module.exports = /******/ (function(modules, runtime) { // webpackBootstrap /******/ "use strict"; /******/ // The module cache /******/ var installedModules = {}; /******/ /******/ // The require function /******/ function __webpack_require__(moduleId) { /******/ /******/ // Check if module is in cache /******/ if(installedModules[moduleId]) { /******/ return installedModules[moduleId].exports; /******/ } /******/ // Create a new module (and put it into the cache) /******/ var module = installedModules[moduleId] = { /******/ i: moduleId, /******/ l: false, /******/ exports: {} /******/ }; /******/ /******/ // Execute the module function /******/ modules[moduleId].call(module.exports, module, module.exports, __webpack_require__); /******/ /******/ // Flag the module as loaded /******/ module.l = true; /******/ /******/ // Return the exports of the module /******/ return module.exports; /******/ } /******/ /******/ /******/ __webpack_require__.ab = __dirname + "/"; /******/ /******/ // the startup function /******/ function startup() { /******/ // Load entry module and return exports /******/ return __webpack_require__(778); /******/ }; /******/ /******/ // run startup /******/ return startup(); /******/ }) /************************************************************************/ /******/ ({ /***/ 1: /***/ (function(__unusedmodule, exports, __webpack_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 }); const childProcess = __webpack_require__(129); const path = __webpack_require__(622); const util_1 = __webpack_require__(669); const ioUtil = __webpack_require__(672); const exec = util_1.promisify(childProcess.exec); /** * 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 } = 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() ? 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 '${source}' are the same file`); } yield copyFile(source, newDest, force); } }); } exports.cp = cp; /** * Moves a path. * * @param source source path * @param dest destination path * @param options optional. See MoveOptions. */ function mv(source, dest, options = {}) { return __awaiter(this, void 0, void 0, function* () { if (yield ioUtil.exists(dest)) { let destExists = true; if (yield ioUtil.isDirectory(dest)) { // If dest is directory copy src into dest dest = path.join(dest, path.basename(source)); destExists = yield ioUtil.exists(dest); } if (destExists) { if (options.force == null || options.force) { yield rmRF(dest); } else { throw new Error('Destination already exists'); } } } yield mkdirP(path.dirname(dest)); yield ioUtil.rename(source, dest); }); } exports.mv = mv; /** * Remove a path recursively with force * * @param inputPath path to remove */ function rmRF(inputPath) { return __awaiter(this, void 0, void 0, function* () { if (ioUtil.IS_WINDOWS) { // Node doesn't provide a delete operation, only an unlink function. This means that if the file is being used by another // program (e.g. antivirus), it won't be deleted. To address this, we shell out the work to rd/del. try { if (yield ioUtil.isDirectory(inputPath, true)) { yield exec(`rd /s /q "${inputPath}"`); } else { yield exec(`del /f /a "${inputPath}"`); } } catch (err) { // if you try to delete a file that doesn't exist, desired result is achieved // other errors are valid if (err.code !== 'ENOENT') throw err; } // Shelling out fails to remove a symlink folder with missing source, this unlink catches that try { yield ioUtil.unlink(inputPath); } catch (err) { // if you try to delete a file that doesn't exist, desired result is achieved // other errors are valid if (err.code !== 'ENOENT') throw err; } } else { let isDir = false; try { isDir = yield ioUtil.isDirectory(inputPath); } catch (err) { // if you try to delete a file that doesn't exist, desired result is achieved // other errors are valid if (err.code !== 'ENOENT') throw err; return; } if (isDir) { yield exec(`rm -rf "${inputPath}"`); } else { yield ioUtil.unlink(inputPath); } } }); } 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* () { yield ioUtil.mkdirP(fsPath); }); } 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.`); } } } try { // 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('/') || (ioUtil.IS_WINDOWS && tool.includes('\\'))) { 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); } } } // return the first match for (const directory of directories) { const filePath = yield ioUtil.tryGetExecutablePath(directory + path.sep + tool, extensions); if (filePath) { return filePath; } } return ''; } catch (err) { throw new Error(`which failed with message ${err.message}`); } }); } exports.which = which; function readCopyOptions(options) { const force = options.force == null ? true : options.force; const recursive = Boolean(options.recursive); return { force, recursive }; } function cpDirRecursive(sourceDir, destDir, currentDepth, force) { return __awaiter(this, void 0, void 0, function* () { // Ensure there is not a run away recursive copy if (currentDepth >= 255) return; currentDepth++; yield mkdirP(destDir); const files = yield ioUtil.readdir(sourceDir); for (const fileName of files) { const srcFile = `${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 /***/ }), /***/ 2: /***/ (function(__unusedmodule, exports) { "use strict"; /*! * Copyright 2020, OpenTelemetry Authors * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * https://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ Object.defineProperty(exports, "__esModule", { value: true }); /** * Default getter which just does a simple property access. Returns * undefined if the key is not set. * * @param carrier * @param key */ function defaultGetter(carrier, key) { return carrier[key]; } exports.defaultGetter = defaultGetter; //# sourceMappingURL=getter.js.map /***/ }), /***/ 9: /***/ (function(__unusedmodule, exports, __webpack_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()); }); }; var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (Object.hasOwnProperty.call(mod, k)) result[k] = mod[k]; result["default"] = mod; return result; }; Object.defineProperty(exports, "__esModule", { value: true }); const os = __importStar(__webpack_require__(87)); const events = __importStar(__webpack_require__(614)); const child = __importStar(__webpack_require__(129)); const path = __importStar(__webpack_require__(622)); const io = __importStar(__webpack_require__(1)); const ioUtil = __importStar(__webpack_require__(672)); /* 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); } strBuffer = s; } catch (err) { // streaming lines to console is best effort. Don't fail a build. this._debug(`error processing line. Failed with error ${err}`); } } _getSpawnFileName() { if (IS_WINDOWS) { if (this._isCmdFile()) { return process.env['COMSPEC'] || 'cmd.exe'; } } return this.toolPath; } _getSpawnArgs(options) { if (IS_WINDOWS) { if (this._isCmdFile()) { let argline = `/D /S /C "${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) => { 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); }); const fileName = this._getSpawnFileName(); const cp = child.spawn(fileName, this._getSpawnArgs(optionsNonNull), this._getSpawnOptions(this.options, fileName)); const 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); } this._processLineBuffer(data, stdbuffer, (line) => { if (this.options.listeners && this.options.listeners.stdline) { this.options.listeners.stdline(line); } }); }); } const 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); } 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 = 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 /***/ }), /***/ 15: /***/ (function(__unusedmodule, exports, __webpack_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()); }); }; 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 __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (Object.hasOwnProperty.call(mod, k)) result[k] = mod[k]; result["default"] = mod; return result; }; Object.defineProperty(exports, "__esModule", { value: true }); const core = __importStar(__webpack_require__(470)); const exec = __importStar(__webpack_require__(986)); const glob = __importStar(__webpack_require__(281)); const io = __importStar(__webpack_require__(1)); const fs = __importStar(__webpack_require__(747)); const path = __importStar(__webpack_require__(622)); const semver = __importStar(__webpack_require__(280)); const util = __importStar(__webpack_require__(669)); const uuid_1 = __webpack_require__(898); const constants_1 = __webpack_require__(931); // From https://github.com/actions/toolkit/blob/master/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, uuid_1.v4()); yield io.mkdirP(dest); return dest; }); } exports.createTempDirectory = createTempDirectory; function getArchiveFileSizeIsBytes(filePath) { return fs.statSync(filePath).size; } exports.getArchiveFileSizeIsBytes = getArchiveFileSizeIsBytes; function resolvePaths(patterns) { var e_1, _a; var _b; return __awaiter(this, void 0, void 0, function* () { const paths = []; const workspace = (_b = process.env['GITHUB_WORKSPACE']) !== null && _b !== void 0 ? _b : process.cwd(); const globber = yield glob.create(patterns.join('\n'), { implicitDescendants: false }); try { for (var _c = __asyncValues(globber.globGenerator()), _d; _d = yield _c.next(), !_d.done;) { const file = _d.value; const relativeFile = path.relative(workspace, file); core.debug(`Matched: ${relativeFile}`); // Paths are made relative so the tar entries are all relative to the root of the workspace. paths.push(`${relativeFile}`); } } catch (e_1_1) { e_1 = { error: e_1_1 }; } finally { try { if (_d && !_d.done && (_a = _c.return)) yield _a.call(_c); } finally { if (e_1) throw e_1.error; } } return paths; }); } exports.resolvePaths = resolvePaths; function unlinkFile(filePath) { return __awaiter(this, void 0, void 0, function* () { return util.promisify(fs.unlink)(filePath); }); } exports.unlinkFile = unlinkFile; function getVersion(app) { return __awaiter(this, void 0, void 0, function* () { core.debug(`Checking ${app} --version`); let versionOutput = ''; try { yield exec.exec(`${app} --version`, [], { 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* () { if (process.platform === 'win32' && !(yield isGnuTarInstalled())) { // Disable zstd due to bug https://github.com/actions/cache/issues/301 return constants_1.CompressionMethod.Gzip; } const versionOutput = yield getVersion('zstd'); const version = semver.clean(versionOutput); if (!versionOutput.toLowerCase().includes('zstd command line interface')) { // zstd is not installed return constants_1.CompressionMethod.Gzip; } else if (!version || semver.lt(version, 'v1.3.2')) { // zstd is installed but using a version earlier than v1.3.2 // v1.3.2 is required to use the `--long` options in zstd return constants_1.CompressionMethod.ZstdWithoutLong; } else { return constants_1.CompressionMethod.Zstd; } }); } exports.getCompressionMethod = getCompressionMethod; function getCacheFileName(compressionMethod) { return compressionMethod === constants_1.CompressionMethod.Gzip ? constants_1.CacheFilename.Gzip : constants_1.CacheFilename.Zstd; } exports.getCacheFileName = getCacheFileName; function isGnuTarInstalled() { return __awaiter(this, void 0, void 0, function* () { const versionOutput = yield getVersion('tar'); return versionOutput.toLowerCase().includes('gnu tar'); }); } exports.isGnuTarInstalled = isGnuTarInstalled; function assertDefined(name, value) { if (value === undefined) { throw Error(`Expected ${name} but value was undefiend`); } return value; } exports.assertDefined = assertDefined; //# sourceMappingURL=cacheUtils.js.map /***/ }), /***/ 16: /***/ (function(module) { module.exports = require("tls"); /***/ }), /***/ 18: /***/ (function() { eval("require")("encoding"); /***/ }), /***/ 19: /***/ (function(module, __unusedexports, __webpack_require__) { // Generated by CoffeeScript 1.12.7 (function() { var NodeType, XMLDTDNotation, XMLNode, extend = function(child, parent) { for (var key in parent) { if (hasProp.call(parent, key)) child[key] = parent[key]; } function ctor() { this.constructor = child; } ctor.prototype = parent.prototype; child.prototype = new ctor(); child.__super__ = parent.prototype; return child; }, hasProp = {}.hasOwnProperty; XMLNode = __webpack_require__(855); NodeType = __webpack_require__(683); module.exports = XMLDTDNotation = (function(superClass) { extend(XMLDTDNotation, superClass); function XMLDTDNotation(parent, name, value) { XMLDTDNotation.__super__.constructor.call(this, parent); if (name == null) { throw new Error("Missing DTD notation name. " + this.debugInfo(name)); } if (!value.pubID && !value.sysID) { throw new Error("Public or system identifiers are required for an external entity. " + this.debugInfo(name)); } this.name = this.stringify.name(name); this.type = NodeType.NotationDeclaration; if (value.pubID != null) { this.pubID = this.stringify.dtdPubID(value.pubID); } if (value.sysID != null) { this.sysID = this.stringify.dtdSysID(value.sysID); } } Object.defineProperty(XMLDTDNotation.prototype, 'publicId', { get: function() { return this.pubID; } }); Object.defineProperty(XMLDTDNotation.prototype, 'systemId', { get: function() { return this.sysID; } }); XMLDTDNotation.prototype.toString = function(options) { return this.options.writer.dtdNotation(this, this.options.writer.filterOptions(options)); }; return XMLDTDNotation; })(XMLNode); }).call(this); /***/ }), /***/ 22: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; /*! * Copyright 2020, OpenTelemetry Authors * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * https://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ Object.defineProperty(exports, "__esModule", { value: true }); const getter_1 = __webpack_require__(2); const NoopHttpTextPropagator_1 = __webpack_require__(744); const setter_1 = __webpack_require__(753); const context_1 = __webpack_require__(492); const contextApi = context_1.ContextAPI.getInstance(); /** * Singleton object which represents the entry point to the OpenTelemetry Propagation API */ class PropagationAPI { /** Empty private constructor prevents end users from constructing a new instance of the API */ constructor() { this._propagator = NoopHttpTextPropagator_1.NOOP_HTTP_TEXT_PROPAGATOR; } /** Get the singleton instance of the Propagator API */ static getInstance() { if (!this._instance) { this._instance = new PropagationAPI(); } return this._instance; } /** * Set the current propagator. Returns the initialized propagator */ setGlobalPropagator(propagator) { this._propagator = propagator; return propagator; } /** * Inject context into a carrier to be propagated inter-process * * @param carrier carrier to inject context into * @param setter Function used to set values on the carrier * @param context Context carrying tracing data to inject. Defaults to the currently active context. */ inject(carrier, setter = setter_1.defaultSetter, context = contextApi.active()) { return this._propagator.inject(context, carrier, setter); } /** * Extract context from a carrier * * @param carrier Carrier to extract context from * @param getter Function used to extract keys from a carrier * @param context Context which the newly created context will inherit from. Defaults to the currently active context. */ extract(carrier, getter = getter_1.defaultGetter, context = contextApi.active()) { return this._propagator.extract(context, carrier, getter); } } exports.PropagationAPI = PropagationAPI; //# sourceMappingURL=propagation.js.map /***/ }), /***/ 40: /***/ (function(__unusedmodule, exports) { "use strict"; /*! * Copyright 2019, OpenTelemetry Authors * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * https://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ Object.defineProperty(exports, "__esModule", { value: true }); /** * EntryTtl is an integer that represents number of hops an entry can propagate. * * For now, ONLY special values (0 and -1) are supported. */ var EntryTtl; (function (EntryTtl) { /** * NO_PROPAGATION is considered to have local context and is used within the * process it created. */ EntryTtl[EntryTtl["NO_PROPAGATION"] = 0] = "NO_PROPAGATION"; /** UNLIMITED_PROPAGATION can propagate unlimited hops. */ EntryTtl[EntryTtl["UNLIMITED_PROPAGATION"] = -1] = "UNLIMITED_PROPAGATION"; })(EntryTtl = exports.EntryTtl || (exports.EntryTtl = {})); //# sourceMappingURL=EntryValue.js.map /***/ }), /***/ 43: /***/ (function(__unusedmodule, exports) { "use strict"; /*! * Copyright 2019, OpenTelemetry Authors * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * https://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ Object.defineProperty(exports, "__esModule", { value: true }); /** The Type of value. It describes how the data is reported. */ var ValueType; (function (ValueType) { ValueType[ValueType["INT"] = 0] = "INT"; ValueType[ValueType["DOUBLE"] = 1] = "DOUBLE"; })(ValueType = exports.ValueType || (exports.ValueType = {})); //# sourceMappingURL=Metric.js.map /***/ }), /***/ 50: /***/ (function(module) { module.exports = 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/***/ }), /***/ 53: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; /*! * Copyright 2019, OpenTelemetry Authors * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * https://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ Object.defineProperty(exports, "__esModule", { value: true }); const context_1 = __webpack_require__(560); class NoopContextManager { active() { return context_1.Context.ROOT_CONTEXT; } with(context, fn) { return fn(); } bind(target, context) { return target; } enable() { return this; } disable() { return this; } } exports.NoopContextManager = NoopContextManager; //# sourceMappingURL=NoopContextManager.js.map /***/ }), /***/ 65: /***/ (function(module) { // Generated by CoffeeScript 1.12.7 (function() { module.exports = { Disconnected: 1, Preceding: 2, Following: 4, Contains: 8, ContainedBy: 16, ImplementationSpecific: 32 }; }).call(this); /***/ }), /***/ 71: /***/ (function() { "use strict"; if (typeof Symbol === undefined || !Symbol.asyncIterator) { Symbol.asyncIterator = Symbol.for("Symbol.asyncIterator"); } //# sourceMappingURL=index.js.map /***/ }), /***/ 86: /***/ (function(module, __unusedexports, __webpack_require__) { var rng = __webpack_require__(139); var bytesToUuid = __webpack_require__(722); // **`v1()` - Generate time-based UUID** // // Inspired by https://github.com/LiosK/UUID.js // and http://docs.python.org/library/uuid.html var _nodeId; var _clockseq; // Previous uuid creation time var _lastMSecs = 0; var _lastNSecs = 0; // See https://github.com/uuidjs/uuid for API details function v1(options, buf, offset) { var i = buf && offset || 0; var b = buf || []; options = options || {}; var node = options.node || _nodeId; var clockseq = options.clockseq !== undefined ? options.clockseq : _clockseq; // node and clockseq need to be initialized to random values if they're not // specified. We do this lazily to minimize issues related to insufficient // system entropy. See #189 if (node == null || clockseq == null) { var seedBytes = rng(); if (node == null) { // Per 4.5, create and 48-bit node id, (47 random bits + multicast bit = 1) node = _nodeId = [ seedBytes[0] | 0x01, seedBytes[1], seedBytes[2], seedBytes[3], seedBytes[4], seedBytes[5] ]; } if (clockseq == null) { // Per 4.2.2, randomize (14 bit) clockseq clockseq = _clockseq = (seedBytes[6] << 8 | seedBytes[7]) & 0x3fff; } } // UUID timestamps are 100 nano-second units since the Gregorian epoch, // (1582-10-15 00:00). JSNumbers aren't precise enough for this, so // time is handled internally as 'msecs' (integer milliseconds) and 'nsecs' // (100-nanoseconds offset from msecs) since unix epoch, 1970-01-01 00:00. var msecs = options.msecs !== undefined ? options.msecs : new Date().getTime(); // Per 4.2.1.2, use count of uuid's generated during the current clock // cycle to simulate higher resolution clock var nsecs = options.nsecs !== undefined ? options.nsecs : _lastNSecs + 1; // Time since last uuid creation (in msecs) var dt = (msecs - _lastMSecs) + (nsecs - _lastNSecs)/10000; // Per 4.2.1.2, Bump clockseq on clock regression if (dt < 0 && options.clockseq === undefined) { clockseq = clockseq + 1 & 0x3fff; } // Reset nsecs if clock regresses (new clockseq) or we've moved onto a new // time interval if ((dt < 0 || msecs > _lastMSecs) && options.nsecs === undefined) { nsecs = 0; } // Per 4.2.1.2 Throw error if too many uuids are requested if (nsecs >= 10000) { throw new Error('uuid.v1(): Can\'t create more than 10M uuids/sec'); } _lastMSecs = msecs; _lastNSecs = nsecs; _clockseq = clockseq; // Per 4.1.4 - Convert from unix epoch to Gregorian epoch msecs += 12219292800000; // `time_low` var tl = ((msecs & 0xfffffff) * 10000 + nsecs) % 0x100000000; b[i++] = tl >>> 24 & 0xff; b[i++] = tl >>> 16 & 0xff; b[i++] = tl >>> 8 & 0xff; b[i++] = tl & 0xff; // `time_mid` var tmh = (msecs / 0x100000000 * 10000) & 0xfffffff; b[i++] = tmh >>> 8 & 0xff; b[i++] = tmh & 0xff; // `time_high_and_version` b[i++] = tmh >>> 24 & 0xf | 0x10; // include version b[i++] = tmh >>> 16 & 0xff; // `clock_seq_hi_and_reserved` (Per 4.2.2 - include variant) b[i++] = clockseq >>> 8 | 0x80; // `clock_seq_low` b[i++] = clockseq & 0xff; // `node` for (var n = 0; n < 6; ++n) { b[i + n] = node[n]; } return buf ? buf : bytesToUuid(b); } module.exports = v1; /***/ }), /***/ 87: /***/ (function(module) { module.exports = require("os"); /***/ }), /***/ 89: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; /*! * Copyright (c) 2015, Salesforce.com, 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: * * 1. Redistributions of source code must retain the above copyright notice, * this list of conditions and the following disclaimer. * * 2. 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. * * 3. Neither the name of Salesforce.com 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 HOLDER 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. */ const pubsuffix = __webpack_require__(562); // Gives the permutation of all possible domainMatch()es of a given domain. The // array is in shortest-to-longest order. Handy for indexing. const SPECIAL_USE_DOMAINS = ["local"]; // RFC 6761 function permuteDomain(domain, allowSpecialUseDomain) { let pubSuf = null; if (allowSpecialUseDomain) { const domainParts = domain.split("."); if (SPECIAL_USE_DOMAINS.includes(domainParts[domainParts.length - 1])) { pubSuf = `${domainParts[domainParts.length - 2]}.${ domainParts[domainParts.length - 1] }`; } else { pubSuf = pubsuffix.getPublicSuffix(domain); } } else { pubSuf = pubsuffix.getPublicSuffix(domain); } if (!pubSuf) { return null; } if (pubSuf == domain) { return [domain]; } const prefix = domain.slice(0, -(pubSuf.length + 1)); // ".example.com" const parts = prefix.split(".").reverse(); let cur = pubSuf; const permutations = [cur]; while (parts.length) { cur = `${parts.shift()}.${cur}`; permutations.push(cur); } return permutations; } exports.permuteDomain = permuteDomain; /***/ }), /***/ 90: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; Object.defineProperty(exports, "__esModule", { value: true }); exports.default = void 0; var _v = _interopRequireDefault(__webpack_require__(241)); var _sha = _interopRequireDefault(__webpack_require__(616)); function _interopRequireDefault(obj) { return obj && obj.__esModule ? obj : { default: obj }; } const v5 = (0, _v.default)('v5', 0x50, _sha.default); var _default = v5; exports.default = _default; /***/ }), /***/ 91: /***/ (function(module, __unusedexports, __webpack_require__) { var serialOrdered = __webpack_require__(892); // Public API module.exports = serial; /** * Runs iterator over provided array elements in series * * @param {array|object} list - array or object (named list) to iterate over * @param {function} iterator - iterator to run * @param {function} callback - invoked when all elements processed * @returns {function} - jobs terminator */ function serial(list, iterator, callback) { return serialOrdered(list, iterator, null, callback); } /***/ }), /***/ 93: /***/ (function(module, __unusedexports, __webpack_require__) { module.exports = minimatch minimatch.Minimatch = Minimatch var path = { sep: '/' } try { path = __webpack_require__(622) } catch (er) {} var GLOBSTAR = minimatch.GLOBSTAR = Minimatch.GLOBSTAR = {} var expand = __webpack_require__(306) 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) { a = a || {} b = b || {} var t = {} Object.keys(b).forEach(function (k) { t[k] = b[k] }) Object.keys(a).forEach(function (k) { t[k] = a[k] }) return t } minimatch.defaults = function (def) { if (!def || !Object.keys(def).length) return minimatch var orig = minimatch var m = function minimatch (p, pattern, options) { return orig.minimatch(p, pattern, ext(def, options)) } m.Minimatch = function Minimatch (pattern, options) { return new orig.Minimatch(pattern, ext(def, options)) } return m } Minimatch.defaults = function (def) { if (!def || !Object.keys(def).length) return Minimatch return minimatch.defaults(def).Minimatch } function minimatch (p, pattern, options) { if (typeof pattern !== 'string') { throw new TypeError('glob pattern string required') } if (!options) options = {} // shortcut: comments match nothing. if (!options.nocomment && pattern.charAt(0) === '#') { return false } // "" only matches "" if (pattern.trim() === '') return p === '' return new Minimatch(pattern, options).match(p) } function Minimatch (pattern, options) { if (!(this instanceof Minimatch)) { return new Minimatch(pattern, options) } if (typeof pattern !== 'string') { throw new TypeError('glob pattern string required') } if (!options) options = {} pattern = pattern.trim() // windows support: need to use /, not \ if (path.sep !== '/') { pattern = pattern.split(path.sep).join('/') } this.options = options this.set = [] this.pattern = pattern this.regexp = null this.negate = false this.comment = false this.empty = false // make the set of regexps etc. this.make() } Minimatch.prototype.debug = function () {} Minimatch.prototype.make = make function make () { // don't do it more than once. if (this._made) return 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 = console.error 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 if (typeof pattern === 'undefined') { throw new TypeError('undefined pattern') } if (options.nobrace || !pattern.match(/\{.*\}/)) { // shortcut. no need to expand. return [pattern] } return expand(pattern) } // 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) { if (pattern.length > 1024 * 64) { throw new TypeError('pattern is too long') } var options = this.options // shortcuts if (!options.noglobstar && pattern === '**') return GLOBSTAR 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) { 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 } // 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 "\[z-a\]" if (inClass) { // 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) { // 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) { 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 = match function match (f, 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) { var options = this.options this.debug('matchOne', { 'this': this, file: file, pattern: pattern }) this.debug('matchOne', file.length, pattern.length) for (var fi = 0, pi = 0, 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. if (p === false) return false if (p === GLOBSTAR) { this.debug('GLOBSTAR', [pattern, p, f]) // "**" // a/**/b/**/c would match the following: // a/b/x/y/z/c // a/x/y/z/b/c // a/b/x/b/x/c // a/b/c // To do this, take the rest of the pattern after // the **, and see if it would match the file remainder. // If so, return success. // If not, the ** "swallows" a segment, and try again. // This is recursively awful. // // a/**/b/**/c matching a/b/x/y/z/c // - a matches a // - doublestar // - matchOne(b/x/y/z/c, b/**/c) // - b matches b // - doublestar // - matchOne(x/y/z/c, c) -> no // - matchOne(y/z/c, c) -> no // - matchOne(z/c, c) -> no // - matchOne(c, c) yes, hit var fr = fi var pr = pi + 1 if (pr === pl) { this.debug('** at the end') // a ** at the end will just swallow the rest. // We have found a match. // however, it will not swallow /.x, unless // options.dot is set. // . and .. are *never* matched by **, for explosively // exponential reasons. for (; fi < fl; fi++) { if (file[fi] === '.' || file[fi] === '..' || (!options.dot && file[fi].charAt(0) === '.')) return false } return true } // ok, let's see if we can swallow whatever we can. while (fr < fl) { var swallowee = file[fr] this.debug('\nglobstar while', file, fr, pattern, pr, swallowee) // XXX remove this slice. Just pass the start index. if (this.matchOne(file.slice(fr), pattern.slice(pr), partial)) { this.debug('globstar found match!', fr, fl, swallowee) // found a match. return true } else { // can't swallow "." or ".." ever. // can only swallow ".foo" when explicitly asked. if (swallowee === '.' || swallowee === '..' || (!options.dot && swallowee.charAt(0) === '.')) { this.debug('dot detected!', file, fr, pattern, pr) break } // ** swallows a segment, and continue. this.debug('globstar swallow a segment, and continue') fr++ } } // no match was found. // However, in partial mode, we can't say this is necessarily over. // If there's more *pattern* left, then if (partial) { // ran out of file this.debug('\n>>> no match, partial?', file, fr, pattern, pr) if (fr === fl) return true } 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') { if (options.nocase) { hit = f.toLowerCase() === p.toLowerCase() } else { 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 } // Note: ending in / means that we'll get a final "" // at the end of the pattern. This can only match a // corresponding "" at the end of the file. // If the file ends in /, then it can only match a // a pattern that ends in /, unless the pattern just // doesn't have any more for it. But, a/b/ should *not* // match "a/b/*", even though "" matches against the // [^/]*? pattern, except in partial mode, where it might // simply not be reached yet. // However, a/b/ should still satisfy a/* // 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 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/ var emptyFileEnd = (fi === fl - 1) && (file[fi] === '') return emptyFileEnd } // should be unreachable. throw new Error('wtf?') } // replace stuff like \* with * function globUnescape (s) { return s.replace(/\\(.)/g, '$1') } function regExpEscape (s) { return s.replace(/[-[\]{}()*+?.,\\^$|#\s]/g, '\\$&') } /***/ }), /***/ 106: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; Object.defineProperty(exports, '__esModule', { value: true }); var tslib = __webpack_require__(422); var listenersMap = new WeakMap(); var 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 * await doAsyncWork(AbortSignal.none); * * @export * @class AbortSignal * @implements {AbortSignalLike} */ var AbortSignal = /** @class */ (function () { function AbortSignal() { /** * onabort event listener. * * @memberof AbortSignal */ this.onabort = null; listenersMap.set(this, []); abortedMap.set(this, false); } Object.defineProperty(AbortSignal.prototype, "aborted", { /** * Status of whether aborted or not. * * @readonly * @type {boolean} * @memberof AbortSignal */ get: function () { if (!abortedMap.has(this)) { throw new TypeError("Expected `this` to be an instance of AbortSignal."); } return abortedMap.get(this); }, enumerable: true, configurable: true }); Object.defineProperty(AbortSignal, "none", { /** * Creates a new AbortSignal instance that will never be aborted. * * @readonly * @static * @type {AbortSignal} * @memberof AbortSignal */ get: function () { return new AbortSignal(); }, enumerable: true, configurable: true }); /** * Added new "abort" event listener, only support "abort" event. * * @param {"abort"} _type Only support "abort" event * @param {(this: AbortSignalLike, ev: any) => any} listener * @memberof AbortSignal */ AbortSignal.prototype.addEventListener = function ( // tslint:disable-next-line:variable-name _type, listener) { if (!listenersMap.has(this)) { throw new TypeError("Expected `this` to be an instance of AbortSignal."); } var listeners = listenersMap.get(this); listeners.push(listener); }; /** * Remove "abort" event listener, only support "abort" event. * * @param {"abort"} _type Only support "abort" event * @param {(this: AbortSignalLike, ev: any) => any} listener * @memberof AbortSignal */ AbortSignal.prototype.removeEventListener = function ( // tslint:disable-next-line:variable-name _type, listener) { if (!listenersMap.has(this)) { throw new TypeError("Expected `this` to be an instance of AbortSignal."); } var listeners = listenersMap.get(this); var index = listeners.indexOf(listener); if (index > -1) { listeners.splice(index, 1); } }; /** * Dispatches a synthetic event to the AbortSignal. */ AbortSignal.prototype.dispatchEvent = function (_event) { throw new Error("This is a stub dispatchEvent implementation that should not be used. It only exists for type-checking purposes."); }; return AbortSignal; }()); /** * 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. * * @returns * @internal */ function abortSignal(signal) { if (signal.aborted) { return; } if (signal.onabort) { signal.onabort.call(signal); } var listeners = listenersMap.get(signal); if (listeners) { listeners.forEach(function (listener) { listener.call(signal, { type: "abort" }); }); } abortedMap.set(signal, true); } /** * 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 * const controller = new AbortController(); * controller.abort(); * try { * doAsyncWork(controller.signal) * } catch (e) { * if (e.name === 'AbortError') { * // handle abort error here. * } * } */ var AbortError = /** @class */ (function (_super) { tslib.__extends(AbortError, _super); function AbortError(message) { var _this = _super.call(this, message) || this; _this.name = "AbortError"; return _this; } return AbortError; }(Error)); /** * 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 * const controller = new AbortController(); * const signal = controller.signal; * doAsyncWork(signal); * button.addEventListener('click', () => controller.abort()); * * @example * // Share aborter cross multiple operations in 30s * // 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 * // 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)); * * @export * @class AbortController * @implements {AbortSignalLike} */ var AbortController = /** @class */ (function () { function AbortController(parentSignals) { var _this = this; this._signal = new AbortSignal(); if (!parentSignals) { return; } // coerce parentSignals into an array if (!Array.isArray(parentSignals)) { parentSignals = arguments; } for (var _i = 0, parentSignals_1 = parentSignals; _i < parentSignals_1.length; _i++) { var parentSignal = parentSignals_1[_i]; // 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", function () { _this.abort(); }); } } } Object.defineProperty(AbortController.prototype, "signal", { /** * The AbortSignal associated with this controller that will signal aborted * when the abort method is called on this controller. * * @readonly * @type {AbortSignal} * @memberof AbortController */ get: function () { return this._signal; }, enumerable: true, configurable: true }); /** * Signal that any operations passed this controller's associated abort signal * to cancel any remaining work and throw an `AbortError`. * * @memberof AbortController */ AbortController.prototype.abort = function () { abortSignal(this._signal); }; /** * Creates a new AbortSignal instance that will abort after the provided ms. * * @static * @params {number} ms Elapsed time in milliseconds to trigger an abort. * @returns {AbortSignal} */ AbortController.timeout = function (ms) { var signal = new AbortSignal(); var 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; }; return AbortController; }()); exports.AbortController = AbortController; exports.AbortError = AbortError; exports.AbortSignal = AbortSignal; //# sourceMappingURL=index.js.map /***/ }), /***/ 114: /***/ (function(__unusedmodule, exports, __webpack_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()); }); }; var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (Object.hasOwnProperty.call(mod, k)) result[k] = mod[k]; result["default"] = mod; return result; }; Object.defineProperty(exports, "__esModule", { value: true }); const core = __importStar(__webpack_require__(470)); const http_client_1 = __webpack_require__(539); const auth_1 = __webpack_require__(226); const crypto = __importStar(__webpack_require__(417)); const fs = __importStar(__webpack_require__(747)); const url_1 = __webpack_require__(835); const utils = __importStar(__webpack_require__(15)); const constants_1 = __webpack_require__(931); const downloadUtils_1 = __webpack_require__(251); const options_1 = __webpack_require__(538); const requestUtils_1 = __webpack_require__(899); const versionSalt = '1.0'; function getCacheApiUrl(resource) { // Ideally we just use ACTIONS_CACHE_URL const baseUrl = (process.env['ACTIONS_CACHE_URL'] || process.env['ACTIONS_RUNTIME_URL'] || '').replace('pipelines', 'artifactcache'); 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=${apiVersion}`; } function getRequestOptions() { const requestOptions = { headers: { Accept: createAcceptHeader('application/json', '6.0-preview.1') } }; return requestOptions; } function createHttpClient() { const token = process.env['ACTIONS_RUNTIME_TOKEN'] || ''; const bearerCredentialHandler = new auth_1.BearerCredentialHandler(token); return new http_client_1.HttpClient('actions/cache', [bearerCredentialHandler], getRequestOptions()); } function getCacheVersion(paths, compressionMethod) { const components = paths.concat(!compressionMethod || compressionMethod === constants_1.CompressionMethod.Gzip ? [] : [compressionMethod]); // Add salt to cache version to support breaking changes in cache entry components.push(versionSalt); return crypto .createHash('sha256') .update(components.join('|')) .digest('hex'); } exports.getCacheVersion = getCacheVersion; function getCacheEntry(keys, paths, options) { return __awaiter(this, void 0, void 0, function* () { const httpClient = createHttpClient(); const version = getCacheVersion(paths, options === null || options === void 0 ? void 0 : options.compressionMethod); const resource = `cache?keys=${encodeURIComponent(keys.join(','))}&version=${version}`; const response = yield requestUtils_1.retryTypedResponse('getCacheEntry', () => __awaiter(this, void 0, void 0, function* () { return httpClient.getJson(getCacheApiUrl(resource)); })); if (response.statusCode === 204) { return null; } if (!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) { throw new Error('Cache not found.'); } core.setSecret(cacheDownloadUrl); core.debug(`Cache Result:`); core.debug(JSON.stringify(cacheResult)); return cacheResult; }); } exports.getCacheEntry = getCacheEntry; function downloadCache(archiveLocation, archivePath, options) { return __awaiter(this, void 0, void 0, function* () { const archiveUrl = new url_1.URL(archiveLocation); const downloadOptions = options_1.getDownloadOptions(options); if (downloadOptions.useAzureSdk && archiveUrl.hostname.endsWith('.blob.core.windows.net')) { // Use Azure storage SDK to download caches hosted on Azure to improve speed and reliability. yield downloadUtils_1.downloadCacheStorageSDK(archiveLocation, archivePath, downloadOptions); } else { // Otherwise, download using the Actions http-client. yield downloadUtils_1.downloadCacheHttpClient(archiveLocation, archivePath); } }); } exports.downloadCache = downloadCache; // Reserve Cache function reserveCache(key, paths, options) { var _a, _b; return __awaiter(this, void 0, void 0, function* () { const httpClient = createHttpClient(); const version = getCacheVersion(paths, options === null || options === void 0 ? void 0 : options.compressionMethod); const reserveCacheRequest = { key, version }; const response = yield requestUtils_1.retryTypedResponse('reserveCache', () => __awaiter(this, void 0, void 0, function* () { return httpClient.postJson(getCacheApiUrl('caches'), reserveCacheRequest); })); return (_b = (_a = response === null || response === void 0 ? void 0 : response.result) === null || _a === void 0 ? void 0 : _a.cacheId) !== null && _b !== void 0 ? _b : -1; }); } exports.reserveCache = reserveCache; 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) }; yield requestUtils_1.retryHttpClientResponse(`uploadChunk (start: ${start}, end: ${end})`, () => __awaiter(this, void 0, void 0, function* () { return httpClient.sendStream('PATCH', resourceUrl, openStream(), additionalHeaders); })); }); } function uploadFile(httpClient, cacheId, archivePath, options) { return __awaiter(this, void 0, void 0, function* () { // Upload Chunks const fileSize = fs.statSync(archivePath).size; const resourceUrl = getCacheApiUrl(`caches/${cacheId.toString()}`); const fd = fs.openSync(archivePath, 'r'); const uploadOptions = 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 ${error.message}`); }), start, end); } }))); } finally { fs.closeSync(fd); } return; }); } function commitCache(httpClient, cacheId, filesize) { return __awaiter(this, void 0, void 0, function* () { const commitCacheRequest = { size: filesize }; return yield requestUtils_1.retryTypedResponse('commitCache', () => __awaiter(this, void 0, void 0, function* () { return httpClient.postJson(getCacheApiUrl(`caches/${cacheId.toString()}`), commitCacheRequest); })); }); } function saveCache(cacheId, archivePath, options) { return __awaiter(this, void 0, void 0, function* () { const httpClient = createHttpClient(); core.debug('Upload cache'); yield uploadFile(httpClient, cacheId, archivePath, options); // Commit Cache core.debug('Commiting cache'); const cacheSize = utils.getArchiveFileSizeIsBytes(archivePath); const commitCacheResponse = yield commitCache(httpClient, cacheId, cacheSize); if (!requestUtils_1.isSuccessStatusCode(commitCacheResponse.statusCode)) { throw new Error(`Cache service responded with ${commitCacheResponse.statusCode} during commit cache.`); } core.info('Cache saved successfully'); }); } exports.saveCache = saveCache; //# sourceMappingURL=cacheHttpClient.js.map /***/ }), /***/ 129: /***/ (function(module) { module.exports = require("child_process"); /***/ }), /***/ 136: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; /*! * Copyright 2020, OpenTelemetry Authors * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * https://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ Object.defineProperty(exports, "__esModule", { value: true }); const NoopMeterProvider_1 = __webpack_require__(450); /** * Singleton object which represents the entry point to the OpenTelemetry Metrics API */ class MetricsAPI { /** Empty private constructor prevents end users from constructing a new instance of the API */ constructor() { this._meterProvider = NoopMeterProvider_1.NOOP_METER_PROVIDER; } /** Get the singleton instance of the Metrics API */ static getInstance() { if (!this._instance) { this._instance = new MetricsAPI(); } return this._instance; } /** * Set the current global meter. Returns the initialized global meter provider. */ setGlobalMeterProvider(provider) { this._meterProvider = provider; return provider; } /** * Returns the global meter provider. */ getMeterProvider() { return this._meterProvider; } /** * Returns a meter from the global meter provider. */ getMeter(name, version) { return this.getMeterProvider().getMeter(name, version); } } exports.MetricsAPI = MetricsAPI; //# sourceMappingURL=metrics.js.map /***/ }), /***/ 139: /***/ (function(module, __unusedexports, __webpack_require__) { // Unique ID creation requires a high quality random # generator. In node.js // this is pretty straight-forward - we use the crypto API. var crypto = __webpack_require__(417); module.exports = function nodeRNG() { return crypto.randomBytes(16); }; /***/ }), /***/ 141: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; var net = __webpack_require__(631); var tls = __webpack_require__(16); var http = __webpack_require__(605); var https = __webpack_require__(211); var events = __webpack_require__(614); var assert = __webpack_require__(357); var util = __webpack_require__(669); 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 /***/ }), /***/ 147: /***/ (function(module) { // API module.exports = state; /** * Creates initial state object * for iteration over list * * @param {array|object} list - list to iterate over * @param {function|null} sortMethod - function to use for keys sort, * or `null` to keep them as is * @returns {object} - initial state object */ function state(list, sortMethod) { var isNamedList = !Array.isArray(list) , initState = { index : 0, keyedList: isNamedList || sortMethod ? Object.keys(list) : null, jobs : {}, results : isNamedList ? {} : [], size : isNamedList ? Object.keys(list).length : list.length } ; if (sortMethod) { // sort array keys based on it's values // sort object's keys just on own merit initState.keyedList.sort(isNamedList ? sortMethod : function(a, b) { return sortMethod(list[a], list[b]); }); } return initState; } /***/ }), /***/ 151: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; /*! * Copyright 2020, OpenTelemetry Authors * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * https://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ Object.defineProperty(exports, "__esModule", { value: true }); const NoopSpan_1 = __webpack_require__(767); /** * No-op implementations of {@link Tracer}. */ class NoopTracer { getCurrentSpan() { return NoopSpan_1.NOOP_SPAN; } // startSpan starts a noop span. startSpan(name, options) { return NoopSpan_1.NOOP_SPAN; } withSpan(span, fn) { return fn(); } bind(target, span) { return target; } } exports.NoopTracer = NoopTracer; exports.NOOP_TRACER = new NoopTracer(); //# sourceMappingURL=NoopTracer.js.map /***/ }), /***/ 152: /***/ (function(module, __unusedexports, __webpack_require__) { var Stream = __webpack_require__(794).Stream; var util = __webpack_require__(669); module.exports = DelayedStream; function DelayedStream() { this.source = null; this.dataSize = 0; this.maxDataSize = 1024 * 1024; this.pauseStream = true; this._maxDataSizeExceeded = false; this._released = false; this._bufferedEvents = []; } util.inherits(DelayedStream, Stream); DelayedStream.create = function(source, options) { var delayedStream = new this(); options = options || {}; for (var option in options) { delayedStream[option] = options[option]; } delayedStream.source = source; var realEmit = source.emit; source.emit = function() { delayedStream._handleEmit(arguments); return realEmit.apply(source, arguments); }; source.on('error', function() {}); if (delayedStream.pauseStream) { source.pause(); } return delayedStream; }; Object.defineProperty(DelayedStream.prototype, 'readable', { configurable: true, enumerable: true, get: function() { return this.source.readable; } }); DelayedStream.prototype.setEncoding = function() { return this.source.setEncoding.apply(this.source, arguments); }; DelayedStream.prototype.resume = function() { if (!this._released) { this.release(); } this.source.resume(); }; DelayedStream.prototype.pause = function() { this.source.pause(); }; DelayedStream.prototype.release = function() { this._released = true; this._bufferedEvents.forEach(function(args) { this.emit.apply(this, args); }.bind(this)); this._bufferedEvents = []; }; DelayedStream.prototype.pipe = function() { var r = Stream.prototype.pipe.apply(this, arguments); this.resume(); return r; }; DelayedStream.prototype._handleEmit = function(args) { if (this._released) { this.emit.apply(this, args); return; } if (args[0] === 'data') { this.dataSize += args[1].length; this._checkIfMaxDataSizeExceeded(); } this._bufferedEvents.push(args); }; DelayedStream.prototype._checkIfMaxDataSizeExceeded = function() { if (this._maxDataSizeExceeded) { return; } if (this.dataSize <= this.maxDataSize) { return; } this._maxDataSizeExceeded = true; var message = 'DelayedStream#maxDataSize of ' + this.maxDataSize + ' bytes exceeded.' this.emit('error', new Error(message)); }; /***/ }), /***/ 157: /***/ (function(module, __unusedexports, __webpack_require__) { var async = __webpack_require__(751) , abort = __webpack_require__(566) ; // API module.exports = iterate; /** * Iterates over each job object * * @param {array|object} list - array or object (named list) to iterate over * @param {function} iterator - iterator to run * @param {object} state - current job status * @param {function} callback - invoked when all elements processed */ function iterate(list, iterator, state, callback) { // store current index var key = state['keyedList'] ? state['keyedList'][state.index] : state.index; state.jobs[key] = runJob(iterator, key, list[key], function(error, output) { // don't repeat yourself // skip secondary callbacks if (!(key in state.jobs)) { return; } // clean up jobs delete state.jobs[key]; if (error) { // don't process rest of the results // stop still active jobs // and reset the list abort(state); } else { state.results[key] = output; } // return salvaged results callback(error, state.results); }); } /** * Runs iterator over provided job element * * @param {function} iterator - iterator to invoke * @param {string|number} key - key/index of the element in the list of jobs * @param {mixed} item - job description * @param {function} callback - invoked after iterator is done with the job * @returns {function|mixed} - job abort function or something else */ function runJob(iterator, key, item, callback) { var aborter; // allow shortcut if iterator expects only two arguments if (iterator.length == 2) { aborter = iterator(item, async(callback)); } // otherwise go with full three arguments else { aborter = iterator(item, key, async(callback)); } return aborter; } /***/ }), /***/ 162: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; /*! * Copyright 2019, OpenTelemetry Authors * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * https://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ Object.defineProperty(exports, "__esModule", { value: true }); const NoopTracer_1 = __webpack_require__(151); /** * An implementation of the {@link TracerProvider} which returns an impotent Tracer * for all calls to `getTracer` */ class NoopTracerProvider { getTracer(_name, _version) { return NoopTracer_1.NOOP_TRACER; } } exports.NoopTracerProvider = NoopTracerProvider; exports.NOOP_TRACER_PROVIDER = new NoopTracerProvider(); //# sourceMappingURL=NoopTracerProvider.js.map /***/ }), /***/ 173: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; Object.defineProperty(exports, "__esModule", { value: true }); exports.default = void 0; var _rng = _interopRequireDefault(__webpack_require__(733)); var _bytesToUuid = _interopRequireDefault(__webpack_require__(940)); function _interopRequireDefault(obj) { return obj && obj.__esModule ? obj : { default: obj }; } // **`v1()` - Generate time-based UUID** // // Inspired by https://github.com/LiosK/UUID.js // and http://docs.python.org/library/uuid.html let _nodeId; let _clockseq; // Previous uuid creation time let _lastMSecs = 0; let _lastNSecs = 0; // See https://github.com/uuidjs/uuid for API details function v1(options, buf, offset) { let i = buf && offset || 0; const b = buf || new Array(16); options = options || {}; let node = options.node || _nodeId; let clockseq = options.clockseq !== undefined ? options.clockseq : _clockseq; // node and clockseq need to be initialized to random values if they're not // specified. We do this lazily to minimize issues related to insufficient // system entropy. See #189 if (node == null || clockseq == null) { const seedBytes = options.random || (options.rng || _rng.default)(); if (node == null) { // Per 4.5, create and 48-bit node id, (47 random bits + multicast bit = 1) node = _nodeId = [seedBytes[0] | 0x01, seedBytes[1], seedBytes[2], seedBytes[3], seedBytes[4], seedBytes[5]]; } if (clockseq == null) { // Per 4.2.2, randomize (14 bit) clockseq clockseq = _clockseq = (seedBytes[6] << 8 | seedBytes[7]) & 0x3fff; } } // UUID timestamps are 100 nano-second units since the Gregorian epoch, // (1582-10-15 00:00). JSNumbers aren't precise enough for this, so // time is handled internally as 'msecs' (integer milliseconds) and 'nsecs' // (100-nanoseconds offset from msecs) since unix epoch, 1970-01-01 00:00. let msecs = options.msecs !== undefined ? options.msecs : Date.now(); // Per 4.2.1.2, use count of uuid's generated during the current clock // cycle to simulate higher resolution clock let nsecs = options.nsecs !== undefined ? options.nsecs : _lastNSecs + 1; // Time since last uuid creation (in msecs) const dt = msecs - _lastMSecs + (nsecs - _lastNSecs) / 10000; // Per 4.2.1.2, Bump clockseq on clock regression if (dt < 0 && options.clockseq === undefined) { clockseq = clockseq + 1 & 0x3fff; } // Reset nsecs if clock regresses (new clockseq) or we've moved onto a new // time interval if ((dt < 0 || msecs > _lastMSecs) && options.nsecs === undefined) { nsecs = 0; } // Per 4.2.1.2 Throw error if too many uuids are requested if (nsecs >= 10000) { throw new Error("uuid.v1(): Can't create more than 10M uuids/sec"); } _lastMSecs = msecs; _lastNSecs = nsecs; _clockseq = clockseq; // Per 4.1.4 - Convert from unix epoch to Gregorian epoch msecs += 12219292800000; // `time_low` const tl = ((msecs & 0xfffffff) * 10000 + nsecs) % 0x100000000; b[i++] = tl >>> 24 & 0xff; b[i++] = tl >>> 16 & 0xff; b[i++] = tl >>> 8 & 0xff; b[i++] = tl & 0xff; // `time_mid` const tmh = msecs / 0x100000000 * 10000 & 0xfffffff; b[i++] = tmh >>> 8 & 0xff; b[i++] = tmh & 0xff; // `time_high_and_version` b[i++] = tmh >>> 24 & 0xf | 0x10; // include version b[i++] = tmh >>> 16 & 0xff; // `clock_seq_hi_and_reserved` (Per 4.2.2 - include variant) b[i++] = clockseq >>> 8 | 0x80; // `clock_seq_low` b[i++] = clockseq & 0xff; // `node` for (let n = 0; n < 6; ++n) { b[i + n] = node[n]; } return buf || (0, _bytesToUuid.default)(b); } var _default = v1; exports.default = _default; /***/ }), /***/ 210: /***/ (function(__unusedmodule, exports) { // Generated by CoffeeScript 1.12.7 (function() { "use strict"; exports.stripBOM = function(str) { if (str[0] === '\uFEFF') { return str.substring(1); } else { return str; } }; }).call(this); /***/ }), /***/ 211: /***/ (function(module) { module.exports = require("https"); /***/ }), /***/ 213: /***/ (function(module) { module.exports = require("punycode"); /***/ }), /***/ 226: /***/ (function(__unusedmodule, exports) { "use strict"; Object.defineProperty(exports, "__esModule", { value: true }); class BasicCredentialHandler { constructor(username, password) { this.username = username; this.password = password; } prepareRequest(options) { options.headers['Authorization'] = 'Basic ' + Buffer.from(this.username + ':' + this.password).toString('base64'); } // This handler cannot handle 401 canHandleAuthentication(response) { return false; } handleAuthentication(httpClient, requestInfo, objs) { return null; } } 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) { options.headers['Authorization'] = 'Bearer ' + this.token; } // This handler cannot handle 401 canHandleAuthentication(response) { return false; } handleAuthentication(httpClient, requestInfo, objs) { return null; } } 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) { options.headers['Authorization'] = 'Basic ' + Buffer.from('PAT:' + this.token).toString('base64'); } // This handler cannot handle 401 canHandleAuthentication(response) { return false; } handleAuthentication(httpClient, requestInfo, objs) { return null; } } exports.PersonalAccessTokenCredentialHandler = PersonalAccessTokenCredentialHandler; /***/ }), /***/ 229: /***/ (function(__unusedmodule, exports) { "use strict"; Object.defineProperty(exports, '__esModule', { value: true }); // Copyright (c) Microsoft Corporation. // Licensed under the MIT license. /** * A static-key-based credential that supports updating * the underlying key value. */ var AzureKeyCredential = /** @class */ (function () { /** * Create an instance of an AzureKeyCredential for use * with a service client. * * @param key the initial value of the key to use in authentication */ function AzureKeyCredential(key) { if (!key) { throw new Error("key must be a non-empty string"); } this._key = key; } Object.defineProperty(AzureKeyCredential.prototype, "key", { /** * The value of the key to be used in authentication */ get: function () { return this._key; }, enumerable: false, configurable: true }); /** * Change the value of the key. * * Updates will take effect upon the next request after * updating the key value. * * @param newKey the new key value to be used */ AzureKeyCredential.prototype.update = function (newKey) { this._key = newKey; }; return AzureKeyCredential; }()); // Copyright (c) Microsoft Corporation. // Licensed under the MIT license. /** * Tests an object to determine whether it implements TokenCredential. * * @param credential The assumed TokenCredential to be tested. */ function isTokenCredential(credential) { // Check for an object with a 'getToken' function and possibly with // a 'signRequest' function. We do this check to make sure that // a ServiceClientCredentials implementor (like TokenClientCredentials // in ms-rest-nodeauth) doesn't get mistaken for a TokenCredential if // it doesn't actually implement TokenCredential also. return (credential && typeof credential.getToken === "function" && (credential.signRequest === undefined || credential.getToken.length > 0)); } exports.AzureKeyCredential = AzureKeyCredential; exports.isTokenCredential = isTokenCredential; //# sourceMappingURL=index.js.map /***/ }), /***/ 241: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; Object.defineProperty(exports, "__esModule", { value: true }); exports.default = _default; exports.URL = exports.DNS = void 0; var _bytesToUuid = _interopRequireDefault(__webpack_require__(940)); function _interopRequireDefault(obj) { return obj && obj.__esModule ? obj : { default: obj }; } function uuidToBytes(uuid) { // Note: We assume we're being passed a valid uuid string const bytes = []; uuid.replace(/[a-fA-F0-9]{2}/g, function (hex) { bytes.push(parseInt(hex, 16)); }); return bytes; } function stringToBytes(str) { str = unescape(encodeURIComponent(str)); // UTF8 escape const bytes = []; for (let i = 0; i < str.length; ++i) { bytes.push(str.charCodeAt(i)); } return bytes; } const DNS = '6ba7b810-9dad-11d1-80b4-00c04fd430c8'; exports.DNS = DNS; const URL = '6ba7b811-9dad-11d1-80b4-00c04fd430c8'; exports.URL = URL; function _default(name, version, hashfunc) { function generateUUID(value, namespace, buf, offset) { if (typeof value === 'string') { value = stringToBytes(value); } if (typeof namespace === 'string') { namespace = uuidToBytes(namespace); } if (!Array.isArray(value)) { throw TypeError('value must be an array of bytes'); } if (!Array.isArray(namespace) || namespace.length !== 16) { throw TypeError('namespace must be uuid string or an Array of 16 byte values'); } // Per 4.3 const bytes = hashfunc(namespace.concat(value)); bytes[6] = bytes[6] & 0x0f | version; bytes[8] = bytes[8] & 0x3f | 0x80; if (buf) { offset = offset || 0; for (let i = 0; i < 16; ++i) { buf[offset + i] = bytes[i]; } return buf; } return (0, _bytesToUuid.default)(bytes); } // Function#name is not settable on some platforms (#270) try { generateUUID.name = name; // eslint-disable-next-line no-empty } catch (err) {} // For CommonJS default export support generateUUID.DNS = DNS; generateUUID.URL = URL; return generateUUID; } /***/ }), /***/ 242: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; Object.defineProperty(exports, "__esModule", { value: true }); __webpack_require__(71); /***/ }), /***/ 245: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; Object.defineProperty(exports, "__esModule", { value: true }); exports.default = void 0; var _crypto = _interopRequireDefault(__webpack_require__(417)); function _interopRequireDefault(obj) { return obj && obj.__esModule ? obj : { default: obj }; } function md5(bytes) { if (Array.isArray(bytes)) { bytes = Buffer.from(bytes); } else if (typeof bytes === 'string') { bytes = Buffer.from(bytes, 'utf8'); } return _crypto.default.createHash('md5').update(bytes).digest(); } var _default = md5; exports.default = _default; /***/ }), /***/ 251: /***/ (function(__unusedmodule, exports, __webpack_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()); }); }; var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (Object.hasOwnProperty.call(mod, k)) result[k] = mod[k]; result["default"] = mod; return result; }; Object.defineProperty(exports, "__esModule", { value: true }); const core = __importStar(__webpack_require__(470)); const http_client_1 = __webpack_require__(539); const storage_blob_1 = __webpack_require__(373); const buffer = __importStar(__webpack_require__(293)); const fs = __importStar(__webpack_require__(747)); const stream = __importStar(__webpack_require__(794)); const util = __importStar(__webpack_require__(669)); const utils = __importStar(__webpack_require__(15)); const constants_1 = __webpack_require__(931); const requestUtils_1 = __webpack_require__(899); /** * 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 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.getArchiveFileSizeIsBytes(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'); } }); } exports.downloadCacheHttpClient = downloadCacheHttpClient; /** * 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) { var _a; return __awaiter(this, void 0, void 0, function* () { 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 const maxSegmentSize = buffer.constants.MAX_LENGTH; const downloadProgress = new DownloadProgress(contentLength); const fd = fs.openSync(archivePath, 'w'); try { downloadProgress.startDisplayTimer(); while (!downloadProgress.isDone()) { const segmentSize = Math.min(maxSegmentSize, contentLength - downloadProgress.segmentOffset); downloadProgress.nextSegment(segmentSize); const result = yield client.downloadToBuffer(downloadProgress.segmentOffset, segmentSize, { concurrency: options.downloadConcurrency, onProgress: downloadProgress.onProgress() }); fs.writeFileSync(fd, result); } } finally { downloadProgress.stopDisplayTimer(); fs.closeSync(fd); } } }); } exports.downloadCacheStorageSDK = downloadCacheStorageSDK; //# sourceMappingURL=downloadUtils.js.map /***/ }), /***/ 263: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; Object.defineProperty(exports, '__esModule', { value: true }); var api = __webpack_require__(440); var tslib = __webpack_require__(422); // Copyright (c) Microsoft Corporation. All rights reserved. /** * A no-op implementation of Span that can safely be used without side-effects. */ var NoOpSpan = /** @class */ (function () { function NoOpSpan() { } /** * Returns the SpanContext associated with this Span. */ NoOpSpan.prototype.context = function () { return { spanId: "", traceId: "", traceFlags: api.TraceFlags.NONE }; }; /** * Marks the end of Span execution. * @param _endTime The time to use as the Span's end time. Defaults to * the current time. */ NoOpSpan.prototype.end = function (_endTime) { /* Noop */ }; /** * Sets an attribute on the Span * @param _key the attribute key * @param _value the attribute value */ NoOpSpan.prototype.setAttribute = function (_key, _value) { return this; }; /** * Sets attributes on the Span * @param _attributes the attributes to add */ NoOpSpan.prototype.setAttributes = function (_attributes) { return this; }; /** * Adds an event to the Span * @param _name The name of the event * @param _attributes The associated attributes to add for this event */ NoOpSpan.prototype.addEvent = function (_name, _attributes) { return this; }; /** * Sets a status on the span. Overrides the default of CanonicalCode.OK. * @param _status The status to set. */ NoOpSpan.prototype.setStatus = function (_status) { return this; }; /** * Updates the name of the Span * @param _name the new Span name */ NoOpSpan.prototype.updateName = function (_name) { return this; }; /** * Returns whether this span will be recorded */ NoOpSpan.prototype.isRecording = function () { return false; }; return NoOpSpan; }()); // Copyright (c) Microsoft Corporation. All rights reserved. /** * A no-op implementation of Tracer that can be used when tracing * is disabled. */ var NoOpTracer = /** @class */ (function () { function NoOpTracer() { } /** * Starts a new Span. * @param _name The name of the span. * @param _options The SpanOptions used during Span creation. */ NoOpTracer.prototype.startSpan = function (_name, _options) { return new NoOpSpan(); }; /** * Returns the current Span from the current context, if available. */ NoOpTracer.prototype.getCurrentSpan = function () { return new NoOpSpan(); }; /** * Executes the given function within the context provided by a Span. * @param _span The span that provides the context. * @param fn The function to be executed. */ NoOpTracer.prototype.withSpan = function (_span, fn) { return fn(); }; /** * Bind a Span as the target's scope * @param target An object to bind the scope. * @param _span A specific Span to use. Otherwise, use the current one. */ NoOpTracer.prototype.bind = function (target, _span) { return target; }; return NoOpTracer; }()); // Copyright (c) Microsoft Corporation. All rights reserved. // Licensed under the MIT License. function getGlobalObject() { return global; } // Copyright (c) Microsoft Corporation. All rights reserved. // V1 = OpenTelemetry 0.1 // V2 = OpenTelemetry 0.2 // V3 = OpenTelemetry 0.6.1 var GLOBAL_TRACER_VERSION = 3; // preview5 shipped with @azure/core-tracing.tracerCache // and didn't have smart detection for collisions var GLOBAL_TRACER_SYMBOL = Symbol.for("@azure/core-tracing.tracerCache2"); var cache; function loadTracerCache() { var globalObj = getGlobalObject(); var existingCache = globalObj[GLOBAL_TRACER_SYMBOL]; var setGlobalCache = true; if (existingCache) { if (existingCache.version === GLOBAL_TRACER_VERSION) { cache = existingCache; } else { setGlobalCache = false; if (existingCache.tracer) { throw new Error("Two incompatible versions of @azure/core-tracing have been loaded.\n This library is " + GLOBAL_TRACER_VERSION + ", existing is " + existingCache.version + "."); } } } if (!cache) { cache = { tracer: undefined, version: GLOBAL_TRACER_VERSION }; } if (setGlobalCache) { globalObj[GLOBAL_TRACER_SYMBOL] = cache; } } function getCache() { if (!cache) { loadTracerCache(); } return cache; } // Copyright (c) Microsoft Corporation. All rights reserved. var defaultTracer; function getDefaultTracer() { if (!defaultTracer) { defaultTracer = new NoOpTracer(); } return defaultTracer; } /** * Sets the global tracer, enabling tracing for the Azure SDK. * @param tracer An OpenTelemetry Tracer instance. */ function setTracer(tracer) { var cache = getCache(); cache.tracer = tracer; } /** * Retrieves the active tracer, or returns a * no-op implementation if one is not set. */ function getTracer() { var cache = getCache(); if (!cache.tracer) { return getDefaultTracer(); } return cache.tracer; } // Copyright (c) Microsoft Corporation. All rights reserved. // Licensed under the MIT License. /** * @ignore * @internal */ var OpenCensusTraceStateWrapper = /** @class */ (function () { function OpenCensusTraceStateWrapper(state) { this._state = state; } OpenCensusTraceStateWrapper.prototype.get = function (_key) { throw new Error("Method not implemented."); }; OpenCensusTraceStateWrapper.prototype.set = function (_key, _value) { throw new Error("Method not implemented."); }; OpenCensusTraceStateWrapper.prototype.unset = function (_key) { throw new Error("Method not implemented"); }; OpenCensusTraceStateWrapper.prototype.serialize = function () { return this._state || ""; }; return OpenCensusTraceStateWrapper; }()); function isWrappedSpan(span) { return !!span && span.getWrappedSpan !== undefined; } function isTracer(tracerOrSpan) { return tracerOrSpan.getWrappedTracer !== undefined; } /** * An implementation of OpenTelemetry Span that wraps an OpenCensus Span. */ var OpenCensusSpanWrapper = /** @class */ (function () { function OpenCensusSpanWrapper(tracerOrSpan, name, options) { if (name === void 0) { name = ""; } if (options === void 0) { options = {}; } if (isTracer(tracerOrSpan)) { var parent = isWrappedSpan(options.parent) ? options.parent.getWrappedSpan() : undefined; this._span = tracerOrSpan.getWrappedTracer().startChildSpan({ name: name, childOf: parent }); this._span.start(); if (options.links) { for (var _i = 0, _a = options.links; _i < _a.length; _i++) { var link = _a[_i]; // Since there is no way to set the link relationship, leave it as Unspecified. this._span.addLink(link.context.traceId, link.context.spanId, 0 /* LinkType.UNSPECIFIED */, link.attributes); } } } else { this._span = tracerOrSpan; } } /** * The underlying OpenCensus Span */ OpenCensusSpanWrapper.prototype.getWrappedSpan = function () { return this._span; }; /** * Marks the end of Span execution. * @param endTime The time to use as the Span's end time. Defaults to * the current time. */ OpenCensusSpanWrapper.prototype.end = function (_endTime) { this._span.end(); }; /** * Returns the SpanContext associated with this Span. */ OpenCensusSpanWrapper.prototype.context = function () { var openCensusSpanContext = this._span.spanContext; return { spanId: openCensusSpanContext.spanId, traceId: openCensusSpanContext.traceId, traceFlags: openCensusSpanContext.options, traceState: new OpenCensusTraceStateWrapper(openCensusSpanContext.traceState) }; }; /** * Sets an attribute on the Span * @param key the attribute key * @param value the attribute value */ OpenCensusSpanWrapper.prototype.setAttribute = function (key, value) { this._span.addAttribute(key, value); return this; }; /** * Sets attributes on the Span * @param attributes the attributes to add */ OpenCensusSpanWrapper.prototype.setAttributes = function (attributes) { this._span.attributes = attributes; return this; }; /** * Adds an event to the Span * @param name The name of the event * @param attributes The associated attributes to add for this event */ OpenCensusSpanWrapper.prototype.addEvent = function (_name, _attributes) { throw new Error("Method not implemented."); }; /** * Sets a status on the span. Overrides the default of CanonicalCode.OK. * @param status The status to set. */ OpenCensusSpanWrapper.prototype.setStatus = function (status) { this._span.setStatus(status.code, status.message); return this; }; /** * Updates the name of the Span * @param name the new Span name */ OpenCensusSpanWrapper.prototype.updateName = function (name) { this._span.name = name; return this; }; /** * Returns whether this span will be recorded */ OpenCensusSpanWrapper.prototype.isRecording = function () { // NoRecordSpans have an empty traceId return !!this._span.traceId; }; return OpenCensusSpanWrapper; }()); /** * An implementation of OpenTelemetry Tracer that wraps an OpenCensus Tracer. */ var OpenCensusTracerWrapper = /** @class */ (function () { /** * Create a new wrapper around a given OpenCensus Tracer. * @param tracer The OpenCensus Tracer to wrap. */ function OpenCensusTracerWrapper(tracer) { this._tracer = tracer; } /** * The wrapped OpenCensus Tracer */ OpenCensusTracerWrapper.prototype.getWrappedTracer = function () { return this._tracer; }; /** * Starts a new Span. * @param name The name of the span. * @param options The SpanOptions used during Span creation. */ OpenCensusTracerWrapper.prototype.startSpan = function (name, options) { return new OpenCensusSpanWrapper(this, name, options); }; /** * Returns the current Span from the current context, if available. */ OpenCensusTracerWrapper.prototype.getCurrentSpan = function () { return undefined; }; /** * Executes the given function within the context provided by a Span. * @param _span The span that provides the context. * @param _fn The function to be executed. */ OpenCensusTracerWrapper.prototype.withSpan = function (_span, _fn) { throw new Error("Method not implemented."); }; /** * Bind a Span as the target's scope * @param target An object to bind the scope. * @param _span A specific Span to use. Otherwise, use the current one. */ OpenCensusTracerWrapper.prototype.bind = function (_target, _span) { throw new Error("Method not implemented."); }; return OpenCensusTracerWrapper; }()); /** * A mock span useful for testing. */ var TestSpan = /** @class */ (function (_super) { tslib.__extends(TestSpan, _super); /** * Starts a new Span. * @param parentTracer The tracer that created this Span * @param name The name of the span. * @param context The SpanContext this span belongs to * @param kind The SpanKind of this Span * @param parentSpanId The identifier of the parent Span * @param startTime The startTime of the event (defaults to now) */ function TestSpan(parentTracer, name, context, kind, parentSpanId, startTime) { if (startTime === void 0) { startTime = Date.now(); } var _this = _super.call(this) || this; _this._tracer = parentTracer; _this.name = name; _this.kind = kind; _this.startTime = startTime; _this.parentSpanId = parentSpanId; _this.status = { code: api.CanonicalCode.OK }; _this.endCalled = false; _this._context = context; _this.attributes = {}; return _this; } /** * Returns the Tracer that created this Span */ TestSpan.prototype.tracer = function () { return this._tracer; }; /** * Returns the SpanContext associated with this Span. */ TestSpan.prototype.context = function () { return this._context; }; /** * Marks the end of Span execution. * @param _endTime The time to use as the Span's end time. Defaults to * the current time. */ TestSpan.prototype.end = function (_endTime) { this.endCalled = true; }; /** * Sets a status on the span. Overrides the default of CanonicalCode.OK. * @param status The status to set. */ TestSpan.prototype.setStatus = function (status) { this.status = status; return this; }; /** * Returns whether this span will be recorded */ TestSpan.prototype.isRecording = function () { return true; }; /** * Sets an attribute on the Span * @param key the attribute key * @param value the attribute value */ TestSpan.prototype.setAttribute = function (key, value) { this.attributes[key] = value; return this; }; /** * Sets attributes on the Span * @param attributes the attributes to add */ TestSpan.prototype.setAttributes = function (attributes) { for (var _i = 0, _a = Object.keys(attributes); _i < _a.length; _i++) { var key = _a[_i]; this.attributes[key] = attributes[key]; } return this; }; return TestSpan; }(NoOpSpan)); /** * A mock tracer useful for testing */ var TestTracer = /** @class */ (function (_super) { tslib.__extends(TestTracer, _super); function TestTracer() { var _this = _super !== null && _super.apply(this, arguments) || this; _this.traceIdCounter = 0; _this.spanIdCounter = 0; _this.rootSpans = []; _this.knownSpans = []; return _this; } TestTracer.prototype.getNextTraceId = function () { this.traceIdCounter++; return String(this.traceIdCounter); }; TestTracer.prototype.getNextSpanId = function () { this.spanIdCounter++; return String(this.spanIdCounter); }; /** * Returns all Spans that were created without a parent */ TestTracer.prototype.getRootSpans = function () { return this.rootSpans; }; /** * Returns all Spans this Tracer knows about */ TestTracer.prototype.getKnownSpans = function () { return this.knownSpans; }; /** * Returns all Spans where end() has not been called */ TestTracer.prototype.getActiveSpans = function () { return this.knownSpans.filter(function (span) { return !span.endCalled; }); }; /** * Return all Spans for a particular trace, grouped by their * parent Span in a tree-like structure * @param traceId The traceId to return the graph for */ TestTracer.prototype.getSpanGraph = function (traceId) { var traceSpans = this.knownSpans.filter(function (span) { return span.context().traceId === traceId; }); var roots = []; var nodeMap = new Map(); for (var _i = 0, traceSpans_1 = traceSpans; _i < traceSpans_1.length; _i++) { var span = traceSpans_1[_i]; var spanId = span.context().spanId; var node = { name: span.name, children: [] }; nodeMap.set(spanId, node); if (span.parentSpanId) { var parent = nodeMap.get(span.parentSpanId); if (!parent) { throw new Error("Span with name " + node.name + " has an unknown parentSpan with id " + span.parentSpanId); } parent.children.push(node); } else { roots.push(node); } } return { roots: roots }; }; /** * Starts a new Span. * @param name The name of the span. * @param options The SpanOptions used during Span creation. */ TestTracer.prototype.startSpan = function (name, options) { if (options === void 0) { options = {}; } var parentContext = this._getParentContext(options); var traceId; var isRootSpan = false; if (parentContext && parentContext.traceId) { traceId = parentContext.traceId; } else { traceId = this.getNextTraceId(); isRootSpan = true; } var context = { traceId: traceId, spanId: this.getNextSpanId(), traceFlags: api.TraceFlags.NONE }; var span = new TestSpan(this, name, context, options.kind || api.SpanKind.INTERNAL, parentContext ? parentContext.spanId : undefined, options.startTime); this.knownSpans.push(span); if (isRootSpan) { this.rootSpans.push(span); } return span; }; TestTracer.prototype._getParentContext = function (options) { var parent = options.parent; var result; if (parent) { if ("traceId" in parent) { result = parent; } else { result = parent.context(); } } return result; }; return TestTracer; }(NoOpTracer)); // Copyright (c) Microsoft Corporation. All rights reserved. // Licensed under the MIT License. var VERSION = "00"; /** * Generates a `SpanContext` given a `traceparent` header value. * @param traceParent Serialized span context data as a `traceparent` header value. * @returns The `SpanContext` generated from the `traceparent` value. */ function extractSpanContextFromTraceParentHeader(traceParentHeader) { var parts = traceParentHeader.split("-"); if (parts.length !== 4) { return; } var version = parts[0], traceId = parts[1], spanId = parts[2], traceOptions = parts[3]; if (version !== VERSION) { return; } var traceFlags = parseInt(traceOptions, 16); var spanContext = { spanId: spanId, traceId: traceId, traceFlags: traceFlags }; return spanContext; } /** * Generates a `traceparent` value given a span context. * @param spanContext Contains context for a specific span. * @returns The `spanContext` represented as a `traceparent` value. */ function getTraceParentHeader(spanContext) { var missingFields = []; if (!spanContext.traceId) { missingFields.push("traceId"); } if (!spanContext.spanId) { missingFields.push("spanId"); } if (missingFields.length) { return; } var flags = spanContext.traceFlags || 0 /* NONE */; var hexFlags = flags.toString(16); var traceFlags = hexFlags.length === 1 ? "0" + hexFlags : hexFlags; // https://www.w3.org/TR/trace-context/#traceparent-header-field-values return VERSION + "-" + spanContext.traceId + "-" + spanContext.spanId + "-" + traceFlags; } exports.NoOpSpan = NoOpSpan; exports.NoOpTracer = NoOpTracer; exports.OpenCensusSpanWrapper = OpenCensusSpanWrapper; exports.OpenCensusTracerWrapper = OpenCensusTracerWrapper; exports.TestSpan = TestSpan; exports.TestTracer = TestTracer; exports.extractSpanContextFromTraceParentHeader = extractSpanContextFromTraceParentHeader; exports.getTraceParentHeader = getTraceParentHeader; exports.getTracer = getTracer; exports.setTracer = setTracer; //# sourceMappingURL=index.js.map /***/ }), /***/ 265: /***/ (function(module) { // Generated by CoffeeScript 1.12.7 (function() { var XMLNodeList; module.exports = XMLNodeList = (function() { function XMLNodeList(nodes) { this.nodes = nodes; } Object.defineProperty(XMLNodeList.prototype, 'length', { get: function() { return this.nodes.length || 0; } }); XMLNodeList.prototype.clone = function() { return this.nodes = null; }; XMLNodeList.prototype.item = function(index) { return this.nodes[index] || null; }; return XMLNodeList; })(); }).call(this); /***/ }), /***/ 280: /***/ (function(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 // The actual regexps go on exports.re var re = exports.re = [] var src = exports.src = [] var t = exports.tokens = {} var R = 0 function tok (n) { t[n] = R++ } // 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] = '[0-9]+' // ## 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-][a-zA-Z0-9-]*' // ## 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] = '[0-9A-Za-z-]+' // ## 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') // 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') 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') 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') 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]) } } 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 ? re[t.LOOSE] : re[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 ? re[t.LOOSE] : re[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) } 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 ? re[t.COMPARATORLOOSE] : re[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, split based on boolean or || this.raw = range this.set = range.split(/\s*\|\|\s*/).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: ' + range) } 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 range = range.trim() // `1.2.3 - 1.2.4` => `>=1.2.3 <=1.2.4` var hr = loose ? re[t.HYPHENRANGELOOSE] : re[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(re[t.COMPARATORTRIM], comparatorTrimReplace) debug('comparator trim', range, re[t.COMPARATORTRIM]) // `~ 1.2.3` => `~1.2.3` range = range.replace(re[t.TILDETRIM], tildeTrimReplace) // `^ 1.2.3` => `^1.2.3` range = range.replace(re[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 ? re[t.COMPARATORLOOSE] : re[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 ? re[t.TILDELOOSE] : re[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 ? re[t.CARETLOOSE] : re[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 ? re[t.XRANGELOOSE] : re[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(re[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(re[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 = re[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 } re[t.COERCERTL].lastIndex = next.index + next[1].length + next[2].length } // leave it in a clean state re[t.COERCERTL].lastIndex = -1 } if (match === null) { return null } return parse(match[2] + '.' + (match[3] || '0') + '.' + (match[4] || '0'), options) } /***/ }), /***/ 281: /***/ (function(__unusedmodule, exports, __webpack_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 }); const internal_globber_1 = __webpack_require__(297); /** * 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; //# sourceMappingURL=glob.js.map /***/ }), /***/ 293: /***/ (function(module) { module.exports = require("buffer"); /***/ }), /***/ 297: /***/ (function(__unusedmodule, exports, __webpack_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()); }); }; 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 }); const core = __webpack_require__(470); const fs = __webpack_require__(747); const globOptionsHelper = __webpack_require__(601); const path = __webpack_require__(622); const patternHelper = __webpack_require__(597); const internal_match_kind_1 = __webpack_require__(327); const internal_pattern_1 = __webpack_require__(923); const internal_search_state_1 = __webpack_require__(728); 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 e_1, _a; return __awaiter(this, void 0, void 0, function* () { const result = []; try { for (var _b = __asyncValues(this.globGenerator()), _c; _c = yield _b.next(), !_c.done;) { const itemPath = _c.value; result.push(itemPath); } } catch (e_1_1) { e_1 = { error: e_1_1 }; } finally { try { if (_c && !_c.done && (_a = _b.return)) yield _a.call(_b); } 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, 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; } // Directory if (stats.isDirectory()) { // Matched if (match & internal_match_kind_1.MatchKind.Directory) { 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 /***/ }), /***/ 298: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; Object.defineProperty(exports, "__esModule", { value: true }); exports.default = void 0; var _v = _interopRequireDefault(__webpack_require__(241)); var _md = _interopRequireDefault(__webpack_require__(245)); function _interopRequireDefault(obj) { return obj && obj.__esModule ? obj : { default: obj }; } const v3 = (0, _v.default)('v3', 0x30, _md.default); var _default = v3; exports.default = _default; /***/ }), /***/ 304: /***/ (function(module) { module.exports = require("string_decoder"); /***/ }), /***/ 306: /***/ (function(module, __unusedexports, __webpack_require__) { var concatMap = __webpack_require__(896); var balanced = __webpack_require__(621); 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'; 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) { if (!str) return []; // 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), 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; } function expand(str, isTop) { var expansions = []; var m = balanced('{', '}', str); if (!m || /\$$/.test(m.pre)) return [str]; 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; return expand(str); } return [str]; } var n; if (isSequence) { n = m.body.split(/\.\./); } else { n = parseCommaParts(m.body); if (n.length === 1) { // x{{a,b}}y ==> x{a}y x{b}y n = expand(n[0], false).map(embrace); if (n.length === 1) { var post = m.post.length ? expand(m.post, false) : ['']; return post.map(function(p) { return m.pre + n[0] + p; }); } } } // at this point, n is the parts, and we know it's not a comma set // with a single entry. // no need to expand pre, since it is guaranteed to be free of brace-sets var pre = m.pre; var post = m.post.length ? expand(m.post, false) : ['']; var N; if (isSequence) { 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 ? Math.abs(numeric(n[2])) : 1; var test = lte; var reverse = y < x; if (reverse) { incr *= -1; test = gte; } var pad = n.some(isPadded); N = []; for (var i = x; test(i, y); 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; } } } N.push(c); } } else { N = concatMap(n, function(el) { return expand(el, false) }); } for (var j = 0; j < N.length; j++) { for (var k = 0; k < post.length; k++) { var expansion = pre + N[j] + post[k]; if (!isTop || isSequence || expansion) expansions.push(expansion); } } return expansions; } /***/ }), /***/ 312: /***/ (function(module, __unusedexports, __webpack_require__) { // Generated by CoffeeScript 1.12.7 (function() { var NodeType, WriterState, XMLDOMImplementation, XMLDocument, XMLDocumentCB, XMLStreamWriter, XMLStringWriter, assign, isFunction, ref; ref = __webpack_require__(582), assign = ref.assign, isFunction = ref.isFunction; XMLDOMImplementation = __webpack_require__(515); XMLDocument = __webpack_require__(559); XMLDocumentCB = __webpack_require__(768); XMLStringWriter = __webpack_require__(347); XMLStreamWriter = __webpack_require__(458); NodeType = __webpack_require__(683); WriterState = __webpack_require__(541); module.exports.create = function(name, xmldec, doctype, options) { var doc, root; if (name == null) { throw new Error("Root element needs a name."); } options = assign({}, xmldec, doctype, options); doc = new XMLDocument(options); root = doc.element(name); if (!options.headless) { doc.declaration(options); if ((options.pubID != null) || (options.sysID != null)) { doc.dtd(options); } } return root; }; module.exports.begin = function(options, onData, onEnd) { var ref1; if (isFunction(options)) { ref1 = [options, onData], onData = ref1[0], onEnd = ref1[1]; options = {}; } if (onData) { return new XMLDocumentCB(options, onData, onEnd); } else { return new XMLDocument(options); } }; module.exports.stringWriter = function(options) { return new XMLStringWriter(options); }; module.exports.streamWriter = function(stream, options) { return new XMLStreamWriter(stream, options); }; module.exports.implementation = new XMLDOMImplementation(); module.exports.nodeType = NodeType; module.exports.writerState = WriterState; }).call(this); /***/ }), /***/ 327: /***/ (function(__unusedmodule, exports) { "use strict"; Object.defineProperty(exports, "__esModule", { value: true }); /** * 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 || (exports.MatchKind = {})); //# sourceMappingURL=internal-match-kind.js.map /***/ }), /***/ 332: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; /*! * Copyright (c) 2015, Salesforce.com, 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: * * 1. Redistributions of source code must retain the above copyright notice, * this list of conditions and the following disclaimer. * * 2. 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. * * 3. Neither the name of Salesforce.com 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 HOLDER 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. */ const { fromCallback } = __webpack_require__(676); const Store = __webpack_require__(338).Store; const permuteDomain = __webpack_require__(89).permuteDomain; const pathMatch = __webpack_require__(348).pathMatch; const util = __webpack_require__(669); class MemoryCookieStore extends Store { constructor() { super(); this.synchronous = true; this.idx = {}; if (util.inspect.custom) { this[util.inspect.custom] = this.inspect; } } inspect() { return `{ idx: ${util.inspect(this.idx, false, 2)} }`; } findCookie(domain, path, key, cb) { if (!this.idx[domain]) { return cb(null, undefined); } if (!this.idx[domain][path]) { return cb(null, undefined); } return cb(null, this.idx[domain][path][key] || null); } findCookies(domain, path, allowSpecialUseDomain, cb) { const results = []; if (typeof allowSpecialUseDomain === "function") { cb = allowSpecialUseDomain; allowSpecialUseDomain = false; } if (!domain) { return cb(null, []); } let pathMatcher; if (!path) { // null means "all paths" pathMatcher = function matchAll(domainIndex) { for (const curPath in domainIndex) { const pathIndex = domainIndex[curPath]; for (const key in pathIndex) { results.push(pathIndex[key]); } } }; } else { pathMatcher = function matchRFC(domainIndex) { //NOTE: we should use path-match algorithm from S5.1.4 here //(see : https://github.com/ChromiumWebApps/chromium/blob/b3d3b4da8bb94c1b2e061600df106d590fda3620/net/cookies/canonical_cookie.cc#L299) Object.keys(domainIndex).forEach(cookiePath => { if (pathMatch(path, cookiePath)) { const pathIndex = domainIndex[cookiePath]; for (const key in pathIndex) { results.push(pathIndex[key]); } } }); }; } const domains = permuteDomain(domain, allowSpecialUseDomain) || [domain]; const idx = this.idx; domains.forEach(curDomain => { const domainIndex = idx[curDomain]; if (!domainIndex) { return; } pathMatcher(domainIndex); }); cb(null, results); } putCookie(cookie, cb) { if (!this.idx[cookie.domain]) { this.idx[cookie.domain] = {}; } if (!this.idx[cookie.domain][cookie.path]) { this.idx[cookie.domain][cookie.path] = {}; } this.idx[cookie.domain][cookie.path][cookie.key] = cookie; cb(null); } updateCookie(oldCookie, newCookie, cb) { // updateCookie() may avoid updating cookies that are identical. For example, // lastAccessed may not be important to some stores and an equality // comparison could exclude that field. this.putCookie(newCookie, cb); } removeCookie(domain, path, key, cb) { if ( this.idx[domain] && this.idx[domain][path] && this.idx[domain][path][key] ) { delete this.idx[domain][path][key]; } cb(null); } removeCookies(domain, path, cb) { if (this.idx[domain]) { if (path) { delete this.idx[domain][path]; } else { delete this.idx[domain]; } } return cb(null); } removeAllCookies(cb) { this.idx = {}; return cb(null); } getAllCookies(cb) { const cookies = []; const idx = this.idx; const domains = Object.keys(idx); domains.forEach(domain => { const paths = Object.keys(idx[domain]); paths.forEach(path => { const keys = Object.keys(idx[domain][path]); keys.forEach(key => { if (key !== null) { cookies.push(idx[domain][path][key]); } }); }); }); // Sort by creationIndex so deserializing retains the creation order. // When implementing your own store, this SHOULD retain the order too cookies.sort((a, b) => { return (a.creationIndex || 0) - (b.creationIndex || 0); }); cb(null, cookies); } } [ "findCookie", "findCookies", "putCookie", "updateCookie", "removeCookie", "removeCookies", "removeAllCookies", "getAllCookies" ].forEach(name => { MemoryCookieStore[name] = fromCallback(MemoryCookieStore.prototype[name]); }); exports.MemoryCookieStore = MemoryCookieStore; /***/ }), /***/ 334: /***/ (function(module, __unusedexports, __webpack_require__) { module.exports = { parallel : __webpack_require__(424), serial : __webpack_require__(91), serialOrdered : __webpack_require__(892) }; /***/ }), /***/ 338: /***/ (function(__unusedmodule, exports) { "use strict"; /*! * Copyright (c) 2015, Salesforce.com, 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: * * 1. Redistributions of source code must retain the above copyright notice, * this list of conditions and the following disclaimer. * * 2. 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. * * 3. Neither the name of Salesforce.com 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 HOLDER 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. */ /*jshint unused:false */ class Store { constructor() { this.synchronous = false; } findCookie(domain, path, key, cb) { throw new Error("findCookie is not implemented"); } findCookies(domain, path, allowSpecialUseDomain, cb) { throw new Error("findCookies is not implemented"); } putCookie(cookie, cb) { throw new Error("putCookie is not implemented"); } updateCookie(oldCookie, newCookie, cb) { // recommended default implementation: // return this.putCookie(newCookie, cb); throw new Error("updateCookie is not implemented"); } removeCookie(domain, path, key, cb) { throw new Error("removeCookie is not implemented"); } removeCookies(domain, path, cb) { throw new Error("removeCookies is not implemented"); } removeAllCookies(cb) { throw new Error("removeAllCookies is not implemented"); } getAllCookies(cb) { throw new Error( "getAllCookies is not implemented (therefore jar cannot be serialized)" ); } } exports.Store = Store; /***/ }), /***/ 343: /***/ (function(module) { module.exports = require("timers"); /***/ }), /***/ 347: /***/ (function(module, __unusedexports, __webpack_require__) { // Generated by CoffeeScript 1.12.7 (function() { var XMLStringWriter, XMLWriterBase, extend = function(child, parent) { for (var key in parent) { if (hasProp.call(parent, key)) child[key] = parent[key]; } function ctor() { this.constructor = child; } ctor.prototype = parent.prototype; child.prototype = new ctor(); child.__super__ = parent.prototype; return child; }, hasProp = {}.hasOwnProperty; XMLWriterBase = __webpack_require__(423); module.exports = XMLStringWriter = (function(superClass) { extend(XMLStringWriter, superClass); function XMLStringWriter(options) { XMLStringWriter.__super__.constructor.call(this, options); } XMLStringWriter.prototype.document = function(doc, options) { var child, i, len, r, ref; options = this.filterOptions(options); r = ''; ref = doc.children; for (i = 0, len = ref.length; i < len; i++) { child = ref[i]; r += this.writeChildNode(child, options, 0); } if (options.pretty && r.slice(-options.newline.length) === options.newline) { r = r.slice(0, -options.newline.length); } return r; }; return XMLStringWriter; })(XMLWriterBase); }).call(this); /***/ }), /***/ 348: /***/ (function(__unusedmodule, exports) { "use strict"; /*! * Copyright (c) 2015, Salesforce.com, 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: * * 1. Redistributions of source code must retain the above copyright notice, * this list of conditions and the following disclaimer. * * 2. 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. * * 3. Neither the name of Salesforce.com 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 HOLDER 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. */ /* * "A request-path path-matches a given cookie-path if at least one of the * following conditions holds:" */ function pathMatch(reqPath, cookiePath) { // "o The cookie-path and the request-path are identical." if (cookiePath === reqPath) { return true; } const idx = reqPath.indexOf(cookiePath); if (idx === 0) { // "o The cookie-path is a prefix of the request-path, and the last // character of the cookie-path is %x2F ("/")." if (cookiePath.substr(-1) === "/") { return true; } // " o The cookie-path is a prefix of the request-path, and the first // character of the request-path that is not included in the cookie- path // is a %x2F ("/") character." if (reqPath.substr(cookiePath.length, 1) === "/") { return true; } } return false; } exports.pathMatch = pathMatch; /***/ }), /***/ 350: /***/ (function(__unusedmodule, exports) { // Generated by CoffeeScript 1.12.7 (function() { "use strict"; var prefixMatch; prefixMatch = new RegExp(/(?!xmlns)^.*:/); exports.normalize = function(str) { return str.toLowerCase(); }; exports.firstCharLowerCase = function(str) { return str.charAt(0).toLowerCase() + str.slice(1); }; exports.stripPrefix = function(str) { return str.replace(prefixMatch, ''); }; exports.parseNumbers = function(str) { if (!isNaN(str)) { str = str % 1 === 0 ? parseInt(str, 10) : parseFloat(str); } return str; }; exports.parseBooleans = function(str) { if (/^(?:true|false)$/i.test(str)) { str = str.toLowerCase() === 'true'; } return str; }; }).call(this); /***/ }), /***/ 357: /***/ (function(module) { module.exports = require("assert"); /***/ }), /***/ 373: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; Object.defineProperty(exports, '__esModule', { value: true }); var coreHttp = __webpack_require__(999); var tslib = __webpack_require__(422); var api = __webpack_require__(440); var logger$1 = __webpack_require__(928); var abortController = __webpack_require__(106); var os = __webpack_require__(87); var stream = __webpack_require__(794); var fs = __webpack_require__(747); var util = __webpack_require__(669); var crypto = __webpack_require__(417); var events = __webpack_require__(614); var coreTracing = __webpack_require__(263); var coreLro = __webpack_require__(889); __webpack_require__(242); /* * Copyright (c) Microsoft Corporation. All rights reserved. * Licensed under the MIT License. See License.txt in the project root for license information. * * Code generated by Microsoft (R) AutoRest Code Generator. * Changes may cause incorrect behavior and will be lost if the code is regenerated. */ var KeyInfo = { serializedName: "KeyInfo", type: { name: "Composite", className: "KeyInfo", modelProperties: { startsOn: { xmlName: "Start", required: true, serializedName: "Start", type: { name: "String" } }, expiresOn: { xmlName: "Expiry", required: true, serializedName: "Expiry", type: { name: "String" } } } } }; var UserDelegationKey = { serializedName: "UserDelegationKey", type: { name: "Composite", className: "UserDelegationKey", modelProperties: { signedObjectId: { xmlName: "SignedOid", required: true, serializedName: "SignedOid", type: { name: "String" } }, signedTenantId: { xmlName: "SignedTid", required: true, serializedName: "SignedTid", type: { name: "String" } }, signedStartsOn: { xmlName: "SignedStart", required: true, serializedName: "SignedStart", type: { name: "String" } }, signedExpiresOn: { xmlName: "SignedExpiry", required: true, serializedName: "SignedExpiry", type: { name: "String" } }, signedService: { xmlName: "SignedService", required: true, serializedName: "SignedService", type: { name: "String" } }, signedVersion: { xmlName: "SignedVersion", required: true, serializedName: "SignedVersion", type: { name: "String" } }, value: { xmlName: "Value", required: true, serializedName: "Value", type: { name: "String" } } } } }; var StorageError = { serializedName: "StorageError", type: { name: "Composite", className: "StorageError", modelProperties: { message: { xmlName: "Message", serializedName: "Message", type: { name: "String" } } } } }; var DataLakeStorageErrorError = { serializedName: "DataLakeStorageError_error", type: { name: "Composite", className: "DataLakeStorageErrorError", modelProperties: { code: { xmlName: "Code", serializedName: "Code", type: { name: "String" } }, message: { xmlName: "Message", serializedName: "Message", type: { name: "String" } } } } }; var DataLakeStorageError = { serializedName: "DataLakeStorageError", type: { name: "Composite", className: "DataLakeStorageError", modelProperties: { error: { xmlName: "error", serializedName: "error", type: { name: "Composite", className: "DataLakeStorageErrorError" } } } } }; var AccessPolicy = { serializedName: "AccessPolicy", type: { name: "Composite", className: "AccessPolicy", modelProperties: { startsOn: { xmlName: "Start", serializedName: "Start", type: { name: "String" } }, expiresOn: { xmlName: "Expiry", serializedName: "Expiry", type: { name: "String" } }, permissions: { xmlName: "Permission", serializedName: "Permission", type: { name: "String" } } } } }; var BlobProperties = { xmlName: "Properties", serializedName: "BlobProperties", type: { name: "Composite", className: "BlobProperties", modelProperties: { createdOn: { xmlName: "Creation-Time", serializedName: "Creation-Time", type: { name: "DateTimeRfc1123" } }, lastModified: { xmlName: "Last-Modified", required: true, serializedName: "Last-Modified", type: { name: "DateTimeRfc1123" } }, etag: { xmlName: "Etag", required: true, serializedName: "Etag", type: { name: "String" } }, contentLength: { xmlName: "Content-Length", serializedName: "Content-Length", type: { name: "Number" } }, contentType: { xmlName: "Content-Type", serializedName: "Content-Type", type: { name: "String" } }, contentEncoding: { xmlName: "Content-Encoding", serializedName: "Content-Encoding", type: { name: "String" } }, contentLanguage: { xmlName: "Content-Language", serializedName: "Content-Language", type: { name: "String" } }, contentMD5: { xmlName: "Content-MD5", serializedName: "Content-MD5", type: { name: "ByteArray" } }, contentDisposition: { xmlName: "Content-Disposition", serializedName: "Content-Disposition", type: { name: "String" } }, cacheControl: { xmlName: "Cache-Control", serializedName: "Cache-Control", type: { name: "String" } }, blobSequenceNumber: { xmlName: "x-ms-blob-sequence-number", serializedName: "x-ms-blob-sequence-number", type: { name: "Number" } }, blobType: { xmlName: "BlobType", serializedName: "BlobType", type: { name: "Enum", allowedValues: [ "BlockBlob", "PageBlob", "AppendBlob" ] } }, leaseStatus: { xmlName: "LeaseStatus", serializedName: "LeaseStatus", type: { name: "Enum", allowedValues: [ "locked", "unlocked" ] } }, leaseState: { xmlName: "LeaseState", serializedName: "LeaseState", type: { name: "Enum", allowedValues: [ "available", "leased", "expired", "breaking", "broken" ] } }, leaseDuration: { xmlName: "LeaseDuration", serializedName: "LeaseDuration", type: { name: "Enum", allowedValues: [ "infinite", "fixed" ] } }, copyId: { xmlName: "CopyId", serializedName: "CopyId", type: { name: "String" } }, copyStatus: { xmlName: "CopyStatus", serializedName: "CopyStatus", type: { name: "Enum", allowedValues: [ "pending", "success", "aborted", "failed" ] } }, copySource: { xmlName: "CopySource", serializedName: "CopySource", type: { name: "String" } }, copyProgress: { xmlName: "CopyProgress", serializedName: "CopyProgress", type: { name: "String" } }, copyCompletedOn: { xmlName: "CopyCompletionTime", serializedName: "CopyCompletionTime", type: { name: "DateTimeRfc1123" } }, copyStatusDescription: { xmlName: "CopyStatusDescription", serializedName: "CopyStatusDescription", type: { name: "String" } }, serverEncrypted: { xmlName: "ServerEncrypted", serializedName: "ServerEncrypted", type: { name: "Boolean" } }, incrementalCopy: { xmlName: "IncrementalCopy", serializedName: "IncrementalCopy", type: { name: "Boolean" } }, destinationSnapshot: { xmlName: "DestinationSnapshot", serializedName: "DestinationSnapshot", type: { name: "String" } }, deletedOn: { xmlName: "DeletedTime", serializedName: "DeletedTime", type: { name: "DateTimeRfc1123" } }, remainingRetentionDays: { xmlName: "RemainingRetentionDays", serializedName: "RemainingRetentionDays", type: { name: "Number" } }, accessTier: { xmlName: "AccessTier", serializedName: "AccessTier", type: { name: "String" } }, accessTierInferred: { xmlName: "AccessTierInferred", serializedName: "AccessTierInferred", type: { name: "Boolean" } }, archiveStatus: { xmlName: "ArchiveStatus", serializedName: "ArchiveStatus", type: { name: "String" } }, customerProvidedKeySha256: { xmlName: "CustomerProvidedKeySha256", serializedName: "CustomerProvidedKeySha256", type: { name: "String" } }, encryptionScope: { xmlName: "EncryptionScope", serializedName: "EncryptionScope", type: { name: "String" } }, accessTierChangedOn: { xmlName: "AccessTierChangeTime", serializedName: "AccessTierChangeTime", type: { name: "DateTimeRfc1123" } } } } }; var BlobItem = { xmlName: "Blob", serializedName: "BlobItem", type: { name: "Composite", className: "BlobItem", modelProperties: { name: { xmlName: "Name", required: true, serializedName: "Name", type: { name: "String" } }, deleted: { xmlName: "Deleted", required: true, serializedName: "Deleted", type: { name: "Boolean" } }, snapshot: { xmlName: "Snapshot", required: true, serializedName: "Snapshot", type: { name: "String" } }, properties: { xmlName: "Properties", required: true, serializedName: "Properties", type: { name: "Composite", className: "BlobProperties" } }, metadata: { xmlName: "Metadata", serializedName: "Metadata", type: { name: "Dictionary", value: { type: { name: "String" } } } } } } }; var BlobFlatListSegment = { xmlName: "Blobs", serializedName: "BlobFlatListSegment", type: { name: "Composite", className: "BlobFlatListSegment", modelProperties: { blobItems: { xmlName: "BlobItems", xmlElementName: "Blob", required: true, serializedName: "BlobItems", type: { name: "Sequence", element: { type: { name: "Composite", className: "BlobItem" } } } } } } }; var ListBlobsFlatSegmentResponse = { xmlName: "EnumerationResults", serializedName: "ListBlobsFlatSegmentResponse", type: { name: "Composite", className: "ListBlobsFlatSegmentResponse", modelProperties: { serviceEndpoint: { xmlIsAttribute: true, xmlName: "ServiceEndpoint", required: true, serializedName: "ServiceEndpoint", type: { name: "String" } }, containerName: { xmlIsAttribute: true, xmlName: "ContainerName", required: true, serializedName: "ContainerName", type: { name: "String" } }, prefix: { xmlName: "Prefix", serializedName: "Prefix", type: { name: "String" } }, marker: { xmlName: "Marker", serializedName: "Marker", type: { name: "String" } }, maxPageSize: { xmlName: "MaxResults", serializedName: "MaxResults", type: { name: "Number" } }, segment: { xmlName: "Blobs", required: true, serializedName: "Segment", type: { name: "Composite", className: "BlobFlatListSegment" } }, continuationToken: { xmlName: "NextMarker", serializedName: "NextMarker", type: { name: "String" } } } } }; var BlobPrefix = { serializedName: "BlobPrefix", type: { name: "Composite", className: "BlobPrefix", modelProperties: { name: { xmlName: "Name", required: true, serializedName: "Name", type: { name: "String" } } } } }; var BlobHierarchyListSegment = { xmlName: "Blobs", serializedName: "BlobHierarchyListSegment", type: { name: "Composite", className: "BlobHierarchyListSegment", modelProperties: { blobPrefixes: { xmlName: "BlobPrefixes", xmlElementName: "BlobPrefix", serializedName: "BlobPrefixes", type: { name: "Sequence", element: { type: { name: "Composite", className: "BlobPrefix" } } } }, blobItems: { xmlName: "BlobItems", xmlElementName: "Blob", required: true, serializedName: "BlobItems", type: { name: "Sequence", element: { type: { name: "Composite", className: "BlobItem" } } } } } } }; var ListBlobsHierarchySegmentResponse = { xmlName: "EnumerationResults", serializedName: "ListBlobsHierarchySegmentResponse", type: { name: "Composite", className: "ListBlobsHierarchySegmentResponse", modelProperties: { serviceEndpoint: { xmlIsAttribute: true, xmlName: "ServiceEndpoint", required: true, serializedName: "ServiceEndpoint", type: { name: "String" } }, containerName: { xmlIsAttribute: true, xmlName: "ContainerName", required: true, serializedName: "ContainerName", type: { name: "String" } }, prefix: { xmlName: "Prefix", serializedName: "Prefix", type: { name: "String" } }, marker: { xmlName: "Marker", serializedName: "Marker", type: { name: "String" } }, maxPageSize: { xmlName: "MaxResults", serializedName: "MaxResults", type: { name: "Number" } }, delimiter: { xmlName: "Delimiter", serializedName: "Delimiter", type: { name: "String" } }, segment: { xmlName: "Blobs", required: true, serializedName: "Segment", type: { name: "Composite", className: "BlobHierarchyListSegment" } }, continuationToken: { xmlName: "NextMarker", serializedName: "NextMarker", type: { name: "String" } } } } }; var Block = { serializedName: "Block", type: { name: "Composite", className: "Block", modelProperties: { name: { xmlName: "Name", required: true, serializedName: "Name", type: { name: "String" } }, size: { xmlName: "Size", required: true, serializedName: "Size", type: { name: "Number" } } } } }; var BlockList = { serializedName: "BlockList", type: { name: "Composite", className: "BlockList", modelProperties: { committedBlocks: { xmlIsWrapped: true, xmlName: "CommittedBlocks", xmlElementName: "Block", serializedName: "CommittedBlocks", type: { name: "Sequence", element: { type: { name: "Composite", className: "Block" } } } }, uncommittedBlocks: { xmlIsWrapped: true, xmlName: "UncommittedBlocks", xmlElementName: "Block", serializedName: "UncommittedBlocks", type: { name: "Sequence", element: { type: { name: "Composite", className: "Block" } } } } } } }; var BlockLookupList = { xmlName: "BlockList", serializedName: "BlockLookupList", type: { name: "Composite", className: "BlockLookupList", modelProperties: { committed: { xmlName: "Committed", xmlElementName: "Committed", serializedName: "Committed", type: { name: "Sequence", element: { type: { name: "String" } } } }, uncommitted: { xmlName: "Uncommitted", xmlElementName: "Uncommitted", serializedName: "Uncommitted", type: { name: "Sequence", element: { type: { name: "String" } } } }, latest: { xmlName: "Latest", xmlElementName: "Latest", serializedName: "Latest", type: { name: "Sequence", element: { type: { name: "String" } } } } } } }; var ContainerProperties = { serializedName: "ContainerProperties", type: { name: "Composite", className: "ContainerProperties", modelProperties: { lastModified: { xmlName: "Last-Modified", required: true, serializedName: "Last-Modified", type: { name: "DateTimeRfc1123" } }, etag: { xmlName: "Etag", required: true, serializedName: "Etag", type: { name: "String" } }, leaseStatus: { xmlName: "LeaseStatus", serializedName: "LeaseStatus", type: { name: "Enum", allowedValues: [ "locked", "unlocked" ] } }, leaseState: { xmlName: "LeaseState", serializedName: "LeaseState", type: { name: "Enum", allowedValues: [ "available", "leased", "expired", "breaking", "broken" ] } }, leaseDuration: { xmlName: "LeaseDuration", serializedName: "LeaseDuration", type: { name: "Enum", allowedValues: [ "infinite", "fixed" ] } }, publicAccess: { xmlName: "PublicAccess", serializedName: "PublicAccess", type: { name: "String" } }, hasImmutabilityPolicy: { xmlName: "HasImmutabilityPolicy", serializedName: "HasImmutabilityPolicy", type: { name: "Boolean" } }, hasLegalHold: { xmlName: "HasLegalHold", serializedName: "HasLegalHold", type: { name: "Boolean" } }, defaultEncryptionScope: { xmlName: "DefaultEncryptionScope", serializedName: "DefaultEncryptionScope", type: { name: "String" } }, preventEncryptionScopeOverride: { xmlName: "DenyEncryptionScopeOverride", serializedName: "DenyEncryptionScopeOverride", type: { name: "Boolean" } } } } }; var ContainerItem = { xmlName: "Container", serializedName: "ContainerItem", type: { name: "Composite", className: "ContainerItem", modelProperties: { name: { xmlName: "Name", required: true, serializedName: "Name", type: { name: "String" } }, properties: { xmlName: "Properties", required: true, serializedName: "Properties", type: { name: "Composite", className: "ContainerProperties" } }, metadata: { xmlName: "Metadata", serializedName: "Metadata", type: { name: "Dictionary", value: { type: { name: "String" } } } } } } }; var ListContainersSegmentResponse = { xmlName: "EnumerationResults", serializedName: "ListContainersSegmentResponse", type: { name: "Composite", className: "ListContainersSegmentResponse", modelProperties: { serviceEndpoint: { xmlIsAttribute: true, xmlName: "ServiceEndpoint", required: true, serializedName: "ServiceEndpoint", type: { name: "String" } }, prefix: { xmlName: "Prefix", serializedName: "Prefix", type: { name: "String" } }, marker: { xmlName: "Marker", serializedName: "Marker", type: { name: "String" } }, maxPageSize: { xmlName: "MaxResults", serializedName: "MaxResults", type: { name: "Number" } }, containerItems: { xmlIsWrapped: true, xmlName: "Containers", xmlElementName: "Container", required: true, serializedName: "ContainerItems", type: { name: "Sequence", element: { type: { name: "Composite", className: "ContainerItem" } } } }, continuationToken: { xmlName: "NextMarker", serializedName: "NextMarker", type: { name: "String" } } } } }; var CorsRule = { serializedName: "CorsRule", type: { name: "Composite", className: "CorsRule", modelProperties: { allowedOrigins: { xmlName: "AllowedOrigins", required: true, serializedName: "AllowedOrigins", type: { name: "String" } }, allowedMethods: { xmlName: "AllowedMethods", required: true, serializedName: "AllowedMethods", type: { name: "String" } }, allowedHeaders: { xmlName: "AllowedHeaders", required: true, serializedName: "AllowedHeaders", type: { name: "String" } }, exposedHeaders: { xmlName: "ExposedHeaders", required: true, serializedName: "ExposedHeaders", type: { name: "String" } }, maxAgeInSeconds: { xmlName: "MaxAgeInSeconds", required: true, serializedName: "MaxAgeInSeconds", constraints: { InclusiveMinimum: 0 }, type: { name: "Number" } } } } }; var GeoReplication = { serializedName: "GeoReplication", type: { name: "Composite", className: "GeoReplication", modelProperties: { status: { xmlName: "Status", required: true, serializedName: "Status", type: { name: "String" } }, lastSyncOn: { xmlName: "LastSyncTime", required: true, serializedName: "LastSyncTime", type: { name: "DateTimeRfc1123" } } } } }; var RetentionPolicy = { serializedName: "RetentionPolicy", type: { name: "Composite", className: "RetentionPolicy", modelProperties: { enabled: { xmlName: "Enabled", required: true, serializedName: "Enabled", type: { name: "Boolean" } }, days: { xmlName: "Days", serializedName: "Days", constraints: { InclusiveMinimum: 1 }, type: { name: "Number" } } } } }; var Logging = { serializedName: "Logging", type: { name: "Composite", className: "Logging", modelProperties: { version: { xmlName: "Version", required: true, serializedName: "Version", type: { name: "String" } }, deleteProperty: { xmlName: "Delete", required: true, serializedName: "Delete", type: { name: "Boolean" } }, read: { xmlName: "Read", required: true, serializedName: "Read", type: { name: "Boolean" } }, write: { xmlName: "Write", required: true, serializedName: "Write", type: { name: "Boolean" } }, retentionPolicy: { xmlName: "RetentionPolicy", required: true, serializedName: "RetentionPolicy", type: { name: "Composite", className: "RetentionPolicy" } } } } }; var Metrics = { serializedName: "Metrics", type: { name: "Composite", className: "Metrics", modelProperties: { version: { xmlName: "Version", serializedName: "Version", type: { name: "String" } }, enabled: { xmlName: "Enabled", required: true, serializedName: "Enabled", type: { name: "Boolean" } }, includeAPIs: { xmlName: "IncludeAPIs", serializedName: "IncludeAPIs", type: { name: "Boolean" } }, retentionPolicy: { xmlName: "RetentionPolicy", serializedName: "RetentionPolicy", type: { name: "Composite", className: "RetentionPolicy" } } } } }; var PageRange = { serializedName: "PageRange", type: { name: "Composite", className: "PageRange", modelProperties: { start: { xmlName: "Start", required: true, serializedName: "Start", type: { name: "Number" } }, end: { xmlName: "End", required: true, serializedName: "End", type: { name: "Number" } } } } }; var ClearRange = { serializedName: "ClearRange", type: { name: "Composite", className: "ClearRange", modelProperties: { start: { xmlName: "Start", required: true, serializedName: "Start", type: { name: "Number" } }, end: { xmlName: "End", required: true, serializedName: "End", type: { name: "Number" } } } } }; var PageList = { serializedName: "PageList", type: { name: "Composite", className: "PageList", modelProperties: { pageRange: { xmlName: "PageRange", xmlElementName: "PageRange", serializedName: "PageRange", type: { name: "Sequence", element: { type: { name: "Composite", className: "PageRange" } } } }, clearRange: { xmlName: "ClearRange", xmlElementName: "ClearRange", serializedName: "ClearRange", type: { name: "Sequence", element: { type: { name: "Composite", className: "ClearRange" } } } } } } }; var SignedIdentifier = { serializedName: "SignedIdentifier", type: { name: "Composite", className: "SignedIdentifier", modelProperties: { id: { xmlName: "Id", required: true, serializedName: "Id", type: { name: "String" } }, accessPolicy: { xmlName: "AccessPolicy", required: true, serializedName: "AccessPolicy", type: { name: "Composite", className: "AccessPolicy" } } } } }; var StaticWebsite = { serializedName: "StaticWebsite", type: { name: "Composite", className: "StaticWebsite", modelProperties: { enabled: { xmlName: "Enabled", required: true, serializedName: "Enabled", type: { name: "Boolean" } }, indexDocument: { xmlName: "IndexDocument", serializedName: "IndexDocument", type: { name: "String" } }, errorDocument404Path: { xmlName: "ErrorDocument404Path", serializedName: "ErrorDocument404Path", type: { name: "String" } } } } }; var BlobServiceProperties = { xmlName: "StorageServiceProperties", serializedName: "BlobServiceProperties", type: { name: "Composite", className: "BlobServiceProperties", modelProperties: { blobAnalyticsLogging: { xmlName: "Logging", serializedName: "Logging", type: { name: "Composite", className: "Logging" } }, hourMetrics: { xmlName: "HourMetrics", serializedName: "HourMetrics", type: { name: "Composite", className: "Metrics" } }, minuteMetrics: { xmlName: "MinuteMetrics", serializedName: "MinuteMetrics", type: { name: "Composite", className: "Metrics" } }, cors: { xmlIsWrapped: true, xmlName: "Cors", xmlElementName: "CorsRule", serializedName: "Cors", type: { name: "Sequence", element: { type: { name: "Composite", className: "CorsRule" } } } }, defaultServiceVersion: { xmlName: "DefaultServiceVersion", serializedName: "DefaultServiceVersion", type: { name: "String" } }, deleteRetentionPolicy: { xmlName: "DeleteRetentionPolicy", serializedName: "DeleteRetentionPolicy", type: { name: "Composite", className: "RetentionPolicy" } }, staticWebsite: { xmlName: "StaticWebsite", serializedName: "StaticWebsite", type: { name: "Composite", className: "StaticWebsite" } } } } }; var BlobServiceStatistics = { xmlName: "StorageServiceStats", serializedName: "BlobServiceStatistics", type: { name: "Composite", className: "BlobServiceStatistics", modelProperties: { geoReplication: { xmlName: "GeoReplication", serializedName: "GeoReplication", type: { name: "Composite", className: "GeoReplication" } } } } }; var ServiceSetPropertiesHeaders = { serializedName: "service-setproperties-headers", type: { name: "Composite", className: "ServiceSetPropertiesHeaders", modelProperties: { clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ServiceGetPropertiesHeaders = { serializedName: "service-getproperties-headers", type: { name: "Composite", className: "ServiceGetPropertiesHeaders", modelProperties: { clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ServiceGetStatisticsHeaders = { serializedName: "service-getstatistics-headers", type: { name: "Composite", className: "ServiceGetStatisticsHeaders", modelProperties: { clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ServiceListContainersSegmentHeaders = { serializedName: "service-listcontainerssegment-headers", type: { name: "Composite", className: "ServiceListContainersSegmentHeaders", modelProperties: { clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ServiceGetUserDelegationKeyHeaders = { serializedName: "service-getuserdelegationkey-headers", type: { name: "Composite", className: "ServiceGetUserDelegationKeyHeaders", modelProperties: { clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ServiceGetAccountInfoHeaders = { serializedName: "service-getaccountinfo-headers", type: { name: "Composite", className: "ServiceGetAccountInfoHeaders", modelProperties: { clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, skuName: { serializedName: "x-ms-sku-name", type: { name: "Enum", allowedValues: [ "Standard_LRS", "Standard_GRS", "Standard_RAGRS", "Standard_ZRS", "Premium_LRS" ] } }, accountKind: { serializedName: "x-ms-account-kind", type: { name: "Enum", allowedValues: [ "Storage", "BlobStorage", "StorageV2" ] } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ServiceSubmitBatchHeaders = { serializedName: "service-submitbatch-headers", type: { name: "Composite", className: "ServiceSubmitBatchHeaders", modelProperties: { contentType: { serializedName: "content-type", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ContainerCreateHeaders = { serializedName: "container-create-headers", type: { name: "Composite", className: "ContainerCreateHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ContainerGetPropertiesHeaders = { serializedName: "container-getproperties-headers", type: { name: "Composite", className: "ContainerGetPropertiesHeaders", modelProperties: { metadata: { serializedName: "x-ms-meta", type: { name: "Dictionary", value: { type: { name: "String" } } }, headerCollectionPrefix: "x-ms-meta-" }, etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, leaseDuration: { serializedName: "x-ms-lease-duration", type: { name: "Enum", allowedValues: [ "infinite", "fixed" ] } }, leaseState: { serializedName: "x-ms-lease-state", type: { name: "Enum", allowedValues: [ "available", "leased", "expired", "breaking", "broken" ] } }, leaseStatus: { serializedName: "x-ms-lease-status", type: { name: "Enum", allowedValues: [ "locked", "unlocked" ] } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, blobPublicAccess: { serializedName: "x-ms-blob-public-access", type: { name: "String" } }, hasImmutabilityPolicy: { serializedName: "x-ms-has-immutability-policy", type: { name: "Boolean" } }, hasLegalHold: { serializedName: "x-ms-has-legal-hold", type: { name: "Boolean" } }, defaultEncryptionScope: { serializedName: "x-ms-default-encryption-scope", type: { name: "String" } }, denyEncryptionScopeOverride: { serializedName: "x-ms-deny-encryption-scope-override", type: { name: "Boolean" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ContainerDeleteHeaders = { serializedName: "container-delete-headers", type: { name: "Composite", className: "ContainerDeleteHeaders", modelProperties: { clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ContainerSetMetadataHeaders = { serializedName: "container-setmetadata-headers", type: { name: "Composite", className: "ContainerSetMetadataHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ContainerGetAccessPolicyHeaders = { serializedName: "container-getaccesspolicy-headers", type: { name: "Composite", className: "ContainerGetAccessPolicyHeaders", modelProperties: { blobPublicAccess: { serializedName: "x-ms-blob-public-access", type: { name: "String" } }, etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ContainerSetAccessPolicyHeaders = { serializedName: "container-setaccesspolicy-headers", type: { name: "Composite", className: "ContainerSetAccessPolicyHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ContainerAcquireLeaseHeaders = { serializedName: "container-acquirelease-headers", type: { name: "Composite", className: "ContainerAcquireLeaseHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, leaseId: { serializedName: "x-ms-lease-id", type: { name: "String" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ContainerReleaseLeaseHeaders = { serializedName: "container-releaselease-headers", type: { name: "Composite", className: "ContainerReleaseLeaseHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ContainerRenewLeaseHeaders = { serializedName: "container-renewlease-headers", type: { name: "Composite", className: "ContainerRenewLeaseHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, leaseId: { serializedName: "x-ms-lease-id", type: { name: "String" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ContainerBreakLeaseHeaders = { serializedName: "container-breaklease-headers", type: { name: "Composite", className: "ContainerBreakLeaseHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, leaseTime: { serializedName: "x-ms-lease-time", type: { name: "Number" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ContainerChangeLeaseHeaders = { serializedName: "container-changelease-headers", type: { name: "Composite", className: "ContainerChangeLeaseHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, leaseId: { serializedName: "x-ms-lease-id", type: { name: "String" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ContainerListBlobFlatSegmentHeaders = { serializedName: "container-listblobflatsegment-headers", type: { name: "Composite", className: "ContainerListBlobFlatSegmentHeaders", modelProperties: { contentType: { serializedName: "content-type", type: { name: "String" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ContainerListBlobHierarchySegmentHeaders = { serializedName: "container-listblobhierarchysegment-headers", type: { name: "Composite", className: "ContainerListBlobHierarchySegmentHeaders", modelProperties: { contentType: { serializedName: "content-type", type: { name: "String" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var ContainerGetAccountInfoHeaders = { serializedName: "container-getaccountinfo-headers", type: { name: "Composite", className: "ContainerGetAccountInfoHeaders", modelProperties: { clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, skuName: { serializedName: "x-ms-sku-name", type: { name: "Enum", allowedValues: [ "Standard_LRS", "Standard_GRS", "Standard_RAGRS", "Standard_ZRS", "Premium_LRS" ] } }, accountKind: { serializedName: "x-ms-account-kind", type: { name: "Enum", allowedValues: [ "Storage", "BlobStorage", "StorageV2" ] } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobDownloadHeaders = { serializedName: "blob-download-headers", type: { name: "Composite", className: "BlobDownloadHeaders", modelProperties: { lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, metadata: { serializedName: "x-ms-meta", type: { name: "Dictionary", value: { type: { name: "String" } } }, headerCollectionPrefix: "x-ms-meta-" }, contentLength: { serializedName: "content-length", type: { name: "Number" } }, contentType: { serializedName: "content-type", type: { name: "String" } }, contentRange: { serializedName: "content-range", type: { name: "String" } }, etag: { serializedName: "etag", type: { name: "String" } }, contentMD5: { serializedName: "content-md5", type: { name: "ByteArray" } }, contentEncoding: { serializedName: "content-encoding", type: { name: "String" } }, cacheControl: { serializedName: "cache-control", type: { name: "String" } }, contentDisposition: { serializedName: "content-disposition", type: { name: "String" } }, contentLanguage: { serializedName: "content-language", type: { name: "String" } }, blobSequenceNumber: { serializedName: "x-ms-blob-sequence-number", type: { name: "Number" } }, blobType: { serializedName: "x-ms-blob-type", type: { name: "Enum", allowedValues: [ "BlockBlob", "PageBlob", "AppendBlob" ] } }, copyCompletedOn: { serializedName: "x-ms-copy-completion-time", type: { name: "DateTimeRfc1123" } }, copyStatusDescription: { serializedName: "x-ms-copy-status-description", type: { name: "String" } }, copyId: { serializedName: "x-ms-copy-id", type: { name: "String" } }, copyProgress: { serializedName: "x-ms-copy-progress", type: { name: "String" } }, copySource: { serializedName: "x-ms-copy-source", type: { name: "String" } }, copyStatus: { serializedName: "x-ms-copy-status", type: { name: "Enum", allowedValues: [ "pending", "success", "aborted", "failed" ] } }, leaseDuration: { serializedName: "x-ms-lease-duration", type: { name: "Enum", allowedValues: [ "infinite", "fixed" ] } }, leaseState: { serializedName: "x-ms-lease-state", type: { name: "Enum", allowedValues: [ "available", "leased", "expired", "breaking", "broken" ] } }, leaseStatus: { serializedName: "x-ms-lease-status", type: { name: "Enum", allowedValues: [ "locked", "unlocked" ] } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, acceptRanges: { serializedName: "accept-ranges", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, blobCommittedBlockCount: { serializedName: "x-ms-blob-committed-block-count", type: { name: "Number" } }, isServerEncrypted: { serializedName: "x-ms-server-encrypted", type: { name: "Boolean" } }, encryptionKeySha256: { serializedName: "x-ms-encryption-key-sha256", type: { name: "String" } }, encryptionScope: { serializedName: "x-ms-encryption-scope", type: { name: "String" } }, blobContentMD5: { serializedName: "x-ms-blob-content-md5", type: { name: "ByteArray" } }, contentCrc64: { serializedName: "x-ms-content-crc64", type: { name: "ByteArray" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobGetPropertiesHeaders = { serializedName: "blob-getproperties-headers", type: { name: "Composite", className: "BlobGetPropertiesHeaders", modelProperties: { lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, createdOn: { serializedName: "x-ms-creation-time", type: { name: "DateTimeRfc1123" } }, metadata: { serializedName: "x-ms-meta", type: { name: "Dictionary", value: { type: { name: "String" } } }, headerCollectionPrefix: "x-ms-meta-" }, blobType: { serializedName: "x-ms-blob-type", type: { name: "Enum", allowedValues: [ "BlockBlob", "PageBlob", "AppendBlob" ] } }, copyCompletedOn: { serializedName: "x-ms-copy-completion-time", type: { name: "DateTimeRfc1123" } }, copyStatusDescription: { serializedName: "x-ms-copy-status-description", type: { name: "String" } }, copyId: { serializedName: "x-ms-copy-id", type: { name: "String" } }, copyProgress: { serializedName: "x-ms-copy-progress", type: { name: "String" } }, copySource: { serializedName: "x-ms-copy-source", type: { name: "String" } }, copyStatus: { serializedName: "x-ms-copy-status", type: { name: "Enum", allowedValues: [ "pending", "success", "aborted", "failed" ] } }, isIncrementalCopy: { serializedName: "x-ms-incremental-copy", type: { name: "Boolean" } }, destinationSnapshot: { serializedName: "x-ms-copy-destination-snapshot", type: { name: "String" } }, leaseDuration: { serializedName: "x-ms-lease-duration", type: { name: "Enum", allowedValues: [ "infinite", "fixed" ] } }, leaseState: { serializedName: "x-ms-lease-state", type: { name: "Enum", allowedValues: [ "available", "leased", "expired", "breaking", "broken" ] } }, leaseStatus: { serializedName: "x-ms-lease-status", type: { name: "Enum", allowedValues: [ "locked", "unlocked" ] } }, contentLength: { serializedName: "content-length", type: { name: "Number" } }, contentType: { serializedName: "content-type", type: { name: "String" } }, etag: { serializedName: "etag", type: { name: "String" } }, contentMD5: { serializedName: "content-md5", type: { name: "ByteArray" } }, contentEncoding: { serializedName: "content-encoding", type: { name: "String" } }, contentDisposition: { serializedName: "content-disposition", type: { name: "String" } }, contentLanguage: { serializedName: "content-language", type: { name: "String" } }, cacheControl: { serializedName: "cache-control", type: { name: "String" } }, blobSequenceNumber: { serializedName: "x-ms-blob-sequence-number", type: { name: "Number" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, acceptRanges: { serializedName: "accept-ranges", type: { name: "String" } }, blobCommittedBlockCount: { serializedName: "x-ms-blob-committed-block-count", type: { name: "Number" } }, isServerEncrypted: { serializedName: "x-ms-server-encrypted", type: { name: "Boolean" } }, encryptionKeySha256: { serializedName: "x-ms-encryption-key-sha256", type: { name: "String" } }, encryptionScope: { serializedName: "x-ms-encryption-scope", type: { name: "String" } }, accessTier: { serializedName: "x-ms-access-tier", type: { name: "String" } }, accessTierInferred: { serializedName: "x-ms-access-tier-inferred", type: { name: "Boolean" } }, archiveStatus: { serializedName: "x-ms-archive-status", type: { name: "String" } }, accessTierChangedOn: { serializedName: "x-ms-access-tier-change-time", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobDeleteHeaders = { serializedName: "blob-delete-headers", type: { name: "Composite", className: "BlobDeleteHeaders", modelProperties: { clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobSetAccessControlHeaders = { serializedName: "blob-setaccesscontrol-headers", type: { name: "Composite", className: "BlobSetAccessControlHeaders", modelProperties: { date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } } } } }; var BlobGetAccessControlHeaders = { serializedName: "blob-getaccesscontrol-headers", type: { name: "Composite", className: "BlobGetAccessControlHeaders", modelProperties: { date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, xMsOwner: { serializedName: "x-ms-owner", type: { name: "String" } }, xMsGroup: { serializedName: "x-ms-group", type: { name: "String" } }, xMsPermissions: { serializedName: "x-ms-permissions", type: { name: "String" } }, xMsAcl: { serializedName: "x-ms-acl", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } } } } }; var BlobRenameHeaders = { serializedName: "blob-rename-headers", type: { name: "Composite", className: "BlobRenameHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, contentLength: { serializedName: "content-length", type: { name: "Number" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } } } } }; var PageBlobCreateHeaders = { serializedName: "pageblob-create-headers", type: { name: "Composite", className: "PageBlobCreateHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, contentMD5: { serializedName: "content-md5", type: { name: "ByteArray" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, isServerEncrypted: { serializedName: "x-ms-request-server-encrypted", type: { name: "Boolean" } }, encryptionKeySha256: { serializedName: "x-ms-encryption-key-sha256", type: { name: "String" } }, encryptionScope: { serializedName: "x-ms-encryption-scope", type: { name: "String" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var AppendBlobCreateHeaders = { serializedName: "appendblob-create-headers", type: { name: "Composite", className: "AppendBlobCreateHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, contentMD5: { serializedName: "content-md5", type: { name: "ByteArray" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, isServerEncrypted: { serializedName: "x-ms-request-server-encrypted", type: { name: "Boolean" } }, encryptionKeySha256: { serializedName: "x-ms-encryption-key-sha256", type: { name: "String" } }, encryptionScope: { serializedName: "x-ms-encryption-scope", type: { name: "String" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlockBlobUploadHeaders = { serializedName: "blockblob-upload-headers", type: { name: "Composite", className: "BlockBlobUploadHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, contentMD5: { serializedName: "content-md5", type: { name: "ByteArray" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, isServerEncrypted: { serializedName: "x-ms-request-server-encrypted", type: { name: "Boolean" } }, encryptionKeySha256: { serializedName: "x-ms-encryption-key-sha256", type: { name: "String" } }, encryptionScope: { serializedName: "x-ms-encryption-scope", type: { name: "String" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobUndeleteHeaders = { serializedName: "blob-undelete-headers", type: { name: "Composite", className: "BlobUndeleteHeaders", modelProperties: { clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobSetHTTPHeadersHeaders = { serializedName: "blob-sethttpheaders-headers", type: { name: "Composite", className: "BlobSetHTTPHeadersHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, blobSequenceNumber: { serializedName: "x-ms-blob-sequence-number", type: { name: "Number" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobSetMetadataHeaders = { serializedName: "blob-setmetadata-headers", type: { name: "Composite", className: "BlobSetMetadataHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, isServerEncrypted: { serializedName: "x-ms-request-server-encrypted", type: { name: "Boolean" } }, encryptionKeySha256: { serializedName: "x-ms-encryption-key-sha256", type: { name: "String" } }, encryptionScope: { serializedName: "x-ms-encryption-scope", type: { name: "String" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobAcquireLeaseHeaders = { serializedName: "blob-acquirelease-headers", type: { name: "Composite", className: "BlobAcquireLeaseHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, leaseId: { serializedName: "x-ms-lease-id", type: { name: "String" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobReleaseLeaseHeaders = { serializedName: "blob-releaselease-headers", type: { name: "Composite", className: "BlobReleaseLeaseHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobRenewLeaseHeaders = { serializedName: "blob-renewlease-headers", type: { name: "Composite", className: "BlobRenewLeaseHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, leaseId: { serializedName: "x-ms-lease-id", type: { name: "String" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobChangeLeaseHeaders = { serializedName: "blob-changelease-headers", type: { name: "Composite", className: "BlobChangeLeaseHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, leaseId: { serializedName: "x-ms-lease-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobBreakLeaseHeaders = { serializedName: "blob-breaklease-headers", type: { name: "Composite", className: "BlobBreakLeaseHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, leaseTime: { serializedName: "x-ms-lease-time", type: { name: "Number" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobCreateSnapshotHeaders = { serializedName: "blob-createsnapshot-headers", type: { name: "Composite", className: "BlobCreateSnapshotHeaders", modelProperties: { snapshot: { serializedName: "x-ms-snapshot", type: { name: "String" } }, etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, isServerEncrypted: { serializedName: "x-ms-request-server-encrypted", type: { name: "Boolean" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobStartCopyFromURLHeaders = { serializedName: "blob-startcopyfromurl-headers", type: { name: "Composite", className: "BlobStartCopyFromURLHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, copyId: { serializedName: "x-ms-copy-id", type: { name: "String" } }, copyStatus: { serializedName: "x-ms-copy-status", type: { name: "Enum", allowedValues: [ "pending", "success", "aborted", "failed" ] } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobCopyFromURLHeaders = { serializedName: "blob-copyfromurl-headers", type: { name: "Composite", className: "BlobCopyFromURLHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, copyId: { serializedName: "x-ms-copy-id", type: { name: "String" } }, copyStatus: { serializedName: "x-ms-copy-status", type: { name: "Enum", allowedValues: [ "success" ] } }, contentMD5: { serializedName: "content-md5", type: { name: "ByteArray" } }, xMsContentCrc64: { serializedName: "x-ms-content-crc64", type: { name: "ByteArray" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobAbortCopyFromURLHeaders = { serializedName: "blob-abortcopyfromurl-headers", type: { name: "Composite", className: "BlobAbortCopyFromURLHeaders", modelProperties: { clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobSetTierHeaders = { serializedName: "blob-settier-headers", type: { name: "Composite", className: "BlobSetTierHeaders", modelProperties: { clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlobGetAccountInfoHeaders = { serializedName: "blob-getaccountinfo-headers", type: { name: "Composite", className: "BlobGetAccountInfoHeaders", modelProperties: { clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, skuName: { serializedName: "x-ms-sku-name", type: { name: "Enum", allowedValues: [ "Standard_LRS", "Standard_GRS", "Standard_RAGRS", "Standard_ZRS", "Premium_LRS" ] } }, accountKind: { serializedName: "x-ms-account-kind", type: { name: "Enum", allowedValues: [ "Storage", "BlobStorage", "StorageV2" ] } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlockBlobStageBlockHeaders = { serializedName: "blockblob-stageblock-headers", type: { name: "Composite", className: "BlockBlobStageBlockHeaders", modelProperties: { contentMD5: { serializedName: "content-md5", type: { name: "ByteArray" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, xMsContentCrc64: { serializedName: "x-ms-content-crc64", type: { name: "ByteArray" } }, isServerEncrypted: { serializedName: "x-ms-request-server-encrypted", type: { name: "Boolean" } }, encryptionKeySha256: { serializedName: "x-ms-encryption-key-sha256", type: { name: "String" } }, encryptionScope: { serializedName: "x-ms-encryption-scope", type: { name: "String" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlockBlobStageBlockFromURLHeaders = { serializedName: "blockblob-stageblockfromurl-headers", type: { name: "Composite", className: "BlockBlobStageBlockFromURLHeaders", modelProperties: { contentMD5: { serializedName: "content-md5", type: { name: "ByteArray" } }, xMsContentCrc64: { serializedName: "x-ms-content-crc64", type: { name: "ByteArray" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, isServerEncrypted: { serializedName: "x-ms-request-server-encrypted", type: { name: "Boolean" } }, encryptionKeySha256: { serializedName: "x-ms-encryption-key-sha256", type: { name: "String" } }, encryptionScope: { serializedName: "x-ms-encryption-scope", type: { name: "String" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlockBlobCommitBlockListHeaders = { serializedName: "blockblob-commitblocklist-headers", type: { name: "Composite", className: "BlockBlobCommitBlockListHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, contentMD5: { serializedName: "content-md5", type: { name: "ByteArray" } }, xMsContentCrc64: { serializedName: "x-ms-content-crc64", type: { name: "ByteArray" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, isServerEncrypted: { serializedName: "x-ms-request-server-encrypted", type: { name: "Boolean" } }, encryptionKeySha256: { serializedName: "x-ms-encryption-key-sha256", type: { name: "String" } }, encryptionScope: { serializedName: "x-ms-encryption-scope", type: { name: "String" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var BlockBlobGetBlockListHeaders = { serializedName: "blockblob-getblocklist-headers", type: { name: "Composite", className: "BlockBlobGetBlockListHeaders", modelProperties: { lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, etag: { serializedName: "etag", type: { name: "String" } }, contentType: { serializedName: "content-type", type: { name: "String" } }, blobContentLength: { serializedName: "x-ms-blob-content-length", type: { name: "Number" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var PageBlobUploadPagesHeaders = { serializedName: "pageblob-uploadpages-headers", type: { name: "Composite", className: "PageBlobUploadPagesHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, contentMD5: { serializedName: "content-md5", type: { name: "ByteArray" } }, xMsContentCrc64: { serializedName: "x-ms-content-crc64", type: { name: "ByteArray" } }, blobSequenceNumber: { serializedName: "x-ms-blob-sequence-number", type: { name: "Number" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, isServerEncrypted: { serializedName: "x-ms-request-server-encrypted", type: { name: "Boolean" } }, encryptionKeySha256: { serializedName: "x-ms-encryption-key-sha256", type: { name: "String" } }, encryptionScope: { serializedName: "x-ms-encryption-scope", type: { name: "String" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var PageBlobClearPagesHeaders = { serializedName: "pageblob-clearpages-headers", type: { name: "Composite", className: "PageBlobClearPagesHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, contentMD5: { serializedName: "content-md5", type: { name: "ByteArray" } }, xMsContentCrc64: { serializedName: "x-ms-content-crc64", type: { name: "ByteArray" } }, blobSequenceNumber: { serializedName: "x-ms-blob-sequence-number", type: { name: "Number" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var PageBlobUploadPagesFromURLHeaders = { serializedName: "pageblob-uploadpagesfromurl-headers", type: { name: "Composite", className: "PageBlobUploadPagesFromURLHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, contentMD5: { serializedName: "content-md5", type: { name: "ByteArray" } }, xMsContentCrc64: { serializedName: "x-ms-content-crc64", type: { name: "ByteArray" } }, blobSequenceNumber: { serializedName: "x-ms-blob-sequence-number", type: { name: "Number" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, isServerEncrypted: { serializedName: "x-ms-request-server-encrypted", type: { name: "Boolean" } }, encryptionKeySha256: { serializedName: "x-ms-encryption-key-sha256", type: { name: "String" } }, encryptionScope: { serializedName: "x-ms-encryption-scope", type: { name: "String" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var PageBlobGetPageRangesHeaders = { serializedName: "pageblob-getpageranges-headers", type: { name: "Composite", className: "PageBlobGetPageRangesHeaders", modelProperties: { lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, etag: { serializedName: "etag", type: { name: "String" } }, blobContentLength: { serializedName: "x-ms-blob-content-length", type: { name: "Number" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var PageBlobGetPageRangesDiffHeaders = { serializedName: "pageblob-getpagerangesdiff-headers", type: { name: "Composite", className: "PageBlobGetPageRangesDiffHeaders", modelProperties: { lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, etag: { serializedName: "etag", type: { name: "String" } }, blobContentLength: { serializedName: "x-ms-blob-content-length", type: { name: "Number" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var PageBlobResizeHeaders = { serializedName: "pageblob-resize-headers", type: { name: "Composite", className: "PageBlobResizeHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, blobSequenceNumber: { serializedName: "x-ms-blob-sequence-number", type: { name: "Number" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var PageBlobUpdateSequenceNumberHeaders = { serializedName: "pageblob-updatesequencenumber-headers", type: { name: "Composite", className: "PageBlobUpdateSequenceNumberHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, blobSequenceNumber: { serializedName: "x-ms-blob-sequence-number", type: { name: "Number" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var PageBlobCopyIncrementalHeaders = { serializedName: "pageblob-copyincremental-headers", type: { name: "Composite", className: "PageBlobCopyIncrementalHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, copyId: { serializedName: "x-ms-copy-id", type: { name: "String" } }, copyStatus: { serializedName: "x-ms-copy-status", type: { name: "Enum", allowedValues: [ "pending", "success", "aborted", "failed" ] } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var AppendBlobAppendBlockHeaders = { serializedName: "appendblob-appendblock-headers", type: { name: "Composite", className: "AppendBlobAppendBlockHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, contentMD5: { serializedName: "content-md5", type: { name: "ByteArray" } }, xMsContentCrc64: { serializedName: "x-ms-content-crc64", type: { name: "ByteArray" } }, clientRequestId: { serializedName: "x-ms-client-request-id", type: { name: "String" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, blobAppendOffset: { serializedName: "x-ms-blob-append-offset", type: { name: "String" } }, blobCommittedBlockCount: { serializedName: "x-ms-blob-committed-block-count", type: { name: "Number" } }, isServerEncrypted: { serializedName: "x-ms-request-server-encrypted", type: { name: "Boolean" } }, encryptionKeySha256: { serializedName: "x-ms-encryption-key-sha256", type: { name: "String" } }, encryptionScope: { serializedName: "x-ms-encryption-scope", type: { name: "String" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; var AppendBlobAppendBlockFromUrlHeaders = { serializedName: "appendblob-appendblockfromurl-headers", type: { name: "Composite", className: "AppendBlobAppendBlockFromUrlHeaders", modelProperties: { etag: { serializedName: "etag", type: { name: "String" } }, lastModified: { serializedName: "last-modified", type: { name: "DateTimeRfc1123" } }, contentMD5: { serializedName: "content-md5", type: { name: "ByteArray" } }, xMsContentCrc64: { serializedName: "x-ms-content-crc64", type: { name: "ByteArray" } }, requestId: { serializedName: "x-ms-request-id", type: { name: "String" } }, version: { serializedName: "x-ms-version", type: { name: "String" } }, date: { serializedName: "date", type: { name: "DateTimeRfc1123" } }, blobAppendOffset: { serializedName: "x-ms-blob-append-offset", type: { name: "String" } }, blobCommittedBlockCount: { serializedName: "x-ms-blob-committed-block-count", type: { name: "Number" } }, encryptionKeySha256: { serializedName: "x-ms-encryption-key-sha256", type: { name: "String" } }, encryptionScope: { serializedName: "x-ms-encryption-scope", type: { name: "String" } }, isServerEncrypted: { serializedName: "x-ms-request-server-encrypted", type: { name: "Boolean" } }, errorCode: { serializedName: "x-ms-error-code", type: { name: "String" } } } } }; /* * Copyright (c) Microsoft Corporation. All rights reserved. * Licensed under the MIT License. See License.txt in the project root for license information. * * Code generated by Microsoft (R) AutoRest Code Generator. * Changes may cause incorrect behavior and will be lost if the code is regenerated. */ var Mappers = /*#__PURE__*/Object.freeze({ __proto__: null, BlobServiceProperties: BlobServiceProperties, BlobServiceStatistics: BlobServiceStatistics, ContainerItem: ContainerItem, ContainerProperties: ContainerProperties, CorsRule: CorsRule, GeoReplication: GeoReplication, KeyInfo: KeyInfo, ListContainersSegmentResponse: ListContainersSegmentResponse, Logging: Logging, Metrics: Metrics, RetentionPolicy: RetentionPolicy, ServiceGetAccountInfoHeaders: ServiceGetAccountInfoHeaders, ServiceGetPropertiesHeaders: ServiceGetPropertiesHeaders, ServiceGetStatisticsHeaders: ServiceGetStatisticsHeaders, ServiceGetUserDelegationKeyHeaders: ServiceGetUserDelegationKeyHeaders, ServiceListContainersSegmentHeaders: ServiceListContainersSegmentHeaders, ServiceSetPropertiesHeaders: ServiceSetPropertiesHeaders, ServiceSubmitBatchHeaders: ServiceSubmitBatchHeaders, StaticWebsite: StaticWebsite, StorageError: StorageError, UserDelegationKey: UserDelegationKey }); /* * Copyright (c) Microsoft Corporation. All rights reserved. * Licensed under the MIT License. See License.txt in the project root for * license information. * * Code generated by Microsoft (R) AutoRest Code Generator. * Changes may cause incorrect behavior and will be lost if the code is * regenerated. */ var access = { parameterPath: [ "options", "access" ], mapper: { serializedName: "x-ms-blob-public-access", type: { name: "String" } } }; var action0 = { parameterPath: "action", mapper: { required: true, isConstant: true, serializedName: "x-ms-lease-action", defaultValue: 'acquire', type: { name: "String" } } }; var action1 = { parameterPath: "action", mapper: { required: true, isConstant: true, serializedName: "x-ms-lease-action", defaultValue: 'release', type: { name: "String" } } }; var action2 = { parameterPath: "action", mapper: { required: true, isConstant: true, serializedName: "x-ms-lease-action", defaultValue: 'renew', type: { name: "String" } } }; var action3 = { parameterPath: "action", mapper: { required: true, isConstant: true, serializedName: "x-ms-lease-action", defaultValue: 'break', type: { name: "String" } } }; var action4 = { parameterPath: "action", mapper: { required: true, isConstant: true, serializedName: "x-ms-lease-action", defaultValue: 'change', type: { name: "String" } } }; var action5 = { parameterPath: "action", mapper: { required: true, isConstant: true, serializedName: "action", defaultValue: 'setAccessControl', type: { name: "String" } } }; var action6 = { parameterPath: "action", mapper: { required: true, isConstant: true, serializedName: "action", defaultValue: 'getAccessControl', type: { name: "String" } } }; var appendPosition = { parameterPath: [ "options", "appendPositionAccessConditions", "appendPosition" ], mapper: { serializedName: "x-ms-blob-condition-appendpos", type: { name: "Number" } } }; var blobCacheControl = { parameterPath: [ "options", "blobHTTPHeaders", "blobCacheControl" ], mapper: { serializedName: "x-ms-blob-cache-control", type: { name: "String" } } }; var blobContentDisposition = { parameterPath: [ "options", "blobHTTPHeaders", "blobContentDisposition" ], mapper: { serializedName: "x-ms-blob-content-disposition", type: { name: "String" } } }; var blobContentEncoding = { parameterPath: [ "options", "blobHTTPHeaders", "blobContentEncoding" ], mapper: { serializedName: "x-ms-blob-content-encoding", type: { name: "String" } } }; var blobContentLanguage = { parameterPath: [ "options", "blobHTTPHeaders", "blobContentLanguage" ], mapper: { serializedName: "x-ms-blob-content-language", type: { name: "String" } } }; var blobContentLength = { parameterPath: "blobContentLength", mapper: { required: true, serializedName: "x-ms-blob-content-length", type: { name: "Number" } } }; var blobContentMD5 = { parameterPath: [ "options", "blobHTTPHeaders", "blobContentMD5" ], mapper: { serializedName: "x-ms-blob-content-md5", type: { name: "ByteArray" } } }; var blobContentType = { parameterPath: [ "options", "blobHTTPHeaders", "blobContentType" ], mapper: { serializedName: "x-ms-blob-content-type", type: { name: "String" } } }; var blobSequenceNumber = { parameterPath: [ "options", "blobSequenceNumber" ], mapper: { serializedName: "x-ms-blob-sequence-number", defaultValue: 0, type: { name: "Number" } } }; var blobType0 = { parameterPath: "blobType", mapper: { required: true, isConstant: true, serializedName: "x-ms-blob-type", defaultValue: 'PageBlob', type: { name: "String" } } }; var blobType1 = { parameterPath: "blobType", mapper: { required: true, isConstant: true, serializedName: "x-ms-blob-type", defaultValue: 'AppendBlob', type: { name: "String" } } }; var blobType2 = { parameterPath: "blobType", mapper: { required: true, isConstant: true, serializedName: "x-ms-blob-type", defaultValue: 'BlockBlob', type: { name: "String" } } }; var blockId = { parameterPath: "blockId", mapper: { required: true, serializedName: "blockid", type: { name: "String" } } }; var breakPeriod = { parameterPath: [ "options", "breakPeriod" ], mapper: { serializedName: "x-ms-lease-break-period", type: { name: "Number" } } }; var cacheControl = { parameterPath: [ "options", "directoryHttpHeaders", "cacheControl" ], mapper: { serializedName: "x-ms-cache-control", type: { name: "String" } } }; var comp0 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'properties', type: { name: "String" } } }; var comp1 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'stats', type: { name: "String" } } }; var comp10 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'copy', type: { name: "String" } } }; var comp11 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'tier', type: { name: "String" } } }; var comp12 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'page', type: { name: "String" } } }; var comp13 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'pagelist', type: { name: "String" } } }; var comp14 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'incrementalcopy', type: { name: "String" } } }; var comp15 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'appendblock', type: { name: "String" } } }; var comp16 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'block', type: { name: "String" } } }; var comp17 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'blocklist', type: { name: "String" } } }; var comp2 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'list', type: { name: "String" } } }; var comp3 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'userdelegationkey', type: { name: "String" } } }; var comp4 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'batch', type: { name: "String" } } }; var comp5 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'metadata', type: { name: "String" } } }; var comp6 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'acl', type: { name: "String" } } }; var comp7 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'lease', type: { name: "String" } } }; var comp8 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'undelete', type: { name: "String" } } }; var comp9 = { parameterPath: "comp", mapper: { required: true, isConstant: true, serializedName: "comp", defaultValue: 'snapshot', type: { name: "String" } } }; var contentDisposition = { parameterPath: [ "options", "directoryHttpHeaders", "contentDisposition" ], mapper: { serializedName: "x-ms-content-disposition", type: { name: "String" } } }; var contentEncoding = { parameterPath: [ "options", "directoryHttpHeaders", "contentEncoding" ], mapper: { serializedName: "x-ms-content-encoding", type: { name: "String" } } }; var contentLanguage = { parameterPath: [ "options", "directoryHttpHeaders", "contentLanguage" ], mapper: { serializedName: "x-ms-content-language", type: { name: "String" } } }; var contentLength = { parameterPath: "contentLength", mapper: { required: true, serializedName: "Content-Length", type: { name: "Number" } } }; var contentType = { parameterPath: [ "options", "directoryHttpHeaders", "contentType" ], mapper: { serializedName: "x-ms-content-type", type: { name: "String" } } }; var copyActionAbortConstant = { parameterPath: "copyActionAbortConstant", mapper: { required: true, isConstant: true, serializedName: "x-ms-copy-action", defaultValue: 'abort', type: { name: "String" } } }; var copyId = { parameterPath: "copyId", mapper: { required: true, serializedName: "copyid", type: { name: "String" } } }; var copySource = { parameterPath: "copySource", mapper: { required: true, serializedName: "x-ms-copy-source", type: { name: "String" } } }; var defaultEncryptionScope = { parameterPath: [ "options", "containerEncryptionScope", "defaultEncryptionScope" ], mapper: { serializedName: "x-ms-default-encryption-scope", type: { name: "String" } } }; var deleteSnapshots = { parameterPath: [ "options", "deleteSnapshots" ], mapper: { serializedName: "x-ms-delete-snapshots", type: { name: "Enum", allowedValues: [ "include", "only" ] } } }; var delimiter = { parameterPath: "delimiter", mapper: { required: true, serializedName: "delimiter", type: { name: "String" } } }; var directoryProperties = { parameterPath: [ "options", "directoryProperties" ], mapper: { serializedName: "x-ms-properties", type: { name: "String" } } }; var duration = { parameterPath: [ "options", "duration" ], mapper: { serializedName: "x-ms-lease-duration", type: { name: "Number" } } }; var encryptionAlgorithm = { parameterPath: [ "options", "cpkInfo", "encryptionAlgorithm" ], mapper: { serializedName: "x-ms-encryption-algorithm", type: { name: "Enum", allowedValues: [ "AES256" ] } } }; var encryptionKey = { parameterPath: [ "options", "cpkInfo", "encryptionKey" ], mapper: { serializedName: "x-ms-encryption-key", type: { name: "String" } } }; var encryptionKeySha256 = { parameterPath: [ "options", "cpkInfo", "encryptionKeySha256" ], mapper: { serializedName: "x-ms-encryption-key-sha256", type: { name: "String" } } }; var encryptionScope = { parameterPath: [ "options", "encryptionScope" ], mapper: { serializedName: "x-ms-encryption-scope", type: { name: "String" } } }; var group = { parameterPath: [ "options", "group" ], mapper: { serializedName: "x-ms-group", type: { name: "String" } } }; var ifMatch = { parameterPath: [ "options", "modifiedAccessConditions", "ifMatch" ], mapper: { serializedName: "If-Match", type: { name: "String" } } }; var ifModifiedSince = { parameterPath: [ "options", "modifiedAccessConditions", "ifModifiedSince" ], mapper: { serializedName: "If-Modified-Since", type: { name: "DateTimeRfc1123" } } }; var ifNoneMatch = { parameterPath: [ "options", "modifiedAccessConditions", "ifNoneMatch" ], mapper: { serializedName: "If-None-Match", type: { name: "String" } } }; var ifSequenceNumberEqualTo = { parameterPath: [ "options", "sequenceNumberAccessConditions", "ifSequenceNumberEqualTo" ], mapper: { serializedName: "x-ms-if-sequence-number-eq", type: { name: "Number" } } }; var ifSequenceNumberLessThan = { parameterPath: [ "options", "sequenceNumberAccessConditions", "ifSequenceNumberLessThan" ], mapper: { serializedName: "x-ms-if-sequence-number-lt", type: { name: "Number" } } }; var ifSequenceNumberLessThanOrEqualTo = { parameterPath: [ "options", "sequenceNumberAccessConditions", "ifSequenceNumberLessThanOrEqualTo" ], mapper: { serializedName: "x-ms-if-sequence-number-le", type: { name: "Number" } } }; var ifUnmodifiedSince = { parameterPath: [ "options", "modifiedAccessConditions", "ifUnmodifiedSince" ], mapper: { serializedName: "If-Unmodified-Since", type: { name: "DateTimeRfc1123" } } }; var include0 = { parameterPath: [ "options", "include" ], mapper: { serializedName: "include", type: { name: "Enum", allowedValues: [ "metadata" ] } } }; var include1 = { parameterPath: [ "options", "include" ], mapper: { serializedName: "include", type: { name: "Sequence", element: { type: { name: "Enum", allowedValues: [ "copy", "deleted", "metadata", "snapshots", "uncommittedblobs" ] } } } }, collectionFormat: coreHttp.QueryCollectionFormat.Csv }; var leaseId0 = { parameterPath: [ "options", "leaseAccessConditions", "leaseId" ], mapper: { serializedName: "x-ms-lease-id", type: { name: "String" } } }; var leaseId1 = { parameterPath: "leaseId", mapper: { required: true, serializedName: "x-ms-lease-id", type: { name: "String" } } }; var listType = { parameterPath: "listType", mapper: { required: true, serializedName: "blocklisttype", defaultValue: 'committed', type: { name: "Enum", allowedValues: [ "committed", "uncommitted", "all" ] } } }; var marker0 = { parameterPath: [ "options", "marker" ], mapper: { serializedName: "marker", type: { name: "String" } } }; var maxPageSize = { parameterPath: [ "options", "maxPageSize" ], mapper: { serializedName: "maxresults", constraints: { InclusiveMinimum: 1 }, type: { name: "Number" } } }; var maxSize = { parameterPath: [ "options", "appendPositionAccessConditions", "maxSize" ], mapper: { serializedName: "x-ms-blob-condition-maxsize", type: { name: "Number" } } }; var metadata = { parameterPath: [ "options", "metadata" ], mapper: { serializedName: "x-ms-meta", type: { name: "Dictionary", value: { type: { name: "String" } } }, headerCollectionPrefix: "x-ms-meta-" } }; var multipartContentType = { parameterPath: "multipartContentType", mapper: { required: true, serializedName: "Content-Type", type: { name: "String" } } }; var owner = { parameterPath: [ "options", "owner" ], mapper: { serializedName: "x-ms-owner", type: { name: "String" } } }; var pageWrite0 = { parameterPath: "pageWrite", mapper: { required: true, isConstant: true, serializedName: "x-ms-page-write", defaultValue: 'update', type: { name: "String" } } }; var pageWrite1 = { parameterPath: "pageWrite", mapper: { required: true, isConstant: true, serializedName: "x-ms-page-write", defaultValue: 'clear', type: { name: "String" } } }; var pathRenameMode = { parameterPath: [ "options", "pathRenameMode" ], mapper: { serializedName: "mode", type: { name: "Enum", allowedValues: [ "legacy", "posix" ] } } }; var posixAcl = { parameterPath: [ "options", "posixAcl" ], mapper: { serializedName: "x-ms-acl", type: { name: "String" } } }; var posixPermissions = { parameterPath: [ "options", "posixPermissions" ], mapper: { serializedName: "x-ms-permissions", type: { name: "String" } } }; var posixUmask = { parameterPath: [ "options", "posixUmask" ], mapper: { serializedName: "x-ms-umask", type: { name: "String" } } }; var prefix = { parameterPath: [ "options", "prefix" ], mapper: { serializedName: "prefix", type: { name: "String" } } }; var preventEncryptionScopeOverride = { parameterPath: [ "options", "containerEncryptionScope", "preventEncryptionScopeOverride" ], mapper: { serializedName: "x-ms-deny-encryption-scope-override", type: { name: "Boolean" } } }; var prevsnapshot = { parameterPath: [ "options", "prevsnapshot" ], mapper: { serializedName: "prevsnapshot", type: { name: "String" } } }; var prevSnapshotUrl = { parameterPath: [ "options", "prevSnapshotUrl" ], mapper: { serializedName: "x-ms-previous-snapshot-url", type: { name: "String" } } }; var proposedLeaseId0 = { parameterPath: [ "options", "proposedLeaseId" ], mapper: { serializedName: "x-ms-proposed-lease-id", type: { name: "String" } } }; var proposedLeaseId1 = { parameterPath: "proposedLeaseId", mapper: { required: true, serializedName: "x-ms-proposed-lease-id", type: { name: "String" } } }; var range0 = { parameterPath: [ "options", "range" ], mapper: { serializedName: "x-ms-range", type: { name: "String" } } }; var range1 = { parameterPath: "range", mapper: { required: true, serializedName: "x-ms-range", type: { name: "String" } } }; var rangeGetContentCRC64 = { parameterPath: [ "options", "rangeGetContentCRC64" ], mapper: { serializedName: "x-ms-range-get-content-crc64", type: { name: "Boolean" } } }; var rangeGetContentMD5 = { parameterPath: [ "options", "rangeGetContentMD5" ], mapper: { serializedName: "x-ms-range-get-content-md5", type: { name: "Boolean" } } }; var rehydratePriority = { parameterPath: [ "options", "rehydratePriority" ], mapper: { serializedName: "x-ms-rehydrate-priority", type: { name: "String" } } }; var renameSource = { parameterPath: "renameSource", mapper: { required: true, serializedName: "x-ms-rename-source", type: { name: "String" } } }; var requestId = { parameterPath: [ "options", "requestId" ], mapper: { serializedName: "x-ms-client-request-id", type: { name: "String" } } }; var restype0 = { parameterPath: "restype", mapper: { required: true, isConstant: true, serializedName: "restype", defaultValue: 'service', type: { name: "String" } } }; var restype1 = { parameterPath: "restype", mapper: { required: true, isConstant: true, serializedName: "restype", defaultValue: 'account', type: { name: "String" } } }; var restype2 = { parameterPath: "restype", mapper: { required: true, isConstant: true, serializedName: "restype", defaultValue: 'container', type: { name: "String" } } }; var sequenceNumberAction = { parameterPath: "sequenceNumberAction", mapper: { required: true, serializedName: "x-ms-sequence-number-action", type: { name: "Enum", allowedValues: [ "max", "update", "increment" ] } } }; var snapshot = { parameterPath: [ "options", "snapshot" ], mapper: { serializedName: "snapshot", type: { name: "String" } } }; var sourceContentCrc64 = { parameterPath: [ "options", "sourceContentCrc64" ], mapper: { serializedName: "x-ms-source-content-crc64", type: { name: "ByteArray" } } }; var sourceContentMD5 = { parameterPath: [ "options", "sourceContentMD5" ], mapper: { serializedName: "x-ms-source-content-md5", type: { name: "ByteArray" } } }; var sourceIfMatch = { parameterPath: [ "options", "sourceModifiedAccessConditions", "sourceIfMatch" ], mapper: { serializedName: "x-ms-source-if-match", type: { name: "String" } } }; var sourceIfModifiedSince = { parameterPath: [ "options", "sourceModifiedAccessConditions", "sourceIfModifiedSince" ], mapper: { serializedName: "x-ms-source-if-modified-since", type: { name: "DateTimeRfc1123" } } }; var sourceIfNoneMatch = { parameterPath: [ "options", "sourceModifiedAccessConditions", "sourceIfNoneMatch" ], mapper: { serializedName: "x-ms-source-if-none-match", type: { name: "String" } } }; var sourceIfUnmodifiedSince = { parameterPath: [ "options", "sourceModifiedAccessConditions", "sourceIfUnmodifiedSince" ], mapper: { serializedName: "x-ms-source-if-unmodified-since", type: { name: "DateTimeRfc1123" } } }; var sourceLeaseId = { parameterPath: [ "options", "sourceLeaseId" ], mapper: { serializedName: "x-ms-source-lease-id", type: { name: "String" } } }; var sourceRange0 = { parameterPath: "sourceRange", mapper: { required: true, serializedName: "x-ms-source-range", type: { name: "String" } } }; var sourceRange1 = { parameterPath: [ "options", "sourceRange" ], mapper: { serializedName: "x-ms-source-range", type: { name: "String" } } }; var sourceUrl = { parameterPath: "sourceUrl", mapper: { required: true, serializedName: "x-ms-copy-source", type: { name: "String" } } }; var tier0 = { parameterPath: [ "options", "tier" ], mapper: { serializedName: "x-ms-access-tier", type: { name: "String" } } }; var tier1 = { parameterPath: "tier", mapper: { required: true, serializedName: "x-ms-access-tier", type: { name: "String" } } }; var timeoutInSeconds = { parameterPath: [ "options", "timeoutInSeconds" ], mapper: { serializedName: "timeout", constraints: { InclusiveMinimum: 0 }, type: { name: "Number" } } }; var transactionalContentCrc64 = { parameterPath: [ "options", "transactionalContentCrc64" ], mapper: { serializedName: "x-ms-content-crc64", type: { name: "ByteArray" } } }; var transactionalContentMD5 = { parameterPath: [ "options", "transactionalContentMD5" ], mapper: { serializedName: "Content-MD5", type: { name: "ByteArray" } } }; var upn = { parameterPath: [ "options", "upn" ], mapper: { serializedName: "upn", type: { name: "Boolean" } } }; var url = { parameterPath: "url", mapper: { required: true, serializedName: "url", defaultValue: '', type: { name: "String" } }, skipEncoding: true }; var version = { parameterPath: "version", mapper: { required: true, isConstant: true, serializedName: "x-ms-version", defaultValue: '2019-07-07', type: { name: "String" } } }; var xMsRequiresSync = { parameterPath: "xMsRequiresSync", mapper: { required: true, isConstant: true, serializedName: "x-ms-requires-sync", defaultValue: 'true', type: { name: "String" } } }; /* * Copyright (c) Microsoft Corporation. All rights reserved. * Licensed under the MIT License. See License.txt in the project root for * license information. * * Code generated by Microsoft (R) AutoRest Code Generator. * Changes may cause incorrect behavior and will be lost if the code is * regenerated. */ /** Class representing a Service. */ var Service = /** @class */ (function () { /** * Create a Service. * @param {StorageClientContext} client Reference to the service client. */ function Service(client) { this.client = client; } Service.prototype.setProperties = function (blobServiceProperties, options, callback) { return this.client.sendOperationRequest({ blobServiceProperties: blobServiceProperties, options: options }, setPropertiesOperationSpec, callback); }; Service.prototype.getProperties = function (options, callback) { return this.client.sendOperationRequest({ options: options }, getPropertiesOperationSpec, callback); }; Service.prototype.getStatistics = function (options, callback) { return this.client.sendOperationRequest({ options: options }, getStatisticsOperationSpec, callback); }; Service.prototype.listContainersSegment = function (options, callback) { return this.client.sendOperationRequest({ options: options }, listContainersSegmentOperationSpec, callback); }; Service.prototype.getUserDelegationKey = function (keyInfo, options, callback) { return this.client.sendOperationRequest({ keyInfo: keyInfo, options: options }, getUserDelegationKeyOperationSpec, callback); }; Service.prototype.getAccountInfo = function (options, callback) { return this.client.sendOperationRequest({ options: options }, getAccountInfoOperationSpec, callback); }; Service.prototype.submitBatch = function (body, contentLength, multipartContentType, options, callback) { return this.client.sendOperationRequest({ body: body, contentLength: contentLength, multipartContentType: multipartContentType, options: options }, submitBatchOperationSpec, callback); }; return Service; }()); // Operation Specifications var serializer = new coreHttp.Serializer(Mappers, true); var setPropertiesOperationSpec = { httpMethod: "PUT", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, restype0, comp0 ], headerParameters: [ version, requestId ], requestBody: { parameterPath: "blobServiceProperties", mapper: tslib.__assign(tslib.__assign({}, BlobServiceProperties), { required: true }) }, contentType: "application/xml; charset=utf-8", responses: { 202: { headersMapper: ServiceSetPropertiesHeaders }, default: { bodyMapper: StorageError, headersMapper: ServiceSetPropertiesHeaders } }, isXML: true, serializer: serializer }; var getPropertiesOperationSpec = { httpMethod: "GET", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, restype0, comp0 ], headerParameters: [ version, requestId ], responses: { 200: { bodyMapper: BlobServiceProperties, headersMapper: ServiceGetPropertiesHeaders }, default: { bodyMapper: StorageError, headersMapper: ServiceGetPropertiesHeaders } }, isXML: true, serializer: serializer }; var getStatisticsOperationSpec = { httpMethod: "GET", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, restype0, comp1 ], headerParameters: [ version, requestId ], responses: { 200: { bodyMapper: BlobServiceStatistics, headersMapper: ServiceGetStatisticsHeaders }, default: { bodyMapper: StorageError, headersMapper: ServiceGetStatisticsHeaders } }, isXML: true, serializer: serializer }; var listContainersSegmentOperationSpec = { httpMethod: "GET", urlParameters: [ url ], queryParameters: [ prefix, marker0, maxPageSize, include0, timeoutInSeconds, comp2 ], headerParameters: [ version, requestId ], responses: { 200: { bodyMapper: ListContainersSegmentResponse, headersMapper: ServiceListContainersSegmentHeaders }, default: { bodyMapper: StorageError, headersMapper: ServiceListContainersSegmentHeaders } }, isXML: true, serializer: serializer }; var getUserDelegationKeyOperationSpec = { httpMethod: "POST", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, restype0, comp3 ], headerParameters: [ version, requestId ], requestBody: { parameterPath: "keyInfo", mapper: tslib.__assign(tslib.__assign({}, KeyInfo), { required: true }) }, contentType: "application/xml; charset=utf-8", responses: { 200: { bodyMapper: UserDelegationKey, headersMapper: ServiceGetUserDelegationKeyHeaders }, default: { bodyMapper: StorageError, headersMapper: ServiceGetUserDelegationKeyHeaders } }, isXML: true, serializer: serializer }; var getAccountInfoOperationSpec = { httpMethod: "GET", urlParameters: [ url ], queryParameters: [ restype1, comp0 ], headerParameters: [ version ], responses: { 200: { headersMapper: ServiceGetAccountInfoHeaders }, default: { bodyMapper: StorageError, headersMapper: ServiceGetAccountInfoHeaders } }, isXML: true, serializer: serializer }; var submitBatchOperationSpec = { httpMethod: "POST", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp4 ], headerParameters: [ contentLength, multipartContentType, version, requestId ], requestBody: { parameterPath: "body", mapper: { required: true, serializedName: "body", type: { name: "Stream" } } }, contentType: "application/xml; charset=utf-8", responses: { 202: { bodyMapper: { serializedName: "parsedResponse", type: { name: "Stream" } }, headersMapper: ServiceSubmitBatchHeaders }, default: { bodyMapper: StorageError, headersMapper: ServiceSubmitBatchHeaders } }, isXML: true, serializer: serializer }; /* * Copyright (c) Microsoft Corporation. All rights reserved. * Licensed under the MIT License. See License.txt in the project root for license information. * * Code generated by Microsoft (R) AutoRest Code Generator. * Changes may cause incorrect behavior and will be lost if the code is regenerated. */ var Mappers$1 = /*#__PURE__*/Object.freeze({ __proto__: null, AccessPolicy: AccessPolicy, BlobFlatListSegment: BlobFlatListSegment, BlobHierarchyListSegment: BlobHierarchyListSegment, BlobItem: BlobItem, BlobPrefix: BlobPrefix, BlobProperties: BlobProperties, ContainerAcquireLeaseHeaders: ContainerAcquireLeaseHeaders, ContainerBreakLeaseHeaders: ContainerBreakLeaseHeaders, ContainerChangeLeaseHeaders: ContainerChangeLeaseHeaders, ContainerCreateHeaders: ContainerCreateHeaders, ContainerDeleteHeaders: ContainerDeleteHeaders, ContainerGetAccessPolicyHeaders: ContainerGetAccessPolicyHeaders, ContainerGetAccountInfoHeaders: ContainerGetAccountInfoHeaders, ContainerGetPropertiesHeaders: ContainerGetPropertiesHeaders, ContainerListBlobFlatSegmentHeaders: ContainerListBlobFlatSegmentHeaders, ContainerListBlobHierarchySegmentHeaders: ContainerListBlobHierarchySegmentHeaders, ContainerReleaseLeaseHeaders: ContainerReleaseLeaseHeaders, ContainerRenewLeaseHeaders: ContainerRenewLeaseHeaders, ContainerSetAccessPolicyHeaders: ContainerSetAccessPolicyHeaders, ContainerSetMetadataHeaders: ContainerSetMetadataHeaders, ListBlobsFlatSegmentResponse: ListBlobsFlatSegmentResponse, ListBlobsHierarchySegmentResponse: ListBlobsHierarchySegmentResponse, SignedIdentifier: SignedIdentifier, StorageError: StorageError }); /* * Copyright (c) Microsoft Corporation. All rights reserved. * Licensed under the MIT License. See License.txt in the project root for * license information. * * Code generated by Microsoft (R) AutoRest Code Generator. * Changes may cause incorrect behavior and will be lost if the code is * regenerated. */ /** Class representing a Container. */ var Container = /** @class */ (function () { /** * Create a Container. * @param {StorageClientContext} client Reference to the service client. */ function Container(client) { this.client = client; } Container.prototype.create = function (options, callback) { return this.client.sendOperationRequest({ options: options }, createOperationSpec, callback); }; Container.prototype.getProperties = function (options, callback) { return this.client.sendOperationRequest({ options: options }, getPropertiesOperationSpec$1, callback); }; Container.prototype.deleteMethod = function (options, callback) { return this.client.sendOperationRequest({ options: options }, deleteMethodOperationSpec, callback); }; Container.prototype.setMetadata = function (options, callback) { return this.client.sendOperationRequest({ options: options }, setMetadataOperationSpec, callback); }; Container.prototype.getAccessPolicy = function (options, callback) { return this.client.sendOperationRequest({ options: options }, getAccessPolicyOperationSpec, callback); }; Container.prototype.setAccessPolicy = function (options, callback) { return this.client.sendOperationRequest({ options: options }, setAccessPolicyOperationSpec, callback); }; Container.prototype.acquireLease = function (options, callback) { return this.client.sendOperationRequest({ options: options }, acquireLeaseOperationSpec, callback); }; Container.prototype.releaseLease = function (leaseId, options, callback) { return this.client.sendOperationRequest({ leaseId: leaseId, options: options }, releaseLeaseOperationSpec, callback); }; Container.prototype.renewLease = function (leaseId, options, callback) { return this.client.sendOperationRequest({ leaseId: leaseId, options: options }, renewLeaseOperationSpec, callback); }; Container.prototype.breakLease = function (options, callback) { return this.client.sendOperationRequest({ options: options }, breakLeaseOperationSpec, callback); }; Container.prototype.changeLease = function (leaseId, proposedLeaseId, options, callback) { return this.client.sendOperationRequest({ leaseId: leaseId, proposedLeaseId: proposedLeaseId, options: options }, changeLeaseOperationSpec, callback); }; Container.prototype.listBlobFlatSegment = function (options, callback) { return this.client.sendOperationRequest({ options: options }, listBlobFlatSegmentOperationSpec, callback); }; Container.prototype.listBlobHierarchySegment = function (delimiter, options, callback) { return this.client.sendOperationRequest({ delimiter: delimiter, options: options }, listBlobHierarchySegmentOperationSpec, callback); }; Container.prototype.getAccountInfo = function (options, callback) { return this.client.sendOperationRequest({ options: options }, getAccountInfoOperationSpec$1, callback); }; return Container; }()); // Operation Specifications var serializer$1 = new coreHttp.Serializer(Mappers$1, true); var createOperationSpec = { httpMethod: "PUT", path: "{containerName}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, restype2 ], headerParameters: [ metadata, access, version, requestId, defaultEncryptionScope, preventEncryptionScopeOverride ], responses: { 201: { headersMapper: ContainerCreateHeaders }, default: { bodyMapper: StorageError, headersMapper: ContainerCreateHeaders } }, isXML: true, serializer: serializer$1 }; var getPropertiesOperationSpec$1 = { httpMethod: "GET", path: "{containerName}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, restype2 ], headerParameters: [ version, requestId, leaseId0 ], responses: { 200: { headersMapper: ContainerGetPropertiesHeaders }, default: { bodyMapper: StorageError, headersMapper: ContainerGetPropertiesHeaders } }, isXML: true, serializer: serializer$1 }; var deleteMethodOperationSpec = { httpMethod: "DELETE", path: "{containerName}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, restype2 ], headerParameters: [ version, requestId, leaseId0, ifModifiedSince, ifUnmodifiedSince ], responses: { 202: { headersMapper: ContainerDeleteHeaders }, default: { bodyMapper: StorageError, headersMapper: ContainerDeleteHeaders } }, isXML: true, serializer: serializer$1 }; var setMetadataOperationSpec = { httpMethod: "PUT", path: "{containerName}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, restype2, comp5 ], headerParameters: [ metadata, version, requestId, leaseId0, ifModifiedSince ], responses: { 200: { headersMapper: ContainerSetMetadataHeaders }, default: { bodyMapper: StorageError, headersMapper: ContainerSetMetadataHeaders } }, isXML: true, serializer: serializer$1 }; var getAccessPolicyOperationSpec = { httpMethod: "GET", path: "{containerName}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, restype2, comp6 ], headerParameters: [ version, requestId, leaseId0 ], responses: { 200: { bodyMapper: { xmlElementName: "SignedIdentifier", serializedName: "parsedResponse", type: { name: "Sequence", element: { type: { name: "Composite", className: "SignedIdentifier" } } } }, headersMapper: ContainerGetAccessPolicyHeaders }, default: { bodyMapper: StorageError, headersMapper: ContainerGetAccessPolicyHeaders } }, isXML: true, serializer: serializer$1 }; var setAccessPolicyOperationSpec = { httpMethod: "PUT", path: "{containerName}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, restype2, comp6 ], headerParameters: [ access, version, requestId, leaseId0, ifModifiedSince, ifUnmodifiedSince ], requestBody: { parameterPath: [ "options", "containerAcl" ], mapper: { xmlName: "SignedIdentifiers", xmlElementName: "SignedIdentifier", serializedName: "containerAcl", type: { name: "Sequence", element: { type: { name: "Composite", className: "SignedIdentifier" } } } } }, contentType: "application/xml; charset=utf-8", responses: { 200: { headersMapper: ContainerSetAccessPolicyHeaders }, default: { bodyMapper: StorageError, headersMapper: ContainerSetAccessPolicyHeaders } }, isXML: true, serializer: serializer$1 }; var acquireLeaseOperationSpec = { httpMethod: "PUT", path: "{containerName}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp7, restype2 ], headerParameters: [ duration, proposedLeaseId0, version, requestId, action0, ifModifiedSince, ifUnmodifiedSince ], responses: { 201: { headersMapper: ContainerAcquireLeaseHeaders }, default: { bodyMapper: StorageError, headersMapper: ContainerAcquireLeaseHeaders } }, isXML: true, serializer: serializer$1 }; var releaseLeaseOperationSpec = { httpMethod: "PUT", path: "{containerName}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp7, restype2 ], headerParameters: [ leaseId1, version, requestId, action1, ifModifiedSince, ifUnmodifiedSince ], responses: { 200: { headersMapper: ContainerReleaseLeaseHeaders }, default: { bodyMapper: StorageError, headersMapper: ContainerReleaseLeaseHeaders } }, isXML: true, serializer: serializer$1 }; var renewLeaseOperationSpec = { httpMethod: "PUT", path: "{containerName}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp7, restype2 ], headerParameters: [ leaseId1, version, requestId, action2, ifModifiedSince, ifUnmodifiedSince ], responses: { 200: { headersMapper: ContainerRenewLeaseHeaders }, default: { bodyMapper: StorageError, headersMapper: ContainerRenewLeaseHeaders } }, isXML: true, serializer: serializer$1 }; var breakLeaseOperationSpec = { httpMethod: "PUT", path: "{containerName}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp7, restype2 ], headerParameters: [ breakPeriod, version, requestId, action3, ifModifiedSince, ifUnmodifiedSince ], responses: { 202: { headersMapper: ContainerBreakLeaseHeaders }, default: { bodyMapper: StorageError, headersMapper: ContainerBreakLeaseHeaders } }, isXML: true, serializer: serializer$1 }; var changeLeaseOperationSpec = { httpMethod: "PUT", path: "{containerName}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp7, restype2 ], headerParameters: [ leaseId1, proposedLeaseId1, version, requestId, action4, ifModifiedSince, ifUnmodifiedSince ], responses: { 200: { headersMapper: ContainerChangeLeaseHeaders }, default: { bodyMapper: StorageError, headersMapper: ContainerChangeLeaseHeaders } }, isXML: true, serializer: serializer$1 }; var listBlobFlatSegmentOperationSpec = { httpMethod: "GET", path: "{containerName}", urlParameters: [ url ], queryParameters: [ prefix, marker0, maxPageSize, include1, timeoutInSeconds, restype2, comp2 ], headerParameters: [ version, requestId ], responses: { 200: { bodyMapper: ListBlobsFlatSegmentResponse, headersMapper: ContainerListBlobFlatSegmentHeaders }, default: { bodyMapper: StorageError, headersMapper: ContainerListBlobFlatSegmentHeaders } }, isXML: true, serializer: serializer$1 }; var listBlobHierarchySegmentOperationSpec = { httpMethod: "GET", path: "{containerName}", urlParameters: [ url ], queryParameters: [ prefix, delimiter, marker0, maxPageSize, include1, timeoutInSeconds, restype2, comp2 ], headerParameters: [ version, requestId ], responses: { 200: { bodyMapper: ListBlobsHierarchySegmentResponse, headersMapper: ContainerListBlobHierarchySegmentHeaders }, default: { bodyMapper: StorageError, headersMapper: ContainerListBlobHierarchySegmentHeaders } }, isXML: true, serializer: serializer$1 }; var getAccountInfoOperationSpec$1 = { httpMethod: "GET", path: "{containerName}", urlParameters: [ url ], queryParameters: [ restype1, comp0 ], headerParameters: [ version ], responses: { 200: { headersMapper: ContainerGetAccountInfoHeaders }, default: { bodyMapper: StorageError, headersMapper: ContainerGetAccountInfoHeaders } }, isXML: true, serializer: serializer$1 }; /* * Copyright (c) Microsoft Corporation. All rights reserved. * Licensed under the MIT License. See License.txt in the project root for license information. * * Code generated by Microsoft (R) AutoRest Code Generator. * Changes may cause incorrect behavior and will be lost if the code is regenerated. */ var Mappers$2 = /*#__PURE__*/Object.freeze({ __proto__: null, BlobAbortCopyFromURLHeaders: BlobAbortCopyFromURLHeaders, BlobAcquireLeaseHeaders: BlobAcquireLeaseHeaders, BlobBreakLeaseHeaders: BlobBreakLeaseHeaders, BlobChangeLeaseHeaders: BlobChangeLeaseHeaders, BlobCopyFromURLHeaders: BlobCopyFromURLHeaders, BlobCreateSnapshotHeaders: BlobCreateSnapshotHeaders, BlobDeleteHeaders: BlobDeleteHeaders, BlobDownloadHeaders: BlobDownloadHeaders, BlobGetAccessControlHeaders: BlobGetAccessControlHeaders, BlobGetAccountInfoHeaders: BlobGetAccountInfoHeaders, BlobGetPropertiesHeaders: BlobGetPropertiesHeaders, BlobReleaseLeaseHeaders: BlobReleaseLeaseHeaders, BlobRenameHeaders: BlobRenameHeaders, BlobRenewLeaseHeaders: BlobRenewLeaseHeaders, BlobSetAccessControlHeaders: BlobSetAccessControlHeaders, BlobSetHTTPHeadersHeaders: BlobSetHTTPHeadersHeaders, BlobSetMetadataHeaders: BlobSetMetadataHeaders, BlobSetTierHeaders: BlobSetTierHeaders, BlobStartCopyFromURLHeaders: BlobStartCopyFromURLHeaders, BlobUndeleteHeaders: BlobUndeleteHeaders, DataLakeStorageError: DataLakeStorageError, DataLakeStorageErrorError: DataLakeStorageErrorError, StorageError: StorageError }); /* * Copyright (c) Microsoft Corporation. All rights reserved. * Licensed under the MIT License. See License.txt in the project root for * license information. * * Code generated by Microsoft (R) AutoRest Code Generator. * Changes may cause incorrect behavior and will be lost if the code is * regenerated. */ /** Class representing a Blob. */ var Blob$1 = /** @class */ (function () { /** * Create a Blob. * @param {StorageClientContext} client Reference to the service client. */ function Blob(client) { this.client = client; } Blob.prototype.download = function (options, callback) { return this.client.sendOperationRequest({ options: options }, downloadOperationSpec, callback); }; Blob.prototype.getProperties = function (options, callback) { return this.client.sendOperationRequest({ options: options }, getPropertiesOperationSpec$2, callback); }; Blob.prototype.deleteMethod = function (options, callback) { return this.client.sendOperationRequest({ options: options }, deleteMethodOperationSpec$1, callback); }; Blob.prototype.setAccessControl = function (options, callback) { return this.client.sendOperationRequest({ options: options }, setAccessControlOperationSpec, callback); }; Blob.prototype.getAccessControl = function (options, callback) { return this.client.sendOperationRequest({ options: options }, getAccessControlOperationSpec, callback); }; Blob.prototype.rename = function (renameSource, options, callback) { return this.client.sendOperationRequest({ renameSource: renameSource, options: options }, renameOperationSpec, callback); }; Blob.prototype.undelete = function (options, callback) { return this.client.sendOperationRequest({ options: options }, undeleteOperationSpec, callback); }; Blob.prototype.setHTTPHeaders = function (options, callback) { return this.client.sendOperationRequest({ options: options }, setHTTPHeadersOperationSpec, callback); }; Blob.prototype.setMetadata = function (options, callback) { return this.client.sendOperationRequest({ options: options }, setMetadataOperationSpec$1, callback); }; Blob.prototype.acquireLease = function (options, callback) { return this.client.sendOperationRequest({ options: options }, acquireLeaseOperationSpec$1, callback); }; Blob.prototype.releaseLease = function (leaseId, options, callback) { return this.client.sendOperationRequest({ leaseId: leaseId, options: options }, releaseLeaseOperationSpec$1, callback); }; Blob.prototype.renewLease = function (leaseId, options, callback) { return this.client.sendOperationRequest({ leaseId: leaseId, options: options }, renewLeaseOperationSpec$1, callback); }; Blob.prototype.changeLease = function (leaseId, proposedLeaseId, options, callback) { return this.client.sendOperationRequest({ leaseId: leaseId, proposedLeaseId: proposedLeaseId, options: options }, changeLeaseOperationSpec$1, callback); }; Blob.prototype.breakLease = function (options, callback) { return this.client.sendOperationRequest({ options: options }, breakLeaseOperationSpec$1, callback); }; Blob.prototype.createSnapshot = function (options, callback) { return this.client.sendOperationRequest({ options: options }, createSnapshotOperationSpec, callback); }; Blob.prototype.startCopyFromURL = function (copySource, options, callback) { return this.client.sendOperationRequest({ copySource: copySource, options: options }, startCopyFromURLOperationSpec, callback); }; Blob.prototype.copyFromURL = function (copySource, options, callback) { return this.client.sendOperationRequest({ copySource: copySource, options: options }, copyFromURLOperationSpec, callback); }; Blob.prototype.abortCopyFromURL = function (copyId, options, callback) { return this.client.sendOperationRequest({ copyId: copyId, options: options }, abortCopyFromURLOperationSpec, callback); }; Blob.prototype.setTier = function (tier, options, callback) { return this.client.sendOperationRequest({ tier: tier, options: options }, setTierOperationSpec, callback); }; Blob.prototype.getAccountInfo = function (options, callback) { return this.client.sendOperationRequest({ options: options }, getAccountInfoOperationSpec$2, callback); }; return Blob; }()); // Operation Specifications var serializer$2 = new coreHttp.Serializer(Mappers$2, true); var downloadOperationSpec = { httpMethod: "GET", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ snapshot, timeoutInSeconds ], headerParameters: [ range0, rangeGetContentMD5, rangeGetContentCRC64, version, requestId, leaseId0, encryptionKey, encryptionKeySha256, encryptionAlgorithm, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 200: { bodyMapper: { serializedName: "parsedResponse", type: { name: "Stream" } }, headersMapper: BlobDownloadHeaders }, 206: { bodyMapper: { serializedName: "parsedResponse", type: { name: "Stream" } }, headersMapper: BlobDownloadHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobDownloadHeaders } }, isXML: true, serializer: serializer$2 }; var getPropertiesOperationSpec$2 = { httpMethod: "HEAD", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ snapshot, timeoutInSeconds ], headerParameters: [ version, requestId, leaseId0, encryptionKey, encryptionKeySha256, encryptionAlgorithm, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 200: { headersMapper: BlobGetPropertiesHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobGetPropertiesHeaders } }, isXML: true, serializer: serializer$2 }; var deleteMethodOperationSpec$1 = { httpMethod: "DELETE", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ snapshot, timeoutInSeconds ], headerParameters: [ deleteSnapshots, version, requestId, leaseId0, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 202: { headersMapper: BlobDeleteHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobDeleteHeaders } }, isXML: true, serializer: serializer$2 }; var setAccessControlOperationSpec = { httpMethod: "PATCH", path: "{filesystem}/{path}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, action5 ], headerParameters: [ owner, group, posixPermissions, posixAcl, requestId, version, leaseId0, ifMatch, ifNoneMatch, ifModifiedSince, ifUnmodifiedSince ], responses: { 200: { headersMapper: BlobSetAccessControlHeaders }, default: { bodyMapper: DataLakeStorageError, headersMapper: BlobSetAccessControlHeaders } }, isXML: true, serializer: serializer$2 }; var getAccessControlOperationSpec = { httpMethod: "HEAD", path: "{filesystem}/{path}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, upn, action6 ], headerParameters: [ requestId, version, leaseId0, ifMatch, ifNoneMatch, ifModifiedSince, ifUnmodifiedSince ], responses: { 200: { headersMapper: BlobGetAccessControlHeaders }, default: { bodyMapper: DataLakeStorageError, headersMapper: BlobGetAccessControlHeaders } }, isXML: true, serializer: serializer$2 }; var renameOperationSpec = { httpMethod: "PUT", path: "{filesystem}/{path}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, pathRenameMode ], headerParameters: [ renameSource, directoryProperties, posixPermissions, posixUmask, sourceLeaseId, version, requestId, cacheControl, contentType, contentEncoding, contentLanguage, contentDisposition, leaseId0, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch, sourceIfModifiedSince, sourceIfUnmodifiedSince, sourceIfMatch, sourceIfNoneMatch ], responses: { 201: { headersMapper: BlobRenameHeaders }, default: { bodyMapper: DataLakeStorageError, headersMapper: BlobRenameHeaders } }, isXML: true, serializer: serializer$2 }; var undeleteOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp8 ], headerParameters: [ version, requestId ], responses: { 200: { headersMapper: BlobUndeleteHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobUndeleteHeaders } }, isXML: true, serializer: serializer$2 }; var setHTTPHeadersOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp0 ], headerParameters: [ version, requestId, blobCacheControl, blobContentType, blobContentMD5, blobContentEncoding, blobContentLanguage, blobContentDisposition, leaseId0, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 200: { headersMapper: BlobSetHTTPHeadersHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobSetHTTPHeadersHeaders } }, isXML: true, serializer: serializer$2 }; var setMetadataOperationSpec$1 = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp5 ], headerParameters: [ metadata, encryptionScope, version, requestId, leaseId0, encryptionKey, encryptionKeySha256, encryptionAlgorithm, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 200: { headersMapper: BlobSetMetadataHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobSetMetadataHeaders } }, isXML: true, serializer: serializer$2 }; var acquireLeaseOperationSpec$1 = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp7 ], headerParameters: [ duration, proposedLeaseId0, version, requestId, action0, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 201: { headersMapper: BlobAcquireLeaseHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobAcquireLeaseHeaders } }, isXML: true, serializer: serializer$2 }; var releaseLeaseOperationSpec$1 = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp7 ], headerParameters: [ leaseId1, version, requestId, action1, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 200: { headersMapper: BlobReleaseLeaseHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobReleaseLeaseHeaders } }, isXML: true, serializer: serializer$2 }; var renewLeaseOperationSpec$1 = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp7 ], headerParameters: [ leaseId1, version, requestId, action2, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 200: { headersMapper: BlobRenewLeaseHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobRenewLeaseHeaders } }, isXML: true, serializer: serializer$2 }; var changeLeaseOperationSpec$1 = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp7 ], headerParameters: [ leaseId1, proposedLeaseId1, version, requestId, action4, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 200: { headersMapper: BlobChangeLeaseHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobChangeLeaseHeaders } }, isXML: true, serializer: serializer$2 }; var breakLeaseOperationSpec$1 = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp7 ], headerParameters: [ breakPeriod, version, requestId, action3, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 202: { headersMapper: BlobBreakLeaseHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobBreakLeaseHeaders } }, isXML: true, serializer: serializer$2 }; var createSnapshotOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp9 ], headerParameters: [ metadata, encryptionScope, version, requestId, encryptionKey, encryptionKeySha256, encryptionAlgorithm, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch, leaseId0 ], responses: { 201: { headersMapper: BlobCreateSnapshotHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobCreateSnapshotHeaders } }, isXML: true, serializer: serializer$2 }; var startCopyFromURLOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds ], headerParameters: [ metadata, tier0, rehydratePriority, copySource, version, requestId, sourceIfModifiedSince, sourceIfUnmodifiedSince, sourceIfMatch, sourceIfNoneMatch, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch, leaseId0 ], responses: { 202: { headersMapper: BlobStartCopyFromURLHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobStartCopyFromURLHeaders } }, isXML: true, serializer: serializer$2 }; var copyFromURLOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds ], headerParameters: [ metadata, tier0, copySource, version, requestId, sourceContentMD5, xMsRequiresSync, sourceIfModifiedSince, sourceIfUnmodifiedSince, sourceIfMatch, sourceIfNoneMatch, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch, leaseId0 ], responses: { 202: { headersMapper: BlobCopyFromURLHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobCopyFromURLHeaders } }, isXML: true, serializer: serializer$2 }; var abortCopyFromURLOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ copyId, timeoutInSeconds, comp10 ], headerParameters: [ version, requestId, copyActionAbortConstant, leaseId0 ], responses: { 204: { headersMapper: BlobAbortCopyFromURLHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobAbortCopyFromURLHeaders } }, isXML: true, serializer: serializer$2 }; var setTierOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp11 ], headerParameters: [ tier1, rehydratePriority, version, requestId, leaseId0 ], responses: { 200: { headersMapper: BlobSetTierHeaders }, 202: { headersMapper: BlobSetTierHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobSetTierHeaders } }, isXML: true, serializer: serializer$2 }; var getAccountInfoOperationSpec$2 = { httpMethod: "GET", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ restype1, comp0 ], headerParameters: [ version ], responses: { 200: { headersMapper: BlobGetAccountInfoHeaders }, default: { bodyMapper: StorageError, headersMapper: BlobGetAccountInfoHeaders } }, isXML: true, serializer: serializer$2 }; /* * Copyright (c) Microsoft Corporation. All rights reserved. * Licensed under the MIT License. See License.txt in the project root for license information. * * Code generated by Microsoft (R) AutoRest Code Generator. * Changes may cause incorrect behavior and will be lost if the code is regenerated. */ var Mappers$3 = /*#__PURE__*/Object.freeze({ __proto__: null, ClearRange: ClearRange, PageBlobClearPagesHeaders: PageBlobClearPagesHeaders, PageBlobCopyIncrementalHeaders: PageBlobCopyIncrementalHeaders, PageBlobCreateHeaders: PageBlobCreateHeaders, PageBlobGetPageRangesDiffHeaders: PageBlobGetPageRangesDiffHeaders, PageBlobGetPageRangesHeaders: PageBlobGetPageRangesHeaders, PageBlobResizeHeaders: PageBlobResizeHeaders, PageBlobUpdateSequenceNumberHeaders: PageBlobUpdateSequenceNumberHeaders, PageBlobUploadPagesFromURLHeaders: PageBlobUploadPagesFromURLHeaders, PageBlobUploadPagesHeaders: PageBlobUploadPagesHeaders, PageList: PageList, PageRange: PageRange, StorageError: StorageError }); /* * Copyright (c) Microsoft Corporation. All rights reserved. * Licensed under the MIT License. See License.txt in the project root for * license information. * * Code generated by Microsoft (R) AutoRest Code Generator. * Changes may cause incorrect behavior and will be lost if the code is * regenerated. */ /** Class representing a PageBlob. */ var PageBlob = /** @class */ (function () { /** * Create a PageBlob. * @param {StorageClientContext} client Reference to the service client. */ function PageBlob(client) { this.client = client; } PageBlob.prototype.create = function (contentLength, blobContentLength, options, callback) { return this.client.sendOperationRequest({ contentLength: contentLength, blobContentLength: blobContentLength, options: options }, createOperationSpec$1, callback); }; PageBlob.prototype.uploadPages = function (body, contentLength, options, callback) { return this.client.sendOperationRequest({ body: body, contentLength: contentLength, options: options }, uploadPagesOperationSpec, callback); }; PageBlob.prototype.clearPages = function (contentLength, options, callback) { return this.client.sendOperationRequest({ contentLength: contentLength, options: options }, clearPagesOperationSpec, callback); }; PageBlob.prototype.uploadPagesFromURL = function (sourceUrl, sourceRange, contentLength, range, options, callback) { return this.client.sendOperationRequest({ sourceUrl: sourceUrl, sourceRange: sourceRange, contentLength: contentLength, range: range, options: options }, uploadPagesFromURLOperationSpec, callback); }; PageBlob.prototype.getPageRanges = function (options, callback) { return this.client.sendOperationRequest({ options: options }, getPageRangesOperationSpec, callback); }; PageBlob.prototype.getPageRangesDiff = function (options, callback) { return this.client.sendOperationRequest({ options: options }, getPageRangesDiffOperationSpec, callback); }; PageBlob.prototype.resize = function (blobContentLength, options, callback) { return this.client.sendOperationRequest({ blobContentLength: blobContentLength, options: options }, resizeOperationSpec, callback); }; PageBlob.prototype.updateSequenceNumber = function (sequenceNumberAction, options, callback) { return this.client.sendOperationRequest({ sequenceNumberAction: sequenceNumberAction, options: options }, updateSequenceNumberOperationSpec, callback); }; PageBlob.prototype.copyIncremental = function (copySource, options, callback) { return this.client.sendOperationRequest({ copySource: copySource, options: options }, copyIncrementalOperationSpec, callback); }; return PageBlob; }()); // Operation Specifications var serializer$3 = new coreHttp.Serializer(Mappers$3, true); var createOperationSpec$1 = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds ], headerParameters: [ contentLength, tier0, metadata, encryptionScope, blobContentLength, blobSequenceNumber, version, requestId, blobType0, blobContentType, blobContentEncoding, blobContentLanguage, blobContentMD5, blobCacheControl, blobContentDisposition, leaseId0, encryptionKey, encryptionKeySha256, encryptionAlgorithm, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 201: { headersMapper: PageBlobCreateHeaders }, default: { bodyMapper: StorageError, headersMapper: PageBlobCreateHeaders } }, isXML: true, serializer: serializer$3 }; var uploadPagesOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp12 ], headerParameters: [ contentLength, transactionalContentMD5, transactionalContentCrc64, range0, encryptionScope, version, requestId, pageWrite0, leaseId0, encryptionKey, encryptionKeySha256, encryptionAlgorithm, ifSequenceNumberLessThanOrEqualTo, ifSequenceNumberLessThan, ifSequenceNumberEqualTo, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], requestBody: { parameterPath: "body", mapper: { required: true, serializedName: "body", type: { name: "Stream" } } }, contentType: "application/octet-stream", responses: { 201: { headersMapper: PageBlobUploadPagesHeaders }, default: { bodyMapper: StorageError, headersMapper: PageBlobUploadPagesHeaders } }, isXML: true, serializer: serializer$3 }; var clearPagesOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp12 ], headerParameters: [ contentLength, range0, encryptionScope, version, requestId, pageWrite1, leaseId0, encryptionKey, encryptionKeySha256, encryptionAlgorithm, ifSequenceNumberLessThanOrEqualTo, ifSequenceNumberLessThan, ifSequenceNumberEqualTo, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 201: { headersMapper: PageBlobClearPagesHeaders }, default: { bodyMapper: StorageError, headersMapper: PageBlobClearPagesHeaders } }, isXML: true, serializer: serializer$3 }; var uploadPagesFromURLOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp12 ], headerParameters: [ sourceUrl, sourceRange0, sourceContentMD5, sourceContentCrc64, contentLength, range1, encryptionScope, version, requestId, pageWrite0, encryptionKey, encryptionKeySha256, encryptionAlgorithm, leaseId0, ifSequenceNumberLessThanOrEqualTo, ifSequenceNumberLessThan, ifSequenceNumberEqualTo, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch, sourceIfModifiedSince, sourceIfUnmodifiedSince, sourceIfMatch, sourceIfNoneMatch ], responses: { 201: { headersMapper: PageBlobUploadPagesFromURLHeaders }, default: { bodyMapper: StorageError, headersMapper: PageBlobUploadPagesFromURLHeaders } }, isXML: true, serializer: serializer$3 }; var getPageRangesOperationSpec = { httpMethod: "GET", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ snapshot, timeoutInSeconds, comp13 ], headerParameters: [ range0, version, requestId, leaseId0, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 200: { bodyMapper: PageList, headersMapper: PageBlobGetPageRangesHeaders }, default: { bodyMapper: StorageError, headersMapper: PageBlobGetPageRangesHeaders } }, isXML: true, serializer: serializer$3 }; var getPageRangesDiffOperationSpec = { httpMethod: "GET", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ snapshot, timeoutInSeconds, prevsnapshot, comp13 ], headerParameters: [ prevSnapshotUrl, range0, version, requestId, leaseId0, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 200: { bodyMapper: PageList, headersMapper: PageBlobGetPageRangesDiffHeaders }, default: { bodyMapper: StorageError, headersMapper: PageBlobGetPageRangesDiffHeaders } }, isXML: true, serializer: serializer$3 }; var resizeOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp0 ], headerParameters: [ encryptionScope, blobContentLength, version, requestId, leaseId0, encryptionKey, encryptionKeySha256, encryptionAlgorithm, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 200: { headersMapper: PageBlobResizeHeaders }, default: { bodyMapper: StorageError, headersMapper: PageBlobResizeHeaders } }, isXML: true, serializer: serializer$3 }; var updateSequenceNumberOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp0 ], headerParameters: [ sequenceNumberAction, blobSequenceNumber, version, requestId, leaseId0, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 200: { headersMapper: PageBlobUpdateSequenceNumberHeaders }, default: { bodyMapper: StorageError, headersMapper: PageBlobUpdateSequenceNumberHeaders } }, isXML: true, serializer: serializer$3 }; var copyIncrementalOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp14 ], headerParameters: [ copySource, version, requestId, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 202: { headersMapper: PageBlobCopyIncrementalHeaders }, default: { bodyMapper: StorageError, headersMapper: PageBlobCopyIncrementalHeaders } }, isXML: true, serializer: serializer$3 }; /* * Copyright (c) Microsoft Corporation. All rights reserved. * Licensed under the MIT License. See License.txt in the project root for license information. * * Code generated by Microsoft (R) AutoRest Code Generator. * Changes may cause incorrect behavior and will be lost if the code is regenerated. */ var Mappers$4 = /*#__PURE__*/Object.freeze({ __proto__: null, AppendBlobAppendBlockFromUrlHeaders: AppendBlobAppendBlockFromUrlHeaders, AppendBlobAppendBlockHeaders: AppendBlobAppendBlockHeaders, AppendBlobCreateHeaders: AppendBlobCreateHeaders, StorageError: StorageError }); /* * Copyright (c) Microsoft Corporation. All rights reserved. * Licensed under the MIT License. See License.txt in the project root for * license information. * * Code generated by Microsoft (R) AutoRest Code Generator. * Changes may cause incorrect behavior and will be lost if the code is * regenerated. */ /** Class representing a AppendBlob. */ var AppendBlob = /** @class */ (function () { /** * Create a AppendBlob. * @param {StorageClientContext} client Reference to the service client. */ function AppendBlob(client) { this.client = client; } AppendBlob.prototype.create = function (contentLength, options, callback) { return this.client.sendOperationRequest({ contentLength: contentLength, options: options }, createOperationSpec$2, callback); }; AppendBlob.prototype.appendBlock = function (body, contentLength, options, callback) { return this.client.sendOperationRequest({ body: body, contentLength: contentLength, options: options }, appendBlockOperationSpec, callback); }; AppendBlob.prototype.appendBlockFromUrl = function (sourceUrl, contentLength, options, callback) { return this.client.sendOperationRequest({ sourceUrl: sourceUrl, contentLength: contentLength, options: options }, appendBlockFromUrlOperationSpec, callback); }; return AppendBlob; }()); // Operation Specifications var serializer$4 = new coreHttp.Serializer(Mappers$4, true); var createOperationSpec$2 = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds ], headerParameters: [ contentLength, metadata, encryptionScope, version, requestId, blobType1, blobContentType, blobContentEncoding, blobContentLanguage, blobContentMD5, blobCacheControl, blobContentDisposition, leaseId0, encryptionKey, encryptionKeySha256, encryptionAlgorithm, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], responses: { 201: { headersMapper: AppendBlobCreateHeaders }, default: { bodyMapper: StorageError, headersMapper: AppendBlobCreateHeaders } }, isXML: true, serializer: serializer$4 }; var appendBlockOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp15 ], headerParameters: [ contentLength, transactionalContentMD5, transactionalContentCrc64, encryptionScope, version, requestId, leaseId0, maxSize, appendPosition, encryptionKey, encryptionKeySha256, encryptionAlgorithm, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], requestBody: { parameterPath: "body", mapper: { required: true, serializedName: "body", type: { name: "Stream" } } }, contentType: "application/octet-stream", responses: { 201: { headersMapper: AppendBlobAppendBlockHeaders }, default: { bodyMapper: StorageError, headersMapper: AppendBlobAppendBlockHeaders } }, isXML: true, serializer: serializer$4 }; var appendBlockFromUrlOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp15 ], headerParameters: [ sourceUrl, sourceRange1, sourceContentMD5, sourceContentCrc64, contentLength, transactionalContentMD5, encryptionScope, version, requestId, encryptionKey, encryptionKeySha256, encryptionAlgorithm, leaseId0, maxSize, appendPosition, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch, sourceIfModifiedSince, sourceIfUnmodifiedSince, sourceIfMatch, sourceIfNoneMatch ], responses: { 201: { headersMapper: AppendBlobAppendBlockFromUrlHeaders }, default: { bodyMapper: StorageError, headersMapper: AppendBlobAppendBlockFromUrlHeaders } }, isXML: true, serializer: serializer$4 }; /* * Copyright (c) Microsoft Corporation. All rights reserved. * Licensed under the MIT License. See License.txt in the project root for license information. * * Code generated by Microsoft (R) AutoRest Code Generator. * Changes may cause incorrect behavior and will be lost if the code is regenerated. */ var Mappers$5 = /*#__PURE__*/Object.freeze({ __proto__: null, Block: Block, BlockBlobCommitBlockListHeaders: BlockBlobCommitBlockListHeaders, BlockBlobGetBlockListHeaders: BlockBlobGetBlockListHeaders, BlockBlobStageBlockFromURLHeaders: BlockBlobStageBlockFromURLHeaders, BlockBlobStageBlockHeaders: BlockBlobStageBlockHeaders, BlockBlobUploadHeaders: BlockBlobUploadHeaders, BlockList: BlockList, BlockLookupList: BlockLookupList, StorageError: StorageError }); /* * Copyright (c) Microsoft Corporation. All rights reserved. * Licensed under the MIT License. See License.txt in the project root for * license information. * * Code generated by Microsoft (R) AutoRest Code Generator. * Changes may cause incorrect behavior and will be lost if the code is * regenerated. */ /** Class representing a BlockBlob. */ var BlockBlob = /** @class */ (function () { /** * Create a BlockBlob. * @param {StorageClientContext} client Reference to the service client. */ function BlockBlob(client) { this.client = client; } BlockBlob.prototype.upload = function (body, contentLength, options, callback) { return this.client.sendOperationRequest({ body: body, contentLength: contentLength, options: options }, uploadOperationSpec, callback); }; BlockBlob.prototype.stageBlock = function (blockId, contentLength, body, options, callback) { return this.client.sendOperationRequest({ blockId: blockId, contentLength: contentLength, body: body, options: options }, stageBlockOperationSpec, callback); }; BlockBlob.prototype.stageBlockFromURL = function (blockId, contentLength, sourceUrl, options, callback) { return this.client.sendOperationRequest({ blockId: blockId, contentLength: contentLength, sourceUrl: sourceUrl, options: options }, stageBlockFromURLOperationSpec, callback); }; BlockBlob.prototype.commitBlockList = function (blocks, options, callback) { return this.client.sendOperationRequest({ blocks: blocks, options: options }, commitBlockListOperationSpec, callback); }; BlockBlob.prototype.getBlockList = function (listType, options, callback) { return this.client.sendOperationRequest({ listType: listType, options: options }, getBlockListOperationSpec, callback); }; return BlockBlob; }()); // Operation Specifications var serializer$5 = new coreHttp.Serializer(Mappers$5, true); var uploadOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds ], headerParameters: [ transactionalContentMD5, contentLength, metadata, encryptionScope, tier0, version, requestId, blobType2, blobContentType, blobContentEncoding, blobContentLanguage, blobContentMD5, blobCacheControl, blobContentDisposition, leaseId0, encryptionKey, encryptionKeySha256, encryptionAlgorithm, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], requestBody: { parameterPath: "body", mapper: { required: true, serializedName: "body", type: { name: "Stream" } } }, contentType: "application/octet-stream", responses: { 201: { headersMapper: BlockBlobUploadHeaders }, default: { bodyMapper: StorageError, headersMapper: BlockBlobUploadHeaders } }, isXML: true, serializer: serializer$5 }; var stageBlockOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ blockId, timeoutInSeconds, comp16 ], headerParameters: [ contentLength, transactionalContentMD5, transactionalContentCrc64, encryptionScope, version, requestId, leaseId0, encryptionKey, encryptionKeySha256, encryptionAlgorithm ], requestBody: { parameterPath: "body", mapper: { required: true, serializedName: "body", type: { name: "Stream" } } }, contentType: "application/octet-stream", responses: { 201: { headersMapper: BlockBlobStageBlockHeaders }, default: { bodyMapper: StorageError, headersMapper: BlockBlobStageBlockHeaders } }, isXML: true, serializer: serializer$5 }; var stageBlockFromURLOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ blockId, timeoutInSeconds, comp16 ], headerParameters: [ contentLength, sourceUrl, sourceRange1, sourceContentMD5, sourceContentCrc64, encryptionScope, version, requestId, encryptionKey, encryptionKeySha256, encryptionAlgorithm, leaseId0, sourceIfModifiedSince, sourceIfUnmodifiedSince, sourceIfMatch, sourceIfNoneMatch ], responses: { 201: { headersMapper: BlockBlobStageBlockFromURLHeaders }, default: { bodyMapper: StorageError, headersMapper: BlockBlobStageBlockFromURLHeaders } }, isXML: true, serializer: serializer$5 }; var commitBlockListOperationSpec = { httpMethod: "PUT", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ timeoutInSeconds, comp17 ], headerParameters: [ transactionalContentMD5, transactionalContentCrc64, metadata, encryptionScope, tier0, version, requestId, blobCacheControl, blobContentType, blobContentEncoding, blobContentLanguage, blobContentMD5, blobContentDisposition, leaseId0, encryptionKey, encryptionKeySha256, encryptionAlgorithm, ifModifiedSince, ifUnmodifiedSince, ifMatch, ifNoneMatch ], requestBody: { parameterPath: "blocks", mapper: tslib.__assign(tslib.__assign({}, BlockLookupList), { required: true }) }, contentType: "application/xml; charset=utf-8", responses: { 201: { headersMapper: BlockBlobCommitBlockListHeaders }, default: { bodyMapper: StorageError, headersMapper: BlockBlobCommitBlockListHeaders } }, isXML: true, serializer: serializer$5 }; var getBlockListOperationSpec = { httpMethod: "GET", path: "{containerName}/{blob}", urlParameters: [ url ], queryParameters: [ snapshot, listType, timeoutInSeconds, comp17 ], headerParameters: [ version, requestId, leaseId0 ], responses: { 200: { bodyMapper: BlockList, headersMapper: BlockBlobGetBlockListHeaders }, default: { bodyMapper: StorageError, headersMapper: BlockBlobGetBlockListHeaders } }, isXML: true, serializer: serializer$5 }; // Copyright (c) Microsoft Corporation. /** * The @azure/logger configuration for this package. */ var logger = logger$1.createClientLogger("storage-blob"); // Copyright (c) Microsoft Corporation. All rights reserved. // Licensed under the MIT License. var SDK_VERSION = "12.1.2"; var SERVICE_VERSION = "2019-07-07"; var BLOCK_BLOB_MAX_UPLOAD_BLOB_BYTES = 256 * 1024 * 1024; // 256MB var BLOCK_BLOB_MAX_STAGE_BLOCK_BYTES = 100 * 1024 * 1024; // 100MB var BLOCK_BLOB_MAX_BLOCKS = 50000; var DEFAULT_BLOCK_BUFFER_SIZE_BYTES = 8 * 1024 * 1024; // 8MB var DEFAULT_BLOB_DOWNLOAD_BLOCK_BYTES = 4 * 1024 * 1024; // 4MB var DEFAULT_MAX_DOWNLOAD_RETRY_REQUESTS = 5; /** * The OAuth scope to use with Azure Storage. */ var StorageOAuthScopes = "https://storage.azure.com/.default"; var URLConstants = { Parameters: { FORCE_BROWSER_NO_CACHE: "_", SIGNATURE: "sig", SNAPSHOT: "snapshot", TIMEOUT: "timeout" } }; var HTTPURLConnection = { HTTP_ACCEPTED: 202, HTTP_CONFLICT: 409, HTTP_NOT_FOUND: 404, HTTP_PRECON_FAILED: 412, HTTP_RANGE_NOT_SATISFIABLE: 416 }; var HeaderConstants = { AUTHORIZATION: "Authorization", AUTHORIZATION_SCHEME: "Bearer", CONTENT_ENCODING: "Content-Encoding", CONTENT_ID: "Content-ID", CONTENT_LANGUAGE: "Content-Language", CONTENT_LENGTH: "Content-Length", CONTENT_MD5: "Content-Md5", CONTENT_TRANSFER_ENCODING: "Content-Transfer-Encoding", CONTENT_TYPE: "Content-Type", COOKIE: "Cookie", DATE: "date", IF_MATCH: "if-match", IF_MODIFIED_SINCE: "if-modified-since", IF_NONE_MATCH: "if-none-match", IF_UNMODIFIED_SINCE: "if-unmodified-since", PREFIX_FOR_STORAGE: "x-ms-", RANGE: "Range", USER_AGENT: "User-Agent", X_MS_CLIENT_REQUEST_ID: "x-ms-client-request-id", X_MS_COPY_SOURCE: "x-ms-copy-source", X_MS_DATE: "x-ms-date", X_MS_ERROR_CODE: "x-ms-error-code", X_MS_VERSION: "x-ms-version" }; var ETagNone = ""; var SIZE_1_MB = 1 * 1024 * 1024; var BATCH_MAX_REQUEST = 256; var BATCH_MAX_PAYLOAD_IN_BYTES = 4 * SIZE_1_MB; var HTTP_LINE_ENDING = "\r\n"; var HTTP_VERSION_1_1 = "HTTP/1.1"; var EncryptionAlgorithmAES25 = "AES256"; var DevelopmentConnectionString = "DefaultEndpointsProtocol=http;AccountName=devstoreaccount1;AccountKey=Eby8vdM02xNOcqFlqUwJPLlmEtlCDXJ1OUzFT50uSRZ6IFsuFq2UVErCz4I6tq/K1SZFPTOtr/KBHBeksoGMGw==;BlobEndpoint=http://127.0.0.1:10000/devstoreaccount1;"; var StorageBlobLoggingAllowedHeaderNames = [ "Access-Control-Allow-Origin", "Cache-Control", "Content-Length", "Content-Type", "Date", "Request-Id", "traceparent", "Transfer-Encoding", "User-Agent", "x-ms-client-request-id", "x-ms-date", "x-ms-error-code", "x-ms-request-id", "x-ms-return-client-request-id", "x-ms-version", "Accept-Ranges", "Content-Disposition", "Content-Encoding", "Content-Language", "Content-MD5", "Content-Range", "ETag", "Last-Modified", "Server", "Vary", "x-ms-content-crc64", "x-ms-copy-action", "x-ms-copy-completion-time", "x-ms-copy-id", "x-ms-copy-progress", "x-ms-copy-status", "x-ms-has-immutability-policy", "x-ms-has-legal-hold", "x-ms-lease-state", "x-ms-lease-status", "x-ms-range", "x-ms-request-server-encrypted", "x-ms-server-encrypted", "x-ms-snapshot", "x-ms-source-range", "If-Match", "If-Modified-Since", "If-None-Match", "If-Unmodified-Since", "x-ms-access-tier", "x-ms-access-tier-change-time", "x-ms-access-tier-inferred", "x-ms-account-kind", "x-ms-archive-status", "x-ms-blob-append-offset", "x-ms-blob-cache-control", "x-ms-blob-committed-block-count", "x-ms-blob-condition-appendpos", "x-ms-blob-condition-maxsize", "x-ms-blob-content-disposition", "x-ms-blob-content-encoding", "x-ms-blob-content-language", "x-ms-blob-content-length", "x-ms-blob-content-md5", "x-ms-blob-content-type", "x-ms-blob-public-access", "x-ms-blob-sequence-number", "x-ms-blob-type", "x-ms-copy-destination-snapshot", "x-ms-creation-time", "x-ms-default-encryption-scope", "x-ms-delete-snapshots", "x-ms-delete-type-permanent", "x-ms-deny-encryption-scope-override", "x-ms-encryption-algorithm", "x-ms-if-sequence-number-eq", "x-ms-if-sequence-number-le", "x-ms-if-sequence-number-lt", "x-ms-incremental-copy", "x-ms-lease-action", "x-ms-lease-break-period", "x-ms-lease-duration", "x-ms-lease-id", "x-ms-lease-time", "x-ms-page-write", "x-ms-proposed-lease-id", "x-ms-range-get-content-md5", "x-ms-rehydrate-priority", "x-ms-sequence-number-action", "x-ms-sku-name", "x-ms-source-content-md5", "x-ms-source-if-match", "x-ms-source-if-modified-since", "x-ms-source-if-none-match", "x-ms-source-if-unmodified-since", "x-ms-tag-count", "x-ms-encryption-key-sha256" ]; var StorageBlobLoggingAllowedQueryParameters = [ "comp", "maxresults", "rscc", "rscd", "rsce", "rscl", "rsct", "se", "si", "sip", "sp", "spr", "sr", "srt", "ss", "st", "sv", "include", "marker", "prefix", "copyid", "restype", "blockid", "blocklisttype", "delimiter", "prevsnapshot", "ske", "skoid", "sks", "skt", "sktid", "skv", "snapshot" ]; // Copyright (c) Microsoft Corporation. All rights reserved. /** * Reserved URL characters must be properly escaped for Storage services like Blob or File. * * ## URL encode and escape strategy for JS SDKs * * When customers pass a URL string into XxxClient classes constrcutor, the URL string may already be URL encoded or not. * But before sending to Azure Storage server, the URL must be encoded. However, it's hard for a SDK to guess whether the URL * string has been encoded or not. We have 2 potential strategies, and chose strategy two for the XxxClient constructors. * * ### Strategy One: Assume the customer URL string is not encoded, and always encode URL string in SDK. * * This is what legacy V2 SDK does, simple and works for most of the cases. * - When customer URL string is "http://account.blob.core.windows.net/con/b:", * SDK will encode it to "http://account.blob.core.windows.net/con/b%3A" and send to server. A blob named "b:" will be created. * - When customer URL string is "http://account.blob.core.windows.net/con/b%3A", * SDK will encode it to "http://account.blob.core.windows.net/con/b%253A" and send to server. A blob named "b%3A" will be created. * * But this strategy will make it not possible to create a blob with "?" in it's name. Because when customer URL string is * "http://account.blob.core.windows.net/con/blob?name", the "?name" will be treated as URL paramter instead of blob name. * If customer URL string is "http://account.blob.core.windows.net/con/blob%3Fname", a blob named "blob%3Fname" will be created. * V2 SDK doesn't have this issue because it doesn't allow customer pass in a full URL, it accepts a separate blob name and encodeURIComponent for it. * We cannot accept a SDK cannot create a blob name with "?". So we implement strategy two: * * ### Strategy Two: SDK doesn't assume the URL has been encoded or not. It will just escape the special characters. * * This is what V10 Blob Go SDK does. It accepts a URL type in Go, and call url.EscapedPath() to escape the special chars unescaped. * - When customer URL string is "http://account.blob.core.windows.net/con/b:", * SDK will escape ":" like "http://account.blob.core.windows.net/con/b%3A" and send to server. A blob named "b:" will be created. * - When customer URL string is "http://account.blob.core.windows.net/con/b%3A", * There is no special characters, so send "http://account.blob.core.windows.net/con/b%3A" to server. A blob named "b:" will be created. * - When customer URL string is "http://account.blob.core.windows.net/con/b%253A", * There is no special characters, so send "http://account.blob.core.windows.net/con/b%253A" to server. A blob named "b%3A" will be created. * * This strategy gives us flexibility to create with any special characters. But "%" will be treated as a special characters, if the URL string * is not encoded, there shouldn't a "%" in the URL string, otherwise the URL is not a valid URL. * If customer needs to create a blob with "%" in it's blob name, use "%25" insead of "%". Just like above 3rd sample. * And following URL strings are invalid: * - "http://account.blob.core.windows.net/con/b%" * - "http://account.blob.core.windows.net/con/b%2" * - "http://account.blob.core.windows.net/con/b%G" * * Another special character is "?", use "%2F" to represent a blob name with "?" in a URL string. * * ### Strategy for containerName, blobName or other specific XXXName parameters in methods such as `containerClient.getBlobClient(blobName)` * * We will apply strategy one, and call encodeURIComponent for these parameters like blobName. Because what customers passes in is a plain name instead of a URL. * * @see https://docs.microsoft.com/en-us/rest/api/storageservices/naming-and-referencing-containers--blobs--and-metadata * @see https://docs.microsoft.com/en-us/rest/api/storageservices/naming-and-referencing-shares--directories--files--and-metadata * * @export * @param {string} url * @returns {string} */ function escapeURLPath(url) { var urlParsed = coreHttp.URLBuilder.parse(url); var path = urlParsed.getPath(); path = path || "/"; path = escape(path); urlParsed.setPath(path); return urlParsed.toString(); } function getProxyUriFromDevConnString(connectionString) { // Development Connection String // https://docs.microsoft.com/en-us/azure/storage/common/storage-configure-connection-string#connect-to-the-emulator-account-using-the-well-known-account-name-and-key var proxyUri = ""; if (connectionString.search("DevelopmentStorageProxyUri=") !== -1) { // CONNECTION_STRING=UseDevelopmentStorage=true;DevelopmentStorageProxyUri=http://myProxyUri var matchCredentials = connectionString.split(";"); for (var _i = 0, matchCredentials_1 = matchCredentials; _i < matchCredentials_1.length; _i++) { var element = matchCredentials_1[_i]; if (element.trim().startsWith("DevelopmentStorageProxyUri=")) { proxyUri = element.trim().match("DevelopmentStorageProxyUri=(.*)")[1]; } } } return proxyUri; } function getValueInConnString(connectionString, argument) { var elements = connectionString.split(";"); for (var _i = 0, elements_1 = elements; _i < elements_1.length; _i++) { var element = elements_1[_i]; if (element.trim().startsWith(argument)) { return element.trim().match(argument + "=(.*)")[1]; } } return ""; } /** * Extracts the parts of an Azure Storage account connection string. * * @export * @param {string} connectionString Connection string. * @returns {ConnectionString} String key value pairs of the storage account's url and credentials. */ function extractConnectionStringParts(connectionString) { var proxyUri = ""; if (connectionString.startsWith("UseDevelopmentStorage=true")) { // Development connection string proxyUri = getProxyUriFromDevConnString(connectionString); connectionString = DevelopmentConnectionString; } // Matching BlobEndpoint in the Account connection string var blobEndpoint = getValueInConnString(connectionString, "BlobEndpoint"); // Slicing off '/' at the end if exists // (The methods that use `extractConnectionStringParts` expect the url to not have `/` at the end) blobEndpoint = blobEndpoint.endsWith("/") ? blobEndpoint.slice(0, -1) : blobEndpoint; if (connectionString.search("DefaultEndpointsProtocol=") !== -1 && connectionString.search("AccountKey=") !== -1) { // Account connection string var defaultEndpointsProtocol = ""; var accountName = ""; var accountKey = Buffer.from("accountKey", "base64"); var endpointSuffix = ""; // Get account name and key accountName = getValueInConnString(connectionString, "AccountName"); accountKey = Buffer.from(getValueInConnString(connectionString, "AccountKey"), "base64"); if (!blobEndpoint) { // BlobEndpoint is not present in the Account connection string // Can be obtained from `${defaultEndpointsProtocol}://${accountName}.blob.${endpointSuffix}` defaultEndpointsProtocol = getValueInConnString(connectionString, "DefaultEndpointsProtocol"); var protocol = defaultEndpointsProtocol.toLowerCase(); if (protocol !== "https" && protocol !== "http") { throw new Error("Invalid DefaultEndpointsProtocol in the provided Connection String. Expecting 'https' or 'http'"); } endpointSuffix = getValueInConnString(connectionString, "EndpointSuffix"); if (!endpointSuffix) { throw new Error("Invalid EndpointSuffix in the provided Connection String"); } blobEndpoint = defaultEndpointsProtocol + "://" + accountName + ".blob." + endpointSuffix; } if (!accountName) { throw new Error("Invalid AccountName in the provided Connection String"); } else if (accountKey.length === 0) { throw new Error("Invalid AccountKey in the provided Connection String"); } return { kind: "AccountConnString", url: blobEndpoint, accountName: accountName, accountKey: accountKey, proxyUri: proxyUri }; } else { // SAS connection string var accountSas = getValueInConnString(connectionString, "SharedAccessSignature"); var accountName = getAccountNameFromUrl(blobEndpoint); if (!blobEndpoint) { throw new Error("Invalid BlobEndpoint in the provided SAS Connection String"); } else if (!accountSas) { throw new Error("Invalid SharedAccessSignature in the provided SAS Connection String"); } else if (!accountName) { throw new Error("Invalid AccountName in the provided SAS Connection String"); } return { kind: "SASConnString", url: blobEndpoint, accountName: accountName, accountSas: accountSas }; } } /** * Internal escape method implmented Strategy Two mentioned in escapeURL() description. * * @param {string} text * @returns {string} */ function escape(text) { return encodeURIComponent(text) .replace(/%2F/g, "/") // Don't escape for "/" .replace(/'/g, "%27") // Escape for "'" .replace(/\+/g, "%20") .replace(/%25/g, "%"); // Revert encoded "%" } /** * Append a string to URL path. Will remove duplicated "/" in front of the string * when URL path ends with a "/". * * @export * @param {string} url Source URL string * @param {string} name String to be appended to URL * @returns {string} An updated URL string */ function appendToURLPath(url, name) { var urlParsed = coreHttp.URLBuilder.parse(url); var path = urlParsed.getPath(); path = path ? (path.endsWith("/") ? "" + path + name : path + "/" + name) : name; urlParsed.setPath(path); return urlParsed.toString(); } /** * Set URL parameter name and value. If name exists in URL parameters, old value * will be replaced by name key. If not provide value, the parameter will be deleted. * * @export * @param {string} url Source URL string * @param {string} name Parameter name * @param {string} [value] Parameter value * @returns {string} An updated URL string */ function setURLParameter(url, name, value) { var urlParsed = coreHttp.URLBuilder.parse(url); urlParsed.setQueryParameter(name, value); return urlParsed.toString(); } /** * Set URL host. * * @export * @param {string} url Source URL string * @param {string} host New host string * @returns An updated URL string */ function setURLHost(url, host) { var urlParsed = coreHttp.URLBuilder.parse(url); urlParsed.setHost(host); return urlParsed.toString(); } /** * Get URL path from an URL string. * * @export * @param {string} url Source URL string * @returns {(string | undefined)} */ function getURLPath(url) { var urlParsed = coreHttp.URLBuilder.parse(url); return urlParsed.getPath(); } /** * Get URL scheme from an URL string. * * @export * @param {string} url Source URL string * @returns {(string | undefined)} */ function getURLScheme(url) { var urlParsed = coreHttp.URLBuilder.parse(url); return urlParsed.getScheme(); } /** * Get URL path and query from an URL string. * * @export * @param {string} url Source URL string * @returns {(string | undefined)} */ function getURLPathAndQuery(url) { var urlParsed = coreHttp.URLBuilder.parse(url); var pathString = urlParsed.getPath(); if (!pathString) { throw new RangeError("Invalid url without valid path."); } var queryString = urlParsed.getQuery() || ""; queryString = queryString.trim(); if (queryString != "") { queryString = queryString.startsWith("?") ? queryString : "?" + queryString; // Ensure query string start with '?' } return "" + pathString + queryString; } /** * Get URL query key value pairs from an URL string. * * @export * @param {string} url * @returns {{[key: string]: string}} */ function getURLQueries(url) { var queryString = coreHttp.URLBuilder.parse(url).getQuery(); if (!queryString) { return {}; } queryString = queryString.trim(); queryString = queryString.startsWith("?") ? queryString.substr(1) : queryString; var querySubStrings = queryString.split("&"); querySubStrings = querySubStrings.filter(function (value) { var indexOfEqual = value.indexOf("="); var lastIndexOfEqual = value.lastIndexOf("="); return (indexOfEqual > 0 && indexOfEqual === lastIndexOfEqual && lastIndexOfEqual < value.length - 1); }); var queries = {}; for (var _i = 0, querySubStrings_1 = querySubStrings; _i < querySubStrings_1.length; _i++) { var querySubString = querySubStrings_1[_i]; var splitResults = querySubString.split("="); var key = splitResults[0]; var value = splitResults[1]; queries[key] = value; } return queries; } /** * Rounds a date off to seconds. * * @export * @param {Date} date * @param {boolean} [withMilliseconds=true] If true, YYYY-MM-DDThh:mm:ss.fffffffZ will be returned; * If false, YYYY-MM-DDThh:mm:ssZ will be returned. * @returns {string} Date string in ISO8061 format, with or without 7 milliseconds component */ function truncatedISO8061Date(date, withMilliseconds) { if (withMilliseconds === void 0) { withMilliseconds = true; } // Date.toISOString() will return like "2018-10-29T06:34:36.139Z" var dateString = date.toISOString(); return withMilliseconds ? dateString.substring(0, dateString.length - 1) + "0000" + "Z" : dateString.substring(0, dateString.length - 5) + "Z"; } /** * Base64 encode. * * @export * @param {string} content * @returns {string} */ function base64encode(content) { return !coreHttp.isNode ? btoa(content) : Buffer.from(content).toString("base64"); } /** * Generate a 64 bytes base64 block ID string. * * @export * @param {number} blockIndex * @returns {string} */ function generateBlockID(blockIDPrefix, blockIndex) { // To generate a 64 bytes base64 string, source string should be 48 var maxSourceStringLength = 48; // A blob can have a maximum of 100,000 uncommitted blocks at any given time var maxBlockIndexLength = 6; var maxAllowedBlockIDPrefixLength = maxSourceStringLength - maxBlockIndexLength; if (blockIDPrefix.length > maxAllowedBlockIDPrefixLength) { blockIDPrefix = blockIDPrefix.slice(0, maxAllowedBlockIDPrefixLength); } var res = blockIDPrefix + padStart(blockIndex.toString(), maxSourceStringLength - blockIDPrefix.length, "0"); return base64encode(res); } /** * Delay specified time interval. * * @export * @param {number} timeInMs * @param {AbortSignalLike} [aborter] * @param {Error} [abortError] */ function delay(timeInMs, aborter, abortError) { return tslib.__awaiter(this, void 0, void 0, function () { return tslib.__generator(this, function (_a) { return [2 /*return*/, new Promise(function (resolve, reject) { var timeout; var abortHandler = function () { if (timeout !== undefined) { clearTimeout(timeout); } reject(abortError); }; var resolveHandler = function () { if (aborter !== undefined) { aborter.removeEventListener("abort", abortHandler); } resolve(); }; timeout = setTimeout(resolveHandler, timeInMs); if (aborter !== undefined) { aborter.addEventListener("abort", abortHandler); } })]; }); }); } /** * String.prototype.padStart() * * @export * @param {string} currentString * @param {number} targetLength * @param {string} [padString=" "] * @returns {string} */ function padStart(currentString, targetLength, padString) { if (padString === void 0) { padString = " "; } if (String.prototype.padStart) { return currentString.padStart(targetLength, padString); } padString = padString || " "; if (currentString.length > targetLength) { return currentString; } else { targetLength = targetLength - currentString.length; if (targetLength > padString.length) { padString += padString.repeat(targetLength / padString.length); } return padString.slice(0, targetLength) + currentString; } } /** * If two strings are equal when compared case insensitive. * * @export * @param {string} str1 * @param {string} str2 * @returns {boolean} */ function iEqual(str1, str2) { return str1.toLocaleLowerCase() === str2.toLocaleLowerCase(); } /** * Extracts account name from the url * @param {string} url url to extract the account name from * @returns {string} with the account name */ function getAccountNameFromUrl(url) { var parsedUrl = coreHttp.URLBuilder.parse(url); var accountName; try { if (parsedUrl.getHost().split(".")[1] === "blob") { // `${defaultEndpointsProtocol}://${accountName}.blob.${endpointSuffix}`; accountName = parsedUrl.getHost().split(".")[0]; } else { // IPv4/IPv6 address hosts... Example - http://192.0.0.10:10001/devstoreaccount1/ // Single word domain without a [dot] in the endpoint... Example - http://localhost:10001/devstoreaccount1/ // .getPath() -> /devstoreaccount1/ accountName = parsedUrl.getPath().split("/")[1]; } if (!accountName) { throw new Error("Provided accountName is invalid."); } return accountName; } catch (error) { throw new Error("Unable to extract accountName with provided information."); } } // Copyright (c) Microsoft Corporation. All rights reserved. /** * StorageBrowserPolicy will handle differences between Node.js and browser runtime, including: * * 1. Browsers cache GET/HEAD requests by adding conditional headers such as 'IF_MODIFIED_SINCE'. * StorageBrowserPolicy is a policy used to add a timestamp query to GET/HEAD request URL * thus avoid the browser cache. * * 2. Remove cookie header for security * * 3. Remove content-length header to avoid browsers warning * * @class StorageBrowserPolicy * @extends {BaseRequestPolicy} */ var StorageBrowserPolicy = /** @class */ (function (_super) { tslib.__extends(StorageBrowserPolicy, _super); /** * Creates an instance of StorageBrowserPolicy. * @param {RequestPolicy} nextPolicy * @param {RequestPolicyOptions} options * @memberof StorageBrowserPolicy */ function StorageBrowserPolicy(nextPolicy, options) { return _super.call(this, nextPolicy, options) || this; } /** * Sends out request. * * @param {WebResource} request * @returns {Promise} * @memberof StorageBrowserPolicy */ StorageBrowserPolicy.prototype.sendRequest = function (request) { return tslib.__awaiter(this, void 0, void 0, function () { return tslib.__generator(this, function (_a) { { return [2 /*return*/, this._nextPolicy.sendRequest(request)]; } }); }); }; return StorageBrowserPolicy; }(coreHttp.BaseRequestPolicy)); // Copyright (c) Microsoft Corporation. All rights reserved. /** * StorageBrowserPolicyFactory is a factory class helping generating StorageBrowserPolicy objects. * * @export * @class StorageBrowserPolicyFactory * @implements {RequestPolicyFactory} */ var StorageBrowserPolicyFactory = /** @class */ (function () { function StorageBrowserPolicyFactory() { } /** * Creates a StorageBrowserPolicyFactory object. * * @param {RequestPolicy} nextPolicy * @param {RequestPolicyOptions} options * @returns {StorageBrowserPolicy} * @memberof StorageBrowserPolicyFactory */ StorageBrowserPolicyFactory.prototype.create = function (nextPolicy, options) { return new StorageBrowserPolicy(nextPolicy, options); }; return StorageBrowserPolicyFactory; }()); // Copyright (c) Microsoft Corporation. All rights reserved. (function (StorageRetryPolicyType) { /** * Exponential retry. Retry time delay grows exponentially. */ StorageRetryPolicyType[StorageRetryPolicyType["EXPONENTIAL"] = 0] = "EXPONENTIAL"; /** * Linear retry. Retry time delay grows linearly. */ StorageRetryPolicyType[StorageRetryPolicyType["FIXED"] = 1] = "FIXED"; })(exports.StorageRetryPolicyType || (exports.StorageRetryPolicyType = {})); // Default values of StorageRetryOptions var DEFAULT_RETRY_OPTIONS = { maxRetryDelayInMs: 120 * 1000, maxTries: 4, retryDelayInMs: 4 * 1000, retryPolicyType: exports.StorageRetryPolicyType.EXPONENTIAL, secondaryHost: "", tryTimeoutInMs: undefined // Use server side default timeout strategy }; var RETRY_ABORT_ERROR = new abortController.AbortError("The operation was aborted."); /** * Retry policy with exponential retry and linear retry implemented. * * @class RetryPolicy * @extends {BaseRequestPolicy} */ var StorageRetryPolicy = /** @class */ (function (_super) { tslib.__extends(StorageRetryPolicy, _super); /** * Creates an instance of RetryPolicy. * * @param {RequestPolicy} nextPolicy * @param {RequestPolicyOptions} options * @param {StorageRetryOptions} [retryOptions=DEFAULT_RETRY_OPTIONS] * @memberof StorageRetryPolicy */ function StorageRetryPolicy(nextPolicy, options, retryOptions) { if (retryOptions === void 0) { retryOptions = DEFAULT_RETRY_OPTIONS; } var _this = _super.call(this, nextPolicy, options) || this; // Initialize retry options _this.retryOptions = { retryPolicyType: retryOptions.retryPolicyType ? retryOptions.retryPolicyType : DEFAULT_RETRY_OPTIONS.retryPolicyType, maxTries: retryOptions.maxTries && retryOptions.maxTries >= 1 ? Math.floor(retryOptions.maxTries) : DEFAULT_RETRY_OPTIONS.maxTries, tryTimeoutInMs: retryOptions.tryTimeoutInMs && retryOptions.tryTimeoutInMs >= 0 ? retryOptions.tryTimeoutInMs : DEFAULT_RETRY_OPTIONS.tryTimeoutInMs, retryDelayInMs: retryOptions.retryDelayInMs && retryOptions.retryDelayInMs >= 0 ? Math.min(retryOptions.retryDelayInMs, retryOptions.maxRetryDelayInMs ? retryOptions.maxRetryDelayInMs : DEFAULT_RETRY_OPTIONS.maxRetryDelayInMs) : DEFAULT_RETRY_OPTIONS.retryDelayInMs, maxRetryDelayInMs: retryOptions.maxRetryDelayInMs && retryOptions.maxRetryDelayInMs >= 0 ? retryOptions.maxRetryDelayInMs : DEFAULT_RETRY_OPTIONS.maxRetryDelayInMs, secondaryHost: retryOptions.secondaryHost ? retryOptions.secondaryHost : DEFAULT_RETRY_OPTIONS.secondaryHost }; return _this; } /** * Sends request. * * @param {WebResource} request * @returns {Promise} * @memberof StorageRetryPolicy */ StorageRetryPolicy.prototype.sendRequest = function (request) { return tslib.__awaiter(this, void 0, void 0, function () { return tslib.__generator(this, function (_a) { return [2 /*return*/, this.attemptSendRequest(request, false, 1)]; }); }); }; /** * Decide and perform next retry. Won't mutate request parameter. * * @protected * @param {WebResource} request * @param {boolean} secondaryHas404 If attempt was against the secondary & it returned a StatusNotFound (404), then * the resource was not found. This may be due to replication delay. So, in this * case, we'll never try the secondary again for this operation. * @param {number} attempt How many retries has been attempted to performed, starting from 1, which includes * the attempt will be performed by this method call. * @returns {Promise} * @memberof StorageRetryPolicy */ StorageRetryPolicy.prototype.attemptSendRequest = function (request, secondaryHas404, attempt) { return tslib.__awaiter(this, void 0, void 0, function () { var newRequest, isPrimaryRetry, response, err_1; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: newRequest = request.clone(); isPrimaryRetry = secondaryHas404 || !this.retryOptions.secondaryHost || !(request.method === "GET" || request.method === "HEAD" || request.method === "OPTIONS") || attempt % 2 === 1; if (!isPrimaryRetry) { newRequest.url = setURLHost(newRequest.url, this.retryOptions.secondaryHost); } // Set the server-side timeout query parameter "timeout=[seconds]" if (this.retryOptions.tryTimeoutInMs) { newRequest.url = setURLParameter(newRequest.url, URLConstants.Parameters.TIMEOUT, Math.floor(this.retryOptions.tryTimeoutInMs / 1000).toString()); } _a.label = 1; case 1: _a.trys.push([1, 3, , 4]); logger.info("RetryPolicy: =====> Try=" + attempt + " " + (isPrimaryRetry ? "Primary" : "Secondary")); return [4 /*yield*/, this._nextPolicy.sendRequest(newRequest)]; case 2: response = _a.sent(); if (!this.shouldRetry(isPrimaryRetry, attempt, response)) { return [2 /*return*/, response]; } secondaryHas404 = secondaryHas404 || (!isPrimaryRetry && response.status === 404); return [3 /*break*/, 4]; case 3: err_1 = _a.sent(); logger.error("RetryPolicy: Caught error, message: " + err_1.message + ", code: " + err_1.code); if (!this.shouldRetry(isPrimaryRetry, attempt, response, err_1)) { throw err_1; } return [3 /*break*/, 4]; case 4: return [4 /*yield*/, this.delay(isPrimaryRetry, attempt, request.abortSignal)]; case 5: _a.sent(); return [4 /*yield*/, this.attemptSendRequest(request, secondaryHas404, ++attempt)]; case 6: return [2 /*return*/, _a.sent()]; } }); }); }; /** * Decide whether to retry according to last HTTP response and retry counters. * * @protected * @param {boolean} isPrimaryRetry * @param {number} attempt * @param {HttpOperationResponse} [response] * @param {RestError} [err] * @returns {boolean} * @memberof StorageRetryPolicy */ StorageRetryPolicy.prototype.shouldRetry = function (isPrimaryRetry, attempt, response, err) { if (attempt >= this.retryOptions.maxTries) { logger.info("RetryPolicy: Attempt(s) " + attempt + " >= maxTries " + this.retryOptions .maxTries + ", no further try."); return false; } // Handle network failures, you may need to customize the list when you implement // your own http client var retriableErrors = [ "ETIMEDOUT", "ESOCKETTIMEDOUT", "ECONNREFUSED", "ECONNRESET", "ENOENT", "ENOTFOUND", "TIMEOUT", "EPIPE", "REQUEST_SEND_ERROR" // For default xhr based http client provided in ms-rest-js ]; if (err) { for (var _i = 0, retriableErrors_1 = retriableErrors; _i < retriableErrors_1.length; _i++) { var retriableError = retriableErrors_1[_i]; if (err.name.toUpperCase().includes(retriableError) || err.message.toUpperCase().includes(retriableError) || (err.code && err.code .toString() .toUpperCase() .includes(retriableError))) { logger.info("RetryPolicy: Network error " + retriableError + " found, will retry."); return true; } } } // If attempt was against the secondary & it returned a StatusNotFound (404), then // the resource was not found. This may be due to replication delay. So, in this // case, we'll never try the secondary again for this operation. if (response || err) { var statusCode = response ? response.status : err ? err.statusCode : 0; if (!isPrimaryRetry && statusCode === 404) { logger.info("RetryPolicy: Secondary access with 404, will retry."); return true; } // Server internal error or server timeout if (statusCode === 503 || statusCode === 500) { logger.info("RetryPolicy: Will retry for status code " + statusCode + "."); return true; } } return false; }; /** * Delay a calculated time between retries. * * @private * @param {boolean} isPrimaryRetry * @param {number} attempt * @param {AbortSignalLike} [abortSignal] * @memberof StorageRetryPolicy */ StorageRetryPolicy.prototype.delay = function (isPrimaryRetry, attempt, abortSignal) { return tslib.__awaiter(this, void 0, void 0, function () { var delayTimeInMs; return tslib.__generator(this, function (_a) { delayTimeInMs = 0; if (isPrimaryRetry) { switch (this.retryOptions.retryPolicyType) { case exports.StorageRetryPolicyType.EXPONENTIAL: delayTimeInMs = Math.min((Math.pow(2, attempt - 1) - 1) * this.retryOptions.retryDelayInMs, this.retryOptions.maxRetryDelayInMs); break; case exports.StorageRetryPolicyType.FIXED: delayTimeInMs = this.retryOptions.retryDelayInMs; break; } } else { delayTimeInMs = Math.random() * 1000; } logger.info("RetryPolicy: Delay for " + delayTimeInMs + "ms"); return [2 /*return*/, delay(delayTimeInMs, abortSignal, RETRY_ABORT_ERROR)]; }); }); }; return StorageRetryPolicy; }(coreHttp.BaseRequestPolicy)); // Copyright (c) Microsoft Corporation. All rights reserved. /** * StorageRetryPolicyFactory is a factory class helping generating {@link StorageRetryPolicy} objects. * * @export * @class StorageRetryPolicyFactory * @implements {RequestPolicyFactory} */ var StorageRetryPolicyFactory = /** @class */ (function () { /** * Creates an instance of StorageRetryPolicyFactory. * @param {StorageRetryOptions} [retryOptions] * @memberof StorageRetryPolicyFactory */ function StorageRetryPolicyFactory(retryOptions) { this.retryOptions = retryOptions; } /** * Creates a StorageRetryPolicy object. * * @param {RequestPolicy} nextPolicy * @param {RequestPolicyOptions} options * @returns {StorageRetryPolicy} * @memberof StorageRetryPolicyFactory */ StorageRetryPolicyFactory.prototype.create = function (nextPolicy, options) { return new StorageRetryPolicy(nextPolicy, options, this.retryOptions); }; return StorageRetryPolicyFactory; }()); // Copyright (c) Microsoft Corporation. All rights reserved. /** * TelemetryPolicy is a policy used to tag user-agent header for every requests. * * @class TelemetryPolicy * @extends {BaseRequestPolicy} */ var TelemetryPolicy = /** @class */ (function (_super) { tslib.__extends(TelemetryPolicy, _super); /** * Creates an instance of TelemetryPolicy. * @param {RequestPolicy} nextPolicy * @param {RequestPolicyOptions} options * @param {string} telemetry * @memberof TelemetryPolicy */ function TelemetryPolicy(nextPolicy, options, telemetry) { var _this = _super.call(this, nextPolicy, options) || this; _this.telemetry = telemetry; return _this; } /** * Sends out request. * * @param {WebResource} request * @returns {Promise} * @memberof TelemetryPolicy */ TelemetryPolicy.prototype.sendRequest = function (request) { return tslib.__awaiter(this, void 0, void 0, function () { return tslib.__generator(this, function (_a) { { if (!request.headers) { request.headers = new coreHttp.HttpHeaders(); } if (!request.headers.get(HeaderConstants.USER_AGENT)) { request.headers.set(HeaderConstants.USER_AGENT, this.telemetry); } } return [2 /*return*/, this._nextPolicy.sendRequest(request)]; }); }); }; return TelemetryPolicy; }(coreHttp.BaseRequestPolicy)); // Copyright (c) Microsoft Corporation. All rights reserved. /** * TelemetryPolicyFactory is a factory class helping generating {@link TelemetryPolicy} objects. * * @export * @class TelemetryPolicyFactory * @implements {RequestPolicyFactory} */ var TelemetryPolicyFactory = /** @class */ (function () { /** * Creates an instance of TelemetryPolicyFactory. * @param {UserAgentOptions} [telemetry] * @memberof TelemetryPolicyFactory */ function TelemetryPolicyFactory(telemetry) { var userAgentInfo = []; { if (telemetry) { var telemetryString = (telemetry.userAgentPrefix || "").replace(" ", ""); if (telemetryString.length > 0 && userAgentInfo.indexOf(telemetryString) === -1) { userAgentInfo.push(telemetryString); } } // e.g. azsdk-js-storageblob/10.0.0 var libInfo = "azsdk-js-storageblob/" + SDK_VERSION; if (userAgentInfo.indexOf(libInfo) === -1) { userAgentInfo.push(libInfo); } // e.g. (NODE-VERSION 4.9.1; Windows_NT 10.0.16299) var runtimeInfo = "(NODE-VERSION " + process.version + "; " + os.type() + " " + os.release() + ")"; if (userAgentInfo.indexOf(runtimeInfo) === -1) { userAgentInfo.push(runtimeInfo); } } this.telemetryString = userAgentInfo.join(" "); } /** * Creates a TelemetryPolicy object. * * @param {RequestPolicy} nextPolicy * @param {RequestPolicyOptions} options * @returns {TelemetryPolicy} * @memberof TelemetryPolicyFactory */ TelemetryPolicyFactory.prototype.create = function (nextPolicy, options) { return new TelemetryPolicy(nextPolicy, options, this.telemetryString); }; return TelemetryPolicyFactory; }()); // Copyright (c) Microsoft Corporation. var _defaultHttpClient = new coreHttp.DefaultHttpClient(); function getCachedDefaultHttpClient() { return _defaultHttpClient; } // Copyright (c) Microsoft Corporation. All rights reserved. /** * A Pipeline class containing HTTP request policies. * You can create a default Pipeline by calling {@link newPipeline}. * Or you can create a Pipeline with your own policies by the constructor of Pipeline. * * Refer to {@link newPipeline} and provided policies before implementing your * customized Pipeline. * * @export * @class Pipeline */ var Pipeline = /** @class */ (function () { /** * Creates an instance of Pipeline. Customize HTTPClient by implementing IHttpClient interface. * * @param {RequestPolicyFactory[]} factories * @param {PipelineOptions} [options={}] * @memberof Pipeline */ function Pipeline(factories, options) { if (options === void 0) { options = {}; } this.factories = factories; // when options.httpClient is not specified, passing in a DefaultHttpClient instance to // avoid each client creating its own http client. this.options = tslib.__assign(tslib.__assign({}, options), { httpClient: options.httpClient || getCachedDefaultHttpClient() }); } /** * Transfer Pipeline object to ServiceClientOptions object which is required by * ServiceClient constructor. * * @returns {ServiceClientOptions} The ServiceClientOptions object from this Pipeline. * @memberof Pipeline */ Pipeline.prototype.toServiceClientOptions = function () { return { httpClient: this.options.httpClient, requestPolicyFactories: this.factories }; }; return Pipeline; }()); /** * Creates a new Pipeline object with Credential provided. * * @export * @param {StorageSharedKeyCredential | AnonymousCredential | TokenCredential} credential Such as AnonymousCredential, StorageSharedKeyCredential or any credential from the @azure/identity package to authenticate requests to the service. You can also provide an object that implements the TokenCredential interface. If not specified, AnonymousCredential is used. * @param {StoragePipelineOptions} [pipelineOptions] Optional. Options. * @returns {Pipeline} A new Pipeline object. */ function newPipeline(credential, pipelineOptions) { // Order is important. Closer to the API at the top & closer to the network at the bottom. // The credential's policy factory must appear close to the wire so it can sign any // changes made by other factories (like UniqueRequestIDPolicyFactory) if (pipelineOptions === void 0) { pipelineOptions = {}; } var telemetryPolicy = new TelemetryPolicyFactory(pipelineOptions.userAgentOptions); var factories = [ coreHttp.tracingPolicy({ userAgent: telemetryPolicy.telemetryString }), coreHttp.keepAlivePolicy(pipelineOptions.keepAliveOptions), telemetryPolicy, coreHttp.generateClientRequestIdPolicy(), new StorageBrowserPolicyFactory(), coreHttp.deserializationPolicy(), new StorageRetryPolicyFactory(pipelineOptions.retryOptions), coreHttp.logPolicy({ logger: logger.info, allowedHeaderNames: StorageBlobLoggingAllowedHeaderNames, allowedQueryParameters: StorageBlobLoggingAllowedQueryParameters }) ]; { // policies only avaiable in Node.js runtime, not in browsers factories.push(coreHttp.proxyPolicy(pipelineOptions.proxyOptions)); factories.push(coreHttp.disableResponseDecompressionPolicy()); } factories.push(coreHttp.isTokenCredential(credential) ? coreHttp.bearerTokenAuthenticationPolicy(credential, StorageOAuthScopes) : credential); return new Pipeline(factories, pipelineOptions); } // Copyright (c) Microsoft Corporation. All rights reserved. var ABORT_ERROR = new abortController.AbortError("The operation was aborted."); /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * * A Node.js ReadableStream will internally retry when internal ReadableStream unexpected ends. * * @class RetriableReadableStream * @extends {Readable} */ var RetriableReadableStream = /** @class */ (function (_super) { tslib.__extends(RetriableReadableStream, _super); /** * Creates an instance of RetriableReadableStream. * * @param {NodeJS.ReadableStream} source The current ReadableStream returned from getter * @param {ReadableStreamGetter} getter A method calling downloading request returning * a new ReadableStream from specified offset * @param {number} offset Offset position in original data source to read * @param {number} count How much data in original data source to read * @param {RetriableReadableStreamOptions} [options={}] * @memberof RetriableReadableStream */ function RetriableReadableStream(source, getter, offset, count, options) { if (options === void 0) { options = {}; } var _this = _super.call(this) || this; _this.retries = 0; _this.abortHandler = function () { _this.source.pause(); _this.emit("error", ABORT_ERROR); }; _this.aborter = options.abortSignal || abortController.AbortSignal.none; _this.getter = getter; _this.source = source; _this.start = offset; _this.offset = offset; _this.end = offset + count - 1; _this.maxRetryRequests = options.maxRetryRequests && options.maxRetryRequests >= 0 ? options.maxRetryRequests : 0; _this.onProgress = options.onProgress; _this.options = options; _this.aborter.addEventListener("abort", _this.abortHandler); _this.setSourceDataHandler(); _this.setSourceEndHandler(); _this.setSourceErrorHandler(); return _this; } RetriableReadableStream.prototype._read = function () { if (!this.aborter.aborted) { this.source.resume(); } }; RetriableReadableStream.prototype.setSourceDataHandler = function () { var _this = this; this.source.on("data", function (data) { if (_this.options.doInjectErrorOnce) { _this.options.doInjectErrorOnce = undefined; _this.source.pause(); _this.source.removeAllListeners("data"); _this.source.emit("end"); return; } // console.log( // `Offset: ${this.offset}, Received ${data.length} from internal stream` // ); _this.offset += data.length; if (_this.onProgress) { _this.onProgress({ loadedBytes: _this.offset - _this.start }); } if (!_this.push(data)) { _this.source.pause(); } }); }; RetriableReadableStream.prototype.setSourceEndHandler = function () { var _this = this; this.source.on("end", function () { // console.log( // `Source stream emits end, offset: ${ // this.offset // }, dest end : ${this.end}` // ); if (_this.offset - 1 === _this.end) { _this.aborter.removeEventListener("abort", _this.abortHandler); _this.push(null); } else if (_this.offset <= _this.end) { // console.log( // `retries: ${this.retries}, max retries: ${this.maxRetries}` // ); if (_this.retries < _this.maxRetryRequests) { _this.retries += 1; _this.getter(_this.offset) .then(function (newSource) { _this.source = newSource; _this.setSourceDataHandler(); _this.setSourceEndHandler(); _this.setSourceErrorHandler(); }) .catch(function (error) { _this.emit("error", error); }); } else { _this.emit("error", new Error( // tslint:disable-next-line:max-line-length "Data corruption failure: received less data than required and reached maxRetires limitation. Received data offset: " + (_this .offset - 1) + ", data needed offset: " + _this.end + ", retries: " + _this.retries + ", max retries: " + _this.maxRetryRequests)); } } else { _this.emit("error", new Error("Data corruption failure: Received more data than original request, data needed offset is " + _this.end + ", received offset: " + (_this.offset - 1))); } }); }; RetriableReadableStream.prototype.setSourceErrorHandler = function () { var _this = this; this.source.on("error", function (error) { _this.emit("error", error); }); }; return RetriableReadableStream; }(stream.Readable)); // Copyright (c) Microsoft Corporation. All rights reserved. /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * * BlobDownloadResponse implements BlobDownloadResponseModel interface, and in Node.js runtime it will * automatically retry when internal read stream unexpected ends. (This kind of unexpected ends cannot * trigger retries defined in pipeline retry policy.) * * The {@link readableStreamBody} stream will retry underlayer, you can just use it as a normal Node.js * Readable stream. * * @export * @class BlobDownloadResponse * @implements {BlobDownloadResponseModel} */ var BlobDownloadResponse = /** @class */ (function () { /** * Creates an instance of BlobDownloadResponse. * * @param {BlobDownloadResponseModel} originalResponse * @param {ReadableStreamGetter} getter * @param {number} offset * @param {number} count * @param {RetriableReadableStreamOptions} [options={}] * @memberof BlobDownloadResponse */ function BlobDownloadResponse(originalResponse, getter, offset, count, options) { if (options === void 0) { options = {}; } this.originalResponse = originalResponse; this.blobDownloadStream = new RetriableReadableStream(this.originalResponse.readableStreamBody, getter, offset, count, options); } Object.defineProperty(BlobDownloadResponse.prototype, "acceptRanges", { /** * Indicates that the service supports * requests for partial file content. * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.acceptRanges; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "cacheControl", { /** * Returns if it was previously specified * for the file. * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.cacheControl; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "contentDisposition", { /** * Returns the value that was specified * for the 'x-ms-content-disposition' header and specifies how to process the * response. * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.contentDisposition; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "contentEncoding", { /** * Returns the value that was specified * for the Content-Encoding request header. * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.contentEncoding; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "contentLanguage", { /** * Returns the value that was specified * for the Content-Language request header. * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.contentLanguage; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "blobSequenceNumber", { /** * The current sequence number for a * page blob. This header is not returned for block blobs or append blobs. * * @readonly * @type {(number | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.blobSequenceNumber; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "blobType", { /** * The blob's type. Possible values include: * 'BlockBlob', 'PageBlob', 'AppendBlob'. * * @readonly * @type {(BlobType | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.blobType; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "contentLength", { /** * The number of bytes present in the * response body. * * @readonly * @type {(number | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.contentLength; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "contentMD5", { /** * If the file has an MD5 hash and the * request is to read the full file, this response header is returned so that * the client can check for message content integrity. If the request is to * read a specified range and the 'x-ms-range-get-content-md5' is set to * true, then the request returns an MD5 hash for the range, as long as the * range size is less than or equal to 4 MB. If neither of these sets of * conditions is true, then no value is returned for the 'Content-MD5' * header. * * @readonly * @type {(Uint8Array | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.contentMD5; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "contentRange", { /** * Indicates the range of bytes returned if * the client requested a subset of the file by setting the Range request * header. * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.contentRange; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "contentType", { /** * The content type specified for the file. * The default content type is 'application/octet-stream' * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.contentType; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "copyCompletedOn", { /** * Conclusion time of the last attempted * Copy File operation where this file was the destination file. This value * can specify the time of a completed, aborted, or failed copy attempt. * * @readonly * @type {(Date | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.copyCompletedOn; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "copyId", { /** * String identifier for the last attempted Copy * File operation where this file was the destination file. * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.copyId; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "copyProgress", { /** * Contains the number of bytes copied and * the total bytes in the source in the last attempted Copy File operation * where this file was the destination file. Can show between 0 and * Content-Length bytes copied. * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.copyProgress; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "copySource", { /** * URL up to 2KB in length that specifies the * source file used in the last attempted Copy File operation where this file * was the destination file. * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.copySource; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "copyStatus", { /** * State of the copy operation * identified by 'x-ms-copy-id'. Possible values include: 'pending', * 'success', 'aborted', 'failed' * * @readonly * @type {(CopyStatusType | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.copyStatus; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "copyStatusDescription", { /** * Only appears when * x-ms-copy-status is failed or pending. Describes cause of fatal or * non-fatal copy operation failure. * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.copyStatusDescription; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "leaseDuration", { /** * When a blob is leased, * specifies whether the lease is of infinite or fixed duration. Possible * values include: 'infinite', 'fixed'. * * @readonly * @type {(LeaseDurationType | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.leaseDuration; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "leaseState", { /** * Lease state of the blob. Possible * values include: 'available', 'leased', 'expired', 'breaking', 'broken'. * * @readonly * @type {(LeaseStateType | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.leaseState; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "leaseStatus", { /** * The current lease status of the * blob. Possible values include: 'locked', 'unlocked'. * * @readonly * @type {(LeaseStatusType | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.leaseStatus; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "date", { /** * A UTC date/time value generated by the service that * indicates the time at which the response was initiated. * * @readonly * @type {(Date | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.date; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "blobCommittedBlockCount", { /** * The number of committed blocks * present in the blob. This header is returned only for append blobs. * * @readonly * @type {(number | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.blobCommittedBlockCount; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "etag", { /** * The ETag contains a value that you can use to * perform operations conditionally, in quotes. * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.etag; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "errorCode", { /** * The error code. * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.errorCode; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "isServerEncrypted", { /** * The value of this header is set to * true if the file data and application metadata are completely encrypted * using the specified algorithm. Otherwise, the value is set to false (when * the file is unencrypted, or if only parts of the file/application metadata * are encrypted). * * @readonly * @type {(boolean | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.isServerEncrypted; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "blobContentMD5", { /** * If the blob has a MD5 hash, and if * request contains range header (Range or x-ms-range), this response header * is returned with the value of the whole blob's MD5 value. This value may * or may not be equal to the value returned in Content-MD5 header, with the * latter calculated from the requested range. * * @readonly * @type {(Uint8Array | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.blobContentMD5; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "lastModified", { /** * Returns the date and time the file was last * modified. Any operation that modifies the file or its properties updates * the last modified time. * * @readonly * @type {(Date | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.lastModified; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "metadata", { /** * A name-value pair * to associate with a file storage object. * * @readonly * @type {(Metadata | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.metadata; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "requestId", { /** * This header uniquely identifies the request * that was made and can be used for troubleshooting the request. * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.requestId; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "clientRequestId", { /** * If a client request id header is sent in the request, this header will be present in the * response with the same value. * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.clientRequestId; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "version", { /** * Indicates the version of the File service used * to execute the request. * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.version; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "encryptionKeySha256", { /** * The SHA-256 hash of the encryption key used to encrypt the blob. This value is only returned * when the blob was encrypted with a customer-provided key. * * @readonly * @type {(string | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.encryptionKeySha256; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "contentCrc64", { /** * If the request is to read a specified range and the x-ms-range-get-content-crc64 is set to * true, then the request returns a crc64 for the range, as long as the range size is less than * or equal to 4 MB. If both x-ms-range-get-content-crc64 & x-ms-range-get-content-md5 is * specified in the same request, it will fail with 400(Bad Request) * * @type {(Uint8Array | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.contentCrc64; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "contentAsBlob", { /** * The response body as a browser Blob. * Always undefined in node.js. * * @readonly * @type {(Promise | undefined)} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse.blobBody; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "readableStreamBody", { /** * The response body as a node.js Readable stream. * Always undefined in the browser. * * It will automatically retry when internal read stream unexpected ends. * * @readonly * @type {(NodeJS.ReadableStream | undefined)} * @memberof BlobDownloadResponse */ get: function () { return coreHttp.isNode ? this.blobDownloadStream : undefined; }, enumerable: true, configurable: true }); Object.defineProperty(BlobDownloadResponse.prototype, "_response", { /** * The HTTP response. * * @type {HttpResponse} * @memberof BlobDownloadResponse */ get: function () { return this.originalResponse._response; }, enumerable: true, configurable: true }); return BlobDownloadResponse; }()); // Copyright (c) Microsoft Corporation. All rights reserved. // Licensed under the MIT License. /** * Generate a range string. For example: * * "bytes=255-" or "bytes=0-511" * * @export * @param {Range} iRange * @returns {string} */ function rangeToString(iRange) { if (iRange.offset < 0) { throw new RangeError("Range.offset cannot be smaller than 0."); } if (iRange.count && iRange.count <= 0) { throw new RangeError("Range.count must be larger than 0. Leave it undefined if you want a range from offset to the end."); } return iRange.count ? "bytes=" + iRange.offset + "-" + (iRange.offset + iRange.count - 1) : "bytes=" + iRange.offset + "-"; } // Copyright (c) Microsoft Corporation. All rights reserved. (function (BlockBlobTier) { /** * Optmized for storing data that is accessed frequently. */ BlockBlobTier["Hot"] = "Hot"; /** * Optimized for storing data that is infrequently accessed and stored for at least 30 days. */ BlockBlobTier["Cool"] = "Cool"; /** * Optimized for storing data that is rarely accessed and stored for at least 180 days * with flexible latency requirements (on the order of hours). */ BlockBlobTier["Archive"] = "Archive"; })(exports.BlockBlobTier || (exports.BlockBlobTier = {})); (function (PremiumPageBlobTier) { /** * P4 Tier. */ PremiumPageBlobTier["P4"] = "P4"; /** * P6 Tier. */ PremiumPageBlobTier["P6"] = "P6"; /** * P10 Tier. */ PremiumPageBlobTier["P10"] = "P10"; /** * P15 Tier. */ PremiumPageBlobTier["P15"] = "P15"; /** * P20 Tier. */ PremiumPageBlobTier["P20"] = "P20"; /** * P30 Tier. */ PremiumPageBlobTier["P30"] = "P30"; /** * P40 Tier. */ PremiumPageBlobTier["P40"] = "P40"; /** * P50 Tier. */ PremiumPageBlobTier["P50"] = "P50"; /** * P60 Tier. */ PremiumPageBlobTier["P60"] = "P60"; /** * P70 Tier. */ PremiumPageBlobTier["P70"] = "P70"; /** * P80 Tier. */ PremiumPageBlobTier["P80"] = "P80"; })(exports.PremiumPageBlobTier || (exports.PremiumPageBlobTier = {})); function toAccessTier(tier) { if (tier == undefined) { return undefined; } return tier; // No more check if string is a valid AccessTier, and left this to underlay logic to decide(service). } function ensureCpkIfSpecified(cpk, isHttps) { if (cpk && !isHttps) { throw new RangeError("Customer-provided encryption key must be used over HTTPS."); } if (cpk && !cpk.encryptionAlgorithm) { cpk.encryptionAlgorithm = EncryptionAlgorithmAES25; } } // Copyright (c) Microsoft Corporation. All rights reserved. /** * Reads a readable stream into buffer. Fill the buffer from offset to end. * * @export * @param {NodeJS.ReadableStream} stream A Node.js Readable stream * @param {Buffer} buffer Buffer to be filled, length must >= offset * @param {number} offset From which position in the buffer to be filled, inclusive * @param {number} end To which position in the buffer to be filled, exclusive * @param {string} [encoding] Encoding of the Readable stream * @returns {Promise} */ function streamToBuffer(stream, buffer, offset, end, encoding) { return tslib.__awaiter(this, void 0, void 0, function () { var pos, count; return tslib.__generator(this, function (_a) { pos = 0; count = end - offset; return [2 /*return*/, new Promise(function (resolve, reject) { stream.on("readable", function () { if (pos >= count) { resolve(); return; } var chunk = stream.read(); if (!chunk) { return; } if (typeof chunk === "string") { chunk = Buffer.from(chunk, encoding); } // How much data needed in this chunk var chunkLength = pos + chunk.length > count ? count - pos : chunk.length; buffer.fill(chunk.slice(0, chunkLength), offset + pos, offset + pos + chunkLength); pos += chunkLength; }); stream.on("end", function () { if (pos < count) { reject(new Error("Stream drains before getting enough data needed. Data read: " + pos + ", data need: " + count)); } resolve(); }); stream.on("error", reject); })]; }); }); } /** * Reads a readable stream into buffer entirely. * * @export * @param {NodeJS.ReadableStream} stream A Node.js Readable stream * @param {Buffer} buffer Buffer to be filled, length must >= offset * @param {string} [encoding] Encoding of the Readable stream * @returns {Promise} with the count of bytes read. * @throws {RangeError} If buffer size is not big enough. */ function streamToBuffer2(stream, buffer, encoding) { return tslib.__awaiter(this, void 0, void 0, function () { var pos, bufferSize; return tslib.__generator(this, function (_a) { pos = 0; bufferSize = buffer.length; return [2 /*return*/, new Promise(function (resolve, reject) { stream.on("readable", function () { var chunk = stream.read(); if (!chunk) { return; } if (typeof chunk === "string") { chunk = Buffer.from(chunk, encoding); } if (pos + chunk.length > bufferSize) { reject(new Error("Stream exceeds buffer size. Buffer size: " + bufferSize)); return; } buffer.fill(chunk, pos, pos + chunk.length); pos += chunk.length; }); stream.on("end", function () { resolve(pos); }); stream.on("error", reject); })]; }); }); } /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * * Writes the content of a readstream to a local file. Returns a Promise which is completed after the file handle is closed. * * @export * @param {NodeJS.ReadableStream} rs The read stream. * @param {string} file Destination file path. * @returns {Promise} */ function readStreamToLocalFile(rs, file) { return tslib.__awaiter(this, void 0, void 0, function () { return tslib.__generator(this, function (_a) { return [2 /*return*/, new Promise(function (resolve, reject) { var ws = fs.createWriteStream(file); rs.on("error", function (err) { reject(err); }); ws.on("error", function (err) { reject(err); }); ws.on("close", resolve); rs.pipe(ws); })]; }); }); } /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * * Promisified version of fs.stat(). */ var fsStat = util.promisify(fs.stat); // Copyright (c) Microsoft Corporation. All rights reserved. /** * Credential policy used to sign HTTP(S) requests before sending. This is an * abstract class. * * @export * @abstract * @class CredentialPolicy * @extends {BaseRequestPolicy} */ var CredentialPolicy = /** @class */ (function (_super) { tslib.__extends(CredentialPolicy, _super); function CredentialPolicy() { return _super !== null && _super.apply(this, arguments) || this; } /** * Sends out request. * * @param {WebResource} request * @returns {Promise} * @memberof CredentialPolicy */ CredentialPolicy.prototype.sendRequest = function (request) { return this._nextPolicy.sendRequest(this.signRequest(request)); }; /** * Child classes must implement this method with request signing. This method * will be executed in {@link sendRequest}. * * @protected * @abstract * @param {WebResource} request * @returns {WebResource} * @memberof CredentialPolicy */ CredentialPolicy.prototype.signRequest = function (request) { // Child classes must override this method with request signing. This method // will be executed in sendRequest(). return request; }; return CredentialPolicy; }(coreHttp.BaseRequestPolicy)); // Copyright (c) Microsoft Corporation. All rights reserved. /** * StorageSharedKeyCredentialPolicy is a policy used to sign HTTP request with a shared key. * * @export * @class StorageSharedKeyCredentialPolicy * @extends {CredentialPolicy} */ var StorageSharedKeyCredentialPolicy = /** @class */ (function (_super) { tslib.__extends(StorageSharedKeyCredentialPolicy, _super); /** * Creates an instance of StorageSharedKeyCredentialPolicy. * @param {RequestPolicy} nextPolicy * @param {RequestPolicyOptions} options * @param {StorageSharedKeyCredential} factory * @memberof StorageSharedKeyCredentialPolicy */ function StorageSharedKeyCredentialPolicy(nextPolicy, options, factory) { var _this = _super.call(this, nextPolicy, options) || this; _this.factory = factory; return _this; } /** * Signs request. * * @protected * @param {WebResource} request * @returns {WebResource} * @memberof StorageSharedKeyCredentialPolicy */ StorageSharedKeyCredentialPolicy.prototype.signRequest = function (request) { request.headers.set(HeaderConstants.X_MS_DATE, new Date().toUTCString()); if (request.body && typeof request.body === "string" && request.body.length > 0) { request.headers.set(HeaderConstants.CONTENT_LENGTH, Buffer.byteLength(request.body)); } var stringToSign = [ request.method.toUpperCase(), this.getHeaderValueToSign(request, HeaderConstants.CONTENT_LANGUAGE), this.getHeaderValueToSign(request, HeaderConstants.CONTENT_ENCODING), this.getHeaderValueToSign(request, HeaderConstants.CONTENT_LENGTH), this.getHeaderValueToSign(request, HeaderConstants.CONTENT_MD5), this.getHeaderValueToSign(request, HeaderConstants.CONTENT_TYPE), this.getHeaderValueToSign(request, HeaderConstants.DATE), this.getHeaderValueToSign(request, HeaderConstants.IF_MODIFIED_SINCE), this.getHeaderValueToSign(request, HeaderConstants.IF_MATCH), this.getHeaderValueToSign(request, HeaderConstants.IF_NONE_MATCH), this.getHeaderValueToSign(request, HeaderConstants.IF_UNMODIFIED_SINCE), this.getHeaderValueToSign(request, HeaderConstants.RANGE) ].join("\n") + "\n" + this.getCanonicalizedHeadersString(request) + this.getCanonicalizedResourceString(request); var signature = this.factory.computeHMACSHA256(stringToSign); request.headers.set(HeaderConstants.AUTHORIZATION, "SharedKey " + this.factory.accountName + ":" + signature); // Workaround for https://github.com/axios/axios/issues/2107 // We should always keep the 'content-length' header once the issue is solved // For a better explanation about this workaround, look here: https://github.com/Azure/azure-sdk-for-js/pull/3273 if (typeof request.body !== "function" && !(request.body && request.onUploadProgress)) { request.headers.remove(HeaderConstants.CONTENT_LENGTH); } // console.log(`[URL]:${request.url}`); // console.log(`[HEADERS]:${request.headers.toString()}`); // console.log(`[STRING TO SIGN]:${JSON.stringify(stringToSign)}`); // console.log(`[KEY]: ${request.headers.get(HeaderConstants.AUTHORIZATION)}`); return request; }; /** * Retrieve header value according to shared key sign rules. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/authenticate-with-shared-key * * @private * @param {WebResource} request * @param {string} headerName * @returns {string} * @memberof StorageSharedKeyCredentialPolicy */ StorageSharedKeyCredentialPolicy.prototype.getHeaderValueToSign = function (request, headerName) { var value = request.headers.get(headerName); if (!value) { return ""; } // When using version 2015-02-21 or later, if Content-Length is zero, then // set the Content-Length part of the StringToSign to an empty string. // https://docs.microsoft.com/en-us/rest/api/storageservices/authenticate-with-shared-key if (headerName === HeaderConstants.CONTENT_LENGTH && value === "0") { return ""; } return value; }; /** * To construct the CanonicalizedHeaders portion of the signature string, follow these steps: * 1. Retrieve all headers for the resource that begin with x-ms-, including the x-ms-date header. * 2. Convert each HTTP header name to lowercase. * 3. Sort the headers lexicographically by header name, in ascending order. * Each header may appear only once in the string. * 4. Replace any linear whitespace in the header value with a single space. * 5. Trim any whitespace around the colon in the header. * 6. Finally, append a new-line character to each canonicalized header in the resulting list. * Construct the CanonicalizedHeaders string by concatenating all headers in this list into a single string. * * @private * @param {WebResource} request * @returns {string} * @memberof StorageSharedKeyCredentialPolicy */ StorageSharedKeyCredentialPolicy.prototype.getCanonicalizedHeadersString = function (request) { var headersArray = request.headers.headersArray().filter(function (value) { return value.name.toLowerCase().startsWith(HeaderConstants.PREFIX_FOR_STORAGE); }); headersArray.sort(function (a, b) { return a.name.toLowerCase().localeCompare(b.name.toLowerCase()); }); // Remove duplicate headers headersArray = headersArray.filter(function (value, index, array) { if (index > 0 && value.name.toLowerCase() === array[index - 1].name.toLowerCase()) { return false; } return true; }); var canonicalizedHeadersStringToSign = ""; headersArray.forEach(function (header) { canonicalizedHeadersStringToSign += header.name .toLowerCase() .trimRight() + ":" + header.value.trimLeft() + "\n"; }); return canonicalizedHeadersStringToSign; }; /** * Retrieves the webResource canonicalized resource string. * * @private * @param {WebResource} request * @returns {string} * @memberof StorageSharedKeyCredentialPolicy */ StorageSharedKeyCredentialPolicy.prototype.getCanonicalizedResourceString = function (request) { var path = getURLPath(request.url) || "/"; var canonicalizedResourceString = ""; canonicalizedResourceString += "/" + this.factory.accountName + path; var queries = getURLQueries(request.url); var lowercaseQueries = {}; if (queries) { var queryKeys = []; for (var key in queries) { if (queries.hasOwnProperty(key)) { var lowercaseKey = key.toLowerCase(); lowercaseQueries[lowercaseKey] = queries[key]; queryKeys.push(lowercaseKey); } } queryKeys.sort(); for (var _i = 0, queryKeys_1 = queryKeys; _i < queryKeys_1.length; _i++) { var key = queryKeys_1[_i]; canonicalizedResourceString += "\n" + key + ":" + decodeURIComponent(lowercaseQueries[key]); } } return canonicalizedResourceString; }; return StorageSharedKeyCredentialPolicy; }(CredentialPolicy)); // Copyright (c) Microsoft Corporation. All rights reserved. // Licensed under the MIT License. /** * Credential is an abstract class for Azure Storage HTTP requests signing. This * class will host an credentialPolicyCreator factory which generates CredentialPolicy. * * @export * @abstract * @class Credential */ var Credential = /** @class */ (function () { function Credential() { } /** * Creates a RequestPolicy object. * * @param {RequestPolicy} _nextPolicy * @param {RequestPolicyOptions} _options * @returns {RequestPolicy} * @memberof Credential */ Credential.prototype.create = function ( // tslint:disable-next-line:variable-name _nextPolicy, // tslint:disable-next-line:variable-name _options) { throw new Error("Method should be implemented in children classes."); }; return Credential; }()); // Copyright (c) Microsoft Corporation. All rights reserved. /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * * StorageSharedKeyCredential for account key authorization of Azure Storage service. * * @export * @class StorageSharedKeyCredential * @extends {Credential} */ var StorageSharedKeyCredential = /** @class */ (function (_super) { tslib.__extends(StorageSharedKeyCredential, _super); /** * Creates an instance of StorageSharedKeyCredential. * @param {string} accountName * @param {string} accountKey * @memberof StorageSharedKeyCredential */ function StorageSharedKeyCredential(accountName, accountKey) { var _this = _super.call(this) || this; _this.accountName = accountName; _this.accountKey = Buffer.from(accountKey, "base64"); return _this; } /** * Creates a StorageSharedKeyCredentialPolicy object. * * @param {RequestPolicy} nextPolicy * @param {RequestPolicyOptions} options * @returns {StorageSharedKeyCredentialPolicy} * @memberof StorageSharedKeyCredential */ StorageSharedKeyCredential.prototype.create = function (nextPolicy, options) { return new StorageSharedKeyCredentialPolicy(nextPolicy, options, this); }; /** * Generates a hash signature for an HTTP request or for a SAS. * * @param {string} stringToSign * @returns {string} * @memberof StorageSharedKeyCredential */ StorageSharedKeyCredential.prototype.computeHMACSHA256 = function (stringToSign) { return crypto.createHmac("sha256", this.accountKey) .update(stringToSign, "utf8") .digest("base64"); }; return StorageSharedKeyCredential; }(Credential)); // Copyright (c) Microsoft Corporation. All rights reserved. /** * AnonymousCredentialPolicy is used with HTTP(S) requests that read public resources * or for use with Shared Access Signatures (SAS). * * @export * @class AnonymousCredentialPolicy * @extends {CredentialPolicy} */ var AnonymousCredentialPolicy = /** @class */ (function (_super) { tslib.__extends(AnonymousCredentialPolicy, _super); /** * Creates an instance of AnonymousCredentialPolicy. * @param {RequestPolicy} nextPolicy * @param {RequestPolicyOptions} options * @memberof AnonymousCredentialPolicy */ function AnonymousCredentialPolicy(nextPolicy, options) { return _super.call(this, nextPolicy, options) || this; } return AnonymousCredentialPolicy; }(CredentialPolicy)); // Copyright (c) Microsoft Corporation. All rights reserved. /** * AnonymousCredential provides a credentialPolicyCreator member used to create * AnonymousCredentialPolicy objects. AnonymousCredentialPolicy is used with * HTTP(S) requests that read public resources or for use with Shared Access * Signatures (SAS). * * @export * @class AnonymousCredential * @extends {Credential} */ var AnonymousCredential = /** @class */ (function (_super) { tslib.__extends(AnonymousCredential, _super); function AnonymousCredential() { return _super !== null && _super.apply(this, arguments) || this; } /** * Creates an {@link AnonymousCredentialPolicy} object. * * @param {RequestPolicy} nextPolicy * @param {RequestPolicyOptions} options * @returns {AnonymousCredentialPolicy} * @memberof AnonymousCredential */ AnonymousCredential.prototype.create = function (nextPolicy, options) { return new AnonymousCredentialPolicy(nextPolicy, options); }; return AnonymousCredential; }(Credential)); // Copyright (c) Microsoft Corporation. All rights reserved. /** * States for Batch. * * @enum {number} */ var BatchStates; (function (BatchStates) { BatchStates[BatchStates["Good"] = 0] = "Good"; BatchStates[BatchStates["Error"] = 1] = "Error"; })(BatchStates || (BatchStates = {})); /** * Batch provides basic parallel execution with concurrency limits. * Will stop execute left operations when one of the executed operation throws an error. * But Batch cannot cancel ongoing operations, you need to cancel them by yourself. * * @export * @class Batch */ var Batch = /** @class */ (function () { /** * Creates an instance of Batch. * @param {number} [concurrency=5] * @memberof Batch */ function Batch(concurrency) { if (concurrency === void 0) { concurrency = 5; } /** * Number of active operations under execution. * * @private * @type {number} * @memberof Batch */ this.actives = 0; /** * Number of completed operations under execution. * * @private * @type {number} * @memberof Batch */ this.completed = 0; /** * Offset of next operation to be executed. * * @private * @type {number} * @memberof Batch */ this.offset = 0; /** * Operation array to be executed. * * @private * @type {Operation[]} * @memberof Batch */ this.operations = []; /** * States of Batch. When an error happens, state will turn into error. * Batch will stop execute left operations. * * @private * @type {BatchStates} * @memberof Batch */ this.state = BatchStates.Good; if (concurrency < 1) { throw new RangeError("concurrency must be larger than 0"); } this.concurrency = concurrency; this.emitter = new events.EventEmitter(); } /** * Add a operation into queue. * * @param {Operation} operation * @memberof Batch */ Batch.prototype.addOperation = function (operation) { var _this = this; this.operations.push(function () { return tslib.__awaiter(_this, void 0, void 0, function () { var error_1; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: _a.trys.push([0, 2, , 3]); this.actives++; return [4 /*yield*/, operation()]; case 1: _a.sent(); this.actives--; this.completed++; this.parallelExecute(); return [3 /*break*/, 3]; case 2: error_1 = _a.sent(); this.emitter.emit("error", error_1); return [3 /*break*/, 3]; case 3: return [2 /*return*/]; } }); }); }); }; /** * Start execute operations in the queue. * * @returns {Promise} * @memberof Batch */ Batch.prototype.do = function () { return tslib.__awaiter(this, void 0, void 0, function () { var _this = this; return tslib.__generator(this, function (_a) { if (this.operations.length === 0) { return [2 /*return*/, Promise.resolve()]; } this.parallelExecute(); return [2 /*return*/, new Promise(function (resolve, reject) { _this.emitter.on("finish", resolve); _this.emitter.on("error", function (error) { _this.state = BatchStates.Error; reject(error); }); })]; }); }); }; /** * Get next operation to be executed. Return null when reaching ends. * * @private * @returns {(Operation | null)} * @memberof Batch */ Batch.prototype.nextOperation = function () { if (this.offset < this.operations.length) { return this.operations[this.offset++]; } return null; }; /** * Start execute operations. One one the most important difference between * this method with do() is that do() wraps as an sync method. * * @private * @returns {void} * @memberof Batch */ Batch.prototype.parallelExecute = function () { if (this.state === BatchStates.Error) { return; } if (this.completed >= this.operations.length) { this.emitter.emit("finish"); return; } while (this.actives < this.concurrency) { var operation = this.nextOperation(); if (operation) { operation(); } else { return; } } }; return Batch; }()); // Copyright (c) Microsoft Corporation. /** * Creates a span using the global tracer. * @param name The name of the operation being performed. * @param tracingOptions The options for the underlying http request. */ function createSpan(operationName, tracingOptions) { if (tracingOptions === void 0) { tracingOptions = {}; } var tracer = coreTracing.getTracer(); var spanOptions = tslib.__assign(tslib.__assign({}, tracingOptions.spanOptions), { kind: api.SpanKind.INTERNAL }); var span = tracer.startSpan("Azure.Storage.Blob." + operationName, spanOptions); span.setAttribute("az.namespace", "Microsoft.Storage"); var newOptions = tracingOptions.spanOptions || {}; if (span.isRecording()) { newOptions = tslib.__assign(tslib.__assign({}, tracingOptions.spanOptions), { parent: span.context(), attributes: tslib.__assign(tslib.__assign({}, spanOptions.attributes), { "az.namespace": "Microsoft.Storage" }) }); } return { span: span, spanOptions: newOptions }; } /* * Copyright (c) Microsoft Corporation. All rights reserved. * Licensed under the MIT License. See License.txt in the project root for * license information. * * Code generated by Microsoft (R) AutoRest Code Generator. * Changes may cause incorrect behavior and will be lost if the code is * regenerated. */ var packageName = "azure-storage-blob"; var packageVersion = "12.1.2"; var StorageClientContext = /** @class */ (function (_super) { tslib.__extends(StorageClientContext, _super); /** * Initializes a new instance of the StorageClientContext class. * @param url The URL of the service account, container, or blob that is the targe of the desired * operation. * @param [options] The parameter options */ function StorageClientContext(url, options) { var _this = this; if (url == undefined) { throw new Error("'url' cannot be null."); } if (!options) { options = {}; } if (!options.userAgent) { var defaultUserAgent = coreHttp.getDefaultUserAgentValue(); options.userAgent = packageName + "/" + packageVersion + " " + defaultUserAgent; } _this = _super.call(this, undefined, options) || this; _this.version = '2019-07-07'; _this.baseUri = "{url}"; _this.requestContentType = "application/json; charset=utf-8"; _this.url = url; return _this; } return StorageClientContext; }(coreHttp.ServiceClient)); // Copyright (c) Microsoft Corporation. All rights reserved. /** * A StorageClient represents a based URL class for {@link BlobServiceClient}, {@link ContainerClient} * and etc. * * @export * @class StorageClient */ var StorageClient = /** @class */ (function () { /** * Creates an instance of StorageClient. * @param {string} url url to resource * @param {Pipeline} pipeline request policy pipeline. * @memberof StorageClient */ function StorageClient(url, pipeline) { // URL should be encoded and only once, protocol layer shouldn't encode URL again this.url = escapeURLPath(url); this.accountName = getAccountNameFromUrl(url); this.pipeline = pipeline; this.storageClientContext = new StorageClientContext(this.url, pipeline.toServiceClientOptions()); this.isHttps = iEqual(getURLScheme(this.url) || "", "https"); this.credential = new AnonymousCredential(); for (var _i = 0, _a = this.pipeline.factories; _i < _a.length; _i++) { var factory = _a[_i]; if ((coreHttp.isNode && factory instanceof StorageSharedKeyCredential) || factory instanceof AnonymousCredential || coreHttp.isTokenCredential(factory)) { this.credential = factory; } } // Override protocol layer's default content-type var storageClientContext = this.storageClientContext; storageClientContext.requestContentType = undefined; } return StorageClient; }()); // Copyright (c) Microsoft Corporation. All rights reserved. /** * This class accepts a Node.js Readable stream as input, and keeps reading data * from the stream into the internal buffer structure, until it reaches maxBuffers. * Every available buffer will try to trigger outgoingHandler. * * The internal buffer structure includes an incoming buffer array, and a outgoing * buffer array. The incoming buffer array includes the "empty" buffers can be filled * with new incoming data. The outgoing array includes the filled buffers to be * handled by outgoingHandler. Every above buffer size is defined by parameter bufferSize. * * NUM_OF_ALL_BUFFERS = BUFFERS_IN_INCOMING + BUFFERS_IN_OUTGOING + BUFFERS_UNDER_HANDLING * * NUM_OF_ALL_BUFFERS <= maxBuffers * * PERFORMANCE IMPROVEMENT TIPS: * 1. Input stream highWaterMark is better to set a same value with bufferSize * parameter, which will avoid Buffer.concat() operations. * 2. concurrency should set a smaller value than maxBuffers, which is helpful to * reduce the possibility when a outgoing handler waits for the stream data. * in this situation, outgoing handlers are blocked. * Outgoing queue shouldn't be empty. * @export * @class BufferScheduler */ var BufferScheduler = /** @class */ (function () { /** * Creates an instance of BufferScheduler. * * @param {Readable} readable A Node.js Readable stream * @param {number} bufferSize Buffer size of every maintained buffer * @param {number} maxBuffers How many buffers can be allocated * @param {OutgoingHandler} outgoingHandler An async function scheduled to be * triggered when a buffer fully filled * with stream data * @param {number} concurrency Concurrency of executing outgoingHandlers (>0) * @param {string} [encoding] [Optional] Encoding of Readable stream when it's a string stream * @memberof BufferScheduler */ function BufferScheduler(readable, bufferSize, maxBuffers, outgoingHandler, concurrency, encoding) { /** * An internal event emitter. * * @private * @type {EventEmitter} * @memberof BufferScheduler */ this.emitter = new events.EventEmitter(); /** * An internal offset marker to track data offset in bytes of next outgoingHandler. * * @private * @type {number} * @memberof BufferScheduler */ this.offset = 0; /** * An internal marker to track whether stream is end. * * @private * @type {boolean} * @memberof BufferScheduler */ this.isStreamEnd = false; /** * An internal marker to track whether stream or outgoingHandler returns error. * * @private * @type {boolean} * @memberof BufferScheduler */ this.isError = false; /** * How many handlers are executing. * * @private * @type {number} * @memberof BufferScheduler */ this.executingOutgoingHandlers = 0; /** * How many buffers have been allocated. * * @private * @type {number} * @memberof BufferScheduler */ this.numBuffers = 0; /** * Because this class doesn't know how much data every time stream pops, which * is defined by highWaterMarker of the stream. So BufferScheduler will cache * data received from the stream, when data in unresolvedDataArray exceeds the * blockSize defined, it will try to concat a blockSize of buffer, fill into available * buffers from incoming and push to outgoing array. * * @private * @type {Buffer[]} * @memberof BufferScheduler */ this.unresolvedDataArray = []; /** * How much data consisted in unresolvedDataArray. * * @private * @type {number} * @memberof BufferScheduler */ this.unresolvedLength = 0; /** * The array includes all the available buffers can be used to fill data from stream. * * @private * @type {Buffer[]} * @memberof BufferScheduler */ this.incoming = []; /** * The array (queue) includes all the buffers filled from stream data. * * @private * @type {Buffer[]} * @memberof BufferScheduler */ this.outgoing = []; if (bufferSize <= 0) { throw new RangeError("bufferSize must be larger than 0, current is " + bufferSize); } if (maxBuffers <= 0) { throw new RangeError("maxBuffers must be larger than 0, current is " + maxBuffers); } if (concurrency <= 0) { throw new RangeError("concurrency must be larger than 0, current is " + concurrency); } this.bufferSize = bufferSize; this.maxBuffers = maxBuffers; this.readable = readable; this.outgoingHandler = outgoingHandler; this.concurrency = concurrency; this.encoding = encoding; } /** * Start the scheduler, will return error when stream of any of the outgoingHandlers * returns error. * * @returns {Promise} * @memberof BufferScheduler */ BufferScheduler.prototype.do = function () { return tslib.__awaiter(this, void 0, void 0, function () { var _this = this; return tslib.__generator(this, function (_a) { return [2 /*return*/, new Promise(function (resolve, reject) { _this.readable.on("data", function (data) { data = typeof data === "string" ? Buffer.from(data, _this.encoding) : data; _this.appendUnresolvedData(data); if (!_this.resolveData()) { _this.readable.pause(); } }); _this.readable.on("error", function (err) { _this.emitter.emit("error", err); }); _this.readable.on("end", function () { _this.isStreamEnd = true; _this.emitter.emit("checkEnd"); }); _this.emitter.on("error", function (err) { _this.isError = true; _this.readable.pause(); reject(err); }); _this.emitter.on("checkEnd", function () { if (_this.outgoing.length > 0) { _this.triggerOutgoingHandlers(); return; } if (_this.isStreamEnd && _this.executingOutgoingHandlers === 0) { if (_this.unresolvedLength > 0 && _this.unresolvedLength < _this.bufferSize) { _this.outgoingHandler(_this.shiftBufferFromUnresolvedDataArray(), _this.offset) .then(resolve) .catch(reject); } else if (_this.unresolvedLength >= _this.bufferSize) { return; } else { resolve(); } } }); })]; }); }); }; /** * Insert a new data into unresolved array. * * @private * @param {Buffer} data * @memberof BufferScheduler */ BufferScheduler.prototype.appendUnresolvedData = function (data) { this.unresolvedDataArray.push(data); this.unresolvedLength += data.length; }; /** * Try to shift a buffer with size in blockSize. The buffer returned may be less * than blockSize when data in unresolvedDataArray is less than bufferSize. * * @private * @returns {Buffer} * @memberof BufferScheduler */ BufferScheduler.prototype.shiftBufferFromUnresolvedDataArray = function () { if (this.unresolvedLength >= this.bufferSize) { if (this.bufferSize === this.unresolvedDataArray[0].length) { this.unresolvedLength -= this.bufferSize; return this.unresolvedDataArray.shift(); } // Lazy concat because Buffer.concat highly drops performance var merged = Buffer.concat(this.unresolvedDataArray, this.unresolvedLength); var buffer = merged.slice(0, this.bufferSize); merged = merged.slice(this.bufferSize); this.unresolvedDataArray = [merged]; this.unresolvedLength -= buffer.length; return buffer; } else if (this.unresolvedLength > 0) { var merged = Buffer.concat(this.unresolvedDataArray, this.unresolvedLength); this.unresolvedDataArray = []; this.unresolvedLength = 0; return merged; } else { return Buffer.allocUnsafe(0); } }; /** * Resolve data in unresolvedDataArray. For every buffer with size in blockSize * shifted, it will try to get (or allocate a buffer) from incoming, and fill it, * then push it into outgoing to be handled by outgoing handler. * * Return false when available buffers in incoming are not enough, else true. * * @private * @returns {boolean} Return false when buffers in incoming are not enough, else true. * @memberof BufferScheduler */ BufferScheduler.prototype.resolveData = function () { while (this.unresolvedLength >= this.bufferSize) { var buffer = void 0; if (this.incoming.length > 0) { buffer = this.incoming.shift(); } else { if (this.numBuffers < this.maxBuffers) { buffer = Buffer.allocUnsafe(this.bufferSize); this.numBuffers++; } else { // No available buffer, wait for buffer returned return false; } } buffer.fill(this.shiftBufferFromUnresolvedDataArray()); this.outgoing.push(buffer); this.triggerOutgoingHandlers(); } return true; }; /** * Try to trigger a outgoing handler for every buffer in outgoing. Stop when * concurrency reaches. * * @private * @memberof BufferScheduler */ BufferScheduler.prototype.triggerOutgoingHandlers = function () { return tslib.__awaiter(this, void 0, void 0, function () { var buffer; return tslib.__generator(this, function (_a) { do { if (this.executingOutgoingHandlers >= this.concurrency) { return [2 /*return*/]; } buffer = this.outgoing.shift(); if (buffer) { this.triggerOutgoingHandler(buffer); } } while (buffer); return [2 /*return*/]; }); }); }; /** * Trigger a outgoing handler for a buffer shifted from outgoing. * * @private * @param {Buffer} buffer * @returns {Promise} * @memberof BufferScheduler */ BufferScheduler.prototype.triggerOutgoingHandler = function (buffer) { return tslib.__awaiter(this, void 0, void 0, function () { var bufferLength, err_1; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: bufferLength = buffer.length; this.executingOutgoingHandlers++; this.offset += bufferLength; _a.label = 1; case 1: _a.trys.push([1, 3, , 4]); return [4 /*yield*/, this.outgoingHandler(buffer, this.offset - bufferLength)]; case 2: _a.sent(); return [3 /*break*/, 4]; case 3: err_1 = _a.sent(); this.emitter.emit("error", err_1); return [2 /*return*/]; case 4: this.executingOutgoingHandlers--; this.reuseBuffer(buffer); this.emitter.emit("checkEnd"); return [2 /*return*/]; } }); }); }; /** * Return buffer used by outgoing handler into incoming. * * @private * @param {Buffer} buffer * @memberof BufferScheduler */ BufferScheduler.prototype.reuseBuffer = function (buffer) { this.incoming.push(buffer); if (!this.isError && this.resolveData() && !this.isStreamEnd) { this.readable.resume(); } }; return BufferScheduler; }()); /** * Function that converts PageRange and ClearRange to a common Range object. * PageRange and ClearRange have start and end while Range offset and count * this function normalizes to Range. * @param response Model PageBlob Range response */ function rangeResponseFromModel(response) { var pageRange = (response._response.parsedBody.pageRange || []).map(function (x) { return ({ offset: x.start, count: x.end - x.start }); }); var clearRange = (response._response.parsedBody.clearRange || []).map(function (x) { return ({ offset: x.start, count: x.end - x.start }); }); return tslib.__assign(tslib.__assign({}, response), { pageRange: pageRange, clearRange: clearRange, _response: tslib.__assign(tslib.__assign({}, response._response), { parsedBody: { pageRange: pageRange, clearRange: clearRange } }) }); } // Copyright (c) Microsoft Corporation. All rights reserved. /** * This is the poller returned by {@link BlobClient.beginCopyFromURL}. * This can not be instantiated directly outside of this package. * * @ignore */ var BlobBeginCopyFromUrlPoller = /** @class */ (function (_super) { tslib.__extends(BlobBeginCopyFromUrlPoller, _super); function BlobBeginCopyFromUrlPoller(options) { var _this = this; var blobClient = options.blobClient, copySource = options.copySource, _a = options.intervalInMs, intervalInMs = _a === void 0 ? 15000 : _a, onProgress = options.onProgress, resumeFrom = options.resumeFrom, startCopyFromURLOptions = options.startCopyFromURLOptions; var state; if (resumeFrom) { state = JSON.parse(resumeFrom).state; } var operation = makeBlobBeginCopyFromURLPollOperation(tslib.__assign(tslib.__assign({}, state), { blobClient: blobClient, copySource: copySource, startCopyFromURLOptions: startCopyFromURLOptions })); _this = _super.call(this, operation) || this; if (typeof onProgress === "function") { _this.onProgress(onProgress); } _this.intervalInMs = intervalInMs; return _this; } BlobBeginCopyFromUrlPoller.prototype.delay = function () { return coreHttp.delay(this.intervalInMs); }; return BlobBeginCopyFromUrlPoller; }(coreLro.Poller)); /** * Note: Intentionally using function expression over arrow function expression * so that the function can be invoked with a different context. * This affects what `this` refers to. * @ignore */ var cancel = function cancel(options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var state, copyId; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: state = this.state; copyId = state.copyId; if (state.isCompleted) { return [2 /*return*/, makeBlobBeginCopyFromURLPollOperation(state)]; } if (!copyId) { state.isCancelled = true; return [2 /*return*/, makeBlobBeginCopyFromURLPollOperation(state)]; } // if abortCopyFromURL throws, it will bubble up to user's poller.cancelOperation call return [4 /*yield*/, state.blobClient.abortCopyFromURL(copyId, { abortSignal: options.abortSignal })]; case 1: // if abortCopyFromURL throws, it will bubble up to user's poller.cancelOperation call _a.sent(); state.isCancelled = true; return [2 /*return*/, makeBlobBeginCopyFromURLPollOperation(state)]; } }); }); }; /** * Note: Intentionally using function expression over arrow function expression * so that the function can be invoked with a different context. * This affects what `this` refers to. * @ignore */ var update = function update(options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var state, blobClient, copySource, startCopyFromURLOptions, result, result, copyStatus, copyProgress, prevCopyProgress, err_1; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: state = this.state; blobClient = state.blobClient, copySource = state.copySource, startCopyFromURLOptions = state.startCopyFromURLOptions; if (!!state.isStarted) return [3 /*break*/, 2]; state.isStarted = true; return [4 /*yield*/, blobClient.startCopyFromURL(copySource, startCopyFromURLOptions)]; case 1: result = _a.sent(); // copyId is needed to abort state.copyId = result.copyId; if (result.copyStatus === "success") { state.result = result; state.isCompleted = true; } return [3 /*break*/, 6]; case 2: if (!!state.isCompleted) return [3 /*break*/, 6]; _a.label = 3; case 3: _a.trys.push([3, 5, , 6]); return [4 /*yield*/, state.blobClient.getProperties({ abortSignal: options.abortSignal })]; case 4: result = _a.sent(); copyStatus = result.copyStatus, copyProgress = result.copyProgress; prevCopyProgress = state.copyProgress; if (copyProgress) { state.copyProgress = copyProgress; } if (copyStatus === "pending" && copyProgress !== prevCopyProgress && typeof options.fireProgress === "function") { // trigger in setTimeout, or swallow error? options.fireProgress(state); } else if (copyStatus === "success") { state.result = result; state.isCompleted = true; } else if (copyStatus === "failed") { state.error = new Error("Blob copy failed with reason: \"" + (result.copyStatusDescription || "unknown") + "\""); state.isCompleted = true; } return [3 /*break*/, 6]; case 5: err_1 = _a.sent(); state.error = err_1; state.isCompleted = true; return [3 /*break*/, 6]; case 6: return [2 /*return*/, makeBlobBeginCopyFromURLPollOperation(state)]; } }); }); }; /** * Note: Intentionally using function expression over arrow function expression * so that the function can be invoked with a different context. * This affects what `this` refers to. * @ignore */ var toString = function toString() { return JSON.stringify({ state: this.state }, function (key, value) { // remove blobClient from serialized state since a client can't be hydrated from this info. if (key === "blobClient") { return undefined; } return value; }); }; /** * Creates a poll operation given the provided state. * @ignore */ function makeBlobBeginCopyFromURLPollOperation(state) { return { state: tslib.__assign({}, state), cancel: cancel, toString: toString, update: update }; } // Copyright (c) Microsoft Corporation. All rights reserved. /** * A BlobClient represents a URL to an Azure Storage blob; the blob may be a block blob, * append blob, or page blob. * * @export * @class BlobClient */ var BlobClient = /** @class */ (function (_super) { tslib.__extends(BlobClient, _super); function BlobClient(urlOrConnectionString, credentialOrPipelineOrContainerName, blobNameOrOptions, options) { var _a; var _this = this; options = options || {}; var pipeline; var url; if (credentialOrPipelineOrContainerName instanceof Pipeline) { // (url: string, pipeline: Pipeline) url = urlOrConnectionString; pipeline = credentialOrPipelineOrContainerName; } else if ((coreHttp.isNode && credentialOrPipelineOrContainerName instanceof StorageSharedKeyCredential) || credentialOrPipelineOrContainerName instanceof AnonymousCredential || coreHttp.isTokenCredential(credentialOrPipelineOrContainerName)) { // (url: string, credential?: StorageSharedKeyCredential | AnonymousCredential | TokenCredential, options?: StoragePipelineOptions) url = urlOrConnectionString; options = blobNameOrOptions; pipeline = newPipeline(credentialOrPipelineOrContainerName, options); } else if (!credentialOrPipelineOrContainerName && typeof credentialOrPipelineOrContainerName !== "string") { // (url: string, credential?: StorageSharedKeyCredential | AnonymousCredential | TokenCredential, options?: StoragePipelineOptions) // The second parameter is undefined. Use anonymous credential. url = urlOrConnectionString; pipeline = newPipeline(new AnonymousCredential(), options); } else if (credentialOrPipelineOrContainerName && typeof credentialOrPipelineOrContainerName === "string" && blobNameOrOptions && typeof blobNameOrOptions === "string") { // (connectionString: string, containerName: string, blobName: string, options?: StoragePipelineOptions) var containerName = credentialOrPipelineOrContainerName; var blobName = blobNameOrOptions; var extractedCreds = extractConnectionStringParts(urlOrConnectionString); if (extractedCreds.kind === "AccountConnString") { { var sharedKeyCredential = new StorageSharedKeyCredential(extractedCreds.accountName, extractedCreds.accountKey); url = appendToURLPath(appendToURLPath(extractedCreds.url, encodeURIComponent(containerName)), encodeURIComponent(blobName)); options.proxyOptions = coreHttp.getDefaultProxySettings(extractedCreds.proxyUri); pipeline = newPipeline(sharedKeyCredential, options); } } else if (extractedCreds.kind === "SASConnString") { url = appendToURLPath(appendToURLPath(extractedCreds.url, encodeURIComponent(containerName)), encodeURIComponent(blobName)) + "?" + extractedCreds.accountSas; pipeline = newPipeline(new AnonymousCredential(), options); } else { throw new Error("Connection string must be either an Account connection string or a SAS connection string"); } } else { throw new Error("Expecting non-empty strings for containerName and blobName parameters"); } _this = _super.call(this, url, pipeline) || this; (_a = _this.getBlobAndContainerNamesFromUrl(), _this._name = _a.blobName, _this._containerName = _a.containerName); _this.blobContext = new Blob$1(_this.storageClientContext); return _this; } Object.defineProperty(BlobClient.prototype, "name", { /** * The name of the blob. */ get: function () { return this._name; }, enumerable: true, configurable: true }); Object.defineProperty(BlobClient.prototype, "containerName", { /** * The name of the storage container the blob is associated with. */ get: function () { return this._containerName; }, enumerable: true, configurable: true }); /** * Creates a new BlobClient object identical to the source but with the specified snapshot timestamp. * Provide "" will remove the snapshot and return a Client to the base blob. * * @param {string} snapshot The snapshot timestamp. * @returns {BlobClient} A new BlobClient object identical to the source but with the specified snapshot timestamp * @memberof BlobClient */ BlobClient.prototype.withSnapshot = function (snapshot) { return new BlobClient(setURLParameter(this.url, URLConstants.Parameters.SNAPSHOT, snapshot.length === 0 ? undefined : snapshot), this.pipeline); }; /** * Creates a AppendBlobClient object. * * @returns {AppendBlobClient} * @memberof BlobClient */ BlobClient.prototype.getAppendBlobClient = function () { return new AppendBlobClient(this.url, this.pipeline); }; /** * Creates a BlockBlobClient object. * * @returns {BlockBlobClient} * @memberof BlobClient */ BlobClient.prototype.getBlockBlobClient = function () { return new BlockBlobClient(this.url, this.pipeline); }; /** * Creates a PageBlobClient object. * * @returns {PageBlobClient} * @memberof BlobClient */ BlobClient.prototype.getPageBlobClient = function () { return new PageBlobClient(this.url, this.pipeline); }; /** * Reads or downloads a blob from the system, including its metadata and properties. * You can also call Get Blob to read a snapshot. * * * In Node.js, data returns in a Readable stream readableStreamBody * * In browsers, data returns in a promise blobBody * * @see https://docs.microsoft.com/en-us/rest/api/storageservices/get-blob * * @param {number} [offset] From which position of the blob to download, >= 0 * @param {number} [count] How much data to be downloaded, > 0. Will download to the end when undefined * @param {BlobDownloadOptions} [options] Optional options to Blob Download operation. * @returns {Promise} * @memberof BlobClient * * Example usage (Node.js): * * ```js * // Download and convert a blob to a string * const downloadBlockBlobResponse = await blobClient.download(); * const downloaded = await streamToString(downloadBlockBlobResponse.readableStreamBody); * console.log("Downloaded blob content:", downloaded); * * async function streamToString(readableStream) { * return new Promise((resolve, reject) => { * const chunks = []; * readableStream.on("data", (data) => { * chunks.push(data.toString()); * }); * readableStream.on("end", () => { * resolve(chunks.join("")); * }); * readableStream.on("error", reject); * }); * } * ``` * * Example usage (browser): * * ```js * // Download and convert a blob to a string * const downloadBlockBlobResponse = await blobClient.download(); * const downloaded = await blobToString(await downloadBlockBlobResponse.blobBody); * console.log( * "Downloaded blob content", * downloaded * ); * * async function blobToString(blob: Blob): Promise { * const fileReader = new FileReader(); * return new Promise((resolve, reject) => { * fileReader.onloadend = (ev: any) => { * resolve(ev.target!.result); * }; * fileReader.onerror = reject; * fileReader.readAsText(blob); * }); * } * ``` */ BlobClient.prototype.download = function (offset, count, options) { if (offset === void 0) { offset = 0; } if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, res_1, e_1; var _this = this; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: options.conditions = options.conditions || {}; options.conditions = options.conditions || {}; ensureCpkIfSpecified(options.customerProvidedKey, this.isHttps); _a = createSpan("BlobClient-download", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.blobContext.download({ abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, onDownloadProgress: coreHttp.isNode ? undefined : options.onProgress, range: offset === 0 && !count ? undefined : rangeToString({ offset: offset, count: count }), rangeGetContentMD5: options.rangeGetContentMD5, rangeGetContentCRC64: options.rangeGetContentCrc64, snapshot: options.snapshot, cpkInfo: options.customerProvidedKey, spanOptions: spanOptions })]; case 2: res_1 = _b.sent(); // We support retrying when download stream unexpected ends in Node.js runtime // Following code shouldn't be bundled into browser build, however some // bundlers may try to bundle following code and "FileReadResponse.ts". // In this case, "FileDownloadResponse.browser.ts" will be used as a shim of "FileDownloadResponse.ts" // The config is in package.json "browser" field if (options.maxRetryRequests === undefined || options.maxRetryRequests < 0) { // TODO: Default value or make it a required parameter? options.maxRetryRequests = DEFAULT_MAX_DOWNLOAD_RETRY_REQUESTS; } if (res_1.contentLength === undefined) { throw new RangeError("File download response doesn't contain valid content length header"); } if (!res_1.etag) { throw new RangeError("File download response doesn't contain valid etag header"); } return [2 /*return*/, new BlobDownloadResponse(res_1, function (start) { return tslib.__awaiter(_this, void 0, void 0, function () { var updatedOptions; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: updatedOptions = { leaseAccessConditions: options.conditions, modifiedAccessConditions: { ifMatch: options.conditions.ifMatch || res_1.etag, ifModifiedSince: options.conditions.ifModifiedSince, ifNoneMatch: options.conditions.ifNoneMatch, ifUnmodifiedSince: options.conditions.ifUnmodifiedSince }, range: rangeToString({ count: offset + res_1.contentLength - start, offset: start }), rangeGetContentMD5: options.rangeGetContentMD5, rangeGetContentCRC64: options.rangeGetContentCrc64, snapshot: options.snapshot, cpkInfo: options.customerProvidedKey }; return [4 /*yield*/, this.blobContext.download(tslib.__assign({ abortSignal: options.abortSignal }, updatedOptions))]; case 1: // Debug purpose only // console.log( // `Read from internal stream, range: ${ // updatedOptions.range // }, options: ${JSON.stringify(updatedOptions)}` // ); return [2 /*return*/, (_a.sent()).readableStreamBody]; } }); }); }, offset, res_1.contentLength, { abortSignal: options.abortSignal, maxRetryRequests: options.maxRetryRequests, onProgress: options.onProgress })]; case 3: e_1 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_1.message }); throw e_1; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Returns true if the Azrue blob resource represented by this client exists; false otherwise. * * NOTE: use this function with care since an existing blob might be deleted by other clients or * applications. Vice versa new blobs might be added by other clients or applications after this * function completes. * * @param {BlobExistsOptions} [options] options to Exists operation. * @returns {Promise} * @memberof BlobClient */ BlobClient.prototype.exists = function (options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_2; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobClient-exists", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); ensureCpkIfSpecified(options.customerProvidedKey, this.isHttps); return [4 /*yield*/, this.getProperties({ abortSignal: options.abortSignal, customerProvidedKey: options.customerProvidedKey, tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) })]; case 2: _b.sent(); return [2 /*return*/, true]; case 3: e_2 = _b.sent(); if (e_2.statusCode === 404) { span.setStatus({ code: api.CanonicalCode.NOT_FOUND, message: "Expected exception when checking blob existence" }); return [2 /*return*/, false]; } span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_2.message }); throw e_2; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Returns all user-defined metadata, standard HTTP properties, and system properties * for the blob. It does not return the content of the blob. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/get-blob-properties * * WARNING: The `metadata` object returned in the response will have its keys in lowercase, even if * they originally contained uppercase characters. This differs from the metadata keys returned by * the methods of {@link ContainerClient} that list blobs using the `includeMetadata` option, which * will retain their original casing. * * @param {BlobGetPropertiesOptions} [options] Optional options to Get Properties operation. * @returns {Promise} * @memberof BlobClient */ BlobClient.prototype.getProperties = function (options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_3; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobClient-getProperties", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); options.conditions = options.conditions || {}; ensureCpkIfSpecified(options.customerProvidedKey, this.isHttps); return [4 /*yield*/, this.blobContext.getProperties({ abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, cpkInfo: options.customerProvidedKey, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_3 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_3.message }); throw e_3; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Marks the specified blob or snapshot for deletion. The blob is later deleted * during garbage collection. Note that in order to delete a blob, you must delete * all of its snapshots. You can delete both at the same time with the Delete * Blob operation. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/delete-blob * * @param {BlobDeleteOptions} [options] Optional options to Blob Delete operation. * @returns {Promise} * @memberof BlobClient */ BlobClient.prototype.delete = function (options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_4; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobClient-delete", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; options.conditions = options.conditions || {}; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.blobContext.deleteMethod({ abortSignal: options.abortSignal, deleteSnapshots: options.deleteSnapshots, leaseAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_4 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_4.message }); throw e_4; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Restores the contents and metadata of soft deleted blob and any associated * soft deleted snapshots. Undelete Blob is supported only on version 2017-07-29 * or later. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/undelete-blob * * @param {BlobUndeleteOptions} [options] Optional options to Blob Undelete operation. * @returns {Promise} * @memberof BlobClient */ BlobClient.prototype.undelete = function (options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_5; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobClient-undelete", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.blobContext.undelete({ abortSignal: options.abortSignal, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_5 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_5.message }); throw e_5; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Sets system properties on the blob. * * If no value provided, or no value provided for the specificed blob HTTP headers, * these blob HTTP headers without a value will be cleared. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/set-blob-properties * * @param {BlobHTTPHeaders} [blobHTTPHeaders] If no value provided, or no value provided for * the specificed blob HTTP headers, these blob HTTP * headers without a value will be cleared. * @param {BlobSetHTTPHeadersOptions} [options] Optional options to Blob Set HTTP Headers operation. * @returns {Promise} * @memberof BlobClient */ BlobClient.prototype.setHTTPHeaders = function (blobHTTPHeaders, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_6; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobClient-setHTTPHeaders", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; options.conditions = options.conditions || {}; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); ensureCpkIfSpecified(options.customerProvidedKey, this.isHttps); return [4 /*yield*/, this.blobContext.setHTTPHeaders({ abortSignal: options.abortSignal, blobHTTPHeaders: blobHTTPHeaders, leaseAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, cpkInfo: options.customerProvidedKey, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_6 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_6.message }); throw e_6; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Sets user-defined metadata for the specified blob as one or more name-value pairs. * * If no option provided, or no metadata defined in the parameter, the blob * metadata will be removed. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/set-blob-metadata * * @param {Metadata} [metadata] Replace existing metadata with this value. * If no value provided the existing metadata will be removed. * @param {BlobSetMetadataOptions} [options] Optional options to Set Metadata operation. * @returns {Promise} * @memberof BlobClient */ BlobClient.prototype.setMetadata = function (metadata, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_7; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobClient-setMetadata", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; options.conditions = options.conditions || {}; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); ensureCpkIfSpecified(options.customerProvidedKey, this.isHttps); return [4 /*yield*/, this.blobContext.setMetadata({ abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, metadata: metadata, modifiedAccessConditions: options.conditions, cpkInfo: options.customerProvidedKey, encryptionScope: options.encryptionScope, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_7 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_7.message }); throw e_7; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Get a {@link BlobLeaseClient} that manages leases on the blob. * * @param {string} [proposeLeaseId] Initial proposed lease Id. * @returns {BlobLeaseClient} A new BlobLeaseClient object for managing leases on the blob. * @memberof BlobClient */ BlobClient.prototype.getBlobLeaseClient = function (proposeLeaseId) { return new BlobLeaseClient(this, proposeLeaseId); }; /** * Creates a read-only snapshot of a blob. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/snapshot-blob * * @param {BlobCreateSnapshotOptions} [options] Optional options to the Blob Create Snapshot operation. * @returns {Promise} * @memberof BlobClient */ BlobClient.prototype.createSnapshot = function (options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_8; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobClient-createSnapshot", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; options.conditions = options.conditions || {}; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); ensureCpkIfSpecified(options.customerProvidedKey, this.isHttps); return [4 /*yield*/, this.blobContext.createSnapshot({ abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, metadata: options.metadata, modifiedAccessConditions: options.conditions, cpkInfo: options.customerProvidedKey, encryptionScope: options.encryptionScope, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_8 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_8.message }); throw e_8; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Asynchronously copies a blob to a destination within the storage account. * This method returns a long running operation poller that allows you to wait * indefinitely until the copy is completed. * You can also cancel a copy before it is completed by calling `cancelOperation` on the poller. * Note that the onProgress callback will not be invoked if the operation completes in the first * request, and attempting to cancel a completed copy will result in an error being thrown. * * In version 2012-02-12 and later, the source for a Copy Blob operation can be * a committed blob in any Azure storage account. * Beginning with version 2015-02-21, the source for a Copy Blob operation can be * an Azure file in any Azure storage account. * Only storage accounts created on or after June 7th, 2012 allow the Copy Blob * operation to copy from another storage account. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/copy-blob * * Example using automatic polling: * * ```js * const copyPoller = await blobClient.beginCopyFromURL('url'); * const result = await copyPoller.pollUntilDone(); * ``` * * Example using manual polling: * * ```js * const copyPoller = await blobClient.beginCopyFromURL('url'); * while (!poller.isDone()) { * await poller.poll(); * } * const result = copyPoller.getResult(); * ``` * * Example using progress updates: * * ```js * const copyPoller = await blobClient.beginCopyFromURL('url', { * onProgress(state) { * console.log(`Progress: ${state.copyProgress}`); * } * }); * const result = await copyPoller.pollUntilDone(); * ``` * * Example using a changing polling interval (default 15 seconds): * * ```js * const copyPoller = await blobClient.beginCopyFromURL('url', { * intervalInMs: 1000 // poll blob every 1 second for copy progress * }); * const result = await copyPoller.pollUntilDone(); * ``` * * Example using copy cancellation: * * ```js * const copyPoller = await blobClient.beginCopyFromURL('url'); * // cancel operation after starting it. * try { * await copyPoller.cancelOperation(); * // calls to get the result now throw PollerCancelledError * await copyPoller.getResult(); * } catch (err) { * if (err.name === 'PollerCancelledError') { * console.log('The copy was cancelled.'); * } * } * ``` * * @param {string} copySource url to the source Azure Blob/File. * @param {BlobBeginCopyFromURLOptions} [options] Optional options to the Blob Start Copy From URL operation. */ BlobClient.prototype.beginCopyFromURL = function (copySource, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var client, poller; var _this = this; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: client = { abortCopyFromURL: function () { var args = []; for (var _i = 0; _i < arguments.length; _i++) { args[_i] = arguments[_i]; } return _this.abortCopyFromURL.apply(_this, args); }, getProperties: function () { var args = []; for (var _i = 0; _i < arguments.length; _i++) { args[_i] = arguments[_i]; } return _this.getProperties.apply(_this, args); }, startCopyFromURL: function () { var args = []; for (var _i = 0; _i < arguments.length; _i++) { args[_i] = arguments[_i]; } return _this.startCopyFromURL.apply(_this, args); } }; poller = new BlobBeginCopyFromUrlPoller({ blobClient: client, copySource: copySource, intervalInMs: options.intervalInMs, onProgress: options.onProgress, resumeFrom: options.resumeFrom, startCopyFromURLOptions: options }); // Trigger the startCopyFromURL call by calling poll. // Any errors from this method should be surfaced to the user. return [4 /*yield*/, poller.poll()]; case 1: // Trigger the startCopyFromURL call by calling poll. // Any errors from this method should be surfaced to the user. _a.sent(); return [2 /*return*/, poller]; } }); }); }; /** * Aborts a pending asynchronous Copy Blob operation, and leaves a destination blob with zero * length and full metadata. Version 2012-02-12 and newer. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/abort-copy-blob * * @param {string} copyId Id of the Copy From URL operation. * @param {BlobAbortCopyFromURLOptions} [options] Optional options to the Blob Abort Copy From URL operation. * @returns {Promise} * @memberof BlobClient */ BlobClient.prototype.abortCopyFromURL = function (copyId, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_9; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobClient-abortCopyFromURL", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.blobContext.abortCopyFromURL(copyId, { abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_9 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_9.message }); throw e_9; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * The synchronous Copy From URL operation copies a blob or an internet resource to a new blob. It will not * return a response until the copy is complete. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/copy-blob-from-url * * @param {string} copySource The source URL to copy from, Shared Access Signature(SAS) maybe needed for authentication * @param {BlobSyncCopyFromURLOptions} [options={}] * @returns {Promise} * @memberof BlobClient */ BlobClient.prototype.syncCopyFromURL = function (copySource, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_10; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobClient-syncCopyFromURL", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; options.conditions = options.conditions || {}; options.sourceConditions = options.sourceConditions || {}; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.blobContext.copyFromURL(copySource, { abortSignal: options.abortSignal, metadata: options.metadata, leaseAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, sourceModifiedAccessConditions: { sourceIfMatch: options.sourceConditions.ifMatch, sourceIfModifiedSince: options.sourceConditions.ifModifiedSince, sourceIfNoneMatch: options.sourceConditions.ifNoneMatch, sourceIfUnmodifiedSince: options.sourceConditions.ifUnmodifiedSince }, sourceContentMD5: options.sourceContentMD5, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_10 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_10.message }); throw e_10; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Sets the tier on a blob. The operation is allowed on a page blob in a premium * storage account and on a block blob in a blob storage account (locally redundant * storage only). A premium page blob's tier determines the allowed size, IOPS, * and bandwidth of the blob. A block blob's tier determines Hot/Cool/Archive * storage type. This operation does not update the blob's ETag. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/set-blob-tier * * @param {BlockBlobTier | PremiumPageBlobTier | string} tier The tier to be set on the blob. Valid values are Hot, Cool, or Archive. * @param {BlobSetTierOptions} [options] Optional options to the Blob Set Tier operation. * @returns {Promise} * @memberof BlobClient */ BlobClient.prototype.setAccessTier = function (tier, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_11; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobClient-setAccessTier", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.blobContext.setTier(toAccessTier(tier), { abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, rehydratePriority: options.rehydratePriority, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_11 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_11.message }); throw e_11; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; BlobClient.prototype.downloadToBuffer = function (param1, param2, param3, param4) { if (param4 === void 0) { param4 = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var buffer, offset, count, options, _a, span, spanOptions, response, transferProgress_1, batch, _loop_1, off, e_12; var _this = this; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: offset = 0; count = 0; options = param4; if (param1 instanceof Buffer) { buffer = param1; offset = param2 || 0; count = typeof param3 === "number" ? param3 : 0; } else { offset = typeof param1 === "number" ? param1 : 0; count = typeof param2 === "number" ? param2 : 0; options = param3 || {}; } _a = createSpan("BlobClient-downloadToBuffer", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 5, 6, 7]); if (!options.blockSize) { options.blockSize = 0; } if (options.blockSize < 0) { throw new RangeError("blockSize option must be >= 0"); } if (options.blockSize === 0) { options.blockSize = DEFAULT_BLOB_DOWNLOAD_BLOCK_BYTES; } if (offset < 0) { throw new RangeError("offset option must be >= 0"); } if (count && count <= 0) { throw new RangeError("count option must be > 0"); } if (!options.conditions) { options.conditions = {}; } if (!!count) return [3 /*break*/, 3]; return [4 /*yield*/, this.getProperties(tslib.__assign(tslib.__assign({}, options), { tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) }))]; case 2: response = _b.sent(); count = response.contentLength - offset; if (count < 0) { throw new RangeError("offset " + offset + " shouldn't be larger than blob size " + response.contentLength); } _b.label = 3; case 3: // Allocate the buffer of size = count if the buffer is not provided if (!buffer) { try { buffer = Buffer.alloc(count); } catch (error) { throw new Error("Unable to allocate the buffer of size: " + count + "(in bytes). Please try passing your own buffer to the \"downloadToBuffer\" method or try using other methods like \"download\" or \"downloadToFile\".\t " + error.message); } } if (buffer.length < count) { throw new RangeError("The buffer's size should be equal to or larger than the request count of bytes: " + count); } transferProgress_1 = 0; batch = new Batch(options.concurrency); _loop_1 = function (off) { batch.addOperation(function () { return tslib.__awaiter(_this, void 0, void 0, function () { var chunkEnd, response, stream; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: chunkEnd = offset + count; if (off + options.blockSize < chunkEnd) { chunkEnd = off + options.blockSize; } return [4 /*yield*/, this.download(off, chunkEnd - off, { abortSignal: options.abortSignal, conditions: options.conditions, maxRetryRequests: options.maxRetryRequestsPerBlock, tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) })]; case 1: response = _a.sent(); stream = response.readableStreamBody; return [4 /*yield*/, streamToBuffer(stream, buffer, off - offset, chunkEnd - offset)]; case 2: _a.sent(); // Update progress after block is downloaded, in case of block trying // Could provide finer grained progress updating inside HTTP requests, // only if convenience layer download try is enabled transferProgress_1 += chunkEnd - off; if (options.onProgress) { options.onProgress({ loadedBytes: transferProgress_1 }); } return [2 /*return*/]; } }); }); }); }; for (off = offset; off < offset + count; off = off + options.blockSize) { _loop_1(off); } return [4 /*yield*/, batch.do()]; case 4: _b.sent(); return [2 /*return*/, buffer]; case 5: e_12 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_12.message }); throw e_12; case 6: span.end(); return [7 /*endfinally*/]; case 7: return [2 /*return*/]; } }); }); }; /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * * Downloads an Azure Blob to a local file. * Fails if the the given file path already exits. * Offset and count are optional, pass 0 and undefined respectively to download the entire blob. * * @param {string} filePath * @param {number} [offset] From which position of the block blob to download. * @param {number} [count] How much data to be downloaded. Will download to the end when passing undefined. * @param {BlobDownloadOptions} [options] Options to Blob download options. * @returns {Promise} The response data for blob download operation, * but with readableStreamBody set to undefined since its * content is already read and written into a local file * at the specified path. * @memberof BlobClient */ BlobClient.prototype.downloadToFile = function (filePath, offset, count, options) { if (offset === void 0) { offset = 0; } if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, response, e_13; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobClient-downloadToFile", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 5, 6, 7]); return [4 /*yield*/, this.download(offset, count, tslib.__assign(tslib.__assign({}, options), { tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) }))]; case 2: response = _b.sent(); if (!response.readableStreamBody) return [3 /*break*/, 4]; return [4 /*yield*/, readStreamToLocalFile(response.readableStreamBody, filePath)]; case 3: _b.sent(); _b.label = 4; case 4: // The stream is no longer accessible so setting it to undefined. response.blobDownloadStream = undefined; return [2 /*return*/, response]; case 5: e_13 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_13.message }); throw e_13; case 6: span.end(); return [7 /*endfinally*/]; case 7: return [2 /*return*/]; } }); }); }; BlobClient.prototype.getBlobAndContainerNamesFromUrl = function () { var containerName; var blobName; try { // URL may look like the following // "https://myaccount.blob.core.windows.net/mycontainer/blob?sasString"; // "https://myaccount.blob.core.windows.net/mycontainer/blob"; // "https://myaccount.blob.core.windows.net/mycontainer/blob/a.txt?sasString"; // "https://myaccount.blob.core.windows.net/mycontainer/blob/a.txt"; // IPv4/IPv6 address hosts, Endpoints - `http://127.0.0.1:10000/devstoreaccount1/containername/blob` // http://localhost:10001/devstoreaccount1/containername/blob var parsedUrl = coreHttp.URLBuilder.parse(this.url); if (parsedUrl.getHost().split(".")[1] === "blob") { // "https://myaccount.blob.core.windows.net/containername/blob". // .getPath() -> /containername/blob var pathComponents = parsedUrl.getPath().match("/([^/]*)(/(.*))?"); containerName = pathComponents[1]; blobName = pathComponents[3]; } else { // IPv4/IPv6 address hosts... Example - http://192.0.0.10:10001/devstoreaccount1/containername/blob // Single word domain without a [dot] in the endpoint... Example - http://localhost:10001/devstoreaccount1/containername/blob // .getPath() -> /devstoreaccount1/containername/blob var pathComponents = parsedUrl.getPath().match("/([^/]*)/([^/]*)(/(.*))?"); containerName = pathComponents[2]; blobName = pathComponents[4]; } // decode the encoded blobName, containerName - to get all the special characters that might be present in them containerName = decodeURIComponent(containerName); blobName = decodeURIComponent(blobName); // Azure Storage Server will replace "\" with "/" in the blob names // doing the same in the SDK side so that the user doesn't have to replace "\" instances in the blobName blobName = blobName.replace(/\\/g, "/"); if (!blobName) { throw new Error("Provided blobName is invalid."); } else if (!containerName) { throw new Error("Provided containerName is invalid."); } return { blobName: blobName, containerName: containerName }; } catch (error) { throw new Error("Unable to extract blobName and containerName with provided information."); } }; /** * Asynchronously copies a blob to a destination within the storage account. * In version 2012-02-12 and later, the source for a Copy Blob operation can be * a committed blob in any Azure storage account. * Beginning with version 2015-02-21, the source for a Copy Blob operation can be * an Azure file in any Azure storage account. * Only storage accounts created on or after June 7th, 2012 allow the Copy Blob * operation to copy from another storage account. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/copy-blob * * @param {string} copySource url to the source Azure Blob/File. * @param {BlobStartCopyFromURLOptions} [options] Optional options to the Blob Start Copy From URL operation. * @returns {Promise} * @memberof BlobClient */ BlobClient.prototype.startCopyFromURL = function (copySource, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_14; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobClient-startCopyFromURL", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; options.conditions = options.conditions || {}; options.sourceConditions = options.sourceConditions || {}; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.blobContext.startCopyFromURL(copySource, { abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, metadata: options.metadata, modifiedAccessConditions: options.conditions, sourceModifiedAccessConditions: { sourceIfMatch: options.sourceConditions.ifMatch, sourceIfModifiedSince: options.sourceConditions.ifModifiedSince, sourceIfNoneMatch: options.sourceConditions.ifNoneMatch, sourceIfUnmodifiedSince: options.sourceConditions.ifUnmodifiedSince }, rehydratePriority: options.rehydratePriority, tier: toAccessTier(options.tier), spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_14 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_14.message }); throw e_14; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; return BlobClient; }(StorageClient)); /** * AppendBlobClient defines a set of operations applicable to append blobs. * * @export * @class AppendBlobClient * @extends {BlobClient} */ var AppendBlobClient = /** @class */ (function (_super) { tslib.__extends(AppendBlobClient, _super); function AppendBlobClient(urlOrConnectionString, credentialOrPipelineOrContainerName, blobNameOrOptions, options) { var _this = this; // In TypeScript we cannot simply pass all parameters to super() like below so have to duplicate the code instead. // super(s, credentialOrPipelineOrContainerNameOrOptions, blobNameOrOptions, options); var pipeline; var url; options = options || {}; if (credentialOrPipelineOrContainerName instanceof Pipeline) { // (url: string, pipeline: Pipeline) url = urlOrConnectionString; pipeline = credentialOrPipelineOrContainerName; } else if ((coreHttp.isNode && credentialOrPipelineOrContainerName instanceof StorageSharedKeyCredential) || credentialOrPipelineOrContainerName instanceof AnonymousCredential || coreHttp.isTokenCredential(credentialOrPipelineOrContainerName)) { // (url: string, credential?: StorageSharedKeyCredential | AnonymousCredential | TokenCredential, options?: StoragePipelineOptions) url = urlOrConnectionString; url = urlOrConnectionString; options = blobNameOrOptions; pipeline = newPipeline(credentialOrPipelineOrContainerName, options); } else if (!credentialOrPipelineOrContainerName && typeof credentialOrPipelineOrContainerName !== "string") { // (url: string, credential?: StorageSharedKeyCredential | AnonymousCredential | TokenCredential, options?: StoragePipelineOptions) url = urlOrConnectionString; // The second parameter is undefined. Use anonymous credential. pipeline = newPipeline(new AnonymousCredential(), options); } else if (credentialOrPipelineOrContainerName && typeof credentialOrPipelineOrContainerName === "string" && blobNameOrOptions && typeof blobNameOrOptions === "string") { // (connectionString: string, containerName: string, blobName: string, options?: StoragePipelineOptions) var containerName = credentialOrPipelineOrContainerName; var blobName = blobNameOrOptions; var extractedCreds = extractConnectionStringParts(urlOrConnectionString); if (extractedCreds.kind === "AccountConnString") { { var sharedKeyCredential = new StorageSharedKeyCredential(extractedCreds.accountName, extractedCreds.accountKey); url = appendToURLPath(appendToURLPath(extractedCreds.url, encodeURIComponent(containerName)), encodeURIComponent(blobName)); options.proxyOptions = coreHttp.getDefaultProxySettings(extractedCreds.proxyUri); pipeline = newPipeline(sharedKeyCredential, options); } } else if (extractedCreds.kind === "SASConnString") { url = appendToURLPath(appendToURLPath(extractedCreds.url, encodeURIComponent(containerName)), encodeURIComponent(blobName)) + "?" + extractedCreds.accountSas; pipeline = newPipeline(new AnonymousCredential(), options); } else { throw new Error("Connection string must be either an Account connection string or a SAS connection string"); } } else { throw new Error("Expecting non-empty strings for containerName and blobName parameters"); } _this = _super.call(this, url, pipeline) || this; _this.appendBlobContext = new AppendBlob(_this.storageClientContext); return _this; } /** * Creates a new AppendBlobClient object identical to the source but with the * specified snapshot timestamp. * Provide "" will remove the snapshot and return a Client to the base blob. * * @param {string} snapshot The snapshot timestamp. * @returns {AppendBlobClient} A new AppendBlobClient object identical to the source but with the specified snapshot timestamp. * @memberof AppendBlobClient */ AppendBlobClient.prototype.withSnapshot = function (snapshot) { return new AppendBlobClient(setURLParameter(this.url, URLConstants.Parameters.SNAPSHOT, snapshot.length === 0 ? undefined : snapshot), this.pipeline); }; /** * Creates a 0-length append blob. Call AppendBlock to append data to an append blob. * @see https://docs.microsoft.com/rest/api/storageservices/put-blob * * @param {AppendBlobCreateOptions} [options] Options to the Append Block Create operation. * @returns {Promise} * @memberof AppendBlobClient * * Example usage: * * ```js * const appendBlobClient = containerClient.getAppendBlobClient(""); * await appendBlobClient.create(); * ``` */ AppendBlobClient.prototype.create = function (options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_15; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("AppendBlobClient-create", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; options.conditions = options.conditions || {}; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); ensureCpkIfSpecified(options.customerProvidedKey, this.isHttps); return [4 /*yield*/, this.appendBlobContext.create(0, { abortSignal: options.abortSignal, blobHTTPHeaders: options.blobHTTPHeaders, leaseAccessConditions: options.conditions, metadata: options.metadata, modifiedAccessConditions: options.conditions, cpkInfo: options.customerProvidedKey, encryptionScope: options.encryptionScope, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_15 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_15.message }); throw e_15; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Commits a new block of data to the end of the existing append blob. * @see https://docs.microsoft.com/rest/api/storageservices/append-block * * @param {HttpRequestBody} body Data to be appended. * @param {number} contentLength Length of the body in bytes. * @param {AppendBlobAppendBlockOptions} [options] Options to the Append Block operation. * @returns {Promise} * @memberof AppendBlobClient * * Example usage: * * ```js * const content = "Hello World!"; * * // Create a new append blob and append data to the blob. * const newAppendBlobClient = containerClient.getAppendBlobClient(""); * await newAppendBlobClient.create(); * await newAppendBlobClient.appendBlock(content, content.length); * * // Append data to an existing append blob. * const existingAppendBlobClient = containerClient.getAppendBlobClient(""); * await existingAppendBlobClient.appendBlock(content, content.length); * ``` */ AppendBlobClient.prototype.appendBlock = function (body, contentLength, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_16; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("AppendBlobClient-appendBlock", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; options.conditions = options.conditions || {}; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); ensureCpkIfSpecified(options.customerProvidedKey, this.isHttps); return [4 /*yield*/, this.appendBlobContext.appendBlock(body, contentLength, { abortSignal: options.abortSignal, appendPositionAccessConditions: options.conditions, leaseAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, onUploadProgress: options.onProgress, transactionalContentMD5: options.transactionalContentMD5, transactionalContentCrc64: options.transactionalContentCrc64, cpkInfo: options.customerProvidedKey, encryptionScope: options.encryptionScope, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_16 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_16.message }); throw e_16; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * The Append Block operation commits a new block of data to the end of an existing append blob * where the contents are read from a source url. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/append-block-from-url * * @param {string} sourceURL * The url to the blob that will be the source of the copy. A source blob in the same storage account can * be authenticated via Shared Key. However, if the source is a blob in another account, the source blob * must either be public or must be authenticated via a shared access signature. If the source blob is * public, no authentication is required to perform the operation. * @param {number} sourceOffset Offset in source to be appended * @param {number} count Number of bytes to be appended as a block * @param {AppendBlobAppendBlockFromURLOptions} [options={}] * @returns {Promise} * @memberof AppendBlobClient */ AppendBlobClient.prototype.appendBlockFromURL = function (sourceURL, sourceOffset, count, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_17; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("AppendBlobClient-appendBlockFromURL", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; options.conditions = options.conditions || {}; options.sourceConditions = options.sourceConditions || {}; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); ensureCpkIfSpecified(options.customerProvidedKey, this.isHttps); return [4 /*yield*/, this.appendBlobContext.appendBlockFromUrl(sourceURL, 0, { abortSignal: options.abortSignal, sourceRange: rangeToString({ offset: sourceOffset, count: count }), sourceContentMD5: options.sourceContentMD5, sourceContentCrc64: options.sourceContentCrc64, leaseAccessConditions: options.conditions, appendPositionAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, sourceModifiedAccessConditions: { sourceIfMatch: options.sourceConditions.ifMatch, sourceIfModifiedSince: options.sourceConditions.ifModifiedSince, sourceIfNoneMatch: options.sourceConditions.ifNoneMatch, sourceIfUnmodifiedSince: options.sourceConditions.ifUnmodifiedSince }, cpkInfo: options.customerProvidedKey, encryptionScope: options.encryptionScope, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_17 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_17.message }); throw e_17; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; return AppendBlobClient; }(BlobClient)); /** * BlockBlobClient defines a set of operations applicable to block blobs. * * @export * @class BlockBlobClient * @extends {BlobClient} */ var BlockBlobClient = /** @class */ (function (_super) { tslib.__extends(BlockBlobClient, _super); function BlockBlobClient(urlOrConnectionString, credentialOrPipelineOrContainerName, blobNameOrOptions, options) { var _this = this; // In TypeScript we cannot simply pass all parameters to super() like below so have to duplicate the code instead. // super(s, credentialOrPipelineOrContainerNameOrOptions, blobNameOrOptions, options); var pipeline; var url; options = options || {}; if (credentialOrPipelineOrContainerName instanceof Pipeline) { // (url: string, pipeline: Pipeline) url = urlOrConnectionString; pipeline = credentialOrPipelineOrContainerName; } else if ((coreHttp.isNode && credentialOrPipelineOrContainerName instanceof StorageSharedKeyCredential) || credentialOrPipelineOrContainerName instanceof AnonymousCredential || coreHttp.isTokenCredential(credentialOrPipelineOrContainerName)) { // (url: string, credential?: StorageSharedKeyCredential | AnonymousCredential | TokenCredential, options?: StoragePipelineOptions) url = urlOrConnectionString; options = blobNameOrOptions; pipeline = newPipeline(credentialOrPipelineOrContainerName, options); } else if (!credentialOrPipelineOrContainerName && typeof credentialOrPipelineOrContainerName !== "string") { // (url: string, credential?: StorageSharedKeyCredential | AnonymousCredential | TokenCredential, options?: StoragePipelineOptions) // The second parameter is undefined. Use anonymous credential. url = urlOrConnectionString; pipeline = newPipeline(new AnonymousCredential(), options); } else if (credentialOrPipelineOrContainerName && typeof credentialOrPipelineOrContainerName === "string" && blobNameOrOptions && typeof blobNameOrOptions === "string") { // (connectionString: string, containerName: string, blobName: string, options?: StoragePipelineOptions) var containerName = credentialOrPipelineOrContainerName; var blobName = blobNameOrOptions; var extractedCreds = extractConnectionStringParts(urlOrConnectionString); if (extractedCreds.kind === "AccountConnString") { { var sharedKeyCredential = new StorageSharedKeyCredential(extractedCreds.accountName, extractedCreds.accountKey); url = appendToURLPath(appendToURLPath(extractedCreds.url, encodeURIComponent(containerName)), encodeURIComponent(blobName)); options.proxyOptions = coreHttp.getDefaultProxySettings(extractedCreds.proxyUri); pipeline = newPipeline(sharedKeyCredential, options); } } else if (extractedCreds.kind === "SASConnString") { url = appendToURLPath(appendToURLPath(extractedCreds.url, encodeURIComponent(containerName)), encodeURIComponent(blobName)) + "?" + extractedCreds.accountSas; pipeline = newPipeline(new AnonymousCredential(), options); } else { throw new Error("Connection string must be either an Account connection string or a SAS connection string"); } } else { throw new Error("Expecting non-empty strings for containerName and blobName parameters"); } _this = _super.call(this, url, pipeline) || this; _this.blockBlobContext = new BlockBlob(_this.storageClientContext); return _this; } /** * Creates a new BlockBlobClient object identical to the source but with the * specified snapshot timestamp. * Provide "" will remove the snapshot and return a URL to the base blob. * * @param {string} snapshot The snapshot timestamp. * @returns {BlockBlobClient} A new BlockBlobClient object identical to the source but with the specified snapshot timestamp. * @memberof BlockBlobClient */ BlockBlobClient.prototype.withSnapshot = function (snapshot) { return new BlockBlobClient(setURLParameter(this.url, URLConstants.Parameters.SNAPSHOT, snapshot.length === 0 ? undefined : snapshot), this.pipeline); }; /** * Creates a new block blob, or updates the content of an existing block blob. * Updating an existing block blob overwrites any existing metadata on the blob. * Partial updates are not supported; the content of the existing blob is * overwritten with the new content. To perform a partial update of a block blob's, * use {@link stageBlock} and {@link commitBlockList}. * * This is a non-parallel uploading method, please use {@link uploadFile}, * {@link uploadStream} or {@link uploadBrowserData} for better performance * with concurrency uploading. * * @see https://docs.microsoft.com/rest/api/storageservices/put-blob * * @param {HttpRequestBody} body Blob, string, ArrayBuffer, ArrayBufferView or a function * which returns a new Readable stream whose offset is from data source beginning. * @param {number} contentLength Length of body in bytes. Use Buffer.byteLength() to calculate body length for a * string including non non-Base64/Hex-encoded characters. * @param {BlockBlobUploadOptions} [options] Options to the Block Blob Upload operation. * @returns {Promise} Response data for the Block Blob Upload operation. * @memberof BlockBlobClient * * Example usage: * * ```js * const content = "Hello world!"; * const uploadBlobResponse = await blockBlobClient.upload(content, content.length); * ``` */ BlockBlobClient.prototype.upload = function (body, contentLength, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_18; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: options.conditions = options.conditions || {}; _a = createSpan("BlockBlobClient-upload", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); ensureCpkIfSpecified(options.customerProvidedKey, this.isHttps); return [4 /*yield*/, this.blockBlobContext.upload(body, contentLength, { abortSignal: options.abortSignal, blobHTTPHeaders: options.blobHTTPHeaders, leaseAccessConditions: options.conditions, metadata: options.metadata, modifiedAccessConditions: options.conditions, onUploadProgress: options.onProgress, cpkInfo: options.customerProvidedKey, encryptionScope: options.encryptionScope, tier: toAccessTier(options.tier), spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_18 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_18.message }); throw e_18; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Uploads the specified block to the block blob's "staging area" to be later * committed by a call to commitBlockList. * @see https://docs.microsoft.com/rest/api/storageservices/put-block * * @param {string} blockId A 64-byte value that is base64-encoded * @param {HttpRequestBody} body Data to upload to the staging area. * @param {number} contentLength Number of bytes to upload. * @param {BlockBlobStageBlockOptions} [options] Options to the Block Blob Stage Block operation. * @returns {Promise} Response data for the Block Blob Stage Block operation. * @memberof BlockBlobClient */ BlockBlobClient.prototype.stageBlock = function (blockId, body, contentLength, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_19; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlockBlobClient-stageBlock", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); ensureCpkIfSpecified(options.customerProvidedKey, this.isHttps); return [4 /*yield*/, this.blockBlobContext.stageBlock(blockId, contentLength, body, { abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, onUploadProgress: options.onProgress, transactionalContentMD5: options.transactionalContentMD5, transactionalContentCrc64: options.transactionalContentCrc64, cpkInfo: options.customerProvidedKey, encryptionScope: options.encryptionScope, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_19 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_19.message }); throw e_19; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * The Stage Block From URL operation creates a new block to be committed as part * of a blob where the contents are read from a URL. * This API is available starting in version 2018-03-28. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/put-block-from-url * * @param {string} blockId A 64-byte value that is base64-encoded * @param {string} sourceURL Specifies the URL of the blob. The value * may be a URL of up to 2 KB in length that specifies a blob. * The value should be URL-encoded as it would appear * in a request URI. The source blob must either be public * or must be authenticated via a shared access signature. * If the source blob is public, no authentication is required * to perform the operation. Here are some examples of source object URLs: * - https://myaccount.blob.core.windows.net/mycontainer/myblob * - https://myaccount.blob.core.windows.net/mycontainer/myblob?snapshot= * @param {number} [offset] From which position of the blob to download, >= 0 * @param {number} [count] How much data to be downloaded, > 0. Will download to the end when undefined * @param {BlockBlobStageBlockFromURLOptions} [options={}] Options to the Block Blob Stage Block From URL operation. * @returns {Promise} Response data for the Block Blob Stage Block From URL operation. * @memberof BlockBlobClient */ BlockBlobClient.prototype.stageBlockFromURL = function (blockId, sourceURL, offset, count, options) { if (offset === void 0) { offset = 0; } if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_20; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlockBlobClient-stageBlockFromURL", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); ensureCpkIfSpecified(options.customerProvidedKey, this.isHttps); return [4 /*yield*/, this.blockBlobContext.stageBlockFromURL(blockId, 0, sourceURL, { abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, sourceContentMD5: options.sourceContentMD5, sourceContentCrc64: options.sourceContentCrc64, sourceRange: offset === 0 && !count ? undefined : rangeToString({ offset: offset, count: count }), cpkInfo: options.customerProvidedKey, encryptionScope: options.encryptionScope, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_20 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_20.message }); throw e_20; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Writes a blob by specifying the list of block IDs that make up the blob. * In order to be written as part of a blob, a block must have been successfully written * to the server in a prior {@link stageBlock} operation. You can call {@link commitBlockList} to * update a blob by uploading only those blocks that have changed, then committing the new and existing * blocks together. Any blocks not specified in the block list and permanently deleted. * @see https://docs.microsoft.com/rest/api/storageservices/put-block-list * * @param {string[]} blocks Array of 64-byte value that is base64-encoded * @param {BlockBlobCommitBlockListOptions} [options] Options to the Block Blob Commit Block List operation. * @returns {Promise} Response data for the Block Blob Commit Block List operation. * @memberof BlockBlobClient */ BlockBlobClient.prototype.commitBlockList = function (blocks, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_21; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: options.conditions = options.conditions || {}; _a = createSpan("BlockBlobClient-commitBlockList", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); ensureCpkIfSpecified(options.customerProvidedKey, this.isHttps); return [4 /*yield*/, this.blockBlobContext.commitBlockList({ latest: blocks }, { abortSignal: options.abortSignal, blobHTTPHeaders: options.blobHTTPHeaders, leaseAccessConditions: options.conditions, metadata: options.metadata, modifiedAccessConditions: options.conditions, cpkInfo: options.customerProvidedKey, encryptionScope: options.encryptionScope, tier: toAccessTier(options.tier), spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_21 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_21.message }); throw e_21; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Returns the list of blocks that have been uploaded as part of a block blob * using the specified block list filter. * @see https://docs.microsoft.com/rest/api/storageservices/get-block-list * * @param {BlockListType} listType Specifies whether to return the list of committed blocks, * the list of uncommitted blocks, or both lists together. * @param {BlockBlobGetBlockListOptions} [options] Options to the Block Blob Get Block List operation. * @returns {Promise} Response data for the Block Blob Get Block List operation. * @memberof BlockBlobClient */ BlockBlobClient.prototype.getBlockList = function (listType, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, res, e_22; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlockBlobClient-getBlockList", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.blockBlobContext.getBlockList(listType, { abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, spanOptions: spanOptions })]; case 2: res = _b.sent(); if (!res.committedBlocks) { res.committedBlocks = []; } if (!res.uncommittedBlocks) { res.uncommittedBlocks = []; } return [2 /*return*/, res]; case 3: e_22 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_22.message }); throw e_22; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; // High level functions /** * ONLY AVAILABLE IN BROWSERS. * * Uploads a browser Blob/File/ArrayBuffer/ArrayBufferView object to block blob. * * When buffer length <= 256MB, this method will use 1 upload call to finish the upload. * Otherwise, this method will call {@link stageBlock} to upload blocks, and finally call * {@link commitBlockList} to commit the block list. * * @export * @param {Blob | ArrayBuffer | ArrayBufferView} browserData Blob, File, ArrayBuffer or ArrayBufferView * @param {BlockBlobParallelUploadOptions} [options] Options to upload browser data. * @returns {Promise} Response data for the Blob Upload operation. * @memberof BlockBlobClient */ BlockBlobClient.prototype.uploadBrowserData = function (browserData, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, browserBlob_1, e_23; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlockBlobClient-uploadBrowserData", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); browserBlob_1 = new Blob([browserData]); return [4 /*yield*/, this.uploadSeekableBlob(function (offset, size) { return browserBlob_1.slice(offset, offset + size); }, browserBlob_1.size, tslib.__assign(tslib.__assign({}, options), { tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) }))]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_23 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_23.message }); throw e_23; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * ONLY AVAILABLE IN BROWSERS. * * Uploads a browser {@link Blob} object to block blob. Requires a blobFactory as the data source, * which need to return a {@link Blob} object with the offset and size provided. * * When buffer length <= 256MB, this method will use 1 upload call to finish the upload. * Otherwise, this method will call stageBlock to upload blocks, and finally call commitBlockList * to commit the block list. * * @param {(offset: number, size: number) => Blob} blobFactory * @param {number} size size of the data to upload. * @param {BlockBlobParallelUploadOptions} [options] Options to Upload to Block Blob operation. * @returns {Promise} Response data for the Blob Upload operation. * @memberof BlockBlobClient */ BlockBlobClient.prototype.uploadSeekableBlob = function (blobFactory, size, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, numBlocks_1, blockList_1, blockIDPrefix_1, transferProgress_2, batch, _loop_2, i, e_24; var _this = this; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: if (!options.blockSize) { options.blockSize = 0; } if (options.blockSize < 0 || options.blockSize > BLOCK_BLOB_MAX_STAGE_BLOCK_BYTES) { throw new RangeError("blockSize option must be >= 0 and <= " + BLOCK_BLOB_MAX_STAGE_BLOCK_BYTES); } if (options.maxSingleShotSize !== 0 && !options.maxSingleShotSize) { options.maxSingleShotSize = BLOCK_BLOB_MAX_UPLOAD_BLOB_BYTES; } if (options.maxSingleShotSize < 0 || options.maxSingleShotSize > BLOCK_BLOB_MAX_UPLOAD_BLOB_BYTES) { throw new RangeError("maxSingleShotSize option must be >= 0 and <= " + BLOCK_BLOB_MAX_UPLOAD_BLOB_BYTES); } if (options.blockSize === 0) { if (size > BLOCK_BLOB_MAX_STAGE_BLOCK_BYTES * BLOCK_BLOB_MAX_BLOCKS) { throw new RangeError(size + " is too larger to upload to a block blob."); } if (size > options.maxSingleShotSize) { options.blockSize = Math.ceil(size / BLOCK_BLOB_MAX_BLOCKS); if (options.blockSize < DEFAULT_BLOB_DOWNLOAD_BLOCK_BYTES) { options.blockSize = DEFAULT_BLOB_DOWNLOAD_BLOCK_BYTES; } } } if (!options.blobHTTPHeaders) { options.blobHTTPHeaders = {}; } if (!options.conditions) { options.conditions = {}; } _a = createSpan("BlockBlobClient-UploadSeekableBlob", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 5, 6, 7]); if (!(size <= options.maxSingleShotSize)) return [3 /*break*/, 3]; return [4 /*yield*/, this.upload(blobFactory(0, size), size, tslib.__assign(tslib.__assign({}, options), { tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) }))]; case 2: return [2 /*return*/, _b.sent()]; case 3: numBlocks_1 = Math.floor((size - 1) / options.blockSize) + 1; if (numBlocks_1 > BLOCK_BLOB_MAX_BLOCKS) { throw new RangeError("The buffer's size is too big or the BlockSize is too small;" + ("the number of blocks must be <= " + BLOCK_BLOB_MAX_BLOCKS)); } blockList_1 = []; blockIDPrefix_1 = coreHttp.generateUuid(); transferProgress_2 = 0; batch = new Batch(options.concurrency); _loop_2 = function (i) { batch.addOperation(function () { return tslib.__awaiter(_this, void 0, void 0, function () { var blockID, start, end, contentLength; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: blockID = generateBlockID(blockIDPrefix_1, i); start = options.blockSize * i; end = i === numBlocks_1 - 1 ? size : start + options.blockSize; contentLength = end - start; blockList_1.push(blockID); return [4 /*yield*/, this.stageBlock(blockID, blobFactory(start, contentLength), contentLength, { abortSignal: options.abortSignal, conditions: options.conditions, encryptionScope: options.encryptionScope, tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) })]; case 1: _a.sent(); // Update progress after block is successfully uploaded to server, in case of block trying // TODO: Hook with convenience layer progress event in finer level transferProgress_2 += contentLength; if (options.onProgress) { options.onProgress({ loadedBytes: transferProgress_2 }); } return [2 /*return*/]; } }); }); }); }; for (i = 0; i < numBlocks_1; i++) { _loop_2(i); } return [4 /*yield*/, batch.do()]; case 4: _b.sent(); return [2 /*return*/, this.commitBlockList(blockList_1, tslib.__assign(tslib.__assign({}, options), { tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) }))]; case 5: e_24 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_24.message }); throw e_24; case 6: span.end(); return [7 /*endfinally*/]; case 7: return [2 /*return*/]; } }); }); }; /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * * Uploads a local file in blocks to a block blob. * * When file size <= 256MB, this method will use 1 upload call to finish the upload. * Otherwise, this method will call stageBlock to upload blocks, and finally call commitBlockList * to commit the block list. * * @param {string} filePath Full path of local file * @param {BlockBlobParallelUploadOptions} [options] Options to Upload to Block Blob operation. * @returns {(Promise)} Response data for the Blob Upload operation. * @memberof BlockBlobClient */ BlockBlobClient.prototype.uploadFile = function (filePath, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, size, e_25; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlockBlobClient-uploadFile", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 4, 5, 6]); return [4 /*yield*/, fsStat(filePath)]; case 2: size = (_b.sent()).size; return [4 /*yield*/, this.uploadResetableStream(function (offset, count) { return fs.createReadStream(filePath, { autoClose: true, end: count ? offset + count - 1 : Infinity, start: offset }); }, size, tslib.__assign(tslib.__assign({}, options), { tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) }))]; case 3: return [2 /*return*/, _b.sent()]; case 4: e_25 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_25.message }); throw e_25; case 5: span.end(); return [7 /*endfinally*/]; case 6: return [2 /*return*/]; } }); }); }; /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * * Uploads a Node.js Readable stream into block blob. * * PERFORMANCE IMPROVEMENT TIPS: * * Input stream highWaterMark is better to set a same value with bufferSize * parameter, which will avoid Buffer.concat() operations. * * @param {Readable} stream Node.js Readable stream * @param {number} bufferSize Size of every buffer allocated, also the block size in the uploaded block blob. Default value is 8MB * @param {number} maxConcurrency Max concurrency indicates the max number of buffers that can be allocated, * positive correlation with max uploading concurrency. Default value is 5 * @param {BlockBlobUploadStreamOptions} [options] Options to Upload Stream to Block Blob operation. * @returns {Promise} Response data for the Blob Upload operation. * @memberof BlockBlobClient */ BlockBlobClient.prototype.uploadStream = function (stream, bufferSize, maxConcurrency, options) { if (bufferSize === void 0) { bufferSize = DEFAULT_BLOCK_BUFFER_SIZE_BYTES; } if (maxConcurrency === void 0) { maxConcurrency = 5; } if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, blockNum_1, blockIDPrefix_2, transferProgress_3, blockList_2, scheduler, e_26; var _this = this; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: if (!options.blobHTTPHeaders) { options.blobHTTPHeaders = {}; } if (!options.conditions) { options.conditions = {}; } _a = createSpan("BlockBlobClient-uploadStream", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 4, 5, 6]); blockNum_1 = 0; blockIDPrefix_2 = coreHttp.generateUuid(); transferProgress_3 = 0; blockList_2 = []; scheduler = new BufferScheduler(stream, bufferSize, maxConcurrency, function (buffer) { return tslib.__awaiter(_this, void 0, void 0, function () { var blockID; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: blockID = generateBlockID(blockIDPrefix_2, blockNum_1); blockList_2.push(blockID); blockNum_1++; return [4 /*yield*/, this.stageBlock(blockID, buffer, buffer.length, { conditions: options.conditions, encryptionScope: options.encryptionScope, tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) })]; case 1: _a.sent(); // Update progress after block is successfully uploaded to server, in case of block trying transferProgress_3 += buffer.length; if (options.onProgress) { options.onProgress({ loadedBytes: transferProgress_3 }); } return [2 /*return*/]; } }); }); }, // concurrency should set a smaller value than maxConcurrency, which is helpful to // reduce the possibility when a outgoing handler waits for stream data, in // this situation, outgoing handlers are blocked. // Outgoing queue shouldn't be empty. Math.ceil((maxConcurrency / 4) * 3)); return [4 /*yield*/, scheduler.do()]; case 2: _b.sent(); return [4 /*yield*/, this.commitBlockList(blockList_2, tslib.__assign(tslib.__assign({}, options), { tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) }))]; case 3: return [2 /*return*/, _b.sent()]; case 4: e_26 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_26.message }); throw e_26; case 5: span.end(); return [7 /*endfinally*/]; case 6: return [2 /*return*/]; } }); }); }; /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * * Accepts a Node.js Readable stream factory, and uploads in blocks to a block blob. * The Readable stream factory must returns a Node.js Readable stream starting from the offset defined. The offset * is the offset in the block blob to be uploaded. * * When buffer length <= 256MB, this method will use 1 upload call to finish the upload. * Otherwise, this method will call {@link stageBlock} to upload blocks, and finally call {@link commitBlockList} * to commit the block list. * * @export * @param {(offset: number) => NodeJS.ReadableStream} streamFactory Returns a Node.js Readable stream starting * from the offset defined * @param {number} size Size of the block blob * @param {BlockBlobParallelUploadOptions} [options] Options to Upload to Block Blob operation. * @returns {(Promise)} Response data for the Blob Upload operation. * @memberof BlockBlobClient */ BlockBlobClient.prototype.uploadResetableStream = function (streamFactory, size, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, numBlocks_2, blockList_3, blockIDPrefix_3, transferProgress_4, batch, _loop_3, i, e_27; var _this = this; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: if (!options.blockSize) { options.blockSize = 0; } if (options.blockSize < 0 || options.blockSize > BLOCK_BLOB_MAX_STAGE_BLOCK_BYTES) { throw new RangeError("blockSize option must be >= 0 and <= " + BLOCK_BLOB_MAX_STAGE_BLOCK_BYTES); } if (options.maxSingleShotSize !== 0 && !options.maxSingleShotSize) { options.maxSingleShotSize = BLOCK_BLOB_MAX_UPLOAD_BLOB_BYTES; } if (options.maxSingleShotSize < 0 || options.maxSingleShotSize > BLOCK_BLOB_MAX_UPLOAD_BLOB_BYTES) { throw new RangeError("maxSingleShotSize option must be >= 0 and <= " + BLOCK_BLOB_MAX_UPLOAD_BLOB_BYTES); } if (options.blockSize === 0) { if (size > BLOCK_BLOB_MAX_BLOCKS * BLOCK_BLOB_MAX_STAGE_BLOCK_BYTES) { throw new RangeError(size + " is too larger to upload to a block blob."); } if (size > options.maxSingleShotSize) { options.blockSize = Math.ceil(size / BLOCK_BLOB_MAX_BLOCKS); if (options.blockSize < DEFAULT_BLOB_DOWNLOAD_BLOCK_BYTES) { options.blockSize = DEFAULT_BLOB_DOWNLOAD_BLOCK_BYTES; } } } if (!options.blobHTTPHeaders) { options.blobHTTPHeaders = {}; } if (!options.conditions) { options.conditions = {}; } _a = createSpan("BlockBlobClient-uploadResetableStream", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 6, 7, 8]); if (!(size <= options.maxSingleShotSize)) return [3 /*break*/, 3]; return [4 /*yield*/, this.upload(function () { return streamFactory(0); }, size, tslib.__assign(tslib.__assign({}, options), { tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) }))]; case 2: return [2 /*return*/, _b.sent()]; case 3: numBlocks_2 = Math.floor((size - 1) / options.blockSize) + 1; if (numBlocks_2 > BLOCK_BLOB_MAX_BLOCKS) { throw new RangeError("The buffer's size is too big or the BlockSize is too small;" + ("the number of blocks must be <= " + BLOCK_BLOB_MAX_BLOCKS)); } blockList_3 = []; blockIDPrefix_3 = coreHttp.generateUuid(); transferProgress_4 = 0; batch = new Batch(options.concurrency); _loop_3 = function (i) { batch.addOperation(function () { return tslib.__awaiter(_this, void 0, void 0, function () { var blockID, start, end, contentLength; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: blockID = generateBlockID(blockIDPrefix_3, i); start = options.blockSize * i; end = i === numBlocks_2 - 1 ? size : start + options.blockSize; contentLength = end - start; blockList_3.push(blockID); return [4 /*yield*/, this.stageBlock(blockID, function () { return streamFactory(start, contentLength); }, contentLength, { abortSignal: options.abortSignal, conditions: options.conditions, encryptionScope: options.encryptionScope, tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) })]; case 1: _a.sent(); // Update progress after block is successfully uploaded to server, in case of block trying transferProgress_4 += contentLength; if (options.onProgress) { options.onProgress({ loadedBytes: transferProgress_4 }); } return [2 /*return*/]; } }); }); }); }; for (i = 0; i < numBlocks_2; i++) { _loop_3(i); } return [4 /*yield*/, batch.do()]; case 4: _b.sent(); return [4 /*yield*/, this.commitBlockList(blockList_3, tslib.__assign(tslib.__assign({}, options), { tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) }))]; case 5: return [2 /*return*/, _b.sent()]; case 6: e_27 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_27.message }); throw e_27; case 7: span.end(); return [7 /*endfinally*/]; case 8: return [2 /*return*/]; } }); }); }; return BlockBlobClient; }(BlobClient)); /** * PageBlobClient defines a set of operations applicable to page blobs. * * @export * @class PageBlobClient * @extends {BlobClient} */ var PageBlobClient = /** @class */ (function (_super) { tslib.__extends(PageBlobClient, _super); function PageBlobClient(urlOrConnectionString, credentialOrPipelineOrContainerName, blobNameOrOptions, options) { var _this = this; // In TypeScript we cannot simply pass all parameters to super() like below so have to duplicate the code instead. // super(s, credentialOrPipelineOrContainerNameOrOptions, blobNameOrOptions, options); var pipeline; var url; options = options || {}; if (credentialOrPipelineOrContainerName instanceof Pipeline) { // (url: string, pipeline: Pipeline) url = urlOrConnectionString; pipeline = credentialOrPipelineOrContainerName; } else if ((coreHttp.isNode && credentialOrPipelineOrContainerName instanceof StorageSharedKeyCredential) || credentialOrPipelineOrContainerName instanceof AnonymousCredential || coreHttp.isTokenCredential(credentialOrPipelineOrContainerName)) { // (url: string, credential?: StorageSharedKeyCredential | AnonymousCredential | TokenCredential, options?: StoragePipelineOptions) url = urlOrConnectionString; options = blobNameOrOptions; pipeline = newPipeline(credentialOrPipelineOrContainerName, options); } else if (!credentialOrPipelineOrContainerName && typeof credentialOrPipelineOrContainerName !== "string") { // (url: string, credential?: StorageSharedKeyCredential | AnonymousCredential | TokenCredential, options?: StoragePipelineOptions) // The second parameter is undefined. Use anonymous credential. url = urlOrConnectionString; pipeline = newPipeline(new AnonymousCredential(), options); } else if (credentialOrPipelineOrContainerName && typeof credentialOrPipelineOrContainerName === "string" && blobNameOrOptions && typeof blobNameOrOptions === "string") { // (connectionString: string, containerName: string, blobName: string, options?: StoragePipelineOptions) var containerName = credentialOrPipelineOrContainerName; var blobName = blobNameOrOptions; var extractedCreds = extractConnectionStringParts(urlOrConnectionString); if (extractedCreds.kind === "AccountConnString") { { var sharedKeyCredential = new StorageSharedKeyCredential(extractedCreds.accountName, extractedCreds.accountKey); url = appendToURLPath(appendToURLPath(extractedCreds.url, encodeURIComponent(containerName)), encodeURIComponent(blobName)); options.proxyOptions = coreHttp.getDefaultProxySettings(extractedCreds.proxyUri); pipeline = newPipeline(sharedKeyCredential, options); } } else if (extractedCreds.kind === "SASConnString") { url = appendToURLPath(appendToURLPath(extractedCreds.url, encodeURIComponent(containerName)), encodeURIComponent(blobName)) + "?" + extractedCreds.accountSas; pipeline = newPipeline(new AnonymousCredential(), options); } else { throw new Error("Connection string must be either an Account connection string or a SAS connection string"); } } else { throw new Error("Expecting non-empty strings for containerName and blobName parameters"); } _this = _super.call(this, url, pipeline) || this; _this.pageBlobContext = new PageBlob(_this.storageClientContext); return _this; } /** * Creates a new PageBlobClient object identical to the source but with the * specified snapshot timestamp. * Provide "" will remove the snapshot and return a Client to the base blob. * * @param {string} snapshot The snapshot timestamp. * @returns {PageBlobClient} A new PageBlobClient object identical to the source but with the specified snapshot timestamp. * @memberof PageBlobClient */ PageBlobClient.prototype.withSnapshot = function (snapshot) { return new PageBlobClient(setURLParameter(this.url, URLConstants.Parameters.SNAPSHOT, snapshot.length === 0 ? undefined : snapshot), this.pipeline); }; /** * Creates a page blob of the specified length. Call uploadPages to upload data * data to a page blob. * @see https://docs.microsoft.com/rest/api/storageservices/put-blob * * @param {number} size size of the page blob. * @param {PageBlobCreateOptions} [options] Options to the Page Blob Create operation. * @returns {Promise} Response data for the Page Blob Create operation. * @memberof PageBlobClient */ PageBlobClient.prototype.create = function (size, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_28; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: options.conditions = options.conditions || {}; _a = createSpan("PageBlobClient-create", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); ensureCpkIfSpecified(options.customerProvidedKey, this.isHttps); return [4 /*yield*/, this.pageBlobContext.create(0, size, { abortSignal: options.abortSignal, blobHTTPHeaders: options.blobHTTPHeaders, blobSequenceNumber: options.blobSequenceNumber, leaseAccessConditions: options.conditions, metadata: options.metadata, modifiedAccessConditions: options.conditions, cpkInfo: options.customerProvidedKey, encryptionScope: options.encryptionScope, tier: toAccessTier(options.tier), spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_28 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_28.message }); throw e_28; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Writes 1 or more pages to the page blob. The start and end offsets must be a multiple of 512. * @see https://docs.microsoft.com/rest/api/storageservices/put-page * * @param {HttpRequestBody} body Data to upload * @param {number} offset Offset of destination page blob * @param {number} count Content length of the body, also number of bytes to be uploaded * @param {PageBlobUploadPagesOptions} [options] Options to the Page Blob Upload Pages operation. * @returns {Promise} Response data for the Page Blob Upload Pages operation. * @memberof PageBlobClient */ PageBlobClient.prototype.uploadPages = function (body, offset, count, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_29; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: options.conditions = options.conditions || {}; _a = createSpan("PageBlobClient-uploadPages", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); ensureCpkIfSpecified(options.customerProvidedKey, this.isHttps); return [4 /*yield*/, this.pageBlobContext.uploadPages(body, count, { abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, onUploadProgress: options.onProgress, range: rangeToString({ offset: offset, count: count }), sequenceNumberAccessConditions: options.conditions, transactionalContentMD5: options.transactionalContentMD5, transactionalContentCrc64: options.transactionalContentCrc64, cpkInfo: options.customerProvidedKey, encryptionScope: options.encryptionScope, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_29 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_29.message }); throw e_29; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * The Upload Pages operation writes a range of pages to a page blob where the * contents are read from a URL. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/put-page-from-url * * @param {string} sourceURL Specify a URL to the copy source, Shared Access Signature(SAS) maybe needed for authentication * @param {number} sourceOffset The source offset to copy from. Pass 0 to copy from the beginning of source page blob * @param {number} destOffset Offset of destination page blob * @param {number} count Number of bytes to be uploaded from source page blob * @param {PageBlobUploadPagesFromURLOptions} [options={}] * @returns {Promise} * @memberof PageBlobClient */ PageBlobClient.prototype.uploadPagesFromURL = function (sourceURL, sourceOffset, destOffset, count, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_30; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: options.conditions = options.conditions || {}; options.sourceConditions = options.sourceConditions || {}; _a = createSpan("PageBlobClient-uploadPagesFromURL", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); ensureCpkIfSpecified(options.customerProvidedKey, this.isHttps); return [4 /*yield*/, this.pageBlobContext.uploadPagesFromURL(sourceURL, rangeToString({ offset: sourceOffset, count: count }), 0, rangeToString({ offset: destOffset, count: count }), { abortSignal: options.abortSignal, sourceContentMD5: options.sourceContentMD5, sourceContentCrc64: options.sourceContentCrc64, leaseAccessConditions: options.conditions, sequenceNumberAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, sourceModifiedAccessConditions: { sourceIfMatch: options.sourceConditions.ifMatch, sourceIfModifiedSince: options.sourceConditions.ifModifiedSince, sourceIfNoneMatch: options.sourceConditions.ifNoneMatch, sourceIfUnmodifiedSince: options.sourceConditions.ifUnmodifiedSince }, cpkInfo: options.customerProvidedKey, encryptionScope: options.encryptionScope, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_30 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_30.message }); throw e_30; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Frees the specified pages from the page blob. * @see https://docs.microsoft.com/rest/api/storageservices/put-page * * @param {number} [offset] Starting byte position of the pages to clear. * @param {number} [count] Number of bytes to clear. * @param {PageBlobClearPagesOptions} [options] Options to the Page Blob Clear Pages operation. * @returns {Promise} Response data for the Page Blob Clear Pages operation. * @memberof PageBlobClient */ PageBlobClient.prototype.clearPages = function (offset, count, options) { if (offset === void 0) { offset = 0; } if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_31; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: options.conditions = options.conditions || {}; _a = createSpan("PageBlobClient-clearPages", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.pageBlobContext.clearPages(0, { abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, range: rangeToString({ offset: offset, count: count }), sequenceNumberAccessConditions: options.conditions, cpkInfo: options.customerProvidedKey, encryptionScope: options.encryptionScope, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_31 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_31.message }); throw e_31; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Returns the list of valid page ranges for a page blob or snapshot of a page blob. * @see https://docs.microsoft.com/rest/api/storageservices/get-page-ranges * * @param {number} [offset] Starting byte position of the page ranges. * @param {number} [count] Number of bytes to get. * @param {PageBlobGetPageRangesOptions} [options] Options to the Page Blob Get Ranges operation. * @returns {Promise} Response data for the Page Blob Get Ranges operation. * @memberof PageBlobClient */ PageBlobClient.prototype.getPageRanges = function (offset, count, options) { if (offset === void 0) { offset = 0; } if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_32; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: options.conditions = options.conditions || {}; _a = createSpan("PageBlobClient-getPageRanges", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.pageBlobContext .getPageRanges({ abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, range: rangeToString({ offset: offset, count: count }), spanOptions: spanOptions }) .then(rangeResponseFromModel)]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_32 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_32.message }); throw e_32; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Gets the collection of page ranges that differ between a specified snapshot and this page blob. * @see https://docs.microsoft.com/rest/api/storageservices/get-page-ranges * * @param {number} offset Starting byte position of the page blob * @param {number} count Number of bytes to get ranges diff. * @param {string} prevSnapshot Timestamp of snapshot to retrive the difference. * @param {PageBlobGetPageRangesDiffOptions} [options] Options to the Page Blob Get Page Ranges Diff operation. * @returns {Promise} Response data for the Page Blob Get Page Range Diff operation. * @memberof PageBlobClient */ PageBlobClient.prototype.getPageRangesDiff = function (offset, count, prevSnapshot, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_33; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: options.conditions = options.conditions || {}; _a = createSpan("PageBlobClient-getPageRangesDiff", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.pageBlobContext .getPageRangesDiff({ abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, prevsnapshot: prevSnapshot, range: rangeToString({ offset: offset, count: count }), spanOptions: spanOptions }) .then(rangeResponseFromModel)]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_33 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_33.message }); throw e_33; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Gets the collection of page ranges that differ between a specified snapshot and this page blob for managed disks. * @see https://docs.microsoft.com/rest/api/storageservices/get-page-ranges * * @param {number} offset Starting byte position of the page blob * @param {number} count Number of bytes to get ranges diff. * @param {string} prevSnapshotUrl URL of snapshot to retrive the difference. * @param {PageBlobGetPageRangesDiffOptions} [options] Options to the Page Blob Get Page Ranges Diff operation. * @returns {Promise} Response data for the Page Blob Get Page Range Diff operation. * @memberof PageBlobClient */ PageBlobClient.prototype.getPageRangesDiffForManagedDisks = function (offset, count, prevSnapshotUrl, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_34; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: options.conditions = options.conditions || {}; _a = createSpan("PageBlobClient-GetPageRangesDiffForManagedDisks", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.pageBlobContext .getPageRangesDiff({ abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, prevSnapshotUrl: prevSnapshotUrl, range: rangeToString({ offset: offset, count: count }), spanOptions: spanOptions }) .then(rangeResponseFromModel)]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_34 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_34.message }); throw e_34; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Resizes the page blob to the specified size (which must be a multiple of 512). * @see https://docs.microsoft.com/rest/api/storageservices/set-blob-properties * * @param {number} size Target size * @param {PageBlobResizeOptions} [options] Options to the Page Blob Resize operation. * @returns {Promise} Response data for the Page Blob Resize operation. * @memberof PageBlobClient */ PageBlobClient.prototype.resize = function (size, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_35; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: options.conditions = options.conditions || {}; _a = createSpan("PageBlobClient-resize", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.pageBlobContext.resize(size, { abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, encryptionScope: options.encryptionScope, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_35 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_35.message }); throw e_35; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Sets a page blob's sequence number. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/set-blob-properties * * @param {SequenceNumberActionType} sequenceNumberAction Indicates how the service should modify the blob's sequence number. * @param {number} [sequenceNumber] Required if sequenceNumberAction is max or update * @param {PageBlobUpdateSequenceNumberOptions} [options] Options to the Page Blob Update Sequence Number operation. * @returns {Promise} Response data for the Page Blob Update Sequence Number operation. * @memberof PageBlobClient */ PageBlobClient.prototype.updateSequenceNumber = function (sequenceNumberAction, sequenceNumber, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_36; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: options.conditions = options.conditions || {}; _a = createSpan("PageBlobClient-updateSequenceNumber", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.pageBlobContext.updateSequenceNumber(sequenceNumberAction, { abortSignal: options.abortSignal, blobSequenceNumber: sequenceNumber, leaseAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_36 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_36.message }); throw e_36; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Begins an operation to start an incremental copy from one page blob's snapshot to this page blob. * The snapshot is copied such that only the differential changes between the previously * copied snapshot are transferred to the destination. * The copied snapshots are complete copies of the original snapshot and can be read or copied from as usual. * @see https://docs.microsoft.com/rest/api/storageservices/incremental-copy-blob * @see https://docs.microsoft.com/en-us/azure/virtual-machines/windows/incremental-snapshots * * @param {string} copySource Specifies the name of the source page blob snapshot. For example, * https://myaccount.blob.core.windows.net/mycontainer/myblob?snapshot= * @param {PageBlobStartCopyIncrementalOptions} [options] Options to the Page Blob Copy Incremental operation. * @returns {Promise} Response data for the Page Blob Copy Incremental operation. * @memberof PageBlobClient */ PageBlobClient.prototype.startCopyIncremental = function (copySource, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_37; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("PageBlobClient-startCopyIncremental", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.pageBlobContext.copyIncremental(copySource, { abortSignal: options.abortSignal, modifiedAccessConditions: options.conditions, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_37 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_37.message }); throw e_37; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; return PageBlobClient; }(BlobClient)); /** * A client that manages leases for a {@link ContainerClient} or a {@link BlobClient}. * * @export * @class BlobLeaseClient */ var BlobLeaseClient = /** @class */ (function () { /** * Creates an instance of BlobLeaseClient. * @param {(ContainerClient | BlobClient)} client The client to make the lease operation requests. * @param {string} leaseId Initial proposed lease id. * @memberof BlobLeaseClient */ function BlobLeaseClient(client, leaseId) { var clientContext = new StorageClientContext(client.url, client.pipeline.toServiceClientOptions()); this._url = client.url; if (client instanceof ContainerClient) { this._containerOrBlobOperation = new Container(clientContext); } else { this._containerOrBlobOperation = new Blob$1(clientContext); } if (!leaseId) { leaseId = coreHttp.generateUuid(); } this._leaseId = leaseId; } Object.defineProperty(BlobLeaseClient.prototype, "leaseId", { /** * Gets the lease Id. * * @readonly * @memberof BlobLeaseClient * @type {string} */ get: function () { return this._leaseId; }, enumerable: true, configurable: true }); Object.defineProperty(BlobLeaseClient.prototype, "url", { /** * Gets the url. * * @readonly * @memberof BlobLeaseClient * @type {string} */ get: function () { return this._url; }, enumerable: true, configurable: true }); /** * Establishes and manages a lock on a container for delete operations, or on a blob * for write and delete operations. * The lock duration can be 15 to 60 seconds, or can be infinite. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/lease-container * and * @see https://docs.microsoft.com/en-us/rest/api/storageservices/lease-blob * * @param {number} duration Must be between 15 to 60 seconds, or infinite (-1) * @param {LeaseOperationOptions} [options={}] option to configure lease management operations. * @returns {Promise} Response data for acquire lease operation. * @memberof BlobLeaseClient */ BlobLeaseClient.prototype.acquireLease = function (duration, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_38; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobLeaseClient-acquireLease", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this._containerOrBlobOperation.acquireLease({ abortSignal: options.abortSignal, duration: duration, modifiedAccessConditions: options.conditions, proposedLeaseId: this._leaseId, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_38 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_38.message }); throw e_38; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * To change the ID of the lease. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/lease-container * and * @see https://docs.microsoft.com/en-us/rest/api/storageservices/lease-blob * * @param {string} proposedLeaseId the proposed new lease Id. * @param {LeaseOperationOptions} [options={}] option to configure lease management operations. * @returns {Promise} Response data for change lease operation. * @memberof BlobLeaseClient */ BlobLeaseClient.prototype.changeLease = function (proposedLeaseId, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, response, e_39; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobLeaseClient-changeLease", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this._containerOrBlobOperation.changeLease(this._leaseId, proposedLeaseId, { abortSignal: options.abortSignal, modifiedAccessConditions: options.conditions, spanOptions: spanOptions })]; case 2: response = _b.sent(); this._leaseId = proposedLeaseId; return [2 /*return*/, response]; case 3: e_39 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_39.message }); throw e_39; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * To free the lease if it is no longer needed so that another client may * immediately acquire a lease against the container or the blob. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/lease-container * and * @see https://docs.microsoft.com/en-us/rest/api/storageservices/lease-blob * * @param {LeaseOperationOptions} [options={}] option to configure lease management operations. * @returns {Promise} Response data for release lease operation. * @memberof BlobLeaseClient */ BlobLeaseClient.prototype.releaseLease = function (options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_40; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobLeaseClient-releaseLease", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this._containerOrBlobOperation.releaseLease(this._leaseId, { abortSignal: options.abortSignal, modifiedAccessConditions: options.conditions, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_40 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_40.message }); throw e_40; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * To renew the lease. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/lease-container * and * @see https://docs.microsoft.com/en-us/rest/api/storageservices/lease-blob * * @param {LeaseOperationOptions} [options={}] Optional option to configure lease management operations. * @returns {Promise} Response data for renew lease operation. * @memberof BlobLeaseClient */ BlobLeaseClient.prototype.renewLease = function (options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_41; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobLeaseClient-renewLease", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this._containerOrBlobOperation.renewLease(this._leaseId, { abortSignal: options.abortSignal, modifiedAccessConditions: options.conditions, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_41 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_41.message }); throw e_41; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * To end the lease but ensure that another client cannot acquire a new lease * until the current lease period has expired. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/lease-container * and * @see https://docs.microsoft.com/en-us/rest/api/storageservices/lease-blob * * @static * @param {number} breakPeriod Break period * @param {LeaseOperationOptions} [options={}] Optional options to configure lease management operations. * @returns {Promise} Response data for break lease operation. * @memberof BlobLeaseClient */ BlobLeaseClient.prototype.breakLease = function (breakPeriod, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, operationOptions, e_42; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobLeaseClient-breakLease", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); operationOptions = { abortSignal: options.abortSignal, breakPeriod: breakPeriod, modifiedAccessConditions: options.conditions, spanOptions: spanOptions }; return [4 /*yield*/, this._containerOrBlobOperation.breakLease(operationOptions)]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_42 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_42.message }); throw e_42; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; return BlobLeaseClient; }()); /** * A ContainerClient represents a URL to the Azure Storage container allowing you to manipulate its blobs. * * @export * @class ContainerClient */ var ContainerClient = /** @class */ (function (_super) { tslib.__extends(ContainerClient, _super); function ContainerClient(urlOrConnectionString, credentialOrPipelineOrContainerName, options) { var _this = this; var pipeline; var url; options = options || {}; if (credentialOrPipelineOrContainerName instanceof Pipeline) { // (url: string, pipeline: Pipeline) url = urlOrConnectionString; pipeline = credentialOrPipelineOrContainerName; } else if ((coreHttp.isNode && credentialOrPipelineOrContainerName instanceof StorageSharedKeyCredential) || credentialOrPipelineOrContainerName instanceof AnonymousCredential || coreHttp.isTokenCredential(credentialOrPipelineOrContainerName)) { // (url: string, credential?: StorageSharedKeyCredential | AnonymousCredential | TokenCredential, options?: StoragePipelineOptions) url = urlOrConnectionString; pipeline = newPipeline(credentialOrPipelineOrContainerName, options); } else if (!credentialOrPipelineOrContainerName && typeof credentialOrPipelineOrContainerName !== "string") { // (url: string, credential?: StorageSharedKeyCredential | AnonymousCredential | TokenCredential, options?: StoragePipelineOptions) // The second parameter is undefined. Use anonymous credential. url = urlOrConnectionString; pipeline = newPipeline(new AnonymousCredential(), options); } else if (credentialOrPipelineOrContainerName && typeof credentialOrPipelineOrContainerName === "string") { // (connectionString: string, containerName: string, blobName: string, options?: StoragePipelineOptions) var containerName = credentialOrPipelineOrContainerName; var extractedCreds = extractConnectionStringParts(urlOrConnectionString); if (extractedCreds.kind === "AccountConnString") { { var sharedKeyCredential = new StorageSharedKeyCredential(extractedCreds.accountName, extractedCreds.accountKey); url = appendToURLPath(extractedCreds.url, encodeURIComponent(containerName)); options.proxyOptions = coreHttp.getDefaultProxySettings(extractedCreds.proxyUri); pipeline = newPipeline(sharedKeyCredential, options); } } else if (extractedCreds.kind === "SASConnString") { url = appendToURLPath(extractedCreds.url, encodeURIComponent(containerName)) + "?" + extractedCreds.accountSas; pipeline = newPipeline(new AnonymousCredential(), options); } else { throw new Error("Connection string must be either an Account connection string or a SAS connection string"); } } else { throw new Error("Expecting non-empty strings for containerName parameter"); } _this = _super.call(this, url, pipeline) || this; _this._containerName = _this.getContainerNameFromUrl(); _this.containerContext = new Container(_this.storageClientContext); return _this; } Object.defineProperty(ContainerClient.prototype, "containerName", { /** * The name of the container. */ get: function () { return this._containerName; }, enumerable: true, configurable: true }); /** * Creates a new container under the specified account. If the container with * the same name already exists, the operation fails. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/create-container * * @param {ContainerCreateOptions} [options] Options to Container Create operation. * @returns {Promise} * @memberof ContainerClient * * Example usage: * * ```js * const containerClient = blobServiceClient.getContainerClient(""); * const createContainerResponse = await containerClient.create(); * console.log("Container was created successfully", createContainerResponse.requestId); * ``` */ ContainerClient.prototype.create = function (options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_43; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("ContainerClient-create", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.containerContext.create(tslib.__assign(tslib.__assign({}, options), { spanOptions: spanOptions }))]; case 2: // Spread operator in destructuring assignments, // this will filter out unwanted properties from the response object into result object return [2 /*return*/, _b.sent()]; case 3: e_43 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_43.message }); throw e_43; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Returns true if the Azrue container resource represented by this client exists; false otherwise. * * NOTE: use this function with care since an existing container might be deleted by other clients or * applications. Vice versa new containers with the same name might be added by other clients or * applications after this function completes. * * @param {ContainerExistsOptions} [options={}] * @returns {Promise} * @memberof ContainerClient */ ContainerClient.prototype.exists = function (options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_44; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("ContainerClient-exists", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.getProperties({ abortSignal: options.abortSignal, tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) })]; case 2: _b.sent(); return [2 /*return*/, true]; case 3: e_44 = _b.sent(); if (e_44.statusCode === 404) { span.setStatus({ code: api.CanonicalCode.NOT_FOUND, message: "Expected exception when checking container existence" }); return [2 /*return*/, false]; } span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_44.message }); throw e_44; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Creates a {@link BlobClient} * * @param {string} blobName A blob name * @returns {BlobClient} A new BlobClient object for the given blob name. * @memberof ContainerClient */ ContainerClient.prototype.getBlobClient = function (blobName) { return new BlobClient(appendToURLPath(this.url, encodeURIComponent(blobName)), this.pipeline); }; /** * Creates an {@link AppendBlobClient} * * @param {string} blobName An append blob name * @returns {AppendBlobClient} * @memberof ContainerClient */ ContainerClient.prototype.getAppendBlobClient = function (blobName) { return new AppendBlobClient(appendToURLPath(this.url, encodeURIComponent(blobName)), this.pipeline); }; /** * Creates a {@link BlockBlobClient} * * @param {string} blobName A block blob name * @returns {BlockBlobClient} * @memberof ContainerClient * * Example usage: * * ```js * const content = "Hello world!"; * * const blockBlobClient = containerClient.getBlockBlobClient(""); * const uploadBlobResponse = await blockBlobClient.upload(content, content.length); * ``` */ ContainerClient.prototype.getBlockBlobClient = function (blobName) { return new BlockBlobClient(appendToURLPath(this.url, encodeURIComponent(blobName)), this.pipeline); }; /** * Creates a {@link PageBlobClient} * * @param {string} blobName A page blob name * @returns {PageBlobClient} * @memberof ContainerClient */ ContainerClient.prototype.getPageBlobClient = function (blobName) { return new PageBlobClient(appendToURLPath(this.url, encodeURIComponent(blobName)), this.pipeline); }; /** * Returns all user-defined metadata and system properties for the specified * container. The data returned does not include the container's list of blobs. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/get-container-properties * * WARNING: The `metadata` object returned in the response will have its keys in lowercase, even if * they originally contained uppercase characters. This differs from the metadata keys returned by * the `listContainers` method of {@link BlobServiceClient} using the `includeMetadata` option, which * will retain their original casing. * * @param {ContainerGetPropertiesOptions} [options] Options to Container Get Properties operation. * @returns {Promise} * @memberof ContainerClient */ ContainerClient.prototype.getProperties = function (options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_45; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: if (!options.conditions) { options.conditions = {}; } _a = createSpan("ContainerClient-getProperties", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.containerContext.getProperties(tslib.__assign(tslib.__assign({ abortSignal: options.abortSignal }, options.conditions), { spanOptions: spanOptions }))]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_45 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_45.message }); throw e_45; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Marks the specified container for deletion. The container and any blobs * contained within it are later deleted during garbage collection. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/delete-container * * @param {ContainerDeleteMethodOptions} [options] Options to Container Delete operation. * @returns {Promise} * @memberof ContainerClient */ ContainerClient.prototype.delete = function (options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_46; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: if (!options.conditions) { options.conditions = {}; } if ((options.conditions.ifMatch && options.conditions.ifMatch !== ETagNone) || (options.conditions.ifNoneMatch && options.conditions.ifNoneMatch !== ETagNone)) { throw new RangeError("the IfMatch and IfNoneMatch access conditions must have their default\ values because they are ignored by the service"); } _a = createSpan("ContainerClient-delete", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.containerContext.deleteMethod({ abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_46 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_46.message }); throw e_46; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Sets one or more user-defined name-value pairs for the specified container. * * If no option provided, or no metadata defined in the parameter, the container * metadata will be removed. * * @see https://docs.microsoft.com/en-us/rest/api/storageservices/set-container-metadata * * @param {Metadata} [metadata] Replace existing metadata with this value. * If no value provided the existing metadata will be removed. * @param {ContainerSetMetadataOptions} [options] Options to Container Set Metadata operation. * @returns {Promise} * @memberof ContainerClient */ ContainerClient.prototype.setMetadata = function (metadata, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_47; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: if (!options.conditions) { options.conditions = {}; } if (options.conditions.ifUnmodifiedSince || (options.conditions.ifMatch && options.conditions.ifMatch !== ETagNone) || (options.conditions.ifNoneMatch && options.conditions.ifNoneMatch !== ETagNone)) { throw new RangeError("the IfUnmodifiedSince, IfMatch, and IfNoneMatch must have their default values\ because they are ignored by the blob service"); } _a = createSpan("ContainerClient-setMetadata", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.containerContext.setMetadata({ abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, metadata: metadata, modifiedAccessConditions: options.conditions, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_47 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_47.message }); throw e_47; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Gets the permissions for the specified container. The permissions indicate * whether container data may be accessed publicly. * * WARNING: JavaScript Date will potentially lose precision when parsing startsOn and expiresOn strings. * For example, new Date("2018-12-31T03:44:23.8827891Z").toISOString() will get "2018-12-31T03:44:23.882Z". * * @see https://docs.microsoft.com/en-us/rest/api/storageservices/get-container-acl * * @param {ContainerGetAccessPolicyOptions} [options] Options to Container Get Access Policy operation. * @returns {Promise} * @memberof ContainerClient */ ContainerClient.prototype.getAccessPolicy = function (options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, response, res, _i, response_1, identifier, accessPolicy, e_48; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: if (!options.conditions) { options.conditions = {}; } _a = createSpan("ContainerClient-getAccessPolicy", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.containerContext.getAccessPolicy({ abortSignal: options.abortSignal, leaseAccessConditions: options.conditions, spanOptions: spanOptions })]; case 2: response = _b.sent(); res = { _response: response._response, blobPublicAccess: response.blobPublicAccess, date: response.date, etag: response.etag, errorCode: response.errorCode, lastModified: response.lastModified, requestId: response.requestId, clientRequestId: response.clientRequestId, signedIdentifiers: [], version: response.version }; for (_i = 0, response_1 = response; _i < response_1.length; _i++) { identifier = response_1[_i]; accessPolicy = undefined; if (identifier.accessPolicy) { accessPolicy = { permissions: identifier.accessPolicy.permissions }; if (identifier.accessPolicy.expiresOn) { accessPolicy.expiresOn = new Date(identifier.accessPolicy.expiresOn); } if (identifier.accessPolicy.startsOn) { accessPolicy.startsOn = new Date(identifier.accessPolicy.startsOn); } } res.signedIdentifiers.push({ accessPolicy: accessPolicy, id: identifier.id }); } return [2 /*return*/, res]; case 3: e_48 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_48.message }); throw e_48; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Sets the permissions for the specified container. The permissions indicate * whether blobs in a container may be accessed publicly. * * When you set permissions for a container, the existing permissions are replaced. * If no access or containerAcl provided, the existing container ACL will be * removed. * * When you establish a stored access policy on a container, it may take up to 30 seconds to take effect. * During this interval, a shared access signature that is associated with the stored access policy will * fail with status code 403 (Forbidden), until the access policy becomes active. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/set-container-acl * * @param {PublicAccessType} [access] The level of public access to data in the container. * @param {SignedIdentifier[]} [containerAcl] Array of elements each having a unique Id and details of the access policy. * @param {ContainerSetAccessPolicyOptions} [options] Options to Container Set Access Policy operation. * @returns {Promise} * @memberof ContainerClient */ ContainerClient.prototype.setAccessPolicy = function (access, containerAcl, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, acl, _i, _b, identifier, e_49; return tslib.__generator(this, function (_c) { switch (_c.label) { case 0: options.conditions = options.conditions || {}; _a = createSpan("ContainerClient-setAccessPolicy", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _c.label = 1; case 1: _c.trys.push([1, 3, 4, 5]); acl = []; for (_i = 0, _b = containerAcl || []; _i < _b.length; _i++) { identifier = _b[_i]; acl.push({ accessPolicy: { expiresOn: identifier.accessPolicy.expiresOn ? truncatedISO8061Date(identifier.accessPolicy.expiresOn) : "", permissions: identifier.accessPolicy.permissions, startsOn: identifier.accessPolicy.startsOn ? truncatedISO8061Date(identifier.accessPolicy.startsOn) : "" }, id: identifier.id }); } return [4 /*yield*/, this.containerContext.setAccessPolicy({ abortSignal: options.abortSignal, access: access, containerAcl: acl, leaseAccessConditions: options.conditions, modifiedAccessConditions: options.conditions, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _c.sent()]; case 3: e_49 = _c.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_49.message }); throw e_49; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Get a {@link BlobLeaseClient} that manages leases on the container. * * @param {string} [proposeLeaseId] Initial proposed lease Id. * @returns {BlobLeaseClient} A new BlobLeaseClient object for managing leases on the container. * @memberof ContainerClient */ ContainerClient.prototype.getBlobLeaseClient = function (proposeLeaseId) { return new BlobLeaseClient(this, proposeLeaseId); }; /** * Creates a new block blob, or updates the content of an existing block blob. * * Updating an existing block blob overwrites any existing metadata on the blob. * Partial updates are not supported; the content of the existing blob is * overwritten with the new content. To perform a partial update of a block blob's, * use {@link BlockBlobClient.stageBlock} and {@link BlockBlobClient.commitBlockList}. * * This is a non-parallel uploading method, please use {@link BlockBlobClient.uploadFile}, * {@link BlockBlobClient.uploadStream} or {@link BlockBlobClient.uploadBrowserData} for better * performance with concurrency uploading. * * @see https://docs.microsoft.com/rest/api/storageservices/put-blob * * @param {string} blobName Name of the block blob to create or update. * @param {HttpRequestBody} body Blob, string, ArrayBuffer, ArrayBufferView or a function * which returns a new Readable stream whose offset is from data source beginning. * @param {number} contentLength Length of body in bytes. Use Buffer.byteLength() to calculate body length for a * string including non non-Base64/Hex-encoded characters. * @param {BlockBlobUploadOptions} [options] Options to configure the Block Blob Upload operation. * @returns {Promise<{ blockBlobClient: BlockBlobClient; response: BlockBlobUploadResponse }>} Block Blob upload response data and the corresponding BlockBlobClient instance. * @memberof ContainerClient */ ContainerClient.prototype.uploadBlockBlob = function (blobName, body, contentLength, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, blockBlobClient, response, e_50; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("ContainerClient-uploadBlockBlob", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); blockBlobClient = this.getBlockBlobClient(blobName); return [4 /*yield*/, blockBlobClient.upload(body, contentLength, tslib.__assign(tslib.__assign({}, options), { tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) }))]; case 2: response = _b.sent(); return [2 /*return*/, { blockBlobClient: blockBlobClient, response: response }]; case 3: e_50 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_50.message }); throw e_50; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Marks the specified blob or snapshot for deletion. The blob is later deleted * during garbage collection. Note that in order to delete a blob, you must delete * all of its snapshots. You can delete both at the same time with the Delete * Blob operation. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/delete-blob * * @param {string} blobName * @param {BlobDeleteOptions} [options] Options to Blob Delete operation. * @returns {Promise} Block blob deletion response data. * @memberof ContainerClient */ ContainerClient.prototype.deleteBlob = function (blobName, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, blobClient, e_51; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("ContainerClient-deleteBlob", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); blobClient = this.getBlobClient(blobName); return [4 /*yield*/, blobClient.delete(tslib.__assign(tslib.__assign({}, options), { tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) }))]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_51 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_51.message }); throw e_51; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * listBlobFlatSegment returns a single segment of blobs starting from the * specified Marker. Use an empty Marker to start enumeration from the beginning. * After getting a segment, process it, and then call listBlobsFlatSegment again * (passing the the previously-returned Marker) to get the next segment. * @see https://docs.microsoft.com/rest/api/storageservices/list-blobs * * @param {string} [marker] A string value that identifies the portion of the list to be returned with the next list operation. * @param {ContainerListBlobsSegmentOptions} [options] Options to Container List Blob Flat Segment operation. * @returns {Promise} * @memberof ContainerClient */ ContainerClient.prototype.listBlobFlatSegment = function (marker, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_52; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("ContainerClient-listBlobFlatSegment", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.containerContext.listBlobFlatSegment(tslib.__assign(tslib.__assign({ marker: marker }, options), { spanOptions: spanOptions }))]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_52 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_52.message }); throw e_52; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * listBlobHierarchySegment returns a single segment of blobs starting from * the specified Marker. Use an empty Marker to start enumeration from the * beginning. After getting a segment, process it, and then call listBlobsHierarchicalSegment * again (passing the the previously-returned Marker) to get the next segment. * @see https://docs.microsoft.com/rest/api/storageservices/list-blobs * * @param {string} delimiter The charactor or string used to define the virtual hierarchy * @param {string} [marker] A string value that identifies the portion of the list to be returned with the next list operation. * @param {ContainerListBlobsSegmentOptions} [options] Options to Container List Blob Hierarchy Segment operation. * @returns {Promise} * @memberof ContainerClient */ ContainerClient.prototype.listBlobHierarchySegment = function (delimiter, marker, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_53; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("ContainerClient-listBlobHierarchySegment", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.containerContext.listBlobHierarchySegment(delimiter, tslib.__assign(tslib.__assign({ marker: marker }, options), { spanOptions: spanOptions }))]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_53 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_53.message }); throw e_53; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Returns an AsyncIterableIterator for ContainerListBlobFlatSegmentResponse * * @private * @param {string} [marker] A string value that identifies the portion of * the list of blobs to be returned with the next listing operation. The * operation returns the ContinuationToken value within the response body if the * listing operation did not return all blobs remaining to be listed * with the current page. The ContinuationToken value can be used as the value for * the marker parameter in a subsequent call to request the next page of list * items. The marker value is opaque to the client. * @param {ContainerListBlobsSegmentOptions} [options] Options to list blobs operation. * @returns {AsyncIterableIterator} * @memberof ContainerClient */ ContainerClient.prototype.listSegments = function (marker, options) { if (options === void 0) { options = {}; } return tslib.__asyncGenerator(this, arguments, function listSegments_1() { var listBlobsFlatSegmentResponse; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: if (!(!!marker || marker === undefined)) return [3 /*break*/, 7]; _a.label = 1; case 1: return [4 /*yield*/, tslib.__await(this.listBlobFlatSegment(marker, options))]; case 2: listBlobsFlatSegmentResponse = _a.sent(); marker = listBlobsFlatSegmentResponse.continuationToken; return [4 /*yield*/, tslib.__await(listBlobsFlatSegmentResponse)]; case 3: return [4 /*yield*/, tslib.__await.apply(void 0, [_a.sent()])]; case 4: return [4 /*yield*/, _a.sent()]; case 5: _a.sent(); _a.label = 6; case 6: if (marker) return [3 /*break*/, 1]; _a.label = 7; case 7: return [2 /*return*/]; } }); }); }; /** * Returns an AsyncIterableIterator of {@link BlobItem} objects * * @private * @param {ContainerListBlobsSegmentOptions} [options] Options to list blobs operation. * @returns {AsyncIterableIterator} * @memberof ContainerClient */ ContainerClient.prototype.listItems = function (options) { if (options === void 0) { options = {}; } return tslib.__asyncGenerator(this, arguments, function listItems_1() { var marker, _a, _b, listBlobsFlatSegmentResponse, e_54_1; var e_54, _c; return tslib.__generator(this, function (_d) { switch (_d.label) { case 0: _d.trys.push([0, 7, 8, 13]); _a = tslib.__asyncValues(this.listSegments(marker, options)); _d.label = 1; case 1: return [4 /*yield*/, tslib.__await(_a.next())]; case 2: if (!(_b = _d.sent(), !_b.done)) return [3 /*break*/, 6]; listBlobsFlatSegmentResponse = _b.value; return [5 /*yield**/, tslib.__values(tslib.__asyncDelegator(tslib.__asyncValues(listBlobsFlatSegmentResponse.segment.blobItems)))]; case 3: return [4 /*yield*/, tslib.__await.apply(void 0, [_d.sent()])]; case 4: _d.sent(); _d.label = 5; case 5: return [3 /*break*/, 1]; case 6: return [3 /*break*/, 13]; case 7: e_54_1 = _d.sent(); e_54 = { error: e_54_1 }; return [3 /*break*/, 13]; case 8: _d.trys.push([8, , 11, 12]); if (!(_b && !_b.done && (_c = _a.return))) return [3 /*break*/, 10]; return [4 /*yield*/, tslib.__await(_c.call(_a))]; case 9: _d.sent(); _d.label = 10; case 10: return [3 /*break*/, 12]; case 11: if (e_54) throw e_54.error; return [7 /*endfinally*/]; case 12: return [7 /*endfinally*/]; case 13: return [2 /*return*/]; } }); }); }; /** * Returns an async iterable iterator to list all the blobs * under the specified account. * * .byPage() returns an async iterable iterator to list the blobs in pages. * * Example using `for await` syntax: * * ```js * // Get the containerClient before you run these snippets, * // Can be obtained from `blobServiceClient.getContainerClient("");` * let i = 1; * for await (const blob of containerClient.listBlobsFlat()) { * console.log(`Blob ${i++}: ${blob.name}`); * } * ``` * * Example using `iter.next()`: * * ```js * let i = 1; * let iter = containerClient.listBlobsFlat(); * let blobItem = await iter.next(); * while (!blobItem.done) { * console.log(`Blob ${i++}: ${blobItem.value.name}`); * blobItem = await iter.next(); * } * ``` * * Example using `byPage()`: * * ```js * // passing optional maxPageSize in the page settings * let i = 1; * for await (const response of containerClient.listBlobsFlat().byPage({ maxPageSize: 20 })) { * for (const blob of response.segment.blobItems) { * console.log(`Blob ${i++}: ${blob.name}`); * } * } * ``` * * Example using paging with a marker: * * ```js * let i = 1; * let iterator = containerClient.listBlobsFlat().byPage({ maxPageSize: 2 }); * let response = (await iterator.next()).value; * * // Prints 2 blob names * for (const blob of response.segment.blobItems) { * console.log(`Blob ${i++}: ${blob.name}`); * } * * // Gets next marker * let marker = response.continuationToken; * * // Passing next marker as continuationToken * * iterator = containerClient.listBlobsFlat().byPage({ continuationToken: marker, maxPageSize: 10 }); * response = (await iterator.next()).value; * * // Prints 10 blob names * for (const blob of response.segment.blobItems) { * console.log(`Blob ${i++}: ${blob.name}`); * } * ``` * * @param {ContainerListBlobsOptions} [options={}] Options to list blobs. * @returns {PagedAsyncIterableIterator} An asyncIterableIterator that supports paging. * @memberof ContainerClient */ ContainerClient.prototype.listBlobsFlat = function (options) { var _a; var _this = this; if (options === void 0) { options = {}; } var include = []; if (options.includeCopy) { include.push("copy"); } if (options.includeDeleted) { include.push("deleted"); } if (options.includeMetadata) { include.push("metadata"); } if (options.includeSnapshots) { include.push("snapshots"); } if (options.includeUncommitedBlobs) { include.push("uncommittedblobs"); } if (options.prefix === "") { options.prefix = undefined; } var updatedOptions = tslib.__assign(tslib.__assign({}, options), (include.length > 0 ? { include: include } : {})); // AsyncIterableIterator to iterate over blobs var iter = this.listItems(updatedOptions); return _a = { /** * @member {Promise} [next] The next method, part of the iteration protocol */ next: function () { return iter.next(); } }, /** * @member {Symbol} [asyncIterator] The connection to the async iterator, part of the iteration protocol */ _a[Symbol.asyncIterator] = function () { return this; }, /** * @member {Function} [byPage] Return an AsyncIterableIterator that works a page at a time */ _a.byPage = function (settings) { if (settings === void 0) { settings = {}; } return _this.listSegments(settings.continuationToken, tslib.__assign({ maxPageSize: settings.maxPageSize }, updatedOptions)); }, _a; }; /** * Returns an AsyncIterableIterator for ContainerListBlobHierarchySegmentResponse * * @private * @param {string} delimiter The charactor or string used to define the virtual hierarchy * @param {string} [marker] A string value that identifies the portion of * the list of blobs to be returned with the next listing operation. The * operation returns the ContinuationToken value within the response body if the * listing operation did not return all blobs remaining to be listed * with the current page. The ContinuationToken value can be used as the value for * the marker parameter in a subsequent call to request the next page of list * items. The marker value is opaque to the client. * @param {ContainerListBlobsSegmentOptions} [options] Options to list blobs operation. * @returns {AsyncIterableIterator} * @memberof ContainerClient */ ContainerClient.prototype.listHierarchySegments = function (delimiter, marker, options) { if (options === void 0) { options = {}; } return tslib.__asyncGenerator(this, arguments, function listHierarchySegments_1() { var listBlobsHierarchySegmentResponse; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: if (!(!!marker || marker === undefined)) return [3 /*break*/, 7]; _a.label = 1; case 1: return [4 /*yield*/, tslib.__await(this.listBlobHierarchySegment(delimiter, marker, options))]; case 2: listBlobsHierarchySegmentResponse = _a.sent(); marker = listBlobsHierarchySegmentResponse.continuationToken; return [4 /*yield*/, tslib.__await(listBlobsHierarchySegmentResponse)]; case 3: return [4 /*yield*/, tslib.__await.apply(void 0, [_a.sent()])]; case 4: return [4 /*yield*/, _a.sent()]; case 5: _a.sent(); _a.label = 6; case 6: if (marker) return [3 /*break*/, 1]; _a.label = 7; case 7: return [2 /*return*/]; } }); }); }; /** * Returns an AsyncIterableIterator for {@link BlobPrefix} and {@link BlobItem} objects. * * @private * @param {string} delimiter The charactor or string used to define the virtual hierarchy * @param {ContainerListBlobsSegmentOptions} [options] Options to list blobs operation. * @returns {AsyncIterableIterator<{ kind: "prefix" } & BlobPrefix | { kind: "blob" } & BlobItem>} * @memberof ContainerClient */ ContainerClient.prototype.listItemsByHierarchy = function (delimiter, options) { if (options === void 0) { options = {}; } return tslib.__asyncGenerator(this, arguments, function listItemsByHierarchy_1() { var marker, _a, _b, listBlobsHierarchySegmentResponse, segment, _i, _c, prefix, _d, _e, blob, e_55_1; var e_55, _f; return tslib.__generator(this, function (_g) { switch (_g.label) { case 0: _g.trys.push([0, 14, 15, 20]); _a = tslib.__asyncValues(this.listHierarchySegments(delimiter, marker, options)); _g.label = 1; case 1: return [4 /*yield*/, tslib.__await(_a.next())]; case 2: if (!(_b = _g.sent(), !_b.done)) return [3 /*break*/, 13]; listBlobsHierarchySegmentResponse = _b.value; segment = listBlobsHierarchySegmentResponse.segment; if (!segment.blobPrefixes) return [3 /*break*/, 7]; _i = 0, _c = segment.blobPrefixes; _g.label = 3; case 3: if (!(_i < _c.length)) return [3 /*break*/, 7]; prefix = _c[_i]; return [4 /*yield*/, tslib.__await(tslib.__assign({ kind: "prefix" }, prefix))]; case 4: return [4 /*yield*/, _g.sent()]; case 5: _g.sent(); _g.label = 6; case 6: _i++; return [3 /*break*/, 3]; case 7: _d = 0, _e = segment.blobItems; _g.label = 8; case 8: if (!(_d < _e.length)) return [3 /*break*/, 12]; blob = _e[_d]; return [4 /*yield*/, tslib.__await(tslib.__assign({ kind: "blob" }, blob))]; case 9: return [4 /*yield*/, _g.sent()]; case 10: _g.sent(); _g.label = 11; case 11: _d++; return [3 /*break*/, 8]; case 12: return [3 /*break*/, 1]; case 13: return [3 /*break*/, 20]; case 14: e_55_1 = _g.sent(); e_55 = { error: e_55_1 }; return [3 /*break*/, 20]; case 15: _g.trys.push([15, , 18, 19]); if (!(_b && !_b.done && (_f = _a.return))) return [3 /*break*/, 17]; return [4 /*yield*/, tslib.__await(_f.call(_a))]; case 16: _g.sent(); _g.label = 17; case 17: return [3 /*break*/, 19]; case 18: if (e_55) throw e_55.error; return [7 /*endfinally*/]; case 19: return [7 /*endfinally*/]; case 20: return [2 /*return*/]; } }); }); }; /** * Returns an async iterable iterator to list all the blobs by hierarchy. * under the specified account. * * .byPage() returns an async iterable iterator to list the blobs by hierarchy in pages. * * Example using `for await` syntax: * * ```js * for await (const item of containerClient.listBlobsByHierarchy("/")) { * if (item.kind === "prefix") { * console.log(`\tBlobPrefix: ${item.name}`); * } else { * console.log(`\tBlobItem: name - ${item.name}, last modified - ${item.properties.lastModified}`); * } * } * ``` * * Example using `iter.next()`: * * ```js * let iter = await containerClient.listBlobsByHierarchy("/", { prefix: "prefix1/" }); * let entity = await iter.next(); * while (!entity.done) { * let item = entity.value; * if (item.kind === "prefix") { * console.log(`\tBlobPrefix: ${item.name}`); * } else { * console.log(`\tBlobItem: name - ${item.name}, last modified - ${item.properties.lastModified}`); * } * entity = await iter.next(); * } * ```js * * Example using `byPage()`: * * ```js * console.log("Listing blobs by hierarchy by page"); * for await (const response of containerClient.listBlobsByHierarchy("/").byPage()) { * const segment = response.segment; * if (segment.blobPrefixes) { * for (const prefix of segment.blobPrefixes) { * console.log(`\tBlobPrefix: ${prefix.name}`); * } * } * for (const blob of response.segment.blobItems) { * console.log(`\tBlobItem: name - ${blob.name}, last modified - ${blob.properties.lastModified}`); * } * } * ``` * * Example using paging with a max page size: * * ```js * console.log("Listing blobs by hierarchy by page, specifying a prefix and a max page size"); * * let i = 1; * for await (const response of containerClient.listBlobsByHierarchy("/", { prefix: "prefix2/sub1/"}).byPage({ maxPageSize: 2 })) { * console.log(`Page ${i++}`); * const segment = response.segment; * * if (segment.blobPrefixes) { * for (const prefix of segment.blobPrefixes) { * console.log(`\tBlobPrefix: ${prefix.name}`); * } * } * * for (const blob of response.segment.blobItems) { * console.log(`\tBlobItem: name - ${blob.name}, last modified - ${blob.properties.lastModified}`); * } * } * ``` * * @param {string} delimiter The charactor or string used to define the virtual hierarchy * @param {ContainerListBlobsOptions} [options={}] Options to list blobs operation. * @returns {(PagedAsyncIterableIterator< * { kind: "prefix" } & BlobPrefix | { kind: "blob" } & BlobItem, * ContainerListBlobHierarchySegmentResponse * >)} * @memberof ContainerClient */ ContainerClient.prototype.listBlobsByHierarchy = function (delimiter, options) { var _a; var _this = this; if (options === void 0) { options = {}; } var include = []; if (options.includeCopy) { include.push("copy"); } if (options.includeDeleted) { include.push("deleted"); } if (options.includeMetadata) { include.push("metadata"); } if (options.includeSnapshots) { include.push("snapshots"); } if (options.includeUncommitedBlobs) { include.push("uncommittedblobs"); } if (options.prefix === "") { options.prefix = undefined; } var updatedOptions = tslib.__assign(tslib.__assign({}, options), (include.length > 0 ? { include: include } : {})); // AsyncIterableIterator to iterate over blob prefixes and blobs var iter = this.listItemsByHierarchy(delimiter, updatedOptions); return _a = { /** * @member {Promise} [next] The next method, part of the iteration protocol */ next: function () { return tslib.__awaiter(this, void 0, void 0, function () { return tslib.__generator(this, function (_a) { return [2 /*return*/, iter.next()]; }); }); } }, /** * @member {Symbol} [asyncIterator] The connection to the async iterator, part of the iteration protocol */ _a[Symbol.asyncIterator] = function () { return this; }, /** * @member {Function} [byPage] Return an AsyncIterableIterator that works a page at a time */ _a.byPage = function (settings) { if (settings === void 0) { settings = {}; } return _this.listHierarchySegments(delimiter, settings.continuationToken, tslib.__assign({ maxPageSize: settings.maxPageSize }, updatedOptions)); }, _a; }; ContainerClient.prototype.getContainerNameFromUrl = function () { var containerName; try { // URL may look like the following // "https://myaccount.blob.core.windows.net/mycontainer?sasString"; // "https://myaccount.blob.core.windows.net/mycontainer"; // IPv4/IPv6 address hosts, Endpoints - `http://127.0.0.1:10000/devstoreaccount1/containername` // http://localhost:10001/devstoreaccount1/containername var parsedUrl = coreHttp.URLBuilder.parse(this.url); if (parsedUrl.getHost().split(".")[1] === "blob") { // "https://myaccount.blob.core.windows.net/containername". // .getPath() -> /containername containerName = parsedUrl.getPath().split("/")[1]; } else { // IPv4/IPv6 address hosts... Example - http://192.0.0.10:10001/devstoreaccount1/containername // Single word domain without a [dot] in the endpoint... Example - http://localhost:10001/devstoreaccount1/containername // .getPath() -> /devstoreaccount1/containername containerName = parsedUrl.getPath().split("/")[2]; } // decode the encoded containerName - to get all the special characters that might be present in it containerName = decodeURIComponent(containerName); if (!containerName) { throw new Error("Provided containerName is invalid."); } return containerName; } catch (error) { throw new Error("Unable to extract containerName with provided information."); } }; return ContainerClient; }(StorageClient)); function getBodyAsText(batchResponse) { return tslib.__awaiter(this, void 0, void 0, function () { var buffer, responseLength; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: buffer = Buffer.alloc(BATCH_MAX_PAYLOAD_IN_BYTES); return [4 /*yield*/, streamToBuffer2(batchResponse.readableStreamBody, buffer)]; case 1: responseLength = _a.sent(); // Slice the buffer to trim the empty ending. buffer = buffer.slice(0, responseLength); return [2 /*return*/, buffer.toString()]; } }); }); } function utf8ByteLength(str) { return Buffer.byteLength(str); } var HTTP_HEADER_DELIMITER = ": "; var SPACE_DELIMITER = " "; var NOT_FOUND = -1; /** * Util class for parsing batch response. */ var BatchResponseParser = /** @class */ (function () { function BatchResponseParser(batchResponse, subRequests) { if (!batchResponse || !batchResponse.contentType) { // In special case(reported), server may return invalid content-type which could not be parsed. throw new RangeError("batchResponse is malformed or doesn't contain valid content-type."); } if (!subRequests || subRequests.size === 0) { // This should be prevent during coding. throw new RangeError("Invalid state: subRequests is not provided or size is 0."); } this.batchResponse = batchResponse; this.subRequests = subRequests; this.responseBatchBoundary = this.batchResponse.contentType.split("=")[1]; this.perResponsePrefix = "--" + this.responseBatchBoundary + HTTP_LINE_ENDING; this.batchResponseEnding = "--" + this.responseBatchBoundary + "--"; } // For example of response, please refer to https://docs.microsoft.com/en-us/rest/api/storageservices/blob-batch#response BatchResponseParser.prototype.parseBatchResponse = function () { return tslib.__awaiter(this, void 0, void 0, function () { var responseBodyAsText, subResponses, subResponseCount, deserializedSubResponses, subResponsesSucceededCount, subResponsesFailedCount, index, subResponse, deserializedSubResponse, responseLines, subRespHeaderStartFound, subRespHeaderEndFound, subRespFailed, contentId, _i, responseLines_1, responseLine, tokens, tokens; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: // When logic reach here, suppose batch request has already succeeded with 202, so we can further parse // sub request's response. if (this.batchResponse._response.status != HTTPURLConnection.HTTP_ACCEPTED) { throw new Error("Invalid state: batch request failed with status: '" + this.batchResponse._response.status + "'."); } return [4 /*yield*/, getBodyAsText(this.batchResponse)]; case 1: responseBodyAsText = _a.sent(); subResponses = responseBodyAsText .split(this.batchResponseEnding)[0] // string after ending is useless .split(this.perResponsePrefix) .slice(1); subResponseCount = subResponses.length; // Defensive coding in case of potential error parsing. // Note: subResponseCount == 1 is special case where sub request is invalid. // We try to prevent such cases through early validation, e.g. validate sub request count >= 1. // While in unexpected sub request invalid case, we allow sub response to be parsed and return to user. if (subResponseCount != this.subRequests.size && subResponseCount != 1) { throw new Error("Invalid state: sub responses' count is not equal to sub requests' count."); } deserializedSubResponses = new Array(subResponseCount); subResponsesSucceededCount = 0; subResponsesFailedCount = 0; // Parse sub subResponses. for (index = 0; index < subResponseCount; index++) { subResponse = subResponses[index]; deserializedSubResponses[index] = {}; deserializedSubResponse = deserializedSubResponses[index]; deserializedSubResponse.headers = new coreHttp.HttpHeaders(); responseLines = subResponse.split("" + HTTP_LINE_ENDING); subRespHeaderStartFound = false; subRespHeaderEndFound = false; subRespFailed = false; contentId = NOT_FOUND; for (_i = 0, responseLines_1 = responseLines; _i < responseLines_1.length; _i++) { responseLine = responseLines_1[_i]; if (!subRespHeaderStartFound) { // Convention line to indicate content ID if (responseLine.startsWith(HeaderConstants.CONTENT_ID)) { contentId = parseInt(responseLine.split(HTTP_HEADER_DELIMITER)[1]); } // Http version line with status code indicates the start of sub request's response. // Example: HTTP/1.1 202 Accepted if (responseLine.startsWith(HTTP_VERSION_1_1)) { subRespHeaderStartFound = true; tokens = responseLine.split(SPACE_DELIMITER); deserializedSubResponse.status = parseInt(tokens[1]); deserializedSubResponse.statusMessage = tokens.slice(2).join(SPACE_DELIMITER); } continue; // Skip convention headers not specifically for sub request i.e. Content-Type: application/http and Content-ID: * } if (responseLine.trim() === "") { // Sub response's header start line already found, and the first empty line indicates header end line found. if (!subRespHeaderEndFound) { subRespHeaderEndFound = true; } continue; // Skip empty line } // Note: when code reach here, it indicates subRespHeaderStartFound == true if (!subRespHeaderEndFound) { if (responseLine.indexOf(HTTP_HEADER_DELIMITER) === -1) { // Defensive coding to prevent from missing valuable lines. throw new Error("Invalid state: find non-empty line '" + responseLine + "' without HTTP header delimiter '" + HTTP_HEADER_DELIMITER + "'."); } tokens = responseLine.split(HTTP_HEADER_DELIMITER); deserializedSubResponse.headers.set(tokens[0], tokens[1]); if (tokens[0] === HeaderConstants.X_MS_ERROR_CODE) { deserializedSubResponse.errorCode = tokens[1]; subRespFailed = true; } } else { // Assemble body of sub response. if (!deserializedSubResponse.bodyAsText) { deserializedSubResponse.bodyAsText = ""; } deserializedSubResponse.bodyAsText += responseLine; } } // Inner for end if (contentId != NOT_FOUND) { deserializedSubResponse._request = this.subRequests.get(contentId); } if (subRespFailed) { subResponsesFailedCount++; } else { subResponsesSucceededCount++; } } return [2 /*return*/, { subResponses: deserializedSubResponses, subResponsesSucceededCount: subResponsesSucceededCount, subResponsesFailedCount: subResponsesFailedCount }]; } }); }); }; return BatchResponseParser; }()); var MutexLockStatus; (function (MutexLockStatus) { MutexLockStatus[MutexLockStatus["LOCKED"] = 0] = "LOCKED"; MutexLockStatus[MutexLockStatus["UNLOCKED"] = 1] = "UNLOCKED"; })(MutexLockStatus || (MutexLockStatus = {})); /** * An async mutex lock. * * @export * @class Mutex */ var Mutex = /** @class */ (function () { function Mutex() { } /** * Lock for a specific key. If the lock has been acquired by another customer, then * will wait until getting the lock. * * @static * @param {string} key lock key * @returns {Promise} * @memberof Mutex */ Mutex.lock = function (key) { return tslib.__awaiter(this, void 0, void 0, function () { var _this = this; return tslib.__generator(this, function (_a) { return [2 /*return*/, new Promise(function (resolve) { if (_this.keys[key] === undefined || _this.keys[key] === MutexLockStatus.UNLOCKED) { _this.keys[key] = MutexLockStatus.LOCKED; resolve(); } else { _this.onUnlockEvent(key, function () { _this.keys[key] = MutexLockStatus.LOCKED; resolve(); }); } })]; }); }); }; /** * Unlock a key. * * @static * @param {string} key * @returns {Promise} * @memberof Mutex */ Mutex.unlock = function (key) { return tslib.__awaiter(this, void 0, void 0, function () { var _this = this; return tslib.__generator(this, function (_a) { return [2 /*return*/, new Promise(function (resolve) { if (_this.keys[key] === MutexLockStatus.LOCKED) { _this.emitUnlockEvent(key); } delete _this.keys[key]; resolve(); })]; }); }); }; Mutex.onUnlockEvent = function (key, handler) { if (this.listeners[key] === undefined) { this.listeners[key] = [handler]; } else { this.listeners[key].push(handler); } }; Mutex.emitUnlockEvent = function (key) { var _this = this; if (this.listeners[key] !== undefined && this.listeners[key].length > 0) { var handler_1 = this.listeners[key].shift(); setImmediate(function () { handler_1.call(_this); }); } }; Mutex.keys = {}; Mutex.listeners = {}; return Mutex; }()); /** * A BlobBatch represents an aggregated set of operations on blobs. * Currently, only `delete` and `setAccessTier` are supported. * * @export * @class BlobBatch */ var BlobBatch = /** @class */ (function () { function BlobBatch() { this.batch = "batch"; this.batchRequest = new InnerBatchRequest(); } /** * Get the value of Content-Type for a batch request. * The value must be multipart/mixed with a batch boundary. * Example: multipart/mixed; boundary=batch_a81786c8-e301-4e42-a729-a32ca24ae252 */ BlobBatch.prototype.getMultiPartContentType = function () { return this.batchRequest.getMultipartContentType(); }; /** * Get assembled HTTP request body for sub requests. */ BlobBatch.prototype.getHttpRequestBody = function () { return this.batchRequest.getHttpRequestBody(); }; /** * Get sub requests that are added into the batch request. */ BlobBatch.prototype.getSubRequests = function () { return this.batchRequest.getSubRequests(); }; BlobBatch.prototype.addSubRequestInternal = function (subRequest, assembleSubRequestFunc) { return tslib.__awaiter(this, void 0, void 0, function () { return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: return [4 /*yield*/, Mutex.lock(this.batch)]; case 1: _a.sent(); _a.label = 2; case 2: _a.trys.push([2, , 4, 6]); this.batchRequest.preAddSubRequest(subRequest); return [4 /*yield*/, assembleSubRequestFunc()]; case 3: _a.sent(); this.batchRequest.postAddSubRequest(subRequest); return [3 /*break*/, 6]; case 4: return [4 /*yield*/, Mutex.unlock(this.batch)]; case 5: _a.sent(); return [7 /*endfinally*/]; case 6: return [2 /*return*/]; } }); }); }; BlobBatch.prototype.setBatchType = function (batchType) { if (!this.batchType) { this.batchType = batchType; } if (this.batchType !== batchType) { throw new RangeError("BlobBatch only supports one operation type per batch and it already is being used for " + this.batchType + " operations."); } }; BlobBatch.prototype.deleteBlob = function (urlOrBlobClient, credentialOrOptions, options) { return tslib.__awaiter(this, void 0, void 0, function () { var url, credential, _a, span, spanOptions, e_1; var _this = this; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: if (typeof urlOrBlobClient === "string" && ((coreHttp.isNode && credentialOrOptions instanceof StorageSharedKeyCredential) || credentialOrOptions instanceof AnonymousCredential || coreHttp.isTokenCredential(credentialOrOptions))) { // First overload url = urlOrBlobClient; credential = credentialOrOptions; } else if (urlOrBlobClient instanceof BlobClient) { // Second overload url = urlOrBlobClient.url; credential = urlOrBlobClient.credential; options = credentialOrOptions; } else { throw new RangeError("Invalid arguments. Either url and credential, or BlobClient need be provided."); } if (!options) { options = {}; } _a = createSpan("BatchDeleteRequest-addSubRequest", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); this.setBatchType("delete"); return [4 /*yield*/, this.addSubRequestInternal({ url: url, credential: credential }, function () { return tslib.__awaiter(_this, void 0, void 0, function () { return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: return [4 /*yield*/, new BlobClient(url, this.batchRequest.createPipeline(credential)).delete(tslib.__assign(tslib.__assign({}, options), { tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) }))]; case 1: _a.sent(); return [2 /*return*/]; } }); }); })]; case 2: _b.sent(); return [3 /*break*/, 5]; case 3: e_1 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_1.message }); throw e_1; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; BlobBatch.prototype.setBlobAccessTier = function (urlOrBlobClient, credentialOrTier, tierOrOptions, options) { return tslib.__awaiter(this, void 0, void 0, function () { var url, credential, tier, _a, span, spanOptions, e_2; var _this = this; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: if (typeof urlOrBlobClient === "string" && ((coreHttp.isNode && credentialOrTier instanceof StorageSharedKeyCredential) || credentialOrTier instanceof AnonymousCredential || coreHttp.isTokenCredential(credentialOrTier))) { // First overload url = urlOrBlobClient; credential = credentialOrTier; tier = tierOrOptions; } else if (urlOrBlobClient instanceof BlobClient) { // Second overload url = urlOrBlobClient.url; credential = urlOrBlobClient.credential; tier = credentialOrTier; options = tierOrOptions; } else { throw new RangeError("Invalid arguments. Either url and credential, or BlobClient need be provided."); } if (!options) { options = {}; } _a = createSpan("BatchSetTierRequest-addSubRequest", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); this.setBatchType("setAccessTier"); return [4 /*yield*/, this.addSubRequestInternal({ url: url, credential: credential }, function () { return tslib.__awaiter(_this, void 0, void 0, function () { return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: return [4 /*yield*/, new BlobClient(url, this.batchRequest.createPipeline(credential)).setAccessTier(tier, tslib.__assign(tslib.__assign({}, options), { tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) }))]; case 1: _a.sent(); return [2 /*return*/]; } }); }); })]; case 2: _b.sent(); return [3 /*break*/, 5]; case 3: e_2 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_2.message }); throw e_2; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; return BlobBatch; }()); /** * Inner batch request class which is responsible for assembling and serializing sub requests. * See https://docs.microsoft.com/en-us/rest/api/storageservices/blob-batch#request-body for how requests are assembled. */ var InnerBatchRequest = /** @class */ (function () { function InnerBatchRequest() { this.operationCount = 0; this.body = ""; var tempGuid = coreHttp.generateUuid(); // batch_{batchid} this.boundary = "batch_" + tempGuid; // --batch_{batchid} // Content-Type: application/http // Content-Transfer-Encoding: binary this.subRequestPrefix = "--" + this.boundary + HTTP_LINE_ENDING + HeaderConstants.CONTENT_TYPE + ": application/http" + HTTP_LINE_ENDING + HeaderConstants.CONTENT_TRANSFER_ENCODING + ": binary"; // multipart/mixed; boundary=batch_{batchid} this.multipartContentType = "multipart/mixed; boundary=" + this.boundary; // --batch_{batchid}-- this.batchRequestEnding = "--" + this.boundary + "--"; this.subRequests = new Map(); } /** * Create pipeline to assemble sub requests. The idea here is to use exising * credential and serialization/deserialization components, with additional policies to * filter unnecessary headers, assemble sub requests into request's body * and intercept request from going to wire. * @param {StorageSharedKeyCredential | AnonymousCredential | TokenCredential} credential Such as AnonymousCredential, StorageSharedKeyCredential or any credential from the @azure/identity package to authenticate requests to the service. You can also provide an object that implements the TokenCredential interface. If not specified, AnonymousCredential is used. */ InnerBatchRequest.prototype.createPipeline = function (credential) { var isAnonymousCreds = credential instanceof AnonymousCredential; var policyFactoryLength = 3 + (isAnonymousCreds ? 0 : 1); // [deserilizationPolicy, BatchHeaderFilterPolicyFactory, (Optional)Credential, BatchRequestAssemblePolicyFactory] var factories = new Array(policyFactoryLength); factories[0] = coreHttp.deserializationPolicy(); // Default deserializationPolicy is provided by protocol layer factories[1] = new BatchHeaderFilterPolicyFactory(); // Use batch header filter policy to exclude unnecessary headers if (!isAnonymousCreds) { factories[2] = coreHttp.isTokenCredential(credential) ? coreHttp.bearerTokenAuthenticationPolicy(credential, StorageOAuthScopes) : credential; } factories[policyFactoryLength - 1] = new BatchRequestAssemblePolicyFactory(this); // Use batch assemble policy to assemble request and intercept request from going to wire return new Pipeline(factories, {}); }; InnerBatchRequest.prototype.appendSubRequestToBody = function (request) { // Start to assemble sub request this.body += [ this.subRequestPrefix, HeaderConstants.CONTENT_ID + ": " + this.operationCount, "", request.method.toString() + " " + getURLPathAndQuery(request.url) + " " + HTTP_VERSION_1_1 + HTTP_LINE_ENDING // sub request start line with method ].join(HTTP_LINE_ENDING); for (var _i = 0, _a = request.headers.headersArray(); _i < _a.length; _i++) { var header = _a[_i]; this.body += header.name + ": " + header.value + HTTP_LINE_ENDING; } this.body += HTTP_LINE_ENDING; // sub request's headers need be ending with an empty line // No body to assemble for current batch request support // End to assemble sub request }; InnerBatchRequest.prototype.preAddSubRequest = function (subRequest) { if (this.operationCount >= BATCH_MAX_REQUEST) { throw new RangeError("Cannot exceed " + BATCH_MAX_REQUEST + " sub requests in a single batch"); } // Fast fail if url for sub request is invalid var path = getURLPath(subRequest.url); if (!path || path == "") { throw new RangeError("Invalid url for sub request: '" + subRequest.url + "'"); } }; InnerBatchRequest.prototype.postAddSubRequest = function (subRequest) { this.subRequests.set(this.operationCount, subRequest); this.operationCount++; }; // Return the http request body with assembling the ending line to the sub request body. InnerBatchRequest.prototype.getHttpRequestBody = function () { return "" + this.body + this.batchRequestEnding + HTTP_LINE_ENDING; }; InnerBatchRequest.prototype.getMultipartContentType = function () { return this.multipartContentType; }; InnerBatchRequest.prototype.getSubRequests = function () { return this.subRequests; }; return InnerBatchRequest; }()); var BatchRequestAssemblePolicy = /** @class */ (function (_super) { tslib.__extends(BatchRequestAssemblePolicy, _super); function BatchRequestAssemblePolicy(batchRequest, nextPolicy, options) { var _this = _super.call(this, nextPolicy, options) || this; _this.dummyResponse = { request: new coreHttp.WebResource(), status: 200, headers: new coreHttp.HttpHeaders() }; _this.batchRequest = batchRequest; return _this; } BatchRequestAssemblePolicy.prototype.sendRequest = function (request) { return tslib.__awaiter(this, void 0, void 0, function () { return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: return [4 /*yield*/, this.batchRequest.appendSubRequestToBody(request)]; case 1: _a.sent(); return [2 /*return*/, this.dummyResponse]; // Intercept request from going to wire } }); }); }; return BatchRequestAssemblePolicy; }(coreHttp.BaseRequestPolicy)); var BatchRequestAssemblePolicyFactory = /** @class */ (function () { function BatchRequestAssemblePolicyFactory(batchRequest) { this.batchRequest = batchRequest; } BatchRequestAssemblePolicyFactory.prototype.create = function (nextPolicy, options) { return new BatchRequestAssemblePolicy(this.batchRequest, nextPolicy, options); }; return BatchRequestAssemblePolicyFactory; }()); var BatchHeaderFilterPolicy = /** @class */ (function (_super) { tslib.__extends(BatchHeaderFilterPolicy, _super); function BatchHeaderFilterPolicy(nextPolicy, options) { return _super.call(this, nextPolicy, options) || this; } BatchHeaderFilterPolicy.prototype.sendRequest = function (request) { return tslib.__awaiter(this, void 0, void 0, function () { var xMsHeaderName, _i, _a, header; return tslib.__generator(this, function (_b) { xMsHeaderName = ""; for (_i = 0, _a = request.headers.headersArray(); _i < _a.length; _i++) { header = _a[_i]; if (iEqual(header.name, HeaderConstants.X_MS_VERSION)) { xMsHeaderName = header.name; } } if (xMsHeaderName !== "") { request.headers.remove(xMsHeaderName); // The subrequests should not have the x-ms-version header. } return [2 /*return*/, this._nextPolicy.sendRequest(request)]; }); }); }; return BatchHeaderFilterPolicy; }(coreHttp.BaseRequestPolicy)); var BatchHeaderFilterPolicyFactory = /** @class */ (function () { function BatchHeaderFilterPolicyFactory() { } BatchHeaderFilterPolicyFactory.prototype.create = function (nextPolicy, options) { return new BatchHeaderFilterPolicy(nextPolicy, options); }; return BatchHeaderFilterPolicyFactory; }()); // Copyright (c) Microsoft Corporation. All rights reserved. /** * A BlobBatchClient allows you to make batched requests to the Azure Storage Blob service. * * @see https://docs.microsoft.com/en-us/rest/api/storageservices/blob-batch */ var BlobBatchClient = /** @class */ (function () { function BlobBatchClient(url, credentialOrPipeline, options) { var pipeline; if (credentialOrPipeline instanceof Pipeline) { pipeline = credentialOrPipeline; } else if (!credentialOrPipeline) { // no credential provided pipeline = newPipeline(new AnonymousCredential(), options); } else { pipeline = newPipeline(credentialOrPipeline, options); } var storageClientContext = new StorageClientContext(url, pipeline.toServiceClientOptions()); this._serviceContext = new Service(storageClientContext); } /** * Creates a {@link BlobBatch}. * A BlobBatch represents an aggregated set of operations on blobs. */ BlobBatchClient.prototype.createBatch = function () { return new BlobBatch(); }; BlobBatchClient.prototype.deleteBlobs = function (urlsOrBlobClients, credentialOrOptions, options) { return tslib.__awaiter(this, void 0, void 0, function () { var batch, _i, urlsOrBlobClients_1, urlOrBlobClient; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: batch = new BlobBatch(); _i = 0, urlsOrBlobClients_1 = urlsOrBlobClients; _a.label = 1; case 1: if (!(_i < urlsOrBlobClients_1.length)) return [3 /*break*/, 6]; urlOrBlobClient = urlsOrBlobClients_1[_i]; if (!(typeof urlOrBlobClient === "string")) return [3 /*break*/, 3]; return [4 /*yield*/, batch.deleteBlob(urlOrBlobClient, credentialOrOptions, options)]; case 2: _a.sent(); return [3 /*break*/, 5]; case 3: return [4 /*yield*/, batch.deleteBlob(urlOrBlobClient, credentialOrOptions)]; case 4: _a.sent(); _a.label = 5; case 5: _i++; return [3 /*break*/, 1]; case 6: return [2 /*return*/, this.submitBatch(batch)]; } }); }); }; BlobBatchClient.prototype.setBlobsAccessTier = function (urlsOrBlobClients, credentialOrTier, tierOrOptions, options) { return tslib.__awaiter(this, void 0, void 0, function () { var batch, _i, urlsOrBlobClients_2, urlOrBlobClient; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: batch = new BlobBatch(); _i = 0, urlsOrBlobClients_2 = urlsOrBlobClients; _a.label = 1; case 1: if (!(_i < urlsOrBlobClients_2.length)) return [3 /*break*/, 6]; urlOrBlobClient = urlsOrBlobClients_2[_i]; if (!(typeof urlOrBlobClient === "string")) return [3 /*break*/, 3]; return [4 /*yield*/, batch.setBlobAccessTier(urlOrBlobClient, credentialOrTier, tierOrOptions, options)]; case 2: _a.sent(); return [3 /*break*/, 5]; case 3: return [4 /*yield*/, batch.setBlobAccessTier(urlOrBlobClient, credentialOrTier, tierOrOptions)]; case 4: _a.sent(); _a.label = 5; case 5: _i++; return [3 /*break*/, 1]; case 6: return [2 /*return*/, this.submitBatch(batch)]; } }); }); }; /** * Submit batch request which consists of multiple subrequests. * * Get `blobBatchClient` and other details before running the snippets. * `blobServiceClient.getBlobBatchClient()` gives the `blobBatchClient` * * Example usage: * * ```js * let batchRequest = new BlobBatch(); * await batchRequest.deleteBlob(urlInString0, credential0); * await batchRequest.deleteBlob(urlInString1, credential1, { * deleteSnapshots: "include" * }); * const batchResp = await blobBatchClient.submitBatch(batchRequest); * console.log(batchResp.subResponsesSucceededCount); * ``` * * Example using a lease: * * ```js * let batchRequest = new BlobBatch(); * await batchRequest.setBlobAccessTier(blockBlobClient0, "Cool"); * await batchRequest.setBlobAccessTier(blockBlobClient1, "Cool", { * conditions: { leaseId: leaseId } * }); * const batchResp = await blobBatchClient.submitBatch(batchRequest); * console.log(batchResp.subResponsesSucceededCount); * ``` * * @see https://docs.microsoft.com/en-us/rest/api/storageservices/blob-batch * * @param {BlobBatch} batchRequest A set of Delete or SetTier operations. * @param {BlobBatchSubmitBatchOptionalParams} [options] * @returns {Promise} * @memberof BlobBatchClient */ BlobBatchClient.prototype.submitBatch = function (batchRequest, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, batchRequestBody, rawBatchResponse, batchResponseParser, responseSummary, res, e_1; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: if (!batchRequest || batchRequest.getSubRequests().size == 0) { throw new RangeError("Batch request should contain one or more sub requests."); } _a = createSpan("BlobBatchClient-submitBatch", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 4, 5, 6]); batchRequestBody = batchRequest.getHttpRequestBody(); return [4 /*yield*/, this._serviceContext.submitBatch(batchRequestBody, utf8ByteLength(batchRequestBody), batchRequest.getMultiPartContentType(), tslib.__assign(tslib.__assign({}, options), { spanOptions: spanOptions }))]; case 2: rawBatchResponse = _b.sent(); batchResponseParser = new BatchResponseParser(rawBatchResponse, batchRequest.getSubRequests()); return [4 /*yield*/, batchResponseParser.parseBatchResponse()]; case 3: responseSummary = _b.sent(); res = { _response: rawBatchResponse._response, contentType: rawBatchResponse.contentType, errorCode: rawBatchResponse.errorCode, requestId: rawBatchResponse.requestId, clientRequestId: rawBatchResponse.clientRequestId, version: rawBatchResponse.version, subResponses: responseSummary.subResponses, subResponsesSucceededCount: responseSummary.subResponsesSucceededCount, subResponsesFailedCount: responseSummary.subResponsesFailedCount }; return [2 /*return*/, res]; case 4: e_1 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_1.message }); throw e_1; case 5: span.end(); return [7 /*endfinally*/]; case 6: return [2 /*return*/]; } }); }); }; return BlobBatchClient; }()); /** * A BlobServiceClient represents a Client to the Azure Storage Blob service allowing you * to manipulate blob containers. * * @export * @class BlobServiceClient */ var BlobServiceClient = /** @class */ (function (_super) { tslib.__extends(BlobServiceClient, _super); function BlobServiceClient(url, credentialOrPipeline, options) { var _this = this; var pipeline; if (credentialOrPipeline instanceof Pipeline) { pipeline = credentialOrPipeline; } else if ((coreHttp.isNode && credentialOrPipeline instanceof StorageSharedKeyCredential) || credentialOrPipeline instanceof AnonymousCredential || coreHttp.isTokenCredential(credentialOrPipeline)) { pipeline = newPipeline(credentialOrPipeline, options); } else { // The second parameter is undefined. Use anonymous credential pipeline = newPipeline(new AnonymousCredential(), options); } _this = _super.call(this, url, pipeline) || this; _this.serviceContext = new Service(_this.storageClientContext); return _this; } /** * * Creates an instance of BlobServiceClient from connection string. * * @param {string} connectionString Account connection string or a SAS connection string of an Azure storage account. * [ Note - Account connection string can only be used in NODE.JS runtime. ] * Account connection string example - * `DefaultEndpointsProtocol=https;AccountName=myaccount;AccountKey=accountKey;EndpointSuffix=core.windows.net` * SAS connection string example - * `BlobEndpoint=https://myaccount.blob.core.windows.net/;QueueEndpoint=https://myaccount.queue.core.windows.net/;FileEndpoint=https://myaccount.file.core.windows.net/;TableEndpoint=https://myaccount.table.core.windows.net/;SharedAccessSignature=sasString` * @param {StoragePipelineOptions} [options] Optional. Options to configure the HTTP pipeline. * @memberof BlobServiceClient */ BlobServiceClient.fromConnectionString = function (connectionString, options) { options = options || {}; var extractedCreds = extractConnectionStringParts(connectionString); if (extractedCreds.kind === "AccountConnString") { { var sharedKeyCredential = new StorageSharedKeyCredential(extractedCreds.accountName, extractedCreds.accountKey); options.proxyOptions = coreHttp.getDefaultProxySettings(extractedCreds.proxyUri); var pipeline = newPipeline(sharedKeyCredential, options); return new BlobServiceClient(extractedCreds.url, pipeline); } } else if (extractedCreds.kind === "SASConnString") { var pipeline = newPipeline(new AnonymousCredential(), options); return new BlobServiceClient(extractedCreds.url + "?" + extractedCreds.accountSas, pipeline); } else { throw new Error("Connection string must be either an Account connection string or a SAS connection string"); } }; /** * Creates a {@link ContainerClient} object * * @param {string} containerName A container name * @returns {ContainerClient} A new ContainerClient object for the given container name. * @memberof BlobServiceClient * * Example usage: * * ```js * const containerClient = blobServiceClient.getContainerClient(""); * ``` */ BlobServiceClient.prototype.getContainerClient = function (containerName) { return new ContainerClient(appendToURLPath(this.url, encodeURIComponent(containerName)), this.pipeline); }; /** * Create a Blob container. * * @param {string} containerName Name of the container to create. * @param {ContainerCreateOptions} [options] Options to configure Container Create operation. * @returns {Promise<{ containerClient: ContainerClient; containerCreateResponse: ContainerCreateResponse }>} Container creation response and the corresponding container client. * @memberof BlobServiceClient */ BlobServiceClient.prototype.createContainer = function (containerName, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, containerClient, containerCreateResponse, e_1; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobServiceClient-createContainer", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); containerClient = this.getContainerClient(containerName); return [4 /*yield*/, containerClient.create(tslib.__assign(tslib.__assign({}, options), { tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) }))]; case 2: containerCreateResponse = _b.sent(); return [2 /*return*/, { containerClient: containerClient, containerCreateResponse: containerCreateResponse }]; case 3: e_1 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_1.message }); throw e_1; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Deletes a Blob container. * * @param {string} containerName Name of the container to delete. * @param {ContainerDeleteMethodOptions} [options] Options to configure Container Delete operation. * @returns {Promise} Container deletion response. * @memberof BlobServiceClient */ BlobServiceClient.prototype.deleteContainer = function (containerName, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, containerClient, e_2; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobServiceClient-deleteContainer", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); containerClient = this.getContainerClient(containerName); return [4 /*yield*/, containerClient.delete(tslib.__assign(tslib.__assign({}, options), { tracingOptions: tslib.__assign(tslib.__assign({}, options.tracingOptions), { spanOptions: spanOptions }) }))]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_2 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_2.message }); throw e_2; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Gets the properties of a storage account’s Blob service, including properties * for Storage Analytics and CORS (Cross-Origin Resource Sharing) rules. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/get-blob-service-properties * * @param {ServiceGetPropertiesOptions} [options] Options to the Service Get Properties operation. * @returns {Promise} Response data for the Service Get Properties operation. * @memberof BlobServiceClient */ BlobServiceClient.prototype.getProperties = function (options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_3; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobServiceClient-getProperties", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.serviceContext.getProperties({ abortSignal: options.abortSignal, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_3 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_3.message }); throw e_3; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Sets properties for a storage account’s Blob service endpoint, including properties * for Storage Analytics, CORS (Cross-Origin Resource Sharing) rules and soft delete settings. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/set-blob-service-properties} * * @param {BlobServiceProperties} properties * @param {ServiceSetPropertiesOptions} [options] Options to the Service Set Properties operation. * @returns {Promise} Response data for the Service Set Properties operation. * @memberof BlobServiceClient */ BlobServiceClient.prototype.setProperties = function (properties, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_4; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobServiceClient-setProperties", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.serviceContext.setProperties(properties, { abortSignal: options.abortSignal, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_4 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_4.message }); throw e_4; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Retrieves statistics related to replication for the Blob service. It is only * available on the secondary location endpoint when read-access geo-redundant * replication is enabled for the storage account. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/get-blob-service-stats} * * @param {ServiceGetStatisticsOptions} [options] Options to the Service Get Statistics operation. * @returns {Promise} Response data for the Service Get Statistics operation. * @memberof BlobServiceClient */ BlobServiceClient.prototype.getStatistics = function (options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_5; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobServiceClient-getStatistics", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.serviceContext.getStatistics({ abortSignal: options.abortSignal, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_5 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_5.message }); throw e_5; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * The Get Account Information operation returns the sku name and account kind * for the specified account. * The Get Account Information operation is available on service versions beginning * with version 2018-03-28. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/get-account-information * * @param {ServiceGetAccountInfoOptions} [options] Options to the Service Get Account Info operation. * @returns {Promise} Response data for the Service Get Account Info operation. * @memberof BlobServiceClient */ BlobServiceClient.prototype.getAccountInfo = function (options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_6; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobServiceClient-getAccountInfo", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.serviceContext.getAccountInfo({ abortSignal: options.abortSignal, spanOptions: spanOptions })]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_6 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_6.message }); throw e_6; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Returns a list of the containers under the specified account. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/list-containers2 * * @param {string} [marker] A string value that identifies the portion of * the list of containers to be returned with the next listing operation. The * operation returns the NextMarker value within the response body if the * listing operation did not return all containers remaining to be listed * with the current page. The NextMarker value can be used as the value for * the marker parameter in a subsequent call to request the next page of list * items. The marker value is opaque to the client. * @param {ServiceListContainersSegmentOptions} [options] Options to the Service List Container Segment operation. * @returns {Promise} Response data for the Service List Container Segment operation. * @memberof BlobServiceClient */ BlobServiceClient.prototype.listContainersSegment = function (marker, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, e_7; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobServiceClient-listContainersSegment", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.serviceContext.listContainersSegment(tslib.__assign(tslib.__assign({ abortSignal: options.abortSignal, marker: marker }, options), { spanOptions: spanOptions }))]; case 2: return [2 /*return*/, _b.sent()]; case 3: e_7 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_7.message }); throw e_7; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Returns an AsyncIterableIterator for ServiceListContainersSegmentResponses * * @private * @param {string} [marker] A string value that identifies the portion of * the list of containers to be returned with the next listing operation. The * operation returns the NextMarker value within the response body if the * listing operation did not return all containers remaining to be listed * with the current page. The NextMarker value can be used as the value for * the marker parameter in a subsequent call to request the next page of list * items. The marker value is opaque to the client. * @param {ServiceListContainersSegmentOptions} [options] Options to list containers operation. * @returns {AsyncIterableIterator} * @memberof BlobServiceClient */ BlobServiceClient.prototype.listSegments = function (marker, options) { if (options === void 0) { options = {}; } return tslib.__asyncGenerator(this, arguments, function listSegments_1() { var listContainersSegmentResponse; return tslib.__generator(this, function (_a) { switch (_a.label) { case 0: if (!(!!marker || marker === undefined)) return [3 /*break*/, 7]; _a.label = 1; case 1: return [4 /*yield*/, tslib.__await(this.listContainersSegment(marker, options))]; case 2: listContainersSegmentResponse = _a.sent(); listContainersSegmentResponse.containerItems = listContainersSegmentResponse.containerItems || []; marker = listContainersSegmentResponse.continuationToken; return [4 /*yield*/, tslib.__await(listContainersSegmentResponse)]; case 3: return [4 /*yield*/, tslib.__await.apply(void 0, [_a.sent()])]; case 4: return [4 /*yield*/, _a.sent()]; case 5: _a.sent(); _a.label = 6; case 6: if (marker) return [3 /*break*/, 1]; _a.label = 7; case 7: return [2 /*return*/]; } }); }); }; /** * Returns an AsyncIterableIterator for Container Items * * @private * @param {ServiceListContainersSegmentOptions} [options] Options to list containers operation. * @returns {AsyncIterableIterator} * @memberof BlobServiceClient */ BlobServiceClient.prototype.listItems = function (options) { if (options === void 0) { options = {}; } return tslib.__asyncGenerator(this, arguments, function listItems_1() { var marker, _a, _b, segment, e_8_1; var e_8, _c; return tslib.__generator(this, function (_d) { switch (_d.label) { case 0: _d.trys.push([0, 7, 8, 13]); _a = tslib.__asyncValues(this.listSegments(marker, options)); _d.label = 1; case 1: return [4 /*yield*/, tslib.__await(_a.next())]; case 2: if (!(_b = _d.sent(), !_b.done)) return [3 /*break*/, 6]; segment = _b.value; return [5 /*yield**/, tslib.__values(tslib.__asyncDelegator(tslib.__asyncValues(segment.containerItems)))]; case 3: return [4 /*yield*/, tslib.__await.apply(void 0, [_d.sent()])]; case 4: _d.sent(); _d.label = 5; case 5: return [3 /*break*/, 1]; case 6: return [3 /*break*/, 13]; case 7: e_8_1 = _d.sent(); e_8 = { error: e_8_1 }; return [3 /*break*/, 13]; case 8: _d.trys.push([8, , 11, 12]); if (!(_b && !_b.done && (_c = _a.return))) return [3 /*break*/, 10]; return [4 /*yield*/, tslib.__await(_c.call(_a))]; case 9: _d.sent(); _d.label = 10; case 10: return [3 /*break*/, 12]; case 11: if (e_8) throw e_8.error; return [7 /*endfinally*/]; case 12: return [7 /*endfinally*/]; case 13: return [2 /*return*/]; } }); }); }; /** * Returns an async iterable iterator to list all the containers * under the specified account. * * .byPage() returns an async iterable iterator to list the containers in pages. * * Example using `for await` syntax: * * ```js * let i = 1; * for await (const container of blobServiceClient.listContainers()) { * console.log(`Container ${i++}: ${container.name}`); * } * ``` * * Example using `iter.next()`: * * ```js * let i = 1; * const iter = blobServiceClient.listContainers(); * let containerItem = await iter.next(); * while (!containerItem.done) { * console.log(`Container ${i++}: ${containerItem.value.name}`); * containerItem = await iter.next(); * } * ``` * * Example using `byPage()`: * * ```js * // passing optional maxPageSize in the page settings * let i = 1; * for await (const response of blobServiceClient.listContainers().byPage({ maxPageSize: 20 })) { * if (response.containerItems) { * for (const container of response.containerItems) { * console.log(`Container ${i++}: ${container.name}`); * } * } * } * ``` * * Example using paging with a marker: * * ```js * let i = 1; * let iterator = blobServiceClient.listContainers().byPage({ maxPageSize: 2 }); * let response = (await iterator.next()).value; * * // Prints 2 container names * if (response.containerItems) { * for (const container of response.containerItems) { * console.log(`Container ${i++}: ${container.name}`); * } * } * * // Gets next marker * let marker = response.continuationToken; * // Passing next marker as continuationToken * iterator = blobServiceClient * .listContainers() * .byPage({ continuationToken: marker, maxPageSize: 10 }); * response = (await iterator.next()).value; * * // Prints 10 container names * if (response.containerItems) { * for (const container of response.containerItems) { * console.log(`Container ${i++}: ${container.name}`); * } * } * ``` * * @param {ServiceListContainersOptions} [options={}] Options to list containers. * @returns {PagedAsyncIterableIterator} An asyncIterableIterator that supports paging. * @memberof BlobServiceClient */ BlobServiceClient.prototype.listContainers = function (options) { var _a; var _this = this; if (options === void 0) { options = {}; } if (options.prefix === "") { options.prefix = undefined; } // AsyncIterableIterator to iterate over containers var listSegmentOptions = tslib.__assign(tslib.__assign({}, options), (options.includeMetadata ? { include: "metadata" } : {})); var iter = this.listItems(listSegmentOptions); return _a = { /** * @member {Promise} [next] The next method, part of the iteration protocol */ next: function () { return iter.next(); } }, /** * @member {Symbol} [asyncIterator] The connection to the async iterator, part of the iteration protocol */ _a[Symbol.asyncIterator] = function () { return this; }, /** * @member {Function} [byPage] Return an AsyncIterableIterator that works a page at a time */ _a.byPage = function (settings) { if (settings === void 0) { settings = {}; } return _this.listSegments(settings.continuationToken, tslib.__assign({ maxPageSize: settings.maxPageSize }, listSegmentOptions)); }, _a; }; /** * ONLY AVAILABLE WHEN USING BEARER TOKEN AUTHENTICATION (TokenCredential). * * Retrieves a user delegation key for the Blob service. This is only a valid operation when using * bearer token authentication. * * @see https://docs.microsoft.com/en-us/rest/api/storageservices/get-user-delegation-key * * @param {Date} startsOn The start time for the user delegation SAS. Must be within 7 days of the current time * @param {Date} expiresOn The end time for the user delegation SAS. Must be within 7 days of the current time * @returns {Promise} * @memberof BlobServiceClient */ BlobServiceClient.prototype.getUserDelegationKey = function (startsOn, expiresOn, options) { if (options === void 0) { options = {}; } return tslib.__awaiter(this, void 0, void 0, function () { var _a, span, spanOptions, response, userDelegationKey, res, e_9; return tslib.__generator(this, function (_b) { switch (_b.label) { case 0: _a = createSpan("BlobServiceClient-getUserDelegationKey", options.tracingOptions), span = _a.span, spanOptions = _a.spanOptions; _b.label = 1; case 1: _b.trys.push([1, 3, 4, 5]); return [4 /*yield*/, this.serviceContext.getUserDelegationKey({ startsOn: truncatedISO8061Date(startsOn, false), expiresOn: truncatedISO8061Date(expiresOn, false) }, { abortSignal: options.abortSignal, spanOptions: spanOptions })]; case 2: response = _b.sent(); userDelegationKey = { signedObjectId: response.signedObjectId, signedTenantId: response.signedTenantId, signedStartsOn: new Date(response.signedStartsOn), signedExpiresOn: new Date(response.signedExpiresOn), signedService: response.signedService, signedVersion: response.signedVersion, value: response.value }; res = tslib.__assign({ _response: response._response, requestId: response.requestId, clientRequestId: response.clientRequestId, version: response.version, date: response.date, errorCode: response.errorCode }, userDelegationKey); return [2 /*return*/, res]; case 3: e_9 = _b.sent(); span.setStatus({ code: api.CanonicalCode.UNKNOWN, message: e_9.message }); throw e_9; case 4: span.end(); return [7 /*endfinally*/]; case 5: return [2 /*return*/]; } }); }); }; /** * Creates a BlobBatchClient object to conduct batch operations. * * @see https://docs.microsoft.com/en-us/rest/api/storageservices/blob-batch * * @returns {BlobBatchClient} A new BlobBatchClient object for this service. * @memberof BlobServiceClient */ BlobServiceClient.prototype.getBlobBatchClient = function () { return new BlobBatchClient(this.url, this.pipeline); }; return BlobServiceClient; }(StorageClient)); // Copyright (c) Microsoft Corporation. All rights reserved. // Licensed under the MIT License. /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * * This is a helper class to construct a string representing the permissions granted by an AccountSAS. Setting a value * to true means that any SAS which uses these permissions will grant permissions for that operation. Once all the * values are set, this should be serialized with toString and set as the permissions field on an * {@link AccountSASSignatureValues} object. It is possible to construct the permissions string without this class, but * the order of the permissions is particular and this class guarantees correctness. * * @export * @class AccountSASPermissions */ var AccountSASPermissions = /** @class */ (function () { function AccountSASPermissions() { /** * Permission to read resources and list queues and tables granted. * * @type {boolean} * @memberof AccountSASPermissions */ this.read = false; /** * Permission to write resources granted. * * @type {boolean} * @memberof AccountSASPermissions */ this.write = false; /** * Permission to create blobs and files granted. * * @type {boolean} * @memberof AccountSASPermissions */ this.delete = false; /** * Permission to list blob containers, blobs, shares, directories, and files granted. * * @type {boolean} * @memberof AccountSASPermissions */ this.list = false; /** * Permission to add messages, table entities, and append to blobs granted. * * @type {boolean} * @memberof AccountSASPermissions */ this.add = false; /** * Permission to create blobs and files granted. * * @type {boolean} * @memberof AccountSASPermissions */ this.create = false; /** * Permissions to update messages and table entities granted. * * @type {boolean} * @memberof AccountSASPermissions */ this.update = false; /** * Permission to get and delete messages granted. * * @type {boolean} * @memberof AccountSASPermissions */ this.process = false; } /** * Parse initializes the AccountSASPermissions fields from a string. * * @static * @param {string} permissions * @returns {AccountSASPermissions} * @memberof AccountSASPermissions */ AccountSASPermissions.parse = function (permissions) { var accountSASPermissions = new AccountSASPermissions(); for (var _i = 0, permissions_1 = permissions; _i < permissions_1.length; _i++) { var c = permissions_1[_i]; switch (c) { case "r": accountSASPermissions.read = true; break; case "w": accountSASPermissions.write = true; break; case "d": accountSASPermissions.delete = true; break; case "l": accountSASPermissions.list = true; break; case "a": accountSASPermissions.add = true; break; case "c": accountSASPermissions.create = true; break; case "u": accountSASPermissions.update = true; break; case "p": accountSASPermissions.process = true; break; default: throw new RangeError("Invalid permission character: " + c); } } return accountSASPermissions; }; /** * Produces the SAS permissions string for an Azure Storage account. * Call this method to set AccountSASSignatureValues Permissions field. * * Using this method will guarantee the resource types are in * an order accepted by the service. * * @see https://docs.microsoft.com/en-us/rest/api/storageservices/constructing-an-account-sas * * @returns {string} * @memberof AccountSASPermissions */ AccountSASPermissions.prototype.toString = function () { // The order of the characters should be as specified here to ensure correctness: // https://docs.microsoft.com/en-us/rest/api/storageservices/constructing-an-account-sas // Use a string array instead of string concatenating += operator for performance var permissions = []; if (this.read) { permissions.push("r"); } if (this.write) { permissions.push("w"); } if (this.delete) { permissions.push("d"); } if (this.list) { permissions.push("l"); } if (this.add) { permissions.push("a"); } if (this.create) { permissions.push("c"); } if (this.update) { permissions.push("u"); } if (this.process) { permissions.push("p"); } return permissions.join(""); }; return AccountSASPermissions; }()); // Copyright (c) Microsoft Corporation. All rights reserved. // Licensed under the MIT License. /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * * This is a helper class to construct a string representing the resources accessible by an AccountSAS. Setting a value * to true means that any SAS which uses these permissions will grant access to that resource type. Once all the * values are set, this should be serialized with toString and set as the resources field on an * {@link AccountSASSignatureValues} object. It is possible to construct the resources string without this class, but * the order of the resources is particular and this class guarantees correctness. * * @export * @class AccountSASResourceTypes */ var AccountSASResourceTypes = /** @class */ (function () { function AccountSASResourceTypes() { /** * Permission to access service level APIs granted. * * @type {boolean} * @memberof AccountSASResourceTypes */ this.service = false; /** * Permission to access container level APIs (Blob Containers, Tables, Queues, File Shares) granted. * * @type {boolean} * @memberof AccountSASResourceTypes */ this.container = false; /** * Permission to access object level APIs (Blobs, Table Entities, Queue Messages, Files) granted. * * @type {boolean} * @memberof AccountSASResourceTypes */ this.object = false; } /** * Creates an {@link AccountSASResourceTypes} from the specified resource types string. This method will throw an * Error if it encounters a character that does not correspond to a valid resource type. * * @static * @param {string} resourceTypes * @returns {AccountSASResourceTypes} * @memberof AccountSASResourceTypes */ AccountSASResourceTypes.parse = function (resourceTypes) { var accountSASResourceTypes = new AccountSASResourceTypes(); for (var _i = 0, resourceTypes_1 = resourceTypes; _i < resourceTypes_1.length; _i++) { var c = resourceTypes_1[_i]; switch (c) { case "s": accountSASResourceTypes.service = true; break; case "c": accountSASResourceTypes.container = true; break; case "o": accountSASResourceTypes.object = true; break; default: throw new RangeError("Invalid resource type: " + c); } } return accountSASResourceTypes; }; /** * Converts the given resource types to a string. * * @see https://docs.microsoft.com/en-us/rest/api/storageservices/constructing-an-account-sas * * @returns {string} * @memberof AccountSASResourceTypes */ AccountSASResourceTypes.prototype.toString = function () { var resourceTypes = []; if (this.service) { resourceTypes.push("s"); } if (this.container) { resourceTypes.push("c"); } if (this.object) { resourceTypes.push("o"); } return resourceTypes.join(""); }; return AccountSASResourceTypes; }()); // Copyright (c) Microsoft Corporation. All rights reserved. // Licensed under the MIT License. /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * * This is a helper class to construct a string representing the services accessible by an AccountSAS. Setting a value * to true means that any SAS which uses these permissions will grant access to that service. Once all the * values are set, this should be serialized with toString and set as the services field on an * {@link AccountSASSignatureValues} object. It is possible to construct the services string without this class, but * the order of the services is particular and this class guarantees correctness. * * @export * @class AccountSASServices */ var AccountSASServices = /** @class */ (function () { function AccountSASServices() { /** * Permission to access blob resources granted. * * @type {boolean} * @memberof AccountSASServices */ this.blob = false; /** * Permission to access file resources granted. * * @type {boolean} * @memberof AccountSASServices */ this.file = false; /** * Permission to access queue resources granted. * * @type {boolean} * @memberof AccountSASServices */ this.queue = false; /** * Permission to access table resources granted. * * @type {boolean} * @memberof AccountSASServices */ this.table = false; } /** * Creates an {@link AccountSASServices} from the specified services string. This method will throw an * Error if it encounters a character that does not correspond to a valid service. * * @static * @param {string} services * @returns {AccountSASServices} * @memberof AccountSASServices */ AccountSASServices.parse = function (services) { var accountSASServices = new AccountSASServices(); for (var _i = 0, services_1 = services; _i < services_1.length; _i++) { var c = services_1[_i]; switch (c) { case "b": accountSASServices.blob = true; break; case "f": accountSASServices.file = true; break; case "q": accountSASServices.queue = true; break; case "t": accountSASServices.table = true; break; default: throw new RangeError("Invalid service character: " + c); } } return accountSASServices; }; /** * Converts the given services to a string. * * @returns {string} * @memberof AccountSASServices */ AccountSASServices.prototype.toString = function () { var services = []; if (this.blob) { services.push("b"); } if (this.table) { services.push("t"); } if (this.queue) { services.push("q"); } if (this.file) { services.push("f"); } return services.join(""); }; return AccountSASServices; }()); // Copyright (c) Microsoft Corporation. All rights reserved. // Licensed under the MIT License. /** * Generate SasIPRange format string. For example: * * "8.8.8.8" or "1.1.1.1-255.255.255.255" * * @export * @param {SasIPRange} ipRange * @returns {string} */ function ipRangeToString(ipRange) { return ipRange.end ? ipRange.start + "-" + ipRange.end : ipRange.start; } // Copyright (c) Microsoft Corporation. All rights reserved. (function (SASProtocol) { /** * Protocol that allows HTTPS only */ SASProtocol["Https"] = "https"; /** * Protocol that allows both HTTPS and HTTP */ SASProtocol["HttpsAndHttp"] = "https,http"; })(exports.SASProtocol || (exports.SASProtocol = {})); /** * Represents the components that make up an Azure Storage SAS' query parameters. This type is not constructed directly * by the user; it is only generated by the {@link AccountSASSignatureValues} and {@link BlobSASSignatureValues} * types. Once generated, it can be encoded into a {@code String} and appended to a URL directly (though caution should * be taken here in case there are existing query parameters, which might affect the appropriate means of appending * these query parameters). * * NOTE: Instances of this class are immutable. * * @export * @class SASQueryParameters */ var SASQueryParameters = /** @class */ (function () { /** * Creates an instance of SASQueryParameters. * * @param {string} version Representing the storage version * @param {string} signature Representing the signature for the SAS token * @param {string} [permissions] Representing the storage permissions * @param {string} [services] Representing the storage services being accessed (only for Account SAS) * @param {string} [resourceTypes] Representing the storage resource types being accessed (only for Account SAS) * @param {SASProtocol} [protocol] Representing the allowed HTTP protocol(s) * @param {Date} [startsOn] Representing the start time for this SAS token * @param {Date} [expiresOn] Representing the expiry time for this SAS token * @param {SasIPRange} [ipRange] Representing the range of valid IP addresses for this SAS token * @param {string} [identifier] Representing the signed identifier (only for Service SAS) * @param {string} [resource] Representing the storage container or blob (only for Service SAS) * @param {string} [cacheControl] Representing the cache-control header (only for Blob/File Service SAS) * @param {string} [contentDisposition] Representing the content-disposition header (only for Blob/File Service SAS) * @param {string} [contentEncoding] Representing the content-encoding header (only for Blob/File Service SAS) * @param {string} [contentLanguage] Representing the content-language header (only for Blob/File Service SAS) * @param {string} [contentType] Representing the content-type header (only for Blob/File Service SAS) * @param {userDelegationKey} [userDelegationKey] Representing the user delegation key properties * @memberof SASQueryParameters */ function SASQueryParameters(version, signature, permissions, services, resourceTypes, protocol, startsOn, expiresOn, ipRange, identifier, resource, cacheControl, contentDisposition, contentEncoding, contentLanguage, contentType, userDelegationKey) { this.version = version; this.services = services; this.resourceTypes = resourceTypes; this.expiresOn = expiresOn; this.permissions = permissions; this.protocol = protocol; this.startsOn = startsOn; this.ipRangeInner = ipRange; this.identifier = identifier; this.resource = resource; this.signature = signature; this.cacheControl = cacheControl; this.contentDisposition = contentDisposition; this.contentEncoding = contentEncoding; this.contentLanguage = contentLanguage; this.contentType = contentType; if (userDelegationKey) { this.signedOid = userDelegationKey.signedObjectId; this.signedTenentId = userDelegationKey.signedTenantId; this.signedStartsOn = userDelegationKey.signedStartsOn; this.signedExpiresOn = userDelegationKey.signedExpiresOn; this.signedService = userDelegationKey.signedService; this.signedVersion = userDelegationKey.signedVersion; } } Object.defineProperty(SASQueryParameters.prototype, "ipRange", { /** * Optional. IP range allowed for this SAS. * * @readonly * @type {(SasIPRange | undefined)} * @memberof SASQueryParameters */ get: function () { if (this.ipRangeInner) { return { end: this.ipRangeInner.end, start: this.ipRangeInner.start }; } return undefined; }, enumerable: true, configurable: true }); /** * Encodes all SAS query parameters into a string that can be appended to a URL. * * @returns {string} * @memberof SASQueryParameters */ SASQueryParameters.prototype.toString = function () { var params = [ "sv", "ss", "srt", "spr", "st", "se", "sip", "si", "skoid", "sktid", "skt", "ske", "sks", "skv", "sr", "sp", "sig", "rscc", "rscd", "rsce", "rscl", "rsct" ]; var queries = []; for (var _i = 0, params_1 = params; _i < params_1.length; _i++) { var param = params_1[_i]; switch (param) { case "sv": this.tryAppendQueryParameter(queries, param, this.version); break; case "ss": this.tryAppendQueryParameter(queries, param, this.services); break; case "srt": this.tryAppendQueryParameter(queries, param, this.resourceTypes); break; case "spr": this.tryAppendQueryParameter(queries, param, this.protocol); break; case "st": this.tryAppendQueryParameter(queries, param, this.startsOn ? truncatedISO8061Date(this.startsOn, false) : undefined); break; case "se": this.tryAppendQueryParameter(queries, param, this.expiresOn ? truncatedISO8061Date(this.expiresOn, false) : undefined); break; case "sip": this.tryAppendQueryParameter(queries, param, this.ipRange ? ipRangeToString(this.ipRange) : undefined); break; case "si": this.tryAppendQueryParameter(queries, param, this.identifier); break; case "skoid": // Signed object ID this.tryAppendQueryParameter(queries, param, this.signedOid); break; case "sktid": // Signed tenant ID this.tryAppendQueryParameter(queries, param, this.signedTenentId); break; case "skt": // Signed key start time this.tryAppendQueryParameter(queries, param, this.signedStartsOn ? truncatedISO8061Date(this.signedStartsOn, false) : undefined); break; case "ske": // Signed key expiry time this.tryAppendQueryParameter(queries, param, this.signedExpiresOn ? truncatedISO8061Date(this.signedExpiresOn, false) : undefined); break; case "sks": // Signed key service this.tryAppendQueryParameter(queries, param, this.signedService); break; case "skv": // Signed key version this.tryAppendQueryParameter(queries, param, this.signedVersion); break; case "sr": this.tryAppendQueryParameter(queries, param, this.resource); break; case "sp": this.tryAppendQueryParameter(queries, param, this.permissions); break; case "sig": this.tryAppendQueryParameter(queries, param, this.signature); break; case "rscc": this.tryAppendQueryParameter(queries, param, this.cacheControl); break; case "rscd": this.tryAppendQueryParameter(queries, param, this.contentDisposition); break; case "rsce": this.tryAppendQueryParameter(queries, param, this.contentEncoding); break; case "rscl": this.tryAppendQueryParameter(queries, param, this.contentLanguage); break; case "rsct": this.tryAppendQueryParameter(queries, param, this.contentType); break; } } return queries.join("&"); }; /** * A private helper method used to filter and append query key/value pairs into an array. * * @private * @param {string[]} queries * @param {string} key * @param {string} [value] * @returns {void} * @memberof SASQueryParameters */ SASQueryParameters.prototype.tryAppendQueryParameter = function (queries, key, value) { if (!value) { return; } key = encodeURIComponent(key); value = encodeURIComponent(value); if (key.length > 0 && value.length > 0) { queries.push(key + "=" + value); } }; return SASQueryParameters; }()); // Copyright (c) Microsoft Corporation. All rights reserved. /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * * Generates a {@link SASQueryParameters} object which contains all SAS query parameters needed to make an actual * REST request. * * @see https://docs.microsoft.com/en-us/rest/api/storageservices/constructing-an-account-sas * * @param {AccountSASSignatureValues} accountSASSignatureValues * @param {StorageSharedKeyCredential} sharedKeyCredential * @returns {SASQueryParameters} * @memberof AccountSASSignatureValues */ function generateAccountSASQueryParameters(accountSASSignatureValues, sharedKeyCredential) { var version = accountSASSignatureValues.version ? accountSASSignatureValues.version : SERVICE_VERSION; var parsedPermissions = AccountSASPermissions.parse(accountSASSignatureValues.permissions.toString()); var parsedServices = AccountSASServices.parse(accountSASSignatureValues.services).toString(); var parsedResourceTypes = AccountSASResourceTypes.parse(accountSASSignatureValues.resourceTypes).toString(); var stringToSign = [ sharedKeyCredential.accountName, parsedPermissions, parsedServices, parsedResourceTypes, accountSASSignatureValues.startsOn ? truncatedISO8061Date(accountSASSignatureValues.startsOn, false) : "", truncatedISO8061Date(accountSASSignatureValues.expiresOn, false), accountSASSignatureValues.ipRange ? ipRangeToString(accountSASSignatureValues.ipRange) : "", accountSASSignatureValues.protocol ? accountSASSignatureValues.protocol : "", version, "" // Account SAS requires an additional newline character ].join("\n"); var signature = sharedKeyCredential.computeHMACSHA256(stringToSign); return new SASQueryParameters(version, signature, parsedPermissions.toString(), parsedServices, parsedResourceTypes, accountSASSignatureValues.protocol, accountSASSignatureValues.startsOn, accountSASSignatureValues.expiresOn, accountSASSignatureValues.ipRange); } // Copyright (c) Microsoft Corporation. All rights reserved. // Licensed under the MIT License. /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * * This is a helper class to construct a string representing the permissions granted by a ServiceSAS to a blob. Setting * a value to true means that any SAS which uses these permissions will grant permissions for that operation. Once all * the values are set, this should be serialized with toString and set as the permissions field on a * {@link BlobSASSignatureValues} object. It is possible to construct the permissions string without this class, but * the order of the permissions is particular and this class guarantees correctness. * * @export * @class BlobSASPermissions */ var BlobSASPermissions = /** @class */ (function () { function BlobSASPermissions() { /** * Specifies Read access granted. * * @type {boolean} * @memberof BlobSASPermissions */ this.read = false; /** * Specifies Add access granted. * * @type {boolean} * @memberof BlobSASPermissions */ this.add = false; /** * Specifies Create access granted. * * @type {boolean} * @memberof BlobSASPermissions */ this.create = false; /** * Specifies Write access granted. * * @type {boolean} * @memberof BlobSASPermissions */ this.write = false; /** * Specifies Delete access granted. * * @type {boolean} * @memberof BlobSASPermissions */ this.delete = false; } /** * Creates a {@link BlobSASPermissions} from the specified permissions string. This method will throw an * Error if it encounters a character that does not correspond to a valid permission. * * @static * @param {string} permissions * @returns {BlobSASPermissions} * @memberof BlobSASPermissions */ BlobSASPermissions.parse = function (permissions) { var blobSASPermissions = new BlobSASPermissions(); for (var _i = 0, permissions_1 = permissions; _i < permissions_1.length; _i++) { var char = permissions_1[_i]; switch (char) { case "r": blobSASPermissions.read = true; break; case "a": blobSASPermissions.add = true; break; case "c": blobSASPermissions.create = true; break; case "w": blobSASPermissions.write = true; break; case "d": blobSASPermissions.delete = true; break; default: throw new RangeError("Invalid permission: " + char); } } return blobSASPermissions; }; /** * Converts the given permissions to a string. Using this method will guarantee the permissions are in an * order accepted by the service. * * @returns {string} A string which represents the BlobSASPermissions * @memberof BlobSASPermissions */ BlobSASPermissions.prototype.toString = function () { var permissions = []; if (this.read) { permissions.push("r"); } if (this.add) { permissions.push("a"); } if (this.create) { permissions.push("c"); } if (this.write) { permissions.push("w"); } if (this.delete) { permissions.push("d"); } return permissions.join(""); }; return BlobSASPermissions; }()); // Copyright (c) Microsoft Corporation. All rights reserved. // Licensed under the MIT License. /** * This is a helper class to construct a string representing the permissions granted by a ServiceSAS to a container. * Setting a value to true means that any SAS which uses these permissions will grant permissions for that operation. * Once all the values are set, this should be serialized with toString and set as the permissions field on a * {@link BlobSASSignatureValues} object. It is possible to construct the permissions string without this class, but * the order of the permissions is particular and this class guarantees correctness. * * @export * @class ContainerSASPermissions */ var ContainerSASPermissions = /** @class */ (function () { function ContainerSASPermissions() { /** * Specifies Read access granted. * * @type {boolean} * @memberof ContainerSASPermissions */ this.read = false; /** * Specifies Add access granted. * * @type {boolean} * @memberof ContainerSASPermissions */ this.add = false; /** * Specifies Create access granted. * * @type {boolean} * @memberof ContainerSASPermissions */ this.create = false; /** * Specifies Write access granted. * * @type {boolean} * @memberof ContainerSASPermissions */ this.write = false; /** * Specifies Delete access granted. * * @type {boolean} * @memberof ContainerSASPermissions */ this.delete = false; /** * Specifies List access granted. * * @type {boolean} * @memberof ContainerSASPermissions */ this.list = false; } /** * Creates an {@link ContainerSASPermissions} from the specified permissions string. This method will throw an * Error if it encounters a character that does not correspond to a valid permission. * * @static * @param {string} permissions * @returns {ContainerSASPermissions} * @memberof ContainerSASPermissions */ ContainerSASPermissions.parse = function (permissions) { var containerSASPermissions = new ContainerSASPermissions(); for (var _i = 0, permissions_1 = permissions; _i < permissions_1.length; _i++) { var char = permissions_1[_i]; switch (char) { case "r": containerSASPermissions.read = true; break; case "a": containerSASPermissions.add = true; break; case "c": containerSASPermissions.create = true; break; case "w": containerSASPermissions.write = true; break; case "d": containerSASPermissions.delete = true; break; case "l": containerSASPermissions.list = true; break; default: throw new RangeError("Invalid permission " + char); } } return containerSASPermissions; }; /** * Converts the given permissions to a string. Using this method will guarantee the permissions are in an * order accepted by the service. * * The order of the characters should be as specified here to ensure correctness. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/constructing-a-service-sas * * @returns {string} * @memberof ContainerSASPermissions */ ContainerSASPermissions.prototype.toString = function () { var permissions = []; if (this.read) { permissions.push("r"); } if (this.add) { permissions.push("a"); } if (this.create) { permissions.push("c"); } if (this.write) { permissions.push("w"); } if (this.delete) { permissions.push("d"); } if (this.list) { permissions.push("l"); } return permissions.join(""); }; return ContainerSASPermissions; }()); /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * * UserDelegationKeyCredential is only used for generation of user delegation SAS. * @see https://docs.microsoft.com/en-us/rest/api/storageservices/create-user-delegation-sas * * @export * @class UserDelegationKeyCredential */ var UserDelegationKeyCredential = /** @class */ (function () { /** * Creates an instance of UserDelegationKeyCredential. * @param {string} accountName * @param {UserDelegationKey} userDelegationKey * @memberof UserDelegationKeyCredential */ function UserDelegationKeyCredential(accountName, userDelegationKey) { this.accountName = accountName; this.userDelegationKey = userDelegationKey; this.key = Buffer.from(userDelegationKey.value, "base64"); } /** * Generates a hash signature for an HTTP request or for a SAS. * * @param {string} stringToSign * @returns {string} * @memberof UserDelegationKeyCredential */ UserDelegationKeyCredential.prototype.computeHMACSHA256 = function (stringToSign) { // console.log(`stringToSign: ${JSON.stringify(stringToSign)}`); return crypto.createHmac("sha256", this.key) .update(stringToSign, "utf8") .digest("base64"); }; return UserDelegationKeyCredential; }()); // Copyright (c) Microsoft Corporation. All rights reserved. function generateBlobSASQueryParameters(blobSASSignatureValues, sharedKeyCredentialOrUserDelegationKey, accountName) { var version = blobSASSignatureValues.version ? blobSASSignatureValues.version : SERVICE_VERSION; var sharedKeyCredential = sharedKeyCredentialOrUserDelegationKey instanceof StorageSharedKeyCredential ? sharedKeyCredentialOrUserDelegationKey : undefined; var userDelegationKeyCredential; if (sharedKeyCredential === undefined && accountName !== undefined) { userDelegationKeyCredential = new UserDelegationKeyCredential(accountName, sharedKeyCredentialOrUserDelegationKey); } if (sharedKeyCredential === undefined && userDelegationKeyCredential === undefined) { throw TypeError("Invalid sharedKeyCredential, userDelegationKey or accountName."); } // Version 2018-11-09 adds support for the signed resource and signed blob snapshot time fields. // https://docs.microsoft.com/en-us/rest/api/storageservices/constructing-a-service-sas#constructing-the-signature-string if (version >= "2018-11-09") { if (sharedKeyCredential !== undefined) { return generateBlobSASQueryParameters20181109(blobSASSignatureValues, sharedKeyCredential); } else { return generateBlobSASQueryParametersUDK20181109(blobSASSignatureValues, userDelegationKeyCredential); } } if (version >= "2015-04-05") { if (sharedKeyCredential !== undefined) { return generateBlobSASQueryParameters20150405(blobSASSignatureValues, sharedKeyCredential); } else { throw new RangeError("'version' must be >= '2018-11-09' when generating user delegation SAS using user delegation key."); } } throw new RangeError("'version' must be >= '2015-04-05'."); } /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * IMPLEMENTATION FOR API VERSION FROM 2015-04-05 AND BEFORE 2018-11-09. * * Creates an instance of SASQueryParameters. * * Only accepts required settings needed to create a SAS. For optional settings please * set corresponding properties directly, such as permissions, startsOn and identifier. * * WARNING: When identifier is not provided, permissions and expiresOn are required. * You MUST assign value to identifier or expiresOn & permissions manually if you initial with * this constructor. * * @param {BlobSASSignatureValues} blobSASSignatureValues * @param {StorageSharedKeyCredential} sharedKeyCredential * @returns {SASQueryParameters} */ function generateBlobSASQueryParameters20150405(blobSASSignatureValues, sharedKeyCredential) { if (!blobSASSignatureValues.identifier && !blobSASSignatureValues.permissions && !blobSASSignatureValues.expiresOn) { throw new RangeError("Must provide 'permissions' and 'expiresOn' for Blob SAS generation when 'identifier' is not provided."); } var version = blobSASSignatureValues.version ? blobSASSignatureValues.version : SERVICE_VERSION; var resource = "c"; var verifiedPermissions; if (blobSASSignatureValues.snapshotTime) { throw RangeError("'version' must be >= '2018-11-09' when provided 'snapshotTime'."); } if (blobSASSignatureValues.blobName) { resource = "b"; } // Calling parse and toString guarantees the proper ordering and throws on invalid characters. if (blobSASSignatureValues.permissions) { if (blobSASSignatureValues.blobName) { verifiedPermissions = BlobSASPermissions.parse(blobSASSignatureValues.permissions.toString()).toString(); } else { verifiedPermissions = ContainerSASPermissions.parse(blobSASSignatureValues.permissions.toString()).toString(); } } // Signature is generated on the un-url-encoded values. var stringToSign = [ verifiedPermissions ? verifiedPermissions : "", blobSASSignatureValues.startsOn ? truncatedISO8061Date(blobSASSignatureValues.startsOn, false) : "", blobSASSignatureValues.expiresOn ? truncatedISO8061Date(blobSASSignatureValues.expiresOn, false) : "", getCanonicalName(sharedKeyCredential.accountName, blobSASSignatureValues.containerName, blobSASSignatureValues.blobName), blobSASSignatureValues.identifier, blobSASSignatureValues.ipRange ? ipRangeToString(blobSASSignatureValues.ipRange) : "", blobSASSignatureValues.protocol ? blobSASSignatureValues.protocol : "", version, blobSASSignatureValues.cacheControl ? blobSASSignatureValues.cacheControl : "", blobSASSignatureValues.contentDisposition ? blobSASSignatureValues.contentDisposition : "", blobSASSignatureValues.contentEncoding ? blobSASSignatureValues.contentEncoding : "", blobSASSignatureValues.contentLanguage ? blobSASSignatureValues.contentLanguage : "", blobSASSignatureValues.contentType ? blobSASSignatureValues.contentType : "" ].join("\n"); var signature = sharedKeyCredential.computeHMACSHA256(stringToSign); return new SASQueryParameters(version, signature, verifiedPermissions, undefined, undefined, blobSASSignatureValues.protocol, blobSASSignatureValues.startsOn, blobSASSignatureValues.expiresOn, blobSASSignatureValues.ipRange, blobSASSignatureValues.identifier, resource, blobSASSignatureValues.cacheControl, blobSASSignatureValues.contentDisposition, blobSASSignatureValues.contentEncoding, blobSASSignatureValues.contentLanguage, blobSASSignatureValues.contentType); } /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * IMPLEMENTATION FOR API VERSION FROM 2018-11-09. * * Creates an instance of SASQueryParameters. * * Only accepts required settings needed to create a SAS. For optional settings please * set corresponding properties directly, such as permissions, startsOn and identifier. * * WARNING: When identifier is not provided, permissions and expiresOn are required. * You MUST assign value to identifier or expiresOn & permissions manually if you initial with * this constructor. * * @param {BlobSASSignatureValues} blobSASSignatureValues * @param {StorageSharedKeyCredential} sharedKeyCredential * @returns {SASQueryParameters} */ function generateBlobSASQueryParameters20181109(blobSASSignatureValues, sharedKeyCredential) { if (!blobSASSignatureValues.identifier && !blobSASSignatureValues.permissions && !blobSASSignatureValues.expiresOn) { throw new RangeError("Must provide 'permissions' and 'expiresOn' for Blob SAS generation when 'identifier' is not provided."); } var version = blobSASSignatureValues.version ? blobSASSignatureValues.version : SERVICE_VERSION; var resource = "c"; var verifiedPermissions; if (blobSASSignatureValues.blobName === undefined && blobSASSignatureValues.snapshotTime) { throw RangeError("Must provide 'blobName' when provided 'snapshotTime'."); } if (blobSASSignatureValues.blobName) { resource = "b"; if (blobSASSignatureValues.snapshotTime) { resource = "bs"; } } // Calling parse and toString guarantees the proper ordering and throws on invalid characters. if (blobSASSignatureValues.permissions) { if (blobSASSignatureValues.blobName) { verifiedPermissions = BlobSASPermissions.parse(blobSASSignatureValues.permissions.toString()).toString(); } else { verifiedPermissions = ContainerSASPermissions.parse(blobSASSignatureValues.permissions.toString()).toString(); } } // Signature is generated on the un-url-encoded values. var stringToSign = [ verifiedPermissions ? verifiedPermissions : "", blobSASSignatureValues.startsOn ? truncatedISO8061Date(blobSASSignatureValues.startsOn, false) : "", blobSASSignatureValues.expiresOn ? truncatedISO8061Date(blobSASSignatureValues.expiresOn, false) : "", getCanonicalName(sharedKeyCredential.accountName, blobSASSignatureValues.containerName, blobSASSignatureValues.blobName), blobSASSignatureValues.identifier, blobSASSignatureValues.ipRange ? ipRangeToString(blobSASSignatureValues.ipRange) : "", blobSASSignatureValues.protocol ? blobSASSignatureValues.protocol : "", version, resource, blobSASSignatureValues.snapshotTime, blobSASSignatureValues.cacheControl ? blobSASSignatureValues.cacheControl : "", blobSASSignatureValues.contentDisposition ? blobSASSignatureValues.contentDisposition : "", blobSASSignatureValues.contentEncoding ? blobSASSignatureValues.contentEncoding : "", blobSASSignatureValues.contentLanguage ? blobSASSignatureValues.contentLanguage : "", blobSASSignatureValues.contentType ? blobSASSignatureValues.contentType : "" ].join("\n"); var signature = sharedKeyCredential.computeHMACSHA256(stringToSign); return new SASQueryParameters(version, signature, verifiedPermissions, undefined, undefined, blobSASSignatureValues.protocol, blobSASSignatureValues.startsOn, blobSASSignatureValues.expiresOn, blobSASSignatureValues.ipRange, blobSASSignatureValues.identifier, resource, blobSASSignatureValues.cacheControl, blobSASSignatureValues.contentDisposition, blobSASSignatureValues.contentEncoding, blobSASSignatureValues.contentLanguage, blobSASSignatureValues.contentType); } /** * ONLY AVAILABLE IN NODE.JS RUNTIME. * IMPLEMENTATION FOR API VERSION FROM 2018-11-09. * * Creates an instance of SASQueryParameters. * * Only accepts required settings needed to create a SAS. For optional settings please * set corresponding properties directly, such as permissions, startsOn and identifier. * * WARNING: identifier will be ignored, permissions and expiresOn are required. * * @param {BlobSASSignatureValues} blobSASSignatureValues * @param {UserDelegationKeyCredential} userDelegationKeyCredential * @returns {SASQueryParameters} */ function generateBlobSASQueryParametersUDK20181109(blobSASSignatureValues, userDelegationKeyCredential) { if (!blobSASSignatureValues.permissions || !blobSASSignatureValues.expiresOn) { throw new RangeError("Must provide 'permissions' and 'expiresOn' for Blob SAS generation when generating user delegation SAS."); } var version = blobSASSignatureValues.version ? blobSASSignatureValues.version : SERVICE_VERSION; var resource = "c"; var verifiedPermissions; if (blobSASSignatureValues.blobName === undefined && blobSASSignatureValues.snapshotTime) { throw RangeError("Must provide 'blobName' when provided 'snapshotTime'."); } if (blobSASSignatureValues.blobName) { resource = "b"; if (blobSASSignatureValues.snapshotTime) { resource = "bs"; } } // Calling parse and toString guarantees the proper ordering and throws on invalid characters. if (blobSASSignatureValues.permissions) { if (blobSASSignatureValues.blobName) { verifiedPermissions = BlobSASPermissions.parse(blobSASSignatureValues.permissions.toString()).toString(); } else { verifiedPermissions = ContainerSASPermissions.parse(blobSASSignatureValues.permissions.toString()).toString(); } } // Signature is generated on the un-url-encoded values. var stringToSign = [ verifiedPermissions ? verifiedPermissions : "", blobSASSignatureValues.startsOn ? truncatedISO8061Date(blobSASSignatureValues.startsOn, false) : "", blobSASSignatureValues.expiresOn ? truncatedISO8061Date(blobSASSignatureValues.expiresOn, false) : "", getCanonicalName(userDelegationKeyCredential.accountName, blobSASSignatureValues.containerName, blobSASSignatureValues.blobName), userDelegationKeyCredential.userDelegationKey.signedObjectId, userDelegationKeyCredential.userDelegationKey.signedTenantId, userDelegationKeyCredential.userDelegationKey.signedStartsOn ? truncatedISO8061Date(userDelegationKeyCredential.userDelegationKey.signedStartsOn, false) : "", userDelegationKeyCredential.userDelegationKey.signedExpiresOn ? truncatedISO8061Date(userDelegationKeyCredential.userDelegationKey.signedExpiresOn, false) : "", userDelegationKeyCredential.userDelegationKey.signedService, userDelegationKeyCredential.userDelegationKey.signedVersion, blobSASSignatureValues.ipRange ? ipRangeToString(blobSASSignatureValues.ipRange) : "", blobSASSignatureValues.protocol ? blobSASSignatureValues.protocol : "", version, resource, blobSASSignatureValues.snapshotTime, blobSASSignatureValues.cacheControl, blobSASSignatureValues.contentDisposition, blobSASSignatureValues.contentEncoding, blobSASSignatureValues.contentLanguage, blobSASSignatureValues.contentType ].join("\n"); var signature = userDelegationKeyCredential.computeHMACSHA256(stringToSign); return new SASQueryParameters(version, signature, verifiedPermissions, undefined, undefined, blobSASSignatureValues.protocol, blobSASSignatureValues.startsOn, blobSASSignatureValues.expiresOn, blobSASSignatureValues.ipRange, blobSASSignatureValues.identifier, resource, blobSASSignatureValues.cacheControl, blobSASSignatureValues.contentDisposition, blobSASSignatureValues.contentEncoding, blobSASSignatureValues.contentLanguage, blobSASSignatureValues.contentType, userDelegationKeyCredential.userDelegationKey); } function getCanonicalName(accountName, containerName, blobName) { // Container: "/blob/account/containerName" // Blob: "/blob/account/containerName/blobName" var elements = ["/blob/" + accountName + "/" + containerName]; if (blobName) { elements.push("/" + blobName); } return elements.join(""); } Object.defineProperty(exports, 'BaseRequestPolicy', { enumerable: true, get: function () { return coreHttp.BaseRequestPolicy; } }); Object.defineProperty(exports, 'HttpHeaders', { enumerable: true, get: function () { return coreHttp.HttpHeaders; } }); Object.defineProperty(exports, 'RequestPolicyOptions', { enumerable: true, get: function () { return coreHttp.RequestPolicyOptions; } }); Object.defineProperty(exports, 'RestError', { enumerable: true, get: function () { return coreHttp.RestError; } }); Object.defineProperty(exports, 'WebResource', { enumerable: true, get: function () { return coreHttp.WebResource; } }); Object.defineProperty(exports, 'deserializationPolicy', { enumerable: true, get: function () { return coreHttp.deserializationPolicy; } }); exports.AccountSASPermissions = AccountSASPermissions; exports.AccountSASResourceTypes = AccountSASResourceTypes; exports.AccountSASServices = AccountSASServices; exports.AnonymousCredential = AnonymousCredential; exports.AnonymousCredentialPolicy = AnonymousCredentialPolicy; exports.AppendBlobClient = AppendBlobClient; exports.BlobBatch = BlobBatch; exports.BlobBatchClient = BlobBatchClient; exports.BlobClient = BlobClient; exports.BlobLeaseClient = BlobLeaseClient; exports.BlobSASPermissions = BlobSASPermissions; exports.BlobServiceClient = BlobServiceClient; exports.BlockBlobClient = BlockBlobClient; exports.ContainerClient = ContainerClient; exports.ContainerSASPermissions = ContainerSASPermissions; exports.Credential = Credential; exports.CredentialPolicy = CredentialPolicy; exports.PageBlobClient = PageBlobClient; exports.Pipeline = Pipeline; exports.SASQueryParameters = SASQueryParameters; exports.StorageBrowserPolicy = StorageBrowserPolicy; exports.StorageBrowserPolicyFactory = StorageBrowserPolicyFactory; exports.StorageOAuthScopes = StorageOAuthScopes; exports.StorageRetryPolicy = StorageRetryPolicy; exports.StorageRetryPolicyFactory = StorageRetryPolicyFactory; exports.StorageSharedKeyCredential = StorageSharedKeyCredential; exports.StorageSharedKeyCredentialPolicy = StorageSharedKeyCredentialPolicy; exports.generateAccountSASQueryParameters = generateAccountSASQueryParameters; exports.generateBlobSASQueryParameters = generateBlobSASQueryParameters; exports.logger = logger; exports.newPipeline = newPipeline; //# sourceMappingURL=index.js.map /***/ }), /***/ 383: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; Object.defineProperty(exports, "__esModule", { value: true }); const assert = __webpack_require__(357); const path = __webpack_require__(622); const pathHelper = __webpack_require__(972); 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') { assert(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 assert(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 assert(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); assert(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 assert(!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 /***/ }), /***/ 393: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; /*! * Copyright (c) 2015, Salesforce.com, 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: * * 1. Redistributions of source code must retain the above copyright notice, * this list of conditions and the following disclaimer. * * 2. 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. * * 3. Neither the name of Salesforce.com 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 HOLDER 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. */ const punycode = __webpack_require__(213); const urlParse = __webpack_require__(835).parse; const util = __webpack_require__(669); const pubsuffix = __webpack_require__(562); const Store = __webpack_require__(338).Store; const MemoryCookieStore = __webpack_require__(332).MemoryCookieStore; const pathMatch = __webpack_require__(348).pathMatch; const VERSION = __webpack_require__(460); const { fromCallback } = __webpack_require__(676); // From RFC6265 S4.1.1 // note that it excludes \x3B ";" const COOKIE_OCTETS = /^[\x21\x23-\x2B\x2D-\x3A\x3C-\x5B\x5D-\x7E]+$/; const CONTROL_CHARS = /[\x00-\x1F]/; // From Chromium // '\r', '\n' and '\0' should be treated as a terminator in // the "relaxed" mode, see: // https://github.com/ChromiumWebApps/chromium/blob/b3d3b4da8bb94c1b2e061600df106d590fda3620/net/cookies/parsed_cookie.cc#L60 const TERMINATORS = ["\n", "\r", "\0"]; // RFC6265 S4.1.1 defines path value as 'any CHAR except CTLs or ";"' // Note ';' is \x3B const PATH_VALUE = /[\x20-\x3A\x3C-\x7E]+/; // date-time parsing constants (RFC6265 S5.1.1) const DATE_DELIM = /[\x09\x20-\x2F\x3B-\x40\x5B-\x60\x7B-\x7E]/; const MONTH_TO_NUM = { jan: 0, feb: 1, mar: 2, apr: 3, may: 4, jun: 5, jul: 6, aug: 7, sep: 8, oct: 9, nov: 10, dec: 11 }; const MAX_TIME = 2147483647000; // 31-bit max const MIN_TIME = 0; // 31-bit min const SAME_SITE_CONTEXT_VAL_ERR = 'Invalid sameSiteContext option for getCookies(); expected one of "strict", "lax", or "none"'; function checkSameSiteContext(value) { const context = String(value).toLowerCase(); if (context === "none" || context === "lax" || context === "strict") { return context; } else { return null; } } const PrefixSecurityEnum = Object.freeze({ SILENT: "silent", STRICT: "strict", DISABLED: "unsafe-disabled" }); // Dumped from ip-regex@4.0.0, with the following changes: // * all capturing groups converted to non-capturing -- "(?:)" // * support for IPv6 Scoped Literal ("%eth1") removed // * lowercase hexadecimal only var IP_REGEX_LOWERCASE =/(?:^(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]\d|\d)(?:\.(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]\d|\d)){3}$)|(?:^(?:(?:[a-f\d]{1,4}:){7}(?:[a-f\d]{1,4}|:)|(?:[a-f\d]{1,4}:){6}(?:(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]\d|\d)(?:\.(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]\d|\d)){3}|:[a-f\d]{1,4}|:)|(?:[a-f\d]{1,4}:){5}(?::(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]\d|\d)(?:\.(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]\d|\d)){3}|(?::[a-f\d]{1,4}){1,2}|:)|(?:[a-f\d]{1,4}:){4}(?:(?::[a-f\d]{1,4}){0,1}:(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]\d|\d)(?:\.(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]\d|\d)){3}|(?::[a-f\d]{1,4}){1,3}|:)|(?:[a-f\d]{1,4}:){3}(?:(?::[a-f\d]{1,4}){0,2}:(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]\d|\d)(?:\.(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]\d|\d)){3}|(?::[a-f\d]{1,4}){1,4}|:)|(?:[a-f\d]{1,4}:){2}(?:(?::[a-f\d]{1,4}){0,3}:(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]\d|\d)(?:\.(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]\d|\d)){3}|(?::[a-f\d]{1,4}){1,5}|:)|(?:[a-f\d]{1,4}:){1}(?:(?::[a-f\d]{1,4}){0,4}:(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]\d|\d)(?:\.(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]\d|\d)){3}|(?::[a-f\d]{1,4}){1,6}|:)|(?::(?:(?::[a-f\d]{1,4}){0,5}:(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]\d|\d)(?:\.(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]\d|\d)){3}|(?::[a-f\d]{1,4}){1,7}|:)))$)/; /* * Parses a Natural number (i.e., non-negative integer) with either the * *DIGIT ( non-digit *OCTET ) * or * *DIGIT * grammar (RFC6265 S5.1.1). * * The "trailingOK" boolean controls if the grammar accepts a * "( non-digit *OCTET )" trailer. */ function parseDigits(token, minDigits, maxDigits, trailingOK) { let count = 0; while (count < token.length) { const c = token.charCodeAt(count); // "non-digit = %x00-2F / %x3A-FF" if (c <= 0x2f || c >= 0x3a) { break; } count++; } // constrain to a minimum and maximum number of digits. if (count < minDigits || count > maxDigits) { return null; } if (!trailingOK && count != token.length) { return null; } return parseInt(token.substr(0, count), 10); } function parseTime(token) { const parts = token.split(":"); const result = [0, 0, 0]; /* RF6256 S5.1.1: * time = hms-time ( non-digit *OCTET ) * hms-time = time-field ":" time-field ":" time-field * time-field = 1*2DIGIT */ if (parts.length !== 3) { return null; } for (let i = 0; i < 3; i++) { // "time-field" must be strictly "1*2DIGIT", HOWEVER, "hms-time" can be // followed by "( non-digit *OCTET )" so therefore the last time-field can // have a trailer const trailingOK = i == 2; const num = parseDigits(parts[i], 1, 2, trailingOK); if (num === null) { return null; } result[i] = num; } return result; } function parseMonth(token) { token = String(token) .substr(0, 3) .toLowerCase(); const num = MONTH_TO_NUM[token]; return num >= 0 ? num : null; } /* * RFC6265 S5.1.1 date parser (see RFC for full grammar) */ function parseDate(str) { if (!str) { return; } /* RFC6265 S5.1.1: * 2. Process each date-token sequentially in the order the date-tokens * appear in the cookie-date */ const tokens = str.split(DATE_DELIM); if (!tokens) { return; } let hour = null; let minute = null; let second = null; let dayOfMonth = null; let month = null; let year = null; for (let i = 0; i < tokens.length; i++) { const token = tokens[i].trim(); if (!token.length) { continue; } let result; /* 2.1. If the found-time flag is not set and the token matches the time * production, set the found-time flag and set the hour- value, * minute-value, and second-value to the numbers denoted by the digits in * the date-token, respectively. Skip the remaining sub-steps and continue * to the next date-token. */ if (second === null) { result = parseTime(token); if (result) { hour = result[0]; minute = result[1]; second = result[2]; continue; } } /* 2.2. If the found-day-of-month flag is not set and the date-token matches * the day-of-month production, set the found-day-of- month flag and set * the day-of-month-value to the number denoted by the date-token. Skip * the remaining sub-steps and continue to the next date-token. */ if (dayOfMonth === null) { // "day-of-month = 1*2DIGIT ( non-digit *OCTET )" result = parseDigits(token, 1, 2, true); if (result !== null) { dayOfMonth = result; continue; } } /* 2.3. If the found-month flag is not set and the date-token matches the * month production, set the found-month flag and set the month-value to * the month denoted by the date-token. Skip the remaining sub-steps and * continue to the next date-token. */ if (month === null) { result = parseMonth(token); if (result !== null) { month = result; continue; } } /* 2.4. If the found-year flag is not set and the date-token matches the * year production, set the found-year flag and set the year-value to the * number denoted by the date-token. Skip the remaining sub-steps and * continue to the next date-token. */ if (year === null) { // "year = 2*4DIGIT ( non-digit *OCTET )" result = parseDigits(token, 2, 4, true); if (result !== null) { year = result; /* From S5.1.1: * 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. */ if (year >= 70 && year <= 99) { year += 1900; } else if (year >= 0 && year <= 69) { year += 2000; } } } } /* RFC 6265 S5.1.1 * "5. Abort these steps and fail to parse the cookie-date if: * * at least one of the found-day-of-month, found-month, found- * year, or found-time flags is not set, * * the day-of-month-value is less than 1 or greater than 31, * * the year-value is less than 1601, * * the hour-value is greater than 23, * * the minute-value is greater than 59, or * * the second-value is greater than 59. * (Note that leap seconds cannot be represented in this syntax.)" * * So, in order as above: */ if ( dayOfMonth === null || month === null || year === null || second === null || dayOfMonth < 1 || dayOfMonth > 31 || year < 1601 || hour > 23 || minute > 59 || second > 59 ) { return; } return new Date(Date.UTC(year, month, dayOfMonth, hour, minute, second)); } function formatDate(date) { return date.toUTCString(); } // S5.1.2 Canonicalized Host Names function canonicalDomain(str) { if (str == null) { return null; } str = str.trim().replace(/^\./, ""); // S4.1.2.3 & S5.2.3: ignore leading . // convert to IDN if any non-ASCII characters if (punycode && /[^\u0001-\u007f]/.test(str)) { str = punycode.toASCII(str); } return str.toLowerCase(); } // S5.1.3 Domain Matching function domainMatch(str, domStr, canonicalize) { if (str == null || domStr == null) { return null; } if (canonicalize !== false) { str = canonicalDomain(str); domStr = canonicalDomain(domStr); } /* * S5.1.3: * "A string domain-matches a given domain string if at least one of the * following conditions hold:" * * " o The domain string and the string are identical. (Note that both the * domain string and the string will have been canonicalized to lower case at * this point)" */ if (str == domStr) { return true; } /* " o All of the following [three] conditions hold:" */ /* "* The domain string is a suffix of the string" */ const idx = str.indexOf(domStr); if (idx <= 0) { return false; // it's a non-match (-1) or prefix (0) } // next, check it's a proper suffix // e.g., "a.b.c".indexOf("b.c") === 2 // 5 === 3+2 if (str.length !== domStr.length + idx) { return false; // it's not a suffix } /* " * The last character of the string that is not included in the * domain string is a %x2E (".") character." */ if (str.substr(idx-1,1) !== '.') { return false; // doesn't align on "." } /* " * The string is a host name (i.e., not an IP address)." */ if (IP_REGEX_LOWERCASE.test(str)) { return false; // it's an IP address } return true; } // RFC6265 S5.1.4 Paths and Path-Match /* * "The user agent MUST use an algorithm equivalent to the following algorithm * to compute the default-path of a cookie:" * * Assumption: the path (and not query part or absolute uri) is passed in. */ function defaultPath(path) { // "2. If the uri-path is empty or if the first character of the uri-path is not // a %x2F ("/") character, output %x2F ("/") and skip the remaining steps. if (!path || path.substr(0, 1) !== "/") { return "/"; } // "3. If the uri-path contains no more than one %x2F ("/") character, output // %x2F ("/") and skip the remaining step." if (path === "/") { return path; } const rightSlash = path.lastIndexOf("/"); if (rightSlash === 0) { return "/"; } // "4. Output the characters of the uri-path from the first character up to, // but not including, the right-most %x2F ("/")." return path.slice(0, rightSlash); } function trimTerminator(str) { for (let t = 0; t < TERMINATORS.length; t++) { const terminatorIdx = str.indexOf(TERMINATORS[t]); if (terminatorIdx !== -1) { str = str.substr(0, terminatorIdx); } } return str; } function parseCookiePair(cookiePair, looseMode) { cookiePair = trimTerminator(cookiePair); let firstEq = cookiePair.indexOf("="); if (looseMode) { if (firstEq === 0) { // '=' is immediately at start cookiePair = cookiePair.substr(1); firstEq = cookiePair.indexOf("="); // might still need to split on '=' } } else { // non-loose mode if (firstEq <= 0) { // no '=' or is at start return; // needs to have non-empty "cookie-name" } } let cookieName, cookieValue; if (firstEq <= 0) { cookieName = ""; cookieValue = cookiePair.trim(); } else { cookieName = cookiePair.substr(0, firstEq).trim(); cookieValue = cookiePair.substr(firstEq + 1).trim(); } if (CONTROL_CHARS.test(cookieName) || CONTROL_CHARS.test(cookieValue)) { return; } const c = new Cookie(); c.key = cookieName; c.value = cookieValue; return c; } function parse(str, options) { if (!options || typeof options !== "object") { options = {}; } str = str.trim(); // We use a regex to parse the "name-value-pair" part of S5.2 const firstSemi = str.indexOf(";"); // S5.2 step 1 const cookiePair = firstSemi === -1 ? str : str.substr(0, firstSemi); const c = parseCookiePair(cookiePair, !!options.loose); if (!c) { return; } if (firstSemi === -1) { return c; } // S5.2.3 "unparsed-attributes consist of the remainder of the set-cookie-string // (including the %x3B (";") in question)." plus later on in the same section // "discard the first ";" and trim". const unparsed = str.slice(firstSemi + 1).trim(); // "If the unparsed-attributes string is empty, skip the rest of these // steps." if (unparsed.length === 0) { return c; } /* * S5.2 says that when looping over the items "[p]rocess the attribute-name * and attribute-value according to the requirements in the following * subsections" for every item. Plus, for many of the individual attributes * in S5.3 it says to use the "attribute-value of the last attribute in the * cookie-attribute-list". Therefore, in this implementation, we overwrite * the previous value. */ const cookie_avs = unparsed.split(";"); while (cookie_avs.length) { const av = cookie_avs.shift().trim(); if (av.length === 0) { // happens if ";;" appears continue; } const av_sep = av.indexOf("="); let av_key, av_value; if (av_sep === -1) { av_key = av; av_value = null; } else { av_key = av.substr(0, av_sep); av_value = av.substr(av_sep + 1); } av_key = av_key.trim().toLowerCase(); if (av_value) { av_value = av_value.trim(); } switch (av_key) { case "expires": // S5.2.1 if (av_value) { const exp = parseDate(av_value); // "If the attribute-value failed to parse as a cookie date, ignore the // cookie-av." if (exp) { // over and underflow not realistically a concern: V8's getTime() seems to // store something larger than a 32-bit time_t (even with 32-bit node) c.expires = exp; } } break; case "max-age": // S5.2.2 if (av_value) { // "If the first character of the attribute-value is not a DIGIT or a "-" // character ...[or]... If the remainder of attribute-value contains a // non-DIGIT character, ignore the cookie-av." if (/^-?[0-9]+$/.test(av_value)) { const delta = parseInt(av_value, 10); // "If delta-seconds is less than or equal to zero (0), let expiry-time // be the earliest representable date and time." c.setMaxAge(delta); } } break; case "domain": // S5.2.3 // "If the attribute-value is empty, the behavior is undefined. However, // the user agent SHOULD ignore the cookie-av entirely." if (av_value) { // S5.2.3 "Let cookie-domain be the attribute-value without the leading %x2E // (".") character." const domain = av_value.trim().replace(/^\./, ""); if (domain) { // "Convert the cookie-domain to lower case." c.domain = domain.toLowerCase(); } } break; case "path": // S5.2.4 /* * "If the attribute-value is empty or if the first character of the * attribute-value is not %x2F ("/"): * Let cookie-path be the default-path. * Otherwise: * Let cookie-path be the attribute-value." * * We'll represent the default-path as null since it depends on the * context of the parsing. */ c.path = av_value && av_value[0] === "/" ? av_value : null; break; case "secure": // S5.2.5 /* * "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." */ c.secure = true; break; case "httponly": // S5.2.6 -- effectively the same as 'secure' c.httpOnly = true; break; case "samesite": // RFC6265bis-02 S5.3.7 const enforcement = av_value ? av_value.toLowerCase() : ""; switch (enforcement) { case "strict": c.sameSite = "strict"; break; case "lax": c.sameSite = "lax"; break; default: // RFC6265bis-02 S5.3.7 step 1: // "If cookie-av's attribute-value is not a case-insensitive match // for "Strict" or "Lax", ignore the "cookie-av"." // This effectively sets it to 'none' from the prototype. break; } break; default: c.extensions = c.extensions || []; c.extensions.push(av); break; } } return c; } /** * If the cookie-name begins with a case-sensitive match for the * string "__Secure-", abort these steps and ignore the cookie * entirely unless the cookie's secure-only-flag is true. * @param cookie * @returns boolean */ function isSecurePrefixConditionMet(cookie) { return !cookie.key.startsWith("__Secure-") || cookie.secure; } /** * If the cookie-name begins with a case-sensitive match for the * string "__Host-", abort these steps and ignore the cookie * entirely unless the cookie meets all the following criteria: * 1. The cookie's secure-only-flag is true. * 2. The cookie's host-only-flag is true. * 3. The cookie-attribute-list contains an attribute with an * attribute-name of "Path", and the cookie's path is "/". * @param cookie * @returns boolean */ function isHostPrefixConditionMet(cookie) { return ( !cookie.key.startsWith("__Host-") || (cookie.secure && cookie.hostOnly && cookie.path != null && cookie.path === "/") ); } // avoid the V8 deoptimization monster! function jsonParse(str) { let obj; try { obj = JSON.parse(str); } catch (e) { return e; } return obj; } function fromJSON(str) { if (!str) { return null; } let obj; if (typeof str === "string") { obj = jsonParse(str); if (obj instanceof Error) { return null; } } else { // assume it's an Object obj = str; } const c = new Cookie(); for (let i = 0; i < Cookie.serializableProperties.length; i++) { const prop = Cookie.serializableProperties[i]; if (obj[prop] === undefined || obj[prop] === cookieDefaults[prop]) { continue; // leave as prototype default } if (prop === "expires" || prop === "creation" || prop === "lastAccessed") { if (obj[prop] === null) { c[prop] = null; } else { c[prop] = obj[prop] == "Infinity" ? "Infinity" : new Date(obj[prop]); } } else { c[prop] = obj[prop]; } } return c; } /* Section 5.4 part 2: * "* Cookies with longer paths are listed before cookies with * shorter paths. * * * Among cookies that have equal-length path fields, cookies with * earlier creation-times are listed before cookies with later * creation-times." */ function cookieCompare(a, b) { let cmp = 0; // descending for length: b CMP a const aPathLen = a.path ? a.path.length : 0; const bPathLen = b.path ? b.path.length : 0; cmp = bPathLen - aPathLen; if (cmp !== 0) { return cmp; } // ascending for time: a CMP b const aTime = a.creation ? a.creation.getTime() : MAX_TIME; const bTime = b.creation ? b.creation.getTime() : MAX_TIME; cmp = aTime - bTime; if (cmp !== 0) { return cmp; } // break ties for the same millisecond (precision of JavaScript's clock) cmp = a.creationIndex - b.creationIndex; return cmp; } // Gives the permutation of all possible pathMatch()es of a given path. The // array is in longest-to-shortest order. Handy for indexing. function permutePath(path) { if (path === "/") { return ["/"]; } const permutations = [path]; while (path.length > 1) { const lindex = path.lastIndexOf("/"); if (lindex === 0) { break; } path = path.substr(0, lindex); permutations.push(path); } permutations.push("/"); return permutations; } function getCookieContext(url) { if (url instanceof Object) { return url; } // NOTE: decodeURI will throw on malformed URIs (see GH-32). // Therefore, we will just skip decoding for such URIs. try { url = decodeURI(url); } catch (err) { // Silently swallow error } return urlParse(url); } const cookieDefaults = { // the order in which the RFC has them: key: "", value: "", expires: "Infinity", maxAge: null, domain: null, path: null, secure: false, httpOnly: false, extensions: null, // set by the CookieJar: hostOnly: null, pathIsDefault: null, creation: null, lastAccessed: null, sameSite: "none" }; class Cookie { constructor(options = {}) { if (util.inspect.custom) { this[util.inspect.custom] = this.inspect; } Object.assign(this, cookieDefaults, options); this.creation = this.creation || new Date(); // used to break creation ties in cookieCompare(): Object.defineProperty(this, "creationIndex", { configurable: false, enumerable: false, // important for assert.deepEqual checks writable: true, value: ++Cookie.cookiesCreated }); } inspect() { const now = Date.now(); const hostOnly = this.hostOnly != null ? this.hostOnly : "?"; const createAge = this.creation ? `${now - this.creation.getTime()}ms` : "?"; const accessAge = this.lastAccessed ? `${now - this.lastAccessed.getTime()}ms` : "?"; return `Cookie="${this.toString()}; hostOnly=${hostOnly}; aAge=${accessAge}; cAge=${createAge}"`; } toJSON() { const obj = {}; for (const prop of Cookie.serializableProperties) { if (this[prop] === cookieDefaults[prop]) { continue; // leave as prototype default } if ( prop === "expires" || prop === "creation" || prop === "lastAccessed" ) { if (this[prop] === null) { obj[prop] = null; } else { obj[prop] = this[prop] == "Infinity" // intentionally not === ? "Infinity" : this[prop].toISOString(); } } else if (prop === "maxAge") { if (this[prop] !== null) { // again, intentionally not === obj[prop] = this[prop] == Infinity || this[prop] == -Infinity ? this[prop].toString() : this[prop]; } } else { if (this[prop] !== cookieDefaults[prop]) { obj[prop] = this[prop]; } } } return obj; } clone() { return fromJSON(this.toJSON()); } validate() { if (!COOKIE_OCTETS.test(this.value)) { return false; } if ( this.expires != Infinity && !(this.expires instanceof Date) && !parseDate(this.expires) ) { return false; } if (this.maxAge != null && this.maxAge <= 0) { return false; // "Max-Age=" non-zero-digit *DIGIT } if (this.path != null && !PATH_VALUE.test(this.path)) { return false; } const cdomain = this.cdomain(); if (cdomain) { if (cdomain.match(/\.$/)) { return false; // S4.1.2.3 suggests that this is bad. domainMatch() tests confirm this } const suffix = pubsuffix.getPublicSuffix(cdomain); if (suffix == null) { // it's a public suffix return false; } } return true; } setExpires(exp) { if (exp instanceof Date) { this.expires = exp; } else { this.expires = parseDate(exp) || "Infinity"; } } setMaxAge(age) { if (age === Infinity || age === -Infinity) { this.maxAge = age.toString(); // so JSON.stringify() works } else { this.maxAge = age; } } cookieString() { let val = this.value; if (val == null) { val = ""; } if (this.key === "") { return val; } return `${this.key}=${val}`; } // gives Set-Cookie header format toString() { let str = this.cookieString(); if (this.expires != Infinity) { if (this.expires instanceof Date) { str += `; Expires=${formatDate(this.expires)}`; } else { str += `; Expires=${this.expires}`; } } if (this.maxAge != null && this.maxAge != Infinity) { str += `; Max-Age=${this.maxAge}`; } if (this.domain && !this.hostOnly) { str += `; Domain=${this.domain}`; } if (this.path) { str += `; Path=${this.path}`; } if (this.secure) { str += "; Secure"; } if (this.httpOnly) { str += "; HttpOnly"; } if (this.sameSite && this.sameSite !== "none") { const ssCanon = Cookie.sameSiteCanonical[this.sameSite.toLowerCase()]; str += `; SameSite=${ssCanon ? ssCanon : this.sameSite}`; } if (this.extensions) { this.extensions.forEach(ext => { str += `; ${ext}`; }); } return str; } // TTL() partially replaces the "expiry-time" parts of S5.3 step 3 (setCookie() // elsewhere) // S5.3 says to give the "latest representable date" for which we use Infinity // For "expired" we use 0 TTL(now) { /* RFC6265 S4.1.2.2 If a cookie has both the Max-Age and the Expires * attribute, the Max-Age attribute has precedence and controls the * expiration date of the cookie. * (Concurs with S5.3 step 3) */ if (this.maxAge != null) { return this.maxAge <= 0 ? 0 : this.maxAge * 1000; } let expires = this.expires; if (expires != Infinity) { if (!(expires instanceof Date)) { expires = parseDate(expires) || Infinity; } if (expires == Infinity) { return Infinity; } return expires.getTime() - (now || Date.now()); } return Infinity; } // expiryTime() replaces the "expiry-time" parts of S5.3 step 3 (setCookie() // elsewhere) expiryTime(now) { if (this.maxAge != null) { const relativeTo = now || this.creation || new Date(); const age = this.maxAge <= 0 ? -Infinity : this.maxAge * 1000; return relativeTo.getTime() + age; } if (this.expires == Infinity) { return Infinity; } return this.expires.getTime(); } // expiryDate() replaces the "expiry-time" parts of S5.3 step 3 (setCookie() // elsewhere), except it returns a Date expiryDate(now) { const millisec = this.expiryTime(now); if (millisec == Infinity) { return new Date(MAX_TIME); } else if (millisec == -Infinity) { return new Date(MIN_TIME); } else { return new Date(millisec); } } // This replaces the "persistent-flag" parts of S5.3 step 3 isPersistent() { return this.maxAge != null || this.expires != Infinity; } // Mostly S5.1.2 and S5.2.3: canonicalizedDomain() { if (this.domain == null) { return null; } return canonicalDomain(this.domain); } cdomain() { return this.canonicalizedDomain(); } } Cookie.cookiesCreated = 0; Cookie.parse = parse; Cookie.fromJSON = fromJSON; Cookie.serializableProperties = Object.keys(cookieDefaults); Cookie.sameSiteLevel = { strict: 3, lax: 2, none: 1 }; Cookie.sameSiteCanonical = { strict: "Strict", lax: "Lax" }; function getNormalizedPrefixSecurity(prefixSecurity) { if (prefixSecurity != null) { const normalizedPrefixSecurity = prefixSecurity.toLowerCase(); /* The three supported options */ switch (normalizedPrefixSecurity) { case PrefixSecurityEnum.STRICT: case PrefixSecurityEnum.SILENT: case PrefixSecurityEnum.DISABLED: return normalizedPrefixSecurity; } } /* Default is SILENT */ return PrefixSecurityEnum.SILENT; } class CookieJar { constructor(store, options = { rejectPublicSuffixes: true }) { if (typeof options === "boolean") { options = { rejectPublicSuffixes: options }; } this.rejectPublicSuffixes = options.rejectPublicSuffixes; this.enableLooseMode = !!options.looseMode; this.allowSpecialUseDomain = !!options.allowSpecialUseDomain; this.store = store || new MemoryCookieStore(); this.prefixSecurity = getNormalizedPrefixSecurity(options.prefixSecurity); this._cloneSync = syncWrap("clone"); this._importCookiesSync = syncWrap("_importCookies"); this.getCookiesSync = syncWrap("getCookies"); this.getCookieStringSync = syncWrap("getCookieString"); this.getSetCookieStringsSync = syncWrap("getSetCookieStrings"); this.removeAllCookiesSync = syncWrap("removeAllCookies"); this.setCookieSync = syncWrap("setCookie"); this.serializeSync = syncWrap("serialize"); } setCookie(cookie, url, options, cb) { let err; const context = getCookieContext(url); if (typeof options === "function") { cb = options; options = {}; } const host = canonicalDomain(context.hostname); const loose = options.loose || this.enableLooseMode; let sameSiteContext = null; if (options.sameSiteContext) { sameSiteContext = checkSameSiteContext(options.sameSiteContext); if (!sameSiteContext) { return cb(new Error(SAME_SITE_CONTEXT_VAL_ERR)); } } // S5.3 step 1 if (typeof cookie === "string" || cookie instanceof String) { cookie = Cookie.parse(cookie, { loose: loose }); if (!cookie) { err = new Error("Cookie failed to parse"); return cb(options.ignoreError ? null : err); } } else if (!(cookie instanceof Cookie)) { // If you're seeing this error, and are passing in a Cookie object, // it *might* be a Cookie object from another loaded version of tough-cookie. err = new Error( "First argument to setCookie must be a Cookie object or string" ); return cb(options.ignoreError ? null : err); } // S5.3 step 2 const now = options.now || new Date(); // will assign later to save effort in the face of errors // S5.3 step 3: NOOP; persistent-flag and expiry-time is handled by getCookie() // S5.3 step 4: NOOP; domain is null by default // S5.3 step 5: public suffixes if (this.rejectPublicSuffixes && cookie.domain) { const suffix = pubsuffix.getPublicSuffix(cookie.cdomain()); if (suffix == null) { // e.g. "com" err = new Error("Cookie has domain set to a public suffix"); return cb(options.ignoreError ? null : err); } } // S5.3 step 6: if (cookie.domain) { if (!domainMatch(host, cookie.cdomain(), false)) { err = new Error( `Cookie not in this host's domain. Cookie:${cookie.cdomain()} Request:${host}` ); return cb(options.ignoreError ? null : err); } if (cookie.hostOnly == null) { // don't reset if already set cookie.hostOnly = false; } } else { cookie.hostOnly = true; cookie.domain = host; } //S5.2.4 If the attribute-value is empty or if the first character of the //attribute-value is not %x2F ("/"): //Let cookie-path be the default-path. if (!cookie.path || cookie.path[0] !== "/") { cookie.path = defaultPath(context.pathname); cookie.pathIsDefault = true; } // S5.3 step 8: NOOP; secure attribute // S5.3 step 9: NOOP; httpOnly attribute // S5.3 step 10 if (options.http === false && cookie.httpOnly) { err = new Error("Cookie is HttpOnly and this isn't an HTTP API"); return cb(options.ignoreError ? null : err); } // 6252bis-02 S5.4 Step 13 & 14: if (cookie.sameSite !== "none" && sameSiteContext) { // "If the cookie's "same-site-flag" is not "None", and the cookie // is being set from a context whose "site for cookies" is not an // exact match for request-uri's host's registered domain, then // abort these steps and ignore the newly created cookie entirely." if (sameSiteContext === "none") { err = new Error( "Cookie is SameSite but this is a cross-origin request" ); return cb(options.ignoreError ? null : err); } } /* 6265bis-02 S5.4 Steps 15 & 16 */ const ignoreErrorForPrefixSecurity = this.prefixSecurity === PrefixSecurityEnum.SILENT; const prefixSecurityDisabled = this.prefixSecurity === PrefixSecurityEnum.DISABLED; /* If prefix checking is not disabled ...*/ if (!prefixSecurityDisabled) { let errorFound = false; let errorMsg; /* Check secure prefix condition */ if (!isSecurePrefixConditionMet(cookie)) { errorFound = true; errorMsg = "Cookie has __Secure prefix but Secure attribute is not set"; } else if (!isHostPrefixConditionMet(cookie)) { /* Check host prefix condition */ errorFound = true; errorMsg = "Cookie has __Host prefix but either Secure or HostOnly attribute is not set or Path is not '/'"; } if (errorFound) { return cb( options.ignoreError || ignoreErrorForPrefixSecurity ? null : new Error(errorMsg) ); } } const store = this.store; if (!store.updateCookie) { store.updateCookie = function(oldCookie, newCookie, cb) { this.putCookie(newCookie, cb); }; } function withCookie(err, oldCookie) { if (err) { return cb(err); } const next = function(err) { if (err) { return cb(err); } else { cb(null, cookie); } }; if (oldCookie) { // S5.3 step 11 - "If the cookie store contains a cookie with the same name, // domain, and path as the newly created cookie:" if (options.http === false && oldCookie.httpOnly) { // step 11.2 err = new Error("old Cookie is HttpOnly and this isn't an HTTP API"); return cb(options.ignoreError ? null : err); } cookie.creation = oldCookie.creation; // step 11.3 cookie.creationIndex = oldCookie.creationIndex; // preserve tie-breaker cookie.lastAccessed = now; // Step 11.4 (delete cookie) is implied by just setting the new one: store.updateCookie(oldCookie, cookie, next); // step 12 } else { cookie.creation = cookie.lastAccessed = now; store.putCookie(cookie, next); // step 12 } } store.findCookie(cookie.domain, cookie.path, cookie.key, withCookie); } // RFC6365 S5.4 getCookies(url, options, cb) { const context = getCookieContext(url); if (typeof options === "function") { cb = options; options = {}; } const host = canonicalDomain(context.hostname); const path = context.pathname || "/"; let secure = options.secure; if ( secure == null && context.protocol && (context.protocol == "https:" || context.protocol == "wss:") ) { secure = true; } let sameSiteLevel = 0; if (options.sameSiteContext) { const sameSiteContext = checkSameSiteContext(options.sameSiteContext); sameSiteLevel = Cookie.sameSiteLevel[sameSiteContext]; if (!sameSiteLevel) { return cb(new Error(SAME_SITE_CONTEXT_VAL_ERR)); } } let http = options.http; if (http == null) { http = true; } const now = options.now || Date.now(); const expireCheck = options.expire !== false; const allPaths = !!options.allPaths; const store = this.store; function matchingCookie(c) { // "Either: // The cookie's host-only-flag is true and the canonicalized // request-host is identical to the cookie's domain. // Or: // The cookie's host-only-flag is false and the canonicalized // request-host domain-matches the cookie's domain." if (c.hostOnly) { if (c.domain != host) { return false; } } else { if (!domainMatch(host, c.domain, false)) { return false; } } // "The request-uri's path path-matches the cookie's path." if (!allPaths && !pathMatch(path, c.path)) { return false; } // "If the cookie's secure-only-flag is true, then the request-uri's // scheme must denote a "secure" protocol" if (c.secure && !secure) { return false; } // "If the cookie's http-only-flag is true, then exclude the cookie if the // cookie-string is being generated for a "non-HTTP" API" if (c.httpOnly && !http) { return false; } // RFC6265bis-02 S5.3.7 if (sameSiteLevel) { const cookieLevel = Cookie.sameSiteLevel[c.sameSite || "none"]; if (cookieLevel > sameSiteLevel) { // only allow cookies at or below the request level return false; } } // deferred from S5.3 // non-RFC: allow retention of expired cookies by choice if (expireCheck && c.expiryTime() <= now) { store.removeCookie(c.domain, c.path, c.key, () => {}); // result ignored return false; } return true; } store.findCookies( host, allPaths ? null : path, this.allowSpecialUseDomain, (err, cookies) => { if (err) { return cb(err); } cookies = cookies.filter(matchingCookie); // sorting of S5.4 part 2 if (options.sort !== false) { cookies = cookies.sort(cookieCompare); } // S5.4 part 3 const now = new Date(); for (const cookie of cookies) { cookie.lastAccessed = now; } // TODO persist lastAccessed cb(null, cookies); } ); } getCookieString(...args) { const cb = args.pop(); const next = function(err, cookies) { if (err) { cb(err); } else { cb( null, cookies .sort(cookieCompare) .map(c => c.cookieString()) .join("; ") ); } }; args.push(next); this.getCookies.apply(this, args); } getSetCookieStrings(...args) { const cb = args.pop(); const next = function(err, cookies) { if (err) { cb(err); } else { cb( null, cookies.map(c => { return c.toString(); }) ); } }; args.push(next); this.getCookies.apply(this, args); } serialize(cb) { let type = this.store.constructor.name; if (type === "Object") { type = null; } // update README.md "Serialization Format" if you change this, please! const serialized = { // The version of tough-cookie that serialized this jar. Generally a good // practice since future versions can make data import decisions based on // known past behavior. When/if this matters, use `semver`. version: `tough-cookie@${VERSION}`, // add the store type, to make humans happy: storeType: type, // CookieJar configuration: rejectPublicSuffixes: !!this.rejectPublicSuffixes, // this gets filled from getAllCookies: cookies: [] }; if ( !( this.store.getAllCookies && typeof this.store.getAllCookies === "function" ) ) { return cb( new Error( "store does not support getAllCookies and cannot be serialized" ) ); } this.store.getAllCookies((err, cookies) => { if (err) { return cb(err); } serialized.cookies = cookies.map(cookie => { // convert to serialized 'raw' cookies cookie = cookie instanceof Cookie ? cookie.toJSON() : cookie; // Remove the index so new ones get assigned during deserialization delete cookie.creationIndex; return cookie; }); return cb(null, serialized); }); } toJSON() { return this.serializeSync(); } // use the class method CookieJar.deserialize instead of calling this directly _importCookies(serialized, cb) { let cookies = serialized.cookies; if (!cookies || !Array.isArray(cookies)) { return cb(new Error("serialized jar has no cookies array")); } cookies = cookies.slice(); // do not modify the original const putNext = err => { if (err) { return cb(err); } if (!cookies.length) { return cb(err, this); } let cookie; try { cookie = fromJSON(cookies.shift()); } catch (e) { return cb(e); } if (cookie === null) { return putNext(null); // skip this cookie } this.store.putCookie(cookie, putNext); }; putNext(); } clone(newStore, cb) { if (arguments.length === 1) { cb = newStore; newStore = null; } this.serialize((err, serialized) => { if (err) { return cb(err); } CookieJar.deserialize(serialized, newStore, cb); }); } cloneSync(newStore) { if (arguments.length === 0) { return this._cloneSync(); } if (!newStore.synchronous) { throw new Error( "CookieJar clone destination store is not synchronous; use async API instead." ); } return this._cloneSync(newStore); } removeAllCookies(cb) { const store = this.store; // Check that the store implements its own removeAllCookies(). The default // implementation in Store will immediately call the callback with a "not // implemented" Error. if ( typeof store.removeAllCookies === "function" && store.removeAllCookies !== Store.prototype.removeAllCookies ) { return store.removeAllCookies(cb); } store.getAllCookies((err, cookies) => { if (err) { return cb(err); } if (cookies.length === 0) { return cb(null); } let completedCount = 0; const removeErrors = []; function removeCookieCb(removeErr) { if (removeErr) { removeErrors.push(removeErr); } completedCount++; if (completedCount === cookies.length) { return cb(removeErrors.length ? removeErrors[0] : null); } } cookies.forEach(cookie => { store.removeCookie( cookie.domain, cookie.path, cookie.key, removeCookieCb ); }); }); } static deserialize(strOrObj, store, cb) { if (arguments.length !== 3) { // store is optional cb = store; store = null; } let serialized; if (typeof strOrObj === "string") { serialized = jsonParse(strOrObj); if (serialized instanceof Error) { return cb(serialized); } } else { serialized = strOrObj; } const jar = new CookieJar(store, serialized.rejectPublicSuffixes); jar._importCookies(serialized, err => { if (err) { return cb(err); } cb(null, jar); }); } static deserializeSync(strOrObj, store) { const serialized = typeof strOrObj === "string" ? JSON.parse(strOrObj) : strOrObj; const jar = new CookieJar(store, serialized.rejectPublicSuffixes); // catch this mistake early: if (!jar.store.synchronous) { throw new Error( "CookieJar store is not synchronous; use async API instead." ); } jar._importCookiesSync(serialized); return jar; } } CookieJar.fromJSON = CookieJar.deserializeSync; [ "_importCookies", "clone", "getCookies", "getCookieString", "getSetCookieStrings", "removeAllCookies", "serialize", "setCookie" ].forEach(name => { CookieJar.prototype[name] = fromCallback(CookieJar.prototype[name]); }); CookieJar.deserialize = fromCallback(CookieJar.deserialize); // Use a closure to provide a true imperative API for synchronous stores. function syncWrap(method) { return function(...args) { if (!this.store.synchronous) { throw new Error( "CookieJar store is not synchronous; use async API instead." ); } let syncErr, syncResult; this[method](...args, (err, result) => { syncErr = err; syncResult = result; }); if (syncErr) { throw syncErr; } return syncResult; }; } exports.version = VERSION; exports.CookieJar = CookieJar; exports.Cookie = Cookie; exports.Store = Store; exports.MemoryCookieStore = MemoryCookieStore; exports.parseDate = parseDate; exports.formatDate = formatDate; exports.parse = parse; exports.fromJSON = fromJSON; exports.domainMatch = domainMatch; exports.defaultPath = defaultPath; exports.pathMatch = pathMatch; exports.getPublicSuffix = pubsuffix.getPublicSuffix; exports.cookieCompare = cookieCompare; exports.permuteDomain = __webpack_require__(89).permuteDomain; exports.permutePath = permutePath; exports.canonicalDomain = canonicalDomain; exports.PrefixSecurityEnum = PrefixSecurityEnum; /***/ }), /***/ 413: /***/ (function(module, __unusedexports, __webpack_require__) { module.exports = __webpack_require__(141); /***/ }), /***/ 417: /***/ (function(module) { module.exports = require("crypto"); /***/ }), /***/ 422: /***/ (function(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, System, Reflect, Promise */ var __extends; var __assign; var __rest; var __decorate; var __param; var __metadata; var __awaiter; var __generator; var __exportStar; var __values; var __read; var __spread; var __spreadArrays; var __await; var __asyncGenerator; var __asyncDelegator; var __asyncValues; var __makeTemplateObject; var __importStar; var __importDefault; var __classPrivateFieldGet; var __classPrivateFieldSet; var __createBinding; (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 (b.hasOwnProperty(p)) d[p] = b[p]; }; __extends = function (d, b) { extendStatics(d, b); function __() { this.constructor = d; } d.prototype = b === null ? Object.create(b) : (__.prototype = b.prototype, new __()); }; __assign = Object.assign || function (t) { for (var s, i = 1, n = arguments.length; i < n; i++) { s = arguments[i]; for (var p in s) if (Object.prototype.hasOwnProperty.call(s, p)) t[p] = s[p]; } return t; }; __rest = function (s, e) { var t = {}; for (var p in s) if (Object.prototype.hasOwnProperty.call(s, p) && e.indexOf(p) < 0) t[p] = s[p]; if (s != null && typeof Object.getOwnPropertySymbols === "function") for (var i = 0, p = Object.getOwnPropertySymbols(s); i < p.length; i++) { if (e.indexOf(p[i]) < 0 && Object.prototype.propertyIsEnumerable.call(s, p[i])) t[p[i]] = s[p[i]]; } return t; }; __decorate = function (decorators, target, key, desc) { var c = arguments.length, r = c < 3 ? target : desc === null ? desc = Object.getOwnPropertyDescriptor(target, key) : desc, d; if (typeof Reflect === "object" && typeof Reflect.decorate === "function") r = Reflect.decorate(decorators, target, key, desc); else for (var i = decorators.length - 1; i >= 0; i--) if (d = decorators[i]) r = (c < 3 ? d(r) : c > 3 ? d(target, key, r) : d(target, key)) || r; return c > 3 && r && Object.defineProperty(target, key, r), r; }; __param = function (paramIndex, decorator) { return function (target, key) { decorator(target, key, paramIndex); } }; __metadata = function (metadataKey, metadataValue) { if (typeof Reflect === "object" && typeof Reflect.metadata === "function") return Reflect.metadata(metadataKey, metadataValue); }; __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()); }); }; __generator = function (thisArg, body) { var _ = { label: 0, sent: function() { if (t[0] & 1) throw t[1]; return t[1]; }, trys: [], ops: [] }, f, y, t, g; return g = { next: verb(0), "throw": verb(1), "return": verb(2) }, typeof Symbol === "function" && (g[Symbol.iterator] = function() { return this; }), g; function verb(n) { return function (v) { return step([n, v]); }; } function step(op) { if (f) throw new TypeError("Generator is already executing."); while (_) try { if (f = 1, y && (t = op[0] & 2 ? y["return"] : op[0] ? y["throw"] || ((t = y["return"]) && t.call(y), 0) : y.next) && !(t = t.call(y, op[1])).done) return t; if (y = 0, t) op = [op[0] & 2, t.value]; switch (op[0]) { case 0: case 1: t = op; break; case 4: _.label++; return { value: op[1], done: false }; case 5: _.label++; y = op[1]; op = [0]; continue; case 7: op = _.ops.pop(); _.trys.pop(); continue; default: if (!(t = _.trys, t = t.length > 0 && t[t.length - 1]) && (op[0] === 6 || op[0] === 2)) { _ = 0; continue; } if (op[0] === 3 && (!t || (op[1] > t[0] && op[1] < t[3]))) { _.label = op[1]; break; } if (op[0] === 6 && _.label < t[1]) { _.label = t[1]; t = op; break; } if (t && _.label < t[2]) { _.label = t[2]; _.ops.push(op); break; } if (t[2]) _.ops.pop(); _.trys.pop(); continue; } op = body.call(thisArg, _); } catch (e) { op = [6, e]; y = 0; } finally { f = t = 0; } if (op[0] & 5) throw op[1]; return { value: op[0] ? op[1] : void 0, done: true }; } }; __createBinding = function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; }; __exportStar = function (m, exports) { for (var p in m) if (p !== "default" && !exports.hasOwnProperty(p)) exports[p] = m[p]; }; __values = function (o) { var s = typeof Symbol === "function" && Symbol.iterator, m = s && o[s], i = 0; if (m) return m.call(o); if (o && typeof o.length === "number") return { next: function () { if (o && i >= o.length) o = void 0; return { value: o && o[i++], done: !o }; } }; throw new TypeError(s ? "Object is not iterable." : "Symbol.iterator is not defined."); }; __read = function (o, n) { var m = typeof Symbol === "function" && o[Symbol.iterator]; if (!m) return o; var i = m.call(o), r, ar = [], e; try { while ((n === void 0 || n-- > 0) && !(r = i.next()).done) ar.push(r.value); } catch (error) { e = { error: error }; } finally { try { if (r && !r.done && (m = i["return"])) m.call(i); } finally { if (e) throw e.error; } } return ar; }; __spread = function () { for (var ar = [], i = 0; i < arguments.length; i++) ar = ar.concat(__read(arguments[i])); return ar; }; __spreadArrays = function () { for (var s = 0, i = 0, il = arguments.length; i < il; i++) s += arguments[i].length; for (var r = Array(s), k = 0, i = 0; i < il; i++) for (var a = arguments[i], j = 0, jl = a.length; j < jl; j++, k++) r[k] = a[j]; return r; }; __await = function (v) { return this instanceof __await ? (this.v = v, this) : new __await(v); }; __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 ? 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} privateMap.set(receiver, value); return value; }; exporter("__extends", __extends); exporter("__assign", __assign); exporter("__rest", __rest); exporter("__decorate", __decorate); exporter("__param", __param); 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("__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); }); /***/ }), /***/ 423: /***/ (function(module, __unusedexports, __webpack_require__) { // Generated by CoffeeScript 1.12.7 (function() { var NodeType, WriterState, XMLCData, XMLComment, XMLDTDAttList, XMLDTDElement, XMLDTDEntity, XMLDTDNotation, XMLDeclaration, XMLDocType, XMLDummy, XMLElement, XMLProcessingInstruction, XMLRaw, XMLText, XMLWriterBase, assign, hasProp = {}.hasOwnProperty; assign = __webpack_require__(582).assign; NodeType = __webpack_require__(683); XMLDeclaration = __webpack_require__(738); XMLDocType = __webpack_require__(735); XMLCData = __webpack_require__(657); XMLComment = __webpack_require__(919); XMLElement = __webpack_require__(796); XMLRaw = __webpack_require__(660); XMLText = __webpack_require__(708); XMLProcessingInstruction = __webpack_require__(491); XMLDummy = __webpack_require__(956); XMLDTDAttList = __webpack_require__(801); XMLDTDElement = __webpack_require__(463); XMLDTDEntity = __webpack_require__(661); XMLDTDNotation = __webpack_require__(19); WriterState = __webpack_require__(541); module.exports = XMLWriterBase = (function() { function XMLWriterBase(options) { var key, ref, value; options || (options = {}); this.options = options; ref = options.writer || {}; for (key in ref) { if (!hasProp.call(ref, key)) continue; value = ref[key]; this["_" + key] = this[key]; this[key] = value; } } XMLWriterBase.prototype.filterOptions = function(options) { var filteredOptions, ref, ref1, ref2, ref3, ref4, ref5, ref6; options || (options = {}); options = assign({}, this.options, options); filteredOptions = { writer: this }; filteredOptions.pretty = options.pretty || false; filteredOptions.allowEmpty = options.allowEmpty || false; filteredOptions.indent = (ref = options.indent) != null ? ref : ' '; filteredOptions.newline = (ref1 = options.newline) != null ? ref1 : '\n'; filteredOptions.offset = (ref2 = options.offset) != null ? ref2 : 0; filteredOptions.dontPrettyTextNodes = (ref3 = (ref4 = options.dontPrettyTextNodes) != null ? ref4 : options.dontprettytextnodes) != null ? ref3 : 0; filteredOptions.spaceBeforeSlash = (ref5 = (ref6 = options.spaceBeforeSlash) != null ? ref6 : options.spacebeforeslash) != null ? ref5 : ''; if (filteredOptions.spaceBeforeSlash === true) { filteredOptions.spaceBeforeSlash = ' '; } filteredOptions.suppressPrettyCount = 0; filteredOptions.user = {}; filteredOptions.state = WriterState.None; return filteredOptions; }; XMLWriterBase.prototype.indent = function(node, options, level) { var indentLevel; if (!options.pretty || options.suppressPrettyCount) { return ''; } else if (options.pretty) { indentLevel = (level || 0) + options.offset + 1; if (indentLevel > 0) { return new Array(indentLevel).join(options.indent); } } return ''; }; XMLWriterBase.prototype.endline = function(node, options, level) { if (!options.pretty || options.suppressPrettyCount) { return ''; } else { return options.newline; } }; XMLWriterBase.prototype.attribute = function(att, options, level) { var r; this.openAttribute(att, options, level); r = ' ' + att.name + '="' + att.value + '"'; this.closeAttribute(att, options, level); return r; }; XMLWriterBase.prototype.cdata = function(node, options, level) { var r; this.openNode(node, options, level); options.state = WriterState.OpenTag; r = this.indent(node, options, level) + '' + this.endline(node, options, level); options.state = WriterState.None; this.closeNode(node, options, level); return r; }; XMLWriterBase.prototype.comment = function(node, options, level) { var r; this.openNode(node, options, level); options.state = WriterState.OpenTag; r = this.indent(node, options, level) + '' + this.endline(node, options, level); options.state = WriterState.None; this.closeNode(node, options, level); return r; }; XMLWriterBase.prototype.declaration = function(node, options, level) { var r; this.openNode(node, options, level); options.state = WriterState.OpenTag; r = this.indent(node, options, level) + ''; r += this.endline(node, options, level); options.state = WriterState.None; this.closeNode(node, options, level); return r; }; XMLWriterBase.prototype.docType = function(node, options, level) { var child, i, len, r, ref; level || (level = 0); this.openNode(node, options, level); options.state = WriterState.OpenTag; r = this.indent(node, options, level); r += ' 0) { r += ' ['; r += this.endline(node, options, level); options.state = WriterState.InsideTag; ref = node.children; for (i = 0, len = ref.length; i < len; i++) { child = ref[i]; r += this.writeChildNode(child, options, level + 1); } options.state = WriterState.CloseTag; r += ']'; } options.state = WriterState.CloseTag; r += options.spaceBeforeSlash + '>'; r += this.endline(node, options, level); options.state = WriterState.None; this.closeNode(node, options, level); return r; }; XMLWriterBase.prototype.element = function(node, options, level) { var att, child, childNodeCount, firstChildNode, i, j, len, len1, name, prettySuppressed, r, ref, ref1, ref2; level || (level = 0); prettySuppressed = false; r = ''; this.openNode(node, options, level); options.state = WriterState.OpenTag; r += this.indent(node, options, level) + '<' + node.name; ref = node.attribs; for (name in ref) { if (!hasProp.call(ref, name)) continue; att = ref[name]; r += this.attribute(att, options, level); } childNodeCount = node.children.length; firstChildNode = childNodeCount === 0 ? null : node.children[0]; if (childNodeCount === 0 || node.children.every(function(e) { return (e.type === NodeType.Text || e.type === NodeType.Raw) && e.value === ''; })) { if (options.allowEmpty) { r += '>'; options.state = WriterState.CloseTag; r += '' + this.endline(node, options, level); } else { options.state = WriterState.CloseTag; r += options.spaceBeforeSlash + '/>' + this.endline(node, options, level); } } else if (options.pretty && childNodeCount === 1 && (firstChildNode.type === NodeType.Text || firstChildNode.type === NodeType.Raw) && (firstChildNode.value != null)) { r += '>'; options.state = WriterState.InsideTag; options.suppressPrettyCount++; prettySuppressed = true; r += this.writeChildNode(firstChildNode, options, level + 1); options.suppressPrettyCount--; prettySuppressed = false; options.state = WriterState.CloseTag; r += '' + this.endline(node, options, level); } else { if (options.dontPrettyTextNodes) { ref1 = node.children; for (i = 0, len = ref1.length; i < len; i++) { child = ref1[i]; if ((child.type === NodeType.Text || child.type === NodeType.Raw) && (child.value != null)) { options.suppressPrettyCount++; prettySuppressed = true; break; } } } r += '>' + this.endline(node, options, level); options.state = WriterState.InsideTag; ref2 = node.children; for (j = 0, len1 = ref2.length; j < len1; j++) { child = ref2[j]; r += this.writeChildNode(child, options, level + 1); } options.state = WriterState.CloseTag; r += this.indent(node, options, level) + ''; if (prettySuppressed) { options.suppressPrettyCount--; } r += this.endline(node, options, level); options.state = WriterState.None; } this.closeNode(node, options, level); return r; }; XMLWriterBase.prototype.writeChildNode = function(node, options, level) { switch (node.type) { case NodeType.CData: return this.cdata(node, options, level); case NodeType.Comment: return this.comment(node, options, level); case NodeType.Element: return this.element(node, options, level); case NodeType.Raw: return this.raw(node, options, level); case NodeType.Text: return this.text(node, options, level); case NodeType.ProcessingInstruction: return this.processingInstruction(node, options, level); case NodeType.Dummy: return ''; case NodeType.Declaration: return this.declaration(node, options, level); case NodeType.DocType: return this.docType(node, options, level); case NodeType.AttributeDeclaration: return this.dtdAttList(node, options, level); case NodeType.ElementDeclaration: return this.dtdElement(node, options, level); case NodeType.EntityDeclaration: return this.dtdEntity(node, options, level); case NodeType.NotationDeclaration: return this.dtdNotation(node, options, level); default: throw new Error("Unknown XML node type: " + node.constructor.name); } }; XMLWriterBase.prototype.processingInstruction = function(node, options, level) { var r; this.openNode(node, options, level); options.state = WriterState.OpenTag; r = this.indent(node, options, level) + ''; r += this.endline(node, options, level); options.state = WriterState.None; this.closeNode(node, options, level); return r; }; XMLWriterBase.prototype.raw = function(node, options, level) { var r; this.openNode(node, options, level); options.state = WriterState.OpenTag; r = this.indent(node, options, level); options.state = WriterState.InsideTag; r += node.value; options.state = WriterState.CloseTag; r += this.endline(node, options, level); options.state = WriterState.None; this.closeNode(node, options, level); return r; }; XMLWriterBase.prototype.text = function(node, options, level) { var r; this.openNode(node, options, level); options.state = WriterState.OpenTag; r = this.indent(node, options, level); options.state = WriterState.InsideTag; r += node.value; options.state = WriterState.CloseTag; r += this.endline(node, options, level); options.state = WriterState.None; this.closeNode(node, options, level); return r; }; XMLWriterBase.prototype.dtdAttList = function(node, options, level) { var r; this.openNode(node, options, level); options.state = WriterState.OpenTag; r = this.indent(node, options, level) + '' + this.endline(node, options, level); options.state = WriterState.None; this.closeNode(node, options, level); return r; }; XMLWriterBase.prototype.dtdElement = function(node, options, level) { var r; this.openNode(node, options, level); options.state = WriterState.OpenTag; r = this.indent(node, options, level) + '' + this.endline(node, options, level); options.state = WriterState.None; this.closeNode(node, options, level); return r; }; XMLWriterBase.prototype.dtdEntity = function(node, options, level) { var r; this.openNode(node, options, level); options.state = WriterState.OpenTag; r = this.indent(node, options, level) + '' + this.endline(node, options, level); options.state = WriterState.None; this.closeNode(node, options, level); return r; }; XMLWriterBase.prototype.dtdNotation = function(node, options, level) { var r; this.openNode(node, options, level); options.state = WriterState.OpenTag; r = this.indent(node, options, level) + '' + this.endline(node, options, level); options.state = WriterState.None; this.closeNode(node, options, level); return r; }; XMLWriterBase.prototype.openNode = function(node, options, level) {}; XMLWriterBase.prototype.closeNode = function(node, options, level) {}; XMLWriterBase.prototype.openAttribute = function(att, options, level) {}; XMLWriterBase.prototype.closeAttribute = function(att, options, level) {}; return XMLWriterBase; })(); }).call(this); /***/ }), /***/ 424: /***/ (function(module, __unusedexports, __webpack_require__) { var iterate = __webpack_require__(157) , initState = __webpack_require__(147) , terminator = __webpack_require__(939) ; // Public API module.exports = parallel; /** * Runs iterator over provided array elements in parallel * * @param {array|object} list - array or object (named list) to iterate over * @param {function} iterator - iterator to run * @param {function} callback - invoked when all elements processed * @returns {function} - jobs terminator */ function parallel(list, iterator, callback) { var state = initState(list); while (state.index < (state['keyedList'] || list).length) { iterate(list, iterator, state, function(error, result) { if (error) { callback(error, result); return; } // looks like it's the last one if (Object.keys(state.jobs).length === 0) { callback(null, state.results); return; } }); state.index++; } return terminator.bind(state, callback); } /***/ }), /***/ 431: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (Object.hasOwnProperty.call(mod, k)) result[k] = mod[k]; result["default"] = mod; return result; }; Object.defineProperty(exports, "__esModule", { value: true }); const os = __importStar(__webpack_require__(87)); /** * 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; } } /** * 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; function escapeData(s) { return toCommandValue(s) .replace(/%/g, '%25') .replace(/\r/g, '%0D') .replace(/\n/g, '%0A'); } function escapeProperty(s) { return toCommandValue(s) .replace(/%/g, '%25') .replace(/\r/g, '%0D') .replace(/\n/g, '%0A') .replace(/:/g, '%3A') .replace(/,/g, '%2C'); } //# sourceMappingURL=command.js.map /***/ }), /***/ 434: /***/ (function(__unusedmodule, exports, __webpack_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()); }); }; var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (Object.hasOwnProperty.call(mod, k)) result[k] = mod[k]; result["default"] = mod; return result; }; Object.defineProperty(exports, "__esModule", { value: true }); const exec_1 = __webpack_require__(986); const io = __importStar(__webpack_require__(1)); const fs_1 = __webpack_require__(747); const path = __importStar(__webpack_require__(622)); const utils = __importStar(__webpack_require__(15)); const constants_1 = __webpack_require__(931); function getTarPath(args, compressionMethod) { return __awaiter(this, void 0, void 0, function* () { const IS_WINDOWS = process.platform === 'win32'; if (IS_WINDOWS) { const systemTar = `${process.env['windir']}\\System32\\tar.exe`; if (compressionMethod !== constants_1.CompressionMethod.Gzip) { // We only use zstandard compression on windows when gnu tar is installed due to // a bug with compressing large files with bsdtar + zstd args.push('--force-local'); } else if (fs_1.existsSync(systemTar)) { return systemTar; } else if (yield utils.isGnuTarInstalled()) { args.push('--force-local'); } } return yield io.which('tar', true); }); } function execTar(args, compressionMethod, cwd) { return __awaiter(this, void 0, void 0, function* () { try { yield exec_1.exec(`"${yield getTarPath(args, compressionMethod)}"`, args, { cwd }); } catch (error) { throw new Error(`Tar failed with error: ${error === null || error === void 0 ? void 0 : error.message}`); } }); } function getWorkingDirectory() { var _a; return (_a = process.env['GITHUB_WORKSPACE']) !== null && _a !== void 0 ? _a : process.cwd(); } function extractTar(archivePath, compressionMethod) { return __awaiter(this, void 0, void 0, function* () { // Create directory to extract tar into const workingDirectory = getWorkingDirectory(); yield io.mkdirP(workingDirectory); // --d: Decompress. // --long=#: Enables long distance matching with # bits. Maximum is 30 (1GB) on 32-bit OS and 31 (2GB) on 64-bit. // Using 30 here because we also support 32-bit self-hosted runners. function getCompressionProgram() { switch (compressionMethod) { case constants_1.CompressionMethod.Zstd: return ['--use-compress-program', 'zstd -d --long=30']; case constants_1.CompressionMethod.ZstdWithoutLong: return ['--use-compress-program', 'zstd -d']; default: return ['-z']; } } const args = [ ...getCompressionProgram(), '-xf', archivePath.replace(new RegExp(`\\${path.sep}`, 'g'), '/'), '-P', '-C', workingDirectory.replace(new RegExp(`\\${path.sep}`, 'g'), '/') ]; yield execTar(args, compressionMethod); }); } exports.extractTar = extractTar; function createTar(archiveFolder, sourceDirectories, compressionMethod) { return __awaiter(this, void 0, void 0, function* () { // Write source directories to manifest.txt to avoid command length limits const manifestFilename = 'manifest.txt'; const cacheFileName = utils.getCacheFileName(compressionMethod); fs_1.writeFileSync(path.join(archiveFolder, manifestFilename), sourceDirectories.join('\n')); const workingDirectory = getWorkingDirectory(); // -T#: Compress using # working thread. If # is 0, attempt to detect and use the number of physical CPU cores. // --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() { switch (compressionMethod) { case constants_1.CompressionMethod.Zstd: return ['--use-compress-program', 'zstd -T0 --long=30']; case constants_1.CompressionMethod.ZstdWithoutLong: return ['--use-compress-program', 'zstd -T0']; default: return ['-z']; } } const args = [ ...getCompressionProgram(), '-cf', cacheFileName.replace(new RegExp(`\\${path.sep}`, 'g'), '/'), '-P', '-C', workingDirectory.replace(new RegExp(`\\${path.sep}`, 'g'), '/'), '--files-from', manifestFilename ]; yield execTar(args, compressionMethod, archiveFolder); }); } exports.createTar = createTar; //# sourceMappingURL=tar.js.map /***/ }), /***/ 440: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; /*! * Copyright 2019, OpenTelemetry Authors * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * https://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ function __export(m) { for (var p in m) if (!exports.hasOwnProperty(p)) exports[p] = m[p]; } Object.defineProperty(exports, "__esModule", { value: true }); __export(__webpack_require__(2)); __export(__webpack_require__(744)); __export(__webpack_require__(753)); __export(__webpack_require__(40)); __export(__webpack_require__(43)); __export(__webpack_require__(625)); __export(__webpack_require__(450)); __export(__webpack_require__(767)); __export(__webpack_require__(151)); __export(__webpack_require__(162)); __export(__webpack_require__(670)); __export(__webpack_require__(932)); __export(__webpack_require__(975)); var context_base_1 = __webpack_require__(459); exports.Context = context_base_1.Context; const context_1 = __webpack_require__(492); /** Entrypoint for context API */ exports.context = context_1.ContextAPI.getInstance(); const trace_1 = __webpack_require__(875); /** Entrypoint for trace API */ exports.trace = trace_1.TraceAPI.getInstance(); const metrics_1 = __webpack_require__(136); /** Entrypoint for metrics API */ exports.metrics = metrics_1.MetricsAPI.getInstance(); const propagation_1 = __webpack_require__(22); /** Entrypoint for propagation API */ exports.propagation = propagation_1.PropagationAPI.getInstance(); exports.default = { trace: exports.trace, metrics: exports.metrics, context: exports.context, propagation: exports.propagation, }; //# sourceMappingURL=index.js.map /***/ }), /***/ 443: /***/ (function(__unusedmodule, exports, __webpack_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 (Object.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; Object.defineProperty(exports, "__esModule", { value: true }); exports.getInputAsArray = exports.isValidEvent = exports.logWarning = exports.getCacheState = exports.setOutputAndState = exports.setCacheHitOutput = exports.setCacheState = exports.isExactKeyMatch = void 0; const core = __importStar(__webpack_require__(470)); const constants_1 = __webpack_require__(694); function isExactKeyMatch(key, cacheKey) { return !!(cacheKey && cacheKey.localeCompare(key, undefined, { sensitivity: "accent" }) === 0); } exports.isExactKeyMatch = isExactKeyMatch; function setCacheState(state) { core.saveState(constants_1.State.CacheMatchedKey, state); } exports.setCacheState = setCacheState; function setCacheHitOutput(isCacheHit) { core.setOutput(constants_1.Outputs.CacheHit, isCacheHit.toString()); } exports.setCacheHitOutput = setCacheHitOutput; function setOutputAndState(key, cacheKey) { setCacheHitOutput(isExactKeyMatch(key, cacheKey)); // Store the matched cache key if it exists cacheKey && setCacheState(cacheKey); } exports.setOutputAndState = setOutputAndState; function getCacheState() { const cacheKey = core.getState(constants_1.State.CacheMatchedKey); if (cacheKey) { core.debug(`Cache state/key: ${cacheKey}`); return cacheKey; } return undefined; } exports.getCacheState = getCacheState; function logWarning(message) { const warningPrefix = "[warning]"; core.info(`${warningPrefix}${message}`); } exports.logWarning = logWarning; // Cache token authorized for all events that are tied to a ref // See GitHub Context https://help.github.com/actions/automating-your-workflow-with-github-actions/contexts-and-expression-syntax-for-github-actions#github-context function isValidEvent() { return constants_1.RefKey in process.env && Boolean(process.env[constants_1.RefKey]); } exports.isValidEvent = isValidEvent; function getInputAsArray(name, options) { return core .getInput(name, options) .split("\n") .map(s => s.trim()) .filter(x => x !== ""); } exports.getInputAsArray = getInputAsArray; /***/ }), /***/ 450: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; /*! * Copyright 2019, OpenTelemetry Authors * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * https://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ Object.defineProperty(exports, "__esModule", { value: true }); const NoopMeter_1 = __webpack_require__(625); /** * An implementation of the {@link MeterProvider} which returns an impotent Meter * for all calls to `getMeter` */ class NoopMeterProvider { getMeter(_name, _version) { return NoopMeter_1.NOOP_METER; } } exports.NoopMeterProvider = NoopMeterProvider; exports.NOOP_METER_PROVIDER = new NoopMeterProvider(); //# sourceMappingURL=NoopMeterProvider.js.map /***/ }), /***/ 451: /***/ (function(module) { // Generated by CoffeeScript 1.12.7 (function() { var XMLNamedNodeMap; module.exports = XMLNamedNodeMap = (function() { function XMLNamedNodeMap(nodes) { this.nodes = nodes; } Object.defineProperty(XMLNamedNodeMap.prototype, 'length', { get: function() { return Object.keys(this.nodes).length || 0; } }); XMLNamedNodeMap.prototype.clone = function() { return this.nodes = null; }; XMLNamedNodeMap.prototype.getNamedItem = function(name) { return this.nodes[name]; }; XMLNamedNodeMap.prototype.setNamedItem = function(node) { var oldNode; oldNode = this.nodes[node.nodeName]; this.nodes[node.nodeName] = node; return oldNode || null; }; XMLNamedNodeMap.prototype.removeNamedItem = function(name) { var oldNode; oldNode = this.nodes[name]; delete this.nodes[name]; return oldNode || null; }; XMLNamedNodeMap.prototype.item = function(index) { return this.nodes[Object.keys(this.nodes)[index]] || null; }; XMLNamedNodeMap.prototype.getNamedItemNS = function(namespaceURI, localName) { throw new Error("This DOM method is not implemented."); }; XMLNamedNodeMap.prototype.setNamedItemNS = function(node) { throw new Error("This DOM method is not implemented."); }; XMLNamedNodeMap.prototype.removeNamedItemNS = function(namespaceURI, localName) { throw new Error("This DOM method is not implemented."); }; return XMLNamedNodeMap; })(); }).call(this); /***/ }), /***/ 454: /***/ (function(module, exports, __webpack_require__) { "use strict"; Object.defineProperty(exports, '__esModule', { value: true }); function _interopDefault (ex) { return (ex && (typeof ex === 'object') && 'default' in ex) ? ex['default'] : ex; } var Stream = _interopDefault(__webpack_require__(794)); var http = _interopDefault(__webpack_require__(605)); var Url = _interopDefault(__webpack_require__(835)); var https = _interopDefault(__webpack_require__(211)); var zlib = _interopDefault(__webpack_require__(761)); // Based on https://github.com/tmpvar/jsdom/blob/aa85b2abf07766ff7bf5c1f6daafb3726f2f2db5/lib/jsdom/living/blob.js // fix for "Readable" isn't a named export issue const Readable = Stream.Readable; const BUFFER = Symbol('buffer'); const TYPE = Symbol('type'); class Blob { constructor() { this[TYPE] = ''; const blobParts = arguments[0]; const options = arguments[1]; const buffers = []; let size = 0; if (blobParts) { const a = blobParts; const length = Number(a.length); for (let i = 0; i < length; i++) { const element = a[i]; let buffer; if (element instanceof Buffer) { buffer = element; } else if (ArrayBuffer.isView(element)) { buffer = Buffer.from(element.buffer, element.byteOffset, element.byteLength); } else if (element instanceof ArrayBuffer) { buffer = Buffer.from(element); } else if (element instanceof Blob) { buffer = element[BUFFER]; } else { buffer = Buffer.from(typeof element === 'string' ? element : String(element)); } size += buffer.length; buffers.push(buffer); } } this[BUFFER] = Buffer.concat(buffers); let type = options && options.type !== undefined && String(options.type).toLowerCase(); if (type && !/[^\u0020-\u007E]/.test(type)) { this[TYPE] = type; } } get size() { return this[BUFFER].length; } get type() { return this[TYPE]; } text() { return Promise.resolve(this[BUFFER].toString()); } arrayBuffer() { const buf = this[BUFFER]; const ab = buf.buffer.slice(buf.byteOffset, buf.byteOffset + buf.byteLength); return Promise.resolve(ab); } stream() { const readable = new Readable(); readable._read = function () {}; readable.push(this[BUFFER]); readable.push(null); return readable; } toString() { return '[object Blob]'; } slice() { const size = this.size; const start = arguments[0]; const end = arguments[1]; let relativeStart, relativeEnd; if (start === undefined) { relativeStart = 0; } else if (start < 0) { relativeStart = Math.max(size + start, 0); } else { relativeStart = Math.min(start, size); } if (end === undefined) { relativeEnd = size; } else if (end < 0) { relativeEnd = Math.max(size + end, 0); } else { relativeEnd = Math.min(end, size); } const span = Math.max(relativeEnd - relativeStart, 0); const buffer = this[BUFFER]; const slicedBuffer = buffer.slice(relativeStart, relativeStart + span); const blob = new Blob([], { type: arguments[2] }); blob[BUFFER] = slicedBuffer; return blob; } } Object.defineProperties(Blob.prototype, { size: { enumerable: true }, type: { enumerable: true }, slice: { enumerable: true } }); Object.defineProperty(Blob.prototype, Symbol.toStringTag, { value: 'Blob', writable: false, enumerable: false, configurable: true }); /** * fetch-error.js * * FetchError interface for operational errors */ /** * Create FetchError instance * * @param String message Error message for human * @param String type Error type for machine * @param String systemError For Node.js system error * @return FetchError */ function FetchError(message, type, systemError) { Error.call(this, message); this.message = message; this.type = type; // when err.type is `system`, err.code contains system error code if (systemError) { this.code = this.errno = systemError.code; } // hide custom error implementation details from end-users Error.captureStackTrace(this, this.constructor); } FetchError.prototype = Object.create(Error.prototype); FetchError.prototype.constructor = FetchError; FetchError.prototype.name = 'FetchError'; let convert; try { convert = __webpack_require__(18).convert; } catch (e) {} const INTERNALS = Symbol('Body internals'); // fix an issue where "PassThrough" isn't a named export for node <10 const PassThrough = Stream.PassThrough; /** * Body mixin * * Ref: https://fetch.spec.whatwg.org/#body * * @param Stream body Readable stream * @param Object opts Response options * @return Void */ function Body(body) { var _this = this; var _ref = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : {}, _ref$size = _ref.size; let size = _ref$size === undefined ? 0 : _ref$size; var _ref$timeout = _ref.timeout; let timeout = _ref$timeout === undefined ? 0 : _ref$timeout; if (body == null) { // body is undefined or null body = null; } else if (isURLSearchParams(body)) { // body is a URLSearchParams body = Buffer.from(body.toString()); } else if (isBlob(body)) ; else if (Buffer.isBuffer(body)) ; else if (Object.prototype.toString.call(body) === '[object ArrayBuffer]') { // body is ArrayBuffer body = Buffer.from(body); } else if (ArrayBuffer.isView(body)) { // body is ArrayBufferView body = Buffer.from(body.buffer, body.byteOffset, body.byteLength); } else if (body instanceof Stream) ; else { // none of the above // coerce to string then buffer body = Buffer.from(String(body)); } this[INTERNALS] = { body, disturbed: false, error: null }; this.size = size; this.timeout = timeout; if (body instanceof Stream) { body.on('error', function (err) { const error = err.name === 'AbortError' ? err : new FetchError(`Invalid response body while trying to fetch ${_this.url}: ${err.message}`, 'system', err); _this[INTERNALS].error = error; }); } } Body.prototype = { get body() { return this[INTERNALS].body; }, get bodyUsed() { return this[INTERNALS].disturbed; }, /** * Decode response as ArrayBuffer * * @return Promise */ arrayBuffer() { return consumeBody.call(this).then(function (buf) { return buf.buffer.slice(buf.byteOffset, buf.byteOffset + buf.byteLength); }); }, /** * Return raw response as Blob * * @return Promise */ blob() { let ct = this.headers && this.headers.get('content-type') || ''; return consumeBody.call(this).then(function (buf) { return Object.assign( // Prevent copying new Blob([], { type: ct.toLowerCase() }), { [BUFFER]: buf }); }); }, /** * Decode response as json * * @return Promise */ json() { var _this2 = this; return consumeBody.call(this).then(function (buffer) { try { return JSON.parse(buffer.toString()); } catch (err) { return Body.Promise.reject(new FetchError(`invalid json response body at ${_this2.url} reason: ${err.message}`, 'invalid-json')); } }); }, /** * Decode response as text * * @return Promise */ text() { return consumeBody.call(this).then(function (buffer) { return buffer.toString(); }); }, /** * Decode response as buffer (non-spec api) * * @return Promise */ buffer() { return consumeBody.call(this); }, /** * Decode response as text, while automatically detecting the encoding and * trying to decode to UTF-8 (non-spec api) * * @return Promise */ textConverted() { var _this3 = this; return consumeBody.call(this).then(function (buffer) { return convertBody(buffer, _this3.headers); }); } }; // In browsers, all properties are enumerable. Object.defineProperties(Body.prototype, { body: { enumerable: true }, bodyUsed: { enumerable: true }, arrayBuffer: { enumerable: true }, blob: { enumerable: true }, json: { enumerable: true }, text: { enumerable: true } }); Body.mixIn = function (proto) { for (const name of Object.getOwnPropertyNames(Body.prototype)) { // istanbul ignore else: future proof if (!(name in proto)) { const desc = Object.getOwnPropertyDescriptor(Body.prototype, name); Object.defineProperty(proto, name, desc); } } }; /** * Consume and convert an entire Body to a Buffer. * * Ref: https://fetch.spec.whatwg.org/#concept-body-consume-body * * @return Promise */ function consumeBody() { var _this4 = this; if (this[INTERNALS].disturbed) { return Body.Promise.reject(new TypeError(`body used already for: ${this.url}`)); } this[INTERNALS].disturbed = true; if (this[INTERNALS].error) { return Body.Promise.reject(this[INTERNALS].error); } let body = this.body; // body is null if (body === null) { return Body.Promise.resolve(Buffer.alloc(0)); } // body is blob if (isBlob(body)) { body = body.stream(); } // body is buffer if (Buffer.isBuffer(body)) { return Body.Promise.resolve(body); } // istanbul ignore if: should never happen if (!(body instanceof Stream)) { return Body.Promise.resolve(Buffer.alloc(0)); } // body is stream // get ready to actually consume the body let accum = []; let accumBytes = 0; let abort = false; return new Body.Promise(function (resolve, reject) { let resTimeout; // allow timeout on slow response body if (_this4.timeout) { resTimeout = setTimeout(function () { abort = true; reject(new FetchError(`Response timeout while trying to fetch ${_this4.url} (over ${_this4.timeout}ms)`, 'body-timeout')); }, _this4.timeout); } // handle stream errors body.on('error', function (err) { if (err.name === 'AbortError') { // if the request was aborted, reject with this Error abort = true; reject(err); } else { // other errors, such as incorrect content-encoding reject(new FetchError(`Invalid response body while trying to fetch ${_this4.url}: ${err.message}`, 'system', err)); } }); body.on('data', function (chunk) { if (abort || chunk === null) { return; } if (_this4.size && accumBytes + chunk.length > _this4.size) { abort = true; reject(new FetchError(`content size at ${_this4.url} over limit: ${_this4.size}`, 'max-size')); return; } accumBytes += chunk.length; accum.push(chunk); }); body.on('end', function () { if (abort) { return; } clearTimeout(resTimeout); try { resolve(Buffer.concat(accum, accumBytes)); } catch (err) { // handle streams that have accumulated too much data (issue #414) reject(new FetchError(`Could not create Buffer from response body for ${_this4.url}: ${err.message}`, 'system', err)); } }); }); } /** * Detect buffer encoding and convert to target encoding * ref: http://www.w3.org/TR/2011/WD-html5-20110113/parsing.html#determining-the-character-encoding * * @param Buffer buffer Incoming buffer * @param String encoding Target encoding * @return String */ function convertBody(buffer, headers) { if (typeof convert !== 'function') { throw new Error('The package `encoding` must be installed to use the textConverted() function'); } const ct = headers.get('content-type'); let charset = 'utf-8'; let res, str; // header if (ct) { res = /charset=([^;]*)/i.exec(ct); } // no charset in content type, peek at response body for at most 1024 bytes str = buffer.slice(0, 1024).toString(); // html5 if (!res && str) { res = / 0 && arguments[0] !== undefined ? arguments[0] : undefined; this[MAP] = Object.create(null); if (init instanceof Headers) { const rawHeaders = init.raw(); const headerNames = Object.keys(rawHeaders); for (const headerName of headerNames) { for (const value of rawHeaders[headerName]) { this.append(headerName, value); } } return; } // We don't worry about converting prop to ByteString here as append() // will handle it. if (init == null) ; else if (typeof init === 'object') { const method = init[Symbol.iterator]; if (method != null) { if (typeof method !== 'function') { throw new TypeError('Header pairs must be iterable'); } // sequence> // Note: per spec we have to first exhaust the lists then process them const pairs = []; for (const pair of init) { if (typeof pair !== 'object' || typeof pair[Symbol.iterator] !== 'function') { throw new TypeError('Each header pair must be iterable'); } pairs.push(Array.from(pair)); } for (const pair of pairs) { if (pair.length !== 2) { throw new TypeError('Each header pair must be a name/value tuple'); } this.append(pair[0], pair[1]); } } else { // record for (const key of Object.keys(init)) { const value = init[key]; this.append(key, value); } } } else { throw new TypeError('Provided initializer must be an object'); } } /** * Return combined header value given name * * @param String name Header name * @return Mixed */ get(name) { name = `${name}`; validateName(name); const key = find(this[MAP], name); if (key === undefined) { return null; } return this[MAP][key].join(', '); } /** * Iterate over all headers * * @param Function callback Executed for each item with parameters (value, name, thisArg) * @param Boolean thisArg `this` context for callback function * @return Void */ forEach(callback) { let thisArg = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : undefined; let pairs = getHeaders(this); let i = 0; while (i < pairs.length) { var _pairs$i = pairs[i]; const name = _pairs$i[0], value = _pairs$i[1]; callback.call(thisArg, value, name, this); pairs = getHeaders(this); i++; } } /** * Overwrite header values given name * * @param String name Header name * @param String value Header value * @return Void */ set(name, value) { name = `${name}`; value = `${value}`; validateName(name); validateValue(value); const key = find(this[MAP], name); this[MAP][key !== undefined ? key : name] = [value]; } /** * Append a value onto existing header * * @param String name Header name * @param String value Header value * @return Void */ append(name, value) { name = `${name}`; value = `${value}`; validateName(name); validateValue(value); const key = find(this[MAP], name); if (key !== undefined) { this[MAP][key].push(value); } else { this[MAP][name] = [value]; } } /** * Check for header name existence * * @param String name Header name * @return Boolean */ has(name) { name = `${name}`; validateName(name); return find(this[MAP], name) !== undefined; } /** * Delete all header values given name * * @param String name Header name * @return Void */ delete(name) { name = `${name}`; validateName(name); const key = find(this[MAP], name); if (key !== undefined) { delete this[MAP][key]; } } /** * Return raw headers (non-spec api) * * @return Object */ raw() { return this[MAP]; } /** * Get an iterator on keys. * * @return Iterator */ keys() { return createHeadersIterator(this, 'key'); } /** * Get an iterator on values. * * @return Iterator */ values() { return createHeadersIterator(this, 'value'); } /** * Get an iterator on entries. * * This is the default iterator of the Headers object. * * @return Iterator */ [Symbol.iterator]() { return createHeadersIterator(this, 'key+value'); } } Headers.prototype.entries = Headers.prototype[Symbol.iterator]; Object.defineProperty(Headers.prototype, Symbol.toStringTag, { value: 'Headers', writable: false, enumerable: false, configurable: true }); Object.defineProperties(Headers.prototype, { get: { enumerable: true }, forEach: { enumerable: true }, set: { enumerable: true }, append: { enumerable: true }, has: { enumerable: true }, delete: { enumerable: true }, keys: { enumerable: true }, values: { enumerable: true }, entries: { enumerable: true } }); function getHeaders(headers) { let kind = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : 'key+value'; const keys = Object.keys(headers[MAP]).sort(); return keys.map(kind === 'key' ? function (k) { return k.toLowerCase(); } : kind === 'value' ? function (k) { return headers[MAP][k].join(', '); } : function (k) { return [k.toLowerCase(), headers[MAP][k].join(', ')]; }); } const INTERNAL = Symbol('internal'); function createHeadersIterator(target, kind) { const iterator = Object.create(HeadersIteratorPrototype); iterator[INTERNAL] = { target, kind, index: 0 }; return iterator; } const HeadersIteratorPrototype = Object.setPrototypeOf({ next() { // istanbul ignore if if (!this || Object.getPrototypeOf(this) !== HeadersIteratorPrototype) { throw new TypeError('Value of `this` is not a HeadersIterator'); } var _INTERNAL = this[INTERNAL]; const target = _INTERNAL.target, kind = _INTERNAL.kind, index = _INTERNAL.index; const values = getHeaders(target, kind); const len = values.length; if (index >= len) { return { value: undefined, done: true }; } this[INTERNAL].index = index + 1; return { value: values[index], done: false }; } }, Object.getPrototypeOf(Object.getPrototypeOf([][Symbol.iterator]()))); Object.defineProperty(HeadersIteratorPrototype, Symbol.toStringTag, { value: 'HeadersIterator', writable: false, enumerable: false, configurable: true }); /** * Export the Headers object in a form that Node.js can consume. * * @param Headers headers * @return Object */ function exportNodeCompatibleHeaders(headers) { const obj = Object.assign({ __proto__: null }, headers[MAP]); // http.request() only supports string as Host header. This hack makes // specifying custom Host header possible. const hostHeaderKey = find(headers[MAP], 'Host'); if (hostHeaderKey !== undefined) { obj[hostHeaderKey] = obj[hostHeaderKey][0]; } return obj; } /** * Create a Headers object from an object of headers, ignoring those that do * not conform to HTTP grammar productions. * * @param Object obj Object of headers * @return Headers */ function createHeadersLenient(obj) { const headers = new Headers(); for (const name of Object.keys(obj)) { if (invalidTokenRegex.test(name)) { continue; } if (Array.isArray(obj[name])) { for (const val of obj[name]) { if (invalidHeaderCharRegex.test(val)) { continue; } if (headers[MAP][name] === undefined) { headers[MAP][name] = [val]; } else { headers[MAP][name].push(val); } } } else if (!invalidHeaderCharRegex.test(obj[name])) { headers[MAP][name] = [obj[name]]; } } return headers; } const INTERNALS$1 = Symbol('Response internals'); // fix an issue where "STATUS_CODES" aren't a named export for node <10 const STATUS_CODES = http.STATUS_CODES; /** * Response class * * @param Stream body Readable stream * @param Object opts Response options * @return Void */ class Response { constructor() { let body = arguments.length > 0 && arguments[0] !== undefined ? arguments[0] : null; let opts = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : {}; Body.call(this, body, opts); const status = opts.status || 200; const headers = new Headers(opts.headers); if (body != null && !headers.has('Content-Type')) { const contentType = extractContentType(body); if (contentType) { headers.append('Content-Type', contentType); } } this[INTERNALS$1] = { url: opts.url, status, statusText: opts.statusText || STATUS_CODES[status], headers, counter: opts.counter }; } get url() { return this[INTERNALS$1].url || ''; } get status() { return this[INTERNALS$1].status; } /** * Convenience property representing if the request ended normally */ get ok() { return this[INTERNALS$1].status >= 200 && this[INTERNALS$1].status < 300; } get redirected() { return this[INTERNALS$1].counter > 0; } get statusText() { return this[INTERNALS$1].statusText; } get headers() { return this[INTERNALS$1].headers; } /** * Clone this response * * @return Response */ clone() { return new Response(clone(this), { url: this.url, status: this.status, statusText: this.statusText, headers: this.headers, ok: this.ok, redirected: this.redirected }); } } Body.mixIn(Response.prototype); Object.defineProperties(Response.prototype, { url: { enumerable: true }, status: { enumerable: true }, ok: { enumerable: true }, redirected: { enumerable: true }, statusText: { enumerable: true }, headers: { enumerable: true }, clone: { enumerable: true } }); Object.defineProperty(Response.prototype, Symbol.toStringTag, { value: 'Response', writable: false, enumerable: false, configurable: true }); const INTERNALS$2 = Symbol('Request internals'); // fix an issue where "format", "parse" aren't a named export for node <10 const parse_url = Url.parse; const format_url = Url.format; const streamDestructionSupported = 'destroy' in Stream.Readable.prototype; /** * Check if a value is an instance of Request. * * @param Mixed input * @return Boolean */ function isRequest(input) { return typeof input === 'object' && typeof input[INTERNALS$2] === 'object'; } function isAbortSignal(signal) { const proto = signal && typeof signal === 'object' && Object.getPrototypeOf(signal); return !!(proto && proto.constructor.name === 'AbortSignal'); } /** * Request class * * @param Mixed input Url or Request instance * @param Object init Custom options * @return Void */ class Request { constructor(input) { let init = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : {}; let parsedURL; // normalize input if (!isRequest(input)) { if (input && input.href) { // in order to support Node.js' Url objects; though WHATWG's URL objects // will fall into this branch also (since their `toString()` will return // `href` property anyway) parsedURL = parse_url(input.href); } else { // coerce input to a string before attempting to parse parsedURL = parse_url(`${input}`); } input = {}; } else { parsedURL = parse_url(input.url); } let method = init.method || input.method || 'GET'; method = method.toUpperCase(); if ((init.body != null || isRequest(input) && input.body !== null) && (method === 'GET' || method === 'HEAD')) { throw new TypeError('Request with GET/HEAD method cannot have body'); } let inputBody = init.body != null ? init.body : isRequest(input) && input.body !== null ? clone(input) : null; Body.call(this, inputBody, { timeout: init.timeout || input.timeout || 0, size: init.size || input.size || 0 }); const headers = new Headers(init.headers || input.headers || {}); if (inputBody != null && !headers.has('Content-Type')) { const contentType = extractContentType(inputBody); if (contentType) { headers.append('Content-Type', contentType); } } let signal = isRequest(input) ? input.signal : null; if ('signal' in init) signal = init.signal; if (signal != null && !isAbortSignal(signal)) { throw new TypeError('Expected signal to be an instanceof AbortSignal'); } this[INTERNALS$2] = { method, redirect: init.redirect || input.redirect || 'follow', headers, parsedURL, signal }; // node-fetch-only options this.follow = init.follow !== undefined ? init.follow : input.follow !== undefined ? input.follow : 20; this.compress = init.compress !== undefined ? init.compress : input.compress !== undefined ? input.compress : true; this.counter = init.counter || input.counter || 0; this.agent = init.agent || input.agent; } get method() { return this[INTERNALS$2].method; } get url() { return format_url(this[INTERNALS$2].parsedURL); } get headers() { return this[INTERNALS$2].headers; } get redirect() { return this[INTERNALS$2].redirect; } get signal() { return this[INTERNALS$2].signal; } /** * Clone this request * * @return Request */ clone() { return new Request(this); } } Body.mixIn(Request.prototype); Object.defineProperty(Request.prototype, Symbol.toStringTag, { value: 'Request', writable: false, enumerable: false, configurable: true }); Object.defineProperties(Request.prototype, { method: { enumerable: true }, url: { enumerable: true }, headers: { enumerable: true }, redirect: { enumerable: true }, clone: { enumerable: true }, signal: { enumerable: true } }); /** * Convert a Request to Node.js http request options. * * @param Request A Request instance * @return Object The options object to be passed to http.request */ function getNodeRequestOptions(request) { const parsedURL = request[INTERNALS$2].parsedURL; const headers = new Headers(request[INTERNALS$2].headers); // fetch step 1.3 if (!headers.has('Accept')) { headers.set('Accept', '*/*'); } // Basic fetch if (!parsedURL.protocol || !parsedURL.hostname) { throw new TypeError('Only absolute URLs are supported'); } if (!/^https?:$/.test(parsedURL.protocol)) { throw new TypeError('Only HTTP(S) protocols are supported'); } if (request.signal && request.body instanceof Stream.Readable && !streamDestructionSupported) { throw new Error('Cancellation of streamed requests with AbortSignal is not supported in node < 8'); } // HTTP-network-or-cache fetch steps 2.4-2.7 let contentLengthValue = null; if (request.body == null && /^(POST|PUT)$/i.test(request.method)) { contentLengthValue = '0'; } if (request.body != null) { const totalBytes = getTotalBytes(request); if (typeof totalBytes === 'number') { contentLengthValue = String(totalBytes); } } if (contentLengthValue) { headers.set('Content-Length', contentLengthValue); } // HTTP-network-or-cache fetch step 2.11 if (!headers.has('User-Agent')) { headers.set('User-Agent', 'node-fetch/1.0 (+https://github.com/bitinn/node-fetch)'); } // HTTP-network-or-cache fetch step 2.15 if (request.compress && !headers.has('Accept-Encoding')) { headers.set('Accept-Encoding', 'gzip,deflate'); } let agent = request.agent; if (typeof agent === 'function') { agent = agent(parsedURL); } if (!headers.has('Connection') && !agent) { headers.set('Connection', 'close'); } // HTTP-network fetch step 4.2 // chunked encoding is handled by Node.js return Object.assign({}, parsedURL, { method: request.method, headers: exportNodeCompatibleHeaders(headers), agent }); } /** * abort-error.js * * AbortError interface for cancelled requests */ /** * Create AbortError instance * * @param String message Error message for human * @return AbortError */ function AbortError(message) { Error.call(this, message); this.type = 'aborted'; this.message = message; // hide custom error implementation details from end-users Error.captureStackTrace(this, this.constructor); } AbortError.prototype = Object.create(Error.prototype); AbortError.prototype.constructor = AbortError; AbortError.prototype.name = 'AbortError'; // fix an issue where "PassThrough", "resolve" aren't a named export for node <10 const PassThrough$1 = Stream.PassThrough; const resolve_url = Url.resolve; /** * Fetch function * * @param Mixed url Absolute url or Request instance * @param Object opts Fetch options * @return Promise */ function fetch(url, opts) { // allow custom promise if (!fetch.Promise) { throw new Error('native promise missing, set fetch.Promise to your favorite alternative'); } Body.Promise = fetch.Promise; // wrap http.request into fetch return new fetch.Promise(function (resolve, reject) { // build request object const request = new Request(url, opts); const options = getNodeRequestOptions(request); const send = (options.protocol === 'https:' ? https : http).request; const signal = request.signal; let response = null; const abort = function abort() { let error = new AbortError('The user aborted a request.'); reject(error); if (request.body && request.body instanceof Stream.Readable) { request.body.destroy(error); } if (!response || !response.body) return; response.body.emit('error', error); }; if (signal && signal.aborted) { abort(); return; } const abortAndFinalize = function abortAndFinalize() { abort(); finalize(); }; // send request const req = send(options); let reqTimeout; if (signal) { signal.addEventListener('abort', abortAndFinalize); } function finalize() { req.abort(); if (signal) signal.removeEventListener('abort', abortAndFinalize); clearTimeout(reqTimeout); } if (request.timeout) { req.once('socket', function (socket) { reqTimeout = setTimeout(function () { reject(new FetchError(`network timeout at: ${request.url}`, 'request-timeout')); finalize(); }, request.timeout); }); } req.on('error', function (err) { reject(new FetchError(`request to ${request.url} failed, reason: ${err.message}`, 'system', err)); finalize(); }); req.on('response', function (res) { clearTimeout(reqTimeout); const headers = createHeadersLenient(res.headers); // HTTP fetch step 5 if (fetch.isRedirect(res.statusCode)) { // HTTP fetch step 5.2 const location = headers.get('Location'); // HTTP fetch step 5.3 const locationURL = location === null ? null : resolve_url(request.url, location); // HTTP fetch step 5.5 switch (request.redirect) { case 'error': reject(new FetchError(`redirect mode is set to error: ${request.url}`, 'no-redirect')); finalize(); return; case 'manual': // node-fetch-specific step: make manual redirect a bit easier to use by setting the Location header value to the resolved URL. if (locationURL !== null) { // handle corrupted header try { headers.set('Location', locationURL); } catch (err) { // istanbul ignore next: nodejs server prevent invalid response headers, we can't test this through normal request reject(err); } } break; case 'follow': // HTTP-redirect fetch step 2 if (locationURL === null) { break; } // HTTP-redirect fetch step 5 if (request.counter >= request.follow) { reject(new FetchError(`maximum redirect reached at: ${request.url}`, 'max-redirect')); finalize(); return; } // HTTP-redirect fetch step 6 (counter increment) // Create a new Request object. const requestOpts = { headers: new Headers(request.headers), follow: request.follow, counter: request.counter + 1, agent: request.agent, compress: request.compress, method: request.method, body: request.body, signal: request.signal, timeout: request.timeout }; // HTTP-redirect fetch step 9 if (res.statusCode !== 303 && request.body && getTotalBytes(request) === null) { reject(new FetchError('Cannot follow redirect with body being a readable stream', 'unsupported-redirect')); finalize(); return; } // HTTP-redirect fetch step 11 if (res.statusCode === 303 || (res.statusCode === 301 || res.statusCode === 302) && request.method === 'POST') { requestOpts.method = 'GET'; requestOpts.body = undefined; requestOpts.headers.delete('content-length'); } // HTTP-redirect fetch step 15 resolve(fetch(new Request(locationURL, requestOpts))); finalize(); return; } } // prepare response res.once('end', function () { if (signal) signal.removeEventListener('abort', abortAndFinalize); }); let body = res.pipe(new PassThrough$1()); const response_options = { url: request.url, status: res.statusCode, statusText: res.statusMessage, headers: headers, size: request.size, timeout: request.timeout, counter: request.counter }; // HTTP-network fetch step 12.1.1.3 const codings = headers.get('Content-Encoding'); // HTTP-network fetch step 12.1.1.4: handle content codings // in following scenarios we ignore compression support // 1. compression support is disabled // 2. HEAD request // 3. no Content-Encoding header // 4. no content response (204) // 5. content not modified response (304) if (!request.compress || request.method === 'HEAD' || codings === null || res.statusCode === 204 || res.statusCode === 304) { response = new Response(body, response_options); resolve(response); return; } // For Node v6+ // Be less strict when decoding compressed responses, since sometimes // servers send slightly invalid responses that are still accepted // by common browsers. // Always using Z_SYNC_FLUSH is what cURL does. const zlibOptions = { flush: zlib.Z_SYNC_FLUSH, finishFlush: zlib.Z_SYNC_FLUSH }; // for gzip if (codings == 'gzip' || codings == 'x-gzip') { body = body.pipe(zlib.createGunzip(zlibOptions)); response = new Response(body, response_options); resolve(response); return; } // for deflate if (codings == 'deflate' || codings == 'x-deflate') { // handle the infamous raw deflate response from old servers // a hack for old IIS and Apache servers const raw = res.pipe(new PassThrough$1()); raw.once('data', function (chunk) { // see http://stackoverflow.com/questions/37519828 if ((chunk[0] & 0x0F) === 0x08) { body = body.pipe(zlib.createInflate()); } else { body = body.pipe(zlib.createInflateRaw()); } response = new Response(body, response_options); resolve(response); }); return; } // for br if (codings == 'br' && typeof zlib.createBrotliDecompress === 'function') { body = body.pipe(zlib.createBrotliDecompress()); response = new Response(body, response_options); resolve(response); return; } // otherwise, use response as-is response = new Response(body, response_options); resolve(response); }); writeToStream(req, request); }); } /** * Redirect code matching * * @param Number code Status code * @return Boolean */ fetch.isRedirect = function (code) { return code === 301 || code === 302 || code === 303 || code === 307 || code === 308; }; // expose Promise fetch.Promise = global.Promise; module.exports = exports = fetch; Object.defineProperty(exports, "__esModule", { value: true }); exports.default = exports; exports.Headers = Headers; exports.Request = Request; exports.Response = Response; exports.FetchError = FetchError; /***/ }), /***/ 458: /***/ (function(module, __unusedexports, __webpack_require__) { // Generated by CoffeeScript 1.12.7 (function() { var NodeType, WriterState, XMLStreamWriter, XMLWriterBase, extend = function(child, parent) { for (var key in parent) { if (hasProp.call(parent, key)) child[key] = parent[key]; } function ctor() { this.constructor = child; } ctor.prototype = parent.prototype; child.prototype = new ctor(); child.__super__ = parent.prototype; return child; }, hasProp = {}.hasOwnProperty; NodeType = __webpack_require__(683); XMLWriterBase = __webpack_require__(423); WriterState = __webpack_require__(541); module.exports = XMLStreamWriter = (function(superClass) { extend(XMLStreamWriter, superClass); function XMLStreamWriter(stream, options) { this.stream = stream; XMLStreamWriter.__super__.constructor.call(this, options); } XMLStreamWriter.prototype.endline = function(node, options, level) { if (node.isLastRootNode && options.state === WriterState.CloseTag) { return ''; } else { return XMLStreamWriter.__super__.endline.call(this, node, options, level); } }; XMLStreamWriter.prototype.document = function(doc, options) { var child, i, j, k, len, len1, ref, ref1, results; ref = doc.children; for (i = j = 0, len = ref.length; j < len; i = ++j) { child = ref[i]; child.isLastRootNode = i === doc.children.length - 1; } options = this.filterOptions(options); ref1 = doc.children; results = []; for (k = 0, len1 = ref1.length; k < len1; k++) { child = ref1[k]; results.push(this.writeChildNode(child, options, 0)); } return results; }; XMLStreamWriter.prototype.attribute = function(att, options, level) { return this.stream.write(XMLStreamWriter.__super__.attribute.call(this, att, options, level)); }; XMLStreamWriter.prototype.cdata = function(node, options, level) { return this.stream.write(XMLStreamWriter.__super__.cdata.call(this, node, options, level)); }; XMLStreamWriter.prototype.comment = function(node, options, level) { return this.stream.write(XMLStreamWriter.__super__.comment.call(this, node, options, level)); }; XMLStreamWriter.prototype.declaration = function(node, options, level) { return this.stream.write(XMLStreamWriter.__super__.declaration.call(this, node, options, level)); }; XMLStreamWriter.prototype.docType = function(node, options, level) { var child, j, len, ref; level || (level = 0); this.openNode(node, options, level); options.state = WriterState.OpenTag; this.stream.write(this.indent(node, options, level)); this.stream.write(' 0) { this.stream.write(' ['); this.stream.write(this.endline(node, options, level)); options.state = WriterState.InsideTag; ref = node.children; for (j = 0, len = ref.length; j < len; j++) { child = ref[j]; this.writeChildNode(child, options, level + 1); } options.state = WriterState.CloseTag; this.stream.write(']'); } options.state = WriterState.CloseTag; this.stream.write(options.spaceBeforeSlash + '>'); this.stream.write(this.endline(node, options, level)); options.state = WriterState.None; return this.closeNode(node, options, level); }; XMLStreamWriter.prototype.element = function(node, options, level) { var att, child, childNodeCount, firstChildNode, j, len, name, prettySuppressed, ref, ref1; level || (level = 0); this.openNode(node, options, level); options.state = WriterState.OpenTag; this.stream.write(this.indent(node, options, level) + '<' + node.name); ref = node.attribs; for (name in ref) { if (!hasProp.call(ref, name)) continue; att = ref[name]; this.attribute(att, options, level); } childNodeCount = node.children.length; firstChildNode = childNodeCount === 0 ? null : node.children[0]; if (childNodeCount === 0 || node.children.every(function(e) { return (e.type === NodeType.Text || e.type === NodeType.Raw) && e.value === ''; })) { if (options.allowEmpty) { this.stream.write('>'); options.state = WriterState.CloseTag; this.stream.write(''); } else { options.state = WriterState.CloseTag; this.stream.write(options.spaceBeforeSlash + '/>'); } } else if (options.pretty && childNodeCount === 1 && (firstChildNode.type === NodeType.Text || firstChildNode.type === NodeType.Raw) && (firstChildNode.value != null)) { this.stream.write('>'); options.state = WriterState.InsideTag; options.suppressPrettyCount++; prettySuppressed = true; this.writeChildNode(firstChildNode, options, level + 1); options.suppressPrettyCount--; prettySuppressed = false; options.state = WriterState.CloseTag; this.stream.write(''); } else { this.stream.write('>' + this.endline(node, options, level)); options.state = WriterState.InsideTag; ref1 = node.children; for (j = 0, len = ref1.length; j < len; j++) { child = ref1[j]; this.writeChildNode(child, options, level + 1); } options.state = WriterState.CloseTag; this.stream.write(this.indent(node, options, level) + ''); } this.stream.write(this.endline(node, options, level)); options.state = WriterState.None; return this.closeNode(node, options, level); }; XMLStreamWriter.prototype.processingInstruction = function(node, options, level) { return this.stream.write(XMLStreamWriter.__super__.processingInstruction.call(this, node, options, level)); }; XMLStreamWriter.prototype.raw = function(node, options, level) { return this.stream.write(XMLStreamWriter.__super__.raw.call(this, node, options, level)); }; XMLStreamWriter.prototype.text = function(node, options, level) { return this.stream.write(XMLStreamWriter.__super__.text.call(this, node, options, level)); }; XMLStreamWriter.prototype.dtdAttList = function(node, options, level) { return this.stream.write(XMLStreamWriter.__super__.dtdAttList.call(this, node, options, level)); }; XMLStreamWriter.prototype.dtdElement = function(node, options, level) { return this.stream.write(XMLStreamWriter.__super__.dtdElement.call(this, node, options, level)); }; XMLStreamWriter.prototype.dtdEntity = function(node, options, level) { return this.stream.write(XMLStreamWriter.__super__.dtdEntity.call(this, node, options, level)); }; XMLStreamWriter.prototype.dtdNotation = function(node, options, level) { return this.stream.write(XMLStreamWriter.__super__.dtdNotation.call(this, node, options, level)); }; return XMLStreamWriter; })(XMLWriterBase); }).call(this); /***/ }), /***/ 459: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; /*! * Copyright 2019, OpenTelemetry Authors * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * https://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ function __export(m) { for (var p in m) if (!exports.hasOwnProperty(p)) exports[p] = m[p]; } Object.defineProperty(exports, "__esModule", { value: true }); __export(__webpack_require__(560)); __export(__webpack_require__(53)); //# sourceMappingURL=index.js.map /***/ }), /***/ 460: /***/ (function(module) { // generated by genversion module.exports = '4.0.0' /***/ }), /***/ 463: /***/ (function(module, __unusedexports, __webpack_require__) { // Generated by CoffeeScript 1.12.7 (function() { var NodeType, XMLDTDElement, XMLNode, extend = function(child, parent) { for (var key in parent) { if (hasProp.call(parent, key)) child[key] = parent[key]; } function ctor() { this.constructor = child; } ctor.prototype = parent.prototype; child.prototype = new ctor(); child.__super__ = parent.prototype; return child; }, hasProp = {}.hasOwnProperty; XMLNode = __webpack_require__(855); NodeType = __webpack_require__(683); module.exports = XMLDTDElement = (function(superClass) { extend(XMLDTDElement, superClass); function XMLDTDElement(parent, name, value) { XMLDTDElement.__super__.constructor.call(this, parent); if (name == null) { throw new Error("Missing DTD element name. " + this.debugInfo()); } if (!value) { value = '(#PCDATA)'; } if (Array.isArray(value)) { value = '(' + value.join(',') + ')'; } this.name = this.stringify.name(name); this.type = NodeType.ElementDeclaration; this.value = this.stringify.dtdElementValue(value); } XMLDTDElement.prototype.toString = function(options) { return this.options.writer.dtdElement(this, this.options.writer.filterOptions(options)); }; return XMLDTDElement; })(XMLNode); }).call(this); /***/ }), /***/ 470: /***/ (function(__unusedmodule, exports, __webpack_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()); }); }; var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (Object.hasOwnProperty.call(mod, k)) result[k] = mod[k]; result["default"] = mod; return result; }; Object.defineProperty(exports, "__esModule", { value: true }); const command_1 = __webpack_require__(431); const os = __importStar(__webpack_require__(87)); const path = __importStar(__webpack_require__(622)); /** * 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 || (exports.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 = command_1.toCommandValue(val); process.env[name] = convertedVal; 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) { 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) { command_1.issueCommand('add-path', {}, inputPath); process.env['PATH'] = `${inputPath}${path.delimiter}${process.env['PATH']}`; } exports.addPath = addPath; /** * Gets the value of an input. The value is also trimmed. * * @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}`); } return val.trim(); } exports.getInput = getInput; /** * 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) { command_1.issueCommand('set-output', { name }, 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) { 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) { 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() */ function error(message) { command_1.issue('error', message instanceof Error ? message.toString() : message); } exports.error = error; /** * Adds an warning issue * @param message warning issue message. Errors will be converted to string via toString() */ function warning(message) { command_1.issue('warning', message instanceof Error ? message.toString() : message); } exports.warning = warning; /** * 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) { command_1.issue('group', name); } exports.startGroup = startGroup; /** * End an output group. */ function endGroup() { 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) { command_1.issueCommand('save-state', { name }, 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; //# sourceMappingURL=core.js.map /***/ }), /***/ 476: /***/ (function(__unusedmodule, exports, __webpack_require__) { // Generated by CoffeeScript 1.12.7 (function() { "use strict"; var builder, defaults, escapeCDATA, requiresCDATA, wrapCDATA, hasProp = {}.hasOwnProperty; builder = __webpack_require__(312); defaults = __webpack_require__(791).defaults; requiresCDATA = function(entry) { return typeof entry === "string" && (entry.indexOf('&') >= 0 || entry.indexOf('>') >= 0 || entry.indexOf('<') >= 0); }; wrapCDATA = function(entry) { return ""; }; escapeCDATA = function(entry) { return entry.replace(']]>', ']]]]>'); }; exports.Builder = (function() { function Builder(opts) { var key, ref, value; this.options = {}; ref = defaults["0.2"]; for (key in ref) { if (!hasProp.call(ref, key)) continue; value = ref[key]; this.options[key] = value; } for (key in opts) { if (!hasProp.call(opts, key)) continue; value = opts[key]; this.options[key] = value; } } Builder.prototype.buildObject = function(rootObj) { var attrkey, charkey, render, rootElement, rootName; attrkey = this.options.attrkey; charkey = this.options.charkey; if ((Object.keys(rootObj).length === 1) && (this.options.rootName === defaults['0.2'].rootName)) { rootName = Object.keys(rootObj)[0]; rootObj = rootObj[rootName]; } else { rootName = this.options.rootName; } render = (function(_this) { return function(element, obj) { var attr, child, entry, index, key, value; if (typeof obj !== 'object') { if (_this.options.cdata && requiresCDATA(obj)) { element.raw(wrapCDATA(obj)); } else { element.txt(obj); } } else if (Array.isArray(obj)) { for (index in obj) { if (!hasProp.call(obj, index)) continue; child = obj[index]; for (key in child) { entry = child[key]; element = render(element.ele(key), entry).up(); } } } else { for (key in obj) { if (!hasProp.call(obj, key)) continue; child = obj[key]; if (key === attrkey) { if (typeof child === "object") { for (attr in child) { value = child[attr]; element = element.att(attr, value); } } } else if (key === charkey) { if (_this.options.cdata && requiresCDATA(child)) { element = element.raw(wrapCDATA(child)); } else { element = element.txt(child); } } else if (Array.isArray(child)) { for (index in child) { if (!hasProp.call(child, index)) continue; entry = child[index]; if (typeof entry === 'string') { if (_this.options.cdata && requiresCDATA(entry)) { element = element.ele(key).raw(wrapCDATA(entry)).up(); } else { element = element.ele(key, entry).up(); } } else { element = render(element.ele(key), entry).up(); } } } else if (typeof child === "object") { element = render(element.ele(key), child).up(); } else { if (typeof child === 'string' && _this.options.cdata && requiresCDATA(child)) { element = element.ele(key).raw(wrapCDATA(child)).up(); } else { if (child == null) { child = ''; } element = element.ele(key, child.toString()).up(); } } } } return element; }; })(this); rootElement = builder.create(rootName, this.options.xmldec, this.options.doctype, { headless: this.options.headless, allowSurrogateChars: this.options.allowSurrogateChars }); return render(rootElement, rootObj).end(this.options.renderOpts); }; return Builder; })(); }).call(this); /***/ }), /***/ 491: /***/ (function(module, __unusedexports, __webpack_require__) { // Generated by CoffeeScript 1.12.7 (function() { var NodeType, XMLCharacterData, XMLProcessingInstruction, extend = function(child, parent) { for (var key in parent) { if (hasProp.call(parent, key)) child[key] = parent[key]; } function ctor() { this.constructor = child; } ctor.prototype = parent.prototype; child.prototype = new ctor(); child.__super__ = parent.prototype; return child; }, hasProp = {}.hasOwnProperty; NodeType = __webpack_require__(683); XMLCharacterData = __webpack_require__(639); module.exports = XMLProcessingInstruction = (function(superClass) { extend(XMLProcessingInstruction, superClass); function XMLProcessingInstruction(parent, target, value) { XMLProcessingInstruction.__super__.constructor.call(this, parent); if (target == null) { throw new Error("Missing instruction target. " + this.debugInfo()); } this.type = NodeType.ProcessingInstruction; this.target = this.stringify.insTarget(target); this.name = this.target; if (value) { this.value = this.stringify.insValue(value); } } XMLProcessingInstruction.prototype.clone = function() { return Object.create(this); }; XMLProcessingInstruction.prototype.toString = function(options) { return this.options.writer.processingInstruction(this, this.options.writer.filterOptions(options)); }; XMLProcessingInstruction.prototype.isEqualNode = function(node) { if (!XMLProcessingInstruction.__super__.isEqualNode.apply(this, arguments).isEqualNode(node)) { return false; } if (node.target !== this.target) { return false; } return true; }; return XMLProcessingInstruction; })(XMLCharacterData); }).call(this); /***/ }), /***/ 492: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; /*! * Copyright 2020, OpenTelemetry Authors * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * https://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ Object.defineProperty(exports, "__esModule", { value: true }); const context_base_1 = __webpack_require__(459); /** * Singleton object which represents the entry point to the OpenTelemetry Context API */ class ContextAPI { /** Empty private constructor prevents end users from constructing a new instance of the API */ constructor() { this._contextManager = new context_base_1.NoopContextManager(); } /** Get the singleton instance of the Context API */ static getInstance() { if (!this._instance) { this._instance = new ContextAPI(); } return this._instance; } /** * Set the current context manager. Returns the initialized context manager */ setGlobalContextManager(contextManager) { this._contextManager = contextManager; return contextManager; } /** * Get the currently active context */ active() { return this._contextManager.active(); } /** * Execute a function with an active context * * @param context context to be active during function execution * @param fn function to execute in a context */ with(context, fn) { return this._contextManager.with(context, fn); } /** * Bind a context to a target function or event emitter * * @param target function or event emitter to bind * @param context context to bind to the event emitter or function. 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* Returns a copy of the upload options with defaults filled in. * * @param copy the original upload options */ function getUploadOptions(copy) { const result = { uploadConcurrency: 4, uploadChunkSize: 32 * 1024 * 1024 }; if (copy) { if (typeof copy.uploadConcurrency === 'number') { result.uploadConcurrency = copy.uploadConcurrency; } if (typeof copy.uploadChunkSize === 'number') { result.uploadChunkSize = copy.uploadChunkSize; } } core.debug(`Upload concurrency: ${result.uploadConcurrency}`); core.debug(`Upload chunk size: ${result.uploadChunkSize}`); return result; } exports.getUploadOptions = getUploadOptions; /** * Returns a copy of the download options with defaults filled in. * * @param copy the original download options */ function getDownloadOptions(copy) { const result = { useAzureSdk: true, downloadConcurrency: 8, timeoutInMs: 30000 }; if (copy) { if (typeof copy.useAzureSdk === 'boolean') { result.useAzureSdk = copy.useAzureSdk; } if (typeof copy.downloadConcurrency === 'number') { result.downloadConcurrency = copy.downloadConcurrency; } if (typeof copy.timeoutInMs === 'number') { result.timeoutInMs = copy.timeoutInMs; } } core.debug(`Use Azure SDK: ${result.useAzureSdk}`); core.debug(`Download concurrency: ${result.downloadConcurrency}`); core.debug(`Request timeout (ms): ${result.timeoutInMs}`); return result; } exports.getDownloadOptions = getDownloadOptions; //# sourceMappingURL=options.js.map /***/ }), /***/ 539: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; Object.defineProperty(exports, "__esModule", { value: true }); const url = __webpack_require__(835); const http = __webpack_require__(605); const https = __webpack_require__(211); const pm = __webpack_require__(950); let tunnel; 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 || (exports.HttpCodes = {})); var Headers; (function (Headers) { Headers["Accept"] = "accept"; Headers["ContentType"] = "content-type"; })(Headers = exports.Headers || (exports.Headers = {})); var MediaTypes; (function (MediaTypes) { MediaTypes["ApplicationJson"] = "application/json"; })(MediaTypes = exports.MediaTypes || (exports.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) { let proxyUrl = pm.getProxyUrl(url.parse(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 HttpClientResponse { constructor(message) { this.message = message; } readBody() { return new Promise(async (resolve, reject) => { let output = Buffer.alloc(0); this.message.on('data', (chunk) => { output = Buffer.concat([output, chunk]); }); this.message.on('end', () => { resolve(output.toString()); }); }); } } exports.HttpClientResponse = HttpClientResponse; function isHttps(requestUrl) { let parsedUrl = url.parse(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 this.request('OPTIONS', requestUrl, null, additionalHeaders || {}); } get(requestUrl, additionalHeaders) { return this.request('GET', requestUrl, null, additionalHeaders || {}); } del(requestUrl, additionalHeaders) { return this.request('DELETE', requestUrl, null, additionalHeaders || {}); } post(requestUrl, data, additionalHeaders) { return this.request('POST', requestUrl, data, additionalHeaders || {}); } patch(requestUrl, data, additionalHeaders) { return this.request('PATCH', requestUrl, data, additionalHeaders || {}); } put(requestUrl, data, additionalHeaders) { return this.request('PUT', requestUrl, data, additionalHeaders || {}); } head(requestUrl, additionalHeaders) { return this.request('HEAD', requestUrl, null, additionalHeaders || {}); } sendStream(verb, requestUrl, stream, additionalHeaders) { 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 */ async getJson(requestUrl, additionalHeaders = {}) { additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); let res = await this.get(requestUrl, additionalHeaders); return this._processResponse(res, this.requestOptions); } async postJson(requestUrl, obj, additionalHeaders = {}) { let 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); let res = await this.post(requestUrl, data, additionalHeaders); return this._processResponse(res, this.requestOptions); } async putJson(requestUrl, obj, additionalHeaders = {}) { let 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); let res = await this.put(requestUrl, data, additionalHeaders); return this._processResponse(res, this.requestOptions); } async patchJson(requestUrl, obj, additionalHeaders = {}) { let 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); let res = await 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 */ async request(verb, requestUrl, data, headers) { if (this._disposed) { throw new Error('Client has already been disposed.'); } let parsedUrl = url.parse(requestUrl); let info = this._prepareRequest(verb, parsedUrl, headers); // Only perform retries on reads since writes may not be idempotent. let maxTries = this._allowRetries && RetryableHttpVerbs.indexOf(verb) != -1 ? this._maxRetries + 1 : 1; let numTries = 0; let response; while (numTries < maxTries) { response = await this.requestRaw(info, data); // Check if it's an authentication challenge if (response && response.message && response.message.statusCode === HttpCodes.Unauthorized) { let authenticationHandler; for (let i = 0; i < this.handlers.length; i++) { if (this.handlers[i].canHandleAuthentication(response)) { authenticationHandler = this.handlers[i]; 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 (HttpRedirectCodes.indexOf(response.message.statusCode) != -1 && this._allowRedirects && redirectsRemaining > 0) { const redirectUrl = response.message.headers['location']; if (!redirectUrl) { // if there's no location to redirect to, we won't break; } let parsedRedirectUrl = url.parse(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. await response.readBody(); // strip authorization header if redirected to a different hostname if (parsedRedirectUrl.hostname !== parsedUrl.hostname) { for (let 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 = await this.requestRaw(info, data); redirectsRemaining--; } if (HttpResponseRetryCodes.indexOf(response.message.statusCode) == -1) { // If not a retry code, return immediately instead of retrying return response; } numTries += 1; if (numTries < maxTries) { await response.readBody(); await this._performExponentialBackoff(numTries); } } 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 new Promise((resolve, reject) => { let callbackForResult = function (err, res) { if (err) { reject(err); } resolve(res); }; this.requestRawWithCallback(info, data, callbackForResult); }); } /** * Raw request with callback. * @param info * @param data * @param onResult */ requestRawWithCallback(info, data, onResult) { let socket; if (typeof data === 'string') { info.options.headers['Content-Length'] = Buffer.byteLength(data, 'utf8'); } let callbackCalled = false; let handleResult = (err, res) => { if (!callbackCalled) { callbackCalled = true; onResult(err, res); } }; let req = info.httpModule.request(info.options, (msg) => { let res = new HttpClientResponse(msg); handleResult(null, res); }); 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), null); }); req.on('error', function (err) { // err has statusCode property // res should have headers handleResult(err, null); }); 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) { let parsedUrl = url.parse(serverUrl); return this._getAgent(parsedUrl); } _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) { this.handlers.forEach(handler => { handler.prepareRequest(info.options); }); } return info; } _mergeHeaders(headers) { const lowercaseKeys = obj => Object.keys(obj).reduce((c, k) => ((c[k.toLowerCase()] = obj[k]), c), {}); if (this.requestOptions && this.requestOptions.headers) { return Object.assign({}, lowercaseKeys(this.requestOptions.headers), lowercaseKeys(headers)); } return lowercaseKeys(headers || {}); } _getExistingOrDefaultHeader(additionalHeaders, header, _default) { const lowercaseKeys = obj => Object.keys(obj).reduce((c, k) => ((c[k.toLowerCase()] = obj[k]), c), {}); let clientHeader; if (this.requestOptions && this.requestOptions.headers) { clientHeader = lowercaseKeys(this.requestOptions.headers)[header]; } return additionalHeaders[header] || clientHeader || _default; } _getAgent(parsedUrl) { let agent; let proxyUrl = pm.getProxyUrl(parsedUrl); let useProxy = proxyUrl && proxyUrl.hostname; if (this._keepAlive && useProxy) { agent = this._proxyAgent; } if (this._keepAlive && !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; } if (useProxy) { // If using proxy, need tunnel if (!tunnel) { tunnel = __webpack_require__(413); } const agentOptions = { maxSockets: maxSockets, keepAlive: this._keepAlive, proxy: { proxyAuth: proxyUrl.auth, 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 reusing agent across request and tunneling agent isn't assigned create a new agent if (this._keepAlive && !agent) { const options = { keepAlive: this._keepAlive, maxSockets: maxSockets }; agent = usingSsl ? new https.Agent(options) : new http.Agent(options); this._agent = agent; } // if not using private agent and tunnel agent isn't setup then use global agent if (!agent) { agent = usingSsl ? https.globalAgent : http.globalAgent; } 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; } _performExponentialBackoff(retryNumber) { retryNumber = Math.min(ExponentialBackoffCeiling, retryNumber); const ms = ExponentialBackoffTimeSlice * Math.pow(2, retryNumber); return new Promise(resolve => setTimeout(() => resolve(), ms)); } static dateTimeDeserializer(key, value) { if (typeof value === 'string') { let a = new Date(value); if (!isNaN(a.valueOf())) { return a; } } return value; } async _processResponse(res, options) { return new Promise(async (resolve, reject) => { const statusCode = res.message.statusCode; const response = { statusCode: statusCode, result: null, headers: {} }; // not found leads to null obj returned if (statusCode == HttpCodes.NotFound) { resolve(response); } let obj; let contents; // get the result from the body try { contents = await res.readBody(); if (contents && contents.length > 0) { if (options && options.deserializeDates) { obj = JSON.parse(contents, HttpClient.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 + ')'; } let err = new Error(msg); // attach statusCode and body obj (if available) to the error object err['statusCode'] = statusCode; if (response.result) { err['result'] = response.result; } reject(err); } else { resolve(response); } }); } } exports.HttpClient = HttpClient; /***/ }), /***/ 541: /***/ (function(module) { // Generated by CoffeeScript 1.12.7 (function() { module.exports = { None: 0, OpenTag: 1, InsideTag: 2, CloseTag: 3 }; }).call(this); /***/ }), /***/ 547: /***/ (function(module, __unusedexports, __webpack_require__) { var util = __webpack_require__(669); var Stream = __webpack_require__(794).Stream; var DelayedStream = __webpack_require__(152); module.exports = CombinedStream; function CombinedStream() { this.writable = false; this.readable = true; this.dataSize = 0; this.maxDataSize = 2 * 1024 * 1024; this.pauseStreams = true; this._released = false; this._streams = []; this._currentStream = null; this._insideLoop = false; this._pendingNext = false; } util.inherits(CombinedStream, Stream); CombinedStream.create = function(options) { var combinedStream = new this(); options = options || {}; for (var option in options) { combinedStream[option] = options[option]; } return combinedStream; }; CombinedStream.isStreamLike = function(stream) { return (typeof stream !== 'function') && (typeof stream !== 'string') && (typeof stream !== 'boolean') && (typeof stream !== 'number') && (!Buffer.isBuffer(stream)); }; CombinedStream.prototype.append = function(stream) { var isStreamLike = CombinedStream.isStreamLike(stream); if (isStreamLike) { if (!(stream instanceof DelayedStream)) { var newStream = DelayedStream.create(stream, { maxDataSize: Infinity, pauseStream: this.pauseStreams, }); stream.on('data', this._checkDataSize.bind(this)); stream = newStream; } this._handleErrors(stream); if (this.pauseStreams) { stream.pause(); } } this._streams.push(stream); return this; }; CombinedStream.prototype.pipe = function(dest, options) { Stream.prototype.pipe.call(this, dest, options); this.resume(); return dest; }; CombinedStream.prototype._getNext = function() { this._currentStream = null; if (this._insideLoop) { this._pendingNext = true; return; // defer call } this._insideLoop = true; try { do { this._pendingNext = false; this._realGetNext(); } while (this._pendingNext); } finally { this._insideLoop = false; } }; CombinedStream.prototype._realGetNext = function() { var stream = this._streams.shift(); if (typeof stream == 'undefined') { this.end(); return; } if (typeof stream !== 'function') { this._pipeNext(stream); return; } var getStream = stream; getStream(function(stream) { var isStreamLike = CombinedStream.isStreamLike(stream); if (isStreamLike) { stream.on('data', this._checkDataSize.bind(this)); this._handleErrors(stream); } this._pipeNext(stream); }.bind(this)); }; CombinedStream.prototype._pipeNext = function(stream) { this._currentStream = stream; var isStreamLike = CombinedStream.isStreamLike(stream); if (isStreamLike) { stream.on('end', this._getNext.bind(this)); stream.pipe(this, {end: false}); return; } var value = stream; this.write(value); this._getNext(); }; CombinedStream.prototype._handleErrors = function(stream) { var self = this; stream.on('error', function(err) { self._emitError(err); }); }; CombinedStream.prototype.write = function(data) { this.emit('data', data); }; CombinedStream.prototype.pause = function() { if (!this.pauseStreams) { return; } if(this.pauseStreams && this._currentStream && typeof(this._currentStream.pause) == 'function') this._currentStream.pause(); this.emit('pause'); }; CombinedStream.prototype.resume = function() { if (!this._released) { this._released = true; this.writable = true; this._getNext(); } if(this.pauseStreams && this._currentStream && typeof(this._currentStream.resume) == 'function') this._currentStream.resume(); this.emit('resume'); }; CombinedStream.prototype.end = function() { this._reset(); this.emit('end'); }; CombinedStream.prototype.destroy = function() { this._reset(); this.emit('close'); }; CombinedStream.prototype._reset = function() { this.writable = false; this._streams = []; this._currentStream = null; }; CombinedStream.prototype._checkDataSize = function() { this._updateDataSize(); if (this.dataSize <= this.maxDataSize) { return; } var message = 'DelayedStream#maxDataSize of ' + this.maxDataSize + ' bytes exceeded.'; this._emitError(new Error(message)); }; CombinedStream.prototype._updateDataSize = function() { this.dataSize = 0; var self = this; this._streams.forEach(function(stream) { if (!stream.dataSize) { return; } self.dataSize += stream.dataSize; }); if (this._currentStream && this._currentStream.dataSize) { this.dataSize += this._currentStream.dataSize; } }; CombinedStream.prototype._emitError = function(err) { this._reset(); this.emit('error', err); }; /***/ }), /***/ 556: /***/ (function(module) { // Generated by CoffeeScript 1.12.7 (function() { var XMLDOMStringList; module.exports = XMLDOMStringList = (function() { function XMLDOMStringList(arr) { this.arr = arr || []; } Object.defineProperty(XMLDOMStringList.prototype, 'length', { get: function() { return this.arr.length; } }); XMLDOMStringList.prototype.item = function(index) { return this.arr[index] || null; }; XMLDOMStringList.prototype.contains = function(str) { return this.arr.indexOf(str) !== -1; }; return XMLDOMStringList; })(); }).call(this); /***/ }), /***/ 559: /***/ (function(module, __unusedexports, __webpack_require__) { // Generated by CoffeeScript 1.12.7 (function() { var NodeType, XMLDOMConfiguration, XMLDOMImplementation, XMLDocument, XMLNode, XMLStringWriter, XMLStringifier, isPlainObject, extend = function(child, parent) { for (var key in parent) { if (hasProp.call(parent, key)) child[key] = parent[key]; } function ctor() { this.constructor = child; } ctor.prototype = parent.prototype; child.prototype = new ctor(); child.__super__ = parent.prototype; return child; }, hasProp = {}.hasOwnProperty; isPlainObject = __webpack_require__(582).isPlainObject; XMLDOMImplementation = __webpack_require__(515); XMLDOMConfiguration = __webpack_require__(524); XMLNode = __webpack_require__(855); NodeType = __webpack_require__(683); XMLStringifier = __webpack_require__(602); XMLStringWriter = __webpack_require__(347); module.exports = XMLDocument = (function(superClass) { extend(XMLDocument, superClass); function XMLDocument(options) { XMLDocument.__super__.constructor.call(this, null); this.name = "#document"; this.type = NodeType.Document; this.documentURI = null; this.domConfig = new XMLDOMConfiguration(); options || (options = {}); if (!options.writer) { options.writer = new XMLStringWriter(); } this.options = options; this.stringify = new XMLStringifier(options); } Object.defineProperty(XMLDocument.prototype, 'implementation', { value: new XMLDOMImplementation() }); Object.defineProperty(XMLDocument.prototype, 'doctype', { get: function() { var child, i, len, ref; ref = this.children; for (i = 0, len = ref.length; i < len; i++) { child = ref[i]; if (child.type === NodeType.DocType) { return child; } } return null; } }); Object.defineProperty(XMLDocument.prototype, 'documentElement', { get: function() { return this.rootObject || null; } }); Object.defineProperty(XMLDocument.prototype, 'inputEncoding', { get: function() { return null; } }); Object.defineProperty(XMLDocument.prototype, 'strictErrorChecking', { get: function() { return false; } }); Object.defineProperty(XMLDocument.prototype, 'xmlEncoding', { get: function() { if (this.children.length !== 0 && this.children[0].type === NodeType.Declaration) { return this.children[0].encoding; } else { return null; } } }); Object.defineProperty(XMLDocument.prototype, 'xmlStandalone', { get: function() { if (this.children.length !== 0 && this.children[0].type === NodeType.Declaration) { return this.children[0].standalone === 'yes'; } else { return false; } } }); Object.defineProperty(XMLDocument.prototype, 'xmlVersion', { get: function() { if (this.children.length !== 0 && this.children[0].type === NodeType.Declaration) { return this.children[0].version; } else { return "1.0"; } } }); Object.defineProperty(XMLDocument.prototype, 'URL', { get: function() { return this.documentURI; } }); Object.defineProperty(XMLDocument.prototype, 'origin', { get: function() { return null; } }); Object.defineProperty(XMLDocument.prototype, 'compatMode', { get: function() { return null; } }); Object.defineProperty(XMLDocument.prototype, 'characterSet', { get: function() { return null; } }); Object.defineProperty(XMLDocument.prototype, 'contentType', { get: function() { return null; } }); XMLDocument.prototype.end = function(writer) { var writerOptions; writerOptions = {}; if (!writer) { writer = this.options.writer; } else if (isPlainObject(writer)) { writerOptions = writer; writer = this.options.writer; } return writer.document(this, writer.filterOptions(writerOptions)); }; XMLDocument.prototype.toString = function(options) { return this.options.writer.document(this, this.options.writer.filterOptions(options)); }; XMLDocument.prototype.createElement = function(tagName) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.createDocumentFragment = function() { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.createTextNode = function(data) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.createComment = function(data) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.createCDATASection = function(data) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.createProcessingInstruction = function(target, data) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.createAttribute = function(name) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.createEntityReference = function(name) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.getElementsByTagName = function(tagname) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.importNode = function(importedNode, deep) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.createElementNS = function(namespaceURI, qualifiedName) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.createAttributeNS = function(namespaceURI, qualifiedName) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.getElementsByTagNameNS = function(namespaceURI, localName) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.getElementById = function(elementId) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.adoptNode = function(source) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.normalizeDocument = function() { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.renameNode = function(node, namespaceURI, qualifiedName) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.getElementsByClassName = function(classNames) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.createEvent = function(eventInterface) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.createRange = function() { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.createNodeIterator = function(root, whatToShow, filter) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLDocument.prototype.createTreeWalker = function(root, whatToShow, filter) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; return XMLDocument; })(XMLNode); }).call(this); /***/ }), /***/ 560: /***/ (function(__unusedmodule, exports) { "use strict"; /*! * Copyright 2020, OpenTelemetry Authors * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * https://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ Object.defineProperty(exports, "__esModule", { value: true }); /** * Class which stores and manages current context values. All methods which * update context such as get and delete do not modify an existing context, * but create a new one with updated values. */ class Context { /** * Construct a new context which inherits values from an optional parent context. * * @param parentContext a context from which to inherit values */ constructor(parentContext) { this._currentContext = parentContext ? new Map(parentContext) : new Map(); } /** Get a key to uniquely identify a context value */ static createKey(description) { return Symbol(description); } /** * Get a value from the context. * * @param key key which identifies a context value */ getValue(key) { return this._currentContext.get(key); } /** * Create a new context which inherits from this context and has * the given key set to the given value. * * @param key context key for which to set the value * @param value value to set for the given key */ setValue(key, value) { const context = new Context(this._currentContext); context._currentContext.set(key, value); return context; } /** * Return a new context which inherits from this context but does * not contain a value for the given key. * * @param key context key for which to clear a value */ deleteValue(key) { const context = new Context(this._currentContext); context._currentContext.delete(key); return context; } } exports.Context = Context; /** The root context is used as the default parent context when there is no active context */ Context.ROOT_CONTEXT = new Context(); /** * This is another identifier to the root context which allows developers to easily search the * codebase for direct uses of context which need to be removed in later PRs. * * It's existence is temporary and it should be removed when all references are fixed. */ Context.TODO = Context.ROOT_CONTEXT; //# sourceMappingURL=context.js.map /***/ }), /***/ 562: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; /*! * Copyright (c) 2018, Salesforce.com, 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: * * 1. Redistributions of source code must retain the above copyright notice, * this list of conditions and the following disclaimer. * * 2. 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. * * 3. Neither the name of Salesforce.com 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 HOLDER 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. */ const psl = __webpack_require__(750); function getPublicSuffix(domain) { return psl.get(domain); } exports.getPublicSuffix = getPublicSuffix; /***/ }), /***/ 566: /***/ (function(module) { // API module.exports = abort; /** * Aborts leftover active jobs * * @param {object} state - current state object */ function abort(state) { Object.keys(state.jobs).forEach(clean.bind(state)); // reset leftover jobs state.jobs = {}; } /** * Cleans up leftover job by invoking abort function for the provided job id * * @this state * @param {string|number} key - job id to abort */ function clean(key) { if (typeof this.jobs[key] == 'function') { this.jobs[key](); } } /***/ }), /***/ 582: /***/ (function(module) { // Generated by CoffeeScript 1.12.7 (function() { var assign, getValue, isArray, isEmpty, isFunction, isObject, isPlainObject, slice = [].slice, hasProp = {}.hasOwnProperty; assign = function() { var i, key, len, source, sources, target; target = arguments[0], sources = 2 <= arguments.length ? slice.call(arguments, 1) : []; if (isFunction(Object.assign)) { Object.assign.apply(null, arguments); } else { for (i = 0, len = sources.length; i < len; i++) { source = sources[i]; if (source != null) { for (key in source) { if (!hasProp.call(source, key)) continue; target[key] = source[key]; } } } } return target; }; isFunction = function(val) { return !!val && Object.prototype.toString.call(val) === '[object Function]'; }; isObject = function(val) { var ref; return !!val && ((ref = typeof val) === 'function' || ref === 'object'); }; isArray = function(val) { if (isFunction(Array.isArray)) { return Array.isArray(val); } else { return Object.prototype.toString.call(val) === '[object Array]'; } }; isEmpty = function(val) { var key; if (isArray(val)) { return !val.length; } else { for (key in val) { if (!hasProp.call(val, key)) continue; return false; } return true; } }; isPlainObject = function(val) { var ctor, proto; return isObject(val) && (proto = Object.getPrototypeOf(val)) && (ctor = proto.constructor) && (typeof ctor === 'function') && (ctor instanceof ctor) && (Function.prototype.toString.call(ctor) === Function.prototype.toString.call(Object)); }; getValue = function(obj) { if (isFunction(obj.valueOf)) { return obj.valueOf(); } else { return obj; } }; module.exports.assign = assign; module.exports.isFunction = isFunction; module.exports.isObject = isObject; module.exports.isArray = isArray; module.exports.isEmpty = isEmpty; module.exports.isPlainObject = isPlainObject; module.exports.getValue = getValue; }).call(this); /***/ }), /***/ 585: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; Object.defineProperty(exports, "__esModule", { value: true }); Object.defineProperty(exports, "v1", { enumerable: true, get: function () { return _v.default; } }); Object.defineProperty(exports, "v3", { enumerable: true, get: function () { return _v2.default; } }); Object.defineProperty(exports, "v4", { enumerable: true, get: function () { return _v3.default; } }); Object.defineProperty(exports, "v5", { enumerable: true, get: function () { return _v4.default; } }); var _v = _interopRequireDefault(__webpack_require__(173)); var _v2 = _interopRequireDefault(__webpack_require__(298)); var _v3 = _interopRequireDefault(__webpack_require__(606)); var _v4 = _interopRequireDefault(__webpack_require__(90)); function _interopRequireDefault(obj) { return obj && obj.__esModule ? obj : { default: obj }; } /***/ }), /***/ 597: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; Object.defineProperty(exports, "__esModule", { value: true }); const pathHelper = __webpack_require__(972); const internal_match_kind_1 = __webpack_require__(327); 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 /***/ }), /***/ 601: /***/ (function(__unusedmodule, exports, __webpack_require__) { "use strict"; Object.defineProperty(exports, "__esModule", { value: true }); const core = __webpack_require__(470); /** * Returns a copy with defaults filled in. */ function getOptions(copy) { const result = { followSymbolicLinks: true, implicitDescendants: true, omitBrokenSymbolicLinks: true }; 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 '${result.implicitDescendants}'`); } if (typeof copy.omitBrokenSymbolicLinks === 'boolean') { result.omitBrokenSymbolicLinks = copy.omitBrokenSymbolicLinks; core.debug(`omitBrokenSymbolicLinks '${result.omitBrokenSymbolicLinks}'`); } } return result; } exports.getOptions = getOptions; //# sourceMappingURL=internal-glob-options-helper.js.map /***/ }), /***/ 602: /***/ (function(module) { // Generated by CoffeeScript 1.12.7 (function() { var XMLStringifier, bind = function(fn, me){ return function(){ return fn.apply(me, arguments); }; }, hasProp = {}.hasOwnProperty; module.exports = XMLStringifier = (function() { function XMLStringifier(options) { this.assertLegalName = bind(this.assertLegalName, this); this.assertLegalChar = bind(this.assertLegalChar, this); var key, ref, value; options || (options = {}); this.options = options; if (!this.options.version) { this.options.version = '1.0'; } ref = options.stringify || {}; for (key in ref) { if (!hasProp.call(ref, key)) continue; value = ref[key]; this[key] = value; } } XMLStringifier.prototype.name = function(val) { if (this.options.noValidation) { return val; } return this.assertLegalName('' + val || ''); }; XMLStringifier.prototype.text = function(val) { if (this.options.noValidation) { return val; } return this.assertLegalChar(this.textEscape('' + val || '')); }; XMLStringifier.prototype.cdata = function(val) { if (this.options.noValidation) { return val; } val = '' + val || ''; val = val.replace(']]>', ']]]]>'); return this.assertLegalChar(val); }; XMLStringifier.prototype.comment = function(val) { if (this.options.noValidation) { return val; } val = '' + val || ''; if (val.match(/--/)) { throw new Error("Comment text cannot contain double-hypen: " + val); } return this.assertLegalChar(val); }; XMLStringifier.prototype.raw = function(val) { if (this.options.noValidation) { return val; } return '' + val || ''; }; XMLStringifier.prototype.attValue = function(val) { if (this.options.noValidation) { return val; } return this.assertLegalChar(this.attEscape(val = '' + val || '')); }; XMLStringifier.prototype.insTarget = function(val) { if (this.options.noValidation) { return val; } return this.assertLegalChar('' + val || ''); }; XMLStringifier.prototype.insValue = function(val) { if (this.options.noValidation) { return val; } val = '' + val || ''; if (val.match(/\?>/)) { throw new Error("Invalid processing instruction value: " + val); } return this.assertLegalChar(val); }; XMLStringifier.prototype.xmlVersion = function(val) { if (this.options.noValidation) { return val; } val = '' + val || ''; if (!val.match(/1\.[0-9]+/)) { throw new Error("Invalid version number: " + val); } return val; }; XMLStringifier.prototype.xmlEncoding = function(val) { if (this.options.noValidation) { return val; } val = '' + val || ''; if (!val.match(/^[A-Za-z](?:[A-Za-z0-9._-])*$/)) { throw new Error("Invalid encoding: " + val); } return this.assertLegalChar(val); }; XMLStringifier.prototype.xmlStandalone = function(val) { if (this.options.noValidation) { return val; } if (val) { return "yes"; } else { return "no"; } }; XMLStringifier.prototype.dtdPubID = function(val) { if (this.options.noValidation) { return val; } return this.assertLegalChar('' + val || ''); }; XMLStringifier.prototype.dtdSysID = function(val) { if (this.options.noValidation) { return val; } return this.assertLegalChar('' + val || ''); }; XMLStringifier.prototype.dtdElementValue = function(val) { if (this.options.noValidation) { return val; } return this.assertLegalChar('' + val || ''); }; XMLStringifier.prototype.dtdAttType = function(val) { if (this.options.noValidation) { return val; } return this.assertLegalChar('' + val || ''); }; XMLStringifier.prototype.dtdAttDefault = function(val) { if (this.options.noValidation) { return val; } return this.assertLegalChar('' + val || ''); }; XMLStringifier.prototype.dtdEntityValue = function(val) { if (this.options.noValidation) { return val; } return this.assertLegalChar('' + val || ''); }; XMLStringifier.prototype.dtdNData = function(val) { if (this.options.noValidation) { return val; } return this.assertLegalChar('' + val || ''); }; XMLStringifier.prototype.convertAttKey = '@'; XMLStringifier.prototype.convertPIKey = '?'; XMLStringifier.prototype.convertTextKey = '#text'; XMLStringifier.prototype.convertCDataKey = '#cdata'; XMLStringifier.prototype.convertCommentKey = '#comment'; XMLStringifier.prototype.convertRawKey = '#raw'; XMLStringifier.prototype.assertLegalChar = function(str) { var regex, res; if (this.options.noValidation) { return str; } regex = ''; if (this.options.version === '1.0') { regex = /[\0-\x08\x0B\f\x0E-\x1F\uFFFE\uFFFF]|[\uD800-\uDBFF](?![\uDC00-\uDFFF])|(?:[^\uD800-\uDBFF]|^)[\uDC00-\uDFFF]/; if (res = str.match(regex)) { throw new Error("Invalid character in string: " + str + " at index " + res.index); } } else if (this.options.version === '1.1') { regex = /[\0\uFFFE\uFFFF]|[\uD800-\uDBFF](?![\uDC00-\uDFFF])|(?:[^\uD800-\uDBFF]|^)[\uDC00-\uDFFF]/; if (res = str.match(regex)) { throw new Error("Invalid character in string: " + str + " at index " + res.index); } } return str; }; XMLStringifier.prototype.assertLegalName = function(str) { var regex; if (this.options.noValidation) { return str; } this.assertLegalChar(str); regex = /^([:A-Z_a-z\xC0-\xD6\xD8-\xF6\xF8-\u02FF\u0370-\u037D\u037F-\u1FFF\u200C\u200D\u2070-\u218F\u2C00-\u2FEF\u3001-\uD7FF\uF900-\uFDCF\uFDF0-\uFFFD]|[\uD800-\uDB7F][\uDC00-\uDFFF])([\x2D\.0-:A-Z_a-z\xB7\xC0-\xD6\xD8-\xF6\xF8-\u037D\u037F-\u1FFF\u200C\u200D\u203F\u2040\u2070-\u218F\u2C00-\u2FEF\u3001-\uD7FF\uF900-\uFDCF\uFDF0-\uFFFD]|[\uD800-\uDB7F][\uDC00-\uDFFF])*$/; if (!str.match(regex)) { throw new Error("Invalid character in name"); } return str; }; XMLStringifier.prototype.textEscape = function(str) { var ampregex; if (this.options.noValidation) { return str; } ampregex = this.options.noDoubleEncoding ? /(?!&\S+;)&/g : /&/g; return str.replace(ampregex, '&').replace(//g, '>').replace(/\r/g, ' '); }; XMLStringifier.prototype.attEscape = function(str) { var ampregex; if (this.options.noValidation) { return str; } ampregex = this.options.noDoubleEncoding ? /(?!&\S+;)&/g : /&/g; return str.replace(ampregex, '&').replace(/= 0 && bi > 0) { 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; } /***/ }), /***/ 622: /***/ (function(module) { module.exports = require("path"); /***/ }), /***/ 625: /***/ (function(__unusedmodule, exports) { "use strict"; /*! * Copyright 2019, OpenTelemetry Authors * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * https://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ Object.defineProperty(exports, "__esModule", { value: true }); /** * NoopMeter is a noop implementation of the {@link Meter} interface. It reuses * constant NoopMetrics for all of its methods. */ class NoopMeter { constructor() { } /** * Returns constant noop measure. * @param name the name of the metric. * @param [options] the metric options. */ createMeasure(name, options) { return exports.NOOP_MEASURE_METRIC; } /** * Returns a constant noop counter. * @param name the name of the metric. * @param [options] the metric options. */ createCounter(name, options) { return exports.NOOP_COUNTER_METRIC; } /** * Returns constant noop observer. * @param name the name of the metric. * @param [options] the metric options. */ createObserver(name, options) { return exports.NOOP_OBSERVER_METRIC; } } exports.NoopMeter = NoopMeter; class NoopMetric { constructor(instrument) { this._instrument = instrument; } /** * Returns a Bound Instrument associated with specified Labels. * It is recommended to keep a reference to the Bound Instrument instead of * always calling this method for every operations. * @param labels key-values pairs that are associated with a specific metric * that you want to record. */ bind(labels) { return this._instrument; } /** * Removes the Binding from the metric, if it is present. * @param labels key-values pairs that are associated with a specific metric. */ unbind(labels) { return; } /** * Clears all timeseries from the Metric. */ clear() { return; } } exports.NoopMetric = NoopMetric; class NoopCounterMetric extends NoopMetric { add(value, labels) { this.bind(labels).add(value); } } exports.NoopCounterMetric = NoopCounterMetric; class NoopMeasureMetric extends NoopMetric { record(value, labels, correlationContext, spanContext) { if (typeof correlationContext === 'undefined') { this.bind(labels).record(value); } else if (typeof spanContext === 'undefined') { this.bind(labels).record(value, correlationContext); } else { this.bind(labels).record(value, correlationContext, spanContext); } } } exports.NoopMeasureMetric = NoopMeasureMetric; class NoopObserverMetric extends NoopMetric { setCallback(callback) { } } exports.NoopObserverMetric = NoopObserverMetric; class NoopBoundCounter { add(value) { return; } } exports.NoopBoundCounter = NoopBoundCounter; class NoopBoundMeasure { record(value, correlationContext, spanContext) { return; } } exports.NoopBoundMeasure = NoopBoundMeasure; class NoopBoundObserver { setCallback(callback) { } } exports.NoopBoundObserver = NoopBoundObserver; exports.NOOP_METER = new NoopMeter(); exports.NOOP_BOUND_COUNTER = new NoopBoundCounter(); exports.NOOP_COUNTER_METRIC = new NoopCounterMetric(exports.NOOP_BOUND_COUNTER); exports.NOOP_BOUND_MEASURE = new NoopBoundMeasure(); exports.NOOP_MEASURE_METRIC = new NoopMeasureMetric(exports.NOOP_BOUND_MEASURE); exports.NOOP_BOUND_OBSERVER = new NoopBoundObserver(); exports.NOOP_OBSERVER_METRIC = new NoopObserverMetric(exports.NOOP_BOUND_OBSERVER); //# sourceMappingURL=NoopMeter.js.map /***/ }), /***/ 631: /***/ (function(module) { module.exports = require("net"); /***/ }), /***/ 639: /***/ (function(module, __unusedexports, __webpack_require__) { // Generated by CoffeeScript 1.12.7 (function() { var XMLCharacterData, XMLNode, extend = function(child, parent) { for (var key in parent) { if (hasProp.call(parent, key)) child[key] = parent[key]; } function ctor() { this.constructor = child; } ctor.prototype = parent.prototype; child.prototype = new ctor(); child.__super__ = parent.prototype; return child; }, hasProp = {}.hasOwnProperty; XMLNode = __webpack_require__(855); module.exports = XMLCharacterData = (function(superClass) { extend(XMLCharacterData, superClass); function XMLCharacterData(parent) { XMLCharacterData.__super__.constructor.call(this, parent); this.value = ''; } Object.defineProperty(XMLCharacterData.prototype, 'data', { get: function() { return this.value; }, set: function(value) { return this.value = value || ''; } }); Object.defineProperty(XMLCharacterData.prototype, 'length', { get: function() { return this.value.length; } }); Object.defineProperty(XMLCharacterData.prototype, 'textContent', { get: function() { return this.value; }, set: function(value) { return this.value = value || ''; } }); XMLCharacterData.prototype.clone = function() { return Object.create(this); }; XMLCharacterData.prototype.substringData = function(offset, count) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLCharacterData.prototype.appendData = function(arg) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLCharacterData.prototype.insertData = function(offset, arg) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLCharacterData.prototype.deleteData = function(offset, count) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLCharacterData.prototype.replaceData = function(offset, count, arg) { throw new Error("This DOM method is not implemented." + this.debugInfo()); }; XMLCharacterData.prototype.isEqualNode = function(node) { if (!XMLCharacterData.__super__.isEqualNode.apply(this, arguments).isEqualNode(node)) { return false; } if (node.data !== this.data) { return false; } return true; }; return XMLCharacterData; })(XMLNode); }).call(this); /***/ }), /***/ 645: /***/ (function(__unusedmodule, exports, __webpack_require__) { ;(function (sax) { // wrapper for non-node envs sax.parser = function (strict, opt) { return new SAXParser(strict, opt) } sax.SAXParser = SAXParser sax.SAXStream = SAXStream sax.createStream = createStream // When we pass the MAX_BUFFER_LENGTH position, start checking for buffer overruns. // When we check, schedule the next check for MAX_BUFFER_LENGTH - (max(buffer lengths)), // since that's the earliest that a buffer overrun could occur. This way, checks are // as rare as required, but as often as necessary to ensure never crossing this bound. // Furthermore, buffers are only tested at most once per write(), so passing a very // large string into write() might have undesirable effects, but this is manageable by // the caller, so it is assumed to be safe. Thus, a call to write() may, in the extreme // edge case, result in creating at most one complete copy of the string passed in. // Set to Infinity to have unlimited buffers. sax.MAX_BUFFER_LENGTH = 64 * 1024 var buffers = [ 'comment', 'sgmlDecl', 'textNode', 'tagName', 'doctype', 'procInstName', 'procInstBody', 'entity', 'attribName', 'attribValue', 'cdata', 'script' ] sax.EVENTS = [ 'text', 'processinginstruction', 'sgmldeclaration', 'doctype', 'comment', 'opentagstart', 'attribute', 'opentag', 'closetag', 'opencdata', 'cdata', 'closecdata', 'error', 'end', 'ready', 'script', 'opennamespace', 'closenamespace' ] function SAXParser (strict, opt) { if (!(this instanceof SAXParser)) { return new SAXParser(strict, opt) } var parser = this clearBuffers(parser) parser.q = parser.c = '' parser.bufferCheckPosition = sax.MAX_BUFFER_LENGTH parser.opt = opt || {} parser.opt.lowercase = parser.opt.lowercase || parser.opt.lowercasetags parser.looseCase = parser.opt.lowercase ? 'toLowerCase' : 'toUpperCase' parser.tags = [] parser.closed = parser.closedRoot = parser.sawRoot = false parser.tag = parser.error = null parser.strict = !!strict parser.noscript = !!(strict || parser.opt.noscript) parser.state = S.BEGIN parser.strictEntities = parser.opt.strictEntities parser.ENTITIES = parser.strictEntities ? Object.create(sax.XML_ENTITIES) : Object.create(sax.ENTITIES) parser.attribList = [] // namespaces form a prototype chain. // it always points at the current tag, // which protos to its parent tag. if (parser.opt.xmlns) { parser.ns = Object.create(rootNS) } // mostly just for error reporting parser.trackPosition = parser.opt.position !== false if (parser.trackPosition) { parser.position = parser.line = parser.column = 0 } emit(parser, 'onready') } if (!Object.create) { Object.create = function (o) { function F () {} F.prototype = o var newf = new F() return newf } } if (!Object.keys) { Object.keys = function (o) { var a = [] for (var i in o) if (o.hasOwnProperty(i)) a.push(i) return a } } function checkBufferLength (parser) { var maxAllowed = Math.max(sax.MAX_BUFFER_LENGTH, 10) var maxActual = 0 for (var i = 0, l = buffers.length; i < l; i++) { var len = parser[buffers[i]].length if (len > maxAllowed) { // Text/cdata nodes can get big, and since they're buffered, // we can get here under normal conditions. // Avoid issues by emitting the text node now, // so at least it won't get any bigger. switch (buffers[i]) { case 'textNode': closeText(parser) break case 'cdata': emitNode(parser, 'oncdata', parser.cdata) parser.cdata = '' break case 'script': emitNode(parser, 'onscript', parser.script) parser.script = '' break default: error(parser, 'Max buffer length exceeded: ' + buffers[i]) } } maxActual = Math.max(maxActual, len) } // schedule the next check for the earliest possible buffer overrun. var m = sax.MAX_BUFFER_LENGTH - maxActual parser.bufferCheckPosition = m + parser.position } function clearBuffers (parser) { for (var i = 0, l = buffers.length; i < l; i++) { parser[buffers[i]] = '' } } function flushBuffers (parser) { closeText(parser) if (parser.cdata !== '') { emitNode(parser, 'oncdata', parser.cdata) parser.cdata = '' } if (parser.script !== '') { emitNode(parser, 'onscript', parser.script) parser.script = '' } } SAXParser.prototype = { end: function () { end(this) }, write: write, resume: function () { this.error = null; return this }, close: function () { return this.write(null) }, flush: function () { flushBuffers(this) } } var Stream try { Stream = __webpack_require__(794).Stream } catch (ex) { Stream = function () {} } var streamWraps = sax.EVENTS.filter(function (ev) { return ev !== 'error' && ev !== 'end' }) function createStream (strict, opt) { return new SAXStream(strict, opt) } function SAXStream (strict, opt) { if (!(this instanceof SAXStream)) { return new SAXStream(strict, opt) } Stream.apply(this) this._parser = new SAXParser(strict, opt) this.writable = true this.readable = true var me = this this._parser.onend = function () { me.emit('end') } this._parser.onerror = function (er) { me.emit('error', er) // if didn't throw, then means error was handled. // go ahead and clear error, so we can write again. me._parser.error = null } this._decoder = null streamWraps.forEach(function (ev) { Object.defineProperty(me, 'on' + ev, { get: function () { return me._parser['on' + ev] }, set: function (h) { if (!h) { me.removeAllListeners(ev) me._parser['on' + ev] = h return h } me.on(ev, h) }, enumerable: true, configurable: false }) }) } SAXStream.prototype = Object.create(Stream.prototype, { constructor: { value: SAXStream } }) SAXStream.prototype.write = function (data) { if (typeof Buffer === 'function' && typeof Buffer.isBuffer === 'function' && Buffer.isBuffer(data)) { if (!this._decoder) { var SD = __webpack_require__(304).StringDecoder this._decoder = new SD('utf8') } data = this._decoder.write(data) } this._parser.write(data.toString()) this.emit('data', data) return true } SAXStream.prototype.end = function (chunk) { if (chunk && chunk.length) { this.write(chunk) } this._parser.end() return true } SAXStream.prototype.on = function (ev, handler) { var me = this if (!me._parser['on' + ev] && streamWraps.indexOf(ev) !== -1) { me._parser['on' + ev] = function () { var args = arguments.length === 1 ? [arguments[0]] : Array.apply(null, arguments) args.splice(0, 0, ev) me.emit.apply(me, args) } } return Stream.prototype.on.call(me, ev, handler) } // this really needs to be replaced with character classes. // XML allows all manner of ridiculous numbers and digits. var CDATA = '[CDATA[' var DOCTYPE = 'DOCTYPE' var XML_NAMESPACE = 'http://www.w3.org/XML/1998/namespace' var XMLNS_NAMESPACE = 'http://www.w3.org/2000/xmlns/' var rootNS = { xml: XML_NAMESPACE, xmlns: XMLNS_NAMESPACE } // http://www.w3.org/TR/REC-xml/#NT-NameStartChar // This implementation works on strings, a single character at a time // as such, it cannot ever support astral-plane characters (10000-EFFFF) // without a significant breaking change to either this parser, or the // JavaScript language. Implementation of an emoji-capable xml parser // is left as an exercise for the reader. var nameStart = /[:_A-Za-z\u00C0-\u00D6\u00D8-\u00F6\u00F8-\u02FF\u0370-\u037D\u037F-\u1FFF\u200C-\u200D\u2070-\u218F\u2C00-\u2FEF\u3001-\uD7FF\uF900-\uFDCF\uFDF0-\uFFFD]/ var nameBody = /[:_A-Za-z\u00C0-\u00D6\u00D8-\u00F6\u00F8-\u02FF\u0370-\u037D\u037F-\u1FFF\u200C-\u200D\u2070-\u218F\u2C00-\u2FEF\u3001-\uD7FF\uF900-\uFDCF\uFDF0-\uFFFD\u00B7\u0300-\u036F\u203F-\u2040.\d-]/ var entityStart = /[#:_A-Za-z\u00C0-\u00D6\u00D8-\u00F6\u00F8-\u02FF\u0370-\u037D\u037F-\u1FFF\u200C-\u200D\u2070-\u218F\u2C00-\u2FEF\u3001-\uD7FF\uF900-\uFDCF\uFDF0-\uFFFD]/ var entityBody = /[#:_A-Za-z\u00C0-\u00D6\u00D8-\u00F6\u00F8-\u02FF\u0370-\u037D\u037F-\u1FFF\u200C-\u200D\u2070-\u218F\u2C00-\u2FEF\u3001-\uD7FF\uF900-\uFDCF\uFDF0-\uFFFD\u00B7\u0300-\u036F\u203F-\u2040.\d-]/ function isWhitespace (c) { return c === ' ' || c === '\n' || c === '\r' || c === '\t' } function isQuote (c) { return c === '"' || c === '\'' } function isAttribEnd (c) { return c === '>' || isWhitespace(c) } function isMatch (regex, c) { return regex.test(c) } function notMatch (regex, c) { return !isMatch(regex, c) } var S = 0 sax.STATE = { BEGIN: S++, // leading byte order mark or whitespace BEGIN_WHITESPACE: S++, // leading whitespace TEXT: S++, // general stuff TEXT_ENTITY: S++, // & and such. OPEN_WAKA: S++, // < SGML_DECL: S++, // SCRIPT: S++, //