this.#detectRuntimeFeature(feature) ) } /** * @param {Feature} feature * @param {boolean} value */ set (feature, value) { if (features.includes(feature) === false) { throw new TypeError(`unknown feature: ${feature}`) } this.#map.set(feature, value) } /** * @param {Feature} feature * @returns {boolean} */ #detectRuntimeFeature (feature) { const result = detectRuntimeFeature(feature) this.#map.set(feature, result) return result } } const instance = new RuntimeFeatures() module.exports.runtimeFeatures = instance module.exports["default"] = instance /***/ }), /***/ 46854: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { kConnected, kPending, kRunning, kSize, kFree, kQueued } = __nccwpck_require__(36443) class ClientStats { constructor (client) { this.connected = client[kConnected] this.pending = client[kPending] this.running = client[kRunning] this.size = client[kSize] } } class PoolStats { constructor (pool) { this.connected = pool[kConnected] this.free = pool[kFree] this.pending = pool[kPending] this.queued = pool[kQueued] this.running = pool[kRunning] this.size = pool[kSize] } } module.exports = { ClientStats, PoolStats } /***/ }), /***/ 96603: /***/ ((module) => { "use strict"; /** * This module offers an optimized timer implementation designed for scenarios * where high precision is not critical. * * The timer achieves faster performance by using a low-resolution approach, * with an accuracy target of within 500ms. This makes it particularly useful * for timers with delays of 1 second or more, where exact timing is less * crucial. * * It's important to note that Node.js timers are inherently imprecise, as * delays can occur due to the event loop being blocked by other operations. * Consequently, timers may trigger later than their scheduled time. */ /** * The fastNow variable contains the internal fast timer clock value. * * @type {number} */ let fastNow = 0 /** * RESOLUTION_MS represents the target resolution time in milliseconds. * * @type {number} * @default 1000 */ const RESOLUTION_MS = 1e3 /** * TICK_MS defines the desired interval in milliseconds between each tick. * The target value is set to half the resolution time, minus 1 ms, to account * for potential event loop overhead. * * @type {number} * @default 499 */ const TICK_MS = (RESOLUTION_MS >> 1) - 1 /** * fastNowTimeout is a Node.js timer used to manage and process * the FastTimers stored in the `fastTimers` array. * * @type {NodeJS.Timeout} */ let fastNowTimeout /** * The kFastTimer symbol is used to identify FastTimer instances. * * @type {Symbol} */ const kFastTimer = Symbol('kFastTimer') /** * The fastTimers array contains all active FastTimers. * * @type {FastTimer[]} */ const fastTimers = [] /** * These constants represent the various states of a FastTimer. */ /** * The `NOT_IN_LIST` constant indicates that the FastTimer is not included * in the `fastTimers` array. Timers with this status will not be processed * during the next tick by the `onTick` function. * * A FastTimer can be re-added to the `fastTimers` array by invoking the * `refresh` method on the FastTimer instance. * * @type {-2} */ const NOT_IN_LIST = -2 /** * The `TO_BE_CLEARED` constant indicates that the FastTimer is scheduled * for removal from the `fastTimers` array. A FastTimer in this state will * be removed in the next tick by the `onTick` function and will no longer * be processed. * * This status is also set when the `clear` method is called on the FastTimer instance. * * @type {-1} */ const TO_BE_CLEARED = -1 /** * The `PENDING` constant signifies that the FastTimer is awaiting processing * in the next tick by the `onTick` function. Timers with this status will have * their `_idleStart` value set and their status updated to `ACTIVE` in the next tick. * * @type {0} */ const PENDING = 0 /** * The `ACTIVE` constant indicates that the FastTimer is active and waiting * for its timer to expire. During the next tick, the `onTick` function will * check if the timer has expired, and if so, it will execute the associated callback. * * @type {1} */ const ACTIVE = 1 /** * The onTick function processes the fastTimers array. * * @returns {void} */ function onTick () { /** * Increment the fastNow value by the TICK_MS value, despite the actual time * that has passed since the last tick. This approach ensures independence * from the system clock and delays caused by a blocked event loop. * * @type {number} */ fastNow += TICK_MS /** * The `idx` variable is used to iterate over the `fastTimers` array. * Expired timers are removed by replacing them with the last element in the array. * Consequently, `idx` is only incremented when the current element is not removed. * * @type {number} */ let idx = 0 /** * The len variable will contain the length of the fastTimers array * and will be decremented when a FastTimer should be removed from the * fastTimers array. * * @type {number} */ let len = fastTimers.length while (idx < len) { /** * @type {FastTimer} */ const timer = fastTimers[idx] // If the timer is in the ACTIVE state and the timer has expired, it will // be processed in the next tick. if (timer._state === PENDING) { // Set the _idleStart value to the fastNow value minus the TICK_MS value // to account for the time the timer was in the PENDING state. timer._idleStart = fastNow - TICK_MS timer._state = ACTIVE } else if ( timer._state === ACTIVE && fastNow >= timer._idleStart + timer._idleTimeout ) { timer._state = TO_BE_CLEARED timer._idleStart = -1 timer._onTimeout(timer._timerArg) } if (timer._state === TO_BE_CLEARED) { timer._state = NOT_IN_LIST // Move the last element to the current index and decrement len if it is // not the only element in the array. if (--len !== 0) { fastTimers[idx] = fastTimers[len] } } else { ++idx } } // Set the length of the fastTimers array to the new length and thus // removing the excess FastTimers elements from the array. fastTimers.length = len // If there are still active FastTimers in the array, refresh the Timer. // If there are no active FastTimers, the timer will be refreshed again // when a new FastTimer is instantiated. if (fastTimers.length !== 0) { refreshTimeout() } } function refreshTimeout () { // If the fastNowTimeout is already set and the Timer has the refresh()- // method available, call it to refresh the timer. // Some timer objects returned by setTimeout may not have a .refresh() // method (e.g. mocked timers in tests). if (fastNowTimeout?.refresh) { fastNowTimeout.refresh() // fastNowTimeout is not instantiated yet or refresh is not availabe, // create a new Timer. } else { clearTimeout(fastNowTimeout) fastNowTimeout = setTimeout(onTick, TICK_MS) // If the Timer has an unref method, call it to allow the process to exit, // if there are no other active handles. When using fake timers or mocked // environments (like Jest), .unref() may not be defined, fastNowTimeout?.unref() } } /** * The `FastTimer` class is a data structure designed to store and manage * timer information. */ class FastTimer { [kFastTimer] = true /** * The state of the timer, which can be one of the following: * - NOT_IN_LIST (-2) * - TO_BE_CLEARED (-1) * - PENDING (0) * - ACTIVE (1) * * @type {-2|-1|0|1} * @private */ _state = NOT_IN_LIST /** * The number of milliseconds to wait before calling the callback. * * @type {number} * @private */ _idleTimeout = -1 /** * The time in milliseconds when the timer was started. This value is used to * calculate when the timer should expire. * * @type {number} * @default -1 * @private */ _idleStart = -1 /** * The function to be executed when the timer expires. * @type {Function} * @private */ _onTimeout /** * The argument to be passed to the callback when the timer expires. * * @type {*} * @private */ _timerArg /** * @constructor * @param {Function} callback A function to be executed after the timer * expires. * @param {number} delay The time, in milliseconds that the timer should wait * before the specified function or code is executed. * @param {*} arg */ constructor (callback, delay, arg) { this._onTimeout = callback this._idleTimeout = delay this._timerArg = arg this.refresh() } /** * Sets the timer's start time to the current time, and reschedules the timer * to call its callback at the previously specified duration adjusted to the * current time. * Using this on a timer that has already called its callback will reactivate * the timer. * * @returns {void} */ refresh () { // In the special case that the timer is not in the list of active timers, // add it back to the array to be processed in the next tick by the onTick // function. if (this._state === NOT_IN_LIST) { fastTimers.push(this) } // If the timer is the only active timer, refresh the fastNowTimeout for // better resolution. if (!fastNowTimeout || fastTimers.length === 1) { refreshTimeout() } // Setting the state to PENDING will cause the timer to be reset in the // next tick by the onTick function. this._state = PENDING } /** * The `clear` method cancels the timer, preventing it from executing. * * @returns {void} * @private */ clear () { // Set the state to TO_BE_CLEARED to mark the timer for removal in the next // tick by the onTick function. this._state = TO_BE_CLEARED // Reset the _idleStart value to -1 to indicate that the timer is no longer // active. this._idleStart = -1 } } /** * This module exports a setTimeout and clearTimeout function that can be * used as a drop-in replacement for the native functions. */ module.exports = { /** * The setTimeout() method sets a timer which executes a function once the * timer expires. * @param {Function} callback A function to be executed after the timer * expires. * @param {number} delay The time, in milliseconds that the timer should * wait before the specified function or code is executed. * @param {*} [arg] An optional argument to be passed to the callback function * when the timer expires. * @returns {NodeJS.Timeout|FastTimer} */ setTimeout (callback, delay, arg) { // If the delay is less than or equal to the RESOLUTION_MS value return a // native Node.js Timer instance. return delay <= RESOLUTION_MS ? setTimeout(callback, delay, arg) : new FastTimer(callback, delay, arg) }, /** * The clearTimeout method cancels an instantiated Timer previously created * by calling setTimeout. * * @param {NodeJS.Timeout|FastTimer} timeout */ clearTimeout (timeout) { // If the timeout is a FastTimer, call its own clear method. if (timeout[kFastTimer]) { /** * @type {FastTimer} */ timeout.clear() // Otherwise it is an instance of a native NodeJS.Timeout, so call the // Node.js native clearTimeout function. } else { clearTimeout(timeout) } }, /** * The setFastTimeout() method sets a fastTimer which executes a function once * the timer expires. * @param {Function} callback A function to be executed after the timer * expires. * @param {number} delay The time, in milliseconds that the timer should * wait before the specified function or code is executed. * @param {*} [arg] An optional argument to be passed to the callback function * when the timer expires. * @returns {FastTimer} */ setFastTimeout (callback, delay, arg) { return new FastTimer(callback, delay, arg) }, /** * The clearTimeout method cancels an instantiated FastTimer previously * created by calling setFastTimeout. * * @param {FastTimer} timeout */ clearFastTimeout (timeout) { timeout.clear() }, /** * The now method returns the value of the internal fast timer clock. * * @returns {number} */ now () { return fastNow }, /** * Trigger the onTick function to process the fastTimers array. * Exported for testing purposes only. * Marking as deprecated to discourage any use outside of testing. * @deprecated * @param {number} [delay=0] The delay in milliseconds to add to the now value. */ tick (delay = 0) { fastNow += delay - RESOLUTION_MS + 1 onTick() onTick() }, /** * Reset FastTimers. * Exported for testing purposes only. * Marking as deprecated to discourage any use outside of testing. * @deprecated */ reset () { fastNow = 0 fastTimers.length = 0 clearTimeout(fastNowTimeout) fastNowTimeout = null }, /** * Exporting for testing purposes only. * Marking as deprecated to discourage any use outside of testing. * @deprecated */ kFastTimer } /***/ }), /***/ 89634: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const assert = __nccwpck_require__(34589) const { kConstruct } = __nccwpck_require__(36443) const { urlEquals, getFieldValues } = __nccwpck_require__(76798) const { kEnumerableProperty, isDisturbed } = __nccwpck_require__(3440) const { webidl } = __nccwpck_require__(47879) const { cloneResponse, fromInnerResponse, getResponseState } = __nccwpck_require__(99051) const { Request, fromInnerRequest, getRequestState } = __nccwpck_require__(9967) const { fetching } = __nccwpck_require__(54398) const { urlIsHttpHttpsScheme, readAllBytes } = __nccwpck_require__(73168) const { createDeferredPromise } = __nccwpck_require__(56436) /** * @see https://w3c.github.io/ServiceWorker/#dfn-cache-batch-operation * @typedef {Object} CacheBatchOperation * @property {'delete' | 'put'} type * @property {any} request * @property {any} response * @property {import('../../../types/cache').CacheQueryOptions} options */ /** * @see https://w3c.github.io/ServiceWorker/#dfn-request-response-list * @typedef {[any, any][]} requestResponseList */ class Cache { /** * @see https://w3c.github.io/ServiceWorker/#dfn-relevant-request-response-list * @type {requestResponseList} */ #relevantRequestResponseList constructor () { if (arguments[0] !== kConstruct) { webidl.illegalConstructor() } webidl.util.markAsUncloneable(this) this.#relevantRequestResponseList = arguments[1] } async match (request, options = {}) { webidl.brandCheck(this, Cache) const prefix = 'Cache.match' webidl.argumentLengthCheck(arguments, 1, prefix) request = webidl.converters.RequestInfo(request) options = webidl.converters.CacheQueryOptions(options, prefix, 'options') const p = this.#internalMatchAll(request, options, 1) if (p.length === 0) { return } return p[0] } async matchAll (request = undefined, options = {}) { webidl.brandCheck(this, Cache) const prefix = 'Cache.matchAll' if (request !== undefined) request = webidl.converters.RequestInfo(request) options = webidl.converters.CacheQueryOptions(options, prefix, 'options') return this.#internalMatchAll(request, options) } async add (request) { webidl.brandCheck(this, Cache) const prefix = 'Cache.add' webidl.argumentLengthCheck(arguments, 1, prefix) request = webidl.converters.RequestInfo(request) // 1. const requests = [request] // 2. const responseArrayPromise = this.addAll(requests) // 3. return await responseArrayPromise } async addAll (requests) { webidl.brandCheck(this, Cache) const prefix = 'Cache.addAll' webidl.argumentLengthCheck(arguments, 1, prefix) // 1. const responsePromises = [] // 2. const requestList = [] // 3. for (let request of requests) { if (request === undefined) { throw webidl.errors.conversionFailed({ prefix, argument: 'Argument 1', types: ['undefined is not allowed'] }) } request = webidl.converters.RequestInfo(request) if (typeof request === 'string') { continue } // 3.1 const r = getRequestState(request) // 3.2 if (!urlIsHttpHttpsScheme(r.url) || r.method !== 'GET') { throw webidl.errors.exception({ header: prefix, message: 'Expected http/s scheme when method is not GET.' }) } } // 4. /** @type {ReturnType[]} */ const fetchControllers = [] // 5. for (const request of requests) { // 5.1 const r = getRequestState(new Request(request)) // 5.2 if (!urlIsHttpHttpsScheme(r.url)) { throw webidl.errors.exception({ header: prefix, message: 'Expected http/s scheme.' }) } // 5.4 r.initiator = 'fetch' r.destination = 'subresource' // 5.5 requestList.push(r) // 5.6 const responsePromise = createDeferredPromise() // 5.7 fetchControllers.push(fetching({ request: r, processResponse (response) { // 1. if (response.type === 'error' || response.status === 206 || response.status < 200 || response.status > 299) { responsePromise.reject(webidl.errors.exception({ header: 'Cache.addAll', message: 'Received an invalid status code or the request failed.' })) } else if (response.headersList.contains('vary')) { // 2. // 2.1 const fieldValues = getFieldValues(response.headersList.get('vary')) // 2.2 for (const fieldValue of fieldValues) { // 2.2.1 if (fieldValue === '*') { responsePromise.reject(webidl.errors.exception({ header: 'Cache.addAll', message: 'invalid vary field value' })) for (const controller of fetchControllers) { controller.abort() } return } } } }, processResponseEndOfBody (response) { // 1. if (response.aborted) { responsePromise.reject(new DOMException('aborted', 'AbortError')) return } // 2. responsePromise.resolve(response) } })) // 5.8 responsePromises.push(responsePromise.promise) } // 6. const p = Promise.all(responsePromises) // 7. const responses = await p // 7.1 const operations = [] // 7.2 let index = 0 // 7.3 for (const response of responses) { // 7.3.1 /** @type {CacheBatchOperation} */ const operation = { type: 'put', // 7.3.2 request: requestList[index], // 7.3.3 response // 7.3.4 } operations.push(operation) // 7.3.5 index++ // 7.3.6 } // 7.5 const cacheJobPromise = createDeferredPromise() // 7.6.1 let errorData = null // 7.6.2 try { this.#batchCacheOperations(operations) } catch (e) { errorData = e } // 7.6.3 queueMicrotask(() => { // 7.6.3.1 if (errorData === null) { cacheJobPromise.resolve(undefined) } else { // 7.6.3.2 cacheJobPromise.reject(errorData) } }) // 7.7 return cacheJobPromise.promise } async put (request, response) { webidl.brandCheck(this, Cache) const prefix = 'Cache.put' webidl.argumentLengthCheck(arguments, 2, prefix) request = webidl.converters.RequestInfo(request) response = webidl.converters.Response(response, prefix, 'response') // 1. let innerRequest = null // 2. if (webidl.is.Request(request)) { innerRequest = getRequestState(request) } else { // 3. innerRequest = getRequestState(new Request(request)) } // 4. if (!urlIsHttpHttpsScheme(innerRequest.url) || innerRequest.method !== 'GET') { throw webidl.errors.exception({ header: prefix, message: 'Expected an http/s scheme when method is not GET' }) } // 5. const innerResponse = getResponseState(response) // 6. if (innerResponse.status === 206) { throw webidl.errors.exception({ header: prefix, message: 'Got 206 status' }) } // 7. if (innerResponse.headersList.contains('vary')) { // 7.1. const fieldValues = getFieldValues(innerResponse.headersList.get('vary')) // 7.2. for (const fieldValue of fieldValues) { // 7.2.1 if (fieldValue === '*') { throw webidl.errors.exception({ header: prefix, message: 'Got * vary field value' }) } } } // 8. if (innerResponse.body && (isDisturbed(innerResponse.body.stream) || innerResponse.body.stream.locked)) { throw webidl.errors.exception({ header: prefix, message: 'Response body is locked or disturbed' }) } // 9. const clonedResponse = cloneResponse(innerResponse) // 10. const bodyReadPromise = createDeferredPromise() // 11. if (innerResponse.body != null) { // 11.1 const stream = innerResponse.body.stream // 11.2 const reader = stream.getReader() // 11.3 readAllBytes(reader, bodyReadPromise.resolve, bodyReadPromise.reject) } else { bodyReadPromise.resolve(undefined) } // 12. /** @type {CacheBatchOperation[]} */ const operations = [] // 13. /** @type {CacheBatchOperation} */ const operation = { type: 'put', // 14. request: innerRequest, // 15. response: clonedResponse // 16. } // 17. operations.push(operation) // 19. const bytes = await bodyReadPromise.promise if (clonedResponse.body != null) { clonedResponse.body.source = bytes } // 19.1 const cacheJobPromise = createDeferredPromise() // 19.2.1 let errorData = null // 19.2.2 try { this.#batchCacheOperations(operations) } catch (e) { errorData = e } // 19.2.3 queueMicrotask(() => { // 19.2.3.1 if (errorData === null) { cacheJobPromise.resolve() } else { // 19.2.3.2 cacheJobPromise.reject(errorData) } }) return cacheJobPromise.promise } async delete (request, options = {}) { webidl.brandCheck(this, Cache) const prefix = 'Cache.delete' webidl.argumentLengthCheck(arguments, 1, prefix) request = webidl.converters.RequestInfo(request) options = webidl.converters.CacheQueryOptions(options, prefix, 'options') /** * @type {Request} */ let r = null if (webidl.is.Request(request)) { r = getRequestState(request) if (r.method !== 'GET' && !options.ignoreMethod) { return false } } else { assert(typeof request === 'string') r = getRequestState(new Request(request)) } /** @type {CacheBatchOperation[]} */ const operations = [] /** @type {CacheBatchOperation} */ const operation = { type: 'delete', request: r, options } operations.push(operation) const cacheJobPromise = createDeferredPromise() let errorData = null let requestResponses try { requestResponses = this.#batchCacheOperations(operations) } catch (e) { errorData = e } queueMicrotask(() => { if (errorData === null) { cacheJobPromise.resolve(!!requestResponses?.length) } else { cacheJobPromise.reject(errorData) } }) return cacheJobPromise.promise } /** * @see https://w3c.github.io/ServiceWorker/#dom-cache-keys * @param {any} request * @param {import('../../../types/cache').CacheQueryOptions} options * @returns {Promise} */ async keys (request = undefined, options = {}) { webidl.brandCheck(this, Cache) const prefix = 'Cache.keys' if (request !== undefined) request = webidl.converters.RequestInfo(request) options = webidl.converters.CacheQueryOptions(options, prefix, 'options') // 1. let r = null // 2. if (request !== undefined) { // 2.1 if (webidl.is.Request(request)) { // 2.1.1 r = getRequestState(request) // 2.1.2 if (r.method !== 'GET' && !options.ignoreMethod) { return [] } } else if (typeof request === 'string') { // 2.2 r = getRequestState(new Request(request)) } } // 4. const promise = createDeferredPromise() // 5. // 5.1 const requests = [] // 5.2 if (request === undefined) { // 5.2.1 for (const requestResponse of this.#relevantRequestResponseList) { // 5.2.1.1 requests.push(requestResponse[0]) } } else { // 5.3 // 5.3.1 const requestResponses = this.#queryCache(r, options) // 5.3.2 for (const requestResponse of requestResponses) { // 5.3.2.1 requests.push(requestResponse[0]) } } // 5.4 queueMicrotask(() => { // 5.4.1 const requestList = [] // 5.4.2 for (const request of requests) { const requestObject = fromInnerRequest( request, undefined, new AbortController().signal, 'immutable' ) // 5.4.2.1 requestList.push(requestObject) } // 5.4.3 promise.resolve(Object.freeze(requestList)) }) return promise.promise } /** * @see https://w3c.github.io/ServiceWorker/#batch-cache-operations-algorithm * @param {CacheBatchOperation[]} operations * @returns {requestResponseList} */ #batchCacheOperations (operations) { // 1. const cache = this.#relevantRequestResponseList // 2. const backupCache = [...cache] // 3. const addedItems = [] // 4.1 const resultList = [] try { // 4.2 for (const operation of operations) { // 4.2.1 if (operation.type !== 'delete' && operation.type !== 'put') { throw webidl.errors.exception({ header: 'Cache.#batchCacheOperations', message: 'operation type does not match "delete" or "put"' }) } // 4.2.2 if (operation.type === 'delete' && operation.response != null) { throw webidl.errors.exception({ header: 'Cache.#batchCacheOperations', message: 'delete operation should not have an associated response' }) } // 4.2.3 if (this.#queryCache(operation.request, operation.options, addedItems).length) { throw new DOMException('???', 'InvalidStateError') } // 4.2.4 let requestResponses // 4.2.5 if (operation.type === 'delete') { // 4.2.5.1 requestResponses = this.#queryCache(operation.request, operation.options) // TODO: the spec is wrong, this is needed to pass WPTs if (requestResponses.length === 0) { return [] } // 4.2.5.2 for (const requestResponse of requestResponses) { const idx = cache.indexOf(requestResponse) assert(idx !== -1) // 4.2.5.2.1 cache.splice(idx, 1) } } else if (operation.type === 'put') { // 4.2.6 // 4.2.6.1 if (operation.response == null) { throw webidl.errors.exception({ header: 'Cache.#batchCacheOperations', message: 'put operation should have an associated response' }) } // 4.2.6.2 const r = operation.request // 4.2.6.3 if (!urlIsHttpHttpsScheme(r.url)) { throw webidl.errors.exception({ header: 'Cache.#batchCacheOperations', message: 'expected http or https scheme' }) } // 4.2.6.4 if (r.method !== 'GET') { throw webidl.errors.exception({ header: 'Cache.#batchCacheOperations', message: 'not get method' }) } // 4.2.6.5 if (operation.options != null) { throw webidl.errors.exception({ header: 'Cache.#batchCacheOperations', message: 'options must not be defined' }) } // 4.2.6.6 requestResponses = this.#queryCache(operation.request) // 4.2.6.7 for (const requestResponse of requestResponses) { const idx = cache.indexOf(requestResponse) assert(idx !== -1) // 4.2.6.7.1 cache.splice(idx, 1) } // 4.2.6.8 cache.push([operation.request, operation.response]) // 4.2.6.10 addedItems.push([operation.request, operation.response]) } // 4.2.7 resultList.push([operation.request, operation.response]) } // 4.3 return resultList } catch (e) { // 5. // 5.1 this.#relevantRequestResponseList.length = 0 // 5.2 this.#relevantRequestResponseList = backupCache // 5.3 throw e } } /** * @see https://w3c.github.io/ServiceWorker/#query-cache * @param {any} requestQuery * @param {import('../../../types/cache').CacheQueryOptions} options * @param {requestResponseList} targetStorage * @returns {requestResponseList} */ #queryCache (requestQuery, options, targetStorage) { /** @type {requestResponseList} */ const resultList = [] const storage = targetStorage ?? this.#relevantRequestResponseList for (const requestResponse of storage) { const [cachedRequest, cachedResponse] = requestResponse if (this.#requestMatchesCachedItem(requestQuery, cachedRequest, cachedResponse, options)) { resultList.push(requestResponse) } } return resultList } /** * @see https://w3c.github.io/ServiceWorker/#request-matches-cached-item-algorithm * @param {any} requestQuery * @param {any} request * @param {any | null} response * @param {import('../../../types/cache').CacheQueryOptions | undefined} options * @returns {boolean} */ #requestMatchesCachedItem (requestQuery, request, response = null, options) { // if (options?.ignoreMethod === false && request.method === 'GET') { // return false // } const queryURL = new URL(requestQuery.url) const cachedURL = new URL(request.url) if (options?.ignoreSearch) { cachedURL.search = '' queryURL.search = '' } if (!urlEquals(queryURL, cachedURL, true)) { return false } if ( response == null || options?.ignoreVary || !response.headersList.contains('vary') ) { return true } const fieldValues = getFieldValues(response.headersList.get('vary')) for (const fieldValue of fieldValues) { if (fieldValue === '*') { return false } const requestValue = request.headersList.get(fieldValue) const queryValue = requestQuery.headersList.get(fieldValue) // If one has the header and the other doesn't, or one has // a different value than the other, return false if (requestValue !== queryValue) { return false } } return true } #internalMatchAll (request, options, maxResponses = Infinity) { // 1. let r = null // 2. if (request !== undefined) { if (webidl.is.Request(request)) { // 2.1.1 r = getRequestState(request) // 2.1.2 if (r.method !== 'GET' && !options.ignoreMethod) { return [] } } else if (typeof request === 'string') { // 2.2.1 r = getRequestState(new Request(request)) } } // 5. // 5.1 const responses = [] // 5.2 if (request === undefined) { // 5.2.1 for (const requestResponse of this.#relevantRequestResponseList) { responses.push(requestResponse[1]) } } else { // 5.3 // 5.3.1 const requestResponses = this.#queryCache(r, options) // 5.3.2 for (const requestResponse of requestResponses) { responses.push(requestResponse[1]) } } // 5.4 // We don't implement CORs so we don't need to loop over the responses, yay! // 5.5.1 const responseList = [] // 5.5.2 for (const response of responses) { // 5.5.2.1 const responseObject = fromInnerResponse(cloneResponse(response), 'immutable') responseList.push(responseObject) if (responseList.length >= maxResponses) { break } } // 6. return Object.freeze(responseList) } } Object.defineProperties(Cache.prototype, { [Symbol.toStringTag]: { value: 'Cache', configurable: true }, match: kEnumerableProperty, matchAll: kEnumerableProperty, add: kEnumerableProperty, addAll: kEnumerableProperty, put: kEnumerableProperty, delete: kEnumerableProperty, keys: kEnumerableProperty }) const cacheQueryOptionConverters = [ { key: 'ignoreSearch', converter: webidl.converters.boolean, defaultValue: () => false }, { key: 'ignoreMethod', converter: webidl.converters.boolean, defaultValue: () => false }, { key: 'ignoreVary', converter: webidl.converters.boolean, defaultValue: () => false } ] webidl.converters.CacheQueryOptions = webidl.dictionaryConverter(cacheQueryOptionConverters) webidl.converters.MultiCacheQueryOptions = webidl.dictionaryConverter([ ...cacheQueryOptionConverters, { key: 'cacheName', converter: webidl.converters.DOMString } ]) webidl.converters.Response = webidl.interfaceConverter( webidl.is.Response, 'Response' ) webidl.converters['sequence'] = webidl.sequenceConverter( webidl.converters.RequestInfo ) module.exports = { Cache } /***/ }), /***/ 3245: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { Cache } = __nccwpck_require__(89634) const { webidl } = __nccwpck_require__(47879) const { kEnumerableProperty } = __nccwpck_require__(3440) const { kConstruct } = __nccwpck_require__(36443) class CacheStorage { /** * @see https://w3c.github.io/ServiceWorker/#dfn-relevant-name-to-cache-map * @type {Map} */ async has (cacheName) { webidl.brandCheck(this, CacheStorage) const prefix = 'CacheStorage.has' webidl.argumentLengthCheck(arguments, 1, prefix) cacheName = webidl.converters.DOMString(cacheName, prefix, 'cacheName') // 2.1.1 // 2.2 return this.#caches.has(cacheName) } /** * @see https://w3c.github.io/ServiceWorker/#dom-cachestorage-open * @param {string} cacheName * @returns {Promise} */ async open (cacheName) { webidl.brandCheck(this, CacheStorage) const prefix = 'CacheStorage.open' webidl.argumentLengthCheck(arguments, 1, prefix) cacheName = webidl.converters.DOMString(cacheName, prefix, 'cacheName') // 2.1 if (this.#caches.has(cacheName)) { // await caches.open('v1') !== await caches.open('v1') // 2.1.1 const cache = this.#caches.get(cacheName) // 2.1.1.1 return new Cache(kConstruct, cache) } // 2.2 const cache = [] // 2.3 this.#caches.set(cacheName, cache) // 2.4 return new Cache(kConstruct, cache) } /** * @see https://w3c.github.io/ServiceWorker/#cache-storage-delete * @param {string} cacheName * @returns {Promise} */ async delete (cacheName) { webidl.brandCheck(this, CacheStorage) const prefix = 'CacheStorage.delete' webidl.argumentLengthCheck(arguments, 1, prefix) cacheName = webidl.converters.DOMString(cacheName, prefix, 'cacheName') return this.#caches.delete(cacheName) } /** * @see https://w3c.github.io/ServiceWorker/#cache-storage-keys * @returns {Promise} */ async keys () { webidl.brandCheck(this, CacheStorage) // 2.1 const keys = this.#caches.keys() // 2.2 return [...keys] } } Object.defineProperties(CacheStorage.prototype, { [Symbol.toStringTag]: { value: 'CacheStorage', configurable: true }, match: kEnumerableProperty, has: kEnumerableProperty, open: kEnumerableProperty, delete: kEnumerableProperty, keys: kEnumerableProperty }) module.exports = { CacheStorage } /***/ }), /***/ 76798: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const assert = __nccwpck_require__(34589) const { URLSerializer } = __nccwpck_require__(51900) const { isValidHeaderName } = __nccwpck_require__(73168) /** * @see https://url.spec.whatwg.org/#concept-url-equals * @param {URL} A * @param {URL} B * @param {boolean | undefined} excludeFragment * @returns {boolean} */ function urlEquals (A, B, excludeFragment = false) { const serializedA = URLSerializer(A, excludeFragment) const serializedB = URLSerializer(B, excludeFragment) return serializedA === serializedB } /** * @see https://github.com/chromium/chromium/blob/694d20d134cb553d8d89e5500b9148012b1ba299/content/browser/cache_storage/cache_storage_cache.cc#L260-L262 * @param {string} header */ function getFieldValues (header) { assert(header !== null) const values = [] for (let value of header.split(',')) { value = value.trim() if (isValidHeaderName(value)) { values.push(value) } } return values } module.exports = { urlEquals, getFieldValues } /***/ }), /***/ 71276: /***/ ((module) => { "use strict"; // https://wicg.github.io/cookie-store/#cookie-maximum-attribute-value-size const maxAttributeValueSize = 1024 // https://wicg.github.io/cookie-store/#cookie-maximum-name-value-pair-size const maxNameValuePairSize = 4096 module.exports = { maxAttributeValueSize, maxNameValuePairSize } /***/ }), /***/ 79061: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { parseSetCookie } = __nccwpck_require__(11978) const { stringify } = __nccwpck_require__(57797) const { webidl } = __nccwpck_require__(47879) const { Headers } = __nccwpck_require__(60660) const brandChecks = webidl.brandCheckMultiple([Headers, globalThis.Headers].filter(Boolean)) /** * @typedef {Object} Cookie * @property {string} name * @property {string} value * @property {Date|number} [expires] * @property {number} [maxAge] * @property {string} [domain] * @property {string} [path] * @property {boolean} [secure] * @property {boolean} [httpOnly] * @property {'Strict'|'Lax'|'None'} [sameSite] * @property {string[]} [unparsed] */ /** * @param {Headers} headers * @returns {Record} */ function getCookies (headers) { webidl.argumentLengthCheck(arguments, 1, 'getCookies') brandChecks(headers) const cookie = headers.get('cookie') /** @type {Record} */ const out = {} if (!cookie) { return out } for (const piece of cookie.split(';')) { const [name, ...value] = piece.split('=') out[name.trim()] = value.join('=') } return out } /** * @param {Headers} headers * @param {string} name * @param {{ path?: string, domain?: string }|undefined} attributes * @returns {void} */ function deleteCookie (headers, name, attributes) { brandChecks(headers) const prefix = 'deleteCookie' webidl.argumentLengthCheck(arguments, 2, prefix) name = webidl.converters.DOMString(name, prefix, 'name') attributes = webidl.converters.DeleteCookieAttributes(attributes) // Matches behavior of // https://github.com/denoland/deno_std/blob/63827b16330b82489a04614027c33b7904e08be5/http/cookie.ts#L278 setCookie(headers, { name, value: '', expires: new Date(0), ...attributes }) } /** * @param {Headers} headers * @returns {Cookie[]} */ function getSetCookies (headers) { webidl.argumentLengthCheck(arguments, 1, 'getSetCookies') brandChecks(headers) const cookies = headers.getSetCookie() if (!cookies) { return [] } return cookies.map((pair) => parseSetCookie(pair)) } /** * Parses a cookie string * @param {string} cookie */ function parseCookie (cookie) { cookie = webidl.converters.DOMString(cookie) return parseSetCookie(cookie) } /** * @param {Headers} headers * @param {Cookie} cookie * @returns {void} */ function setCookie (headers, cookie) { webidl.argumentLengthCheck(arguments, 2, 'setCookie') brandChecks(headers) cookie = webidl.converters.Cookie(cookie) const str = stringify(cookie) if (str) { headers.append('set-cookie', str, true) } } webidl.converters.DeleteCookieAttributes = webidl.dictionaryConverter([ { converter: webidl.nullableConverter(webidl.converters.DOMString), key: 'path', defaultValue: () => null }, { converter: webidl.nullableConverter(webidl.converters.DOMString), key: 'domain', defaultValue: () => null } ]) webidl.converters.Cookie = webidl.dictionaryConverter([ { converter: webidl.converters.DOMString, key: 'name' }, { converter: webidl.converters.DOMString, key: 'value' }, { converter: webidl.nullableConverter((value) => { if (typeof value === 'number') { return webidl.converters['unsigned long long'](value) } return new Date(value) }), key: 'expires', defaultValue: () => null }, { converter: webidl.nullableConverter(webidl.converters['long long']), key: 'maxAge', defaultValue: () => null }, { converter: webidl.nullableConverter(webidl.converters.DOMString), key: 'domain', defaultValue: () => null }, { converter: webidl.nullableConverter(webidl.converters.DOMString), key: 'path', defaultValue: () => null }, { converter: webidl.nullableConverter(webidl.converters.boolean), key: 'secure', defaultValue: () => null }, { converter: webidl.nullableConverter(webidl.converters.boolean), key: 'httpOnly', defaultValue: () => null }, { converter: webidl.converters.USVString, key: 'sameSite', allowedValues: ['Strict', 'Lax', 'None'] }, { converter: webidl.sequenceConverter(webidl.converters.DOMString), key: 'unparsed', defaultValue: () => [] } ]) module.exports = { getCookies, deleteCookie, getSetCookies, setCookie, parseCookie } /***/ }), /***/ 11978: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { "use strict"; const { collectASequenceOfCodePointsFast } = __nccwpck_require__(8116) const { maxNameValuePairSize, maxAttributeValueSize } = __nccwpck_require__(71276) const { isCTLExcludingHtab } = __nccwpck_require__(57797) const assert = __nccwpck_require__(34589) /** * @description Parses the field-value attributes of a set-cookie header string. * @see https://datatracker.ietf.org/doc/html/draft-ietf-httpbis-rfc6265bis#section-5.4 * @param {string} header * @returns {import('./index').Cookie|null} if the header is invalid, null will be returned */ function parseSetCookie (header) { // 1. If the set-cookie-string contains a %x00-08 / %x0A-1F / %x7F // character (CTL characters excluding HTAB): Abort these steps and // ignore the set-cookie-string entirely. if (isCTLExcludingHtab(header)) { return null } let nameValuePair = '' let unparsedAttributes = '' let name = '' let value = '' // 2. If the set-cookie-string contains a %x3B (";") character: if (header.includes(';')) { // 1. The name-value-pair string consists of the characters up to, // but not including, the first %x3B (";"), and the unparsed- // attributes consist of the remainder of the set-cookie-string // (including the %x3B (";") in question). const position = { position: 0 } nameValuePair = collectASequenceOfCodePointsFast(';', header, position) unparsedAttributes = header.slice(position.position) } else { // Otherwise: // 1. The name-value-pair string consists of all the characters // contained in the set-cookie-string, and the unparsed- // attributes is the empty string. nameValuePair = header } // 3. If the name-value-pair string lacks a %x3D ("=") character, then // the name string is empty, and the value string is the value of // name-value-pair. if (!nameValuePair.includes('=')) { value = nameValuePair } else { // Otherwise, the name string consists of the characters up to, but // not including, the first %x3D ("=") character, and the (possibly // empty) value string consists of the characters after the first // %x3D ("=") character. const position = { position: 0 } name = collectASequenceOfCodePointsFast( '=', nameValuePair, position ) value = nameValuePair.slice(position.position + 1) } // 4. Remove any leading or trailing WSP characters from the name // string and the value string. name = name.trim() value = value.trim() // 5. If the sum of the lengths of the name string and the value string // is more than 4096 octets, abort these steps and ignore the set- // cookie-string entirely. if (name.length + value.length > maxNameValuePairSize) { return null } // 6. The cookie-name is the name string, and the cookie-value is the // value string. // https://datatracker.ietf.org/doc/html/rfc6265 // To maximize compatibility with user agents, servers that wish to // store arbitrary data in a cookie-value SHOULD encode that data, for // example, using Base64 [RFC4648]. return { name, value, ...parseUnparsedAttributes(unparsedAttributes) } } /** * Parses the remaining attributes of a set-cookie header * @see https://datatracker.ietf.org/doc/html/draft-ietf-httpbis-rfc6265bis#section-5.4 * @param {string} unparsedAttributes * @param {Object.} [cookieAttributeList={}] */ function parseUnparsedAttributes (unparsedAttributes, cookieAttributeList = {}) { // 1. If the unparsed-attributes string is empty, skip the rest of // these steps. if (unparsedAttributes.length === 0) { return cookieAttributeList } // 2. Discard the first character of the unparsed-attributes (which // will be a %x3B (";") character). assert(unparsedAttributes[0] === ';') unparsedAttributes = unparsedAttributes.slice(1) let cookieAv = '' // 3. If the remaining unparsed-attributes contains a %x3B (";") // character: if (unparsedAttributes.includes(';')) { // 1. Consume the characters of the unparsed-attributes up to, but // not including, the first %x3B (";") character. cookieAv = collectASequenceOfCodePointsFast( ';', unparsedAttributes, { position: 0 } ) unparsedAttributes = unparsedAttributes.slice(cookieAv.length) } else { // Otherwise: // 1. Consume the remainder of the unparsed-attributes. cookieAv = unparsedAttributes unparsedAttributes = '' } // Let the cookie-av string be the characters consumed in this step. let attributeName = '' let attributeValue = '' // 4. If the cookie-av string contains a %x3D ("=") character: if (cookieAv.includes('=')) { // 1. The (possibly empty) attribute-name string consists of the // characters up to, but not including, the first %x3D ("=") // character, and the (possibly empty) attribute-value string // consists of the characters after the first %x3D ("=") // character. const position = { position: 0 } attributeName = collectASequenceOfCodePointsFast( '=', cookieAv, position ) attributeValue = cookieAv.slice(position.position + 1) } else { // Otherwise: // 1. The attribute-name string consists of the entire cookie-av // string, and the attribute-value string is empty. attributeName = cookieAv } // 5. Remove any leading or trailing WSP characters from the attribute- // name string and the attribute-value string. attributeName = attributeName.trim() attributeValue = attributeValue.trim() // 6. If the attribute-value is longer than 1024 octets, ignore the // cookie-av string and return to Step 1 of this algorithm. if (attributeValue.length > maxAttributeValueSize) { return parseUnparsedAttributes(unparsedAttributes, cookieAttributeList) } // 7. Process the attribute-name and attribute-value according to the // requirements in the following subsections. (Notice that // attributes with unrecognized attribute-names are ignored.) const attributeNameLowercase = attributeName.toLowerCase() // https://datatracker.ietf.org/doc/html/draft-ietf-httpbis-rfc6265bis#section-5.4.1 // If the attribute-name case-insensitively matches the string // "Expires", the user agent MUST process the cookie-av as follows. if (attributeNameLowercase === 'expires') { // 1. Let the expiry-time be the result of parsing the attribute-value // as cookie-date (see Section 5.1.1). const expiryTime = new Date(attributeValue) // 2. If the attribute-value failed to parse as a cookie date, ignore // the cookie-av. cookieAttributeList.expires = expiryTime } else if (attributeNameLowercase === 'max-age') { // https://datatracker.ietf.org/doc/html/draft-ietf-httpbis-rfc6265bis#section-5.4.2 // If the attribute-name case-insensitively matches the string "Max- // Age", the user agent MUST process the cookie-av as follows. // 1. If the first character of the attribute-value is not a DIGIT or a // "-" character, ignore the cookie-av. const charCode = attributeValue.charCodeAt(0) if ((charCode < 48 || charCode > 57) && attributeValue[0] !== '-') { return parseUnparsedAttributes(unparsedAttributes, cookieAttributeList) } // 2. If the remainder of attribute-value contains a non-DIGIT // character, ignore the cookie-av. if (!/^\d+$/.test(attributeValue)) { return parseUnparsedAttributes(unparsedAttributes, cookieAttributeList) } // 3. Let delta-seconds be the attribute-value converted to an integer. const deltaSeconds = Number(attributeValue) // 4. Let cookie-age-limit be the maximum age of the cookie (which // SHOULD be 400 days or less, see Section 4.1.2.2). // 5. Set delta-seconds to the smaller of its present value and cookie- // age-limit. // deltaSeconds = Math.min(deltaSeconds * 1000, maxExpiresMs) // 6. If delta-seconds is less than or equal to zero (0), let expiry- // time be the earliest representable date and time. Otherwise, let // the expiry-time be the current date and time plus delta-seconds // seconds. // const expiryTime = deltaSeconds <= 0 ? Date.now() : Date.now() + deltaSeconds // 7. Append an attribute to the cookie-attribute-list with an // attribute-name of Max-Age and an attribute-value of expiry-time. cookieAttributeList.maxAge = deltaSeconds } else if (attributeNameLowercase === 'domain') { // https://datatracker.ietf.org/doc/html/draft-ietf-httpbis-rfc6265bis#section-5.4.3 // If the attribute-name case-insensitively matches the string "Domain", // the user agent MUST process the cookie-av as follows. // 1. Let cookie-domain be the attribute-value. let cookieDomain = attributeValue // 2. If cookie-domain starts with %x2E ("."), let cookie-domain be // cookie-domain without its leading %x2E ("."). if (cookieDomain[0] === '.') { cookieDomain = cookieDomain.slice(1) } // 3. Convert the cookie-domain to lower case. cookieDomain = cookieDomain.toLowerCase() // 4. Append an attribute to the cookie-attribute-list with an // attribute-name of Domain and an attribute-value of cookie-domain. cookieAttributeList.domain = cookieDomain } else if (attributeNameLowercase === 'path') { // https://datatracker.ietf.org/doc/html/draft-ietf-httpbis-rfc6265bis#section-5.4.4 // If the attribute-name case-insensitively matches the string "Path", // the user agent MUST process the cookie-av as follows. // 1. If the attribute-value is empty or if the first character of the // attribute-value is not %x2F ("/"): let cookiePath = '' if (attributeValue.length === 0 || attributeValue[0] !== '/') { // 1. Let cookie-path be the default-path. cookiePath = '/' } else { // Otherwise: // 1. Let cookie-path be the attribute-value. cookiePath = attributeValue } // 2. Append an attribute to the cookie-attribute-list with an // attribute-name of Path and an attribute-value of cookie-path. cookieAttributeList.path = cookiePath } else if (attributeNameLowercase === 'secure') { // https://datatracker.ietf.org/doc/html/draft-ietf-httpbis-rfc6265bis#section-5.4.5 // If the attribute-name case-insensitively matches the string "Secure", // the user agent MUST append an attribute to the cookie-attribute-list // with an attribute-name of Secure and an empty attribute-value. cookieAttributeList.secure = true } else if (attributeNameLowercase === 'httponly') { // https://datatracker.ietf.org/doc/html/draft-ietf-httpbis-rfc6265bis#section-5.4.6 // If the attribute-name case-insensitively matches the string // "HttpOnly", the user agent MUST append an attribute to the cookie- // attribute-list with an attribute-name of HttpOnly and an empty // attribute-value. cookieAttributeList.httpOnly = true } else if (attributeNameLowercase === 'samesite') { // https://datatracker.ietf.org/doc/html/draft-ietf-httpbis-rfc6265bis#section-5.4.7 // If the attribute-name case-insensitively matches the string // "SameSite", the user agent MUST process the cookie-av as follows: const attributeValueLowercase = attributeValue.toLowerCase() // 1. If cookie-av's attribute-value is a case-insensitive match for // "None", append an attribute to the cookie-attribute-list with an // attribute-name of "SameSite" and an attribute-value of "None". if (attributeValueLowercase === 'none') { cookieAttributeList.sameSite = 'None' } else if (attributeValueLowercase === 'strict') { // 2. If cookie-av's attribute-value is a case-insensitive match for // "Strict", append an attribute to the cookie-attribute-list with // an attribute-name of "SameSite" and an attribute-value of // "Strict". cookieAttributeList.sameSite = 'Strict' } else if (attributeValueLowercase === 'lax') { // 3. If cookie-av's attribute-value is a case-insensitive match for // "Lax", append an attribute to the cookie-attribute-list with an // attribute-name of "SameSite" and an attribute-value of "Lax". cookieAttributeList.sameSite = 'Lax' } } else { cookieAttributeList.unparsed ??= [] cookieAttributeList.unparsed.push(`${attributeName}=${attributeValue}`) } // 8. Return to Step 1 of this algorithm. return parseUnparsedAttributes(unparsedAttributes, cookieAttributeList) } module.exports = { parseSetCookie, parseUnparsedAttributes } /***/ }), /***/ 57797: /***/ ((module) => { "use strict"; /** * @param {string} value * @returns {boolean} */ function isCTLExcludingHtab (value) { for (let i = 0; i < value.length; ++i) { const code = value.charCodeAt(i) if ( (code >= 0x00 && code <= 0x08) || (code >= 0x0A && code <= 0x1F) || code === 0x7F ) { return true } } return false } /** CHAR = token = 1* separators = "(" | ")" | "<" | ">" | "@" | "," | ";" | ":" | "\" | <"> | "/" | "[" | "]" | "?" | "=" | "{" | "}" | SP | HT * @param {string} name */ function validateCookieName (name) { for (let i = 0; i < name.length; ++i) { const code = name.charCodeAt(i) if ( code < 0x21 || // exclude CTLs (0-31), SP and HT code > 0x7E || // exclude non-ascii and DEL code === 0x22 || // " code === 0x28 || // ( code === 0x29 || // ) code === 0x3C || // < code === 0x3E || // > code === 0x40 || // @ code === 0x2C || // , code === 0x3B || // ; code === 0x3A || // : code === 0x5C || // \ code === 0x2F || // / code === 0x5B || // [ code === 0x5D || // ] code === 0x3F || // ? code === 0x3D || // = code === 0x7B || // { code === 0x7D // } ) { throw new Error('Invalid cookie name') } } } /** cookie-value = *cookie-octet / ( DQUOTE *cookie-octet DQUOTE ) cookie-octet = %x21 / %x23-2B / %x2D-3A / %x3C-5B / %x5D-7E ; US-ASCII characters excluding CTLs, ; whitespace DQUOTE, comma, semicolon, ; and backslash * @param {string} value */ function validateCookieValue (value) { let len = value.length let i = 0 // if the value is wrapped in DQUOTE if (value[0] === '"') { if (len === 1 || value[len - 1] !== '"') { throw new Error('Invalid cookie value') } --len ++i } while (i < len) { const code = value.charCodeAt(i++) if ( code < 0x21 || // exclude CTLs (0-31) code > 0x7E || // non-ascii and DEL (127) code === 0x22 || // " code === 0x2C || // , code === 0x3B || // ; code === 0x5C // \ ) { throw new Error('Invalid cookie value') } } } /** * path-value = * @param {string} path */ function validateCookiePath (path) { for (let i = 0; i < path.length; ++i) { const code = path.charCodeAt(i) if ( code < 0x20 || // exclude CTLs (0-31) code > 0x7E || // exclude DEL and non-ascii code === 0x3B // ; ) { throw new Error('Invalid cookie path') } } } /** * ::= | * * ::= any one of the 52 alphabetic characters A through Z in * upper case and a through z in lower case * * ::= any one of the ten digits 0 through 9r * * @see https://www.rfc-editor.org/rfc/rfc1034#section-3.5 * @param {number} code */ function isLetterOrDigit (code) { return ( (code >= 0x30 && code <= 0x39) || // 0-9 (code >= 0x41 && code <= 0x5A) || // A-Z (code >= 0x61 && code <= 0x7A) // a-z ) } /** * Validates a cookie domain against the "preferred name syntax". * * ::= | " " * ::=