(function webpackUniversalModuleDefinition(root, factory) { if(typeof exports === 'object' && typeof module === 'object') module.exports = factory(require("cc")); else if(typeof define === 'function' && define.amd) define(["cc"], factory); else { var a = typeof exports === 'object' ? factory(require("cc")) : factory(root["cc"]); for(var i in a) (typeof exports === 'object' ? exports : root)[i] = a[i]; } })(global, (__WEBPACK_EXTERNAL_MODULE_cc__) => { return /******/ (() => { // webpackBootstrap /******/ var __webpack_modules__ = ({ /***/ "./node_modules/ansi-styles/index.js": /*!*******************************************!*\ !*** ./node_modules/ansi-styles/index.js ***! \*******************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; /* module decorator */ module = __webpack_require__.nmd(module); const wrapAnsi16 = (fn, offset) => (...args) => { const code = fn(...args); return `\u001B[${code + offset}m`; }; const wrapAnsi256 = (fn, offset) => (...args) => { const code = fn(...args); return `\u001B[${38 + offset};5;${code}m`; }; const wrapAnsi16m = (fn, offset) => (...args) => { const rgb = fn(...args); return `\u001B[${38 + offset};2;${rgb[0]};${rgb[1]};${rgb[2]}m`; }; const ansi2ansi = n => n; const rgb2rgb = (r, g, b) => [r, g, b]; const setLazyProperty = (object, property, get) => { Object.defineProperty(object, property, { get: () => { const value = get(); Object.defineProperty(object, property, { value, enumerable: true, configurable: true }); return value; }, enumerable: true, configurable: true }); }; /** @type {typeof import('color-convert')} */ let colorConvert; const makeDynamicStyles = (wrap, targetSpace, identity, isBackground) => { if (colorConvert === undefined) { colorConvert = __webpack_require__(/*! color-convert */ "./node_modules/color-convert/index.js"); } const offset = isBackground ? 10 : 0; const styles = {}; for (const [sourceSpace, suite] of Object.entries(colorConvert)) { const name = sourceSpace === 'ansi16' ? 'ansi' : sourceSpace; if (sourceSpace === targetSpace) { styles[name] = wrap(identity, offset); } else if (typeof suite === 'object') { styles[name] = wrap(suite[targetSpace], offset); } } return styles; }; function assembleStyles() { const codes = new Map(); const styles = { modifier: { reset: [0, 0], // 21 isn't widely supported and 22 does the same thing bold: [1, 22], dim: [2, 22], italic: [3, 23], underline: [4, 24], inverse: [7, 27], hidden: [8, 28], strikethrough: [9, 29] }, color: { black: [30, 39], red: [31, 39], green: [32, 39], yellow: [33, 39], blue: [34, 39], magenta: [35, 39], cyan: [36, 39], white: [37, 39], // Bright color blackBright: [90, 39], redBright: [91, 39], greenBright: [92, 39], yellowBright: [93, 39], blueBright: [94, 39], magentaBright: [95, 39], cyanBright: [96, 39], whiteBright: [97, 39] }, bgColor: { bgBlack: [40, 49], bgRed: [41, 49], bgGreen: [42, 49], bgYellow: [43, 49], bgBlue: [44, 49], bgMagenta: [45, 49], bgCyan: [46, 49], bgWhite: [47, 49], // Bright color bgBlackBright: [100, 49], bgRedBright: [101, 49], bgGreenBright: [102, 49], bgYellowBright: [103, 49], bgBlueBright: [104, 49], bgMagentaBright: [105, 49], bgCyanBright: [106, 49], bgWhiteBright: [107, 49] } }; // Alias bright black as gray (and grey) styles.color.gray = styles.color.blackBright; styles.bgColor.bgGray = styles.bgColor.bgBlackBright; styles.color.grey = styles.color.blackBright; styles.bgColor.bgGrey = styles.bgColor.bgBlackBright; for (const [groupName, group] of Object.entries(styles)) { for (const [styleName, style] of Object.entries(group)) { styles[styleName] = { open: `\u001B[${style[0]}m`, close: `\u001B[${style[1]}m` }; group[styleName] = styles[styleName]; codes.set(style[0], style[1]); } Object.defineProperty(styles, groupName, { value: group, enumerable: false }); } Object.defineProperty(styles, 'codes', { value: codes, enumerable: false }); styles.color.close = '\u001B[39m'; styles.bgColor.close = '\u001B[49m'; setLazyProperty(styles.color, 'ansi', () => makeDynamicStyles(wrapAnsi16, 'ansi16', ansi2ansi, false)); setLazyProperty(styles.color, 'ansi256', () => makeDynamicStyles(wrapAnsi256, 'ansi256', ansi2ansi, false)); setLazyProperty(styles.color, 'ansi16m', () => makeDynamicStyles(wrapAnsi16m, 'rgb', rgb2rgb, false)); setLazyProperty(styles.bgColor, 'ansi', () => makeDynamicStyles(wrapAnsi16, 'ansi16', ansi2ansi, true)); setLazyProperty(styles.bgColor, 'ansi256', () => makeDynamicStyles(wrapAnsi256, 'ansi256', ansi2ansi, true)); setLazyProperty(styles.bgColor, 'ansi16m', () => makeDynamicStyles(wrapAnsi16m, 'rgb', rgb2rgb, true)); return styles; } // Make the export immutable Object.defineProperty(module, 'exports', { enumerable: true, get: assembleStyles }); /***/ }), /***/ "./node_modules/asynckit/index.js": /*!****************************************!*\ !*** ./node_modules/asynckit/index.js ***! \****************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { module.exports = { parallel : __webpack_require__(/*! ./parallel.js */ "./node_modules/asynckit/parallel.js"), serial : __webpack_require__(/*! ./serial.js */ "./node_modules/asynckit/serial.js"), serialOrdered : __webpack_require__(/*! ./serialOrdered.js */ "./node_modules/asynckit/serialOrdered.js") }; /***/ }), /***/ "./node_modules/asynckit/lib/abort.js": /*!********************************************!*\ !*** ./node_modules/asynckit/lib/abort.js ***! \********************************************/ /***/ ((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](); } } /***/ }), /***/ "./node_modules/asynckit/lib/async.js": /*!********************************************!*\ !*** ./node_modules/asynckit/lib/async.js ***! \********************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var defer = __webpack_require__(/*! ./defer.js */ "./node_modules/asynckit/lib/defer.js"); // API module.exports = async; /** * Runs provided callback asynchronously * even if callback itself is not * * @param {function} callback - callback to invoke * @returns {function} - augmented callback */ function async(callback) { var isAsync = false; // check if async happened defer(function() { isAsync = true; }); return function async_callback(err, result) { if (isAsync) { callback(err, result); } else { defer(function nextTick_callback() { callback(err, result); }); } }; } /***/ }), /***/ "./node_modules/asynckit/lib/defer.js": /*!********************************************!*\ !*** ./node_modules/asynckit/lib/defer.js ***! \********************************************/ /***/ ((module) => { module.exports = defer; /** * Runs provided function on next iteration of the event loop * * @param {function} fn - function to run */ function defer(fn) { var nextTick = typeof setImmediate == 'function' ? setImmediate : ( typeof process == 'object' && typeof process.nextTick == 'function' ? process.nextTick : null ); if (nextTick) { nextTick(fn); } else { setTimeout(fn, 0); } } /***/ }), /***/ "./node_modules/asynckit/lib/iterate.js": /*!**********************************************!*\ !*** ./node_modules/asynckit/lib/iterate.js ***! \**********************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var async = __webpack_require__(/*! ./async.js */ "./node_modules/asynckit/lib/async.js") , abort = __webpack_require__(/*! ./abort.js */ "./node_modules/asynckit/lib/abort.js") ; // 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; } /***/ }), /***/ "./node_modules/asynckit/lib/state.js": /*!********************************************!*\ !*** ./node_modules/asynckit/lib/state.js ***! \********************************************/ /***/ ((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; } /***/ }), /***/ "./node_modules/asynckit/lib/terminator.js": /*!*************************************************!*\ !*** ./node_modules/asynckit/lib/terminator.js ***! \*************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var abort = __webpack_require__(/*! ./abort.js */ "./node_modules/asynckit/lib/abort.js") , async = __webpack_require__(/*! ./async.js */ "./node_modules/asynckit/lib/async.js") ; // API module.exports = terminator; /** * Terminates jobs in the attached state context * * @this AsyncKitState# * @param {function} callback - final callback to invoke after termination */ function terminator(callback) { if (!Object.keys(this.jobs).length) { return; } // fast forward iteration index this.index = this.size; // abort jobs abort(this); // send back results we have so far async(callback)(null, this.results); } /***/ }), /***/ "./node_modules/asynckit/parallel.js": /*!*******************************************!*\ !*** ./node_modules/asynckit/parallel.js ***! \*******************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var iterate = __webpack_require__(/*! ./lib/iterate.js */ "./node_modules/asynckit/lib/iterate.js") , initState = __webpack_require__(/*! ./lib/state.js */ "./node_modules/asynckit/lib/state.js") , terminator = __webpack_require__(/*! ./lib/terminator.js */ "./node_modules/asynckit/lib/terminator.js") ; // 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); } /***/ }), /***/ "./node_modules/asynckit/serial.js": /*!*****************************************!*\ !*** ./node_modules/asynckit/serial.js ***! \*****************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var serialOrdered = __webpack_require__(/*! ./serialOrdered.js */ "./node_modules/asynckit/serialOrdered.js"); // 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); } /***/ }), /***/ "./node_modules/asynckit/serialOrdered.js": /*!************************************************!*\ !*** ./node_modules/asynckit/serialOrdered.js ***! \************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var iterate = __webpack_require__(/*! ./lib/iterate.js */ "./node_modules/asynckit/lib/iterate.js") , initState = __webpack_require__(/*! ./lib/state.js */ "./node_modules/asynckit/lib/state.js") , terminator = __webpack_require__(/*! ./lib/terminator.js */ "./node_modules/asynckit/lib/terminator.js") ; // Public API module.exports = serialOrdered; // sorting helpers module.exports.ascending = ascending; module.exports.descending = descending; /** * Runs iterator over provided sorted array elements in series * * @param {array|object} list - array or object (named list) to iterate over * @param {function} iterator - iterator to run * @param {function} sortMethod - custom sort function * @param {function} callback - invoked when all elements processed * @returns {function} - jobs terminator */ function serialOrdered(list, iterator, sortMethod, callback) { var state = initState(list, sortMethod); iterate(list, iterator, state, function iteratorHandler(error, result) { if (error) { callback(error, result); return; } state.index++; // are we there yet? if (state.index < (state['keyedList'] || list).length) { iterate(list, iterator, state, iteratorHandler); return; } // done here callback(null, state.results); }); return terminator.bind(state, callback); } /* * -- Sort methods */ /** * sort helper to sort array elements in ascending order * * @param {mixed} a - an item to compare * @param {mixed} b - an item to compare * @returns {number} - comparison result */ function ascending(a, b) { return a < b ? -1 : a > b ? 1 : 0; } /** * sort helper to sort array elements in descending order * * @param {mixed} a - an item to compare * @param {mixed} b - an item to compare * @returns {number} - comparison result */ function descending(a, b) { return -1 * ascending(a, b); } /***/ }), /***/ "./node_modules/axios/index.js": /*!*************************************!*\ !*** ./node_modules/axios/index.js ***! \*************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { module.exports = __webpack_require__(/*! ./lib/axios */ "./node_modules/axios/lib/axios.js"); /***/ }), /***/ "./node_modules/axios/lib/adapters/http.js": /*!*************************************************!*\ !*** ./node_modules/axios/lib/adapters/http.js ***! \*************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ./../utils */ "./node_modules/axios/lib/utils.js"); var settle = __webpack_require__(/*! ./../core/settle */ "./node_modules/axios/lib/core/settle.js"); var buildFullPath = __webpack_require__(/*! ../core/buildFullPath */ "./node_modules/axios/lib/core/buildFullPath.js"); var buildURL = __webpack_require__(/*! ./../helpers/buildURL */ "./node_modules/axios/lib/helpers/buildURL.js"); var http = __webpack_require__(/*! http */ "http"); var https = __webpack_require__(/*! https */ "https"); var httpFollow = (__webpack_require__(/*! follow-redirects */ "./node_modules/follow-redirects/index.js").http); var httpsFollow = (__webpack_require__(/*! follow-redirects */ "./node_modules/follow-redirects/index.js").https); var url = __webpack_require__(/*! url */ "url"); var zlib = __webpack_require__(/*! zlib */ "zlib"); var VERSION = (__webpack_require__(/*! ./../env/data */ "./node_modules/axios/lib/env/data.js").version); var transitionalDefaults = __webpack_require__(/*! ../defaults/transitional */ "./node_modules/axios/lib/defaults/transitional.js"); var AxiosError = __webpack_require__(/*! ../core/AxiosError */ "./node_modules/axios/lib/core/AxiosError.js"); var CanceledError = __webpack_require__(/*! ../cancel/CanceledError */ "./node_modules/axios/lib/cancel/CanceledError.js"); var isHttps = /https:?/; var supportedProtocols = [ 'http:', 'https:', 'file:' ]; /** * * @param {http.ClientRequestArgs} options * @param {AxiosProxyConfig} proxy * @param {string} location */ function setProxy(options, proxy, location) { options.hostname = proxy.host; options.host = proxy.host; options.port = proxy.port; options.path = location; // Basic proxy authorization if (proxy.auth) { var base64 = Buffer.from(proxy.auth.username + ':' + proxy.auth.password, 'utf8').toString('base64'); options.headers['Proxy-Authorization'] = 'Basic ' + base64; } // If a proxy is used, any redirects must also pass through the proxy options.beforeRedirect = function beforeRedirect(redirection) { redirection.headers.host = redirection.host; setProxy(redirection, proxy, redirection.href); }; } /*eslint consistent-return:0*/ module.exports = function httpAdapter(config) { return new Promise(function dispatchHttpRequest(resolvePromise, rejectPromise) { var onCanceled; function done() { if (config.cancelToken) { config.cancelToken.unsubscribe(onCanceled); } if (config.signal) { config.signal.removeEventListener('abort', onCanceled); } } var resolve = function resolve(value) { done(); resolvePromise(value); }; var rejected = false; var reject = function reject(value) { done(); rejected = true; rejectPromise(value); }; var data = config.data; var headers = config.headers; var headerNames = {}; Object.keys(headers).forEach(function storeLowerName(name) { headerNames[name.toLowerCase()] = name; }); // Set User-Agent (required by some servers) // See https://github.com/axios/axios/issues/69 if ('user-agent' in headerNames) { // User-Agent is specified; handle case where no UA header is desired if (!headers[headerNames['user-agent']]) { delete headers[headerNames['user-agent']]; } // Otherwise, use specified value } else { // Only set header if it hasn't been set in config headers['User-Agent'] = 'axios/' + VERSION; } // support for https://www.npmjs.com/package/form-data api if (utils.isFormData(data) && utils.isFunction(data.getHeaders)) { Object.assign(headers, data.getHeaders()); } else if (data && !utils.isStream(data)) { if (Buffer.isBuffer(data)) { // Nothing to do... } else if (utils.isArrayBuffer(data)) { data = Buffer.from(new Uint8Array(data)); } else if (utils.isString(data)) { data = Buffer.from(data, 'utf-8'); } else { return reject(new AxiosError( 'Data after transformation must be a string, an ArrayBuffer, a Buffer, or a Stream', AxiosError.ERR_BAD_REQUEST, config )); } if (config.maxBodyLength > -1 && data.length > config.maxBodyLength) { return reject(new AxiosError( 'Request body larger than maxBodyLength limit', AxiosError.ERR_BAD_REQUEST, config )); } // Add Content-Length header if data exists if (!headerNames['content-length']) { headers['Content-Length'] = data.length; } } // HTTP basic authentication var auth = undefined; if (config.auth) { var username = config.auth.username || ''; var password = config.auth.password || ''; auth = username + ':' + password; } // Parse url var fullPath = buildFullPath(config.baseURL, config.url); var parsed = url.parse(fullPath); var protocol = parsed.protocol || supportedProtocols[0]; if (supportedProtocols.indexOf(protocol) === -1) { return reject(new AxiosError( 'Unsupported protocol ' + protocol, AxiosError.ERR_BAD_REQUEST, config )); } if (!auth && parsed.auth) { var urlAuth = parsed.auth.split(':'); var urlUsername = urlAuth[0] || ''; var urlPassword = urlAuth[1] || ''; auth = urlUsername + ':' + urlPassword; } if (auth && headerNames.authorization) { delete headers[headerNames.authorization]; } var isHttpsRequest = isHttps.test(protocol); var agent = isHttpsRequest ? config.httpsAgent : config.httpAgent; try { buildURL(parsed.path, config.params, config.paramsSerializer).replace(/^\?/, ''); } catch (err) { var customErr = new Error(err.message); customErr.config = config; customErr.url = config.url; customErr.exists = true; reject(customErr); } var options = { path: buildURL(parsed.path, config.params, config.paramsSerializer).replace(/^\?/, ''), method: config.method.toUpperCase(), headers: headers, agent: agent, agents: { http: config.httpAgent, https: config.httpsAgent }, auth: auth }; if (config.socketPath) { options.socketPath = config.socketPath; } else { options.hostname = parsed.hostname; options.port = parsed.port; } var proxy = config.proxy; if (!proxy && proxy !== false) { var proxyEnv = protocol.slice(0, -1) + '_proxy'; var proxyUrl = process.env[proxyEnv] || process.env[proxyEnv.toUpperCase()]; if (proxyUrl) { var parsedProxyUrl = url.parse(proxyUrl); var noProxyEnv = process.env.no_proxy || process.env.NO_PROXY; var shouldProxy = true; if (noProxyEnv) { var noProxy = noProxyEnv.split(',').map(function trim(s) { return s.trim(); }); shouldProxy = !noProxy.some(function proxyMatch(proxyElement) { if (!proxyElement) { return false; } if (proxyElement === '*') { return true; } if (proxyElement[0] === '.' && parsed.hostname.substr(parsed.hostname.length - proxyElement.length) === proxyElement) { return true; } return parsed.hostname === proxyElement; }); } if (shouldProxy) { proxy = { host: parsedProxyUrl.hostname, port: parsedProxyUrl.port, protocol: parsedProxyUrl.protocol }; if (parsedProxyUrl.auth) { var proxyUrlAuth = parsedProxyUrl.auth.split(':'); proxy.auth = { username: proxyUrlAuth[0], password: proxyUrlAuth[1] }; } } } } if (proxy) { options.headers.host = parsed.hostname + (parsed.port ? ':' + parsed.port : ''); setProxy(options, proxy, protocol + '//' + parsed.hostname + (parsed.port ? ':' + parsed.port : '') + options.path); } var transport; var isHttpsProxy = isHttpsRequest && (proxy ? isHttps.test(proxy.protocol) : true); if (config.transport) { transport = config.transport; } else if (config.maxRedirects === 0) { transport = isHttpsProxy ? https : http; } else { if (config.maxRedirects) { options.maxRedirects = config.maxRedirects; } if (config.beforeRedirect) { options.beforeRedirect = config.beforeRedirect; } transport = isHttpsProxy ? httpsFollow : httpFollow; } if (config.maxBodyLength > -1) { options.maxBodyLength = config.maxBodyLength; } if (config.insecureHTTPParser) { options.insecureHTTPParser = config.insecureHTTPParser; } // Create the request var req = transport.request(options, function handleResponse(res) { if (req.aborted) return; // uncompress the response body transparently if required var stream = res; // return the last request in case of redirects var lastRequest = res.req || req; // if no content, is HEAD request or decompress disabled we should not decompress if (res.statusCode !== 204 && lastRequest.method !== 'HEAD' && config.decompress !== false) { switch (res.headers['content-encoding']) { /*eslint default-case:0*/ case 'gzip': case 'compress': case 'deflate': // add the unzipper to the body stream processing pipeline stream = stream.pipe(zlib.createUnzip()); // remove the content-encoding in order to not confuse downstream operations delete res.headers['content-encoding']; break; } } var response = { status: res.statusCode, statusText: res.statusMessage, headers: res.headers, config: config, request: lastRequest }; if (config.responseType === 'stream') { response.data = stream; settle(resolve, reject, response); } else { var responseBuffer = []; var totalResponseBytes = 0; stream.on('data', function handleStreamData(chunk) { responseBuffer.push(chunk); totalResponseBytes += chunk.length; // make sure the content length is not over the maxContentLength if specified if (config.maxContentLength > -1 && totalResponseBytes > config.maxContentLength) { // stream.destoy() emit aborted event before calling reject() on Node.js v16 rejected = true; stream.destroy(); reject(new AxiosError('maxContentLength size of ' + config.maxContentLength + ' exceeded', AxiosError.ERR_BAD_RESPONSE, config, lastRequest)); } }); stream.on('aborted', function handlerStreamAborted() { if (rejected) { return; } stream.destroy(); reject(new AxiosError( 'maxContentLength size of ' + config.maxContentLength + ' exceeded', AxiosError.ERR_BAD_RESPONSE, config, lastRequest )); }); stream.on('error', function handleStreamError(err) { if (req.aborted) return; reject(AxiosError.from(err, null, config, lastRequest)); }); stream.on('end', function handleStreamEnd() { try { var responseData = responseBuffer.length === 1 ? responseBuffer[0] : Buffer.concat(responseBuffer); if (config.responseType !== 'arraybuffer') { responseData = responseData.toString(config.responseEncoding); if (!config.responseEncoding || config.responseEncoding === 'utf8') { responseData = utils.stripBOM(responseData); } } response.data = responseData; } catch (err) { reject(AxiosError.from(err, null, config, response.request, response)); } settle(resolve, reject, response); }); } }); // Handle errors req.on('error', function handleRequestError(err) { // @todo remove // if (req.aborted && err.code !== AxiosError.ERR_FR_TOO_MANY_REDIRECTS) return; reject(AxiosError.from(err, null, config, req)); }); // set tcp keep alive to prevent drop connection by peer req.on('socket', function handleRequestSocket(socket) { // default interval of sending ack packet is 1 minute socket.setKeepAlive(true, 1000 * 60); }); // Handle request timeout if (config.timeout) { // This is forcing a int timeout to avoid problems if the `req` interface doesn't handle other types. var timeout = parseInt(config.timeout, 10); if (isNaN(timeout)) { reject(new AxiosError( 'error trying to parse `config.timeout` to int', AxiosError.ERR_BAD_OPTION_VALUE, config, req )); return; } // Sometime, the response will be very slow, and does not respond, the connect event will be block by event loop system. // And timer callback will be fired, and abort() will be invoked before connection, then get "socket hang up" and code ECONNRESET. // At this time, if we have a large number of request, nodejs will hang up some socket on background. and the number will up and up. // And then these socket which be hang up will devoring CPU little by little. // ClientRequest.setTimeout will be fired on the specify milliseconds, and can make sure that abort() will be fired after connect. req.setTimeout(timeout, function handleRequestTimeout() { req.abort(); var transitional = config.transitional || transitionalDefaults; reject(new AxiosError( 'timeout of ' + timeout + 'ms exceeded', transitional.clarifyTimeoutError ? AxiosError.ETIMEDOUT : AxiosError.ECONNABORTED, config, req )); }); } if (config.cancelToken || config.signal) { // Handle cancellation // eslint-disable-next-line func-names onCanceled = function(cancel) { if (req.aborted) return; req.abort(); reject(!cancel || (cancel && cancel.type) ? new CanceledError() : cancel); }; config.cancelToken && config.cancelToken.subscribe(onCanceled); if (config.signal) { config.signal.aborted ? onCanceled() : config.signal.addEventListener('abort', onCanceled); } } // Send the request if (utils.isStream(data)) { data.on('error', function handleStreamError(err) { reject(AxiosError.from(err, config, null, req)); }).pipe(req); } else { req.end(data); } }); }; /***/ }), /***/ "./node_modules/axios/lib/adapters/xhr.js": /*!************************************************!*\ !*** ./node_modules/axios/lib/adapters/xhr.js ***! \************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ./../utils */ "./node_modules/axios/lib/utils.js"); var settle = __webpack_require__(/*! ./../core/settle */ "./node_modules/axios/lib/core/settle.js"); var cookies = __webpack_require__(/*! ./../helpers/cookies */ "./node_modules/axios/lib/helpers/cookies.js"); var buildURL = __webpack_require__(/*! ./../helpers/buildURL */ "./node_modules/axios/lib/helpers/buildURL.js"); var buildFullPath = __webpack_require__(/*! ../core/buildFullPath */ "./node_modules/axios/lib/core/buildFullPath.js"); var parseHeaders = __webpack_require__(/*! ./../helpers/parseHeaders */ "./node_modules/axios/lib/helpers/parseHeaders.js"); var isURLSameOrigin = __webpack_require__(/*! ./../helpers/isURLSameOrigin */ "./node_modules/axios/lib/helpers/isURLSameOrigin.js"); var transitionalDefaults = __webpack_require__(/*! ../defaults/transitional */ "./node_modules/axios/lib/defaults/transitional.js"); var AxiosError = __webpack_require__(/*! ../core/AxiosError */ "./node_modules/axios/lib/core/AxiosError.js"); var CanceledError = __webpack_require__(/*! ../cancel/CanceledError */ "./node_modules/axios/lib/cancel/CanceledError.js"); var parseProtocol = __webpack_require__(/*! ../helpers/parseProtocol */ "./node_modules/axios/lib/helpers/parseProtocol.js"); module.exports = function xhrAdapter(config) { return new Promise(function dispatchXhrRequest(resolve, reject) { var requestData = config.data; var requestHeaders = config.headers; var responseType = config.responseType; var onCanceled; function done() { if (config.cancelToken) { config.cancelToken.unsubscribe(onCanceled); } if (config.signal) { config.signal.removeEventListener('abort', onCanceled); } } if (utils.isFormData(requestData) && utils.isStandardBrowserEnv()) { delete requestHeaders['Content-Type']; // Let the browser set it } var request = new XMLHttpRequest(); // HTTP basic authentication if (config.auth) { var username = config.auth.username || ''; var password = config.auth.password ? unescape(encodeURIComponent(config.auth.password)) : ''; requestHeaders.Authorization = 'Basic ' + btoa(username + ':' + password); } var fullPath = buildFullPath(config.baseURL, config.url); request.open(config.method.toUpperCase(), buildURL(fullPath, config.params, config.paramsSerializer), true); // Set the request timeout in MS request.timeout = config.timeout; function onloadend() { if (!request) { return; } // Prepare the response var responseHeaders = 'getAllResponseHeaders' in request ? parseHeaders(request.getAllResponseHeaders()) : null; var responseData = !responseType || responseType === 'text' || responseType === 'json' ? request.responseText : request.response; var response = { data: responseData, status: request.status, statusText: request.statusText, headers: responseHeaders, config: config, request: request }; settle(function _resolve(value) { resolve(value); done(); }, function _reject(err) { reject(err); done(); }, response); // Clean up request request = null; } if ('onloadend' in request) { // Use onloadend if available request.onloadend = onloadend; } else { // Listen for ready state to emulate onloadend request.onreadystatechange = function handleLoad() { if (!request || request.readyState !== 4) { return; } // The request errored out and we didn't get a response, this will be // handled by onerror instead // With one exception: request that using file: protocol, most browsers // will return status as 0 even though it's a successful request if (request.status === 0 && !(request.responseURL && request.responseURL.indexOf('file:') === 0)) { return; } // readystate handler is calling before onerror or ontimeout handlers, // so we should call onloadend on the next 'tick' setTimeout(onloadend); }; } // Handle browser request cancellation (as opposed to a manual cancellation) request.onabort = function handleAbort() { if (!request) { return; } reject(new AxiosError('Request aborted', AxiosError.ECONNABORTED, config, request)); // Clean up request request = null; }; // Handle low level network errors request.onerror = function handleError() { // Real errors are hidden from us by the browser // onerror should only fire if it's a network error reject(new AxiosError('Network Error', AxiosError.ERR_NETWORK, config, request, request)); // Clean up request request = null; }; // Handle timeout request.ontimeout = function handleTimeout() { var timeoutErrorMessage = config.timeout ? 'timeout of ' + config.timeout + 'ms exceeded' : 'timeout exceeded'; var transitional = config.transitional || transitionalDefaults; if (config.timeoutErrorMessage) { timeoutErrorMessage = config.timeoutErrorMessage; } reject(new AxiosError( timeoutErrorMessage, transitional.clarifyTimeoutError ? AxiosError.ETIMEDOUT : AxiosError.ECONNABORTED, config, request)); // Clean up request request = null; }; // Add xsrf header // This is only done if running in a standard browser environment. // Specifically not if we're in a web worker, or react-native. if (utils.isStandardBrowserEnv()) { // Add xsrf header var xsrfValue = (config.withCredentials || isURLSameOrigin(fullPath)) && config.xsrfCookieName ? cookies.read(config.xsrfCookieName) : undefined; if (xsrfValue) { requestHeaders[config.xsrfHeaderName] = xsrfValue; } } // Add headers to the request if ('setRequestHeader' in request) { utils.forEach(requestHeaders, function setRequestHeader(val, key) { if (typeof requestData === 'undefined' && key.toLowerCase() === 'content-type') { // Remove Content-Type if data is undefined delete requestHeaders[key]; } else { // Otherwise add header to the request request.setRequestHeader(key, val); } }); } // Add withCredentials to request if needed if (!utils.isUndefined(config.withCredentials)) { request.withCredentials = !!config.withCredentials; } // Add responseType to request if needed if (responseType && responseType !== 'json') { request.responseType = config.responseType; } // Handle progress if needed if (typeof config.onDownloadProgress === 'function') { request.addEventListener('progress', config.onDownloadProgress); } // Not all browsers support upload events if (typeof config.onUploadProgress === 'function' && request.upload) { request.upload.addEventListener('progress', config.onUploadProgress); } if (config.cancelToken || config.signal) { // Handle cancellation // eslint-disable-next-line func-names onCanceled = function(cancel) { if (!request) { return; } reject(!cancel || (cancel && cancel.type) ? new CanceledError() : cancel); request.abort(); request = null; }; config.cancelToken && config.cancelToken.subscribe(onCanceled); if (config.signal) { config.signal.aborted ? onCanceled() : config.signal.addEventListener('abort', onCanceled); } } if (!requestData) { requestData = null; } var protocol = parseProtocol(fullPath); if (protocol && [ 'http', 'https', 'file' ].indexOf(protocol) === -1) { reject(new AxiosError('Unsupported protocol ' + protocol + ':', AxiosError.ERR_BAD_REQUEST, config)); return; } // Send the request request.send(requestData); }); }; /***/ }), /***/ "./node_modules/axios/lib/axios.js": /*!*****************************************!*\ !*** ./node_modules/axios/lib/axios.js ***! \*****************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ./utils */ "./node_modules/axios/lib/utils.js"); var bind = __webpack_require__(/*! ./helpers/bind */ "./node_modules/axios/lib/helpers/bind.js"); var Axios = __webpack_require__(/*! ./core/Axios */ "./node_modules/axios/lib/core/Axios.js"); var mergeConfig = __webpack_require__(/*! ./core/mergeConfig */ "./node_modules/axios/lib/core/mergeConfig.js"); var defaults = __webpack_require__(/*! ./defaults */ "./node_modules/axios/lib/defaults/index.js"); /** * Create an instance of Axios * * @param {Object} defaultConfig The default config for the instance * @return {Axios} A new instance of Axios */ function createInstance(defaultConfig) { var context = new Axios(defaultConfig); var instance = bind(Axios.prototype.request, context); // Copy axios.prototype to instance utils.extend(instance, Axios.prototype, context); // Copy context to instance utils.extend(instance, context); // Factory for creating new instances instance.create = function create(instanceConfig) { return createInstance(mergeConfig(defaultConfig, instanceConfig)); }; return instance; } // Create the default instance to be exported var axios = createInstance(defaults); // Expose Axios class to allow class inheritance axios.Axios = Axios; // Expose Cancel & CancelToken axios.CanceledError = __webpack_require__(/*! ./cancel/CanceledError */ "./node_modules/axios/lib/cancel/CanceledError.js"); axios.CancelToken = __webpack_require__(/*! ./cancel/CancelToken */ "./node_modules/axios/lib/cancel/CancelToken.js"); axios.isCancel = __webpack_require__(/*! ./cancel/isCancel */ "./node_modules/axios/lib/cancel/isCancel.js"); axios.VERSION = (__webpack_require__(/*! ./env/data */ "./node_modules/axios/lib/env/data.js").version); axios.toFormData = __webpack_require__(/*! ./helpers/toFormData */ "./node_modules/axios/lib/helpers/toFormData.js"); // Expose AxiosError class axios.AxiosError = __webpack_require__(/*! ../lib/core/AxiosError */ "./node_modules/axios/lib/core/AxiosError.js"); // alias for CanceledError for backward compatibility axios.Cancel = axios.CanceledError; // Expose all/spread axios.all = function all(promises) { return Promise.all(promises); }; axios.spread = __webpack_require__(/*! ./helpers/spread */ "./node_modules/axios/lib/helpers/spread.js"); // Expose isAxiosError axios.isAxiosError = __webpack_require__(/*! ./helpers/isAxiosError */ "./node_modules/axios/lib/helpers/isAxiosError.js"); module.exports = axios; // Allow use of default import syntax in TypeScript module.exports["default"] = axios; /***/ }), /***/ "./node_modules/axios/lib/cancel/CancelToken.js": /*!******************************************************!*\ !*** ./node_modules/axios/lib/cancel/CancelToken.js ***! \******************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var CanceledError = __webpack_require__(/*! ./CanceledError */ "./node_modules/axios/lib/cancel/CanceledError.js"); /** * A `CancelToken` is an object that can be used to request cancellation of an operation. * * @class * @param {Function} executor The executor function. */ function CancelToken(executor) { if (typeof executor !== 'function') { throw new TypeError('executor must be a function.'); } var resolvePromise; this.promise = new Promise(function promiseExecutor(resolve) { resolvePromise = resolve; }); var token = this; // eslint-disable-next-line func-names this.promise.then(function(cancel) { if (!token._listeners) return; var i; var l = token._listeners.length; for (i = 0; i < l; i++) { token._listeners[i](cancel); } token._listeners = null; }); // eslint-disable-next-line func-names this.promise.then = function(onfulfilled) { var _resolve; // eslint-disable-next-line func-names var promise = new Promise(function(resolve) { token.subscribe(resolve); _resolve = resolve; }).then(onfulfilled); promise.cancel = function reject() { token.unsubscribe(_resolve); }; return promise; }; executor(function cancel(message) { if (token.reason) { // Cancellation has already been requested return; } token.reason = new CanceledError(message); resolvePromise(token.reason); }); } /** * Throws a `CanceledError` if cancellation has been requested. */ CancelToken.prototype.throwIfRequested = function throwIfRequested() { if (this.reason) { throw this.reason; } }; /** * Subscribe to the cancel signal */ CancelToken.prototype.subscribe = function subscribe(listener) { if (this.reason) { listener(this.reason); return; } if (this._listeners) { this._listeners.push(listener); } else { this._listeners = [listener]; } }; /** * Unsubscribe from the cancel signal */ CancelToken.prototype.unsubscribe = function unsubscribe(listener) { if (!this._listeners) { return; } var index = this._listeners.indexOf(listener); if (index !== -1) { this._listeners.splice(index, 1); } }; /** * Returns an object that contains a new `CancelToken` and a function that, when called, * cancels the `CancelToken`. */ CancelToken.source = function source() { var cancel; var token = new CancelToken(function executor(c) { cancel = c; }); return { token: token, cancel: cancel }; }; module.exports = CancelToken; /***/ }), /***/ "./node_modules/axios/lib/cancel/CanceledError.js": /*!********************************************************!*\ !*** ./node_modules/axios/lib/cancel/CanceledError.js ***! \********************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var AxiosError = __webpack_require__(/*! ../core/AxiosError */ "./node_modules/axios/lib/core/AxiosError.js"); var utils = __webpack_require__(/*! ../utils */ "./node_modules/axios/lib/utils.js"); /** * A `CanceledError` is an object that is thrown when an operation is canceled. * * @class * @param {string=} message The message. */ function CanceledError(message) { // eslint-disable-next-line no-eq-null,eqeqeq AxiosError.call(this, message == null ? 'canceled' : message, AxiosError.ERR_CANCELED); this.name = 'CanceledError'; } utils.inherits(CanceledError, AxiosError, { __CANCEL__: true }); module.exports = CanceledError; /***/ }), /***/ "./node_modules/axios/lib/cancel/isCancel.js": /*!***************************************************!*\ !*** ./node_modules/axios/lib/cancel/isCancel.js ***! \***************************************************/ /***/ ((module) => { "use strict"; module.exports = function isCancel(value) { return !!(value && value.__CANCEL__); }; /***/ }), /***/ "./node_modules/axios/lib/core/Axios.js": /*!**********************************************!*\ !*** ./node_modules/axios/lib/core/Axios.js ***! \**********************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ./../utils */ "./node_modules/axios/lib/utils.js"); var buildURL = __webpack_require__(/*! ../helpers/buildURL */ "./node_modules/axios/lib/helpers/buildURL.js"); var InterceptorManager = __webpack_require__(/*! ./InterceptorManager */ "./node_modules/axios/lib/core/InterceptorManager.js"); var dispatchRequest = __webpack_require__(/*! ./dispatchRequest */ "./node_modules/axios/lib/core/dispatchRequest.js"); var mergeConfig = __webpack_require__(/*! ./mergeConfig */ "./node_modules/axios/lib/core/mergeConfig.js"); var buildFullPath = __webpack_require__(/*! ./buildFullPath */ "./node_modules/axios/lib/core/buildFullPath.js"); var validator = __webpack_require__(/*! ../helpers/validator */ "./node_modules/axios/lib/helpers/validator.js"); var validators = validator.validators; /** * Create a new instance of Axios * * @param {Object} instanceConfig The default config for the instance */ function Axios(instanceConfig) { this.defaults = instanceConfig; this.interceptors = { request: new InterceptorManager(), response: new InterceptorManager() }; } /** * Dispatch a request * * @param {Object} config The config specific for this request (merged with this.defaults) */ Axios.prototype.request = function request(configOrUrl, config) { /*eslint no-param-reassign:0*/ // Allow for axios('example/url'[, config]) a la fetch API if (typeof configOrUrl === 'string') { config = config || {}; config.url = configOrUrl; } else { config = configOrUrl || {}; } config = mergeConfig(this.defaults, config); // Set config.method if (config.method) { config.method = config.method.toLowerCase(); } else if (this.defaults.method) { config.method = this.defaults.method.toLowerCase(); } else { config.method = 'get'; } var transitional = config.transitional; if (transitional !== undefined) { validator.assertOptions(transitional, { silentJSONParsing: validators.transitional(validators.boolean), forcedJSONParsing: validators.transitional(validators.boolean), clarifyTimeoutError: validators.transitional(validators.boolean) }, false); } // filter out skipped interceptors var requestInterceptorChain = []; var synchronousRequestInterceptors = true; this.interceptors.request.forEach(function unshiftRequestInterceptors(interceptor) { if (typeof interceptor.runWhen === 'function' && interceptor.runWhen(config) === false) { return; } synchronousRequestInterceptors = synchronousRequestInterceptors && interceptor.synchronous; requestInterceptorChain.unshift(interceptor.fulfilled, interceptor.rejected); }); var responseInterceptorChain = []; this.interceptors.response.forEach(function pushResponseInterceptors(interceptor) { responseInterceptorChain.push(interceptor.fulfilled, interceptor.rejected); }); var promise; if (!synchronousRequestInterceptors) { var chain = [dispatchRequest, undefined]; Array.prototype.unshift.apply(chain, requestInterceptorChain); chain = chain.concat(responseInterceptorChain); promise = Promise.resolve(config); while (chain.length) { promise = promise.then(chain.shift(), chain.shift()); } return promise; } var newConfig = config; while (requestInterceptorChain.length) { var onFulfilled = requestInterceptorChain.shift(); var onRejected = requestInterceptorChain.shift(); try { newConfig = onFulfilled(newConfig); } catch (error) { onRejected(error); break; } } try { promise = dispatchRequest(newConfig); } catch (error) { return Promise.reject(error); } while (responseInterceptorChain.length) { promise = promise.then(responseInterceptorChain.shift(), responseInterceptorChain.shift()); } return promise; }; Axios.prototype.getUri = function getUri(config) { config = mergeConfig(this.defaults, config); var fullPath = buildFullPath(config.baseURL, config.url); return buildURL(fullPath, config.params, config.paramsSerializer); }; // Provide aliases for supported request methods utils.forEach(['delete', 'get', 'head', 'options'], function forEachMethodNoData(method) { /*eslint func-names:0*/ Axios.prototype[method] = function(url, config) { return this.request(mergeConfig(config || {}, { method: method, url: url, data: (config || {}).data })); }; }); utils.forEach(['post', 'put', 'patch'], function forEachMethodWithData(method) { /*eslint func-names:0*/ function generateHTTPMethod(isForm) { return function httpMethod(url, data, config) { return this.request(mergeConfig(config || {}, { method: method, headers: isForm ? { 'Content-Type': 'multipart/form-data' } : {}, url: url, data: data })); }; } Axios.prototype[method] = generateHTTPMethod(); Axios.prototype[method + 'Form'] = generateHTTPMethod(true); }); module.exports = Axios; /***/ }), /***/ "./node_modules/axios/lib/core/AxiosError.js": /*!***************************************************!*\ !*** ./node_modules/axios/lib/core/AxiosError.js ***! \***************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ../utils */ "./node_modules/axios/lib/utils.js"); /** * Create an Error with the specified message, config, error code, request and response. * * @param {string} message The error message. * @param {string} [code] The error code (for example, 'ECONNABORTED'). * @param {Object} [config] The config. * @param {Object} [request] The request. * @param {Object} [response] The response. * @returns {Error} The created error. */ function AxiosError(message, code, config, request, response) { Error.call(this); this.message = message; this.name = 'AxiosError'; code && (this.code = code); config && (this.config = config); request && (this.request = request); response && (this.response = response); } utils.inherits(AxiosError, Error, { toJSON: function toJSON() { return { // Standard message: this.message, name: this.name, // Microsoft description: this.description, number: this.number, // Mozilla fileName: this.fileName, lineNumber: this.lineNumber, columnNumber: this.columnNumber, stack: this.stack, // Axios config: this.config, code: this.code, status: this.response && this.response.status ? this.response.status : null }; } }); var prototype = AxiosError.prototype; var descriptors = {}; [ 'ERR_BAD_OPTION_VALUE', 'ERR_BAD_OPTION', 'ECONNABORTED', 'ETIMEDOUT', 'ERR_NETWORK', 'ERR_FR_TOO_MANY_REDIRECTS', 'ERR_DEPRECATED', 'ERR_BAD_RESPONSE', 'ERR_BAD_REQUEST', 'ERR_CANCELED' // eslint-disable-next-line func-names ].forEach(function(code) { descriptors[code] = {value: code}; }); Object.defineProperties(AxiosError, descriptors); Object.defineProperty(prototype, 'isAxiosError', {value: true}); // eslint-disable-next-line func-names AxiosError.from = function(error, code, config, request, response, customProps) { var axiosError = Object.create(prototype); utils.toFlatObject(error, axiosError, function filter(obj) { return obj !== Error.prototype; }); AxiosError.call(axiosError, error.message, code, config, request, response); axiosError.name = error.name; customProps && Object.assign(axiosError, customProps); return axiosError; }; module.exports = AxiosError; /***/ }), /***/ "./node_modules/axios/lib/core/InterceptorManager.js": /*!***********************************************************!*\ !*** ./node_modules/axios/lib/core/InterceptorManager.js ***! \***********************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ./../utils */ "./node_modules/axios/lib/utils.js"); function InterceptorManager() { this.handlers = []; } /** * Add a new interceptor to the stack * * @param {Function} fulfilled The function to handle `then` for a `Promise` * @param {Function} rejected The function to handle `reject` for a `Promise` * * @return {Number} An ID used to remove interceptor later */ InterceptorManager.prototype.use = function use(fulfilled, rejected, options) { this.handlers.push({ fulfilled: fulfilled, rejected: rejected, synchronous: options ? options.synchronous : false, runWhen: options ? options.runWhen : null }); return this.handlers.length - 1; }; /** * Remove an interceptor from the stack * * @param {Number} id The ID that was returned by `use` */ InterceptorManager.prototype.eject = function eject(id) { if (this.handlers[id]) { this.handlers[id] = null; } }; /** * Iterate over all the registered interceptors * * This method is particularly useful for skipping over any * interceptors that may have become `null` calling `eject`. * * @param {Function} fn The function to call for each interceptor */ InterceptorManager.prototype.forEach = function forEach(fn) { utils.forEach(this.handlers, function forEachHandler(h) { if (h !== null) { fn(h); } }); }; module.exports = InterceptorManager; /***/ }), /***/ "./node_modules/axios/lib/core/buildFullPath.js": /*!******************************************************!*\ !*** ./node_modules/axios/lib/core/buildFullPath.js ***! \******************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var isAbsoluteURL = __webpack_require__(/*! ../helpers/isAbsoluteURL */ "./node_modules/axios/lib/helpers/isAbsoluteURL.js"); var combineURLs = __webpack_require__(/*! ../helpers/combineURLs */ "./node_modules/axios/lib/helpers/combineURLs.js"); /** * Creates a new URL by combining the baseURL with the requestedURL, * only when the requestedURL is not already an absolute URL. * If the requestURL is absolute, this function returns the requestedURL untouched. * * @param {string} baseURL The base URL * @param {string} requestedURL Absolute or relative URL to combine * @returns {string} The combined full path */ module.exports = function buildFullPath(baseURL, requestedURL) { if (baseURL && !isAbsoluteURL(requestedURL)) { return combineURLs(baseURL, requestedURL); } return requestedURL; }; /***/ }), /***/ "./node_modules/axios/lib/core/dispatchRequest.js": /*!********************************************************!*\ !*** ./node_modules/axios/lib/core/dispatchRequest.js ***! \********************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ./../utils */ "./node_modules/axios/lib/utils.js"); var transformData = __webpack_require__(/*! ./transformData */ "./node_modules/axios/lib/core/transformData.js"); var isCancel = __webpack_require__(/*! ../cancel/isCancel */ "./node_modules/axios/lib/cancel/isCancel.js"); var defaults = __webpack_require__(/*! ../defaults */ "./node_modules/axios/lib/defaults/index.js"); var CanceledError = __webpack_require__(/*! ../cancel/CanceledError */ "./node_modules/axios/lib/cancel/CanceledError.js"); /** * Throws a `CanceledError` if cancellation has been requested. */ function throwIfCancellationRequested(config) { if (config.cancelToken) { config.cancelToken.throwIfRequested(); } if (config.signal && config.signal.aborted) { throw new CanceledError(); } } /** * Dispatch a request to the server using the configured adapter. * * @param {object} config The config that is to be used for the request * @returns {Promise} The Promise to be fulfilled */ module.exports = function dispatchRequest(config) { throwIfCancellationRequested(config); // Ensure headers exist config.headers = config.headers || {}; // Transform request data config.data = transformData.call( config, config.data, config.headers, config.transformRequest ); // Flatten headers config.headers = utils.merge( config.headers.common || {}, config.headers[config.method] || {}, config.headers ); utils.forEach( ['delete', 'get', 'head', 'post', 'put', 'patch', 'common'], function cleanHeaderConfig(method) { delete config.headers[method]; } ); var adapter = config.adapter || defaults.adapter; return adapter(config).then(function onAdapterResolution(response) { throwIfCancellationRequested(config); // Transform response data response.data = transformData.call( config, response.data, response.headers, config.transformResponse ); return response; }, function onAdapterRejection(reason) { if (!isCancel(reason)) { throwIfCancellationRequested(config); // Transform response data if (reason && reason.response) { reason.response.data = transformData.call( config, reason.response.data, reason.response.headers, config.transformResponse ); } } return Promise.reject(reason); }); }; /***/ }), /***/ "./node_modules/axios/lib/core/mergeConfig.js": /*!****************************************************!*\ !*** ./node_modules/axios/lib/core/mergeConfig.js ***! \****************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ../utils */ "./node_modules/axios/lib/utils.js"); /** * Config-specific merge-function which creates a new config-object * by merging two configuration objects together. * * @param {Object} config1 * @param {Object} config2 * @returns {Object} New object resulting from merging config2 to config1 */ module.exports = function mergeConfig(config1, config2) { // eslint-disable-next-line no-param-reassign config2 = config2 || {}; var config = {}; function getMergedValue(target, source) { if (utils.isPlainObject(target) && utils.isPlainObject(source)) { return utils.merge(target, source); } else if (utils.isPlainObject(source)) { return utils.merge({}, source); } else if (utils.isArray(source)) { return source.slice(); } return source; } // eslint-disable-next-line consistent-return function mergeDeepProperties(prop) { if (!utils.isUndefined(config2[prop])) { return getMergedValue(config1[prop], config2[prop]); } else if (!utils.isUndefined(config1[prop])) { return getMergedValue(undefined, config1[prop]); } } // eslint-disable-next-line consistent-return function valueFromConfig2(prop) { if (!utils.isUndefined(config2[prop])) { return getMergedValue(undefined, config2[prop]); } } // eslint-disable-next-line consistent-return function defaultToConfig2(prop) { if (!utils.isUndefined(config2[prop])) { return getMergedValue(undefined, config2[prop]); } else if (!utils.isUndefined(config1[prop])) { return getMergedValue(undefined, config1[prop]); } } // eslint-disable-next-line consistent-return function mergeDirectKeys(prop) { if (prop in config2) { return getMergedValue(config1[prop], config2[prop]); } else if (prop in config1) { return getMergedValue(undefined, config1[prop]); } } var mergeMap = { 'url': valueFromConfig2, 'method': valueFromConfig2, 'data': valueFromConfig2, 'baseURL': defaultToConfig2, 'transformRequest': defaultToConfig2, 'transformResponse': defaultToConfig2, 'paramsSerializer': defaultToConfig2, 'timeout': defaultToConfig2, 'timeoutMessage': defaultToConfig2, 'withCredentials': defaultToConfig2, 'adapter': defaultToConfig2, 'responseType': defaultToConfig2, 'xsrfCookieName': defaultToConfig2, 'xsrfHeaderName': defaultToConfig2, 'onUploadProgress': defaultToConfig2, 'onDownloadProgress': defaultToConfig2, 'decompress': defaultToConfig2, 'maxContentLength': defaultToConfig2, 'maxBodyLength': defaultToConfig2, 'beforeRedirect': defaultToConfig2, 'transport': defaultToConfig2, 'httpAgent': defaultToConfig2, 'httpsAgent': defaultToConfig2, 'cancelToken': defaultToConfig2, 'socketPath': defaultToConfig2, 'responseEncoding': defaultToConfig2, 'validateStatus': mergeDirectKeys }; utils.forEach(Object.keys(config1).concat(Object.keys(config2)), function computeConfigValue(prop) { var merge = mergeMap[prop] || mergeDeepProperties; var configValue = merge(prop); (utils.isUndefined(configValue) && merge !== mergeDirectKeys) || (config[prop] = configValue); }); return config; }; /***/ }), /***/ "./node_modules/axios/lib/core/settle.js": /*!***********************************************!*\ !*** ./node_modules/axios/lib/core/settle.js ***! \***********************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var AxiosError = __webpack_require__(/*! ./AxiosError */ "./node_modules/axios/lib/core/AxiosError.js"); /** * Resolve or reject a Promise based on response status. * * @param {Function} resolve A function that resolves the promise. * @param {Function} reject A function that rejects the promise. * @param {object} response The response. */ module.exports = function settle(resolve, reject, response) { var validateStatus = response.config.validateStatus; if (!response.status || !validateStatus || validateStatus(response.status)) { resolve(response); } else { reject(new AxiosError( 'Request failed with status code ' + response.status, [AxiosError.ERR_BAD_REQUEST, AxiosError.ERR_BAD_RESPONSE][Math.floor(response.status / 100) - 4], response.config, response.request, response )); } }; /***/ }), /***/ "./node_modules/axios/lib/core/transformData.js": /*!******************************************************!*\ !*** ./node_modules/axios/lib/core/transformData.js ***! \******************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ./../utils */ "./node_modules/axios/lib/utils.js"); var defaults = __webpack_require__(/*! ../defaults */ "./node_modules/axios/lib/defaults/index.js"); /** * Transform the data for a request or a response * * @param {Object|String} data The data to be transformed * @param {Array} headers The headers for the request or response * @param {Array|Function} fns A single function or Array of functions * @returns {*} The resulting transformed data */ module.exports = function transformData(data, headers, fns) { var context = this || defaults; /*eslint no-param-reassign:0*/ utils.forEach(fns, function transform(fn) { data = fn.call(context, data, headers); }); return data; }; /***/ }), /***/ "./node_modules/axios/lib/defaults/env/FormData.js": /*!*********************************************************!*\ !*** ./node_modules/axios/lib/defaults/env/FormData.js ***! \*********************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { // eslint-disable-next-line strict module.exports = __webpack_require__(/*! form-data */ "./node_modules/form-data/lib/form_data.js"); /***/ }), /***/ "./node_modules/axios/lib/defaults/index.js": /*!**************************************************!*\ !*** ./node_modules/axios/lib/defaults/index.js ***! \**************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ../utils */ "./node_modules/axios/lib/utils.js"); var normalizeHeaderName = __webpack_require__(/*! ../helpers/normalizeHeaderName */ "./node_modules/axios/lib/helpers/normalizeHeaderName.js"); var AxiosError = __webpack_require__(/*! ../core/AxiosError */ "./node_modules/axios/lib/core/AxiosError.js"); var transitionalDefaults = __webpack_require__(/*! ./transitional */ "./node_modules/axios/lib/defaults/transitional.js"); var toFormData = __webpack_require__(/*! ../helpers/toFormData */ "./node_modules/axios/lib/helpers/toFormData.js"); var DEFAULT_CONTENT_TYPE = { 'Content-Type': 'application/x-www-form-urlencoded' }; function setContentTypeIfUnset(headers, value) { if (!utils.isUndefined(headers) && utils.isUndefined(headers['Content-Type'])) { headers['Content-Type'] = value; } } function getDefaultAdapter() { var adapter; if (typeof XMLHttpRequest !== 'undefined') { // For browsers use XHR adapter adapter = __webpack_require__(/*! ../adapters/xhr */ "./node_modules/axios/lib/adapters/xhr.js"); } else if (typeof process !== 'undefined' && Object.prototype.toString.call(process) === '[object process]') { // For node use HTTP adapter adapter = __webpack_require__(/*! ../adapters/http */ "./node_modules/axios/lib/adapters/http.js"); } return adapter; } function stringifySafely(rawValue, parser, encoder) { if (utils.isString(rawValue)) { try { (parser || JSON.parse)(rawValue); return utils.trim(rawValue); } catch (e) { if (e.name !== 'SyntaxError') { throw e; } } } return (encoder || JSON.stringify)(rawValue); } var defaults = { transitional: transitionalDefaults, adapter: getDefaultAdapter(), transformRequest: [function transformRequest(data, headers) { normalizeHeaderName(headers, 'Accept'); normalizeHeaderName(headers, 'Content-Type'); if (utils.isFormData(data) || utils.isArrayBuffer(data) || utils.isBuffer(data) || utils.isStream(data) || utils.isFile(data) || utils.isBlob(data) ) { return data; } if (utils.isArrayBufferView(data)) { return data.buffer; } if (utils.isURLSearchParams(data)) { setContentTypeIfUnset(headers, 'application/x-www-form-urlencoded;charset=utf-8'); return data.toString(); } var isObjectPayload = utils.isObject(data); var contentType = headers && headers['Content-Type']; var isFileList; if ((isFileList = utils.isFileList(data)) || (isObjectPayload && contentType === 'multipart/form-data')) { var _FormData = this.env && this.env.FormData; return toFormData(isFileList ? {'files[]': data} : data, _FormData && new _FormData()); } else if (isObjectPayload || contentType === 'application/json') { setContentTypeIfUnset(headers, 'application/json'); return stringifySafely(data); } return data; }], transformResponse: [function transformResponse(data) { var transitional = this.transitional || defaults.transitional; var silentJSONParsing = transitional && transitional.silentJSONParsing; var forcedJSONParsing = transitional && transitional.forcedJSONParsing; var strictJSONParsing = !silentJSONParsing && this.responseType === 'json'; if (strictJSONParsing || (forcedJSONParsing && utils.isString(data) && data.length)) { try { return JSON.parse(data); } catch (e) { if (strictJSONParsing) { if (e.name === 'SyntaxError') { throw AxiosError.from(e, AxiosError.ERR_BAD_RESPONSE, this, null, this.response); } throw e; } } } return data; }], /** * A timeout in milliseconds to abort a request. If set to 0 (default) a * timeout is not created. */ timeout: 0, xsrfCookieName: 'XSRF-TOKEN', xsrfHeaderName: 'X-XSRF-TOKEN', maxContentLength: -1, maxBodyLength: -1, env: { FormData: __webpack_require__(/*! ./env/FormData */ "./node_modules/axios/lib/defaults/env/FormData.js") }, validateStatus: function validateStatus(status) { return status >= 200 && status < 300; }, headers: { common: { 'Accept': 'application/json, text/plain, */*' } } }; utils.forEach(['delete', 'get', 'head'], function forEachMethodNoData(method) { defaults.headers[method] = {}; }); utils.forEach(['post', 'put', 'patch'], function forEachMethodWithData(method) { defaults.headers[method] = utils.merge(DEFAULT_CONTENT_TYPE); }); module.exports = defaults; /***/ }), /***/ "./node_modules/axios/lib/defaults/transitional.js": /*!*********************************************************!*\ !*** ./node_modules/axios/lib/defaults/transitional.js ***! \*********************************************************/ /***/ ((module) => { "use strict"; module.exports = { silentJSONParsing: true, forcedJSONParsing: true, clarifyTimeoutError: false }; /***/ }), /***/ "./node_modules/axios/lib/env/data.js": /*!********************************************!*\ !*** ./node_modules/axios/lib/env/data.js ***! \********************************************/ /***/ ((module) => { module.exports = { "version": "0.27.2" }; /***/ }), /***/ "./node_modules/axios/lib/helpers/bind.js": /*!************************************************!*\ !*** ./node_modules/axios/lib/helpers/bind.js ***! \************************************************/ /***/ ((module) => { "use strict"; module.exports = function bind(fn, thisArg) { return function wrap() { var args = new Array(arguments.length); for (var i = 0; i < args.length; i++) { args[i] = arguments[i]; } return fn.apply(thisArg, args); }; }; /***/ }), /***/ "./node_modules/axios/lib/helpers/buildURL.js": /*!****************************************************!*\ !*** ./node_modules/axios/lib/helpers/buildURL.js ***! \****************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ./../utils */ "./node_modules/axios/lib/utils.js"); function encode(val) { return encodeURIComponent(val). replace(/%3A/gi, ':'). replace(/%24/g, '$'). replace(/%2C/gi, ','). replace(/%20/g, '+'). replace(/%5B/gi, '['). replace(/%5D/gi, ']'); } /** * Build a URL by appending params to the end * * @param {string} url The base of the url (e.g., http://www.google.com) * @param {object} [params] The params to be appended * @returns {string} The formatted url */ module.exports = function buildURL(url, params, paramsSerializer) { /*eslint no-param-reassign:0*/ if (!params) { return url; } var serializedParams; if (paramsSerializer) { serializedParams = paramsSerializer(params); } else if (utils.isURLSearchParams(params)) { serializedParams = params.toString(); } else { var parts = []; utils.forEach(params, function serialize(val, key) { if (val === null || typeof val === 'undefined') { return; } if (utils.isArray(val)) { key = key + '[]'; } else { val = [val]; } utils.forEach(val, function parseValue(v) { if (utils.isDate(v)) { v = v.toISOString(); } else if (utils.isObject(v)) { v = JSON.stringify(v); } parts.push(encode(key) + '=' + encode(v)); }); }); serializedParams = parts.join('&'); } if (serializedParams) { var hashmarkIndex = url.indexOf('#'); if (hashmarkIndex !== -1) { url = url.slice(0, hashmarkIndex); } url += (url.indexOf('?') === -1 ? '?' : '&') + serializedParams; } return url; }; /***/ }), /***/ "./node_modules/axios/lib/helpers/combineURLs.js": /*!*******************************************************!*\ !*** ./node_modules/axios/lib/helpers/combineURLs.js ***! \*******************************************************/ /***/ ((module) => { "use strict"; /** * Creates a new URL by combining the specified URLs * * @param {string} baseURL The base URL * @param {string} relativeURL The relative URL * @returns {string} The combined URL */ module.exports = function combineURLs(baseURL, relativeURL) { return relativeURL ? baseURL.replace(/\/+$/, '') + '/' + relativeURL.replace(/^\/+/, '') : baseURL; }; /***/ }), /***/ "./node_modules/axios/lib/helpers/cookies.js": /*!***************************************************!*\ !*** ./node_modules/axios/lib/helpers/cookies.js ***! \***************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ./../utils */ "./node_modules/axios/lib/utils.js"); module.exports = ( utils.isStandardBrowserEnv() ? // Standard browser envs support document.cookie (function standardBrowserEnv() { return { write: function write(name, value, expires, path, domain, secure) { var cookie = []; cookie.push(name + '=' + encodeURIComponent(value)); if (utils.isNumber(expires)) { cookie.push('expires=' + new Date(expires).toGMTString()); } if (utils.isString(path)) { cookie.push('path=' + path); } if (utils.isString(domain)) { cookie.push('domain=' + domain); } if (secure === true) { cookie.push('secure'); } document.cookie = cookie.join('; '); }, read: function read(name) { var match = document.cookie.match(new RegExp('(^|;\\s*)(' + name + ')=([^;]*)')); return (match ? decodeURIComponent(match[3]) : null); }, remove: function remove(name) { this.write(name, '', Date.now() - 86400000); } }; })() : // Non standard browser env (web workers, react-native) lack needed support. (function nonStandardBrowserEnv() { return { write: function write() {}, read: function read() { return null; }, remove: function remove() {} }; })() ); /***/ }), /***/ "./node_modules/axios/lib/helpers/isAbsoluteURL.js": /*!*********************************************************!*\ !*** ./node_modules/axios/lib/helpers/isAbsoluteURL.js ***! \*********************************************************/ /***/ ((module) => { "use strict"; /** * Determines whether the specified URL is absolute * * @param {string} url The URL to test * @returns {boolean} True if the specified URL is absolute, otherwise false */ module.exports = function isAbsoluteURL(url) { // A URL is considered absolute if it begins with "://" or "//" (protocol-relative URL). // RFC 3986 defines scheme name as a sequence of characters beginning with a letter and followed // by any combination of letters, digits, plus, period, or hyphen. return /^([a-z][a-z\d+\-.]*:)?\/\//i.test(url); }; /***/ }), /***/ "./node_modules/axios/lib/helpers/isAxiosError.js": /*!********************************************************!*\ !*** ./node_modules/axios/lib/helpers/isAxiosError.js ***! \********************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ./../utils */ "./node_modules/axios/lib/utils.js"); /** * Determines whether the payload is an error thrown by Axios * * @param {*} payload The value to test * @returns {boolean} True if the payload is an error thrown by Axios, otherwise false */ module.exports = function isAxiosError(payload) { return utils.isObject(payload) && (payload.isAxiosError === true); }; /***/ }), /***/ "./node_modules/axios/lib/helpers/isURLSameOrigin.js": /*!***********************************************************!*\ !*** ./node_modules/axios/lib/helpers/isURLSameOrigin.js ***! \***********************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ./../utils */ "./node_modules/axios/lib/utils.js"); module.exports = ( utils.isStandardBrowserEnv() ? // Standard browser envs have full support of the APIs needed to test // whether the request URL is of the same origin as current location. (function standardBrowserEnv() { var msie = /(msie|trident)/i.test(navigator.userAgent); var urlParsingNode = document.createElement('a'); var originURL; /** * Parse a URL to discover it's components * * @param {String} url The URL to be parsed * @returns {Object} */ function resolveURL(url) { var href = url; if (msie) { // IE needs attribute set twice to normalize properties urlParsingNode.setAttribute('href', href); href = urlParsingNode.href; } urlParsingNode.setAttribute('href', href); // urlParsingNode provides the UrlUtils interface - http://url.spec.whatwg.org/#urlutils return { href: urlParsingNode.href, protocol: urlParsingNode.protocol ? urlParsingNode.protocol.replace(/:$/, '') : '', host: urlParsingNode.host, search: urlParsingNode.search ? urlParsingNode.search.replace(/^\?/, '') : '', hash: urlParsingNode.hash ? urlParsingNode.hash.replace(/^#/, '') : '', hostname: urlParsingNode.hostname, port: urlParsingNode.port, pathname: (urlParsingNode.pathname.charAt(0) === '/') ? urlParsingNode.pathname : '/' + urlParsingNode.pathname }; } originURL = resolveURL(window.location.href); /** * Determine if a URL shares the same origin as the current location * * @param {String} requestURL The URL to test * @returns {boolean} True if URL shares the same origin, otherwise false */ return function isURLSameOrigin(requestURL) { var parsed = (utils.isString(requestURL)) ? resolveURL(requestURL) : requestURL; return (parsed.protocol === originURL.protocol && parsed.host === originURL.host); }; })() : // Non standard browser envs (web workers, react-native) lack needed support. (function nonStandardBrowserEnv() { return function isURLSameOrigin() { return true; }; })() ); /***/ }), /***/ "./node_modules/axios/lib/helpers/normalizeHeaderName.js": /*!***************************************************************!*\ !*** ./node_modules/axios/lib/helpers/normalizeHeaderName.js ***! \***************************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ../utils */ "./node_modules/axios/lib/utils.js"); module.exports = function normalizeHeaderName(headers, normalizedName) { utils.forEach(headers, function processHeader(value, name) { if (name !== normalizedName && name.toUpperCase() === normalizedName.toUpperCase()) { headers[normalizedName] = value; delete headers[name]; } }); }; /***/ }), /***/ "./node_modules/axios/lib/helpers/parseHeaders.js": /*!********************************************************!*\ !*** ./node_modules/axios/lib/helpers/parseHeaders.js ***! \********************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ./../utils */ "./node_modules/axios/lib/utils.js"); // Headers whose duplicates are ignored by node // c.f. https://nodejs.org/api/http.html#http_message_headers var ignoreDuplicateOf = [ 'age', 'authorization', 'content-length', 'content-type', 'etag', 'expires', 'from', 'host', 'if-modified-since', 'if-unmodified-since', 'last-modified', 'location', 'max-forwards', 'proxy-authorization', 'referer', 'retry-after', 'user-agent' ]; /** * Parse headers into an object * * ``` * Date: Wed, 27 Aug 2014 08:58:49 GMT * Content-Type: application/json * Connection: keep-alive * Transfer-Encoding: chunked * ``` * * @param {String} headers Headers needing to be parsed * @returns {Object} Headers parsed into an object */ module.exports = function parseHeaders(headers) { var parsed = {}; var key; var val; var i; if (!headers) { return parsed; } utils.forEach(headers.split('\n'), function parser(line) { i = line.indexOf(':'); key = utils.trim(line.substr(0, i)).toLowerCase(); val = utils.trim(line.substr(i + 1)); if (key) { if (parsed[key] && ignoreDuplicateOf.indexOf(key) >= 0) { return; } if (key === 'set-cookie') { parsed[key] = (parsed[key] ? parsed[key] : []).concat([val]); } else { parsed[key] = parsed[key] ? parsed[key] + ', ' + val : val; } } }); return parsed; }; /***/ }), /***/ "./node_modules/axios/lib/helpers/parseProtocol.js": /*!*********************************************************!*\ !*** ./node_modules/axios/lib/helpers/parseProtocol.js ***! \*********************************************************/ /***/ ((module) => { "use strict"; module.exports = function parseProtocol(url) { var match = /^([-+\w]{1,25})(:?\/\/|:)/.exec(url); return match && match[1] || ''; }; /***/ }), /***/ "./node_modules/axios/lib/helpers/spread.js": /*!**************************************************!*\ !*** ./node_modules/axios/lib/helpers/spread.js ***! \**************************************************/ /***/ ((module) => { "use strict"; /** * Syntactic sugar for invoking a function and expanding an array for arguments. * * Common use case would be to use `Function.prototype.apply`. * * ```js * function f(x, y, z) {} * var args = [1, 2, 3]; * f.apply(null, args); * ``` * * With `spread` this example can be re-written. * * ```js * spread(function(x, y, z) {})([1, 2, 3]); * ``` * * @param {Function} callback * @returns {Function} */ module.exports = function spread(callback) { return function wrap(arr) { return callback.apply(null, arr); }; }; /***/ }), /***/ "./node_modules/axios/lib/helpers/toFormData.js": /*!******************************************************!*\ !*** ./node_modules/axios/lib/helpers/toFormData.js ***! \******************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var utils = __webpack_require__(/*! ../utils */ "./node_modules/axios/lib/utils.js"); /** * Convert a data object to FormData * @param {Object} obj * @param {?Object} [formData] * @returns {Object} **/ function toFormData(obj, formData) { // eslint-disable-next-line no-param-reassign formData = formData || new FormData(); var stack = []; function convertValue(value) { if (value === null) return ''; if (utils.isDate(value)) { return value.toISOString(); } if (utils.isArrayBuffer(value) || utils.isTypedArray(value)) { return typeof Blob === 'function' ? new Blob([value]) : Buffer.from(value); } return value; } function build(data, parentKey) { if (utils.isPlainObject(data) || utils.isArray(data)) { if (stack.indexOf(data) !== -1) { throw Error('Circular reference detected in ' + parentKey); } stack.push(data); utils.forEach(data, function each(value, key) { if (utils.isUndefined(value)) return; var fullKey = parentKey ? parentKey + '.' + key : key; var arr; if (value && !parentKey && typeof value === 'object') { if (utils.endsWith(key, '{}')) { // eslint-disable-next-line no-param-reassign value = JSON.stringify(value); } else if (utils.endsWith(key, '[]') && (arr = utils.toArray(value))) { // eslint-disable-next-line func-names arr.forEach(function(el) { !utils.isUndefined(el) && formData.append(fullKey, convertValue(el)); }); return; } } build(value, fullKey); }); stack.pop(); } else { formData.append(parentKey, convertValue(data)); } } build(obj); return formData; } module.exports = toFormData; /***/ }), /***/ "./node_modules/axios/lib/helpers/validator.js": /*!*****************************************************!*\ !*** ./node_modules/axios/lib/helpers/validator.js ***! \*****************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var VERSION = (__webpack_require__(/*! ../env/data */ "./node_modules/axios/lib/env/data.js").version); var AxiosError = __webpack_require__(/*! ../core/AxiosError */ "./node_modules/axios/lib/core/AxiosError.js"); var validators = {}; // eslint-disable-next-line func-names ['object', 'boolean', 'number', 'function', 'string', 'symbol'].forEach(function(type, i) { validators[type] = function validator(thing) { return typeof thing === type || 'a' + (i < 1 ? 'n ' : ' ') + type; }; }); var deprecatedWarnings = {}; /** * Transitional option validator * @param {function|boolean?} validator - set to false if the transitional option has been removed * @param {string?} version - deprecated version / removed since version * @param {string?} message - some message with additional info * @returns {function} */ validators.transitional = function transitional(validator, version, message) { function formatMessage(opt, desc) { return '[Axios v' + VERSION + '] Transitional option \'' + opt + '\'' + desc + (message ? '. ' + message : ''); } // eslint-disable-next-line func-names return function(value, opt, opts) { if (validator === false) { throw new AxiosError( formatMessage(opt, ' has been removed' + (version ? ' in ' + version : '')), AxiosError.ERR_DEPRECATED ); } if (version && !deprecatedWarnings[opt]) { deprecatedWarnings[opt] = true; // eslint-disable-next-line no-console console.warn( formatMessage( opt, ' has been deprecated since v' + version + ' and will be removed in the near future' ) ); } return validator ? validator(value, opt, opts) : true; }; }; /** * Assert object's properties type * @param {object} options * @param {object} schema * @param {boolean?} allowUnknown */ function assertOptions(options, schema, allowUnknown) { if (typeof options !== 'object') { throw new AxiosError('options must be an object', AxiosError.ERR_BAD_OPTION_VALUE); } var keys = Object.keys(options); var i = keys.length; while (i-- > 0) { var opt = keys[i]; var validator = schema[opt]; if (validator) { var value = options[opt]; var result = value === undefined || validator(value, opt, options); if (result !== true) { throw new AxiosError('option ' + opt + ' must be ' + result, AxiosError.ERR_BAD_OPTION_VALUE); } continue; } if (allowUnknown !== true) { throw new AxiosError('Unknown option ' + opt, AxiosError.ERR_BAD_OPTION); } } } module.exports = { assertOptions: assertOptions, validators: validators }; /***/ }), /***/ "./node_modules/axios/lib/utils.js": /*!*****************************************!*\ !*** ./node_modules/axios/lib/utils.js ***! \*****************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var bind = __webpack_require__(/*! ./helpers/bind */ "./node_modules/axios/lib/helpers/bind.js"); // utils is a library of generic helper functions non-specific to axios var toString = Object.prototype.toString; // eslint-disable-next-line func-names var kindOf = (function(cache) { // eslint-disable-next-line func-names return function(thing) { var str = toString.call(thing); return cache[str] || (cache[str] = str.slice(8, -1).toLowerCase()); }; })(Object.create(null)); function kindOfTest(type) { type = type.toLowerCase(); return function isKindOf(thing) { return kindOf(thing) === type; }; } /** * Determine if a value is an Array * * @param {Object} val The value to test * @returns {boolean} True if value is an Array, otherwise false */ function isArray(val) { return Array.isArray(val); } /** * Determine if a value is undefined * * @param {Object} val The value to test * @returns {boolean} True if the value is undefined, otherwise false */ function isUndefined(val) { return typeof val === 'undefined'; } /** * Determine if a value is a Buffer * * @param {Object} val The value to test * @returns {boolean} True if value is a Buffer, otherwise false */ function isBuffer(val) { return val !== null && !isUndefined(val) && val.constructor !== null && !isUndefined(val.constructor) && typeof val.constructor.isBuffer === 'function' && val.constructor.isBuffer(val); } /** * Determine if a value is an ArrayBuffer * * @function * @param {Object} val The value to test * @returns {boolean} True if value is an ArrayBuffer, otherwise false */ var isArrayBuffer = kindOfTest('ArrayBuffer'); /** * Determine if a value is a view on an ArrayBuffer * * @param {Object} val The value to test * @returns {boolean} True if value is a view on an ArrayBuffer, otherwise false */ function isArrayBufferView(val) { var result; if ((typeof ArrayBuffer !== 'undefined') && (ArrayBuffer.isView)) { result = ArrayBuffer.isView(val); } else { result = (val) && (val.buffer) && (isArrayBuffer(val.buffer)); } return result; } /** * Determine if a value is a String * * @param {Object} val The value to test * @returns {boolean} True if value is a String, otherwise false */ function isString(val) { return typeof val === 'string'; } /** * Determine if a value is a Number * * @param {Object} val The value to test * @returns {boolean} True if value is a Number, otherwise false */ function isNumber(val) { return typeof val === 'number'; } /** * Determine if a value is an Object * * @param {Object} val The value to test * @returns {boolean} True if value is an Object, otherwise false */ function isObject(val) { return val !== null && typeof val === 'object'; } /** * Determine if a value is a plain Object * * @param {Object} val The value to test * @return {boolean} True if value is a plain Object, otherwise false */ function isPlainObject(val) { if (kindOf(val) !== 'object') { return false; } var prototype = Object.getPrototypeOf(val); return prototype === null || prototype === Object.prototype; } /** * Determine if a value is a Date * * @function * @param {Object} val The value to test * @returns {boolean} True if value is a Date, otherwise false */ var isDate = kindOfTest('Date'); /** * Determine if a value is a File * * @function * @param {Object} val The value to test * @returns {boolean} True if value is a File, otherwise false */ var isFile = kindOfTest('File'); /** * Determine if a value is a Blob * * @function * @param {Object} val The value to test * @returns {boolean} True if value is a Blob, otherwise false */ var isBlob = kindOfTest('Blob'); /** * Determine if a value is a FileList * * @function * @param {Object} val The value to test * @returns {boolean} True if value is a File, otherwise false */ var isFileList = kindOfTest('FileList'); /** * Determine if a value is a Function * * @param {Object} val The value to test * @returns {boolean} True if value is a Function, otherwise false */ function isFunction(val) { return toString.call(val) === '[object Function]'; } /** * Determine if a value is a Stream * * @param {Object} val The value to test * @returns {boolean} True if value is a Stream, otherwise false */ function isStream(val) { return isObject(val) && isFunction(val.pipe); } /** * Determine if a value is a FormData * * @param {Object} thing The value to test * @returns {boolean} True if value is an FormData, otherwise false */ function isFormData(thing) { var pattern = '[object FormData]'; return thing && ( (typeof FormData === 'function' && thing instanceof FormData) || toString.call(thing) === pattern || (isFunction(thing.toString) && thing.toString() === pattern) ); } /** * Determine if a value is a URLSearchParams object * @function * @param {Object} val The value to test * @returns {boolean} True if value is a URLSearchParams object, otherwise false */ var isURLSearchParams = kindOfTest('URLSearchParams'); /** * Trim excess whitespace off the beginning and end of a string * * @param {String} str The String to trim * @returns {String} The String freed of excess whitespace */ function trim(str) { return str.trim ? str.trim() : str.replace(/^\s+|\s+$/g, ''); } /** * Determine if we're running in a standard browser environment * * This allows axios to run in a web worker, and react-native. * Both environments support XMLHttpRequest, but not fully standard globals. * * web workers: * typeof window -> undefined * typeof document -> undefined * * react-native: * navigator.product -> 'ReactNative' * nativescript * navigator.product -> 'NativeScript' or 'NS' */ function isStandardBrowserEnv() { if (typeof navigator !== 'undefined' && (navigator.product === 'ReactNative' || navigator.product === 'NativeScript' || navigator.product === 'NS')) { return false; } return ( typeof window !== 'undefined' && typeof document !== 'undefined' ); } /** * Iterate over an Array or an Object invoking a function for each item. * * If `obj` is an Array callback will be called passing * the value, index, and complete array for each item. * * If 'obj' is an Object callback will be called passing * the value, key, and complete object for each property. * * @param {Object|Array} obj The object to iterate * @param {Function} fn The callback to invoke for each item */ function forEach(obj, fn) { // Don't bother if no value provided if (obj === null || typeof obj === 'undefined') { return; } // Force an array if not already something iterable if (typeof obj !== 'object') { /*eslint no-param-reassign:0*/ obj = [obj]; } if (isArray(obj)) { // Iterate over array values for (var i = 0, l = obj.length; i < l; i++) { fn.call(null, obj[i], i, obj); } } else { // Iterate over object keys for (var key in obj) { if (Object.prototype.hasOwnProperty.call(obj, key)) { fn.call(null, obj[key], key, obj); } } } } /** * Accepts varargs expecting each argument to be an object, then * immutably merges the properties of each object and returns result. * * When multiple objects contain the same key the later object in * the arguments list will take precedence. * * Example: * * ```js * var result = merge({foo: 123}, {foo: 456}); * console.log(result.foo); // outputs 456 * ``` * * @param {Object} obj1 Object to merge * @returns {Object} Result of all merge properties */ function merge(/* obj1, obj2, obj3, ... */) { var result = {}; function assignValue(val, key) { if (isPlainObject(result[key]) && isPlainObject(val)) { result[key] = merge(result[key], val); } else if (isPlainObject(val)) { result[key] = merge({}, val); } else if (isArray(val)) { result[key] = val.slice(); } else { result[key] = val; } } for (var i = 0, l = arguments.length; i < l; i++) { forEach(arguments[i], assignValue); } return result; } /** * Extends object a by mutably adding to it the properties of object b. * * @param {Object} a The object to be extended * @param {Object} b The object to copy properties from * @param {Object} thisArg The object to bind function to * @return {Object} The resulting value of object a */ function extend(a, b, thisArg) { forEach(b, function assignValue(val, key) { if (thisArg && typeof val === 'function') { a[key] = bind(val, thisArg); } else { a[key] = val; } }); return a; } /** * Remove byte order marker. This catches EF BB BF (the UTF-8 BOM) * * @param {string} content with BOM * @return {string} content value without BOM */ function stripBOM(content) { if (content.charCodeAt(0) === 0xFEFF) { content = content.slice(1); } return content; } /** * Inherit the prototype methods from one constructor into another * @param {function} constructor * @param {function} superConstructor * @param {object} [props] * @param {object} [descriptors] */ function inherits(constructor, superConstructor, props, descriptors) { constructor.prototype = Object.create(superConstructor.prototype, descriptors); constructor.prototype.constructor = constructor; props && Object.assign(constructor.prototype, props); } /** * Resolve object with deep prototype chain to a flat object * @param {Object} sourceObj source object * @param {Object} [destObj] * @param {Function} [filter] * @returns {Object} */ function toFlatObject(sourceObj, destObj, filter) { var props; var i; var prop; var merged = {}; destObj = destObj || {}; do { props = Object.getOwnPropertyNames(sourceObj); i = props.length; while (i-- > 0) { prop = props[i]; if (!merged[prop]) { destObj[prop] = sourceObj[prop]; merged[prop] = true; } } sourceObj = Object.getPrototypeOf(sourceObj); } while (sourceObj && (!filter || filter(sourceObj, destObj)) && sourceObj !== Object.prototype); return destObj; } /* * determines whether a string ends with the characters of a specified string * @param {String} str * @param {String} searchString * @param {Number} [position= 0] * @returns {boolean} */ function endsWith(str, searchString, position) { str = String(str); if (position === undefined || position > str.length) { position = str.length; } position -= searchString.length; var lastIndex = str.indexOf(searchString, position); return lastIndex !== -1 && lastIndex === position; } /** * Returns new array from array like object * @param {*} [thing] * @returns {Array} */ function toArray(thing) { if (!thing) return null; var i = thing.length; if (isUndefined(i)) return null; var arr = new Array(i); while (i-- > 0) { arr[i] = thing[i]; } return arr; } // eslint-disable-next-line func-names var isTypedArray = (function(TypedArray) { // eslint-disable-next-line func-names return function(thing) { return TypedArray && thing instanceof TypedArray; }; })(typeof Uint8Array !== 'undefined' && Object.getPrototypeOf(Uint8Array)); module.exports = { isArray: isArray, isArrayBuffer: isArrayBuffer, isBuffer: isBuffer, isFormData: isFormData, isArrayBufferView: isArrayBufferView, isString: isString, isNumber: isNumber, isObject: isObject, isPlainObject: isPlainObject, isUndefined: isUndefined, isDate: isDate, isFile: isFile, isBlob: isBlob, isFunction: isFunction, isStream: isStream, isURLSearchParams: isURLSearchParams, isStandardBrowserEnv: isStandardBrowserEnv, forEach: forEach, merge: merge, extend: extend, trim: trim, stripBOM: stripBOM, inherits: inherits, toFlatObject: toFlatObject, kindOf: kindOf, kindOfTest: kindOfTest, endsWith: endsWith, toArray: toArray, isTypedArray: isTypedArray, isFileList: isFileList }; /***/ }), /***/ "./node_modules/balanced-match/index.js": /*!**********************************************!*\ !*** ./node_modules/balanced-match/index.js ***! \**********************************************/ /***/ ((module) => { "use strict"; module.exports = balanced; function balanced(a, b, str) { if (a instanceof RegExp) a = maybeMatch(a, str); if (b instanceof RegExp) b = maybeMatch(b, str); var r = range(a, b, str); return r && { start: r[0], end: r[1], pre: str.slice(0, r[0]), body: str.slice(r[0] + a.length, r[1]), post: str.slice(r[1] + b.length) }; } function maybeMatch(reg, str) { var m = str.match(reg); return m ? m[0] : null; } balanced.range = range; function range(a, b, str) { var begs, beg, left, right, result; var ai = str.indexOf(a); var bi = str.indexOf(b, ai + 1); var i = ai; if (ai >= 0 && bi > 0) { if(a===b) { return [ai, bi]; } begs = []; left = str.length; while (i >= 0 && !result) { if (i == ai) { begs.push(i); ai = str.indexOf(a, i + 1); } else if (begs.length == 1) { result = [ begs.pop(), bi ]; } else { beg = begs.pop(); if (beg < left) { left = beg; right = bi; } bi = str.indexOf(b, i + 1); } i = ai < bi && ai >= 0 ? ai : bi; } if (begs.length) { result = [ left, right ]; } } return result; } /***/ }), /***/ "./node_modules/brace-expansion/index.js": /*!***********************************************!*\ !*** ./node_modules/brace-expansion/index.js ***! \***********************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var concatMap = __webpack_require__(/*! concat-map */ "./node_modules/concat-map/index.js"); var balanced = __webpack_require__(/*! balanced-match */ "./node_modules/balanced-match/index.js"); 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; } /***/ }), /***/ "./node_modules/buffer-from/index.js": /*!*******************************************!*\ !*** ./node_modules/buffer-from/index.js ***! \*******************************************/ /***/ ((module) => { /* eslint-disable node/no-deprecated-api */ var toString = Object.prototype.toString var isModern = ( typeof Buffer !== 'undefined' && typeof Buffer.alloc === 'function' && typeof Buffer.allocUnsafe === 'function' && typeof Buffer.from === 'function' ) function isArrayBuffer (input) { return toString.call(input).slice(8, -1) === 'ArrayBuffer' } function fromArrayBuffer (obj, byteOffset, length) { byteOffset >>>= 0 var maxLength = obj.byteLength - byteOffset if (maxLength < 0) { throw new RangeError("'offset' is out of bounds") } if (length === undefined) { length = maxLength } else { length >>>= 0 if (length > maxLength) { throw new RangeError("'length' is out of bounds") } } return isModern ? Buffer.from(obj.slice(byteOffset, byteOffset + length)) : new Buffer(new Uint8Array(obj.slice(byteOffset, byteOffset + length))) } function fromString (string, encoding) { if (typeof encoding !== 'string' || encoding === '') { encoding = 'utf8' } if (!Buffer.isEncoding(encoding)) { throw new TypeError('"encoding" must be a valid string encoding') } return isModern ? Buffer.from(string, encoding) : new Buffer(string, encoding) } function bufferFrom (value, encodingOrOffset, length) { if (typeof value === 'number') { throw new TypeError('"value" argument must not be a number') } if (isArrayBuffer(value)) { return fromArrayBuffer(value, encodingOrOffset, length) } if (typeof value === 'string') { return fromString(value, encodingOrOffset) } return isModern ? Buffer.from(value) : new Buffer(value) } module.exports = bufferFrom /***/ }), /***/ "./node_modules/chalk/source/index.js": /*!********************************************!*\ !*** ./node_modules/chalk/source/index.js ***! \********************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const ansiStyles = __webpack_require__(/*! ansi-styles */ "./node_modules/ansi-styles/index.js"); const {stdout: stdoutColor, stderr: stderrColor} = __webpack_require__(/*! supports-color */ "./node_modules/supports-color/index.js"); const { stringReplaceAll, stringEncaseCRLFWithFirstIndex } = __webpack_require__(/*! ./util */ "./node_modules/chalk/source/util.js"); const {isArray} = Array; // `supportsColor.level` → `ansiStyles.color[name]` mapping const levelMapping = [ 'ansi', 'ansi', 'ansi256', 'ansi16m' ]; const styles = Object.create(null); const applyOptions = (object, options = {}) => { if (options.level && !(Number.isInteger(options.level) && options.level >= 0 && options.level <= 3)) { throw new Error('The `level` option should be an integer from 0 to 3'); } // Detect level if not set manually const colorLevel = stdoutColor ? stdoutColor.level : 0; object.level = options.level === undefined ? colorLevel : options.level; }; class ChalkClass { constructor(options) { // eslint-disable-next-line no-constructor-return return chalkFactory(options); } } const chalkFactory = options => { const chalk = {}; applyOptions(chalk, options); chalk.template = (...arguments_) => chalkTag(chalk.template, ...arguments_); Object.setPrototypeOf(chalk, Chalk.prototype); Object.setPrototypeOf(chalk.template, chalk); chalk.template.constructor = () => { throw new Error('`chalk.constructor()` is deprecated. Use `new chalk.Instance()` instead.'); }; chalk.template.Instance = ChalkClass; return chalk.template; }; function Chalk(options) { return chalkFactory(options); } for (const [styleName, style] of Object.entries(ansiStyles)) { styles[styleName] = { get() { const builder = createBuilder(this, createStyler(style.open, style.close, this._styler), this._isEmpty); Object.defineProperty(this, styleName, {value: builder}); return builder; } }; } styles.visible = { get() { const builder = createBuilder(this, this._styler, true); Object.defineProperty(this, 'visible', {value: builder}); return builder; } }; const usedModels = ['rgb', 'hex', 'keyword', 'hsl', 'hsv', 'hwb', 'ansi', 'ansi256']; for (const model of usedModels) { styles[model] = { get() { const {level} = this; return function (...arguments_) { const styler = createStyler(ansiStyles.color[levelMapping[level]][model](...arguments_), ansiStyles.color.close, this._styler); return createBuilder(this, styler, this._isEmpty); }; } }; } for (const model of usedModels) { const bgModel = 'bg' + model[0].toUpperCase() + model.slice(1); styles[bgModel] = { get() { const {level} = this; return function (...arguments_) { const styler = createStyler(ansiStyles.bgColor[levelMapping[level]][model](...arguments_), ansiStyles.bgColor.close, this._styler); return createBuilder(this, styler, this._isEmpty); }; } }; } const proto = Object.defineProperties(() => {}, { ...styles, level: { enumerable: true, get() { return this._generator.level; }, set(level) { this._generator.level = level; } } }); const createStyler = (open, close, parent) => { let openAll; let closeAll; if (parent === undefined) { openAll = open; closeAll = close; } else { openAll = parent.openAll + open; closeAll = close + parent.closeAll; } return { open, close, openAll, closeAll, parent }; }; const createBuilder = (self, _styler, _isEmpty) => { const builder = (...arguments_) => { if (isArray(arguments_[0]) && isArray(arguments_[0].raw)) { // Called as a template literal, for example: chalk.red`2 + 3 = {bold ${2+3}}` return applyStyle(builder, chalkTag(builder, ...arguments_)); } // Single argument is hot path, implicit coercion is faster than anything // eslint-disable-next-line no-implicit-coercion return applyStyle(builder, (arguments_.length === 1) ? ('' + arguments_[0]) : arguments_.join(' ')); }; // We alter the prototype because we must return a function, but there is // no way to create a function with a different prototype Object.setPrototypeOf(builder, proto); builder._generator = self; builder._styler = _styler; builder._isEmpty = _isEmpty; return builder; }; const applyStyle = (self, string) => { if (self.level <= 0 || !string) { return self._isEmpty ? '' : string; } let styler = self._styler; if (styler === undefined) { return string; } const {openAll, closeAll} = styler; if (string.indexOf('\u001B') !== -1) { while (styler !== undefined) { // Replace any instances already present with a re-opening code // otherwise only the part of the string until said closing code // will be colored, and the rest will simply be 'plain'. string = stringReplaceAll(string, styler.close, styler.open); styler = styler.parent; } } // We can move both next actions out of loop, because remaining actions in loop won't have // any/visible effect on parts we add here. Close the styling before a linebreak and reopen // after next line to fix a bleed issue on macOS: https://github.com/chalk/chalk/pull/92 const lfIndex = string.indexOf('\n'); if (lfIndex !== -1) { string = stringEncaseCRLFWithFirstIndex(string, closeAll, openAll, lfIndex); } return openAll + string + closeAll; }; let template; const chalkTag = (chalk, ...strings) => { const [firstString] = strings; if (!isArray(firstString) || !isArray(firstString.raw)) { // If chalk() was called by itself or with a string, // return the string itself as a string. return strings.join(' '); } const arguments_ = strings.slice(1); const parts = [firstString.raw[0]]; for (let i = 1; i < firstString.length; i++) { parts.push( String(arguments_[i - 1]).replace(/[{}\\]/g, '\\$&'), String(firstString.raw[i]) ); } if (template === undefined) { template = __webpack_require__(/*! ./templates */ "./node_modules/chalk/source/templates.js"); } return template(chalk, parts.join('')); }; Object.defineProperties(Chalk.prototype, styles); const chalk = Chalk(); // eslint-disable-line new-cap chalk.supportsColor = stdoutColor; chalk.stderr = Chalk({level: stderrColor ? stderrColor.level : 0}); // eslint-disable-line new-cap chalk.stderr.supportsColor = stderrColor; module.exports = chalk; /***/ }), /***/ "./node_modules/chalk/source/templates.js": /*!************************************************!*\ !*** ./node_modules/chalk/source/templates.js ***! \************************************************/ /***/ ((module) => { "use strict"; const TEMPLATE_REGEX = /(?:\\(u(?:[a-f\d]{4}|\{[a-f\d]{1,6}\})|x[a-f\d]{2}|.))|(?:\{(~)?(\w+(?:\([^)]*\))?(?:\.\w+(?:\([^)]*\))?)*)(?:[ \t]|(?=\r?\n)))|(\})|((?:.|[\r\n\f])+?)/gi; const STYLE_REGEX = /(?:^|\.)(\w+)(?:\(([^)]*)\))?/g; const STRING_REGEX = /^(['"])((?:\\.|(?!\1)[^\\])*)\1$/; const ESCAPE_REGEX = /\\(u(?:[a-f\d]{4}|{[a-f\d]{1,6}})|x[a-f\d]{2}|.)|([^\\])/gi; const ESCAPES = new Map([ ['n', '\n'], ['r', '\r'], ['t', '\t'], ['b', '\b'], ['f', '\f'], ['v', '\v'], ['0', '\0'], ['\\', '\\'], ['e', '\u001B'], ['a', '\u0007'] ]); function unescape(c) { const u = c[0] === 'u'; const bracket = c[1] === '{'; if ((u && !bracket && c.length === 5) || (c[0] === 'x' && c.length === 3)) { return String.fromCharCode(parseInt(c.slice(1), 16)); } if (u && bracket) { return String.fromCodePoint(parseInt(c.slice(2, -1), 16)); } return ESCAPES.get(c) || c; } function parseArguments(name, arguments_) { const results = []; const chunks = arguments_.trim().split(/\s*,\s*/g); let matches; for (const chunk of chunks) { const number = Number(chunk); if (!Number.isNaN(number)) { results.push(number); } else if ((matches = chunk.match(STRING_REGEX))) { results.push(matches[2].replace(ESCAPE_REGEX, (m, escape, character) => escape ? unescape(escape) : character)); } else { throw new Error(`Invalid Chalk template style argument: ${chunk} (in style '${name}')`); } } return results; } function parseStyle(style) { STYLE_REGEX.lastIndex = 0; const results = []; let matches; while ((matches = STYLE_REGEX.exec(style)) !== null) { const name = matches[1]; if (matches[2]) { const args = parseArguments(name, matches[2]); results.push([name].concat(args)); } else { results.push([name]); } } return results; } function buildStyle(chalk, styles) { const enabled = {}; for (const layer of styles) { for (const style of layer.styles) { enabled[style[0]] = layer.inverse ? null : style.slice(1); } } let current = chalk; for (const [styleName, styles] of Object.entries(enabled)) { if (!Array.isArray(styles)) { continue; } if (!(styleName in current)) { throw new Error(`Unknown Chalk style: ${styleName}`); } current = styles.length > 0 ? current[styleName](...styles) : current[styleName]; } return current; } module.exports = (chalk, temporary) => { const styles = []; const chunks = []; let chunk = []; // eslint-disable-next-line max-params temporary.replace(TEMPLATE_REGEX, (m, escapeCharacter, inverse, style, close, character) => { if (escapeCharacter) { chunk.push(unescape(escapeCharacter)); } else if (style) { const string = chunk.join(''); chunk = []; chunks.push(styles.length === 0 ? string : buildStyle(chalk, styles)(string)); styles.push({inverse, styles: parseStyle(style)}); } else if (close) { if (styles.length === 0) { throw new Error('Found extraneous } in Chalk template literal'); } chunks.push(buildStyle(chalk, styles)(chunk.join(''))); chunk = []; styles.pop(); } else { chunk.push(character); } }); chunks.push(chunk.join('')); if (styles.length > 0) { const errMessage = `Chalk template literal is missing ${styles.length} closing bracket${styles.length === 1 ? '' : 's'} (\`}\`)`; throw new Error(errMessage); } return chunks.join(''); }; /***/ }), /***/ "./node_modules/chalk/source/util.js": /*!*******************************************!*\ !*** ./node_modules/chalk/source/util.js ***! \*******************************************/ /***/ ((module) => { "use strict"; const stringReplaceAll = (string, substring, replacer) => { let index = string.indexOf(substring); if (index === -1) { return string; } const substringLength = substring.length; let endIndex = 0; let returnValue = ''; do { returnValue += string.substr(endIndex, index - endIndex) + substring + replacer; endIndex = index + substringLength; index = string.indexOf(substring, endIndex); } while (index !== -1); returnValue += string.substr(endIndex); return returnValue; }; const stringEncaseCRLFWithFirstIndex = (string, prefix, postfix, index) => { let endIndex = 0; let returnValue = ''; do { const gotCR = string[index - 1] === '\r'; returnValue += string.substr(endIndex, (gotCR ? index - 1 : index) - endIndex) + prefix + (gotCR ? '\r\n' : '\n') + postfix; endIndex = index + 1; index = string.indexOf('\n', endIndex); } while (index !== -1); returnValue += string.substr(endIndex); return returnValue; }; module.exports = { stringReplaceAll, stringEncaseCRLFWithFirstIndex }; /***/ }), /***/ "./node_modules/color-convert/conversions.js": /*!***************************************************!*\ !*** ./node_modules/color-convert/conversions.js ***! \***************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { /* MIT license */ /* eslint-disable no-mixed-operators */ const cssKeywords = __webpack_require__(/*! color-name */ "./node_modules/color-name/index.js"); // NOTE: conversions should only return primitive values (i.e. arrays, or // values that give correct `typeof` results). // do not use box values types (i.e. Number(), String(), etc.) const reverseKeywords = {}; for (const key of Object.keys(cssKeywords)) { reverseKeywords[cssKeywords[key]] = key; } const convert = { rgb: {channels: 3, labels: 'rgb'}, hsl: {channels: 3, labels: 'hsl'}, hsv: {channels: 3, labels: 'hsv'}, hwb: {channels: 3, labels: 'hwb'}, cmyk: {channels: 4, labels: 'cmyk'}, xyz: {channels: 3, labels: 'xyz'}, lab: {channels: 3, labels: 'lab'}, lch: {channels: 3, labels: 'lch'}, hex: {channels: 1, labels: ['hex']}, keyword: {channels: 1, labels: ['keyword']}, ansi16: {channels: 1, labels: ['ansi16']}, ansi256: {channels: 1, labels: ['ansi256']}, hcg: {channels: 3, labels: ['h', 'c', 'g']}, apple: {channels: 3, labels: ['r16', 'g16', 'b16']}, gray: {channels: 1, labels: ['gray']} }; module.exports = convert; // Hide .channels and .labels properties for (const model of Object.keys(convert)) { if (!('channels' in convert[model])) { throw new Error('missing channels property: ' + model); } if (!('labels' in convert[model])) { throw new Error('missing channel labels property: ' + model); } if (convert[model].labels.length !== convert[model].channels) { throw new Error('channel and label counts mismatch: ' + model); } const {channels, labels} = convert[model]; delete convert[model].channels; delete convert[model].labels; Object.defineProperty(convert[model], 'channels', {value: channels}); Object.defineProperty(convert[model], 'labels', {value: labels}); } convert.rgb.hsl = function (rgb) { const r = rgb[0] / 255; const g = rgb[1] / 255; const b = rgb[2] / 255; const min = Math.min(r, g, b); const max = Math.max(r, g, b); const delta = max - min; let h; let s; if (max === min) { h = 0; } else if (r === max) { h = (g - b) / delta; } else if (g === max) { h = 2 + (b - r) / delta; } else if (b === max) { h = 4 + (r - g) / delta; } h = Math.min(h * 60, 360); if (h < 0) { h += 360; } const l = (min + max) / 2; if (max === min) { s = 0; } else if (l <= 0.5) { s = delta / (max + min); } else { s = delta / (2 - max - min); } return [h, s * 100, l * 100]; }; convert.rgb.hsv = function (rgb) { let rdif; let gdif; let bdif; let h; let s; const r = rgb[0] / 255; const g = rgb[1] / 255; const b = rgb[2] / 255; const v = Math.max(r, g, b); const diff = v - Math.min(r, g, b); const diffc = function (c) { return (v - c) / 6 / diff + 1 / 2; }; if (diff === 0) { h = 0; s = 0; } else { s = diff / v; rdif = diffc(r); gdif = diffc(g); bdif = diffc(b); if (r === v) { h = bdif - gdif; } else if (g === v) { h = (1 / 3) + rdif - bdif; } else if (b === v) { h = (2 / 3) + gdif - rdif; } if (h < 0) { h += 1; } else if (h > 1) { h -= 1; } } return [ h * 360, s * 100, v * 100 ]; }; convert.rgb.hwb = function (rgb) { const r = rgb[0]; const g = rgb[1]; let b = rgb[2]; const h = convert.rgb.hsl(rgb)[0]; const w = 1 / 255 * Math.min(r, Math.min(g, b)); b = 1 - 1 / 255 * Math.max(r, Math.max(g, b)); return [h, w * 100, b * 100]; }; convert.rgb.cmyk = function (rgb) { const r = rgb[0] / 255; const g = rgb[1] / 255; const b = rgb[2] / 255; const k = Math.min(1 - r, 1 - g, 1 - b); const c = (1 - r - k) / (1 - k) || 0; const m = (1 - g - k) / (1 - k) || 0; const y = (1 - b - k) / (1 - k) || 0; return [c * 100, m * 100, y * 100, k * 100]; }; function comparativeDistance(x, y) { /* See https://en.m.wikipedia.org/wiki/Euclidean_distance#Squared_Euclidean_distance */ return ( ((x[0] - y[0]) ** 2) + ((x[1] - y[1]) ** 2) + ((x[2] - y[2]) ** 2) ); } convert.rgb.keyword = function (rgb) { const reversed = reverseKeywords[rgb]; if (reversed) { return reversed; } let currentClosestDistance = Infinity; let currentClosestKeyword; for (const keyword of Object.keys(cssKeywords)) { const value = cssKeywords[keyword]; // Compute comparative distance const distance = comparativeDistance(rgb, value); // Check if its less, if so set as closest if (distance < currentClosestDistance) { currentClosestDistance = distance; currentClosestKeyword = keyword; } } return currentClosestKeyword; }; convert.keyword.rgb = function (keyword) { return cssKeywords[keyword]; }; convert.rgb.xyz = function (rgb) { let r = rgb[0] / 255; let g = rgb[1] / 255; let b = rgb[2] / 255; // Assume sRGB r = r > 0.04045 ? (((r + 0.055) / 1.055) ** 2.4) : (r / 12.92); g = g > 0.04045 ? (((g + 0.055) / 1.055) ** 2.4) : (g / 12.92); b = b > 0.04045 ? (((b + 0.055) / 1.055) ** 2.4) : (b / 12.92); const x = (r * 0.4124) + (g * 0.3576) + (b * 0.1805); const y = (r * 0.2126) + (g * 0.7152) + (b * 0.0722); const z = (r * 0.0193) + (g * 0.1192) + (b * 0.9505); return [x * 100, y * 100, z * 100]; }; convert.rgb.lab = function (rgb) { const xyz = convert.rgb.xyz(rgb); let x = xyz[0]; let y = xyz[1]; let z = xyz[2]; x /= 95.047; y /= 100; z /= 108.883; x = x > 0.008856 ? (x ** (1 / 3)) : (7.787 * x) + (16 / 116); y = y > 0.008856 ? (y ** (1 / 3)) : (7.787 * y) + (16 / 116); z = z > 0.008856 ? (z ** (1 / 3)) : (7.787 * z) + (16 / 116); const l = (116 * y) - 16; const a = 500 * (x - y); const b = 200 * (y - z); return [l, a, b]; }; convert.hsl.rgb = function (hsl) { const h = hsl[0] / 360; const s = hsl[1] / 100; const l = hsl[2] / 100; let t2; let t3; let val; if (s === 0) { val = l * 255; return [val, val, val]; } if (l < 0.5) { t2 = l * (1 + s); } else { t2 = l + s - l * s; } const t1 = 2 * l - t2; const rgb = [0, 0, 0]; for (let i = 0; i < 3; i++) { t3 = h + 1 / 3 * -(i - 1); if (t3 < 0) { t3++; } if (t3 > 1) { t3--; } if (6 * t3 < 1) { val = t1 + (t2 - t1) * 6 * t3; } else if (2 * t3 < 1) { val = t2; } else if (3 * t3 < 2) { val = t1 + (t2 - t1) * (2 / 3 - t3) * 6; } else { val = t1; } rgb[i] = val * 255; } return rgb; }; convert.hsl.hsv = function (hsl) { const h = hsl[0]; let s = hsl[1] / 100; let l = hsl[2] / 100; let smin = s; const lmin = Math.max(l, 0.01); l *= 2; s *= (l <= 1) ? l : 2 - l; smin *= lmin <= 1 ? lmin : 2 - lmin; const v = (l + s) / 2; const sv = l === 0 ? (2 * smin) / (lmin + smin) : (2 * s) / (l + s); return [h, sv * 100, v * 100]; }; convert.hsv.rgb = function (hsv) { const h = hsv[0] / 60; const s = hsv[1] / 100; let v = hsv[2] / 100; const hi = Math.floor(h) % 6; const f = h - Math.floor(h); const p = 255 * v * (1 - s); const q = 255 * v * (1 - (s * f)); const t = 255 * v * (1 - (s * (1 - f))); v *= 255; switch (hi) { case 0: return [v, t, p]; case 1: return [q, v, p]; case 2: return [p, v, t]; case 3: return [p, q, v]; case 4: return [t, p, v]; case 5: return [v, p, q]; } }; convert.hsv.hsl = function (hsv) { const h = hsv[0]; const s = hsv[1] / 100; const v = hsv[2] / 100; const vmin = Math.max(v, 0.01); let sl; let l; l = (2 - s) * v; const lmin = (2 - s) * vmin; sl = s * vmin; sl /= (lmin <= 1) ? lmin : 2 - lmin; sl = sl || 0; l /= 2; return [h, sl * 100, l * 100]; }; // http://dev.w3.org/csswg/css-color/#hwb-to-rgb convert.hwb.rgb = function (hwb) { const h = hwb[0] / 360; let wh = hwb[1] / 100; let bl = hwb[2] / 100; const ratio = wh + bl; let f; // Wh + bl cant be > 1 if (ratio > 1) { wh /= ratio; bl /= ratio; } const i = Math.floor(6 * h); const v = 1 - bl; f = 6 * h - i; if ((i & 0x01) !== 0) { f = 1 - f; } const n = wh + f * (v - wh); // Linear interpolation let r; let g; let b; /* eslint-disable max-statements-per-line,no-multi-spaces */ switch (i) { default: case 6: case 0: r = v; g = n; b = wh; break; case 1: r = n; g = v; b = wh; break; case 2: r = wh; g = v; b = n; break; case 3: r = wh; g = n; b = v; break; case 4: r = n; g = wh; b = v; break; case 5: r = v; g = wh; b = n; break; } /* eslint-enable max-statements-per-line,no-multi-spaces */ return [r * 255, g * 255, b * 255]; }; convert.cmyk.rgb = function (cmyk) { const c = cmyk[0] / 100; const m = cmyk[1] / 100; const y = cmyk[2] / 100; const k = cmyk[3] / 100; const r = 1 - Math.min(1, c * (1 - k) + k); const g = 1 - Math.min(1, m * (1 - k) + k); const b = 1 - Math.min(1, y * (1 - k) + k); return [r * 255, g * 255, b * 255]; }; convert.xyz.rgb = function (xyz) { const x = xyz[0] / 100; const y = xyz[1] / 100; const z = xyz[2] / 100; let r; let g; let b; r = (x * 3.2406) + (y * -1.5372) + (z * -0.4986); g = (x * -0.9689) + (y * 1.8758) + (z * 0.0415); b = (x * 0.0557) + (y * -0.2040) + (z * 1.0570); // Assume sRGB r = r > 0.0031308 ? ((1.055 * (r ** (1.0 / 2.4))) - 0.055) : r * 12.92; g = g > 0.0031308 ? ((1.055 * (g ** (1.0 / 2.4))) - 0.055) : g * 12.92; b = b > 0.0031308 ? ((1.055 * (b ** (1.0 / 2.4))) - 0.055) : b * 12.92; r = Math.min(Math.max(0, r), 1); g = Math.min(Math.max(0, g), 1); b = Math.min(Math.max(0, b), 1); return [r * 255, g * 255, b * 255]; }; convert.xyz.lab = function (xyz) { let x = xyz[0]; let y = xyz[1]; let z = xyz[2]; x /= 95.047; y /= 100; z /= 108.883; x = x > 0.008856 ? (x ** (1 / 3)) : (7.787 * x) + (16 / 116); y = y > 0.008856 ? (y ** (1 / 3)) : (7.787 * y) + (16 / 116); z = z > 0.008856 ? (z ** (1 / 3)) : (7.787 * z) + (16 / 116); const l = (116 * y) - 16; const a = 500 * (x - y); const b = 200 * (y - z); return [l, a, b]; }; convert.lab.xyz = function (lab) { const l = lab[0]; const a = lab[1]; const b = lab[2]; let x; let y; let z; y = (l + 16) / 116; x = a / 500 + y; z = y - b / 200; const y2 = y ** 3; const x2 = x ** 3; const z2 = z ** 3; y = y2 > 0.008856 ? y2 : (y - 16 / 116) / 7.787; x = x2 > 0.008856 ? x2 : (x - 16 / 116) / 7.787; z = z2 > 0.008856 ? z2 : (z - 16 / 116) / 7.787; x *= 95.047; y *= 100; z *= 108.883; return [x, y, z]; }; convert.lab.lch = function (lab) { const l = lab[0]; const a = lab[1]; const b = lab[2]; let h; const hr = Math.atan2(b, a); h = hr * 360 / 2 / Math.PI; if (h < 0) { h += 360; } const c = Math.sqrt(a * a + b * b); return [l, c, h]; }; convert.lch.lab = function (lch) { const l = lch[0]; const c = lch[1]; const h = lch[2]; const hr = h / 360 * 2 * Math.PI; const a = c * Math.cos(hr); const b = c * Math.sin(hr); return [l, a, b]; }; convert.rgb.ansi16 = function (args, saturation = null) { const [r, g, b] = args; let value = saturation === null ? convert.rgb.hsv(args)[2] : saturation; // Hsv -> ansi16 optimization value = Math.round(value / 50); if (value === 0) { return 30; } let ansi = 30 + ((Math.round(b / 255) << 2) | (Math.round(g / 255) << 1) | Math.round(r / 255)); if (value === 2) { ansi += 60; } return ansi; }; convert.hsv.ansi16 = function (args) { // Optimization here; we already know the value and don't need to get // it converted for us. return convert.rgb.ansi16(convert.hsv.rgb(args), args[2]); }; convert.rgb.ansi256 = function (args) { const r = args[0]; const g = args[1]; const b = args[2]; // We use the extended greyscale palette here, with the exception of // black and white. normal palette only has 4 greyscale shades. if (r === g && g === b) { if (r < 8) { return 16; } if (r > 248) { return 231; } return Math.round(((r - 8) / 247) * 24) + 232; } const ansi = 16 + (36 * Math.round(r / 255 * 5)) + (6 * Math.round(g / 255 * 5)) + Math.round(b / 255 * 5); return ansi; }; convert.ansi16.rgb = function (args) { let color = args % 10; // Handle greyscale if (color === 0 || color === 7) { if (args > 50) { color += 3.5; } color = color / 10.5 * 255; return [color, color, color]; } const mult = (~~(args > 50) + 1) * 0.5; const r = ((color & 1) * mult) * 255; const g = (((color >> 1) & 1) * mult) * 255; const b = (((color >> 2) & 1) * mult) * 255; return [r, g, b]; }; convert.ansi256.rgb = function (args) { // Handle greyscale if (args >= 232) { const c = (args - 232) * 10 + 8; return [c, c, c]; } args -= 16; let rem; const r = Math.floor(args / 36) / 5 * 255; const g = Math.floor((rem = args % 36) / 6) / 5 * 255; const b = (rem % 6) / 5 * 255; return [r, g, b]; }; convert.rgb.hex = function (args) { const integer = ((Math.round(args[0]) & 0xFF) << 16) + ((Math.round(args[1]) & 0xFF) << 8) + (Math.round(args[2]) & 0xFF); const string = integer.toString(16).toUpperCase(); return '000000'.substring(string.length) + string; }; convert.hex.rgb = function (args) { const match = args.toString(16).match(/[a-f0-9]{6}|[a-f0-9]{3}/i); if (!match) { return [0, 0, 0]; } let colorString = match[0]; if (match[0].length === 3) { colorString = colorString.split('').map(char => { return char + char; }).join(''); } const integer = parseInt(colorString, 16); const r = (integer >> 16) & 0xFF; const g = (integer >> 8) & 0xFF; const b = integer & 0xFF; return [r, g, b]; }; convert.rgb.hcg = function (rgb) { const r = rgb[0] / 255; const g = rgb[1] / 255; const b = rgb[2] / 255; const max = Math.max(Math.max(r, g), b); const min = Math.min(Math.min(r, g), b); const chroma = (max - min); let grayscale; let hue; if (chroma < 1) { grayscale = min / (1 - chroma); } else { grayscale = 0; } if (chroma <= 0) { hue = 0; } else if (max === r) { hue = ((g - b) / chroma) % 6; } else if (max === g) { hue = 2 + (b - r) / chroma; } else { hue = 4 + (r - g) / chroma; } hue /= 6; hue %= 1; return [hue * 360, chroma * 100, grayscale * 100]; }; convert.hsl.hcg = function (hsl) { const s = hsl[1] / 100; const l = hsl[2] / 100; const c = l < 0.5 ? (2.0 * s * l) : (2.0 * s * (1.0 - l)); let f = 0; if (c < 1.0) { f = (l - 0.5 * c) / (1.0 - c); } return [hsl[0], c * 100, f * 100]; }; convert.hsv.hcg = function (hsv) { const s = hsv[1] / 100; const v = hsv[2] / 100; const c = s * v; let f = 0; if (c < 1.0) { f = (v - c) / (1 - c); } return [hsv[0], c * 100, f * 100]; }; convert.hcg.rgb = function (hcg) { const h = hcg[0] / 360; const c = hcg[1] / 100; const g = hcg[2] / 100; if (c === 0.0) { return [g * 255, g * 255, g * 255]; } const pure = [0, 0, 0]; const hi = (h % 1) * 6; const v = hi % 1; const w = 1 - v; let mg = 0; /* eslint-disable max-statements-per-line */ switch (Math.floor(hi)) { case 0: pure[0] = 1; pure[1] = v; pure[2] = 0; break; case 1: pure[0] = w; pure[1] = 1; pure[2] = 0; break; case 2: pure[0] = 0; pure[1] = 1; pure[2] = v; break; case 3: pure[0] = 0; pure[1] = w; pure[2] = 1; break; case 4: pure[0] = v; pure[1] = 0; pure[2] = 1; break; default: pure[0] = 1; pure[1] = 0; pure[2] = w; } /* eslint-enable max-statements-per-line */ mg = (1.0 - c) * g; return [ (c * pure[0] + mg) * 255, (c * pure[1] + mg) * 255, (c * pure[2] + mg) * 255 ]; }; convert.hcg.hsv = function (hcg) { const c = hcg[1] / 100; const g = hcg[2] / 100; const v = c + g * (1.0 - c); let f = 0; if (v > 0.0) { f = c / v; } return [hcg[0], f * 100, v * 100]; }; convert.hcg.hsl = function (hcg) { const c = hcg[1] / 100; const g = hcg[2] / 100; const l = g * (1.0 - c) + 0.5 * c; let s = 0; if (l > 0.0 && l < 0.5) { s = c / (2 * l); } else if (l >= 0.5 && l < 1.0) { s = c / (2 * (1 - l)); } return [hcg[0], s * 100, l * 100]; }; convert.hcg.hwb = function (hcg) { const c = hcg[1] / 100; const g = hcg[2] / 100; const v = c + g * (1.0 - c); return [hcg[0], (v - c) * 100, (1 - v) * 100]; }; convert.hwb.hcg = function (hwb) { const w = hwb[1] / 100; const b = hwb[2] / 100; const v = 1 - b; const c = v - w; let g = 0; if (c < 1) { g = (v - c) / (1 - c); } return [hwb[0], c * 100, g * 100]; }; convert.apple.rgb = function (apple) { return [(apple[0] / 65535) * 255, (apple[1] / 65535) * 255, (apple[2] / 65535) * 255]; }; convert.rgb.apple = function (rgb) { return [(rgb[0] / 255) * 65535, (rgb[1] / 255) * 65535, (rgb[2] / 255) * 65535]; }; convert.gray.rgb = function (args) { return [args[0] / 100 * 255, args[0] / 100 * 255, args[0] / 100 * 255]; }; convert.gray.hsl = function (args) { return [0, 0, args[0]]; }; convert.gray.hsv = convert.gray.hsl; convert.gray.hwb = function (gray) { return [0, 100, gray[0]]; }; convert.gray.cmyk = function (gray) { return [0, 0, 0, gray[0]]; }; convert.gray.lab = function (gray) { return [gray[0], 0, 0]; }; convert.gray.hex = function (gray) { const val = Math.round(gray[0] / 100 * 255) & 0xFF; const integer = (val << 16) + (val << 8) + val; const string = integer.toString(16).toUpperCase(); return '000000'.substring(string.length) + string; }; convert.rgb.gray = function (rgb) { const val = (rgb[0] + rgb[1] + rgb[2]) / 3; return [val / 255 * 100]; }; /***/ }), /***/ "./node_modules/color-convert/index.js": /*!*********************************************!*\ !*** ./node_modules/color-convert/index.js ***! \*********************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { const conversions = __webpack_require__(/*! ./conversions */ "./node_modules/color-convert/conversions.js"); const route = __webpack_require__(/*! ./route */ "./node_modules/color-convert/route.js"); const convert = {}; const models = Object.keys(conversions); function wrapRaw(fn) { const wrappedFn = function (...args) { const arg0 = args[0]; if (arg0 === undefined || arg0 === null) { return arg0; } if (arg0.length > 1) { args = arg0; } return fn(args); }; // Preserve .conversion property if there is one if ('conversion' in fn) { wrappedFn.conversion = fn.conversion; } return wrappedFn; } function wrapRounded(fn) { const wrappedFn = function (...args) { const arg0 = args[0]; if (arg0 === undefined || arg0 === null) { return arg0; } if (arg0.length > 1) { args = arg0; } const result = fn(args); // We're assuming the result is an array here. // see notice in conversions.js; don't use box types // in conversion functions. if (typeof result === 'object') { for (let len = result.length, i = 0; i < len; i++) { result[i] = Math.round(result[i]); } } return result; }; // Preserve .conversion property if there is one if ('conversion' in fn) { wrappedFn.conversion = fn.conversion; } return wrappedFn; } models.forEach(fromModel => { convert[fromModel] = {}; Object.defineProperty(convert[fromModel], 'channels', {value: conversions[fromModel].channels}); Object.defineProperty(convert[fromModel], 'labels', {value: conversions[fromModel].labels}); const routes = route(fromModel); const routeModels = Object.keys(routes); routeModels.forEach(toModel => { const fn = routes[toModel]; convert[fromModel][toModel] = wrapRounded(fn); convert[fromModel][toModel].raw = wrapRaw(fn); }); }); module.exports = convert; /***/ }), /***/ "./node_modules/color-convert/route.js": /*!*********************************************!*\ !*** ./node_modules/color-convert/route.js ***! \*********************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { const conversions = __webpack_require__(/*! ./conversions */ "./node_modules/color-convert/conversions.js"); /* This function routes a model to all other models. all functions that are routed have a property `.conversion` attached to the returned synthetic function. This property is an array of strings, each with the steps in between the 'from' and 'to' color models (inclusive). conversions that are not possible simply are not included. */ function buildGraph() { const graph = {}; // https://jsperf.com/object-keys-vs-for-in-with-closure/3 const models = Object.keys(conversions); for (let len = models.length, i = 0; i < len; i++) { graph[models[i]] = { // http://jsperf.com/1-vs-infinity // micro-opt, but this is simple. distance: -1, parent: null }; } return graph; } // https://en.wikipedia.org/wiki/Breadth-first_search function deriveBFS(fromModel) { const graph = buildGraph(); const queue = [fromModel]; // Unshift -> queue -> pop graph[fromModel].distance = 0; while (queue.length) { const current = queue.pop(); const adjacents = Object.keys(conversions[current]); for (let len = adjacents.length, i = 0; i < len; i++) { const adjacent = adjacents[i]; const node = graph[adjacent]; if (node.distance === -1) { node.distance = graph[current].distance + 1; node.parent = current; queue.unshift(adjacent); } } } return graph; } function link(from, to) { return function (args) { return to(from(args)); }; } function wrapConversion(toModel, graph) { const path = [graph[toModel].parent, toModel]; let fn = conversions[graph[toModel].parent][toModel]; let cur = graph[toModel].parent; while (graph[cur].parent) { path.unshift(graph[cur].parent); fn = link(conversions[graph[cur].parent][cur], fn); cur = graph[cur].parent; } fn.conversion = path; return fn; } module.exports = function (fromModel) { const graph = deriveBFS(fromModel); const conversion = {}; const models = Object.keys(graph); for (let len = models.length, i = 0; i < len; i++) { const toModel = models[i]; const node = graph[toModel]; if (node.parent === null) { // No possible conversion, or this node is the source model. continue; } conversion[toModel] = wrapConversion(toModel, graph); } return conversion; }; /***/ }), /***/ "./node_modules/color-name/index.js": /*!******************************************!*\ !*** ./node_modules/color-name/index.js ***! \******************************************/ /***/ ((module) => { "use strict"; module.exports = { "aliceblue": [240, 248, 255], "antiquewhite": [250, 235, 215], "aqua": [0, 255, 255], "aquamarine": [127, 255, 212], "azure": [240, 255, 255], "beige": [245, 245, 220], "bisque": [255, 228, 196], "black": [0, 0, 0], "blanchedalmond": [255, 235, 205], "blue": [0, 0, 255], "blueviolet": [138, 43, 226], "brown": [165, 42, 42], "burlywood": [222, 184, 135], "cadetblue": [95, 158, 160], "chartreuse": [127, 255, 0], "chocolate": [210, 105, 30], "coral": [255, 127, 80], "cornflowerblue": [100, 149, 237], "cornsilk": [255, 248, 220], "crimson": [220, 20, 60], "cyan": [0, 255, 255], "darkblue": [0, 0, 139], "darkcyan": [0, 139, 139], "darkgoldenrod": [184, 134, 11], "darkgray": [169, 169, 169], "darkgreen": [0, 100, 0], "darkgrey": [169, 169, 169], "darkkhaki": [189, 183, 107], "darkmagenta": [139, 0, 139], "darkolivegreen": [85, 107, 47], "darkorange": [255, 140, 0], "darkorchid": [153, 50, 204], "darkred": [139, 0, 0], "darksalmon": [233, 150, 122], "darkseagreen": [143, 188, 143], "darkslateblue": [72, 61, 139], "darkslategray": [47, 79, 79], "darkslategrey": [47, 79, 79], "darkturquoise": [0, 206, 209], "darkviolet": [148, 0, 211], "deeppink": [255, 20, 147], "deepskyblue": [0, 191, 255], "dimgray": [105, 105, 105], "dimgrey": [105, 105, 105], "dodgerblue": [30, 144, 255], "firebrick": [178, 34, 34], "floralwhite": [255, 250, 240], "forestgreen": [34, 139, 34], "fuchsia": [255, 0, 255], "gainsboro": [220, 220, 220], "ghostwhite": [248, 248, 255], "gold": [255, 215, 0], "goldenrod": [218, 165, 32], "gray": [128, 128, 128], "green": [0, 128, 0], "greenyellow": [173, 255, 47], "grey": [128, 128, 128], "honeydew": [240, 255, 240], "hotpink": [255, 105, 180], "indianred": [205, 92, 92], "indigo": [75, 0, 130], "ivory": [255, 255, 240], "khaki": [240, 230, 140], "lavender": [230, 230, 250], "lavenderblush": [255, 240, 245], "lawngreen": [124, 252, 0], "lemonchiffon": [255, 250, 205], "lightblue": [173, 216, 230], "lightcoral": [240, 128, 128], "lightcyan": [224, 255, 255], "lightgoldenrodyellow": [250, 250, 210], "lightgray": [211, 211, 211], "lightgreen": [144, 238, 144], "lightgrey": [211, 211, 211], "lightpink": [255, 182, 193], "lightsalmon": [255, 160, 122], "lightseagreen": [32, 178, 170], "lightskyblue": [135, 206, 250], "lightslategray": [119, 136, 153], "lightslategrey": [119, 136, 153], "lightsteelblue": [176, 196, 222], "lightyellow": [255, 255, 224], "lime": [0, 255, 0], "limegreen": [50, 205, 50], "linen": [250, 240, 230], "magenta": [255, 0, 255], "maroon": [128, 0, 0], "mediumaquamarine": [102, 205, 170], "mediumblue": [0, 0, 205], "mediumorchid": [186, 85, 211], "mediumpurple": [147, 112, 219], "mediumseagreen": [60, 179, 113], "mediumslateblue": [123, 104, 238], "mediumspringgreen": [0, 250, 154], "mediumturquoise": [72, 209, 204], "mediumvioletred": [199, 21, 133], "midnightblue": [25, 25, 112], "mintcream": [245, 255, 250], "mistyrose": [255, 228, 225], "moccasin": [255, 228, 181], "navajowhite": [255, 222, 173], "navy": [0, 0, 128], "oldlace": [253, 245, 230], "olive": [128, 128, 0], "olivedrab": [107, 142, 35], "orange": [255, 165, 0], "orangered": [255, 69, 0], "orchid": [218, 112, 214], "palegoldenrod": [238, 232, 170], "palegreen": [152, 251, 152], "paleturquoise": [175, 238, 238], "palevioletred": [219, 112, 147], "papayawhip": [255, 239, 213], "peachpuff": [255, 218, 185], "peru": [205, 133, 63], "pink": [255, 192, 203], "plum": [221, 160, 221], "powderblue": [176, 224, 230], "purple": [128, 0, 128], "rebeccapurple": [102, 51, 153], "red": [255, 0, 0], "rosybrown": [188, 143, 143], "royalblue": [65, 105, 225], "saddlebrown": [139, 69, 19], "salmon": [250, 128, 114], "sandybrown": [244, 164, 96], "seagreen": [46, 139, 87], "seashell": [255, 245, 238], "sienna": [160, 82, 45], "silver": [192, 192, 192], "skyblue": [135, 206, 235], "slateblue": [106, 90, 205], "slategray": [112, 128, 144], "slategrey": [112, 128, 144], "snow": [255, 250, 250], "springgreen": [0, 255, 127], "steelblue": [70, 130, 180], "tan": [210, 180, 140], "teal": [0, 128, 128], "thistle": [216, 191, 216], "tomato": [255, 99, 71], "turquoise": [64, 224, 208], "violet": [238, 130, 238], "wheat": [245, 222, 179], "white": [255, 255, 255], "whitesmoke": [245, 245, 245], "yellow": [255, 255, 0], "yellowgreen": [154, 205, 50] }; /***/ }), /***/ "./node_modules/combined-stream/lib/combined_stream.js": /*!*************************************************************!*\ !*** ./node_modules/combined-stream/lib/combined_stream.js ***! \*************************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var util = __webpack_require__(/*! util */ "util"); var Stream = (__webpack_require__(/*! stream */ "stream").Stream); var DelayedStream = __webpack_require__(/*! delayed-stream */ "./node_modules/delayed-stream/lib/delayed_stream.js"); 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); }; /***/ }), /***/ "./node_modules/concat-map/index.js": /*!******************************************!*\ !*** ./node_modules/concat-map/index.js ***! \******************************************/ /***/ ((module) => { module.exports = function (xs, fn) { var res = []; for (var i = 0; i < xs.length; i++) { var x = fn(xs[i], i); if (isArray(x)) res.push.apply(res, x); else res.push(x); } return res; }; var isArray = Array.isArray || function (xs) { return Object.prototype.toString.call(xs) === '[object Array]'; }; /***/ }), /***/ "./node_modules/content-type/index.js": /*!********************************************!*\ !*** ./node_modules/content-type/index.js ***! \********************************************/ /***/ ((__unused_webpack_module, exports) => { "use strict"; /*! * content-type * Copyright(c) 2015 Douglas Christopher Wilson * MIT Licensed */ /** * RegExp to match *( ";" parameter ) in RFC 7231 sec 3.1.1.1 * * parameter = token "=" ( token / quoted-string ) * token = 1*tchar * tchar = "!" / "#" / "$" / "%" / "&" / "'" / "*" * / "+" / "-" / "." / "^" / "_" / "`" / "|" / "~" * / DIGIT / ALPHA * ; any VCHAR, except delimiters * quoted-string = DQUOTE *( qdtext / quoted-pair ) DQUOTE * qdtext = HTAB / SP / %x21 / %x23-5B / %x5D-7E / obs-text * obs-text = %x80-FF * quoted-pair = "\" ( HTAB / SP / VCHAR / obs-text ) */ var PARAM_REGEXP = /; *([!#$%&'*+.^_`|~0-9A-Za-z-]+) *= *("(?:[\u000b\u0020\u0021\u0023-\u005b\u005d-\u007e\u0080-\u00ff]|\\[\u000b\u0020-\u00ff])*"|[!#$%&'*+.^_`|~0-9A-Za-z-]+) */g // eslint-disable-line no-control-regex var TEXT_REGEXP = /^[\u000b\u0020-\u007e\u0080-\u00ff]+$/ // eslint-disable-line no-control-regex var TOKEN_REGEXP = /^[!#$%&'*+.^_`|~0-9A-Za-z-]+$/ /** * RegExp to match quoted-pair in RFC 7230 sec 3.2.6 * * quoted-pair = "\" ( HTAB / SP / VCHAR / obs-text ) * obs-text = %x80-FF */ var QESC_REGEXP = /\\([\u000b\u0020-\u00ff])/g // eslint-disable-line no-control-regex /** * RegExp to match chars that must be quoted-pair in RFC 7230 sec 3.2.6 */ var QUOTE_REGEXP = /([\\"])/g /** * RegExp to match type in RFC 7231 sec 3.1.1.1 * * media-type = type "/" subtype * type = token * subtype = token */ var TYPE_REGEXP = /^[!#$%&'*+.^_`|~0-9A-Za-z-]+\/[!#$%&'*+.^_`|~0-9A-Za-z-]+$/ /** * Module exports. * @public */ exports.format = format exports.parse = parse /** * Format object to media type. * * @param {object} obj * @return {string} * @public */ function format (obj) { if (!obj || typeof obj !== 'object') { throw new TypeError('argument obj is required') } var parameters = obj.parameters var type = obj.type if (!type || !TYPE_REGEXP.test(type)) { throw new TypeError('invalid type') } var string = type // append parameters if (parameters && typeof parameters === 'object') { var param var params = Object.keys(parameters).sort() for (var i = 0; i < params.length; i++) { param = params[i] if (!TOKEN_REGEXP.test(param)) { throw new TypeError('invalid parameter name') } string += '; ' + param + '=' + qstring(parameters[param]) } } return string } /** * Parse media type to object. * * @param {string|object} string * @return {Object} * @public */ function parse (string) { if (!string) { throw new TypeError('argument string is required') } // support req/res-like objects as argument var header = typeof string === 'object' ? getcontenttype(string) : string if (typeof header !== 'string') { throw new TypeError('argument string is required to be a string') } var index = header.indexOf(';') var type = index !== -1 ? header.slice(0, index).trim() : header.trim() if (!TYPE_REGEXP.test(type)) { throw new TypeError('invalid media type') } var obj = new ContentType(type.toLowerCase()) // parse parameters if (index !== -1) { var key var match var value PARAM_REGEXP.lastIndex = index while ((match = PARAM_REGEXP.exec(header))) { if (match.index !== index) { throw new TypeError('invalid parameter format') } index += match[0].length key = match[1].toLowerCase() value = match[2] if (value.charCodeAt(0) === 0x22 /* " */) { // remove quotes value = value.slice(1, -1) // remove escapes if (value.indexOf('\\') !== -1) { value = value.replace(QESC_REGEXP, '$1') } } obj.parameters[key] = value } if (index !== header.length) { throw new TypeError('invalid parameter format') } } return obj } /** * Get content-type from req/res objects. * * @param {object} * @return {Object} * @private */ function getcontenttype (obj) { var header if (typeof obj.getHeader === 'function') { // res-like header = obj.getHeader('content-type') } else if (typeof obj.headers === 'object') { // req-like header = obj.headers && obj.headers['content-type'] } if (typeof header !== 'string') { throw new TypeError('content-type header is missing from object') } return header } /** * Quote a string if necessary. * * @param {string} val * @return {string} * @private */ function qstring (val) { var str = String(val) // no need to quote tokens if (TOKEN_REGEXP.test(str)) { return str } if (str.length > 0 && !TEXT_REGEXP.test(str)) { throw new TypeError('invalid parameter value') } return '"' + str.replace(QUOTE_REGEXP, '\\$1') + '"' } /** * Class to represent a content type. * @private */ function ContentType (type) { this.parameters = Object.create(null) this.type = type } /***/ }), /***/ "./node_modules/crypto-js/aes.js": /*!***************************************!*\ !*** ./node_modules/crypto-js/aes.js ***! \***************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./enc-base64 */ "./node_modules/crypto-js/enc-base64.js"), __webpack_require__(/*! ./md5 */ "./node_modules/crypto-js/md5.js"), __webpack_require__(/*! ./evpkdf */ "./node_modules/crypto-js/evpkdf.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { (function () { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var BlockCipher = C_lib.BlockCipher; var C_algo = C.algo; // Lookup tables var SBOX = []; var INV_SBOX = []; var SUB_MIX_0 = []; var SUB_MIX_1 = []; var SUB_MIX_2 = []; var SUB_MIX_3 = []; var INV_SUB_MIX_0 = []; var INV_SUB_MIX_1 = []; var INV_SUB_MIX_2 = []; var INV_SUB_MIX_3 = []; // Compute lookup tables (function () { // Compute double table var d = []; for (var i = 0; i < 256; i++) { if (i < 128) { d[i] = i << 1; } else { d[i] = (i << 1) ^ 0x11b; } } // Walk GF(2^8) var x = 0; var xi = 0; for (var i = 0; i < 256; i++) { // Compute sbox var sx = xi ^ (xi << 1) ^ (xi << 2) ^ (xi << 3) ^ (xi << 4); sx = (sx >>> 8) ^ (sx & 0xff) ^ 0x63; SBOX[x] = sx; INV_SBOX[sx] = x; // Compute multiplication var x2 = d[x]; var x4 = d[x2]; var x8 = d[x4]; // Compute sub bytes, mix columns tables var t = (d[sx] * 0x101) ^ (sx * 0x1010100); SUB_MIX_0[x] = (t << 24) | (t >>> 8); SUB_MIX_1[x] = (t << 16) | (t >>> 16); SUB_MIX_2[x] = (t << 8) | (t >>> 24); SUB_MIX_3[x] = t; // Compute inv sub bytes, inv mix columns tables var t = (x8 * 0x1010101) ^ (x4 * 0x10001) ^ (x2 * 0x101) ^ (x * 0x1010100); INV_SUB_MIX_0[sx] = (t << 24) | (t >>> 8); INV_SUB_MIX_1[sx] = (t << 16) | (t >>> 16); INV_SUB_MIX_2[sx] = (t << 8) | (t >>> 24); INV_SUB_MIX_3[sx] = t; // Compute next counter if (!x) { x = xi = 1; } else { x = x2 ^ d[d[d[x8 ^ x2]]]; xi ^= d[d[xi]]; } } }()); // Precomputed Rcon lookup var RCON = [0x00, 0x01, 0x02, 0x04, 0x08, 0x10, 0x20, 0x40, 0x80, 0x1b, 0x36]; /** * AES block cipher algorithm. */ var AES = C_algo.AES = BlockCipher.extend({ _doReset: function () { var t; // Skip reset of nRounds has been set before and key did not change if (this._nRounds && this._keyPriorReset === this._key) { return; } // Shortcuts var key = this._keyPriorReset = this._key; var keyWords = key.words; var keySize = key.sigBytes / 4; // Compute number of rounds var nRounds = this._nRounds = keySize + 6; // Compute number of key schedule rows var ksRows = (nRounds + 1) * 4; // Compute key schedule var keySchedule = this._keySchedule = []; for (var ksRow = 0; ksRow < ksRows; ksRow++) { if (ksRow < keySize) { keySchedule[ksRow] = keyWords[ksRow]; } else { t = keySchedule[ksRow - 1]; if (!(ksRow % keySize)) { // Rot word t = (t << 8) | (t >>> 24); // Sub word t = (SBOX[t >>> 24] << 24) | (SBOX[(t >>> 16) & 0xff] << 16) | (SBOX[(t >>> 8) & 0xff] << 8) | SBOX[t & 0xff]; // Mix Rcon t ^= RCON[(ksRow / keySize) | 0] << 24; } else if (keySize > 6 && ksRow % keySize == 4) { // Sub word t = (SBOX[t >>> 24] << 24) | (SBOX[(t >>> 16) & 0xff] << 16) | (SBOX[(t >>> 8) & 0xff] << 8) | SBOX[t & 0xff]; } keySchedule[ksRow] = keySchedule[ksRow - keySize] ^ t; } } // Compute inv key schedule var invKeySchedule = this._invKeySchedule = []; for (var invKsRow = 0; invKsRow < ksRows; invKsRow++) { var ksRow = ksRows - invKsRow; if (invKsRow % 4) { var t = keySchedule[ksRow]; } else { var t = keySchedule[ksRow - 4]; } if (invKsRow < 4 || ksRow <= 4) { invKeySchedule[invKsRow] = t; } else { invKeySchedule[invKsRow] = INV_SUB_MIX_0[SBOX[t >>> 24]] ^ INV_SUB_MIX_1[SBOX[(t >>> 16) & 0xff]] ^ INV_SUB_MIX_2[SBOX[(t >>> 8) & 0xff]] ^ INV_SUB_MIX_3[SBOX[t & 0xff]]; } } }, encryptBlock: function (M, offset) { this._doCryptBlock(M, offset, this._keySchedule, SUB_MIX_0, SUB_MIX_1, SUB_MIX_2, SUB_MIX_3, SBOX); }, decryptBlock: function (M, offset) { // Swap 2nd and 4th rows var t = M[offset + 1]; M[offset + 1] = M[offset + 3]; M[offset + 3] = t; this._doCryptBlock(M, offset, this._invKeySchedule, INV_SUB_MIX_0, INV_SUB_MIX_1, INV_SUB_MIX_2, INV_SUB_MIX_3, INV_SBOX); // Inv swap 2nd and 4th rows var t = M[offset + 1]; M[offset + 1] = M[offset + 3]; M[offset + 3] = t; }, _doCryptBlock: function (M, offset, keySchedule, SUB_MIX_0, SUB_MIX_1, SUB_MIX_2, SUB_MIX_3, SBOX) { // Shortcut var nRounds = this._nRounds; // Get input, add round key var s0 = M[offset] ^ keySchedule[0]; var s1 = M[offset + 1] ^ keySchedule[1]; var s2 = M[offset + 2] ^ keySchedule[2]; var s3 = M[offset + 3] ^ keySchedule[3]; // Key schedule row counter var ksRow = 4; // Rounds for (var round = 1; round < nRounds; round++) { // Shift rows, sub bytes, mix columns, add round key var t0 = SUB_MIX_0[s0 >>> 24] ^ SUB_MIX_1[(s1 >>> 16) & 0xff] ^ SUB_MIX_2[(s2 >>> 8) & 0xff] ^ SUB_MIX_3[s3 & 0xff] ^ keySchedule[ksRow++]; var t1 = SUB_MIX_0[s1 >>> 24] ^ SUB_MIX_1[(s2 >>> 16) & 0xff] ^ SUB_MIX_2[(s3 >>> 8) & 0xff] ^ SUB_MIX_3[s0 & 0xff] ^ keySchedule[ksRow++]; var t2 = SUB_MIX_0[s2 >>> 24] ^ SUB_MIX_1[(s3 >>> 16) & 0xff] ^ SUB_MIX_2[(s0 >>> 8) & 0xff] ^ SUB_MIX_3[s1 & 0xff] ^ keySchedule[ksRow++]; var t3 = SUB_MIX_0[s3 >>> 24] ^ SUB_MIX_1[(s0 >>> 16) & 0xff] ^ SUB_MIX_2[(s1 >>> 8) & 0xff] ^ SUB_MIX_3[s2 & 0xff] ^ keySchedule[ksRow++]; // Update state s0 = t0; s1 = t1; s2 = t2; s3 = t3; } // Shift rows, sub bytes, add round key var t0 = ((SBOX[s0 >>> 24] << 24) | (SBOX[(s1 >>> 16) & 0xff] << 16) | (SBOX[(s2 >>> 8) & 0xff] << 8) | SBOX[s3 & 0xff]) ^ keySchedule[ksRow++]; var t1 = ((SBOX[s1 >>> 24] << 24) | (SBOX[(s2 >>> 16) & 0xff] << 16) | (SBOX[(s3 >>> 8) & 0xff] << 8) | SBOX[s0 & 0xff]) ^ keySchedule[ksRow++]; var t2 = ((SBOX[s2 >>> 24] << 24) | (SBOX[(s3 >>> 16) & 0xff] << 16) | (SBOX[(s0 >>> 8) & 0xff] << 8) | SBOX[s1 & 0xff]) ^ keySchedule[ksRow++]; var t3 = ((SBOX[s3 >>> 24] << 24) | (SBOX[(s0 >>> 16) & 0xff] << 16) | (SBOX[(s1 >>> 8) & 0xff] << 8) | SBOX[s2 & 0xff]) ^ keySchedule[ksRow++]; // Set output M[offset] = t0; M[offset + 1] = t1; M[offset + 2] = t2; M[offset + 3] = t3; }, keySize: 256/32 }); /** * Shortcut functions to the cipher's object interface. * * @example * * var ciphertext = CryptoJS.AES.encrypt(message, key, cfg); * var plaintext = CryptoJS.AES.decrypt(ciphertext, key, cfg); */ C.AES = BlockCipher._createHelper(AES); }()); return CryptoJS.AES; })); /***/ }), /***/ "./node_modules/crypto-js/blowfish.js": /*!********************************************!*\ !*** ./node_modules/crypto-js/blowfish.js ***! \********************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./enc-base64 */ "./node_modules/crypto-js/enc-base64.js"), __webpack_require__(/*! ./md5 */ "./node_modules/crypto-js/md5.js"), __webpack_require__(/*! ./evpkdf */ "./node_modules/crypto-js/evpkdf.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { (function () { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var BlockCipher = C_lib.BlockCipher; var C_algo = C.algo; const N = 16; //Origin pbox and sbox, derived from PI const ORIG_P = [ 0x243F6A88, 0x85A308D3, 0x13198A2E, 0x03707344, 0xA4093822, 0x299F31D0, 0x082EFA98, 0xEC4E6C89, 0x452821E6, 0x38D01377, 0xBE5466CF, 0x34E90C6C, 0xC0AC29B7, 0xC97C50DD, 0x3F84D5B5, 0xB5470917, 0x9216D5D9, 0x8979FB1B ]; const ORIG_S = [ [ 0xD1310BA6, 0x98DFB5AC, 0x2FFD72DB, 0xD01ADFB7, 0xB8E1AFED, 0x6A267E96, 0xBA7C9045, 0xF12C7F99, 0x24A19947, 0xB3916CF7, 0x0801F2E2, 0x858EFC16, 0x636920D8, 0x71574E69, 0xA458FEA3, 0xF4933D7E, 0x0D95748F, 0x728EB658, 0x718BCD58, 0x82154AEE, 0x7B54A41D, 0xC25A59B5, 0x9C30D539, 0x2AF26013, 0xC5D1B023, 0x286085F0, 0xCA417918, 0xB8DB38EF, 0x8E79DCB0, 0x603A180E, 0x6C9E0E8B, 0xB01E8A3E, 0xD71577C1, 0xBD314B27, 0x78AF2FDA, 0x55605C60, 0xE65525F3, 0xAA55AB94, 0x57489862, 0x63E81440, 0x55CA396A, 0x2AAB10B6, 0xB4CC5C34, 0x1141E8CE, 0xA15486AF, 0x7C72E993, 0xB3EE1411, 0x636FBC2A, 0x2BA9C55D, 0x741831F6, 0xCE5C3E16, 0x9B87931E, 0xAFD6BA33, 0x6C24CF5C, 0x7A325381, 0x28958677, 0x3B8F4898, 0x6B4BB9AF, 0xC4BFE81B, 0x66282193, 0x61D809CC, 0xFB21A991, 0x487CAC60, 0x5DEC8032, 0xEF845D5D, 0xE98575B1, 0xDC262302, 0xEB651B88, 0x23893E81, 0xD396ACC5, 0x0F6D6FF3, 0x83F44239, 0x2E0B4482, 0xA4842004, 0x69C8F04A, 0x9E1F9B5E, 0x21C66842, 0xF6E96C9A, 0x670C9C61, 0xABD388F0, 0x6A51A0D2, 0xD8542F68, 0x960FA728, 0xAB5133A3, 0x6EEF0B6C, 0x137A3BE4, 0xBA3BF050, 0x7EFB2A98, 0xA1F1651D, 0x39AF0176, 0x66CA593E, 0x82430E88, 0x8CEE8619, 0x456F9FB4, 0x7D84A5C3, 0x3B8B5EBE, 0xE06F75D8, 0x85C12073, 0x401A449F, 0x56C16AA6, 0x4ED3AA62, 0x363F7706, 0x1BFEDF72, 0x429B023D, 0x37D0D724, 0xD00A1248, 0xDB0FEAD3, 0x49F1C09B, 0x075372C9, 0x80991B7B, 0x25D479D8, 0xF6E8DEF7, 0xE3FE501A, 0xB6794C3B, 0x976CE0BD, 0x04C006BA, 0xC1A94FB6, 0x409F60C4, 0x5E5C9EC2, 0x196A2463, 0x68FB6FAF, 0x3E6C53B5, 0x1339B2EB, 0x3B52EC6F, 0x6DFC511F, 0x9B30952C, 0xCC814544, 0xAF5EBD09, 0xBEE3D004, 0xDE334AFD, 0x660F2807, 0x192E4BB3, 0xC0CBA857, 0x45C8740F, 0xD20B5F39, 0xB9D3FBDB, 0x5579C0BD, 0x1A60320A, 0xD6A100C6, 0x402C7279, 0x679F25FE, 0xFB1FA3CC, 0x8EA5E9F8, 0xDB3222F8, 0x3C7516DF, 0xFD616B15, 0x2F501EC8, 0xAD0552AB, 0x323DB5FA, 0xFD238760, 0x53317B48, 0x3E00DF82, 0x9E5C57BB, 0xCA6F8CA0, 0x1A87562E, 0xDF1769DB, 0xD542A8F6, 0x287EFFC3, 0xAC6732C6, 0x8C4F5573, 0x695B27B0, 0xBBCA58C8, 0xE1FFA35D, 0xB8F011A0, 0x10FA3D98, 0xFD2183B8, 0x4AFCB56C, 0x2DD1D35B, 0x9A53E479, 0xB6F84565, 0xD28E49BC, 0x4BFB9790, 0xE1DDF2DA, 0xA4CB7E33, 0x62FB1341, 0xCEE4C6E8, 0xEF20CADA, 0x36774C01, 0xD07E9EFE, 0x2BF11FB4, 0x95DBDA4D, 0xAE909198, 0xEAAD8E71, 0x6B93D5A0, 0xD08ED1D0, 0xAFC725E0, 0x8E3C5B2F, 0x8E7594B7, 0x8FF6E2FB, 0xF2122B64, 0x8888B812, 0x900DF01C, 0x4FAD5EA0, 0x688FC31C, 0xD1CFF191, 0xB3A8C1AD, 0x2F2F2218, 0xBE0E1777, 0xEA752DFE, 0x8B021FA1, 0xE5A0CC0F, 0xB56F74E8, 0x18ACF3D6, 0xCE89E299, 0xB4A84FE0, 0xFD13E0B7, 0x7CC43B81, 0xD2ADA8D9, 0x165FA266, 0x80957705, 0x93CC7314, 0x211A1477, 0xE6AD2065, 0x77B5FA86, 0xC75442F5, 0xFB9D35CF, 0xEBCDAF0C, 0x7B3E89A0, 0xD6411BD3, 0xAE1E7E49, 0x00250E2D, 0x2071B35E, 0x226800BB, 0x57B8E0AF, 0x2464369B, 0xF009B91E, 0x5563911D, 0x59DFA6AA, 0x78C14389, 0xD95A537F, 0x207D5BA2, 0x02E5B9C5, 0x83260376, 0x6295CFA9, 0x11C81968, 0x4E734A41, 0xB3472DCA, 0x7B14A94A, 0x1B510052, 0x9A532915, 0xD60F573F, 0xBC9BC6E4, 0x2B60A476, 0x81E67400, 0x08BA6FB5, 0x571BE91F, 0xF296EC6B, 0x2A0DD915, 0xB6636521, 0xE7B9F9B6, 0xFF34052E, 0xC5855664, 0x53B02D5D, 0xA99F8FA1, 0x08BA4799, 0x6E85076A ], [ 0x4B7A70E9, 0xB5B32944, 0xDB75092E, 0xC4192623, 0xAD6EA6B0, 0x49A7DF7D, 0x9CEE60B8, 0x8FEDB266, 0xECAA8C71, 0x699A17FF, 0x5664526C, 0xC2B19EE1, 0x193602A5, 0x75094C29, 0xA0591340, 0xE4183A3E, 0x3F54989A, 0x5B429D65, 0x6B8FE4D6, 0x99F73FD6, 0xA1D29C07, 0xEFE830F5, 0x4D2D38E6, 0xF0255DC1, 0x4CDD2086, 0x8470EB26, 0x6382E9C6, 0x021ECC5E, 0x09686B3F, 0x3EBAEFC9, 0x3C971814, 0x6B6A70A1, 0x687F3584, 0x52A0E286, 0xB79C5305, 0xAA500737, 0x3E07841C, 0x7FDEAE5C, 0x8E7D44EC, 0x5716F2B8, 0xB03ADA37, 0xF0500C0D, 0xF01C1F04, 0x0200B3FF, 0xAE0CF51A, 0x3CB574B2, 0x25837A58, 0xDC0921BD, 0xD19113F9, 0x7CA92FF6, 0x94324773, 0x22F54701, 0x3AE5E581, 0x37C2DADC, 0xC8B57634, 0x9AF3DDA7, 0xA9446146, 0x0FD0030E, 0xECC8C73E, 0xA4751E41, 0xE238CD99, 0x3BEA0E2F, 0x3280BBA1, 0x183EB331, 0x4E548B38, 0x4F6DB908, 0x6F420D03, 0xF60A04BF, 0x2CB81290, 0x24977C79, 0x5679B072, 0xBCAF89AF, 0xDE9A771F, 0xD9930810, 0xB38BAE12, 0xDCCF3F2E, 0x5512721F, 0x2E6B7124, 0x501ADDE6, 0x9F84CD87, 0x7A584718, 0x7408DA17, 0xBC9F9ABC, 0xE94B7D8C, 0xEC7AEC3A, 0xDB851DFA, 0x63094366, 0xC464C3D2, 0xEF1C1847, 0x3215D908, 0xDD433B37, 0x24C2BA16, 0x12A14D43, 0x2A65C451, 0x50940002, 0x133AE4DD, 0x71DFF89E, 0x10314E55, 0x81AC77D6, 0x5F11199B, 0x043556F1, 0xD7A3C76B, 0x3C11183B, 0x5924A509, 0xF28FE6ED, 0x97F1FBFA, 0x9EBABF2C, 0x1E153C6E, 0x86E34570, 0xEAE96FB1, 0x860E5E0A, 0x5A3E2AB3, 0x771FE71C, 0x4E3D06FA, 0x2965DCB9, 0x99E71D0F, 0x803E89D6, 0x5266C825, 0x2E4CC978, 0x9C10B36A, 0xC6150EBA, 0x94E2EA78, 0xA5FC3C53, 0x1E0A2DF4, 0xF2F74EA7, 0x361D2B3D, 0x1939260F, 0x19C27960, 0x5223A708, 0xF71312B6, 0xEBADFE6E, 0xEAC31F66, 0xE3BC4595, 0xA67BC883, 0xB17F37D1, 0x018CFF28, 0xC332DDEF, 0xBE6C5AA5, 0x65582185, 0x68AB9802, 0xEECEA50F, 0xDB2F953B, 0x2AEF7DAD, 0x5B6E2F84, 0x1521B628, 0x29076170, 0xECDD4775, 0x619F1510, 0x13CCA830, 0xEB61BD96, 0x0334FE1E, 0xAA0363CF, 0xB5735C90, 0x4C70A239, 0xD59E9E0B, 0xCBAADE14, 0xEECC86BC, 0x60622CA7, 0x9CAB5CAB, 0xB2F3846E, 0x648B1EAF, 0x19BDF0CA, 0xA02369B9, 0x655ABB50, 0x40685A32, 0x3C2AB4B3, 0x319EE9D5, 0xC021B8F7, 0x9B540B19, 0x875FA099, 0x95F7997E, 0x623D7DA8, 0xF837889A, 0x97E32D77, 0x11ED935F, 0x16681281, 0x0E358829, 0xC7E61FD6, 0x96DEDFA1, 0x7858BA99, 0x57F584A5, 0x1B227263, 0x9B83C3FF, 0x1AC24696, 0xCDB30AEB, 0x532E3054, 0x8FD948E4, 0x6DBC3128, 0x58EBF2EF, 0x34C6FFEA, 0xFE28ED61, 0xEE7C3C73, 0x5D4A14D9, 0xE864B7E3, 0x42105D14, 0x203E13E0, 0x45EEE2B6, 0xA3AAABEA, 0xDB6C4F15, 0xFACB4FD0, 0xC742F442, 0xEF6ABBB5, 0x654F3B1D, 0x41CD2105, 0xD81E799E, 0x86854DC7, 0xE44B476A, 0x3D816250, 0xCF62A1F2, 0x5B8D2646, 0xFC8883A0, 0xC1C7B6A3, 0x7F1524C3, 0x69CB7492, 0x47848A0B, 0x5692B285, 0x095BBF00, 0xAD19489D, 0x1462B174, 0x23820E00, 0x58428D2A, 0x0C55F5EA, 0x1DADF43E, 0x233F7061, 0x3372F092, 0x8D937E41, 0xD65FECF1, 0x6C223BDB, 0x7CDE3759, 0xCBEE7460, 0x4085F2A7, 0xCE77326E, 0xA6078084, 0x19F8509E, 0xE8EFD855, 0x61D99735, 0xA969A7AA, 0xC50C06C2, 0x5A04ABFC, 0x800BCADC, 0x9E447A2E, 0xC3453484, 0xFDD56705, 0x0E1E9EC9, 0xDB73DBD3, 0x105588CD, 0x675FDA79, 0xE3674340, 0xC5C43465, 0x713E38D8, 0x3D28F89E, 0xF16DFF20, 0x153E21E7, 0x8FB03D4A, 0xE6E39F2B, 0xDB83ADF7 ], [ 0xE93D5A68, 0x948140F7, 0xF64C261C, 0x94692934, 0x411520F7, 0x7602D4F7, 0xBCF46B2E, 0xD4A20068, 0xD4082471, 0x3320F46A, 0x43B7D4B7, 0x500061AF, 0x1E39F62E, 0x97244546, 0x14214F74, 0xBF8B8840, 0x4D95FC1D, 0x96B591AF, 0x70F4DDD3, 0x66A02F45, 0xBFBC09EC, 0x03BD9785, 0x7FAC6DD0, 0x31CB8504, 0x96EB27B3, 0x55FD3941, 0xDA2547E6, 0xABCA0A9A, 0x28507825, 0x530429F4, 0x0A2C86DA, 0xE9B66DFB, 0x68DC1462, 0xD7486900, 0x680EC0A4, 0x27A18DEE, 0x4F3FFEA2, 0xE887AD8C, 0xB58CE006, 0x7AF4D6B6, 0xAACE1E7C, 0xD3375FEC, 0xCE78A399, 0x406B2A42, 0x20FE9E35, 0xD9F385B9, 0xEE39D7AB, 0x3B124E8B, 0x1DC9FAF7, 0x4B6D1856, 0x26A36631, 0xEAE397B2, 0x3A6EFA74, 0xDD5B4332, 0x6841E7F7, 0xCA7820FB, 0xFB0AF54E, 0xD8FEB397, 0x454056AC, 0xBA489527, 0x55533A3A, 0x20838D87, 0xFE6BA9B7, 0xD096954B, 0x55A867BC, 0xA1159A58, 0xCCA92963, 0x99E1DB33, 0xA62A4A56, 0x3F3125F9, 0x5EF47E1C, 0x9029317C, 0xFDF8E802, 0x04272F70, 0x80BB155C, 0x05282CE3, 0x95C11548, 0xE4C66D22, 0x48C1133F, 0xC70F86DC, 0x07F9C9EE, 0x41041F0F, 0x404779A4, 0x5D886E17, 0x325F51EB, 0xD59BC0D1, 0xF2BCC18F, 0x41113564, 0x257B7834, 0x602A9C60, 0xDFF8E8A3, 0x1F636C1B, 0x0E12B4C2, 0x02E1329E, 0xAF664FD1, 0xCAD18115, 0x6B2395E0, 0x333E92E1, 0x3B240B62, 0xEEBEB922, 0x85B2A20E, 0xE6BA0D99, 0xDE720C8C, 0x2DA2F728, 0xD0127845, 0x95B794FD, 0x647D0862, 0xE7CCF5F0, 0x5449A36F, 0x877D48FA, 0xC39DFD27, 0xF33E8D1E, 0x0A476341, 0x992EFF74, 0x3A6F6EAB, 0xF4F8FD37, 0xA812DC60, 0xA1EBDDF8, 0x991BE14C, 0xDB6E6B0D, 0xC67B5510, 0x6D672C37, 0x2765D43B, 0xDCD0E804, 0xF1290DC7, 0xCC00FFA3, 0xB5390F92, 0x690FED0B, 0x667B9FFB, 0xCEDB7D9C, 0xA091CF0B, 0xD9155EA3, 0xBB132F88, 0x515BAD24, 0x7B9479BF, 0x763BD6EB, 0x37392EB3, 0xCC115979, 0x8026E297, 0xF42E312D, 0x6842ADA7, 0xC66A2B3B, 0x12754CCC, 0x782EF11C, 0x6A124237, 0xB79251E7, 0x06A1BBE6, 0x4BFB6350, 0x1A6B1018, 0x11CAEDFA, 0x3D25BDD8, 0xE2E1C3C9, 0x44421659, 0x0A121386, 0xD90CEC6E, 0xD5ABEA2A, 0x64AF674E, 0xDA86A85F, 0xBEBFE988, 0x64E4C3FE, 0x9DBC8057, 0xF0F7C086, 0x60787BF8, 0x6003604D, 0xD1FD8346, 0xF6381FB0, 0x7745AE04, 0xD736FCCC, 0x83426B33, 0xF01EAB71, 0xB0804187, 0x3C005E5F, 0x77A057BE, 0xBDE8AE24, 0x55464299, 0xBF582E61, 0x4E58F48F, 0xF2DDFDA2, 0xF474EF38, 0x8789BDC2, 0x5366F9C3, 0xC8B38E74, 0xB475F255, 0x46FCD9B9, 0x7AEB2661, 0x8B1DDF84, 0x846A0E79, 0x915F95E2, 0x466E598E, 0x20B45770, 0x8CD55591, 0xC902DE4C, 0xB90BACE1, 0xBB8205D0, 0x11A86248, 0x7574A99E, 0xB77F19B6, 0xE0A9DC09, 0x662D09A1, 0xC4324633, 0xE85A1F02, 0x09F0BE8C, 0x4A99A025, 0x1D6EFE10, 0x1AB93D1D, 0x0BA5A4DF, 0xA186F20F, 0x2868F169, 0xDCB7DA83, 0x573906FE, 0xA1E2CE9B, 0x4FCD7F52, 0x50115E01, 0xA70683FA, 0xA002B5C4, 0x0DE6D027, 0x9AF88C27, 0x773F8641, 0xC3604C06, 0x61A806B5, 0xF0177A28, 0xC0F586E0, 0x006058AA, 0x30DC7D62, 0x11E69ED7, 0x2338EA63, 0x53C2DD94, 0xC2C21634, 0xBBCBEE56, 0x90BCB6DE, 0xEBFC7DA1, 0xCE591D76, 0x6F05E409, 0x4B7C0188, 0x39720A3D, 0x7C927C24, 0x86E3725F, 0x724D9DB9, 0x1AC15BB4, 0xD39EB8FC, 0xED545578, 0x08FCA5B5, 0xD83D7CD3, 0x4DAD0FC4, 0x1E50EF5E, 0xB161E6F8, 0xA28514D9, 0x6C51133C, 0x6FD5C7E7, 0x56E14EC4, 0x362ABFCE, 0xDDC6C837, 0xD79A3234, 0x92638212, 0x670EFA8E, 0x406000E0 ], [ 0x3A39CE37, 0xD3FAF5CF, 0xABC27737, 0x5AC52D1B, 0x5CB0679E, 0x4FA33742, 0xD3822740, 0x99BC9BBE, 0xD5118E9D, 0xBF0F7315, 0xD62D1C7E, 0xC700C47B, 0xB78C1B6B, 0x21A19045, 0xB26EB1BE, 0x6A366EB4, 0x5748AB2F, 0xBC946E79, 0xC6A376D2, 0x6549C2C8, 0x530FF8EE, 0x468DDE7D, 0xD5730A1D, 0x4CD04DC6, 0x2939BBDB, 0xA9BA4650, 0xAC9526E8, 0xBE5EE304, 0xA1FAD5F0, 0x6A2D519A, 0x63EF8CE2, 0x9A86EE22, 0xC089C2B8, 0x43242EF6, 0xA51E03AA, 0x9CF2D0A4, 0x83C061BA, 0x9BE96A4D, 0x8FE51550, 0xBA645BD6, 0x2826A2F9, 0xA73A3AE1, 0x4BA99586, 0xEF5562E9, 0xC72FEFD3, 0xF752F7DA, 0x3F046F69, 0x77FA0A59, 0x80E4A915, 0x87B08601, 0x9B09E6AD, 0x3B3EE593, 0xE990FD5A, 0x9E34D797, 0x2CF0B7D9, 0x022B8B51, 0x96D5AC3A, 0x017DA67D, 0xD1CF3ED6, 0x7C7D2D28, 0x1F9F25CF, 0xADF2B89B, 0x5AD6B472, 0x5A88F54C, 0xE029AC71, 0xE019A5E6, 0x47B0ACFD, 0xED93FA9B, 0xE8D3C48D, 0x283B57CC, 0xF8D56629, 0x79132E28, 0x785F0191, 0xED756055, 0xF7960E44, 0xE3D35E8C, 0x15056DD4, 0x88F46DBA, 0x03A16125, 0x0564F0BD, 0xC3EB9E15, 0x3C9057A2, 0x97271AEC, 0xA93A072A, 0x1B3F6D9B, 0x1E6321F5, 0xF59C66FB, 0x26DCF319, 0x7533D928, 0xB155FDF5, 0x03563482, 0x8ABA3CBB, 0x28517711, 0xC20AD9F8, 0xABCC5167, 0xCCAD925F, 0x4DE81751, 0x3830DC8E, 0x379D5862, 0x9320F991, 0xEA7A90C2, 0xFB3E7BCE, 0x5121CE64, 0x774FBE32, 0xA8B6E37E, 0xC3293D46, 0x48DE5369, 0x6413E680, 0xA2AE0810, 0xDD6DB224, 0x69852DFD, 0x09072166, 0xB39A460A, 0x6445C0DD, 0x586CDECF, 0x1C20C8AE, 0x5BBEF7DD, 0x1B588D40, 0xCCD2017F, 0x6BB4E3BB, 0xDDA26A7E, 0x3A59FF45, 0x3E350A44, 0xBCB4CDD5, 0x72EACEA8, 0xFA6484BB, 0x8D6612AE, 0xBF3C6F47, 0xD29BE463, 0x542F5D9E, 0xAEC2771B, 0xF64E6370, 0x740E0D8D, 0xE75B1357, 0xF8721671, 0xAF537D5D, 0x4040CB08, 0x4EB4E2CC, 0x34D2466A, 0x0115AF84, 0xE1B00428, 0x95983A1D, 0x06B89FB4, 0xCE6EA048, 0x6F3F3B82, 0x3520AB82, 0x011A1D4B, 0x277227F8, 0x611560B1, 0xE7933FDC, 0xBB3A792B, 0x344525BD, 0xA08839E1, 0x51CE794B, 0x2F32C9B7, 0xA01FBAC9, 0xE01CC87E, 0xBCC7D1F6, 0xCF0111C3, 0xA1E8AAC7, 0x1A908749, 0xD44FBD9A, 0xD0DADECB, 0xD50ADA38, 0x0339C32A, 0xC6913667, 0x8DF9317C, 0xE0B12B4F, 0xF79E59B7, 0x43F5BB3A, 0xF2D519FF, 0x27D9459C, 0xBF97222C, 0x15E6FC2A, 0x0F91FC71, 0x9B941525, 0xFAE59361, 0xCEB69CEB, 0xC2A86459, 0x12BAA8D1, 0xB6C1075E, 0xE3056A0C, 0x10D25065, 0xCB03A442, 0xE0EC6E0E, 0x1698DB3B, 0x4C98A0BE, 0x3278E964, 0x9F1F9532, 0xE0D392DF, 0xD3A0342B, 0x8971F21E, 0x1B0A7441, 0x4BA3348C, 0xC5BE7120, 0xC37632D8, 0xDF359F8D, 0x9B992F2E, 0xE60B6F47, 0x0FE3F11D, 0xE54CDA54, 0x1EDAD891, 0xCE6279CF, 0xCD3E7E6F, 0x1618B166, 0xFD2C1D05, 0x848FD2C5, 0xF6FB2299, 0xF523F357, 0xA6327623, 0x93A83531, 0x56CCCD02, 0xACF08162, 0x5A75EBB5, 0x6E163697, 0x88D273CC, 0xDE966292, 0x81B949D0, 0x4C50901B, 0x71C65614, 0xE6C6C7BD, 0x327A140A, 0x45E1D006, 0xC3F27B9A, 0xC9AA53FD, 0x62A80F00, 0xBB25BFE2, 0x35BDD2F6, 0x71126905, 0xB2040222, 0xB6CBCF7C, 0xCD769C2B, 0x53113EC0, 0x1640E3D3, 0x38ABBD60, 0x2547ADF0, 0xBA38209C, 0xF746CE76, 0x77AFA1C5, 0x20756060, 0x85CBFE4E, 0x8AE88DD8, 0x7AAAF9B0, 0x4CF9AA7E, 0x1948C25C, 0x02FB8A8C, 0x01C36AE4, 0xD6EBE1F9, 0x90D4F869, 0xA65CDEA0, 0x3F09252D, 0xC208E69F, 0xB74E6132, 0xCE77E25B, 0x578FDFE3, 0x3AC372E6 ] ]; var BLOWFISH_CTX = { pbox: [], sbox: [] } function F(ctx, x){ let a = (x >> 24) & 0xFF; let b = (x >> 16) & 0xFF; let c = (x >> 8) & 0xFF; let d = x & 0xFF; let y = ctx.sbox[0][a] + ctx.sbox[1][b]; y = y ^ ctx.sbox[2][c]; y = y + ctx.sbox[3][d]; return y; } function BlowFish_Encrypt(ctx, left, right){ let Xl = left; let Xr = right; let temp; for(let i = 0; i < N; ++i){ Xl = Xl ^ ctx.pbox[i]; Xr = F(ctx, Xl) ^ Xr; temp = Xl; Xl = Xr; Xr = temp; } temp = Xl; Xl = Xr; Xr = temp; Xr = Xr ^ ctx.pbox[N]; Xl = Xl ^ ctx.pbox[N + 1]; return {left: Xl, right: Xr}; } function BlowFish_Decrypt(ctx, left, right){ let Xl = left; let Xr = right; let temp; for(let i = N + 1; i > 1; --i){ Xl = Xl ^ ctx.pbox[i]; Xr = F(ctx, Xl) ^ Xr; temp = Xl; Xl = Xr; Xr = temp; } temp = Xl; Xl = Xr; Xr = temp; Xr = Xr ^ ctx.pbox[1]; Xl = Xl ^ ctx.pbox[0]; return {left: Xl, right: Xr}; } /** * Initialization ctx's pbox and sbox. * * @param {Object} ctx The object has pbox and sbox. * @param {Array} key An array of 32-bit words. * @param {int} keysize The length of the key. * * @example * * BlowFishInit(BLOWFISH_CTX, key, 128/32); */ function BlowFishInit(ctx, key, keysize) { for(let Row = 0; Row < 4; Row++) { ctx.sbox[Row] = []; for(let Col = 0; Col < 256; Col++) { ctx.sbox[Row][Col] = ORIG_S[Row][Col]; } } let keyIndex = 0; for(let index = 0; index < N + 2; index++) { ctx.pbox[index] = ORIG_P[index] ^ key[keyIndex]; keyIndex++; if(keyIndex >= keysize) { keyIndex = 0; } } let Data1 = 0; let Data2 = 0; let res = 0; for(let i = 0; i < N + 2; i += 2) { res = BlowFish_Encrypt(ctx, Data1, Data2); Data1 = res.left; Data2 = res.right; ctx.pbox[i] = Data1; ctx.pbox[i + 1] = Data2; } for(let i = 0; i < 4; i++) { for(let j = 0; j < 256; j += 2) { res = BlowFish_Encrypt(ctx, Data1, Data2); Data1 = res.left; Data2 = res.right; ctx.sbox[i][j] = Data1; ctx.sbox[i][j + 1] = Data2; } } return true; } /** * Blowfish block cipher algorithm. */ var Blowfish = C_algo.Blowfish = BlockCipher.extend({ _doReset: function () { // Skip reset of nRounds has been set before and key did not change if (this._keyPriorReset === this._key) { return; } // Shortcuts var key = this._keyPriorReset = this._key; var keyWords = key.words; var keySize = key.sigBytes / 4; //Initialization pbox and sbox BlowFishInit(BLOWFISH_CTX, keyWords, keySize); }, encryptBlock: function (M, offset) { var res = BlowFish_Encrypt(BLOWFISH_CTX, M[offset], M[offset + 1]); M[offset] = res.left; M[offset + 1] = res.right; }, decryptBlock: function (M, offset) { var res = BlowFish_Decrypt(BLOWFISH_CTX, M[offset], M[offset + 1]); M[offset] = res.left; M[offset + 1] = res.right; }, blockSize: 64/32, keySize: 128/32, ivSize: 64/32 }); /** * Shortcut functions to the cipher's object interface. * * @example * * var ciphertext = CryptoJS.Blowfish.encrypt(message, key, cfg); * var plaintext = CryptoJS.Blowfish.decrypt(ciphertext, key, cfg); */ C.Blowfish = BlockCipher._createHelper(Blowfish); }()); return CryptoJS.Blowfish; })); /***/ }), /***/ "./node_modules/crypto-js/cipher-core.js": /*!***********************************************!*\ !*** ./node_modules/crypto-js/cipher-core.js ***! \***********************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./evpkdf */ "./node_modules/crypto-js/evpkdf.js")); } else {} }(this, function (CryptoJS) { /** * Cipher core components. */ CryptoJS.lib.Cipher || (function (undefined) { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var Base = C_lib.Base; var WordArray = C_lib.WordArray; var BufferedBlockAlgorithm = C_lib.BufferedBlockAlgorithm; var C_enc = C.enc; var Utf8 = C_enc.Utf8; var Base64 = C_enc.Base64; var C_algo = C.algo; var EvpKDF = C_algo.EvpKDF; /** * Abstract base cipher template. * * @property {number} keySize This cipher's key size. Default: 4 (128 bits) * @property {number} ivSize This cipher's IV size. Default: 4 (128 bits) * @property {number} _ENC_XFORM_MODE A constant representing encryption mode. * @property {number} _DEC_XFORM_MODE A constant representing decryption mode. */ var Cipher = C_lib.Cipher = BufferedBlockAlgorithm.extend({ /** * Configuration options. * * @property {WordArray} iv The IV to use for this operation. */ cfg: Base.extend(), /** * Creates this cipher in encryption mode. * * @param {WordArray} key The key. * @param {Object} cfg (Optional) The configuration options to use for this operation. * * @return {Cipher} A cipher instance. * * @static * * @example * * var cipher = CryptoJS.algo.AES.createEncryptor(keyWordArray, { iv: ivWordArray }); */ createEncryptor: function (key, cfg) { return this.create(this._ENC_XFORM_MODE, key, cfg); }, /** * Creates this cipher in decryption mode. * * @param {WordArray} key The key. * @param {Object} cfg (Optional) The configuration options to use for this operation. * * @return {Cipher} A cipher instance. * * @static * * @example * * var cipher = CryptoJS.algo.AES.createDecryptor(keyWordArray, { iv: ivWordArray }); */ createDecryptor: function (key, cfg) { return this.create(this._DEC_XFORM_MODE, key, cfg); }, /** * Initializes a newly created cipher. * * @param {number} xformMode Either the encryption or decryption transormation mode constant. * @param {WordArray} key The key. * @param {Object} cfg (Optional) The configuration options to use for this operation. * * @example * * var cipher = CryptoJS.algo.AES.create(CryptoJS.algo.AES._ENC_XFORM_MODE, keyWordArray, { iv: ivWordArray }); */ init: function (xformMode, key, cfg) { // Apply config defaults this.cfg = this.cfg.extend(cfg); // Store transform mode and key this._xformMode = xformMode; this._key = key; // Set initial values this.reset(); }, /** * Resets this cipher to its initial state. * * @example * * cipher.reset(); */ reset: function () { // Reset data buffer BufferedBlockAlgorithm.reset.call(this); // Perform concrete-cipher logic this._doReset(); }, /** * Adds data to be encrypted or decrypted. * * @param {WordArray|string} dataUpdate The data to encrypt or decrypt. * * @return {WordArray} The data after processing. * * @example * * var encrypted = cipher.process('data'); * var encrypted = cipher.process(wordArray); */ process: function (dataUpdate) { // Append this._append(dataUpdate); // Process available blocks return this._process(); }, /** * Finalizes the encryption or decryption process. * Note that the finalize operation is effectively a destructive, read-once operation. * * @param {WordArray|string} dataUpdate The final data to encrypt or decrypt. * * @return {WordArray} The data after final processing. * * @example * * var encrypted = cipher.finalize(); * var encrypted = cipher.finalize('data'); * var encrypted = cipher.finalize(wordArray); */ finalize: function (dataUpdate) { // Final data update if (dataUpdate) { this._append(dataUpdate); } // Perform concrete-cipher logic var finalProcessedData = this._doFinalize(); return finalProcessedData; }, keySize: 128/32, ivSize: 128/32, _ENC_XFORM_MODE: 1, _DEC_XFORM_MODE: 2, /** * Creates shortcut functions to a cipher's object interface. * * @param {Cipher} cipher The cipher to create a helper for. * * @return {Object} An object with encrypt and decrypt shortcut functions. * * @static * * @example * * var AES = CryptoJS.lib.Cipher._createHelper(CryptoJS.algo.AES); */ _createHelper: (function () { function selectCipherStrategy(key) { if (typeof key == 'string') { return PasswordBasedCipher; } else { return SerializableCipher; } } return function (cipher) { return { encrypt: function (message, key, cfg) { return selectCipherStrategy(key).encrypt(cipher, message, key, cfg); }, decrypt: function (ciphertext, key, cfg) { return selectCipherStrategy(key).decrypt(cipher, ciphertext, key, cfg); } }; }; }()) }); /** * Abstract base stream cipher template. * * @property {number} blockSize The number of 32-bit words this cipher operates on. Default: 1 (32 bits) */ var StreamCipher = C_lib.StreamCipher = Cipher.extend({ _doFinalize: function () { // Process partial blocks var finalProcessedBlocks = this._process(!!'flush'); return finalProcessedBlocks; }, blockSize: 1 }); /** * Mode namespace. */ var C_mode = C.mode = {}; /** * Abstract base block cipher mode template. */ var BlockCipherMode = C_lib.BlockCipherMode = Base.extend({ /** * Creates this mode for encryption. * * @param {Cipher} cipher A block cipher instance. * @param {Array} iv The IV words. * * @static * * @example * * var mode = CryptoJS.mode.CBC.createEncryptor(cipher, iv.words); */ createEncryptor: function (cipher, iv) { return this.Encryptor.create(cipher, iv); }, /** * Creates this mode for decryption. * * @param {Cipher} cipher A block cipher instance. * @param {Array} iv The IV words. * * @static * * @example * * var mode = CryptoJS.mode.CBC.createDecryptor(cipher, iv.words); */ createDecryptor: function (cipher, iv) { return this.Decryptor.create(cipher, iv); }, /** * Initializes a newly created mode. * * @param {Cipher} cipher A block cipher instance. * @param {Array} iv The IV words. * * @example * * var mode = CryptoJS.mode.CBC.Encryptor.create(cipher, iv.words); */ init: function (cipher, iv) { this._cipher = cipher; this._iv = iv; } }); /** * Cipher Block Chaining mode. */ var CBC = C_mode.CBC = (function () { /** * Abstract base CBC mode. */ var CBC = BlockCipherMode.extend(); /** * CBC encryptor. */ CBC.Encryptor = CBC.extend({ /** * Processes the data block at offset. * * @param {Array} words The data words to operate on. * @param {number} offset The offset where the block starts. * * @example * * mode.processBlock(data.words, offset); */ processBlock: function (words, offset) { // Shortcuts var cipher = this._cipher; var blockSize = cipher.blockSize; // XOR and encrypt xorBlock.call(this, words, offset, blockSize); cipher.encryptBlock(words, offset); // Remember this block to use with next block this._prevBlock = words.slice(offset, offset + blockSize); } }); /** * CBC decryptor. */ CBC.Decryptor = CBC.extend({ /** * Processes the data block at offset. * * @param {Array} words The data words to operate on. * @param {number} offset The offset where the block starts. * * @example * * mode.processBlock(data.words, offset); */ processBlock: function (words, offset) { // Shortcuts var cipher = this._cipher; var blockSize = cipher.blockSize; // Remember this block to use with next block var thisBlock = words.slice(offset, offset + blockSize); // Decrypt and XOR cipher.decryptBlock(words, offset); xorBlock.call(this, words, offset, blockSize); // This block becomes the previous block this._prevBlock = thisBlock; } }); function xorBlock(words, offset, blockSize) { var block; // Shortcut var iv = this._iv; // Choose mixing block if (iv) { block = iv; // Remove IV for subsequent blocks this._iv = undefined; } else { block = this._prevBlock; } // XOR blocks for (var i = 0; i < blockSize; i++) { words[offset + i] ^= block[i]; } } return CBC; }()); /** * Padding namespace. */ var C_pad = C.pad = {}; /** * PKCS #5/7 padding strategy. */ var Pkcs7 = C_pad.Pkcs7 = { /** * Pads data using the algorithm defined in PKCS #5/7. * * @param {WordArray} data The data to pad. * @param {number} blockSize The multiple that the data should be padded to. * * @static * * @example * * CryptoJS.pad.Pkcs7.pad(wordArray, 4); */ pad: function (data, blockSize) { // Shortcut var blockSizeBytes = blockSize * 4; // Count padding bytes var nPaddingBytes = blockSizeBytes - data.sigBytes % blockSizeBytes; // Create padding word var paddingWord = (nPaddingBytes << 24) | (nPaddingBytes << 16) | (nPaddingBytes << 8) | nPaddingBytes; // Create padding var paddingWords = []; for (var i = 0; i < nPaddingBytes; i += 4) { paddingWords.push(paddingWord); } var padding = WordArray.create(paddingWords, nPaddingBytes); // Add padding data.concat(padding); }, /** * Unpads data that had been padded using the algorithm defined in PKCS #5/7. * * @param {WordArray} data The data to unpad. * * @static * * @example * * CryptoJS.pad.Pkcs7.unpad(wordArray); */ unpad: function (data) { // Get number of padding bytes from last byte var nPaddingBytes = data.words[(data.sigBytes - 1) >>> 2] & 0xff; // Remove padding data.sigBytes -= nPaddingBytes; } }; /** * Abstract base block cipher template. * * @property {number} blockSize The number of 32-bit words this cipher operates on. Default: 4 (128 bits) */ var BlockCipher = C_lib.BlockCipher = Cipher.extend({ /** * Configuration options. * * @property {Mode} mode The block mode to use. Default: CBC * @property {Padding} padding The padding strategy to use. Default: Pkcs7 */ cfg: Cipher.cfg.extend({ mode: CBC, padding: Pkcs7 }), reset: function () { var modeCreator; // Reset cipher Cipher.reset.call(this); // Shortcuts var cfg = this.cfg; var iv = cfg.iv; var mode = cfg.mode; // Reset block mode if (this._xformMode == this._ENC_XFORM_MODE) { modeCreator = mode.createEncryptor; } else /* if (this._xformMode == this._DEC_XFORM_MODE) */ { modeCreator = mode.createDecryptor; // Keep at least one block in the buffer for unpadding this._minBufferSize = 1; } if (this._mode && this._mode.__creator == modeCreator) { this._mode.init(this, iv && iv.words); } else { this._mode = modeCreator.call(mode, this, iv && iv.words); this._mode.__creator = modeCreator; } }, _doProcessBlock: function (words, offset) { this._mode.processBlock(words, offset); }, _doFinalize: function () { var finalProcessedBlocks; // Shortcut var padding = this.cfg.padding; // Finalize if (this._xformMode == this._ENC_XFORM_MODE) { // Pad data padding.pad(this._data, this.blockSize); // Process final blocks finalProcessedBlocks = this._process(!!'flush'); } else /* if (this._xformMode == this._DEC_XFORM_MODE) */ { // Process final blocks finalProcessedBlocks = this._process(!!'flush'); // Unpad data padding.unpad(finalProcessedBlocks); } return finalProcessedBlocks; }, blockSize: 128/32 }); /** * A collection of cipher parameters. * * @property {WordArray} ciphertext The raw ciphertext. * @property {WordArray} key The key to this ciphertext. * @property {WordArray} iv The IV used in the ciphering operation. * @property {WordArray} salt The salt used with a key derivation function. * @property {Cipher} algorithm The cipher algorithm. * @property {Mode} mode The block mode used in the ciphering operation. * @property {Padding} padding The padding scheme used in the ciphering operation. * @property {number} blockSize The block size of the cipher. * @property {Format} formatter The default formatting strategy to convert this cipher params object to a string. */ var CipherParams = C_lib.CipherParams = Base.extend({ /** * Initializes a newly created cipher params object. * * @param {Object} cipherParams An object with any of the possible cipher parameters. * * @example * * var cipherParams = CryptoJS.lib.CipherParams.create({ * ciphertext: ciphertextWordArray, * key: keyWordArray, * iv: ivWordArray, * salt: saltWordArray, * algorithm: CryptoJS.algo.AES, * mode: CryptoJS.mode.CBC, * padding: CryptoJS.pad.PKCS7, * blockSize: 4, * formatter: CryptoJS.format.OpenSSL * }); */ init: function (cipherParams) { this.mixIn(cipherParams); }, /** * Converts this cipher params object to a string. * * @param {Format} formatter (Optional) The formatting strategy to use. * * @return {string} The stringified cipher params. * * @throws Error If neither the formatter nor the default formatter is set. * * @example * * var string = cipherParams + ''; * var string = cipherParams.toString(); * var string = cipherParams.toString(CryptoJS.format.OpenSSL); */ toString: function (formatter) { return (formatter || this.formatter).stringify(this); } }); /** * Format namespace. */ var C_format = C.format = {}; /** * OpenSSL formatting strategy. */ var OpenSSLFormatter = C_format.OpenSSL = { /** * Converts a cipher params object to an OpenSSL-compatible string. * * @param {CipherParams} cipherParams The cipher params object. * * @return {string} The OpenSSL-compatible string. * * @static * * @example * * var openSSLString = CryptoJS.format.OpenSSL.stringify(cipherParams); */ stringify: function (cipherParams) { var wordArray; // Shortcuts var ciphertext = cipherParams.ciphertext; var salt = cipherParams.salt; // Format if (salt) { wordArray = WordArray.create([0x53616c74, 0x65645f5f]).concat(salt).concat(ciphertext); } else { wordArray = ciphertext; } return wordArray.toString(Base64); }, /** * Converts an OpenSSL-compatible string to a cipher params object. * * @param {string} openSSLStr The OpenSSL-compatible string. * * @return {CipherParams} The cipher params object. * * @static * * @example * * var cipherParams = CryptoJS.format.OpenSSL.parse(openSSLString); */ parse: function (openSSLStr) { var salt; // Parse base64 var ciphertext = Base64.parse(openSSLStr); // Shortcut var ciphertextWords = ciphertext.words; // Test for salt if (ciphertextWords[0] == 0x53616c74 && ciphertextWords[1] == 0x65645f5f) { // Extract salt salt = WordArray.create(ciphertextWords.slice(2, 4)); // Remove salt from ciphertext ciphertextWords.splice(0, 4); ciphertext.sigBytes -= 16; } return CipherParams.create({ ciphertext: ciphertext, salt: salt }); } }; /** * A cipher wrapper that returns ciphertext as a serializable cipher params object. */ var SerializableCipher = C_lib.SerializableCipher = Base.extend({ /** * Configuration options. * * @property {Formatter} format The formatting strategy to convert cipher param objects to and from a string. Default: OpenSSL */ cfg: Base.extend({ format: OpenSSLFormatter }), /** * Encrypts a message. * * @param {Cipher} cipher The cipher algorithm to use. * @param {WordArray|string} message The message to encrypt. * @param {WordArray} key The key. * @param {Object} cfg (Optional) The configuration options to use for this operation. * * @return {CipherParams} A cipher params object. * * @static * * @example * * var ciphertextParams = CryptoJS.lib.SerializableCipher.encrypt(CryptoJS.algo.AES, message, key); * var ciphertextParams = CryptoJS.lib.SerializableCipher.encrypt(CryptoJS.algo.AES, message, key, { iv: iv }); * var ciphertextParams = CryptoJS.lib.SerializableCipher.encrypt(CryptoJS.algo.AES, message, key, { iv: iv, format: CryptoJS.format.OpenSSL }); */ encrypt: function (cipher, message, key, cfg) { // Apply config defaults cfg = this.cfg.extend(cfg); // Encrypt var encryptor = cipher.createEncryptor(key, cfg); var ciphertext = encryptor.finalize(message); // Shortcut var cipherCfg = encryptor.cfg; // Create and return serializable cipher params return CipherParams.create({ ciphertext: ciphertext, key: key, iv: cipherCfg.iv, algorithm: cipher, mode: cipherCfg.mode, padding: cipherCfg.padding, blockSize: cipher.blockSize, formatter: cfg.format }); }, /** * Decrypts serialized ciphertext. * * @param {Cipher} cipher The cipher algorithm to use. * @param {CipherParams|string} ciphertext The ciphertext to decrypt. * @param {WordArray} key The key. * @param {Object} cfg (Optional) The configuration options to use for this operation. * * @return {WordArray} The plaintext. * * @static * * @example * * var plaintext = CryptoJS.lib.SerializableCipher.decrypt(CryptoJS.algo.AES, formattedCiphertext, key, { iv: iv, format: CryptoJS.format.OpenSSL }); * var plaintext = CryptoJS.lib.SerializableCipher.decrypt(CryptoJS.algo.AES, ciphertextParams, key, { iv: iv, format: CryptoJS.format.OpenSSL }); */ decrypt: function (cipher, ciphertext, key, cfg) { // Apply config defaults cfg = this.cfg.extend(cfg); // Convert string to CipherParams ciphertext = this._parse(ciphertext, cfg.format); // Decrypt var plaintext = cipher.createDecryptor(key, cfg).finalize(ciphertext.ciphertext); return plaintext; }, /** * Converts serialized ciphertext to CipherParams, * else assumed CipherParams already and returns ciphertext unchanged. * * @param {CipherParams|string} ciphertext The ciphertext. * @param {Formatter} format The formatting strategy to use to parse serialized ciphertext. * * @return {CipherParams} The unserialized ciphertext. * * @static * * @example * * var ciphertextParams = CryptoJS.lib.SerializableCipher._parse(ciphertextStringOrParams, format); */ _parse: function (ciphertext, format) { if (typeof ciphertext == 'string') { return format.parse(ciphertext, this); } else { return ciphertext; } } }); /** * Key derivation function namespace. */ var C_kdf = C.kdf = {}; /** * OpenSSL key derivation function. */ var OpenSSLKdf = C_kdf.OpenSSL = { /** * Derives a key and IV from a password. * * @param {string} password The password to derive from. * @param {number} keySize The size in words of the key to generate. * @param {number} ivSize The size in words of the IV to generate. * @param {WordArray|string} salt (Optional) A 64-bit salt to use. If omitted, a salt will be generated randomly. * * @return {CipherParams} A cipher params object with the key, IV, and salt. * * @static * * @example * * var derivedParams = CryptoJS.kdf.OpenSSL.execute('Password', 256/32, 128/32); * var derivedParams = CryptoJS.kdf.OpenSSL.execute('Password', 256/32, 128/32, 'saltsalt'); */ execute: function (password, keySize, ivSize, salt, hasher) { // Generate random salt if (!salt) { salt = WordArray.random(64/8); } // Derive key and IV if (!hasher) { var key = EvpKDF.create({ keySize: keySize + ivSize }).compute(password, salt); } else { var key = EvpKDF.create({ keySize: keySize + ivSize, hasher: hasher }).compute(password, salt); } // Separate key and IV var iv = WordArray.create(key.words.slice(keySize), ivSize * 4); key.sigBytes = keySize * 4; // Return params return CipherParams.create({ key: key, iv: iv, salt: salt }); } }; /** * A serializable cipher wrapper that derives the key from a password, * and returns ciphertext as a serializable cipher params object. */ var PasswordBasedCipher = C_lib.PasswordBasedCipher = SerializableCipher.extend({ /** * Configuration options. * * @property {KDF} kdf The key derivation function to use to generate a key and IV from a password. Default: OpenSSL */ cfg: SerializableCipher.cfg.extend({ kdf: OpenSSLKdf }), /** * Encrypts a message using a password. * * @param {Cipher} cipher The cipher algorithm to use. * @param {WordArray|string} message The message to encrypt. * @param {string} password The password. * @param {Object} cfg (Optional) The configuration options to use for this operation. * * @return {CipherParams} A cipher params object. * * @static * * @example * * var ciphertextParams = CryptoJS.lib.PasswordBasedCipher.encrypt(CryptoJS.algo.AES, message, 'password'); * var ciphertextParams = CryptoJS.lib.PasswordBasedCipher.encrypt(CryptoJS.algo.AES, message, 'password', { format: CryptoJS.format.OpenSSL }); */ encrypt: function (cipher, message, password, cfg) { // Apply config defaults cfg = this.cfg.extend(cfg); // Derive key and other params var derivedParams = cfg.kdf.execute(password, cipher.keySize, cipher.ivSize, cfg.salt, cfg.hasher); // Add IV to config cfg.iv = derivedParams.iv; // Encrypt var ciphertext = SerializableCipher.encrypt.call(this, cipher, message, derivedParams.key, cfg); // Mix in derived params ciphertext.mixIn(derivedParams); return ciphertext; }, /** * Decrypts serialized ciphertext using a password. * * @param {Cipher} cipher The cipher algorithm to use. * @param {CipherParams|string} ciphertext The ciphertext to decrypt. * @param {string} password The password. * @param {Object} cfg (Optional) The configuration options to use for this operation. * * @return {WordArray} The plaintext. * * @static * * @example * * var plaintext = CryptoJS.lib.PasswordBasedCipher.decrypt(CryptoJS.algo.AES, formattedCiphertext, 'password', { format: CryptoJS.format.OpenSSL }); * var plaintext = CryptoJS.lib.PasswordBasedCipher.decrypt(CryptoJS.algo.AES, ciphertextParams, 'password', { format: CryptoJS.format.OpenSSL }); */ decrypt: function (cipher, ciphertext, password, cfg) { // Apply config defaults cfg = this.cfg.extend(cfg); // Convert string to CipherParams ciphertext = this._parse(ciphertext, cfg.format); // Derive key and other params var derivedParams = cfg.kdf.execute(password, cipher.keySize, cipher.ivSize, ciphertext.salt, cfg.hasher); // Add IV to config cfg.iv = derivedParams.iv; // Decrypt var plaintext = SerializableCipher.decrypt.call(this, cipher, ciphertext, derivedParams.key, cfg); return plaintext; } }); }()); })); /***/ }), /***/ "./node_modules/crypto-js/core.js": /*!****************************************!*\ !*** ./node_modules/crypto-js/core.js ***! \****************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory) { if (true) { // CommonJS module.exports = exports = factory(); } else {} }(this, function () { /*globals window, global, require*/ /** * CryptoJS core components. */ var CryptoJS = CryptoJS || (function (Math, undefined) { var crypto; // Native crypto from window (Browser) if (typeof window !== 'undefined' && window.crypto) { crypto = window.crypto; } // Native crypto in web worker (Browser) if (typeof self !== 'undefined' && self.crypto) { crypto = self.crypto; } // Native crypto from worker if (typeof globalThis !== 'undefined' && globalThis.crypto) { crypto = globalThis.crypto; } // Native (experimental IE 11) crypto from window (Browser) if (!crypto && typeof window !== 'undefined' && window.msCrypto) { crypto = window.msCrypto; } // Native crypto from global (NodeJS) if (!crypto && typeof global !== 'undefined' && global.crypto) { crypto = global.crypto; } // Native crypto import via require (NodeJS) if (!crypto && "function" === 'function') { try { crypto = __webpack_require__(/*! crypto */ "crypto"); } catch (err) {} } /* * Cryptographically secure pseudorandom number generator * * As Math.random() is cryptographically not safe to use */ var cryptoSecureRandomInt = function () { if (crypto) { // Use getRandomValues method (Browser) if (typeof crypto.getRandomValues === 'function') { try { return crypto.getRandomValues(new Uint32Array(1))[0]; } catch (err) {} } // Use randomBytes method (NodeJS) if (typeof crypto.randomBytes === 'function') { try { return crypto.randomBytes(4).readInt32LE(); } catch (err) {} } } throw new Error('Native crypto module could not be used to get secure random number.'); }; /* * Local polyfill of Object.create */ var create = Object.create || (function () { function F() {} return function (obj) { var subtype; F.prototype = obj; subtype = new F(); F.prototype = null; return subtype; }; }()); /** * CryptoJS namespace. */ var C = {}; /** * Library namespace. */ var C_lib = C.lib = {}; /** * Base object for prototypal inheritance. */ var Base = C_lib.Base = (function () { return { /** * Creates a new object that inherits from this object. * * @param {Object} overrides Properties to copy into the new object. * * @return {Object} The new object. * * @static * * @example * * var MyType = CryptoJS.lib.Base.extend({ * field: 'value', * * method: function () { * } * }); */ extend: function (overrides) { // Spawn var subtype = create(this); // Augment if (overrides) { subtype.mixIn(overrides); } // Create default initializer if (!subtype.hasOwnProperty('init') || this.init === subtype.init) { subtype.init = function () { subtype.$super.init.apply(this, arguments); }; } // Initializer's prototype is the subtype object subtype.init.prototype = subtype; // Reference supertype subtype.$super = this; return subtype; }, /** * Extends this object and runs the init method. * Arguments to create() will be passed to init(). * * @return {Object} The new object. * * @static * * @example * * var instance = MyType.create(); */ create: function () { var instance = this.extend(); instance.init.apply(instance, arguments); return instance; }, /** * Initializes a newly created object. * Override this method to add some logic when your objects are created. * * @example * * var MyType = CryptoJS.lib.Base.extend({ * init: function () { * // ... * } * }); */ init: function () { }, /** * Copies properties into this object. * * @param {Object} properties The properties to mix in. * * @example * * MyType.mixIn({ * field: 'value' * }); */ mixIn: function (properties) { for (var propertyName in properties) { if (properties.hasOwnProperty(propertyName)) { this[propertyName] = properties[propertyName]; } } // IE won't copy toString using the loop above if (properties.hasOwnProperty('toString')) { this.toString = properties.toString; } }, /** * Creates a copy of this object. * * @return {Object} The clone. * * @example * * var clone = instance.clone(); */ clone: function () { return this.init.prototype.extend(this); } }; }()); /** * An array of 32-bit words. * * @property {Array} words The array of 32-bit words. * @property {number} sigBytes The number of significant bytes in this word array. */ var WordArray = C_lib.WordArray = Base.extend({ /** * Initializes a newly created word array. * * @param {Array} words (Optional) An array of 32-bit words. * @param {number} sigBytes (Optional) The number of significant bytes in the words. * * @example * * var wordArray = CryptoJS.lib.WordArray.create(); * var wordArray = CryptoJS.lib.WordArray.create([0x00010203, 0x04050607]); * var wordArray = CryptoJS.lib.WordArray.create([0x00010203, 0x04050607], 6); */ init: function (words, sigBytes) { words = this.words = words || []; if (sigBytes != undefined) { this.sigBytes = sigBytes; } else { this.sigBytes = words.length * 4; } }, /** * Converts this word array to a string. * * @param {Encoder} encoder (Optional) The encoding strategy to use. Default: CryptoJS.enc.Hex * * @return {string} The stringified word array. * * @example * * var string = wordArray + ''; * var string = wordArray.toString(); * var string = wordArray.toString(CryptoJS.enc.Utf8); */ toString: function (encoder) { return (encoder || Hex).stringify(this); }, /** * Concatenates a word array to this word array. * * @param {WordArray} wordArray The word array to append. * * @return {WordArray} This word array. * * @example * * wordArray1.concat(wordArray2); */ concat: function (wordArray) { // Shortcuts var thisWords = this.words; var thatWords = wordArray.words; var thisSigBytes = this.sigBytes; var thatSigBytes = wordArray.sigBytes; // Clamp excess bits this.clamp(); // Concat if (thisSigBytes % 4) { // Copy one byte at a time for (var i = 0; i < thatSigBytes; i++) { var thatByte = (thatWords[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff; thisWords[(thisSigBytes + i) >>> 2] |= thatByte << (24 - ((thisSigBytes + i) % 4) * 8); } } else { // Copy one word at a time for (var j = 0; j < thatSigBytes; j += 4) { thisWords[(thisSigBytes + j) >>> 2] = thatWords[j >>> 2]; } } this.sigBytes += thatSigBytes; // Chainable return this; }, /** * Removes insignificant bits. * * @example * * wordArray.clamp(); */ clamp: function () { // Shortcuts var words = this.words; var sigBytes = this.sigBytes; // Clamp words[sigBytes >>> 2] &= 0xffffffff << (32 - (sigBytes % 4) * 8); words.length = Math.ceil(sigBytes / 4); }, /** * Creates a copy of this word array. * * @return {WordArray} The clone. * * @example * * var clone = wordArray.clone(); */ clone: function () { var clone = Base.clone.call(this); clone.words = this.words.slice(0); return clone; }, /** * Creates a word array filled with random bytes. * * @param {number} nBytes The number of random bytes to generate. * * @return {WordArray} The random word array. * * @static * * @example * * var wordArray = CryptoJS.lib.WordArray.random(16); */ random: function (nBytes) { var words = []; for (var i = 0; i < nBytes; i += 4) { words.push(cryptoSecureRandomInt()); } return new WordArray.init(words, nBytes); } }); /** * Encoder namespace. */ var C_enc = C.enc = {}; /** * Hex encoding strategy. */ var Hex = C_enc.Hex = { /** * Converts a word array to a hex string. * * @param {WordArray} wordArray The word array. * * @return {string} The hex string. * * @static * * @example * * var hexString = CryptoJS.enc.Hex.stringify(wordArray); */ stringify: function (wordArray) { // Shortcuts var words = wordArray.words; var sigBytes = wordArray.sigBytes; // Convert var hexChars = []; for (var i = 0; i < sigBytes; i++) { var bite = (words[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff; hexChars.push((bite >>> 4).toString(16)); hexChars.push((bite & 0x0f).toString(16)); } return hexChars.join(''); }, /** * Converts a hex string to a word array. * * @param {string} hexStr The hex string. * * @return {WordArray} The word array. * * @static * * @example * * var wordArray = CryptoJS.enc.Hex.parse(hexString); */ parse: function (hexStr) { // Shortcut var hexStrLength = hexStr.length; // Convert var words = []; for (var i = 0; i < hexStrLength; i += 2) { words[i >>> 3] |= parseInt(hexStr.substr(i, 2), 16) << (24 - (i % 8) * 4); } return new WordArray.init(words, hexStrLength / 2); } }; /** * Latin1 encoding strategy. */ var Latin1 = C_enc.Latin1 = { /** * Converts a word array to a Latin1 string. * * @param {WordArray} wordArray The word array. * * @return {string} The Latin1 string. * * @static * * @example * * var latin1String = CryptoJS.enc.Latin1.stringify(wordArray); */ stringify: function (wordArray) { // Shortcuts var words = wordArray.words; var sigBytes = wordArray.sigBytes; // Convert var latin1Chars = []; for (var i = 0; i < sigBytes; i++) { var bite = (words[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff; latin1Chars.push(String.fromCharCode(bite)); } return latin1Chars.join(''); }, /** * Converts a Latin1 string to a word array. * * @param {string} latin1Str The Latin1 string. * * @return {WordArray} The word array. * * @static * * @example * * var wordArray = CryptoJS.enc.Latin1.parse(latin1String); */ parse: function (latin1Str) { // Shortcut var latin1StrLength = latin1Str.length; // Convert var words = []; for (var i = 0; i < latin1StrLength; i++) { words[i >>> 2] |= (latin1Str.charCodeAt(i) & 0xff) << (24 - (i % 4) * 8); } return new WordArray.init(words, latin1StrLength); } }; /** * UTF-8 encoding strategy. */ var Utf8 = C_enc.Utf8 = { /** * Converts a word array to a UTF-8 string. * * @param {WordArray} wordArray The word array. * * @return {string} The UTF-8 string. * * @static * * @example * * var utf8String = CryptoJS.enc.Utf8.stringify(wordArray); */ stringify: function (wordArray) { try { return decodeURIComponent(escape(Latin1.stringify(wordArray))); } catch (e) { throw new Error('Malformed UTF-8 data'); } }, /** * Converts a UTF-8 string to a word array. * * @param {string} utf8Str The UTF-8 string. * * @return {WordArray} The word array. * * @static * * @example * * var wordArray = CryptoJS.enc.Utf8.parse(utf8String); */ parse: function (utf8Str) { return Latin1.parse(unescape(encodeURIComponent(utf8Str))); } }; /** * Abstract buffered block algorithm template. * * The property blockSize must be implemented in a concrete subtype. * * @property {number} _minBufferSize The number of blocks that should be kept unprocessed in the buffer. Default: 0 */ var BufferedBlockAlgorithm = C_lib.BufferedBlockAlgorithm = Base.extend({ /** * Resets this block algorithm's data buffer to its initial state. * * @example * * bufferedBlockAlgorithm.reset(); */ reset: function () { // Initial values this._data = new WordArray.init(); this._nDataBytes = 0; }, /** * Adds new data to this block algorithm's buffer. * * @param {WordArray|string} data The data to append. Strings are converted to a WordArray using UTF-8. * * @example * * bufferedBlockAlgorithm._append('data'); * bufferedBlockAlgorithm._append(wordArray); */ _append: function (data) { // Convert string to WordArray, else assume WordArray already if (typeof data == 'string') { data = Utf8.parse(data); } // Append this._data.concat(data); this._nDataBytes += data.sigBytes; }, /** * Processes available data blocks. * * This method invokes _doProcessBlock(offset), which must be implemented by a concrete subtype. * * @param {boolean} doFlush Whether all blocks and partial blocks should be processed. * * @return {WordArray} The processed data. * * @example * * var processedData = bufferedBlockAlgorithm._process(); * var processedData = bufferedBlockAlgorithm._process(!!'flush'); */ _process: function (doFlush) { var processedWords; // Shortcuts var data = this._data; var dataWords = data.words; var dataSigBytes = data.sigBytes; var blockSize = this.blockSize; var blockSizeBytes = blockSize * 4; // Count blocks ready var nBlocksReady = dataSigBytes / blockSizeBytes; if (doFlush) { // Round up to include partial blocks nBlocksReady = Math.ceil(nBlocksReady); } else { // Round down to include only full blocks, // less the number of blocks that must remain in the buffer nBlocksReady = Math.max((nBlocksReady | 0) - this._minBufferSize, 0); } // Count words ready var nWordsReady = nBlocksReady * blockSize; // Count bytes ready var nBytesReady = Math.min(nWordsReady * 4, dataSigBytes); // Process blocks if (nWordsReady) { for (var offset = 0; offset < nWordsReady; offset += blockSize) { // Perform concrete-algorithm logic this._doProcessBlock(dataWords, offset); } // Remove processed words processedWords = dataWords.splice(0, nWordsReady); data.sigBytes -= nBytesReady; } // Return processed words return new WordArray.init(processedWords, nBytesReady); }, /** * Creates a copy of this object. * * @return {Object} The clone. * * @example * * var clone = bufferedBlockAlgorithm.clone(); */ clone: function () { var clone = Base.clone.call(this); clone._data = this._data.clone(); return clone; }, _minBufferSize: 0 }); /** * Abstract hasher template. * * @property {number} blockSize The number of 32-bit words this hasher operates on. Default: 16 (512 bits) */ var Hasher = C_lib.Hasher = BufferedBlockAlgorithm.extend({ /** * Configuration options. */ cfg: Base.extend(), /** * Initializes a newly created hasher. * * @param {Object} cfg (Optional) The configuration options to use for this hash computation. * * @example * * var hasher = CryptoJS.algo.SHA256.create(); */ init: function (cfg) { // Apply config defaults this.cfg = this.cfg.extend(cfg); // Set initial values this.reset(); }, /** * Resets this hasher to its initial state. * * @example * * hasher.reset(); */ reset: function () { // Reset data buffer BufferedBlockAlgorithm.reset.call(this); // Perform concrete-hasher logic this._doReset(); }, /** * Updates this hasher with a message. * * @param {WordArray|string} messageUpdate The message to append. * * @return {Hasher} This hasher. * * @example * * hasher.update('message'); * hasher.update(wordArray); */ update: function (messageUpdate) { // Append this._append(messageUpdate); // Update the hash this._process(); // Chainable return this; }, /** * Finalizes the hash computation. * Note that the finalize operation is effectively a destructive, read-once operation. * * @param {WordArray|string} messageUpdate (Optional) A final message update. * * @return {WordArray} The hash. * * @example * * var hash = hasher.finalize(); * var hash = hasher.finalize('message'); * var hash = hasher.finalize(wordArray); */ finalize: function (messageUpdate) { // Final message update if (messageUpdate) { this._append(messageUpdate); } // Perform concrete-hasher logic var hash = this._doFinalize(); return hash; }, blockSize: 512/32, /** * Creates a shortcut function to a hasher's object interface. * * @param {Hasher} hasher The hasher to create a helper for. * * @return {Function} The shortcut function. * * @static * * @example * * var SHA256 = CryptoJS.lib.Hasher._createHelper(CryptoJS.algo.SHA256); */ _createHelper: function (hasher) { return function (message, cfg) { return new hasher.init(cfg).finalize(message); }; }, /** * Creates a shortcut function to the HMAC's object interface. * * @param {Hasher} hasher The hasher to use in this HMAC helper. * * @return {Function} The shortcut function. * * @static * * @example * * var HmacSHA256 = CryptoJS.lib.Hasher._createHmacHelper(CryptoJS.algo.SHA256); */ _createHmacHelper: function (hasher) { return function (message, key) { return new C_algo.HMAC.init(hasher, key).finalize(message); }; } }); /** * Algorithm namespace. */ var C_algo = C.algo = {}; return C; }(Math)); return CryptoJS; })); /***/ }), /***/ "./node_modules/crypto-js/enc-base64.js": /*!**********************************************!*\ !*** ./node_modules/crypto-js/enc-base64.js ***! \**********************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js")); } else {} }(this, function (CryptoJS) { (function () { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var WordArray = C_lib.WordArray; var C_enc = C.enc; /** * Base64 encoding strategy. */ var Base64 = C_enc.Base64 = { /** * Converts a word array to a Base64 string. * * @param {WordArray} wordArray The word array. * * @return {string} The Base64 string. * * @static * * @example * * var base64String = CryptoJS.enc.Base64.stringify(wordArray); */ stringify: function (wordArray) { // Shortcuts var words = wordArray.words; var sigBytes = wordArray.sigBytes; var map = this._map; // Clamp excess bits wordArray.clamp(); // Convert var base64Chars = []; for (var i = 0; i < sigBytes; i += 3) { var byte1 = (words[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff; var byte2 = (words[(i + 1) >>> 2] >>> (24 - ((i + 1) % 4) * 8)) & 0xff; var byte3 = (words[(i + 2) >>> 2] >>> (24 - ((i + 2) % 4) * 8)) & 0xff; var triplet = (byte1 << 16) | (byte2 << 8) | byte3; for (var j = 0; (j < 4) && (i + j * 0.75 < sigBytes); j++) { base64Chars.push(map.charAt((triplet >>> (6 * (3 - j))) & 0x3f)); } } // Add padding var paddingChar = map.charAt(64); if (paddingChar) { while (base64Chars.length % 4) { base64Chars.push(paddingChar); } } return base64Chars.join(''); }, /** * Converts a Base64 string to a word array. * * @param {string} base64Str The Base64 string. * * @return {WordArray} The word array. * * @static * * @example * * var wordArray = CryptoJS.enc.Base64.parse(base64String); */ parse: function (base64Str) { // Shortcuts var base64StrLength = base64Str.length; var map = this._map; var reverseMap = this._reverseMap; if (!reverseMap) { reverseMap = this._reverseMap = []; for (var j = 0; j < map.length; j++) { reverseMap[map.charCodeAt(j)] = j; } } // Ignore padding var paddingChar = map.charAt(64); if (paddingChar) { var paddingIndex = base64Str.indexOf(paddingChar); if (paddingIndex !== -1) { base64StrLength = paddingIndex; } } // Convert return parseLoop(base64Str, base64StrLength, reverseMap); }, _map: 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/=' }; function parseLoop(base64Str, base64StrLength, reverseMap) { var words = []; var nBytes = 0; for (var i = 0; i < base64StrLength; i++) { if (i % 4) { var bits1 = reverseMap[base64Str.charCodeAt(i - 1)] << ((i % 4) * 2); var bits2 = reverseMap[base64Str.charCodeAt(i)] >>> (6 - (i % 4) * 2); var bitsCombined = bits1 | bits2; words[nBytes >>> 2] |= bitsCombined << (24 - (nBytes % 4) * 8); nBytes++; } } return WordArray.create(words, nBytes); } }()); return CryptoJS.enc.Base64; })); /***/ }), /***/ "./node_modules/crypto-js/enc-base64url.js": /*!*************************************************!*\ !*** ./node_modules/crypto-js/enc-base64url.js ***! \*************************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js")); } else {} }(this, function (CryptoJS) { (function () { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var WordArray = C_lib.WordArray; var C_enc = C.enc; /** * Base64url encoding strategy. */ var Base64url = C_enc.Base64url = { /** * Converts a word array to a Base64url string. * * @param {WordArray} wordArray The word array. * * @param {boolean} urlSafe Whether to use url safe * * @return {string} The Base64url string. * * @static * * @example * * var base64String = CryptoJS.enc.Base64url.stringify(wordArray); */ stringify: function (wordArray, urlSafe) { if (urlSafe === undefined) { urlSafe = true } // Shortcuts var words = wordArray.words; var sigBytes = wordArray.sigBytes; var map = urlSafe ? this._safe_map : this._map; // Clamp excess bits wordArray.clamp(); // Convert var base64Chars = []; for (var i = 0; i < sigBytes; i += 3) { var byte1 = (words[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff; var byte2 = (words[(i + 1) >>> 2] >>> (24 - ((i + 1) % 4) * 8)) & 0xff; var byte3 = (words[(i + 2) >>> 2] >>> (24 - ((i + 2) % 4) * 8)) & 0xff; var triplet = (byte1 << 16) | (byte2 << 8) | byte3; for (var j = 0; (j < 4) && (i + j * 0.75 < sigBytes); j++) { base64Chars.push(map.charAt((triplet >>> (6 * (3 - j))) & 0x3f)); } } // Add padding var paddingChar = map.charAt(64); if (paddingChar) { while (base64Chars.length % 4) { base64Chars.push(paddingChar); } } return base64Chars.join(''); }, /** * Converts a Base64url string to a word array. * * @param {string} base64Str The Base64url string. * * @param {boolean} urlSafe Whether to use url safe * * @return {WordArray} The word array. * * @static * * @example * * var wordArray = CryptoJS.enc.Base64url.parse(base64String); */ parse: function (base64Str, urlSafe) { if (urlSafe === undefined) { urlSafe = true } // Shortcuts var base64StrLength = base64Str.length; var map = urlSafe ? this._safe_map : this._map; var reverseMap = this._reverseMap; if (!reverseMap) { reverseMap = this._reverseMap = []; for (var j = 0; j < map.length; j++) { reverseMap[map.charCodeAt(j)] = j; } } // Ignore padding var paddingChar = map.charAt(64); if (paddingChar) { var paddingIndex = base64Str.indexOf(paddingChar); if (paddingIndex !== -1) { base64StrLength = paddingIndex; } } // Convert return parseLoop(base64Str, base64StrLength, reverseMap); }, _map: 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/=', _safe_map: 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789-_', }; function parseLoop(base64Str, base64StrLength, reverseMap) { var words = []; var nBytes = 0; for (var i = 0; i < base64StrLength; i++) { if (i % 4) { var bits1 = reverseMap[base64Str.charCodeAt(i - 1)] << ((i % 4) * 2); var bits2 = reverseMap[base64Str.charCodeAt(i)] >>> (6 - (i % 4) * 2); var bitsCombined = bits1 | bits2; words[nBytes >>> 2] |= bitsCombined << (24 - (nBytes % 4) * 8); nBytes++; } } return WordArray.create(words, nBytes); } }()); return CryptoJS.enc.Base64url; })); /***/ }), /***/ "./node_modules/crypto-js/enc-utf16.js": /*!*********************************************!*\ !*** ./node_modules/crypto-js/enc-utf16.js ***! \*********************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js")); } else {} }(this, function (CryptoJS) { (function () { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var WordArray = C_lib.WordArray; var C_enc = C.enc; /** * UTF-16 BE encoding strategy. */ var Utf16BE = C_enc.Utf16 = C_enc.Utf16BE = { /** * Converts a word array to a UTF-16 BE string. * * @param {WordArray} wordArray The word array. * * @return {string} The UTF-16 BE string. * * @static * * @example * * var utf16String = CryptoJS.enc.Utf16.stringify(wordArray); */ stringify: function (wordArray) { // Shortcuts var words = wordArray.words; var sigBytes = wordArray.sigBytes; // Convert var utf16Chars = []; for (var i = 0; i < sigBytes; i += 2) { var codePoint = (words[i >>> 2] >>> (16 - (i % 4) * 8)) & 0xffff; utf16Chars.push(String.fromCharCode(codePoint)); } return utf16Chars.join(''); }, /** * Converts a UTF-16 BE string to a word array. * * @param {string} utf16Str The UTF-16 BE string. * * @return {WordArray} The word array. * * @static * * @example * * var wordArray = CryptoJS.enc.Utf16.parse(utf16String); */ parse: function (utf16Str) { // Shortcut var utf16StrLength = utf16Str.length; // Convert var words = []; for (var i = 0; i < utf16StrLength; i++) { words[i >>> 1] |= utf16Str.charCodeAt(i) << (16 - (i % 2) * 16); } return WordArray.create(words, utf16StrLength * 2); } }; /** * UTF-16 LE encoding strategy. */ C_enc.Utf16LE = { /** * Converts a word array to a UTF-16 LE string. * * @param {WordArray} wordArray The word array. * * @return {string} The UTF-16 LE string. * * @static * * @example * * var utf16Str = CryptoJS.enc.Utf16LE.stringify(wordArray); */ stringify: function (wordArray) { // Shortcuts var words = wordArray.words; var sigBytes = wordArray.sigBytes; // Convert var utf16Chars = []; for (var i = 0; i < sigBytes; i += 2) { var codePoint = swapEndian((words[i >>> 2] >>> (16 - (i % 4) * 8)) & 0xffff); utf16Chars.push(String.fromCharCode(codePoint)); } return utf16Chars.join(''); }, /** * Converts a UTF-16 LE string to a word array. * * @param {string} utf16Str The UTF-16 LE string. * * @return {WordArray} The word array. * * @static * * @example * * var wordArray = CryptoJS.enc.Utf16LE.parse(utf16Str); */ parse: function (utf16Str) { // Shortcut var utf16StrLength = utf16Str.length; // Convert var words = []; for (var i = 0; i < utf16StrLength; i++) { words[i >>> 1] |= swapEndian(utf16Str.charCodeAt(i) << (16 - (i % 2) * 16)); } return WordArray.create(words, utf16StrLength * 2); } }; function swapEndian(word) { return ((word << 8) & 0xff00ff00) | ((word >>> 8) & 0x00ff00ff); } }()); return CryptoJS.enc.Utf16; })); /***/ }), /***/ "./node_modules/crypto-js/evpkdf.js": /*!******************************************!*\ !*** ./node_modules/crypto-js/evpkdf.js ***! \******************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./sha1 */ "./node_modules/crypto-js/sha1.js"), __webpack_require__(/*! ./hmac */ "./node_modules/crypto-js/hmac.js")); } else {} }(this, function (CryptoJS) { (function () { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var Base = C_lib.Base; var WordArray = C_lib.WordArray; var C_algo = C.algo; var MD5 = C_algo.MD5; /** * This key derivation function is meant to conform with EVP_BytesToKey. * www.openssl.org/docs/crypto/EVP_BytesToKey.html */ var EvpKDF = C_algo.EvpKDF = Base.extend({ /** * Configuration options. * * @property {number} keySize The key size in words to generate. Default: 4 (128 bits) * @property {Hasher} hasher The hash algorithm to use. Default: MD5 * @property {number} iterations The number of iterations to perform. Default: 1 */ cfg: Base.extend({ keySize: 128/32, hasher: MD5, iterations: 1 }), /** * Initializes a newly created key derivation function. * * @param {Object} cfg (Optional) The configuration options to use for the derivation. * * @example * * var kdf = CryptoJS.algo.EvpKDF.create(); * var kdf = CryptoJS.algo.EvpKDF.create({ keySize: 8 }); * var kdf = CryptoJS.algo.EvpKDF.create({ keySize: 8, iterations: 1000 }); */ init: function (cfg) { this.cfg = this.cfg.extend(cfg); }, /** * Derives a key from a password. * * @param {WordArray|string} password The password. * @param {WordArray|string} salt A salt. * * @return {WordArray} The derived key. * * @example * * var key = kdf.compute(password, salt); */ compute: function (password, salt) { var block; // Shortcut var cfg = this.cfg; // Init hasher var hasher = cfg.hasher.create(); // Initial values var derivedKey = WordArray.create(); // Shortcuts var derivedKeyWords = derivedKey.words; var keySize = cfg.keySize; var iterations = cfg.iterations; // Generate key while (derivedKeyWords.length < keySize) { if (block) { hasher.update(block); } block = hasher.update(password).finalize(salt); hasher.reset(); // Iterations for (var i = 1; i < iterations; i++) { block = hasher.finalize(block); hasher.reset(); } derivedKey.concat(block); } derivedKey.sigBytes = keySize * 4; return derivedKey; } }); /** * Derives a key from a password. * * @param {WordArray|string} password The password. * @param {WordArray|string} salt A salt. * @param {Object} cfg (Optional) The configuration options to use for this computation. * * @return {WordArray} The derived key. * * @static * * @example * * var key = CryptoJS.EvpKDF(password, salt); * var key = CryptoJS.EvpKDF(password, salt, { keySize: 8 }); * var key = CryptoJS.EvpKDF(password, salt, { keySize: 8, iterations: 1000 }); */ C.EvpKDF = function (password, salt, cfg) { return EvpKDF.create(cfg).compute(password, salt); }; }()); return CryptoJS.EvpKDF; })); /***/ }), /***/ "./node_modules/crypto-js/format-hex.js": /*!**********************************************!*\ !*** ./node_modules/crypto-js/format-hex.js ***! \**********************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { (function (undefined) { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var CipherParams = C_lib.CipherParams; var C_enc = C.enc; var Hex = C_enc.Hex; var C_format = C.format; var HexFormatter = C_format.Hex = { /** * Converts the ciphertext of a cipher params object to a hexadecimally encoded string. * * @param {CipherParams} cipherParams The cipher params object. * * @return {string} The hexadecimally encoded string. * * @static * * @example * * var hexString = CryptoJS.format.Hex.stringify(cipherParams); */ stringify: function (cipherParams) { return cipherParams.ciphertext.toString(Hex); }, /** * Converts a hexadecimally encoded ciphertext string to a cipher params object. * * @param {string} input The hexadecimally encoded string. * * @return {CipherParams} The cipher params object. * * @static * * @example * * var cipherParams = CryptoJS.format.Hex.parse(hexString); */ parse: function (input) { var ciphertext = Hex.parse(input); return CipherParams.create({ ciphertext: ciphertext }); } }; }()); return CryptoJS.format.Hex; })); /***/ }), /***/ "./node_modules/crypto-js/hmac.js": /*!****************************************!*\ !*** ./node_modules/crypto-js/hmac.js ***! \****************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js")); } else {} }(this, function (CryptoJS) { (function () { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var Base = C_lib.Base; var C_enc = C.enc; var Utf8 = C_enc.Utf8; var C_algo = C.algo; /** * HMAC algorithm. */ var HMAC = C_algo.HMAC = Base.extend({ /** * Initializes a newly created HMAC. * * @param {Hasher} hasher The hash algorithm to use. * @param {WordArray|string} key The secret key. * * @example * * var hmacHasher = CryptoJS.algo.HMAC.create(CryptoJS.algo.SHA256, key); */ init: function (hasher, key) { // Init hasher hasher = this._hasher = new hasher.init(); // Convert string to WordArray, else assume WordArray already if (typeof key == 'string') { key = Utf8.parse(key); } // Shortcuts var hasherBlockSize = hasher.blockSize; var hasherBlockSizeBytes = hasherBlockSize * 4; // Allow arbitrary length keys if (key.sigBytes > hasherBlockSizeBytes) { key = hasher.finalize(key); } // Clamp excess bits key.clamp(); // Clone key for inner and outer pads var oKey = this._oKey = key.clone(); var iKey = this._iKey = key.clone(); // Shortcuts var oKeyWords = oKey.words; var iKeyWords = iKey.words; // XOR keys with pad constants for (var i = 0; i < hasherBlockSize; i++) { oKeyWords[i] ^= 0x5c5c5c5c; iKeyWords[i] ^= 0x36363636; } oKey.sigBytes = iKey.sigBytes = hasherBlockSizeBytes; // Set initial values this.reset(); }, /** * Resets this HMAC to its initial state. * * @example * * hmacHasher.reset(); */ reset: function () { // Shortcut var hasher = this._hasher; // Reset hasher.reset(); hasher.update(this._iKey); }, /** * Updates this HMAC with a message. * * @param {WordArray|string} messageUpdate The message to append. * * @return {HMAC} This HMAC instance. * * @example * * hmacHasher.update('message'); * hmacHasher.update(wordArray); */ update: function (messageUpdate) { this._hasher.update(messageUpdate); // Chainable return this; }, /** * Finalizes the HMAC computation. * Note that the finalize operation is effectively a destructive, read-once operation. * * @param {WordArray|string} messageUpdate (Optional) A final message update. * * @return {WordArray} The HMAC. * * @example * * var hmac = hmacHasher.finalize(); * var hmac = hmacHasher.finalize('message'); * var hmac = hmacHasher.finalize(wordArray); */ finalize: function (messageUpdate) { // Shortcut var hasher = this._hasher; // Compute HMAC var innerHash = hasher.finalize(messageUpdate); hasher.reset(); var hmac = hasher.finalize(this._oKey.clone().concat(innerHash)); return hmac; } }); }()); })); /***/ }), /***/ "./node_modules/crypto-js/index.js": /*!*****************************************!*\ !*** ./node_modules/crypto-js/index.js ***! \*****************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./x64-core */ "./node_modules/crypto-js/x64-core.js"), __webpack_require__(/*! ./lib-typedarrays */ "./node_modules/crypto-js/lib-typedarrays.js"), __webpack_require__(/*! ./enc-utf16 */ "./node_modules/crypto-js/enc-utf16.js"), __webpack_require__(/*! ./enc-base64 */ "./node_modules/crypto-js/enc-base64.js"), __webpack_require__(/*! ./enc-base64url */ "./node_modules/crypto-js/enc-base64url.js"), __webpack_require__(/*! ./md5 */ "./node_modules/crypto-js/md5.js"), __webpack_require__(/*! ./sha1 */ "./node_modules/crypto-js/sha1.js"), __webpack_require__(/*! ./sha256 */ "./node_modules/crypto-js/sha256.js"), __webpack_require__(/*! ./sha224 */ "./node_modules/crypto-js/sha224.js"), __webpack_require__(/*! ./sha512 */ "./node_modules/crypto-js/sha512.js"), __webpack_require__(/*! ./sha384 */ "./node_modules/crypto-js/sha384.js"), __webpack_require__(/*! ./sha3 */ "./node_modules/crypto-js/sha3.js"), __webpack_require__(/*! ./ripemd160 */ "./node_modules/crypto-js/ripemd160.js"), __webpack_require__(/*! ./hmac */ "./node_modules/crypto-js/hmac.js"), __webpack_require__(/*! ./pbkdf2 */ "./node_modules/crypto-js/pbkdf2.js"), __webpack_require__(/*! ./evpkdf */ "./node_modules/crypto-js/evpkdf.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js"), __webpack_require__(/*! ./mode-cfb */ "./node_modules/crypto-js/mode-cfb.js"), __webpack_require__(/*! ./mode-ctr */ "./node_modules/crypto-js/mode-ctr.js"), __webpack_require__(/*! ./mode-ctr-gladman */ "./node_modules/crypto-js/mode-ctr-gladman.js"), __webpack_require__(/*! ./mode-ofb */ "./node_modules/crypto-js/mode-ofb.js"), __webpack_require__(/*! ./mode-ecb */ "./node_modules/crypto-js/mode-ecb.js"), __webpack_require__(/*! ./pad-ansix923 */ "./node_modules/crypto-js/pad-ansix923.js"), __webpack_require__(/*! ./pad-iso10126 */ "./node_modules/crypto-js/pad-iso10126.js"), __webpack_require__(/*! ./pad-iso97971 */ "./node_modules/crypto-js/pad-iso97971.js"), __webpack_require__(/*! ./pad-zeropadding */ "./node_modules/crypto-js/pad-zeropadding.js"), __webpack_require__(/*! ./pad-nopadding */ "./node_modules/crypto-js/pad-nopadding.js"), __webpack_require__(/*! ./format-hex */ "./node_modules/crypto-js/format-hex.js"), __webpack_require__(/*! ./aes */ "./node_modules/crypto-js/aes.js"), __webpack_require__(/*! ./tripledes */ "./node_modules/crypto-js/tripledes.js"), __webpack_require__(/*! ./rc4 */ "./node_modules/crypto-js/rc4.js"), __webpack_require__(/*! ./rabbit */ "./node_modules/crypto-js/rabbit.js"), __webpack_require__(/*! ./rabbit-legacy */ "./node_modules/crypto-js/rabbit-legacy.js"), __webpack_require__(/*! ./blowfish */ "./node_modules/crypto-js/blowfish.js")); } else {} }(this, function (CryptoJS) { return CryptoJS; })); /***/ }), /***/ "./node_modules/crypto-js/lib-typedarrays.js": /*!***************************************************!*\ !*** ./node_modules/crypto-js/lib-typedarrays.js ***! \***************************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js")); } else {} }(this, function (CryptoJS) { (function () { // Check if typed arrays are supported if (typeof ArrayBuffer != 'function') { return; } // Shortcuts var C = CryptoJS; var C_lib = C.lib; var WordArray = C_lib.WordArray; // Reference original init var superInit = WordArray.init; // Augment WordArray.init to handle typed arrays var subInit = WordArray.init = function (typedArray) { // Convert buffers to uint8 if (typedArray instanceof ArrayBuffer) { typedArray = new Uint8Array(typedArray); } // Convert other array views to uint8 if ( typedArray instanceof Int8Array || (typeof Uint8ClampedArray !== "undefined" && typedArray instanceof Uint8ClampedArray) || typedArray instanceof Int16Array || typedArray instanceof Uint16Array || typedArray instanceof Int32Array || typedArray instanceof Uint32Array || typedArray instanceof Float32Array || typedArray instanceof Float64Array ) { typedArray = new Uint8Array(typedArray.buffer, typedArray.byteOffset, typedArray.byteLength); } // Handle Uint8Array if (typedArray instanceof Uint8Array) { // Shortcut var typedArrayByteLength = typedArray.byteLength; // Extract bytes var words = []; for (var i = 0; i < typedArrayByteLength; i++) { words[i >>> 2] |= typedArray[i] << (24 - (i % 4) * 8); } // Initialize this word array superInit.call(this, words, typedArrayByteLength); } else { // Else call normal init superInit.apply(this, arguments); } }; subInit.prototype = WordArray; }()); return CryptoJS.lib.WordArray; })); /***/ }), /***/ "./node_modules/crypto-js/md5.js": /*!***************************************!*\ !*** ./node_modules/crypto-js/md5.js ***! \***************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js")); } else {} }(this, function (CryptoJS) { (function (Math) { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var WordArray = C_lib.WordArray; var Hasher = C_lib.Hasher; var C_algo = C.algo; // Constants table var T = []; // Compute constants (function () { for (var i = 0; i < 64; i++) { T[i] = (Math.abs(Math.sin(i + 1)) * 0x100000000) | 0; } }()); /** * MD5 hash algorithm. */ var MD5 = C_algo.MD5 = Hasher.extend({ _doReset: function () { this._hash = new WordArray.init([ 0x67452301, 0xefcdab89, 0x98badcfe, 0x10325476 ]); }, _doProcessBlock: function (M, offset) { // Swap endian for (var i = 0; i < 16; i++) { // Shortcuts var offset_i = offset + i; var M_offset_i = M[offset_i]; M[offset_i] = ( (((M_offset_i << 8) | (M_offset_i >>> 24)) & 0x00ff00ff) | (((M_offset_i << 24) | (M_offset_i >>> 8)) & 0xff00ff00) ); } // Shortcuts var H = this._hash.words; var M_offset_0 = M[offset + 0]; var M_offset_1 = M[offset + 1]; var M_offset_2 = M[offset + 2]; var M_offset_3 = M[offset + 3]; var M_offset_4 = M[offset + 4]; var M_offset_5 = M[offset + 5]; var M_offset_6 = M[offset + 6]; var M_offset_7 = M[offset + 7]; var M_offset_8 = M[offset + 8]; var M_offset_9 = M[offset + 9]; var M_offset_10 = M[offset + 10]; var M_offset_11 = M[offset + 11]; var M_offset_12 = M[offset + 12]; var M_offset_13 = M[offset + 13]; var M_offset_14 = M[offset + 14]; var M_offset_15 = M[offset + 15]; // Working variables var a = H[0]; var b = H[1]; var c = H[2]; var d = H[3]; // Computation a = FF(a, b, c, d, M_offset_0, 7, T[0]); d = FF(d, a, b, c, M_offset_1, 12, T[1]); c = FF(c, d, a, b, M_offset_2, 17, T[2]); b = FF(b, c, d, a, M_offset_3, 22, T[3]); a = FF(a, b, c, d, M_offset_4, 7, T[4]); d = FF(d, a, b, c, M_offset_5, 12, T[5]); c = FF(c, d, a, b, M_offset_6, 17, T[6]); b = FF(b, c, d, a, M_offset_7, 22, T[7]); a = FF(a, b, c, d, M_offset_8, 7, T[8]); d = FF(d, a, b, c, M_offset_9, 12, T[9]); c = FF(c, d, a, b, M_offset_10, 17, T[10]); b = FF(b, c, d, a, M_offset_11, 22, T[11]); a = FF(a, b, c, d, M_offset_12, 7, T[12]); d = FF(d, a, b, c, M_offset_13, 12, T[13]); c = FF(c, d, a, b, M_offset_14, 17, T[14]); b = FF(b, c, d, a, M_offset_15, 22, T[15]); a = GG(a, b, c, d, M_offset_1, 5, T[16]); d = GG(d, a, b, c, M_offset_6, 9, T[17]); c = GG(c, d, a, b, M_offset_11, 14, T[18]); b = GG(b, c, d, a, M_offset_0, 20, T[19]); a = GG(a, b, c, d, M_offset_5, 5, T[20]); d = GG(d, a, b, c, M_offset_10, 9, T[21]); c = GG(c, d, a, b, M_offset_15, 14, T[22]); b = GG(b, c, d, a, M_offset_4, 20, T[23]); a = GG(a, b, c, d, M_offset_9, 5, T[24]); d = GG(d, a, b, c, M_offset_14, 9, T[25]); c = GG(c, d, a, b, M_offset_3, 14, T[26]); b = GG(b, c, d, a, M_offset_8, 20, T[27]); a = GG(a, b, c, d, M_offset_13, 5, T[28]); d = GG(d, a, b, c, M_offset_2, 9, T[29]); c = GG(c, d, a, b, M_offset_7, 14, T[30]); b = GG(b, c, d, a, M_offset_12, 20, T[31]); a = HH(a, b, c, d, M_offset_5, 4, T[32]); d = HH(d, a, b, c, M_offset_8, 11, T[33]); c = HH(c, d, a, b, M_offset_11, 16, T[34]); b = HH(b, c, d, a, M_offset_14, 23, T[35]); a = HH(a, b, c, d, M_offset_1, 4, T[36]); d = HH(d, a, b, c, M_offset_4, 11, T[37]); c = HH(c, d, a, b, M_offset_7, 16, T[38]); b = HH(b, c, d, a, M_offset_10, 23, T[39]); a = HH(a, b, c, d, M_offset_13, 4, T[40]); d = HH(d, a, b, c, M_offset_0, 11, T[41]); c = HH(c, d, a, b, M_offset_3, 16, T[42]); b = HH(b, c, d, a, M_offset_6, 23, T[43]); a = HH(a, b, c, d, M_offset_9, 4, T[44]); d = HH(d, a, b, c, M_offset_12, 11, T[45]); c = HH(c, d, a, b, M_offset_15, 16, T[46]); b = HH(b, c, d, a, M_offset_2, 23, T[47]); a = II(a, b, c, d, M_offset_0, 6, T[48]); d = II(d, a, b, c, M_offset_7, 10, T[49]); c = II(c, d, a, b, M_offset_14, 15, T[50]); b = II(b, c, d, a, M_offset_5, 21, T[51]); a = II(a, b, c, d, M_offset_12, 6, T[52]); d = II(d, a, b, c, M_offset_3, 10, T[53]); c = II(c, d, a, b, M_offset_10, 15, T[54]); b = II(b, c, d, a, M_offset_1, 21, T[55]); a = II(a, b, c, d, M_offset_8, 6, T[56]); d = II(d, a, b, c, M_offset_15, 10, T[57]); c = II(c, d, a, b, M_offset_6, 15, T[58]); b = II(b, c, d, a, M_offset_13, 21, T[59]); a = II(a, b, c, d, M_offset_4, 6, T[60]); d = II(d, a, b, c, M_offset_11, 10, T[61]); c = II(c, d, a, b, M_offset_2, 15, T[62]); b = II(b, c, d, a, M_offset_9, 21, T[63]); // Intermediate hash value H[0] = (H[0] + a) | 0; H[1] = (H[1] + b) | 0; H[2] = (H[2] + c) | 0; H[3] = (H[3] + d) | 0; }, _doFinalize: function () { // Shortcuts var data = this._data; var dataWords = data.words; var nBitsTotal = this._nDataBytes * 8; var nBitsLeft = data.sigBytes * 8; // Add padding dataWords[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32); var nBitsTotalH = Math.floor(nBitsTotal / 0x100000000); var nBitsTotalL = nBitsTotal; dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 15] = ( (((nBitsTotalH << 8) | (nBitsTotalH >>> 24)) & 0x00ff00ff) | (((nBitsTotalH << 24) | (nBitsTotalH >>> 8)) & 0xff00ff00) ); dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 14] = ( (((nBitsTotalL << 8) | (nBitsTotalL >>> 24)) & 0x00ff00ff) | (((nBitsTotalL << 24) | (nBitsTotalL >>> 8)) & 0xff00ff00) ); data.sigBytes = (dataWords.length + 1) * 4; // Hash final blocks this._process(); // Shortcuts var hash = this._hash; var H = hash.words; // Swap endian for (var i = 0; i < 4; i++) { // Shortcut var H_i = H[i]; H[i] = (((H_i << 8) | (H_i >>> 24)) & 0x00ff00ff) | (((H_i << 24) | (H_i >>> 8)) & 0xff00ff00); } // Return final computed hash return hash; }, clone: function () { var clone = Hasher.clone.call(this); clone._hash = this._hash.clone(); return clone; } }); function FF(a, b, c, d, x, s, t) { var n = a + ((b & c) | (~b & d)) + x + t; return ((n << s) | (n >>> (32 - s))) + b; } function GG(a, b, c, d, x, s, t) { var n = a + ((b & d) | (c & ~d)) + x + t; return ((n << s) | (n >>> (32 - s))) + b; } function HH(a, b, c, d, x, s, t) { var n = a + (b ^ c ^ d) + x + t; return ((n << s) | (n >>> (32 - s))) + b; } function II(a, b, c, d, x, s, t) { var n = a + (c ^ (b | ~d)) + x + t; return ((n << s) | (n >>> (32 - s))) + b; } /** * Shortcut function to the hasher's object interface. * * @param {WordArray|string} message The message to hash. * * @return {WordArray} The hash. * * @static * * @example * * var hash = CryptoJS.MD5('message'); * var hash = CryptoJS.MD5(wordArray); */ C.MD5 = Hasher._createHelper(MD5); /** * Shortcut function to the HMAC's object interface. * * @param {WordArray|string} message The message to hash. * @param {WordArray|string} key The secret key. * * @return {WordArray} The HMAC. * * @static * * @example * * var hmac = CryptoJS.HmacMD5(message, key); */ C.HmacMD5 = Hasher._createHmacHelper(MD5); }(Math)); return CryptoJS.MD5; })); /***/ }), /***/ "./node_modules/crypto-js/mode-cfb.js": /*!********************************************!*\ !*** ./node_modules/crypto-js/mode-cfb.js ***! \********************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { /** * Cipher Feedback block mode. */ CryptoJS.mode.CFB = (function () { var CFB = CryptoJS.lib.BlockCipherMode.extend(); CFB.Encryptor = CFB.extend({ processBlock: function (words, offset) { // Shortcuts var cipher = this._cipher; var blockSize = cipher.blockSize; generateKeystreamAndEncrypt.call(this, words, offset, blockSize, cipher); // Remember this block to use with next block this._prevBlock = words.slice(offset, offset + blockSize); } }); CFB.Decryptor = CFB.extend({ processBlock: function (words, offset) { // Shortcuts var cipher = this._cipher; var blockSize = cipher.blockSize; // Remember this block to use with next block var thisBlock = words.slice(offset, offset + blockSize); generateKeystreamAndEncrypt.call(this, words, offset, blockSize, cipher); // This block becomes the previous block this._prevBlock = thisBlock; } }); function generateKeystreamAndEncrypt(words, offset, blockSize, cipher) { var keystream; // Shortcut var iv = this._iv; // Generate keystream if (iv) { keystream = iv.slice(0); // Remove IV for subsequent blocks this._iv = undefined; } else { keystream = this._prevBlock; } cipher.encryptBlock(keystream, 0); // Encrypt for (var i = 0; i < blockSize; i++) { words[offset + i] ^= keystream[i]; } } return CFB; }()); return CryptoJS.mode.CFB; })); /***/ }), /***/ "./node_modules/crypto-js/mode-ctr-gladman.js": /*!****************************************************!*\ !*** ./node_modules/crypto-js/mode-ctr-gladman.js ***! \****************************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { /** @preserve * Counter block mode compatible with Dr Brian Gladman fileenc.c * derived from CryptoJS.mode.CTR * Jan Hruby jhruby.web@gmail.com */ CryptoJS.mode.CTRGladman = (function () { var CTRGladman = CryptoJS.lib.BlockCipherMode.extend(); function incWord(word) { if (((word >> 24) & 0xff) === 0xff) { //overflow var b1 = (word >> 16)&0xff; var b2 = (word >> 8)&0xff; var b3 = word & 0xff; if (b1 === 0xff) // overflow b1 { b1 = 0; if (b2 === 0xff) { b2 = 0; if (b3 === 0xff) { b3 = 0; } else { ++b3; } } else { ++b2; } } else { ++b1; } word = 0; word += (b1 << 16); word += (b2 << 8); word += b3; } else { word += (0x01 << 24); } return word; } function incCounter(counter) { if ((counter[0] = incWord(counter[0])) === 0) { // encr_data in fileenc.c from Dr Brian Gladman's counts only with DWORD j < 8 counter[1] = incWord(counter[1]); } return counter; } var Encryptor = CTRGladman.Encryptor = CTRGladman.extend({ processBlock: function (words, offset) { // Shortcuts var cipher = this._cipher var blockSize = cipher.blockSize; var iv = this._iv; var counter = this._counter; // Generate keystream if (iv) { counter = this._counter = iv.slice(0); // Remove IV for subsequent blocks this._iv = undefined; } incCounter(counter); var keystream = counter.slice(0); cipher.encryptBlock(keystream, 0); // Encrypt for (var i = 0; i < blockSize; i++) { words[offset + i] ^= keystream[i]; } } }); CTRGladman.Decryptor = Encryptor; return CTRGladman; }()); return CryptoJS.mode.CTRGladman; })); /***/ }), /***/ "./node_modules/crypto-js/mode-ctr.js": /*!********************************************!*\ !*** ./node_modules/crypto-js/mode-ctr.js ***! \********************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { /** * Counter block mode. */ CryptoJS.mode.CTR = (function () { var CTR = CryptoJS.lib.BlockCipherMode.extend(); var Encryptor = CTR.Encryptor = CTR.extend({ processBlock: function (words, offset) { // Shortcuts var cipher = this._cipher var blockSize = cipher.blockSize; var iv = this._iv; var counter = this._counter; // Generate keystream if (iv) { counter = this._counter = iv.slice(0); // Remove IV for subsequent blocks this._iv = undefined; } var keystream = counter.slice(0); cipher.encryptBlock(keystream, 0); // Increment counter counter[blockSize - 1] = (counter[blockSize - 1] + 1) | 0 // Encrypt for (var i = 0; i < blockSize; i++) { words[offset + i] ^= keystream[i]; } } }); CTR.Decryptor = Encryptor; return CTR; }()); return CryptoJS.mode.CTR; })); /***/ }), /***/ "./node_modules/crypto-js/mode-ecb.js": /*!********************************************!*\ !*** ./node_modules/crypto-js/mode-ecb.js ***! \********************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { /** * Electronic Codebook block mode. */ CryptoJS.mode.ECB = (function () { var ECB = CryptoJS.lib.BlockCipherMode.extend(); ECB.Encryptor = ECB.extend({ processBlock: function (words, offset) { this._cipher.encryptBlock(words, offset); } }); ECB.Decryptor = ECB.extend({ processBlock: function (words, offset) { this._cipher.decryptBlock(words, offset); } }); return ECB; }()); return CryptoJS.mode.ECB; })); /***/ }), /***/ "./node_modules/crypto-js/mode-ofb.js": /*!********************************************!*\ !*** ./node_modules/crypto-js/mode-ofb.js ***! \********************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { /** * Output Feedback block mode. */ CryptoJS.mode.OFB = (function () { var OFB = CryptoJS.lib.BlockCipherMode.extend(); var Encryptor = OFB.Encryptor = OFB.extend({ processBlock: function (words, offset) { // Shortcuts var cipher = this._cipher var blockSize = cipher.blockSize; var iv = this._iv; var keystream = this._keystream; // Generate keystream if (iv) { keystream = this._keystream = iv.slice(0); // Remove IV for subsequent blocks this._iv = undefined; } cipher.encryptBlock(keystream, 0); // Encrypt for (var i = 0; i < blockSize; i++) { words[offset + i] ^= keystream[i]; } } }); OFB.Decryptor = Encryptor; return OFB; }()); return CryptoJS.mode.OFB; })); /***/ }), /***/ "./node_modules/crypto-js/pad-ansix923.js": /*!************************************************!*\ !*** ./node_modules/crypto-js/pad-ansix923.js ***! \************************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { /** * ANSI X.923 padding strategy. */ CryptoJS.pad.AnsiX923 = { pad: function (data, blockSize) { // Shortcuts var dataSigBytes = data.sigBytes; var blockSizeBytes = blockSize * 4; // Count padding bytes var nPaddingBytes = blockSizeBytes - dataSigBytes % blockSizeBytes; // Compute last byte position var lastBytePos = dataSigBytes + nPaddingBytes - 1; // Pad data.clamp(); data.words[lastBytePos >>> 2] |= nPaddingBytes << (24 - (lastBytePos % 4) * 8); data.sigBytes += nPaddingBytes; }, unpad: function (data) { // Get number of padding bytes from last byte var nPaddingBytes = data.words[(data.sigBytes - 1) >>> 2] & 0xff; // Remove padding data.sigBytes -= nPaddingBytes; } }; return CryptoJS.pad.Ansix923; })); /***/ }), /***/ "./node_modules/crypto-js/pad-iso10126.js": /*!************************************************!*\ !*** ./node_modules/crypto-js/pad-iso10126.js ***! \************************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { /** * ISO 10126 padding strategy. */ CryptoJS.pad.Iso10126 = { pad: function (data, blockSize) { // Shortcut var blockSizeBytes = blockSize * 4; // Count padding bytes var nPaddingBytes = blockSizeBytes - data.sigBytes % blockSizeBytes; // Pad data.concat(CryptoJS.lib.WordArray.random(nPaddingBytes - 1)). concat(CryptoJS.lib.WordArray.create([nPaddingBytes << 24], 1)); }, unpad: function (data) { // Get number of padding bytes from last byte var nPaddingBytes = data.words[(data.sigBytes - 1) >>> 2] & 0xff; // Remove padding data.sigBytes -= nPaddingBytes; } }; return CryptoJS.pad.Iso10126; })); /***/ }), /***/ "./node_modules/crypto-js/pad-iso97971.js": /*!************************************************!*\ !*** ./node_modules/crypto-js/pad-iso97971.js ***! \************************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { /** * ISO/IEC 9797-1 Padding Method 2. */ CryptoJS.pad.Iso97971 = { pad: function (data, blockSize) { // Add 0x80 byte data.concat(CryptoJS.lib.WordArray.create([0x80000000], 1)); // Zero pad the rest CryptoJS.pad.ZeroPadding.pad(data, blockSize); }, unpad: function (data) { // Remove zero padding CryptoJS.pad.ZeroPadding.unpad(data); // Remove one more byte -- the 0x80 byte data.sigBytes--; } }; return CryptoJS.pad.Iso97971; })); /***/ }), /***/ "./node_modules/crypto-js/pad-nopadding.js": /*!*************************************************!*\ !*** ./node_modules/crypto-js/pad-nopadding.js ***! \*************************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { /** * A noop padding strategy. */ CryptoJS.pad.NoPadding = { pad: function () { }, unpad: function () { } }; return CryptoJS.pad.NoPadding; })); /***/ }), /***/ "./node_modules/crypto-js/pad-zeropadding.js": /*!***************************************************!*\ !*** ./node_modules/crypto-js/pad-zeropadding.js ***! \***************************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { /** * Zero padding strategy. */ CryptoJS.pad.ZeroPadding = { pad: function (data, blockSize) { // Shortcut var blockSizeBytes = blockSize * 4; // Pad data.clamp(); data.sigBytes += blockSizeBytes - ((data.sigBytes % blockSizeBytes) || blockSizeBytes); }, unpad: function (data) { // Shortcut var dataWords = data.words; // Unpad var i = data.sigBytes - 1; for (var i = data.sigBytes - 1; i >= 0; i--) { if (((dataWords[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff)) { data.sigBytes = i + 1; break; } } } }; return CryptoJS.pad.ZeroPadding; })); /***/ }), /***/ "./node_modules/crypto-js/pbkdf2.js": /*!******************************************!*\ !*** ./node_modules/crypto-js/pbkdf2.js ***! \******************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./sha256 */ "./node_modules/crypto-js/sha256.js"), __webpack_require__(/*! ./hmac */ "./node_modules/crypto-js/hmac.js")); } else {} }(this, function (CryptoJS) { (function () { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var Base = C_lib.Base; var WordArray = C_lib.WordArray; var C_algo = C.algo; var SHA256 = C_algo.SHA256; var HMAC = C_algo.HMAC; /** * Password-Based Key Derivation Function 2 algorithm. */ var PBKDF2 = C_algo.PBKDF2 = Base.extend({ /** * Configuration options. * * @property {number} keySize The key size in words to generate. Default: 4 (128 bits) * @property {Hasher} hasher The hasher to use. Default: SHA256 * @property {number} iterations The number of iterations to perform. Default: 250000 */ cfg: Base.extend({ keySize: 128/32, hasher: SHA256, iterations: 250000 }), /** * Initializes a newly created key derivation function. * * @param {Object} cfg (Optional) The configuration options to use for the derivation. * * @example * * var kdf = CryptoJS.algo.PBKDF2.create(); * var kdf = CryptoJS.algo.PBKDF2.create({ keySize: 8 }); * var kdf = CryptoJS.algo.PBKDF2.create({ keySize: 8, iterations: 1000 }); */ init: function (cfg) { this.cfg = this.cfg.extend(cfg); }, /** * Computes the Password-Based Key Derivation Function 2. * * @param {WordArray|string} password The password. * @param {WordArray|string} salt A salt. * * @return {WordArray} The derived key. * * @example * * var key = kdf.compute(password, salt); */ compute: function (password, salt) { // Shortcut var cfg = this.cfg; // Init HMAC var hmac = HMAC.create(cfg.hasher, password); // Initial values var derivedKey = WordArray.create(); var blockIndex = WordArray.create([0x00000001]); // Shortcuts var derivedKeyWords = derivedKey.words; var blockIndexWords = blockIndex.words; var keySize = cfg.keySize; var iterations = cfg.iterations; // Generate key while (derivedKeyWords.length < keySize) { var block = hmac.update(salt).finalize(blockIndex); hmac.reset(); // Shortcuts var blockWords = block.words; var blockWordsLength = blockWords.length; // Iterations var intermediate = block; for (var i = 1; i < iterations; i++) { intermediate = hmac.finalize(intermediate); hmac.reset(); // Shortcut var intermediateWords = intermediate.words; // XOR intermediate with block for (var j = 0; j < blockWordsLength; j++) { blockWords[j] ^= intermediateWords[j]; } } derivedKey.concat(block); blockIndexWords[0]++; } derivedKey.sigBytes = keySize * 4; return derivedKey; } }); /** * Computes the Password-Based Key Derivation Function 2. * * @param {WordArray|string} password The password. * @param {WordArray|string} salt A salt. * @param {Object} cfg (Optional) The configuration options to use for this computation. * * @return {WordArray} The derived key. * * @static * * @example * * var key = CryptoJS.PBKDF2(password, salt); * var key = CryptoJS.PBKDF2(password, salt, { keySize: 8 }); * var key = CryptoJS.PBKDF2(password, salt, { keySize: 8, iterations: 1000 }); */ C.PBKDF2 = function (password, salt, cfg) { return PBKDF2.create(cfg).compute(password, salt); }; }()); return CryptoJS.PBKDF2; })); /***/ }), /***/ "./node_modules/crypto-js/rabbit-legacy.js": /*!*************************************************!*\ !*** ./node_modules/crypto-js/rabbit-legacy.js ***! \*************************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./enc-base64 */ "./node_modules/crypto-js/enc-base64.js"), __webpack_require__(/*! ./md5 */ "./node_modules/crypto-js/md5.js"), __webpack_require__(/*! ./evpkdf */ "./node_modules/crypto-js/evpkdf.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { (function () { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var StreamCipher = C_lib.StreamCipher; var C_algo = C.algo; // Reusable objects var S = []; var C_ = []; var G = []; /** * Rabbit stream cipher algorithm. * * This is a legacy version that neglected to convert the key to little-endian. * This error doesn't affect the cipher's security, * but it does affect its compatibility with other implementations. */ var RabbitLegacy = C_algo.RabbitLegacy = StreamCipher.extend({ _doReset: function () { // Shortcuts var K = this._key.words; var iv = this.cfg.iv; // Generate initial state values var X = this._X = [ K[0], (K[3] << 16) | (K[2] >>> 16), K[1], (K[0] << 16) | (K[3] >>> 16), K[2], (K[1] << 16) | (K[0] >>> 16), K[3], (K[2] << 16) | (K[1] >>> 16) ]; // Generate initial counter values var C = this._C = [ (K[2] << 16) | (K[2] >>> 16), (K[0] & 0xffff0000) | (K[1] & 0x0000ffff), (K[3] << 16) | (K[3] >>> 16), (K[1] & 0xffff0000) | (K[2] & 0x0000ffff), (K[0] << 16) | (K[0] >>> 16), (K[2] & 0xffff0000) | (K[3] & 0x0000ffff), (K[1] << 16) | (K[1] >>> 16), (K[3] & 0xffff0000) | (K[0] & 0x0000ffff) ]; // Carry bit this._b = 0; // Iterate the system four times for (var i = 0; i < 4; i++) { nextState.call(this); } // Modify the counters for (var i = 0; i < 8; i++) { C[i] ^= X[(i + 4) & 7]; } // IV setup if (iv) { // Shortcuts var IV = iv.words; var IV_0 = IV[0]; var IV_1 = IV[1]; // Generate four subvectors var i0 = (((IV_0 << 8) | (IV_0 >>> 24)) & 0x00ff00ff) | (((IV_0 << 24) | (IV_0 >>> 8)) & 0xff00ff00); var i2 = (((IV_1 << 8) | (IV_1 >>> 24)) & 0x00ff00ff) | (((IV_1 << 24) | (IV_1 >>> 8)) & 0xff00ff00); var i1 = (i0 >>> 16) | (i2 & 0xffff0000); var i3 = (i2 << 16) | (i0 & 0x0000ffff); // Modify counter values C[0] ^= i0; C[1] ^= i1; C[2] ^= i2; C[3] ^= i3; C[4] ^= i0; C[5] ^= i1; C[6] ^= i2; C[7] ^= i3; // Iterate the system four times for (var i = 0; i < 4; i++) { nextState.call(this); } } }, _doProcessBlock: function (M, offset) { // Shortcut var X = this._X; // Iterate the system nextState.call(this); // Generate four keystream words S[0] = X[0] ^ (X[5] >>> 16) ^ (X[3] << 16); S[1] = X[2] ^ (X[7] >>> 16) ^ (X[5] << 16); S[2] = X[4] ^ (X[1] >>> 16) ^ (X[7] << 16); S[3] = X[6] ^ (X[3] >>> 16) ^ (X[1] << 16); for (var i = 0; i < 4; i++) { // Swap endian S[i] = (((S[i] << 8) | (S[i] >>> 24)) & 0x00ff00ff) | (((S[i] << 24) | (S[i] >>> 8)) & 0xff00ff00); // Encrypt M[offset + i] ^= S[i]; } }, blockSize: 128/32, ivSize: 64/32 }); function nextState() { // Shortcuts var X = this._X; var C = this._C; // Save old counter values for (var i = 0; i < 8; i++) { C_[i] = C[i]; } // Calculate new counter values C[0] = (C[0] + 0x4d34d34d + this._b) | 0; C[1] = (C[1] + 0xd34d34d3 + ((C[0] >>> 0) < (C_[0] >>> 0) ? 1 : 0)) | 0; C[2] = (C[2] + 0x34d34d34 + ((C[1] >>> 0) < (C_[1] >>> 0) ? 1 : 0)) | 0; C[3] = (C[3] + 0x4d34d34d + ((C[2] >>> 0) < (C_[2] >>> 0) ? 1 : 0)) | 0; C[4] = (C[4] + 0xd34d34d3 + ((C[3] >>> 0) < (C_[3] >>> 0) ? 1 : 0)) | 0; C[5] = (C[5] + 0x34d34d34 + ((C[4] >>> 0) < (C_[4] >>> 0) ? 1 : 0)) | 0; C[6] = (C[6] + 0x4d34d34d + ((C[5] >>> 0) < (C_[5] >>> 0) ? 1 : 0)) | 0; C[7] = (C[7] + 0xd34d34d3 + ((C[6] >>> 0) < (C_[6] >>> 0) ? 1 : 0)) | 0; this._b = (C[7] >>> 0) < (C_[7] >>> 0) ? 1 : 0; // Calculate the g-values for (var i = 0; i < 8; i++) { var gx = X[i] + C[i]; // Construct high and low argument for squaring var ga = gx & 0xffff; var gb = gx >>> 16; // Calculate high and low result of squaring var gh = ((((ga * ga) >>> 17) + ga * gb) >>> 15) + gb * gb; var gl = (((gx & 0xffff0000) * gx) | 0) + (((gx & 0x0000ffff) * gx) | 0); // High XOR low G[i] = gh ^ gl; } // Calculate new state values X[0] = (G[0] + ((G[7] << 16) | (G[7] >>> 16)) + ((G[6] << 16) | (G[6] >>> 16))) | 0; X[1] = (G[1] + ((G[0] << 8) | (G[0] >>> 24)) + G[7]) | 0; X[2] = (G[2] + ((G[1] << 16) | (G[1] >>> 16)) + ((G[0] << 16) | (G[0] >>> 16))) | 0; X[3] = (G[3] + ((G[2] << 8) | (G[2] >>> 24)) + G[1]) | 0; X[4] = (G[4] + ((G[3] << 16) | (G[3] >>> 16)) + ((G[2] << 16) | (G[2] >>> 16))) | 0; X[5] = (G[5] + ((G[4] << 8) | (G[4] >>> 24)) + G[3]) | 0; X[6] = (G[6] + ((G[5] << 16) | (G[5] >>> 16)) + ((G[4] << 16) | (G[4] >>> 16))) | 0; X[7] = (G[7] + ((G[6] << 8) | (G[6] >>> 24)) + G[5]) | 0; } /** * Shortcut functions to the cipher's object interface. * * @example * * var ciphertext = CryptoJS.RabbitLegacy.encrypt(message, key, cfg); * var plaintext = CryptoJS.RabbitLegacy.decrypt(ciphertext, key, cfg); */ C.RabbitLegacy = StreamCipher._createHelper(RabbitLegacy); }()); return CryptoJS.RabbitLegacy; })); /***/ }), /***/ "./node_modules/crypto-js/rabbit.js": /*!******************************************!*\ !*** ./node_modules/crypto-js/rabbit.js ***! \******************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./enc-base64 */ "./node_modules/crypto-js/enc-base64.js"), __webpack_require__(/*! ./md5 */ "./node_modules/crypto-js/md5.js"), __webpack_require__(/*! ./evpkdf */ "./node_modules/crypto-js/evpkdf.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { (function () { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var StreamCipher = C_lib.StreamCipher; var C_algo = C.algo; // Reusable objects var S = []; var C_ = []; var G = []; /** * Rabbit stream cipher algorithm */ var Rabbit = C_algo.Rabbit = StreamCipher.extend({ _doReset: function () { // Shortcuts var K = this._key.words; var iv = this.cfg.iv; // Swap endian for (var i = 0; i < 4; i++) { K[i] = (((K[i] << 8) | (K[i] >>> 24)) & 0x00ff00ff) | (((K[i] << 24) | (K[i] >>> 8)) & 0xff00ff00); } // Generate initial state values var X = this._X = [ K[0], (K[3] << 16) | (K[2] >>> 16), K[1], (K[0] << 16) | (K[3] >>> 16), K[2], (K[1] << 16) | (K[0] >>> 16), K[3], (K[2] << 16) | (K[1] >>> 16) ]; // Generate initial counter values var C = this._C = [ (K[2] << 16) | (K[2] >>> 16), (K[0] & 0xffff0000) | (K[1] & 0x0000ffff), (K[3] << 16) | (K[3] >>> 16), (K[1] & 0xffff0000) | (K[2] & 0x0000ffff), (K[0] << 16) | (K[0] >>> 16), (K[2] & 0xffff0000) | (K[3] & 0x0000ffff), (K[1] << 16) | (K[1] >>> 16), (K[3] & 0xffff0000) | (K[0] & 0x0000ffff) ]; // Carry bit this._b = 0; // Iterate the system four times for (var i = 0; i < 4; i++) { nextState.call(this); } // Modify the counters for (var i = 0; i < 8; i++) { C[i] ^= X[(i + 4) & 7]; } // IV setup if (iv) { // Shortcuts var IV = iv.words; var IV_0 = IV[0]; var IV_1 = IV[1]; // Generate four subvectors var i0 = (((IV_0 << 8) | (IV_0 >>> 24)) & 0x00ff00ff) | (((IV_0 << 24) | (IV_0 >>> 8)) & 0xff00ff00); var i2 = (((IV_1 << 8) | (IV_1 >>> 24)) & 0x00ff00ff) | (((IV_1 << 24) | (IV_1 >>> 8)) & 0xff00ff00); var i1 = (i0 >>> 16) | (i2 & 0xffff0000); var i3 = (i2 << 16) | (i0 & 0x0000ffff); // Modify counter values C[0] ^= i0; C[1] ^= i1; C[2] ^= i2; C[3] ^= i3; C[4] ^= i0; C[5] ^= i1; C[6] ^= i2; C[7] ^= i3; // Iterate the system four times for (var i = 0; i < 4; i++) { nextState.call(this); } } }, _doProcessBlock: function (M, offset) { // Shortcut var X = this._X; // Iterate the system nextState.call(this); // Generate four keystream words S[0] = X[0] ^ (X[5] >>> 16) ^ (X[3] << 16); S[1] = X[2] ^ (X[7] >>> 16) ^ (X[5] << 16); S[2] = X[4] ^ (X[1] >>> 16) ^ (X[7] << 16); S[3] = X[6] ^ (X[3] >>> 16) ^ (X[1] << 16); for (var i = 0; i < 4; i++) { // Swap endian S[i] = (((S[i] << 8) | (S[i] >>> 24)) & 0x00ff00ff) | (((S[i] << 24) | (S[i] >>> 8)) & 0xff00ff00); // Encrypt M[offset + i] ^= S[i]; } }, blockSize: 128/32, ivSize: 64/32 }); function nextState() { // Shortcuts var X = this._X; var C = this._C; // Save old counter values for (var i = 0; i < 8; i++) { C_[i] = C[i]; } // Calculate new counter values C[0] = (C[0] + 0x4d34d34d + this._b) | 0; C[1] = (C[1] + 0xd34d34d3 + ((C[0] >>> 0) < (C_[0] >>> 0) ? 1 : 0)) | 0; C[2] = (C[2] + 0x34d34d34 + ((C[1] >>> 0) < (C_[1] >>> 0) ? 1 : 0)) | 0; C[3] = (C[3] + 0x4d34d34d + ((C[2] >>> 0) < (C_[2] >>> 0) ? 1 : 0)) | 0; C[4] = (C[4] + 0xd34d34d3 + ((C[3] >>> 0) < (C_[3] >>> 0) ? 1 : 0)) | 0; C[5] = (C[5] + 0x34d34d34 + ((C[4] >>> 0) < (C_[4] >>> 0) ? 1 : 0)) | 0; C[6] = (C[6] + 0x4d34d34d + ((C[5] >>> 0) < (C_[5] >>> 0) ? 1 : 0)) | 0; C[7] = (C[7] + 0xd34d34d3 + ((C[6] >>> 0) < (C_[6] >>> 0) ? 1 : 0)) | 0; this._b = (C[7] >>> 0) < (C_[7] >>> 0) ? 1 : 0; // Calculate the g-values for (var i = 0; i < 8; i++) { var gx = X[i] + C[i]; // Construct high and low argument for squaring var ga = gx & 0xffff; var gb = gx >>> 16; // Calculate high and low result of squaring var gh = ((((ga * ga) >>> 17) + ga * gb) >>> 15) + gb * gb; var gl = (((gx & 0xffff0000) * gx) | 0) + (((gx & 0x0000ffff) * gx) | 0); // High XOR low G[i] = gh ^ gl; } // Calculate new state values X[0] = (G[0] + ((G[7] << 16) | (G[7] >>> 16)) + ((G[6] << 16) | (G[6] >>> 16))) | 0; X[1] = (G[1] + ((G[0] << 8) | (G[0] >>> 24)) + G[7]) | 0; X[2] = (G[2] + ((G[1] << 16) | (G[1] >>> 16)) + ((G[0] << 16) | (G[0] >>> 16))) | 0; X[3] = (G[3] + ((G[2] << 8) | (G[2] >>> 24)) + G[1]) | 0; X[4] = (G[4] + ((G[3] << 16) | (G[3] >>> 16)) + ((G[2] << 16) | (G[2] >>> 16))) | 0; X[5] = (G[5] + ((G[4] << 8) | (G[4] >>> 24)) + G[3]) | 0; X[6] = (G[6] + ((G[5] << 16) | (G[5] >>> 16)) + ((G[4] << 16) | (G[4] >>> 16))) | 0; X[7] = (G[7] + ((G[6] << 8) | (G[6] >>> 24)) + G[5]) | 0; } /** * Shortcut functions to the cipher's object interface. * * @example * * var ciphertext = CryptoJS.Rabbit.encrypt(message, key, cfg); * var plaintext = CryptoJS.Rabbit.decrypt(ciphertext, key, cfg); */ C.Rabbit = StreamCipher._createHelper(Rabbit); }()); return CryptoJS.Rabbit; })); /***/ }), /***/ "./node_modules/crypto-js/rc4.js": /*!***************************************!*\ !*** ./node_modules/crypto-js/rc4.js ***! \***************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./enc-base64 */ "./node_modules/crypto-js/enc-base64.js"), __webpack_require__(/*! ./md5 */ "./node_modules/crypto-js/md5.js"), __webpack_require__(/*! ./evpkdf */ "./node_modules/crypto-js/evpkdf.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { (function () { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var StreamCipher = C_lib.StreamCipher; var C_algo = C.algo; /** * RC4 stream cipher algorithm. */ var RC4 = C_algo.RC4 = StreamCipher.extend({ _doReset: function () { // Shortcuts var key = this._key; var keyWords = key.words; var keySigBytes = key.sigBytes; // Init sbox var S = this._S = []; for (var i = 0; i < 256; i++) { S[i] = i; } // Key setup for (var i = 0, j = 0; i < 256; i++) { var keyByteIndex = i % keySigBytes; var keyByte = (keyWords[keyByteIndex >>> 2] >>> (24 - (keyByteIndex % 4) * 8)) & 0xff; j = (j + S[i] + keyByte) % 256; // Swap var t = S[i]; S[i] = S[j]; S[j] = t; } // Counters this._i = this._j = 0; }, _doProcessBlock: function (M, offset) { M[offset] ^= generateKeystreamWord.call(this); }, keySize: 256/32, ivSize: 0 }); function generateKeystreamWord() { // Shortcuts var S = this._S; var i = this._i; var j = this._j; // Generate keystream word var keystreamWord = 0; for (var n = 0; n < 4; n++) { i = (i + 1) % 256; j = (j + S[i]) % 256; // Swap var t = S[i]; S[i] = S[j]; S[j] = t; keystreamWord |= S[(S[i] + S[j]) % 256] << (24 - n * 8); } // Update counters this._i = i; this._j = j; return keystreamWord; } /** * Shortcut functions to the cipher's object interface. * * @example * * var ciphertext = CryptoJS.RC4.encrypt(message, key, cfg); * var plaintext = CryptoJS.RC4.decrypt(ciphertext, key, cfg); */ C.RC4 = StreamCipher._createHelper(RC4); /** * Modified RC4 stream cipher algorithm. */ var RC4Drop = C_algo.RC4Drop = RC4.extend({ /** * Configuration options. * * @property {number} drop The number of keystream words to drop. Default 192 */ cfg: RC4.cfg.extend({ drop: 192 }), _doReset: function () { RC4._doReset.call(this); // Drop for (var i = this.cfg.drop; i > 0; i--) { generateKeystreamWord.call(this); } } }); /** * Shortcut functions to the cipher's object interface. * * @example * * var ciphertext = CryptoJS.RC4Drop.encrypt(message, key, cfg); * var plaintext = CryptoJS.RC4Drop.decrypt(ciphertext, key, cfg); */ C.RC4Drop = StreamCipher._createHelper(RC4Drop); }()); return CryptoJS.RC4; })); /***/ }), /***/ "./node_modules/crypto-js/ripemd160.js": /*!*********************************************!*\ !*** ./node_modules/crypto-js/ripemd160.js ***! \*********************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js")); } else {} }(this, function (CryptoJS) { /** @preserve (c) 2012 by Cédric Mesnil. All rights reserved. Redistribution and use in source and binary forms, with or without modification, are permitted provided that the following conditions are met: - Redistributions of source code must retain the above copyright notice, this list of conditions and the following disclaimer. - Redistributions in binary form must reproduce the above copyright notice, this list of conditions and the following disclaimer in the documentation and/or other materials provided with the distribution. 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. */ (function (Math) { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var WordArray = C_lib.WordArray; var Hasher = C_lib.Hasher; var C_algo = C.algo; // Constants table var _zl = WordArray.create([ 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 7, 4, 13, 1, 10, 6, 15, 3, 12, 0, 9, 5, 2, 14, 11, 8, 3, 10, 14, 4, 9, 15, 8, 1, 2, 7, 0, 6, 13, 11, 5, 12, 1, 9, 11, 10, 0, 8, 12, 4, 13, 3, 7, 15, 14, 5, 6, 2, 4, 0, 5, 9, 7, 12, 2, 10, 14, 1, 3, 8, 11, 6, 15, 13]); var _zr = WordArray.create([ 5, 14, 7, 0, 9, 2, 11, 4, 13, 6, 15, 8, 1, 10, 3, 12, 6, 11, 3, 7, 0, 13, 5, 10, 14, 15, 8, 12, 4, 9, 1, 2, 15, 5, 1, 3, 7, 14, 6, 9, 11, 8, 12, 2, 10, 0, 4, 13, 8, 6, 4, 1, 3, 11, 15, 0, 5, 12, 2, 13, 9, 7, 10, 14, 12, 15, 10, 4, 1, 5, 8, 7, 6, 2, 13, 14, 0, 3, 9, 11]); var _sl = WordArray.create([ 11, 14, 15, 12, 5, 8, 7, 9, 11, 13, 14, 15, 6, 7, 9, 8, 7, 6, 8, 13, 11, 9, 7, 15, 7, 12, 15, 9, 11, 7, 13, 12, 11, 13, 6, 7, 14, 9, 13, 15, 14, 8, 13, 6, 5, 12, 7, 5, 11, 12, 14, 15, 14, 15, 9, 8, 9, 14, 5, 6, 8, 6, 5, 12, 9, 15, 5, 11, 6, 8, 13, 12, 5, 12, 13, 14, 11, 8, 5, 6 ]); var _sr = WordArray.create([ 8, 9, 9, 11, 13, 15, 15, 5, 7, 7, 8, 11, 14, 14, 12, 6, 9, 13, 15, 7, 12, 8, 9, 11, 7, 7, 12, 7, 6, 15, 13, 11, 9, 7, 15, 11, 8, 6, 6, 14, 12, 13, 5, 14, 13, 13, 7, 5, 15, 5, 8, 11, 14, 14, 6, 14, 6, 9, 12, 9, 12, 5, 15, 8, 8, 5, 12, 9, 12, 5, 14, 6, 8, 13, 6, 5, 15, 13, 11, 11 ]); var _hl = WordArray.create([ 0x00000000, 0x5A827999, 0x6ED9EBA1, 0x8F1BBCDC, 0xA953FD4E]); var _hr = WordArray.create([ 0x50A28BE6, 0x5C4DD124, 0x6D703EF3, 0x7A6D76E9, 0x00000000]); /** * RIPEMD160 hash algorithm. */ var RIPEMD160 = C_algo.RIPEMD160 = Hasher.extend({ _doReset: function () { this._hash = WordArray.create([0x67452301, 0xEFCDAB89, 0x98BADCFE, 0x10325476, 0xC3D2E1F0]); }, _doProcessBlock: function (M, offset) { // Swap endian for (var i = 0; i < 16; i++) { // Shortcuts var offset_i = offset + i; var M_offset_i = M[offset_i]; // Swap M[offset_i] = ( (((M_offset_i << 8) | (M_offset_i >>> 24)) & 0x00ff00ff) | (((M_offset_i << 24) | (M_offset_i >>> 8)) & 0xff00ff00) ); } // Shortcut var H = this._hash.words; var hl = _hl.words; var hr = _hr.words; var zl = _zl.words; var zr = _zr.words; var sl = _sl.words; var sr = _sr.words; // Working variables var al, bl, cl, dl, el; var ar, br, cr, dr, er; ar = al = H[0]; br = bl = H[1]; cr = cl = H[2]; dr = dl = H[3]; er = el = H[4]; // Computation var t; for (var i = 0; i < 80; i += 1) { t = (al + M[offset+zl[i]])|0; if (i<16){ t += f1(bl,cl,dl) + hl[0]; } else if (i<32) { t += f2(bl,cl,dl) + hl[1]; } else if (i<48) { t += f3(bl,cl,dl) + hl[2]; } else if (i<64) { t += f4(bl,cl,dl) + hl[3]; } else {// if (i<80) { t += f5(bl,cl,dl) + hl[4]; } t = t|0; t = rotl(t,sl[i]); t = (t+el)|0; al = el; el = dl; dl = rotl(cl, 10); cl = bl; bl = t; t = (ar + M[offset+zr[i]])|0; if (i<16){ t += f5(br,cr,dr) + hr[0]; } else if (i<32) { t += f4(br,cr,dr) + hr[1]; } else if (i<48) { t += f3(br,cr,dr) + hr[2]; } else if (i<64) { t += f2(br,cr,dr) + hr[3]; } else {// if (i<80) { t += f1(br,cr,dr) + hr[4]; } t = t|0; t = rotl(t,sr[i]) ; t = (t+er)|0; ar = er; er = dr; dr = rotl(cr, 10); cr = br; br = t; } // Intermediate hash value t = (H[1] + cl + dr)|0; H[1] = (H[2] + dl + er)|0; H[2] = (H[3] + el + ar)|0; H[3] = (H[4] + al + br)|0; H[4] = (H[0] + bl + cr)|0; H[0] = t; }, _doFinalize: function () { // Shortcuts var data = this._data; var dataWords = data.words; var nBitsTotal = this._nDataBytes * 8; var nBitsLeft = data.sigBytes * 8; // Add padding dataWords[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32); dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 14] = ( (((nBitsTotal << 8) | (nBitsTotal >>> 24)) & 0x00ff00ff) | (((nBitsTotal << 24) | (nBitsTotal >>> 8)) & 0xff00ff00) ); data.sigBytes = (dataWords.length + 1) * 4; // Hash final blocks this._process(); // Shortcuts var hash = this._hash; var H = hash.words; // Swap endian for (var i = 0; i < 5; i++) { // Shortcut var H_i = H[i]; // Swap H[i] = (((H_i << 8) | (H_i >>> 24)) & 0x00ff00ff) | (((H_i << 24) | (H_i >>> 8)) & 0xff00ff00); } // Return final computed hash return hash; }, clone: function () { var clone = Hasher.clone.call(this); clone._hash = this._hash.clone(); return clone; } }); function f1(x, y, z) { return ((x) ^ (y) ^ (z)); } function f2(x, y, z) { return (((x)&(y)) | ((~x)&(z))); } function f3(x, y, z) { return (((x) | (~(y))) ^ (z)); } function f4(x, y, z) { return (((x) & (z)) | ((y)&(~(z)))); } function f5(x, y, z) { return ((x) ^ ((y) |(~(z)))); } function rotl(x,n) { return (x<>>(32-n)); } /** * Shortcut function to the hasher's object interface. * * @param {WordArray|string} message The message to hash. * * @return {WordArray} The hash. * * @static * * @example * * var hash = CryptoJS.RIPEMD160('message'); * var hash = CryptoJS.RIPEMD160(wordArray); */ C.RIPEMD160 = Hasher._createHelper(RIPEMD160); /** * Shortcut function to the HMAC's object interface. * * @param {WordArray|string} message The message to hash. * @param {WordArray|string} key The secret key. * * @return {WordArray} The HMAC. * * @static * * @example * * var hmac = CryptoJS.HmacRIPEMD160(message, key); */ C.HmacRIPEMD160 = Hasher._createHmacHelper(RIPEMD160); }(Math)); return CryptoJS.RIPEMD160; })); /***/ }), /***/ "./node_modules/crypto-js/sha1.js": /*!****************************************!*\ !*** ./node_modules/crypto-js/sha1.js ***! \****************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js")); } else {} }(this, function (CryptoJS) { (function () { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var WordArray = C_lib.WordArray; var Hasher = C_lib.Hasher; var C_algo = C.algo; // Reusable object var W = []; /** * SHA-1 hash algorithm. */ var SHA1 = C_algo.SHA1 = Hasher.extend({ _doReset: function () { this._hash = new WordArray.init([ 0x67452301, 0xefcdab89, 0x98badcfe, 0x10325476, 0xc3d2e1f0 ]); }, _doProcessBlock: function (M, offset) { // Shortcut var H = this._hash.words; // Working variables var a = H[0]; var b = H[1]; var c = H[2]; var d = H[3]; var e = H[4]; // Computation for (var i = 0; i < 80; i++) { if (i < 16) { W[i] = M[offset + i] | 0; } else { var n = W[i - 3] ^ W[i - 8] ^ W[i - 14] ^ W[i - 16]; W[i] = (n << 1) | (n >>> 31); } var t = ((a << 5) | (a >>> 27)) + e + W[i]; if (i < 20) { t += ((b & c) | (~b & d)) + 0x5a827999; } else if (i < 40) { t += (b ^ c ^ d) + 0x6ed9eba1; } else if (i < 60) { t += ((b & c) | (b & d) | (c & d)) - 0x70e44324; } else /* if (i < 80) */ { t += (b ^ c ^ d) - 0x359d3e2a; } e = d; d = c; c = (b << 30) | (b >>> 2); b = a; a = t; } // Intermediate hash value H[0] = (H[0] + a) | 0; H[1] = (H[1] + b) | 0; H[2] = (H[2] + c) | 0; H[3] = (H[3] + d) | 0; H[4] = (H[4] + e) | 0; }, _doFinalize: function () { // Shortcuts var data = this._data; var dataWords = data.words; var nBitsTotal = this._nDataBytes * 8; var nBitsLeft = data.sigBytes * 8; // Add padding dataWords[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32); dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 14] = Math.floor(nBitsTotal / 0x100000000); dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 15] = nBitsTotal; data.sigBytes = dataWords.length * 4; // Hash final blocks this._process(); // Return final computed hash return this._hash; }, clone: function () { var clone = Hasher.clone.call(this); clone._hash = this._hash.clone(); return clone; } }); /** * Shortcut function to the hasher's object interface. * * @param {WordArray|string} message The message to hash. * * @return {WordArray} The hash. * * @static * * @example * * var hash = CryptoJS.SHA1('message'); * var hash = CryptoJS.SHA1(wordArray); */ C.SHA1 = Hasher._createHelper(SHA1); /** * Shortcut function to the HMAC's object interface. * * @param {WordArray|string} message The message to hash. * @param {WordArray|string} key The secret key. * * @return {WordArray} The HMAC. * * @static * * @example * * var hmac = CryptoJS.HmacSHA1(message, key); */ C.HmacSHA1 = Hasher._createHmacHelper(SHA1); }()); return CryptoJS.SHA1; })); /***/ }), /***/ "./node_modules/crypto-js/sha224.js": /*!******************************************!*\ !*** ./node_modules/crypto-js/sha224.js ***! \******************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./sha256 */ "./node_modules/crypto-js/sha256.js")); } else {} }(this, function (CryptoJS) { (function () { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var WordArray = C_lib.WordArray; var C_algo = C.algo; var SHA256 = C_algo.SHA256; /** * SHA-224 hash algorithm. */ var SHA224 = C_algo.SHA224 = SHA256.extend({ _doReset: function () { this._hash = new WordArray.init([ 0xc1059ed8, 0x367cd507, 0x3070dd17, 0xf70e5939, 0xffc00b31, 0x68581511, 0x64f98fa7, 0xbefa4fa4 ]); }, _doFinalize: function () { var hash = SHA256._doFinalize.call(this); hash.sigBytes -= 4; return hash; } }); /** * Shortcut function to the hasher's object interface. * * @param {WordArray|string} message The message to hash. * * @return {WordArray} The hash. * * @static * * @example * * var hash = CryptoJS.SHA224('message'); * var hash = CryptoJS.SHA224(wordArray); */ C.SHA224 = SHA256._createHelper(SHA224); /** * Shortcut function to the HMAC's object interface. * * @param {WordArray|string} message The message to hash. * @param {WordArray|string} key The secret key. * * @return {WordArray} The HMAC. * * @static * * @example * * var hmac = CryptoJS.HmacSHA224(message, key); */ C.HmacSHA224 = SHA256._createHmacHelper(SHA224); }()); return CryptoJS.SHA224; })); /***/ }), /***/ "./node_modules/crypto-js/sha256.js": /*!******************************************!*\ !*** ./node_modules/crypto-js/sha256.js ***! \******************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js")); } else {} }(this, function (CryptoJS) { (function (Math) { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var WordArray = C_lib.WordArray; var Hasher = C_lib.Hasher; var C_algo = C.algo; // Initialization and round constants tables var H = []; var K = []; // Compute constants (function () { function isPrime(n) { var sqrtN = Math.sqrt(n); for (var factor = 2; factor <= sqrtN; factor++) { if (!(n % factor)) { return false; } } return true; } function getFractionalBits(n) { return ((n - (n | 0)) * 0x100000000) | 0; } var n = 2; var nPrime = 0; while (nPrime < 64) { if (isPrime(n)) { if (nPrime < 8) { H[nPrime] = getFractionalBits(Math.pow(n, 1 / 2)); } K[nPrime] = getFractionalBits(Math.pow(n, 1 / 3)); nPrime++; } n++; } }()); // Reusable object var W = []; /** * SHA-256 hash algorithm. */ var SHA256 = C_algo.SHA256 = Hasher.extend({ _doReset: function () { this._hash = new WordArray.init(H.slice(0)); }, _doProcessBlock: function (M, offset) { // Shortcut var H = this._hash.words; // Working variables var a = H[0]; var b = H[1]; var c = H[2]; var d = H[3]; var e = H[4]; var f = H[5]; var g = H[6]; var h = H[7]; // Computation for (var i = 0; i < 64; i++) { if (i < 16) { W[i] = M[offset + i] | 0; } else { var gamma0x = W[i - 15]; var gamma0 = ((gamma0x << 25) | (gamma0x >>> 7)) ^ ((gamma0x << 14) | (gamma0x >>> 18)) ^ (gamma0x >>> 3); var gamma1x = W[i - 2]; var gamma1 = ((gamma1x << 15) | (gamma1x >>> 17)) ^ ((gamma1x << 13) | (gamma1x >>> 19)) ^ (gamma1x >>> 10); W[i] = gamma0 + W[i - 7] + gamma1 + W[i - 16]; } var ch = (e & f) ^ (~e & g); var maj = (a & b) ^ (a & c) ^ (b & c); var sigma0 = ((a << 30) | (a >>> 2)) ^ ((a << 19) | (a >>> 13)) ^ ((a << 10) | (a >>> 22)); var sigma1 = ((e << 26) | (e >>> 6)) ^ ((e << 21) | (e >>> 11)) ^ ((e << 7) | (e >>> 25)); var t1 = h + sigma1 + ch + K[i] + W[i]; var t2 = sigma0 + maj; h = g; g = f; f = e; e = (d + t1) | 0; d = c; c = b; b = a; a = (t1 + t2) | 0; } // Intermediate hash value H[0] = (H[0] + a) | 0; H[1] = (H[1] + b) | 0; H[2] = (H[2] + c) | 0; H[3] = (H[3] + d) | 0; H[4] = (H[4] + e) | 0; H[5] = (H[5] + f) | 0; H[6] = (H[6] + g) | 0; H[7] = (H[7] + h) | 0; }, _doFinalize: function () { // Shortcuts var data = this._data; var dataWords = data.words; var nBitsTotal = this._nDataBytes * 8; var nBitsLeft = data.sigBytes * 8; // Add padding dataWords[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32); dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 14] = Math.floor(nBitsTotal / 0x100000000); dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 15] = nBitsTotal; data.sigBytes = dataWords.length * 4; // Hash final blocks this._process(); // Return final computed hash return this._hash; }, clone: function () { var clone = Hasher.clone.call(this); clone._hash = this._hash.clone(); return clone; } }); /** * Shortcut function to the hasher's object interface. * * @param {WordArray|string} message The message to hash. * * @return {WordArray} The hash. * * @static * * @example * * var hash = CryptoJS.SHA256('message'); * var hash = CryptoJS.SHA256(wordArray); */ C.SHA256 = Hasher._createHelper(SHA256); /** * Shortcut function to the HMAC's object interface. * * @param {WordArray|string} message The message to hash. * @param {WordArray|string} key The secret key. * * @return {WordArray} The HMAC. * * @static * * @example * * var hmac = CryptoJS.HmacSHA256(message, key); */ C.HmacSHA256 = Hasher._createHmacHelper(SHA256); }(Math)); return CryptoJS.SHA256; })); /***/ }), /***/ "./node_modules/crypto-js/sha3.js": /*!****************************************!*\ !*** ./node_modules/crypto-js/sha3.js ***! \****************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./x64-core */ "./node_modules/crypto-js/x64-core.js")); } else {} }(this, function (CryptoJS) { (function (Math) { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var WordArray = C_lib.WordArray; var Hasher = C_lib.Hasher; var C_x64 = C.x64; var X64Word = C_x64.Word; var C_algo = C.algo; // Constants tables var RHO_OFFSETS = []; var PI_INDEXES = []; var ROUND_CONSTANTS = []; // Compute Constants (function () { // Compute rho offset constants var x = 1, y = 0; for (var t = 0; t < 24; t++) { RHO_OFFSETS[x + 5 * y] = ((t + 1) * (t + 2) / 2) % 64; var newX = y % 5; var newY = (2 * x + 3 * y) % 5; x = newX; y = newY; } // Compute pi index constants for (var x = 0; x < 5; x++) { for (var y = 0; y < 5; y++) { PI_INDEXES[x + 5 * y] = y + ((2 * x + 3 * y) % 5) * 5; } } // Compute round constants var LFSR = 0x01; for (var i = 0; i < 24; i++) { var roundConstantMsw = 0; var roundConstantLsw = 0; for (var j = 0; j < 7; j++) { if (LFSR & 0x01) { var bitPosition = (1 << j) - 1; if (bitPosition < 32) { roundConstantLsw ^= 1 << bitPosition; } else /* if (bitPosition >= 32) */ { roundConstantMsw ^= 1 << (bitPosition - 32); } } // Compute next LFSR if (LFSR & 0x80) { // Primitive polynomial over GF(2): x^8 + x^6 + x^5 + x^4 + 1 LFSR = (LFSR << 1) ^ 0x71; } else { LFSR <<= 1; } } ROUND_CONSTANTS[i] = X64Word.create(roundConstantMsw, roundConstantLsw); } }()); // Reusable objects for temporary values var T = []; (function () { for (var i = 0; i < 25; i++) { T[i] = X64Word.create(); } }()); /** * SHA-3 hash algorithm. */ var SHA3 = C_algo.SHA3 = Hasher.extend({ /** * Configuration options. * * @property {number} outputLength * The desired number of bits in the output hash. * Only values permitted are: 224, 256, 384, 512. * Default: 512 */ cfg: Hasher.cfg.extend({ outputLength: 512 }), _doReset: function () { var state = this._state = [] for (var i = 0; i < 25; i++) { state[i] = new X64Word.init(); } this.blockSize = (1600 - 2 * this.cfg.outputLength) / 32; }, _doProcessBlock: function (M, offset) { // Shortcuts var state = this._state; var nBlockSizeLanes = this.blockSize / 2; // Absorb for (var i = 0; i < nBlockSizeLanes; i++) { // Shortcuts var M2i = M[offset + 2 * i]; var M2i1 = M[offset + 2 * i + 1]; // Swap endian M2i = ( (((M2i << 8) | (M2i >>> 24)) & 0x00ff00ff) | (((M2i << 24) | (M2i >>> 8)) & 0xff00ff00) ); M2i1 = ( (((M2i1 << 8) | (M2i1 >>> 24)) & 0x00ff00ff) | (((M2i1 << 24) | (M2i1 >>> 8)) & 0xff00ff00) ); // Absorb message into state var lane = state[i]; lane.high ^= M2i1; lane.low ^= M2i; } // Rounds for (var round = 0; round < 24; round++) { // Theta for (var x = 0; x < 5; x++) { // Mix column lanes var tMsw = 0, tLsw = 0; for (var y = 0; y < 5; y++) { var lane = state[x + 5 * y]; tMsw ^= lane.high; tLsw ^= lane.low; } // Temporary values var Tx = T[x]; Tx.high = tMsw; Tx.low = tLsw; } for (var x = 0; x < 5; x++) { // Shortcuts var Tx4 = T[(x + 4) % 5]; var Tx1 = T[(x + 1) % 5]; var Tx1Msw = Tx1.high; var Tx1Lsw = Tx1.low; // Mix surrounding columns var tMsw = Tx4.high ^ ((Tx1Msw << 1) | (Tx1Lsw >>> 31)); var tLsw = Tx4.low ^ ((Tx1Lsw << 1) | (Tx1Msw >>> 31)); for (var y = 0; y < 5; y++) { var lane = state[x + 5 * y]; lane.high ^= tMsw; lane.low ^= tLsw; } } // Rho Pi for (var laneIndex = 1; laneIndex < 25; laneIndex++) { var tMsw; var tLsw; // Shortcuts var lane = state[laneIndex]; var laneMsw = lane.high; var laneLsw = lane.low; var rhoOffset = RHO_OFFSETS[laneIndex]; // Rotate lanes if (rhoOffset < 32) { tMsw = (laneMsw << rhoOffset) | (laneLsw >>> (32 - rhoOffset)); tLsw = (laneLsw << rhoOffset) | (laneMsw >>> (32 - rhoOffset)); } else /* if (rhoOffset >= 32) */ { tMsw = (laneLsw << (rhoOffset - 32)) | (laneMsw >>> (64 - rhoOffset)); tLsw = (laneMsw << (rhoOffset - 32)) | (laneLsw >>> (64 - rhoOffset)); } // Transpose lanes var TPiLane = T[PI_INDEXES[laneIndex]]; TPiLane.high = tMsw; TPiLane.low = tLsw; } // Rho pi at x = y = 0 var T0 = T[0]; var state0 = state[0]; T0.high = state0.high; T0.low = state0.low; // Chi for (var x = 0; x < 5; x++) { for (var y = 0; y < 5; y++) { // Shortcuts var laneIndex = x + 5 * y; var lane = state[laneIndex]; var TLane = T[laneIndex]; var Tx1Lane = T[((x + 1) % 5) + 5 * y]; var Tx2Lane = T[((x + 2) % 5) + 5 * y]; // Mix rows lane.high = TLane.high ^ (~Tx1Lane.high & Tx2Lane.high); lane.low = TLane.low ^ (~Tx1Lane.low & Tx2Lane.low); } } // Iota var lane = state[0]; var roundConstant = ROUND_CONSTANTS[round]; lane.high ^= roundConstant.high; lane.low ^= roundConstant.low; } }, _doFinalize: function () { // Shortcuts var data = this._data; var dataWords = data.words; var nBitsTotal = this._nDataBytes * 8; var nBitsLeft = data.sigBytes * 8; var blockSizeBits = this.blockSize * 32; // Add padding dataWords[nBitsLeft >>> 5] |= 0x1 << (24 - nBitsLeft % 32); dataWords[((Math.ceil((nBitsLeft + 1) / blockSizeBits) * blockSizeBits) >>> 5) - 1] |= 0x80; data.sigBytes = dataWords.length * 4; // Hash final blocks this._process(); // Shortcuts var state = this._state; var outputLengthBytes = this.cfg.outputLength / 8; var outputLengthLanes = outputLengthBytes / 8; // Squeeze var hashWords = []; for (var i = 0; i < outputLengthLanes; i++) { // Shortcuts var lane = state[i]; var laneMsw = lane.high; var laneLsw = lane.low; // Swap endian laneMsw = ( (((laneMsw << 8) | (laneMsw >>> 24)) & 0x00ff00ff) | (((laneMsw << 24) | (laneMsw >>> 8)) & 0xff00ff00) ); laneLsw = ( (((laneLsw << 8) | (laneLsw >>> 24)) & 0x00ff00ff) | (((laneLsw << 24) | (laneLsw >>> 8)) & 0xff00ff00) ); // Squeeze state to retrieve hash hashWords.push(laneLsw); hashWords.push(laneMsw); } // Return final computed hash return new WordArray.init(hashWords, outputLengthBytes); }, clone: function () { var clone = Hasher.clone.call(this); var state = clone._state = this._state.slice(0); for (var i = 0; i < 25; i++) { state[i] = state[i].clone(); } return clone; } }); /** * Shortcut function to the hasher's object interface. * * @param {WordArray|string} message The message to hash. * * @return {WordArray} The hash. * * @static * * @example * * var hash = CryptoJS.SHA3('message'); * var hash = CryptoJS.SHA3(wordArray); */ C.SHA3 = Hasher._createHelper(SHA3); /** * Shortcut function to the HMAC's object interface. * * @param {WordArray|string} message The message to hash. * @param {WordArray|string} key The secret key. * * @return {WordArray} The HMAC. * * @static * * @example * * var hmac = CryptoJS.HmacSHA3(message, key); */ C.HmacSHA3 = Hasher._createHmacHelper(SHA3); }(Math)); return CryptoJS.SHA3; })); /***/ }), /***/ "./node_modules/crypto-js/sha384.js": /*!******************************************!*\ !*** ./node_modules/crypto-js/sha384.js ***! \******************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./x64-core */ "./node_modules/crypto-js/x64-core.js"), __webpack_require__(/*! ./sha512 */ "./node_modules/crypto-js/sha512.js")); } else {} }(this, function (CryptoJS) { (function () { // Shortcuts var C = CryptoJS; var C_x64 = C.x64; var X64Word = C_x64.Word; var X64WordArray = C_x64.WordArray; var C_algo = C.algo; var SHA512 = C_algo.SHA512; /** * SHA-384 hash algorithm. */ var SHA384 = C_algo.SHA384 = SHA512.extend({ _doReset: function () { this._hash = new X64WordArray.init([ new X64Word.init(0xcbbb9d5d, 0xc1059ed8), new X64Word.init(0x629a292a, 0x367cd507), new X64Word.init(0x9159015a, 0x3070dd17), new X64Word.init(0x152fecd8, 0xf70e5939), new X64Word.init(0x67332667, 0xffc00b31), new X64Word.init(0x8eb44a87, 0x68581511), new X64Word.init(0xdb0c2e0d, 0x64f98fa7), new X64Word.init(0x47b5481d, 0xbefa4fa4) ]); }, _doFinalize: function () { var hash = SHA512._doFinalize.call(this); hash.sigBytes -= 16; return hash; } }); /** * Shortcut function to the hasher's object interface. * * @param {WordArray|string} message The message to hash. * * @return {WordArray} The hash. * * @static * * @example * * var hash = CryptoJS.SHA384('message'); * var hash = CryptoJS.SHA384(wordArray); */ C.SHA384 = SHA512._createHelper(SHA384); /** * Shortcut function to the HMAC's object interface. * * @param {WordArray|string} message The message to hash. * @param {WordArray|string} key The secret key. * * @return {WordArray} The HMAC. * * @static * * @example * * var hmac = CryptoJS.HmacSHA384(message, key); */ C.HmacSHA384 = SHA512._createHmacHelper(SHA384); }()); return CryptoJS.SHA384; })); /***/ }), /***/ "./node_modules/crypto-js/sha512.js": /*!******************************************!*\ !*** ./node_modules/crypto-js/sha512.js ***! \******************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./x64-core */ "./node_modules/crypto-js/x64-core.js")); } else {} }(this, function (CryptoJS) { (function () { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var Hasher = C_lib.Hasher; var C_x64 = C.x64; var X64Word = C_x64.Word; var X64WordArray = C_x64.WordArray; var C_algo = C.algo; function X64Word_create() { return X64Word.create.apply(X64Word, arguments); } // Constants var K = [ X64Word_create(0x428a2f98, 0xd728ae22), X64Word_create(0x71374491, 0x23ef65cd), X64Word_create(0xb5c0fbcf, 0xec4d3b2f), X64Word_create(0xe9b5dba5, 0x8189dbbc), X64Word_create(0x3956c25b, 0xf348b538), X64Word_create(0x59f111f1, 0xb605d019), X64Word_create(0x923f82a4, 0xaf194f9b), X64Word_create(0xab1c5ed5, 0xda6d8118), X64Word_create(0xd807aa98, 0xa3030242), X64Word_create(0x12835b01, 0x45706fbe), X64Word_create(0x243185be, 0x4ee4b28c), X64Word_create(0x550c7dc3, 0xd5ffb4e2), X64Word_create(0x72be5d74, 0xf27b896f), X64Word_create(0x80deb1fe, 0x3b1696b1), X64Word_create(0x9bdc06a7, 0x25c71235), X64Word_create(0xc19bf174, 0xcf692694), X64Word_create(0xe49b69c1, 0x9ef14ad2), X64Word_create(0xefbe4786, 0x384f25e3), X64Word_create(0x0fc19dc6, 0x8b8cd5b5), X64Word_create(0x240ca1cc, 0x77ac9c65), X64Word_create(0x2de92c6f, 0x592b0275), X64Word_create(0x4a7484aa, 0x6ea6e483), X64Word_create(0x5cb0a9dc, 0xbd41fbd4), X64Word_create(0x76f988da, 0x831153b5), X64Word_create(0x983e5152, 0xee66dfab), X64Word_create(0xa831c66d, 0x2db43210), X64Word_create(0xb00327c8, 0x98fb213f), X64Word_create(0xbf597fc7, 0xbeef0ee4), X64Word_create(0xc6e00bf3, 0x3da88fc2), X64Word_create(0xd5a79147, 0x930aa725), X64Word_create(0x06ca6351, 0xe003826f), X64Word_create(0x14292967, 0x0a0e6e70), X64Word_create(0x27b70a85, 0x46d22ffc), X64Word_create(0x2e1b2138, 0x5c26c926), X64Word_create(0x4d2c6dfc, 0x5ac42aed), X64Word_create(0x53380d13, 0x9d95b3df), X64Word_create(0x650a7354, 0x8baf63de), X64Word_create(0x766a0abb, 0x3c77b2a8), X64Word_create(0x81c2c92e, 0x47edaee6), X64Word_create(0x92722c85, 0x1482353b), X64Word_create(0xa2bfe8a1, 0x4cf10364), X64Word_create(0xa81a664b, 0xbc423001), X64Word_create(0xc24b8b70, 0xd0f89791), X64Word_create(0xc76c51a3, 0x0654be30), X64Word_create(0xd192e819, 0xd6ef5218), X64Word_create(0xd6990624, 0x5565a910), X64Word_create(0xf40e3585, 0x5771202a), X64Word_create(0x106aa070, 0x32bbd1b8), X64Word_create(0x19a4c116, 0xb8d2d0c8), X64Word_create(0x1e376c08, 0x5141ab53), X64Word_create(0x2748774c, 0xdf8eeb99), X64Word_create(0x34b0bcb5, 0xe19b48a8), X64Word_create(0x391c0cb3, 0xc5c95a63), X64Word_create(0x4ed8aa4a, 0xe3418acb), X64Word_create(0x5b9cca4f, 0x7763e373), X64Word_create(0x682e6ff3, 0xd6b2b8a3), X64Word_create(0x748f82ee, 0x5defb2fc), X64Word_create(0x78a5636f, 0x43172f60), X64Word_create(0x84c87814, 0xa1f0ab72), X64Word_create(0x8cc70208, 0x1a6439ec), X64Word_create(0x90befffa, 0x23631e28), X64Word_create(0xa4506ceb, 0xde82bde9), X64Word_create(0xbef9a3f7, 0xb2c67915), X64Word_create(0xc67178f2, 0xe372532b), X64Word_create(0xca273ece, 0xea26619c), X64Word_create(0xd186b8c7, 0x21c0c207), X64Word_create(0xeada7dd6, 0xcde0eb1e), X64Word_create(0xf57d4f7f, 0xee6ed178), X64Word_create(0x06f067aa, 0x72176fba), X64Word_create(0x0a637dc5, 0xa2c898a6), X64Word_create(0x113f9804, 0xbef90dae), X64Word_create(0x1b710b35, 0x131c471b), X64Word_create(0x28db77f5, 0x23047d84), X64Word_create(0x32caab7b, 0x40c72493), X64Word_create(0x3c9ebe0a, 0x15c9bebc), X64Word_create(0x431d67c4, 0x9c100d4c), X64Word_create(0x4cc5d4be, 0xcb3e42b6), X64Word_create(0x597f299c, 0xfc657e2a), X64Word_create(0x5fcb6fab, 0x3ad6faec), X64Word_create(0x6c44198c, 0x4a475817) ]; // Reusable objects var W = []; (function () { for (var i = 0; i < 80; i++) { W[i] = X64Word_create(); } }()); /** * SHA-512 hash algorithm. */ var SHA512 = C_algo.SHA512 = Hasher.extend({ _doReset: function () { this._hash = new X64WordArray.init([ new X64Word.init(0x6a09e667, 0xf3bcc908), new X64Word.init(0xbb67ae85, 0x84caa73b), new X64Word.init(0x3c6ef372, 0xfe94f82b), new X64Word.init(0xa54ff53a, 0x5f1d36f1), new X64Word.init(0x510e527f, 0xade682d1), new X64Word.init(0x9b05688c, 0x2b3e6c1f), new X64Word.init(0x1f83d9ab, 0xfb41bd6b), new X64Word.init(0x5be0cd19, 0x137e2179) ]); }, _doProcessBlock: function (M, offset) { // Shortcuts var H = this._hash.words; var H0 = H[0]; var H1 = H[1]; var H2 = H[2]; var H3 = H[3]; var H4 = H[4]; var H5 = H[5]; var H6 = H[6]; var H7 = H[7]; var H0h = H0.high; var H0l = H0.low; var H1h = H1.high; var H1l = H1.low; var H2h = H2.high; var H2l = H2.low; var H3h = H3.high; var H3l = H3.low; var H4h = H4.high; var H4l = H4.low; var H5h = H5.high; var H5l = H5.low; var H6h = H6.high; var H6l = H6.low; var H7h = H7.high; var H7l = H7.low; // Working variables var ah = H0h; var al = H0l; var bh = H1h; var bl = H1l; var ch = H2h; var cl = H2l; var dh = H3h; var dl = H3l; var eh = H4h; var el = H4l; var fh = H5h; var fl = H5l; var gh = H6h; var gl = H6l; var hh = H7h; var hl = H7l; // Rounds for (var i = 0; i < 80; i++) { var Wil; var Wih; // Shortcut var Wi = W[i]; // Extend message if (i < 16) { Wih = Wi.high = M[offset + i * 2] | 0; Wil = Wi.low = M[offset + i * 2 + 1] | 0; } else { // Gamma0 var gamma0x = W[i - 15]; var gamma0xh = gamma0x.high; var gamma0xl = gamma0x.low; var gamma0h = ((gamma0xh >>> 1) | (gamma0xl << 31)) ^ ((gamma0xh >>> 8) | (gamma0xl << 24)) ^ (gamma0xh >>> 7); var gamma0l = ((gamma0xl >>> 1) | (gamma0xh << 31)) ^ ((gamma0xl >>> 8) | (gamma0xh << 24)) ^ ((gamma0xl >>> 7) | (gamma0xh << 25)); // Gamma1 var gamma1x = W[i - 2]; var gamma1xh = gamma1x.high; var gamma1xl = gamma1x.low; var gamma1h = ((gamma1xh >>> 19) | (gamma1xl << 13)) ^ ((gamma1xh << 3) | (gamma1xl >>> 29)) ^ (gamma1xh >>> 6); var gamma1l = ((gamma1xl >>> 19) | (gamma1xh << 13)) ^ ((gamma1xl << 3) | (gamma1xh >>> 29)) ^ ((gamma1xl >>> 6) | (gamma1xh << 26)); // W[i] = gamma0 + W[i - 7] + gamma1 + W[i - 16] var Wi7 = W[i - 7]; var Wi7h = Wi7.high; var Wi7l = Wi7.low; var Wi16 = W[i - 16]; var Wi16h = Wi16.high; var Wi16l = Wi16.low; Wil = gamma0l + Wi7l; Wih = gamma0h + Wi7h + ((Wil >>> 0) < (gamma0l >>> 0) ? 1 : 0); Wil = Wil + gamma1l; Wih = Wih + gamma1h + ((Wil >>> 0) < (gamma1l >>> 0) ? 1 : 0); Wil = Wil + Wi16l; Wih = Wih + Wi16h + ((Wil >>> 0) < (Wi16l >>> 0) ? 1 : 0); Wi.high = Wih; Wi.low = Wil; } var chh = (eh & fh) ^ (~eh & gh); var chl = (el & fl) ^ (~el & gl); var majh = (ah & bh) ^ (ah & ch) ^ (bh & ch); var majl = (al & bl) ^ (al & cl) ^ (bl & cl); var sigma0h = ((ah >>> 28) | (al << 4)) ^ ((ah << 30) | (al >>> 2)) ^ ((ah << 25) | (al >>> 7)); var sigma0l = ((al >>> 28) | (ah << 4)) ^ ((al << 30) | (ah >>> 2)) ^ ((al << 25) | (ah >>> 7)); var sigma1h = ((eh >>> 14) | (el << 18)) ^ ((eh >>> 18) | (el << 14)) ^ ((eh << 23) | (el >>> 9)); var sigma1l = ((el >>> 14) | (eh << 18)) ^ ((el >>> 18) | (eh << 14)) ^ ((el << 23) | (eh >>> 9)); // t1 = h + sigma1 + ch + K[i] + W[i] var Ki = K[i]; var Kih = Ki.high; var Kil = Ki.low; var t1l = hl + sigma1l; var t1h = hh + sigma1h + ((t1l >>> 0) < (hl >>> 0) ? 1 : 0); var t1l = t1l + chl; var t1h = t1h + chh + ((t1l >>> 0) < (chl >>> 0) ? 1 : 0); var t1l = t1l + Kil; var t1h = t1h + Kih + ((t1l >>> 0) < (Kil >>> 0) ? 1 : 0); var t1l = t1l + Wil; var t1h = t1h + Wih + ((t1l >>> 0) < (Wil >>> 0) ? 1 : 0); // t2 = sigma0 + maj var t2l = sigma0l + majl; var t2h = sigma0h + majh + ((t2l >>> 0) < (sigma0l >>> 0) ? 1 : 0); // Update working variables hh = gh; hl = gl; gh = fh; gl = fl; fh = eh; fl = el; el = (dl + t1l) | 0; eh = (dh + t1h + ((el >>> 0) < (dl >>> 0) ? 1 : 0)) | 0; dh = ch; dl = cl; ch = bh; cl = bl; bh = ah; bl = al; al = (t1l + t2l) | 0; ah = (t1h + t2h + ((al >>> 0) < (t1l >>> 0) ? 1 : 0)) | 0; } // Intermediate hash value H0l = H0.low = (H0l + al); H0.high = (H0h + ah + ((H0l >>> 0) < (al >>> 0) ? 1 : 0)); H1l = H1.low = (H1l + bl); H1.high = (H1h + bh + ((H1l >>> 0) < (bl >>> 0) ? 1 : 0)); H2l = H2.low = (H2l + cl); H2.high = (H2h + ch + ((H2l >>> 0) < (cl >>> 0) ? 1 : 0)); H3l = H3.low = (H3l + dl); H3.high = (H3h + dh + ((H3l >>> 0) < (dl >>> 0) ? 1 : 0)); H4l = H4.low = (H4l + el); H4.high = (H4h + eh + ((H4l >>> 0) < (el >>> 0) ? 1 : 0)); H5l = H5.low = (H5l + fl); H5.high = (H5h + fh + ((H5l >>> 0) < (fl >>> 0) ? 1 : 0)); H6l = H6.low = (H6l + gl); H6.high = (H6h + gh + ((H6l >>> 0) < (gl >>> 0) ? 1 : 0)); H7l = H7.low = (H7l + hl); H7.high = (H7h + hh + ((H7l >>> 0) < (hl >>> 0) ? 1 : 0)); }, _doFinalize: function () { // Shortcuts var data = this._data; var dataWords = data.words; var nBitsTotal = this._nDataBytes * 8; var nBitsLeft = data.sigBytes * 8; // Add padding dataWords[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32); dataWords[(((nBitsLeft + 128) >>> 10) << 5) + 30] = Math.floor(nBitsTotal / 0x100000000); dataWords[(((nBitsLeft + 128) >>> 10) << 5) + 31] = nBitsTotal; data.sigBytes = dataWords.length * 4; // Hash final blocks this._process(); // Convert hash to 32-bit word array before returning var hash = this._hash.toX32(); // Return final computed hash return hash; }, clone: function () { var clone = Hasher.clone.call(this); clone._hash = this._hash.clone(); return clone; }, blockSize: 1024/32 }); /** * Shortcut function to the hasher's object interface. * * @param {WordArray|string} message The message to hash. * * @return {WordArray} The hash. * * @static * * @example * * var hash = CryptoJS.SHA512('message'); * var hash = CryptoJS.SHA512(wordArray); */ C.SHA512 = Hasher._createHelper(SHA512); /** * Shortcut function to the HMAC's object interface. * * @param {WordArray|string} message The message to hash. * @param {WordArray|string} key The secret key. * * @return {WordArray} The HMAC. * * @static * * @example * * var hmac = CryptoJS.HmacSHA512(message, key); */ C.HmacSHA512 = Hasher._createHmacHelper(SHA512); }()); return CryptoJS.SHA512; })); /***/ }), /***/ "./node_modules/crypto-js/tripledes.js": /*!*********************************************!*\ !*** ./node_modules/crypto-js/tripledes.js ***! \*********************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory, undef) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js"), __webpack_require__(/*! ./enc-base64 */ "./node_modules/crypto-js/enc-base64.js"), __webpack_require__(/*! ./md5 */ "./node_modules/crypto-js/md5.js"), __webpack_require__(/*! ./evpkdf */ "./node_modules/crypto-js/evpkdf.js"), __webpack_require__(/*! ./cipher-core */ "./node_modules/crypto-js/cipher-core.js")); } else {} }(this, function (CryptoJS) { (function () { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var WordArray = C_lib.WordArray; var BlockCipher = C_lib.BlockCipher; var C_algo = C.algo; // Permuted Choice 1 constants var PC1 = [ 57, 49, 41, 33, 25, 17, 9, 1, 58, 50, 42, 34, 26, 18, 10, 2, 59, 51, 43, 35, 27, 19, 11, 3, 60, 52, 44, 36, 63, 55, 47, 39, 31, 23, 15, 7, 62, 54, 46, 38, 30, 22, 14, 6, 61, 53, 45, 37, 29, 21, 13, 5, 28, 20, 12, 4 ]; // Permuted Choice 2 constants var PC2 = [ 14, 17, 11, 24, 1, 5, 3, 28, 15, 6, 21, 10, 23, 19, 12, 4, 26, 8, 16, 7, 27, 20, 13, 2, 41, 52, 31, 37, 47, 55, 30, 40, 51, 45, 33, 48, 44, 49, 39, 56, 34, 53, 46, 42, 50, 36, 29, 32 ]; // Cumulative bit shift constants var BIT_SHIFTS = [1, 2, 4, 6, 8, 10, 12, 14, 15, 17, 19, 21, 23, 25, 27, 28]; // SBOXes and round permutation constants var SBOX_P = [ { 0x0: 0x808200, 0x10000000: 0x8000, 0x20000000: 0x808002, 0x30000000: 0x2, 0x40000000: 0x200, 0x50000000: 0x808202, 0x60000000: 0x800202, 0x70000000: 0x800000, 0x80000000: 0x202, 0x90000000: 0x800200, 0xa0000000: 0x8200, 0xb0000000: 0x808000, 0xc0000000: 0x8002, 0xd0000000: 0x800002, 0xe0000000: 0x0, 0xf0000000: 0x8202, 0x8000000: 0x0, 0x18000000: 0x808202, 0x28000000: 0x8202, 0x38000000: 0x8000, 0x48000000: 0x808200, 0x58000000: 0x200, 0x68000000: 0x808002, 0x78000000: 0x2, 0x88000000: 0x800200, 0x98000000: 0x8200, 0xa8000000: 0x808000, 0xb8000000: 0x800202, 0xc8000000: 0x800002, 0xd8000000: 0x8002, 0xe8000000: 0x202, 0xf8000000: 0x800000, 0x1: 0x8000, 0x10000001: 0x2, 0x20000001: 0x808200, 0x30000001: 0x800000, 0x40000001: 0x808002, 0x50000001: 0x8200, 0x60000001: 0x200, 0x70000001: 0x800202, 0x80000001: 0x808202, 0x90000001: 0x808000, 0xa0000001: 0x800002, 0xb0000001: 0x8202, 0xc0000001: 0x202, 0xd0000001: 0x800200, 0xe0000001: 0x8002, 0xf0000001: 0x0, 0x8000001: 0x808202, 0x18000001: 0x808000, 0x28000001: 0x800000, 0x38000001: 0x200, 0x48000001: 0x8000, 0x58000001: 0x800002, 0x68000001: 0x2, 0x78000001: 0x8202, 0x88000001: 0x8002, 0x98000001: 0x800202, 0xa8000001: 0x202, 0xb8000001: 0x808200, 0xc8000001: 0x800200, 0xd8000001: 0x0, 0xe8000001: 0x8200, 0xf8000001: 0x808002 }, { 0x0: 0x40084010, 0x1000000: 0x4000, 0x2000000: 0x80000, 0x3000000: 0x40080010, 0x4000000: 0x40000010, 0x5000000: 0x40084000, 0x6000000: 0x40004000, 0x7000000: 0x10, 0x8000000: 0x84000, 0x9000000: 0x40004010, 0xa000000: 0x40000000, 0xb000000: 0x84010, 0xc000000: 0x80010, 0xd000000: 0x0, 0xe000000: 0x4010, 0xf000000: 0x40080000, 0x800000: 0x40004000, 0x1800000: 0x84010, 0x2800000: 0x10, 0x3800000: 0x40004010, 0x4800000: 0x40084010, 0x5800000: 0x40000000, 0x6800000: 0x80000, 0x7800000: 0x40080010, 0x8800000: 0x80010, 0x9800000: 0x0, 0xa800000: 0x4000, 0xb800000: 0x40080000, 0xc800000: 0x40000010, 0xd800000: 0x84000, 0xe800000: 0x40084000, 0xf800000: 0x4010, 0x10000000: 0x0, 0x11000000: 0x40080010, 0x12000000: 0x40004010, 0x13000000: 0x40084000, 0x14000000: 0x40080000, 0x15000000: 0x10, 0x16000000: 0x84010, 0x17000000: 0x4000, 0x18000000: 0x4010, 0x19000000: 0x80000, 0x1a000000: 0x80010, 0x1b000000: 0x40000010, 0x1c000000: 0x84000, 0x1d000000: 0x40004000, 0x1e000000: 0x40000000, 0x1f000000: 0x40084010, 0x10800000: 0x84010, 0x11800000: 0x80000, 0x12800000: 0x40080000, 0x13800000: 0x4000, 0x14800000: 0x40004000, 0x15800000: 0x40084010, 0x16800000: 0x10, 0x17800000: 0x40000000, 0x18800000: 0x40084000, 0x19800000: 0x40000010, 0x1a800000: 0x40004010, 0x1b800000: 0x80010, 0x1c800000: 0x0, 0x1d800000: 0x4010, 0x1e800000: 0x40080010, 0x1f800000: 0x84000 }, { 0x0: 0x104, 0x100000: 0x0, 0x200000: 0x4000100, 0x300000: 0x10104, 0x400000: 0x10004, 0x500000: 0x4000004, 0x600000: 0x4010104, 0x700000: 0x4010000, 0x800000: 0x4000000, 0x900000: 0x4010100, 0xa00000: 0x10100, 0xb00000: 0x4010004, 0xc00000: 0x4000104, 0xd00000: 0x10000, 0xe00000: 0x4, 0xf00000: 0x100, 0x80000: 0x4010100, 0x180000: 0x4010004, 0x280000: 0x0, 0x380000: 0x4000100, 0x480000: 0x4000004, 0x580000: 0x10000, 0x680000: 0x10004, 0x780000: 0x104, 0x880000: 0x4, 0x980000: 0x100, 0xa80000: 0x4010000, 0xb80000: 0x10104, 0xc80000: 0x10100, 0xd80000: 0x4000104, 0xe80000: 0x4010104, 0xf80000: 0x4000000, 0x1000000: 0x4010100, 0x1100000: 0x10004, 0x1200000: 0x10000, 0x1300000: 0x4000100, 0x1400000: 0x100, 0x1500000: 0x4010104, 0x1600000: 0x4000004, 0x1700000: 0x0, 0x1800000: 0x4000104, 0x1900000: 0x4000000, 0x1a00000: 0x4, 0x1b00000: 0x10100, 0x1c00000: 0x4010000, 0x1d00000: 0x104, 0x1e00000: 0x10104, 0x1f00000: 0x4010004, 0x1080000: 0x4000000, 0x1180000: 0x104, 0x1280000: 0x4010100, 0x1380000: 0x0, 0x1480000: 0x10004, 0x1580000: 0x4000100, 0x1680000: 0x100, 0x1780000: 0x4010004, 0x1880000: 0x10000, 0x1980000: 0x4010104, 0x1a80000: 0x10104, 0x1b80000: 0x4000004, 0x1c80000: 0x4000104, 0x1d80000: 0x4010000, 0x1e80000: 0x4, 0x1f80000: 0x10100 }, { 0x0: 0x80401000, 0x10000: 0x80001040, 0x20000: 0x401040, 0x30000: 0x80400000, 0x40000: 0x0, 0x50000: 0x401000, 0x60000: 0x80000040, 0x70000: 0x400040, 0x80000: 0x80000000, 0x90000: 0x400000, 0xa0000: 0x40, 0xb0000: 0x80001000, 0xc0000: 0x80400040, 0xd0000: 0x1040, 0xe0000: 0x1000, 0xf0000: 0x80401040, 0x8000: 0x80001040, 0x18000: 0x40, 0x28000: 0x80400040, 0x38000: 0x80001000, 0x48000: 0x401000, 0x58000: 0x80401040, 0x68000: 0x0, 0x78000: 0x80400000, 0x88000: 0x1000, 0x98000: 0x80401000, 0xa8000: 0x400000, 0xb8000: 0x1040, 0xc8000: 0x80000000, 0xd8000: 0x400040, 0xe8000: 0x401040, 0xf8000: 0x80000040, 0x100000: 0x400040, 0x110000: 0x401000, 0x120000: 0x80000040, 0x130000: 0x0, 0x140000: 0x1040, 0x150000: 0x80400040, 0x160000: 0x80401000, 0x170000: 0x80001040, 0x180000: 0x80401040, 0x190000: 0x80000000, 0x1a0000: 0x80400000, 0x1b0000: 0x401040, 0x1c0000: 0x80001000, 0x1d0000: 0x400000, 0x1e0000: 0x40, 0x1f0000: 0x1000, 0x108000: 0x80400000, 0x118000: 0x80401040, 0x128000: 0x0, 0x138000: 0x401000, 0x148000: 0x400040, 0x158000: 0x80000000, 0x168000: 0x80001040, 0x178000: 0x40, 0x188000: 0x80000040, 0x198000: 0x1000, 0x1a8000: 0x80001000, 0x1b8000: 0x80400040, 0x1c8000: 0x1040, 0x1d8000: 0x80401000, 0x1e8000: 0x400000, 0x1f8000: 0x401040 }, { 0x0: 0x80, 0x1000: 0x1040000, 0x2000: 0x40000, 0x3000: 0x20000000, 0x4000: 0x20040080, 0x5000: 0x1000080, 0x6000: 0x21000080, 0x7000: 0x40080, 0x8000: 0x1000000, 0x9000: 0x20040000, 0xa000: 0x20000080, 0xb000: 0x21040080, 0xc000: 0x21040000, 0xd000: 0x0, 0xe000: 0x1040080, 0xf000: 0x21000000, 0x800: 0x1040080, 0x1800: 0x21000080, 0x2800: 0x80, 0x3800: 0x1040000, 0x4800: 0x40000, 0x5800: 0x20040080, 0x6800: 0x21040000, 0x7800: 0x20000000, 0x8800: 0x20040000, 0x9800: 0x0, 0xa800: 0x21040080, 0xb800: 0x1000080, 0xc800: 0x20000080, 0xd800: 0x21000000, 0xe800: 0x1000000, 0xf800: 0x40080, 0x10000: 0x40000, 0x11000: 0x80, 0x12000: 0x20000000, 0x13000: 0x21000080, 0x14000: 0x1000080, 0x15000: 0x21040000, 0x16000: 0x20040080, 0x17000: 0x1000000, 0x18000: 0x21040080, 0x19000: 0x21000000, 0x1a000: 0x1040000, 0x1b000: 0x20040000, 0x1c000: 0x40080, 0x1d000: 0x20000080, 0x1e000: 0x0, 0x1f000: 0x1040080, 0x10800: 0x21000080, 0x11800: 0x1000000, 0x12800: 0x1040000, 0x13800: 0x20040080, 0x14800: 0x20000000, 0x15800: 0x1040080, 0x16800: 0x80, 0x17800: 0x21040000, 0x18800: 0x40080, 0x19800: 0x21040080, 0x1a800: 0x0, 0x1b800: 0x21000000, 0x1c800: 0x1000080, 0x1d800: 0x40000, 0x1e800: 0x20040000, 0x1f800: 0x20000080 }, { 0x0: 0x10000008, 0x100: 0x2000, 0x200: 0x10200000, 0x300: 0x10202008, 0x400: 0x10002000, 0x500: 0x200000, 0x600: 0x200008, 0x700: 0x10000000, 0x800: 0x0, 0x900: 0x10002008, 0xa00: 0x202000, 0xb00: 0x8, 0xc00: 0x10200008, 0xd00: 0x202008, 0xe00: 0x2008, 0xf00: 0x10202000, 0x80: 0x10200000, 0x180: 0x10202008, 0x280: 0x8, 0x380: 0x200000, 0x480: 0x202008, 0x580: 0x10000008, 0x680: 0x10002000, 0x780: 0x2008, 0x880: 0x200008, 0x980: 0x2000, 0xa80: 0x10002008, 0xb80: 0x10200008, 0xc80: 0x0, 0xd80: 0x10202000, 0xe80: 0x202000, 0xf80: 0x10000000, 0x1000: 0x10002000, 0x1100: 0x10200008, 0x1200: 0x10202008, 0x1300: 0x2008, 0x1400: 0x200000, 0x1500: 0x10000000, 0x1600: 0x10000008, 0x1700: 0x202000, 0x1800: 0x202008, 0x1900: 0x0, 0x1a00: 0x8, 0x1b00: 0x10200000, 0x1c00: 0x2000, 0x1d00: 0x10002008, 0x1e00: 0x10202000, 0x1f00: 0x200008, 0x1080: 0x8, 0x1180: 0x202000, 0x1280: 0x200000, 0x1380: 0x10000008, 0x1480: 0x10002000, 0x1580: 0x2008, 0x1680: 0x10202008, 0x1780: 0x10200000, 0x1880: 0x10202000, 0x1980: 0x10200008, 0x1a80: 0x2000, 0x1b80: 0x202008, 0x1c80: 0x200008, 0x1d80: 0x0, 0x1e80: 0x10000000, 0x1f80: 0x10002008 }, { 0x0: 0x100000, 0x10: 0x2000401, 0x20: 0x400, 0x30: 0x100401, 0x40: 0x2100401, 0x50: 0x0, 0x60: 0x1, 0x70: 0x2100001, 0x80: 0x2000400, 0x90: 0x100001, 0xa0: 0x2000001, 0xb0: 0x2100400, 0xc0: 0x2100000, 0xd0: 0x401, 0xe0: 0x100400, 0xf0: 0x2000000, 0x8: 0x2100001, 0x18: 0x0, 0x28: 0x2000401, 0x38: 0x2100400, 0x48: 0x100000, 0x58: 0x2000001, 0x68: 0x2000000, 0x78: 0x401, 0x88: 0x100401, 0x98: 0x2000400, 0xa8: 0x2100000, 0xb8: 0x100001, 0xc8: 0x400, 0xd8: 0x2100401, 0xe8: 0x1, 0xf8: 0x100400, 0x100: 0x2000000, 0x110: 0x100000, 0x120: 0x2000401, 0x130: 0x2100001, 0x140: 0x100001, 0x150: 0x2000400, 0x160: 0x2100400, 0x170: 0x100401, 0x180: 0x401, 0x190: 0x2100401, 0x1a0: 0x100400, 0x1b0: 0x1, 0x1c0: 0x0, 0x1d0: 0x2100000, 0x1e0: 0x2000001, 0x1f0: 0x400, 0x108: 0x100400, 0x118: 0x2000401, 0x128: 0x2100001, 0x138: 0x1, 0x148: 0x2000000, 0x158: 0x100000, 0x168: 0x401, 0x178: 0x2100400, 0x188: 0x2000001, 0x198: 0x2100000, 0x1a8: 0x0, 0x1b8: 0x2100401, 0x1c8: 0x100401, 0x1d8: 0x400, 0x1e8: 0x2000400, 0x1f8: 0x100001 }, { 0x0: 0x8000820, 0x1: 0x20000, 0x2: 0x8000000, 0x3: 0x20, 0x4: 0x20020, 0x5: 0x8020820, 0x6: 0x8020800, 0x7: 0x800, 0x8: 0x8020000, 0x9: 0x8000800, 0xa: 0x20800, 0xb: 0x8020020, 0xc: 0x820, 0xd: 0x0, 0xe: 0x8000020, 0xf: 0x20820, 0x80000000: 0x800, 0x80000001: 0x8020820, 0x80000002: 0x8000820, 0x80000003: 0x8000000, 0x80000004: 0x8020000, 0x80000005: 0x20800, 0x80000006: 0x20820, 0x80000007: 0x20, 0x80000008: 0x8000020, 0x80000009: 0x820, 0x8000000a: 0x20020, 0x8000000b: 0x8020800, 0x8000000c: 0x0, 0x8000000d: 0x8020020, 0x8000000e: 0x8000800, 0x8000000f: 0x20000, 0x10: 0x20820, 0x11: 0x8020800, 0x12: 0x20, 0x13: 0x800, 0x14: 0x8000800, 0x15: 0x8000020, 0x16: 0x8020020, 0x17: 0x20000, 0x18: 0x0, 0x19: 0x20020, 0x1a: 0x8020000, 0x1b: 0x8000820, 0x1c: 0x8020820, 0x1d: 0x20800, 0x1e: 0x820, 0x1f: 0x8000000, 0x80000010: 0x20000, 0x80000011: 0x800, 0x80000012: 0x8020020, 0x80000013: 0x20820, 0x80000014: 0x20, 0x80000015: 0x8020000, 0x80000016: 0x8000000, 0x80000017: 0x8000820, 0x80000018: 0x8020820, 0x80000019: 0x8000020, 0x8000001a: 0x8000800, 0x8000001b: 0x0, 0x8000001c: 0x20800, 0x8000001d: 0x820, 0x8000001e: 0x20020, 0x8000001f: 0x8020800 } ]; // Masks that select the SBOX input var SBOX_MASK = [ 0xf8000001, 0x1f800000, 0x01f80000, 0x001f8000, 0x0001f800, 0x00001f80, 0x000001f8, 0x8000001f ]; /** * DES block cipher algorithm. */ var DES = C_algo.DES = BlockCipher.extend({ _doReset: function () { // Shortcuts var key = this._key; var keyWords = key.words; // Select 56 bits according to PC1 var keyBits = []; for (var i = 0; i < 56; i++) { var keyBitPos = PC1[i] - 1; keyBits[i] = (keyWords[keyBitPos >>> 5] >>> (31 - keyBitPos % 32)) & 1; } // Assemble 16 subkeys var subKeys = this._subKeys = []; for (var nSubKey = 0; nSubKey < 16; nSubKey++) { // Create subkey var subKey = subKeys[nSubKey] = []; // Shortcut var bitShift = BIT_SHIFTS[nSubKey]; // Select 48 bits according to PC2 for (var i = 0; i < 24; i++) { // Select from the left 28 key bits subKey[(i / 6) | 0] |= keyBits[((PC2[i] - 1) + bitShift) % 28] << (31 - i % 6); // Select from the right 28 key bits subKey[4 + ((i / 6) | 0)] |= keyBits[28 + (((PC2[i + 24] - 1) + bitShift) % 28)] << (31 - i % 6); } // Since each subkey is applied to an expanded 32-bit input, // the subkey can be broken into 8 values scaled to 32-bits, // which allows the key to be used without expansion subKey[0] = (subKey[0] << 1) | (subKey[0] >>> 31); for (var i = 1; i < 7; i++) { subKey[i] = subKey[i] >>> ((i - 1) * 4 + 3); } subKey[7] = (subKey[7] << 5) | (subKey[7] >>> 27); } // Compute inverse subkeys var invSubKeys = this._invSubKeys = []; for (var i = 0; i < 16; i++) { invSubKeys[i] = subKeys[15 - i]; } }, encryptBlock: function (M, offset) { this._doCryptBlock(M, offset, this._subKeys); }, decryptBlock: function (M, offset) { this._doCryptBlock(M, offset, this._invSubKeys); }, _doCryptBlock: function (M, offset, subKeys) { // Get input this._lBlock = M[offset]; this._rBlock = M[offset + 1]; // Initial permutation exchangeLR.call(this, 4, 0x0f0f0f0f); exchangeLR.call(this, 16, 0x0000ffff); exchangeRL.call(this, 2, 0x33333333); exchangeRL.call(this, 8, 0x00ff00ff); exchangeLR.call(this, 1, 0x55555555); // Rounds for (var round = 0; round < 16; round++) { // Shortcuts var subKey = subKeys[round]; var lBlock = this._lBlock; var rBlock = this._rBlock; // Feistel function var f = 0; for (var i = 0; i < 8; i++) { f |= SBOX_P[i][((rBlock ^ subKey[i]) & SBOX_MASK[i]) >>> 0]; } this._lBlock = rBlock; this._rBlock = lBlock ^ f; } // Undo swap from last round var t = this._lBlock; this._lBlock = this._rBlock; this._rBlock = t; // Final permutation exchangeLR.call(this, 1, 0x55555555); exchangeRL.call(this, 8, 0x00ff00ff); exchangeRL.call(this, 2, 0x33333333); exchangeLR.call(this, 16, 0x0000ffff); exchangeLR.call(this, 4, 0x0f0f0f0f); // Set output M[offset] = this._lBlock; M[offset + 1] = this._rBlock; }, keySize: 64/32, ivSize: 64/32, blockSize: 64/32 }); // Swap bits across the left and right words function exchangeLR(offset, mask) { var t = ((this._lBlock >>> offset) ^ this._rBlock) & mask; this._rBlock ^= t; this._lBlock ^= t << offset; } function exchangeRL(offset, mask) { var t = ((this._rBlock >>> offset) ^ this._lBlock) & mask; this._lBlock ^= t; this._rBlock ^= t << offset; } /** * Shortcut functions to the cipher's object interface. * * @example * * var ciphertext = CryptoJS.DES.encrypt(message, key, cfg); * var plaintext = CryptoJS.DES.decrypt(ciphertext, key, cfg); */ C.DES = BlockCipher._createHelper(DES); /** * Triple-DES block cipher algorithm. */ var TripleDES = C_algo.TripleDES = BlockCipher.extend({ _doReset: function () { // Shortcuts var key = this._key; var keyWords = key.words; // Make sure the key length is valid (64, 128 or >= 192 bit) if (keyWords.length !== 2 && keyWords.length !== 4 && keyWords.length < 6) { throw new Error('Invalid key length - 3DES requires the key length to be 64, 128, 192 or >192.'); } // Extend the key according to the keying options defined in 3DES standard var key1 = keyWords.slice(0, 2); var key2 = keyWords.length < 4 ? keyWords.slice(0, 2) : keyWords.slice(2, 4); var key3 = keyWords.length < 6 ? keyWords.slice(0, 2) : keyWords.slice(4, 6); // Create DES instances this._des1 = DES.createEncryptor(WordArray.create(key1)); this._des2 = DES.createEncryptor(WordArray.create(key2)); this._des3 = DES.createEncryptor(WordArray.create(key3)); }, encryptBlock: function (M, offset) { this._des1.encryptBlock(M, offset); this._des2.decryptBlock(M, offset); this._des3.encryptBlock(M, offset); }, decryptBlock: function (M, offset) { this._des3.decryptBlock(M, offset); this._des2.encryptBlock(M, offset); this._des1.decryptBlock(M, offset); }, keySize: 192/32, ivSize: 64/32, blockSize: 64/32 }); /** * Shortcut functions to the cipher's object interface. * * @example * * var ciphertext = CryptoJS.TripleDES.encrypt(message, key, cfg); * var plaintext = CryptoJS.TripleDES.decrypt(ciphertext, key, cfg); */ C.TripleDES = BlockCipher._createHelper(TripleDES); }()); return CryptoJS.TripleDES; })); /***/ }), /***/ "./node_modules/crypto-js/x64-core.js": /*!********************************************!*\ !*** ./node_modules/crypto-js/x64-core.js ***! \********************************************/ /***/ (function(module, exports, __webpack_require__) { ;(function (root, factory) { if (true) { // CommonJS module.exports = exports = factory(__webpack_require__(/*! ./core */ "./node_modules/crypto-js/core.js")); } else {} }(this, function (CryptoJS) { (function (undefined) { // Shortcuts var C = CryptoJS; var C_lib = C.lib; var Base = C_lib.Base; var X32WordArray = C_lib.WordArray; /** * x64 namespace. */ var C_x64 = C.x64 = {}; /** * A 64-bit word. */ var X64Word = C_x64.Word = Base.extend({ /** * Initializes a newly created 64-bit word. * * @param {number} high The high 32 bits. * @param {number} low The low 32 bits. * * @example * * var x64Word = CryptoJS.x64.Word.create(0x00010203, 0x04050607); */ init: function (high, low) { this.high = high; this.low = low; } /** * Bitwise NOTs this word. * * @return {X64Word} A new x64-Word object after negating. * * @example * * var negated = x64Word.not(); */ // not: function () { // var high = ~this.high; // var low = ~this.low; // return X64Word.create(high, low); // }, /** * Bitwise ANDs this word with the passed word. * * @param {X64Word} word The x64-Word to AND with this word. * * @return {X64Word} A new x64-Word object after ANDing. * * @example * * var anded = x64Word.and(anotherX64Word); */ // and: function (word) { // var high = this.high & word.high; // var low = this.low & word.low; // return X64Word.create(high, low); // }, /** * Bitwise ORs this word with the passed word. * * @param {X64Word} word The x64-Word to OR with this word. * * @return {X64Word} A new x64-Word object after ORing. * * @example * * var ored = x64Word.or(anotherX64Word); */ // or: function (word) { // var high = this.high | word.high; // var low = this.low | word.low; // return X64Word.create(high, low); // }, /** * Bitwise XORs this word with the passed word. * * @param {X64Word} word The x64-Word to XOR with this word. * * @return {X64Word} A new x64-Word object after XORing. * * @example * * var xored = x64Word.xor(anotherX64Word); */ // xor: function (word) { // var high = this.high ^ word.high; // var low = this.low ^ word.low; // return X64Word.create(high, low); // }, /** * Shifts this word n bits to the left. * * @param {number} n The number of bits to shift. * * @return {X64Word} A new x64-Word object after shifting. * * @example * * var shifted = x64Word.shiftL(25); */ // shiftL: function (n) { // if (n < 32) { // var high = (this.high << n) | (this.low >>> (32 - n)); // var low = this.low << n; // } else { // var high = this.low << (n - 32); // var low = 0; // } // return X64Word.create(high, low); // }, /** * Shifts this word n bits to the right. * * @param {number} n The number of bits to shift. * * @return {X64Word} A new x64-Word object after shifting. * * @example * * var shifted = x64Word.shiftR(7); */ // shiftR: function (n) { // if (n < 32) { // var low = (this.low >>> n) | (this.high << (32 - n)); // var high = this.high >>> n; // } else { // var low = this.high >>> (n - 32); // var high = 0; // } // return X64Word.create(high, low); // }, /** * Rotates this word n bits to the left. * * @param {number} n The number of bits to rotate. * * @return {X64Word} A new x64-Word object after rotating. * * @example * * var rotated = x64Word.rotL(25); */ // rotL: function (n) { // return this.shiftL(n).or(this.shiftR(64 - n)); // }, /** * Rotates this word n bits to the right. * * @param {number} n The number of bits to rotate. * * @return {X64Word} A new x64-Word object after rotating. * * @example * * var rotated = x64Word.rotR(7); */ // rotR: function (n) { // return this.shiftR(n).or(this.shiftL(64 - n)); // }, /** * Adds this word with the passed word. * * @param {X64Word} word The x64-Word to add with this word. * * @return {X64Word} A new x64-Word object after adding. * * @example * * var added = x64Word.add(anotherX64Word); */ // add: function (word) { // var low = (this.low + word.low) | 0; // var carry = (low >>> 0) < (this.low >>> 0) ? 1 : 0; // var high = (this.high + word.high + carry) | 0; // return X64Word.create(high, low); // } }); /** * An array of 64-bit words. * * @property {Array} words The array of CryptoJS.x64.Word objects. * @property {number} sigBytes The number of significant bytes in this word array. */ var X64WordArray = C_x64.WordArray = Base.extend({ /** * Initializes a newly created word array. * * @param {Array} words (Optional) An array of CryptoJS.x64.Word objects. * @param {number} sigBytes (Optional) The number of significant bytes in the words. * * @example * * var wordArray = CryptoJS.x64.WordArray.create(); * * var wordArray = CryptoJS.x64.WordArray.create([ * CryptoJS.x64.Word.create(0x00010203, 0x04050607), * CryptoJS.x64.Word.create(0x18191a1b, 0x1c1d1e1f) * ]); * * var wordArray = CryptoJS.x64.WordArray.create([ * CryptoJS.x64.Word.create(0x00010203, 0x04050607), * CryptoJS.x64.Word.create(0x18191a1b, 0x1c1d1e1f) * ], 10); */ init: function (words, sigBytes) { words = this.words = words || []; if (sigBytes != undefined) { this.sigBytes = sigBytes; } else { this.sigBytes = words.length * 8; } }, /** * Converts this 64-bit word array to a 32-bit word array. * * @return {CryptoJS.lib.WordArray} This word array's data as a 32-bit word array. * * @example * * var x32WordArray = x64WordArray.toX32(); */ toX32: function () { // Shortcuts var x64Words = this.words; var x64WordsLength = x64Words.length; // Convert var x32Words = []; for (var i = 0; i < x64WordsLength; i++) { var x64Word = x64Words[i]; x32Words.push(x64Word.high); x32Words.push(x64Word.low); } return X32WordArray.create(x32Words, this.sigBytes); }, /** * Creates a copy of this word array. * * @return {X64WordArray} The clone. * * @example * * var clone = x64WordArray.clone(); */ clone: function () { var clone = Base.clone.call(this); // Clone "words" array var words = clone.words = this.words.slice(0); // Clone each X64Word object var wordsLength = words.length; for (var i = 0; i < wordsLength; i++) { words[i] = words[i].clone(); } return clone; } }); }()); return CryptoJS; })); /***/ }), /***/ "./node_modules/css-selector-parser/lib/index.js": /*!*******************************************************!*\ !*** ./node_modules/css-selector-parser/lib/index.js ***! \*******************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); var parser_context_1 = __webpack_require__(/*! ./parser-context */ "./node_modules/css-selector-parser/lib/parser-context.js"); var render_1 = __webpack_require__(/*! ./render */ "./node_modules/css-selector-parser/lib/render.js"); var CssSelectorParser = /** @class */ (function () { function CssSelectorParser() { this.pseudos = {}; this.attrEqualityMods = {}; this.ruleNestingOperators = {}; this.substitutesEnabled = false; } CssSelectorParser.prototype.registerSelectorPseudos = function () { var pseudos = []; for (var _i = 0; _i < arguments.length; _i++) { pseudos[_i] = arguments[_i]; } for (var _a = 0, pseudos_1 = pseudos; _a < pseudos_1.length; _a++) { var pseudo = pseudos_1[_a]; this.pseudos[pseudo] = 'selector'; } return this; }; CssSelectorParser.prototype.unregisterSelectorPseudos = function () { var pseudos = []; for (var _i = 0; _i < arguments.length; _i++) { pseudos[_i] = arguments[_i]; } for (var _a = 0, pseudos_2 = pseudos; _a < pseudos_2.length; _a++) { var pseudo = pseudos_2[_a]; delete this.pseudos[pseudo]; } return this; }; CssSelectorParser.prototype.registerNumericPseudos = function () { var pseudos = []; for (var _i = 0; _i < arguments.length; _i++) { pseudos[_i] = arguments[_i]; } for (var _a = 0, pseudos_3 = pseudos; _a < pseudos_3.length; _a++) { var pseudo = pseudos_3[_a]; this.pseudos[pseudo] = 'numeric'; } return this; }; CssSelectorParser.prototype.unregisterNumericPseudos = function () { var pseudos = []; for (var _i = 0; _i < arguments.length; _i++) { pseudos[_i] = arguments[_i]; } for (var _a = 0, pseudos_4 = pseudos; _a < pseudos_4.length; _a++) { var pseudo = pseudos_4[_a]; delete this.pseudos[pseudo]; } return this; }; CssSelectorParser.prototype.registerNestingOperators = function () { var operators = []; for (var _i = 0; _i < arguments.length; _i++) { operators[_i] = arguments[_i]; } for (var _a = 0, operators_1 = operators; _a < operators_1.length; _a++) { var operator = operators_1[_a]; this.ruleNestingOperators[operator] = true; } return this; }; CssSelectorParser.prototype.unregisterNestingOperators = function () { var operators = []; for (var _i = 0; _i < arguments.length; _i++) { operators[_i] = arguments[_i]; } for (var _a = 0, operators_2 = operators; _a < operators_2.length; _a++) { var operator = operators_2[_a]; delete this.ruleNestingOperators[operator]; } return this; }; CssSelectorParser.prototype.registerAttrEqualityMods = function () { var mods = []; for (var _i = 0; _i < arguments.length; _i++) { mods[_i] = arguments[_i]; } for (var _a = 0, mods_1 = mods; _a < mods_1.length; _a++) { var mod = mods_1[_a]; this.attrEqualityMods[mod] = true; } return this; }; CssSelectorParser.prototype.unregisterAttrEqualityMods = function () { var mods = []; for (var _i = 0; _i < arguments.length; _i++) { mods[_i] = arguments[_i]; } for (var _a = 0, mods_2 = mods; _a < mods_2.length; _a++) { var mod = mods_2[_a]; delete this.attrEqualityMods[mod]; } return this; }; CssSelectorParser.prototype.enableSubstitutes = function () { this.substitutesEnabled = true; return this; }; CssSelectorParser.prototype.disableSubstitutes = function () { this.substitutesEnabled = false; return this; }; CssSelectorParser.prototype.parse = function (str) { return parser_context_1.parseCssSelector(str, 0, this.pseudos, this.attrEqualityMods, this.ruleNestingOperators, this.substitutesEnabled); }; CssSelectorParser.prototype.render = function (path) { return render_1.renderEntity(path).trim(); }; return CssSelectorParser; }()); exports.CssSelectorParser = CssSelectorParser; /***/ }), /***/ "./node_modules/css-selector-parser/lib/parser-context.js": /*!****************************************************************!*\ !*** ./node_modules/css-selector-parser/lib/parser-context.js ***! \****************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); var utils_1 = __webpack_require__(/*! ./utils */ "./node_modules/css-selector-parser/lib/utils.js"); function parseCssSelector(str, pos, pseudos, attrEqualityMods, ruleNestingOperators, substitutesEnabled) { var l = str.length; var chr = ''; function getStr(quote, escapeTable) { var result = ''; pos++; chr = str.charAt(pos); while (pos < l) { if (chr === quote) { pos++; return result; } else if (chr === '\\') { pos++; chr = str.charAt(pos); var esc = void 0; if (chr === quote) { result += quote; } else if ((esc = escapeTable[chr]) !== undefined) { result += esc; } else if (utils_1.isHex(chr)) { var hex = chr; pos++; chr = str.charAt(pos); while (utils_1.isHex(chr)) { hex += chr; pos++; chr = str.charAt(pos); } if (chr === ' ') { pos++; chr = str.charAt(pos); } result += String.fromCharCode(parseInt(hex, 16)); continue; } else { result += chr; } } else { result += chr; } pos++; chr = str.charAt(pos); } return result; } function getIdent() { var result = ''; chr = str.charAt(pos); while (pos < l) { if (utils_1.isIdent(chr)) { result += chr; } else if (chr === '\\') { pos++; if (pos >= l) { throw Error('Expected symbol but end of file reached.'); } chr = str.charAt(pos); if (utils_1.identSpecialChars[chr]) { result += chr; } else if (utils_1.isHex(chr)) { var hex = chr; pos++; chr = str.charAt(pos); while (utils_1.isHex(chr)) { hex += chr; pos++; chr = str.charAt(pos); } if (chr === ' ') { pos++; chr = str.charAt(pos); } result += String.fromCharCode(parseInt(hex, 16)); continue; } else { result += chr; } } else { return result; } pos++; chr = str.charAt(pos); } return result; } function skipWhitespace() { chr = str.charAt(pos); var result = false; while (chr === ' ' || chr === "\t" || chr === "\n" || chr === "\r" || chr === "\f") { result = true; pos++; chr = str.charAt(pos); } return result; } function parse() { var res = parseSelector(); if (pos < l) { throw Error('Rule expected but "' + str.charAt(pos) + '" found.'); } return res; } function parseSelector() { var selector = parseSingleSelector(); if (!selector) { return null; } var res = selector; chr = str.charAt(pos); while (chr === ',') { pos++; skipWhitespace(); if (res.type !== 'selectors') { res = { type: 'selectors', selectors: [selector] }; } selector = parseSingleSelector(); if (!selector) { throw Error('Rule expected after ",".'); } res.selectors.push(selector); } return res; } function parseSingleSelector() { skipWhitespace(); var selector = { type: 'ruleSet' }; var rule = parseRule(); if (!rule) { return null; } var currentRule = selector; while (rule) { rule.type = 'rule'; currentRule.rule = rule; currentRule = rule; skipWhitespace(); chr = str.charAt(pos); if (pos >= l || chr === ',' || chr === ')') { break; } if (ruleNestingOperators[chr]) { var op = chr; pos++; skipWhitespace(); rule = parseRule(); if (!rule) { throw Error('Rule expected after "' + op + '".'); } rule.nestingOperator = op; } else { rule = parseRule(); if (rule) { rule.nestingOperator = null; } } } return selector; } // @ts-ignore no-overlap function parseRule() { var rule = null; while (pos < l) { chr = str.charAt(pos); if (chr === '*') { pos++; (rule = rule || {}).tagName = '*'; } else if (utils_1.isIdentStart(chr) || chr === '\\') { (rule = rule || {}).tagName = getIdent(); } else if (chr === '.') { pos++; rule = rule || {}; (rule.classNames = rule.classNames || []).push(getIdent()); } else if (chr === '#') { pos++; (rule = rule || {}).id = getIdent(); } else if (chr === '[') { pos++; skipWhitespace(); var attr = { name: getIdent() }; skipWhitespace(); // @ts-ignore if (chr === ']') { pos++; } else { var operator = ''; if (attrEqualityMods[chr]) { operator = chr; pos++; chr = str.charAt(pos); } if (pos >= l) { throw Error('Expected "=" but end of file reached.'); } if (chr !== '=') { throw Error('Expected "=" but "' + chr + '" found.'); } attr.operator = operator + '='; pos++; skipWhitespace(); var attrValue = ''; attr.valueType = 'string'; // @ts-ignore if (chr === '"') { attrValue = getStr('"', utils_1.doubleQuotesEscapeChars); // @ts-ignore } else if (chr === '\'') { attrValue = getStr('\'', utils_1.singleQuoteEscapeChars); // @ts-ignore } else if (substitutesEnabled && chr === '$') { pos++; attrValue = getIdent(); attr.valueType = 'substitute'; } else { while (pos < l) { if (chr === ']') { break; } attrValue += chr; pos++; chr = str.charAt(pos); } attrValue = attrValue.trim(); } skipWhitespace(); if (pos >= l) { throw Error('Expected "]" but end of file reached.'); } if (chr !== ']') { throw Error('Expected "]" but "' + chr + '" found.'); } pos++; attr.value = attrValue; } rule = rule || {}; (rule.attrs = rule.attrs || []).push(attr); } else if (chr === ':') { pos++; var pseudoName = getIdent(); var pseudo = { name: pseudoName }; // @ts-ignore if (chr === '(') { pos++; var value = ''; skipWhitespace(); if (pseudos[pseudoName] === 'selector') { pseudo.valueType = 'selector'; value = parseSelector(); } else { pseudo.valueType = pseudos[pseudoName] || 'string'; // @ts-ignore if (chr === '"') { value = getStr('"', utils_1.doubleQuotesEscapeChars); // @ts-ignore } else if (chr === '\'') { value = getStr('\'', utils_1.singleQuoteEscapeChars); // @ts-ignore } else if (substitutesEnabled && chr === '$') { pos++; value = getIdent(); pseudo.valueType = 'substitute'; } else { while (pos < l) { if (chr === ')') { break; } value += chr; pos++; chr = str.charAt(pos); } value = value.trim(); } skipWhitespace(); } if (pos >= l) { throw Error('Expected ")" but end of file reached.'); } if (chr !== ')') { throw Error('Expected ")" but "' + chr + '" found.'); } pos++; pseudo.value = value; } rule = rule || {}; (rule.pseudos = rule.pseudos || []).push(pseudo); } else { break; } } return rule; } return parse(); } exports.parseCssSelector = parseCssSelector; /***/ }), /***/ "./node_modules/css-selector-parser/lib/render.js": /*!********************************************************!*\ !*** ./node_modules/css-selector-parser/lib/render.js ***! \********************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); var utils_1 = __webpack_require__(/*! ./utils */ "./node_modules/css-selector-parser/lib/utils.js"); function renderEntity(entity) { var res = ''; switch (entity.type) { case 'ruleSet': var currentEntity = entity.rule; var parts = []; while (currentEntity) { if (currentEntity.nestingOperator) { parts.push(currentEntity.nestingOperator); } parts.push(renderEntity(currentEntity)); currentEntity = currentEntity.rule; } res = parts.join(' '); break; case 'selectors': res = entity.selectors.map(renderEntity).join(', '); break; case 'rule': if (entity.tagName) { if (entity.tagName === '*') { res = '*'; } else { res = utils_1.escapeIdentifier(entity.tagName); } } if (entity.id) { res += "#" + utils_1.escapeIdentifier(entity.id); } if (entity.classNames) { res += entity.classNames.map(function (cn) { return "." + (utils_1.escapeIdentifier(cn)); }).join(''); } if (entity.attrs) { res += entity.attrs.map(function (attr) { if ('operator' in attr) { if (attr.valueType === 'substitute') { return "[" + utils_1.escapeIdentifier(attr.name) + attr.operator + "$" + attr.value + "]"; } else { return "[" + utils_1.escapeIdentifier(attr.name) + attr.operator + utils_1.escapeStr(attr.value) + "]"; } } else { return "[" + utils_1.escapeIdentifier(attr.name) + "]"; } }).join(''); } if (entity.pseudos) { res += entity.pseudos.map(function (pseudo) { if (pseudo.valueType) { if (pseudo.valueType === 'selector') { return ":" + utils_1.escapeIdentifier(pseudo.name) + "(" + renderEntity(pseudo.value) + ")"; } else if (pseudo.valueType === 'substitute') { return ":" + utils_1.escapeIdentifier(pseudo.name) + "($" + pseudo.value + ")"; } else if (pseudo.valueType === 'numeric') { return ":" + utils_1.escapeIdentifier(pseudo.name) + "(" + pseudo.value + ")"; } else { return (":" + utils_1.escapeIdentifier(pseudo.name) + "(" + utils_1.escapeIdentifier(pseudo.value) + ")"); } } else { return ":" + utils_1.escapeIdentifier(pseudo.name); } }).join(''); } break; default: throw Error('Unknown entity type: "' + entity.type + '".'); } return res; } exports.renderEntity = renderEntity; /***/ }), /***/ "./node_modules/css-selector-parser/lib/utils.js": /*!*******************************************************!*\ !*** ./node_modules/css-selector-parser/lib/utils.js ***! \*******************************************************/ /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); function isIdentStart(c) { return (c >= 'a' && c <= 'z') || (c >= 'A' && c <= 'Z') || (c === '-') || (c === '_'); } exports.isIdentStart = isIdentStart; function isIdent(c) { return (c >= 'a' && c <= 'z') || (c >= 'A' && c <= 'Z') || (c >= '0' && c <= '9') || c === '-' || c === '_'; } exports.isIdent = isIdent; function isHex(c) { return (c >= 'a' && c <= 'f') || (c >= 'A' && c <= 'F') || (c >= '0' && c <= '9'); } exports.isHex = isHex; function escapeIdentifier(s) { var len = s.length; var result = ''; var i = 0; while (i < len) { var chr = s.charAt(i); if (exports.identSpecialChars[chr]) { result += '\\' + chr; } else { if (!(chr === '_' || chr === '-' || (chr >= 'A' && chr <= 'Z') || (chr >= 'a' && chr <= 'z') || (i !== 0 && chr >= '0' && chr <= '9'))) { var charCode = chr.charCodeAt(0); if ((charCode & 0xF800) === 0xD800) { var extraCharCode = s.charCodeAt(i++); if ((charCode & 0xFC00) !== 0xD800 || (extraCharCode & 0xFC00) !== 0xDC00) { throw Error('UCS-2(decode): illegal sequence'); } charCode = ((charCode & 0x3FF) << 10) + (extraCharCode & 0x3FF) + 0x10000; } result += '\\' + charCode.toString(16) + ' '; } else { result += chr; } } i++; } return result; } exports.escapeIdentifier = escapeIdentifier; function escapeStr(s) { var len = s.length; var result = ''; var i = 0; var replacement; while (i < len) { var chr = s.charAt(i); if (chr === '"') { chr = '\\"'; } else if (chr === '\\') { chr = '\\\\'; } else if ((replacement = exports.strReplacementsRev[chr]) !== undefined) { chr = replacement; } result += chr; i++; } return "\"" + result + "\""; } exports.escapeStr = escapeStr; exports.identSpecialChars = { '!': true, '"': true, '#': true, '$': true, '%': true, '&': true, '\'': true, '(': true, ')': true, '*': true, '+': true, ',': true, '.': true, '/': true, ';': true, '<': true, '=': true, '>': true, '?': true, '@': true, '[': true, '\\': true, ']': true, '^': true, '`': true, '{': true, '|': true, '}': true, '~': true }; exports.strReplacementsRev = { '\n': '\\n', '\r': '\\r', '\t': '\\t', '\f': '\\f', '\v': '\\v' }; exports.singleQuoteEscapeChars = { n: '\n', r: '\r', t: '\t', f: '\f', '\\': '\\', '\'': '\'' }; exports.doubleQuotesEscapeChars = { n: '\n', r: '\r', t: '\t', f: '\f', '\\': '\\', '"': '"' }; /***/ }), /***/ "./node_modules/debug/src/browser.js": /*!*******************************************!*\ !*** ./node_modules/debug/src/browser.js ***! \*******************************************/ /***/ ((module, exports, __webpack_require__) => { /** * This is the web browser implementation of `debug()`. * * Expose `debug()` as the module. */ exports = module.exports = __webpack_require__(/*! ./debug */ "./node_modules/debug/src/debug.js"); exports.log = log; exports.formatArgs = formatArgs; exports.save = save; exports.load = load; exports.useColors = useColors; exports.storage = 'undefined' != typeof chrome && 'undefined' != typeof chrome.storage ? chrome.storage.local : localstorage(); /** * Colors. */ exports.colors = [ 'lightseagreen', 'forestgreen', 'goldenrod', 'dodgerblue', 'darkorchid', 'crimson' ]; /** * Currently only WebKit-based Web Inspectors, Firefox >= v31, * and the Firebug extension (any Firefox version) are known * to support "%c" CSS customizations. * * TODO: add a `localStorage` variable to explicitly enable/disable colors */ function useColors() { // NB: In an Electron preload script, document will be defined but not fully // initialized. Since we know we're in Chrome, we'll just detect this case // explicitly if (typeof window !== 'undefined' && window.process && window.process.type === 'renderer') { return true; } // is webkit? http://stackoverflow.com/a/16459606/376773 // document is undefined in react-native: https://github.com/facebook/react-native/pull/1632 return (typeof document !== 'undefined' && document.documentElement && document.documentElement.style && document.documentElement.style.WebkitAppearance) || // is firebug? http://stackoverflow.com/a/398120/376773 (typeof window !== 'undefined' && window.console && (window.console.firebug || (window.console.exception && window.console.table))) || // is firefox >= v31? // https://developer.mozilla.org/en-US/docs/Tools/Web_Console#Styling_messages (typeof navigator !== 'undefined' && navigator.userAgent && navigator.userAgent.toLowerCase().match(/firefox\/(\d+)/) && parseInt(RegExp.$1, 10) >= 31) || // double check webkit in userAgent just in case we are in a worker (typeof navigator !== 'undefined' && navigator.userAgent && navigator.userAgent.toLowerCase().match(/applewebkit\/(\d+)/)); } /** * Map %j to `JSON.stringify()`, since no Web Inspectors do that by default. */ exports.formatters.j = function(v) { try { return JSON.stringify(v); } catch (err) { return '[UnexpectedJSONParseError]: ' + err.message; } }; /** * Colorize log arguments if enabled. * * @api public */ function formatArgs(args) { var useColors = this.useColors; args[0] = (useColors ? '%c' : '') + this.namespace + (useColors ? ' %c' : ' ') + args[0] + (useColors ? '%c ' : ' ') + '+' + exports.humanize(this.diff); if (!useColors) return; var c = 'color: ' + this.color; args.splice(1, 0, c, 'color: inherit') // the final "%c" is somewhat tricky, because there could be other // arguments passed either before or after the %c, so we need to // figure out the correct index to insert the CSS into var index = 0; var lastC = 0; args[0].replace(/%[a-zA-Z%]/g, function(match) { if ('%%' === match) return; index++; if ('%c' === match) { // we only are interested in the *last* %c // (the user may have provided their own) lastC = index; } }); args.splice(lastC, 0, c); } /** * Invokes `console.log()` when available. * No-op when `console.log` is not a "function". * * @api public */ function log() { // this hackery is required for IE8/9, where // the `console.log` function doesn't have 'apply' return 'object' === typeof console && console.log && Function.prototype.apply.call(console.log, console, arguments); } /** * Save `namespaces`. * * @param {String} namespaces * @api private */ function save(namespaces) { try { if (null == namespaces) { exports.storage.removeItem('debug'); } else { exports.storage.debug = namespaces; } } catch(e) {} } /** * Load `namespaces`. * * @return {String} returns the previously persisted debug modes * @api private */ function load() { var r; try { r = exports.storage.debug; } catch(e) {} // If debug isn't set in LS, and we're in Electron, try to load $DEBUG if (!r && typeof process !== 'undefined' && 'env' in process) { r = process.env.DEBUG; } return r; } /** * Enable namespaces listed in `localStorage.debug` initially. */ exports.enable(load()); /** * Localstorage attempts to return the localstorage. * * This is necessary because safari throws * when a user disables cookies/localstorage * and you attempt to access it. * * @return {LocalStorage} * @api private */ function localstorage() { try { return window.localStorage; } catch (e) {} } /***/ }), /***/ "./node_modules/debug/src/debug.js": /*!*****************************************!*\ !*** ./node_modules/debug/src/debug.js ***! \*****************************************/ /***/ ((module, exports, __webpack_require__) => { /** * This is the common logic for both the Node.js and web browser * implementations of `debug()`. * * Expose `debug()` as the module. */ exports = module.exports = createDebug.debug = createDebug['default'] = createDebug; exports.coerce = coerce; exports.disable = disable; exports.enable = enable; exports.enabled = enabled; exports.humanize = __webpack_require__(/*! ms */ "./node_modules/ms/index.js"); /** * The currently active debug mode names, and names to skip. */ exports.names = []; exports.skips = []; /** * Map of special "%n" handling functions, for the debug "format" argument. * * Valid key names are a single, lower or upper-case letter, i.e. "n" and "N". */ exports.formatters = {}; /** * Previous log timestamp. */ var prevTime; /** * Select a color. * @param {String} namespace * @return {Number} * @api private */ function selectColor(namespace) { var hash = 0, i; for (i in namespace) { hash = ((hash << 5) - hash) + namespace.charCodeAt(i); hash |= 0; // Convert to 32bit integer } return exports.colors[Math.abs(hash) % exports.colors.length]; } /** * Create a debugger with the given `namespace`. * * @param {String} namespace * @return {Function} * @api public */ function createDebug(namespace) { function debug() { // disabled? if (!debug.enabled) return; var self = debug; // set `diff` timestamp var curr = +new Date(); var ms = curr - (prevTime || curr); self.diff = ms; self.prev = prevTime; self.curr = curr; prevTime = curr; // turn the `arguments` into a proper Array var args = new Array(arguments.length); for (var i = 0; i < args.length; i++) { args[i] = arguments[i]; } args[0] = exports.coerce(args[0]); if ('string' !== typeof args[0]) { // anything else let's inspect with %O args.unshift('%O'); } // apply any `formatters` transformations var index = 0; args[0] = args[0].replace(/%([a-zA-Z%])/g, function(match, format) { // if we encounter an escaped % then don't increase the array index if (match === '%%') return match; index++; var formatter = exports.formatters[format]; if ('function' === typeof formatter) { var val = args[index]; match = formatter.call(self, val); // now we need to remove `args[index]` since it's inlined in the `format` args.splice(index, 1); index--; } return match; }); // apply env-specific formatting (colors, etc.) exports.formatArgs.call(self, args); var logFn = debug.log || exports.log || console.log.bind(console); logFn.apply(self, args); } debug.namespace = namespace; debug.enabled = exports.enabled(namespace); debug.useColors = exports.useColors(); debug.color = selectColor(namespace); // env-specific initialization logic for debug instances if ('function' === typeof exports.init) { exports.init(debug); } return debug; } /** * Enables a debug mode by namespaces. This can include modes * separated by a colon and wildcards. * * @param {String} namespaces * @api public */ function enable(namespaces) { exports.save(namespaces); exports.names = []; exports.skips = []; var split = (typeof namespaces === 'string' ? namespaces : '').split(/[\s,]+/); var len = split.length; for (var i = 0; i < len; i++) { if (!split[i]) continue; // ignore empty strings namespaces = split[i].replace(/\*/g, '.*?'); if (namespaces[0] === '-') { exports.skips.push(new RegExp('^' + namespaces.substr(1) + '$')); } else { exports.names.push(new RegExp('^' + namespaces + '$')); } } } /** * Disable debug output. * * @api public */ function disable() { exports.enable(''); } /** * Returns true if the given mode name is enabled, false otherwise. * * @param {String} name * @return {Boolean} * @api public */ function enabled(name) { var i, len; for (i = 0, len = exports.skips.length; i < len; i++) { if (exports.skips[i].test(name)) { return false; } } for (i = 0, len = exports.names.length; i < len; i++) { if (exports.names[i].test(name)) { return true; } } return false; } /** * Coerce `val`. * * @param {Mixed} val * @return {Mixed} * @api private */ function coerce(val) { if (val instanceof Error) return val.stack || val.message; return val; } /***/ }), /***/ "./node_modules/debug/src/index.js": /*!*****************************************!*\ !*** ./node_modules/debug/src/index.js ***! \*****************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { /** * Detect Electron renderer process, which is node, but we should * treat as a browser. */ if (typeof process !== 'undefined' && process.type === 'renderer') { module.exports = __webpack_require__(/*! ./browser.js */ "./node_modules/debug/src/browser.js"); } else { module.exports = __webpack_require__(/*! ./node.js */ "./node_modules/debug/src/node.js"); } /***/ }), /***/ "./node_modules/debug/src/node.js": /*!****************************************!*\ !*** ./node_modules/debug/src/node.js ***! \****************************************/ /***/ ((module, exports, __webpack_require__) => { /** * Module dependencies. */ var tty = __webpack_require__(/*! tty */ "tty"); var util = __webpack_require__(/*! util */ "util"); /** * This is the Node.js implementation of `debug()`. * * Expose `debug()` as the module. */ exports = module.exports = __webpack_require__(/*! ./debug */ "./node_modules/debug/src/debug.js"); exports.init = init; exports.log = log; exports.formatArgs = formatArgs; exports.save = save; exports.load = load; exports.useColors = useColors; /** * Colors. */ exports.colors = [6, 2, 3, 4, 5, 1]; /** * Build up the default `inspectOpts` object from the environment variables. * * $ DEBUG_COLORS=no DEBUG_DEPTH=10 DEBUG_SHOW_HIDDEN=enabled node script.js */ exports.inspectOpts = Object.keys(process.env).filter(function (key) { return /^debug_/i.test(key); }).reduce(function (obj, key) { // camel-case var prop = key .substring(6) .toLowerCase() .replace(/_([a-z])/g, function (_, k) { return k.toUpperCase() }); // coerce string value into JS value var val = process.env[key]; if (/^(yes|on|true|enabled)$/i.test(val)) val = true; else if (/^(no|off|false|disabled)$/i.test(val)) val = false; else if (val === 'null') val = null; else val = Number(val); obj[prop] = val; return obj; }, {}); /** * The file descriptor to write the `debug()` calls to. * Set the `DEBUG_FD` env variable to override with another value. i.e.: * * $ DEBUG_FD=3 node script.js 3>debug.log */ var fd = parseInt(process.env.DEBUG_FD, 10) || 2; if (1 !== fd && 2 !== fd) { util.deprecate(function(){}, 'except for stderr(2) and stdout(1), any other usage of DEBUG_FD is deprecated. Override debug.log if you want to use a different log function (https://git.io/debug_fd)')() } var stream = 1 === fd ? process.stdout : 2 === fd ? process.stderr : createWritableStdioStream(fd); /** * Is stdout a TTY? Colored output is enabled when `true`. */ function useColors() { return 'colors' in exports.inspectOpts ? Boolean(exports.inspectOpts.colors) : tty.isatty(fd); } /** * Map %o to `util.inspect()`, all on a single line. */ exports.formatters.o = function(v) { this.inspectOpts.colors = this.useColors; return util.inspect(v, this.inspectOpts) .split('\n').map(function(str) { return str.trim() }).join(' '); }; /** * Map %o to `util.inspect()`, allowing multiple lines if needed. */ exports.formatters.O = function(v) { this.inspectOpts.colors = this.useColors; return util.inspect(v, this.inspectOpts); }; /** * Adds ANSI color escape codes if enabled. * * @api public */ function formatArgs(args) { var name = this.namespace; var useColors = this.useColors; if (useColors) { var c = this.color; var prefix = ' \u001b[3' + c + ';1m' + name + ' ' + '\u001b[0m'; args[0] = prefix + args[0].split('\n').join('\n' + prefix); args.push('\u001b[3' + c + 'm+' + exports.humanize(this.diff) + '\u001b[0m'); } else { args[0] = new Date().toUTCString() + ' ' + name + ' ' + args[0]; } } /** * Invokes `util.format()` with the specified arguments and writes to `stream`. */ function log() { return stream.write(util.format.apply(util, arguments) + '\n'); } /** * Save `namespaces`. * * @param {String} namespaces * @api private */ function save(namespaces) { if (null == namespaces) { // If you set a process.env field to null or undefined, it gets cast to the // string 'null' or 'undefined'. Just delete instead. delete process.env.DEBUG; } else { process.env.DEBUG = namespaces; } } /** * Load `namespaces`. * * @return {String} returns the previously persisted debug modes * @api private */ function load() { return process.env.DEBUG; } /** * Copied from `node/src/node.js`. * * XXX: It's lame that node doesn't expose this API out-of-the-box. It also * relies on the undocumented `tty_wrap.guessHandleType()` which is also lame. */ function createWritableStdioStream (fd) { var stream; var tty_wrap = process.binding('tty_wrap'); // Note stream._type is used for test-module-load-list.js switch (tty_wrap.guessHandleType(fd)) { case 'TTY': stream = new tty.WriteStream(fd); stream._type = 'tty'; // Hack to have stream not keep the event loop alive. // See https://github.com/joyent/node/issues/1726 if (stream._handle && stream._handle.unref) { stream._handle.unref(); } break; case 'FILE': var fs = __webpack_require__(/*! fs */ "fs"); stream = new fs.SyncWriteStream(fd, { autoClose: false }); stream._type = 'fs'; break; case 'PIPE': case 'TCP': var net = __webpack_require__(/*! net */ "net"); stream = new net.Socket({ fd: fd, readable: false, writable: true }); // FIXME Should probably have an option in net.Socket to create a // stream from an existing fd which is writable only. But for now // we'll just add this hack and set the `readable` member to false. // Test: ./node test/fixtures/echo.js < /etc/passwd stream.readable = false; stream.read = null; stream._type = 'pipe'; // FIXME Hack to have stream not keep the event loop alive. // See https://github.com/joyent/node/issues/1726 if (stream._handle && stream._handle.unref) { stream._handle.unref(); } break; default: // Probably an error on in uv_guess_handle() throw new Error('Implement me. Unknown stream file type!'); } // For supporting legacy API we put the FD here. stream.fd = fd; stream._isStdio = true; return stream; } /** * Init logic for `debug` instances. * * Create a new `inspectOpts` object in case `useColors` is set * differently for a particular `debug` instance. */ function init (debug) { debug.inspectOpts = {}; var keys = Object.keys(exports.inspectOpts); for (var i = 0; i < keys.length; i++) { debug.inspectOpts[keys[i]] = exports.inspectOpts[keys[i]]; } } /** * Enable namespaces listed in `process.env.DEBUG` initially. */ exports.enable(load()); /***/ }), /***/ "./node_modules/delayed-stream/lib/delayed_stream.js": /*!***********************************************************!*\ !*** ./node_modules/delayed-stream/lib/delayed_stream.js ***! \***********************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var Stream = (__webpack_require__(/*! stream */ "stream").Stream); var util = __webpack_require__(/*! util */ "util"); 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)); }; /***/ }), /***/ "./node_modules/encoding/lib/encoding.js": /*!***********************************************!*\ !*** ./node_modules/encoding/lib/encoding.js ***! \***********************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var iconvLite = __webpack_require__(/*! iconv-lite */ "./node_modules/encoding/node_modules/iconv-lite/lib/index.js"); // Expose to the world module.exports.convert = convert; /** * Convert encoding of an UTF-8 string or a buffer * * @param {String|Buffer} str String to be converted * @param {String} to Encoding to be converted to * @param {String} [from='UTF-8'] Encoding to be converted from * @return {Buffer} Encoded string */ function convert(str, to, from) { from = checkEncoding(from || 'UTF-8'); to = checkEncoding(to || 'UTF-8'); str = str || ''; var result; if (from !== 'UTF-8' && typeof str === 'string') { str = Buffer.from(str, 'binary'); } if (from === to) { if (typeof str === 'string') { result = Buffer.from(str); } else { result = str; } } else { try { result = convertIconvLite(str, to, from); } catch (E) { console.error(E); result = str; } } if (typeof result === 'string') { result = Buffer.from(result, 'utf-8'); } return result; } /** * Convert encoding of astring with iconv-lite * * @param {String|Buffer} str String to be converted * @param {String} to Encoding to be converted to * @param {String} [from='UTF-8'] Encoding to be converted from * @return {Buffer} Encoded string */ function convertIconvLite(str, to, from) { if (to === 'UTF-8') { return iconvLite.decode(str, from); } else if (from === 'UTF-8') { return iconvLite.encode(str, to); } else { return iconvLite.encode(iconvLite.decode(str, from), to); } } /** * Converts charset name if needed * * @param {String} name Character set * @return {String} Character set name */ function checkEncoding(name) { return (name || '') .toString() .trim() .replace(/^latin[\-_]?(\d+)$/i, 'ISO-8859-$1') .replace(/^win(?:dows)?[\-_]?(\d+)$/i, 'WINDOWS-$1') .replace(/^utf[\-_]?(\d+)$/i, 'UTF-$1') .replace(/^ks_c_5601\-1987$/i, 'CP949') .replace(/^us[\-_]?ascii$/i, 'ASCII') .toUpperCase(); } /***/ }), /***/ "./node_modules/encoding/node_modules/iconv-lite/encodings/dbcs-codec.js": /*!*******************************************************************************!*\ !*** ./node_modules/encoding/node_modules/iconv-lite/encodings/dbcs-codec.js ***! \*******************************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; var Buffer = (__webpack_require__(/*! safer-buffer */ "./node_modules/safer-buffer/safer.js").Buffer); // Multibyte codec. In this scheme, a character is represented by 1 or more bytes. // Our codec supports UTF-16 surrogates, extensions for GB18030 and unicode sequences. // To save memory and loading time, we read table files only when requested. exports._dbcs = DBCSCodec; var UNASSIGNED = -1, GB18030_CODE = -2, SEQ_START = -10, NODE_START = -1000, UNASSIGNED_NODE = new Array(0x100), DEF_CHAR = -1; for (var i = 0; i < 0x100; i++) UNASSIGNED_NODE[i] = UNASSIGNED; // Class DBCSCodec reads and initializes mapping tables. function DBCSCodec(codecOptions, iconv) { this.encodingName = codecOptions.encodingName; if (!codecOptions) throw new Error("DBCS codec is called without the data.") if (!codecOptions.table) throw new Error("Encoding '" + this.encodingName + "' has no data."); // Load tables. var mappingTable = codecOptions.table(); // Decode tables: MBCS -> Unicode. // decodeTables is a trie, encoded as an array of arrays of integers. Internal arrays are trie nodes and all have len = 256. // Trie root is decodeTables[0]. // Values: >= 0 -> unicode character code. can be > 0xFFFF // == UNASSIGNED -> unknown/unassigned sequence. // == GB18030_CODE -> this is the end of a GB18030 4-byte sequence. // <= NODE_START -> index of the next node in our trie to process next byte. // <= SEQ_START -> index of the start of a character code sequence, in decodeTableSeq. this.decodeTables = []; this.decodeTables[0] = UNASSIGNED_NODE.slice(0); // Create root node. // Sometimes a MBCS char corresponds to a sequence of unicode chars. We store them as arrays of integers here. this.decodeTableSeq = []; // Actual mapping tables consist of chunks. Use them to fill up decode tables. for (var i = 0; i < mappingTable.length; i++) this._addDecodeChunk(mappingTable[i]); // Load & create GB18030 tables when needed. if (typeof codecOptions.gb18030 === 'function') { this.gb18030 = codecOptions.gb18030(); // Load GB18030 ranges. // Add GB18030 common decode nodes. var commonThirdByteNodeIdx = this.decodeTables.length; this.decodeTables.push(UNASSIGNED_NODE.slice(0)); var commonFourthByteNodeIdx = this.decodeTables.length; this.decodeTables.push(UNASSIGNED_NODE.slice(0)); // Fill out the tree var firstByteNode = this.decodeTables[0]; for (var i = 0x81; i <= 0xFE; i++) { var secondByteNode = this.decodeTables[NODE_START - firstByteNode[i]]; for (var j = 0x30; j <= 0x39; j++) { if (secondByteNode[j] === UNASSIGNED) { secondByteNode[j] = NODE_START - commonThirdByteNodeIdx; } else if (secondByteNode[j] > NODE_START) { throw new Error("gb18030 decode tables conflict at byte 2"); } var thirdByteNode = this.decodeTables[NODE_START - secondByteNode[j]]; for (var k = 0x81; k <= 0xFE; k++) { if (thirdByteNode[k] === UNASSIGNED) { thirdByteNode[k] = NODE_START - commonFourthByteNodeIdx; } else if (thirdByteNode[k] === NODE_START - commonFourthByteNodeIdx) { continue; } else if (thirdByteNode[k] > NODE_START) { throw new Error("gb18030 decode tables conflict at byte 3"); } var fourthByteNode = this.decodeTables[NODE_START - thirdByteNode[k]]; for (var l = 0x30; l <= 0x39; l++) { if (fourthByteNode[l] === UNASSIGNED) fourthByteNode[l] = GB18030_CODE; } } } } } this.defaultCharUnicode = iconv.defaultCharUnicode; // Encode tables: Unicode -> DBCS. // `encodeTable` is array mapping from unicode char to encoded char. All its values are integers for performance. // Because it can be sparse, it is represented as array of buckets by 256 chars each. Bucket can be null. // Values: >= 0 -> it is a normal char. Write the value (if <=256 then 1 byte, if <=65536 then 2 bytes, etc.). // == UNASSIGNED -> no conversion found. Output a default char. // <= SEQ_START -> it's an index in encodeTableSeq, see below. The character starts a sequence. this.encodeTable = []; // `encodeTableSeq` is used when a sequence of unicode characters is encoded as a single code. We use a tree of // objects where keys correspond to characters in sequence and leafs are the encoded dbcs values. A special DEF_CHAR key // means end of sequence (needed when one sequence is a strict subsequence of another). // Objects are kept separately from encodeTable to increase performance. this.encodeTableSeq = []; // Some chars can be decoded, but need not be encoded. var skipEncodeChars = {}; if (codecOptions.encodeSkipVals) for (var i = 0; i < codecOptions.encodeSkipVals.length; i++) { var val = codecOptions.encodeSkipVals[i]; if (typeof val === 'number') skipEncodeChars[val] = true; else for (var j = val.from; j <= val.to; j++) skipEncodeChars[j] = true; } // Use decode trie to recursively fill out encode tables. this._fillEncodeTable(0, 0, skipEncodeChars); // Add more encoding pairs when needed. if (codecOptions.encodeAdd) { for (var uChar in codecOptions.encodeAdd) if (Object.prototype.hasOwnProperty.call(codecOptions.encodeAdd, uChar)) this._setEncodeChar(uChar.charCodeAt(0), codecOptions.encodeAdd[uChar]); } this.defCharSB = this.encodeTable[0][iconv.defaultCharSingleByte.charCodeAt(0)]; if (this.defCharSB === UNASSIGNED) this.defCharSB = this.encodeTable[0]['?']; if (this.defCharSB === UNASSIGNED) this.defCharSB = "?".charCodeAt(0); } DBCSCodec.prototype.encoder = DBCSEncoder; DBCSCodec.prototype.decoder = DBCSDecoder; // Decoder helpers DBCSCodec.prototype._getDecodeTrieNode = function(addr) { var bytes = []; for (; addr > 0; addr >>>= 8) bytes.push(addr & 0xFF); if (bytes.length == 0) bytes.push(0); var node = this.decodeTables[0]; for (var i = bytes.length-1; i > 0; i--) { // Traverse nodes deeper into the trie. var val = node[bytes[i]]; if (val == UNASSIGNED) { // Create new node. node[bytes[i]] = NODE_START - this.decodeTables.length; this.decodeTables.push(node = UNASSIGNED_NODE.slice(0)); } else if (val <= NODE_START) { // Existing node. node = this.decodeTables[NODE_START - val]; } else throw new Error("Overwrite byte in " + this.encodingName + ", addr: " + addr.toString(16)); } return node; } DBCSCodec.prototype._addDecodeChunk = function(chunk) { // First element of chunk is the hex mbcs code where we start. var curAddr = parseInt(chunk[0], 16); // Choose the decoding node where we'll write our chars. var writeTable = this._getDecodeTrieNode(curAddr); curAddr = curAddr & 0xFF; // Write all other elements of the chunk to the table. for (var k = 1; k < chunk.length; k++) { var part = chunk[k]; if (typeof part === "string") { // String, write as-is. for (var l = 0; l < part.length;) { var code = part.charCodeAt(l++); if (0xD800 <= code && code < 0xDC00) { // Decode surrogate var codeTrail = part.charCodeAt(l++); if (0xDC00 <= codeTrail && codeTrail < 0xE000) writeTable[curAddr++] = 0x10000 + (code - 0xD800) * 0x400 + (codeTrail - 0xDC00); else throw new Error("Incorrect surrogate pair in " + this.encodingName + " at chunk " + chunk[0]); } else if (0x0FF0 < code && code <= 0x0FFF) { // Character sequence (our own encoding used) var len = 0xFFF - code + 2; var seq = []; for (var m = 0; m < len; m++) seq.push(part.charCodeAt(l++)); // Simple variation: don't support surrogates or subsequences in seq. writeTable[curAddr++] = SEQ_START - this.decodeTableSeq.length; this.decodeTableSeq.push(seq); } else writeTable[curAddr++] = code; // Basic char } } else if (typeof part === "number") { // Integer, meaning increasing sequence starting with prev character. var charCode = writeTable[curAddr - 1] + 1; for (var l = 0; l < part; l++) writeTable[curAddr++] = charCode++; } else throw new Error("Incorrect type '" + typeof part + "' given in " + this.encodingName + " at chunk " + chunk[0]); } if (curAddr > 0xFF) throw new Error("Incorrect chunk in " + this.encodingName + " at addr " + chunk[0] + ": too long" + curAddr); } // Encoder helpers DBCSCodec.prototype._getEncodeBucket = function(uCode) { var high = uCode >> 8; // This could be > 0xFF because of astral characters. if (this.encodeTable[high] === undefined) this.encodeTable[high] = UNASSIGNED_NODE.slice(0); // Create bucket on demand. return this.encodeTable[high]; } DBCSCodec.prototype._setEncodeChar = function(uCode, dbcsCode) { var bucket = this._getEncodeBucket(uCode); var low = uCode & 0xFF; if (bucket[low] <= SEQ_START) this.encodeTableSeq[SEQ_START-bucket[low]][DEF_CHAR] = dbcsCode; // There's already a sequence, set a single-char subsequence of it. else if (bucket[low] == UNASSIGNED) bucket[low] = dbcsCode; } DBCSCodec.prototype._setEncodeSequence = function(seq, dbcsCode) { // Get the root of character tree according to first character of the sequence. var uCode = seq[0]; var bucket = this._getEncodeBucket(uCode); var low = uCode & 0xFF; var node; if (bucket[low] <= SEQ_START) { // There's already a sequence with - use it. node = this.encodeTableSeq[SEQ_START-bucket[low]]; } else { // There was no sequence object - allocate a new one. node = {}; if (bucket[low] !== UNASSIGNED) node[DEF_CHAR] = bucket[low]; // If a char was set before - make it a single-char subsequence. bucket[low] = SEQ_START - this.encodeTableSeq.length; this.encodeTableSeq.push(node); } // Traverse the character tree, allocating new nodes as needed. for (var j = 1; j < seq.length-1; j++) { var oldVal = node[uCode]; if (typeof oldVal === 'object') node = oldVal; else { node = node[uCode] = {} if (oldVal !== undefined) node[DEF_CHAR] = oldVal } } // Set the leaf to given dbcsCode. uCode = seq[seq.length-1]; node[uCode] = dbcsCode; } DBCSCodec.prototype._fillEncodeTable = function(nodeIdx, prefix, skipEncodeChars) { var node = this.decodeTables[nodeIdx]; var hasValues = false; var subNodeEmpty = {}; for (var i = 0; i < 0x100; i++) { var uCode = node[i]; var mbCode = prefix + i; if (skipEncodeChars[mbCode]) continue; if (uCode >= 0) { this._setEncodeChar(uCode, mbCode); hasValues = true; } else if (uCode <= NODE_START) { var subNodeIdx = NODE_START - uCode; if (!subNodeEmpty[subNodeIdx]) { // Skip empty subtrees (they are too large in gb18030). var newPrefix = (mbCode << 8) >>> 0; // NOTE: '>>> 0' keeps 32-bit num positive. if (this._fillEncodeTable(subNodeIdx, newPrefix, skipEncodeChars)) hasValues = true; else subNodeEmpty[subNodeIdx] = true; } } else if (uCode <= SEQ_START) { this._setEncodeSequence(this.decodeTableSeq[SEQ_START - uCode], mbCode); hasValues = true; } } return hasValues; } // == Encoder ================================================================== function DBCSEncoder(options, codec) { // Encoder state this.leadSurrogate = -1; this.seqObj = undefined; // Static data this.encodeTable = codec.encodeTable; this.encodeTableSeq = codec.encodeTableSeq; this.defaultCharSingleByte = codec.defCharSB; this.gb18030 = codec.gb18030; } DBCSEncoder.prototype.write = function(str) { var newBuf = Buffer.alloc(str.length * (this.gb18030 ? 4 : 3)), leadSurrogate = this.leadSurrogate, seqObj = this.seqObj, nextChar = -1, i = 0, j = 0; while (true) { // 0. Get next character. if (nextChar === -1) { if (i == str.length) break; var uCode = str.charCodeAt(i++); } else { var uCode = nextChar; nextChar = -1; } // 1. Handle surrogates. if (0xD800 <= uCode && uCode < 0xE000) { // Char is one of surrogates. if (uCode < 0xDC00) { // We've got lead surrogate. if (leadSurrogate === -1) { leadSurrogate = uCode; continue; } else { leadSurrogate = uCode; // Double lead surrogate found. uCode = UNASSIGNED; } } else { // We've got trail surrogate. if (leadSurrogate !== -1) { uCode = 0x10000 + (leadSurrogate - 0xD800) * 0x400 + (uCode - 0xDC00); leadSurrogate = -1; } else { // Incomplete surrogate pair - only trail surrogate found. uCode = UNASSIGNED; } } } else if (leadSurrogate !== -1) { // Incomplete surrogate pair - only lead surrogate found. nextChar = uCode; uCode = UNASSIGNED; // Write an error, then current char. leadSurrogate = -1; } // 2. Convert uCode character. var dbcsCode = UNASSIGNED; if (seqObj !== undefined && uCode != UNASSIGNED) { // We are in the middle of the sequence var resCode = seqObj[uCode]; if (typeof resCode === 'object') { // Sequence continues. seqObj = resCode; continue; } else if (typeof resCode == 'number') { // Sequence finished. Write it. dbcsCode = resCode; } else if (resCode == undefined) { // Current character is not part of the sequence. // Try default character for this sequence resCode = seqObj[DEF_CHAR]; if (resCode !== undefined) { dbcsCode = resCode; // Found. Write it. nextChar = uCode; // Current character will be written too in the next iteration. } else { // TODO: What if we have no default? (resCode == undefined) // Then, we should write first char of the sequence as-is and try the rest recursively. // Didn't do it for now because no encoding has this situation yet. // Currently, just skip the sequence and write current char. } } seqObj = undefined; } else if (uCode >= 0) { // Regular character var subtable = this.encodeTable[uCode >> 8]; if (subtable !== undefined) dbcsCode = subtable[uCode & 0xFF]; if (dbcsCode <= SEQ_START) { // Sequence start seqObj = this.encodeTableSeq[SEQ_START-dbcsCode]; continue; } if (dbcsCode == UNASSIGNED && this.gb18030) { // Use GB18030 algorithm to find character(s) to write. var idx = findIdx(this.gb18030.uChars, uCode); if (idx != -1) { var dbcsCode = this.gb18030.gbChars[idx] + (uCode - this.gb18030.uChars[idx]); newBuf[j++] = 0x81 + Math.floor(dbcsCode / 12600); dbcsCode = dbcsCode % 12600; newBuf[j++] = 0x30 + Math.floor(dbcsCode / 1260); dbcsCode = dbcsCode % 1260; newBuf[j++] = 0x81 + Math.floor(dbcsCode / 10); dbcsCode = dbcsCode % 10; newBuf[j++] = 0x30 + dbcsCode; continue; } } } // 3. Write dbcsCode character. if (dbcsCode === UNASSIGNED) dbcsCode = this.defaultCharSingleByte; if (dbcsCode < 0x100) { newBuf[j++] = dbcsCode; } else if (dbcsCode < 0x10000) { newBuf[j++] = dbcsCode >> 8; // high byte newBuf[j++] = dbcsCode & 0xFF; // low byte } else if (dbcsCode < 0x1000000) { newBuf[j++] = dbcsCode >> 16; newBuf[j++] = (dbcsCode >> 8) & 0xFF; newBuf[j++] = dbcsCode & 0xFF; } else { newBuf[j++] = dbcsCode >>> 24; newBuf[j++] = (dbcsCode >>> 16) & 0xFF; newBuf[j++] = (dbcsCode >>> 8) & 0xFF; newBuf[j++] = dbcsCode & 0xFF; } } this.seqObj = seqObj; this.leadSurrogate = leadSurrogate; return newBuf.slice(0, j); } DBCSEncoder.prototype.end = function() { if (this.leadSurrogate === -1 && this.seqObj === undefined) return; // All clean. Most often case. var newBuf = Buffer.alloc(10), j = 0; if (this.seqObj) { // We're in the sequence. var dbcsCode = this.seqObj[DEF_CHAR]; if (dbcsCode !== undefined) { // Write beginning of the sequence. if (dbcsCode < 0x100) { newBuf[j++] = dbcsCode; } else { newBuf[j++] = dbcsCode >> 8; // high byte newBuf[j++] = dbcsCode & 0xFF; // low byte } } else { // See todo above. } this.seqObj = undefined; } if (this.leadSurrogate !== -1) { // Incomplete surrogate pair - only lead surrogate found. newBuf[j++] = this.defaultCharSingleByte; this.leadSurrogate = -1; } return newBuf.slice(0, j); } // Export for testing DBCSEncoder.prototype.findIdx = findIdx; // == Decoder ================================================================== function DBCSDecoder(options, codec) { // Decoder state this.nodeIdx = 0; this.prevBytes = []; // Static data this.decodeTables = codec.decodeTables; this.decodeTableSeq = codec.decodeTableSeq; this.defaultCharUnicode = codec.defaultCharUnicode; this.gb18030 = codec.gb18030; } DBCSDecoder.prototype.write = function(buf) { var newBuf = Buffer.alloc(buf.length*2), nodeIdx = this.nodeIdx, prevBytes = this.prevBytes, prevOffset = this.prevBytes.length, seqStart = -this.prevBytes.length, // idx of the start of current parsed sequence. uCode; for (var i = 0, j = 0; i < buf.length; i++) { var curByte = (i >= 0) ? buf[i] : prevBytes[i + prevOffset]; // Lookup in current trie node. var uCode = this.decodeTables[nodeIdx][curByte]; if (uCode >= 0) { // Normal character, just use it. } else if (uCode === UNASSIGNED) { // Unknown char. // TODO: Callback with seq. uCode = this.defaultCharUnicode.charCodeAt(0); i = seqStart; // Skip one byte ('i' will be incremented by the for loop) and try to parse again. } else if (uCode === GB18030_CODE) { if (i >= 3) { var ptr = (buf[i-3]-0x81)*12600 + (buf[i-2]-0x30)*1260 + (buf[i-1]-0x81)*10 + (curByte-0x30); } else { var ptr = (prevBytes[i-3+prevOffset]-0x81)*12600 + (((i-2 >= 0) ? buf[i-2] : prevBytes[i-2+prevOffset])-0x30)*1260 + (((i-1 >= 0) ? buf[i-1] : prevBytes[i-1+prevOffset])-0x81)*10 + (curByte-0x30); } var idx = findIdx(this.gb18030.gbChars, ptr); uCode = this.gb18030.uChars[idx] + ptr - this.gb18030.gbChars[idx]; } else if (uCode <= NODE_START) { // Go to next trie node. nodeIdx = NODE_START - uCode; continue; } else if (uCode <= SEQ_START) { // Output a sequence of chars. var seq = this.decodeTableSeq[SEQ_START - uCode]; for (var k = 0; k < seq.length - 1; k++) { uCode = seq[k]; newBuf[j++] = uCode & 0xFF; newBuf[j++] = uCode >> 8; } uCode = seq[seq.length-1]; } else throw new Error("iconv-lite internal error: invalid decoding table value " + uCode + " at " + nodeIdx + "/" + curByte); // Write the character to buffer, handling higher planes using surrogate pair. if (uCode >= 0x10000) { uCode -= 0x10000; var uCodeLead = 0xD800 | (uCode >> 10); newBuf[j++] = uCodeLead & 0xFF; newBuf[j++] = uCodeLead >> 8; uCode = 0xDC00 | (uCode & 0x3FF); } newBuf[j++] = uCode & 0xFF; newBuf[j++] = uCode >> 8; // Reset trie node. nodeIdx = 0; seqStart = i+1; } this.nodeIdx = nodeIdx; this.prevBytes = (seqStart >= 0) ? Array.prototype.slice.call(buf, seqStart) : prevBytes.slice(seqStart + prevOffset).concat(Array.prototype.slice.call(buf)); return newBuf.slice(0, j).toString('ucs2'); } DBCSDecoder.prototype.end = function() { var ret = ''; // Try to parse all remaining chars. while (this.prevBytes.length > 0) { // Skip 1 character in the buffer. ret += this.defaultCharUnicode; var bytesArr = this.prevBytes.slice(1); // Parse remaining as usual. this.prevBytes = []; this.nodeIdx = 0; if (bytesArr.length > 0) ret += this.write(bytesArr); } this.prevBytes = []; this.nodeIdx = 0; return ret; } // Binary search for GB18030. Returns largest i such that table[i] <= val. function findIdx(table, val) { if (table[0] > val) return -1; var l = 0, r = table.length; while (l < r-1) { // always table[l] <= val < table[r] var mid = l + ((r-l+1) >> 1); if (table[mid] <= val) l = mid; else r = mid; } return l; } /***/ }), /***/ "./node_modules/encoding/node_modules/iconv-lite/encodings/dbcs-data.js": /*!******************************************************************************!*\ !*** ./node_modules/encoding/node_modules/iconv-lite/encodings/dbcs-data.js ***! \******************************************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; // Description of supported double byte encodings and aliases. // Tables are not require()-d until they are needed to speed up library load. // require()-s are direct to support Browserify. module.exports = { // == Japanese/ShiftJIS ==================================================== // All japanese encodings are based on JIS X set of standards: // JIS X 0201 - Single-byte encoding of ASCII + ¥ + Kana chars at 0xA1-0xDF. // JIS X 0208 - Main set of 6879 characters, placed in 94x94 plane, to be encoded by 2 bytes. // Has several variations in 1978, 1983, 1990 and 1997. // JIS X 0212 - Supplementary plane of 6067 chars in 94x94 plane. 1990. Effectively dead. // JIS X 0213 - Extension and modern replacement of 0208 and 0212. Total chars: 11233. // 2 planes, first is superset of 0208, second - revised 0212. // Introduced in 2000, revised 2004. Some characters are in Unicode Plane 2 (0x2xxxx) // Byte encodings are: // * Shift_JIS: Compatible with 0201, uses not defined chars in top half as lead bytes for double-byte // encoding of 0208. Lead byte ranges: 0x81-0x9F, 0xE0-0xEF; Trail byte ranges: 0x40-0x7E, 0x80-0x9E, 0x9F-0xFC. // Windows CP932 is a superset of Shift_JIS. Some companies added more chars, notably KDDI. // * EUC-JP: Up to 3 bytes per character. Used mostly on *nixes. // 0x00-0x7F - lower part of 0201 // 0x8E, 0xA1-0xDF - upper part of 0201 // (0xA1-0xFE)x2 - 0208 plane (94x94). // 0x8F, (0xA1-0xFE)x2 - 0212 plane (94x94). // * JIS X 208: 7-bit, direct encoding of 0208. Byte ranges: 0x21-0x7E (94 values). Uncommon. // Used as-is in ISO2022 family. // * ISO2022-JP: Stateful encoding, with escape sequences to switch between ASCII, // 0201-1976 Roman, 0208-1978, 0208-1983. // * ISO2022-JP-1: Adds esc seq for 0212-1990. // * ISO2022-JP-2: Adds esc seq for GB2313-1980, KSX1001-1992, ISO8859-1, ISO8859-7. // * ISO2022-JP-3: Adds esc seq for 0201-1976 Kana set, 0213-2000 Planes 1, 2. // * ISO2022-JP-2004: Adds 0213-2004 Plane 1. // // After JIS X 0213 appeared, Shift_JIS-2004, EUC-JISX0213 and ISO2022-JP-2004 followed, with just changing the planes. // // Overall, it seems that it's a mess :( http://www8.plala.or.jp/tkubota1/unicode-symbols-map2.html 'shiftjis': { type: '_dbcs', table: function() { return __webpack_require__(/*! ./tables/shiftjis.json */ "./node_modules/encoding/node_modules/iconv-lite/encodings/tables/shiftjis.json") }, encodeAdd: {'\u00a5': 0x5C, '\u203E': 0x7E}, encodeSkipVals: [{from: 0xED40, to: 0xF940}], }, 'csshiftjis': 'shiftjis', 'mskanji': 'shiftjis', 'sjis': 'shiftjis', 'windows31j': 'shiftjis', 'ms31j': 'shiftjis', 'xsjis': 'shiftjis', 'windows932': 'shiftjis', 'ms932': 'shiftjis', '932': 'shiftjis', 'cp932': 'shiftjis', 'eucjp': { type: '_dbcs', table: function() { return __webpack_require__(/*! ./tables/eucjp.json */ "./node_modules/encoding/node_modules/iconv-lite/encodings/tables/eucjp.json") }, encodeAdd: {'\u00a5': 0x5C, '\u203E': 0x7E}, }, // TODO: KDDI extension to Shift_JIS // TODO: IBM CCSID 942 = CP932, but F0-F9 custom chars and other char changes. // TODO: IBM CCSID 943 = Shift_JIS = CP932 with original Shift_JIS lower 128 chars. // == Chinese/GBK ========================================================== // http://en.wikipedia.org/wiki/GBK // We mostly implement W3C recommendation: https://www.w3.org/TR/encoding/#gbk-encoder // Oldest GB2312 (1981, ~7600 chars) is a subset of CP936 'gb2312': 'cp936', 'gb231280': 'cp936', 'gb23121980': 'cp936', 'csgb2312': 'cp936', 'csiso58gb231280': 'cp936', 'euccn': 'cp936', // Microsoft's CP936 is a subset and approximation of GBK. 'windows936': 'cp936', 'ms936': 'cp936', '936': 'cp936', 'cp936': { type: '_dbcs', table: function() { return __webpack_require__(/*! ./tables/cp936.json */ "./node_modules/encoding/node_modules/iconv-lite/encodings/tables/cp936.json") }, }, // GBK (~22000 chars) is an extension of CP936 that added user-mapped chars and some other. 'gbk': { type: '_dbcs', table: function() { return (__webpack_require__(/*! ./tables/cp936.json */ "./node_modules/encoding/node_modules/iconv-lite/encodings/tables/cp936.json").concat)(__webpack_require__(/*! ./tables/gbk-added.json */ "./node_modules/encoding/node_modules/iconv-lite/encodings/tables/gbk-added.json")) }, }, 'xgbk': 'gbk', 'isoir58': 'gbk', // GB18030 is an algorithmic extension of GBK. // Main source: https://www.w3.org/TR/encoding/#gbk-encoder // http://icu-project.org/docs/papers/gb18030.html // http://source.icu-project.org/repos/icu/data/trunk/charset/data/xml/gb-18030-2000.xml // http://www.khngai.com/chinese/charmap/tblgbk.php?page=0 'gb18030': { type: '_dbcs', table: function() { return (__webpack_require__(/*! ./tables/cp936.json */ "./node_modules/encoding/node_modules/iconv-lite/encodings/tables/cp936.json").concat)(__webpack_require__(/*! ./tables/gbk-added.json */ "./node_modules/encoding/node_modules/iconv-lite/encodings/tables/gbk-added.json")) }, gb18030: function() { return __webpack_require__(/*! ./tables/gb18030-ranges.json */ "./node_modules/encoding/node_modules/iconv-lite/encodings/tables/gb18030-ranges.json") }, encodeSkipVals: [0x80], encodeAdd: {'€': 0xA2E3}, }, 'chinese': 'gb18030', // == Korean =============================================================== // EUC-KR, KS_C_5601 and KS X 1001 are exactly the same. 'windows949': 'cp949', 'ms949': 'cp949', '949': 'cp949', 'cp949': { type: '_dbcs', table: function() { return __webpack_require__(/*! ./tables/cp949.json */ "./node_modules/encoding/node_modules/iconv-lite/encodings/tables/cp949.json") }, }, 'cseuckr': 'cp949', 'csksc56011987': 'cp949', 'euckr': 'cp949', 'isoir149': 'cp949', 'korean': 'cp949', 'ksc56011987': 'cp949', 'ksc56011989': 'cp949', 'ksc5601': 'cp949', // == Big5/Taiwan/Hong Kong ================================================ // There are lots of tables for Big5 and cp950. Please see the following links for history: // http://moztw.org/docs/big5/ http://www.haible.de/bruno/charsets/conversion-tables/Big5.html // Variations, in roughly number of defined chars: // * Windows CP 950: Microsoft variant of Big5. Canonical: http://www.unicode.org/Public/MAPPINGS/VENDORS/MICSFT/WINDOWS/CP950.TXT // * Windows CP 951: Microsoft variant of Big5-HKSCS-2001. Seems to be never public. http://me.abelcheung.org/articles/research/what-is-cp951/ // * Big5-2003 (Taiwan standard) almost superset of cp950. // * Unicode-at-on (UAO) / Mozilla 1.8. Falling out of use on the Web. Not supported by other browsers. // * Big5-HKSCS (-2001, -2004, -2008). Hong Kong standard. // many unicode code points moved from PUA to Supplementary plane (U+2XXXX) over the years. // Plus, it has 4 combining sequences. // Seems that Mozilla refused to support it for 10 yrs. https://bugzilla.mozilla.org/show_bug.cgi?id=162431 https://bugzilla.mozilla.org/show_bug.cgi?id=310299 // because big5-hkscs is the only encoding to include astral characters in non-algorithmic way. // Implementations are not consistent within browsers; sometimes labeled as just big5. // MS Internet Explorer switches from big5 to big5-hkscs when a patch applied. // Great discussion & recap of what's going on https://bugzilla.mozilla.org/show_bug.cgi?id=912470#c31 // In the encoder, it might make sense to support encoding old PUA mappings to Big5 bytes seq-s. // Official spec: http://www.ogcio.gov.hk/en/business/tech_promotion/ccli/terms/doc/2003cmp_2008.txt // http://www.ogcio.gov.hk/tc/business/tech_promotion/ccli/terms/doc/hkscs-2008-big5-iso.txt // // Current understanding of how to deal with Big5(-HKSCS) is in the Encoding Standard, http://encoding.spec.whatwg.org/#big5-encoder // Unicode mapping (http://www.unicode.org/Public/MAPPINGS/OBSOLETE/EASTASIA/OTHER/BIG5.TXT) is said to be wrong. 'windows950': 'cp950', 'ms950': 'cp950', '950': 'cp950', 'cp950': { type: '_dbcs', table: function() { return __webpack_require__(/*! ./tables/cp950.json */ "./node_modules/encoding/node_modules/iconv-lite/encodings/tables/cp950.json") }, }, // Big5 has many variations and is an extension of cp950. We use Encoding Standard's as a consensus. 'big5': 'big5hkscs', 'big5hkscs': { type: '_dbcs', table: function() { return (__webpack_require__(/*! ./tables/cp950.json */ "./node_modules/encoding/node_modules/iconv-lite/encodings/tables/cp950.json").concat)(__webpack_require__(/*! ./tables/big5-added.json */ "./node_modules/encoding/node_modules/iconv-lite/encodings/tables/big5-added.json")) }, encodeSkipVals: [ // Although Encoding Standard says we should avoid encoding to HKSCS area (See Step 1 of // https://encoding.spec.whatwg.org/#index-big5-pointer), we still do it to increase compatibility with ICU. // But if a single unicode point can be encoded both as HKSCS and regular Big5, we prefer the latter. 0x8e69, 0x8e6f, 0x8e7e, 0x8eab, 0x8eb4, 0x8ecd, 0x8ed0, 0x8f57, 0x8f69, 0x8f6e, 0x8fcb, 0x8ffe, 0x906d, 0x907a, 0x90c4, 0x90dc, 0x90f1, 0x91bf, 0x92af, 0x92b0, 0x92b1, 0x92b2, 0x92d1, 0x9447, 0x94ca, 0x95d9, 0x96fc, 0x9975, 0x9b76, 0x9b78, 0x9b7b, 0x9bc6, 0x9bde, 0x9bec, 0x9bf6, 0x9c42, 0x9c53, 0x9c62, 0x9c68, 0x9c6b, 0x9c77, 0x9cbc, 0x9cbd, 0x9cd0, 0x9d57, 0x9d5a, 0x9dc4, 0x9def, 0x9dfb, 0x9ea9, 0x9eef, 0x9efd, 0x9f60, 0x9fcb, 0xa077, 0xa0dc, 0xa0df, 0x8fcc, 0x92c8, 0x9644, 0x96ed, // Step 2 of https://encoding.spec.whatwg.org/#index-big5-pointer: Use last pointer for U+2550, U+255E, U+2561, U+256A, U+5341, or U+5345 0xa2a4, 0xa2a5, 0xa2a7, 0xa2a6, 0xa2cc, 0xa2ce, ], }, 'cnbig5': 'big5hkscs', 'csbig5': 'big5hkscs', 'xxbig5': 'big5hkscs', }; /***/ }), /***/ "./node_modules/encoding/node_modules/iconv-lite/encodings/index.js": /*!**************************************************************************!*\ !*** ./node_modules/encoding/node_modules/iconv-lite/encodings/index.js ***! \**************************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; // Update this array if you add/rename/remove files in this directory. // We support Browserify by skipping automatic module discovery and requiring modules directly. var modules = [ __webpack_require__(/*! ./internal */ "./node_modules/encoding/node_modules/iconv-lite/encodings/internal.js"), __webpack_require__(/*! ./utf32 */ "./node_modules/encoding/node_modules/iconv-lite/encodings/utf32.js"), __webpack_require__(/*! ./utf16 */ "./node_modules/encoding/node_modules/iconv-lite/encodings/utf16.js"), __webpack_require__(/*! ./utf7 */ "./node_modules/encoding/node_modules/iconv-lite/encodings/utf7.js"), __webpack_require__(/*! ./sbcs-codec */ "./node_modules/encoding/node_modules/iconv-lite/encodings/sbcs-codec.js"), __webpack_require__(/*! ./sbcs-data */ "./node_modules/encoding/node_modules/iconv-lite/encodings/sbcs-data.js"), __webpack_require__(/*! ./sbcs-data-generated */ "./node_modules/encoding/node_modules/iconv-lite/encodings/sbcs-data-generated.js"), __webpack_require__(/*! ./dbcs-codec */ "./node_modules/encoding/node_modules/iconv-lite/encodings/dbcs-codec.js"), __webpack_require__(/*! ./dbcs-data */ "./node_modules/encoding/node_modules/iconv-lite/encodings/dbcs-data.js"), ]; // Put all encoding/alias/codec definitions to single object and export it. for (var i = 0; i < modules.length; i++) { var module = modules[i]; for (var enc in module) if (Object.prototype.hasOwnProperty.call(module, enc)) exports[enc] = module[enc]; } /***/ }), /***/ "./node_modules/encoding/node_modules/iconv-lite/encodings/internal.js": /*!*****************************************************************************!*\ !*** ./node_modules/encoding/node_modules/iconv-lite/encodings/internal.js ***! \*****************************************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var Buffer = (__webpack_require__(/*! safer-buffer */ "./node_modules/safer-buffer/safer.js").Buffer); // Export Node.js internal encodings. module.exports = { // Encodings utf8: { type: "_internal", bomAware: true}, cesu8: { type: "_internal", bomAware: true}, unicode11utf8: "utf8", ucs2: { type: "_internal", bomAware: true}, utf16le: "ucs2", binary: { type: "_internal" }, base64: { type: "_internal" }, hex: { type: "_internal" }, // Codec. _internal: InternalCodec, }; //------------------------------------------------------------------------------ function InternalCodec(codecOptions, iconv) { this.enc = codecOptions.encodingName; this.bomAware = codecOptions.bomAware; if (this.enc === "base64") this.encoder = InternalEncoderBase64; else if (this.enc === "cesu8") { this.enc = "utf8"; // Use utf8 for decoding. this.encoder = InternalEncoderCesu8; // Add decoder for versions of Node not supporting CESU-8 if (Buffer.from('eda0bdedb2a9', 'hex').toString() !== '💩') { this.decoder = InternalDecoderCesu8; this.defaultCharUnicode = iconv.defaultCharUnicode; } } } InternalCodec.prototype.encoder = InternalEncoder; InternalCodec.prototype.decoder = InternalDecoder; //------------------------------------------------------------------------------ // We use node.js internal decoder. Its signature is the same as ours. var StringDecoder = (__webpack_require__(/*! string_decoder */ "string_decoder").StringDecoder); if (!StringDecoder.prototype.end) // Node v0.8 doesn't have this method. StringDecoder.prototype.end = function() {}; function InternalDecoder(options, codec) { this.decoder = new StringDecoder(codec.enc); } InternalDecoder.prototype.write = function(buf) { if (!Buffer.isBuffer(buf)) { buf = Buffer.from(buf); } return this.decoder.write(buf); } InternalDecoder.prototype.end = function() { return this.decoder.end(); } //------------------------------------------------------------------------------ // Encoder is mostly trivial function InternalEncoder(options, codec) { this.enc = codec.enc; } InternalEncoder.prototype.write = function(str) { return Buffer.from(str, this.enc); } InternalEncoder.prototype.end = function() { } //------------------------------------------------------------------------------ // Except base64 encoder, which must keep its state. function InternalEncoderBase64(options, codec) { this.prevStr = ''; } InternalEncoderBase64.prototype.write = function(str) { str = this.prevStr + str; var completeQuads = str.length - (str.length % 4); this.prevStr = str.slice(completeQuads); str = str.slice(0, completeQuads); return Buffer.from(str, "base64"); } InternalEncoderBase64.prototype.end = function() { return Buffer.from(this.prevStr, "base64"); } //------------------------------------------------------------------------------ // CESU-8 encoder is also special. function InternalEncoderCesu8(options, codec) { } InternalEncoderCesu8.prototype.write = function(str) { var buf = Buffer.alloc(str.length * 3), bufIdx = 0; for (var i = 0; i < str.length; i++) { var charCode = str.charCodeAt(i); // Naive implementation, but it works because CESU-8 is especially easy // to convert from UTF-16 (which all JS strings are encoded in). if (charCode < 0x80) buf[bufIdx++] = charCode; else if (charCode < 0x800) { buf[bufIdx++] = 0xC0 + (charCode >>> 6); buf[bufIdx++] = 0x80 + (charCode & 0x3f); } else { // charCode will always be < 0x10000 in javascript. buf[bufIdx++] = 0xE0 + (charCode >>> 12); buf[bufIdx++] = 0x80 + ((charCode >>> 6) & 0x3f); buf[bufIdx++] = 0x80 + (charCode & 0x3f); } } return buf.slice(0, bufIdx); } InternalEncoderCesu8.prototype.end = function() { } //------------------------------------------------------------------------------ // CESU-8 decoder is not implemented in Node v4.0+ function InternalDecoderCesu8(options, codec) { this.acc = 0; this.contBytes = 0; this.accBytes = 0; this.defaultCharUnicode = codec.defaultCharUnicode; } InternalDecoderCesu8.prototype.write = function(buf) { var acc = this.acc, contBytes = this.contBytes, accBytes = this.accBytes, res = ''; for (var i = 0; i < buf.length; i++) { var curByte = buf[i]; if ((curByte & 0xC0) !== 0x80) { // Leading byte if (contBytes > 0) { // Previous code is invalid res += this.defaultCharUnicode; contBytes = 0; } if (curByte < 0x80) { // Single-byte code res += String.fromCharCode(curByte); } else if (curByte < 0xE0) { // Two-byte code acc = curByte & 0x1F; contBytes = 1; accBytes = 1; } else if (curByte < 0xF0) { // Three-byte code acc = curByte & 0x0F; contBytes = 2; accBytes = 1; } else { // Four or more are not supported for CESU-8. res += this.defaultCharUnicode; } } else { // Continuation byte if (contBytes > 0) { // We're waiting for it. acc = (acc << 6) | (curByte & 0x3f); contBytes--; accBytes++; if (contBytes === 0) { // Check for overlong encoding, but support Modified UTF-8 (encoding NULL as C0 80) if (accBytes === 2 && acc < 0x80 && acc > 0) res += this.defaultCharUnicode; else if (accBytes === 3 && acc < 0x800) res += this.defaultCharUnicode; else // Actually add character. res += String.fromCharCode(acc); } } else { // Unexpected continuation byte res += this.defaultCharUnicode; } } } this.acc = acc; this.contBytes = contBytes; this.accBytes = accBytes; return res; } InternalDecoderCesu8.prototype.end = function() { var res = 0; if (this.contBytes > 0) res += this.defaultCharUnicode; return res; } /***/ }), /***/ "./node_modules/encoding/node_modules/iconv-lite/encodings/sbcs-codec.js": /*!*******************************************************************************!*\ !*** ./node_modules/encoding/node_modules/iconv-lite/encodings/sbcs-codec.js ***! \*******************************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; var Buffer = (__webpack_require__(/*! safer-buffer */ "./node_modules/safer-buffer/safer.js").Buffer); // Single-byte codec. Needs a 'chars' string parameter that contains 256 or 128 chars that // correspond to encoded bytes (if 128 - then lower half is ASCII). exports._sbcs = SBCSCodec; function SBCSCodec(codecOptions, iconv) { if (!codecOptions) throw new Error("SBCS codec is called without the data.") // Prepare char buffer for decoding. if (!codecOptions.chars || (codecOptions.chars.length !== 128 && codecOptions.chars.length !== 256)) throw new Error("Encoding '"+codecOptions.type+"' has incorrect 'chars' (must be of len 128 or 256)"); if (codecOptions.chars.length === 128) { var asciiString = ""; for (var i = 0; i < 128; i++) asciiString += String.fromCharCode(i); codecOptions.chars = asciiString + codecOptions.chars; } this.decodeBuf = Buffer.from(codecOptions.chars, 'ucs2'); // Encoding buffer. var encodeBuf = Buffer.alloc(65536, iconv.defaultCharSingleByte.charCodeAt(0)); for (var i = 0; i < codecOptions.chars.length; i++) encodeBuf[codecOptions.chars.charCodeAt(i)] = i; this.encodeBuf = encodeBuf; } SBCSCodec.prototype.encoder = SBCSEncoder; SBCSCodec.prototype.decoder = SBCSDecoder; function SBCSEncoder(options, codec) { this.encodeBuf = codec.encodeBuf; } SBCSEncoder.prototype.write = function(str) { var buf = Buffer.alloc(str.length); for (var i = 0; i < str.length; i++) buf[i] = this.encodeBuf[str.charCodeAt(i)]; return buf; } SBCSEncoder.prototype.end = function() { } function SBCSDecoder(options, codec) { this.decodeBuf = codec.decodeBuf; } SBCSDecoder.prototype.write = function(buf) { // Strings are immutable in JS -> we use ucs2 buffer to speed up computations. var decodeBuf = this.decodeBuf; var newBuf = Buffer.alloc(buf.length*2); var idx1 = 0, idx2 = 0; for (var i = 0; i < buf.length; i++) { idx1 = buf[i]*2; idx2 = i*2; newBuf[idx2] = decodeBuf[idx1]; newBuf[idx2+1] = decodeBuf[idx1+1]; } return newBuf.toString('ucs2'); } SBCSDecoder.prototype.end = function() { } /***/ }), /***/ "./node_modules/encoding/node_modules/iconv-lite/encodings/sbcs-data-generated.js": /*!****************************************************************************************!*\ !*** ./node_modules/encoding/node_modules/iconv-lite/encodings/sbcs-data-generated.js ***! \****************************************************************************************/ /***/ ((module) => { "use strict"; // Generated data for sbcs codec. Don't edit manually. Regenerate using generation/gen-sbcs.js script. module.exports = { "437": "cp437", "737": "cp737", "775": "cp775", "850": "cp850", "852": "cp852", "855": "cp855", "856": "cp856", "857": "cp857", "858": "cp858", "860": "cp860", "861": "cp861", "862": "cp862", "863": "cp863", "864": "cp864", "865": "cp865", "866": "cp866", "869": "cp869", "874": "windows874", "922": "cp922", "1046": "cp1046", "1124": "cp1124", "1125": "cp1125", "1129": "cp1129", "1133": "cp1133", "1161": "cp1161", "1162": "cp1162", "1163": "cp1163", "1250": "windows1250", "1251": "windows1251", "1252": "windows1252", "1253": "windows1253", "1254": "windows1254", "1255": "windows1255", "1256": "windows1256", "1257": "windows1257", "1258": "windows1258", "28591": "iso88591", "28592": "iso88592", "28593": "iso88593", "28594": "iso88594", "28595": "iso88595", "28596": "iso88596", "28597": "iso88597", "28598": "iso88598", "28599": "iso88599", "28600": "iso885910", "28601": "iso885911", "28603": "iso885913", "28604": "iso885914", "28605": "iso885915", "28606": "iso885916", "windows874": { "type": "_sbcs", "chars": "€����…�����������‘’“”•–—�������� กขฃคฅฆงจฉชซฌญฎฏฐฑฒณดตถทธนบปผฝพฟภมยรฤลฦวศษสหฬอฮฯะัาำิีึืฺุู����฿เแโใไๅๆ็่้๊๋์ํ๎๏๐๑๒๓๔๕๖๗๘๙๚๛����" }, "win874": "windows874", "cp874": "windows874", "windows1250": { "type": "_sbcs", "chars": "€�‚�„…†‡�‰Š‹ŚŤŽŹ�‘’“”•–—�™š›śťžź ˇ˘Ł¤Ą¦§¨©Ş«¬­®Ż°±˛ł´µ¶·¸ąş»Ľ˝ľżŔÁÂĂÄĹĆÇČÉĘËĚÍÎĎĐŃŇÓÔŐÖ×ŘŮÚŰÜÝŢßŕáâăäĺćçčéęëěíîďđńňóôőö÷řůúűüýţ˙" }, "win1250": "windows1250", "cp1250": "windows1250", "windows1251": { "type": "_sbcs", "chars": "ЂЃ‚ѓ„…†‡€‰Љ‹ЊЌЋЏђ‘’“”•–—�™љ›њќћџ ЎўЈ¤Ґ¦§Ё©Є«¬­®Ї°±Ііґµ¶·ё№є»јЅѕїАБВГДЕЖЗИЙКЛМНОПРСТУФХЦЧШЩЪЫЬЭЮЯабвгдежзийклмнопрстуфхцчшщъыьэюя" }, "win1251": "windows1251", "cp1251": "windows1251", "windows1252": { "type": "_sbcs", "chars": "€�‚ƒ„…†‡ˆ‰Š‹Œ�Ž��‘’“”•–—˜™š›œ�žŸ ¡¢£¤¥¦§¨©ª«¬­®¯°±²³´µ¶·¸¹º»¼½¾¿ÀÁÂÃÄÅÆÇÈÉÊËÌÍÎÏÐÑÒÓÔÕÖרÙÚÛÜÝÞßàáâãäåæçèéêëìíîïðñòóôõö÷øùúûüýþÿ" }, "win1252": "windows1252", "cp1252": "windows1252", "windows1253": { "type": "_sbcs", "chars": "€�‚ƒ„…†‡�‰�‹�����‘’“”•–—�™�›���� ΅Ά£¤¥¦§¨©�«¬­®―°±²³΄µ¶·ΈΉΊ»Ό½ΎΏΐΑΒΓΔΕΖΗΘΙΚΛΜΝΞΟΠΡ�ΣΤΥΦΧΨΩΪΫάέήίΰαβγδεζηθικλμνξοπρςστυφχψωϊϋόύώ�" }, "win1253": "windows1253", "cp1253": "windows1253", "windows1254": { "type": "_sbcs", "chars": "€�‚ƒ„…†‡ˆ‰Š‹Œ����‘’“”•–—˜™š›œ��Ÿ ¡¢£¤¥¦§¨©ª«¬­®¯°±²³´µ¶·¸¹º»¼½¾¿ÀÁÂÃÄÅÆÇÈÉÊËÌÍÎÏĞÑÒÓÔÕÖרÙÚÛÜİŞßàáâãäåæçèéêëìíîïğñòóôõö÷øùúûüışÿ" }, "win1254": "windows1254", "cp1254": "windows1254", "windows1255": { "type": "_sbcs", "chars": "€�‚ƒ„…†‡ˆ‰�‹�����‘’“”•–—˜™�›���� ¡¢£₪¥¦§¨©×«¬­®¯°±²³´µ¶·¸¹÷»¼½¾¿ְֱֲֳִֵֶַָֹֺֻּֽ־ֿ׀ׁׂ׃װױײ׳״�������אבגדהוזחטיךכלםמןנסעףפץצקרשת��‎‏�" }, "win1255": "windows1255", "cp1255": "windows1255", "windows1256": { "type": "_sbcs", "chars": "€پ‚ƒ„…†‡ˆ‰ٹ‹Œچژڈگ‘’“”•–—ک™ڑ›œ‌‍ں ،¢£¤¥¦§¨©ھ«¬­®¯°±²³´µ¶·¸¹؛»¼½¾؟ہءآأؤإئابةتثجحخدذرزسشصض×طظعغـفقكàلâمنهوçèéêëىيîïًٌٍَôُِ÷ّùْûü‎‏ے" }, "win1256": "windows1256", "cp1256": "windows1256", "windows1257": { "type": "_sbcs", "chars": "€�‚�„…†‡�‰�‹�¨ˇ¸�‘’“”•–—�™�›�¯˛� �¢£¤�¦§Ø©Ŗ«¬­®Æ°±²³´µ¶·ø¹ŗ»¼½¾æĄĮĀĆÄÅĘĒČÉŹĖĢĶĪĻŠŃŅÓŌÕÖ×ŲŁŚŪÜŻŽßąįāćäåęēčéźėģķīļšńņóōõö÷ųłśūüżž˙" }, "win1257": "windows1257", "cp1257": "windows1257", "windows1258": { "type": "_sbcs", "chars": "€�‚ƒ„…†‡ˆ‰�‹Œ����‘’“”•–—˜™�›œ��Ÿ ¡¢£¤¥¦§¨©ª«¬­®¯°±²³´µ¶·¸¹º»¼½¾¿ÀÁÂĂÄÅÆÇÈÉÊË̀ÍÎÏĐÑ̉ÓÔƠÖרÙÚÛÜỮßàáâăäåæçèéêë́íîïđṇ̃óôơö÷øùúûüư₫ÿ" }, "win1258": "windows1258", "cp1258": "windows1258", "iso88591": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ¡¢£¤¥¦§¨©ª«¬­®¯°±²³´µ¶·¸¹º»¼½¾¿ÀÁÂÃÄÅÆÇÈÉÊËÌÍÎÏÐÑÒÓÔÕÖרÙÚÛÜÝÞßàáâãäåæçèéêëìíîïðñòóôõö÷øùúûüýþÿ" }, "cp28591": "iso88591", "iso88592": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ Ą˘Ł¤ĽŚ§¨ŠŞŤŹ­ŽŻ°ą˛ł´ľśˇ¸šşťź˝žżŔÁÂĂÄĹĆÇČÉĘËĚÍÎĎĐŃŇÓÔŐÖ×ŘŮÚŰÜÝŢßŕáâăäĺćçčéęëěíîďđńňóôőö÷řůúűüýţ˙" }, "cp28592": "iso88592", "iso88593": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ Ħ˘£¤�Ĥ§¨İŞĞĴ­�ݰħ²³´µĥ·¸ışğĵ½�żÀÁÂ�ÄĊĈÇÈÉÊËÌÍÎÏ�ÑÒÓÔĠÖ×ĜÙÚÛÜŬŜßàáâ�äċĉçèéêëìíîï�ñòóôġö÷ĝùúûüŭŝ˙" }, "cp28593": "iso88593", "iso88594": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ĄĸŖ¤Ĩϧ¨ŠĒĢŦ­Ž¯°ą˛ŗ´ĩšēģŧŊžŋĀÁÂÃÄÅÆĮČÉĘËĖÍÎĪĐŅŌĶÔÕÖרŲÚÛÜŨŪßāáâãäåæįčéęëėíîīđņōķôõö÷øųúûüũū˙" }, "cp28594": "iso88594", "iso88595": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ЁЂЃЄЅІЇЈЉЊЋЌ­ЎЏАБВГДЕЖЗИЙКЛМНОПРСТУФХЦЧШЩЪЫЬЭЮЯабвгдежзийклмнопрстуфхцчшщъыьэюя№ёђѓєѕіїјљњћќ§ўџ" }, "cp28595": "iso88595", "iso88596": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ���¤�������،­�������������؛���؟�ءآأؤإئابةتثجحخدذرزسشصضطظعغ�����ـفقكلمنهوىيًٌٍَُِّْ�������������" }, "cp28596": "iso88596", "iso88597": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ‘’£€₯¦§¨©ͺ«¬­�―°±²³΄΅Ά·ΈΉΊ»Ό½ΎΏΐΑΒΓΔΕΖΗΘΙΚΛΜΝΞΟΠΡ�ΣΤΥΦΧΨΩΪΫάέήίΰαβγδεζηθικλμνξοπρςστυφχψωϊϋόύώ�" }, "cp28597": "iso88597", "iso88598": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ �¢£¤¥¦§¨©×«¬­®¯°±²³´µ¶·¸¹÷»¼½¾��������������������������������‗אבגדהוזחטיךכלםמןנסעףפץצקרשת��‎‏�" }, "cp28598": "iso88598", "iso88599": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ¡¢£¤¥¦§¨©ª«¬­®¯°±²³´µ¶·¸¹º»¼½¾¿ÀÁÂÃÄÅÆÇÈÉÊËÌÍÎÏĞÑÒÓÔÕÖרÙÚÛÜİŞßàáâãäåæçèéêëìíîïğñòóôõö÷øùúûüışÿ" }, "cp28599": "iso88599", "iso885910": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ĄĒĢĪĨͧĻĐŠŦŽ­ŪŊ°ąēģīĩķ·ļđšŧž―ūŋĀÁÂÃÄÅÆĮČÉĘËĖÍÎÏÐŅŌÓÔÕÖŨØŲÚÛÜÝÞßāáâãäåæįčéęëėíîïðņōóôõöũøųúûüýþĸ" }, "cp28600": "iso885910", "iso885911": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ กขฃคฅฆงจฉชซฌญฎฏฐฑฒณดตถทธนบปผฝพฟภมยรฤลฦวศษสหฬอฮฯะัาำิีึืฺุู����฿เแโใไๅๆ็่้๊๋์ํ๎๏๐๑๒๓๔๕๖๗๘๙๚๛����" }, "cp28601": "iso885911", "iso885913": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ”¢£¤„¦§Ø©Ŗ«¬­®Æ°±²³“µ¶·ø¹ŗ»¼½¾æĄĮĀĆÄÅĘĒČÉŹĖĢĶĪĻŠŃŅÓŌÕÖ×ŲŁŚŪÜŻŽßąįāćäåęēčéźėģķīļšńņóōõö÷ųłśūüżž’" }, "cp28603": "iso885913", "iso885914": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ Ḃḃ£ĊċḊ§Ẁ©ẂḋỲ­®ŸḞḟĠġṀṁ¶ṖẁṗẃṠỳẄẅṡÀÁÂÃÄÅÆÇÈÉÊËÌÍÎÏŴÑÒÓÔÕÖṪØÙÚÛÜÝŶßàáâãäåæçèéêëìíîïŵñòóôõöṫøùúûüýŷÿ" }, "cp28604": "iso885914", "iso885915": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ¡¢£€¥Š§š©ª«¬­®¯°±²³Žµ¶·ž¹º»ŒœŸ¿ÀÁÂÃÄÅÆÇÈÉÊËÌÍÎÏÐÑÒÓÔÕÖרÙÚÛÜÝÞßàáâãäåæçèéêëìíîïðñòóôõö÷øùúûüýþÿ" }, "cp28605": "iso885915", "iso885916": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ĄąŁ€„Чš©Ș«Ź­źŻ°±ČłŽ”¶·žčș»ŒœŸżÀÁÂĂÄĆÆÇÈÉÊËÌÍÎÏĐŃÒÓÔŐÖŚŰÙÚÛÜĘȚßàáâăäćæçèéêëìíîïđńòóôőöśűùúûüęțÿ" }, "cp28606": "iso885916", "cp437": { "type": "_sbcs", "chars": "ÇüéâäàåçêëèïîìÄÅÉæÆôöòûùÿÖÜ¢£¥₧ƒáíóúñѪº¿⌐¬½¼¡«»░▒▓│┤╡╢╖╕╣║╗╝╜╛┐└┴┬├─┼╞╟╚╔╩╦╠═╬╧╨╤╥╙╘╒╓╫╪┘┌█▄▌▐▀αßΓπΣσµτΦΘΩδ∞φε∩≡±≥≤⌠⌡÷≈°∙·√ⁿ²■ " }, "ibm437": "cp437", "csibm437": "cp437", "cp737": { "type": "_sbcs", "chars": "ΑΒΓΔΕΖΗΘΙΚΛΜΝΞΟΠΡΣΤΥΦΧΨΩαβγδεζηθικλμνξοπρσςτυφχψ░▒▓│┤╡╢╖╕╣║╗╝╜╛┐└┴┬├─┼╞╟╚╔╩╦╠═╬╧╨╤╥╙╘╒╓╫╪┘┌█▄▌▐▀ωάέήϊίόύϋώΆΈΉΊΌΎΏ±≥≤ΪΫ÷≈°∙·√ⁿ²■ " }, "ibm737": "cp737", "csibm737": "cp737", "cp775": { "type": "_sbcs", "chars": "ĆüéāäģåćłēŖŗīŹÄÅÉæÆōöĢ¢ŚśÖÜø£Ø×¤ĀĪóŻżź”¦©®¬½¼Ł«»░▒▓│┤ĄČĘĖ╣║╗╝ĮŠ┐└┴┬├─┼ŲŪ╚╔╩╦╠═╬Žąčęėįšųūž┘┌█▄▌▐▀ÓßŌŃõÕµńĶķĻļņĒŅ’­±“¾¶§÷„°∙·¹³²■ " }, "ibm775": "cp775", "csibm775": "cp775", "cp850": { "type": "_sbcs", "chars": "ÇüéâäàåçêëèïîìÄÅÉæÆôöòûùÿÖÜø£Ø×ƒáíóúñѪº¿®¬½¼¡«»░▒▓│┤ÁÂÀ©╣║╗╝¢¥┐└┴┬├─┼ãÃ╚╔╩╦╠═╬¤ðÐÊËÈıÍÎÏ┘┌█▄¦Ì▀ÓßÔÒõÕµþÞÚÛÙýݯ´­±‗¾¶§÷¸°¨·¹³²■ " }, "ibm850": "cp850", "csibm850": "cp850", "cp852": { "type": "_sbcs", "chars": "ÇüéâäůćçłëŐőîŹÄĆÉĹĺôöĽľŚśÖÜŤťŁ×čáíóúĄąŽžĘ꬟Ⱥ«»░▒▓│┤ÁÂĚŞ╣║╗╝Żż┐└┴┬├─┼Ăă╚╔╩╦╠═╬¤đĐĎËďŇÍÎě┘┌█▄ŢŮ▀ÓßÔŃńňŠšŔÚŕŰýÝţ´­˝˛ˇ˘§÷¸°¨˙űŘř■ " }, "ibm852": "cp852", "csibm852": "cp852", "cp855": { "type": "_sbcs", "chars": "ђЂѓЃёЁєЄѕЅіІїЇјЈљЉњЊћЋќЌўЎџЏюЮъЪаАбБцЦдДеЕфФгГ«»░▒▓│┤хХиИ╣║╗╝йЙ┐└┴┬├─┼кК╚╔╩╦╠═╬¤лЛмМнНоОп┘┌█▄Пя▀ЯрРсСтТуУжЖвВьЬ№­ыЫзЗшШэЭщЩчЧ§■ " }, "ibm855": "cp855", "csibm855": "cp855", "cp856": { "type": "_sbcs", "chars": "אבגדהוזחטיךכלםמןנסעףפץצקרשת�£�×����������®¬½¼�«»░▒▓│┤���©╣║╗╝¢¥┐└┴┬├─┼��╚╔╩╦╠═╬¤���������┘┌█▄¦�▀������µ�������¯´­±‗¾¶§÷¸°¨·¹³²■ " }, "ibm856": "cp856", "csibm856": "cp856", "cp857": { "type": "_sbcs", "chars": "ÇüéâäàåçêëèïîıÄÅÉæÆôöòûùİÖÜø£ØŞşáíóúñÑĞ𿮬½¼¡«»░▒▓│┤ÁÂÀ©╣║╗╝¢¥┐└┴┬├─┼ãÃ╚╔╩╦╠═╬¤ºªÊËÈ�ÍÎÏ┘┌█▄¦Ì▀ÓßÔÒõÕµ�×ÚÛÙìÿ¯´­±�¾¶§÷¸°¨·¹³²■ " }, "ibm857": "cp857", "csibm857": "cp857", "cp858": { "type": "_sbcs", "chars": "ÇüéâäàåçêëèïîìÄÅÉæÆôöòûùÿÖÜø£Ø×ƒáíóúñѪº¿®¬½¼¡«»░▒▓│┤ÁÂÀ©╣║╗╝¢¥┐└┴┬├─┼ãÃ╚╔╩╦╠═╬¤ðÐÊËÈ€ÍÎÏ┘┌█▄¦Ì▀ÓßÔÒõÕµþÞÚÛÙýݯ´­±‗¾¶§÷¸°¨·¹³²■ " }, "ibm858": "cp858", "csibm858": "cp858", "cp860": { "type": "_sbcs", "chars": "ÇüéâãàÁçêÊèÍÔìÃÂÉÀÈôõòÚùÌÕÜ¢£Ù₧ÓáíóúñѪº¿Ò¬½¼¡«»░▒▓│┤╡╢╖╕╣║╗╝╜╛┐└┴┬├─┼╞╟╚╔╩╦╠═╬╧╨╤╥╙╘╒╓╫╪┘┌█▄▌▐▀αßΓπΣσµτΦΘΩδ∞φε∩≡±≥≤⌠⌡÷≈°∙·√ⁿ²■ " }, "ibm860": "cp860", "csibm860": "cp860", "cp861": { "type": "_sbcs", "chars": "ÇüéâäàåçêëèÐðÞÄÅÉæÆôöþûÝýÖÜø£Ø₧ƒáíóúÁÍÓÚ¿⌐¬½¼¡«»░▒▓│┤╡╢╖╕╣║╗╝╜╛┐└┴┬├─┼╞╟╚╔╩╦╠═╬╧╨╤╥╙╘╒╓╫╪┘┌█▄▌▐▀αßΓπΣσµτΦΘΩδ∞φε∩≡±≥≤⌠⌡÷≈°∙·√ⁿ²■ " }, "ibm861": "cp861", "csibm861": "cp861", "cp862": { "type": "_sbcs", "chars": "אבגדהוזחטיךכלםמןנסעףפץצקרשת¢£¥₧ƒáíóúñѪº¿⌐¬½¼¡«»░▒▓│┤╡╢╖╕╣║╗╝╜╛┐└┴┬├─┼╞╟╚╔╩╦╠═╬╧╨╤╥╙╘╒╓╫╪┘┌█▄▌▐▀αßΓπΣσµτΦΘΩδ∞φε∩≡±≥≤⌠⌡÷≈°∙·√ⁿ²■ " }, "ibm862": "cp862", "csibm862": "cp862", "cp863": { "type": "_sbcs", "chars": "ÇüéâÂà¶çêëèïî‗À§ÉÈÊôËÏûù¤ÔÜ¢£ÙÛƒ¦´óú¨¸³¯Î⌐¬½¼¾«»░▒▓│┤╡╢╖╕╣║╗╝╜╛┐└┴┬├─┼╞╟╚╔╩╦╠═╬╧╨╤╥╙╘╒╓╫╪┘┌█▄▌▐▀αßΓπΣσµτΦΘΩδ∞φε∩≡±≥≤⌠⌡÷≈°∙·√ⁿ²■ " }, "ibm863": "cp863", "csibm863": "cp863", "cp864": { "type": "_sbcs", "chars": "\u0000\u0001\u0002\u0003\u0004\u0005\u0006\u0007\b\t\n\u000b\f\r\u000e\u000f\u0010\u0011\u0012\u0013\u0014\u0015\u0016\u0017\u0018\u0019\u001a\u001b\u001c\u001d\u001e\u001f !\"#$٪&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\\]^_`abcdefghijklmnopqrstuvwxyz{|}~°·∙√▒─│┼┤┬├┴┐┌└┘β∞φ±½¼≈«»ﻷﻸ��ﻻﻼ� ­ﺂ£¤ﺄ��ﺎﺏﺕﺙ،ﺝﺡﺥ٠١٢٣٤٥٦٧٨٩ﻑ؛ﺱﺵﺹ؟¢ﺀﺁﺃﺅﻊﺋﺍﺑﺓﺗﺛﺟﺣﺧﺩﺫﺭﺯﺳﺷﺻﺿﻁﻅﻋﻏ¦¬÷×ﻉـﻓﻗﻛﻟﻣﻧﻫﻭﻯﻳﺽﻌﻎﻍﻡﹽّﻥﻩﻬﻰﻲﻐﻕﻵﻶﻝﻙﻱ■�" }, "ibm864": "cp864", "csibm864": "cp864", "cp865": { "type": "_sbcs", "chars": "ÇüéâäàåçêëèïîìÄÅÉæÆôöòûùÿÖÜø£Ø₧ƒáíóúñѪº¿⌐¬½¼¡«¤░▒▓│┤╡╢╖╕╣║╗╝╜╛┐└┴┬├─┼╞╟╚╔╩╦╠═╬╧╨╤╥╙╘╒╓╫╪┘┌█▄▌▐▀αßΓπΣσµτΦΘΩδ∞φε∩≡±≥≤⌠⌡÷≈°∙·√ⁿ²■ " }, "ibm865": "cp865", "csibm865": "cp865", "cp866": { "type": "_sbcs", "chars": "АБВГДЕЖЗИЙКЛМНОПРСТУФХЦЧШЩЪЫЬЭЮЯабвгдежзийклмноп░▒▓│┤╡╢╖╕╣║╗╝╜╛┐└┴┬├─┼╞╟╚╔╩╦╠═╬╧╨╤╥╙╘╒╓╫╪┘┌█▄▌▐▀рстуфхцчшщъыьэюяЁёЄєЇїЎў°∙·√№¤■ " }, "ibm866": "cp866", "csibm866": "cp866", "cp869": { "type": "_sbcs", "chars": "������Ά�·¬¦‘’Έ―ΉΊΪΌ��ΎΫ©Ώ²³ά£έήίϊΐόύΑΒΓΔΕΖΗ½ΘΙ«»░▒▓│┤ΚΛΜΝ╣║╗╝ΞΟ┐└┴┬├─┼ΠΡ╚╔╩╦╠═╬ΣΤΥΦΧΨΩαβγ┘┌█▄δε▀ζηθικλμνξοπρσςτ΄­±υφχ§ψ΅°¨ωϋΰώ■ " }, "ibm869": "cp869", "csibm869": "cp869", "cp922": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ¡¢£¤¥¦§¨©ª«¬­®‾°±²³´µ¶·¸¹º»¼½¾¿ÀÁÂÃÄÅÆÇÈÉÊËÌÍÎÏŠÑÒÓÔÕÖרÙÚÛÜÝŽßàáâãäåæçèéêëìíîïšñòóôõö÷øùúûüýžÿ" }, "ibm922": "cp922", "csibm922": "cp922", "cp1046": { "type": "_sbcs", "chars": "ﺈ×÷ﹱˆ■│─┐┌└┘ﹹﹻﹽﹿﹷﺊﻰﻳﻲﻎﻏﻐﻶﻸﻺﻼ ¤ﺋﺑﺗﺛﺟﺣ،­ﺧﺳ٠١٢٣٤٥٦٧٨٩ﺷ؛ﺻﺿﻊ؟ﻋءآأؤإئابةتثجحخدذرزسشصضطﻇعغﻌﺂﺄﺎﻓـفقكلمنهوىيًٌٍَُِّْﻗﻛﻟﻵﻷﻹﻻﻣﻧﻬﻩ�" }, "ibm1046": "cp1046", "csibm1046": "cp1046", "cp1124": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ЁЂҐЄЅІЇЈЉЊЋЌ­ЎЏАБВГДЕЖЗИЙКЛМНОПРСТУФХЦЧШЩЪЫЬЭЮЯабвгдежзийклмнопрстуфхцчшщъыьэюя№ёђґєѕіїјљњћќ§ўџ" }, "ibm1124": "cp1124", "csibm1124": "cp1124", "cp1125": { "type": "_sbcs", "chars": "АБВГДЕЖЗИЙКЛМНОПРСТУФХЦЧШЩЪЫЬЭЮЯабвгдежзийклмноп░▒▓│┤╡╢╖╕╣║╗╝╜╛┐└┴┬├─┼╞╟╚╔╩╦╠═╬╧╨╤╥╙╘╒╓╫╪┘┌█▄▌▐▀рстуфхцчшщъыьэюяЁёҐґЄєІіЇї·√№¤■ " }, "ibm1125": "cp1125", "csibm1125": "cp1125", "cp1129": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ¡¢£¤¥¦§œ©ª«¬­®¯°±²³Ÿµ¶·Œ¹º»¼½¾¿ÀÁÂĂÄÅÆÇÈÉÊË̀ÍÎÏĐÑ̉ÓÔƠÖרÙÚÛÜỮßàáâăäåæçèéêë́íîïđṇ̃óôơö÷øùúûüư₫ÿ" }, "ibm1129": "cp1129", "csibm1129": "cp1129", "cp1133": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ກຂຄງຈສຊຍດຕຖທນບປຜຝພຟມຢຣລວຫອຮ���ຯະາຳິີຶືຸູຼັົຽ���ເແໂໃໄ່້໊໋໌ໍໆ�ໜໝ₭����������������໐໑໒໓໔໕໖໗໘໙��¢¬¦�" }, "ibm1133": "cp1133", "csibm1133": "cp1133", "cp1161": { "type": "_sbcs", "chars": "��������������������������������่กขฃคฅฆงจฉชซฌญฎฏฐฑฒณดตถทธนบปผฝพฟภมยรฤลฦวศษสหฬอฮฯะัาำิีึืฺุู้๊๋€฿เแโใไๅๆ็่้๊๋์ํ๎๏๐๑๒๓๔๕๖๗๘๙๚๛¢¬¦ " }, "ibm1161": "cp1161", "csibm1161": "cp1161", "cp1162": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ กขฃคฅฆงจฉชซฌญฎฏฐฑฒณดตถทธนบปผฝพฟภมยรฤลฦวศษสหฬอฮฯะัาำิีึืฺุู����฿เแโใไๅๆ็่้๊๋์ํ๎๏๐๑๒๓๔๕๖๗๘๙๚๛����" }, "ibm1162": "cp1162", "csibm1162": "cp1162", "cp1163": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ¡¢£€¥¦§œ©ª«¬­®¯°±²³Ÿµ¶·Œ¹º»¼½¾¿ÀÁÂĂÄÅÆÇÈÉÊË̀ÍÎÏĐÑ̉ÓÔƠÖרÙÚÛÜỮßàáâăäåæçèéêë́íîïđṇ̃óôơö÷øùúûüư₫ÿ" }, "ibm1163": "cp1163", "csibm1163": "cp1163", "maccroatian": { "type": "_sbcs", "chars": "ÄÅÇÉÑÖÜáàâäãåçéèêëíìîïñóòôöõúùûü†°¢£§•¶ß®Š™´¨≠ŽØ∞±≤≥∆µ∂∑∏š∫ªºΩžø¿¡¬√ƒ≈ƫȅ ÀÃÕŒœĐ—“”‘’÷◊�©⁄¤‹›Æ»–·‚„‰ÂćÁčÈÍÎÏÌÓÔđÒÚÛÙıˆ˜¯πË˚¸Êæˇ" }, "maccyrillic": { "type": "_sbcs", "chars": "АБВГДЕЖЗИЙКЛМНОПРСТУФХЦЧШЩЪЫЬЭЮЯ†°¢£§•¶І®©™Ђђ≠Ѓѓ∞±≤≥іµ∂ЈЄєЇїЉљЊњјЅ¬√ƒ≈∆«»… ЋћЌќѕ–—“”‘’÷„ЎўЏџ№Ёёяабвгдежзийклмнопрстуфхцчшщъыьэю¤" }, "macgreek": { "type": "_sbcs", "chars": "Ĺ²É³ÖÜ΅àâä΄¨çéèê룙î‰ôö¦­ùûü†ΓΔΘΛΞΠß®©ΣΪ§≠°·Α±≤≥¥ΒΕΖΗΙΚΜΦΫΨΩάΝ¬ΟΡ≈Τ«»… ΥΧΆΈœ–―“”‘’÷ΉΊΌΎέήίόΏύαβψδεφγηιξκλμνοπώρστθωςχυζϊϋΐΰ�" }, "maciceland": { "type": "_sbcs", "chars": "ÄÅÇÉÑÖÜáàâäãåçéèêëíìîïñóòôöõúùûüݰ¢£§•¶ß®©™´¨≠ÆØ∞±≤≥¥µ∂∑∏π∫ªºΩæø¿¡¬√ƒ≈∆«»… ÀÃÕŒœ–—“”‘’÷◊ÿŸ⁄¤ÐðÞþý·‚„‰ÂÊÁËÈÍÎÏÌÓÔ�ÒÚÛÙıˆ˜¯˘˙˚¸˝˛ˇ" }, "macroman": { "type": "_sbcs", "chars": "ÄÅÇÉÑÖÜáàâäãåçéèêëíìîïñóòôöõúùûü†°¢£§•¶ß®©™´¨≠ÆØ∞±≤≥¥µ∂∑∏π∫ªºΩæø¿¡¬√ƒ≈∆«»… ÀÃÕŒœ–—“”‘’÷◊ÿŸ⁄¤‹›fifl‡·‚„‰ÂÊÁËÈÍÎÏÌÓÔ�ÒÚÛÙıˆ˜¯˘˙˚¸˝˛ˇ" }, "macromania": { "type": "_sbcs", "chars": "ÄÅÇÉÑÖÜáàâäãåçéèêëíìîïñóòôöõúùûü†°¢£§•¶ß®©™´¨≠ĂŞ∞±≤≥¥µ∂∑∏π∫ªºΩăş¿¡¬√ƒ≈∆«»… ÀÃÕŒœ–—“”‘’÷◊ÿŸ⁄¤‹›Ţţ‡·‚„‰ÂÊÁËÈÍÎÏÌÓÔ�ÒÚÛÙıˆ˜¯˘˙˚¸˝˛ˇ" }, "macthai": { "type": "_sbcs", "chars": "«»…“”�•‘’� กขฃคฅฆงจฉชซฌญฎฏฐฑฒณดตถทธนบปผฝพฟภมยรฤลฦวศษสหฬอฮฯะัาำิีึืฺุู​–—฿เแโใไๅๆ็่้๊๋์ํ™๏๐๑๒๓๔๕๖๗๘๙®©����" }, "macturkish": { "type": "_sbcs", "chars": "ÄÅÇÉÑÖÜáàâäãåçéèêëíìîïñóòôöõúùûü†°¢£§•¶ß®©™´¨≠ÆØ∞±≤≥¥µ∂∑∏π∫ªºΩæø¿¡¬√ƒ≈∆«»… ÀÃÕŒœ–—“”‘’÷◊ÿŸĞğİıŞş‡·‚„‰ÂÊÁËÈÍÎÏÌÓÔ�ÒÚÛÙ�ˆ˜¯˘˙˚¸˝˛ˇ" }, "macukraine": { "type": "_sbcs", "chars": "АБВГДЕЖЗИЙКЛМНОПРСТУФХЦЧШЩЪЫЬЭЮЯ†°Ґ£§•¶І®©™Ђђ≠Ѓѓ∞±≤≥іµґЈЄєЇїЉљЊњјЅ¬√ƒ≈∆«»… ЋћЌќѕ–—“”‘’÷„ЎўЏџ№Ёёяабвгдежзийклмнопрстуфхцчшщъыьэю¤" }, "koi8r": { "type": "_sbcs", "chars": "─│┌┐└┘├┤┬┴┼▀▄█▌▐░▒▓⌠■∙√≈≤≥ ⌡°²·÷═║╒ё╓╔╕╖╗╘╙╚╛╜╝╞╟╠╡Ё╢╣╤╥╦╧╨╩╪╫╬©юабцдефгхийклмнопярстужвьызшэщчъЮАБЦДЕФГХИЙКЛМНОПЯРСТУЖВЬЫЗШЭЩЧЪ" }, "koi8u": { "type": "_sbcs", "chars": "─│┌┐└┘├┤┬┴┼▀▄█▌▐░▒▓⌠■∙√≈≤≥ ⌡°²·÷═║╒ёє╔ії╗╘╙╚╛ґ╝╞╟╠╡ЁЄ╣ІЇ╦╧╨╩╪Ґ╬©юабцдефгхийклмнопярстужвьызшэщчъЮАБЦДЕФГХИЙКЛМНОПЯРСТУЖВЬЫЗШЭЩЧЪ" }, "koi8ru": { "type": "_sbcs", "chars": "─│┌┐└┘├┤┬┴┼▀▄█▌▐░▒▓⌠■∙√≈≤≥ ⌡°²·÷═║╒ёє╔ії╗╘╙╚╛ґў╞╟╠╡ЁЄ╣ІЇ╦╧╨╩╪ҐЎ©юабцдефгхийклмнопярстужвьызшэщчъЮАБЦДЕФГХИЙКЛМНОПЯРСТУЖВЬЫЗШЭЩЧЪ" }, "koi8t": { "type": "_sbcs", "chars": "қғ‚Ғ„…†‡�‰ҳ‹ҲҷҶ�Қ‘’“”•–—�™�›�����ӯӮё¤ӣ¦§���«¬­®�°±²Ё�Ӣ¶·�№�»���©юабцдефгхийклмнопярстужвьызшэщчъЮАБЦДЕФГХИЙКЛМНОПЯРСТУЖВЬЫЗШЭЩЧЪ" }, "armscii8": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ �և։)(»«—.՝,-֊…՜՛՞ԱաԲբԳգԴդԵեԶզԷէԸըԹթԺժԻիԼլԽխԾծԿկՀհՁձՂղՃճՄմՅյՆնՇշՈոՉչՊպՋջՌռՍսՎվՏտՐրՑցՒւՓփՔքՕօՖֆ՚�" }, "rk1048": { "type": "_sbcs", "chars": "ЂЃ‚ѓ„…†‡€‰Љ‹ЊҚҺЏђ‘’“”•–—�™љ›њқһџ ҰұӘ¤Ө¦§Ё©Ғ«¬­®Ү°±Ііөµ¶·ё№ғ»әҢңүАБВГДЕЖЗИЙКЛМНОПРСТУФХЦЧШЩЪЫЬЭЮЯабвгдежзийклмнопрстуфхцчшщъыьэюя" }, "tcvn": { "type": "_sbcs", "chars": "\u0000ÚỤ\u0003ỪỬỮ\u0007\b\t\n\u000b\f\r\u000e\u000f\u0010ỨỰỲỶỸÝỴ\u0018\u0019\u001a\u001b\u001c\u001d\u001e\u001f !\"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\\]^_`abcdefghijklmnopqrstuvwxyz{|}~ÀẢÃÁẠẶẬÈẺẼÉẸỆÌỈĨÍỊÒỎÕÓỌỘỜỞỠỚỢÙỦŨ ĂÂÊÔƠƯĐăâêôơưđẶ̀̀̉̃́àảãáạẲằẳẵắẴẮẦẨẪẤỀặầẩẫấậèỂẻẽéẹềểễếệìỉỄẾỒĩíịòỔỏõóọồổỗốộờởỡớợùỖủũúụừửữứựỳỷỹýỵỐ" }, "georgianacademy": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ¡¢£¤¥¦§¨©ª«¬­®¯°±²³´µ¶·¸¹º»¼½¾¿აბგდევზთიკლმნოპჟრსტუფქღყშჩცძწჭხჯჰჱჲჳჴჵჶçèéêëìíîïðñòóôõö÷øùúûüýþÿ" }, "georgianps": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ¡¢£¤¥¦§¨©ª«¬­®¯°±²³´µ¶·¸¹º»¼½¾¿აბგდევზჱთიკლმნჲოპჟრსტჳუფქღყშჩცძწჭხჴჯჰჵæçèéêëìíîïðñòóôõö÷øùúûüýþÿ" }, "pt154": { "type": "_sbcs", "chars": "ҖҒӮғ„…ҶҮҲүҠӢҢҚҺҸҗ‘’“”•–—ҳҷҡӣңқһҹ ЎўЈӨҘҰ§Ё©Ә«¬ӯ®Ҝ°ұІіҙө¶·ё№ә»јҪҫҝАБВГДЕЖЗИЙКЛМНОПРСТУФХЦЧШЩЪЫЬЭЮЯабвгдежзийклмнопрстуфхцчшщъыьэюя" }, "viscii": { "type": "_sbcs", "chars": "\u0000\u0001Ẳ\u0003\u0004ẴẪ\u0007\b\t\n\u000b\f\r\u000e\u000f\u0010\u0011\u0012\u0013Ỷ\u0015\u0016\u0017\u0018Ỹ\u001a\u001b\u001c\u001dỴ\u001f !\"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\\]^_`abcdefghijklmnopqrstuvwxyz{|}~ẠẮẰẶẤẦẨẬẼẸẾỀỂỄỆỐỒỔỖỘỢỚỜỞỊỎỌỈỦŨỤỲÕắằặấầẩậẽẹếềểễệốồổỗỠƠộờởịỰỨỪỬơớƯÀÁÂÃẢĂẳẵÈÉÊẺÌÍĨỳĐứÒÓÔạỷừửÙÚỹỵÝỡưàáâãảăữẫèéêẻìíĩỉđựòóôõỏọụùúũủýợỮ" }, "iso646cn": { "type": "_sbcs", "chars": "\u0000\u0001\u0002\u0003\u0004\u0005\u0006\u0007\b\t\n\u000b\f\r\u000e\u000f\u0010\u0011\u0012\u0013\u0014\u0015\u0016\u0017\u0018\u0019\u001a\u001b\u001c\u001d\u001e\u001f !\"#¥%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\\]^_`abcdefghijklmnopqrstuvwxyz{|}‾��������������������������������������������������������������������������������������������������������������������������������" }, "iso646jp": { "type": "_sbcs", "chars": "\u0000\u0001\u0002\u0003\u0004\u0005\u0006\u0007\b\t\n\u000b\f\r\u000e\u000f\u0010\u0011\u0012\u0013\u0014\u0015\u0016\u0017\u0018\u0019\u001a\u001b\u001c\u001d\u001e\u001f !\"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[¥]^_`abcdefghijklmnopqrstuvwxyz{|}‾��������������������������������������������������������������������������������������������������������������������������������" }, "hproman8": { "type": "_sbcs", "chars": "€‚ƒ„…†‡ˆ‰Š‹ŒŽ‘’“”•–—˜™š›œžŸ ÀÂÈÊËÎÏ´ˋˆ¨˜ÙÛ₤¯Ýý°ÇçÑñ¡¿¤£¥§ƒ¢âêôûáéóúàèòùäëöüÅîØÆåíøæÄìÖÜÉïßÔÁÃãÐðÍÌÓÒÕõŠšÚŸÿÞþ·µ¶¾—¼½ªº«■»±�" }, "macintosh": { "type": "_sbcs", "chars": "ÄÅÇÉÑÖÜáàâäãåçéèêëíìîïñóòôöõúùûü†°¢£§•¶ß®©™´¨≠ÆØ∞±≤≥¥µ∂∑∏π∫ªºΩæø¿¡¬√ƒ≈∆«»… ÀÃÕŒœ–—“”‘’÷◊ÿŸ⁄¤‹›fifl‡·‚„‰ÂÊÁËÈÍÎÏÌÓÔ�ÒÚÛÙıˆ˜¯˘˙˚¸˝˛ˇ" }, "ascii": { "type": "_sbcs", "chars": "��������������������������������������������������������������������������������������������������������������������������������" }, "tis620": { "type": "_sbcs", "chars": "���������������������������������กขฃคฅฆงจฉชซฌญฎฏฐฑฒณดตถทธนบปผฝพฟภมยรฤลฦวศษสหฬอฮฯะัาำิีึืฺุู����฿เแโใไๅๆ็่้๊๋์ํ๎๏๐๑๒๓๔๕๖๗๘๙๚๛����" } } /***/ }), /***/ "./node_modules/encoding/node_modules/iconv-lite/encodings/sbcs-data.js": /*!******************************************************************************!*\ !*** ./node_modules/encoding/node_modules/iconv-lite/encodings/sbcs-data.js ***! \******************************************************************************/ /***/ ((module) => { "use strict"; // Manually added data to be used by sbcs codec in addition to generated one. module.exports = { // Not supported by iconv, not sure why. "10029": "maccenteuro", "maccenteuro": { "type": "_sbcs", "chars": "ÄĀāÉĄÖÜáąČäčĆć鏟ĎíďĒēĖóėôöõúĚěü†°Ę£§•¶ß®©™ę¨≠ģĮįĪ≤≥īĶ∂∑łĻļĽľĹĺŅņѬ√ńŇ∆«»… ňŐÕőŌ–—“”‘’÷◊ōŔŕŘ‹›řŖŗŠ‚„šŚśÁŤťÍŽžŪÓÔūŮÚůŰűŲųÝýķŻŁżĢˇ" }, "808": "cp808", "ibm808": "cp808", "cp808": { "type": "_sbcs", "chars": "АБВГДЕЖЗИЙКЛМНОПРСТУФХЦЧШЩЪЫЬЭЮЯабвгдежзийклмноп░▒▓│┤╡╢╖╕╣║╗╝╜╛┐└┴┬├─┼╞╟╚╔╩╦╠═╬╧╨╤╥╙╘╒╓╫╪┘┌█▄▌▐▀рстуфхцчшщъыьэюяЁёЄєЇїЎў°∙·√№€■ " }, "mik": { "type": "_sbcs", "chars": "АБВГДЕЖЗИЙКЛМНОПРСТУФХЦЧШЩЪЫЬЭЮЯабвгдежзийклмнопрстуфхцчшщъыьэюя└┴┬├─┼╣║╚╔╩╦╠═╬┐░▒▓│┤№§╗╝┘┌█▄▌▐▀αßΓπΣσµτΦΘΩδ∞φε∩≡±≥≤⌠⌡÷≈°∙·√ⁿ²■ " }, "cp720": { "type": "_sbcs", "chars": "\x80\x81éâ\x84à\x86çêëèïî\x8d\x8e\x8f\x90\u0651\u0652ô¤ـûùءآأؤ£إئابةتثجحخدذرزسشص«»░▒▓│┤╡╢╖╕╣║╗╝╜╛┐└┴┬├─┼╞╟╚╔╩╦╠═╬╧╨╤╥╙╘╒╓╫╪┘┌█▄▌▐▀ضطظعغفµقكلمنهوىي≡\u064b\u064c\u064d\u064e\u064f\u0650≈°∙·√ⁿ²■\u00a0" }, // Aliases of generated encodings. "ascii8bit": "ascii", "usascii": "ascii", "ansix34": "ascii", "ansix341968": "ascii", "ansix341986": "ascii", "csascii": "ascii", "cp367": "ascii", "ibm367": "ascii", "isoir6": "ascii", "iso646us": "ascii", "iso646irv": "ascii", "us": "ascii", "latin1": "iso88591", "latin2": "iso88592", "latin3": "iso88593", "latin4": "iso88594", "latin5": "iso88599", "latin6": "iso885910", "latin7": "iso885913", "latin8": "iso885914", "latin9": "iso885915", "latin10": "iso885916", "csisolatin1": "iso88591", "csisolatin2": "iso88592", "csisolatin3": "iso88593", "csisolatin4": "iso88594", "csisolatincyrillic": "iso88595", "csisolatinarabic": "iso88596", "csisolatingreek" : "iso88597", "csisolatinhebrew": "iso88598", "csisolatin5": "iso88599", "csisolatin6": "iso885910", "l1": "iso88591", "l2": "iso88592", "l3": "iso88593", "l4": "iso88594", "l5": "iso88599", "l6": "iso885910", "l7": "iso885913", "l8": "iso885914", "l9": "iso885915", "l10": "iso885916", "isoir14": "iso646jp", "isoir57": "iso646cn", "isoir100": "iso88591", "isoir101": "iso88592", "isoir109": "iso88593", "isoir110": "iso88594", "isoir144": "iso88595", "isoir127": "iso88596", "isoir126": "iso88597", "isoir138": "iso88598", "isoir148": "iso88599", "isoir157": "iso885910", "isoir166": "tis620", "isoir179": "iso885913", "isoir199": "iso885914", "isoir203": "iso885915", "isoir226": "iso885916", "cp819": "iso88591", "ibm819": "iso88591", "cyrillic": "iso88595", "arabic": "iso88596", "arabic8": "iso88596", "ecma114": "iso88596", "asmo708": "iso88596", "greek" : "iso88597", "greek8" : "iso88597", "ecma118" : "iso88597", "elot928" : "iso88597", "hebrew": "iso88598", "hebrew8": "iso88598", "turkish": "iso88599", "turkish8": "iso88599", "thai": "iso885911", "thai8": "iso885911", "celtic": "iso885914", "celtic8": "iso885914", "isoceltic": "iso885914", "tis6200": "tis620", "tis62025291": "tis620", "tis62025330": "tis620", "10000": "macroman", "10006": "macgreek", "10007": "maccyrillic", "10079": "maciceland", "10081": "macturkish", "cspc8codepage437": "cp437", "cspc775baltic": "cp775", "cspc850multilingual": "cp850", "cspcp852": "cp852", "cspc862latinhebrew": "cp862", "cpgr": "cp869", "msee": "cp1250", "mscyrl": "cp1251", "msansi": "cp1252", "msgreek": "cp1253", "msturk": "cp1254", "mshebr": "cp1255", "msarab": "cp1256", "winbaltrim": "cp1257", "cp20866": "koi8r", "20866": "koi8r", "ibm878": "koi8r", "cskoi8r": "koi8r", "cp21866": "koi8u", "21866": "koi8u", "ibm1168": "koi8u", "strk10482002": "rk1048", "tcvn5712": "tcvn", "tcvn57121": "tcvn", "gb198880": "iso646cn", "cn": "iso646cn", "csiso14jisc6220ro": "iso646jp", "jisc62201969ro": "iso646jp", "jp": "iso646jp", "cshproman8": "hproman8", "r8": "hproman8", "roman8": "hproman8", "xroman8": "hproman8", "ibm1051": "hproman8", "mac": "macintosh", "csmacintosh": "macintosh", }; /***/ }), /***/ "./node_modules/encoding/node_modules/iconv-lite/encodings/utf16.js": /*!**************************************************************************!*\ !*** ./node_modules/encoding/node_modules/iconv-lite/encodings/utf16.js ***! \**************************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; var Buffer = (__webpack_require__(/*! safer-buffer */ "./node_modules/safer-buffer/safer.js").Buffer); // Note: UTF16-LE (or UCS2) codec is Node.js native. See encodings/internal.js // == UTF16-BE codec. ========================================================== exports.utf16be = Utf16BECodec; function Utf16BECodec() { } Utf16BECodec.prototype.encoder = Utf16BEEncoder; Utf16BECodec.prototype.decoder = Utf16BEDecoder; Utf16BECodec.prototype.bomAware = true; // -- Encoding function Utf16BEEncoder() { } Utf16BEEncoder.prototype.write = function(str) { var buf = Buffer.from(str, 'ucs2'); for (var i = 0; i < buf.length; i += 2) { var tmp = buf[i]; buf[i] = buf[i+1]; buf[i+1] = tmp; } return buf; } Utf16BEEncoder.prototype.end = function() { } // -- Decoding function Utf16BEDecoder() { this.overflowByte = -1; } Utf16BEDecoder.prototype.write = function(buf) { if (buf.length == 0) return ''; var buf2 = Buffer.alloc(buf.length + 1), i = 0, j = 0; if (this.overflowByte !== -1) { buf2[0] = buf[0]; buf2[1] = this.overflowByte; i = 1; j = 2; } for (; i < buf.length-1; i += 2, j+= 2) { buf2[j] = buf[i+1]; buf2[j+1] = buf[i]; } this.overflowByte = (i == buf.length-1) ? buf[buf.length-1] : -1; return buf2.slice(0, j).toString('ucs2'); } Utf16BEDecoder.prototype.end = function() { this.overflowByte = -1; } // == UTF-16 codec ============================================================= // Decoder chooses automatically from UTF-16LE and UTF-16BE using BOM and space-based heuristic. // Defaults to UTF-16LE, as it's prevalent and default in Node. // http://en.wikipedia.org/wiki/UTF-16 and http://encoding.spec.whatwg.org/#utf-16le // Decoder default can be changed: iconv.decode(buf, 'utf16', {defaultEncoding: 'utf-16be'}); // Encoder uses UTF-16LE and prepends BOM (which can be overridden with addBOM: false). exports.utf16 = Utf16Codec; function Utf16Codec(codecOptions, iconv) { this.iconv = iconv; } Utf16Codec.prototype.encoder = Utf16Encoder; Utf16Codec.prototype.decoder = Utf16Decoder; // -- Encoding (pass-through) function Utf16Encoder(options, codec) { options = options || {}; if (options.addBOM === undefined) options.addBOM = true; this.encoder = codec.iconv.getEncoder('utf-16le', options); } Utf16Encoder.prototype.write = function(str) { return this.encoder.write(str); } Utf16Encoder.prototype.end = function() { return this.encoder.end(); } // -- Decoding function Utf16Decoder(options, codec) { this.decoder = null; this.initialBufs = []; this.initialBufsLen = 0; this.options = options || {}; this.iconv = codec.iconv; } Utf16Decoder.prototype.write = function(buf) { if (!this.decoder) { // Codec is not chosen yet. Accumulate initial bytes. this.initialBufs.push(buf); this.initialBufsLen += buf.length; if (this.initialBufsLen < 16) // We need more bytes to use space heuristic (see below) return ''; // We have enough bytes -> detect endianness. var encoding = detectEncoding(this.initialBufs, this.options.defaultEncoding); this.decoder = this.iconv.getDecoder(encoding, this.options); var resStr = ''; for (var i = 0; i < this.initialBufs.length; i++) resStr += this.decoder.write(this.initialBufs[i]); this.initialBufs.length = this.initialBufsLen = 0; return resStr; } return this.decoder.write(buf); } Utf16Decoder.prototype.end = function() { if (!this.decoder) { var encoding = detectEncoding(this.initialBufs, this.options.defaultEncoding); this.decoder = this.iconv.getDecoder(encoding, this.options); var resStr = ''; for (var i = 0; i < this.initialBufs.length; i++) resStr += this.decoder.write(this.initialBufs[i]); var trail = this.decoder.end(); if (trail) resStr += trail; this.initialBufs.length = this.initialBufsLen = 0; return resStr; } return this.decoder.end(); } function detectEncoding(bufs, defaultEncoding) { var b = []; var charsProcessed = 0; var asciiCharsLE = 0, asciiCharsBE = 0; // Number of ASCII chars when decoded as LE or BE. outer_loop: for (var i = 0; i < bufs.length; i++) { var buf = bufs[i]; for (var j = 0; j < buf.length; j++) { b.push(buf[j]); if (b.length === 2) { if (charsProcessed === 0) { // Check BOM first. if (b[0] === 0xFF && b[1] === 0xFE) return 'utf-16le'; if (b[0] === 0xFE && b[1] === 0xFF) return 'utf-16be'; } if (b[0] === 0 && b[1] !== 0) asciiCharsBE++; if (b[0] !== 0 && b[1] === 0) asciiCharsLE++; b.length = 0; charsProcessed++; if (charsProcessed >= 100) { break outer_loop; } } } } // Make decisions. // Most of the time, the content has ASCII chars (U+00**), but the opposite (U+**00) is uncommon. // So, we count ASCII as if it was LE or BE, and decide from that. if (asciiCharsBE > asciiCharsLE) return 'utf-16be'; if (asciiCharsBE < asciiCharsLE) return 'utf-16le'; // Couldn't decide (likely all zeros or not enough data). return defaultEncoding || 'utf-16le'; } /***/ }), /***/ "./node_modules/encoding/node_modules/iconv-lite/encodings/utf32.js": /*!**************************************************************************!*\ !*** ./node_modules/encoding/node_modules/iconv-lite/encodings/utf32.js ***! \**************************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; var Buffer = (__webpack_require__(/*! safer-buffer */ "./node_modules/safer-buffer/safer.js").Buffer); // == UTF32-LE/BE codec. ========================================================== exports._utf32 = Utf32Codec; function Utf32Codec(codecOptions, iconv) { this.iconv = iconv; this.bomAware = true; this.isLE = codecOptions.isLE; } exports.utf32le = { type: '_utf32', isLE: true }; exports.utf32be = { type: '_utf32', isLE: false }; // Aliases exports.ucs4le = 'utf32le'; exports.ucs4be = 'utf32be'; Utf32Codec.prototype.encoder = Utf32Encoder; Utf32Codec.prototype.decoder = Utf32Decoder; // -- Encoding function Utf32Encoder(options, codec) { this.isLE = codec.isLE; this.highSurrogate = 0; } Utf32Encoder.prototype.write = function(str) { var src = Buffer.from(str, 'ucs2'); var dst = Buffer.alloc(src.length * 2); var write32 = this.isLE ? dst.writeUInt32LE : dst.writeUInt32BE; var offset = 0; for (var i = 0; i < src.length; i += 2) { var code = src.readUInt16LE(i); var isHighSurrogate = (0xD800 <= code && code < 0xDC00); var isLowSurrogate = (0xDC00 <= code && code < 0xE000); if (this.highSurrogate) { if (isHighSurrogate || !isLowSurrogate) { // There shouldn't be two high surrogates in a row, nor a high surrogate which isn't followed by a low // surrogate. If this happens, keep the pending high surrogate as a stand-alone semi-invalid character // (technically wrong, but expected by some applications, like Windows file names). write32.call(dst, this.highSurrogate, offset); offset += 4; } else { // Create 32-bit value from high and low surrogates; var codepoint = (((this.highSurrogate - 0xD800) << 10) | (code - 0xDC00)) + 0x10000; write32.call(dst, codepoint, offset); offset += 4; this.highSurrogate = 0; continue; } } if (isHighSurrogate) this.highSurrogate = code; else { // Even if the current character is a low surrogate, with no previous high surrogate, we'll // encode it as a semi-invalid stand-alone character for the same reasons expressed above for // unpaired high surrogates. write32.call(dst, code, offset); offset += 4; this.highSurrogate = 0; } } if (offset < dst.length) dst = dst.slice(0, offset); return dst; }; Utf32Encoder.prototype.end = function() { // Treat any leftover high surrogate as a semi-valid independent character. if (!this.highSurrogate) return; var buf = Buffer.alloc(4); if (this.isLE) buf.writeUInt32LE(this.highSurrogate, 0); else buf.writeUInt32BE(this.highSurrogate, 0); this.highSurrogate = 0; return buf; }; // -- Decoding function Utf32Decoder(options, codec) { this.isLE = codec.isLE; this.badChar = codec.iconv.defaultCharUnicode.charCodeAt(0); this.overflow = []; } Utf32Decoder.prototype.write = function(src) { if (src.length === 0) return ''; var i = 0; var codepoint = 0; var dst = Buffer.alloc(src.length + 4); var offset = 0; var isLE = this.isLE; var overflow = this.overflow; var badChar = this.badChar; if (overflow.length > 0) { for (; i < src.length && overflow.length < 4; i++) overflow.push(src[i]); if (overflow.length === 4) { // NOTE: codepoint is a signed int32 and can be negative. // NOTE: We copied this block from below to help V8 optimize it (it works with array, not buffer). if (isLE) { codepoint = overflow[i] | (overflow[i+1] << 8) | (overflow[i+2] << 16) | (overflow[i+3] << 24); } else { codepoint = overflow[i+3] | (overflow[i+2] << 8) | (overflow[i+1] << 16) | (overflow[i] << 24); } overflow.length = 0; offset = _writeCodepoint(dst, offset, codepoint, badChar); } } // Main loop. Should be as optimized as possible. for (; i < src.length - 3; i += 4) { // NOTE: codepoint is a signed int32 and can be negative. if (isLE) { codepoint = src[i] | (src[i+1] << 8) | (src[i+2] << 16) | (src[i+3] << 24); } else { codepoint = src[i+3] | (src[i+2] << 8) | (src[i+1] << 16) | (src[i] << 24); } offset = _writeCodepoint(dst, offset, codepoint, badChar); } // Keep overflowing bytes. for (; i < src.length; i++) { overflow.push(src[i]); } return dst.slice(0, offset).toString('ucs2'); }; function _writeCodepoint(dst, offset, codepoint, badChar) { // NOTE: codepoint is signed int32 and can be negative. We keep it that way to help V8 with optimizations. if (codepoint < 0 || codepoint > 0x10FFFF) { // Not a valid Unicode codepoint codepoint = badChar; } // Ephemeral Planes: Write high surrogate. if (codepoint >= 0x10000) { codepoint -= 0x10000; var high = 0xD800 | (codepoint >> 10); dst[offset++] = high & 0xff; dst[offset++] = high >> 8; // Low surrogate is written below. var codepoint = 0xDC00 | (codepoint & 0x3FF); } // Write BMP char or low surrogate. dst[offset++] = codepoint & 0xff; dst[offset++] = codepoint >> 8; return offset; }; Utf32Decoder.prototype.end = function() { this.overflow.length = 0; }; // == UTF-32 Auto codec ============================================================= // Decoder chooses automatically from UTF-32LE and UTF-32BE using BOM and space-based heuristic. // Defaults to UTF-32LE. http://en.wikipedia.org/wiki/UTF-32 // Encoder/decoder default can be changed: iconv.decode(buf, 'utf32', {defaultEncoding: 'utf-32be'}); // Encoder prepends BOM (which can be overridden with (addBOM: false}). exports.utf32 = Utf32AutoCodec; exports.ucs4 = 'utf32'; function Utf32AutoCodec(options, iconv) { this.iconv = iconv; } Utf32AutoCodec.prototype.encoder = Utf32AutoEncoder; Utf32AutoCodec.prototype.decoder = Utf32AutoDecoder; // -- Encoding function Utf32AutoEncoder(options, codec) { options = options || {}; if (options.addBOM === undefined) options.addBOM = true; this.encoder = codec.iconv.getEncoder(options.defaultEncoding || 'utf-32le', options); } Utf32AutoEncoder.prototype.write = function(str) { return this.encoder.write(str); }; Utf32AutoEncoder.prototype.end = function() { return this.encoder.end(); }; // -- Decoding function Utf32AutoDecoder(options, codec) { this.decoder = null; this.initialBufs = []; this.initialBufsLen = 0; this.options = options || {}; this.iconv = codec.iconv; } Utf32AutoDecoder.prototype.write = function(buf) { if (!this.decoder) { // Codec is not chosen yet. Accumulate initial bytes. this.initialBufs.push(buf); this.initialBufsLen += buf.length; if (this.initialBufsLen < 32) // We need more bytes to use space heuristic (see below) return ''; // We have enough bytes -> detect endianness. var encoding = detectEncoding(this.initialBufs, this.options.defaultEncoding); this.decoder = this.iconv.getDecoder(encoding, this.options); var resStr = ''; for (var i = 0; i < this.initialBufs.length; i++) resStr += this.decoder.write(this.initialBufs[i]); this.initialBufs.length = this.initialBufsLen = 0; return resStr; } return this.decoder.write(buf); }; Utf32AutoDecoder.prototype.end = function() { if (!this.decoder) { var encoding = detectEncoding(this.initialBufs, this.options.defaultEncoding); this.decoder = this.iconv.getDecoder(encoding, this.options); var resStr = ''; for (var i = 0; i < this.initialBufs.length; i++) resStr += this.decoder.write(this.initialBufs[i]); var trail = this.decoder.end(); if (trail) resStr += trail; this.initialBufs.length = this.initialBufsLen = 0; return resStr; } return this.decoder.end(); }; function detectEncoding(bufs, defaultEncoding) { var b = []; var charsProcessed = 0; var invalidLE = 0, invalidBE = 0; // Number of invalid chars when decoded as LE or BE. var bmpCharsLE = 0, bmpCharsBE = 0; // Number of BMP chars when decoded as LE or BE. outer_loop: for (var i = 0; i < bufs.length; i++) { var buf = bufs[i]; for (var j = 0; j < buf.length; j++) { b.push(buf[j]); if (b.length === 4) { if (charsProcessed === 0) { // Check BOM first. if (b[0] === 0xFF && b[1] === 0xFE && b[2] === 0 && b[3] === 0) { return 'utf-32le'; } if (b[0] === 0 && b[1] === 0 && b[2] === 0xFE && b[3] === 0xFF) { return 'utf-32be'; } } if (b[0] !== 0 || b[1] > 0x10) invalidBE++; if (b[3] !== 0 || b[2] > 0x10) invalidLE++; if (b[0] === 0 && b[1] === 0 && (b[2] !== 0 || b[3] !== 0)) bmpCharsBE++; if ((b[0] !== 0 || b[1] !== 0) && b[2] === 0 && b[3] === 0) bmpCharsLE++; b.length = 0; charsProcessed++; if (charsProcessed >= 100) { break outer_loop; } } } } // Make decisions. if (bmpCharsBE - invalidBE > bmpCharsLE - invalidLE) return 'utf-32be'; if (bmpCharsBE - invalidBE < bmpCharsLE - invalidLE) return 'utf-32le'; // Couldn't decide (likely all zeros or not enough data). return defaultEncoding || 'utf-32le'; } /***/ }), /***/ "./node_modules/encoding/node_modules/iconv-lite/encodings/utf7.js": /*!*************************************************************************!*\ !*** ./node_modules/encoding/node_modules/iconv-lite/encodings/utf7.js ***! \*************************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; var Buffer = (__webpack_require__(/*! safer-buffer */ "./node_modules/safer-buffer/safer.js").Buffer); // UTF-7 codec, according to https://tools.ietf.org/html/rfc2152 // See also below a UTF-7-IMAP codec, according to http://tools.ietf.org/html/rfc3501#section-5.1.3 exports.utf7 = Utf7Codec; exports.unicode11utf7 = 'utf7'; // Alias UNICODE-1-1-UTF-7 function Utf7Codec(codecOptions, iconv) { this.iconv = iconv; }; Utf7Codec.prototype.encoder = Utf7Encoder; Utf7Codec.prototype.decoder = Utf7Decoder; Utf7Codec.prototype.bomAware = true; // -- Encoding var nonDirectChars = /[^A-Za-z0-9'\(\),-\.\/:\? \n\r\t]+/g; function Utf7Encoder(options, codec) { this.iconv = codec.iconv; } Utf7Encoder.prototype.write = function(str) { // Naive implementation. // Non-direct chars are encoded as "+-"; single "+" char is encoded as "+-". return Buffer.from(str.replace(nonDirectChars, function(chunk) { return "+" + (chunk === '+' ? '' : this.iconv.encode(chunk, 'utf16-be').toString('base64').replace(/=+$/, '')) + "-"; }.bind(this))); } Utf7Encoder.prototype.end = function() { } // -- Decoding function Utf7Decoder(options, codec) { this.iconv = codec.iconv; this.inBase64 = false; this.base64Accum = ''; } var base64Regex = /[A-Za-z0-9\/+]/; var base64Chars = []; for (var i = 0; i < 256; i++) base64Chars[i] = base64Regex.test(String.fromCharCode(i)); var plusChar = '+'.charCodeAt(0), minusChar = '-'.charCodeAt(0), andChar = '&'.charCodeAt(0); Utf7Decoder.prototype.write = function(buf) { var res = "", lastI = 0, inBase64 = this.inBase64, base64Accum = this.base64Accum; // The decoder is more involved as we must handle chunks in stream. for (var i = 0; i < buf.length; i++) { if (!inBase64) { // We're in direct mode. // Write direct chars until '+' if (buf[i] == plusChar) { res += this.iconv.decode(buf.slice(lastI, i), "ascii"); // Write direct chars. lastI = i+1; inBase64 = true; } } else { // We decode base64. if (!base64Chars[buf[i]]) { // Base64 ended. if (i == lastI && buf[i] == minusChar) {// "+-" -> "+" res += "+"; } else { var b64str = base64Accum + this.iconv.decode(buf.slice(lastI, i), "ascii"); res += this.iconv.decode(Buffer.from(b64str, 'base64'), "utf16-be"); } if (buf[i] != minusChar) // Minus is absorbed after base64. i--; lastI = i+1; inBase64 = false; base64Accum = ''; } } } if (!inBase64) { res += this.iconv.decode(buf.slice(lastI), "ascii"); // Write direct chars. } else { var b64str = base64Accum + this.iconv.decode(buf.slice(lastI), "ascii"); var canBeDecoded = b64str.length - (b64str.length % 8); // Minimal chunk: 2 quads -> 2x3 bytes -> 3 chars. base64Accum = b64str.slice(canBeDecoded); // The rest will be decoded in future. b64str = b64str.slice(0, canBeDecoded); res += this.iconv.decode(Buffer.from(b64str, 'base64'), "utf16-be"); } this.inBase64 = inBase64; this.base64Accum = base64Accum; return res; } Utf7Decoder.prototype.end = function() { var res = ""; if (this.inBase64 && this.base64Accum.length > 0) res = this.iconv.decode(Buffer.from(this.base64Accum, 'base64'), "utf16-be"); this.inBase64 = false; this.base64Accum = ''; return res; } // UTF-7-IMAP codec. // RFC3501 Sec. 5.1.3 Modified UTF-7 (http://tools.ietf.org/html/rfc3501#section-5.1.3) // Differences: // * Base64 part is started by "&" instead of "+" // * Direct characters are 0x20-0x7E, except "&" (0x26) // * In Base64, "," is used instead of "/" // * Base64 must not be used to represent direct characters. // * No implicit shift back from Base64 (should always end with '-') // * String must end in non-shifted position. // * "-&" while in base64 is not allowed. exports.utf7imap = Utf7IMAPCodec; function Utf7IMAPCodec(codecOptions, iconv) { this.iconv = iconv; }; Utf7IMAPCodec.prototype.encoder = Utf7IMAPEncoder; Utf7IMAPCodec.prototype.decoder = Utf7IMAPDecoder; Utf7IMAPCodec.prototype.bomAware = true; // -- Encoding function Utf7IMAPEncoder(options, codec) { this.iconv = codec.iconv; this.inBase64 = false; this.base64Accum = Buffer.alloc(6); this.base64AccumIdx = 0; } Utf7IMAPEncoder.prototype.write = function(str) { var inBase64 = this.inBase64, base64Accum = this.base64Accum, base64AccumIdx = this.base64AccumIdx, buf = Buffer.alloc(str.length*5 + 10), bufIdx = 0; for (var i = 0; i < str.length; i++) { var uChar = str.charCodeAt(i); if (0x20 <= uChar && uChar <= 0x7E) { // Direct character or '&'. if (inBase64) { if (base64AccumIdx > 0) { bufIdx += buf.write(base64Accum.slice(0, base64AccumIdx).toString('base64').replace(/\//g, ',').replace(/=+$/, ''), bufIdx); base64AccumIdx = 0; } buf[bufIdx++] = minusChar; // Write '-', then go to direct mode. inBase64 = false; } if (!inBase64) { buf[bufIdx++] = uChar; // Write direct character if (uChar === andChar) // Ampersand -> '&-' buf[bufIdx++] = minusChar; } } else { // Non-direct character if (!inBase64) { buf[bufIdx++] = andChar; // Write '&', then go to base64 mode. inBase64 = true; } if (inBase64) { base64Accum[base64AccumIdx++] = uChar >> 8; base64Accum[base64AccumIdx++] = uChar & 0xFF; if (base64AccumIdx == base64Accum.length) { bufIdx += buf.write(base64Accum.toString('base64').replace(/\//g, ','), bufIdx); base64AccumIdx = 0; } } } } this.inBase64 = inBase64; this.base64AccumIdx = base64AccumIdx; return buf.slice(0, bufIdx); } Utf7IMAPEncoder.prototype.end = function() { var buf = Buffer.alloc(10), bufIdx = 0; if (this.inBase64) { if (this.base64AccumIdx > 0) { bufIdx += buf.write(this.base64Accum.slice(0, this.base64AccumIdx).toString('base64').replace(/\//g, ',').replace(/=+$/, ''), bufIdx); this.base64AccumIdx = 0; } buf[bufIdx++] = minusChar; // Write '-', then go to direct mode. this.inBase64 = false; } return buf.slice(0, bufIdx); } // -- Decoding function Utf7IMAPDecoder(options, codec) { this.iconv = codec.iconv; this.inBase64 = false; this.base64Accum = ''; } var base64IMAPChars = base64Chars.slice(); base64IMAPChars[','.charCodeAt(0)] = true; Utf7IMAPDecoder.prototype.write = function(buf) { var res = "", lastI = 0, inBase64 = this.inBase64, base64Accum = this.base64Accum; // The decoder is more involved as we must handle chunks in stream. // It is forgiving, closer to standard UTF-7 (for example, '-' is optional at the end). for (var i = 0; i < buf.length; i++) { if (!inBase64) { // We're in direct mode. // Write direct chars until '&' if (buf[i] == andChar) { res += this.iconv.decode(buf.slice(lastI, i), "ascii"); // Write direct chars. lastI = i+1; inBase64 = true; } } else { // We decode base64. if (!base64IMAPChars[buf[i]]) { // Base64 ended. if (i == lastI && buf[i] == minusChar) { // "&-" -> "&" res += "&"; } else { var b64str = base64Accum + this.iconv.decode(buf.slice(lastI, i), "ascii").replace(/,/g, '/'); res += this.iconv.decode(Buffer.from(b64str, 'base64'), "utf16-be"); } if (buf[i] != minusChar) // Minus may be absorbed after base64. i--; lastI = i+1; inBase64 = false; base64Accum = ''; } } } if (!inBase64) { res += this.iconv.decode(buf.slice(lastI), "ascii"); // Write direct chars. } else { var b64str = base64Accum + this.iconv.decode(buf.slice(lastI), "ascii").replace(/,/g, '/'); var canBeDecoded = b64str.length - (b64str.length % 8); // Minimal chunk: 2 quads -> 2x3 bytes -> 3 chars. base64Accum = b64str.slice(canBeDecoded); // The rest will be decoded in future. b64str = b64str.slice(0, canBeDecoded); res += this.iconv.decode(Buffer.from(b64str, 'base64'), "utf16-be"); } this.inBase64 = inBase64; this.base64Accum = base64Accum; return res; } Utf7IMAPDecoder.prototype.end = function() { var res = ""; if (this.inBase64 && this.base64Accum.length > 0) res = this.iconv.decode(Buffer.from(this.base64Accum, 'base64'), "utf16-be"); this.inBase64 = false; this.base64Accum = ''; return res; } /***/ }), /***/ "./node_modules/encoding/node_modules/iconv-lite/lib/bom-handling.js": /*!***************************************************************************!*\ !*** ./node_modules/encoding/node_modules/iconv-lite/lib/bom-handling.js ***! \***************************************************************************/ /***/ ((__unused_webpack_module, exports) => { "use strict"; var BOMChar = '\uFEFF'; exports.PrependBOM = PrependBOMWrapper function PrependBOMWrapper(encoder, options) { this.encoder = encoder; this.addBOM = true; } PrependBOMWrapper.prototype.write = function(str) { if (this.addBOM) { str = BOMChar + str; this.addBOM = false; } return this.encoder.write(str); } PrependBOMWrapper.prototype.end = function() { return this.encoder.end(); } //------------------------------------------------------------------------------ exports.StripBOM = StripBOMWrapper; function StripBOMWrapper(decoder, options) { this.decoder = decoder; this.pass = false; this.options = options || {}; } StripBOMWrapper.prototype.write = function(buf) { var res = this.decoder.write(buf); if (this.pass || !res) return res; if (res[0] === BOMChar) { res = res.slice(1); if (typeof this.options.stripBOM === 'function') this.options.stripBOM(); } this.pass = true; return res; } StripBOMWrapper.prototype.end = function() { return this.decoder.end(); } /***/ }), /***/ "./node_modules/encoding/node_modules/iconv-lite/lib/index.js": /*!********************************************************************!*\ !*** ./node_modules/encoding/node_modules/iconv-lite/lib/index.js ***! \********************************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var Buffer = (__webpack_require__(/*! safer-buffer */ "./node_modules/safer-buffer/safer.js").Buffer); var bomHandling = __webpack_require__(/*! ./bom-handling */ "./node_modules/encoding/node_modules/iconv-lite/lib/bom-handling.js"), iconv = module.exports; // All codecs and aliases are kept here, keyed by encoding name/alias. // They are lazy loaded in `iconv.getCodec` from `encodings/index.js`. iconv.encodings = null; // Characters emitted in case of error. iconv.defaultCharUnicode = '�'; iconv.defaultCharSingleByte = '?'; // Public API. iconv.encode = function encode(str, encoding, options) { str = "" + (str || ""); // Ensure string. var encoder = iconv.getEncoder(encoding, options); var res = encoder.write(str); var trail = encoder.end(); return (trail && trail.length > 0) ? Buffer.concat([res, trail]) : res; } iconv.decode = function decode(buf, encoding, options) { if (typeof buf === 'string') { if (!iconv.skipDecodeWarning) { console.error('Iconv-lite warning: decode()-ing strings is deprecated. Refer to https://github.com/ashtuchkin/iconv-lite/wiki/Use-Buffers-when-decoding'); iconv.skipDecodeWarning = true; } buf = Buffer.from("" + (buf || ""), "binary"); // Ensure buffer. } var decoder = iconv.getDecoder(encoding, options); var res = decoder.write(buf); var trail = decoder.end(); return trail ? (res + trail) : res; } iconv.encodingExists = function encodingExists(enc) { try { iconv.getCodec(enc); return true; } catch (e) { return false; } } // Legacy aliases to convert functions iconv.toEncoding = iconv.encode; iconv.fromEncoding = iconv.decode; // Search for a codec in iconv.encodings. Cache codec data in iconv._codecDataCache. iconv._codecDataCache = {}; iconv.getCodec = function getCodec(encoding) { if (!iconv.encodings) iconv.encodings = __webpack_require__(/*! ../encodings */ "./node_modules/encoding/node_modules/iconv-lite/encodings/index.js"); // Lazy load all encoding definitions. // Canonicalize encoding name: strip all non-alphanumeric chars and appended year. var enc = iconv._canonicalizeEncoding(encoding); // Traverse iconv.encodings to find actual codec. var codecOptions = {}; while (true) { var codec = iconv._codecDataCache[enc]; if (codec) return codec; var codecDef = iconv.encodings[enc]; switch (typeof codecDef) { case "string": // Direct alias to other encoding. enc = codecDef; break; case "object": // Alias with options. Can be layered. for (var key in codecDef) codecOptions[key] = codecDef[key]; if (!codecOptions.encodingName) codecOptions.encodingName = enc; enc = codecDef.type; break; case "function": // Codec itself. if (!codecOptions.encodingName) codecOptions.encodingName = enc; // The codec function must load all tables and return object with .encoder and .decoder methods. // It'll be called only once (for each different options object). codec = new codecDef(codecOptions, iconv); iconv._codecDataCache[codecOptions.encodingName] = codec; // Save it to be reused later. return codec; default: throw new Error("Encoding not recognized: '" + encoding + "' (searched as: '"+enc+"')"); } } } iconv._canonicalizeEncoding = function(encoding) { // Canonicalize encoding name: strip all non-alphanumeric chars and appended year. return (''+encoding).toLowerCase().replace(/:\d{4}$|[^0-9a-z]/g, ""); } iconv.getEncoder = function getEncoder(encoding, options) { var codec = iconv.getCodec(encoding), encoder = new codec.encoder(options, codec); if (codec.bomAware && options && options.addBOM) encoder = new bomHandling.PrependBOM(encoder, options); return encoder; } iconv.getDecoder = function getDecoder(encoding, options) { var codec = iconv.getCodec(encoding), decoder = new codec.decoder(options, codec); if (codec.bomAware && !(options && options.stripBOM === false)) decoder = new bomHandling.StripBOM(decoder, options); return decoder; } // Streaming API // NOTE: Streaming API naturally depends on 'stream' module from Node.js. Unfortunately in browser environments this module can add // up to 100Kb to the output bundle. To avoid unnecessary code bloat, we don't enable Streaming API in browser by default. // If you would like to enable it explicitly, please add the following code to your app: // > iconv.enableStreamingAPI(require('stream')); iconv.enableStreamingAPI = function enableStreamingAPI(stream_module) { if (iconv.supportsStreams) return; // Dependency-inject stream module to create IconvLite stream classes. var streams = __webpack_require__(/*! ./streams */ "./node_modules/encoding/node_modules/iconv-lite/lib/streams.js")(stream_module); // Not public API yet, but expose the stream classes. iconv.IconvLiteEncoderStream = streams.IconvLiteEncoderStream; iconv.IconvLiteDecoderStream = streams.IconvLiteDecoderStream; // Streaming API. iconv.encodeStream = function encodeStream(encoding, options) { return new iconv.IconvLiteEncoderStream(iconv.getEncoder(encoding, options), options); } iconv.decodeStream = function decodeStream(encoding, options) { return new iconv.IconvLiteDecoderStream(iconv.getDecoder(encoding, options), options); } iconv.supportsStreams = true; } // Enable Streaming API automatically if 'stream' module is available and non-empty (the majority of environments). var stream_module; try { stream_module = __webpack_require__(/*! stream */ "stream"); } catch (e) {} if (stream_module && stream_module.Transform) { iconv.enableStreamingAPI(stream_module); } else { // In rare cases where 'stream' module is not available by default, throw a helpful exception. iconv.encodeStream = iconv.decodeStream = function() { throw new Error("iconv-lite Streaming API is not enabled. Use iconv.enableStreamingAPI(require('stream')); to enable it."); }; } if (false) {} /***/ }), /***/ "./node_modules/encoding/node_modules/iconv-lite/lib/streams.js": /*!**********************************************************************!*\ !*** ./node_modules/encoding/node_modules/iconv-lite/lib/streams.js ***! \**********************************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; var Buffer = (__webpack_require__(/*! safer-buffer */ "./node_modules/safer-buffer/safer.js").Buffer); // NOTE: Due to 'stream' module being pretty large (~100Kb, significant in browser environments), // we opt to dependency-inject it instead of creating a hard dependency. module.exports = function(stream_module) { var Transform = stream_module.Transform; // == Encoder stream ======================================================= function IconvLiteEncoderStream(conv, options) { this.conv = conv; options = options || {}; options.decodeStrings = false; // We accept only strings, so we don't need to decode them. Transform.call(this, options); } IconvLiteEncoderStream.prototype = Object.create(Transform.prototype, { constructor: { value: IconvLiteEncoderStream } }); IconvLiteEncoderStream.prototype._transform = function(chunk, encoding, done) { if (typeof chunk != 'string') return done(new Error("Iconv encoding stream needs strings as its input.")); try { var res = this.conv.write(chunk); if (res && res.length) this.push(res); done(); } catch (e) { done(e); } } IconvLiteEncoderStream.prototype._flush = function(done) { try { var res = this.conv.end(); if (res && res.length) this.push(res); done(); } catch (e) { done(e); } } IconvLiteEncoderStream.prototype.collect = function(cb) { var chunks = []; this.on('error', cb); this.on('data', function(chunk) { chunks.push(chunk); }); this.on('end', function() { cb(null, Buffer.concat(chunks)); }); return this; } // == Decoder stream ======================================================= function IconvLiteDecoderStream(conv, options) { this.conv = conv; options = options || {}; options.encoding = this.encoding = 'utf8'; // We output strings. Transform.call(this, options); } IconvLiteDecoderStream.prototype = Object.create(Transform.prototype, { constructor: { value: IconvLiteDecoderStream } }); IconvLiteDecoderStream.prototype._transform = function(chunk, encoding, done) { if (!Buffer.isBuffer(chunk) && !(chunk instanceof Uint8Array)) return done(new Error("Iconv decoding stream needs buffers as its input.")); try { var res = this.conv.write(chunk); if (res && res.length) this.push(res, this.encoding); done(); } catch (e) { done(e); } } IconvLiteDecoderStream.prototype._flush = function(done) { try { var res = this.conv.end(); if (res && res.length) this.push(res, this.encoding); done(); } catch (e) { done(e); } } IconvLiteDecoderStream.prototype.collect = function(cb) { var res = ''; this.on('error', cb); this.on('data', function(chunk) { res += chunk; }); this.on('end', function() { cb(null, res); }); return this; } return { IconvLiteEncoderStream: IconvLiteEncoderStream, IconvLiteDecoderStream: IconvLiteDecoderStream, }; }; /***/ }), /***/ "./node_modules/follow-redirects/debug.js": /*!************************************************!*\ !*** ./node_modules/follow-redirects/debug.js ***! \************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var debug; module.exports = function () { if (!debug) { try { /* eslint global-require: off */ debug = __webpack_require__(/*! debug */ "./node_modules/debug/src/index.js")("follow-redirects"); } catch (error) { /* */ } if (typeof debug !== "function") { debug = function () { /* */ }; } } debug.apply(null, arguments); }; /***/ }), /***/ "./node_modules/follow-redirects/index.js": /*!************************************************!*\ !*** ./node_modules/follow-redirects/index.js ***! \************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var url = __webpack_require__(/*! url */ "url"); var URL = url.URL; var http = __webpack_require__(/*! http */ "http"); var https = __webpack_require__(/*! https */ "https"); var Writable = (__webpack_require__(/*! stream */ "stream").Writable); var assert = __webpack_require__(/*! assert */ "assert"); var debug = __webpack_require__(/*! ./debug */ "./node_modules/follow-redirects/debug.js"); // Preventive platform detection // istanbul ignore next (function detectUnsupportedEnvironment() { var looksLikeNode = typeof process !== "undefined"; var looksLikeBrowser = typeof window !== "undefined" && typeof document !== "undefined"; var looksLikeV8 = isFunction(Error.captureStackTrace); if (!looksLikeNode && (looksLikeBrowser || !looksLikeV8)) { console.warn("The follow-redirects package should be excluded from browser builds."); } }()); // Whether to use the native URL object or the legacy url module var useNativeURL = false; try { assert(new URL("")); } catch (error) { useNativeURL = error.code === "ERR_INVALID_URL"; } // URL fields to preserve in copy operations var preservedUrlFields = [ "auth", "host", "hostname", "href", "path", "pathname", "port", "protocol", "query", "search", "hash", ]; // Create handlers that pass events from native requests var events = ["abort", "aborted", "connect", "error", "socket", "timeout"]; var eventHandlers = Object.create(null); events.forEach(function (event) { eventHandlers[event] = function (arg1, arg2, arg3) { this._redirectable.emit(event, arg1, arg2, arg3); }; }); // Error types with codes var InvalidUrlError = createErrorType( "ERR_INVALID_URL", "Invalid URL", TypeError ); var RedirectionError = createErrorType( "ERR_FR_REDIRECTION_FAILURE", "Redirected request failed" ); var TooManyRedirectsError = createErrorType( "ERR_FR_TOO_MANY_REDIRECTS", "Maximum number of redirects exceeded", RedirectionError ); var MaxBodyLengthExceededError = createErrorType( "ERR_FR_MAX_BODY_LENGTH_EXCEEDED", "Request body larger than maxBodyLength limit" ); var WriteAfterEndError = createErrorType( "ERR_STREAM_WRITE_AFTER_END", "write after end" ); // istanbul ignore next var destroy = Writable.prototype.destroy || noop; // An HTTP(S) request that can be redirected function RedirectableRequest(options, responseCallback) { // Initialize the request Writable.call(this); this._sanitizeOptions(options); this._options = options; this._ended = false; this._ending = false; this._redirectCount = 0; this._redirects = []; this._requestBodyLength = 0; this._requestBodyBuffers = []; // Attach a callback if passed if (responseCallback) { this.on("response", responseCallback); } // React to responses of native requests var self = this; this._onNativeResponse = function (response) { try { self._processResponse(response); } catch (cause) { self.emit("error", cause instanceof RedirectionError ? cause : new RedirectionError({ cause: cause })); } }; // Perform the first request this._performRequest(); } RedirectableRequest.prototype = Object.create(Writable.prototype); RedirectableRequest.prototype.abort = function () { destroyRequest(this._currentRequest); this._currentRequest.abort(); this.emit("abort"); }; RedirectableRequest.prototype.destroy = function (error) { destroyRequest(this._currentRequest, error); destroy.call(this, error); return this; }; // Writes buffered data to the current native request RedirectableRequest.prototype.write = function (data, encoding, callback) { // Writing is not allowed if end has been called if (this._ending) { throw new WriteAfterEndError(); } // Validate input and shift parameters if necessary if (!isString(data) && !isBuffer(data)) { throw new TypeError("data should be a string, Buffer or Uint8Array"); } if (isFunction(encoding)) { callback = encoding; encoding = null; } // Ignore empty buffers, since writing them doesn't invoke the callback // https://github.com/nodejs/node/issues/22066 if (data.length === 0) { if (callback) { callback(); } return; } // Only write when we don't exceed the maximum body length if (this._requestBodyLength + data.length <= this._options.maxBodyLength) { this._requestBodyLength += data.length; this._requestBodyBuffers.push({ data: data, encoding: encoding }); this._currentRequest.write(data, encoding, callback); } // Error when we exceed the maximum body length else { this.emit("error", new MaxBodyLengthExceededError()); this.abort(); } }; // Ends the current native request RedirectableRequest.prototype.end = function (data, encoding, callback) { // Shift parameters if necessary if (isFunction(data)) { callback = data; data = encoding = null; } else if (isFunction(encoding)) { callback = encoding; encoding = null; } // Write data if needed and end if (!data) { this._ended = this._ending = true; this._currentRequest.end(null, null, callback); } else { var self = this; var currentRequest = this._currentRequest; this.write(data, encoding, function () { self._ended = true; currentRequest.end(null, null, callback); }); this._ending = true; } }; // Sets a header value on the current native request RedirectableRequest.prototype.setHeader = function (name, value) { this._options.headers[name] = value; this._currentRequest.setHeader(name, value); }; // Clears a header value on the current native request RedirectableRequest.prototype.removeHeader = function (name) { delete this._options.headers[name]; this._currentRequest.removeHeader(name); }; // Global timeout for all underlying requests RedirectableRequest.prototype.setTimeout = function (msecs, callback) { var self = this; // Destroys the socket on timeout function destroyOnTimeout(socket) { socket.setTimeout(msecs); socket.removeListener("timeout", socket.destroy); socket.addListener("timeout", socket.destroy); } // Sets up a timer to trigger a timeout event function startTimer(socket) { if (self._timeout) { clearTimeout(self._timeout); } self._timeout = setTimeout(function () { self.emit("timeout"); clearTimer(); }, msecs); destroyOnTimeout(socket); } // Stops a timeout from triggering function clearTimer() { // Clear the timeout if (self._timeout) { clearTimeout(self._timeout); self._timeout = null; } // Clean up all attached listeners self.removeListener("abort", clearTimer); self.removeListener("error", clearTimer); self.removeListener("response", clearTimer); self.removeListener("close", clearTimer); if (callback) { self.removeListener("timeout", callback); } if (!self.socket) { self._currentRequest.removeListener("socket", startTimer); } } // Attach callback if passed if (callback) { this.on("timeout", callback); } // Start the timer if or when the socket is opened if (this.socket) { startTimer(this.socket); } else { this._currentRequest.once("socket", startTimer); } // Clean up on events this.on("socket", destroyOnTimeout); this.on("abort", clearTimer); this.on("error", clearTimer); this.on("response", clearTimer); this.on("close", clearTimer); return this; }; // Proxy all other public ClientRequest methods [ "flushHeaders", "getHeader", "setNoDelay", "setSocketKeepAlive", ].forEach(function (method) { RedirectableRequest.prototype[method] = function (a, b) { return this._currentRequest[method](a, b); }; }); // Proxy all public ClientRequest properties ["aborted", "connection", "socket"].forEach(function (property) { Object.defineProperty(RedirectableRequest.prototype, property, { get: function () { return this._currentRequest[property]; }, }); }); RedirectableRequest.prototype._sanitizeOptions = function (options) { // Ensure headers are always present if (!options.headers) { options.headers = {}; } // Since http.request treats host as an alias of hostname, // but the url module interprets host as hostname plus port, // eliminate the host property to avoid confusion. if (options.host) { // Use hostname if set, because it has precedence if (!options.hostname) { options.hostname = options.host; } delete options.host; } // Complete the URL object when necessary if (!options.pathname && options.path) { var searchPos = options.path.indexOf("?"); if (searchPos < 0) { options.pathname = options.path; } else { options.pathname = options.path.substring(0, searchPos); options.search = options.path.substring(searchPos); } } }; // Executes the next native request (initial or redirect) RedirectableRequest.prototype._performRequest = function () { // Load the native protocol var protocol = this._options.protocol; var nativeProtocol = this._options.nativeProtocols[protocol]; if (!nativeProtocol) { throw new TypeError("Unsupported protocol " + protocol); } // If specified, use the agent corresponding to the protocol // (HTTP and HTTPS use different types of agents) if (this._options.agents) { var scheme = protocol.slice(0, -1); this._options.agent = this._options.agents[scheme]; } // Create the native request and set up its event handlers var request = this._currentRequest = nativeProtocol.request(this._options, this._onNativeResponse); request._redirectable = this; for (var event of events) { request.on(event, eventHandlers[event]); } // RFC7230§5.3.1: When making a request directly to an origin server, […] // a client MUST send only the absolute path […] as the request-target. this._currentUrl = /^\//.test(this._options.path) ? url.format(this._options) : // When making a request to a proxy, […] // a client MUST send the target URI in absolute-form […]. this._options.path; // End a redirected request // (The first request must be ended explicitly with RedirectableRequest#end) if (this._isRedirect) { // Write the request entity and end var i = 0; var self = this; var buffers = this._requestBodyBuffers; (function writeNext(error) { // Only write if this request has not been redirected yet // istanbul ignore else if (request === self._currentRequest) { // Report any write errors // istanbul ignore if if (error) { self.emit("error", error); } // Write the next buffer if there are still left else if (i < buffers.length) { var buffer = buffers[i++]; // istanbul ignore else if (!request.finished) { request.write(buffer.data, buffer.encoding, writeNext); } } // End the request if `end` has been called on us else if (self._ended) { request.end(); } } }()); } }; // Processes a response from the current native request RedirectableRequest.prototype._processResponse = function (response) { // Store the redirected response var statusCode = response.statusCode; if (this._options.trackRedirects) { this._redirects.push({ url: this._currentUrl, headers: response.headers, statusCode: statusCode, }); } // RFC7231§6.4: The 3xx (Redirection) class of status code indicates // that further action needs to be taken by the user agent in order to // fulfill the request. If a Location header field is provided, // the user agent MAY automatically redirect its request to the URI // referenced by the Location field value, // even if the specific status code is not understood. // If the response is not a redirect; return it as-is var location = response.headers.location; if (!location || this._options.followRedirects === false || statusCode < 300 || statusCode >= 400) { response.responseUrl = this._currentUrl; response.redirects = this._redirects; this.emit("response", response); // Clean up this._requestBodyBuffers = []; return; } // The response is a redirect, so abort the current request destroyRequest(this._currentRequest); // Discard the remainder of the response to avoid waiting for data response.destroy(); // RFC7231§6.4: A client SHOULD detect and intervene // in cyclical redirections (i.e., "infinite" redirection loops). if (++this._redirectCount > this._options.maxRedirects) { throw new TooManyRedirectsError(); } // Store the request headers if applicable var requestHeaders; var beforeRedirect = this._options.beforeRedirect; if (beforeRedirect) { requestHeaders = Object.assign({ // The Host header was set by nativeProtocol.request Host: response.req.getHeader("host"), }, this._options.headers); } // RFC7231§6.4: Automatic redirection needs to done with // care for methods not known to be safe, […] // RFC7231§6.4.2–3: For historical reasons, a user agent MAY change // the request method from POST to GET for the subsequent request. var method = this._options.method; if ((statusCode === 301 || statusCode === 302) && this._options.method === "POST" || // RFC7231§6.4.4: The 303 (See Other) status code indicates that // the server is redirecting the user agent to a different resource […] // A user agent can perform a retrieval request targeting that URI // (a GET or HEAD request if using HTTP) […] (statusCode === 303) && !/^(?:GET|HEAD)$/.test(this._options.method)) { this._options.method = "GET"; // Drop a possible entity and headers related to it this._requestBodyBuffers = []; removeMatchingHeaders(/^content-/i, this._options.headers); } // Drop the Host header, as the redirect might lead to a different host var currentHostHeader = removeMatchingHeaders(/^host$/i, this._options.headers); // If the redirect is relative, carry over the host of the last request var currentUrlParts = parseUrl(this._currentUrl); var currentHost = currentHostHeader || currentUrlParts.host; var currentUrl = /^\w+:/.test(location) ? this._currentUrl : url.format(Object.assign(currentUrlParts, { host: currentHost })); // Create the redirected request var redirectUrl = resolveUrl(location, currentUrl); debug("redirecting to", redirectUrl.href); this._isRedirect = true; spreadUrlObject(redirectUrl, this._options); // Drop confidential headers when redirecting to a less secure protocol // or to a different domain that is not a superdomain if (redirectUrl.protocol !== currentUrlParts.protocol && redirectUrl.protocol !== "https:" || redirectUrl.host !== currentHost && !isSubdomain(redirectUrl.host, currentHost)) { removeMatchingHeaders(/^(?:(?:proxy-)?authorization|cookie)$/i, this._options.headers); } // Evaluate the beforeRedirect callback if (isFunction(beforeRedirect)) { var responseDetails = { headers: response.headers, statusCode: statusCode, }; var requestDetails = { url: currentUrl, method: method, headers: requestHeaders, }; beforeRedirect(this._options, responseDetails, requestDetails); this._sanitizeOptions(this._options); } // Perform the redirected request this._performRequest(); }; // Wraps the key/value object of protocols with redirect functionality function wrap(protocols) { // Default settings var exports = { maxRedirects: 21, maxBodyLength: 10 * 1024 * 1024, }; // Wrap each protocol var nativeProtocols = {}; Object.keys(protocols).forEach(function (scheme) { var protocol = scheme + ":"; var nativeProtocol = nativeProtocols[protocol] = protocols[scheme]; var wrappedProtocol = exports[scheme] = Object.create(nativeProtocol); // Executes a request, following redirects function request(input, options, callback) { // Parse parameters, ensuring that input is an object if (isURL(input)) { input = spreadUrlObject(input); } else if (isString(input)) { input = spreadUrlObject(parseUrl(input)); } else { callback = options; options = validateUrl(input); input = { protocol: protocol }; } if (isFunction(options)) { callback = options; options = null; } // Set defaults options = Object.assign({ maxRedirects: exports.maxRedirects, maxBodyLength: exports.maxBodyLength, }, input, options); options.nativeProtocols = nativeProtocols; if (!isString(options.host) && !isString(options.hostname)) { options.hostname = "::1"; } assert.equal(options.protocol, protocol, "protocol mismatch"); debug("options", options); return new RedirectableRequest(options, callback); } // Executes a GET request, following redirects function get(input, options, callback) { var wrappedRequest = wrappedProtocol.request(input, options, callback); wrappedRequest.end(); return wrappedRequest; } // Expose the properties on the wrapped protocol Object.defineProperties(wrappedProtocol, { request: { value: request, configurable: true, enumerable: true, writable: true }, get: { value: get, configurable: true, enumerable: true, writable: true }, }); }); return exports; } function noop() { /* empty */ } function parseUrl(input) { var parsed; // istanbul ignore else if (useNativeURL) { parsed = new URL(input); } else { // Ensure the URL is valid and absolute parsed = validateUrl(url.parse(input)); if (!isString(parsed.protocol)) { throw new InvalidUrlError({ input }); } } return parsed; } function resolveUrl(relative, base) { // istanbul ignore next return useNativeURL ? new URL(relative, base) : parseUrl(url.resolve(base, relative)); } function validateUrl(input) { if (/^\[/.test(input.hostname) && !/^\[[:0-9a-f]+\]$/i.test(input.hostname)) { throw new InvalidUrlError({ input: input.href || input }); } if (/^\[/.test(input.host) && !/^\[[:0-9a-f]+\](:\d+)?$/i.test(input.host)) { throw new InvalidUrlError({ input: input.href || input }); } return input; } function spreadUrlObject(urlObject, target) { var spread = target || {}; for (var key of preservedUrlFields) { spread[key] = urlObject[key]; } // Fix IPv6 hostname if (spread.hostname.startsWith("[")) { spread.hostname = spread.hostname.slice(1, -1); } // Ensure port is a number if (spread.port !== "") { spread.port = Number(spread.port); } // Concatenate path spread.path = spread.search ? spread.pathname + spread.search : spread.pathname; return spread; } function removeMatchingHeaders(regex, headers) { var lastValue; for (var header in headers) { if (regex.test(header)) { lastValue = headers[header]; delete headers[header]; } } return (lastValue === null || typeof lastValue === "undefined") ? undefined : String(lastValue).trim(); } function createErrorType(code, message, baseClass) { // Create constructor function CustomError(properties) { // istanbul ignore else if (isFunction(Error.captureStackTrace)) { Error.captureStackTrace(this, this.constructor); } Object.assign(this, properties || {}); this.code = code; this.message = this.cause ? message + ": " + this.cause.message : message; } // Attach constructor and set default properties CustomError.prototype = new (baseClass || Error)(); Object.defineProperties(CustomError.prototype, { constructor: { value: CustomError, enumerable: false, }, name: { value: "Error [" + code + "]", enumerable: false, }, }); return CustomError; } function destroyRequest(request, error) { for (var event of events) { request.removeListener(event, eventHandlers[event]); } request.on("error", noop); request.destroy(error); } function isSubdomain(subdomain, domain) { assert(isString(subdomain) && isString(domain)); var dot = subdomain.length - domain.length - 1; return dot > 0 && subdomain[dot] === "." && subdomain.endsWith(domain); } function isString(value) { return typeof value === "string" || value instanceof String; } function isFunction(value) { return typeof value === "function"; } function isBuffer(value) { return typeof value === "object" && ("length" in value); } function isURL(value) { return URL && value instanceof URL; } // Exports module.exports = wrap({ http: http, https: https }); module.exports.wrap = wrap; /***/ }), /***/ "./node_modules/form-data/lib/form_data.js": /*!*************************************************!*\ !*** ./node_modules/form-data/lib/form_data.js ***! \*************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var CombinedStream = __webpack_require__(/*! combined-stream */ "./node_modules/combined-stream/lib/combined_stream.js"); var util = __webpack_require__(/*! util */ "util"); var path = __webpack_require__(/*! path */ "path"); var http = __webpack_require__(/*! http */ "http"); var https = __webpack_require__(/*! https */ "https"); var parseUrl = (__webpack_require__(/*! url */ "url").parse); var fs = __webpack_require__(/*! fs */ "fs"); var Stream = (__webpack_require__(/*! stream */ "stream").Stream); var mime = __webpack_require__(/*! mime-types */ "./node_modules/mime-types/index.js"); var asynckit = __webpack_require__(/*! asynckit */ "./node_modules/asynckit/index.js"); var populate = __webpack_require__(/*! ./populate.js */ "./node_modules/form-data/lib/populate.js"); // Public API module.exports = FormData; // make it a Stream util.inherits(FormData, CombinedStream); /** * Create readable "multipart/form-data" streams. * Can be used to submit forms * and file uploads to other web applications. * * @constructor * @param {Object} options - Properties to be added/overriden for FormData and CombinedStream */ function FormData(options) { if (!(this instanceof FormData)) { return new FormData(options); } this._overheadLength = 0; this._valueLength = 0; this._valuesToMeasure = []; CombinedStream.call(this); options = options || {}; for (var option in options) { this[option] = options[option]; } } FormData.LINE_BREAK = '\r\n'; FormData.DEFAULT_CONTENT_TYPE = 'application/octet-stream'; FormData.prototype.append = function(field, value, options) { options = options || {}; // allow filename as single option if (typeof options == 'string') { options = {filename: options}; } var append = CombinedStream.prototype.append.bind(this); // all that streamy business can't handle numbers if (typeof value == 'number') { value = '' + value; } // https://github.com/felixge/node-form-data/issues/38 if (Array.isArray(value)) { // Please convert your array into string // the way web server expects it this._error(new Error('Arrays are not supported.')); return; } var header = this._multiPartHeader(field, value, options); var footer = this._multiPartFooter(); append(header); append(value); append(footer); // pass along options.knownLength this._trackLength(header, value, options); }; FormData.prototype._trackLength = function(header, value, options) { var valueLength = 0; // used w/ getLengthSync(), when length is known. // e.g. for streaming directly from a remote server, // w/ a known file a size, and not wanting to wait for // incoming file to finish to get its size. if (options.knownLength != null) { valueLength += +options.knownLength; } else if (Buffer.isBuffer(value)) { valueLength = value.length; } else if (typeof value === 'string') { valueLength = Buffer.byteLength(value); } this._valueLength += valueLength; // @check why add CRLF? does this account for custom/multiple CRLFs? this._overheadLength += Buffer.byteLength(header) + FormData.LINE_BREAK.length; // empty or either doesn't have path or not an http response or not a stream if (!value || ( !value.path && !(value.readable && value.hasOwnProperty('httpVersion')) && !(value instanceof Stream))) { return; } // no need to bother with the length if (!options.knownLength) { this._valuesToMeasure.push(value); } }; FormData.prototype._lengthRetriever = function(value, callback) { if (value.hasOwnProperty('fd')) { // take read range into a account // `end` = Infinity –> read file till the end // // TODO: Looks like there is bug in Node fs.createReadStream // it doesn't respect `end` options without `start` options // Fix it when node fixes it. // https://github.com/joyent/node/issues/7819 if (value.end != undefined && value.end != Infinity && value.start != undefined) { // when end specified // no need to calculate range // inclusive, starts with 0 callback(null, value.end + 1 - (value.start ? value.start : 0)); // not that fast snoopy } else { // still need to fetch file size from fs fs.stat(value.path, function(err, stat) { var fileSize; if (err) { callback(err); return; } // update final size based on the range options fileSize = stat.size - (value.start ? value.start : 0); callback(null, fileSize); }); } // or http response } else if (value.hasOwnProperty('httpVersion')) { callback(null, +value.headers['content-length']); // or request stream http://github.com/mikeal/request } else if (value.hasOwnProperty('httpModule')) { // wait till response come back value.on('response', function(response) { value.pause(); callback(null, +response.headers['content-length']); }); value.resume(); // something else } else { callback('Unknown stream'); } }; FormData.prototype._multiPartHeader = function(field, value, options) { // custom header specified (as string)? // it becomes responsible for boundary // (e.g. to handle extra CRLFs on .NET servers) if (typeof options.header == 'string') { return options.header; } var contentDisposition = this._getContentDisposition(value, options); var contentType = this._getContentType(value, options); var contents = ''; var headers = { // add custom disposition as third element or keep it two elements if not 'Content-Disposition': ['form-data', 'name="' + field + '"'].concat(contentDisposition || []), // if no content type. allow it to be empty array 'Content-Type': [].concat(contentType || []) }; // allow custom headers. if (typeof options.header == 'object') { populate(headers, options.header); } var header; for (var prop in headers) { if (!headers.hasOwnProperty(prop)) continue; header = headers[prop]; // skip nullish headers. if (header == null) { continue; } // convert all headers to arrays. if (!Array.isArray(header)) { header = [header]; } // add non-empty headers. if (header.length) { contents += prop + ': ' + header.join('; ') + FormData.LINE_BREAK; } } return '--' + this.getBoundary() + FormData.LINE_BREAK + contents + FormData.LINE_BREAK; }; FormData.prototype._getContentDisposition = function(value, options) { var filename , contentDisposition ; if (typeof options.filepath === 'string') { // custom filepath for relative paths filename = path.normalize(options.filepath).replace(/\\/g, '/'); } else if (options.filename || value.name || value.path) { // custom filename take precedence // formidable and the browser add a name property // fs- and request- streams have path property filename = path.basename(options.filename || value.name || value.path); } else if (value.readable && value.hasOwnProperty('httpVersion')) { // or try http response filename = path.basename(value.client._httpMessage.path || ''); } if (filename) { contentDisposition = 'filename="' + filename + '"'; } return contentDisposition; }; FormData.prototype._getContentType = function(value, options) { // use custom content-type above all var contentType = options.contentType; // or try `name` from formidable, browser if (!contentType && value.name) { contentType = mime.lookup(value.name); } // or try `path` from fs-, request- streams if (!contentType && value.path) { contentType = mime.lookup(value.path); } // or if it's http-reponse if (!contentType && value.readable && value.hasOwnProperty('httpVersion')) { contentType = value.headers['content-type']; } // or guess it from the filepath or filename if (!contentType && (options.filepath || options.filename)) { contentType = mime.lookup(options.filepath || options.filename); } // fallback to the default content type if `value` is not simple value if (!contentType && typeof value == 'object') { contentType = FormData.DEFAULT_CONTENT_TYPE; } return contentType; }; FormData.prototype._multiPartFooter = function() { return function(next) { var footer = FormData.LINE_BREAK; var lastPart = (this._streams.length === 0); if (lastPart) { footer += this._lastBoundary(); } next(footer); }.bind(this); }; FormData.prototype._lastBoundary = function() { return '--' + this.getBoundary() + '--' + FormData.LINE_BREAK; }; FormData.prototype.getHeaders = function(userHeaders) { var header; var formHeaders = { 'content-type': 'multipart/form-data; boundary=' + this.getBoundary() }; for (header in userHeaders) { if (userHeaders.hasOwnProperty(header)) { formHeaders[header.toLowerCase()] = userHeaders[header]; } } return formHeaders; }; FormData.prototype.setBoundary = function(boundary) { this._boundary = boundary; }; FormData.prototype.getBoundary = function() { if (!this._boundary) { this._generateBoundary(); } return this._boundary; }; FormData.prototype.getBuffer = function() { var dataBuffer = new Buffer.alloc( 0 ); var boundary = this.getBoundary(); // Create the form content. Add Line breaks to the end of data. for (var i = 0, len = this._streams.length; i < len; i++) { if (typeof this._streams[i] !== 'function') { // Add content to the buffer. if(Buffer.isBuffer(this._streams[i])) { dataBuffer = Buffer.concat( [dataBuffer, this._streams[i]]); }else { dataBuffer = Buffer.concat( [dataBuffer, Buffer.from(this._streams[i])]); } // Add break after content. if (typeof this._streams[i] !== 'string' || this._streams[i].substring( 2, boundary.length + 2 ) !== boundary) { dataBuffer = Buffer.concat( [dataBuffer, Buffer.from(FormData.LINE_BREAK)] ); } } } // Add the footer and return the Buffer object. return Buffer.concat( [dataBuffer, Buffer.from(this._lastBoundary())] ); }; FormData.prototype._generateBoundary = function() { // This generates a 50 character boundary similar to those used by Firefox. // They are optimized for boyer-moore parsing. var boundary = '--------------------------'; for (var i = 0; i < 24; i++) { boundary += Math.floor(Math.random() * 10).toString(16); } this._boundary = boundary; }; // Note: getLengthSync DOESN'T calculate streams length // As workaround one can calculate file size manually // and add it as knownLength option FormData.prototype.getLengthSync = function() { var knownLength = this._overheadLength + this._valueLength; // Don't get confused, there are 3 "internal" streams for each keyval pair // so it basically checks if there is any value added to the form if (this._streams.length) { knownLength += this._lastBoundary().length; } // https://github.com/form-data/form-data/issues/40 if (!this.hasKnownLength()) { // Some async length retrievers are present // therefore synchronous length calculation is false. // Please use getLength(callback) to get proper length this._error(new Error('Cannot calculate proper length in synchronous way.')); } return knownLength; }; // Public API to check if length of added values is known // https://github.com/form-data/form-data/issues/196 // https://github.com/form-data/form-data/issues/262 FormData.prototype.hasKnownLength = function() { var hasKnownLength = true; if (this._valuesToMeasure.length) { hasKnownLength = false; } return hasKnownLength; }; FormData.prototype.getLength = function(cb) { var knownLength = this._overheadLength + this._valueLength; if (this._streams.length) { knownLength += this._lastBoundary().length; } if (!this._valuesToMeasure.length) { process.nextTick(cb.bind(this, null, knownLength)); return; } asynckit.parallel(this._valuesToMeasure, this._lengthRetriever, function(err, values) { if (err) { cb(err); return; } values.forEach(function(length) { knownLength += length; }); cb(null, knownLength); }); }; FormData.prototype.submit = function(params, cb) { var request , options , defaults = {method: 'post'} ; // parse provided url if it's string // or treat it as options object if (typeof params == 'string') { params = parseUrl(params); options = populate({ port: params.port, path: params.pathname, host: params.hostname, protocol: params.protocol }, defaults); // use custom params } else { options = populate(params, defaults); // if no port provided use default one if (!options.port) { options.port = options.protocol == 'https:' ? 443 : 80; } } // put that good code in getHeaders to some use options.headers = this.getHeaders(params.headers); // https if specified, fallback to http in any other case if (options.protocol == 'https:') { request = https.request(options); } else { request = http.request(options); } // get content length and fire away this.getLength(function(err, length) { if (err && err !== 'Unknown stream') { this._error(err); return; } // add content length if (length) { request.setHeader('Content-Length', length); } this.pipe(request); if (cb) { var onResponse; var callback = function (error, responce) { request.removeListener('error', callback); request.removeListener('response', onResponse); return cb.call(this, error, responce); }; onResponse = callback.bind(this, null); request.on('error', callback); request.on('response', onResponse); } }.bind(this)); return request; }; FormData.prototype._error = function(err) { if (!this.error) { this.error = err; this.pause(); this.emit('error', err); } }; FormData.prototype.toString = function () { return '[object FormData]'; }; /***/ }), /***/ "./node_modules/form-data/lib/populate.js": /*!************************************************!*\ !*** ./node_modules/form-data/lib/populate.js ***! \************************************************/ /***/ ((module) => { // populates missing values module.exports = function(dst, src) { Object.keys(src).forEach(function(prop) { dst[prop] = dst[prop] || src[prop]; }); return dst; }; /***/ }), /***/ "./node_modules/fs-extra/lib/copy/copy-sync.js": /*!*****************************************************!*\ !*** ./node_modules/fs-extra/lib/copy/copy-sync.js ***! \*****************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const fs = __webpack_require__(/*! graceful-fs */ "./node_modules/graceful-fs/graceful-fs.js") const path = __webpack_require__(/*! path */ "path") const mkdirsSync = (__webpack_require__(/*! ../mkdirs */ "./node_modules/fs-extra/lib/mkdirs/index.js").mkdirsSync) const utimesMillisSync = (__webpack_require__(/*! ../util/utimes */ "./node_modules/fs-extra/lib/util/utimes.js").utimesMillisSync) const stat = __webpack_require__(/*! ../util/stat */ "./node_modules/fs-extra/lib/util/stat.js") function copySync (src, dest, opts) { if (typeof opts === 'function') { opts = { filter: opts } } opts = opts || {} opts.clobber = 'clobber' in opts ? !!opts.clobber : true // default to true for now opts.overwrite = 'overwrite' in opts ? !!opts.overwrite : opts.clobber // overwrite falls back to clobber // Warn about using preserveTimestamps on 32-bit node if (opts.preserveTimestamps && process.arch === 'ia32') { process.emitWarning( 'Using the preserveTimestamps option in 32-bit node is not recommended;\n\n' + '\tsee https://github.com/jprichardson/node-fs-extra/issues/269', 'Warning', 'fs-extra-WARN0002' ) } const { srcStat, destStat } = stat.checkPathsSync(src, dest, 'copy', opts) stat.checkParentPathsSync(src, srcStat, dest, 'copy') return handleFilterAndCopy(destStat, src, dest, opts) } function handleFilterAndCopy (destStat, src, dest, opts) { if (opts.filter && !opts.filter(src, dest)) return const destParent = path.dirname(dest) if (!fs.existsSync(destParent)) mkdirsSync(destParent) return getStats(destStat, src, dest, opts) } function startCopy (destStat, src, dest, opts) { if (opts.filter && !opts.filter(src, dest)) return return getStats(destStat, src, dest, opts) } function getStats (destStat, src, dest, opts) { const statSync = opts.dereference ? fs.statSync : fs.lstatSync const srcStat = statSync(src) if (srcStat.isDirectory()) return onDir(srcStat, destStat, src, dest, opts) else if (srcStat.isFile() || srcStat.isCharacterDevice() || srcStat.isBlockDevice()) return onFile(srcStat, destStat, src, dest, opts) else if (srcStat.isSymbolicLink()) return onLink(destStat, src, dest, opts) else if (srcStat.isSocket()) throw new Error(`Cannot copy a socket file: ${src}`) else if (srcStat.isFIFO()) throw new Error(`Cannot copy a FIFO pipe: ${src}`) throw new Error(`Unknown file: ${src}`) } function onFile (srcStat, destStat, src, dest, opts) { if (!destStat) return copyFile(srcStat, src, dest, opts) return mayCopyFile(srcStat, src, dest, opts) } function mayCopyFile (srcStat, src, dest, opts) { if (opts.overwrite) { fs.unlinkSync(dest) return copyFile(srcStat, src, dest, opts) } else if (opts.errorOnExist) { throw new Error(`'${dest}' already exists`) } } function copyFile (srcStat, src, dest, opts) { fs.copyFileSync(src, dest) if (opts.preserveTimestamps) handleTimestamps(srcStat.mode, src, dest) return setDestMode(dest, srcStat.mode) } function handleTimestamps (srcMode, src, dest) { // Make sure the file is writable before setting the timestamp // otherwise open fails with EPERM when invoked with 'r+' // (through utimes call) if (fileIsNotWritable(srcMode)) makeFileWritable(dest, srcMode) return setDestTimestamps(src, dest) } function fileIsNotWritable (srcMode) { return (srcMode & 0o200) === 0 } function makeFileWritable (dest, srcMode) { return setDestMode(dest, srcMode | 0o200) } function setDestMode (dest, srcMode) { return fs.chmodSync(dest, srcMode) } function setDestTimestamps (src, dest) { // The initial srcStat.atime cannot be trusted // because it is modified by the read(2) system call // (See https://nodejs.org/api/fs.html#fs_stat_time_values) const updatedSrcStat = fs.statSync(src) return utimesMillisSync(dest, updatedSrcStat.atime, updatedSrcStat.mtime) } function onDir (srcStat, destStat, src, dest, opts) { if (!destStat) return mkDirAndCopy(srcStat.mode, src, dest, opts) return copyDir(src, dest, opts) } function mkDirAndCopy (srcMode, src, dest, opts) { fs.mkdirSync(dest) copyDir(src, dest, opts) return setDestMode(dest, srcMode) } function copyDir (src, dest, opts) { fs.readdirSync(src).forEach(item => copyDirItem(item, src, dest, opts)) } function copyDirItem (item, src, dest, opts) { const srcItem = path.join(src, item) const destItem = path.join(dest, item) const { destStat } = stat.checkPathsSync(srcItem, destItem, 'copy', opts) return startCopy(destStat, srcItem, destItem, opts) } function onLink (destStat, src, dest, opts) { let resolvedSrc = fs.readlinkSync(src) if (opts.dereference) { resolvedSrc = path.resolve(process.cwd(), resolvedSrc) } if (!destStat) { return fs.symlinkSync(resolvedSrc, dest) } else { let resolvedDest try { resolvedDest = fs.readlinkSync(dest) } catch (err) { // dest exists and is a regular file or directory, // Windows may throw UNKNOWN error. If dest already exists, // fs throws error anyway, so no need to guard against it here. if (err.code === 'EINVAL' || err.code === 'UNKNOWN') return fs.symlinkSync(resolvedSrc, dest) throw err } if (opts.dereference) { resolvedDest = path.resolve(process.cwd(), resolvedDest) } if (stat.isSrcSubdir(resolvedSrc, resolvedDest)) { throw new Error(`Cannot copy '${resolvedSrc}' to a subdirectory of itself, '${resolvedDest}'.`) } // prevent copy if src is a subdir of dest since unlinking // dest in this case would result in removing src contents // and therefore a broken symlink would be created. if (fs.statSync(dest).isDirectory() && stat.isSrcSubdir(resolvedDest, resolvedSrc)) { throw new Error(`Cannot overwrite '${resolvedDest}' with '${resolvedSrc}'.`) } return copyLink(resolvedSrc, dest) } } function copyLink (resolvedSrc, dest) { fs.unlinkSync(dest) return fs.symlinkSync(resolvedSrc, dest) } module.exports = copySync /***/ }), /***/ "./node_modules/fs-extra/lib/copy/copy.js": /*!************************************************!*\ !*** ./node_modules/fs-extra/lib/copy/copy.js ***! \************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const fs = __webpack_require__(/*! graceful-fs */ "./node_modules/graceful-fs/graceful-fs.js") const path = __webpack_require__(/*! path */ "path") const mkdirs = (__webpack_require__(/*! ../mkdirs */ "./node_modules/fs-extra/lib/mkdirs/index.js").mkdirs) const pathExists = (__webpack_require__(/*! ../path-exists */ "./node_modules/fs-extra/lib/path-exists/index.js").pathExists) const utimesMillis = (__webpack_require__(/*! ../util/utimes */ "./node_modules/fs-extra/lib/util/utimes.js").utimesMillis) const stat = __webpack_require__(/*! ../util/stat */ "./node_modules/fs-extra/lib/util/stat.js") function copy (src, dest, opts, cb) { if (typeof opts === 'function' && !cb) { cb = opts opts = {} } else if (typeof opts === 'function') { opts = { filter: opts } } cb = cb || function () {} opts = opts || {} opts.clobber = 'clobber' in opts ? !!opts.clobber : true // default to true for now opts.overwrite = 'overwrite' in opts ? !!opts.overwrite : opts.clobber // overwrite falls back to clobber // Warn about using preserveTimestamps on 32-bit node if (opts.preserveTimestamps && process.arch === 'ia32') { process.emitWarning( 'Using the preserveTimestamps option in 32-bit node is not recommended;\n\n' + '\tsee https://github.com/jprichardson/node-fs-extra/issues/269', 'Warning', 'fs-extra-WARN0001' ) } stat.checkPaths(src, dest, 'copy', opts, (err, stats) => { if (err) return cb(err) const { srcStat, destStat } = stats stat.checkParentPaths(src, srcStat, dest, 'copy', err => { if (err) return cb(err) if (opts.filter) return handleFilter(checkParentDir, destStat, src, dest, opts, cb) return checkParentDir(destStat, src, dest, opts, cb) }) }) } function checkParentDir (destStat, src, dest, opts, cb) { const destParent = path.dirname(dest) pathExists(destParent, (err, dirExists) => { if (err) return cb(err) if (dirExists) return getStats(destStat, src, dest, opts, cb) mkdirs(destParent, err => { if (err) return cb(err) return getStats(destStat, src, dest, opts, cb) }) }) } function handleFilter (onInclude, destStat, src, dest, opts, cb) { Promise.resolve(opts.filter(src, dest)).then(include => { if (include) return onInclude(destStat, src, dest, opts, cb) return cb() }, error => cb(error)) } function startCopy (destStat, src, dest, opts, cb) { if (opts.filter) return handleFilter(getStats, destStat, src, dest, opts, cb) return getStats(destStat, src, dest, opts, cb) } function getStats (destStat, src, dest, opts, cb) { const stat = opts.dereference ? fs.stat : fs.lstat stat(src, (err, srcStat) => { if (err) return cb(err) if (srcStat.isDirectory()) return onDir(srcStat, destStat, src, dest, opts, cb) else if (srcStat.isFile() || srcStat.isCharacterDevice() || srcStat.isBlockDevice()) return onFile(srcStat, destStat, src, dest, opts, cb) else if (srcStat.isSymbolicLink()) return onLink(destStat, src, dest, opts, cb) else if (srcStat.isSocket()) return cb(new Error(`Cannot copy a socket file: ${src}`)) else if (srcStat.isFIFO()) return cb(new Error(`Cannot copy a FIFO pipe: ${src}`)) return cb(new Error(`Unknown file: ${src}`)) }) } function onFile (srcStat, destStat, src, dest, opts, cb) { if (!destStat) return copyFile(srcStat, src, dest, opts, cb) return mayCopyFile(srcStat, src, dest, opts, cb) } function mayCopyFile (srcStat, src, dest, opts, cb) { if (opts.overwrite) { fs.unlink(dest, err => { if (err) return cb(err) return copyFile(srcStat, src, dest, opts, cb) }) } else if (opts.errorOnExist) { return cb(new Error(`'${dest}' already exists`)) } else return cb() } function copyFile (srcStat, src, dest, opts, cb) { fs.copyFile(src, dest, err => { if (err) return cb(err) if (opts.preserveTimestamps) return handleTimestampsAndMode(srcStat.mode, src, dest, cb) return setDestMode(dest, srcStat.mode, cb) }) } function handleTimestampsAndMode (srcMode, src, dest, cb) { // Make sure the file is writable before setting the timestamp // otherwise open fails with EPERM when invoked with 'r+' // (through utimes call) if (fileIsNotWritable(srcMode)) { return makeFileWritable(dest, srcMode, err => { if (err) return cb(err) return setDestTimestampsAndMode(srcMode, src, dest, cb) }) } return setDestTimestampsAndMode(srcMode, src, dest, cb) } function fileIsNotWritable (srcMode) { return (srcMode & 0o200) === 0 } function makeFileWritable (dest, srcMode, cb) { return setDestMode(dest, srcMode | 0o200, cb) } function setDestTimestampsAndMode (srcMode, src, dest, cb) { setDestTimestamps(src, dest, err => { if (err) return cb(err) return setDestMode(dest, srcMode, cb) }) } function setDestMode (dest, srcMode, cb) { return fs.chmod(dest, srcMode, cb) } function setDestTimestamps (src, dest, cb) { // The initial srcStat.atime cannot be trusted // because it is modified by the read(2) system call // (See https://nodejs.org/api/fs.html#fs_stat_time_values) fs.stat(src, (err, updatedSrcStat) => { if (err) return cb(err) return utimesMillis(dest, updatedSrcStat.atime, updatedSrcStat.mtime, cb) }) } function onDir (srcStat, destStat, src, dest, opts, cb) { if (!destStat) return mkDirAndCopy(srcStat.mode, src, dest, opts, cb) return copyDir(src, dest, opts, cb) } function mkDirAndCopy (srcMode, src, dest, opts, cb) { fs.mkdir(dest, err => { if (err) return cb(err) copyDir(src, dest, opts, err => { if (err) return cb(err) return setDestMode(dest, srcMode, cb) }) }) } function copyDir (src, dest, opts, cb) { fs.readdir(src, (err, items) => { if (err) return cb(err) return copyDirItems(items, src, dest, opts, cb) }) } function copyDirItems (items, src, dest, opts, cb) { const item = items.pop() if (!item) return cb() return copyDirItem(items, item, src, dest, opts, cb) } function copyDirItem (items, item, src, dest, opts, cb) { const srcItem = path.join(src, item) const destItem = path.join(dest, item) stat.checkPaths(srcItem, destItem, 'copy', opts, (err, stats) => { if (err) return cb(err) const { destStat } = stats startCopy(destStat, srcItem, destItem, opts, err => { if (err) return cb(err) return copyDirItems(items, src, dest, opts, cb) }) }) } function onLink (destStat, src, dest, opts, cb) { fs.readlink(src, (err, resolvedSrc) => { if (err) return cb(err) if (opts.dereference) { resolvedSrc = path.resolve(process.cwd(), resolvedSrc) } if (!destStat) { return fs.symlink(resolvedSrc, dest, cb) } else { fs.readlink(dest, (err, resolvedDest) => { if (err) { // dest exists and is a regular file or directory, // Windows may throw UNKNOWN error. If dest already exists, // fs throws error anyway, so no need to guard against it here. if (err.code === 'EINVAL' || err.code === 'UNKNOWN') return fs.symlink(resolvedSrc, dest, cb) return cb(err) } if (opts.dereference) { resolvedDest = path.resolve(process.cwd(), resolvedDest) } if (stat.isSrcSubdir(resolvedSrc, resolvedDest)) { return cb(new Error(`Cannot copy '${resolvedSrc}' to a subdirectory of itself, '${resolvedDest}'.`)) } // do not copy if src is a subdir of dest since unlinking // dest in this case would result in removing src contents // and therefore a broken symlink would be created. if (destStat.isDirectory() && stat.isSrcSubdir(resolvedDest, resolvedSrc)) { return cb(new Error(`Cannot overwrite '${resolvedDest}' with '${resolvedSrc}'.`)) } return copyLink(resolvedSrc, dest, cb) }) } }) } function copyLink (resolvedSrc, dest, cb) { fs.unlink(dest, err => { if (err) return cb(err) return fs.symlink(resolvedSrc, dest, cb) }) } module.exports = copy /***/ }), /***/ "./node_modules/fs-extra/lib/copy/index.js": /*!*************************************************!*\ !*** ./node_modules/fs-extra/lib/copy/index.js ***! \*************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const u = (__webpack_require__(/*! universalify */ "./node_modules/universalify/index.js").fromCallback) module.exports = { copy: u(__webpack_require__(/*! ./copy */ "./node_modules/fs-extra/lib/copy/copy.js")), copySync: __webpack_require__(/*! ./copy-sync */ "./node_modules/fs-extra/lib/copy/copy-sync.js") } /***/ }), /***/ "./node_modules/fs-extra/lib/empty/index.js": /*!**************************************************!*\ !*** ./node_modules/fs-extra/lib/empty/index.js ***! \**************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const u = (__webpack_require__(/*! universalify */ "./node_modules/universalify/index.js").fromPromise) const fs = __webpack_require__(/*! ../fs */ "./node_modules/fs-extra/lib/fs/index.js") const path = __webpack_require__(/*! path */ "path") const mkdir = __webpack_require__(/*! ../mkdirs */ "./node_modules/fs-extra/lib/mkdirs/index.js") const remove = __webpack_require__(/*! ../remove */ "./node_modules/fs-extra/lib/remove/index.js") const emptyDir = u(async function emptyDir (dir) { let items try { items = await fs.readdir(dir) } catch { return mkdir.mkdirs(dir) } return Promise.all(items.map(item => remove.remove(path.join(dir, item)))) }) function emptyDirSync (dir) { let items try { items = fs.readdirSync(dir) } catch { return mkdir.mkdirsSync(dir) } items.forEach(item => { item = path.join(dir, item) remove.removeSync(item) }) } module.exports = { emptyDirSync, emptydirSync: emptyDirSync, emptyDir, emptydir: emptyDir } /***/ }), /***/ "./node_modules/fs-extra/lib/ensure/file.js": /*!**************************************************!*\ !*** ./node_modules/fs-extra/lib/ensure/file.js ***! \**************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const u = (__webpack_require__(/*! universalify */ "./node_modules/universalify/index.js").fromCallback) const path = __webpack_require__(/*! path */ "path") const fs = __webpack_require__(/*! graceful-fs */ "./node_modules/graceful-fs/graceful-fs.js") const mkdir = __webpack_require__(/*! ../mkdirs */ "./node_modules/fs-extra/lib/mkdirs/index.js") function createFile (file, callback) { function makeFile () { fs.writeFile(file, '', err => { if (err) return callback(err) callback() }) } fs.stat(file, (err, stats) => { // eslint-disable-line handle-callback-err if (!err && stats.isFile()) return callback() const dir = path.dirname(file) fs.stat(dir, (err, stats) => { if (err) { // if the directory doesn't exist, make it if (err.code === 'ENOENT') { return mkdir.mkdirs(dir, err => { if (err) return callback(err) makeFile() }) } return callback(err) } if (stats.isDirectory()) makeFile() else { // parent is not a directory // This is just to cause an internal ENOTDIR error to be thrown fs.readdir(dir, err => { if (err) return callback(err) }) } }) }) } function createFileSync (file) { let stats try { stats = fs.statSync(file) } catch {} if (stats && stats.isFile()) return const dir = path.dirname(file) try { if (!fs.statSync(dir).isDirectory()) { // parent is not a directory // This is just to cause an internal ENOTDIR error to be thrown fs.readdirSync(dir) } } catch (err) { // If the stat call above failed because the directory doesn't exist, create it if (err && err.code === 'ENOENT') mkdir.mkdirsSync(dir) else throw err } fs.writeFileSync(file, '') } module.exports = { createFile: u(createFile), createFileSync } /***/ }), /***/ "./node_modules/fs-extra/lib/ensure/index.js": /*!***************************************************!*\ !*** ./node_modules/fs-extra/lib/ensure/index.js ***! \***************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const { createFile, createFileSync } = __webpack_require__(/*! ./file */ "./node_modules/fs-extra/lib/ensure/file.js") const { createLink, createLinkSync } = __webpack_require__(/*! ./link */ "./node_modules/fs-extra/lib/ensure/link.js") const { createSymlink, createSymlinkSync } = __webpack_require__(/*! ./symlink */ "./node_modules/fs-extra/lib/ensure/symlink.js") module.exports = { // file createFile, createFileSync, ensureFile: createFile, ensureFileSync: createFileSync, // link createLink, createLinkSync, ensureLink: createLink, ensureLinkSync: createLinkSync, // symlink createSymlink, createSymlinkSync, ensureSymlink: createSymlink, ensureSymlinkSync: createSymlinkSync } /***/ }), /***/ "./node_modules/fs-extra/lib/ensure/link.js": /*!**************************************************!*\ !*** ./node_modules/fs-extra/lib/ensure/link.js ***! \**************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const u = (__webpack_require__(/*! universalify */ "./node_modules/universalify/index.js").fromCallback) const path = __webpack_require__(/*! path */ "path") const fs = __webpack_require__(/*! graceful-fs */ "./node_modules/graceful-fs/graceful-fs.js") const mkdir = __webpack_require__(/*! ../mkdirs */ "./node_modules/fs-extra/lib/mkdirs/index.js") const pathExists = (__webpack_require__(/*! ../path-exists */ "./node_modules/fs-extra/lib/path-exists/index.js").pathExists) const { areIdentical } = __webpack_require__(/*! ../util/stat */ "./node_modules/fs-extra/lib/util/stat.js") function createLink (srcpath, dstpath, callback) { function makeLink (srcpath, dstpath) { fs.link(srcpath, dstpath, err => { if (err) return callback(err) callback(null) }) } fs.lstat(dstpath, (_, dstStat) => { fs.lstat(srcpath, (err, srcStat) => { if (err) { err.message = err.message.replace('lstat', 'ensureLink') return callback(err) } if (dstStat && areIdentical(srcStat, dstStat)) return callback(null) const dir = path.dirname(dstpath) pathExists(dir, (err, dirExists) => { if (err) return callback(err) if (dirExists) return makeLink(srcpath, dstpath) mkdir.mkdirs(dir, err => { if (err) return callback(err) makeLink(srcpath, dstpath) }) }) }) }) } function createLinkSync (srcpath, dstpath) { let dstStat try { dstStat = fs.lstatSync(dstpath) } catch {} try { const srcStat = fs.lstatSync(srcpath) if (dstStat && areIdentical(srcStat, dstStat)) return } catch (err) { err.message = err.message.replace('lstat', 'ensureLink') throw err } const dir = path.dirname(dstpath) const dirExists = fs.existsSync(dir) if (dirExists) return fs.linkSync(srcpath, dstpath) mkdir.mkdirsSync(dir) return fs.linkSync(srcpath, dstpath) } module.exports = { createLink: u(createLink), createLinkSync } /***/ }), /***/ "./node_modules/fs-extra/lib/ensure/symlink-paths.js": /*!***********************************************************!*\ !*** ./node_modules/fs-extra/lib/ensure/symlink-paths.js ***! \***********************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const path = __webpack_require__(/*! path */ "path") const fs = __webpack_require__(/*! graceful-fs */ "./node_modules/graceful-fs/graceful-fs.js") const pathExists = (__webpack_require__(/*! ../path-exists */ "./node_modules/fs-extra/lib/path-exists/index.js").pathExists) /** * Function that returns two types of paths, one relative to symlink, and one * relative to the current working directory. Checks if path is absolute or * relative. If the path is relative, this function checks if the path is * relative to symlink or relative to current working directory. This is an * initiative to find a smarter `srcpath` to supply when building symlinks. * This allows you to determine which path to use out of one of three possible * types of source paths. The first is an absolute path. This is detected by * `path.isAbsolute()`. When an absolute path is provided, it is checked to * see if it exists. If it does it's used, if not an error is returned * (callback)/ thrown (sync). The other two options for `srcpath` are a * relative url. By default Node's `fs.symlink` works by creating a symlink * using `dstpath` and expects the `srcpath` to be relative to the newly * created symlink. If you provide a `srcpath` that does not exist on the file * system it results in a broken symlink. To minimize this, the function * checks to see if the 'relative to symlink' source file exists, and if it * does it will use it. If it does not, it checks if there's a file that * exists that is relative to the current working directory, if does its used. * This preserves the expectations of the original fs.symlink spec and adds * the ability to pass in `relative to current working direcotry` paths. */ function symlinkPaths (srcpath, dstpath, callback) { if (path.isAbsolute(srcpath)) { return fs.lstat(srcpath, (err) => { if (err) { err.message = err.message.replace('lstat', 'ensureSymlink') return callback(err) } return callback(null, { toCwd: srcpath, toDst: srcpath }) }) } else { const dstdir = path.dirname(dstpath) const relativeToDst = path.join(dstdir, srcpath) return pathExists(relativeToDst, (err, exists) => { if (err) return callback(err) if (exists) { return callback(null, { toCwd: relativeToDst, toDst: srcpath }) } else { return fs.lstat(srcpath, (err) => { if (err) { err.message = err.message.replace('lstat', 'ensureSymlink') return callback(err) } return callback(null, { toCwd: srcpath, toDst: path.relative(dstdir, srcpath) }) }) } }) } } function symlinkPathsSync (srcpath, dstpath) { let exists if (path.isAbsolute(srcpath)) { exists = fs.existsSync(srcpath) if (!exists) throw new Error('absolute srcpath does not exist') return { toCwd: srcpath, toDst: srcpath } } else { const dstdir = path.dirname(dstpath) const relativeToDst = path.join(dstdir, srcpath) exists = fs.existsSync(relativeToDst) if (exists) { return { toCwd: relativeToDst, toDst: srcpath } } else { exists = fs.existsSync(srcpath) if (!exists) throw new Error('relative srcpath does not exist') return { toCwd: srcpath, toDst: path.relative(dstdir, srcpath) } } } } module.exports = { symlinkPaths, symlinkPathsSync } /***/ }), /***/ "./node_modules/fs-extra/lib/ensure/symlink-type.js": /*!**********************************************************!*\ !*** ./node_modules/fs-extra/lib/ensure/symlink-type.js ***! \**********************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const fs = __webpack_require__(/*! graceful-fs */ "./node_modules/graceful-fs/graceful-fs.js") function symlinkType (srcpath, type, callback) { callback = (typeof type === 'function') ? type : callback type = (typeof type === 'function') ? false : type if (type) return callback(null, type) fs.lstat(srcpath, (err, stats) => { if (err) return callback(null, 'file') type = (stats && stats.isDirectory()) ? 'dir' : 'file' callback(null, type) }) } function symlinkTypeSync (srcpath, type) { let stats if (type) return type try { stats = fs.lstatSync(srcpath) } catch { return 'file' } return (stats && stats.isDirectory()) ? 'dir' : 'file' } module.exports = { symlinkType, symlinkTypeSync } /***/ }), /***/ "./node_modules/fs-extra/lib/ensure/symlink.js": /*!*****************************************************!*\ !*** ./node_modules/fs-extra/lib/ensure/symlink.js ***! \*****************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const u = (__webpack_require__(/*! universalify */ "./node_modules/universalify/index.js").fromCallback) const path = __webpack_require__(/*! path */ "path") const fs = __webpack_require__(/*! ../fs */ "./node_modules/fs-extra/lib/fs/index.js") const _mkdirs = __webpack_require__(/*! ../mkdirs */ "./node_modules/fs-extra/lib/mkdirs/index.js") const mkdirs = _mkdirs.mkdirs const mkdirsSync = _mkdirs.mkdirsSync const _symlinkPaths = __webpack_require__(/*! ./symlink-paths */ "./node_modules/fs-extra/lib/ensure/symlink-paths.js") const symlinkPaths = _symlinkPaths.symlinkPaths const symlinkPathsSync = _symlinkPaths.symlinkPathsSync const _symlinkType = __webpack_require__(/*! ./symlink-type */ "./node_modules/fs-extra/lib/ensure/symlink-type.js") const symlinkType = _symlinkType.symlinkType const symlinkTypeSync = _symlinkType.symlinkTypeSync const pathExists = (__webpack_require__(/*! ../path-exists */ "./node_modules/fs-extra/lib/path-exists/index.js").pathExists) const { areIdentical } = __webpack_require__(/*! ../util/stat */ "./node_modules/fs-extra/lib/util/stat.js") function createSymlink (srcpath, dstpath, type, callback) { callback = (typeof type === 'function') ? type : callback type = (typeof type === 'function') ? false : type fs.lstat(dstpath, (err, stats) => { if (!err && stats.isSymbolicLink()) { Promise.all([ fs.stat(srcpath), fs.stat(dstpath) ]).then(([srcStat, dstStat]) => { if (areIdentical(srcStat, dstStat)) return callback(null) _createSymlink(srcpath, dstpath, type, callback) }) } else _createSymlink(srcpath, dstpath, type, callback) }) } function _createSymlink (srcpath, dstpath, type, callback) { symlinkPaths(srcpath, dstpath, (err, relative) => { if (err) return callback(err) srcpath = relative.toDst symlinkType(relative.toCwd, type, (err, type) => { if (err) return callback(err) const dir = path.dirname(dstpath) pathExists(dir, (err, dirExists) => { if (err) return callback(err) if (dirExists) return fs.symlink(srcpath, dstpath, type, callback) mkdirs(dir, err => { if (err) return callback(err) fs.symlink(srcpath, dstpath, type, callback) }) }) }) }) } function createSymlinkSync (srcpath, dstpath, type) { let stats try { stats = fs.lstatSync(dstpath) } catch {} if (stats && stats.isSymbolicLink()) { const srcStat = fs.statSync(srcpath) const dstStat = fs.statSync(dstpath) if (areIdentical(srcStat, dstStat)) return } const relative = symlinkPathsSync(srcpath, dstpath) srcpath = relative.toDst type = symlinkTypeSync(relative.toCwd, type) const dir = path.dirname(dstpath) const exists = fs.existsSync(dir) if (exists) return fs.symlinkSync(srcpath, dstpath, type) mkdirsSync(dir) return fs.symlinkSync(srcpath, dstpath, type) } module.exports = { createSymlink: u(createSymlink), createSymlinkSync } /***/ }), /***/ "./node_modules/fs-extra/lib/fs/index.js": /*!***********************************************!*\ !*** ./node_modules/fs-extra/lib/fs/index.js ***! \***********************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; // This is adapted from https://github.com/normalize/mz // Copyright (c) 2014-2016 Jonathan Ong me@jongleberry.com and Contributors const u = (__webpack_require__(/*! universalify */ "./node_modules/universalify/index.js").fromCallback) const fs = __webpack_require__(/*! graceful-fs */ "./node_modules/graceful-fs/graceful-fs.js") const api = [ 'access', 'appendFile', 'chmod', 'chown', 'close', 'copyFile', 'fchmod', 'fchown', 'fdatasync', 'fstat', 'fsync', 'ftruncate', 'futimes', 'lchmod', 'lchown', 'link', 'lstat', 'mkdir', 'mkdtemp', 'open', 'opendir', 'readdir', 'readFile', 'readlink', 'realpath', 'rename', 'rm', 'rmdir', 'stat', 'symlink', 'truncate', 'unlink', 'utimes', 'writeFile' ].filter(key => { // Some commands are not available on some systems. Ex: // fs.opendir was added in Node.js v12.12.0 // fs.rm was added in Node.js v14.14.0 // fs.lchown is not available on at least some Linux return typeof fs[key] === 'function' }) // Export cloned fs: Object.assign(exports, fs) // Universalify async methods: api.forEach(method => { exports[method] = u(fs[method]) }) // We differ from mz/fs in that we still ship the old, broken, fs.exists() // since we are a drop-in replacement for the native module exports.exists = function (filename, callback) { if (typeof callback === 'function') { return fs.exists(filename, callback) } return new Promise(resolve => { return fs.exists(filename, resolve) }) } // fs.read(), fs.write(), & fs.writev() need special treatment due to multiple callback args exports.read = function (fd, buffer, offset, length, position, callback) { if (typeof callback === 'function') { return fs.read(fd, buffer, offset, length, position, callback) } return new Promise((resolve, reject) => { fs.read(fd, buffer, offset, length, position, (err, bytesRead, buffer) => { if (err) return reject(err) resolve({ bytesRead, buffer }) }) }) } // Function signature can be // fs.write(fd, buffer[, offset[, length[, position]]], callback) // OR // fs.write(fd, string[, position[, encoding]], callback) // We need to handle both cases, so we use ...args exports.write = function (fd, buffer, ...args) { if (typeof args[args.length - 1] === 'function') { return fs.write(fd, buffer, ...args) } return new Promise((resolve, reject) => { fs.write(fd, buffer, ...args, (err, bytesWritten, buffer) => { if (err) return reject(err) resolve({ bytesWritten, buffer }) }) }) } // fs.writev only available in Node v12.9.0+ if (typeof fs.writev === 'function') { // Function signature is // s.writev(fd, buffers[, position], callback) // We need to handle the optional arg, so we use ...args exports.writev = function (fd, buffers, ...args) { if (typeof args[args.length - 1] === 'function') { return fs.writev(fd, buffers, ...args) } return new Promise((resolve, reject) => { fs.writev(fd, buffers, ...args, (err, bytesWritten, buffers) => { if (err) return reject(err) resolve({ bytesWritten, buffers }) }) }) } } // fs.realpath.native sometimes not available if fs is monkey-patched if (typeof fs.realpath.native === 'function') { exports.realpath.native = u(fs.realpath.native) } else { process.emitWarning( 'fs.realpath.native is not a function. Is fs being monkey-patched?', 'Warning', 'fs-extra-WARN0003' ) } /***/ }), /***/ "./node_modules/fs-extra/lib/index.js": /*!********************************************!*\ !*** ./node_modules/fs-extra/lib/index.js ***! \********************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; module.exports = { // Export promiseified graceful-fs: ...__webpack_require__(/*! ./fs */ "./node_modules/fs-extra/lib/fs/index.js"), // Export extra methods: ...__webpack_require__(/*! ./copy */ "./node_modules/fs-extra/lib/copy/index.js"), ...__webpack_require__(/*! ./empty */ "./node_modules/fs-extra/lib/empty/index.js"), ...__webpack_require__(/*! ./ensure */ "./node_modules/fs-extra/lib/ensure/index.js"), ...__webpack_require__(/*! ./json */ "./node_modules/fs-extra/lib/json/index.js"), ...__webpack_require__(/*! ./mkdirs */ "./node_modules/fs-extra/lib/mkdirs/index.js"), ...__webpack_require__(/*! ./move */ "./node_modules/fs-extra/lib/move/index.js"), ...__webpack_require__(/*! ./output-file */ "./node_modules/fs-extra/lib/output-file/index.js"), ...__webpack_require__(/*! ./path-exists */ "./node_modules/fs-extra/lib/path-exists/index.js"), ...__webpack_require__(/*! ./remove */ "./node_modules/fs-extra/lib/remove/index.js") } /***/ }), /***/ "./node_modules/fs-extra/lib/json/index.js": /*!*************************************************!*\ !*** ./node_modules/fs-extra/lib/json/index.js ***! \*************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const u = (__webpack_require__(/*! universalify */ "./node_modules/universalify/index.js").fromPromise) const jsonFile = __webpack_require__(/*! ./jsonfile */ "./node_modules/fs-extra/lib/json/jsonfile.js") jsonFile.outputJson = u(__webpack_require__(/*! ./output-json */ "./node_modules/fs-extra/lib/json/output-json.js")) jsonFile.outputJsonSync = __webpack_require__(/*! ./output-json-sync */ "./node_modules/fs-extra/lib/json/output-json-sync.js") // aliases jsonFile.outputJSON = jsonFile.outputJson jsonFile.outputJSONSync = jsonFile.outputJsonSync jsonFile.writeJSON = jsonFile.writeJson jsonFile.writeJSONSync = jsonFile.writeJsonSync jsonFile.readJSON = jsonFile.readJson jsonFile.readJSONSync = jsonFile.readJsonSync module.exports = jsonFile /***/ }), /***/ "./node_modules/fs-extra/lib/json/jsonfile.js": /*!****************************************************!*\ !*** ./node_modules/fs-extra/lib/json/jsonfile.js ***! \****************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const jsonFile = __webpack_require__(/*! jsonfile */ "./node_modules/jsonfile/index.js") module.exports = { // jsonfile exports readJson: jsonFile.readFile, readJsonSync: jsonFile.readFileSync, writeJson: jsonFile.writeFile, writeJsonSync: jsonFile.writeFileSync } /***/ }), /***/ "./node_modules/fs-extra/lib/json/output-json-sync.js": /*!************************************************************!*\ !*** ./node_modules/fs-extra/lib/json/output-json-sync.js ***! \************************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const { stringify } = __webpack_require__(/*! jsonfile/utils */ "./node_modules/jsonfile/utils.js") const { outputFileSync } = __webpack_require__(/*! ../output-file */ "./node_modules/fs-extra/lib/output-file/index.js") function outputJsonSync (file, data, options) { const str = stringify(data, options) outputFileSync(file, str, options) } module.exports = outputJsonSync /***/ }), /***/ "./node_modules/fs-extra/lib/json/output-json.js": /*!*******************************************************!*\ !*** ./node_modules/fs-extra/lib/json/output-json.js ***! \*******************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const { stringify } = __webpack_require__(/*! jsonfile/utils */ "./node_modules/jsonfile/utils.js") const { outputFile } = __webpack_require__(/*! ../output-file */ "./node_modules/fs-extra/lib/output-file/index.js") async function outputJson (file, data, options = {}) { const str = stringify(data, options) await outputFile(file, str, options) } module.exports = outputJson /***/ }), /***/ "./node_modules/fs-extra/lib/mkdirs/index.js": /*!***************************************************!*\ !*** ./node_modules/fs-extra/lib/mkdirs/index.js ***! \***************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const u = (__webpack_require__(/*! universalify */ "./node_modules/universalify/index.js").fromPromise) const { makeDir: _makeDir, makeDirSync } = __webpack_require__(/*! ./make-dir */ "./node_modules/fs-extra/lib/mkdirs/make-dir.js") const makeDir = u(_makeDir) module.exports = { mkdirs: makeDir, mkdirsSync: makeDirSync, // alias mkdirp: makeDir, mkdirpSync: makeDirSync, ensureDir: makeDir, ensureDirSync: makeDirSync } /***/ }), /***/ "./node_modules/fs-extra/lib/mkdirs/make-dir.js": /*!******************************************************!*\ !*** ./node_modules/fs-extra/lib/mkdirs/make-dir.js ***! \******************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const fs = __webpack_require__(/*! ../fs */ "./node_modules/fs-extra/lib/fs/index.js") const { checkPath } = __webpack_require__(/*! ./utils */ "./node_modules/fs-extra/lib/mkdirs/utils.js") const getMode = options => { const defaults = { mode: 0o777 } if (typeof options === 'number') return options return ({ ...defaults, ...options }).mode } module.exports.makeDir = async (dir, options) => { checkPath(dir) return fs.mkdir(dir, { mode: getMode(options), recursive: true }) } module.exports.makeDirSync = (dir, options) => { checkPath(dir) return fs.mkdirSync(dir, { mode: getMode(options), recursive: true }) } /***/ }), /***/ "./node_modules/fs-extra/lib/mkdirs/utils.js": /*!***************************************************!*\ !*** ./node_modules/fs-extra/lib/mkdirs/utils.js ***! \***************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; // Adapted from https://github.com/sindresorhus/make-dir // Copyright (c) Sindre Sorhus (sindresorhus.com) // 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. const path = __webpack_require__(/*! path */ "path") // https://github.com/nodejs/node/issues/8987 // https://github.com/libuv/libuv/pull/1088 module.exports.checkPath = function checkPath (pth) { if (process.platform === 'win32') { const pathHasInvalidWinCharacters = /[<>:"|?*]/.test(pth.replace(path.parse(pth).root, '')) if (pathHasInvalidWinCharacters) { const error = new Error(`Path contains invalid characters: ${pth}`) error.code = 'EINVAL' throw error } } } /***/ }), /***/ "./node_modules/fs-extra/lib/move/index.js": /*!*************************************************!*\ !*** ./node_modules/fs-extra/lib/move/index.js ***! \*************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const u = (__webpack_require__(/*! universalify */ "./node_modules/universalify/index.js").fromCallback) module.exports = { move: u(__webpack_require__(/*! ./move */ "./node_modules/fs-extra/lib/move/move.js")), moveSync: __webpack_require__(/*! ./move-sync */ "./node_modules/fs-extra/lib/move/move-sync.js") } /***/ }), /***/ "./node_modules/fs-extra/lib/move/move-sync.js": /*!*****************************************************!*\ !*** ./node_modules/fs-extra/lib/move/move-sync.js ***! \*****************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const fs = __webpack_require__(/*! graceful-fs */ "./node_modules/graceful-fs/graceful-fs.js") const path = __webpack_require__(/*! path */ "path") const copySync = (__webpack_require__(/*! ../copy */ "./node_modules/fs-extra/lib/copy/index.js").copySync) const removeSync = (__webpack_require__(/*! ../remove */ "./node_modules/fs-extra/lib/remove/index.js").removeSync) const mkdirpSync = (__webpack_require__(/*! ../mkdirs */ "./node_modules/fs-extra/lib/mkdirs/index.js").mkdirpSync) const stat = __webpack_require__(/*! ../util/stat */ "./node_modules/fs-extra/lib/util/stat.js") function moveSync (src, dest, opts) { opts = opts || {} const overwrite = opts.overwrite || opts.clobber || false const { srcStat, isChangingCase = false } = stat.checkPathsSync(src, dest, 'move', opts) stat.checkParentPathsSync(src, srcStat, dest, 'move') if (!isParentRoot(dest)) mkdirpSync(path.dirname(dest)) return doRename(src, dest, overwrite, isChangingCase) } function isParentRoot (dest) { const parent = path.dirname(dest) const parsedPath = path.parse(parent) return parsedPath.root === parent } function doRename (src, dest, overwrite, isChangingCase) { if (isChangingCase) return rename(src, dest, overwrite) if (overwrite) { removeSync(dest) return rename(src, dest, overwrite) } if (fs.existsSync(dest)) throw new Error('dest already exists.') return rename(src, dest, overwrite) } function rename (src, dest, overwrite) { try { fs.renameSync(src, dest) } catch (err) { if (err.code !== 'EXDEV') throw err return moveAcrossDevice(src, dest, overwrite) } } function moveAcrossDevice (src, dest, overwrite) { const opts = { overwrite, errorOnExist: true } copySync(src, dest, opts) return removeSync(src) } module.exports = moveSync /***/ }), /***/ "./node_modules/fs-extra/lib/move/move.js": /*!************************************************!*\ !*** ./node_modules/fs-extra/lib/move/move.js ***! \************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const fs = __webpack_require__(/*! graceful-fs */ "./node_modules/graceful-fs/graceful-fs.js") const path = __webpack_require__(/*! path */ "path") const copy = (__webpack_require__(/*! ../copy */ "./node_modules/fs-extra/lib/copy/index.js").copy) const remove = (__webpack_require__(/*! ../remove */ "./node_modules/fs-extra/lib/remove/index.js").remove) const mkdirp = (__webpack_require__(/*! ../mkdirs */ "./node_modules/fs-extra/lib/mkdirs/index.js").mkdirp) const pathExists = (__webpack_require__(/*! ../path-exists */ "./node_modules/fs-extra/lib/path-exists/index.js").pathExists) const stat = __webpack_require__(/*! ../util/stat */ "./node_modules/fs-extra/lib/util/stat.js") function move (src, dest, opts, cb) { if (typeof opts === 'function') { cb = opts opts = {} } opts = opts || {} const overwrite = opts.overwrite || opts.clobber || false stat.checkPaths(src, dest, 'move', opts, (err, stats) => { if (err) return cb(err) const { srcStat, isChangingCase = false } = stats stat.checkParentPaths(src, srcStat, dest, 'move', err => { if (err) return cb(err) if (isParentRoot(dest)) return doRename(src, dest, overwrite, isChangingCase, cb) mkdirp(path.dirname(dest), err => { if (err) return cb(err) return doRename(src, dest, overwrite, isChangingCase, cb) }) }) }) } function isParentRoot (dest) { const parent = path.dirname(dest) const parsedPath = path.parse(parent) return parsedPath.root === parent } function doRename (src, dest, overwrite, isChangingCase, cb) { if (isChangingCase) return rename(src, dest, overwrite, cb) if (overwrite) { return remove(dest, err => { if (err) return cb(err) return rename(src, dest, overwrite, cb) }) } pathExists(dest, (err, destExists) => { if (err) return cb(err) if (destExists) return cb(new Error('dest already exists.')) return rename(src, dest, overwrite, cb) }) } function rename (src, dest, overwrite, cb) { fs.rename(src, dest, err => { if (!err) return cb() if (err.code !== 'EXDEV') return cb(err) return moveAcrossDevice(src, dest, overwrite, cb) }) } function moveAcrossDevice (src, dest, overwrite, cb) { const opts = { overwrite, errorOnExist: true } copy(src, dest, opts, err => { if (err) return cb(err) return remove(src, cb) }) } module.exports = move /***/ }), /***/ "./node_modules/fs-extra/lib/output-file/index.js": /*!********************************************************!*\ !*** ./node_modules/fs-extra/lib/output-file/index.js ***! \********************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const u = (__webpack_require__(/*! universalify */ "./node_modules/universalify/index.js").fromCallback) const fs = __webpack_require__(/*! graceful-fs */ "./node_modules/graceful-fs/graceful-fs.js") const path = __webpack_require__(/*! path */ "path") const mkdir = __webpack_require__(/*! ../mkdirs */ "./node_modules/fs-extra/lib/mkdirs/index.js") const pathExists = (__webpack_require__(/*! ../path-exists */ "./node_modules/fs-extra/lib/path-exists/index.js").pathExists) function outputFile (file, data, encoding, callback) { if (typeof encoding === 'function') { callback = encoding encoding = 'utf8' } const dir = path.dirname(file) pathExists(dir, (err, itDoes) => { if (err) return callback(err) if (itDoes) return fs.writeFile(file, data, encoding, callback) mkdir.mkdirs(dir, err => { if (err) return callback(err) fs.writeFile(file, data, encoding, callback) }) }) } function outputFileSync (file, ...args) { const dir = path.dirname(file) if (fs.existsSync(dir)) { return fs.writeFileSync(file, ...args) } mkdir.mkdirsSync(dir) fs.writeFileSync(file, ...args) } module.exports = { outputFile: u(outputFile), outputFileSync } /***/ }), /***/ "./node_modules/fs-extra/lib/path-exists/index.js": /*!********************************************************!*\ !*** ./node_modules/fs-extra/lib/path-exists/index.js ***! \********************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const u = (__webpack_require__(/*! universalify */ "./node_modules/universalify/index.js").fromPromise) const fs = __webpack_require__(/*! ../fs */ "./node_modules/fs-extra/lib/fs/index.js") function pathExists (path) { return fs.access(path).then(() => true).catch(() => false) } module.exports = { pathExists: u(pathExists), pathExistsSync: fs.existsSync } /***/ }), /***/ "./node_modules/fs-extra/lib/remove/index.js": /*!***************************************************!*\ !*** ./node_modules/fs-extra/lib/remove/index.js ***! \***************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const fs = __webpack_require__(/*! graceful-fs */ "./node_modules/graceful-fs/graceful-fs.js") const u = (__webpack_require__(/*! universalify */ "./node_modules/universalify/index.js").fromCallback) const rimraf = __webpack_require__(/*! ./rimraf */ "./node_modules/fs-extra/lib/remove/rimraf.js") function remove (path, callback) { // Node 14.14.0+ if (fs.rm) return fs.rm(path, { recursive: true, force: true }, callback) rimraf(path, callback) } function removeSync (path) { // Node 14.14.0+ if (fs.rmSync) return fs.rmSync(path, { recursive: true, force: true }) rimraf.sync(path) } module.exports = { remove: u(remove), removeSync } /***/ }), /***/ "./node_modules/fs-extra/lib/remove/rimraf.js": /*!****************************************************!*\ !*** ./node_modules/fs-extra/lib/remove/rimraf.js ***! \****************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const fs = __webpack_require__(/*! graceful-fs */ "./node_modules/graceful-fs/graceful-fs.js") const path = __webpack_require__(/*! path */ "path") const assert = __webpack_require__(/*! assert */ "assert") const isWindows = (process.platform === 'win32') function defaults (options) { const methods = [ 'unlink', 'chmod', 'stat', 'lstat', 'rmdir', 'readdir' ] methods.forEach(m => { options[m] = options[m] || fs[m] m = m + 'Sync' options[m] = options[m] || fs[m] }) options.maxBusyTries = options.maxBusyTries || 3 } function rimraf (p, options, cb) { let busyTries = 0 if (typeof options === 'function') { cb = options options = {} } assert(p, 'rimraf: missing path') assert.strictEqual(typeof p, 'string', 'rimraf: path should be a string') assert.strictEqual(typeof cb, 'function', 'rimraf: callback function required') assert(options, 'rimraf: invalid options argument provided') assert.strictEqual(typeof options, 'object', 'rimraf: options should be object') defaults(options) rimraf_(p, options, function CB (er) { if (er) { if ((er.code === 'EBUSY' || er.code === 'ENOTEMPTY' || er.code === 'EPERM') && busyTries < options.maxBusyTries) { busyTries++ const time = busyTries * 100 // try again, with the same exact callback as this one. return setTimeout(() => rimraf_(p, options, CB), time) } // already gone if (er.code === 'ENOENT') er = null } cb(er) }) } // Two possible strategies. // 1. Assume it's a file. unlink it, then do the dir stuff on EPERM or EISDIR // 2. Assume it's a directory. readdir, then do the file stuff on ENOTDIR // // Both result in an extra syscall when you guess wrong. However, there // are likely far more normal files in the world than directories. This // is based on the assumption that a the average number of files per // directory is >= 1. // // If anyone ever complains about this, then I guess the strategy could // be made configurable somehow. But until then, YAGNI. function rimraf_ (p, options, cb) { assert(p) assert(options) assert(typeof cb === 'function') // sunos lets the root user unlink directories, which is... weird. // so we have to lstat here and make sure it's not a dir. options.lstat(p, (er, st) => { if (er && er.code === 'ENOENT') { return cb(null) } // Windows can EPERM on stat. Life is suffering. if (er && er.code === 'EPERM' && isWindows) { return fixWinEPERM(p, options, er, cb) } if (st && st.isDirectory()) { return rmdir(p, options, er, cb) } options.unlink(p, er => { if (er) { if (er.code === 'ENOENT') { return cb(null) } if (er.code === 'EPERM') { return (isWindows) ? fixWinEPERM(p, options, er, cb) : rmdir(p, options, er, cb) } if (er.code === 'EISDIR') { return rmdir(p, options, er, cb) } } return cb(er) }) }) } function fixWinEPERM (p, options, er, cb) { assert(p) assert(options) assert(typeof cb === 'function') options.chmod(p, 0o666, er2 => { if (er2) { cb(er2.code === 'ENOENT' ? null : er) } else { options.stat(p, (er3, stats) => { if (er3) { cb(er3.code === 'ENOENT' ? null : er) } else if (stats.isDirectory()) { rmdir(p, options, er, cb) } else { options.unlink(p, cb) } }) } }) } function fixWinEPERMSync (p, options, er) { let stats assert(p) assert(options) try { options.chmodSync(p, 0o666) } catch (er2) { if (er2.code === 'ENOENT') { return } else { throw er } } try { stats = options.statSync(p) } catch (er3) { if (er3.code === 'ENOENT') { return } else { throw er } } if (stats.isDirectory()) { rmdirSync(p, options, er) } else { options.unlinkSync(p) } } function rmdir (p, options, originalEr, cb) { assert(p) assert(options) assert(typeof cb === 'function') // try to rmdir first, and only readdir on ENOTEMPTY or EEXIST (SunOS) // if we guessed wrong, and it's not a directory, then // raise the original error. options.rmdir(p, er => { if (er && (er.code === 'ENOTEMPTY' || er.code === 'EEXIST' || er.code === 'EPERM')) { rmkids(p, options, cb) } else if (er && er.code === 'ENOTDIR') { cb(originalEr) } else { cb(er) } }) } function rmkids (p, options, cb) { assert(p) assert(options) assert(typeof cb === 'function') options.readdir(p, (er, files) => { if (er) return cb(er) let n = files.length let errState if (n === 0) return options.rmdir(p, cb) files.forEach(f => { rimraf(path.join(p, f), options, er => { if (errState) { return } if (er) return cb(errState = er) if (--n === 0) { options.rmdir(p, cb) } }) }) }) } // this looks simpler, and is strictly *faster*, but will // tie up the JavaScript thread and fail on excessively // deep directory trees. function rimrafSync (p, options) { let st options = options || {} defaults(options) assert(p, 'rimraf: missing path') assert.strictEqual(typeof p, 'string', 'rimraf: path should be a string') assert(options, 'rimraf: missing options') assert.strictEqual(typeof options, 'object', 'rimraf: options should be object') try { st = options.lstatSync(p) } catch (er) { if (er.code === 'ENOENT') { return } // Windows can EPERM on stat. Life is suffering. if (er.code === 'EPERM' && isWindows) { fixWinEPERMSync(p, options, er) } } try { // sunos lets the root user unlink directories, which is... weird. if (st && st.isDirectory()) { rmdirSync(p, options, null) } else { options.unlinkSync(p) } } catch (er) { if (er.code === 'ENOENT') { return } else if (er.code === 'EPERM') { return isWindows ? fixWinEPERMSync(p, options, er) : rmdirSync(p, options, er) } else if (er.code !== 'EISDIR') { throw er } rmdirSync(p, options, er) } } function rmdirSync (p, options, originalEr) { assert(p) assert(options) try { options.rmdirSync(p) } catch (er) { if (er.code === 'ENOTDIR') { throw originalEr } else if (er.code === 'ENOTEMPTY' || er.code === 'EEXIST' || er.code === 'EPERM') { rmkidsSync(p, options) } else if (er.code !== 'ENOENT') { throw er } } } function rmkidsSync (p, options) { assert(p) assert(options) options.readdirSync(p).forEach(f => rimrafSync(path.join(p, f), options)) if (isWindows) { // We only end up here once we got ENOTEMPTY at least once, and // at this point, we are guaranteed to have removed all the kids. // So, we know that it won't be ENOENT or ENOTDIR or anything else. // try really hard to delete stuff on windows, because it has a // PROFOUNDLY annoying habit of not closing handles promptly when // files are deleted, resulting in spurious ENOTEMPTY errors. const startTime = Date.now() do { try { const ret = options.rmdirSync(p, options) return ret } catch {} } while (Date.now() - startTime < 500) // give up after 500ms } else { const ret = options.rmdirSync(p, options) return ret } } module.exports = rimraf rimraf.sync = rimrafSync /***/ }), /***/ "./node_modules/fs-extra/lib/util/stat.js": /*!************************************************!*\ !*** ./node_modules/fs-extra/lib/util/stat.js ***! \************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const fs = __webpack_require__(/*! ../fs */ "./node_modules/fs-extra/lib/fs/index.js") const path = __webpack_require__(/*! path */ "path") const util = __webpack_require__(/*! util */ "util") function getStats (src, dest, opts) { const statFunc = opts.dereference ? (file) => fs.stat(file, { bigint: true }) : (file) => fs.lstat(file, { bigint: true }) return Promise.all([ statFunc(src), statFunc(dest).catch(err => { if (err.code === 'ENOENT') return null throw err }) ]).then(([srcStat, destStat]) => ({ srcStat, destStat })) } function getStatsSync (src, dest, opts) { let destStat const statFunc = opts.dereference ? (file) => fs.statSync(file, { bigint: true }) : (file) => fs.lstatSync(file, { bigint: true }) const srcStat = statFunc(src) try { destStat = statFunc(dest) } catch (err) { if (err.code === 'ENOENT') return { srcStat, destStat: null } throw err } return { srcStat, destStat } } function checkPaths (src, dest, funcName, opts, cb) { util.callbackify(getStats)(src, dest, opts, (err, stats) => { if (err) return cb(err) const { srcStat, destStat } = stats if (destStat) { if (areIdentical(srcStat, destStat)) { const srcBaseName = path.basename(src) const destBaseName = path.basename(dest) if (funcName === 'move' && srcBaseName !== destBaseName && srcBaseName.toLowerCase() === destBaseName.toLowerCase()) { return cb(null, { srcStat, destStat, isChangingCase: true }) } return cb(new Error('Source and destination must not be the same.')) } if (srcStat.isDirectory() && !destStat.isDirectory()) { return cb(new Error(`Cannot overwrite non-directory '${dest}' with directory '${src}'.`)) } if (!srcStat.isDirectory() && destStat.isDirectory()) { return cb(new Error(`Cannot overwrite directory '${dest}' with non-directory '${src}'.`)) } } if (srcStat.isDirectory() && isSrcSubdir(src, dest)) { return cb(new Error(errMsg(src, dest, funcName))) } return cb(null, { srcStat, destStat }) }) } function checkPathsSync (src, dest, funcName, opts) { const { srcStat, destStat } = getStatsSync(src, dest, opts) if (destStat) { if (areIdentical(srcStat, destStat)) { const srcBaseName = path.basename(src) const destBaseName = path.basename(dest) if (funcName === 'move' && srcBaseName !== destBaseName && srcBaseName.toLowerCase() === destBaseName.toLowerCase()) { return { srcStat, destStat, isChangingCase: true } } throw new Error('Source and destination must not be the same.') } if (srcStat.isDirectory() && !destStat.isDirectory()) { throw new Error(`Cannot overwrite non-directory '${dest}' with directory '${src}'.`) } if (!srcStat.isDirectory() && destStat.isDirectory()) { throw new Error(`Cannot overwrite directory '${dest}' with non-directory '${src}'.`) } } if (srcStat.isDirectory() && isSrcSubdir(src, dest)) { throw new Error(errMsg(src, dest, funcName)) } return { srcStat, destStat } } // recursively check if dest parent is a subdirectory of src. // It works for all file types including symlinks since it // checks the src and dest inodes. It starts from the deepest // parent and stops once it reaches the src parent or the root path. function checkParentPaths (src, srcStat, dest, funcName, cb) { const srcParent = path.resolve(path.dirname(src)) const destParent = path.resolve(path.dirname(dest)) if (destParent === srcParent || destParent === path.parse(destParent).root) return cb() fs.stat(destParent, { bigint: true }, (err, destStat) => { if (err) { if (err.code === 'ENOENT') return cb() return cb(err) } if (areIdentical(srcStat, destStat)) { return cb(new Error(errMsg(src, dest, funcName))) } return checkParentPaths(src, srcStat, destParent, funcName, cb) }) } function checkParentPathsSync (src, srcStat, dest, funcName) { const srcParent = path.resolve(path.dirname(src)) const destParent = path.resolve(path.dirname(dest)) if (destParent === srcParent || destParent === path.parse(destParent).root) return let destStat try { destStat = fs.statSync(destParent, { bigint: true }) } catch (err) { if (err.code === 'ENOENT') return throw err } if (areIdentical(srcStat, destStat)) { throw new Error(errMsg(src, dest, funcName)) } return checkParentPathsSync(src, srcStat, destParent, funcName) } function areIdentical (srcStat, destStat) { return destStat.ino && destStat.dev && destStat.ino === srcStat.ino && destStat.dev === srcStat.dev } // return true if dest is a subdir of src, otherwise false. // It only checks the path strings. function isSrcSubdir (src, dest) { const srcArr = path.resolve(src).split(path.sep).filter(i => i) const destArr = path.resolve(dest).split(path.sep).filter(i => i) return srcArr.reduce((acc, cur, i) => acc && destArr[i] === cur, true) } function errMsg (src, dest, funcName) { return `Cannot ${funcName} '${src}' to a subdirectory of itself, '${dest}'.` } module.exports = { checkPaths, checkPathsSync, checkParentPaths, checkParentPathsSync, isSrcSubdir, areIdentical } /***/ }), /***/ "./node_modules/fs-extra/lib/util/utimes.js": /*!**************************************************!*\ !*** ./node_modules/fs-extra/lib/util/utimes.js ***! \**************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const fs = __webpack_require__(/*! graceful-fs */ "./node_modules/graceful-fs/graceful-fs.js") function utimesMillis (path, atime, mtime, callback) { // if (!HAS_MILLIS_RES) return fs.utimes(path, atime, mtime, callback) fs.open(path, 'r+', (err, fd) => { if (err) return callback(err) fs.futimes(fd, atime, mtime, futimesErr => { fs.close(fd, closeErr => { if (callback) callback(futimesErr || closeErr) }) }) }) } function utimesMillisSync (path, atime, mtime) { const fd = fs.openSync(path, 'r+') fs.futimesSync(fd, atime, mtime) return fs.closeSync(fd) } module.exports = { utimesMillis, utimesMillisSync } /***/ }), /***/ "./node_modules/fs.realpath/index.js": /*!*******************************************!*\ !*** ./node_modules/fs.realpath/index.js ***! \*******************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { module.exports = realpath realpath.realpath = realpath realpath.sync = realpathSync realpath.realpathSync = realpathSync realpath.monkeypatch = monkeypatch realpath.unmonkeypatch = unmonkeypatch var fs = __webpack_require__(/*! fs */ "fs") var origRealpath = fs.realpath var origRealpathSync = fs.realpathSync var version = process.version var ok = /^v[0-5]\./.test(version) var old = __webpack_require__(/*! ./old.js */ "./node_modules/fs.realpath/old.js") function newError (er) { return er && er.syscall === 'realpath' && ( er.code === 'ELOOP' || er.code === 'ENOMEM' || er.code === 'ENAMETOOLONG' ) } function realpath (p, cache, cb) { if (ok) { return origRealpath(p, cache, cb) } if (typeof cache === 'function') { cb = cache cache = null } origRealpath(p, cache, function (er, result) { if (newError(er)) { old.realpath(p, cache, cb) } else { cb(er, result) } }) } function realpathSync (p, cache) { if (ok) { return origRealpathSync(p, cache) } try { return origRealpathSync(p, cache) } catch (er) { if (newError(er)) { return old.realpathSync(p, cache) } else { throw er } } } function monkeypatch () { fs.realpath = realpath fs.realpathSync = realpathSync } function unmonkeypatch () { fs.realpath = origRealpath fs.realpathSync = origRealpathSync } /***/ }), /***/ "./node_modules/fs.realpath/old.js": /*!*****************************************!*\ !*** ./node_modules/fs.realpath/old.js ***! \*****************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { // Copyright Joyent, Inc. and other Node contributors. // // 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. var pathModule = __webpack_require__(/*! path */ "path"); var isWindows = process.platform === 'win32'; var fs = __webpack_require__(/*! fs */ "fs"); // JavaScript implementation of realpath, ported from node pre-v6 var DEBUG = process.env.NODE_DEBUG && /fs/.test(process.env.NODE_DEBUG); function rethrow() { // Only enable in debug mode. A backtrace uses ~1000 bytes of heap space and // is fairly slow to generate. var callback; if (DEBUG) { var backtrace = new Error; callback = debugCallback; } else callback = missingCallback; return callback; function debugCallback(err) { if (err) { backtrace.message = err.message; err = backtrace; missingCallback(err); } } function missingCallback(err) { if (err) { if (process.throwDeprecation) throw err; // Forgot a callback but don't know where? Use NODE_DEBUG=fs else if (!process.noDeprecation) { var msg = 'fs: missing callback ' + (err.stack || err.message); if (process.traceDeprecation) console.trace(msg); else console.error(msg); } } } } function maybeCallback(cb) { return typeof cb === 'function' ? cb : rethrow(); } var normalize = pathModule.normalize; // Regexp that finds the next partion of a (partial) path // result is [base_with_slash, base], e.g. ['somedir/', 'somedir'] if (isWindows) { var nextPartRe = /(.*?)(?:[\/\\]+|$)/g; } else { var nextPartRe = /(.*?)(?:[\/]+|$)/g; } // Regex to find the device root, including trailing slash. E.g. 'c:\\'. if (isWindows) { var splitRootRe = /^(?:[a-zA-Z]:|[\\\/]{2}[^\\\/]+[\\\/][^\\\/]+)?[\\\/]*/; } else { var splitRootRe = /^[\/]*/; } exports.realpathSync = function realpathSync(p, cache) { // make p is absolute p = pathModule.resolve(p); if (cache && Object.prototype.hasOwnProperty.call(cache, p)) { return cache[p]; } var original = p, seenLinks = {}, knownHard = {}; // current character position in p var pos; // the partial path so far, including a trailing slash if any var current; // the partial path without a trailing slash (except when pointing at a root) var base; // the partial path scanned in the previous round, with slash var previous; start(); function start() { // Skip over roots var m = splitRootRe.exec(p); pos = m[0].length; current = m[0]; base = m[0]; previous = ''; // On windows, check that the root exists. On unix there is no need. if (isWindows && !knownHard[base]) { fs.lstatSync(base); knownHard[base] = true; } } // walk down the path, swapping out linked pathparts for their real // values // NB: p.length changes. while (pos < p.length) { // find the next part nextPartRe.lastIndex = pos; var result = nextPartRe.exec(p); previous = current; current += result[0]; base = previous + result[1]; pos = nextPartRe.lastIndex; // continue if not a symlink if (knownHard[base] || (cache && cache[base] === base)) { continue; } var resolvedLink; if (cache && Object.prototype.hasOwnProperty.call(cache, base)) { // some known symbolic link. no need to stat again. resolvedLink = cache[base]; } else { var stat = fs.lstatSync(base); if (!stat.isSymbolicLink()) { knownHard[base] = true; if (cache) cache[base] = base; continue; } // read the link if it wasn't read before // dev/ino always return 0 on windows, so skip the check. var linkTarget = null; if (!isWindows) { var id = stat.dev.toString(32) + ':' + stat.ino.toString(32); if (seenLinks.hasOwnProperty(id)) { linkTarget = seenLinks[id]; } } if (linkTarget === null) { fs.statSync(base); linkTarget = fs.readlinkSync(base); } resolvedLink = pathModule.resolve(previous, linkTarget); // track this, if given a cache. if (cache) cache[base] = resolvedLink; if (!isWindows) seenLinks[id] = linkTarget; } // resolve the link, then start over p = pathModule.resolve(resolvedLink, p.slice(pos)); start(); } if (cache) cache[original] = p; return p; }; exports.realpath = function realpath(p, cache, cb) { if (typeof cb !== 'function') { cb = maybeCallback(cache); cache = null; } // make p is absolute p = pathModule.resolve(p); if (cache && Object.prototype.hasOwnProperty.call(cache, p)) { return process.nextTick(cb.bind(null, null, cache[p])); } var original = p, seenLinks = {}, knownHard = {}; // current character position in p var pos; // the partial path so far, including a trailing slash if any var current; // the partial path without a trailing slash (except when pointing at a root) var base; // the partial path scanned in the previous round, with slash var previous; start(); function start() { // Skip over roots var m = splitRootRe.exec(p); pos = m[0].length; current = m[0]; base = m[0]; previous = ''; // On windows, check that the root exists. On unix there is no need. if (isWindows && !knownHard[base]) { fs.lstat(base, function(err) { if (err) return cb(err); knownHard[base] = true; LOOP(); }); } else { process.nextTick(LOOP); } } // walk down the path, swapping out linked pathparts for their real // values function LOOP() { // stop if scanned past end of path if (pos >= p.length) { if (cache) cache[original] = p; return cb(null, p); } // find the next part nextPartRe.lastIndex = pos; var result = nextPartRe.exec(p); previous = current; current += result[0]; base = previous + result[1]; pos = nextPartRe.lastIndex; // continue if not a symlink if (knownHard[base] || (cache && cache[base] === base)) { return process.nextTick(LOOP); } if (cache && Object.prototype.hasOwnProperty.call(cache, base)) { // known symbolic link. no need to stat again. return gotResolvedLink(cache[base]); } return fs.lstat(base, gotStat); } function gotStat(err, stat) { if (err) return cb(err); // if not a symlink, skip to the next path part if (!stat.isSymbolicLink()) { knownHard[base] = true; if (cache) cache[base] = base; return process.nextTick(LOOP); } // stat & read the link if not read before // call gotTarget as soon as the link target is known // dev/ino always return 0 on windows, so skip the check. if (!isWindows) { var id = stat.dev.toString(32) + ':' + stat.ino.toString(32); if (seenLinks.hasOwnProperty(id)) { return gotTarget(null, seenLinks[id], base); } } fs.stat(base, function(err) { if (err) return cb(err); fs.readlink(base, function(err, target) { if (!isWindows) seenLinks[id] = target; gotTarget(err, target); }); }); } function gotTarget(err, target, base) { if (err) return cb(err); var resolvedLink = pathModule.resolve(previous, target); if (cache) cache[base] = resolvedLink; gotResolvedLink(resolvedLink); } function gotResolvedLink(resolvedLink) { // resolve the link, then start over p = pathModule.resolve(resolvedLink, p.slice(pos)); start(); } }; /***/ }), /***/ "./node_modules/gettext-extractor/dist/builder.js": /*!********************************************************!*\ !*** ./node_modules/gettext-extractor/dist/builder.js ***! \********************************************************/ /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.CatalogBuilder = void 0; class CatalogBuilder { constructor(stats) { this.stats = stats; this.contexts = {}; } static compareStrings(a, b) { return a.localeCompare(b); } static concatUnique(array, items) { array = array || []; for (let item of items || []) { if (array.indexOf(item) === -1) { array.push(item); } } return array; } static extendMessage(message, data) { message.text = typeof data.text === 'string' ? data.text : message.text; message.textPlural = typeof data.textPlural === 'string' ? data.textPlural : message.textPlural; message.context = typeof data.context === 'string' ? data.context : message.context; message.references = CatalogBuilder.concatUnique(message.references, data.references); message.comments = CatalogBuilder.concatUnique(message.comments, data.comments); return message; } static normalizeMessage(message) { return CatalogBuilder.extendMessage({ text: null, textPlural: null, context: null, references: [], comments: [] }, message); } addMessage(message) { message = CatalogBuilder.normalizeMessage(message); let context = this.getOrCreateContext(message.context || ''); if (context[message.text]) { if (message.textPlural && context[message.text].textPlural && context[message.text].textPlural !== message.textPlural) { throw new Error(`Incompatible plurals found for '${message.text}' ('${context[message.text].textPlural}' and '${message.textPlural}')`); } if (message.textPlural && !context[message.text].textPlural) { this.stats && this.stats.numberOfPluralMessages++; } CatalogBuilder.extendMessage(context[message.text], message); } else { context[message.text] = message; this.stats && this.stats.numberOfMessages++; if (message.textPlural) { this.stats && this.stats.numberOfPluralMessages++; } } this.stats && this.stats.numberOfMessageUsages++; } getMessages() { let messages = []; for (let context of Object.keys(this.contexts).sort(CatalogBuilder.compareStrings)) { messages = messages.concat(this.getMessagesByContext(context)); } return messages; } getContexts() { let contexts = []; for (let context of Object.keys(this.contexts).sort(CatalogBuilder.compareStrings)) { contexts.push({ name: context, messages: this.getMessagesByContext(context) }); } return contexts; } getMessagesByContext(context) { let messages = this.contexts[context]; if (!messages) { return []; } return Object.keys(messages).sort(CatalogBuilder.compareStrings).map(text => messages[text]); } getOrCreateContext(context) { if (!this.contexts[context]) { this.contexts[context] = {}; this.stats && this.stats.numberOfContexts++; } return this.contexts[context]; } } exports.CatalogBuilder = CatalogBuilder; /***/ }), /***/ "./node_modules/gettext-extractor/dist/extractor.js": /*!**********************************************************!*\ !*** ./node_modules/gettext-extractor/dist/extractor.js ***! \**********************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.GettextExtractor = void 0; const fs = __webpack_require__(/*! fs */ "fs"); const pofile = __webpack_require__(/*! pofile */ "./node_modules/pofile/lib/po.js"); const builder_1 = __webpack_require__(/*! ./builder */ "./node_modules/gettext-extractor/dist/builder.js"); const parser_1 = __webpack_require__(/*! ./js/parser */ "./node_modules/gettext-extractor/dist/js/parser.js"); const parser_2 = __webpack_require__(/*! ./html/parser */ "./node_modules/gettext-extractor/dist/html/parser.js"); const output_1 = __webpack_require__(/*! ./utils/output */ "./node_modules/gettext-extractor/dist/utils/output.js"); const validate_1 = __webpack_require__(/*! ./utils/validate */ "./node_modules/gettext-extractor/dist/utils/validate.js"); class GettextExtractor { constructor() { this.stats = { numberOfMessages: 0, numberOfPluralMessages: 0, numberOfMessageUsages: 0, numberOfContexts: 0, numberOfParsedFiles: 0, numberOfParsedFilesWithMessages: 0 }; this.builder = new builder_1.CatalogBuilder(this.stats); } createJsParser(extractors) { validate_1.Validate.optional.nonEmptyArray({ extractors }); return new parser_1.JsParser(this.builder, extractors, this.stats); } createHtmlParser(extractors) { validate_1.Validate.optional.nonEmptyArray({ extractors }); return new parser_2.HtmlParser(this.builder, extractors, this.stats); } addMessage(message) { validate_1.Validate.required.stringProperty(message, 'message.text'); validate_1.Validate.optional.stringProperty(message, 'message.textPlural'); validate_1.Validate.optional.stringProperty(message, 'message.context'); validate_1.Validate.optional.arrayProperty(message, 'message.references'); validate_1.Validate.optional.arrayProperty(message, 'message.comments'); this.builder.addMessage(message); } getMessages() { return this.builder.getMessages(); } getContexts() { return this.builder.getContexts(); } getMessagesByContext(context) { return this.builder.getMessagesByContext(context); } getPotString(headers = {}) { validate_1.Validate.optional.object({ headers }); let po = new pofile(); po.items = this.getPofileItems(); po.headers = Object.assign({ 'Content-Type': 'text/plain; charset=UTF-8' }, headers); return po.toString(); } savePotFile(fileName, headers) { validate_1.Validate.required.nonEmptyString({ fileName }); validate_1.Validate.optional.object({ headers }); fs.writeFileSync(fileName, this.getPotString(headers)); } savePotFileAsync(fileName, headers) { validate_1.Validate.required.nonEmptyString({ fileName }); validate_1.Validate.optional.object({ headers }); return new Promise((resolve, reject) => { fs.writeFile(fileName, this.getPotString(headers), (error) => { if (error) { return reject(error); } resolve(); }); }); } getStats() { return this.stats; } printStats() { new output_1.StatsOutput(this.getStats()).print(); } getPofileItems() { return this.getMessages().map(message => { let item = new pofile.Item(); item.msgid = message.text; item.msgid_plural = message.textPlural; item.msgctxt = message.context; item.references = message.references.sort((a, b) => a.localeCompare(b)); item.extractedComments = message.comments; return item; }); } } exports.GettextExtractor = GettextExtractor; /***/ }), /***/ "./node_modules/gettext-extractor/dist/html/extractors/common.js": /*!***********************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/html/extractors/common.js ***! \***********************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.validateOptions = void 0; const validate_1 = __webpack_require__(/*! ../../utils/validate */ "./node_modules/gettext-extractor/dist/utils/validate.js"); function validateOptions(options) { validate_1.Validate.optional.stringProperty(options, 'options.attributes.textPlural'); validate_1.Validate.optional.stringProperty(options, 'options.attributes.context'); validate_1.Validate.optional.stringProperty(options, 'options.attributes.comment'); } exports.validateOptions = validateOptions; /***/ }), /***/ "./node_modules/gettext-extractor/dist/html/extractors/factories/element.js": /*!**********************************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/html/extractors/factories/element.js ***! \**********************************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.elementExtractor = void 0; const selector_1 = __webpack_require__(/*! ../../selector */ "./node_modules/gettext-extractor/dist/html/selector.js"); const utils_1 = __webpack_require__(/*! ../../utils */ "./node_modules/gettext-extractor/dist/html/utils.js"); const content_1 = __webpack_require__(/*! ../../../utils/content */ "./node_modules/gettext-extractor/dist/utils/content.js"); function elementExtractor(selector, textExtractor, options = {}) { let selectors = new selector_1.ElementSelectorSet(selector); return (node, fileName, addMessage) => { if (typeof node.tagName !== 'string') { return; } let element = node; if (selectors.anyMatch(element)) { let context, textPlural, comments = [], contentOptions = content_1.getContentOptions(options, { trimWhiteSpace: true, preserveIndentation: false, replaceNewLines: false }); if (options.attributes && options.attributes.context) { context = utils_1.HtmlUtils.getNormalizedAttributeValue(element, options.attributes.context, contentOptions) || undefined; } if (options.attributes && options.attributes.textPlural) { textPlural = utils_1.HtmlUtils.getNormalizedAttributeValue(element, options.attributes.textPlural, contentOptions) || undefined; } if (options.attributes && options.attributes.comment) { let comment = utils_1.HtmlUtils.getNormalizedAttributeValue(element, options.attributes.comment, contentOptions); if (comment) { comments.push(comment); } } let text = textExtractor(element); if (typeof text === 'string') { addMessage({ text, context, textPlural, comments }); } } }; } exports.elementExtractor = elementExtractor; /***/ }), /***/ "./node_modules/gettext-extractor/dist/html/extractors/factories/elementAttribute.js": /*!*******************************************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/html/extractors/factories/elementAttribute.js ***! \*******************************************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.elementAttributeExtractor = void 0; const utils_1 = __webpack_require__(/*! ../../utils */ "./node_modules/gettext-extractor/dist/html/utils.js"); const element_1 = __webpack_require__(/*! ./element */ "./node_modules/gettext-extractor/dist/html/extractors/factories/element.js"); const validate_1 = __webpack_require__(/*! ../../../utils/validate */ "./node_modules/gettext-extractor/dist/utils/validate.js"); const common_1 = __webpack_require__(/*! ../common */ "./node_modules/gettext-extractor/dist/html/extractors/common.js"); const content_1 = __webpack_require__(/*! ../../../utils/content */ "./node_modules/gettext-extractor/dist/utils/content.js"); function elementAttributeExtractor(selector, textAttribute, options = {}) { validate_1.Validate.required.nonEmptyString({ selector, textAttribute }); common_1.validateOptions(options); content_1.validateContentOptions(options); let contentOptions = content_1.getContentOptions(options, { trimWhiteSpace: false, preserveIndentation: true, replaceNewLines: false }); return element_1.elementExtractor(selector, element => { return utils_1.HtmlUtils.getNormalizedAttributeValue(element, textAttribute, contentOptions); }, options); } exports.elementAttributeExtractor = elementAttributeExtractor; /***/ }), /***/ "./node_modules/gettext-extractor/dist/html/extractors/factories/elementContent.js": /*!*****************************************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/html/extractors/factories/elementContent.js ***! \*****************************************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.elementContentExtractor = void 0; const utils_1 = __webpack_require__(/*! ../../utils */ "./node_modules/gettext-extractor/dist/html/utils.js"); const validate_1 = __webpack_require__(/*! ../../../utils/validate */ "./node_modules/gettext-extractor/dist/utils/validate.js"); const content_1 = __webpack_require__(/*! ../../../utils/content */ "./node_modules/gettext-extractor/dist/utils/content.js"); const common_1 = __webpack_require__(/*! ../common */ "./node_modules/gettext-extractor/dist/html/extractors/common.js"); const element_1 = __webpack_require__(/*! ./element */ "./node_modules/gettext-extractor/dist/html/extractors/factories/element.js"); function elementContentExtractor(selector, options = {}) { validate_1.Validate.required.nonEmptyString({ selector }); common_1.validateOptions(options); content_1.validateContentOptions(options); let contentOptions = content_1.getContentOptions(options, { trimWhiteSpace: true, preserveIndentation: false, replaceNewLines: false }); return element_1.elementExtractor(selector, element => { return utils_1.HtmlUtils.getElementContent(element, contentOptions); }, options); } exports.elementContentExtractor = elementContentExtractor; /***/ }), /***/ "./node_modules/gettext-extractor/dist/html/extractors/factories/embeddedAttributeJs.js": /*!**********************************************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/html/extractors/factories/embeddedAttributeJs.js ***! \**********************************************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.embeddedAttributeJsExtractor = void 0; const validate_1 = __webpack_require__(/*! ../../../utils/validate */ "./node_modules/gettext-extractor/dist/utils/validate.js"); function embeddedAttributeJsExtractor(filter, jsParser) { validate_1.Validate.required.argument({ filter }); validate_1.Validate.required.argument({ jsParser }); let test; if (typeof filter === 'function') { test = filter; } else { test = attr => filter.test(attr.name); } return (node, fileName, _, lineNumberStart) => { if (typeof node.tagName !== 'string') { return; } const element = node; element.attrs.filter(test).forEach((attr) => { var _a, _b; const startLine = (_b = (_a = element.sourceCodeLocation) === null || _a === void 0 ? void 0 : _a.attrs[attr.name]) === null || _b === void 0 ? void 0 : _b.startLine; if (startLine) { lineNumberStart = lineNumberStart + startLine - 1; } jsParser.parseString(attr.value, fileName, { lineNumberStart }); }); }; } exports.embeddedAttributeJsExtractor = embeddedAttributeJsExtractor; /***/ }), /***/ "./node_modules/gettext-extractor/dist/html/extractors/factories/embeddedJs.js": /*!*************************************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/html/extractors/factories/embeddedJs.js ***! \*************************************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.embeddedJsExtractor = void 0; const selector_1 = __webpack_require__(/*! ../../selector */ "./node_modules/gettext-extractor/dist/html/selector.js"); const utils_1 = __webpack_require__(/*! ../../utils */ "./node_modules/gettext-extractor/dist/html/utils.js"); const validate_1 = __webpack_require__(/*! ../../../utils/validate */ "./node_modules/gettext-extractor/dist/utils/validate.js"); function embeddedJsExtractor(selector, jsParser) { validate_1.Validate.required.nonEmptyString({ selector }); validate_1.Validate.required.argument({ jsParser }); let selectors = new selector_1.ElementSelectorSet(selector); return (node, fileName, _, lineNumberStart) => { if (typeof node.tagName !== 'string') { return; } let element = node; if (selectors.anyMatch(element)) { let source = utils_1.HtmlUtils.getElementContent(element, { trimWhiteSpace: false, preserveIndentation: true, replaceNewLines: false }); if (element.sourceCodeLocation && element.sourceCodeLocation.startLine) { lineNumberStart = lineNumberStart + element.sourceCodeLocation.startLine - 1; } jsParser.parseString(source, fileName, { lineNumberStart }); } }; } exports.embeddedJsExtractor = embeddedJsExtractor; /***/ }), /***/ "./node_modules/gettext-extractor/dist/html/extractors/index.js": /*!**********************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/html/extractors/index.js ***! \**********************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.HtmlExtractors = void 0; const elementAttribute_1 = __webpack_require__(/*! ./factories/elementAttribute */ "./node_modules/gettext-extractor/dist/html/extractors/factories/elementAttribute.js"); const elementContent_1 = __webpack_require__(/*! ./factories/elementContent */ "./node_modules/gettext-extractor/dist/html/extractors/factories/elementContent.js"); const embeddedAttributeJs_1 = __webpack_require__(/*! ./factories/embeddedAttributeJs */ "./node_modules/gettext-extractor/dist/html/extractors/factories/embeddedAttributeJs.js"); const embeddedJs_1 = __webpack_require__(/*! ./factories/embeddedJs */ "./node_modules/gettext-extractor/dist/html/extractors/factories/embeddedJs.js"); class HtmlExtractors { } exports.HtmlExtractors = HtmlExtractors; HtmlExtractors.elementContent = elementContent_1.elementContentExtractor; HtmlExtractors.elementAttribute = elementAttribute_1.elementAttributeExtractor; HtmlExtractors.embeddedJs = embeddedJs_1.embeddedJsExtractor; HtmlExtractors.embeddedAttributeJs = embeddedAttributeJs_1.embeddedAttributeJsExtractor; /***/ }), /***/ "./node_modules/gettext-extractor/dist/html/parser.js": /*!************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/html/parser.js ***! \************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.HtmlParser = void 0; const parse5 = __webpack_require__(/*! parse5 */ "./node_modules/parse5/lib/index.js"); const parser_1 = __webpack_require__(/*! ../parser */ "./node_modules/gettext-extractor/dist/parser.js"); class HtmlParser extends parser_1.Parser { parse(source, fileName, options = {}) { let document = parse5.parse(source, { sourceCodeLocationInfo: true }); return this.parseNode(document, fileName, options.lineNumberStart || 1); } parseNode(node, fileName, lineNumberStart) { let messages = []; let addMessageCallback = parser_1.Parser.createAddMessageCallback(messages, fileName, () => { if (node.sourceCodeLocation && node.sourceCodeLocation.startLine) { return lineNumberStart + node.sourceCodeLocation.startLine - 1; } }); for (let extractor of this.extractors) { extractor(node, fileName, addMessageCallback, lineNumberStart); } let childNodes = node.content ? node.content.childNodes : node.childNodes; if (childNodes) { for (let n of childNodes) { messages = messages.concat(this.parseNode(n, fileName, lineNumberStart)); } } return messages; } } exports.HtmlParser = HtmlParser; /***/ }), /***/ "./node_modules/gettext-extractor/dist/html/selector.js": /*!**************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/html/selector.js ***! \**************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.ElementSelector = exports.ElementSelectorSet = void 0; const css_selector_parser_1 = __webpack_require__(/*! css-selector-parser */ "./node_modules/css-selector-parser/lib/index.js"); const utils_1 = __webpack_require__(/*! ./utils */ "./node_modules/gettext-extractor/dist/html/utils.js"); class ElementSelectorSet { constructor(selectors = []) { this.selectors = []; if (typeof selectors === 'string') { this.addFromString(selectors); } else { for (let s of selectors) { this.add(s); } } } add(selector) { if (selector instanceof ElementSelector) { this.selectors.push(selector); } else { this.selectors.push(new ElementSelector(selector)); } } addFromString(selectorString) { let parser = new css_selector_parser_1.CssSelectorParser(); let selectors; parser.registerAttrEqualityMods('^', '$', '*'); try { let result = parser.parse(selectorString); selectors = result.type === 'selectors' ? result.selectors : [result]; } catch (e) { throw new Error(`Error parsing selector string: ${e.message}`); } for (let s of selectors) { let selector = {}; let rule = s.rule; if (rule.rule) { throw new Error(`Selector string '${selectorString}' is invalid. Multi-level rules are not supported.`); } if (rule.tagName && rule.tagName !== '*') { selector.tagName = rule.tagName; } if (rule.id) { selector.id = rule.id; } if (rule.classNames) { selector.classNames = rule.classNames; } if (rule.attrs) { selector.attributes = rule.attrs.map((a) => { return { name: a.name, operator: a.operator, value: a.value }; }); } this.add(selector); } } anyMatch(element) { return this.selectors.reduce((matched, s) => matched || s.matches(element), false); } allMatch(element) { return this.selectors.reduce((matched, s) => matched && s.matches(element), this.selectors.length > 0); } } exports.ElementSelectorSet = ElementSelectorSet; class ElementSelector { constructor(selector) { this.selector = selector; this.tagName = selector.tagName; this.id = selector.id; this.classNames = selector.classNames; this.attributes = selector.attributes; } matches(element) { return this.tagNameMatches(element) && this.idMatches(element) && this.classNamesMatch(element) && this.attributesMatch(element); } tagNameMatches(element) { if (!this.tagName) { return true; } return element.tagName === this.tagName.toLowerCase(); } idMatches(element) { if (!this.id) { return true; } return utils_1.HtmlUtils.getAttributeValue(element, 'id') === this.id; } classNamesMatch(element) { if (!this.classNames || !this.classNames.length) { return true; } let classAttributeValue = utils_1.HtmlUtils.getAttributeValue(element, 'class'); if (classAttributeValue === null) { return false; } let elementClassNames = classAttributeValue.split(' '); for (let className of this.classNames) { if (elementClassNames.indexOf(className) === -1) { return false; } } return true; } attributesMatch(element) { if (!this.attributes) { return true; } for (let attribute of this.attributes) { let elementAttributeValue = utils_1.HtmlUtils.getAttributeValue(element, attribute.name); if (elementAttributeValue === null) { return false; } if (attribute.value !== undefined) { switch (attribute.operator) { case '^=': if (elementAttributeValue.slice(0, attribute.value.length) !== attribute.value) { return false; } break; case '$=': if (elementAttributeValue.slice(-attribute.value.length) !== attribute.value) { return false; } break; case '*=': if (elementAttributeValue.indexOf(attribute.value) === -1) { return false; } break; case '=': default: if (attribute.value !== elementAttributeValue) { return false; } } } else if (attribute.regex instanceof RegExp) { if (!attribute.regex.test(elementAttributeValue)) { return false; } } } return true; } } exports.ElementSelector = ElementSelector; /***/ }), /***/ "./node_modules/gettext-extractor/dist/html/utils.js": /*!***********************************************************!*\ !*** ./node_modules/gettext-extractor/dist/html/utils.js ***! \***********************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.HtmlUtils = void 0; const parse5 = __webpack_require__(/*! parse5 */ "./node_modules/parse5/lib/index.js"); const content_1 = __webpack_require__(/*! ../utils/content */ "./node_modules/gettext-extractor/dist/utils/content.js"); class HtmlUtils { static getAttributeValue(element, attributeName) { for (let attribute of element.attrs) { if (attribute.name === attributeName) { return attribute.value; } } return null; } static getNormalizedAttributeValue(element, attributeName, options) { let value = HtmlUtils.getAttributeValue(element, attributeName); if (value === null) { return null; } return content_1.normalizeContent(value, options); } static getElementContent(element, options) { let content = parse5.serialize(element, {}); // Un-escape characters that get escaped by parse5 content = content .replace(/&/g, '&') .replace(/</g, '<') .replace(/>/g, '>'); return content_1.normalizeContent(content, options); } } exports.HtmlUtils = HtmlUtils; /***/ }), /***/ "./node_modules/gettext-extractor/dist/index.js": /*!******************************************************!*\ !*** ./node_modules/gettext-extractor/dist/index.js ***! \******************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.HtmlExtractors = exports.JsExtractors = exports.GettextExtractor = void 0; var extractor_1 = __webpack_require__(/*! ./extractor */ "./node_modules/gettext-extractor/dist/extractor.js"); Object.defineProperty(exports, "GettextExtractor", ({ enumerable: true, get: function () { return extractor_1.GettextExtractor; } })); var extractors_1 = __webpack_require__(/*! ./js/extractors */ "./node_modules/gettext-extractor/dist/js/extractors/index.js"); Object.defineProperty(exports, "JsExtractors", ({ enumerable: true, get: function () { return extractors_1.JsExtractors; } })); var extractors_2 = __webpack_require__(/*! ./html/extractors */ "./node_modules/gettext-extractor/dist/html/extractors/index.js"); Object.defineProperty(exports, "HtmlExtractors", ({ enumerable: true, get: function () { return extractors_2.HtmlExtractors; } })); /***/ }), /***/ "./node_modules/gettext-extractor/dist/js/extractors/comments.js": /*!***********************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/js/extractors/comments.js ***! \***********************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.JsCommentUtils = void 0; const ts = __webpack_require__(/*! typescript */ "./node_modules/typescript/lib/typescript.js"); var CommentEdge; (function (CommentEdge) { CommentEdge[CommentEdge["Leading"] = 0] = "Leading"; CommentEdge[CommentEdge["Trailing"] = 1] = "Trailing"; })(CommentEdge || (CommentEdge = {})); class JsCommentUtils { static extractComments(callExpression, sourceFile, commentOptions) { commentOptions = JsCommentUtils.defaultCommentOptions(commentOptions); let comments = [], { start, end } = this.getExtractionPositions(callExpression, sourceFile), source = sourceFile.text; if (callExpression.parent.kind === ts.SyntaxKind.JsxExpression) { source = source.slice(0, start) + '\n' + source.slice(start); end++; } if (commentOptions.otherLineLeading || commentOptions.sameLineLeading) { comments = comments.concat(JsCommentUtils.extractCommentsAtPosition(source, start, CommentEdge.Leading, commentOptions)); } if (commentOptions.sameLineTrailing) { comments = comments.concat(JsCommentUtils.extractCommentsAtPosition(source, end, CommentEdge.Trailing, commentOptions)); } return comments; } static getExtractionPositions(node, sourceFile) { let start = node.getFullStart(), end = node.getEnd(); function skipToCharacter(character) { scan: while (end < sourceFile.text.length) { switch (sourceFile.text.charCodeAt(end)) { case character: end++; break scan; case 9: // tab case 11: // verticalTab case 12: // formFeed case 32: // space end++; break; default: break scan; } } } function skipToSemicolon() { skipToCharacter(59); } function skipToComma() { skipToCharacter(44); } switch (node.parent.kind) { case ts.SyntaxKind.ReturnStatement: case ts.SyntaxKind.ThrowStatement: case ts.SyntaxKind.ExpressionStatement: case ts.SyntaxKind.ParenthesizedExpression: case ts.SyntaxKind.BinaryExpression: return this.getExtractionPositions(node.parent, sourceFile); case ts.SyntaxKind.VariableDeclaration: if (node.parent.parent.kind === ts.SyntaxKind.VariableDeclarationList) { let variableDeclarationList = node.parent.parent; if (variableDeclarationList.declarations.length === 1) { return this.getExtractionPositions(variableDeclarationList.parent, sourceFile); } else { if (this.nodeIsOnSeparateLine(node, variableDeclarationList.declarations.map(d => { var _a; return (_a = d.initializer) !== null && _a !== void 0 ? _a : d.name; }), sourceFile)) { if (variableDeclarationList.declarations[variableDeclarationList.declarations.length - 1].initializer === node) { skipToSemicolon(); } else { skipToComma(); } } } } break; case ts.SyntaxKind.CallExpression: case ts.SyntaxKind.NewExpression: if (this.nodeIsOnSeparateLine(node, node.parent.arguments, sourceFile)) { skipToComma(); } break; case ts.SyntaxKind.PropertyAssignment: if (node.parent.parent.kind === ts.SyntaxKind.ObjectLiteralExpression && this.nodeIsOnSeparateLine(node.parent, node.parent.parent.properties, sourceFile)) { skipToComma(); } break; case ts.SyntaxKind.ArrayLiteralExpression: if (this.nodeIsOnSeparateLine(node, node.parent.elements, sourceFile)) { skipToComma(); } break; case ts.SyntaxKind.ConditionalExpression: if (node.parent.whenFalse === node) { skipToSemicolon(); } break; } return { start, end }; } static nodeIsOnSeparateLine(node, nodes, sourceFile) { let index = nodes.indexOf(node); if (index === -1) { return false; } let lineNumber = sourceFile.getLineAndCharacterOfPosition(nodes[index].getStart()).line; if (index > 0) { if (lineNumber === sourceFile.getLineAndCharacterOfPosition(nodes[index - 1].getEnd()).line) { return false; } } if (index + 1 < nodes.length) { if (lineNumber === sourceFile.getLineAndCharacterOfPosition(nodes[index + 1].getStart()).line) { return false; } } return true; } static extractCommentsAtPosition(source, position, edge, commentOptions) { let ranges, comments = []; if (edge === CommentEdge.Leading) { ranges = ts.getLeadingCommentRanges(source, position); } else { ranges = ts.getTrailingCommentRanges(source, position); } for (let range of ranges || []) { let commentSource = source.slice(range.pos, range.end), comment, isSameLine = !range.hasTrailingNewLine; if (edge === CommentEdge.Trailing && commentOptions.sameLineTrailing || edge === CommentEdge.Leading && (isSameLine && commentOptions.sameLineLeading || !isSameLine && commentOptions.otherLineLeading)) { if (range.kind === ts.SyntaxKind.SingleLineCommentTrivia) { comment = JsCommentUtils.extractLineComment(commentSource); } else { comment = JsCommentUtils.extractBlockComment(commentSource); } } if (comment) { if (commentOptions.regex) { let match = comment.match(commentOptions.regex); if (match) { comments.push(match[1] !== undefined ? match[1] : match[0]); } } else { comments.push(comment); } } } return comments; } static defaultCommentOptions(options = {}) { if (options.otherLineLeading === undefined && options.sameLineLeading === undefined && options.sameLineTrailing === undefined) { options.otherLineLeading = false; options.sameLineLeading = true; options.sameLineTrailing = true; } options.otherLineLeading = !!options.otherLineLeading; options.sameLineLeading = !!options.sameLineLeading; options.sameLineTrailing = !!options.sameLineTrailing; return options; } static extractLineComment(source) { let match = source.match(/^\/\/\s*(.*?)\s*$/); return match ? match[1] : null; } static extractBlockComment(source) { if (source.indexOf('\n') !== -1) { return null; } let match = source.match(/^\/\*\s*(.*?)\s*\*\/$/); return match ? match[1] : null; } } exports.JsCommentUtils = JsCommentUtils; /***/ }), /***/ "./node_modules/gettext-extractor/dist/js/extractors/common.js": /*!*********************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/js/extractors/common.js ***! \*********************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.validateOptions = void 0; const validate_1 = __webpack_require__(/*! ../../utils/validate */ "./node_modules/gettext-extractor/dist/utils/validate.js"); function validateOptions(options) { validate_1.Validate.required.numberProperty(options, 'options.arguments.text'); validate_1.Validate.optional.numberProperty(options, 'options.arguments.textPlural'); validate_1.Validate.optional.numberProperty(options, 'options.arguments.context'); validate_1.Validate.optional.regexProperty(options, 'options.comments.regex'); validate_1.Validate.optional.booleanProperty(options, 'options.comments.otherLineLeading'); validate_1.Validate.optional.booleanProperty(options, 'options.comments.sameLineLeading'); validate_1.Validate.optional.booleanProperty(options, 'options.comments.sameLineTrailing'); } exports.validateOptions = validateOptions; /***/ }), /***/ "./node_modules/gettext-extractor/dist/js/extractors/factories/callExpression.js": /*!***************************************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/js/extractors/factories/callExpression.js ***! \***************************************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.callExpressionExtractor = void 0; const ts = __webpack_require__(/*! typescript */ "./node_modules/typescript/lib/typescript.js"); const validate_1 = __webpack_require__(/*! ../../../utils/validate */ "./node_modules/gettext-extractor/dist/utils/validate.js"); const content_1 = __webpack_require__(/*! ../../../utils/content */ "./node_modules/gettext-extractor/dist/utils/content.js"); const common_1 = __webpack_require__(/*! ../common */ "./node_modules/gettext-extractor/dist/js/extractors/common.js"); const utils_1 = __webpack_require__(/*! ../../utils */ "./node_modules/gettext-extractor/dist/js/utils.js"); const comments_1 = __webpack_require__(/*! ../comments */ "./node_modules/gettext-extractor/dist/js/extractors/comments.js"); function callExpressionExtractor(calleeName, options) { validate_1.Validate.required.argument({ calleeName }); let calleeNames = [].concat(calleeName); for (let name of calleeNames) { if (typeof name !== 'string' || name.length === 0) { throw new TypeError(`Argument 'calleeName' must be a non-empty string or an array containing non-empty strings`); } } common_1.validateOptions(options); content_1.validateContentOptions(options); let contentOptions = content_1.getContentOptions(options, { trimWhiteSpace: false, preserveIndentation: true, replaceNewLines: false }); return (node, sourceFile, addMessage) => { if (node.kind === ts.SyntaxKind.CallExpression) { let callExpression = node; let matches = calleeNames.reduce((matchFound, name) => (matchFound || utils_1.JsUtils.calleeNameMatchesCallExpression(name, callExpression)), false); if (matches) { let message = extractArguments(callExpression, options.arguments, contentOptions); if (message) { message.comments = comments_1.JsCommentUtils.extractComments(callExpression, sourceFile, options.comments); addMessage(message); } } } }; } exports.callExpressionExtractor = callExpressionExtractor; function extractArguments(callExpression, argumentMapping, contentOptions) { let callArguments = callExpression.arguments; let textArgument = callArguments[argumentMapping.text], textPluralArgument = callArguments[argumentMapping.textPlural], contextArgument = callArguments[argumentMapping.context]; textArgument = checkAndConcatenateStrings(textArgument); textPluralArgument = checkAndConcatenateStrings(textPluralArgument); let textPluralValid = typeof argumentMapping.textPlural !== 'number' || isTextLiteral(textPluralArgument); if (isTextLiteral(textArgument) && textPluralValid) { let message = { text: content_1.normalizeContent(textArgument.text, contentOptions) }; if (isTextLiteral(textPluralArgument)) { message.textPlural = content_1.normalizeContent(textPluralArgument.text, contentOptions); } if (isTextLiteral(contextArgument)) { message.context = content_1.normalizeContent(contextArgument.text, contentOptions); } return message; } return null; } function isTextLiteral(expression) { return expression && (expression.kind === ts.SyntaxKind.StringLiteral || expression.kind === ts.SyntaxKind.NoSubstitutionTemplateLiteral); } function isParenthesizedExpression(expression) { return expression && expression.kind === ts.SyntaxKind.ParenthesizedExpression; } function isBinaryExpression(expression) { return expression && expression.kind === ts.SyntaxKind.BinaryExpression; } function getAdditionExpression(expression) { while (isParenthesizedExpression(expression)) { expression = expression.expression; } if (isBinaryExpression(expression) && expression.operatorToken.kind === ts.SyntaxKind.PlusToken) { return expression; } return null; } function checkAndConcatenateStrings(expression) { let addition; if (!expression || !(addition = getAdditionExpression(expression))) { return expression; } let concatenated = ts.factory.createStringLiteral(''); if (processStringAddition(addition, concatenated)) { return concatenated; } return expression; } function processStringAddition(expression, concatenated) { let addition; if (isTextLiteral(expression.left)) { concatenated.text += expression.left.text; } else if (addition = getAdditionExpression(expression.left)) { if (!processStringAddition(addition, concatenated)) { return false; } } else { return false; } if (isTextLiteral(expression.right)) { concatenated.text += expression.right.text; return true; } else if (addition = getAdditionExpression(expression.right)) { return processStringAddition(addition, concatenated); } else { return false; } } /***/ }), /***/ "./node_modules/gettext-extractor/dist/js/extractors/factories/htmlTemplate.js": /*!*************************************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/js/extractors/factories/htmlTemplate.js ***! \*************************************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.htmlTemplateExtractor = void 0; const ts = __webpack_require__(/*! typescript */ "./node_modules/typescript/lib/typescript.js"); const validate_1 = __webpack_require__(/*! ../../../utils/validate */ "./node_modules/gettext-extractor/dist/utils/validate.js"); function htmlTemplateExtractor(htmlParser) { validate_1.Validate.required.argument({ htmlParser }); return (node, sourceFile, _, lineNumberStart = 1) => { if (ts.isStringLiteralLike(node)) { const source = node.getText(sourceFile); const location = sourceFile.getLineAndCharacterOfPosition(node.getStart(sourceFile)); htmlParser.parseString(source, sourceFile.fileName, { lineNumberStart: lineNumberStart + location.line }); } }; } exports.htmlTemplateExtractor = htmlTemplateExtractor; /***/ }), /***/ "./node_modules/gettext-extractor/dist/js/extractors/index.js": /*!********************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/js/extractors/index.js ***! \********************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.JsExtractors = void 0; const callExpression_1 = __webpack_require__(/*! ./factories/callExpression */ "./node_modules/gettext-extractor/dist/js/extractors/factories/callExpression.js"); const htmlTemplate_1 = __webpack_require__(/*! ./factories/htmlTemplate */ "./node_modules/gettext-extractor/dist/js/extractors/factories/htmlTemplate.js"); class JsExtractors { } exports.JsExtractors = JsExtractors; JsExtractors.callExpression = callExpression_1.callExpressionExtractor; JsExtractors.htmlTemplate = htmlTemplate_1.htmlTemplateExtractor; /***/ }), /***/ "./node_modules/gettext-extractor/dist/js/parser.js": /*!**********************************************************!*\ !*** ./node_modules/gettext-extractor/dist/js/parser.js ***! \**********************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.JsParser = void 0; const ts = __webpack_require__(/*! typescript */ "./node_modules/typescript/lib/typescript.js"); const parser_1 = __webpack_require__(/*! ../parser */ "./node_modules/gettext-extractor/dist/parser.js"); class JsParser extends parser_1.Parser { parse(source, fileName, options = {}) { let sourceFile = ts.createSourceFile(fileName, source, ts.ScriptTarget.Latest, true, options.scriptKind); return this.parseNode(sourceFile, sourceFile, options.lineNumberStart || 1); } parseNode(node, sourceFile, lineNumberStart) { let messages = []; let addMessageCallback = parser_1.Parser.createAddMessageCallback(messages, sourceFile.fileName, () => { let location = sourceFile.getLineAndCharacterOfPosition(node.getStart()); return lineNumberStart + location.line; }); for (let extractor of this.extractors) { extractor(node, sourceFile, addMessageCallback, lineNumberStart); } ts.forEachChild(node, n => { messages = messages.concat(this.parseNode(n, sourceFile, lineNumberStart)); }); return messages; } } exports.JsParser = JsParser; /***/ }), /***/ "./node_modules/gettext-extractor/dist/js/utils.js": /*!*********************************************************!*\ !*** ./node_modules/gettext-extractor/dist/js/utils.js ***! \*********************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.JsUtils = void 0; const ts = __webpack_require__(/*! typescript */ "./node_modules/typescript/lib/typescript.js"); class JsUtils { static segmentsMatchPropertyExpression(segments, propertyAccessExpression) { segments = segments.slice(); if (!(segments.pop() === propertyAccessExpression.name.text)) { return false; } let segment; switch (propertyAccessExpression.expression.kind) { case ts.SyntaxKind.Identifier: segment = segments.pop(); return (segments.length === 0 || segments.length === 1 && segments[0] === '[this]') && segment === propertyAccessExpression.expression.text; case ts.SyntaxKind.ThisKeyword: segment = segments.pop(); return segments.length === 0 && (segment === 'this' || segment === '[this]'); case ts.SyntaxKind.PropertyAccessExpression: return this.segmentsMatchPropertyExpression(segments, propertyAccessExpression.expression); } return false; } static calleeNameMatchesCallExpression(calleeName, callExpression) { let segments = calleeName.split('.'); switch (segments.length) { case 0: return false; case 1: return callExpression.expression.kind === ts.SyntaxKind.Identifier && callExpression.expression.text === segments[0]; default: return callExpression.expression.kind === ts.SyntaxKind.PropertyAccessExpression && this.segmentsMatchPropertyExpression(segments, callExpression.expression); } } } exports.JsUtils = JsUtils; /***/ }), /***/ "./node_modules/gettext-extractor/dist/parser.js": /*!*******************************************************!*\ !*** ./node_modules/gettext-extractor/dist/parser.js ***! \*******************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.Parser = void 0; const fs = __webpack_require__(/*! fs */ "fs"); const glob = __webpack_require__(/*! glob */ "./node_modules/glob/glob.js"); const validate_1 = __webpack_require__(/*! ./utils/validate */ "./node_modules/gettext-extractor/dist/utils/validate.js"); class Parser { constructor(builder, extractors = [], stats) { this.builder = builder; this.extractors = extractors; this.stats = stats; this.validateExtractors(...extractors); } static createAddMessageCallback(messages, fileName, getLineNumber) { return (data) => { let references; if (typeof data.lineNumber !== 'number') { data.lineNumber = getLineNumber(); } data.fileName = data.fileName || fileName; if (data.fileName && data.lineNumber && data.fileName !== Parser.STRING_LITERAL_FILENAME) { references = [`${data.fileName}:${data.lineNumber}`]; } let message = { text: data.text, textPlural: data.textPlural || undefined, context: data.context || undefined, references: references, comments: data.comments && data.comments.length ? data.comments : undefined }; messages.push(message); }; } parseString(source, fileName, options) { validate_1.Validate.required.string({ source }); validate_1.Validate.optional.nonEmptyString({ fileName }); this.validateParseOptions(options); if (!this.extractors.length) { throw new Error(`Missing extractor functions. Provide them when creating the parser or dynamically add extractors using 'addExtractor()'`); } if (options && options.transformSource) { source = options.transformSource(source); } let messages = this.parse(source, fileName || Parser.STRING_LITERAL_FILENAME, options); for (let message of messages) { this.builder.addMessage(message); } this.stats && this.stats.numberOfParsedFiles++; if (messages.length) { this.stats && this.stats.numberOfParsedFilesWithMessages++; } return this; } parseFile(fileName, options) { validate_1.Validate.required.nonEmptyString({ fileName }); this.validateParseOptions(options); this.parseString(fs.readFileSync(fileName).toString(), fileName, options); return this; } parseFilesGlob(pattern, globOptions, options) { validate_1.Validate.required.nonEmptyString({ pattern }); validate_1.Validate.optional.object({ globOptions }); this.validateParseOptions(options); for (let fileName of glob.sync(pattern, Object.assign(Object.assign({}, globOptions), { nodir: true }))) { this.parseFile(fileName, options); } return this; } addExtractor(extractor) { validate_1.Validate.required.argument({ extractor }); this.validateExtractors(extractor); this.extractors.push(extractor); return this; } validateParseOptions(options) { validate_1.Validate.optional.numberProperty(options, 'options.lineNumberStart'); validate_1.Validate.optional.functionProperty(options, 'options.transformSource'); } validateExtractors(...extractors) { for (let extractor of extractors) { if (typeof extractor !== 'function') { throw new TypeError(`Invalid extractor function provided. '${extractor}' is not a function`); } } } } exports.Parser = Parser; Parser.STRING_LITERAL_FILENAME = 'gettext-extractor-string-literal'; /***/ }), /***/ "./node_modules/gettext-extractor/dist/utils/content.js": /*!**************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/utils/content.js ***! \**************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.normalizeContent = exports.validateContentOptions = exports.getContentOptions = void 0; const validate_1 = __webpack_require__(/*! ./validate */ "./node_modules/gettext-extractor/dist/utils/validate.js"); function getContentOptions(extractorOptions, defaultOptions) { let contentOptions = defaultOptions; if (extractorOptions.content) { if (extractorOptions.content.trimWhiteSpace !== undefined) { contentOptions.trimWhiteSpace = extractorOptions.content.trimWhiteSpace; } if (extractorOptions.content.preserveIndentation !== undefined) { contentOptions.preserveIndentation = extractorOptions.content.preserveIndentation; } if (extractorOptions.content.replaceNewLines !== undefined) { contentOptions.replaceNewLines = extractorOptions.content.replaceNewLines; } } return contentOptions; } exports.getContentOptions = getContentOptions; function validateContentOptions(options) { validate_1.Validate.optional.booleanProperty(options, 'options.content.trimWhiteSpace'); validate_1.Validate.optional.booleanProperty(options, 'options.content.preserveIndentation'); if (options.content && options.content.replaceNewLines !== undefined && options.content.replaceNewLines !== false && typeof options.content.replaceNewLines !== 'string') { throw new TypeError(`Property 'options.content.replaceNewLines' must be false or a string`); } } exports.validateContentOptions = validateContentOptions; function normalizeContent(content, options) { content = content.replace(/\r\n/g, '\n'); if (options.trimWhiteSpace) { if (options.preserveIndentation) { // trim whitespace while preserving indentation // uses regex constructor instead of literal to simplify documentation let contentWithIndentationRegex = new RegExp('^\\s*?' + // non-greedily matches whitespace in the beginning '(' + '[ \\t]*\\S' + // matches tabs or spaces in front of a non-whitespace character '[^]*?' + // non-greedily matches everything (including newlines) until the end (minus trailing whitespace) ')' + '\\s*$', // matches trailing whitespace 'g'); content = content.replace(contentWithIndentationRegex, '$1'); } else { content = content.trim(); } } if (!options.preserveIndentation) { content = content.replace(/^[ \t]+/mg, ''); } if (typeof options.replaceNewLines === 'string') { content = content.replace(/\n/g, options.replaceNewLines); } return content; } exports.normalizeContent = normalizeContent; /***/ }), /***/ "./node_modules/gettext-extractor/dist/utils/output.js": /*!*************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/utils/output.js ***! \*************************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.StatsOutput = exports.OutputUtils = void 0; let chalk; try { chalk = __webpack_require__(/*! chalk */ "./node_modules/chalk/source/index.js"); } catch (e) { /* falls back to default colored output */ } class OutputUtils { static green(value) { return chalk ? chalk.green(value) : value; } static grey(value) { return chalk ? chalk.grey(value) : value; } } exports.OutputUtils = OutputUtils; class StatsOutput { constructor(stats) { this.stats = stats; let numbers = this.details .map(d => d.primaryNumber) .concat(this.stats.numberOfMessages); this.maxNumberLength = Math.max.apply(undefined, numbers.map(n => n.toString().length)); this.maxTextLength = Math.max.apply(undefined, this.details.map(l => { return this.padNumber(1).length + 1 + l.primaryText.length + (l.secondaryText ? l.secondaryText.length + 1 : 0); }).concat(this.title.length)); } get details() { return [ { primaryNumber: this.stats.numberOfMessageUsages, primaryText: this.stats.numberOfMessageUsages === 1 ? 'total usage' : 'total usages' }, { primaryNumber: this.stats.numberOfParsedFiles, primaryText: this.stats.numberOfParsedFiles === 1 ? 'file' : 'files', secondaryText: `(${this.stats.numberOfParsedFilesWithMessages} with messages)` }, { primaryNumber: this.stats.numberOfContexts, primaryText: this.stats.numberOfContexts === 1 ? 'message context' : 'message contexts', secondaryText: this.stats.numberOfContexts === 1 && '(default)' } ]; } get title() { return this.stats.numberOfMessages === 1 ? `${this.padNumber(1)} message extracted` : `${this.padNumber(this.stats.numberOfMessages)} messages extracted`; } print() { console.log(); console.log(this.indent(OutputUtils.green(this.title))); console.log(this.indent(OutputUtils.grey(new Array(this.maxTextLength + 2).join('-')))); for (let line of this.details) { let text = this.padNumber(line.primaryNumber) + ' ' + line.primaryText; if (line.secondaryText) { text += ' ' + OutputUtils.grey(line.secondaryText); } console.log(this.indent(text)); } console.log(); } padNumber(value) { return (new Array(this.maxNumberLength).join(' ') + value).slice(-this.maxNumberLength); } indent(value) { return new Array(StatsOutput.INDENTATION + 1).join(' ') + value; } } exports.StatsOutput = StatsOutput; StatsOutput.INDENTATION = 2; /***/ }), /***/ "./node_modules/gettext-extractor/dist/utils/validate.js": /*!***************************************************************!*\ !*** ./node_modules/gettext-extractor/dist/utils/validate.js ***! \***************************************************************/ /***/ ((__unused_webpack_module, exports) => { "use strict"; Object.defineProperty(exports, "__esModule", ({ value: true })); exports.Validate = void 0; class Validate { constructor(required) { this.required = required; } static get required() { return new Validate(true); } static get optional() { return new Validate(false); } argument(args) { this.entry = this.argument; this.each(args, () => { }); } booleanProperty(object, path) { this.entry = this.booleanProperty; this.property(object, path, (name, value) => { if (typeof value !== 'boolean') { throw this.typeError(`Property '${name}' must be a boolean`); } }); } string(args) { this.entry = this.string; this.each(args, (name, value) => { if (typeof value !== 'string') { throw this.typeError(`'Argument '${name}' must be a string`); } }); } nonEmptyString(args) { this.entry = this.nonEmptyString; this.each(args, (name, value) => { if (typeof value !== 'string' || value.length === 0) { throw this.typeError(`'Argument '${name}' must be a non-empty string`); } }); } stringProperty(object, path) { this.entry = this.stringProperty; this.property(object, path, (name, value) => { if (typeof value !== 'string') { throw this.typeError(`Property '${name}' must be a string`); } }); } numberProperty(object, path) { this.entry = this.numberProperty; this.property(object, path, (name, value) => { if (typeof value !== 'number' || isNaN(value)) { throw this.typeError(`Property '${name}' must be a number`); } }); } functionProperty(object, path) { this.entry = this.functionProperty; this.property(object, path, (name, value) => { if (typeof value !== 'function') { throw this.typeError(`Property '${name}' must be a function`); } }); } object(args) { this.entry = this.object; this.each(args, (name, value) => { if (typeof value !== 'object' || value === null) { throw this.typeError(`Argument '${name}' must be an object`); } }); } nonEmptyArray(args) { this.entry = this.nonEmptyArray; this.each(args, (name, value) => { if (!(value instanceof Array) || value.length === 0) { throw this.typeError(`Argument '${name}' must be a non-empty array`); } }); } arrayProperty(object, path) { this.entry = this.arrayProperty; this.property(object, path, (name, value) => { if (!(value instanceof Array)) { throw this.typeError(`Property '${name}' must be an array`); } }); } regexProperty(object, path) { this.entry = this.regexProperty; this.property(object, path, (name, value) => { if (!(value instanceof RegExp)) { throw this.typeError(`Property '${name}' must be a regular expression`); } }); } each(args, callback) { for (let name of Object.keys(args)) { let value = args[name]; if (value !== undefined) { callback(name, value); } else if (this.required) { throw this.error(`Missing argument '${name}'`); } } } property(object, path, callback) { let properties = path.split('.'); let value = object; let name = properties.shift(); if (!value && !this.required) { return; } this.object({ [name]: value }); let property; while (property = properties.shift()) { name += `.${property}`; value = value[property]; if (properties.length) { if (typeof value !== 'object' || value === null) { if (value !== undefined || this.required) { throw this.typeError(`Property '${name}' must be an object`); } else { break; } } } else { if (value !== undefined) { callback(name, value); } else if (this.required) { throw this.error(`Property '${name}' is missing`); } } } } typeError(message) { let error = new TypeError(message); Error.captureStackTrace(error, this.entry); return error; } error(message) { let error = new Error(message); Error.captureStackTrace(error, this.entry); return error; } } exports.Validate = Validate; /***/ }), /***/ "./node_modules/gettext-parser/index.js": /*!**********************************************!*\ !*** ./node_modules/gettext-parser/index.js ***! \**********************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { const { parse, stream } = __webpack_require__(/*! ./lib/poparser */ "./node_modules/gettext-parser/lib/poparser.js"); module.exports.po = { parse, createParseStream: stream, compile: __webpack_require__(/*! ./lib/pocompiler */ "./node_modules/gettext-parser/lib/pocompiler.js") }; module.exports.mo = { parse: __webpack_require__(/*! ./lib/moparser */ "./node_modules/gettext-parser/lib/moparser.js"), compile: __webpack_require__(/*! ./lib/mocompiler */ "./node_modules/gettext-parser/lib/mocompiler.js") }; /***/ }), /***/ "./node_modules/gettext-parser/lib/mocompiler.js": /*!*******************************************************!*\ !*** ./node_modules/gettext-parser/lib/mocompiler.js ***! \*******************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { const { Buffer } = __webpack_require__(/*! safe-buffer */ "./node_modules/safe-buffer/index.js"); const encoding = __webpack_require__(/*! encoding */ "./node_modules/encoding/lib/encoding.js"); const sharedFuncs = __webpack_require__(/*! ./shared */ "./node_modules/gettext-parser/lib/shared.js"); const contentType = __webpack_require__(/*! content-type */ "./node_modules/content-type/index.js"); /** * Exposes general compiler function. Takes a translation * object as a parameter and returns binary MO object * * @param {Object} table Translation object * @return {Buffer} Compiled binary MO object */ module.exports = function (table) { const compiler = new Compiler(table); return compiler.compile(); }; /** * Creates a MO compiler object. * * @constructor * @param {Object} table Translation table as defined in the README */ function Compiler (table = {}) { this._table = table; let { headers = {}, translations = {} } = this._table; headers = Object.keys(headers).reduce((result, key) => { const lowerKey = key.toLowerCase(); if (sharedFuncs.HEADERS.has(lowerKey)) { // POT-Creation-Date is removed in MO (see https://savannah.gnu.org/bugs/?49654) if (lowerKey !== 'pot-creation-date') { result[sharedFuncs.HEADERS.get(lowerKey)] = headers[key]; } } else { result[key] = headers[key]; } return result; }, {}); // filter out empty translations translations = Object.keys(translations).reduce((result, msgctxt) => { const context = translations[msgctxt]; const msgs = Object.keys(context).reduce((result, msgid) => { const hasTranslation = context[msgid].msgstr.some(item => !!item.length); if (hasTranslation) { result[msgid] = context[msgid]; } return result; }, {}); if (Object.keys(msgs).length) { result[msgctxt] = msgs; } return result; }, {}); this._table.translations = translations; this._table.headers = headers; this._translations = []; this._writeFunc = 'writeUInt32LE'; this._handleCharset(); } /** * Magic bytes for the generated binary data */ Compiler.prototype.MAGIC = 0x950412de; /** * Handles header values, replaces or adds (if needed) a charset property */ Compiler.prototype._handleCharset = function () { const ct = contentType.parse(this._table.headers['Content-Type'] || 'text/plain'); const charset = sharedFuncs.formatCharset(this._table.charset || ct.parameters.charset || 'utf-8'); // clean up content-type charset independently using fallback if missing if (ct.parameters.charset) { ct.parameters.charset = sharedFuncs.formatCharset(ct.parameters.charset); } this._table.charset = charset; this._table.headers['Content-Type'] = contentType.format(ct); }; /** * Generates an array of translation strings * in the form of [{msgid:... , msgstr:...}] * * @return {Array} Translation strings array */ Compiler.prototype._generateList = function () { const list = []; list.push({ msgid: Buffer.alloc(0), msgstr: encoding.convert(sharedFuncs.generateHeader(this._table.headers), this._table.charset) }); Object.keys(this._table.translations).forEach(msgctxt => { if (typeof this._table.translations[msgctxt] !== 'object') { return; } Object.keys(this._table.translations[msgctxt]).forEach(msgid => { if (typeof this._table.translations[msgctxt][msgid] !== 'object') { return; } if (msgctxt === '' && msgid === '') { return; } const msgidPlural = this._table.translations[msgctxt][msgid].msgid_plural; let key = msgid; if (msgctxt) { key = msgctxt + '\u0004' + key; } if (msgidPlural) { key += '\u0000' + msgidPlural; } const value = [].concat(this._table.translations[msgctxt][msgid].msgstr || []).join('\u0000'); list.push({ msgid: encoding.convert(key, this._table.charset), msgstr: encoding.convert(value, this._table.charset) }); }); }); return list; }; /** * Calculate buffer size for the final binary object * * @param {Array} list An array of translation strings from _generateList * @return {Object} Size data of {msgid, msgstr, total} */ Compiler.prototype._calculateSize = function (list) { let msgidLength = 0; let msgstrLength = 0; let totalLength = 0; list.forEach(translation => { msgidLength += translation.msgid.length + 1; // + extra 0x00 msgstrLength += translation.msgstr.length + 1; // + extra 0x00 }); totalLength = 4 + // magic number 4 + // revision 4 + // string count 4 + // original string table offset 4 + // translation string table offset 4 + // hash table size 4 + // hash table offset (4 + 4) * list.length + // original string table (4 + 4) * list.length + // translations string table msgidLength + // originals msgstrLength; // translations return { msgid: msgidLength, msgstr: msgstrLength, total: totalLength }; }; /** * Generates the binary MO object from the translation list * * @param {Array} list translation list * @param {Object} size Byte size information * @return {Buffer} Compiled MO object */ Compiler.prototype._build = function (list, size) { const returnBuffer = Buffer.alloc(size.total); let curPosition = 0; let i; let len; // magic returnBuffer[this._writeFunc](this.MAGIC, 0); // revision returnBuffer[this._writeFunc](0, 4); // string count returnBuffer[this._writeFunc](list.length, 8); // original string table offset returnBuffer[this._writeFunc](28, 12); // translation string table offset returnBuffer[this._writeFunc](28 + (4 + 4) * list.length, 16); // hash table size returnBuffer[this._writeFunc](0, 20); // hash table offset returnBuffer[this._writeFunc](28 + (4 + 4) * list.length * 2, 24); // build originals table curPosition = 28 + 2 * (4 + 4) * list.length; for (i = 0, len = list.length; i < len; i++) { list[i].msgid.copy(returnBuffer, curPosition); returnBuffer[this._writeFunc](list[i].msgid.length, 28 + i * 8); returnBuffer[this._writeFunc](curPosition, 28 + i * 8 + 4); returnBuffer[curPosition + list[i].msgid.length] = 0x00; curPosition += list[i].msgid.length + 1; } // build translations table for (i = 0, len = list.length; i < len; i++) { list[i].msgstr.copy(returnBuffer, curPosition); returnBuffer[this._writeFunc](list[i].msgstr.length, 28 + (4 + 4) * list.length + i * 8); returnBuffer[this._writeFunc](curPosition, 28 + (4 + 4) * list.length + i * 8 + 4); returnBuffer[curPosition + list[i].msgstr.length] = 0x00; curPosition += list[i].msgstr.length + 1; } return returnBuffer; }; /** * Compiles translation object into a binary MO object * * @return {Buffer} Compiled MO object */ Compiler.prototype.compile = function () { const list = this._generateList(); const size = this._calculateSize(list); list.sort(sharedFuncs.compareMsgid); return this._build(list, size); }; /***/ }), /***/ "./node_modules/gettext-parser/lib/moparser.js": /*!*****************************************************!*\ !*** ./node_modules/gettext-parser/lib/moparser.js ***! \*****************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { const encoding = __webpack_require__(/*! encoding */ "./node_modules/encoding/lib/encoding.js"); const sharedFuncs = __webpack_require__(/*! ./shared */ "./node_modules/gettext-parser/lib/shared.js"); /** * Parses a binary MO object into translation table * * @param {Buffer} buffer Binary MO object * @param {String} [defaultCharset] Default charset to use * @return {Object} Translation object */ module.exports = function (buffer, defaultCharset) { const parser = new Parser(buffer, defaultCharset); return parser.parse(); }; /** * Creates a MO parser object. * * @constructor * @param {Buffer} fileContents Binary MO object * @param {String} [defaultCharset] Default charset to use */ function Parser (fileContents, defaultCharset = 'iso-8859-1') { this._fileContents = fileContents; /** * Method name for writing int32 values, default littleendian */ this._writeFunc = 'writeUInt32LE'; /** * Method name for reading int32 values, default littleendian */ this._readFunc = 'readUInt32LE'; this._charset = defaultCharset; this._table = { charset: this._charset, headers: undefined, translations: {} }; } /** * Magic constant to check the endianness of the input file */ Parser.prototype.MAGIC = 0x950412de; /** * Checks if number values in the input file are in big- or littleendian format. * * @return {Boolean} Return true if magic was detected */ Parser.prototype._checkMagick = function () { if (this._fileContents.readUInt32LE(0) === this.MAGIC) { this._readFunc = 'readUInt32LE'; this._writeFunc = 'writeUInt32LE'; return true; } else if (this._fileContents.readUInt32BE(0) === this.MAGIC) { this._readFunc = 'readUInt32BE'; this._writeFunc = 'writeUInt32BE'; return true; } return false; }; /** * Read the original strings and translations from the input MO file. Use the * first translation string in the file as the header. */ Parser.prototype._loadTranslationTable = function () { let offsetOriginals = this._offsetOriginals; let offsetTranslations = this._offsetTranslations; let position; let length; let msgid; let msgstr; for (let i = 0; i < this._total; i++) { // msgid string length = this._fileContents[this._readFunc](offsetOriginals); offsetOriginals += 4; position = this._fileContents[this._readFunc](offsetOriginals); offsetOriginals += 4; msgid = this._fileContents.slice(position, position + length); // matching msgstr length = this._fileContents[this._readFunc](offsetTranslations); offsetTranslations += 4; position = this._fileContents[this._readFunc](offsetTranslations); offsetTranslations += 4; msgstr = this._fileContents.slice(position, position + length); if (!i && !msgid.toString()) { this._handleCharset(msgstr); } msgid = encoding.convert(msgid, 'utf-8', this._charset) .toString('utf8'); msgstr = encoding.convert(msgstr, 'utf-8', this._charset) .toString('utf8'); this._addString(msgid, msgstr); } // dump the file contents object this._fileContents = null; }; /** * Detects charset for MO strings from the header * * @param {Buffer} headers Header value */ Parser.prototype._handleCharset = function (headers) { const headersStr = headers.toString(); let match; if ((match = headersStr.match(/[; ]charset\s*=\s*([\w-]+)/i))) { this._charset = this._table.charset = sharedFuncs.formatCharset(match[1], this._charset); } headers = encoding.convert(headers, 'utf-8', this._charset) .toString('utf8'); this._table.headers = sharedFuncs.parseHeader(headers); }; /** * Adds a translation to the translation object * * @param {String} msgid Original string * @params {String} msgstr Translation for the original string */ Parser.prototype._addString = function (msgid, msgstr) { const translation = {}; let msgctxt; let msgidPlural; msgid = msgid.split('\u0004'); if (msgid.length > 1) { msgctxt = msgid.shift(); translation.msgctxt = msgctxt; } else { msgctxt = ''; } msgid = msgid.join('\u0004'); const parts = msgid.split('\u0000'); msgid = parts.shift(); translation.msgid = msgid; if ((msgidPlural = parts.join('\u0000'))) { translation.msgid_plural = msgidPlural; } msgstr = msgstr.split('\u0000'); translation.msgstr = [].concat(msgstr || []); if (!this._table.translations[msgctxt]) { this._table.translations[msgctxt] = {}; } this._table.translations[msgctxt][msgid] = translation; }; /** * Parses the MO object and returns translation table * * @return {Object} Translation table */ Parser.prototype.parse = function () { if (!this._checkMagick()) { return false; } /** * GetText revision nr, usually 0 */ this._revision = this._fileContents[this._readFunc](4); /** * Total count of translated strings */ this._total = this._fileContents[this._readFunc](8); /** * Offset position for original strings table */ this._offsetOriginals = this._fileContents[this._readFunc](12); /** * Offset position for translation strings table */ this._offsetTranslations = this._fileContents[this._readFunc](16); // Load translations into this._translationTable this._loadTranslationTable(); return this._table; }; /***/ }), /***/ "./node_modules/gettext-parser/lib/pocompiler.js": /*!*******************************************************!*\ !*** ./node_modules/gettext-parser/lib/pocompiler.js ***! \*******************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { const { Buffer } = __webpack_require__(/*! safe-buffer */ "./node_modules/safe-buffer/index.js"); const encoding = __webpack_require__(/*! encoding */ "./node_modules/encoding/lib/encoding.js"); const sharedFuncs = __webpack_require__(/*! ./shared */ "./node_modules/gettext-parser/lib/shared.js"); const contentType = __webpack_require__(/*! content-type */ "./node_modules/content-type/index.js"); /** * Exposes general compiler function. Takes a translation * object as a parameter and returns PO object * * @param {Object} table Translation object * @return {Buffer} Compiled PO object */ module.exports = function (table, options) { const compiler = new Compiler(table, options); return compiler.compile(); }; /** * Creates a PO compiler object. * * @constructor * @param {Object} table Translation table to be compiled */ function Compiler (table = {}, options = {}) { this._table = table; this._options = options; this._table.translations = this._table.translations || {}; let { headers = {} } = this._table; headers = Object.keys(headers).reduce((result, key) => { const lowerKey = key.toLowerCase(); if (sharedFuncs.HEADERS.has(lowerKey)) { result[sharedFuncs.HEADERS.get(lowerKey)] = headers[key]; } else { result[key] = headers[key]; } return result; }, {}); this._table.headers = headers; if (!('foldLength' in this._options)) { this._options.foldLength = 76; } if (!('escapeCharacters' in this._options)) { this._options.escapeCharacters = true; } if (!('sort' in this._options)) { this._options.sort = false; } if (!('eol' in this._options)) { this._options.eol = '\n'; } this._translations = []; this._handleCharset(); } /** * Converts a comments object to a comment string. The comment object is * in the form of {translator:'', reference: '', extracted: '', flag: '', previous:''} * * @param {Object} comments A comments object * @return {String} A comment string for the PO file */ Compiler.prototype._drawComments = function (comments) { const lines = []; const types = [{ key: 'translator', prefix: '# ' }, { key: 'reference', prefix: '#: ' }, { key: 'extracted', prefix: '#. ' }, { key: 'flag', prefix: '#, ' }, { key: 'previous', prefix: '#| ' }]; types.forEach(type => { if (!comments[type.key]) { return; } comments[type.key].split(/\r?\n|\r/).forEach(line => { lines.push(`${type.prefix}${line}`); }); }); return lines.join(this._options.eol); }; /** * Builds a PO string for a single translation object * * @param {Object} block Translation object * @param {Object} [override] Properties of this object will override `block` properties * @param {boolean} [obsolete] Block is obsolete and must be commented out * @return {String} Translation string for a single object */ Compiler.prototype._drawBlock = function (block, override = {}, obsolete = false) { const response = []; const msgctxt = override.msgctxt || block.msgctxt; const msgid = override.msgid || block.msgid; const msgidPlural = override.msgid_plural || block.msgid_plural; const msgstr = [].concat(override.msgstr || block.msgstr); let comments = override.comments || block.comments; // add comments if (comments && (comments = this._drawComments(comments))) { response.push(comments); } if (msgctxt) { response.push(this._addPOString('msgctxt', msgctxt, obsolete)); } response.push(this._addPOString('msgid', msgid || '', obsolete)); if (msgidPlural) { response.push(this._addPOString('msgid_plural', msgidPlural, obsolete)); msgstr.forEach((msgstr, i) => { response.push(this._addPOString(`msgstr[${i}]`, msgstr || '', obsolete)); }); } else { response.push(this._addPOString('msgstr', msgstr[0] || '', obsolete)); } return response.join(this._options.eol); }; /** * Escapes and joins a key and a value for the PO string * * @param {String} key Key name * @param {String} value Key value * @param {boolean} [obsolete] PO string is obsolete and must be commented out * @return {String} Joined and escaped key-value pair */ Compiler.prototype._addPOString = function (key = '', value = '', obsolete = false) { key = key.toString(); if (obsolete) { key = '#~ ' + key; } let { foldLength, eol, escapeCharacters } = this._options; // escape newlines and quotes if (escapeCharacters) { value = value.toString() .replace(/\\/g, '\\\\') .replace(/"/g, '\\"') .replace(/\t/g, '\\t') .replace(/\r/g, '\\r'); } value = value.replace(/\n/g, '\\n'); // need to escape new line characters regardless let lines = [value]; if (obsolete) { eol = eol + '#~ '; } if (foldLength > 0) { lines = sharedFuncs.foldLine(value, foldLength); } else { // split only on new lines if (escapeCharacters) { lines = value.split(/\\n/g); for (let i = 0; i < lines.length - 1; i++) { lines[i] = `${lines[i]}\\n`; } if (lines.length && lines[lines.length - 1] === '') { lines.splice(-1, 1); } } } if (lines.length < 2) { return `${key} "${lines.shift() || ''}"`; } return `${key} ""${eol}"${lines.join(`"${eol}"`)}"`; }; /** * Handles header values, replaces or adds (if needed) a charset property */ Compiler.prototype._handleCharset = function () { const ct = contentType.parse(this._table.headers['Content-Type'] || 'text/plain'); const charset = sharedFuncs.formatCharset(this._table.charset || ct.parameters.charset || 'utf-8'); // clean up content-type charset independently using fallback if missing if (ct.parameters.charset) { ct.parameters.charset = sharedFuncs.formatCharset(ct.parameters.charset); } this._table.charset = charset; this._table.headers['Content-Type'] = contentType.format(ct); }; /** * Flatten and sort translations object * * @param {Object} section Object to be prepared (translations or obsolete) * @returns {Array} Prepared array */ Compiler.prototype._prepareSection = function (section) { let response = []; Object.keys(section).forEach(msgctxt => { if (typeof section[msgctxt] !== 'object') { return; } Object.keys(section[msgctxt]).forEach(msgid => { if (typeof section[msgctxt][msgid] !== 'object') { return; } if (msgctxt === '' && msgid === '') { return; } response.push(section[msgctxt][msgid]); }); }); const { sort } = this._options; if (sort !== false) { if (typeof sort === 'function') { response = response.sort(sort); } else { response = response.sort(sharedFuncs.compareMsgid); } } return response; }; /** * Compiles translation object into a PO object * * @return {Buffer} Compiled PO object */ Compiler.prototype.compile = function () { const headerBlock = (this._table.translations[''] && this._table.translations['']['']) || {}; let response = []; const translations = this._prepareSection(this._table.translations); response = translations.map(r => this._drawBlock(r)); if (typeof this._table.obsolete === 'object') { const obsolete = this._prepareSection(this._table.obsolete); if (obsolete.length) { response = response.concat(obsolete.map(r => this._drawBlock(r, {}, true))); } } const { eol } = this._options; response.unshift(this._drawBlock(headerBlock, { msgstr: sharedFuncs.generateHeader(this._table.headers) })); if (this._table.charset === 'utf-8' || this._table.charset === 'ascii') { return Buffer.from(response.join(eol + eol), 'utf-8'); } return encoding.convert(response.join(eol + eol), this._table.charset); }; /***/ }), /***/ "./node_modules/gettext-parser/lib/poparser.js": /*!*****************************************************!*\ !*** ./node_modules/gettext-parser/lib/poparser.js ***! \*****************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { const encoding = __webpack_require__(/*! encoding */ "./node_modules/encoding/lib/encoding.js"); const sharedFuncs = __webpack_require__(/*! ./shared */ "./node_modules/gettext-parser/lib/shared.js"); const Transform = (__webpack_require__(/*! readable-stream */ "./node_modules/readable-stream/readable.js").Transform); const util = __webpack_require__(/*! util */ "util"); /** * Parses a PO object into translation table * * @param {Buffer|String} buffer PO object * @param {String} [defaultCharset] Default charset to use * @return {Object} Translation object */ module.exports.parse = function (buffer, defaultCharset) { const parser = new Parser(buffer, defaultCharset); return parser.parse(); }; /** * Parses a PO stream, emits translation table in object mode * * @param {String} [defaultCharset] Default charset to use * @param {String} [options] Stream options * @return {Stream} Transform stream */ module.exports.stream = function (defaultCharset, options) { return new PoParserTransform(defaultCharset, options); }; /** * Creates a PO parser object. If PO object is a string, * UTF-8 will be used as the charset * * @constructor * @param {Buffer|String} fileContents PO object * @param {String} [defaultCharset] Default charset to use */ function Parser (fileContents, defaultCharset = 'iso-8859-1') { this._charset = defaultCharset; this._lex = []; this._escaped = false; this._node = {}; this._state = this.states.none; this._lineNumber = 1; if (typeof fileContents === 'string') { this._charset = 'utf-8'; this._fileContents = fileContents; } else { this._fileContents = this._handleCharset(fileContents); } } /** * Parses the PO object and returns translation table * * @return {Object} Translation table */ Parser.prototype.parse = function () { this._lexer(this._fileContents); return this._finalize(this._lex); }; /** * Detects charset for PO strings from the header * * @param {Buffer} headers Header value */ Parser.prototype._handleCharset = function (buf = '') { const str = buf.toString(); let pos; let headers = ''; let match; if ((pos = str.search(/^\s*msgid/im)) >= 0) { pos = pos + str.substr(pos + 5).search(/^\s*(msgid|msgctxt)/im); headers = str.substr(0, pos >= 0 ? pos + 5 : str.length); } if ((match = headers.match(/[; ]charset\s*=\s*([\w-]+)(?:[\s;]|\\n)*"\s*$/mi))) { this._charset = sharedFuncs.formatCharset(match[1], this._charset); } if (this._charset === 'utf-8') { return str; } return this._toString(buf); }; Parser.prototype._toString = function (buf) { return encoding.convert(buf, 'utf-8', this._charset).toString('utf-8'); }; /** * State constants for parsing FSM */ Parser.prototype.states = { none: 0x01, comments: 0x02, key: 0x03, string: 0x04, obsolete: 0x05 }; /** * Value types for lexer */ Parser.prototype.types = { comments: 0x01, key: 0x02, string: 0x03, obsolete: 0x04 }; /** * String matches for lexer */ Parser.prototype.symbols = { quotes: /["']/, comments: /#/, whitespace: /\s/, key: /[\w\-[\]]/, keyNames: /^(?:msgctxt|msgid(?:_plural)?|msgstr(?:\[\d+])?)$/ }; /** * Token parser. Parsed state can be found from this._lex * * @param {String} chunk String */ Parser.prototype._lexer = function (chunk) { let chr; for (let i = 0, len = chunk.length; i < len; i++) { chr = chunk.charAt(i); if (chr === '\n') { this._lineNumber += 1; } switch (this._state) { case this.states.none: case this.states.obsolete: if (chr.match(this.symbols.quotes)) { this._node = { type: this.types.string, value: '', quote: chr }; this._lex.push(this._node); this._state = this.states.string; } else if (chr.match(this.symbols.comments)) { this._node = { type: this.types.comments, value: '' }; this._lex.push(this._node); this._state = this.states.comments; } else if (!chr.match(this.symbols.whitespace)) { this._node = { type: this.types.key, value: chr }; if (this._state === this.states.obsolete) { this._node.obsolete = true; } this._lex.push(this._node); this._state = this.states.key; } break; case this.states.comments: if (chr === '\n') { this._state = this.states.none; } else if (chr === '~' && this._node.value === '') { this._node.value += chr; this._state = this.states.obsolete; } else if (chr !== '\r') { this._node.value += chr; } break; case this.states.string: if (this._escaped) { switch (chr) { case 't': this._node.value += '\t'; break; case 'n': this._node.value += '\n'; break; case 'r': this._node.value += '\r'; break; default: this._node.value += chr; } this._escaped = false; } else { if (chr === this._node.quote) { this._state = this.states.none; } else if (chr === '\\') { this._escaped = true; break; } else { this._node.value += chr; } this._escaped = false; } break; case this.states.key: if (!chr.match(this.symbols.key)) { if (!this._node.value.match(this.symbols.keyNames)) { const err = new SyntaxError(`Error parsing PO data: Invalid key name "${this._node.value}" at line ${this._lineNumber}. This can be caused by an unescaped quote character in a msgid or msgstr value.`); err.lineNumber = this._lineNumber; throw err; } this._state = this.states.none; i--; } else { this._node.value += chr; } break; } } }; /** * Join multi line strings * * @param {Object} tokens Parsed tokens * @return {Object} Parsed tokens, with multi line strings joined into one */ Parser.prototype._joinStringValues = function (tokens) { const response = []; let lastNode; for (let i = 0, len = tokens.length; i < len; i++) { if (lastNode && tokens[i].type === this.types.string && lastNode.type === this.types.string) { lastNode.value += tokens[i].value; } else if (lastNode && tokens[i].type === this.types.comments && lastNode.type === this.types.comments) { lastNode.value += '\n' + tokens[i].value; } else { response.push(tokens[i]); lastNode = tokens[i]; } } return response; }; /** * Parse comments into separate comment blocks * * @param {Object} tokens Parsed tokens */ Parser.prototype._parseComments = function (tokens) { // parse comments tokens.forEach(node => { let comment; let lines; if (node && node.type === this.types.comments) { comment = { translator: [], extracted: [], reference: [], flag: [], previous: [] }; lines = (node.value || '').split(/\n/); lines.forEach(line => { switch (line.charAt(0) || '') { case ':': comment.reference.push(line.substr(1).trim()); break; case '.': comment.extracted.push(line.substr(1).replace(/^\s+/, '')); break; case ',': comment.flag.push(line.substr(1).replace(/^\s+/, '')); break; case '|': comment.previous.push(line.substr(1).replace(/^\s+/, '')); break; case '~': break; default: comment.translator.push(line.replace(/^\s+/, '')); } }); node.value = {}; Object.keys(comment).forEach(key => { if (comment[key] && comment[key].length) { node.value[key] = comment[key].join('\n'); } }); } }); }; /** * Join gettext keys with values * * @param {Object} tokens Parsed tokens * @return {Object} Tokens */ Parser.prototype._handleKeys = function (tokens) { const response = []; let lastNode; for (let i = 0, len = tokens.length; i < len; i++) { if (tokens[i].type === this.types.key) { lastNode = { key: tokens[i].value }; if (tokens[i].obsolete) { lastNode.obsolete = true; } if (i && tokens[i - 1].type === this.types.comments) { lastNode.comments = tokens[i - 1].value; } lastNode.value = ''; response.push(lastNode); } else if (tokens[i].type === this.types.string && lastNode) { lastNode.value += tokens[i].value; } } return response; }; /** * Separate different values into individual translation objects * * @param {Object} tokens Parsed tokens * @return {Object} Tokens */ Parser.prototype._handleValues = function (tokens) { const response = []; let lastNode; let curContext; let curComments; for (let i = 0, len = tokens.length; i < len; i++) { if (tokens[i].key.toLowerCase() === 'msgctxt') { curContext = tokens[i].value; curComments = tokens[i].comments; } else if (tokens[i].key.toLowerCase() === 'msgid') { lastNode = { msgid: tokens[i].value }; if (tokens[i].obsolete) { lastNode.obsolete = true; } if (curContext) { lastNode.msgctxt = curContext; } if (curComments) { lastNode.comments = curComments; } if (tokens[i].comments && !lastNode.comments) { lastNode.comments = tokens[i].comments; } curContext = false; curComments = false; response.push(lastNode); } else if (tokens[i].key.toLowerCase() === 'msgid_plural') { if (lastNode) { lastNode.msgid_plural = tokens[i].value; } if (tokens[i].comments && !lastNode.comments) { lastNode.comments = tokens[i].comments; } curContext = false; curComments = false; } else if (tokens[i].key.substr(0, 6).toLowerCase() === 'msgstr') { if (lastNode) { lastNode.msgstr = (lastNode.msgstr || []).concat(tokens[i].value); } if (tokens[i].comments && !lastNode.comments) { lastNode.comments = tokens[i].comments; } curContext = false; curComments = false; } } return response; }; /** * Compose a translation table from tokens object * * @param {Object} tokens Parsed tokens * @return {Object} Translation table */ Parser.prototype._normalize = function (tokens) { const table = { charset: this._charset, headers: undefined, translations: {} }; let msgctxt; for (let i = 0, len = tokens.length; i < len; i++) { msgctxt = tokens[i].msgctxt || ''; if (tokens[i].obsolete) { if (!table.obsolete) { table.obsolete = {}; } if (!table.obsolete[msgctxt]) { table.obsolete[msgctxt] = {}; } delete tokens[i].obsolete; table.obsolete[msgctxt][tokens[i].msgid] = tokens[i]; continue; } if (!table.translations[msgctxt]) { table.translations[msgctxt] = {}; } if (!table.headers && !msgctxt && !tokens[i].msgid) { table.headers = sharedFuncs.parseHeader(tokens[i].msgstr[0]); } table.translations[msgctxt][tokens[i].msgid] = tokens[i]; } return table; }; /** * Converts parsed tokens to a translation table * * @param {Object} tokens Parsed tokens * @returns {Object} Translation table */ Parser.prototype._finalize = function (tokens) { let data = this._joinStringValues(tokens); this._parseComments(data); data = this._handleKeys(data); data = this._handleValues(data); return this._normalize(data); }; /** * Creates a transform stream for parsing PO input * * @constructor * @param {String} [defaultCharset] Default charset to use * @param {String} [options] Stream options */ function PoParserTransform (defaultCharset, options) { if (!options && defaultCharset && typeof defaultCharset === 'object') { options = defaultCharset; defaultCharset = undefined; } this.defaultCharset = defaultCharset; this._parser = false; this._tokens = {}; this._cache = []; this._cacheSize = 0; this.initialTreshold = options.initialTreshold || 2 * 1024; Transform.call(this, options); this._writableState.objectMode = false; this._readableState.objectMode = true; } util.inherits(PoParserTransform, Transform); /** * Processes a chunk of the input stream */ PoParserTransform.prototype._transform = function (chunk, encoding, done) { let i; let len = 0; if (!chunk || !chunk.length) { return done(); } if (!this._parser) { this._cache.push(chunk); this._cacheSize += chunk.length; // wait until the first 1kb before parsing headers for charset if (this._cacheSize < this.initialTreshold) { return setImmediate(done); } else if (this._cacheSize) { chunk = Buffer.concat(this._cache, this._cacheSize); this._cacheSize = 0; this._cache = []; } this._parser = new Parser(chunk, this.defaultCharset); } else if (this._cacheSize) { // this only happens if we had an uncompleted 8bit sequence from the last iteration this._cache.push(chunk); this._cacheSize += chunk.length; chunk = Buffer.concat(this._cache, this._cacheSize); this._cacheSize = 0; this._cache = []; } // cache 8bit bytes from the end of the chunk // helps if the chunk ends in the middle of an utf-8 sequence for (i = chunk.length - 1; i >= 0; i--) { if (chunk[i] >= 0x80) { len++; continue; } break; } // it seems we found some 8bit bytes from the end of the string, so let's cache these if (len) { this._cache = [chunk.slice(chunk.length - len)]; this._cacheSize = this._cache[0].length; chunk = chunk.slice(0, chunk.length - len); } // chunk might be empty if it only continued of 8bit bytes and these were all cached if (chunk.length) { try { this._parser._lexer(this._parser._toString(chunk)); } catch (error) { setImmediate(() => { done(error); }); return; } } setImmediate(done); }; /** * Once all input has been processed emit the parsed translation table as an object */ PoParserTransform.prototype._flush = function (done) { let chunk; if (this._cacheSize) { chunk = Buffer.concat(this._cache, this._cacheSize); } if (!this._parser && chunk) { this._parser = new Parser(chunk, this.defaultCharset); } if (chunk) { try { this._parser._lexer(this._parser._toString(chunk)); } catch (error) { setImmediate(() => { done(error); }); return; } } if (this._parser) { this.push(this._parser._finalize(this._parser._lex)); } setImmediate(done); }; /***/ }), /***/ "./node_modules/gettext-parser/lib/shared.js": /*!***************************************************!*\ !*** ./node_modules/gettext-parser/lib/shared.js ***! \***************************************************/ /***/ ((module) => { module.exports.parseHeader = parseHeader; module.exports.generateHeader = generateHeader; module.exports.formatCharset = formatCharset; module.exports.foldLine = foldLine; module.exports.compareMsgid = compareMsgid; // see https://www.gnu.org/software/gettext/manual/html_node/Header-Entry.html const HEADERS = new Map([ ['project-id-version', 'Project-Id-Version'], ['report-msgid-bugs-to', 'Report-Msgid-Bugs-To'], ['pot-creation-date', 'POT-Creation-Date'], ['po-revision-date', 'PO-Revision-Date'], ['last-translator', 'Last-Translator'], ['language-team', 'Language-Team'], ['language', 'Language'], ['content-type', 'Content-Type'], ['content-transfer-encoding', 'Content-Transfer-Encoding'], ['plural-forms', 'Plural-Forms'] ]); module.exports.HEADERS = HEADERS; /** * Parses a header string into an object of key-value pairs * * @param {String} str Header string * @return {Object} An object of key-value pairs */ function parseHeader (str = '') { return str.split('\n') .reduce((headers, line) => { const parts = line.split(':'); let key = (parts.shift() || '').trim(); if (key) { const value = parts.join(':').trim(); key = HEADERS.get(key.toLowerCase()) || key; headers[key] = value; } return headers; }, {}); } /** * Joins a header object of key value pairs into a header string * * @param {Object} header Object of key value pairs * @return {String} Header string */ function generateHeader (header = {}) { const keys = Object.keys(header) .filter(key => !!key); if (!keys.length) { return ''; } return keys.map(key => `${key}: ${(header[key] || '').trim()}` ) .join('\n') + '\n'; } /** * Normalizes charset name. Converts utf8 to utf-8, WIN1257 to windows-1257 etc. * * @param {String} charset Charset name * @return {String} Normalized charset name */ function formatCharset (charset = 'iso-8859-1', defaultCharset = 'iso-8859-1') { return charset.toString() .toLowerCase() .replace(/^utf[-_]?(\d+)$/, 'utf-$1') .replace(/^win(?:dows)?[-_]?(\d+)$/, 'windows-$1') .replace(/^latin[-_]?(\d+)$/, 'iso-8859-$1') .replace(/^(us[-_]?)?ascii$/, 'ascii') .replace(/^charset$/, defaultCharset) .trim(); } /** * Folds long lines according to PO format * * @param {String} str PO formatted string to be folded * @param {Number} [maxLen=76] Maximum allowed length for folded lines * @return {Array} An array of lines */ function foldLine (str, maxLen = 76) { const lines = []; const len = str.length; let curLine = ''; let pos = 0; let match; while (pos < len) { curLine = str.substr(pos, maxLen); // ensure that the line never ends with a partial escaping // make longer lines if needed while (curLine.substr(-1) === '\\' && pos + curLine.length < len) { curLine += str.charAt(pos + curLine.length); } // ensure that if possible, line breaks are done at reasonable places if ((match = /.*?\\n/.exec(curLine))) { // use everything before and including the first line break curLine = match[0]; } else if (pos + curLine.length < len) { // if we're not at the end if ((match = /.*\s+/.exec(curLine)) && /[^\s]/.test(match[0])) { // use everything before and including the last white space character (if anything) curLine = match[0]; } else if ((match = /.*[\x21-\x2f0-9\x5b-\x60\x7b-\x7e]+/.exec(curLine)) && /[^\x21-\x2f0-9\x5b-\x60\x7b-\x7e]/.test(match[0])) { // use everything before and including the last "special" character (if anything) curLine = match[0]; } } lines.push(curLine); pos += curLine.length; } return lines; } /** * Comparator function for comparing msgid * @param {Object} object with msgid prev * @param {Object} object with msgid next * @returns {number} comparator index */ function compareMsgid ({ msgid: left }, { msgid: right }) { if (left < right) { return -1; } if (left > right) { return 1; } return 0; } /***/ }), /***/ "./node_modules/glob/common.js": /*!*************************************!*\ !*** ./node_modules/glob/common.js ***! \*************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { exports.setopts = setopts exports.ownProp = ownProp exports.makeAbs = makeAbs exports.finish = finish exports.mark = mark exports.isIgnored = isIgnored exports.childrenIgnored = childrenIgnored function ownProp (obj, field) { return Object.prototype.hasOwnProperty.call(obj, field) } var fs = __webpack_require__(/*! fs */ "fs") var path = __webpack_require__(/*! path */ "path") var minimatch = __webpack_require__(/*! minimatch */ "./node_modules/minimatch/minimatch.js") var isAbsolute = __webpack_require__(/*! path-is-absolute */ "./node_modules/path-is-absolute/index.js") var Minimatch = minimatch.Minimatch function alphasort (a, b) { return a.localeCompare(b, 'en') } function setupIgnores (self, options) { self.ignore = options.ignore || [] if (!Array.isArray(self.ignore)) self.ignore = [self.ignore] if (self.ignore.length) { self.ignore = self.ignore.map(ignoreMap) } } // ignore patterns are always in dot:true mode. function ignoreMap (pattern) { var gmatcher = null if (pattern.slice(-3) === '/**') { var gpattern = pattern.replace(/(\/\*\*)+$/, '') gmatcher = new Minimatch(gpattern, { dot: true }) } return { matcher: new Minimatch(pattern, { dot: true }), gmatcher: gmatcher } } function setopts (self, pattern, options) { if (!options) options = {} // base-matching: just use globstar for that. if (options.matchBase && -1 === pattern.indexOf("/")) { if (options.noglobstar) { throw new Error("base matching requires globstar") } pattern = "**/" + pattern } self.silent = !!options.silent self.pattern = pattern self.strict = options.strict !== false self.realpath = !!options.realpath self.realpathCache = options.realpathCache || Object.create(null) self.follow = !!options.follow self.dot = !!options.dot self.mark = !!options.mark self.nodir = !!options.nodir if (self.nodir) self.mark = true self.sync = !!options.sync self.nounique = !!options.nounique self.nonull = !!options.nonull self.nosort = !!options.nosort self.nocase = !!options.nocase self.stat = !!options.stat self.noprocess = !!options.noprocess self.absolute = !!options.absolute self.fs = options.fs || fs self.maxLength = options.maxLength || Infinity self.cache = options.cache || Object.create(null) self.statCache = options.statCache || Object.create(null) self.symlinks = options.symlinks || Object.create(null) setupIgnores(self, options) self.changedCwd = false var cwd = process.cwd() if (!ownProp(options, "cwd")) self.cwd = cwd else { self.cwd = path.resolve(options.cwd) self.changedCwd = self.cwd !== cwd } self.root = options.root || path.resolve(self.cwd, "/") self.root = path.resolve(self.root) if (process.platform === "win32") self.root = self.root.replace(/\\/g, "/") // TODO: is an absolute `cwd` supposed to be resolved against `root`? // e.g. { cwd: '/test', root: __dirname } === path.join(__dirname, '/test') self.cwdAbs = isAbsolute(self.cwd) ? self.cwd : makeAbs(self, self.cwd) if (process.platform === "win32") self.cwdAbs = self.cwdAbs.replace(/\\/g, "/") self.nomount = !!options.nomount // disable comments and negation in Minimatch. // Note that they are not supported in Glob itself anyway. options.nonegate = true options.nocomment = true self.minimatch = new Minimatch(pattern, options) self.options = self.minimatch.options } function finish (self) { var nou = self.nounique var all = nou ? [] : Object.create(null) for (var i = 0, l = self.matches.length; i < l; i ++) { var matches = self.matches[i] if (!matches || Object.keys(matches).length === 0) { if (self.nonull) { // do like the shell, and spit out the literal glob var literal = self.minimatch.globSet[i] if (nou) all.push(literal) else all[literal] = true } } else { // had matches var m = Object.keys(matches) if (nou) all.push.apply(all, m) else m.forEach(function (m) { all[m] = true }) } } if (!nou) all = Object.keys(all) if (!self.nosort) all = all.sort(alphasort) // at *some* point we statted all of these if (self.mark) { for (var i = 0; i < all.length; i++) { all[i] = self._mark(all[i]) } if (self.nodir) { all = all.filter(function (e) { var notDir = !(/\/$/.test(e)) var c = self.cache[e] || self.cache[makeAbs(self, e)] if (notDir && c) notDir = c !== 'DIR' && !Array.isArray(c) return notDir }) } } if (self.ignore.length) all = all.filter(function(m) { return !isIgnored(self, m) }) self.found = all } function mark (self, p) { var abs = makeAbs(self, p) var c = self.cache[abs] var m = p if (c) { var isDir = c === 'DIR' || Array.isArray(c) var slash = p.slice(-1) === '/' if (isDir && !slash) m += '/' else if (!isDir && slash) m = m.slice(0, -1) if (m !== p) { var mabs = makeAbs(self, m) self.statCache[mabs] = self.statCache[abs] self.cache[mabs] = self.cache[abs] } } return m } // lotta situps... function makeAbs (self, f) { var abs = f if (f.charAt(0) === '/') { abs = path.join(self.root, f) } else if (isAbsolute(f) || f === '') { abs = f } else if (self.changedCwd) { abs = path.resolve(self.cwd, f) } else { abs = path.resolve(f) } if (process.platform === 'win32') abs = abs.replace(/\\/g, '/') return abs } // Return true, if pattern ends with globstar '**', for the accompanying parent directory. // Ex:- If node_modules/** is the pattern, add 'node_modules' to ignore list along with it's contents function isIgnored (self, path) { if (!self.ignore.length) return false return self.ignore.some(function(item) { return item.matcher.match(path) || !!(item.gmatcher && item.gmatcher.match(path)) }) } function childrenIgnored (self, path) { if (!self.ignore.length) return false return self.ignore.some(function(item) { return !!(item.gmatcher && item.gmatcher.match(path)) }) } /***/ }), /***/ "./node_modules/glob/glob.js": /*!***********************************!*\ !*** ./node_modules/glob/glob.js ***! \***********************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { // Approach: // // 1. Get the minimatch set // 2. For each pattern in the set, PROCESS(pattern, false) // 3. Store matches per-set, then uniq them // // PROCESS(pattern, inGlobStar) // Get the first [n] items from pattern that are all strings // Join these together. This is PREFIX. // If there is no more remaining, then stat(PREFIX) and // add to matches if it succeeds. END. // // If inGlobStar and PREFIX is symlink and points to dir // set ENTRIES = [] // else readdir(PREFIX) as ENTRIES // If fail, END // // with ENTRIES // If pattern[n] is GLOBSTAR // // handle the case where the globstar match is empty // // by pruning it out, and testing the resulting pattern // PROCESS(pattern[0..n] + pattern[n+1 .. $], false) // // handle other cases. // for ENTRY in ENTRIES (not dotfiles) // // attach globstar + tail onto the entry // // Mark that this entry is a globstar match // PROCESS(pattern[0..n] + ENTRY + pattern[n .. $], true) // // else // not globstar // for ENTRY in ENTRIES (not dotfiles, unless pattern[n] is dot) // Test ENTRY against pattern[n] // If fails, continue // If passes, PROCESS(pattern[0..n] + item + pattern[n+1 .. $]) // // Caveat: // Cache all stats and readdirs results to minimize syscall. Since all // we ever care about is existence and directory-ness, we can just keep // `true` for files, and [children,...] for directories, or `false` for // things that don't exist. module.exports = glob var rp = __webpack_require__(/*! fs.realpath */ "./node_modules/fs.realpath/index.js") var minimatch = __webpack_require__(/*! minimatch */ "./node_modules/minimatch/minimatch.js") var Minimatch = minimatch.Minimatch var inherits = __webpack_require__(/*! inherits */ "./node_modules/inherits/inherits.js") var EE = (__webpack_require__(/*! events */ "events").EventEmitter) var path = __webpack_require__(/*! path */ "path") var assert = __webpack_require__(/*! assert */ "assert") var isAbsolute = __webpack_require__(/*! path-is-absolute */ "./node_modules/path-is-absolute/index.js") var globSync = __webpack_require__(/*! ./sync.js */ "./node_modules/glob/sync.js") var common = __webpack_require__(/*! ./common.js */ "./node_modules/glob/common.js") var setopts = common.setopts var ownProp = common.ownProp var inflight = __webpack_require__(/*! inflight */ "./node_modules/inflight/inflight.js") var util = __webpack_require__(/*! util */ "util") var childrenIgnored = common.childrenIgnored var isIgnored = common.isIgnored var once = __webpack_require__(/*! once */ "./node_modules/once/once.js") function glob (pattern, options, cb) { if (typeof options === 'function') cb = options, options = {} if (!options) options = {} if (options.sync) { if (cb) throw new TypeError('callback provided to sync glob') return globSync(pattern, options) } return new Glob(pattern, options, cb) } glob.sync = globSync var GlobSync = glob.GlobSync = globSync.GlobSync // old api surface glob.glob = glob function extend (origin, add) { if (add === null || typeof add !== 'object') { return origin } var keys = Object.keys(add) var i = keys.length while (i--) { origin[keys[i]] = add[keys[i]] } return origin } glob.hasMagic = function (pattern, options_) { var options = extend({}, options_) options.noprocess = true var g = new Glob(pattern, options) var set = g.minimatch.set if (!pattern) return false if (set.length > 1) return true for (var j = 0; j < set[0].length; j++) { if (typeof set[0][j] !== 'string') return true } return false } glob.Glob = Glob inherits(Glob, EE) function Glob (pattern, options, cb) { if (typeof options === 'function') { cb = options options = null } if (options && options.sync) { if (cb) throw new TypeError('callback provided to sync glob') return new GlobSync(pattern, options) } if (!(this instanceof Glob)) return new Glob(pattern, options, cb) setopts(this, pattern, options) this._didRealPath = false // process each pattern in the minimatch set var n = this.minimatch.set.length // The matches are stored as {: true,...} so that // duplicates are automagically pruned. // Later, we do an Object.keys() on these. // Keep them as a list so we can fill in when nonull is set. this.matches = new Array(n) if (typeof cb === 'function') { cb = once(cb) this.on('error', cb) this.on('end', function (matches) { cb(null, matches) }) } var self = this this._processing = 0 this._emitQueue = [] this._processQueue = [] this.paused = false if (this.noprocess) return this if (n === 0) return done() var sync = true for (var i = 0; i < n; i ++) { this._process(this.minimatch.set[i], i, false, done) } sync = false function done () { --self._processing if (self._processing <= 0) { if (sync) { process.nextTick(function () { self._finish() }) } else { self._finish() } } } } Glob.prototype._finish = function () { assert(this instanceof Glob) if (this.aborted) return if (this.realpath && !this._didRealpath) return this._realpath() common.finish(this) this.emit('end', this.found) } Glob.prototype._realpath = function () { if (this._didRealpath) return this._didRealpath = true var n = this.matches.length if (n === 0) return this._finish() var self = this for (var i = 0; i < this.matches.length; i++) this._realpathSet(i, next) function next () { if (--n === 0) self._finish() } } Glob.prototype._realpathSet = function (index, cb) { var matchset = this.matches[index] if (!matchset) return cb() var found = Object.keys(matchset) var self = this var n = found.length if (n === 0) return cb() var set = this.matches[index] = Object.create(null) found.forEach(function (p, i) { // If there's a problem with the stat, then it means that // one or more of the links in the realpath couldn't be // resolved. just return the abs value in that case. p = self._makeAbs(p) rp.realpath(p, self.realpathCache, function (er, real) { if (!er) set[real] = true else if (er.syscall === 'stat') set[p] = true else self.emit('error', er) // srsly wtf right here if (--n === 0) { self.matches[index] = set cb() } }) }) } Glob.prototype._mark = function (p) { return common.mark(this, p) } Glob.prototype._makeAbs = function (f) { return common.makeAbs(this, f) } Glob.prototype.abort = function () { this.aborted = true this.emit('abort') } Glob.prototype.pause = function () { if (!this.paused) { this.paused = true this.emit('pause') } } Glob.prototype.resume = function () { if (this.paused) { this.emit('resume') this.paused = false if (this._emitQueue.length) { var eq = this._emitQueue.slice(0) this._emitQueue.length = 0 for (var i = 0; i < eq.length; i ++) { var e = eq[i] this._emitMatch(e[0], e[1]) } } if (this._processQueue.length) { var pq = this._processQueue.slice(0) this._processQueue.length = 0 for (var i = 0; i < pq.length; i ++) { var p = pq[i] this._processing-- this._process(p[0], p[1], p[2], p[3]) } } } } Glob.prototype._process = function (pattern, index, inGlobStar, cb) { assert(this instanceof Glob) assert(typeof cb === 'function') if (this.aborted) return this._processing++ if (this.paused) { this._processQueue.push([pattern, index, inGlobStar, cb]) return } //console.error('PROCESS %d', this._processing, pattern) // Get the first [n] parts of pattern that are all strings. var n = 0 while (typeof pattern[n] === 'string') { n ++ } // now n is the index of the first one that is *not* a string. // see if there's anything else var prefix switch (n) { // if not, then this is rather simple case pattern.length: this._processSimple(pattern.join('/'), index, cb) return case 0: // pattern *starts* with some non-trivial item. // going to readdir(cwd), but not include the prefix in matches. prefix = null break default: // pattern has some string bits in the front. // whatever it starts with, whether that's 'absolute' like /foo/bar, // or 'relative' like '../baz' prefix = pattern.slice(0, n).join('/') break } var remain = pattern.slice(n) // get the list of entries. var read if (prefix === null) read = '.' else if (isAbsolute(prefix) || isAbsolute(pattern.join('/'))) { if (!prefix || !isAbsolute(prefix)) prefix = '/' + prefix read = prefix } else read = prefix var abs = this._makeAbs(read) //if ignored, skip _processing if (childrenIgnored(this, read)) return cb() var isGlobStar = remain[0] === minimatch.GLOBSTAR if (isGlobStar) this._processGlobStar(prefix, read, abs, remain, index, inGlobStar, cb) else this._processReaddir(prefix, read, abs, remain, index, inGlobStar, cb) } Glob.prototype._processReaddir = function (prefix, read, abs, remain, index, inGlobStar, cb) { var self = this this._readdir(abs, inGlobStar, function (er, entries) { return self._processReaddir2(prefix, read, abs, remain, index, inGlobStar, entries, cb) }) } Glob.prototype._processReaddir2 = function (prefix, read, abs, remain, index, inGlobStar, entries, cb) { // if the abs isn't a dir, then nothing can match! if (!entries) return cb() // It will only match dot entries if it starts with a dot, or if // dot is set. Stuff like @(.foo|.bar) isn't allowed. var pn = remain[0] var negate = !!this.minimatch.negate var rawGlob = pn._glob var dotOk = this.dot || rawGlob.charAt(0) === '.' var matchedEntries = [] for (var i = 0; i < entries.length; i++) { var e = entries[i] if (e.charAt(0) !== '.' || dotOk) { var m if (negate && !prefix) { m = !e.match(pn) } else { m = e.match(pn) } if (m) matchedEntries.push(e) } } //console.error('prd2', prefix, entries, remain[0]._glob, matchedEntries) var len = matchedEntries.length // If there are no matched entries, then nothing matches. if (len === 0) return cb() // if this is the last remaining pattern bit, then no need for // an additional stat *unless* the user has specified mark or // stat explicitly. We know they exist, since readdir returned // them. if (remain.length === 1 && !this.mark && !this.stat) { if (!this.matches[index]) this.matches[index] = Object.create(null) for (var i = 0; i < len; i ++) { var e = matchedEntries[i] if (prefix) { if (prefix !== '/') e = prefix + '/' + e else e = prefix + e } if (e.charAt(0) === '/' && !this.nomount) { e = path.join(this.root, e) } this._emitMatch(index, e) } // This was the last one, and no stats were needed return cb() } // now test all matched entries as stand-ins for that part // of the pattern. remain.shift() for (var i = 0; i < len; i ++) { var e = matchedEntries[i] var newPattern if (prefix) { if (prefix !== '/') e = prefix + '/' + e else e = prefix + e } this._process([e].concat(remain), index, inGlobStar, cb) } cb() } Glob.prototype._emitMatch = function (index, e) { if (this.aborted) return if (isIgnored(this, e)) return if (this.paused) { this._emitQueue.push([index, e]) return } var abs = isAbsolute(e) ? e : this._makeAbs(e) if (this.mark) e = this._mark(e) if (this.absolute) e = abs if (this.matches[index][e]) return if (this.nodir) { var c = this.cache[abs] if (c === 'DIR' || Array.isArray(c)) return } this.matches[index][e] = true var st = this.statCache[abs] if (st) this.emit('stat', e, st) this.emit('match', e) } Glob.prototype._readdirInGlobStar = function (abs, cb) { if (this.aborted) return // follow all symlinked directories forever // just proceed as if this is a non-globstar situation if (this.follow) return this._readdir(abs, false, cb) var lstatkey = 'lstat\0' + abs var self = this var lstatcb = inflight(lstatkey, lstatcb_) if (lstatcb) self.fs.lstat(abs, lstatcb) function lstatcb_ (er, lstat) { if (er && er.code === 'ENOENT') return cb() var isSym = lstat && lstat.isSymbolicLink() self.symlinks[abs] = isSym // If it's not a symlink or a dir, then it's definitely a regular file. // don't bother doing a readdir in that case. if (!isSym && lstat && !lstat.isDirectory()) { self.cache[abs] = 'FILE' cb() } else self._readdir(abs, false, cb) } } Glob.prototype._readdir = function (abs, inGlobStar, cb) { if (this.aborted) return cb = inflight('readdir\0'+abs+'\0'+inGlobStar, cb) if (!cb) return //console.error('RD %j %j', +inGlobStar, abs) if (inGlobStar && !ownProp(this.symlinks, abs)) return this._readdirInGlobStar(abs, cb) if (ownProp(this.cache, abs)) { var c = this.cache[abs] if (!c || c === 'FILE') return cb() if (Array.isArray(c)) return cb(null, c) } var self = this self.fs.readdir(abs, readdirCb(this, abs, cb)) } function readdirCb (self, abs, cb) { return function (er, entries) { if (er) self._readdirError(abs, er, cb) else self._readdirEntries(abs, entries, cb) } } Glob.prototype._readdirEntries = function (abs, entries, cb) { if (this.aborted) return // if we haven't asked to stat everything, then just // assume that everything in there exists, so we can avoid // having to stat it a second time. if (!this.mark && !this.stat) { for (var i = 0; i < entries.length; i ++) { var e = entries[i] if (abs === '/') e = abs + e else e = abs + '/' + e this.cache[e] = true } } this.cache[abs] = entries return cb(null, entries) } Glob.prototype._readdirError = function (f, er, cb) { if (this.aborted) return // handle errors, and cache the information switch (er.code) { case 'ENOTSUP': // https://github.com/isaacs/node-glob/issues/205 case 'ENOTDIR': // totally normal. means it *does* exist. var abs = this._makeAbs(f) this.cache[abs] = 'FILE' if (abs === this.cwdAbs) { var error = new Error(er.code + ' invalid cwd ' + this.cwd) error.path = this.cwd error.code = er.code this.emit('error', error) this.abort() } break case 'ENOENT': // not terribly unusual case 'ELOOP': case 'ENAMETOOLONG': case 'UNKNOWN': this.cache[this._makeAbs(f)] = false break default: // some unusual error. Treat as failure. this.cache[this._makeAbs(f)] = false if (this.strict) { this.emit('error', er) // If the error is handled, then we abort // if not, we threw out of here this.abort() } if (!this.silent) console.error('glob error', er) break } return cb() } Glob.prototype._processGlobStar = function (prefix, read, abs, remain, index, inGlobStar, cb) { var self = this this._readdir(abs, inGlobStar, function (er, entries) { self._processGlobStar2(prefix, read, abs, remain, index, inGlobStar, entries, cb) }) } Glob.prototype._processGlobStar2 = function (prefix, read, abs, remain, index, inGlobStar, entries, cb) { //console.error('pgs2', prefix, remain[0], entries) // no entries means not a dir, so it can never have matches // foo.txt/** doesn't match foo.txt if (!entries) return cb() // test without the globstar, and with every child both below // and replacing the globstar. var remainWithoutGlobStar = remain.slice(1) var gspref = prefix ? [ prefix ] : [] var noGlobStar = gspref.concat(remainWithoutGlobStar) // the noGlobStar pattern exits the inGlobStar state this._process(noGlobStar, index, false, cb) var isSym = this.symlinks[abs] var len = entries.length // If it's a symlink, and we're in a globstar, then stop if (isSym && inGlobStar) return cb() for (var i = 0; i < len; i++) { var e = entries[i] if (e.charAt(0) === '.' && !this.dot) continue // these two cases enter the inGlobStar state var instead = gspref.concat(entries[i], remainWithoutGlobStar) this._process(instead, index, true, cb) var below = gspref.concat(entries[i], remain) this._process(below, index, true, cb) } cb() } Glob.prototype._processSimple = function (prefix, index, cb) { // XXX review this. Shouldn't it be doing the mounting etc // before doing stat? kinda weird? var self = this this._stat(prefix, function (er, exists) { self._processSimple2(prefix, index, er, exists, cb) }) } Glob.prototype._processSimple2 = function (prefix, index, er, exists, cb) { //console.error('ps2', prefix, exists) if (!this.matches[index]) this.matches[index] = Object.create(null) // If it doesn't exist, then just mark the lack of results if (!exists) return cb() if (prefix && isAbsolute(prefix) && !this.nomount) { var trail = /[\/\\]$/.test(prefix) if (prefix.charAt(0) === '/') { prefix = path.join(this.root, prefix) } else { prefix = path.resolve(this.root, prefix) if (trail) prefix += '/' } } if (process.platform === 'win32') prefix = prefix.replace(/\\/g, '/') // Mark this as a match this._emitMatch(index, prefix) cb() } // Returns either 'DIR', 'FILE', or false Glob.prototype._stat = function (f, cb) { var abs = this._makeAbs(f) var needDir = f.slice(-1) === '/' if (f.length > this.maxLength) return cb() if (!this.stat && ownProp(this.cache, abs)) { var c = this.cache[abs] if (Array.isArray(c)) c = 'DIR' // It exists, but maybe not how we need it if (!needDir || c === 'DIR') return cb(null, c) if (needDir && c === 'FILE') return cb() // otherwise we have to stat, because maybe c=true // if we know it exists, but not what it is. } var exists var stat = this.statCache[abs] if (stat !== undefined) { if (stat === false) return cb(null, stat) else { var type = stat.isDirectory() ? 'DIR' : 'FILE' if (needDir && type === 'FILE') return cb() else return cb(null, type, stat) } } var self = this var statcb = inflight('stat\0' + abs, lstatcb_) if (statcb) self.fs.lstat(abs, statcb) function lstatcb_ (er, lstat) { if (lstat && lstat.isSymbolicLink()) { // If it's a symlink, then treat it as the target, unless // the target does not exist, then treat it as a file. return self.fs.stat(abs, function (er, stat) { if (er) self._stat2(f, abs, null, lstat, cb) else self._stat2(f, abs, er, stat, cb) }) } else { self._stat2(f, abs, er, lstat, cb) } } } Glob.prototype._stat2 = function (f, abs, er, stat, cb) { if (er && (er.code === 'ENOENT' || er.code === 'ENOTDIR')) { this.statCache[abs] = false return cb() } var needDir = f.slice(-1) === '/' this.statCache[abs] = stat if (abs.slice(-1) === '/' && stat && !stat.isDirectory()) return cb(null, false, stat) var c = true if (stat) c = stat.isDirectory() ? 'DIR' : 'FILE' this.cache[abs] = this.cache[abs] || c if (needDir && c === 'FILE') return cb() return cb(null, c, stat) } /***/ }), /***/ "./node_modules/glob/sync.js": /*!***********************************!*\ !*** ./node_modules/glob/sync.js ***! \***********************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { module.exports = globSync globSync.GlobSync = GlobSync var rp = __webpack_require__(/*! fs.realpath */ "./node_modules/fs.realpath/index.js") var minimatch = __webpack_require__(/*! minimatch */ "./node_modules/minimatch/minimatch.js") var Minimatch = minimatch.Minimatch var Glob = (__webpack_require__(/*! ./glob.js */ "./node_modules/glob/glob.js").Glob) var util = __webpack_require__(/*! util */ "util") var path = __webpack_require__(/*! path */ "path") var assert = __webpack_require__(/*! assert */ "assert") var isAbsolute = __webpack_require__(/*! path-is-absolute */ "./node_modules/path-is-absolute/index.js") var common = __webpack_require__(/*! ./common.js */ "./node_modules/glob/common.js") var setopts = common.setopts var ownProp = common.ownProp var childrenIgnored = common.childrenIgnored var isIgnored = common.isIgnored function globSync (pattern, options) { if (typeof options === 'function' || arguments.length === 3) throw new TypeError('callback provided to sync glob\n'+ 'See: https://github.com/isaacs/node-glob/issues/167') return new GlobSync(pattern, options).found } function GlobSync (pattern, options) { if (!pattern) throw new Error('must provide pattern') if (typeof options === 'function' || arguments.length === 3) throw new TypeError('callback provided to sync glob\n'+ 'See: https://github.com/isaacs/node-glob/issues/167') if (!(this instanceof GlobSync)) return new GlobSync(pattern, options) setopts(this, pattern, options) if (this.noprocess) return this var n = this.minimatch.set.length this.matches = new Array(n) for (var i = 0; i < n; i ++) { this._process(this.minimatch.set[i], i, false) } this._finish() } GlobSync.prototype._finish = function () { assert(this instanceof GlobSync) if (this.realpath) { var self = this this.matches.forEach(function (matchset, index) { var set = self.matches[index] = Object.create(null) for (var p in matchset) { try { p = self._makeAbs(p) var real = rp.realpathSync(p, self.realpathCache) set[real] = true } catch (er) { if (er.syscall === 'stat') set[self._makeAbs(p)] = true else throw er } } }) } common.finish(this) } GlobSync.prototype._process = function (pattern, index, inGlobStar) { assert(this instanceof GlobSync) // Get the first [n] parts of pattern that are all strings. var n = 0 while (typeof pattern[n] === 'string') { n ++ } // now n is the index of the first one that is *not* a string. // See if there's anything else var prefix switch (n) { // if not, then this is rather simple case pattern.length: this._processSimple(pattern.join('/'), index) return case 0: // pattern *starts* with some non-trivial item. // going to readdir(cwd), but not include the prefix in matches. prefix = null break default: // pattern has some string bits in the front. // whatever it starts with, whether that's 'absolute' like /foo/bar, // or 'relative' like '../baz' prefix = pattern.slice(0, n).join('/') break } var remain = pattern.slice(n) // get the list of entries. var read if (prefix === null) read = '.' else if (isAbsolute(prefix) || isAbsolute(pattern.join('/'))) { if (!prefix || !isAbsolute(prefix)) prefix = '/' + prefix read = prefix } else read = prefix var abs = this._makeAbs(read) //if ignored, skip processing if (childrenIgnored(this, read)) return var isGlobStar = remain[0] === minimatch.GLOBSTAR if (isGlobStar) this._processGlobStar(prefix, read, abs, remain, index, inGlobStar) else this._processReaddir(prefix, read, abs, remain, index, inGlobStar) } GlobSync.prototype._processReaddir = function (prefix, read, abs, remain, index, inGlobStar) { var entries = this._readdir(abs, inGlobStar) // if the abs isn't a dir, then nothing can match! if (!entries) return // It will only match dot entries if it starts with a dot, or if // dot is set. Stuff like @(.foo|.bar) isn't allowed. var pn = remain[0] var negate = !!this.minimatch.negate var rawGlob = pn._glob var dotOk = this.dot || rawGlob.charAt(0) === '.' var matchedEntries = [] for (var i = 0; i < entries.length; i++) { var e = entries[i] if (e.charAt(0) !== '.' || dotOk) { var m if (negate && !prefix) { m = !e.match(pn) } else { m = e.match(pn) } if (m) matchedEntries.push(e) } } var len = matchedEntries.length // If there are no matched entries, then nothing matches. if (len === 0) return // if this is the last remaining pattern bit, then no need for // an additional stat *unless* the user has specified mark or // stat explicitly. We know they exist, since readdir returned // them. if (remain.length === 1 && !this.mark && !this.stat) { if (!this.matches[index]) this.matches[index] = Object.create(null) for (var i = 0; i < len; i ++) { var e = matchedEntries[i] if (prefix) { if (prefix.slice(-1) !== '/') e = prefix + '/' + e else e = prefix + e } if (e.charAt(0) === '/' && !this.nomount) { e = path.join(this.root, e) } this._emitMatch(index, e) } // This was the last one, and no stats were needed return } // now test all matched entries as stand-ins for that part // of the pattern. remain.shift() for (var i = 0; i < len; i ++) { var e = matchedEntries[i] var newPattern if (prefix) newPattern = [prefix, e] else newPattern = [e] this._process(newPattern.concat(remain), index, inGlobStar) } } GlobSync.prototype._emitMatch = function (index, e) { if (isIgnored(this, e)) return var abs = this._makeAbs(e) if (this.mark) e = this._mark(e) if (this.absolute) { e = abs } if (this.matches[index][e]) return if (this.nodir) { var c = this.cache[abs] if (c === 'DIR' || Array.isArray(c)) return } this.matches[index][e] = true if (this.stat) this._stat(e) } GlobSync.prototype._readdirInGlobStar = function (abs) { // follow all symlinked directories forever // just proceed as if this is a non-globstar situation if (this.follow) return this._readdir(abs, false) var entries var lstat var stat try { lstat = this.fs.lstatSync(abs) } catch (er) { if (er.code === 'ENOENT') { // lstat failed, doesn't exist return null } } var isSym = lstat && lstat.isSymbolicLink() this.symlinks[abs] = isSym // If it's not a symlink or a dir, then it's definitely a regular file. // don't bother doing a readdir in that case. if (!isSym && lstat && !lstat.isDirectory()) this.cache[abs] = 'FILE' else entries = this._readdir(abs, false) return entries } GlobSync.prototype._readdir = function (abs, inGlobStar) { var entries if (inGlobStar && !ownProp(this.symlinks, abs)) return this._readdirInGlobStar(abs) if (ownProp(this.cache, abs)) { var c = this.cache[abs] if (!c || c === 'FILE') return null if (Array.isArray(c)) return c } try { return this._readdirEntries(abs, this.fs.readdirSync(abs)) } catch (er) { this._readdirError(abs, er) return null } } GlobSync.prototype._readdirEntries = function (abs, entries) { // if we haven't asked to stat everything, then just // assume that everything in there exists, so we can avoid // having to stat it a second time. if (!this.mark && !this.stat) { for (var i = 0; i < entries.length; i ++) { var e = entries[i] if (abs === '/') e = abs + e else e = abs + '/' + e this.cache[e] = true } } this.cache[abs] = entries // mark and cache dir-ness return entries } GlobSync.prototype._readdirError = function (f, er) { // handle errors, and cache the information switch (er.code) { case 'ENOTSUP': // https://github.com/isaacs/node-glob/issues/205 case 'ENOTDIR': // totally normal. means it *does* exist. var abs = this._makeAbs(f) this.cache[abs] = 'FILE' if (abs === this.cwdAbs) { var error = new Error(er.code + ' invalid cwd ' + this.cwd) error.path = this.cwd error.code = er.code throw error } break case 'ENOENT': // not terribly unusual case 'ELOOP': case 'ENAMETOOLONG': case 'UNKNOWN': this.cache[this._makeAbs(f)] = false break default: // some unusual error. Treat as failure. this.cache[this._makeAbs(f)] = false if (this.strict) throw er if (!this.silent) console.error('glob error', er) break } } GlobSync.prototype._processGlobStar = function (prefix, read, abs, remain, index, inGlobStar) { var entries = this._readdir(abs, inGlobStar) // no entries means not a dir, so it can never have matches // foo.txt/** doesn't match foo.txt if (!entries) return // test without the globstar, and with every child both below // and replacing the globstar. var remainWithoutGlobStar = remain.slice(1) var gspref = prefix ? [ prefix ] : [] var noGlobStar = gspref.concat(remainWithoutGlobStar) // the noGlobStar pattern exits the inGlobStar state this._process(noGlobStar, index, false) var len = entries.length var isSym = this.symlinks[abs] // If it's a symlink, and we're in a globstar, then stop if (isSym && inGlobStar) return for (var i = 0; i < len; i++) { var e = entries[i] if (e.charAt(0) === '.' && !this.dot) continue // these two cases enter the inGlobStar state var instead = gspref.concat(entries[i], remainWithoutGlobStar) this._process(instead, index, true) var below = gspref.concat(entries[i], remain) this._process(below, index, true) } } GlobSync.prototype._processSimple = function (prefix, index) { // XXX review this. Shouldn't it be doing the mounting etc // before doing stat? kinda weird? var exists = this._stat(prefix) if (!this.matches[index]) this.matches[index] = Object.create(null) // If it doesn't exist, then just mark the lack of results if (!exists) return if (prefix && isAbsolute(prefix) && !this.nomount) { var trail = /[\/\\]$/.test(prefix) if (prefix.charAt(0) === '/') { prefix = path.join(this.root, prefix) } else { prefix = path.resolve(this.root, prefix) if (trail) prefix += '/' } } if (process.platform === 'win32') prefix = prefix.replace(/\\/g, '/') // Mark this as a match this._emitMatch(index, prefix) } // Returns either 'DIR', 'FILE', or false GlobSync.prototype._stat = function (f) { var abs = this._makeAbs(f) var needDir = f.slice(-1) === '/' if (f.length > this.maxLength) return false if (!this.stat && ownProp(this.cache, abs)) { var c = this.cache[abs] if (Array.isArray(c)) c = 'DIR' // It exists, but maybe not how we need it if (!needDir || c === 'DIR') return c if (needDir && c === 'FILE') return false // otherwise we have to stat, because maybe c=true // if we know it exists, but not what it is. } var exists var stat = this.statCache[abs] if (!stat) { var lstat try { lstat = this.fs.lstatSync(abs) } catch (er) { if (er && (er.code === 'ENOENT' || er.code === 'ENOTDIR')) { this.statCache[abs] = false return false } } if (lstat && lstat.isSymbolicLink()) { try { stat = this.fs.statSync(abs) } catch (er) { stat = lstat } } else { stat = lstat } } this.statCache[abs] = stat var c = true if (stat) c = stat.isDirectory() ? 'DIR' : 'FILE' this.cache[abs] = this.cache[abs] || c if (needDir && c === 'FILE') return false return c } GlobSync.prototype._mark = function (p) { return common.mark(this, p) } GlobSync.prototype._makeAbs = function (f) { return common.makeAbs(this, f) } /***/ }), /***/ "./node_modules/graceful-fs/clone.js": /*!*******************************************!*\ !*** ./node_modules/graceful-fs/clone.js ***! \*******************************************/ /***/ ((module) => { "use strict"; module.exports = clone var getPrototypeOf = Object.getPrototypeOf || function (obj) { return obj.__proto__ } function clone (obj) { if (obj === null || typeof obj !== 'object') return obj if (obj instanceof Object) var copy = { __proto__: getPrototypeOf(obj) } else var copy = Object.create(null) Object.getOwnPropertyNames(obj).forEach(function (key) { Object.defineProperty(copy, key, Object.getOwnPropertyDescriptor(obj, key)) }) return copy } /***/ }), /***/ "./node_modules/graceful-fs/graceful-fs.js": /*!*************************************************!*\ !*** ./node_modules/graceful-fs/graceful-fs.js ***! \*************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var fs = __webpack_require__(/*! fs */ "fs") var polyfills = __webpack_require__(/*! ./polyfills.js */ "./node_modules/graceful-fs/polyfills.js") var legacy = __webpack_require__(/*! ./legacy-streams.js */ "./node_modules/graceful-fs/legacy-streams.js") var clone = __webpack_require__(/*! ./clone.js */ "./node_modules/graceful-fs/clone.js") var util = __webpack_require__(/*! util */ "util") /* istanbul ignore next - node 0.x polyfill */ var gracefulQueue var previousSymbol /* istanbul ignore else - node 0.x polyfill */ if (typeof Symbol === 'function' && typeof Symbol.for === 'function') { gracefulQueue = Symbol.for('graceful-fs.queue') // This is used in testing by future versions previousSymbol = Symbol.for('graceful-fs.previous') } else { gracefulQueue = '___graceful-fs.queue' previousSymbol = '___graceful-fs.previous' } function noop () {} function publishQueue(context, queue) { Object.defineProperty(context, gracefulQueue, { get: function() { return queue } }) } var debug = noop if (util.debuglog) debug = util.debuglog('gfs4') else if (/\bgfs4\b/i.test(process.env.NODE_DEBUG || '')) debug = function() { var m = util.format.apply(util, arguments) m = 'GFS4: ' + m.split(/\n/).join('\nGFS4: ') console.error(m) } // Once time initialization if (!fs[gracefulQueue]) { // This queue can be shared by multiple loaded instances var queue = global[gracefulQueue] || [] publishQueue(fs, queue) // Patch fs.close/closeSync to shared queue version, because we need // to retry() whenever a close happens *anywhere* in the program. // This is essential when multiple graceful-fs instances are // in play at the same time. fs.close = (function (fs$close) { function close (fd, cb) { return fs$close.call(fs, fd, function (err) { // This function uses the graceful-fs shared queue if (!err) { resetQueue() } if (typeof cb === 'function') cb.apply(this, arguments) }) } Object.defineProperty(close, previousSymbol, { value: fs$close }) return close })(fs.close) fs.closeSync = (function (fs$closeSync) { function closeSync (fd) { // This function uses the graceful-fs shared queue fs$closeSync.apply(fs, arguments) resetQueue() } Object.defineProperty(closeSync, previousSymbol, { value: fs$closeSync }) return closeSync })(fs.closeSync) if (/\bgfs4\b/i.test(process.env.NODE_DEBUG || '')) { process.on('exit', function() { debug(fs[gracefulQueue]) __webpack_require__(/*! assert */ "assert").equal(fs[gracefulQueue].length, 0) }) } } if (!global[gracefulQueue]) { publishQueue(global, fs[gracefulQueue]); } module.exports = patch(clone(fs)) if (process.env.TEST_GRACEFUL_FS_GLOBAL_PATCH && !fs.__patched) { module.exports = patch(fs) fs.__patched = true; } function patch (fs) { // Everything that references the open() function needs to be in here polyfills(fs) fs.gracefulify = patch fs.createReadStream = createReadStream fs.createWriteStream = createWriteStream var fs$readFile = fs.readFile fs.readFile = readFile function readFile (path, options, cb) { if (typeof options === 'function') cb = options, options = null return go$readFile(path, options, cb) function go$readFile (path, options, cb, startTime) { return fs$readFile(path, options, function (err) { if (err && (err.code === 'EMFILE' || err.code === 'ENFILE')) enqueue([go$readFile, [path, options, cb], err, startTime || Date.now(), Date.now()]) else { if (typeof cb === 'function') cb.apply(this, arguments) } }) } } var fs$writeFile = fs.writeFile fs.writeFile = writeFile function writeFile (path, data, options, cb) { if (typeof options === 'function') cb = options, options = null return go$writeFile(path, data, options, cb) function go$writeFile (path, data, options, cb, startTime) { return fs$writeFile(path, data, options, function (err) { if (err && (err.code === 'EMFILE' || err.code === 'ENFILE')) enqueue([go$writeFile, [path, data, options, cb], err, startTime || Date.now(), Date.now()]) else { if (typeof cb === 'function') cb.apply(this, arguments) } }) } } var fs$appendFile = fs.appendFile if (fs$appendFile) fs.appendFile = appendFile function appendFile (path, data, options, cb) { if (typeof options === 'function') cb = options, options = null return go$appendFile(path, data, options, cb) function go$appendFile (path, data, options, cb, startTime) { return fs$appendFile(path, data, options, function (err) { if (err && (err.code === 'EMFILE' || err.code === 'ENFILE')) enqueue([go$appendFile, [path, data, options, cb], err, startTime || Date.now(), Date.now()]) else { if (typeof cb === 'function') cb.apply(this, arguments) } }) } } var fs$copyFile = fs.copyFile if (fs$copyFile) fs.copyFile = copyFile function copyFile (src, dest, flags, cb) { if (typeof flags === 'function') { cb = flags flags = 0 } return go$copyFile(src, dest, flags, cb) function go$copyFile (src, dest, flags, cb, startTime) { return fs$copyFile(src, dest, flags, function (err) { if (err && (err.code === 'EMFILE' || err.code === 'ENFILE')) enqueue([go$copyFile, [src, dest, flags, cb], err, startTime || Date.now(), Date.now()]) else { if (typeof cb === 'function') cb.apply(this, arguments) } }) } } var fs$readdir = fs.readdir fs.readdir = readdir var noReaddirOptionVersions = /^v[0-5]\./ function readdir (path, options, cb) { if (typeof options === 'function') cb = options, options = null var go$readdir = noReaddirOptionVersions.test(process.version) ? function go$readdir (path, options, cb, startTime) { return fs$readdir(path, fs$readdirCallback( path, options, cb, startTime )) } : function go$readdir (path, options, cb, startTime) { return fs$readdir(path, options, fs$readdirCallback( path, options, cb, startTime )) } return go$readdir(path, options, cb) function fs$readdirCallback (path, options, cb, startTime) { return function (err, files) { if (err && (err.code === 'EMFILE' || err.code === 'ENFILE')) enqueue([ go$readdir, [path, options, cb], err, startTime || Date.now(), Date.now() ]) else { if (files && files.sort) files.sort() if (typeof cb === 'function') cb.call(this, err, files) } } } } if (process.version.substr(0, 4) === 'v0.8') { var legStreams = legacy(fs) ReadStream = legStreams.ReadStream WriteStream = legStreams.WriteStream } var fs$ReadStream = fs.ReadStream if (fs$ReadStream) { ReadStream.prototype = Object.create(fs$ReadStream.prototype) ReadStream.prototype.open = ReadStream$open } var fs$WriteStream = fs.WriteStream if (fs$WriteStream) { WriteStream.prototype = Object.create(fs$WriteStream.prototype) WriteStream.prototype.open = WriteStream$open } Object.defineProperty(fs, 'ReadStream', { get: function () { return ReadStream }, set: function (val) { ReadStream = val }, enumerable: true, configurable: true }) Object.defineProperty(fs, 'WriteStream', { get: function () { return WriteStream }, set: function (val) { WriteStream = val }, enumerable: true, configurable: true }) // legacy names var FileReadStream = ReadStream Object.defineProperty(fs, 'FileReadStream', { get: function () { return FileReadStream }, set: function (val) { FileReadStream = val }, enumerable: true, configurable: true }) var FileWriteStream = WriteStream Object.defineProperty(fs, 'FileWriteStream', { get: function () { return FileWriteStream }, set: function (val) { FileWriteStream = val }, enumerable: true, configurable: true }) function ReadStream (path, options) { if (this instanceof ReadStream) return fs$ReadStream.apply(this, arguments), this else return ReadStream.apply(Object.create(ReadStream.prototype), arguments) } function ReadStream$open () { var that = this open(that.path, that.flags, that.mode, function (err, fd) { if (err) { if (that.autoClose) that.destroy() that.emit('error', err) } else { that.fd = fd that.emit('open', fd) that.read() } }) } function WriteStream (path, options) { if (this instanceof WriteStream) return fs$WriteStream.apply(this, arguments), this else return WriteStream.apply(Object.create(WriteStream.prototype), arguments) } function WriteStream$open () { var that = this open(that.path, that.flags, that.mode, function (err, fd) { if (err) { that.destroy() that.emit('error', err) } else { that.fd = fd that.emit('open', fd) } }) } function createReadStream (path, options) { return new fs.ReadStream(path, options) } function createWriteStream (path, options) { return new fs.WriteStream(path, options) } var fs$open = fs.open fs.open = open function open (path, flags, mode, cb) { if (typeof mode === 'function') cb = mode, mode = null return go$open(path, flags, mode, cb) function go$open (path, flags, mode, cb, startTime) { return fs$open(path, flags, mode, function (err, fd) { if (err && (err.code === 'EMFILE' || err.code === 'ENFILE')) enqueue([go$open, [path, flags, mode, cb], err, startTime || Date.now(), Date.now()]) else { if (typeof cb === 'function') cb.apply(this, arguments) } }) } } return fs } function enqueue (elem) { debug('ENQUEUE', elem[0].name, elem[1]) fs[gracefulQueue].push(elem) retry() } // keep track of the timeout between retry() calls var retryTimer // reset the startTime and lastTime to now // this resets the start of the 60 second overall timeout as well as the // delay between attempts so that we'll retry these jobs sooner function resetQueue () { var now = Date.now() for (var i = 0; i < fs[gracefulQueue].length; ++i) { // entries that are only a length of 2 are from an older version, don't // bother modifying those since they'll be retried anyway. if (fs[gracefulQueue][i].length > 2) { fs[gracefulQueue][i][3] = now // startTime fs[gracefulQueue][i][4] = now // lastTime } } // call retry to make sure we're actively processing the queue retry() } function retry () { // clear the timer and remove it to help prevent unintended concurrency clearTimeout(retryTimer) retryTimer = undefined if (fs[gracefulQueue].length === 0) return var elem = fs[gracefulQueue].shift() var fn = elem[0] var args = elem[1] // these items may be unset if they were added by an older graceful-fs var err = elem[2] var startTime = elem[3] var lastTime = elem[4] // if we don't have a startTime we have no way of knowing if we've waited // long enough, so go ahead and retry this item now if (startTime === undefined) { debug('RETRY', fn.name, args) fn.apply(null, args) } else if (Date.now() - startTime >= 60000) { // it's been more than 60 seconds total, bail now debug('TIMEOUT', fn.name, args) var cb = args.pop() if (typeof cb === 'function') cb.call(null, err) } else { // the amount of time between the last attempt and right now var sinceAttempt = Date.now() - lastTime // the amount of time between when we first tried, and when we last tried // rounded up to at least 1 var sinceStart = Math.max(lastTime - startTime, 1) // backoff. wait longer than the total time we've been retrying, but only // up to a maximum of 100ms var desiredDelay = Math.min(sinceStart * 1.2, 100) // it's been long enough since the last retry, do it again if (sinceAttempt >= desiredDelay) { debug('RETRY', fn.name, args) fn.apply(null, args.concat([startTime])) } else { // if we can't do this job yet, push it to the end of the queue // and let the next iteration check again fs[gracefulQueue].push(elem) } } // schedule our next run if one isn't already scheduled if (retryTimer === undefined) { retryTimer = setTimeout(retry, 0) } } /***/ }), /***/ "./node_modules/graceful-fs/legacy-streams.js": /*!****************************************************!*\ !*** ./node_modules/graceful-fs/legacy-streams.js ***! \****************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var Stream = (__webpack_require__(/*! stream */ "stream").Stream) module.exports = legacy function legacy (fs) { return { ReadStream: ReadStream, WriteStream: WriteStream } function ReadStream (path, options) { if (!(this instanceof ReadStream)) return new ReadStream(path, options); Stream.call(this); var self = this; this.path = path; this.fd = null; this.readable = true; this.paused = false; this.flags = 'r'; this.mode = 438; /*=0666*/ this.bufferSize = 64 * 1024; options = options || {}; // Mixin options into this var keys = Object.keys(options); for (var index = 0, length = keys.length; index < length; index++) { var key = keys[index]; this[key] = options[key]; } if (this.encoding) this.setEncoding(this.encoding); if (this.start !== undefined) { if ('number' !== typeof this.start) { throw TypeError('start must be a Number'); } if (this.end === undefined) { this.end = Infinity; } else if ('number' !== typeof this.end) { throw TypeError('end must be a Number'); } if (this.start > this.end) { throw new Error('start must be <= end'); } this.pos = this.start; } if (this.fd !== null) { process.nextTick(function() { self._read(); }); return; } fs.open(this.path, this.flags, this.mode, function (err, fd) { if (err) { self.emit('error', err); self.readable = false; return; } self.fd = fd; self.emit('open', fd); self._read(); }) } function WriteStream (path, options) { if (!(this instanceof WriteStream)) return new WriteStream(path, options); Stream.call(this); this.path = path; this.fd = null; this.writable = true; this.flags = 'w'; this.encoding = 'binary'; this.mode = 438; /*=0666*/ this.bytesWritten = 0; options = options || {}; // Mixin options into this var keys = Object.keys(options); for (var index = 0, length = keys.length; index < length; index++) { var key = keys[index]; this[key] = options[key]; } if (this.start !== undefined) { if ('number' !== typeof this.start) { throw TypeError('start must be a Number'); } if (this.start < 0) { throw new Error('start must be >= zero'); } this.pos = this.start; } this.busy = false; this._queue = []; if (this.fd === null) { this._open = fs.open; this._queue.push([this._open, this.path, this.flags, this.mode, undefined]); this.flush(); } } } /***/ }), /***/ "./node_modules/graceful-fs/polyfills.js": /*!***********************************************!*\ !*** ./node_modules/graceful-fs/polyfills.js ***! \***********************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var constants = __webpack_require__(/*! constants */ "constants") var origCwd = process.cwd var cwd = null var platform = process.env.GRACEFUL_FS_PLATFORM || process.platform process.cwd = function() { if (!cwd) cwd = origCwd.call(process) return cwd } try { process.cwd() } catch (er) {} // This check is needed until node.js 12 is required if (typeof process.chdir === 'function') { var chdir = process.chdir process.chdir = function (d) { cwd = null chdir.call(process, d) } if (Object.setPrototypeOf) Object.setPrototypeOf(process.chdir, chdir) } module.exports = patch function patch (fs) { // (re-)implement some things that are known busted or missing. // lchmod, broken prior to 0.6.2 // back-port the fix here. if (constants.hasOwnProperty('O_SYMLINK') && process.version.match(/^v0\.6\.[0-2]|^v0\.5\./)) { patchLchmod(fs) } // lutimes implementation, or no-op if (!fs.lutimes) { patchLutimes(fs) } // https://github.com/isaacs/node-graceful-fs/issues/4 // Chown should not fail on einval or eperm if non-root. // It should not fail on enosys ever, as this just indicates // that a fs doesn't support the intended operation. fs.chown = chownFix(fs.chown) fs.fchown = chownFix(fs.fchown) fs.lchown = chownFix(fs.lchown) fs.chmod = chmodFix(fs.chmod) fs.fchmod = chmodFix(fs.fchmod) fs.lchmod = chmodFix(fs.lchmod) fs.chownSync = chownFixSync(fs.chownSync) fs.fchownSync = chownFixSync(fs.fchownSync) fs.lchownSync = chownFixSync(fs.lchownSync) fs.chmodSync = chmodFixSync(fs.chmodSync) fs.fchmodSync = chmodFixSync(fs.fchmodSync) fs.lchmodSync = chmodFixSync(fs.lchmodSync) fs.stat = statFix(fs.stat) fs.fstat = statFix(fs.fstat) fs.lstat = statFix(fs.lstat) fs.statSync = statFixSync(fs.statSync) fs.fstatSync = statFixSync(fs.fstatSync) fs.lstatSync = statFixSync(fs.lstatSync) // if lchmod/lchown do not exist, then make them no-ops if (fs.chmod && !fs.lchmod) { fs.lchmod = function (path, mode, cb) { if (cb) process.nextTick(cb) } fs.lchmodSync = function () {} } if (fs.chown && !fs.lchown) { fs.lchown = function (path, uid, gid, cb) { if (cb) process.nextTick(cb) } fs.lchownSync = function () {} } // on Windows, A/V software can lock the directory, causing this // to fail with an EACCES or EPERM if the directory contains newly // created files. Try again on failure, for up to 60 seconds. // Set the timeout this long because some Windows Anti-Virus, such as Parity // bit9, may lock files for up to a minute, causing npm package install // failures. Also, take care to yield the scheduler. Windows scheduling gives // CPU to a busy looping process, which can cause the program causing the lock // contention to be starved of CPU by node, so the contention doesn't resolve. if (platform === "win32") { fs.rename = typeof fs.rename !== 'function' ? fs.rename : (function (fs$rename) { function rename (from, to, cb) { var start = Date.now() var backoff = 0; fs$rename(from, to, function CB (er) { if (er && (er.code === "EACCES" || er.code === "EPERM" || er.code === "EBUSY") && Date.now() - start < 60000) { setTimeout(function() { fs.stat(to, function (stater, st) { if (stater && stater.code === "ENOENT") fs$rename(from, to, CB); else cb(er) }) }, backoff) if (backoff < 100) backoff += 10; return; } if (cb) cb(er) }) } if (Object.setPrototypeOf) Object.setPrototypeOf(rename, fs$rename) return rename })(fs.rename) } // if read() returns EAGAIN, then just try it again. fs.read = typeof fs.read !== 'function' ? fs.read : (function (fs$read) { function read (fd, buffer, offset, length, position, callback_) { var callback if (callback_ && typeof callback_ === 'function') { var eagCounter = 0 callback = function (er, _, __) { if (er && er.code === 'EAGAIN' && eagCounter < 10) { eagCounter ++ return fs$read.call(fs, fd, buffer, offset, length, position, callback) } callback_.apply(this, arguments) } } return fs$read.call(fs, fd, buffer, offset, length, position, callback) } // This ensures `util.promisify` works as it does for native `fs.read`. if (Object.setPrototypeOf) Object.setPrototypeOf(read, fs$read) return read })(fs.read) fs.readSync = typeof fs.readSync !== 'function' ? fs.readSync : (function (fs$readSync) { return function (fd, buffer, offset, length, position) { var eagCounter = 0 while (true) { try { return fs$readSync.call(fs, fd, buffer, offset, length, position) } catch (er) { if (er.code === 'EAGAIN' && eagCounter < 10) { eagCounter ++ continue } throw er } } }})(fs.readSync) function patchLchmod (fs) { fs.lchmod = function (path, mode, callback) { fs.open( path , constants.O_WRONLY | constants.O_SYMLINK , mode , function (err, fd) { if (err) { if (callback) callback(err) return } // prefer to return the chmod error, if one occurs, // but still try to close, and report closing errors if they occur. fs.fchmod(fd, mode, function (err) { fs.close(fd, function(err2) { if (callback) callback(err || err2) }) }) }) } fs.lchmodSync = function (path, mode) { var fd = fs.openSync(path, constants.O_WRONLY | constants.O_SYMLINK, mode) // prefer to return the chmod error, if one occurs, // but still try to close, and report closing errors if they occur. var threw = true var ret try { ret = fs.fchmodSync(fd, mode) threw = false } finally { if (threw) { try { fs.closeSync(fd) } catch (er) {} } else { fs.closeSync(fd) } } return ret } } function patchLutimes (fs) { if (constants.hasOwnProperty("O_SYMLINK") && fs.futimes) { fs.lutimes = function (path, at, mt, cb) { fs.open(path, constants.O_SYMLINK, function (er, fd) { if (er) { if (cb) cb(er) return } fs.futimes(fd, at, mt, function (er) { fs.close(fd, function (er2) { if (cb) cb(er || er2) }) }) }) } fs.lutimesSync = function (path, at, mt) { var fd = fs.openSync(path, constants.O_SYMLINK) var ret var threw = true try { ret = fs.futimesSync(fd, at, mt) threw = false } finally { if (threw) { try { fs.closeSync(fd) } catch (er) {} } else { fs.closeSync(fd) } } return ret } } else if (fs.futimes) { fs.lutimes = function (_a, _b, _c, cb) { if (cb) process.nextTick(cb) } fs.lutimesSync = function () {} } } function chmodFix (orig) { if (!orig) return orig return function (target, mode, cb) { return orig.call(fs, target, mode, function (er) { if (chownErOk(er)) er = null if (cb) cb.apply(this, arguments) }) } } function chmodFixSync (orig) { if (!orig) return orig return function (target, mode) { try { return orig.call(fs, target, mode) } catch (er) { if (!chownErOk(er)) throw er } } } function chownFix (orig) { if (!orig) return orig return function (target, uid, gid, cb) { return orig.call(fs, target, uid, gid, function (er) { if (chownErOk(er)) er = null if (cb) cb.apply(this, arguments) }) } } function chownFixSync (orig) { if (!orig) return orig return function (target, uid, gid) { try { return orig.call(fs, target, uid, gid) } catch (er) { if (!chownErOk(er)) throw er } } } function statFix (orig) { if (!orig) return orig // Older versions of Node erroneously returned signed integers for // uid + gid. return function (target, options, cb) { if (typeof options === 'function') { cb = options options = null } function callback (er, stats) { if (stats) { if (stats.uid < 0) stats.uid += 0x100000000 if (stats.gid < 0) stats.gid += 0x100000000 } if (cb) cb.apply(this, arguments) } return options ? orig.call(fs, target, options, callback) : orig.call(fs, target, callback) } } function statFixSync (orig) { if (!orig) return orig // Older versions of Node erroneously returned signed integers for // uid + gid. return function (target, options) { var stats = options ? orig.call(fs, target, options) : orig.call(fs, target) if (stats) { if (stats.uid < 0) stats.uid += 0x100000000 if (stats.gid < 0) stats.gid += 0x100000000 } return stats; } } // ENOSYS means that the fs doesn't support the op. Just ignore // that, because it doesn't matter. // // if there's no getuid, or if getuid() is something other // than 0, and the error is EINVAL or EPERM, then just ignore // it. // // This specific case is a silent failure in cp, install, tar, // and most other unix tools that manage permissions. // // When running as root, or if other types of errors are // encountered, then it's strict. function chownErOk (er) { if (!er) return true if (er.code === "ENOSYS") return true var nonroot = !process.getuid || process.getuid() !== 0 if (nonroot) { if (er.code === "EINVAL" || er.code === "EPERM") return true } return false } } /***/ }), /***/ "./node_modules/has-flag/index.js": /*!****************************************!*\ !*** ./node_modules/has-flag/index.js ***! \****************************************/ /***/ ((module) => { "use strict"; module.exports = (flag, argv = process.argv) => { const prefix = flag.startsWith('-') ? '' : (flag.length === 1 ? '-' : '--'); const position = argv.indexOf(prefix + flag); const terminatorPosition = argv.indexOf('--'); return position !== -1 && (terminatorPosition === -1 || position < terminatorPosition); }; /***/ }), /***/ "./node_modules/inflight/inflight.js": /*!*******************************************!*\ !*** ./node_modules/inflight/inflight.js ***! \*******************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var wrappy = __webpack_require__(/*! wrappy */ "./node_modules/wrappy/wrappy.js") var reqs = Object.create(null) var once = __webpack_require__(/*! once */ "./node_modules/once/once.js") module.exports = wrappy(inflight) function inflight (key, cb) { if (reqs[key]) { reqs[key].push(cb) return null } else { reqs[key] = [cb] return makeres(key) } } function makeres (key) { return once(function RES () { var cbs = reqs[key] var len = cbs.length var args = slice(arguments) // XXX It's somewhat ambiguous whether a new callback added in this // pass should be queued for later execution if something in the // list of callbacks throws, or if it should just be discarded. // However, it's such an edge case that it hardly matters, and either // choice is likely as surprising as the other. // As it happens, we do go ahead and schedule it for later execution. try { for (var i = 0; i < len; i++) { cbs[i].apply(null, args) } } finally { if (cbs.length > len) { // added more in the interim. // de-zalgo, just in case, but don't call again. cbs.splice(0, len) process.nextTick(function () { RES.apply(null, args) }) } else { delete reqs[key] } } }) } function slice (args) { var length = args.length var array = [] for (var i = 0; i < length; i++) array[i] = args[i] return array } /***/ }), /***/ "./node_modules/inherits/inherits.js": /*!*******************************************!*\ !*** ./node_modules/inherits/inherits.js ***! \*******************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { try { var util = __webpack_require__(/*! util */ "util"); /* istanbul ignore next */ if (typeof util.inherits !== 'function') throw ''; module.exports = util.inherits; } catch (e) { /* istanbul ignore next */ module.exports = __webpack_require__(/*! ./inherits_browser.js */ "./node_modules/inherits/inherits_browser.js"); } /***/ }), /***/ "./node_modules/inherits/inherits_browser.js": /*!***************************************************!*\ !*** ./node_modules/inherits/inherits_browser.js ***! \***************************************************/ /***/ ((module) => { if (typeof Object.create === 'function') { // implementation from standard node.js 'util' module module.exports = function inherits(ctor, superCtor) { if (superCtor) { ctor.super_ = superCtor ctor.prototype = Object.create(superCtor.prototype, { constructor: { value: ctor, enumerable: false, writable: true, configurable: true } }) } }; } else { // old school shim for old browsers module.exports = function inherits(ctor, superCtor) { if (superCtor) { ctor.super_ = superCtor var TempCtor = function () {} TempCtor.prototype = superCtor.prototype ctor.prototype = new TempCtor() ctor.prototype.constructor = ctor } } } /***/ }), /***/ "./node_modules/jsonfile/index.js": /*!****************************************!*\ !*** ./node_modules/jsonfile/index.js ***! \****************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { let _fs try { _fs = __webpack_require__(/*! graceful-fs */ "./node_modules/graceful-fs/graceful-fs.js") } catch (_) { _fs = __webpack_require__(/*! fs */ "fs") } const universalify = __webpack_require__(/*! universalify */ "./node_modules/universalify/index.js") const { stringify, stripBom } = __webpack_require__(/*! ./utils */ "./node_modules/jsonfile/utils.js") async function _readFile (file, options = {}) { if (typeof options === 'string') { options = { encoding: options } } const fs = options.fs || _fs const shouldThrow = 'throws' in options ? options.throws : true let data = await universalify.fromCallback(fs.readFile)(file, options) data = stripBom(data) let obj try { obj = JSON.parse(data, options ? options.reviver : null) } catch (err) { if (shouldThrow) { err.message = `${file}: ${err.message}` throw err } else { return null } } return obj } const readFile = universalify.fromPromise(_readFile) function readFileSync (file, options = {}) { if (typeof options === 'string') { options = { encoding: options } } const fs = options.fs || _fs const shouldThrow = 'throws' in options ? options.throws : true try { let content = fs.readFileSync(file, options) content = stripBom(content) return JSON.parse(content, options.reviver) } catch (err) { if (shouldThrow) { err.message = `${file}: ${err.message}` throw err } else { return null } } } async function _writeFile (file, obj, options = {}) { const fs = options.fs || _fs const str = stringify(obj, options) await universalify.fromCallback(fs.writeFile)(file, str, options) } const writeFile = universalify.fromPromise(_writeFile) function writeFileSync (file, obj, options = {}) { const fs = options.fs || _fs const str = stringify(obj, options) // not sure if fs.writeFileSync returns anything, but just in case return fs.writeFileSync(file, str, options) } const jsonfile = { readFile, readFileSync, writeFile, writeFileSync } module.exports = jsonfile /***/ }), /***/ "./node_modules/jsonfile/utils.js": /*!****************************************!*\ !*** ./node_modules/jsonfile/utils.js ***! \****************************************/ /***/ ((module) => { function stringify (obj, { EOL = '\n', finalEOL = true, replacer = null, spaces } = {}) { const EOF = finalEOL ? EOL : '' const str = JSON.stringify(obj, replacer, spaces) return str.replace(/\n/g, EOL) + EOF } function stripBom (content) { // we do this because JSON.parse would convert it to a utf8 string if encoding wasn't specified if (Buffer.isBuffer(content)) content = content.toString('utf8') return content.replace(/^\uFEFF/, '') } module.exports = { stringify, stripBom } /***/ }), /***/ "./node_modules/mime-db/index.js": /*!***************************************!*\ !*** ./node_modules/mime-db/index.js ***! \***************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { /*! * mime-db * Copyright(c) 2014 Jonathan Ong * Copyright(c) 2015-2022 Douglas Christopher Wilson * MIT Licensed */ /** * Module exports. */ module.exports = __webpack_require__(/*! ./db.json */ "./node_modules/mime-db/db.json") /***/ }), /***/ "./node_modules/mime-types/index.js": /*!******************************************!*\ !*** ./node_modules/mime-types/index.js ***! \******************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; /*! * mime-types * Copyright(c) 2014 Jonathan Ong * Copyright(c) 2015 Douglas Christopher Wilson * MIT Licensed */ /** * Module dependencies. * @private */ var db = __webpack_require__(/*! mime-db */ "./node_modules/mime-db/index.js") var extname = (__webpack_require__(/*! path */ "path").extname) /** * Module variables. * @private */ var EXTRACT_TYPE_REGEXP = /^\s*([^;\s]*)(?:;|\s|$)/ var TEXT_TYPE_REGEXP = /^text\//i /** * Module exports. * @public */ exports.charset = charset exports.charsets = { lookup: charset } exports.contentType = contentType exports.extension = extension exports.extensions = Object.create(null) exports.lookup = lookup exports.types = Object.create(null) // Populate the extensions/types maps populateMaps(exports.extensions, exports.types) /** * Get the default charset for a MIME type. * * @param {string} type * @return {boolean|string} */ function charset (type) { if (!type || typeof type !== 'string') { return false } // TODO: use media-typer var match = EXTRACT_TYPE_REGEXP.exec(type) var mime = match && db[match[1].toLowerCase()] if (mime && mime.charset) { return mime.charset } // default text/* to utf-8 if (match && TEXT_TYPE_REGEXP.test(match[1])) { return 'UTF-8' } return false } /** * Create a full Content-Type header given a MIME type or extension. * * @param {string} str * @return {boolean|string} */ function contentType (str) { // TODO: should this even be in this module? if (!str || typeof str !== 'string') { return false } var mime = str.indexOf('/') === -1 ? exports.lookup(str) : str if (!mime) { return false } // TODO: use content-type or other module if (mime.indexOf('charset') === -1) { var charset = exports.charset(mime) if (charset) mime += '; charset=' + charset.toLowerCase() } return mime } /** * Get the default extension for a MIME type. * * @param {string} type * @return {boolean|string} */ function extension (type) { if (!type || typeof type !== 'string') { return false } // TODO: use media-typer var match = EXTRACT_TYPE_REGEXP.exec(type) // get extensions var exts = match && exports.extensions[match[1].toLowerCase()] if (!exts || !exts.length) { return false } return exts[0] } /** * Lookup the MIME type for a file path/extension. * * @param {string} path * @return {boolean|string} */ function lookup (path) { if (!path || typeof path !== 'string') { return false } // get the extension ("ext" or ".ext" or full path) var extension = extname('x.' + path) .toLowerCase() .substr(1) if (!extension) { return false } return exports.types[extension] || false } /** * Populate the extensions and types maps. * @private */ function populateMaps (extensions, types) { // source preference (least -> most) var preference = ['nginx', 'apache', undefined, 'iana'] Object.keys(db).forEach(function forEachMimeType (type) { var mime = db[type] var exts = mime.extensions if (!exts || !exts.length) { return } // mime -> extensions extensions[type] = exts // extension -> mime for (var i = 0; i < exts.length; i++) { var extension = exts[i] if (types[extension]) { var from = preference.indexOf(db[types[extension]].source) var to = preference.indexOf(mime.source) if (types[extension] !== 'application/octet-stream' && (from > to || (from === to && types[extension].substr(0, 12) === 'application/'))) { // skip the remapping continue } } // set the extension -> mime types[extension] = type } }) } /***/ }), /***/ "./node_modules/minimatch/minimatch.js": /*!*********************************************!*\ !*** ./node_modules/minimatch/minimatch.js ***! \*********************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { module.exports = minimatch minimatch.Minimatch = Minimatch var path = (function () { try { return __webpack_require__(/*! path */ "path") } catch (e) {}}()) || { sep: '/' } minimatch.sep = path.sep var GLOBSTAR = minimatch.GLOBSTAR = Minimatch.GLOBSTAR = {} var expand = __webpack_require__(/*! brace-expansion */ "./node_modules/brace-expansion/index.js") var plTypes = { '!': { open: '(?:(?!(?:', close: '))[^/]*?)'}, '?': { open: '(?:', close: ')?' }, '+': { open: '(?:', close: ')+' }, '*': { open: '(?:', close: ')*' }, '@': { open: '(?:', close: ')' } } // any single thing other than / // don't need to escape / when using new RegExp() var qmark = '[^/]' // * => any number of characters var star = qmark + '*?' // ** when dots are allowed. Anything goes, except .. and . // not (^ or / followed by one or two dots followed by $ or /), // followed by anything, any number of times. var twoStarDot = '(?:(?!(?:\\\/|^)(?:\\.{1,2})($|\\\/)).)*?' // not a ^ or / followed by a dot, // followed by anything, any number of times. var twoStarNoDot = '(?:(?!(?:\\\/|^)\\.).)*?' // characters that need to be escaped in RegExp. var reSpecials = charSet('().*{}+?[]^$\\!') // "abc" -> { a:true, b:true, c:true } function charSet (s) { return s.split('').reduce(function (set, c) { set[c] = true return set }, {}) } // normalizes slashes. var slashSplit = /\/+/ minimatch.filter = filter function filter (pattern, options) { options = options || {} return function (p, i, list) { return minimatch(p, pattern, options) } } function ext (a, b) { b = b || {} var t = {} Object.keys(a).forEach(function (k) { t[k] = a[k] }) Object.keys(b).forEach(function (k) { t[k] = b[k] }) return t } minimatch.defaults = function (def) { if (!def || typeof def !== 'object' || !Object.keys(def).length) { return minimatch } var orig = minimatch var m = function minimatch (p, pattern, options) { return orig(p, pattern, ext(def, options)) } m.Minimatch = function Minimatch (pattern, options) { return new orig.Minimatch(pattern, ext(def, options)) } m.Minimatch.defaults = function defaults (options) { return orig.defaults(ext(def, options)).Minimatch } m.filter = function filter (pattern, options) { return orig.filter(pattern, ext(def, options)) } m.defaults = function defaults (options) { return orig.defaults(ext(def, options)) } m.makeRe = function makeRe (pattern, options) { return orig.makeRe(pattern, ext(def, options)) } m.braceExpand = function braceExpand (pattern, options) { return orig.braceExpand(pattern, ext(def, options)) } m.match = function (list, pattern, options) { return orig.match(list, pattern, ext(def, options)) } return m } Minimatch.defaults = function (def) { return minimatch.defaults(def).Minimatch } function minimatch (p, pattern, options) { assertValidPattern(pattern) if (!options) options = {} // shortcut: comments match nothing. if (!options.nocomment && pattern.charAt(0) === '#') { return false } return new Minimatch(pattern, options).match(p) } function Minimatch (pattern, options) { if (!(this instanceof Minimatch)) { return new Minimatch(pattern, options) } assertValidPattern(pattern) if (!options) options = {} pattern = pattern.trim() // windows support: need to use /, not \ if (!options.allowWindowsEscape && path.sep !== '/') { pattern = pattern.split(path.sep).join('/') } this.options = options this.set = [] this.pattern = pattern this.regexp = null this.negate = false this.comment = false this.empty = false this.partial = !!options.partial // make the set of regexps etc. this.make() } Minimatch.prototype.debug = function () {} Minimatch.prototype.make = make function make () { var pattern = this.pattern var options = this.options // empty patterns and comments match nothing. if (!options.nocomment && pattern.charAt(0) === '#') { this.comment = true return } if (!pattern) { this.empty = true return } // step 1: figure out negation, etc. this.parseNegate() // step 2: expand braces var set = this.globSet = this.braceExpand() if (options.debug) this.debug = function debug() { console.error.apply(console, arguments) } this.debug(this.pattern, set) // step 3: now we have a set, so turn each one into a series of path-portion // matching patterns. // These will be regexps, except in the case of "**", which is // set to the GLOBSTAR object for globstar behavior, // and will not contain any / characters set = this.globParts = set.map(function (s) { return s.split(slashSplit) }) this.debug(this.pattern, set) // glob --> regexps set = set.map(function (s, si, set) { return s.map(this.parse, this) }, this) this.debug(this.pattern, set) // filter out everything that didn't compile properly. set = set.filter(function (s) { return s.indexOf(false) === -1 }) this.debug(this.pattern, set) this.set = set } Minimatch.prototype.parseNegate = parseNegate function parseNegate () { var pattern = this.pattern var negate = false var options = this.options var negateOffset = 0 if (options.nonegate) return for (var i = 0, l = pattern.length ; i < l && pattern.charAt(i) === '!' ; i++) { negate = !negate negateOffset++ } if (negateOffset) this.pattern = pattern.substr(negateOffset) this.negate = negate } // Brace expansion: // a{b,c}d -> abd acd // a{b,}c -> abc ac // a{0..3}d -> a0d a1d a2d a3d // a{b,c{d,e}f}g -> abg acdfg acefg // a{b,c}d{e,f}g -> abdeg acdeg abdeg abdfg // // Invalid sets are not expanded. // a{2..}b -> a{2..}b // a{b}c -> a{b}c minimatch.braceExpand = function (pattern, options) { return braceExpand(pattern, options) } Minimatch.prototype.braceExpand = braceExpand function braceExpand (pattern, options) { if (!options) { if (this instanceof Minimatch) { options = this.options } else { options = {} } } pattern = typeof pattern === 'undefined' ? this.pattern : pattern assertValidPattern(pattern) // Thanks to Yeting Li for // improving this regexp to avoid a ReDOS vulnerability. if (options.nobrace || !/\{(?:(?!\{).)*\}/.test(pattern)) { // shortcut. no need to expand. return [pattern] } return expand(pattern) } var MAX_PATTERN_LENGTH = 1024 * 64 var assertValidPattern = function (pattern) { if (typeof pattern !== 'string') { throw new TypeError('invalid pattern') } if (pattern.length > MAX_PATTERN_LENGTH) { throw new TypeError('pattern is too long') } } // parse a component of the expanded set. // At this point, no pattern may contain "/" in it // so we're going to return a 2d array, where each entry is the full // pattern, split on '/', and then turned into a regular expression. // A regexp is made at the end which joins each array with an // escaped /, and another full one which joins each regexp with |. // // Following the lead of Bash 4.1, note that "**" only has special meaning // when it is the *only* thing in a path portion. Otherwise, any series // of * is equivalent to a single *. Globstar behavior is enabled by // default, and can be disabled by setting options.noglobstar. Minimatch.prototype.parse = parse var SUBPARSE = {} function parse (pattern, isSub) { assertValidPattern(pattern) var options = this.options // shortcuts if (pattern === '**') { if (!options.noglobstar) return GLOBSTAR else pattern = '*' } if (pattern === '') return '' var re = '' var hasMagic = !!options.nocase var escaping = false // ? => one single character var patternListStack = [] var negativeLists = [] var stateChar var inClass = false var reClassStart = -1 var classStart = -1 // . and .. never match anything that doesn't start with ., // even when options.dot is set. var patternStart = pattern.charAt(0) === '.' ? '' // anything // not (start or / followed by . or .. followed by / or end) : options.dot ? '(?!(?:^|\\\/)\\.{1,2}(?:$|\\\/))' : '(?!\\.)' var self = this function clearStateChar () { if (stateChar) { // we had some state-tracking character // that wasn't consumed by this pass. switch (stateChar) { case '*': re += star hasMagic = true break case '?': re += qmark hasMagic = true break default: re += '\\' + stateChar break } self.debug('clearStateChar %j %j', stateChar, re) stateChar = false } } for (var i = 0, len = pattern.length, c ; (i < len) && (c = pattern.charAt(i)) ; i++) { this.debug('%s\t%s %s %j', pattern, i, re, c) // skip over any that are escaped. if (escaping && reSpecials[c]) { re += '\\' + c escaping = false continue } switch (c) { /* istanbul ignore next */ case '/': { // completely not allowed, even escaped. // Should already be path-split by now. return false } case '\\': clearStateChar() escaping = true continue // the various stateChar values // for the "extglob" stuff. case '?': case '*': case '+': case '@': case '!': this.debug('%s\t%s %s %j <-- stateChar', pattern, i, re, c) // all of those are literals inside a class, except that // the glob [!a] means [^a] in regexp if (inClass) { this.debug(' in class') if (c === '!' && i === classStart + 1) c = '^' re += c continue } // if we already have a stateChar, then it means // that there was something like ** or +? in there. // Handle the stateChar, then proceed with this one. self.debug('call clearStateChar %j', stateChar) clearStateChar() stateChar = c // if extglob is disabled, then +(asdf|foo) isn't a thing. // just clear the statechar *now*, rather than even diving into // the patternList stuff. if (options.noext) clearStateChar() continue case '(': if (inClass) { re += '(' continue } if (!stateChar) { re += '\\(' continue } patternListStack.push({ type: stateChar, start: i - 1, reStart: re.length, open: plTypes[stateChar].open, close: plTypes[stateChar].close }) // negation is (?:(?!js)[^/]*) re += stateChar === '!' ? '(?:(?!(?:' : '(?:' this.debug('plType %j %j', stateChar, re) stateChar = false continue case ')': if (inClass || !patternListStack.length) { re += '\\)' continue } clearStateChar() hasMagic = true var pl = patternListStack.pop() // negation is (?:(?!js)[^/]*) // The others are (?:) re += pl.close if (pl.type === '!') { negativeLists.push(pl) } pl.reEnd = re.length continue case '|': if (inClass || !patternListStack.length || escaping) { re += '\\|' escaping = false continue } clearStateChar() re += '|' continue // these are mostly the same in regexp and glob case '[': // swallow any state-tracking char before the [ clearStateChar() if (inClass) { re += '\\' + c continue } inClass = true classStart = i reClassStart = re.length re += c continue case ']': // a right bracket shall lose its special // meaning and represent itself in // a bracket expression if it occurs // first in the list. -- POSIX.2 2.8.3.2 if (i === classStart + 1 || !inClass) { re += '\\' + c escaping = false continue } // handle the case where we left a class open. // "[z-a]" is valid, equivalent to "\[z-a\]" // split where the last [ was, make sure we don't have // an invalid re. if so, re-walk the contents of the // would-be class to re-translate any characters that // were passed through as-is // TODO: It would probably be faster to determine this // without a try/catch and a new RegExp, but it's tricky // to do safely. For now, this is safe and works. var cs = pattern.substring(classStart + 1, i) try { RegExp('[' + cs + ']') } catch (er) { // not a valid class! var sp = this.parse(cs, SUBPARSE) re = re.substr(0, reClassStart) + '\\[' + sp[0] + '\\]' hasMagic = hasMagic || sp[1] inClass = false continue } // finish up the class. hasMagic = true inClass = false re += c continue default: // swallow any state char that wasn't consumed clearStateChar() if (escaping) { // no need escaping = false } else if (reSpecials[c] && !(c === '^' && inClass)) { re += '\\' } re += c } // switch } // for // handle the case where we left a class open. // "[abc" is valid, equivalent to "\[abc" if (inClass) { // split where the last [ was, and escape it // this is a huge pita. We now have to re-walk // the contents of the would-be class to re-translate // any characters that were passed through as-is cs = pattern.substr(classStart + 1) sp = this.parse(cs, SUBPARSE) re = re.substr(0, reClassStart) + '\\[' + sp[0] hasMagic = hasMagic || sp[1] } // handle the case where we had a +( thing at the *end* // of the pattern. // each pattern list stack adds 3 chars, and we need to go through // and escape any | chars that were passed through as-is for the regexp. // Go through and escape them, taking care not to double-escape any // | chars that were already escaped. for (pl = patternListStack.pop(); pl; pl = patternListStack.pop()) { var tail = re.slice(pl.reStart + pl.open.length) this.debug('setting tail', re, pl) // maybe some even number of \, then maybe 1 \, followed by a | tail = tail.replace(/((?:\\{2}){0,64})(\\?)\|/g, function (_, $1, $2) { if (!$2) { // the | isn't already escaped, so escape it. $2 = '\\' } // need to escape all those slashes *again*, without escaping the // one that we need for escaping the | character. As it works out, // escaping an even number of slashes can be done by simply repeating // it exactly after itself. That's why this trick works. // // I am sorry that you have to see this. return $1 + $1 + $2 + '|' }) this.debug('tail=%j\n %s', tail, tail, pl, re) var t = pl.type === '*' ? star : pl.type === '?' ? qmark : '\\' + pl.type hasMagic = true re = re.slice(0, pl.reStart) + t + '\\(' + tail } // handle trailing things that only matter at the very end. clearStateChar() if (escaping) { // trailing \\ re += '\\\\' } // only need to apply the nodot start if the re starts with // something that could conceivably capture a dot var addPatternStart = false switch (re.charAt(0)) { case '[': case '.': case '(': addPatternStart = true } // Hack to work around lack of negative lookbehind in JS // A pattern like: *.!(x).!(y|z) needs to ensure that a name // like 'a.xyz.yz' doesn't match. So, the first negative // lookahead, has to look ALL the way ahead, to the end of // the pattern. for (var n = negativeLists.length - 1; n > -1; n--) { var nl = negativeLists[n] var nlBefore = re.slice(0, nl.reStart) var nlFirst = re.slice(nl.reStart, nl.reEnd - 8) var nlLast = re.slice(nl.reEnd - 8, nl.reEnd) var nlAfter = re.slice(nl.reEnd) nlLast += nlAfter // Handle nested stuff like *(*.js|!(*.json)), where open parens // mean that we should *not* include the ) in the bit that is considered // "after" the negated section. var openParensBefore = nlBefore.split('(').length - 1 var cleanAfter = nlAfter for (i = 0; i < openParensBefore; i++) { cleanAfter = cleanAfter.replace(/\)[+*?]?/, '') } nlAfter = cleanAfter var dollar = '' if (nlAfter === '' && isSub !== SUBPARSE) { dollar = '$' } var newRe = nlBefore + nlFirst + nlAfter + dollar + nlLast re = newRe } // if the re is not "" at this point, then we need to make sure // it doesn't match against an empty path part. // Otherwise a/* will match a/, which it should not. if (re !== '' && hasMagic) { re = '(?=.)' + re } if (addPatternStart) { re = patternStart + re } // parsing just a piece of a larger pattern. if (isSub === SUBPARSE) { return [re, hasMagic] } // skip the regexp for non-magical patterns // unescape anything in it, though, so that it'll be // an exact match against a file etc. if (!hasMagic) { return globUnescape(pattern) } var flags = options.nocase ? 'i' : '' try { var regExp = new RegExp('^' + re + '$', flags) } catch (er) /* istanbul ignore next - should be impossible */ { // If it was an invalid regular expression, then it can't match // anything. This trick looks for a character after the end of // the string, which is of course impossible, except in multi-line // mode, but it's not a /m regex. return new RegExp('$.') } regExp._glob = pattern regExp._src = re return regExp } minimatch.makeRe = function (pattern, options) { return new Minimatch(pattern, options || {}).makeRe() } Minimatch.prototype.makeRe = makeRe function makeRe () { if (this.regexp || this.regexp === false) return this.regexp // at this point, this.set is a 2d array of partial // pattern strings, or "**". // // It's better to use .match(). This function shouldn't // be used, really, but it's pretty convenient sometimes, // when you just want to work with a regex. var set = this.set if (!set.length) { this.regexp = false return this.regexp } var options = this.options var twoStar = options.noglobstar ? star : options.dot ? twoStarDot : twoStarNoDot var flags = options.nocase ? 'i' : '' var re = set.map(function (pattern) { return pattern.map(function (p) { return (p === GLOBSTAR) ? twoStar : (typeof p === 'string') ? regExpEscape(p) : p._src }).join('\\\/') }).join('|') // must match entire pattern // ending in a * or ** will make it less strict. re = '^(?:' + re + ')$' // can match anything, as long as it's not this. if (this.negate) re = '^(?!' + re + ').*$' try { this.regexp = new RegExp(re, flags) } catch (ex) /* istanbul ignore next - should be impossible */ { this.regexp = false } return this.regexp } minimatch.match = function (list, pattern, options) { options = options || {} var mm = new Minimatch(pattern, options) list = list.filter(function (f) { return mm.match(f) }) if (mm.options.nonull && !list.length) { list.push(pattern) } return list } Minimatch.prototype.match = function match (f, partial) { if (typeof partial === 'undefined') partial = this.partial this.debug('match', f, this.pattern) // short-circuit in the case of busted things. // comments, etc. if (this.comment) return false if (this.empty) return f === '' if (f === '/' && partial) return true var options = this.options // windows: need to use /, not \ if (path.sep !== '/') { f = f.split(path.sep).join('/') } // treat the test path as a set of pathparts. f = f.split(slashSplit) this.debug(this.pattern, 'split', f) // just ONE of the pattern sets in this.set needs to match // in order for it to be valid. If negating, then just one // match means that we have failed. // Either way, return on the first hit. var set = this.set this.debug(this.pattern, 'set', set) // Find the basename of the path by looking for the last non-empty segment var filename var i for (i = f.length - 1; i >= 0; i--) { filename = f[i] if (filename) break } for (i = 0; i < set.length; i++) { var pattern = set[i] var file = f if (options.matchBase && pattern.length === 1) { file = [filename] } var hit = this.matchOne(file, pattern, partial) if (hit) { if (options.flipNegate) return true return !this.negate } } // didn't get any hits. this is success if it's a negative // pattern, failure otherwise. if (options.flipNegate) return false return this.negate } // set partial to true to test if, for example, // "/a/b" matches the start of "/*/b/*/d" // Partial means, if you run out of file before you run // out of pattern, then that's fine, as long as all // the parts match. Minimatch.prototype.matchOne = function (file, pattern, partial) { 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. /* istanbul ignore if */ 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 /* istanbul ignore if */ 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') { 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 /* istanbul ignore else */ if (pi === pl) { // ran out of pattern, still have file left. // this is only acceptable if we're on the very last // empty segment of a file with a trailing slash. // a/* should match a/b/ return (fi === fl - 1) && (file[fi] === '') } // should be unreachable. /* istanbul ignore next */ throw new Error('wtf?') } // replace stuff like \* with * function globUnescape (s) { return s.replace(/\\(.)/g, '$1') } function regExpEscape (s) { return s.replace(/[-[\]{}()*+?.,\\^$|#\s]/g, '\\$&') } /***/ }), /***/ "./node_modules/ms/index.js": /*!**********************************!*\ !*** ./node_modules/ms/index.js ***! \**********************************/ /***/ ((module) => { /** * Helpers. */ var s = 1000; var m = s * 60; var h = m * 60; var d = h * 24; var y = d * 365.25; /** * Parse or format the given `val`. * * Options: * * - `long` verbose formatting [false] * * @param {String|Number} val * @param {Object} [options] * @throws {Error} throw an error if val is not a non-empty string or a number * @return {String|Number} * @api public */ module.exports = function(val, options) { options = options || {}; var type = typeof val; if (type === 'string' && val.length > 0) { return parse(val); } else if (type === 'number' && isNaN(val) === false) { return options.long ? fmtLong(val) : fmtShort(val); } throw new Error( 'val is not a non-empty string or a valid number. val=' + JSON.stringify(val) ); }; /** * Parse the given `str` and return milliseconds. * * @param {String} str * @return {Number} * @api private */ function parse(str) { str = String(str); if (str.length > 100) { return; } var match = /^((?:\d+)?\.?\d+) *(milliseconds?|msecs?|ms|seconds?|secs?|s|minutes?|mins?|m|hours?|hrs?|h|days?|d|years?|yrs?|y)?$/i.exec( str ); if (!match) { return; } var n = parseFloat(match[1]); var type = (match[2] || 'ms').toLowerCase(); switch (type) { case 'years': case 'year': case 'yrs': case 'yr': case 'y': return n * y; case 'days': case 'day': case 'd': return n * d; case 'hours': case 'hour': case 'hrs': case 'hr': case 'h': return n * h; case 'minutes': case 'minute': case 'mins': case 'min': case 'm': return n * m; case 'seconds': case 'second': case 'secs': case 'sec': case 's': return n * s; case 'milliseconds': case 'millisecond': case 'msecs': case 'msec': case 'ms': return n; default: return undefined; } } /** * Short format for `ms`. * * @param {Number} ms * @return {String} * @api private */ function fmtShort(ms) { if (ms >= d) { return Math.round(ms / d) + 'd'; } if (ms >= h) { return Math.round(ms / h) + 'h'; } if (ms >= m) { return Math.round(ms / m) + 'm'; } if (ms >= s) { return Math.round(ms / s) + 's'; } return ms + 'ms'; } /** * Long format for `ms`. * * @param {Number} ms * @return {String} * @api private */ function fmtLong(ms) { return plural(ms, d, 'day') || plural(ms, h, 'hour') || plural(ms, m, 'minute') || plural(ms, s, 'second') || ms + ' ms'; } /** * Pluralization helper. */ function plural(ms, n, name) { if (ms < n) { return; } if (ms < n * 1.5) { return Math.floor(ms / n) + ' ' + name; } return Math.ceil(ms / n) + ' ' + name + 's'; } /***/ }), /***/ "./node_modules/once/once.js": /*!***********************************!*\ !*** ./node_modules/once/once.js ***! \***********************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { var wrappy = __webpack_require__(/*! wrappy */ "./node_modules/wrappy/wrappy.js") module.exports = wrappy(once) module.exports.strict = wrappy(onceStrict) once.proto = once(function () { Object.defineProperty(Function.prototype, 'once', { value: function () { return once(this) }, configurable: true }) Object.defineProperty(Function.prototype, 'onceStrict', { value: function () { return onceStrict(this) }, configurable: true }) }) function once (fn) { var f = function () { if (f.called) return f.value f.called = true return f.value = fn.apply(this, arguments) } f.called = false return f } function onceStrict (fn) { var f = function () { if (f.called) throw new Error(f.onceError) f.called = true return f.value = fn.apply(this, arguments) } var name = fn.name || 'Function wrapped with `once`' f.onceError = name + " shouldn't be called more than once" f.called = false return f } /***/ }), /***/ "./node_modules/parse5/lib/common/doctype.js": /*!***************************************************!*\ !*** ./node_modules/parse5/lib/common/doctype.js ***! \***************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; const { DOCUMENT_MODE } = __webpack_require__(/*! ./html */ "./node_modules/parse5/lib/common/html.js"); //Const const VALID_DOCTYPE_NAME = 'html'; const VALID_SYSTEM_ID = 'about:legacy-compat'; const QUIRKS_MODE_SYSTEM_ID = 'http://www.ibm.com/data/dtd/v11/ibmxhtml1-transitional.dtd'; const QUIRKS_MODE_PUBLIC_ID_PREFIXES = [ '+//silmaril//dtd html pro v0r11 19970101//', '-//as//dtd html 3.0 aswedit + extensions//', '-//advasoft ltd//dtd html 3.0 aswedit + extensions//', '-//ietf//dtd html 2.0 level 1//', '-//ietf//dtd html 2.0 level 2//', '-//ietf//dtd html 2.0 strict level 1//', '-//ietf//dtd html 2.0 strict level 2//', '-//ietf//dtd html 2.0 strict//', '-//ietf//dtd html 2.0//', '-//ietf//dtd html 2.1e//', '-//ietf//dtd html 3.0//', '-//ietf//dtd html 3.2 final//', '-//ietf//dtd html 3.2//', '-//ietf//dtd html 3//', '-//ietf//dtd html level 0//', '-//ietf//dtd html level 1//', '-//ietf//dtd html level 2//', '-//ietf//dtd html level 3//', '-//ietf//dtd html strict level 0//', '-//ietf//dtd html strict level 1//', '-//ietf//dtd html strict level 2//', '-//ietf//dtd html strict level 3//', '-//ietf//dtd html strict//', '-//ietf//dtd html//', '-//metrius//dtd metrius presentational//', '-//microsoft//dtd internet explorer 2.0 html strict//', '-//microsoft//dtd internet explorer 2.0 html//', '-//microsoft//dtd internet explorer 2.0 tables//', '-//microsoft//dtd internet explorer 3.0 html strict//', '-//microsoft//dtd internet explorer 3.0 html//', '-//microsoft//dtd internet explorer 3.0 tables//', '-//netscape comm. corp.//dtd html//', '-//netscape comm. corp.//dtd strict html//', "-//o'reilly and associates//dtd html 2.0//", "-//o'reilly and associates//dtd html extended 1.0//", "-//o'reilly and associates//dtd html extended relaxed 1.0//", '-//sq//dtd html 2.0 hotmetal + extensions//', '-//softquad software//dtd hotmetal pro 6.0::19990601::extensions to html 4.0//', '-//softquad//dtd hotmetal pro 4.0::19971010::extensions to html 4.0//', '-//spyglass//dtd html 2.0 extended//', '-//sun microsystems corp.//dtd hotjava html//', '-//sun microsystems corp.//dtd hotjava strict html//', '-//w3c//dtd html 3 1995-03-24//', '-//w3c//dtd html 3.2 draft//', '-//w3c//dtd html 3.2 final//', '-//w3c//dtd html 3.2//', '-//w3c//dtd html 3.2s draft//', '-//w3c//dtd html 4.0 frameset//', '-//w3c//dtd html 4.0 transitional//', '-//w3c//dtd html experimental 19960712//', '-//w3c//dtd html experimental 970421//', '-//w3c//dtd w3 html//', '-//w3o//dtd w3 html 3.0//', '-//webtechs//dtd mozilla html 2.0//', '-//webtechs//dtd mozilla html//' ]; const QUIRKS_MODE_NO_SYSTEM_ID_PUBLIC_ID_PREFIXES = QUIRKS_MODE_PUBLIC_ID_PREFIXES.concat([ '-//w3c//dtd html 4.01 frameset//', '-//w3c//dtd html 4.01 transitional//' ]); const QUIRKS_MODE_PUBLIC_IDS = ['-//w3o//dtd w3 html strict 3.0//en//', '-/w3c/dtd html 4.0 transitional/en', 'html']; const LIMITED_QUIRKS_PUBLIC_ID_PREFIXES = ['-//w3c//dtd xhtml 1.0 frameset//', '-//w3c//dtd xhtml 1.0 transitional//']; const LIMITED_QUIRKS_WITH_SYSTEM_ID_PUBLIC_ID_PREFIXES = LIMITED_QUIRKS_PUBLIC_ID_PREFIXES.concat([ '-//w3c//dtd html 4.01 frameset//', '-//w3c//dtd html 4.01 transitional//' ]); //Utils function enquoteDoctypeId(id) { const quote = id.indexOf('"') !== -1 ? "'" : '"'; return quote + id + quote; } function hasPrefix(publicId, prefixes) { for (let i = 0; i < prefixes.length; i++) { if (publicId.indexOf(prefixes[i]) === 0) { return true; } } return false; } //API exports.isConforming = function(token) { return ( token.name === VALID_DOCTYPE_NAME && token.publicId === null && (token.systemId === null || token.systemId === VALID_SYSTEM_ID) ); }; exports.getDocumentMode = function(token) { if (token.name !== VALID_DOCTYPE_NAME) { return DOCUMENT_MODE.QUIRKS; } const systemId = token.systemId; if (systemId && systemId.toLowerCase() === QUIRKS_MODE_SYSTEM_ID) { return DOCUMENT_MODE.QUIRKS; } let publicId = token.publicId; if (publicId !== null) { publicId = publicId.toLowerCase(); if (QUIRKS_MODE_PUBLIC_IDS.indexOf(publicId) > -1) { return DOCUMENT_MODE.QUIRKS; } let prefixes = systemId === null ? QUIRKS_MODE_NO_SYSTEM_ID_PUBLIC_ID_PREFIXES : QUIRKS_MODE_PUBLIC_ID_PREFIXES; if (hasPrefix(publicId, prefixes)) { return DOCUMENT_MODE.QUIRKS; } prefixes = systemId === null ? LIMITED_QUIRKS_PUBLIC_ID_PREFIXES : LIMITED_QUIRKS_WITH_SYSTEM_ID_PUBLIC_ID_PREFIXES; if (hasPrefix(publicId, prefixes)) { return DOCUMENT_MODE.LIMITED_QUIRKS; } } return DOCUMENT_MODE.NO_QUIRKS; }; exports.serializeContent = function(name, publicId, systemId) { let str = '!DOCTYPE '; if (name) { str += name; } if (publicId) { str += ' PUBLIC ' + enquoteDoctypeId(publicId); } else if (systemId) { str += ' SYSTEM'; } if (systemId !== null) { str += ' ' + enquoteDoctypeId(systemId); } return str; }; /***/ }), /***/ "./node_modules/parse5/lib/common/error-codes.js": /*!*******************************************************!*\ !*** ./node_modules/parse5/lib/common/error-codes.js ***! \*******************************************************/ /***/ ((module) => { "use strict"; module.exports = { controlCharacterInInputStream: 'control-character-in-input-stream', noncharacterInInputStream: 'noncharacter-in-input-stream', surrogateInInputStream: 'surrogate-in-input-stream', nonVoidHtmlElementStartTagWithTrailingSolidus: 'non-void-html-element-start-tag-with-trailing-solidus', endTagWithAttributes: 'end-tag-with-attributes', endTagWithTrailingSolidus: 'end-tag-with-trailing-solidus', unexpectedSolidusInTag: 'unexpected-solidus-in-tag', unexpectedNullCharacter: 'unexpected-null-character', unexpectedQuestionMarkInsteadOfTagName: 'unexpected-question-mark-instead-of-tag-name', invalidFirstCharacterOfTagName: 'invalid-first-character-of-tag-name', unexpectedEqualsSignBeforeAttributeName: 'unexpected-equals-sign-before-attribute-name', missingEndTagName: 'missing-end-tag-name', unexpectedCharacterInAttributeName: 'unexpected-character-in-attribute-name', unknownNamedCharacterReference: 'unknown-named-character-reference', missingSemicolonAfterCharacterReference: 'missing-semicolon-after-character-reference', unexpectedCharacterAfterDoctypeSystemIdentifier: 'unexpected-character-after-doctype-system-identifier', unexpectedCharacterInUnquotedAttributeValue: 'unexpected-character-in-unquoted-attribute-value', eofBeforeTagName: 'eof-before-tag-name', eofInTag: 'eof-in-tag', missingAttributeValue: 'missing-attribute-value', missingWhitespaceBetweenAttributes: 'missing-whitespace-between-attributes', missingWhitespaceAfterDoctypePublicKeyword: 'missing-whitespace-after-doctype-public-keyword', missingWhitespaceBetweenDoctypePublicAndSystemIdentifiers: 'missing-whitespace-between-doctype-public-and-system-identifiers', missingWhitespaceAfterDoctypeSystemKeyword: 'missing-whitespace-after-doctype-system-keyword', missingQuoteBeforeDoctypePublicIdentifier: 'missing-quote-before-doctype-public-identifier', missingQuoteBeforeDoctypeSystemIdentifier: 'missing-quote-before-doctype-system-identifier', missingDoctypePublicIdentifier: 'missing-doctype-public-identifier', missingDoctypeSystemIdentifier: 'missing-doctype-system-identifier', abruptDoctypePublicIdentifier: 'abrupt-doctype-public-identifier', abruptDoctypeSystemIdentifier: 'abrupt-doctype-system-identifier', cdataInHtmlContent: 'cdata-in-html-content', incorrectlyOpenedComment: 'incorrectly-opened-comment', eofInScriptHtmlCommentLikeText: 'eof-in-script-html-comment-like-text', eofInDoctype: 'eof-in-doctype', nestedComment: 'nested-comment', abruptClosingOfEmptyComment: 'abrupt-closing-of-empty-comment', eofInComment: 'eof-in-comment', incorrectlyClosedComment: 'incorrectly-closed-comment', eofInCdata: 'eof-in-cdata', absenceOfDigitsInNumericCharacterReference: 'absence-of-digits-in-numeric-character-reference', nullCharacterReference: 'null-character-reference', surrogateCharacterReference: 'surrogate-character-reference', characterReferenceOutsideUnicodeRange: 'character-reference-outside-unicode-range', controlCharacterReference: 'control-character-reference', noncharacterCharacterReference: 'noncharacter-character-reference', missingWhitespaceBeforeDoctypeName: 'missing-whitespace-before-doctype-name', missingDoctypeName: 'missing-doctype-name', invalidCharacterSequenceAfterDoctypeName: 'invalid-character-sequence-after-doctype-name', duplicateAttribute: 'duplicate-attribute', nonConformingDoctype: 'non-conforming-doctype', missingDoctype: 'missing-doctype', misplacedDoctype: 'misplaced-doctype', endTagWithoutMatchingOpenElement: 'end-tag-without-matching-open-element', closingOfElementWithOpenChildElements: 'closing-of-element-with-open-child-elements', disallowedContentInNoscriptInHead: 'disallowed-content-in-noscript-in-head', openElementsLeftAfterEof: 'open-elements-left-after-eof', abandonedHeadElementChild: 'abandoned-head-element-child', misplacedStartTagForHeadElement: 'misplaced-start-tag-for-head-element', nestedNoscriptInHead: 'nested-noscript-in-head', eofInElementThatCanContainOnlyText: 'eof-in-element-that-can-contain-only-text' }; /***/ }), /***/ "./node_modules/parse5/lib/common/foreign-content.js": /*!***********************************************************!*\ !*** ./node_modules/parse5/lib/common/foreign-content.js ***! \***********************************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; const Tokenizer = __webpack_require__(/*! ../tokenizer */ "./node_modules/parse5/lib/tokenizer/index.js"); const HTML = __webpack_require__(/*! ./html */ "./node_modules/parse5/lib/common/html.js"); //Aliases const $ = HTML.TAG_NAMES; const NS = HTML.NAMESPACES; const ATTRS = HTML.ATTRS; //MIME types const MIME_TYPES = { TEXT_HTML: 'text/html', APPLICATION_XML: 'application/xhtml+xml' }; //Attributes const DEFINITION_URL_ATTR = 'definitionurl'; const ADJUSTED_DEFINITION_URL_ATTR = 'definitionURL'; const SVG_ATTRS_ADJUSTMENT_MAP = { attributename: 'attributeName', attributetype: 'attributeType', basefrequency: 'baseFrequency', baseprofile: 'baseProfile', calcmode: 'calcMode', clippathunits: 'clipPathUnits', diffuseconstant: 'diffuseConstant', edgemode: 'edgeMode', filterunits: 'filterUnits', glyphref: 'glyphRef', gradienttransform: 'gradientTransform', gradientunits: 'gradientUnits', kernelmatrix: 'kernelMatrix', kernelunitlength: 'kernelUnitLength', keypoints: 'keyPoints', keysplines: 'keySplines', keytimes: 'keyTimes', lengthadjust: 'lengthAdjust', limitingconeangle: 'limitingConeAngle', markerheight: 'markerHeight', markerunits: 'markerUnits', markerwidth: 'markerWidth', maskcontentunits: 'maskContentUnits', maskunits: 'maskUnits', numoctaves: 'numOctaves', pathlength: 'pathLength', patterncontentunits: 'patternContentUnits', patterntransform: 'patternTransform', patternunits: 'patternUnits', pointsatx: 'pointsAtX', pointsaty: 'pointsAtY', pointsatz: 'pointsAtZ', preservealpha: 'preserveAlpha', preserveaspectratio: 'preserveAspectRatio', primitiveunits: 'primitiveUnits', refx: 'refX', refy: 'refY', repeatcount: 'repeatCount', repeatdur: 'repeatDur', requiredextensions: 'requiredExtensions', requiredfeatures: 'requiredFeatures', specularconstant: 'specularConstant', specularexponent: 'specularExponent', spreadmethod: 'spreadMethod', startoffset: 'startOffset', stddeviation: 'stdDeviation', stitchtiles: 'stitchTiles', surfacescale: 'surfaceScale', systemlanguage: 'systemLanguage', tablevalues: 'tableValues', targetx: 'targetX', targety: 'targetY', textlength: 'textLength', viewbox: 'viewBox', viewtarget: 'viewTarget', xchannelselector: 'xChannelSelector', ychannelselector: 'yChannelSelector', zoomandpan: 'zoomAndPan' }; const XML_ATTRS_ADJUSTMENT_MAP = { 'xlink:actuate': { prefix: 'xlink', name: 'actuate', namespace: NS.XLINK }, 'xlink:arcrole': { prefix: 'xlink', name: 'arcrole', namespace: NS.XLINK }, 'xlink:href': { prefix: 'xlink', name: 'href', namespace: NS.XLINK }, 'xlink:role': { prefix: 'xlink', name: 'role', namespace: NS.XLINK }, 'xlink:show': { prefix: 'xlink', name: 'show', namespace: NS.XLINK }, 'xlink:title': { prefix: 'xlink', name: 'title', namespace: NS.XLINK }, 'xlink:type': { prefix: 'xlink', name: 'type', namespace: NS.XLINK }, 'xml:base': { prefix: 'xml', name: 'base', namespace: NS.XML }, 'xml:lang': { prefix: 'xml', name: 'lang', namespace: NS.XML }, 'xml:space': { prefix: 'xml', name: 'space', namespace: NS.XML }, xmlns: { prefix: '', name: 'xmlns', namespace: NS.XMLNS }, 'xmlns:xlink': { prefix: 'xmlns', name: 'xlink', namespace: NS.XMLNS } }; //SVG tag names adjustment map const SVG_TAG_NAMES_ADJUSTMENT_MAP = (exports.SVG_TAG_NAMES_ADJUSTMENT_MAP = { altglyph: 'altGlyph', altglyphdef: 'altGlyphDef', altglyphitem: 'altGlyphItem', animatecolor: 'animateColor', animatemotion: 'animateMotion', animatetransform: 'animateTransform', clippath: 'clipPath', feblend: 'feBlend', fecolormatrix: 'feColorMatrix', fecomponenttransfer: 'feComponentTransfer', fecomposite: 'feComposite', feconvolvematrix: 'feConvolveMatrix', fediffuselighting: 'feDiffuseLighting', fedisplacementmap: 'feDisplacementMap', fedistantlight: 'feDistantLight', feflood: 'feFlood', fefunca: 'feFuncA', fefuncb: 'feFuncB', fefuncg: 'feFuncG', fefuncr: 'feFuncR', fegaussianblur: 'feGaussianBlur', feimage: 'feImage', femerge: 'feMerge', femergenode: 'feMergeNode', femorphology: 'feMorphology', feoffset: 'feOffset', fepointlight: 'fePointLight', fespecularlighting: 'feSpecularLighting', fespotlight: 'feSpotLight', fetile: 'feTile', feturbulence: 'feTurbulence', foreignobject: 'foreignObject', glyphref: 'glyphRef', lineargradient: 'linearGradient', radialgradient: 'radialGradient', textpath: 'textPath' }); //Tags that causes exit from foreign content const EXITS_FOREIGN_CONTENT = { [$.B]: true, [$.BIG]: true, [$.BLOCKQUOTE]: true, [$.BODY]: true, [$.BR]: true, [$.CENTER]: true, [$.CODE]: true, [$.DD]: true, [$.DIV]: true, [$.DL]: true, [$.DT]: true, [$.EM]: true, [$.EMBED]: true, [$.H1]: true, [$.H2]: true, [$.H3]: true, [$.H4]: true, [$.H5]: true, [$.H6]: true, [$.HEAD]: true, [$.HR]: true, [$.I]: true, [$.IMG]: true, [$.LI]: true, [$.LISTING]: true, [$.MENU]: true, [$.META]: true, [$.NOBR]: true, [$.OL]: true, [$.P]: true, [$.PRE]: true, [$.RUBY]: true, [$.S]: true, [$.SMALL]: true, [$.SPAN]: true, [$.STRONG]: true, [$.STRIKE]: true, [$.SUB]: true, [$.SUP]: true, [$.TABLE]: true, [$.TT]: true, [$.U]: true, [$.UL]: true, [$.VAR]: true }; //Check exit from foreign content exports.causesExit = function(startTagToken) { const tn = startTagToken.tagName; const isFontWithAttrs = tn === $.FONT && (Tokenizer.getTokenAttr(startTagToken, ATTRS.COLOR) !== null || Tokenizer.getTokenAttr(startTagToken, ATTRS.SIZE) !== null || Tokenizer.getTokenAttr(startTagToken, ATTRS.FACE) !== null); return isFontWithAttrs ? true : EXITS_FOREIGN_CONTENT[tn]; }; //Token adjustments exports.adjustTokenMathMLAttrs = function(token) { for (let i = 0; i < token.attrs.length; i++) { if (token.attrs[i].name === DEFINITION_URL_ATTR) { token.attrs[i].name = ADJUSTED_DEFINITION_URL_ATTR; break; } } }; exports.adjustTokenSVGAttrs = function(token) { for (let i = 0; i < token.attrs.length; i++) { const adjustedAttrName = SVG_ATTRS_ADJUSTMENT_MAP[token.attrs[i].name]; if (adjustedAttrName) { token.attrs[i].name = adjustedAttrName; } } }; exports.adjustTokenXMLAttrs = function(token) { for (let i = 0; i < token.attrs.length; i++) { const adjustedAttrEntry = XML_ATTRS_ADJUSTMENT_MAP[token.attrs[i].name]; if (adjustedAttrEntry) { token.attrs[i].prefix = adjustedAttrEntry.prefix; token.attrs[i].name = adjustedAttrEntry.name; token.attrs[i].namespace = adjustedAttrEntry.namespace; } } }; exports.adjustTokenSVGTagName = function(token) { const adjustedTagName = SVG_TAG_NAMES_ADJUSTMENT_MAP[token.tagName]; if (adjustedTagName) { token.tagName = adjustedTagName; } }; //Integration points function isMathMLTextIntegrationPoint(tn, ns) { return ns === NS.MATHML && (tn === $.MI || tn === $.MO || tn === $.MN || tn === $.MS || tn === $.MTEXT); } function isHtmlIntegrationPoint(tn, ns, attrs) { if (ns === NS.MATHML && tn === $.ANNOTATION_XML) { for (let i = 0; i < attrs.length; i++) { if (attrs[i].name === ATTRS.ENCODING) { const value = attrs[i].value.toLowerCase(); return value === MIME_TYPES.TEXT_HTML || value === MIME_TYPES.APPLICATION_XML; } } } return ns === NS.SVG && (tn === $.FOREIGN_OBJECT || tn === $.DESC || tn === $.TITLE); } exports.isIntegrationPoint = function(tn, ns, attrs, foreignNS) { if ((!foreignNS || foreignNS === NS.HTML) && isHtmlIntegrationPoint(tn, ns, attrs)) { return true; } if ((!foreignNS || foreignNS === NS.MATHML) && isMathMLTextIntegrationPoint(tn, ns)) { return true; } return false; }; /***/ }), /***/ "./node_modules/parse5/lib/common/html.js": /*!************************************************!*\ !*** ./node_modules/parse5/lib/common/html.js ***! \************************************************/ /***/ ((__unused_webpack_module, exports) => { "use strict"; const NS = (exports.NAMESPACES = { HTML: 'http://www.w3.org/1999/xhtml', MATHML: 'http://www.w3.org/1998/Math/MathML', SVG: 'http://www.w3.org/2000/svg', XLINK: 'http://www.w3.org/1999/xlink', XML: 'http://www.w3.org/XML/1998/namespace', XMLNS: 'http://www.w3.org/2000/xmlns/' }); exports.ATTRS = { TYPE: 'type', ACTION: 'action', ENCODING: 'encoding', PROMPT: 'prompt', NAME: 'name', COLOR: 'color', FACE: 'face', SIZE: 'size' }; exports.DOCUMENT_MODE = { NO_QUIRKS: 'no-quirks', QUIRKS: 'quirks', LIMITED_QUIRKS: 'limited-quirks' }; const $ = (exports.TAG_NAMES = { A: 'a', ADDRESS: 'address', ANNOTATION_XML: 'annotation-xml', APPLET: 'applet', AREA: 'area', ARTICLE: 'article', ASIDE: 'aside', B: 'b', BASE: 'base', BASEFONT: 'basefont', BGSOUND: 'bgsound', BIG: 'big', BLOCKQUOTE: 'blockquote', BODY: 'body', BR: 'br', BUTTON: 'button', CAPTION: 'caption', CENTER: 'center', CODE: 'code', COL: 'col', COLGROUP: 'colgroup', DD: 'dd', DESC: 'desc', DETAILS: 'details', DIALOG: 'dialog', DIR: 'dir', DIV: 'div', DL: 'dl', DT: 'dt', EM: 'em', EMBED: 'embed', FIELDSET: 'fieldset', FIGCAPTION: 'figcaption', FIGURE: 'figure', FONT: 'font', FOOTER: 'footer', FOREIGN_OBJECT: 'foreignObject', FORM: 'form', FRAME: 'frame', FRAMESET: 'frameset', H1: 'h1', H2: 'h2', H3: 'h3', H4: 'h4', H5: 'h5', H6: 'h6', HEAD: 'head', HEADER: 'header', HGROUP: 'hgroup', HR: 'hr', HTML: 'html', I: 'i', IMG: 'img', IMAGE: 'image', INPUT: 'input', IFRAME: 'iframe', KEYGEN: 'keygen', LABEL: 'label', LI: 'li', LINK: 'link', LISTING: 'listing', MAIN: 'main', MALIGNMARK: 'malignmark', MARQUEE: 'marquee', MATH: 'math', MENU: 'menu', META: 'meta', MGLYPH: 'mglyph', MI: 'mi', MO: 'mo', MN: 'mn', MS: 'ms', MTEXT: 'mtext', NAV: 'nav', NOBR: 'nobr', NOFRAMES: 'noframes', NOEMBED: 'noembed', NOSCRIPT: 'noscript', OBJECT: 'object', OL: 'ol', OPTGROUP: 'optgroup', OPTION: 'option', P: 'p', PARAM: 'param', PLAINTEXT: 'plaintext', PRE: 'pre', RB: 'rb', RP: 'rp', RT: 'rt', RTC: 'rtc', RUBY: 'ruby', S: 's', SCRIPT: 'script', SECTION: 'section', SELECT: 'select', SOURCE: 'source', SMALL: 'small', SPAN: 'span', STRIKE: 'strike', STRONG: 'strong', STYLE: 'style', SUB: 'sub', SUMMARY: 'summary', SUP: 'sup', TABLE: 'table', TBODY: 'tbody', TEMPLATE: 'template', TEXTAREA: 'textarea', TFOOT: 'tfoot', TD: 'td', TH: 'th', THEAD: 'thead', TITLE: 'title', TR: 'tr', TRACK: 'track', TT: 'tt', U: 'u', UL: 'ul', SVG: 'svg', VAR: 'var', WBR: 'wbr', XMP: 'xmp' }); exports.SPECIAL_ELEMENTS = { [NS.HTML]: { [$.ADDRESS]: true, [$.APPLET]: true, [$.AREA]: true, [$.ARTICLE]: true, [$.ASIDE]: true, [$.BASE]: true, [$.BASEFONT]: true, [$.BGSOUND]: true, [$.BLOCKQUOTE]: true, [$.BODY]: true, [$.BR]: true, [$.BUTTON]: true, [$.CAPTION]: true, [$.CENTER]: true, [$.COL]: true, [$.COLGROUP]: true, [$.DD]: true, [$.DETAILS]: true, [$.DIR]: true, [$.DIV]: true, [$.DL]: true, [$.DT]: true, [$.EMBED]: true, [$.FIELDSET]: true, [$.FIGCAPTION]: true, [$.FIGURE]: true, [$.FOOTER]: true, [$.FORM]: true, [$.FRAME]: true, [$.FRAMESET]: true, [$.H1]: true, [$.H2]: true, [$.H3]: true, [$.H4]: true, [$.H5]: true, [$.H6]: true, [$.HEAD]: true, [$.HEADER]: true, [$.HGROUP]: true, [$.HR]: true, [$.HTML]: true, [$.IFRAME]: true, [$.IMG]: true, [$.INPUT]: true, [$.LI]: true, [$.LINK]: true, [$.LISTING]: true, [$.MAIN]: true, [$.MARQUEE]: true, [$.MENU]: true, [$.META]: true, [$.NAV]: true, [$.NOEMBED]: true, [$.NOFRAMES]: true, [$.NOSCRIPT]: true, [$.OBJECT]: true, [$.OL]: true, [$.P]: true, [$.PARAM]: true, [$.PLAINTEXT]: true, [$.PRE]: true, [$.SCRIPT]: true, [$.SECTION]: true, [$.SELECT]: true, [$.SOURCE]: true, [$.STYLE]: true, [$.SUMMARY]: true, [$.TABLE]: true, [$.TBODY]: true, [$.TD]: true, [$.TEMPLATE]: true, [$.TEXTAREA]: true, [$.TFOOT]: true, [$.TH]: true, [$.THEAD]: true, [$.TITLE]: true, [$.TR]: true, [$.TRACK]: true, [$.UL]: true, [$.WBR]: true, [$.XMP]: true }, [NS.MATHML]: { [$.MI]: true, [$.MO]: true, [$.MN]: true, [$.MS]: true, [$.MTEXT]: true, [$.ANNOTATION_XML]: true }, [NS.SVG]: { [$.TITLE]: true, [$.FOREIGN_OBJECT]: true, [$.DESC]: true } }; /***/ }), /***/ "./node_modules/parse5/lib/common/unicode.js": /*!***************************************************!*\ !*** ./node_modules/parse5/lib/common/unicode.js ***! \***************************************************/ /***/ ((__unused_webpack_module, exports) => { "use strict"; const UNDEFINED_CODE_POINTS = [ 0xfffe, 0xffff, 0x1fffe, 0x1ffff, 0x2fffe, 0x2ffff, 0x3fffe, 0x3ffff, 0x4fffe, 0x4ffff, 0x5fffe, 0x5ffff, 0x6fffe, 0x6ffff, 0x7fffe, 0x7ffff, 0x8fffe, 0x8ffff, 0x9fffe, 0x9ffff, 0xafffe, 0xaffff, 0xbfffe, 0xbffff, 0xcfffe, 0xcffff, 0xdfffe, 0xdffff, 0xefffe, 0xeffff, 0xffffe, 0xfffff, 0x10fffe, 0x10ffff ]; exports.REPLACEMENT_CHARACTER = '\uFFFD'; exports.CODE_POINTS = { EOF: -1, NULL: 0x00, TABULATION: 0x09, CARRIAGE_RETURN: 0x0d, LINE_FEED: 0x0a, FORM_FEED: 0x0c, SPACE: 0x20, EXCLAMATION_MARK: 0x21, QUOTATION_MARK: 0x22, NUMBER_SIGN: 0x23, AMPERSAND: 0x26, APOSTROPHE: 0x27, HYPHEN_MINUS: 0x2d, SOLIDUS: 0x2f, DIGIT_0: 0x30, DIGIT_9: 0x39, SEMICOLON: 0x3b, LESS_THAN_SIGN: 0x3c, EQUALS_SIGN: 0x3d, GREATER_THAN_SIGN: 0x3e, QUESTION_MARK: 0x3f, LATIN_CAPITAL_A: 0x41, LATIN_CAPITAL_F: 0x46, LATIN_CAPITAL_X: 0x58, LATIN_CAPITAL_Z: 0x5a, RIGHT_SQUARE_BRACKET: 0x5d, GRAVE_ACCENT: 0x60, LATIN_SMALL_A: 0x61, LATIN_SMALL_F: 0x66, LATIN_SMALL_X: 0x78, LATIN_SMALL_Z: 0x7a, REPLACEMENT_CHARACTER: 0xfffd }; exports.CODE_POINT_SEQUENCES = { DASH_DASH_STRING: [0x2d, 0x2d], //-- DOCTYPE_STRING: [0x44, 0x4f, 0x43, 0x54, 0x59, 0x50, 0x45], //DOCTYPE CDATA_START_STRING: [0x5b, 0x43, 0x44, 0x41, 0x54, 0x41, 0x5b], //[CDATA[ SCRIPT_STRING: [0x73, 0x63, 0x72, 0x69, 0x70, 0x74], //script PUBLIC_STRING: [0x50, 0x55, 0x42, 0x4c, 0x49, 0x43], //PUBLIC SYSTEM_STRING: [0x53, 0x59, 0x53, 0x54, 0x45, 0x4d] //SYSTEM }; //Surrogates exports.isSurrogate = function(cp) { return cp >= 0xd800 && cp <= 0xdfff; }; exports.isSurrogatePair = function(cp) { return cp >= 0xdc00 && cp <= 0xdfff; }; exports.getSurrogatePairCodePoint = function(cp1, cp2) { return (cp1 - 0xd800) * 0x400 + 0x2400 + cp2; }; //NOTE: excluding NULL and ASCII whitespace exports.isControlCodePoint = function(cp) { return ( (cp !== 0x20 && cp !== 0x0a && cp !== 0x0d && cp !== 0x09 && cp !== 0x0c && cp >= 0x01 && cp <= 0x1f) || (cp >= 0x7f && cp <= 0x9f) ); }; exports.isUndefinedCodePoint = function(cp) { return (cp >= 0xfdd0 && cp <= 0xfdef) || UNDEFINED_CODE_POINTS.indexOf(cp) > -1; }; /***/ }), /***/ "./node_modules/parse5/lib/extensions/error-reporting/mixin-base.js": /*!**************************************************************************!*\ !*** ./node_modules/parse5/lib/extensions/error-reporting/mixin-base.js ***! \**************************************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const Mixin = __webpack_require__(/*! ../../utils/mixin */ "./node_modules/parse5/lib/utils/mixin.js"); class ErrorReportingMixinBase extends Mixin { constructor(host, opts) { super(host); this.posTracker = null; this.onParseError = opts.onParseError; } _setErrorLocation(err) { err.startLine = err.endLine = this.posTracker.line; err.startCol = err.endCol = this.posTracker.col; err.startOffset = err.endOffset = this.posTracker.offset; } _reportError(code) { const err = { code: code, startLine: -1, startCol: -1, startOffset: -1, endLine: -1, endCol: -1, endOffset: -1 }; this._setErrorLocation(err); this.onParseError(err); } _getOverriddenMethods(mxn) { return { _err(code) { mxn._reportError(code); } }; } } module.exports = ErrorReportingMixinBase; /***/ }), /***/ "./node_modules/parse5/lib/extensions/error-reporting/parser-mixin.js": /*!****************************************************************************!*\ !*** ./node_modules/parse5/lib/extensions/error-reporting/parser-mixin.js ***! \****************************************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const ErrorReportingMixinBase = __webpack_require__(/*! ./mixin-base */ "./node_modules/parse5/lib/extensions/error-reporting/mixin-base.js"); const ErrorReportingTokenizerMixin = __webpack_require__(/*! ./tokenizer-mixin */ "./node_modules/parse5/lib/extensions/error-reporting/tokenizer-mixin.js"); const LocationInfoTokenizerMixin = __webpack_require__(/*! ../location-info/tokenizer-mixin */ "./node_modules/parse5/lib/extensions/location-info/tokenizer-mixin.js"); const Mixin = __webpack_require__(/*! ../../utils/mixin */ "./node_modules/parse5/lib/utils/mixin.js"); class ErrorReportingParserMixin extends ErrorReportingMixinBase { constructor(parser, opts) { super(parser, opts); this.opts = opts; this.ctLoc = null; this.locBeforeToken = false; } _setErrorLocation(err) { if (this.ctLoc) { err.startLine = this.ctLoc.startLine; err.startCol = this.ctLoc.startCol; err.startOffset = this.ctLoc.startOffset; err.endLine = this.locBeforeToken ? this.ctLoc.startLine : this.ctLoc.endLine; err.endCol = this.locBeforeToken ? this.ctLoc.startCol : this.ctLoc.endCol; err.endOffset = this.locBeforeToken ? this.ctLoc.startOffset : this.ctLoc.endOffset; } } _getOverriddenMethods(mxn, orig) { return { _bootstrap(document, fragmentContext) { orig._bootstrap.call(this, document, fragmentContext); Mixin.install(this.tokenizer, ErrorReportingTokenizerMixin, mxn.opts); Mixin.install(this.tokenizer, LocationInfoTokenizerMixin); }, _processInputToken(token) { mxn.ctLoc = token.location; orig._processInputToken.call(this, token); }, _err(code, options) { mxn.locBeforeToken = options && options.beforeToken; mxn._reportError(code); } }; } } module.exports = ErrorReportingParserMixin; /***/ }), /***/ "./node_modules/parse5/lib/extensions/error-reporting/preprocessor-mixin.js": /*!**********************************************************************************!*\ !*** ./node_modules/parse5/lib/extensions/error-reporting/preprocessor-mixin.js ***! \**********************************************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const ErrorReportingMixinBase = __webpack_require__(/*! ./mixin-base */ "./node_modules/parse5/lib/extensions/error-reporting/mixin-base.js"); const PositionTrackingPreprocessorMixin = __webpack_require__(/*! ../position-tracking/preprocessor-mixin */ "./node_modules/parse5/lib/extensions/position-tracking/preprocessor-mixin.js"); const Mixin = __webpack_require__(/*! ../../utils/mixin */ "./node_modules/parse5/lib/utils/mixin.js"); class ErrorReportingPreprocessorMixin extends ErrorReportingMixinBase { constructor(preprocessor, opts) { super(preprocessor, opts); this.posTracker = Mixin.install(preprocessor, PositionTrackingPreprocessorMixin); this.lastErrOffset = -1; } _reportError(code) { //NOTE: avoid reporting error twice on advance/retreat if (this.lastErrOffset !== this.posTracker.offset) { this.lastErrOffset = this.posTracker.offset; super._reportError(code); } } } module.exports = ErrorReportingPreprocessorMixin; /***/ }), /***/ "./node_modules/parse5/lib/extensions/error-reporting/tokenizer-mixin.js": /*!*******************************************************************************!*\ !*** ./node_modules/parse5/lib/extensions/error-reporting/tokenizer-mixin.js ***! \*******************************************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const ErrorReportingMixinBase = __webpack_require__(/*! ./mixin-base */ "./node_modules/parse5/lib/extensions/error-reporting/mixin-base.js"); const ErrorReportingPreprocessorMixin = __webpack_require__(/*! ./preprocessor-mixin */ "./node_modules/parse5/lib/extensions/error-reporting/preprocessor-mixin.js"); const Mixin = __webpack_require__(/*! ../../utils/mixin */ "./node_modules/parse5/lib/utils/mixin.js"); class ErrorReportingTokenizerMixin extends ErrorReportingMixinBase { constructor(tokenizer, opts) { super(tokenizer, opts); const preprocessorMixin = Mixin.install(tokenizer.preprocessor, ErrorReportingPreprocessorMixin, opts); this.posTracker = preprocessorMixin.posTracker; } } module.exports = ErrorReportingTokenizerMixin; /***/ }), /***/ "./node_modules/parse5/lib/extensions/location-info/open-element-stack-mixin.js": /*!**************************************************************************************!*\ !*** ./node_modules/parse5/lib/extensions/location-info/open-element-stack-mixin.js ***! \**************************************************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const Mixin = __webpack_require__(/*! ../../utils/mixin */ "./node_modules/parse5/lib/utils/mixin.js"); class LocationInfoOpenElementStackMixin extends Mixin { constructor(stack, opts) { super(stack); this.onItemPop = opts.onItemPop; } _getOverriddenMethods(mxn, orig) { return { pop() { mxn.onItemPop(this.current); orig.pop.call(this); }, popAllUpToHtmlElement() { for (let i = this.stackTop; i > 0; i--) { mxn.onItemPop(this.items[i]); } orig.popAllUpToHtmlElement.call(this); }, remove(element) { mxn.onItemPop(this.current); orig.remove.call(this, element); } }; } } module.exports = LocationInfoOpenElementStackMixin; /***/ }), /***/ "./node_modules/parse5/lib/extensions/location-info/parser-mixin.js": /*!**************************************************************************!*\ !*** ./node_modules/parse5/lib/extensions/location-info/parser-mixin.js ***! \**************************************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const Mixin = __webpack_require__(/*! ../../utils/mixin */ "./node_modules/parse5/lib/utils/mixin.js"); const Tokenizer = __webpack_require__(/*! ../../tokenizer */ "./node_modules/parse5/lib/tokenizer/index.js"); const LocationInfoTokenizerMixin = __webpack_require__(/*! ./tokenizer-mixin */ "./node_modules/parse5/lib/extensions/location-info/tokenizer-mixin.js"); const LocationInfoOpenElementStackMixin = __webpack_require__(/*! ./open-element-stack-mixin */ "./node_modules/parse5/lib/extensions/location-info/open-element-stack-mixin.js"); const HTML = __webpack_require__(/*! ../../common/html */ "./node_modules/parse5/lib/common/html.js"); //Aliases const $ = HTML.TAG_NAMES; class LocationInfoParserMixin extends Mixin { constructor(parser) { super(parser); this.parser = parser; this.treeAdapter = this.parser.treeAdapter; this.posTracker = null; this.lastStartTagToken = null; this.lastFosterParentingLocation = null; this.currentToken = null; } _setStartLocation(element) { let loc = null; if (this.lastStartTagToken) { loc = Object.assign({}, this.lastStartTagToken.location); loc.startTag = this.lastStartTagToken.location; } this.treeAdapter.setNodeSourceCodeLocation(element, loc); } _setEndLocation(element, closingToken) { const loc = this.treeAdapter.getNodeSourceCodeLocation(element); if (loc) { if (closingToken.location) { const ctLoc = closingToken.location; const tn = this.treeAdapter.getTagName(element); // NOTE: For cases like

- First 'p' closes without a closing // tag and for cases like

- 'p' closes without a closing tag. const isClosingEndTag = closingToken.type === Tokenizer.END_TAG_TOKEN && tn === closingToken.tagName; const endLoc = {}; if (isClosingEndTag) { endLoc.endTag = Object.assign({}, ctLoc); endLoc.endLine = ctLoc.endLine; endLoc.endCol = ctLoc.endCol; endLoc.endOffset = ctLoc.endOffset; } else { endLoc.endLine = ctLoc.startLine; endLoc.endCol = ctLoc.startCol; endLoc.endOffset = ctLoc.startOffset; } this.treeAdapter.updateNodeSourceCodeLocation(element, endLoc); } } } _getOverriddenMethods(mxn, orig) { return { _bootstrap(document, fragmentContext) { orig._bootstrap.call(this, document, fragmentContext); mxn.lastStartTagToken = null; mxn.lastFosterParentingLocation = null; mxn.currentToken = null; const tokenizerMixin = Mixin.install(this.tokenizer, LocationInfoTokenizerMixin); mxn.posTracker = tokenizerMixin.posTracker; Mixin.install(this.openElements, LocationInfoOpenElementStackMixin, { onItemPop: function(element) { mxn._setEndLocation(element, mxn.currentToken); } }); }, _runParsingLoop(scriptHandler) { orig._runParsingLoop.call(this, scriptHandler); // NOTE: generate location info for elements // that remains on open element stack for (let i = this.openElements.stackTop; i >= 0; i--) { mxn._setEndLocation(this.openElements.items[i], mxn.currentToken); } }, //Token processing _processTokenInForeignContent(token) { mxn.currentToken = token; orig._processTokenInForeignContent.call(this, token); }, _processToken(token) { mxn.currentToken = token; orig._processToken.call(this, token); //NOTE: and are never popped from the stack, so we need to updated //their end location explicitly. const requireExplicitUpdate = token.type === Tokenizer.END_TAG_TOKEN && (token.tagName === $.HTML || (token.tagName === $.BODY && this.openElements.hasInScope($.BODY))); if (requireExplicitUpdate) { for (let i = this.openElements.stackTop; i >= 0; i--) { const element = this.openElements.items[i]; if (this.treeAdapter.getTagName(element) === token.tagName) { mxn._setEndLocation(element, token); break; } } } }, //Doctype _setDocumentType(token) { orig._setDocumentType.call(this, token); const documentChildren = this.treeAdapter.getChildNodes(this.document); const cnLength = documentChildren.length; for (let i = 0; i < cnLength; i++) { const node = documentChildren[i]; if (this.treeAdapter.isDocumentTypeNode(node)) { this.treeAdapter.setNodeSourceCodeLocation(node, token.location); break; } } }, //Elements _attachElementToTree(element) { //NOTE: _attachElementToTree is called from _appendElement, _insertElement and _insertTemplate methods. //So we will use token location stored in this methods for the element. mxn._setStartLocation(element); mxn.lastStartTagToken = null; orig._attachElementToTree.call(this, element); }, _appendElement(token, namespaceURI) { mxn.lastStartTagToken = token; orig._appendElement.call(this, token, namespaceURI); }, _insertElement(token, namespaceURI) { mxn.lastStartTagToken = token; orig._insertElement.call(this, token, namespaceURI); }, _insertTemplate(token) { mxn.lastStartTagToken = token; orig._insertTemplate.call(this, token); const tmplContent = this.treeAdapter.getTemplateContent(this.openElements.current); this.treeAdapter.setNodeSourceCodeLocation(tmplContent, null); }, _insertFakeRootElement() { orig._insertFakeRootElement.call(this); this.treeAdapter.setNodeSourceCodeLocation(this.openElements.current, null); }, //Comments _appendCommentNode(token, parent) { orig._appendCommentNode.call(this, token, parent); const children = this.treeAdapter.getChildNodes(parent); const commentNode = children[children.length - 1]; this.treeAdapter.setNodeSourceCodeLocation(commentNode, token.location); }, //Text _findFosterParentingLocation() { //NOTE: store last foster parenting location, so we will be able to find inserted text //in case of foster parenting mxn.lastFosterParentingLocation = orig._findFosterParentingLocation.call(this); return mxn.lastFosterParentingLocation; }, _insertCharacters(token) { orig._insertCharacters.call(this, token); const hasFosterParent = this._shouldFosterParentOnInsertion(); const parent = (hasFosterParent && mxn.lastFosterParentingLocation.parent) || this.openElements.currentTmplContent || this.openElements.current; const siblings = this.treeAdapter.getChildNodes(parent); const textNodeIdx = hasFosterParent && mxn.lastFosterParentingLocation.beforeElement ? siblings.indexOf(mxn.lastFosterParentingLocation.beforeElement) - 1 : siblings.length - 1; const textNode = siblings[textNodeIdx]; //NOTE: if we have location assigned by another token, then just update end position const tnLoc = this.treeAdapter.getNodeSourceCodeLocation(textNode); if (tnLoc) { const { endLine, endCol, endOffset } = token.location; this.treeAdapter.updateNodeSourceCodeLocation(textNode, { endLine, endCol, endOffset }); } else { this.treeAdapter.setNodeSourceCodeLocation(textNode, token.location); } } }; } } module.exports = LocationInfoParserMixin; /***/ }), /***/ "./node_modules/parse5/lib/extensions/location-info/tokenizer-mixin.js": /*!*****************************************************************************!*\ !*** ./node_modules/parse5/lib/extensions/location-info/tokenizer-mixin.js ***! \*****************************************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const Mixin = __webpack_require__(/*! ../../utils/mixin */ "./node_modules/parse5/lib/utils/mixin.js"); const Tokenizer = __webpack_require__(/*! ../../tokenizer */ "./node_modules/parse5/lib/tokenizer/index.js"); const PositionTrackingPreprocessorMixin = __webpack_require__(/*! ../position-tracking/preprocessor-mixin */ "./node_modules/parse5/lib/extensions/position-tracking/preprocessor-mixin.js"); class LocationInfoTokenizerMixin extends Mixin { constructor(tokenizer) { super(tokenizer); this.tokenizer = tokenizer; this.posTracker = Mixin.install(tokenizer.preprocessor, PositionTrackingPreprocessorMixin); this.currentAttrLocation = null; this.ctLoc = null; } _getCurrentLocation() { return { startLine: this.posTracker.line, startCol: this.posTracker.col, startOffset: this.posTracker.offset, endLine: -1, endCol: -1, endOffset: -1 }; } _attachCurrentAttrLocationInfo() { this.currentAttrLocation.endLine = this.posTracker.line; this.currentAttrLocation.endCol = this.posTracker.col; this.currentAttrLocation.endOffset = this.posTracker.offset; const currentToken = this.tokenizer.currentToken; const currentAttr = this.tokenizer.currentAttr; if (!currentToken.location.attrs) { currentToken.location.attrs = Object.create(null); } currentToken.location.attrs[currentAttr.name] = this.currentAttrLocation; } _getOverriddenMethods(mxn, orig) { const methods = { _createStartTagToken() { orig._createStartTagToken.call(this); this.currentToken.location = mxn.ctLoc; }, _createEndTagToken() { orig._createEndTagToken.call(this); this.currentToken.location = mxn.ctLoc; }, _createCommentToken() { orig._createCommentToken.call(this); this.currentToken.location = mxn.ctLoc; }, _createDoctypeToken(initialName) { orig._createDoctypeToken.call(this, initialName); this.currentToken.location = mxn.ctLoc; }, _createCharacterToken(type, ch) { orig._createCharacterToken.call(this, type, ch); this.currentCharacterToken.location = mxn.ctLoc; }, _createEOFToken() { orig._createEOFToken.call(this); this.currentToken.location = mxn._getCurrentLocation(); }, _createAttr(attrNameFirstCh) { orig._createAttr.call(this, attrNameFirstCh); mxn.currentAttrLocation = mxn._getCurrentLocation(); }, _leaveAttrName(toState) { orig._leaveAttrName.call(this, toState); mxn._attachCurrentAttrLocationInfo(); }, _leaveAttrValue(toState) { orig._leaveAttrValue.call(this, toState); mxn._attachCurrentAttrLocationInfo(); }, _emitCurrentToken() { const ctLoc = this.currentToken.location; //NOTE: if we have pending character token make it's end location equal to the //current token's start location. if (this.currentCharacterToken) { this.currentCharacterToken.location.endLine = ctLoc.startLine; this.currentCharacterToken.location.endCol = ctLoc.startCol; this.currentCharacterToken.location.endOffset = ctLoc.startOffset; } if (this.currentToken.type === Tokenizer.EOF_TOKEN) { ctLoc.endLine = ctLoc.startLine; ctLoc.endCol = ctLoc.startCol; ctLoc.endOffset = ctLoc.startOffset; } else { ctLoc.endLine = mxn.posTracker.line; ctLoc.endCol = mxn.posTracker.col + 1; ctLoc.endOffset = mxn.posTracker.offset + 1; } orig._emitCurrentToken.call(this); }, _emitCurrentCharacterToken() { const ctLoc = this.currentCharacterToken && this.currentCharacterToken.location; //NOTE: if we have character token and it's location wasn't set in the _emitCurrentToken(), //then set it's location at the current preprocessor position. //We don't need to increment preprocessor position, since character token //emission is always forced by the start of the next character token here. //So, we already have advanced position. if (ctLoc && ctLoc.endOffset === -1) { ctLoc.endLine = mxn.posTracker.line; ctLoc.endCol = mxn.posTracker.col; ctLoc.endOffset = mxn.posTracker.offset; } orig._emitCurrentCharacterToken.call(this); } }; //NOTE: patch initial states for each mode to obtain token start position Object.keys(Tokenizer.MODE).forEach(modeName => { const state = Tokenizer.MODE[modeName]; methods[state] = function(cp) { mxn.ctLoc = mxn._getCurrentLocation(); orig[state].call(this, cp); }; }); return methods; } } module.exports = LocationInfoTokenizerMixin; /***/ }), /***/ "./node_modules/parse5/lib/extensions/position-tracking/preprocessor-mixin.js": /*!************************************************************************************!*\ !*** ./node_modules/parse5/lib/extensions/position-tracking/preprocessor-mixin.js ***! \************************************************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const Mixin = __webpack_require__(/*! ../../utils/mixin */ "./node_modules/parse5/lib/utils/mixin.js"); class PositionTrackingPreprocessorMixin extends Mixin { constructor(preprocessor) { super(preprocessor); this.preprocessor = preprocessor; this.isEol = false; this.lineStartPos = 0; this.droppedBufferSize = 0; this.offset = 0; this.col = 0; this.line = 1; } _getOverriddenMethods(mxn, orig) { return { advance() { const pos = this.pos + 1; const ch = this.html[pos]; //NOTE: LF should be in the last column of the line if (mxn.isEol) { mxn.isEol = false; mxn.line++; mxn.lineStartPos = pos; } if (ch === '\n' || (ch === '\r' && this.html[pos + 1] !== '\n')) { mxn.isEol = true; } mxn.col = pos - mxn.lineStartPos + 1; mxn.offset = mxn.droppedBufferSize + pos; return orig.advance.call(this); }, retreat() { orig.retreat.call(this); mxn.isEol = false; mxn.col = this.pos - mxn.lineStartPos + 1; }, dropParsedChunk() { const prevPos = this.pos; orig.dropParsedChunk.call(this); const reduction = prevPos - this.pos; mxn.lineStartPos -= reduction; mxn.droppedBufferSize += reduction; mxn.offset = mxn.droppedBufferSize + this.pos; } }; } } module.exports = PositionTrackingPreprocessorMixin; /***/ }), /***/ "./node_modules/parse5/lib/index.js": /*!******************************************!*\ !*** ./node_modules/parse5/lib/index.js ***! \******************************************/ /***/ ((__unused_webpack_module, exports, __webpack_require__) => { "use strict"; const Parser = __webpack_require__(/*! ./parser */ "./node_modules/parse5/lib/parser/index.js"); const Serializer = __webpack_require__(/*! ./serializer */ "./node_modules/parse5/lib/serializer/index.js"); // Shorthands exports.parse = function parse(html, options) { const parser = new Parser(options); return parser.parse(html); }; exports.parseFragment = function parseFragment(fragmentContext, html, options) { if (typeof fragmentContext === 'string') { options = html; html = fragmentContext; fragmentContext = null; } const parser = new Parser(options); return parser.parseFragment(html, fragmentContext); }; exports.serialize = function(node, options) { const serializer = new Serializer(node, options); return serializer.serialize(); }; /***/ }), /***/ "./node_modules/parse5/lib/parser/formatting-element-list.js": /*!*******************************************************************!*\ !*** ./node_modules/parse5/lib/parser/formatting-element-list.js ***! \*******************************************************************/ /***/ ((module) => { "use strict"; //Const const NOAH_ARK_CAPACITY = 3; //List of formatting elements class FormattingElementList { constructor(treeAdapter) { this.length = 0; this.entries = []; this.treeAdapter = treeAdapter; this.bookmark = null; } //Noah Ark's condition //OPTIMIZATION: at first we try to find possible candidates for exclusion using //lightweight heuristics without thorough attributes check. _getNoahArkConditionCandidates(newElement) { const candidates = []; if (this.length >= NOAH_ARK_CAPACITY) { const neAttrsLength = this.treeAdapter.getAttrList(newElement).length; const neTagName = this.treeAdapter.getTagName(newElement); const neNamespaceURI = this.treeAdapter.getNamespaceURI(newElement); for (let i = this.length - 1; i >= 0; i--) { const entry = this.entries[i]; if (entry.type === FormattingElementList.MARKER_ENTRY) { break; } const element = entry.element; const elementAttrs = this.treeAdapter.getAttrList(element); const isCandidate = this.treeAdapter.getTagName(element) === neTagName && this.treeAdapter.getNamespaceURI(element) === neNamespaceURI && elementAttrs.length === neAttrsLength; if (isCandidate) { candidates.push({ idx: i, attrs: elementAttrs }); } } } return candidates.length < NOAH_ARK_CAPACITY ? [] : candidates; } _ensureNoahArkCondition(newElement) { const candidates = this._getNoahArkConditionCandidates(newElement); let cLength = candidates.length; if (cLength) { const neAttrs = this.treeAdapter.getAttrList(newElement); const neAttrsLength = neAttrs.length; const neAttrsMap = Object.create(null); //NOTE: build attrs map for the new element so we can perform fast lookups for (let i = 0; i < neAttrsLength; i++) { const neAttr = neAttrs[i]; neAttrsMap[neAttr.name] = neAttr.value; } for (let i = 0; i < neAttrsLength; i++) { for (let j = 0; j < cLength; j++) { const cAttr = candidates[j].attrs[i]; if (neAttrsMap[cAttr.name] !== cAttr.value) { candidates.splice(j, 1); cLength--; } if (candidates.length < NOAH_ARK_CAPACITY) { return; } } } //NOTE: remove bottommost candidates until Noah's Ark condition will not be met for (let i = cLength - 1; i >= NOAH_ARK_CAPACITY - 1; i--) { this.entries.splice(candidates[i].idx, 1); this.length--; } } } //Mutations insertMarker() { this.entries.push({ type: FormattingElementList.MARKER_ENTRY }); this.length++; } pushElement(element, token) { this._ensureNoahArkCondition(element); this.entries.push({ type: FormattingElementList.ELEMENT_ENTRY, element: element, token: token }); this.length++; } insertElementAfterBookmark(element, token) { let bookmarkIdx = this.length - 1; for (; bookmarkIdx >= 0; bookmarkIdx--) { if (this.entries[bookmarkIdx] === this.bookmark) { break; } } this.entries.splice(bookmarkIdx + 1, 0, { type: FormattingElementList.ELEMENT_ENTRY, element: element, token: token }); this.length++; } removeEntry(entry) { for (let i = this.length - 1; i >= 0; i--) { if (this.entries[i] === entry) { this.entries.splice(i, 1); this.length--; break; } } } clearToLastMarker() { while (this.length) { const entry = this.entries.pop(); this.length--; if (entry.type === FormattingElementList.MARKER_ENTRY) { break; } } } //Search getElementEntryInScopeWithTagName(tagName) { for (let i = this.length - 1; i >= 0; i--) { const entry = this.entries[i]; if (entry.type === FormattingElementList.MARKER_ENTRY) { return null; } if (this.treeAdapter.getTagName(entry.element) === tagName) { return entry; } } return null; } getElementEntry(element) { for (let i = this.length - 1; i >= 0; i--) { const entry = this.entries[i]; if (entry.type === FormattingElementList.ELEMENT_ENTRY && entry.element === element) { return entry; } } return null; } } //Entry types FormattingElementList.MARKER_ENTRY = 'MARKER_ENTRY'; FormattingElementList.ELEMENT_ENTRY = 'ELEMENT_ENTRY'; module.exports = FormattingElementList; /***/ }), /***/ "./node_modules/parse5/lib/parser/index.js": /*!*************************************************!*\ !*** ./node_modules/parse5/lib/parser/index.js ***! \*************************************************/ /***/ ((module, __unused_webpack_exports, __webpack_require__) => { "use strict"; const Tokenizer = __webpack_require__(/*! ../tokenizer */ "./node_modules/parse5/lib/tokenizer/index.js"); const OpenElementStack = __webpack_require__(/*! ./open-element-stack */ "./node_modules/parse5/lib/parser/open-element-stack.js"); const FormattingElementList = __webpack_require__(/*! ./formatting-element-list */ "./node_modules/parse5/lib/parser/formatting-element-list.js"); const LocationInfoParserMixin = __webpack_require__(/*! ../extensions/location-info/parser-mixin */ "./node_modules/parse5/lib/extensions/location-info/parser-mixin.js"); const ErrorReportingParserMixin = __webpack_require__(/*! ../extensions/error-reporting/parser-mixin */ "./node_modules/parse5/lib/extensions/error-reporting/parser-mixin.js"); const Mixin = __webpack_require__(/*! ../utils/mixin */ "./node_modules/parse5/lib/utils/mixin.js"); const defaultTreeAdapter = __webpack_require__(/*! ../tree-adapters/default */ "./node_modules/parse5/lib/tree-adapters/default.js"); const mergeOptions = __webpack_require__(/*! ../utils/merge-options */ "./node_modules/parse5/lib/utils/merge-options.js"); const doctype = __webpack_require__(/*! ../common/doctype */ "./node_modules/parse5/lib/common/doctype.js"); const foreignContent = __webpack_require__(/*! ../common/foreign-content */ "./node_modules/parse5/lib/common/foreign-content.js"); const ERR = __webpack_require__(/*! ../common/error-codes */ "./node_modules/parse5/lib/common/error-codes.js"); const unicode = __webpack_require__(/*! ../common/unicode */ "./node_modules/parse5/lib/common/unicode.js"); const HTML = __webpack_require__(/*! ../common/html */ "./node_modules/parse5/lib/common/html.js"); //Aliases const $ = HTML.TAG_NAMES; const NS = HTML.NAMESPACES; const ATTRS = HTML.ATTRS; const DEFAULT_OPTIONS = { scriptingEnabled: true, sourceCodeLocationInfo: false, onParseError: null, treeAdapter: defaultTreeAdapter }; //Misc constants const HIDDEN_INPUT_TYPE = 'hidden'; //Adoption agency loops iteration count const AA_OUTER_LOOP_ITER = 8; const AA_INNER_LOOP_ITER = 3; //Insertion modes const INITIAL_MODE = 'INITIAL_MODE'; const BEFORE_HTML_MODE = 'BEFORE_HTML_MODE'; const BEFORE_HEAD_MODE = 'BEFORE_HEAD_MODE'; const IN_HEAD_MODE = 'IN_HEAD_MODE'; const IN_HEAD_NO_SCRIPT_MODE = 'IN_HEAD_NO_SCRIPT_MODE'; const AFTER_HEAD_MODE = 'AFTER_HEAD_MODE'; const IN_BODY_MODE = 'IN_BODY_MODE'; const TEXT_MODE = 'TEXT_MODE'; const IN_TABLE_MODE = 'IN_TABLE_MODE'; const IN_TABLE_TEXT_MODE = 'IN_TABLE_TEXT_MODE'; const IN_CAPTION_MODE = 'IN_CAPTION_MODE'; const IN_COLUMN_GROUP_MODE = 'IN_COLUMN_GROUP_MODE'; const IN_TABLE_BODY_MODE = 'IN_TABLE_BODY_MODE'; const IN_ROW_MODE = 'IN_ROW_MODE'; const IN_CELL_MODE = 'IN_CELL_MODE'; const IN_SELECT_MODE = 'IN_SELECT_MODE'; const IN_SELECT_IN_TABLE_MODE = 'IN_SELECT_IN_TABLE_MODE'; const IN_TEMPLATE_MODE = 'IN_TEMPLATE_MODE'; const AFTER_BODY_MODE = 'AFTER_BODY_MODE'; const IN_FRAMESET_MODE = 'IN_FRAMESET_MODE'; const AFTER_FRAMESET_MODE = 'AFTER_FRAMESET_MODE'; const AFTER_AFTER_BODY_MODE = 'AFTER_AFTER_BODY_MODE'; const AFTER_AFTER_FRAMESET_MODE = 'AFTER_AFTER_FRAMESET_MODE'; //Insertion mode reset map const INSERTION_MODE_RESET_MAP = { [$.TR]: IN_ROW_MODE, [$.TBODY]: IN_TABLE_BODY_MODE, [$.THEAD]: IN_TABLE_BODY_MODE, [$.TFOOT]: IN_TABLE_BODY_MODE, [$.CAPTION]: IN_CAPTION_MODE, [$.COLGROUP]: IN_COLUMN_GROUP_MODE, [$.TABLE]: IN_TABLE_MODE, [$.BODY]: IN_BODY_MODE, [$.FRAMESET]: IN_FRAMESET_MODE }; //Template insertion mode switch map const TEMPLATE_INSERTION_MODE_SWITCH_MAP = { [$.CAPTION]: IN_TABLE_MODE, [$.COLGROUP]: IN_TABLE_MODE, [$.TBODY]: IN_TABLE_MODE, [$.TFOOT]: IN_TABLE_MODE, [$.THEAD]: IN_TABLE_MODE, [$.COL]: IN_COLUMN_GROUP_MODE, [$.TR]: IN_TABLE_BODY_MODE, [$.TD]: IN_ROW_MODE, [$.TH]: IN_ROW_MODE }; //Token handlers map for insertion modes const TOKEN_HANDLERS = { [INITIAL_MODE]: { [Tokenizer.CHARACTER_TOKEN]: tokenInInitialMode, [Tokenizer.NULL_CHARACTER_TOKEN]: tokenInInitialMode, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: ignoreToken, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: doctypeInInitialMode, [Tokenizer.START_TAG_TOKEN]: tokenInInitialMode, [Tokenizer.END_TAG_TOKEN]: tokenInInitialMode, [Tokenizer.EOF_TOKEN]: tokenInInitialMode }, [BEFORE_HTML_MODE]: { [Tokenizer.CHARACTER_TOKEN]: tokenBeforeHtml, [Tokenizer.NULL_CHARACTER_TOKEN]: tokenBeforeHtml, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: ignoreToken, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: startTagBeforeHtml, [Tokenizer.END_TAG_TOKEN]: endTagBeforeHtml, [Tokenizer.EOF_TOKEN]: tokenBeforeHtml }, [BEFORE_HEAD_MODE]: { [Tokenizer.CHARACTER_TOKEN]: tokenBeforeHead, [Tokenizer.NULL_CHARACTER_TOKEN]: tokenBeforeHead, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: ignoreToken, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: misplacedDoctype, [Tokenizer.START_TAG_TOKEN]: startTagBeforeHead, [Tokenizer.END_TAG_TOKEN]: endTagBeforeHead, [Tokenizer.EOF_TOKEN]: tokenBeforeHead }, [IN_HEAD_MODE]: { [Tokenizer.CHARACTER_TOKEN]: tokenInHead, [Tokenizer.NULL_CHARACTER_TOKEN]: tokenInHead, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: insertCharacters, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: misplacedDoctype, [Tokenizer.START_TAG_TOKEN]: startTagInHead, [Tokenizer.END_TAG_TOKEN]: endTagInHead, [Tokenizer.EOF_TOKEN]: tokenInHead }, [IN_HEAD_NO_SCRIPT_MODE]: { [Tokenizer.CHARACTER_TOKEN]: tokenInHeadNoScript, [Tokenizer.NULL_CHARACTER_TOKEN]: tokenInHeadNoScript, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: insertCharacters, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: misplacedDoctype, [Tokenizer.START_TAG_TOKEN]: startTagInHeadNoScript, [Tokenizer.END_TAG_TOKEN]: endTagInHeadNoScript, [Tokenizer.EOF_TOKEN]: tokenInHeadNoScript }, [AFTER_HEAD_MODE]: { [Tokenizer.CHARACTER_TOKEN]: tokenAfterHead, [Tokenizer.NULL_CHARACTER_TOKEN]: tokenAfterHead, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: insertCharacters, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: misplacedDoctype, [Tokenizer.START_TAG_TOKEN]: startTagAfterHead, [Tokenizer.END_TAG_TOKEN]: endTagAfterHead, [Tokenizer.EOF_TOKEN]: tokenAfterHead }, [IN_BODY_MODE]: { [Tokenizer.CHARACTER_TOKEN]: characterInBody, [Tokenizer.NULL_CHARACTER_TOKEN]: ignoreToken, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: whitespaceCharacterInBody, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: startTagInBody, [Tokenizer.END_TAG_TOKEN]: endTagInBody, [Tokenizer.EOF_TOKEN]: eofInBody }, [TEXT_MODE]: { [Tokenizer.CHARACTER_TOKEN]: insertCharacters, [Tokenizer.NULL_CHARACTER_TOKEN]: insertCharacters, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: insertCharacters, [Tokenizer.COMMENT_TOKEN]: ignoreToken, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: ignoreToken, [Tokenizer.END_TAG_TOKEN]: endTagInText, [Tokenizer.EOF_TOKEN]: eofInText }, [IN_TABLE_MODE]: { [Tokenizer.CHARACTER_TOKEN]: characterInTable, [Tokenizer.NULL_CHARACTER_TOKEN]: characterInTable, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: characterInTable, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: startTagInTable, [Tokenizer.END_TAG_TOKEN]: endTagInTable, [Tokenizer.EOF_TOKEN]: eofInBody }, [IN_TABLE_TEXT_MODE]: { [Tokenizer.CHARACTER_TOKEN]: characterInTableText, [Tokenizer.NULL_CHARACTER_TOKEN]: ignoreToken, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: whitespaceCharacterInTableText, [Tokenizer.COMMENT_TOKEN]: tokenInTableText, [Tokenizer.DOCTYPE_TOKEN]: tokenInTableText, [Tokenizer.START_TAG_TOKEN]: tokenInTableText, [Tokenizer.END_TAG_TOKEN]: tokenInTableText, [Tokenizer.EOF_TOKEN]: tokenInTableText }, [IN_CAPTION_MODE]: { [Tokenizer.CHARACTER_TOKEN]: characterInBody, [Tokenizer.NULL_CHARACTER_TOKEN]: ignoreToken, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: whitespaceCharacterInBody, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: startTagInCaption, [Tokenizer.END_TAG_TOKEN]: endTagInCaption, [Tokenizer.EOF_TOKEN]: eofInBody }, [IN_COLUMN_GROUP_MODE]: { [Tokenizer.CHARACTER_TOKEN]: tokenInColumnGroup, [Tokenizer.NULL_CHARACTER_TOKEN]: tokenInColumnGroup, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: insertCharacters, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: startTagInColumnGroup, [Tokenizer.END_TAG_TOKEN]: endTagInColumnGroup, [Tokenizer.EOF_TOKEN]: eofInBody }, [IN_TABLE_BODY_MODE]: { [Tokenizer.CHARACTER_TOKEN]: characterInTable, [Tokenizer.NULL_CHARACTER_TOKEN]: characterInTable, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: characterInTable, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: startTagInTableBody, [Tokenizer.END_TAG_TOKEN]: endTagInTableBody, [Tokenizer.EOF_TOKEN]: eofInBody }, [IN_ROW_MODE]: { [Tokenizer.CHARACTER_TOKEN]: characterInTable, [Tokenizer.NULL_CHARACTER_TOKEN]: characterInTable, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: characterInTable, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: startTagInRow, [Tokenizer.END_TAG_TOKEN]: endTagInRow, [Tokenizer.EOF_TOKEN]: eofInBody }, [IN_CELL_MODE]: { [Tokenizer.CHARACTER_TOKEN]: characterInBody, [Tokenizer.NULL_CHARACTER_TOKEN]: ignoreToken, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: whitespaceCharacterInBody, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: startTagInCell, [Tokenizer.END_TAG_TOKEN]: endTagInCell, [Tokenizer.EOF_TOKEN]: eofInBody }, [IN_SELECT_MODE]: { [Tokenizer.CHARACTER_TOKEN]: insertCharacters, [Tokenizer.NULL_CHARACTER_TOKEN]: ignoreToken, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: insertCharacters, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: startTagInSelect, [Tokenizer.END_TAG_TOKEN]: endTagInSelect, [Tokenizer.EOF_TOKEN]: eofInBody }, [IN_SELECT_IN_TABLE_MODE]: { [Tokenizer.CHARACTER_TOKEN]: insertCharacters, [Tokenizer.NULL_CHARACTER_TOKEN]: ignoreToken, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: insertCharacters, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: startTagInSelectInTable, [Tokenizer.END_TAG_TOKEN]: endTagInSelectInTable, [Tokenizer.EOF_TOKEN]: eofInBody }, [IN_TEMPLATE_MODE]: { [Tokenizer.CHARACTER_TOKEN]: characterInBody, [Tokenizer.NULL_CHARACTER_TOKEN]: ignoreToken, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: whitespaceCharacterInBody, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: startTagInTemplate, [Tokenizer.END_TAG_TOKEN]: endTagInTemplate, [Tokenizer.EOF_TOKEN]: eofInTemplate }, [AFTER_BODY_MODE]: { [Tokenizer.CHARACTER_TOKEN]: tokenAfterBody, [Tokenizer.NULL_CHARACTER_TOKEN]: tokenAfterBody, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: whitespaceCharacterInBody, [Tokenizer.COMMENT_TOKEN]: appendCommentToRootHtmlElement, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: startTagAfterBody, [Tokenizer.END_TAG_TOKEN]: endTagAfterBody, [Tokenizer.EOF_TOKEN]: stopParsing }, [IN_FRAMESET_MODE]: { [Tokenizer.CHARACTER_TOKEN]: ignoreToken, [Tokenizer.NULL_CHARACTER_TOKEN]: ignoreToken, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: insertCharacters, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: startTagInFrameset, [Tokenizer.END_TAG_TOKEN]: endTagInFrameset, [Tokenizer.EOF_TOKEN]: stopParsing }, [AFTER_FRAMESET_MODE]: { [Tokenizer.CHARACTER_TOKEN]: ignoreToken, [Tokenizer.NULL_CHARACTER_TOKEN]: ignoreToken, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: insertCharacters, [Tokenizer.COMMENT_TOKEN]: appendComment, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: startTagAfterFrameset, [Tokenizer.END_TAG_TOKEN]: endTagAfterFrameset, [Tokenizer.EOF_TOKEN]: stopParsing }, [AFTER_AFTER_BODY_MODE]: { [Tokenizer.CHARACTER_TOKEN]: tokenAfterAfterBody, [Tokenizer.NULL_CHARACTER_TOKEN]: tokenAfterAfterBody, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: whitespaceCharacterInBody, [Tokenizer.COMMENT_TOKEN]: appendCommentToDocument, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: startTagAfterAfterBody, [Tokenizer.END_TAG_TOKEN]: tokenAfterAfterBody, [Tokenizer.EOF_TOKEN]: stopParsing }, [AFTER_AFTER_FRAMESET_MODE]: { [Tokenizer.CHARACTER_TOKEN]: ignoreToken, [Tokenizer.NULL_CHARACTER_TOKEN]: ignoreToken, [Tokenizer.WHITESPACE_CHARACTER_TOKEN]: whitespaceCharacterInBody, [Tokenizer.COMMENT_TOKEN]: appendCommentToDocument, [Tokenizer.DOCTYPE_TOKEN]: ignoreToken, [Tokenizer.START_TAG_TOKEN]: startTagAfterAfterFrameset, [Tokenizer.END_TAG_TOKEN]: ignoreToken, [Tokenizer.EOF_TOKEN]: stopParsing } }; //Parser class Parser { constructor(options) { this.options = mergeOptions(DEFAULT_OPTIONS, options); this.treeAdapter = this.options.treeAdapter; this.pendingScript = null; if (this.options.sourceCodeLocationInfo) { Mixin.install(this, LocationInfoParserMixin); } if (this.options.onParseError) { Mixin.install(this, ErrorReportingParserMixin, { onParseError: this.options.onParseError }); } } // API parse(html) { const document = this.treeAdapter.createDocument(); this._bootstrap(document, null); this.tokenizer.write(html, true); this._runParsingLoop(null); return document; } parseFragment(html, fragmentContext) { //NOTE: use