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{"version":3,"file":"msal-node.esm.js","sources":["../node_modules/regenerator-runtime/runtime.js","../src/utils/Constants.ts","../src/network/HttpClient.ts","../src/utils/NetworkUtils.ts","../src/config/Configuration.ts","../src/crypto/GuidGenerator.ts","../src/utils/EncodingUtils.ts","../src/crypto/PkceGenerator.ts","../src/crypto/CryptoProvider.ts","../src/cache/serializer/Deserializer.ts","../src/cache/serializer/Serializer.ts","../src/cache/NodeStorage.ts","../src/cache/TokenCache.ts","../src/packageMetadata.ts","../src/client/ClientApplication.ts","../src/client/PublicClientApplication.ts","../src/client/ClientAssertion.ts","../src/client/ConfidentialClientApplication.ts"],"sourcesContent":["/**\n * Copyright (c) 2014-present, Facebook, Inc.\n *\n * This source code is licensed under the MIT license found in the\n * LICENSE file in the root directory of this source tree.\n */\n\nvar runtime = (function (exports) {\n \"use strict\";\n\n var Op = Object.prototype;\n var hasOwn = Op.hasOwnProperty;\n var undefined; // More compressible than void 0.\n var $Symbol = typeof Symbol === \"function\" ? Symbol : {};\n var iteratorSymbol = $Symbol.iterator || \"@@iterator\";\n var asyncIteratorSymbol = $Symbol.asyncIterator || \"@@asyncIterator\";\n var toStringTagSymbol = $Symbol.toStringTag || \"@@toStringTag\";\n\n function define(obj, key, value) {\n Object.defineProperty(obj, key, {\n value: value,\n enumerable: true,\n configurable: true,\n writable: true\n });\n return obj[key];\n }\n try {\n // IE 8 has a broken Object.defineProperty that only works on DOM objects.\n define({}, \"\");\n } catch (err) {\n define = function(obj, key, value) {\n return obj[key] = value;\n };\n }\n\n function wrap(innerFn, outerFn, self, tryLocsList) {\n // If outerFn provided and outerFn.prototype is a Generator, then outerFn.prototype instanceof Generator.\n var protoGenerator = outerFn && outerFn.prototype instanceof Generator ? outerFn : Generator;\n var generator = Object.create(protoGenerator.prototype);\n var context = new Context(tryLocsList || []);\n\n // The ._invoke method unifies the implementations of the .next,\n // .throw, and .return methods.\n generator._invoke = makeInvokeMethod(innerFn, self, context);\n\n return generator;\n }\n exports.wrap = wrap;\n\n // Try/catch helper to minimize deoptimizations. Returns a completion\n // record like context.tryEntries[i].completion. This interface could\n // have been (and was previously) designed to take a closure to be\n // invoked without arguments, but in all the cases we care about we\n // already have an existing method we want to call, so there's no need\n // to create a new function object. We can even get away with assuming\n // the method takes exactly one argument, since that happens to be true\n // in every case, so we don't have to touch the arguments object. The\n // only additional allocation required is the completion record, which\n // has a stable shape and so hopefully should be cheap to allocate.\n function tryCatch(fn, obj, arg) {\n try {\n return { type: \"normal\", arg: fn.call(obj, arg) };\n } catch (err) {\n return { type: \"throw\", arg: err };\n }\n }\n\n var GenStateSuspendedStart = \"suspendedStart\";\n var GenStateSuspendedYield = \"suspendedYield\";\n var GenStateExecuting = \"executing\";\n var GenStateCompleted = \"completed\";\n\n // Returning this object from the innerFn has the same effect as\n // breaking out of the dispatch switch statement.\n var ContinueSentinel = {};\n\n // Dummy constructor functions that we use as the .constructor and\n // .constructor.prototype properties for functions that return Generator\n // objects. For full spec compliance, you may wish to configure your\n // minifier not to mangle the names of these two functions.\n function Generator() {}\n function GeneratorFunction() {}\n function GeneratorFunctionPrototype() {}\n\n // This is a polyfill for %IteratorPrototype% for environments that\n // don't natively support it.\n var IteratorPrototype = {};\n IteratorPrototype[iteratorSymbol] = function () {\n return this;\n };\n\n var getProto = Object.getPrototypeOf;\n var NativeIteratorPrototype = getProto && getProto(getProto(values([])));\n if (NativeIteratorPrototype &&\n NativeIteratorPrototype !== Op &&\n hasOwn.call(NativeIteratorPrototype, iteratorSymbol)) {\n // This environment has a native %IteratorPrototype%; use it instead\n // of the polyfill.\n IteratorPrototype = NativeIteratorPrototype;\n }\n\n var Gp = GeneratorFunctionPrototype.prototype =\n Generator.prototype = Object.create(IteratorPrototype);\n GeneratorFunction.prototype = Gp.constructor = GeneratorFunctionPrototype;\n GeneratorFunctionPrototype.constructor = GeneratorFunction;\n GeneratorFunction.displayName = define(\n GeneratorFunctionPrototype,\n toStringTagSymbol,\n \"GeneratorFunction\"\n );\n\n // Helper for defining the .next, .throw, and .return methods of the\n // Iterator interface in terms of a single ._invoke method.\n function defineIteratorMethods(prototype) {\n [\"next\", \"throw\", \"return\"].forEach(function(method) {\n define(prototype, method, function(arg) {\n return this._invoke(method, arg);\n });\n });\n }\n\n exports.isGeneratorFunction = function(genFun) {\n var ctor = typeof genFun === \"function\" && genFun.constructor;\n return ctor\n ? ctor === GeneratorFunction ||\n // For the native GeneratorFunction constructor, the best we can\n // do is to check its .name property.\n (ctor.displayName || ctor.name) === \"GeneratorFunction\"\n : false;\n };\n\n exports.mark = function(genFun) {\n if (Object.setPrototypeOf) {\n Object.setPrototypeOf(genFun, GeneratorFunctionPrototype);\n } else {\n genFun.__proto__ = GeneratorFunctionPrototype;\n define(genFun, toStringTagSymbol, \"GeneratorFunction\");\n }\n genFun.prototype = Object.create(Gp);\n return genFun;\n };\n\n // Within the body of any async function, `await x` is transformed to\n // `yield regeneratorRuntime.awrap(x)`, so that the runtime can test\n // `hasOwn.call(value, \"__await\")` to determine if the yielded value is\n // meant to be awaited.\n exports.awrap = function(arg) {\n return { __await: arg };\n };\n\n function AsyncIterator(generator, PromiseImpl) {\n function invoke(method, arg, resolve, reject) {\n var record = tryCatch(generator[method], generator, arg);\n if (record.type === \"throw\") {\n reject(record.arg);\n } else {\n var result = record.arg;\n var value = result.value;\n if (value &&\n typeof value === \"object\" &&\n hasOwn.call(value, \"__await\")) {\n return PromiseImpl.resolve(value.__await).then(function(value) {\n invoke(\"next\", value, resolve, reject);\n }, function(err) {\n invoke(\"throw\", err, resolve, reject);\n });\n }\n\n return PromiseImpl.resolve(value).then(function(unwrapped) {\n // When a yielded Promise is resolved, its final value becomes\n // the .value of the Promise<{value,done}> result for the\n // current iteration.\n result.value = unwrapped;\n resolve(result);\n }, function(error) {\n // If a rejected Promise was yielded, throw the rejection back\n // into the async generator function so it can be handled there.\n return invoke(\"throw\", error, resolve, reject);\n });\n }\n }\n\n var previousPromise;\n\n function enqueue(method, arg) {\n function callInvokeWithMethodAndArg() {\n return new PromiseImpl(function(resolve, reject) {\n invoke(method, arg, resolve, reject);\n });\n }\n\n return previousPromise =\n // If enqueue has been called before, then we want to wait until\n // all previous Promises have been resolved before calling invoke,\n // so that results are always delivered in the correct order. If\n // enqueue has not been called before, then it is important to\n // call invoke immediately, without waiting on a callback to fire,\n // so that the async generator function has the opportunity to do\n // any necessary setup in a predictable way. This predictability\n // is why the Promise constructor synchronously invokes its\n // executor callback, and why async functions synchronously\n // execute code before the first await. Since we implement simple\n // async functions in terms of async generators, it is especially\n // important to get this right, even though it requires care.\n previousPromise ? previousPromise.then(\n callInvokeWithMethodAndArg,\n // Avoid propagating failures to Promises returned by later\n // invocations of the iterator.\n callInvokeWithMethodAndArg\n ) : callInvokeWithMethodAndArg();\n }\n\n // Define the unified helper method that is used to implement .next,\n // .throw, and .return (see defineIteratorMethods).\n this._invoke = enqueue;\n }\n\n defineIteratorMethods(AsyncIterator.prototype);\n AsyncIterator.prototype[asyncIteratorSymbol] = function () {\n return this;\n };\n exports.AsyncIterator = AsyncIterator;\n\n // Note that simple async functions are implemented on top of\n // AsyncIterator objects; they just return a Promise for the value of\n // the final result produced by the iterator.\n exports.async = function(innerFn, outerFn, self, tryLocsList, PromiseImpl) {\n if (PromiseImpl === void 0) PromiseImpl = Promise;\n\n var iter = new AsyncIterator(\n wrap(innerFn, outerFn, self, tryLocsList),\n PromiseImpl\n );\n\n return exports.isGeneratorFunction(outerFn)\n ? iter // If outerFn is a generator, return the full iterator.\n : iter.next().then(function(result) {\n return result.done ? result.value : iter.next();\n });\n };\n\n function makeInvokeMethod(innerFn, self, context) {\n var state = GenStateSuspendedStart;\n\n return function invoke(method, arg) {\n if (state === GenStateExecuting) {\n throw new Error(\"Generator is already running\");\n }\n\n if (state === GenStateCompleted) {\n if (method === \"throw\") {\n throw arg;\n }\n\n // Be forgiving, per 25.3.3.3.3 of the spec:\n // https://people.mozilla.org/~jorendorff/es6-draft.html#sec-generatorresume\n return doneResult();\n }\n\n context.method = method;\n context.arg = arg;\n\n while (true) {\n var delegate = context.delegate;\n if (delegate) {\n var delegateResult = maybeInvokeDelegate(delegate, context);\n if (delegateResult) {\n if (delegateResult === ContinueSentinel) continue;\n return delegateResult;\n }\n }\n\n if (context.method === \"next\") {\n // Setting context._sent for legacy support of Babel's\n // function.sent implementation.\n context.sent = context._sent = context.arg;\n\n } else if (context.method === \"throw\") {\n if (state === GenStateSuspendedStart) {\n state = GenStateCompleted;\n throw context.arg;\n }\n\n context.dispatchException(context.arg);\n\n } else if (context.method === \"return\") {\n context.abrupt(\"return\", context.arg);\n }\n\n state = GenStateExecuting;\n\n var record = tryCatch(innerFn, self, context);\n if (record.type === \"normal\") {\n // If an exception is thrown from innerFn, we leave state ===\n // GenStateExecuting and loop back for another invocation.\n state = context.done\n ? GenStateCompleted\n : GenStateSuspendedYield;\n\n if (record.arg === ContinueSentinel) {\n continue;\n }\n\n return {\n value: record.arg,\n done: context.done\n };\n\n } else if (record.type === \"throw\") {\n state = GenStateCompleted;\n // Dispatch the exception by looping back around to the\n // context.dispatchException(context.arg) call above.\n context.method = \"throw\";\n context.arg = record.arg;\n }\n }\n };\n }\n\n // Call delegate.iterator[context.method](context.arg) and handle the\n // result, either by returning a { value, done } result from the\n // delegate iterator, or by modifying context.method and context.arg,\n // setting context.delegate to null, and returning the ContinueSentinel.\n function maybeInvokeDelegate(delegate, context) {\n var method = delegate.iterator[context.method];\n if (method === undefined) {\n // A .throw or .return when the delegate iterator has no .throw\n // method always terminates the yield* loop.\n context.delegate = null;\n\n if (context.method === \"throw\") {\n // Note: [\"return\"] must be used for ES3 parsing compatibility.\n if (delegate.iterator[\"return\"]) {\n // If the delegate iterator has a return method, give it a\n // chance to clean up.\n context.method = \"return\";\n context.arg = undefined;\n maybeInvokeDelegate(delegate, context);\n\n if (context.method === \"throw\") {\n // If maybeInvokeDelegate(context) changed context.method from\n // \"return\" to \"throw\", let that override the TypeError below.\n return ContinueSentinel;\n }\n }\n\n context.method = \"throw\";\n context.arg = new TypeError(\n \"The iterator does not provide a 'throw' method\");\n }\n\n return ContinueSentinel;\n }\n\n var record = tryCatch(method, delegate.iterator, context.arg);\n\n if (record.type === \"throw\") {\n context.method = \"throw\";\n context.arg = record.arg;\n context.delegate = null;\n return ContinueSentinel;\n }\n\n var info = record.arg;\n\n if (! info) {\n context.method = \"throw\";\n context.arg = new TypeError(\"iterator result is not an object\");\n context.delegate = null;\n return ContinueSentinel;\n }\n\n if (info.done) {\n // Assign the result of the finished delegate to the temporary\n // variable specified by delegate.resultName (see delegateYield).\n context[delegate.resultName] = info.value;\n\n // Resume execution at the desired location (see delegateYield).\n context.next = delegate.nextLoc;\n\n // If context.method was \"throw\" but the delegate handled the\n // exception, let the outer generator proceed normally. If\n // context.method was \"next\", forget context.arg since it has been\n // \"consumed\" by the delegate iterator. If context.method was\n // \"return\", allow the original .return call to continue in the\n // outer generator.\n if (context.method !== \"return\") {\n context.method = \"next\";\n context.arg = undefined;\n }\n\n } else {\n // Re-yield the result returned by the delegate method.\n return info;\n }\n\n // The delegate iterator is finished, so forget it and continue with\n // the outer generator.\n context.delegate = null;\n return ContinueSentinel;\n }\n\n // Define Generator.prototype.{next,throw,return} in terms of the\n // unified ._invoke helper method.\n defineIteratorMethods(Gp);\n\n define(Gp, toStringTagSymbol, \"Generator\");\n\n // A Generator should always return itself as the iterator object when the\n // @@iterator function is called on it. Some browsers' implementations of the\n // iterator prototype chain incorrectly implement this, causing the Generator\n // object to not be returned from this call. This ensures that doesn't happen.\n // See https://github.com/facebook/regenerator/issues/274 for more details.\n Gp[iteratorSymbol] = function() {\n return this;\n };\n\n Gp.toString = function() {\n return \"[object Generator]\";\n };\n\n function pushTryEntry(locs) {\n var entry = { tryLoc: locs[0] };\n\n if (1 in locs) {\n entry.catchLoc = locs[1];\n }\n\n if (2 in locs) {\n entry.finallyLoc = locs[2];\n entry.afterLoc = locs[3];\n }\n\n this.tryEntries.push(entry);\n }\n\n function resetTryEntry(entry) {\n var record = entry.completion || {};\n record.type = \"normal\";\n delete record.arg;\n entry.completion = record;\n }\n\n function Context(tryLocsList) {\n // The root entry object (effectively a try statement without a catch\n // or a finally block) gives us a place to store values thrown from\n // locations where there is no enclosing try statement.\n this.tryEntries = [{ tryLoc: \"root\" }];\n tryLocsList.forEach(pushTryEntry, this);\n this.reset(true);\n }\n\n exports.keys = function(object) {\n var keys = [];\n for (var key in object) {\n keys.push(key);\n }\n keys.reverse();\n\n // Rather than returning an object with a next method, we keep\n // things simple and return the next function itself.\n return function next() {\n while (keys.length) {\n var key = keys.pop();\n if (key in object) {\n next.value = key;\n next.done = false;\n return next;\n }\n }\n\n // To avoid creating an additional object, we just hang the .value\n // and .done properties off the next function object itself. This\n // also ensures that the minifier will not anonymize the function.\n next.done = true;\n return next;\n };\n };\n\n function values(iterable) {\n if (iterable) {\n var iteratorMethod = iterable[iteratorSymbol];\n if (iteratorMethod) {\n return iteratorMethod.call(iterable);\n }\n\n if (typeof iterable.next === \"function\") {\n return iterable;\n }\n\n if (!isNaN(iterable.length)) {\n var i = -1, next = function next() {\n while (++i < iterable.length) {\n if (hasOwn.call(iterable, i)) {\n next.value = iterable[i];\n next.done = false;\n return next;\n }\n }\n\n next.value = undefined;\n next.done = true;\n\n return next;\n };\n\n return next.next = next;\n }\n }\n\n // Return an iterator with no values.\n return { next: doneResult };\n }\n exports.values = values;\n\n function doneResult() {\n return { value: undefined, done: true };\n }\n\n Context.prototype = {\n constructor: Context,\n\n reset: function(skipTempReset) {\n this.prev = 0;\n this.next = 0;\n // Resetting context._sent for legacy support of Babel's\n // function.sent implementation.\n this.sent = this._sent = undefined;\n this.done = false;\n this.delegate = null;\n\n this.method = \"next\";\n this.arg = undefined;\n\n this.tryEntries.forEach(resetTryEntry);\n\n if (!skipTempReset) {\n for (var name in this) {\n // Not sure about the optimal order of these conditions:\n if (name.charAt(0) === \"t\" &&\n hasOwn.call(this, name) &&\n !isNaN(+name.slice(1))) {\n this[name] = undefined;\n }\n }\n }\n },\n\n stop: function() {\n this.done = true;\n\n var rootEntry = this.tryEntries[0];\n var rootRecord = rootEntry.completion;\n if (rootRecord.type === \"throw\") {\n throw rootRecord.arg;\n }\n\n return this.rval;\n },\n\n dispatchException: function(exception) {\n if (this.done) {\n throw exception;\n }\n\n var context = this;\n function handle(loc, caught) {\n record.type = \"throw\";\n record.arg = exception;\n context.next = loc;\n\n if (caught) {\n // If the dispatched exception was caught by a catch block,\n // then let that catch block handle the exception normally.\n context.method = \"next\";\n context.arg = undefined;\n }\n\n return !! caught;\n }\n\n for (var i = this.tryEntries.length - 1; i >= 0; --i) {\n var entry = this.tryEntries[i];\n var record = entry.completion;\n\n if (entry.tryLoc === \"root\") {\n // Exception thrown outside of any try block that could handle\n // it, so set the completion value of the entire function to\n // throw the exception.\n return handle(\"end\");\n }\n\n if (entry.tryLoc <= this.prev) {\n var hasCatch = hasOwn.call(entry, \"catchLoc\");\n var hasFinally = hasOwn.call(entry, \"finallyLoc\");\n\n if (hasCatch && hasFinally) {\n if (this.prev < entry.catchLoc) {\n return handle(entry.catchLoc, true);\n } else if (this.prev < entry.finallyLoc) {\n return handle(entry.finallyLoc);\n }\n\n } else if (hasCatch) {\n if (this.prev < entry.catchLoc) {\n return handle(entry.catchLoc, true);\n }\n\n } else if (hasFinally) {\n if (this.prev < entry.finallyLoc) {\n return handle(entry.finallyLoc);\n }\n\n } else {\n throw new Error(\"try statement without catch or finally\");\n }\n }\n }\n },\n\n abrupt: function(type, arg) {\n for (var i = this.tryEntries.length - 1; i >= 0; --i) {\n var entry = this.tryEntries[i];\n if (entry.tryLoc <= this.prev &&\n hasOwn.call(entry, \"finallyLoc\") &&\n this.prev < entry.finallyLoc) {\n var finallyEntry = entry;\n break;\n }\n }\n\n if (finallyEntry &&\n (type === \"break\" ||\n type === \"continue\") &&\n finallyEntry.tryLoc <= arg &&\n arg <= finallyEntry.finallyLoc) {\n // Ignore the finally entry if control is not jumping to a\n // location outside the try/catch block.\n finallyEntry = null;\n }\n\n var record = finallyEntry ? finallyEntry.completion : {};\n record.type = type;\n record.arg = arg;\n\n if (finallyEntry) {\n this.method = \"next\";\n this.next = finallyEntry.finallyLoc;\n return ContinueSentinel;\n }\n\n return this.complete(record);\n },\n\n complete: function(record, afterLoc) {\n if (record.type === \"throw\") {\n throw record.arg;\n }\n\n if (record.type === \"break\" ||\n record.type === \"continue\") {\n this.next = record.arg;\n } else if (record.type === \"return\") {\n this.rval = this.arg = record.arg;\n this.method = \"return\";\n this.next = \"end\";\n } else if (record.type === \"normal\" && afterLoc) {\n this.next = afterLoc;\n }\n\n return ContinueSentinel;\n },\n\n finish: function(finallyLoc) {\n for (var i = this.tryEntries.length - 1; i >= 0; --i) {\n var entry = this.tryEntries[i];\n if (entry.finallyLoc === finallyLoc) {\n this.complete(entry.completion, entry.afterLoc);\n resetTryEntry(entry);\n return ContinueSentinel;\n }\n }\n },\n\n \"catch\": function(tryLoc) {\n for (var i = this.tryEntries.length - 1; i >= 0; --i) {\n var entry = this.tryEntries[i];\n if (entry.tryLoc === tryLoc) {\n var record = entry.completion;\n if (record.type === \"throw\") {\n var thrown = record.arg;\n resetTryEntry(entry);\n }\n return thrown;\n }\n }\n\n // The context.catch method must only be called with a location\n // argument that corresponds to a known catch block.\n throw new Error(\"illegal catch attempt\");\n },\n\n delegateYield: function(iterable, resultName, nextLoc) {\n this.delegate = {\n iterator: values(iterable),\n resultName: resultName,\n nextLoc: nextLoc\n };\n\n if (this.method === \"next\") {\n // Deliberately forget the last sent value so that we don't\n // accidentally pass it on to the delegate.\n this.arg = undefined;\n }\n\n return ContinueSentinel;\n }\n };\n\n // Regardless of whether this script is executing as a CommonJS module\n // or not, return the runtime object so that we can declare the variable\n // regeneratorRuntime in the outer scope, which allows this module to be\n // injected easily by `bin/regenerator --include-runtime script.js`.\n return exports;\n\n}(\n // If this script is executing as a CommonJS module, use module.exports\n // as the regeneratorRuntime namespace. Otherwise create a new empty\n // object. Either way, the resulting object will be used to initialize\n // the regeneratorRuntime variable at the top of this file.\n typeof module === \"object\" ? module.exports : {}\n));\n\ntry {\n regeneratorRuntime = runtime;\n} catch (accidentalStrictMode) {\n // This module should not be running in strict mode, so the above\n // assignment should always work unless something is misconfigured. Just\n // in case runtime.js accidentally runs in strict mode, we can escape\n // strict mode using a global Function call. This could conceivably fail\n // if a Content Security Policy forbids using Function, but in that case\n // the proper solution is to fix the accidental strict mode problem. If\n // you've misconfigured your bundler to force strict mode and applied a\n // CSP to forbid Function, and you're not willing to fix either of those\n // problems, please detail your unique predicament in a GitHub issue.\n Function(\"r\", \"regeneratorRuntime = r\")(runtime);\n}\n","/*\r\n * Copyright (c) Microsoft Corporation. All rights reserved.\r\n * Licensed under the MIT License.\r\n */\r\n\r\n/**\r\n * http methods\r\n */\r\nexport enum HttpMethod {\r\n GET = \"get\",\r\n POST = \"post\",\r\n}\r\n\r\n/**\r\n * Constant used for PKCE\r\n */\r\nexport const RANDOM_OCTET_SIZE = 32;\r\n\r\n/**\r\n * Constants used in PKCE\r\n */\r\nexport const Hash = {\r\n SHA256: \"sha256\",\r\n};\r\n\r\n/**\r\n * Constants for encoding schemes\r\n */\r\nexport const CharSet = {\r\n CV_CHARSET:\r\n \"ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789-._~\",\r\n};\r\n\r\n/**\r\n * Cache Constants\r\n */\r\nexport const CACHE = {\r\n FILE_CACHE: \"fileCache\",\r\n EXTENSION_LIB: \"extenstion_library\",\r\n};\r\n\r\n/**\r\n * Constants\r\n */\r\nexport const Constants = {\r\n MSAL_SKU: \"msal.js.node\",\r\n JWT_BEARER_ASSERTION_TYPE: \"urn:ietf:params:oauth:client-assertion-type:jwt-bearer\"\r\n};\r\n\r\n/**\r\n * API Codes for Telemetry purposes.\r\n * Before adding a new code you must claim it in the MSAL Telemetry tracker as these number spaces are shared across all MSALs\r\n * 0-99 Silent Flow\r\n * 600-699 Device Code Flow\r\n * 800-899 Auth Code Flow\r\n */\r\nexport enum ApiId {\r\n acquireTokenSilent = 62,\r\n acquireTokenByUsernamePassword = 371,\r\n acquireTokenByDeviceCode = 671,\r\n acquireTokenByClientCredential = 771,\r\n acquireTokenByCode = 871,\r\n acquireTokenByRefreshToken = 872\r\n}\r\n\r\n/**\r\n * JWT constants\r\n */\r\nexport const JwtConstants = {\r\n ALGORITHM: \"alg\",\r\n RSA_256: \"RS256\",\r\n X5T: \"x5t\", \r\n X5C: \"x5c\",\r\n AUDIENCE: \"aud\",\r\n EXPIRATION_TIME: \"exp\",\r\n ISSUER: \"iss\",\r\n SUBJECT: \"sub\",\r\n NOT_BEFORE: \"nbf\",\r\n JWT_ID: \"jti\",\r\n};\r\n","/*\r\n * Copyright (c) Microsoft Corporation. All rights reserved.\r\n * Licensed under the MIT License.\r\n */\r\n\r\nimport {\r\n INetworkModule,\r\n NetworkRequestOptions,\r\n NetworkResponse,\r\n} from \"@azure/msal-common\";\r\nimport { HttpMethod } from \"../utils/Constants\";\r\nimport axios, { AxiosRequestConfig } from \"axios\";\r\n\r\n/**\r\n * This class implements the API for network requests.\r\n */\r\nexport class HttpClient implements INetworkModule {\r\n\r\n /**\r\n * Http Get request\r\n * @param url\r\n * @param options\r\n */\r\n async sendGetRequestAsync<T>(\r\n url: string,\r\n options?: NetworkRequestOptions\r\n ): Promise<NetworkResponse<T>> {\r\n const request: AxiosRequestConfig = {\r\n method: HttpMethod.GET,\r\n url: url,\r\n headers: options && options.headers,\r\n validateStatus: () => true\r\n };\r\n\r\n const response = await axios(request);\r\n return {\r\n headers: response.headers,\r\n body: response.data as T,\r\n status: response.status,\r\n };\r\n }\r\n\r\n /**\r\n * Http Post request\r\n * @param url\r\n * @param options\r\n */\r\n async sendPostRequestAsync<T>(\r\n url: string,\r\n options?: NetworkRequestOptions\r\n ): Promise<NetworkResponse<T>> {\r\n const request: AxiosRequestConfig = {\r\n method: HttpMethod.POST,\r\n url: url,\r\n data: (options && options.body) || \"\",\r\n headers: options && options.headers,\r\n validateStatus: () => true\r\n };\r\n\r\n const response = await axios(request);\r\n return {\r\n headers: response.headers,\r\n body: response.data as T,\r\n status: response.status,\r\n };\r\n }\r\n}\r\n","/*\r\n * Copyright (c) Microsoft Corporation. All rights reserved.\r\n * Licensed under the MIT License.\r\n */\r\n\r\nimport { INetworkModule } from \"@azure/msal-common\";\r\nimport { HttpClient } from \"../network/HttpClient\";\r\n\r\nexport class NetworkUtils {\r\n /**\r\n * Returns best compatible network client object.\r\n */\r\n static getNetworkClient(): INetworkModule {\r\n return new HttpClient();\r\n }\r\n}\r\n","/*\r\n * Copyright (c) Microsoft Corporation. All rights reserved.\r\n * Licensed under the MIT License.\r\n */\r\n\r\nimport {\r\n LoggerOptions,\r\n INetworkModule,\r\n LogLevel,\r\n ProtocolMode,\r\n ICachePlugin, Constants\r\n} from \"@azure/msal-common\";\r\nimport { NetworkUtils } from \"../utils/NetworkUtils\";\r\n\r\n/**\r\n * - clientId - Client id of the application.\r\n * - authority - Url of the authority. If no value is set, defaults to https://login.microsoftonline.com/common.\r\n * - knownAuthorities - Needed for Azure B2C and ADFS. All authorities that will be used in the client application. Only the host of the authority should be passed in.\r\n * - clientSecret - Secret string that the application uses when requesting a token. Only used in confidential client applications. Can be created in the Azure app registration portal.\r\n * - clientAssertion - Assertion string that the application uses when requesting a token. Only used in confidential client applications. Assertion should be of type urn:ietf:params:oauth:client-assertion-type:jwt-bearer.\r\n * - clientCertificate - Certificate that the application uses when requesting a token. Only used in confidential client applications. Requires hex encoded X.509 SHA-1 thumbprint of the certificiate, and the PEM encoded private key (string should contain -----BEGIN PRIVATE KEY----- ... -----END PRIVATE KEY----- )\r\n * - protocolMode - Enum that represents the protocol that msal follows. Used for configuring proper endpoints.\r\n * @public\r\n */\r\nexport type NodeAuthOptions = {\r\n clientId: string;\r\n authority?: string;\r\n clientSecret?: string;\r\n clientAssertion?:string;\r\n clientCertificate?: {\r\n thumbprint: string,\r\n privateKey: string,\r\n x5c?: string\r\n };\r\n knownAuthorities?: Array<string>;\r\n cloudDiscoveryMetadata?: string;\r\n authorityMetadata?: string,\r\n clientCapabilities?: [];\r\n protocolMode?: ProtocolMode;\r\n};\r\n\r\n/**\r\n * Use this to configure the below cache configuration options:\r\n *\r\n * - cachePlugin - Plugin for reading and writing token cache to disk.\r\n * @public\r\n */\r\nexport type CacheOptions = {\r\n cachePlugin?: ICachePlugin;\r\n};\r\n\r\n/**\r\n * Type for configuring logger and http client options\r\n *\r\n * - logger - Used to initialize the Logger object; TODO: Expand on logger details or link to the documentation on logger\r\n * - networkClient - Http client used for all http get and post calls. Defaults to using MSAL's default http client.\r\n * @public\r\n */\r\nexport type NodeSystemOptions = {\r\n loggerOptions?: LoggerOptions;\r\n networkClient?: INetworkModule;\r\n};\r\n\r\n/**\r\n * Use the configuration object to configure MSAL and initialize the client application object\r\n *\r\n * - auth: this is where you configure auth elements like clientID, authority used for authenticating against the Microsoft Identity Platform\r\n * - cache: this is where you configure cache location\r\n * - system: this is where you can configure the network client, logger\r\n * @public\r\n */\r\nexport type Configuration = {\r\n auth: NodeAuthOptions;\r\n cache?: CacheOptions;\r\n system?: NodeSystemOptions;\r\n};\r\n\r\nconst DEFAULT_AUTH_OPTIONS: NodeAuthOptions = {\r\n clientId: \"\",\r\n authority: Constants.DEFAULT_AUTHORITY,\r\n clientSecret: \"\",\r\n clientAssertion: \"\",\r\n clientCertificate: {\r\n thumbprint: \"\",\r\n privateKey: \"\",\r\n x5c: \"\"\r\n },\r\n knownAuthorities: [],\r\n cloudDiscoveryMetadata: \"\",\r\n authorityMetadata: \"\",\r\n clientCapabilities: [],\r\n protocolMode: ProtocolMode.AAD\r\n};\r\n\r\nconst DEFAULT_CACHE_OPTIONS: CacheOptions = {};\r\n\r\nconst DEFAULT_LOGGER_OPTIONS: LoggerOptions = {\r\n loggerCallback: (): void => {\r\n // allow users to not set logger call back\r\n },\r\n piiLoggingEnabled: false,\r\n logLevel: LogLevel.Info,\r\n};\r\n\r\nconst DEFAULT_SYSTEM_OPTIONS: NodeSystemOptions = {\r\n loggerOptions: DEFAULT_LOGGER_OPTIONS,\r\n networkClient: NetworkUtils.getNetworkClient(),\r\n};\r\n\r\n/**\r\n * Sets the default options when not explicitly configured from app developer\r\n *\r\n * @param auth - Authentication options\r\n * @param cache - Cache options\r\n * @param system - System options\r\n *\r\n * @returns Configuration\r\n * @public\r\n */\r\nexport function buildAppConfiguration({\r\n auth,\r\n cache,\r\n system,\r\n}: Configuration): Configuration {\r\n return {\r\n auth: { ...DEFAULT_AUTH_OPTIONS, ...auth },\r\n cache: { ...DEFAULT_CACHE_OPTIONS, ...cache },\r\n system: { ...DEFAULT_SYSTEM_OPTIONS, ...system },\r\n };\r\n}\r\n","/*\r\n * Copyright (c) Microsoft Corporation. All rights reserved.\r\n * Licensed under the MIT License.\r\n */\r\n\r\nimport { v4 as uuidv4 } from \"uuid\";\r\n\r\nexport class GuidGenerator {\r\n /**\r\n *\r\n * RFC4122: The version 4 UUID is meant for generating UUIDs from truly-random or pseudo-random numbers.\r\n * uuidv4 generates guids from cryprtographically-string random\r\n */\r\n static generateGuid(): string {\r\n return uuidv4();\r\n }\r\n\r\n /**\r\n * verifies if a string is GUID\r\n * @param guid\r\n */\r\n static isGuid(guid: string) {\r\n const regexGuid = /^[0-9a-f]{8}-[0-9a-f]{4}-[1-5][0-9a-f]{3}-[89ab][0-9a-f]{3}-[0-9a-f]{12}$/i;\r\n return regexGuid.test(guid);\r\n }\r\n}\r\n","/*\r\n * Copyright (c) Microsoft Corporation. All rights reserved.\r\n * Licensed under the MIT License.\r\n */\r\n\r\nexport class EncodingUtils {\r\n /**\r\n * 'utf8': Multibyte encoded Unicode characters. Many web pages and other document formats use UTF-8.\r\n * 'base64': Base64 encoding.\r\n *\r\n * @param str text\r\n */\r\n static base64Encode(str: string, encoding?: BufferEncoding): string {\r\n return Buffer.from(str, encoding).toString(\"base64\");\r\n }\r\n\r\n /**\r\n * encode a URL\r\n * @param str\r\n */\r\n static base64EncodeUrl(str: string, encoding?: BufferEncoding): string {\r\n return EncodingUtils.base64Encode(str, encoding)\r\n .replace(/=/g, \"\")\r\n .replace(/\\+/g, \"-\")\r\n .replace(/\\//g, \"_\");\r\n }\r\n\r\n /**\r\n * 'utf8': Multibyte encoded Unicode characters. Many web pages and other document formats use UTF-8.\r\n * 'base64': Base64 encoding.\r\n *\r\n * @param base64Str Base64 encoded text\r\n */\r\n static base64Decode(base64Str: string): string {\r\n return Buffer.from(base64Str, \"base64\").toString(\"utf8\");\r\n }\r\n\r\n /**\r\n * @param base64Str Base64 encoded Url\r\n */\r\n static base64DecodeUrl(base64Str: string): string {\r\n let str = base64Str.replace(/-/g, \"+\").replace(/_/g, \"/\");\r\n while (str.length % 4) {\r\n str += \"=\";\r\n }\r\n return EncodingUtils.base64Decode(str);\r\n }\r\n}\r\n","/*\r\n * Copyright (c) Microsoft Corporation. All rights reserved.\r\n * Licensed under the MIT License.\r\n */\r\n\r\nimport { PkceCodes } from \"@azure/msal-common\";\r\nimport { CharSet, Hash, RANDOM_OCTET_SIZE } from \"../utils/Constants\";\r\nimport { EncodingUtils } from \"../utils/EncodingUtils\";\r\nimport crypto from \"crypto\";\r\n\r\n/**\r\n * https://tools.ietf.org/html/rfc7636#page-8\r\n */\r\nexport class PkceGenerator {\r\n /**\r\n * generates the codeVerfier and the challenge from the codeVerfier\r\n * reference: https://tools.ietf.org/html/rfc7636#section-4.1 and https://tools.ietf.org/html/rfc7636#section-4.2\r\n */\r\n async generatePkceCodes(): Promise<PkceCodes> {\r\n const verifier = this.generateCodeVerifier();\r\n const challenge = this.generateCodeChallengeFromVerifier(verifier);\r\n return { verifier, challenge };\r\n }\r\n\r\n /**\r\n * generates the codeVerfier; reference: https://tools.ietf.org/html/rfc7636#section-4.1\r\n */\r\n private generateCodeVerifier(): string {\r\n const buffer: Uint8Array = crypto.randomBytes(RANDOM_OCTET_SIZE);\r\n const verifier: string = this.bufferToCVString(buffer);\r\n return EncodingUtils.base64EncodeUrl(verifier);\r\n }\r\n\r\n /**\r\n * generate the challenge from the codeVerfier; reference: https://tools.ietf.org/html/rfc7636#section-4.2\r\n * @param codeVerifier\r\n */\r\n private generateCodeChallengeFromVerifier(codeVerifier: string): string {\r\n return EncodingUtils.base64EncodeUrl(\r\n this.sha256(codeVerifier).toString(\"base64\"), \r\n \"base64\"\r\n );\r\n }\r\n\r\n /**\r\n * generate 'SHA256' hash\r\n * @param buffer\r\n */\r\n private sha256(buffer: string): Buffer {\r\n return crypto\r\n .createHash(Hash.SHA256)\r\n .update(buffer)\r\n .digest();\r\n }\r\n\r\n /**\r\n * Accepted characters; reference: https://tools.ietf.org/html/rfc7636#section-4.1\r\n * @param buffer\r\n */\r\n private bufferToCVString(buffer: Uint8Array): string {\r\n const charArr = [];\r\n for (let i = 0; i < buffer.byteLength; i += 1) {\r\n const index = buffer[i] % CharSet.CV_CHARSET.length;\r\n charArr.push(CharSet.CV_CHARSET[index]);\r\n }\r\n return charArr.join(\"\");\r\n }\r\n}\r\n","/*\r\n * Copyright (c) Microsoft Corporation. All rights reserved.\r\n * Licensed under the MIT License.\r\n */\r\n\r\nimport { ICrypto, PkceCodes } from \"@azure/msal-common\";\r\nimport { GuidGenerator } from \"./GuidGenerator\";\r\nimport { EncodingUtils } from \"../utils/EncodingUtils\";\r\nimport { PkceGenerator } from \"./PkceGenerator\";\r\n\r\n/**\r\n * This class implements MSAL node's crypto interface, which allows it to perform base64 encoding and decoding, generating cryptographically random GUIDs and\r\n * implementing Proof Key for Code Exchange specs for the OAuth Authorization Code Flow using PKCE (rfc here: https://tools.ietf.org/html/rfc7636).\r\n * @public\r\n */\r\nexport class CryptoProvider implements ICrypto {\r\n private pkceGenerator: PkceGenerator;\r\n\r\n constructor() {\r\n // Browser crypto needs to be validated first before any other classes can be set.\r\n this.pkceGenerator = new PkceGenerator();\r\n }\r\n\r\n /**\r\n * Creates a new random GUID - used to populate state and nonce.\r\n * @returns string (GUID)\r\n */\r\n createNewGuid(): string {\r\n return GuidGenerator.generateGuid();\r\n }\r\n\r\n /**\r\n * Encodes input string to base64.\r\n * @param input - string to be encoded\r\n */\r\n base64Encode(input: string): string {\r\n return EncodingUtils.base64Encode(input);\r\n }\r\n\r\n /**\r\n * Decodes input string from base64.\r\n * @param input - string to be decoded\r\n */\r\n base64Decode(input: string): string {\r\n return EncodingUtils.base64Decode(input);\r\n }\r\n\r\n /**\r\n * Generates PKCE codes used in Authorization Code Flow.\r\n */\r\n generatePkceCodes(): Promise<PkceCodes> {\r\n return this.pkceGenerator.generatePkceCodes();\r\n }\r\n\r\n /**\r\n * Generates a keypair, stores it and returns a thumbprint - not yet implemented for node\r\n */\r\n getPublicKeyThumbprint(): Promise<string> {\r\n throw new Error(\"Method not implemented.\");\r\n }\r\n\r\n /**\r\n * Signs the given object as a jwt payload with private key retrieved by given kid - currently not implemented for node\r\n */\r\n signJwt(): Promise<string> {\r\n throw new Error(\"Method not implemented.\");\r\n }\r\n}\r\n","/*\r\n * Copyright (c) Microsoft Corporation. All rights reserved.\r\n * Licensed under the MIT License.\r\n */\r\n\r\nimport { StringUtils, AccountCache, IdTokenCache, AccessTokenCache, RefreshTokenCache, AppMetadataCache, AccountEntity, IdTokenEntity, AccessTokenEntity, RefreshTokenEntity, AppMetadataEntity, CacheManager } from \"@azure/msal-common\";\r\nimport { JsonCache, InMemoryCache, SerializedAccountEntity, SerializedIdTokenEntity, SerializedAccessTokenEntity, SerializedRefreshTokenEntity, SerializedAppMetadataEntity } from \"./SerializerTypes\";\r\n\r\n/**\r\n * This class deserializes cache entities read from the file into in memory object types defined internally\r\n */\r\nexport class Deserializer {\r\n /**\r\n * Parse the JSON blob in memory and deserialize the content\r\n * @param cachedJson\r\n */\r\n static deserializeJSONBlob(jsonFile: string): JsonCache {\r\n const deserializedCache = StringUtils.isEmpty(jsonFile)\r\n ? {}\r\n : JSON.parse(jsonFile);\r\n return deserializedCache;\r\n }\r\n\r\n /**\r\n * Deserializes accounts to AccountEntity objects\r\n * @param accounts\r\n */\r\n static deserializeAccounts(accounts: Record<string, SerializedAccountEntity>): AccountCache {\r\n const accountObjects: AccountCache = {};\r\n if (accounts) {\r\n Object.keys(accounts).map(function (key) {\r\n const serializedAcc = accounts[key];\r\n const mappedAcc = {\r\n homeAccountId: serializedAcc.home_account_id,\r\n environment: serializedAcc.environment,\r\n realm: serializedAcc.realm,\r\n localAccountId: serializedAcc.local_account_id,\r\n username: serializedAcc.username,\r\n authorityType: serializedAcc.authority_type,\r\n name: serializedAcc.name,\r\n clientInfo: serializedAcc.client_info,\r\n lastModificationTime: serializedAcc.last_modification_time,\r\n lastModificationApp: serializedAcc.last_modification_app,\r\n };\r\n const account: AccountEntity = new AccountEntity();\r\n CacheManager.toObject(account, mappedAcc);\r\n accountObjects[key] = account;\r\n });\r\n }\r\n\r\n return accountObjects;\r\n }\r\n\r\n /**\r\n * Deserializes id tokens to IdTokenEntity objects\r\n * @param idTokens\r\n */\r\n static deserializeIdTokens(idTokens: Record<string, SerializedIdTokenEntity>): IdTokenCache {\r\n const idObjects: IdTokenCache = {};\r\n if (idTokens) {\r\n Object.keys(idTokens).map(function (key) {\r\n const serializedIdT = idTokens[key];\r\n const mappedIdT = {\r\n homeAccountId: serializedIdT.home_account_id,\r\n environment: serializedIdT.environment,\r\n credentialType: serializedIdT.credential_type,\r\n clientId: serializedIdT.client_id,\r\n secret: serializedIdT.secret,\r\n realm: serializedIdT.realm,\r\n };\r\n const idToken: IdTokenEntity = new IdTokenEntity();\r\n CacheManager.toObject(idToken, mappedIdT);\r\n idObjects[key] = idToken;\r\n });\r\n }\r\n return idObjects;\r\n }\r\n\r\n /**\r\n * Deserializes access tokens to AccessTokenEntity objects\r\n * @param accessTokens\r\n */\r\n static deserializeAccessTokens(accessTokens: Record<string, SerializedAccessTokenEntity>): AccessTokenCache {\r\n const atObjects: AccessTokenCache = {};\r\n if (accessTokens) {\r\n Object.keys(accessTokens).map(function (key) {\r\n const serializedAT = accessTokens[key];\r\n const mappedAT = {\r\n homeAccountId: serializedAT.home_account_id,\r\n environment: serializedAT.environment,\r\n credentialType: serializedAT.credential_type,\r\n clientId: serializedAT.client_id,\r\n secret: serializedAT.secret,\r\n realm: serializedAT.realm,\r\n target: serializedAT.target,\r\n cachedAt: serializedAT.cached_at,\r\n expiresOn: serializedAT.expires_on,\r\n extendedExpiresOn: serializedAT.extended_expires_on,\r\n refreshOn: serializedAT.refresh_on,\r\n keyId: serializedAT.key_id,\r\n tokenType: serializedAT.token_type,\r\n };\r\n const accessToken: AccessTokenEntity = new AccessTokenEntity();\r\n CacheManager.toObject(accessToken, mappedAT);\r\n atObjects[key] = accessToken;\r\n });\r\n }\r\n\r\n return atObjects;\r\n }\r\n\r\n /**\r\n * Deserializes refresh tokens to RefreshTokenEntity objects\r\n * @param refreshTokens\r\n */\r\n static deserializeRefreshTokens(refreshTokens: Record<string, SerializedRefreshTokenEntity>): RefreshTokenCache {\r\n const rtObjects: RefreshTokenCache = {};\r\n if (refreshTokens) {\r\n Object.keys(refreshTokens).map(function (key) {\r\n const serializedRT = refreshTokens[key];\r\n const mappedRT = {\r\n homeAccountId: serializedRT.home_account_id,\r\n environment: serializedRT.environment,\r\n credentialType: serializedRT.credential_type,\r\n clientId: serializedRT.client_id,\r\n secret: serializedRT.secret,\r\n familyId: serializedRT.family_id,\r\n target: serializedRT.target,\r\n realm: serializedRT.realm,\r\n };\r\n const refreshToken: RefreshTokenEntity = new RefreshTokenEntity();\r\n CacheManager.toObject(refreshToken, mappedRT);\r\n rtObjects[key] = refreshToken;\r\n });\r\n }\r\n\r\n return rtObjects;\r\n }\r\n\r\n /**\r\n * Deserializes appMetadata to AppMetaData objects\r\n * @param appMetadata\r\n */\r\n static deserializeAppMetadata(appMetadata: Record<string, SerializedAppMetadataEntity>): AppMetadataCache {\r\n const appMetadataObjects: AppMetadataCache = {};\r\n if (appMetadata) {\r\n Object.keys(appMetadata).map(function (key) {\r\n const serializedAmdt = appMetadata[key];\r\n const mappedAmd = {\r\n clientId: serializedAmdt.client_id,\r\n environment: serializedAmdt.environment,\r\n familyId: serializedAmdt.family_id,\r\n };\r\n const amd: AppMetadataEntity = new AppMetadataEntity();\r\n CacheManager.toObject(amd, mappedAmd);\r\n appMetadataObjects[key] = amd;\r\n });\r\n }\r\n\r\n return appMetadataObjects;\r\n }\r\n\r\n /**\r\n * Deserialize an inMemory Cache\r\n * @param jsonCache\r\n */\r\n static deserializeAllCache(jsonCache: JsonCache): InMemoryCache {\r\n return {\r\n accounts: jsonCache.Account\r\n ? this.deserializeAccounts(jsonCache.Account)\r\n : {},\r\n idTokens: jsonCache.IdToken\r\n ? this.deserializeIdTokens(jsonCache.IdToken)\r\n : {},\r\n accessTokens: jsonCache.AccessToken\r\n ? this.deserializeAccessTokens(jsonCache.AccessToken)\r\n : {},\r\n refreshTokens: jsonCache.RefreshToken\r\n ? this.deserializeRefreshTokens(jsonCache.RefreshToken)\r\n : {},\r\n appMetadata: jsonCache.AppMetadata\r\n ? this.deserializeAppMetadata(jsonCache.AppMetadata)\r\n : {},\r\n };\r\n }\r\n}\r\n","/*\r\n * Copyright (c) Microsoft Corporation. All rights reserved.\r\n * Licensed under the MIT License.\r\n */\r\n\r\nimport { AccountCache, IdTokenCache, AccessTokenCache, RefreshTokenCache, AppMetadataCache } from \"@azure/msal-common\";\r\nimport { InMemoryCache, JsonCache, SerializedAccountEntity, SerializedIdTokenEntity, SerializedAccessTokenEntity, SerializedRefreshTokenEntity, SerializedAppMetadataEntity } from \"./SerializerTypes\";\r\n\r\nexport class Serializer {\r\n /**\r\n * serialize the JSON blob\r\n * @param data\r\n */\r\n static serializeJSONBlob(data: JsonCache): string {\r\n return JSON.stringify(data);\r\n }\r\n\r\n /**\r\n * Serialize Accounts\r\n * @param accCache\r\n */\r\n static serializeAccounts(accCache: AccountCache): Record<string, SerializedAccountEntity> {\r\n const accounts: Record<string, SerializedAccountEntity> = {};\r\n Object.keys(accCache).map(function (key) {\r\n const accountEntity = accCache[key];\r\n accounts[key] = {\r\n home_account_id: accountEntity.homeAccountId,\r\n environment: accountEntity.environment,\r\n realm: accountEntity.realm,\r\n local_account_id: accountEntity.localAccountId,\r\n username: accountEntity.username,\r\n authority_type: accountEntity.authorityType,\r\n name: accountEntity.name,\r\n client_info: accountEntity.clientInfo,\r\n last_modification_time: accountEntity.lastModificationTime,\r\n last_modification_app: accountEntity.lastModificationApp,\r\n };\r\n });\r\n\r\n return accounts;\r\n }\r\n\r\n /**\r\n * Serialize IdTokens\r\n * @param idTCache\r\n */\r\n static serializeIdTokens(idTCache: IdTokenCache): Record<string, SerializedIdTokenEntity> {\r\n const idTokens: Record<string, SerializedIdTokenEntity> = {};\r\n Object.keys(idTCache).map(function (key) {\r\n const idTEntity = idTCache[key];\r\n idTokens[key] = {\r\n home_account_id: idTEntity.homeAccountId,\r\n environment: idTEntity.environment,\r\n credential_type: idTEntity.credentialType,\r\n client_id: idTEntity.clientId,\r\n secret: idTEntity.secret,\r\n realm: idTEntity.realm,\r\n };\r\n });\r\n\r\n return idTokens;\r\n }\r\n\r\n /**\r\n * Serializes AccessTokens\r\n * @param atCache\r\n */\r\n static serializeAccessTokens(atCache: AccessTokenCache): Record<string, SerializedAccessTokenEntity> {\r\n const accessTokens: Record<string, SerializedAccessTokenEntity> = {};\r\n Object.keys(atCache).map(function (key) {\r\n const atEntity = atCache[key];\r\n accessTokens[key] = {\r\n home_account_id: atEntity.homeAccountId,\r\n environment: atEntity.environment,\r\n credential_type: atEntity.credentialType,\r\n client_id: atEntity.clientId,\r\n secret: atEntity.secret,\r\n realm: atEntity.realm,\r\n target: atEntity.target,\r\n cached_at: atEntity.cachedAt,\r\n expires_on: atEntity.expiresOn,\r\n extended_expires_on: atEntity.extendedExpiresOn,\r\n refresh_on: atEntity.refreshOn,\r\n key_id: atEntity.keyId,\r\n token_type: atEntity.tokenType,\r\n };\r\n });\r\n\r\n return accessTokens;\r\n }\r\n\r\n /**\r\n * Serialize refreshTokens\r\n * @param rtCache\r\n */\r\n static serializeRefreshTokens(rtCache: RefreshTokenCache): Record<string, SerializedRefreshTokenEntity> {\r\n const refreshTokens: Record<string, SerializedRefreshTokenEntity> = {};\r\n Object.keys(rtCache).map(function (key) {\r\n const rtEntity = rtCache[key];\r\n refreshTokens[key] = {\r\n home_account_id: rtEntity.homeAccountId,\r\n environment: rtEntity.environment,\r\n credential_type: rtEntity.credentialType,\r\n client_id: rtEntity.clientId,\r\n secret: rtEntity.secret,\r\n family_id: rtEntity.familyId,\r\n target: rtEntity.target,\r\n realm: rtEntity.realm\r\n };\r\n });\r\n\r\n return refreshTokens;\r\n }\r\n\r\n /**\r\n * Serialize amdtCache\r\n * @param amdtCache\r\n */\r\n static serializeAppMetadata(amdtCache: AppMetadataCache): Record<string, SerializedAppMetadataEntity> {\r\n const appMetadata: Record<string, SerializedAppMetadataEntity> = {};\r\n Object.keys(amdtCache).map(function (key) {\r\n const amdtEntity = amdtCache[key];\r\n appMetadata[key] = {\r\n client_id: amdtEntity.clientId,\r\n environment: amdtEntity.environment,\r\n family_id: amdtEntity.familyId,\r\n };\r\n });\r\n\r\n return appMetadata;\r\n }\r\n\r\n /**\r\n * Serialize the cache\r\n * @param jsonContent\r\n */\r\n static serializeAllCache(inMemCache: InMemoryCache): JsonCache {\r\n return {\r\n Account: this.serializeAccounts(inMemCache.accounts),\r\n IdToken: this.serializeIdTokens(inMemCache.idTokens),\r\n AccessToken: this.serializeAccessTokens(inMemCache.accessTokens),\r\n RefreshToken: this.serializeRefreshTokens(inMemCache.refreshTokens),\r\n AppMetadata: this.serializeAppMetadata(inMemCache.appMetadata),\r\n };\r\n }\r\n}\r\n","/*\r\n * Copyright (c) Microsoft Corporation. All rights reserved.\r\n * Licensed under the MIT License.\r\n */\r\n\r\nimport {\r\n AccountEntity,\r\n IdTokenEntity,\r\n AccessTokenEntity,\r\n RefreshTokenEntity,\r\n AppMetadataEntity,\r\n ServerTelemetryEntity,\r\n ThrottlingEntity,\r\n CacheManager,\r\n Logger,\r\n ValidCacheType,\r\n ICrypto,\r\n AuthorityMetadataEntity\r\n} from \"@azure/msal-common\";\r\nimport { Deserializer } from \"./serializer/Deserializer\";\r\nimport { Serializer } from \"./serializer/Serializer\";\r\nimport { InMemoryCache, JsonCache, CacheKVStore } from \"./serializer/SerializerTypes\";\r\n\r\n/**\r\n * This class implements Storage for node, reading cache from user specified storage location or an extension library\r\n * @public\r\n */\r\nexport class NodeStorage extends CacheManager {\r\n // Cache configuration, either set by user or default values.\r\n private logger: Logger;\r\n private cache: CacheKVStore = {};\r\n private changeEmitters: Array<Function> = [];\r\n\r\n constructor(logger: Logger, clientId: string, cryptoImpl: ICrypto) {\r\n super(clientId, cryptoImpl);\r\n this.logger = logger;\r\n }\r\n\r\n /**\r\n * Queue up callbacks\r\n * @param func - a callback function for cache change indication\r\n */\r\n registerChangeEmitter(func: () => void): void {\r\n this.changeEmitters.push(func);\r\n }\r\n\r\n /**\r\n * Invoke the callback when cache changes\r\n */\r\n emitChange(): void {\r\n this.changeEmitters.forEach(func => func.call(null));\r\n }\r\n\r\n /**\r\n * Converts cacheKVStore to InMemoryCache\r\n * @param cache - key value store\r\n */\r\n cacheToInMemoryCache(cache: CacheKVStore): InMemoryCache {\r\n\r\n const inMemoryCache: InMemoryCache = {\r\n accounts: {},\r\n idTokens: {},\r\n accessTokens: {},\r\n refreshTokens: {},\r\n appMetadata: {},\r\n };\r\n\r\n for (const key in cache) {\r\n if (cache[key as string] instanceof AccountEntity) {\r\n inMemoryCache.accounts[key] = cache[key] as AccountEntity;\r\n } else if (cache[key] instanceof IdTokenEntity) {\r\n inMemoryCache.idTokens[key] = cache[key] as IdTokenEntity;\r\n } else if (cache[key] instanceof AccessTokenEntity) {\r\n inMemoryCache.accessTokens[key] = cache[key] as AccessTokenEntity;\r\n } else if (cache[key] instanceof RefreshTokenEntity) {\r\n inMemoryCache.refreshTokens[key] = cache[key] as RefreshTokenEntity;\r\n } else if (cache[key] instanceof AppMetadataEntity) {\r\n inMemoryCache.appMetadata[key] = cache[key] as AppMetadataEntity;\r\n } else {\r\n continue;\r\n }\r\n }\r\n\r\n return inMemoryCache;\r\n }\r\n\r\n /**\r\n * converts inMemoryCache to CacheKVStore\r\n * @param inMemoryCache - kvstore map for inmemory\r\n */\r\n inMemoryCacheToCache(inMemoryCache: InMemoryCache): CacheKVStore {\r\n // convert in memory cache to a flat Key-Value map\r\n let cache = this.getCache();\r\n\r\n cache = {\r\n ...inMemoryCache.accounts,\r\n ...inMemoryCache.idTokens,\r\n ...inMemoryCache.accessTokens,\r\n ...inMemoryCache.refreshTokens,\r\n ...inMemoryCache.appMetadata\r\n };\r\n return cache;\r\n }\r\n\r\n /**\r\n * gets the current in memory cache for the client\r\n */\r\n getInMemoryCache(): InMemoryCache {\r\n this.logger.verbose(\"Getting in-memory cache\");\r\n\r\n // convert the cache key value store to inMemoryCache\r\n const inMemoryCache = this.cacheToInMemoryCache(this.getCache());\r\n return inMemoryCache;\r\n }\r\n\r\n /**\r\n * sets the current in memory cache for the client\r\n * @param inMemoryCache - key value map in memory\r\n */\r\n setInMemoryCache(inMemoryCache: InMemoryCache): void{\r\n this.logger.verbose(\"Setting in-memory cache\");\r\n\r\n // convert and append the inMemoryCache to cacheKVStore\r\n const cache = this.inMemoryCacheToCache(inMemoryCache);\r\n this.setCache(cache);\r\n\r\n this.emitChange();\r\n }\r\n\r\n /**\r\n * get the current cache key-value store\r\n */\r\n getCache(): CacheKVStore {\r\n this.logger.verbose(\"Getting cache key-value store\");\r\n return this.cache;\r\n }\r\n\r\n /**\r\n * sets the current cache (key value store)\r\n * @param cacheMap - key value map\r\n */\r\n setCache(cache: CacheKVStore): void {\r\n this.logger.verbose(\"Setting cache key value store\");\r\n this.cache = cache;\r\n\r\n // mark change in cache\r\n this.emitChange();\r\n }\r\n\r\n /**\r\n * Gets cache item with given key.\r\n * @param key - lookup key for the cache entry\r\n */\r\n getItem(key: string): ValidCacheType {\r\n this.logger.verbosePii(`Item key: ${key}`);\r\n\r\n // read cache\r\n const cache = this.getCache();\r\n return cache[key];\r\n }\r\n\r\n /**\r\n * Gets cache item with given key-value\r\n * @param key - lookup key for the cache entry\r\n * @param value - value of the cache entry\r\n */\r\n setItem(key: string, value: ValidCacheType): void {\r\n this.logger.verbosePii(`Item key: ${key}`);\r\n\r\n // read cache\r\n const cache = this.getCache();\r\n cache[key] = value;\r\n\r\n // write to cache\r\n this.setCache(cache);\r\n }\r\n\r\n /**\r\n * fetch the account entity\r\n * @param accountKey - lookup key to fetch cache type AccountEntity\r\n */\r\n getAccount(accountKey: string): AccountEntity | null {\r\n const account = this.getItem(accountKey) as AccountEntity;\r\n if (AccountEntity.isAccountEntity(account)) {\r\n return account;\r\n }\r\n return null;\r\n }\r\n\r\n /**\r\n * set account entity\r\n * @param account - cache value to be set of type AccountEntity\r\n */\r\n setAccount(account: AccountEntity): void {\r\n const accountKey = account.generateAccountKey();\r\n this.setItem(accountKey, account);\r\n }\r\n\r\n /**\r\n * fetch the idToken credential\r\n * @param idTokenKey - lookup key to fetch cache type IdTokenEntity\r\n */\r\n getIdTokenCredential(idTokenKey: string): IdTokenEntity | null {\r\n const idToken = this.getItem(idTokenKey) as IdTokenEntity;\r\n if (IdTokenEntity.isIdTokenEntity(idToken)) {\r\n return idToken;\r\n }\r\n return null;\r\n }\r\n\r\n /**\r\n * set idToken credential\r\n * @param idToken - cache value to be set of type IdTokenEntity\r\n */\r\n setIdTokenCredential(idToken: IdTokenEntity): void {\r\n const idTokenKey = idToken.generateCredentialKey();\r\n this.setItem(idTokenKey, idToken);\r\n }\r\n\r\n /**\r\n * fetch the accessToken credential\r\n * @param accessTokenKey - lookup key to fetch cache type AccessTokenEntity\r\n */\r\n getAccessTokenCredential(accessTokenKey: string): AccessTokenEntity | null {\r\n const accessToken = this.getItem(accessTokenKey) as AccessTokenEntity;\r\n if (AccessTokenEntity.isAccessTokenEntity(accessToken)) {\r\n return accessToken;\r\n }\r\n return null;\r\n }\r\n\r\n /**\r\n * set accessToken credential\r\n * @param accessToken - cache value to be set of type AccessTokenEntity\r\n */\r\n setAccessTokenCredential(accessToken: AccessTokenEntity): void {\r\n const accessTokenKey = accessToken.generateCredentialKey();\r\n this.setItem(accessTokenKey, accessToken);\r\n }\r\n\r\n /**\r\n * fetch the refreshToken credential\r\n * @param refreshTokenKey - lookup key to fetch cache type RefreshTokenEntity\r\n */\r\n getRefreshTokenCredential(refreshTokenKey: string): RefreshTokenEntity | null {\r\n const refreshToken = this.getItem(refreshTokenKey) as RefreshTokenEntity;\r\n if (RefreshTokenEntity.isRefreshTokenEntity(refreshToken)) {\r\n return refreshToken as RefreshTokenEntity;\r\n }\r\n return null;\r\n }\r\n\r\n /**\r\n * set refreshToken credential\r\n * @param refreshToken - cache value to be set of type RefreshTokenEntity\r\n */\r\n setRefreshTokenCredential(refreshToken: RefreshTokenEntity): void {\r\n const refreshTokenKey = refreshToken.generateCredentialKey();\r\n this.setItem(refreshTokenKey, refreshToken);\r\n }\r\n\r\n /**\r\n * fetch appMetadata entity from the platform cache\r\n * @param appMetadataKey - lookup key to fetch cache type AppMetadataEntity\r\n */\r\n getAppMetadata(appMetadataKey: string): AppMetadataEntity | null {\r\n const appMetadata: AppMetadataEntity = this.getItem(appMetadataKey) as AppMetadataEntity;\r\n if (AppMetadataEntity.isAppMetadataEntity(appMetadataKey, appMetadata)) {\r\n return appMetadata;\r\n }\r\n return null;\r\n }\r\n\r\n /**\r\n * set appMetadata entity to the platform cache\r\n * @param appMetadata - cache value to be set of type AppMetadataEntity\r\n */\r\n setAppMetadata(appMetadata: AppMetadataEntity): void {\r\n const appMetadataKey = appMetadata.generateAppMetadataKey();\r\n this.setItem(appMetadataKey, appMetadata);\r\n }\r\n\r\n /**\r\n * fetch server telemetry entity from the platform cache\r\n * @param serverTelemetrykey - lookup key to fetch cache type ServerTelemetryEntity\r\n */\r\n getServerTelemetry(serverTelemetrykey: string): ServerTelemetryEntity | null {\r\n const serverTelemetryEntity: ServerTelemetryEntity = this.getItem(serverTelemetrykey) as ServerTelemetryEntity;\r\n if (serverTelemetryEntity && ServerTelemetryEntity.isServerTelemetryEntity(serverTelemetrykey, serverTelemetryEntity)) {\r\n return serverTelemetryEntity;\r\n }\r\n return null;\r\n }\r\n\r\n /**\r\n * set server telemetry entity to the platform cache\r\n * @param serverTelemetryKey - lookup key to fetch cache type ServerTelemetryEntity\r\n * @param serverTelemetry - cache value to be set of type ServerTelemetryEntity\r\n */\r\n setServerTelemetry(serverTelemetryKey: string, serverTelemetry: ServerTelemetryEntity): void {\r\n this.setItem(serverTelemetryKey, serverTelemetry);\r\n }\r\n\r\n /**\r\n * fetch authority metadata entity from the platform cache\r\n * @param key - lookup key to fetch cache type AuthorityMetadataEntity\r\n */\r\n getAuthorityMetadata(key: string): AuthorityMetadataEntity | null {\r\n const authorityMetadataEntity: AuthorityMetadataEntity = this.getItem(key) as AuthorityMetadataEntity;\r\n if (authorityMetadataEntity && AuthorityMetadataEntity.isAuthorityMetadataEntity(key, authorityMetadataEntity)) {\r\n return authorityMetadataEntity;\r\n }\r\n return null;\r\n }\r\n\r\n /**\r\n * Get all authority metadata keys\r\n */\r\n getAuthorityMetadataKeys(): Array<string> {\r\n return this.getKeys().filter((key) => {\r\n return this.isAuthorityMetadata(key);\r\n });\r\n }\r\n\r\n /**\r\n * set authority metadata entity to the platform cache\r\n * @param key - lookup key to fetch cache type AuthorityMetadataEntity\r\n * @param metadata - cache value to be set of type AuthorityMetadataEntity\r\n */\r\n setAuthorityMetadata(key: string, metadata: AuthorityMetadataEntity): void {\r\n this.setItem(key, metadata);\r\n }\r\n\r\n /**\r\n * fetch throttling entity from the platform cache\r\n * @param throttlingCacheKey - lookup key to fetch cache type ThrottlingEntity\r\n */\r\n getThrottlingCache(throttlingCacheKey: string): ThrottlingEntity | null {\r\n const throttlingCache: ThrottlingEntity = this.getItem(throttlingCacheKey) as ThrottlingEntity;\r\n if (throttlingCache && ThrottlingEntity.isThrottlingEntity(throttlingCacheKey, throttlingCache)) {\r\n return throttlingCache;\r\n }\r\n return null;\r\n }\r\n\r\n /**\r\n * set throttling entity to the platform cache\r\n * @param throttlingCacheKey - lookup key to fetch cache type ThrottlingEntity\r\n * @param throttlingCache - cache value to be set of type ThrottlingEntity\r\n */\r\n setThrottlingCache(throttlingCacheKey: string, throttlingCache: ThrottlingEntity): void {\r\n this.setItem(throttlingCacheKey, throttlingCache);\r\n }\r\n\r\n /**\r\n * Removes the cache item from memory with the given key.\r\n * @param key - lookup key to remove a cache entity\r\n * @param inMemory - key value map of the cache\r\n */\r\n removeItem(key: string): boolean {\r\n this.logger.verbosePii(`Item key: ${key}`);\r\n\r\n // read inMemoryCache\r\n let result: boolean = false;\r\n const cache = this.getCache();\r\n\r\n if (!!cache[key]) {\r\n delete cache[key];\r\n result = true;\r\n }\r\n\r\n // write to the cache after removal\r\n if (result) {\r\n this.setCache(cache);\r\n this.emitChange();\r\n }\r\n return result;\r\n }\r\n\r\n /**\r\n * Checks whether key is in cache.\r\n * @param key - look up key for a cache entity\r\n */\r\n containsKey(key: string): boolean {\r\n return this.getKeys().includes(key);\r\n }\r\n\r\n /**\r\n * Gets all keys in window.\r\n */\r\n getKeys(): string[] {\r\n this.logger.verbose(\"Retrieving all cache keys\");\r\n\r\n // read cache\r\n const cache = this.getCache();\r\n return [ ...Object.keys(cache)];\r\n }\r\n\r\n /**\r\n * Clears all cache entries created by MSAL (except tokens).\r\n */\r\n clear(): void {\r\n this.logger.verbose(\"Clearing cache entries created by MSAL\");\r\n\r\n // read inMemoryCache\r\n const cacheKeys = this.getKeys();\r\n\r\n // delete each element\r\n cacheKeys.forEach(key => {\r\n this.removeItem(key);\r\n });\r\n this.emitChange();\r\n }\r\n\r\n /**\r\n * Initialize in memory cache from an exisiting cache vault\r\n * @param cache - blob formatted cache (JSON)\r\n */\r\n static generateInMemoryCache(cache: string): InMemoryCache {\r\n return Deserializer.deserializeAllCache(\r\n Deserializer.deserializeJSONBlob(cache)\r\n );\r\n }\r\n\r\n /**\r\n * retrieves the final JSON\r\n * @param inMemoryCache - itemised cache read from the JSON\r\n */\r\n static generateJsonCache(inMemoryCache: InMemoryCache): JsonCache {\r\n return Serializer.serializeAllCache(inMemoryCache);\r\n }\r\n}\r\n","/*\r\n * Copyright (c) Microsoft Corporation. All rights reserved.\r\n * Licensed under the MIT License.\r\n */\r\n\r\nimport { NodeStorage } from \"./NodeStorage\";\r\nimport { StringUtils, AccountEntity, AccountInfo, Logger, ISerializableTokenCache, ICachePlugin, TokenCacheContext } from \"@azure/msal-common\";\r\nimport { InMemoryCache, JsonCache, SerializedAccountEntity, SerializedAccessTokenEntity, SerializedRefreshTokenEntity, SerializedIdTokenEntity, SerializedAppMetadataEntity, CacheKVStore } from \"./serializer/SerializerTypes\";\r\nimport { Deserializer } from \"./serializer/Deserializer\";\r\nimport { Serializer } from \"./serializer/Serializer\";\r\nimport { ITokenCache } from \"./ITokenCache\";\r\n\r\nconst defaultSerializedCache: JsonCache = {\r\n Account: {},\r\n IdToken: {},\r\n AccessToken: {},\r\n RefreshToken: {},\r\n AppMetadata: {},\r\n};\r\n\r\n/**\r\n * In-memory token cache manager\r\n * @public\r\n */\r\nexport class TokenCache implements ISerializableTokenCache, ITokenCache {\r\n\r\n private storage: NodeStorage;\r\n private cacheHasChanged: boolean;\r\n private cacheSnapshot: string;\r\n private readonly persistence: ICachePlugin;\r\n private logger: Logger;\r\n\r\n constructor(storage: NodeStorage, logger: Logger, cachePlugin?: ICachePlugin) {\r\n this.cacheHasChanged = false;\r\n this.storage = storage;\r\n this.storage.registerChangeEmitter(this.handleChangeEvent.bind(this));\r\n if (cachePlugin) {\r\n this.persistence = cachePlugin;\r\n }\r\n this.logger = logger;\r\n }\r\n\r\n /**\r\n * Set to true if cache state has changed since last time serialize or writeToPersistence was called\r\n */\r\n hasChanged(): boolean {\r\n return this.cacheHasChanged;\r\n }\r\n\r\n /**\r\n * Serializes in memory cache to JSON\r\n */\r\n serialize(): string {\r\n this.logger.verbose(\"Serializing in-memory cache\");\r\n let finalState = Serializer.serializeAllCache(\r\n this.storage.getInMemoryCache() as InMemoryCache\r\n );\r\n\r\n // if cacheSnapshot not null or empty, merge\r\n if (!StringUtils.isEmpty(this.cacheSnapshot)) {\r\n this.logger.verbose(\"Reading cache snapshot from disk\");\r\n finalState = this.mergeState(\r\n JSON.parse(this.cacheSnapshot),\r\n finalState\r\n );\r\n } else {\r\n this.logger.verbose(\"No cache snapshot to merge\");\r\n }\r\n this.cacheHasChanged = false;\r\n\r\n return JSON.stringify(finalState);\r\n }\r\n\r\n /**\r\n * Deserializes JSON to in-memory cache. JSON should be in MSAL cache schema format\r\n * @param cache - blob formatted cache\r\n */\r\n deserialize(cache: string): void {\r\n this.logger.verbose(\"Deserializing JSON to in-memory cache\");\r\n this.cacheSnapshot = cache;\r\n\r\n if (!StringUtils.isEmpty(this.cacheSnapshot)) {\r\n this.logger.verbose(\"Reading cache snapshot from disk\");\r\n const deserializedCache = Deserializer.deserializeAllCache(\r\n this.overlayDefaults(JSON.parse(this.cacheSnapshot))\r\n );\r\n this.storage.setInMemoryCache(deserializedCache);\r\n } else {\r\n this.logger.verbose(\"No cache snapshot to deserialize\");\r\n }\r\n }\r\n\r\n /**\r\n * Fetches the cache key-value map\r\n */\r\n getKVStore(): CacheKVStore {\r\n return this.storage.getCache();\r\n }\r\n\r\n /**\r\n * API that retrieves all accounts currently in cache to the user\r\n */\r\n async getAllAccounts(): Promise<AccountInfo[]> {\r\n\r\n this.logger.verbose(\"getAllAccounts called\");\r\n let cacheContext;\r\n try {\r\n if (this.persistence) {\r\n cacheContext = new TokenCacheContext(this, false);\r\n await this.persistence.beforeCacheAccess(cacheContext);\r\n }\r\n return this.storage.getAllAccounts();\r\n } finally {\r\n if (this.persistence && cacheContext) {\r\n await this.persistence.afterCacheAccess(cacheContext);\r\n }\r\n }\r\n }\r\n\r\n /**\r\n * Returns the signed in account matching homeAccountId.\r\n * (the account object is created at the time of successful login)\r\n * or null when no matching account is found\r\n * @param homeAccountId - unique identifier for an account (uid.utid)\r\n */\r\n async getAccountByHomeId(homeAccountId: string): Promise<AccountInfo | null> {\r\n const allAccounts = await this.getAllAccounts();\r\n if (!StringUtils.isEmpty(homeAccountId) && allAccounts && allAccounts.length) {\r\n return allAccounts.filter(accountObj => accountObj.homeAccountId === homeAccountId)[0] || null;\r\n } else {\r\n return null;\r\n }\r\n }\r\n\r\n /**\r\n * Returns the signed in account matching localAccountId.\r\n * (the account object is created at the time of successful login)\r\n * or null when no matching account is found\r\n * @param localAccountId - unique identifier of an account (sub/obj when homeAccountId cannot be populated)\r\n */\r\n async getAccountByLocalId(localAccountId: string): Promise<AccountInfo | null> {\r\n const allAccounts = await this.getAllAccounts();\r\n if (!StringUtils.isEmpty(localAccountId) && allAccounts && allAccounts.length) {\r\n return allAccounts.filter(accountObj => accountObj.localAccountId === localAccountId)[0] || null;\r\n } else {\r\n return null;\r\n }\r\n }\r\n\r\n /**\r\n * API to remove a specific account and the relevant data from cache\r\n * @param account - AccountInfo passed by the user\r\n */\r\n async removeAccount(account: AccountInfo): Promise<void> {\r\n this.logger.verbose(\"removeAccount called\");\r\n let cacheContext;\r\n try {\r\n if (this.persistence) {\r\n cacheContext = new TokenCacheContext(this, true);\r\n await this.persistence.beforeCacheAccess(cacheContext);\r\n }\r\n this.storage.removeAccount(AccountEntity.generateAccountCacheKey(account));\r\n } finally {\r\n if (this.persistence && cacheContext) {\r\n await this.persistence.afterCacheAccess(cacheContext);\r\n }\r\n }\r\n }\r\n\r\n /**\r\n * Called when the cache has changed state.\r\n */\r\n private handleChangeEvent() {\r\n this.cacheHasChanged = true;\r\n }\r\n\r\n /**\r\n * Merge in memory cache with the cache snapshot.\r\n * @param oldState - cache before changes\r\n * @param currentState - current cache state in the library\r\n */\r\n private mergeState(oldState: JsonCache, currentState: JsonCache): JsonCache {\r\n this.logger.verbose(\"Merging in-memory cache with cache snapshot\");\r\n const stateAfterRemoval = this.mergeRemovals(oldState, currentState);\r\n return this.mergeUpdates(stateAfterRemoval, currentState);\r\n }\r\n\r\n /**\r\n * Deep update of oldState based on newState values\r\n * @param oldState - cache before changes\r\n * @param newState - updated cache\r\n */\r\n private mergeUpdates(oldState: any, newState: any): JsonCache {\r\n Object.keys(newState).forEach((newKey: string) => {\r\n const newValue = newState[newKey];\r\n\r\n // if oldState does not contain value but newValue does, add it\r\n if (!oldState.hasOwnProperty(newKey)) {\r\n if (newValue !== null) {\r\n oldState[newKey] = newValue;\r\n }\r\n } else {\r\n // both oldState and newState contain the key, do deep update\r\n const newValueNotNull = newValue !== null;\r\n const newValueIsObject = typeof newValue === \"object\";\r\n const newValueIsNotArray = !Array.isArray(newValue);\r\n const oldStateNotUndefinedOrNull = typeof oldState[newKey] !== \"undefined\" && oldState[newKey] !== null;\r\n\r\n if (newValueNotNull && newValueIsObject && newValueIsNotArray && oldStateNotUndefinedOrNull) {\r\n this.mergeUpdates(oldState[newKey], newValue);\r\n } else {\r\n oldState[newKey] = newValue;\r\n }\r\n }\r\n });\r\n\r\n return oldState;\r\n }\r\n\r\n /**\r\n * Removes entities in oldState that the were removed from newState. If there are any unknown values in root of\r\n * oldState that are not recognized, they are left untouched.\r\n * @param oldState - cache before changes\r\n * @param newState - updated cache\r\n */\r\n private mergeRemovals(oldState: JsonCache, newState: JsonCache): JsonCache {\r\n this.logger.verbose(\"Remove updated entries in cache\");\r\n const accounts = oldState.Account ? this.mergeRemovalsDict<SerializedAccountEntity>(oldState.Account, newState.Account) : oldState.Account;\r\n const accessTokens = oldState.AccessToken ? this.mergeRemovalsDict<SerializedAccessTokenEntity>(oldState.AccessToken, newState.AccessToken) : oldState.AccessToken;\r\n const refreshTokens = oldState.RefreshToken ? this.mergeRemovalsDict<SerializedRefreshTokenEntity>(oldState.RefreshToken, newState.RefreshToken) : oldState.RefreshToken;\r\n const idTokens = oldState.IdToken ? this.mergeRemovalsDict<SerializedIdTokenEntity>(oldState.IdToken, newState.IdToken) : oldState.IdToken;\r\n const appMetadata = oldState.AppMetadata ? this.mergeRemovalsDict<SerializedAppMetadataEntity>(oldState.AppMetadata, newState.AppMetadata) : oldState.AppMetadata;\r\n\r\n return {\r\n ...oldState,\r\n Account: accounts,\r\n AccessToken: accessTokens,\r\n RefreshToken: refreshTokens,\r\n IdToken: idTokens,\r\n AppMetadata: appMetadata\r\n };\r\n }\r\n\r\n /**\r\n * Helper to merge new cache with the old one\r\n * @param oldState - cache before changes\r\n * @param newState - updated cache\r\n */\r\n private mergeRemovalsDict<T>(oldState: Record<string, T>, newState?: Record<string, T>): Record<string, T> {\r\n const finalState = { ...oldState };\r\n Object.keys(oldState).forEach((oldKey) => {\r\n if (!newState || !(newState.hasOwnProperty(oldKey))) {\r\n delete finalState[oldKey];\r\n }\r\n });\r\n return finalState;\r\n }\r\n\r\n /**\r\n * Helper to overlay as a part of cache merge\r\n * @param passedInCache - cache read from the blob\r\n */\r\n private overlayDefaults(passedInCache: JsonCache): JsonCache {\r\n this.logger.verbose(\"Overlaying input cache with the default cache\");\r\n return {\r\n Account: {\r\n ...defaultSerializedCache.Account,\r\n ...passedInCache.Account,\r\n },\r\n IdToken: {\r\n ...defaultSerializedCache.IdToken,\r\n ...passedInCache.IdToken,\r\n },\r\n AccessToken: {\r\n ...defaultSerializedCache.AccessToken,\r\n ...passedInCache.AccessToken,\r\n },\r\n RefreshToken: {\r\n ...defaultSerializedCache.RefreshToken,\r\n ...passedInCache.RefreshToken,\r\n },\r\n AppMetadata: {\r\n ...defaultSerializedCache.AppMetadata,\r\n ...passedInCache.AppMetadata,\r\n },\r\n };\r\n }\r\n}\r\n","/* eslint-disable header/header */\nexport const name = \"@azure/msal-node\";\nexport const version = \"1.0.0\";\n","/*\r\n * Copyright (c) Microsoft Corporation. All rights reserved.\r\n * Licensed under the MIT License.\r\n */\r\n\r\nimport {\r\n AuthorizationCodeClient,\r\n ClientConfiguration,\r\n RefreshTokenClient,\r\n AuthenticationResult,\r\n Authority,\r\n AuthorityFactory,\r\n BaseAuthRequest,\r\n SilentFlowClient,\r\n Logger,\r\n ServerTelemetryManager,\r\n ServerTelemetryRequest,\r\n CommonSilentFlowRequest,\r\n CommonRefreshTokenRequest,\r\n CommonAuthorizationCodeRequest,\r\n CommonAuthorizationUrlRequest,\r\n AuthenticationScheme,\r\n ResponseMode,\r\n AuthorityOptions,\r\n OIDC_DEFAULT_SCOPES\r\n} from \"@azure/msal-common\";\r\nimport { Configuration, buildAppConfiguration } from \"../config/Configuration\";\r\nimport { CryptoProvider } from \"../crypto/CryptoProvider\";\r\nimport { NodeStorage } from \"../cache/NodeStorage\";\r\nimport { Constants as NodeConstants, ApiId } from \"../utils/Constants\";\r\nimport { TokenCache } from \"../cache/TokenCache\";\r\nimport { ClientAssertion } from \"./ClientAssertion\";\r\nimport { AuthorizationUrlRequest } from \"../request/AuthorizationUrlRequest\";\r\nimport { AuthorizationCodeRequest } from \"../request/AuthorizationCodeRequest\";\r\nimport { RefreshTokenRequest } from \"../request/RefreshTokenRequest\";\r\nimport { SilentFlowRequest } from \"../request/SilentFlowRequest\";\r\nimport { version, name } from \"../packageMetadata\";\r\n\r\n/**\r\n * Base abstract class for all ClientApplications - public and confidential\r\n * @public\r\n */\r\nexport abstract class ClientApplication {\r\n\r\n private readonly cryptoProvider: CryptoProvider;\r\n private tokenCache: TokenCache;\r\n\r\n /**\r\n * Platform storage object\r\n */\r\n protected storage: NodeStorage;\r\n /**\r\n * Logger object to log the application flow\r\n */\r\n protected logger: Logger;\r\n /**\r\n * Platform configuration initialized by the application\r\n */\r\n protected config: Configuration;\r\n /**\r\n * Client assertion passed by the user for confidential client flows\r\n */\r\n protected clientAssertion: ClientAssertion;\r\n /**\r\n * Client secret passed by the user for confidential client flows\r\n */\r\n protected clientSecret: string;\r\n\r\n /**\r\n * Constructor for the ClientApplication\r\n */\r\n protected constructor(configuration: Configuration) {\r\n this.config = buildAppConfiguration(configuration);\r\n this.cryptoProvider = new CryptoProvider();\r\n this.logger = new Logger(this.config.system!.loggerOptions!, name, version);\r\n this.storage = new NodeStorage(this.logger, this.config.auth.clientId, this.cryptoProvider);\r\n this.tokenCache = new TokenCache(\r\n this.storage,\r\n this.logger,\r\n this.config.cache!.cachePlugin\r\n );\r\n }\r\n\r\n /**\r\n * Creates the URL of the authorization request, letting the user input credentials and consent to the\r\n * application. The URL targets the /authorize endpoint of the authority configured in the\r\n * application object.\r\n *\r\n * Once the user inputs their credentials and consents, the authority will send a response to the redirect URI\r\n * sent in the request and should contain an authorization code, which can then be used to acquire tokens via\r\n * `acquireTokenByCode(AuthorizationCodeRequest)`.\r\n */\r\n async getAuthCodeUrl(request: AuthorizationUrlRequest): Promise<string> {\r\n this.logger.info(\"getAuthCodeUrl called\");\r\n const validRequest: CommonAuthorizationUrlRequest = {\r\n ...request,\r\n ...this.initializeBaseRequest(request),\r\n responseMode: request.responseMode || ResponseMode.QUERY,\r\n authenticationScheme: AuthenticationScheme.BEARER\r\n };\r\n const authClientConfig = await this.buildOauthClientConfiguration(\r\n validRequest.authority\r\n );\r\n this.logger.verbose(\"Auth client config generated\");\r\n const authorizationCodeClient = new AuthorizationCodeClient(\r\n authClientConfig\r\n );\r\n return authorizationCodeClient.getAuthCodeUrl(validRequest);\r\n }\r\n\r\n /**\r\n * Acquires a token by exchanging the Authorization Code received from the first step of OAuth2.0\r\n * Authorization Code flow.\r\n *\r\n * `getAuthCodeUrl(AuthorizationCodeUrlRequest)` can be used to create the URL for the first step of OAuth2.0\r\n * Authorization Code flow. Ensure that values for redirectUri and scopes in AuthorizationCodeUrlRequest and\r\n * AuthorizationCodeRequest are the same.\r\n */\r\n async acquireTokenByCode(request: AuthorizationCodeRequest): Promise<AuthenticationResult | null> {\r\n this.logger.info(\"acquireTokenByCode called\");\r\n const validRequest: CommonAuthorizationCodeRequest = {\r\n ...request,\r\n ...this.initializeBaseRequest(request),\r\n authenticationScheme: AuthenticationScheme.BEARER\r\n };\r\n const serverTelemetryManager = this.initializeServerTelemetryManager(ApiId.acquireTokenByCode, validRequest.correlationId!);\r\n try {\r\n const authClientConfig = await this.buildOauthClientConfiguration(\r\n validRequest.authority,\r\n serverTelemetryManager\r\n );\r\n this.logger.verbose(\"Auth client config generated\");\r\n const authorizationCodeClient = new AuthorizationCodeClient(\r\n authClientConfig\r\n );\r\n return authorizationCodeClient.acquireToken(validRequest);\r\n } catch (e) {\r\n serverTelemetryManager.cacheFailedRequest(e);\r\n throw e;\r\n }\r\n }\r\n\r\n /**\r\n * Acquires a token by exchanging the refresh token provided for a new set of tokens.\r\n *\r\n * This API is provided only for scenarios where you would like to migrate from ADAL to MSAL. Otherwise, it is\r\n * recommended that you use `acquireTokenSilent()` for silent scenarios. When using `acquireTokenSilent()`, MSAL will\r\n * handle the caching and refreshing of tokens automatically.\r\n */\r\n async acquireTokenByRefreshToken(request: RefreshTokenRequest): Promise<AuthenticationResult | null> {\r\n this.logger.info(\"acquireTokenByRefreshToken called\");\r\n const validRequest: CommonRefreshTokenRequest = {\r\n ...request,\r\n ...this.initializeBaseRequest(request),\r\n authenticationScheme: AuthenticationScheme.BEARER\r\n };\r\n\r\n const serverTelemetryManager = this.initializeServerTelemetryManager(ApiId.acquireTokenByRefreshToken, validRequest.correlationId);\r\n try {\r\n const refreshTokenClientConfig = await this.buildOauthClientConfiguration(\r\n validRequest.authority,\r\n serverTelemetryManager\r\n );\r\n this.logger.verbose(\"Auth client config generated\");\r\n const refreshTokenClient = new RefreshTokenClient(\r\n refreshTokenClientConfig\r\n );\r\n return refreshTokenClient.acquireToken(validRequest);\r\n } catch (e) {\r\n serverTelemetryManager.cacheFailedRequest(e);\r\n throw e;\r\n }\r\n }\r\n\r\n /**\r\n * Acquires a token silently when a user specifies the account the token is requested for.\r\n *\r\n * This API expects the user to provide an account object and looks into the cache to retrieve the token if present.\r\n * There is also an optional \"forceRefresh\" boolean the user can send to bypass the cache for access_token and id_token.\r\n * In case the refresh_token is expired or not found, an error is thrown\r\n * and the guidance is for the user to call any interactive token acquisition API (eg: `acquireTokenByCode()`).\r\n */\r\n async acquireTokenSilent(request: SilentFlowRequest): Promise<AuthenticationResult | null> {\r\n const validRequest: CommonSilentFlowRequest = {\r\n ...request,\r\n ...this.initializeBaseRequest(request),\r\n forceRefresh: request.forceRefresh || false\r\n };\r\n\r\n const serverTelemetryManager = this.initializeServerTelemetryManager(ApiId.acquireTokenSilent, validRequest.correlationId, validRequest.forceRefresh);\r\n try {\r\n const silentFlowClientConfig = await this.buildOauthClientConfiguration(\r\n validRequest.authority,\r\n serverTelemetryManager\r\n );\r\n const silentFlowClient = new SilentFlowClient(\r\n silentFlowClientConfig\r\n );\r\n return silentFlowClient.acquireToken(validRequest);\r\n } catch (e) {\r\n serverTelemetryManager.cacheFailedRequest(e);\r\n throw e;\r\n }\r\n }\r\n\r\n /**\r\n * Gets the token cache for the application.\r\n */\r\n getTokenCache(): TokenCache {\r\n this.logger.info(\"getTokenCache called\");\r\n return this.tokenCache;\r\n }\r\n\r\n /**\r\n * Returns the logger instance\r\n */\r\n getLogger(): Logger {\r\n return this.logger;\r\n }\r\n\r\n /**\r\n * Replaces the default logger set in configurations with new Logger with new configurations\r\n * @param logger - Logger instance\r\n */\r\n setLogger(logger: Logger): void {\r\n this.logger = logger;\r\n }\r\n\r\n /**\r\n * Builds the common configuration to be passed to the common component based on the platform configurarion\r\n * @param authority - user passed authority in configuration\r\n * @param serverTelemetryManager - initializes servertelemetry if passed\r\n */\r\n protected async buildOauthClientConfiguration(authority: string, serverTelemetryManager?: ServerTelemetryManager): Promise<ClientConfiguration> {\r\n this.logger.verbose(\"buildOauthClientConfiguration called\");\r\n // using null assertion operator as we ensure that all config values have default values in buildConfiguration()\r\n\r\n const discoveredAuthority = await this.createAuthority(authority);\r\n\r\n return {\r\n authOptions: {\r\n clientId: this.config.auth.clientId,\r\n authority: discoveredAuthority,\r\n clientCapabilities: this.config.auth.clientCapabilities\r\n },\r\n loggerOptions: {\r\n loggerCallback: this.config.system!.loggerOptions!\r\n .loggerCallback,\r\n piiLoggingEnabled: this.config.system!.loggerOptions!\r\n .piiLoggingEnabled,\r\n },\r\n cryptoInterface: this.cryptoProvider,\r\n networkInterface: this.config.system!.networkClient,\r\n storageInterface: this.storage,\r\n serverTelemetryManager: serverTelemetryManager,\r\n clientCredentials: {\r\n clientSecret: this.clientSecret,\r\n clientAssertion: this.clientAssertion ? this.getClientAssertion(discoveredAuthority) : undefined,\r\n },\r\n libraryInfo: {\r\n sku: NodeConstants.MSAL_SKU,\r\n version: version,\r\n cpu: process.arch || \"\",\r\n os: process.platform || \"\",\r\n },\r\n persistencePlugin: this.config.cache!.cachePlugin,\r\n serializableCache: this.tokenCache,\r\n };\r\n }\r\n\r\n private getClientAssertion(authority: Authority): { assertion: string, assertionType: string } {\r\n return {\r\n assertion: this.clientAssertion.getJwt(this.cryptoProvider, this.config.auth.clientId, authority.tokenEndpoint),\r\n assertionType: NodeConstants.JWT_BEARER_ASSERTION_TYPE\r\n };\r\n }\r\n\r\n /**\r\n * Generates a request with the default scopes & generates a correlationId.\r\n * @param authRequest - BaseAuthRequest for initialization\r\n */\r\n protected initializeBaseRequest(authRequest: Partial<BaseAuthRequest>): BaseAuthRequest {\r\n this.logger.verbose(\"initializeRequestScopes called\");\r\n\r\n return {\r\n ...authRequest,\r\n scopes: [...((authRequest && authRequest.scopes) || []), ...OIDC_DEFAULT_SCOPES],\r\n correlationId: authRequest && authRequest.correlationId || this.cryptoProvider.createNewGuid(),\r\n authority: authRequest.authority || this.config.auth.authority!\r\n };\r\n }\r\n\r\n /**\r\n * Initializes the server telemetry payload\r\n * @param apiId - Id for a specific request\r\n * @param correlationId - GUID\r\n * @param forceRefresh - boolean to indicate network call\r\n */\r\n protected initializeServerTelemetryManager(apiId: number, correlationId: string, forceRefresh?: boolean): ServerTelemetryManager {\r\n const telemetryPayload: ServerTelemetryRequest = {\r\n clientId: this.config.auth.clientId,\r\n correlationId: correlationId,\r\n apiId: apiId,\r\n forceRefresh: forceRefresh || false\r\n };\r\n\r\n return new ServerTelemetryManager(telemetryPayload, this.storage);\r\n }\r\n\r\n /**\r\n * Create authority instance. If authority not passed in request, default to authority set on the application\r\n * object. If no authority set in application object, then default to common authority.\r\n * @param authorityString - authority from user configuration\r\n */\r\n private async createAuthority(authorityString: string): Promise<Authority> {\r\n this.logger.verbose(\"createAuthority called\");\r\n const authorityOptions: AuthorityOptions = {\r\n protocolMode: this.config.auth.protocolMode!,\r\n knownAuthorities: this.config.auth.knownAuthorities!,\r\n cloudDiscoveryMetadata: this.config.auth.cloudDiscoveryMetadata!,\r\n authorityMetadata: this.config.auth.authorityMetadata!\r\n };\r\n return await AuthorityFactory.createDiscoveredInstance(authorityString, this.config.system!.networkClient!, this.storage, authorityOptions);\r\n }\r\n}\r\n","/*\r\n * Copyright (c) Microsoft Corporation. All rights reserved.\r\n * Licensed under the MIT License.\r\n */\r\n\r\nimport { ApiId } from \"../utils/Constants\";\r\nimport {\r\n DeviceCodeClient,\r\n AuthenticationResult,\r\n CommonDeviceCodeRequest,\r\n CommonUsernamePasswordRequest,\r\n UsernamePasswordClient\r\n} from \"@azure/msal-common\";\r\nimport { Configuration } from \"../config/Configuration\";\r\nimport { ClientApplication } from \"./ClientApplication\";\r\nimport { IPublicClientApplication } from \"./IPublicClientApplication\";\r\nimport { DeviceCodeRequest } from \"../request/DeviceCodeRequest\";\r\nimport { UsernamePasswordRequest } from \"../request/UsernamePasswordRequest\";\r\n\r\n/**\r\n * This class is to be used to acquire tokens for public client applications (desktop, mobile). Public client applications\r\n * are not trusted to safely store application secrets, and therefore can only request tokens in the name of an user.\r\n * @public\r\n */\r\nexport class PublicClientApplication extends ClientApplication implements IPublicClientApplication {\r\n /**\r\n * Important attributes in the Configuration object for auth are:\r\n * - clientID: the application ID of your application. You can obtain one by registering your application with our Application registration portal.\r\n * - authority: the authority URL for your application.\r\n *\r\n * AAD authorities are of the form https://login.microsoftonline.com/\\{Enter_the_Tenant_Info_Here\\}.\r\n * - If your application supports Accounts in one organizational directory, replace \"Enter_the_Tenant_Info_Here\" value with the Tenant Id or Tenant name (for example, contoso.microsoft.com).\r\n * - If your application supports Accounts in any organizational directory, replace \"Enter_the_Tenant_Info_Here\" value with organizations.\r\n * - If your application supports Accounts in any organizational directory and personal Microsoft accounts, replace \"Enter_the_Tenant_Info_Here\" value with common.\r\n * - To restrict support to Personal Microsoft accounts only, replace \"Enter_the_Tenant_Info_Here\" value with consumers.\r\n *\r\n * Azure B2C authorities are of the form https://\\{instance\\}/\\{tenant\\}/\\{policy\\}. Each policy is considered\r\n * its own authority. You will have to set the all of the knownAuthorities at the time of the client application\r\n * construction.\r\n *\r\n * ADFS authorities are of the form https://\\{instance\\}/adfs.\r\n */\r\n constructor(configuration: Configuration) {\r\n super(configuration);\r\n }\r\n\r\n /**\r\n * Acquires a token from the authority using OAuth2.0 device code flow.\r\n * This flow is designed for devices that do not have access to a browser or have input constraints.\r\n * The authorization server issues a DeviceCode object with a verification code, an end-user code,\r\n * and the end-user verification URI. The DeviceCode object is provided through a callback, and the end-user should be\r\n * instructed to use another device to navigate to the verification URI to input credentials.\r\n * Since the client cannot receive incoming requests, it polls the authorization server repeatedly\r\n * until the end-user completes input of credentials.\r\n */\r\n public async acquireTokenByDeviceCode(request: DeviceCodeRequest): Promise<AuthenticationResult | null> {\r\n this.logger.info(\"acquireTokenByDeviceCode called\");\r\n const validRequest: CommonDeviceCodeRequest = {\r\n ...request,\r\n ...this.initializeBaseRequest(request)\r\n };\r\n const serverTelemetryManager = this.initializeServerTelemetryManager(ApiId.acquireTokenByDeviceCode, validRequest.correlationId!);\r\n try {\r\n const deviceCodeConfig = await this.buildOauthClientConfiguration(\r\n validRequest.authority,\r\n serverTelemetryManager\r\n );\r\n this.logger.verbose(\"Auth client config generated\");\r\n const deviceCodeClient = new DeviceCodeClient(deviceCodeConfig);\r\n return deviceCodeClient.acquireToken(validRequest);\r\n } catch (e) {\r\n serverTelemetryManager.cacheFailedRequest(e);\r\n throw e;\r\n }\r\n }\r\n\r\n /**\r\n * Acquires tokens with password grant by exchanging client applications username and password for credentials\r\n *\r\n * The latest OAuth 2.0 Security Best Current Practice disallows the password grant entirely.\r\n * More details on this recommendation at https://tools.ietf.org/html/draft-ietf-oauth-security-topics-13#section-3.4\r\n * Microsoft's documentation and recommendations are at:\r\n * https://docs.microsoft.com/en-us/azure/active-directory/develop/msal-authentication-flows#usernamepassword\r\n *\r\n * @param request - UsenamePasswordRequest\r\n */\r\n async acquireTokenByUsernamePassword(request: UsernamePasswordRequest): Promise<AuthenticationResult | null> {\r\n this.logger.info(\"acquireTokenByUsernamePassword called\");\r\n const validRequest: CommonUsernamePasswordRequest = {\r\n ...request,\r\n ...this.initializeBaseRequest(request)\r\n };\r\n const serverTelemetryManager = this.initializeServerTelemetryManager(ApiId.acquireTokenByUsernamePassword, validRequest.correlationId!);\r\n try {\r\n const usernamePasswordClientConfig = await this.buildOauthClientConfiguration(\r\n validRequest.authority,\r\n serverTelemetryManager\r\n );\r\n this.logger.verbose(\"Auth client config generated\");\r\n const usernamePasswordClient = new UsernamePasswordClient(usernamePasswordClientConfig);\r\n return usernamePasswordClient.acquireToken(validRequest);\r\n } catch (e) {\r\n serverTelemetryManager.cacheFailedRequest(e);\r\n throw e;\r\n }\r\n }\r\n}\r\n","/*\r\n * Copyright (c) Microsoft Corporation. All rights reserved.\r\n * Licensed under the MIT License.\r\n */\r\n\r\nimport { sign } from \"jsonwebtoken\";\r\nimport { TimeUtils, ClientAuthError } from \"@azure/msal-common\";\r\nimport { CryptoProvider } from \"../crypto/CryptoProvider\";\r\nimport { EncodingUtils } from \"../utils/EncodingUtils\";\r\nimport { JwtConstants } from \"../utils/Constants\";\r\n\r\n/**\r\n * Client assertion of type jwt-bearer used in confidential client flows\r\n * @public\r\n */\r\nexport class ClientAssertion {\r\n\r\n private jwt: string;\r\n private privateKey: string;\r\n private thumbprint: string;\r\n private expirationTime: number;\r\n private issuer: string;\r\n private jwtAudience: string;\r\n private publicCertificate: Array<string>;\r\n\r\n /**\r\n * Initialize the ClientAssertion class from the clientAssertion passed by the user\r\n * @param assertion - refer https://tools.ietf.org/html/rfc7521\r\n */\r\n public static fromAssertion(assertion: string): ClientAssertion {\r\n const clientAssertion = new ClientAssertion();\r\n clientAssertion.jwt = assertion;\r\n return clientAssertion;\r\n }\r\n\r\n /**\r\n * Initialize the ClientAssertion class from the certificate passed by the user\r\n * @param thumbprint - identifier of a certificate\r\n * @param privateKey - secret key\r\n * @param publicCertificate - electronic document provided to prove the ownership of the public key\r\n */\r\n public static fromCertificate(thumbprint: string, privateKey: string, publicCertificate?: string): ClientAssertion {\r\n const clientAssertion = new ClientAssertion();\r\n clientAssertion.privateKey = privateKey;\r\n clientAssertion.thumbprint = thumbprint;\r\n if (publicCertificate) {\r\n clientAssertion.publicCertificate = this.parseCertificate(publicCertificate);\r\n }\r\n return clientAssertion;\r\n }\r\n\r\n /**\r\n * Update JWT for certificate based clientAssertion, if passed by the user, uses it as is\r\n * @param cryptoProvider - library's crypto helper\r\n * @param issuer - iss claim\r\n * @param jwtAudience - aud claim\r\n */\r\n public getJwt(cryptoProvider: CryptoProvider, issuer: string, jwtAudience: string) {\r\n // if assertion was created from certificate, check if jwt is expired and create new one.\r\n if (this.privateKey && this.thumbprint) {\r\n\r\n if (this.jwt && !this.isExpired() && issuer === this.issuer && jwtAudience === this.jwtAudience) {\r\n return this.jwt;\r\n }\r\n\r\n return this.createJwt(cryptoProvider, issuer, jwtAudience);\r\n }\r\n\r\n /*\r\n * if assertion was created by caller, then we just append it. It is up to the caller to\r\n * ensure that it contains necessary claims and that it is not expired.\r\n */\r\n if (this.jwt) {\r\n return this.jwt;\r\n }\r\n\r\n throw ClientAuthError.createInvalidAssertionError();\r\n }\r\n\r\n /**\r\n * JWT format and required claims specified: https://tools.ietf.org/html/rfc7523#section-3\r\n */\r\n private createJwt(cryptoProvider: CryptoProvider, issuer: string, jwtAudience: string): string {\r\n\r\n this.issuer = issuer;\r\n this.jwtAudience = jwtAudience;\r\n const issuedAt = TimeUtils.nowSeconds();\r\n this.expirationTime = issuedAt + 600;\r\n\r\n const header = {\r\n [JwtConstants.ALGORITHM]: JwtConstants.RSA_256,\r\n [JwtConstants.X5T]: EncodingUtils.base64EncodeUrl(this.thumbprint, \"hex\")\r\n };\r\n\r\n if (this.publicCertificate) {\r\n Object.assign(header, {\r\n [JwtConstants.X5C]: this.publicCertificate\r\n });\r\n }\r\n\r\n const payload = {\r\n [JwtConstants.AUDIENCE]: this.jwtAudience,\r\n [JwtConstants.EXPIRATION_TIME]: this.expirationTime,\r\n [JwtConstants.ISSUER]: this.issuer,\r\n [JwtConstants.SUBJECT]: this.issuer,\r\n [JwtConstants.NOT_BEFORE]: issuedAt,\r\n [JwtConstants.JWT_ID]: cryptoProvider.createNewGuid()\r\n };\r\n\r\n this.jwt = sign(payload, this.privateKey, { header: header });\r\n return this.jwt;\r\n }\r\n\r\n /**\r\n * Utility API to check expiration\r\n */\r\n private isExpired(): boolean {\r\n return this.expirationTime < TimeUtils.nowSeconds();\r\n }\r\n\r\n /**\r\n * Extracts the raw certs from a given certificate string and returns them in an array.\r\n * @param publicCertificate - electronic document provided to prove the ownership of the public key\r\n */\r\n public static parseCertificate(publicCertificate: string): Array<string> {\r\n /**\r\n * This is regex to identify the certs in a given certificate string.\r\n * We want to look for the contents between the BEGIN and END certificate strings, without the associated newlines.\r\n * The information in parens \"(.+?)\" is the capture group to represent the cert we want isolated.\r\n * \".\" means any string character, \"+\" means match 1 or more times, and \"?\" means the shortest match.\r\n * The \"g\" at the end of the regex means search the string globally, and the \"s\" enables the \".\" to match newlines.\r\n */\r\n const regexToFindCerts = /-----BEGIN CERTIFICATE-----\\n(.+?)\\n-----END CERTIFICATE-----/gs;\r\n const certs: string[] = [];\r\n\r\n let matches;\r\n while ((matches = regexToFindCerts.exec(publicCertificate)) !== null) {\r\n // matches[1] represents the first parens capture group in the regex.\r\n certs.push(matches[1].replace(/\\n/, \"\"));\r\n }\r\n\r\n return certs;\r\n }\r\n}\r\n","/*\r\n * Copyright (c) Microsoft Corporation. All rights reserved.\r\n * Licensed under the MIT License.\r\n */\r\n\r\nimport { ClientApplication } from \"./ClientApplication\";\r\nimport { Configuration } from \"../config/Configuration\";\r\nimport { ClientAssertion } from \"./ClientAssertion\";\r\nimport { ApiId } from \"../utils/Constants\";\r\nimport {\r\n ClientCredentialClient,\r\n OnBehalfOfClient,\r\n CommonClientCredentialRequest,\r\n CommonOnBehalfOfRequest,\r\n AuthenticationResult,\r\n StringUtils,\r\n ClientAuthError } from \"@azure/msal-common\";\r\nimport { IConfidentialClientApplication } from \"./IConfidentialClientApplication\";\r\nimport { OnBehalfOfRequest } from \"../request/OnBehalfOfRequest\";\r\nimport { ClientCredentialRequest } from \"../request/ClientCredentialRequest\";\r\n\r\n/**\r\n * This class is to be used to acquire tokens for confidential client applications (webApp, webAPI). Confidential client applications\r\n * will configure application secrets, client certificates/assertions as applicable\r\n * @public\r\n */\r\nexport class ConfidentialClientApplication extends ClientApplication implements IConfidentialClientApplication{\r\n\r\n /**\r\n * Constructor for the ConfidentialClientApplication\r\n *\r\n * Required attributes in the Configuration object are:\r\n * - clientID: the application ID of your application. You can obtain one by registering your application with our application registration portal\r\n * - authority: the authority URL for your application.\r\n * - client credential: Must set either client secret, certificate, or assertion for confidential clients. You can obtain a client secret from the application registration portal.\r\n *\r\n * In Azure AD, authority is a URL indicating of the form https://login.microsoftonline.com/\\{Enter_the_Tenant_Info_Here\\}.\r\n * If your application supports Accounts in one organizational directory, replace \"Enter_the_Tenant_Info_Here\" value with the Tenant Id or Tenant name (for example, contoso.microsoft.com).\r\n * If your application supports Accounts in any organizational directory, replace \"Enter_the_Tenant_Info_Here\" value with organizations.\r\n * If your application supports Accounts in any organizational directory and personal Microsoft accounts, replace \"Enter_the_Tenant_Info_Here\" value with common.\r\n * To restrict support to Personal Microsoft accounts only, replace \"Enter_the_Tenant_Info_Here\" value with consumers.\r\n *\r\n * In Azure B2C, authority is of the form https://\\{instance\\}/tfp/\\{tenant\\}/\\{policyName\\}/\r\n * Full B2C functionality will be available in this library in future versions.\r\n *\r\n * @param Configuration - configuration object for the MSAL ConfidentialClientApplication instance\r\n */\r\n constructor(configuration: Configuration) {\r\n super(configuration);\r\n this.setClientCredential(this.config);\r\n }\r\n\r\n /**\r\n * Acquires tokens from the authority for the application (not for an end user).\r\n */\r\n public async acquireTokenByClientCredential(request: ClientCredentialRequest): Promise<AuthenticationResult | null> {\r\n this.logger.info(\"acquireTokenByClientCredential called\");\r\n const validRequest: CommonClientCredentialRequest = {\r\n ...request,\r\n ...this.initializeBaseRequest(request)\r\n };\r\n const serverTelemetryManager = this.initializeServerTelemetryManager(ApiId.acquireTokenByClientCredential, validRequest.correlationId, validRequest.skipCache);\r\n try {\r\n const clientCredentialConfig = await this.buildOauthClientConfiguration(\r\n validRequest.authority,\r\n serverTelemetryManager\r\n );\r\n this.logger.verbose(\"Auth client config generated\");\r\n const clientCredentialClient = new ClientCredentialClient(clientCredentialConfig);\r\n return clientCredentialClient.acquireToken(validRequest);\r\n } catch(e) {\r\n serverTelemetryManager.cacheFailedRequest(e);\r\n throw e;\r\n }\r\n }\r\n\r\n /**\r\n * Acquires tokens from the authority for the application.\r\n *\r\n * Used in scenarios where the current app is a middle-tier service which was called with a token\r\n * representing an end user. The current app can use the token (oboAssertion) to request another\r\n * token to access downstream web API, on behalf of that user.\r\n *\r\n * The current middle-tier app has no user interaction to obtain consent.\r\n * See how to gain consent upfront for your middle-tier app from this article.\r\n * https://docs.microsoft.com/en-us/azure/active-directory/develop/v2-oauth2-on-behalf-of-flow#gaining-consent-for-the-middle-tier-application\r\n */\r\n public async acquireTokenOnBehalfOf(request: OnBehalfOfRequest): Promise<AuthenticationResult | null> {\r\n this.logger.info(\"acquireTokenOnBehalfOf called\");\r\n const validRequest: CommonOnBehalfOfRequest = {\r\n ...request,\r\n ...this.initializeBaseRequest(request)\r\n };\r\n const clientCredentialConfig = await this.buildOauthClientConfiguration(\r\n validRequest.authority\r\n );\r\n this.logger.verbose(\"Auth client config generated\");\r\n const oboClient = new OnBehalfOfClient(clientCredentialConfig);\r\n return oboClient.acquireToken(validRequest);\r\n }\r\n\r\n private setClientCredential(configuration: Configuration): void {\r\n\r\n const clientSecretNotEmpty = !StringUtils.isEmpty(configuration.auth.clientSecret!);\r\n const clientAssertionNotEmpty = !StringUtils.isEmpty(configuration.auth.clientAssertion!);\r\n const certificate = configuration.auth.clientCertificate!;\r\n const certificateNotEmpty = !StringUtils.isEmpty(certificate.thumbprint) || !StringUtils.isEmpty(certificate.privateKey);\r\n\r\n // Check that at most one credential is set on the application\r\n if (\r\n clientSecretNotEmpty && clientAssertionNotEmpty ||\r\n clientAssertionNotEmpty && certificateNotEmpty ||\r\n clientSecretNotEmpty && certificateNotEmpty) {\r\n throw ClientAuthError.createInvalidCredentialError();\r\n }\r\n\r\n if (clientSecretNotEmpty) {\r\n this.clientSecret = configuration.auth.clientSecret!;\r\n return;\r\n }\r\n\r\n if (clientAssertionNotEmpty) {\r\n this.clientAssertion = ClientAssertion.fromAssertion(configuration.auth.clientAssertion!);\r\n return;\r\n }\r\n\r\n if (!certificateNotEmpty) {\r\n throw ClientAuthError.createInvalidCredentialError();\r\n } else {\r\n this.clientAssertion = ClientAssertion.fromCertificate(certificate.thumbprint, certificate.privateKey, configuration.auth.clientCertificate?.x5c);\r\n }\r\n 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