diff --git a/.licenses/npm/balanced-match-1.0.2.dep.yml b/.licenses/npm/balanced-match-1.0.2.dep.yml deleted file mode 100644 index 36095592b..000000000 --- a/.licenses/npm/balanced-match-1.0.2.dep.yml +++ /dev/null @@ -1,55 +0,0 @@ ---- -name: balanced-match -version: 1.0.2 -type: npm -summary: Match balanced character pairs, like "{" and "}" -homepage: https://github.com/juliangruber/balanced-match -license: mit -licenses: -- sources: LICENSE.md - text: | - (MIT) - - Copyright (c) 2013 Julian Gruber <julian@juliangruber.com> - - Permission is hereby granted, free of charge, to any person obtaining a copy of - this software and associated documentation files (the "Software"), to deal in - the Software without restriction, including without limitation the rights to - use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies - of the Software, and to permit persons to whom the Software is furnished to do - so, subject to the following conditions: - - The above copyright notice and this permission notice shall be included in all - copies or substantial portions of the Software. - - THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR - IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, - FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE - AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER - LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, - OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE - SOFTWARE. -- sources: README.md - text: |- - (MIT) - - Copyright (c) 2013 Julian Gruber <julian@juliangruber.com> - - Permission is hereby granted, free of charge, to any person obtaining a copy of - this software and associated documentation files (the "Software"), to deal in - the Software without restriction, including without limitation the rights to - use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies - of the Software, and to permit persons to whom the Software is furnished to do - so, subject to the following conditions: - - The above copyright notice and this permission notice shall be included in all - copies or substantial portions of the Software. - - THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR - IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, - FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE - AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER - LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, - OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE - SOFTWARE. -notices: [] diff --git a/.licenses/npm/balanced-match-4.0.4.dep.yml b/.licenses/npm/balanced-match.dep.yml similarity index 100% rename from .licenses/npm/balanced-match-4.0.4.dep.yml rename to .licenses/npm/balanced-match.dep.yml diff --git a/.licenses/npm/brace-expansion-1.1.13.dep.yml b/.licenses/npm/brace-expansion-1.1.13.dep.yml deleted file mode 100644 index 4d1ed8b3d..000000000 --- a/.licenses/npm/brace-expansion-1.1.13.dep.yml +++ /dev/null @@ -1,55 +0,0 @@ ---- -name: brace-expansion -version: 1.1.13 -type: npm -summary: Brace expansion as known from sh/bash -homepage: https://github.com/juliangruber/brace-expansion -license: mit -licenses: -- sources: LICENSE - text: | - MIT License - - Copyright (c) 2013 Julian Gruber - - Permission is hereby granted, free of charge, to any person obtaining a copy - of this software and associated documentation files (the "Software"), to deal - in the Software without restriction, including without limitation the rights - to use, copy, modify, merge, publish, distribute, sublicense, and/or sell - copies of the Software, and to permit persons to whom the Software is - furnished to do so, subject to the following conditions: - - The above copyright notice and this permission notice shall be included in all - copies or substantial portions of the Software. - - THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR - IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, - FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE - AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER - LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, - OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE - SOFTWARE. -- sources: README.md - text: |- - (MIT) - - Copyright (c) 2013 Julian Gruber <julian@juliangruber.com> - - Permission is hereby granted, free of charge, to any person obtaining a copy of - this software and associated documentation files (the "Software"), to deal in - the Software without restriction, including without limitation the rights to - use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies - of the Software, and to permit persons to whom the Software is furnished to do - so, subject to the following conditions: - - The above copyright notice and this permission notice shall be included in all - copies or substantial portions of the Software. - - THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR - IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, - FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE - AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER - LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, - OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE - SOFTWARE. -notices: [] diff --git a/.licenses/npm/brace-expansion-5.0.6.dep.yml b/.licenses/npm/brace-expansion.dep.yml similarity index 98% rename from .licenses/npm/brace-expansion-5.0.6.dep.yml rename to .licenses/npm/brace-expansion.dep.yml index af66077e3..f40e8707d 100644 --- a/.licenses/npm/brace-expansion-5.0.6.dep.yml +++ b/.licenses/npm/brace-expansion.dep.yml @@ -1,6 +1,6 @@ --- name: brace-expansion -version: 5.0.6 +version: 5.0.8 type: npm summary: Brace expansion as known from sh/bash homepage: diff --git a/.licenses/npm/concat-map.dep.yml b/.licenses/npm/concat-map.dep.yml deleted file mode 100644 index 20216b958..000000000 --- a/.licenses/npm/concat-map.dep.yml +++ /dev/null @@ -1,31 +0,0 @@ ---- -name: concat-map -version: 0.0.1 -type: npm -summary: concatenative mapdashery -homepage: https://github.com/substack/node-concat-map#readme -license: other -licenses: -- sources: LICENSE - text: | - This software is released under the MIT license: - - Permission is hereby granted, free of charge, to any person obtaining a copy of - this software and associated documentation files (the "Software"), to deal in - the Software without restriction, including without limitation the rights to - use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of - the Software, and to permit persons to whom the Software is furnished to do so, - subject to the following conditions: - - The above copyright notice and this permission notice shall be included in all - copies or substantial portions of the Software. - - THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR - IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS - FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR - COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER - IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN - CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. -- sources: README.markdown - text: MIT -notices: [] diff --git a/dist/cache-save/index.js b/dist/cache-save/index.js index 49820c5df..501e837f4 100644 --- a/dist/cache-save/index.js +++ b/dist/cache-save/index.js @@ -1,1199 +1,1052 @@ import { createRequire as __WEBPACK_EXTERNAL_createRequire } from "module"; /******/ var __webpack_modules__ = ({ -/***/ 7889: -/***/ (function(__unused_webpack_module, exports) { +/***/ 4974: +/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { +module.exports = minimatch +minimatch.Minimatch = Minimatch -var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { - function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } - return new (P || (P = Promise))(function (resolve, reject) { - function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } - function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } - function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } - step((generator = generator.apply(thisArg, _arguments || [])).next()); - }); -}; -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ClientStreamingCall = void 0; -/** - * A client streaming RPC call. This means that the clients sends 0, 1, or - * more messages to the server, and the server replies with exactly one - * message. - */ -class ClientStreamingCall { - constructor(method, requestHeaders, request, headers, response, status, trailers) { - this.method = method; - this.requestHeaders = requestHeaders; - this.requests = request; - this.headers = headers; - this.response = response; - this.status = status; - this.trailers = trailers; - } - /** - * Instead of awaiting the response status and trailers, you can - * just as well await this call itself to receive the server outcome. - * Note that it may still be valid to send more request messages. - */ - then(onfulfilled, onrejected) { - return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); - } - promiseFinished() { - return __awaiter(this, void 0, void 0, function* () { - let [headers, response, status, trailers] = yield Promise.all([this.headers, this.response, this.status, this.trailers]); - return { - method: this.method, - requestHeaders: this.requestHeaders, - headers, - response, - status, - trailers - }; - }); - } +var path = (function () { try { return __nccwpck_require__(6928) } catch (e) {}}()) || { + sep: '/' } -exports.ClientStreamingCall = ClientStreamingCall; +minimatch.sep = path.sep +var GLOBSTAR = minimatch.GLOBSTAR = Minimatch.GLOBSTAR = {} +var expand = __nccwpck_require__(8968) -/***/ }), +var plTypes = { + '!': { open: '(?:(?!(?:', close: '))[^/]*?)'}, + '?': { open: '(?:', close: ')?' }, + '+': { open: '(?:', close: ')+' }, + '*': { open: '(?:', close: ')*' }, + '@': { open: '(?:', close: ')' } +} -/***/ 1409: -/***/ ((__unused_webpack_module, exports) => { +// any single thing other than / +// don't need to escape / when using new RegExp() +var qmark = '[^/]' +// * => any number of characters +var star = qmark + '*?' -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.Deferred = exports.DeferredState = void 0; -var DeferredState; -(function (DeferredState) { - DeferredState[DeferredState["PENDING"] = 0] = "PENDING"; - DeferredState[DeferredState["REJECTED"] = 1] = "REJECTED"; - DeferredState[DeferredState["RESOLVED"] = 2] = "RESOLVED"; -})(DeferredState = exports.DeferredState || (exports.DeferredState = {})); -/** - * A deferred promise. This is a "controller" for a promise, which lets you - * pass a promise around and reject or resolve it from the outside. - * - * Warning: This class is to be used with care. Using it can make code very - * difficult to read. It is intended for use in library code that exposes - * promises, not for regular business logic. - */ -class Deferred { - /** - * @param preventUnhandledRejectionWarning - prevents the warning - * "Unhandled Promise rejection" by adding a noop rejection handler. - * Working with calls returned from the runtime-rpc package in an - * async function usually means awaiting one call property after - * the other. This means that the "status" is not being awaited when - * an earlier await for the "headers" is rejected. This causes the - * "unhandled promise reject" warning. A more correct behaviour for - * calls might be to become aware whether at least one of the - * promises is handled and swallow the rejection warning for the - * others. - */ - constructor(preventUnhandledRejectionWarning = true) { - this._state = DeferredState.PENDING; - this._promise = new Promise((resolve, reject) => { - this._resolve = resolve; - this._reject = reject; - }); - if (preventUnhandledRejectionWarning) { - this._promise.catch(_ => { }); - } - } - /** - * Get the current state of the promise. - */ - get state() { - return this._state; - } - /** - * Get the deferred promise. - */ - get promise() { - return this._promise; - } - /** - * Resolve the promise. Throws if the promise is already resolved or rejected. - */ - resolve(value) { - if (this.state !== DeferredState.PENDING) - throw new Error(`cannot resolve ${DeferredState[this.state].toLowerCase()}`); - this._resolve(value); - this._state = DeferredState.RESOLVED; - } - /** - * Reject the promise. Throws if the promise is already resolved or rejected. - */ - reject(reason) { - if (this.state !== DeferredState.PENDING) - throw new Error(`cannot reject ${DeferredState[this.state].toLowerCase()}`); - this._reject(reason); - this._state = DeferredState.REJECTED; - } - /** - * Resolve the promise. Ignore if not pending. - */ - resolvePending(val) { - if (this._state === DeferredState.PENDING) - this.resolve(val); - } - /** - * Reject the promise. Ignore if not pending. - */ - rejectPending(reason) { - if (this._state === DeferredState.PENDING) - this.reject(reason); - } -} -exports.Deferred = Deferred; +// ** when dots are allowed. Anything goes, except .. and . +// not (^ or / followed by one or two dots followed by $ or /), +// followed by anything, any number of times. +var twoStarDot = '(?:(?!(?:\\\/|^)(?:\\.{1,2})($|\\\/)).)*?' +// not a ^ or / followed by a dot, +// followed by anything, any number of times. +var twoStarNoDot = '(?:(?!(?:\\\/|^)\\.).)*?' -/***/ }), +// characters that need to be escaped in RegExp. +var reSpecials = charSet('().*{}+?[]^$\\!') -/***/ 6826: -/***/ (function(__unused_webpack_module, exports) { +// "abc" -> { a:true, b:true, c:true } +function charSet (s) { + return s.split('').reduce(function (set, c) { + set[c] = true + return set + }, {}) +} +// normalizes slashes. +var slashSplit = /\/+/ -var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { - function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } - return new (P || (P = Promise))(function (resolve, reject) { - function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } - function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } - function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } - step((generator = generator.apply(thisArg, _arguments || [])).next()); - }); -}; -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.DuplexStreamingCall = void 0; -/** - * A duplex streaming RPC call. This means that the clients sends an - * arbitrary amount of messages to the server, while at the same time, - * the server sends an arbitrary amount of messages to the client. - */ -class DuplexStreamingCall { - constructor(method, requestHeaders, request, headers, response, status, trailers) { - this.method = method; - this.requestHeaders = requestHeaders; - this.requests = request; - this.headers = headers; - this.responses = response; - this.status = status; - this.trailers = trailers; - } - /** - * Instead of awaiting the response status and trailers, you can - * just as well await this call itself to receive the server outcome. - * Note that it may still be valid to send more request messages. - */ - then(onfulfilled, onrejected) { - return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); - } - promiseFinished() { - return __awaiter(this, void 0, void 0, function* () { - let [headers, status, trailers] = yield Promise.all([this.headers, this.status, this.trailers]); - return { - method: this.method, - requestHeaders: this.requestHeaders, - headers, - status, - trailers, - }; - }); - } +minimatch.filter = filter +function filter (pattern, options) { + options = options || {} + return function (p, i, list) { + return minimatch(p, pattern, options) + } } -exports.DuplexStreamingCall = DuplexStreamingCall; +function ext (a, b) { + b = b || {} + var t = {} + Object.keys(a).forEach(function (k) { + t[k] = a[k] + }) + Object.keys(b).forEach(function (k) { + t[k] = b[k] + }) + return t +} -/***/ }), +minimatch.defaults = function (def) { + if (!def || typeof def !== 'object' || !Object.keys(def).length) { + return minimatch + } -/***/ 4420: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + var orig = minimatch -var __webpack_unused_export__; + var m = function minimatch (p, pattern, options) { + return orig(p, pattern, ext(def, options)) + } -// Public API of the rpc runtime. -// Note: we do not use `export * from ...` to help tree shakers, -// webpack verbose output hints that this should be useful -__webpack_unused_export__ = ({ value: true }); -var service_type_1 = __nccwpck_require__(6892); -Object.defineProperty(exports, "C0", ({ enumerable: true, get: function () { return service_type_1.ServiceType; } })); -var reflection_info_1 = __nccwpck_require__(2496); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return reflection_info_1.readMethodOptions; } }); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return reflection_info_1.readMethodOption; } }); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return reflection_info_1.readServiceOption; } }); -var rpc_error_1 = __nccwpck_require__(8636); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_error_1.RpcError; } }); -var rpc_options_1 = __nccwpck_require__(8576); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_options_1.mergeRpcOptions; } }); -var rpc_output_stream_1 = __nccwpck_require__(2726); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_output_stream_1.RpcOutputStreamController; } }); -var test_transport_1 = __nccwpck_require__(9122); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return test_transport_1.TestTransport; } }); -var deferred_1 = __nccwpck_require__(1409); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return deferred_1.Deferred; } }); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return deferred_1.DeferredState; } }); -var duplex_streaming_call_1 = __nccwpck_require__(6826); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return duplex_streaming_call_1.DuplexStreamingCall; } }); -var client_streaming_call_1 = __nccwpck_require__(7889); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return client_streaming_call_1.ClientStreamingCall; } }); -var server_streaming_call_1 = __nccwpck_require__(6173); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return server_streaming_call_1.ServerStreamingCall; } }); -var unary_call_1 = __nccwpck_require__(9288); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return unary_call_1.UnaryCall; } }); -var rpc_interceptor_1 = __nccwpck_require__(2849); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackIntercept; } }); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackDuplexStreamingInterceptors; } }); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackClientStreamingInterceptors; } }); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackServerStreamingInterceptors; } }); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackUnaryInterceptors; } }); -var server_call_context_1 = __nccwpck_require__(3352); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return server_call_context_1.ServerCallContextController; } }); + m.Minimatch = function Minimatch (pattern, options) { + return new orig.Minimatch(pattern, ext(def, options)) + } + m.Minimatch.defaults = function defaults (options) { + return orig.defaults(ext(def, options)).Minimatch + } + m.filter = function filter (pattern, options) { + return orig.filter(pattern, ext(def, options)) + } -/***/ }), + m.defaults = function defaults (options) { + return orig.defaults(ext(def, options)) + } -/***/ 2496: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + m.makeRe = function makeRe (pattern, options) { + return orig.makeRe(pattern, ext(def, options)) + } + m.braceExpand = function braceExpand (pattern, options) { + return orig.braceExpand(pattern, ext(def, options)) + } -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.readServiceOption = exports.readMethodOption = exports.readMethodOptions = exports.normalizeMethodInfo = void 0; -const runtime_1 = __nccwpck_require__(8886); -/** - * Turns PartialMethodInfo into MethodInfo. - */ -function normalizeMethodInfo(method, service) { - var _a, _b, _c; - let m = method; - m.service = service; - m.localName = (_a = m.localName) !== null && _a !== void 0 ? _a : runtime_1.lowerCamelCase(m.name); - // noinspection PointlessBooleanExpressionJS - m.serverStreaming = !!m.serverStreaming; - // noinspection PointlessBooleanExpressionJS - m.clientStreaming = !!m.clientStreaming; - m.options = (_b = m.options) !== null && _b !== void 0 ? _b : {}; - m.idempotency = (_c = m.idempotency) !== null && _c !== void 0 ? _c : undefined; - return m; -} -exports.normalizeMethodInfo = normalizeMethodInfo; -/** - * Read custom method options from a generated service client. - * - * @deprecated use readMethodOption() - */ -function readMethodOptions(service, methodName, extensionName, extensionType) { - var _a; - const options = (_a = service.methods.find((m, i) => m.localName === methodName || i === methodName)) === null || _a === void 0 ? void 0 : _a.options; - return options && options[extensionName] ? extensionType.fromJson(options[extensionName]) : undefined; + m.match = function (list, pattern, options) { + return orig.match(list, pattern, ext(def, options)) + } + + return m } -exports.readMethodOptions = readMethodOptions; -function readMethodOption(service, methodName, extensionName, extensionType) { - var _a; - const options = (_a = service.methods.find((m, i) => m.localName === methodName || i === methodName)) === null || _a === void 0 ? void 0 : _a.options; - if (!options) { - return undefined; - } - const optionVal = options[extensionName]; - if (optionVal === undefined) { - return optionVal; - } - return extensionType ? extensionType.fromJson(optionVal) : optionVal; + +Minimatch.defaults = function (def) { + return minimatch.defaults(def).Minimatch } -exports.readMethodOption = readMethodOption; -function readServiceOption(service, extensionName, extensionType) { - const options = service.options; - if (!options) { - return undefined; - } - const optionVal = options[extensionName]; - if (optionVal === undefined) { - return optionVal; - } - return extensionType ? extensionType.fromJson(optionVal) : optionVal; + +function minimatch (p, pattern, options) { + assertValidPattern(pattern) + + if (!options) options = {} + + // shortcut: comments match nothing. + if (!options.nocomment && pattern.charAt(0) === '#') { + return false + } + + return new Minimatch(pattern, options).match(p) } -exports.readServiceOption = readServiceOption; +function Minimatch (pattern, options) { + if (!(this instanceof Minimatch)) { + return new Minimatch(pattern, options) + } -/***/ }), + assertValidPattern(pattern) -/***/ 8636: -/***/ ((__unused_webpack_module, exports) => { + if (!options) options = {} + pattern = pattern.trim() -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.RpcError = void 0; -/** - * An error that occurred while calling a RPC method. - */ -class RpcError extends Error { - constructor(message, code = 'UNKNOWN', meta) { - super(message); - this.name = 'RpcError'; - // see https://www.typescriptlang.org/docs/handbook/release-notes/typescript-2-2.html#example - Object.setPrototypeOf(this, new.target.prototype); - this.code = code; - this.meta = meta !== null && meta !== void 0 ? meta : {}; - } - toString() { - const l = [this.name + ': ' + this.message]; - if (this.code) { - l.push(''); - l.push('Code: ' + this.code); - } - if (this.serviceName && this.methodName) { - l.push('Method: ' + this.serviceName + '/' + this.methodName); - } - let m = Object.entries(this.meta); - if (m.length) { - l.push(''); - l.push('Meta:'); - for (let [k, v] of m) { - l.push(` ${k}: ${v}`); - } - } - return l.join('\n'); - } + // windows support: need to use /, not \ + if (!options.allowWindowsEscape && path.sep !== '/') { + pattern = pattern.split(path.sep).join('/') + } + + this.options = options + this.maxGlobstarRecursion = options.maxGlobstarRecursion !== undefined + ? options.maxGlobstarRecursion : 200 + this.set = [] + this.pattern = pattern + this.regexp = null + this.negate = false + this.comment = false + this.empty = false + this.partial = !!options.partial + + // make the set of regexps etc. + this.make() } -exports.RpcError = RpcError; +Minimatch.prototype.debug = function () {} -/***/ }), +Minimatch.prototype.make = make +function make () { + var pattern = this.pattern + var options = this.options -/***/ 2849: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + // empty patterns and comments match nothing. + if (!options.nocomment && pattern.charAt(0) === '#') { + this.comment = true + return + } + if (!pattern) { + this.empty = true + return + } + // step 1: figure out negation, etc. + this.parseNegate() -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.stackDuplexStreamingInterceptors = exports.stackClientStreamingInterceptors = exports.stackServerStreamingInterceptors = exports.stackUnaryInterceptors = exports.stackIntercept = void 0; -const runtime_1 = __nccwpck_require__(8886); -/** - * Creates a "stack" of of all interceptors specified in the given `RpcOptions`. - * Used by generated client implementations. - * @internal - */ -function stackIntercept(kind, transport, method, options, input) { - var _a, _b, _c, _d; - if (kind == "unary") { - let tail = (mtd, inp, opt) => transport.unary(mtd, inp, opt); - for (const curr of ((_a = options.interceptors) !== null && _a !== void 0 ? _a : []).filter(i => i.interceptUnary).reverse()) { - const next = tail; - tail = (mtd, inp, opt) => curr.interceptUnary(next, mtd, inp, opt); - } - return tail(method, input, options); - } - if (kind == "serverStreaming") { - let tail = (mtd, inp, opt) => transport.serverStreaming(mtd, inp, opt); - for (const curr of ((_b = options.interceptors) !== null && _b !== void 0 ? _b : []).filter(i => i.interceptServerStreaming).reverse()) { - const next = tail; - tail = (mtd, inp, opt) => curr.interceptServerStreaming(next, mtd, inp, opt); - } - return tail(method, input, options); - } - if (kind == "clientStreaming") { - let tail = (mtd, opt) => transport.clientStreaming(mtd, opt); - for (const curr of ((_c = options.interceptors) !== null && _c !== void 0 ? _c : []).filter(i => i.interceptClientStreaming).reverse()) { - const next = tail; - tail = (mtd, opt) => curr.interceptClientStreaming(next, mtd, opt); - } - return tail(method, options); - } - if (kind == "duplex") { - let tail = (mtd, opt) => transport.duplex(mtd, opt); - for (const curr of ((_d = options.interceptors) !== null && _d !== void 0 ? _d : []).filter(i => i.interceptDuplex).reverse()) { - const next = tail; - tail = (mtd, opt) => curr.interceptDuplex(next, mtd, opt); - } - return tail(method, options); - } - runtime_1.assertNever(kind); -} -exports.stackIntercept = stackIntercept; -/** - * @deprecated replaced by `stackIntercept()`, still here to support older generated code - */ -function stackUnaryInterceptors(transport, method, input, options) { - return stackIntercept("unary", transport, method, options, input); -} -exports.stackUnaryInterceptors = stackUnaryInterceptors; -/** - * @deprecated replaced by `stackIntercept()`, still here to support older generated code - */ -function stackServerStreamingInterceptors(transport, method, input, options) { - return stackIntercept("serverStreaming", transport, method, options, input); -} -exports.stackServerStreamingInterceptors = stackServerStreamingInterceptors; -/** - * @deprecated replaced by `stackIntercept()`, still here to support older generated code - */ -function stackClientStreamingInterceptors(transport, method, options) { - return stackIntercept("clientStreaming", transport, method, options); -} -exports.stackClientStreamingInterceptors = stackClientStreamingInterceptors; -/** - * @deprecated replaced by `stackIntercept()`, still here to support older generated code - */ -function stackDuplexStreamingInterceptors(transport, method, options) { - return stackIntercept("duplex", transport, method, options); -} -exports.stackDuplexStreamingInterceptors = stackDuplexStreamingInterceptors; - + // step 2: expand braces + var set = this.globSet = this.braceExpand() -/***/ }), + if (options.debug) this.debug = function debug() { console.error.apply(console, arguments) } -/***/ 8576: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + this.debug(this.pattern, set) + // step 3: now we have a set, so turn each one into a series of path-portion + // matching patterns. + // These will be regexps, except in the case of "**", which is + // set to the GLOBSTAR object for globstar behavior, + // and will not contain any / characters + set = this.globParts = set.map(function (s) { + return s.split(slashSplit) + }) -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.mergeRpcOptions = void 0; -const runtime_1 = __nccwpck_require__(8886); -/** - * Merges custom RPC options with defaults. Returns a new instance and keeps - * the "defaults" and the "options" unmodified. - * - * Merges `RpcMetadata` "meta", overwriting values from "defaults" with - * values from "options". Does not append values to existing entries. - * - * Merges "jsonOptions", including "jsonOptions.typeRegistry", by creating - * a new array that contains types from "options.jsonOptions.typeRegistry" - * first, then types from "defaults.jsonOptions.typeRegistry". - * - * Merges "binaryOptions". - * - * Merges "interceptors" by creating a new array that contains interceptors - * from "defaults" first, then interceptors from "options". - * - * Works with objects that extend `RpcOptions`, but only if the added - * properties are of type Date, primitive like string, boolean, or Array - * of primitives. If you have other property types, you have to merge them - * yourself. - */ -function mergeRpcOptions(defaults, options) { - if (!options) - return defaults; - let o = {}; - copy(defaults, o); - copy(options, o); - for (let key of Object.keys(options)) { - let val = options[key]; - switch (key) { - case "jsonOptions": - o.jsonOptions = runtime_1.mergeJsonOptions(defaults.jsonOptions, o.jsonOptions); - break; - case "binaryOptions": - o.binaryOptions = runtime_1.mergeBinaryOptions(defaults.binaryOptions, o.binaryOptions); - break; - case "meta": - o.meta = {}; - copy(defaults.meta, o.meta); - copy(options.meta, o.meta); - break; - case "interceptors": - o.interceptors = defaults.interceptors ? defaults.interceptors.concat(val) : val.concat(); - break; - } - } - return o; -} -exports.mergeRpcOptions = mergeRpcOptions; -function copy(a, into) { - if (!a) - return; - let c = into; - for (let [k, v] of Object.entries(a)) { - if (v instanceof Date) - c[k] = new Date(v.getTime()); - else if (Array.isArray(v)) - c[k] = v.concat(); - else - c[k] = v; - } -} + this.debug(this.pattern, set) + // glob --> regexps + set = set.map(function (s, si, set) { + return s.map(this.parse, this) + }, this) -/***/ }), + this.debug(this.pattern, set) -/***/ 2726: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + // filter out everything that didn't compile properly. + set = set.filter(function (s) { + return s.indexOf(false) === -1 + }) + this.debug(this.pattern, set) -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.RpcOutputStreamController = void 0; -const deferred_1 = __nccwpck_require__(1409); -const runtime_1 = __nccwpck_require__(8886); -/** - * A `RpcOutputStream` that you control. - */ -class RpcOutputStreamController { - constructor() { - this._lis = { - nxt: [], - msg: [], - err: [], - cmp: [], - }; - this._closed = false; - // --- RpcOutputStream async iterator API - // iterator state. - // is undefined when no iterator has been acquired yet. - this._itState = { q: [] }; - } - // --- RpcOutputStream callback API - onNext(callback) { - return this.addLis(callback, this._lis.nxt); - } - onMessage(callback) { - return this.addLis(callback, this._lis.msg); - } - onError(callback) { - return this.addLis(callback, this._lis.err); - } - onComplete(callback) { - return this.addLis(callback, this._lis.cmp); - } - addLis(callback, list) { - list.push(callback); - return () => { - let i = list.indexOf(callback); - if (i >= 0) - list.splice(i, 1); - }; - } - // remove all listeners - clearLis() { - for (let l of Object.values(this._lis)) - l.splice(0, l.length); - } - // --- Controller API - /** - * Is this stream already closed by a completion or error? - */ - get closed() { - return this._closed !== false; - } - /** - * Emit message, close with error, or close successfully, but only one - * at a time. - * Can be used to wrap a stream by using the other stream's `onNext`. - */ - notifyNext(message, error, complete) { - runtime_1.assert((message ? 1 : 0) + (error ? 1 : 0) + (complete ? 1 : 0) <= 1, 'only one emission at a time'); - if (message) - this.notifyMessage(message); - if (error) - this.notifyError(error); - if (complete) - this.notifyComplete(); - } - /** - * Emits a new message. Throws if stream is closed. - * - * Triggers onNext and onMessage callbacks. - */ - notifyMessage(message) { - runtime_1.assert(!this.closed, 'stream is closed'); - this.pushIt({ value: message, done: false }); - this._lis.msg.forEach(l => l(message)); - this._lis.nxt.forEach(l => l(message, undefined, false)); - } - /** - * Closes the stream with an error. Throws if stream is closed. - * - * Triggers onNext and onError callbacks. - */ - notifyError(error) { - runtime_1.assert(!this.closed, 'stream is closed'); - this._closed = error; - this.pushIt(error); - this._lis.err.forEach(l => l(error)); - this._lis.nxt.forEach(l => l(undefined, error, false)); - this.clearLis(); - } - /** - * Closes the stream successfully. Throws if stream is closed. - * - * Triggers onNext and onComplete callbacks. - */ - notifyComplete() { - runtime_1.assert(!this.closed, 'stream is closed'); - this._closed = true; - this.pushIt({ value: null, done: true }); - this._lis.cmp.forEach(l => l()); - this._lis.nxt.forEach(l => l(undefined, undefined, true)); - this.clearLis(); - } - /** - * Creates an async iterator (that can be used with `for await {...}`) - * to consume the stream. - * - * Some things to note: - * - If an error occurs, the `for await` will throw it. - * - If an error occurred before the `for await` was started, `for await` - * will re-throw it. - * - If the stream is already complete, the `for await` will be empty. - * - If your `for await` consumes slower than the stream produces, - * for example because you are relaying messages in a slow operation, - * messages are queued. - */ - [Symbol.asyncIterator]() { - // if we are closed, we are definitely not receiving any more messages. - // but we can't let the iterator get stuck. we want to either: - // a) finish the new iterator immediately, because we are completed - // b) reject the new iterator, because we errored - if (this._closed === true) - this.pushIt({ value: null, done: true }); - else if (this._closed !== false) - this.pushIt(this._closed); - // the async iterator - return { - next: () => { - let state = this._itState; - runtime_1.assert(state, "bad state"); // if we don't have a state here, code is broken - // there should be no pending result. - // did the consumer call next() before we resolved our previous result promise? - runtime_1.assert(!state.p, "iterator contract broken"); - // did we produce faster than the iterator consumed? - // return the oldest result from the queue. - let first = state.q.shift(); - if (first) - return ("value" in first) ? Promise.resolve(first) : Promise.reject(first); - // we have no result ATM, but we promise one. - // as soon as we have a result, we must resolve promise. - state.p = new deferred_1.Deferred(); - return state.p.promise; - }, - }; - } - // "push" a new iterator result. - // this either resolves a pending promise, or enqueues the result. - pushIt(result) { - let state = this._itState; - // is the consumer waiting for us? - if (state.p) { - // yes, consumer is waiting for this promise. - const p = state.p; - runtime_1.assert(p.state == deferred_1.DeferredState.PENDING, "iterator contract broken"); - // resolve the promise - ("value" in result) ? p.resolve(result) : p.reject(result); - // must cleanup, otherwise iterator.next() would pick it up again. - delete state.p; - } - else { - // we are producing faster than the iterator consumes. - // push result onto queue. - state.q.push(result); - } - } + this.set = set } -exports.RpcOutputStreamController = RpcOutputStreamController; +Minimatch.prototype.parseNegate = parseNegate +function parseNegate () { + var pattern = this.pattern + var negate = false + var options = this.options + var negateOffset = 0 -/***/ }), - -/***/ 3352: -/***/ ((__unused_webpack_module, exports) => { + if (options.nonegate) return + for (var i = 0, l = pattern.length + ; i < l && pattern.charAt(i) === '!' + ; i++) { + negate = !negate + negateOffset++ + } -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ServerCallContextController = void 0; -class ServerCallContextController { - constructor(method, headers, deadline, sendResponseHeadersFn, defaultStatus = { code: 'OK', detail: '' }) { - this._cancelled = false; - this._listeners = []; - this.method = method; - this.headers = headers; - this.deadline = deadline; - this.trailers = {}; - this._sendRH = sendResponseHeadersFn; - this.status = defaultStatus; - } - /** - * Set the call cancelled. - * - * Invokes all callbacks registered with onCancel() and - * sets `cancelled = true`. - */ - notifyCancelled() { - if (!this._cancelled) { - this._cancelled = true; - for (let l of this._listeners) { - l(); - } - } - } - /** - * Send response headers. - */ - sendResponseHeaders(data) { - this._sendRH(data); - } - /** - * Is the call cancelled? - * - * When the client closes the connection before the server - * is done, the call is cancelled. - * - * If you want to cancel a request on the server, throw a - * RpcError with the CANCELLED status code. - */ - get cancelled() { - return this._cancelled; - } - /** - * Add a callback for cancellation. - */ - onCancel(callback) { - const l = this._listeners; - l.push(callback); - return () => { - let i = l.indexOf(callback); - if (i >= 0) - l.splice(i, 1); - }; - } + if (negateOffset) this.pattern = pattern.substr(negateOffset) + this.negate = negate } -exports.ServerCallContextController = ServerCallContextController; - - -/***/ }), -/***/ 6173: -/***/ (function(__unused_webpack_module, exports) { +// Brace expansion: +// a{b,c}d -> abd acd +// a{b,}c -> abc ac +// a{0..3}d -> a0d a1d a2d a3d +// a{b,c{d,e}f}g -> abg acdfg acefg +// a{b,c}d{e,f}g -> abdeg acdeg abdeg abdfg +// +// Invalid sets are not expanded. +// a{2..}b -> a{2..}b +// a{b}c -> a{b}c +minimatch.braceExpand = function (pattern, options) { + return braceExpand(pattern, options) +} +Minimatch.prototype.braceExpand = braceExpand -var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { - function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } - return new (P || (P = Promise))(function (resolve, reject) { - function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } - function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } - function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } - step((generator = generator.apply(thisArg, _arguments || [])).next()); - }); -}; -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ServerStreamingCall = void 0; -/** - * A server streaming RPC call. The client provides exactly one input message - * but the server may respond with 0, 1, or more messages. - */ -class ServerStreamingCall { - constructor(method, requestHeaders, request, headers, response, status, trailers) { - this.method = method; - this.requestHeaders = requestHeaders; - this.request = request; - this.headers = headers; - this.responses = response; - this.status = status; - this.trailers = trailers; - } - /** - * Instead of awaiting the response status and trailers, you can - * just as well await this call itself to receive the server outcome. - * You should first setup some listeners to the `request` to - * see the actual messages the server replied with. - */ - then(onfulfilled, onrejected) { - return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); - } - promiseFinished() { - return __awaiter(this, void 0, void 0, function* () { - let [headers, status, trailers] = yield Promise.all([this.headers, this.status, this.trailers]); - return { - method: this.method, - requestHeaders: this.requestHeaders, - request: this.request, - headers, - status, - trailers, - }; - }); +function braceExpand (pattern, options) { + if (!options) { + if (this instanceof Minimatch) { + options = this.options + } else { + options = {} } -} -exports.ServerStreamingCall = ServerStreamingCall; - + } -/***/ }), + pattern = typeof pattern === 'undefined' + ? this.pattern : pattern -/***/ 6892: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + assertValidPattern(pattern) + // Thanks to Yeting Li for + // improving this regexp to avoid a ReDOS vulnerability. + if (options.nobrace || !/\{(?:(?!\{).)*\}/.test(pattern)) { + // shortcut. no need to expand. + return [pattern] + } -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ServiceType = void 0; -const reflection_info_1 = __nccwpck_require__(2496); -class ServiceType { - constructor(typeName, methods, options) { - this.typeName = typeName; - this.methods = methods.map(i => reflection_info_1.normalizeMethodInfo(i, this)); - this.options = options !== null && options !== void 0 ? options : {}; - } + return expand(pattern) } -exports.ServiceType = ServiceType; +var MAX_PATTERN_LENGTH = 1024 * 64 +var assertValidPattern = function (pattern) { + if (typeof pattern !== 'string') { + throw new TypeError('invalid pattern') + } -/***/ }), + if (pattern.length > MAX_PATTERN_LENGTH) { + throw new TypeError('pattern is too long') + } +} -/***/ 9122: -/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { +// parse a component of the expanded set. +// At this point, no pattern may contain "/" in it +// so we're going to return a 2d array, where each entry is the full +// pattern, split on '/', and then turned into a regular expression. +// A regexp is made at the end which joins each array with an +// escaped /, and another full one which joins each regexp with |. +// +// Following the lead of Bash 4.1, note that "**" only has special meaning +// when it is the *only* thing in a path portion. Otherwise, any series +// of * is equivalent to a single *. Globstar behavior is enabled by +// default, and can be disabled by setting options.noglobstar. +Minimatch.prototype.parse = parse +var SUBPARSE = {} +function parse (pattern, isSub) { + assertValidPattern(pattern) + var options = this.options -var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { - function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } - return new (P || (P = Promise))(function (resolve, reject) { - function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } - function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } - function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } - step((generator = generator.apply(thisArg, _arguments || [])).next()); - }); -}; -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.TestTransport = void 0; -const rpc_error_1 = __nccwpck_require__(8636); -const runtime_1 = __nccwpck_require__(8886); -const rpc_output_stream_1 = __nccwpck_require__(2726); -const rpc_options_1 = __nccwpck_require__(8576); -const unary_call_1 = __nccwpck_require__(9288); -const server_streaming_call_1 = __nccwpck_require__(6173); -const client_streaming_call_1 = __nccwpck_require__(7889); -const duplex_streaming_call_1 = __nccwpck_require__(6826); -/** - * Transport for testing. - */ -class TestTransport { - /** - * Initialize with mock data. Omitted fields have default value. - */ - constructor(data) { - /** - * Suppress warning / error about uncaught rejections of - * "status" and "trailers". - */ - this.suppressUncaughtRejections = true; - this.headerDelay = 10; - this.responseDelay = 50; - this.betweenResponseDelay = 10; - this.afterResponseDelay = 10; - this.data = data !== null && data !== void 0 ? data : {}; - } - /** - * Sent message(s) during the last operation. - */ - get sentMessages() { - if (this.lastInput instanceof TestInputStream) { - return this.lastInput.sent; - } - else if (typeof this.lastInput == "object") { - return [this.lastInput.single]; - } - return []; - } - /** - * Sending message(s) completed? - */ - get sendComplete() { - if (this.lastInput instanceof TestInputStream) { - return this.lastInput.completed; - } - else if (typeof this.lastInput == "object") { - return true; - } - return false; + // shortcuts + if (pattern === '**') { + if (!options.noglobstar) + return GLOBSTAR + else + pattern = '*' + } + if (pattern === '') return '' + + var re = '' + var hasMagic = !!options.nocase + var escaping = false + // ? => one single character + var patternListStack = [] + var negativeLists = [] + var stateChar + var inClass = false + var reClassStart = -1 + var classStart = -1 + // . and .. never match anything that doesn't start with ., + // even when options.dot is set. + var patternStart = pattern.charAt(0) === '.' ? '' // anything + // not (start or / followed by . or .. followed by / or end) + : options.dot ? '(?!(?:^|\\\/)\\.{1,2}(?:$|\\\/))' + : '(?!\\.)' + var self = this + + function clearStateChar () { + if (stateChar) { + // we had some state-tracking character + // that wasn't consumed by this pass. + switch (stateChar) { + case '*': + re += star + hasMagic = true + break + case '?': + re += qmark + hasMagic = true + break + default: + re += '\\' + stateChar + break + } + self.debug('clearStateChar %j %j', stateChar, re) + stateChar = false } - // Creates a promise for response headers from the mock data. - promiseHeaders() { - var _a; - const headers = (_a = this.data.headers) !== null && _a !== void 0 ? _a : TestTransport.defaultHeaders; - return headers instanceof rpc_error_1.RpcError - ? Promise.reject(headers) - : Promise.resolve(headers); + } + + for (var i = 0, len = pattern.length, c + ; (i < len) && (c = pattern.charAt(i)) + ; i++) { + this.debug('%s\t%s %s %j', pattern, i, re, c) + + // skip over any that are escaped. + if (escaping && reSpecials[c]) { + re += '\\' + c + escaping = false + continue } - // Creates a promise for a single, valid, message from the mock data. - promiseSingleResponse(method) { - if (this.data.response instanceof rpc_error_1.RpcError) { - return Promise.reject(this.data.response); + + switch (c) { + /* istanbul ignore next */ + case '/': { + // completely not allowed, even escaped. + // Should already be path-split by now. + return false + } + + case '\\': + clearStateChar() + escaping = true + continue + + // the various stateChar values + // for the "extglob" stuff. + case '?': + case '*': + case '+': + case '@': + case '!': + this.debug('%s\t%s %s %j <-- stateChar', pattern, i, re, c) + + // all of those are literals inside a class, except that + // the glob [!a] means [^a] in regexp + if (inClass) { + this.debug(' in class') + if (c === '!' && i === classStart + 1) c = '^' + re += c + continue } - let r; - if (Array.isArray(this.data.response)) { - runtime_1.assert(this.data.response.length > 0); - r = this.data.response[0]; + + // coalesce consecutive non-globstar * characters + if (c === '*' && stateChar === '*') continue + + // if we already have a stateChar, then it means + // that there was something like ** or +? in there. + // Handle the stateChar, then proceed with this one. + self.debug('call clearStateChar %j', stateChar) + clearStateChar() + stateChar = c + // if extglob is disabled, then +(asdf|foo) isn't a thing. + // just clear the statechar *now*, rather than even diving into + // the patternList stuff. + if (options.noext) clearStateChar() + continue + + case '(': + if (inClass) { + re += '(' + continue } - else if (this.data.response !== undefined) { - r = this.data.response; + + if (!stateChar) { + re += '\\(' + continue } - else { - r = method.O.create(); + + patternListStack.push({ + type: stateChar, + start: i - 1, + reStart: re.length, + open: plTypes[stateChar].open, + close: plTypes[stateChar].close + }) + // negation is (?:(?!js)[^/]*) + re += stateChar === '!' ? '(?:(?!(?:' : '(?:' + this.debug('plType %j %j', stateChar, re) + stateChar = false + continue + + case ')': + if (inClass || !patternListStack.length) { + re += '\\)' + continue } - runtime_1.assert(method.O.is(r)); - return Promise.resolve(r); - } - /** - * Pushes response messages from the mock data to the output stream. - * If an error response, status or trailers are mocked, the stream is - * closed with the respective error. - * Otherwise, stream is completed successfully. - * - * The returned promise resolves when the stream is closed. It should - * not reject. If it does, code is broken. - */ - streamResponses(method, stream, abort) { - return __awaiter(this, void 0, void 0, function* () { - // normalize "data.response" into an array of valid output messages - const messages = []; - if (this.data.response === undefined) { - messages.push(method.O.create()); - } - else if (Array.isArray(this.data.response)) { - for (let msg of this.data.response) { - runtime_1.assert(method.O.is(msg)); - messages.push(msg); - } - } - else if (!(this.data.response instanceof rpc_error_1.RpcError)) { - runtime_1.assert(method.O.is(this.data.response)); - messages.push(this.data.response); - } - // start the stream with an initial delay. - // if the request is cancelled, notify() error and exit. - try { - yield delay(this.responseDelay, abort)(undefined); - } - catch (error) { - stream.notifyError(error); - return; - } - // if error response was mocked, notify() error (stream is now closed with error) and exit. - if (this.data.response instanceof rpc_error_1.RpcError) { - stream.notifyError(this.data.response); - return; - } - // regular response messages were mocked. notify() them. - for (let msg of messages) { - stream.notifyMessage(msg); - // add a short delay between responses - // if the request is cancelled, notify() error and exit. - try { - yield delay(this.betweenResponseDelay, abort)(undefined); - } - catch (error) { - stream.notifyError(error); - return; - } - } - // error status was mocked, notify() error (stream is now closed with error) and exit. - if (this.data.status instanceof rpc_error_1.RpcError) { - stream.notifyError(this.data.status); - return; - } - // error trailers were mocked, notify() error (stream is now closed with error) and exit. - if (this.data.trailers instanceof rpc_error_1.RpcError) { - stream.notifyError(this.data.trailers); - return; - } - // stream completed successfully - stream.notifyComplete(); - }); - } - // Creates a promise for response status from the mock data. - promiseStatus() { - var _a; - const status = (_a = this.data.status) !== null && _a !== void 0 ? _a : TestTransport.defaultStatus; - return status instanceof rpc_error_1.RpcError - ? Promise.reject(status) - : Promise.resolve(status); - } - // Creates a promise for response trailers from the mock data. - promiseTrailers() { - var _a; - const trailers = (_a = this.data.trailers) !== null && _a !== void 0 ? _a : TestTransport.defaultTrailers; - return trailers instanceof rpc_error_1.RpcError - ? Promise.reject(trailers) - : Promise.resolve(trailers); - } - maybeSuppressUncaught(...promise) { - if (this.suppressUncaughtRejections) { - for (let p of promise) { - p.catch(() => { - }); - } + + clearStateChar() + hasMagic = true + var pl = patternListStack.pop() + // negation is (?:(?!js)[^/]*) + // The others are (?:) + re += pl.close + if (pl.type === '!') { + negativeLists.push(pl) } - } - mergeOptions(options) { - return rpc_options_1.mergeRpcOptions({}, options); - } - unary(method, input, options) { - var _a; - const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() - .then(delay(this.headerDelay, options.abort)), responsePromise = headersPromise - .catch(_ => { - }) - .then(delay(this.responseDelay, options.abort)) - .then(_ => this.promiseSingleResponse(method)), statusPromise = responsePromise - .catch(_ => { - }) - .then(delay(this.afterResponseDelay, options.abort)) - .then(_ => this.promiseStatus()), trailersPromise = responsePromise - .catch(_ => { - }) - .then(delay(this.afterResponseDelay, options.abort)) - .then(_ => this.promiseTrailers()); - this.maybeSuppressUncaught(statusPromise, trailersPromise); - this.lastInput = { single: input }; - return new unary_call_1.UnaryCall(method, requestHeaders, input, headersPromise, responsePromise, statusPromise, trailersPromise); - } - serverStreaming(method, input, options) { - var _a; - const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() - .then(delay(this.headerDelay, options.abort)), outputStream = new rpc_output_stream_1.RpcOutputStreamController(), responseStreamClosedPromise = headersPromise - .then(delay(this.responseDelay, options.abort)) - .catch(() => { - }) - .then(() => this.streamResponses(method, outputStream, options.abort)) - .then(delay(this.afterResponseDelay, options.abort)), statusPromise = responseStreamClosedPromise - .then(() => this.promiseStatus()), trailersPromise = responseStreamClosedPromise - .then(() => this.promiseTrailers()); - this.maybeSuppressUncaught(statusPromise, trailersPromise); - this.lastInput = { single: input }; - return new server_streaming_call_1.ServerStreamingCall(method, requestHeaders, input, headersPromise, outputStream, statusPromise, trailersPromise); - } - clientStreaming(method, options) { - var _a; - const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() - .then(delay(this.headerDelay, options.abort)), responsePromise = headersPromise - .catch(_ => { - }) - .then(delay(this.responseDelay, options.abort)) - .then(_ => this.promiseSingleResponse(method)), statusPromise = responsePromise - .catch(_ => { - }) - .then(delay(this.afterResponseDelay, options.abort)) - .then(_ => this.promiseStatus()), trailersPromise = responsePromise - .catch(_ => { - }) - .then(delay(this.afterResponseDelay, options.abort)) - .then(_ => this.promiseTrailers()); - this.maybeSuppressUncaught(statusPromise, trailersPromise); - this.lastInput = new TestInputStream(this.data, options.abort); - return new client_streaming_call_1.ClientStreamingCall(method, requestHeaders, this.lastInput, headersPromise, responsePromise, statusPromise, trailersPromise); - } - duplex(method, options) { - var _a; - const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() - .then(delay(this.headerDelay, options.abort)), outputStream = new rpc_output_stream_1.RpcOutputStreamController(), responseStreamClosedPromise = headersPromise - .then(delay(this.responseDelay, options.abort)) - .catch(() => { - }) - .then(() => this.streamResponses(method, outputStream, options.abort)) - .then(delay(this.afterResponseDelay, options.abort)), statusPromise = responseStreamClosedPromise - .then(() => this.promiseStatus()), trailersPromise = responseStreamClosedPromise - .then(() => this.promiseTrailers()); - this.maybeSuppressUncaught(statusPromise, trailersPromise); - this.lastInput = new TestInputStream(this.data, options.abort); - return new duplex_streaming_call_1.DuplexStreamingCall(method, requestHeaders, this.lastInput, headersPromise, outputStream, statusPromise, trailersPromise); - } -} -exports.TestTransport = TestTransport; -TestTransport.defaultHeaders = { - responseHeader: "test" -}; -TestTransport.defaultStatus = { - code: "OK", detail: "all good" -}; -TestTransport.defaultTrailers = { - responseTrailer: "test" -}; -function delay(ms, abort) { - return (v) => new Promise((resolve, reject) => { - if (abort === null || abort === void 0 ? void 0 : abort.aborted) { - reject(new rpc_error_1.RpcError("user cancel", "CANCELLED")); + pl.reEnd = re.length + continue + + case '|': + if (inClass || !patternListStack.length || escaping) { + re += '\\|' + escaping = false + continue } - else { - const id = setTimeout(() => resolve(v), ms); - if (abort) { - abort.addEventListener("abort", ev => { - clearTimeout(id); - reject(new rpc_error_1.RpcError("user cancel", "CANCELLED")); - }); - } + + clearStateChar() + re += '|' + continue + + // these are mostly the same in regexp and glob + case '[': + // swallow any state-tracking char before the [ + clearStateChar() + + if (inClass) { + re += '\\' + c + continue } - }); -} -class TestInputStream { - constructor(data, abort) { - this._completed = false; - this._sent = []; - this.data = data; - this.abort = abort; - } - get sent() { - return this._sent; - } - get completed() { - return this._completed; - } - send(message) { - if (this.data.inputMessage instanceof rpc_error_1.RpcError) { - return Promise.reject(this.data.inputMessage); + + inClass = true + classStart = i + reClassStart = re.length + re += c + continue + + case ']': + // a right bracket shall lose its special + // meaning and represent itself in + // a bracket expression if it occurs + // first in the list. -- POSIX.2 2.8.3.2 + if (i === classStart + 1 || !inClass) { + re += '\\' + c + escaping = false + continue } - const delayMs = this.data.inputMessage === undefined - ? 10 - : this.data.inputMessage; - return Promise.resolve(undefined) - .then(() => { - this._sent.push(message); - }) - .then(delay(delayMs, this.abort)); - } - complete() { - if (this.data.inputComplete instanceof rpc_error_1.RpcError) { - return Promise.reject(this.data.inputComplete); + + // handle the case where we left a class open. + // "[z-a]" is valid, equivalent to "\[z-a\]" + // split where the last [ was, make sure we don't have + // an invalid re. if so, re-walk the contents of the + // would-be class to re-translate any characters that + // were passed through as-is + // TODO: It would probably be faster to determine this + // without a try/catch and a new RegExp, but it's tricky + // to do safely. For now, this is safe and works. + var cs = pattern.substring(classStart + 1, i) + try { + RegExp('[' + cs + ']') + } catch (er) { + // not a valid class! + var sp = this.parse(cs, SUBPARSE) + re = re.substr(0, reClassStart) + '\\[' + sp[0] + '\\]' + hasMagic = hasMagic || sp[1] + inClass = false + continue } - const delayMs = this.data.inputComplete === undefined - ? 10 - : this.data.inputComplete; - return Promise.resolve(undefined) - .then(() => { - this._completed = true; - }) - .then(delay(delayMs, this.abort)); - } -} + // finish up the class. + hasMagic = true + inClass = false + re += c + continue -/***/ }), + default: + // swallow any state char that wasn't consumed + clearStateChar() -/***/ 9288: -/***/ (function(__unused_webpack_module, exports) { + if (escaping) { + // no need + escaping = false + } else if (reSpecials[c] + && !(c === '^' && inClass)) { + re += '\\' + } + re += c -var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { - function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } - return new (P || (P = Promise))(function (resolve, reject) { - function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } - function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } + } // switch + } // for + + // handle the case where we left a class open. + // "[abc" is valid, equivalent to "\[abc" + if (inClass) { + // split where the last [ was, and escape it + // this is a huge pita. We now have to re-walk + // the contents of the would-be class to re-translate + // any characters that were passed through as-is + cs = pattern.substr(classStart + 1) + sp = this.parse(cs, SUBPARSE) + re = re.substr(0, reClassStart) + '\\[' + sp[0] + hasMagic = hasMagic || sp[1] + } + + // handle the case where we had a +( thing at the *end* + // of the pattern. + // each pattern list stack adds 3 chars, and we need to go through + // and escape any | chars that were passed through as-is for the regexp. + // Go through and escape them, taking care not to double-escape any + // | chars that were already escaped. + for (pl = patternListStack.pop(); pl; pl = patternListStack.pop()) { + var tail = re.slice(pl.reStart + pl.open.length) + this.debug('setting tail', re, pl) + // maybe some even number of \, then maybe 1 \, followed by a | + tail = tail.replace(/((?:\\{2}){0,64})(\\?)\|/g, function (_, $1, $2) { + if (!$2) { + // the | isn't already escaped, so escape it. + $2 = '\\' + } + + // need to escape all those slashes *again*, without escaping the + // one that we need for escaping the | character. As it works out, + // escaping an even number of slashes can be done by simply repeating + // it exactly after itself. That's why this trick works. + // + // I am sorry that you have to see this. + return $1 + $1 + $2 + '|' + }) + + this.debug('tail=%j\n %s', tail, tail, pl, re) + var t = pl.type === '*' ? star + : pl.type === '?' ? qmark + : '\\' + pl.type + + hasMagic = true + re = re.slice(0, pl.reStart) + t + '\\(' + tail + } + + // handle trailing things that only matter at the very end. + clearStateChar() + if (escaping) { + // trailing \\ + re += '\\\\' + } + + // only need to apply the nodot start if the re starts with + // something that could conceivably capture a dot + var addPatternStart = false + switch (re.charAt(0)) { + case '[': case '.': case '(': addPatternStart = true + } + + // Hack to work around lack of negative lookbehind in JS + // A pattern like: *.!(x).!(y|z) needs to ensure that a name + // like 'a.xyz.yz' doesn't match. So, the first negative + // lookahead, has to look ALL the way ahead, to the end of + // the pattern. + for (var n = negativeLists.length - 1; n > -1; n--) { + var nl = negativeLists[n] + + var nlBefore = re.slice(0, nl.reStart) + var nlFirst = re.slice(nl.reStart, nl.reEnd - 8) + var nlLast = re.slice(nl.reEnd - 8, nl.reEnd) + var nlAfter = re.slice(nl.reEnd) + + nlLast += nlAfter + + // Handle nested stuff like *(*.js|!(*.json)), where open parens + // mean that we should *not* include the ) in the bit that is considered + // "after" the negated section. + var openParensBefore = nlBefore.split('(').length - 1 + var cleanAfter = nlAfter + for (i = 0; i < openParensBefore; i++) { + cleanAfter = cleanAfter.replace(/\)[+*?]?/, '') + } + nlAfter = cleanAfter + + var dollar = '' + if (nlAfter === '' && isSub !== SUBPARSE) { + dollar = '$' + } + var newRe = nlBefore + nlFirst + nlAfter + dollar + nlLast + re = newRe + } + + // if the re is not "" at this point, then we need to make sure + // it doesn't match against an empty path part. + // Otherwise a/* will match a/, which it should not. + if (re !== '' && hasMagic) { + re = '(?=.)' + re + } + + if (addPatternStart) { + re = patternStart + re + } + + // parsing just a piece of a larger pattern. + if (isSub === SUBPARSE) { + return [re, hasMagic] + } + + // skip the regexp for non-magical patterns + // unescape anything in it, though, so that it'll be + // an exact match against a file etc. + if (!hasMagic) { + return globUnescape(pattern) + } + + var flags = options.nocase ? 'i' : '' + try { + var regExp = new RegExp('^' + re + '$', flags) + } catch (er) /* istanbul ignore next - should be impossible */ { + // If it was an invalid regular expression, then it can't match + // anything. This trick looks for a character after the end of + // the string, which is of course impossible, except in multi-line + // mode, but it's not a /m regex. + return new RegExp('$.') + } + + regExp._glob = pattern + regExp._src = re + + return regExp +} + +minimatch.makeRe = function (pattern, options) { + return new Minimatch(pattern, options || {}).makeRe() +} + +Minimatch.prototype.makeRe = makeRe +function makeRe () { + if (this.regexp || this.regexp === false) return this.regexp + + // at this point, this.set is a 2d array of partial + // pattern strings, or "**". + // + // It's better to use .match(). This function shouldn't + // be used, really, but it's pretty convenient sometimes, + // when you just want to work with a regex. + var set = this.set + + if (!set.length) { + this.regexp = false + return this.regexp + } + var options = this.options + + var twoStar = options.noglobstar ? star + : options.dot ? twoStarDot + : twoStarNoDot + var flags = options.nocase ? 'i' : '' + + var re = set.map(function (pattern) { + return pattern.map(function (p) { + return (p === GLOBSTAR) ? twoStar + : (typeof p === 'string') ? regExpEscape(p) + : p._src + }).join('\\\/') + }).join('|') + + // must match entire pattern + // ending in a * or ** will make it less strict. + re = '^(?:' + re + ')$' + + // can match anything, as long as it's not this. + if (this.negate) re = '^(?!' + re + ').*$' + + try { + this.regexp = new RegExp(re, flags) + } catch (ex) /* istanbul ignore next - should be impossible */ { + this.regexp = false + } + return this.regexp +} + +minimatch.match = function (list, pattern, options) { + options = options || {} + var mm = new Minimatch(pattern, options) + list = list.filter(function (f) { + return mm.match(f) + }) + if (mm.options.nonull && !list.length) { + list.push(pattern) + } + return list +} + +Minimatch.prototype.match = function match (f, partial) { + if (typeof partial === 'undefined') partial = this.partial + this.debug('match', f, this.pattern) + // short-circuit in the case of busted things. + // comments, etc. + if (this.comment) return false + if (this.empty) return f === '' + + if (f === '/' && partial) return true + + var options = this.options + + // windows: need to use /, not \ + if (path.sep !== '/') { + f = f.split(path.sep).join('/') + } + + // treat the test path as a set of pathparts. + f = f.split(slashSplit) + this.debug(this.pattern, 'split', f) + + // just ONE of the pattern sets in this.set needs to match + // in order for it to be valid. If negating, then just one + // match means that we have failed. + // Either way, return on the first hit. + + var set = this.set + this.debug(this.pattern, 'set', set) + + // Find the basename of the path by looking for the last non-empty segment + var filename + var i + for (i = f.length - 1; i >= 0; i--) { + filename = f[i] + if (filename) break + } + + for (i = 0; i < set.length; i++) { + var pattern = set[i] + var file = f + if (options.matchBase && pattern.length === 1) { + file = [filename] + } + var hit = this.matchOne(file, pattern, partial) + if (hit) { + if (options.flipNegate) return true + return !this.negate + } + } + + // didn't get any hits. this is success if it's a negative + // pattern, failure otherwise. + if (options.flipNegate) return false + return this.negate +} + +// set partial to true to test if, for example, +// "/a/b" matches the start of "/*/b/*/d" +// Partial means, if you run out of file before you run +// out of pattern, then that's fine, as long as all +// the parts match. +Minimatch.prototype.matchOne = function (file, pattern, partial) { + if (pattern.indexOf(GLOBSTAR) !== -1) { + return this._matchGlobstar(file, pattern, partial, 0, 0) + } + return this._matchOne(file, pattern, partial, 0, 0) +} + +Minimatch.prototype._matchGlobstar = function (file, pattern, partial, fileIndex, patternIndex) { + var i + + // find first globstar from patternIndex + var firstgs = -1 + for (i = patternIndex; i < pattern.length; i++) { + if (pattern[i] === GLOBSTAR) { firstgs = i; break } + } + + // find last globstar + var lastgs = -1 + for (i = pattern.length - 1; i >= 0; i--) { + if (pattern[i] === GLOBSTAR) { lastgs = i; break } + } + + var head = pattern.slice(patternIndex, firstgs) + var body = partial ? pattern.slice(firstgs + 1) : pattern.slice(firstgs + 1, lastgs) + var tail = partial ? [] : pattern.slice(lastgs + 1) + + // check the head + if (head.length) { + var fileHead = file.slice(fileIndex, fileIndex + head.length) + if (!this._matchOne(fileHead, head, partial, 0, 0)) { + return false + } + fileIndex += head.length + } + + // check the tail + var fileTailMatch = 0 + if (tail.length) { + if (tail.length + fileIndex > file.length) return false + + var tailStart = file.length - tail.length + if (this._matchOne(file, tail, partial, tailStart, 0)) { + fileTailMatch = tail.length + } else { + // affordance for stuff like a/**/* matching a/b/ + if (file[file.length - 1] !== '' || + fileIndex + tail.length === file.length) { + return false + } + tailStart-- + if (!this._matchOne(file, tail, partial, tailStart, 0)) { + return false + } + fileTailMatch = tail.length + 1 + } + } + + // if body is empty (single ** between head and tail) + if (!body.length) { + var sawSome = !!fileTailMatch + for (i = fileIndex; i < file.length - fileTailMatch; i++) { + var f = String(file[i]) + sawSome = true + if (f === '.' || f === '..' || + (!this.options.dot && f.charAt(0) === '.')) { + return false + } + } + return partial || sawSome + } + + // split body into segments at each GLOBSTAR + var bodySegments = [[[], 0]] + var currentBody = bodySegments[0] + var nonGsParts = 0 + var nonGsPartsSums = [0] + for (var bi = 0; bi < body.length; bi++) { + var b = body[bi] + if (b === GLOBSTAR) { + nonGsPartsSums.push(nonGsParts) + currentBody = [[], 0] + bodySegments.push(currentBody) + } else { + currentBody[0].push(b) + nonGsParts++ + } + } + + var idx = bodySegments.length - 1 + var fileLength = file.length - fileTailMatch + for (var si = 0; si < bodySegments.length; si++) { + bodySegments[si][1] = fileLength - + (nonGsPartsSums[idx--] + bodySegments[si][0].length) + } + + return !!this._matchGlobStarBodySections( + file, bodySegments, fileIndex, 0, partial, 0, !!fileTailMatch + ) +} + +// return false for "nope, not matching" +// return null for "not matching, cannot keep trying" +Minimatch.prototype._matchGlobStarBodySections = function ( + file, bodySegments, fileIndex, bodyIndex, partial, globStarDepth, sawTail +) { + var bs = bodySegments[bodyIndex] + if (!bs) { + // just make sure there are no bad dots + for (var i = fileIndex; i < file.length; i++) { + sawTail = true + var f = file[i] + if (f === '.' || f === '..' || + (!this.options.dot && f.charAt(0) === '.')) { + return false + } + } + return sawTail + } + + var body = bs[0] + var after = bs[1] + while (fileIndex <= after) { + var m = this._matchOne( + file.slice(0, fileIndex + body.length), + body, + partial, + fileIndex, + 0 + ) + // if limit exceeded, no match. intentional false negative, + // acceptable break in correctness for security. + if (m && globStarDepth < this.maxGlobstarRecursion) { + var sub = this._matchGlobStarBodySections( + file, bodySegments, + fileIndex + body.length, bodyIndex + 1, + partial, globStarDepth + 1, sawTail + ) + if (sub !== false) { + return sub + } + } + var f = file[fileIndex] + if (f === '.' || f === '..' || + (!this.options.dot && f.charAt(0) === '.')) { + return false + } + fileIndex++ + } + return partial || null +} + +Minimatch.prototype._matchOne = function (file, pattern, partial, fileIndex, patternIndex) { + var fi, pi, fl, pl + for ( + fi = fileIndex, pi = patternIndex, fl = file.length, pl = pattern.length + ; (fi < fl) && (pi < pl) + ; fi++, pi++ + ) { + this.debug('matchOne loop') + var p = pattern[pi] + var f = file[fi] + + this.debug(pattern, p, f) + + // should be impossible. + // some invalid regexp stuff in the set. + /* istanbul ignore if */ + if (p === false || p === GLOBSTAR) return false + + // something other than ** + // non-magic patterns just have to match exactly + // patterns with magic have been turned into regexps. + var hit + if (typeof p === 'string') { + hit = f === p + this.debug('string match', p, f, hit) + } else { + hit = f.match(p) + this.debug('pattern match', p, f, hit) + } + + if (!hit) return false + } + + // now either we fell off the end of the pattern, or we're done. + if (fi === fl && pi === pl) { + // ran out of pattern and filename at the same time. + // an exact hit! + return true + } else if (fi === fl) { + // ran out of file, but still had pattern left. + // this is ok if we're doing the match as part of + // a glob fs traversal. + return partial + } else /* istanbul ignore else */ if (pi === pl) { + // ran out of pattern, still have file left. + // this is only acceptable if we're on the very last + // empty segment of a file with a trailing slash. + // a/* should match a/b/ + return (fi === fl - 1) && (file[fi] === '') + } + + // should be unreachable. + /* istanbul ignore next */ + throw new Error('wtf?') +} + +// replace stuff like \* with * +function globUnescape (s) { + return s.replace(/\\(.)/g, '$1') +} + +function regExpEscape (s) { + return s.replace(/[-[\]{}()*+?.,\\^$|#\s]/g, '\\$&') +} + + +/***/ }), + +/***/ 7889: +/***/ (function(__unused_webpack_module, exports) { + + +var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { + function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } + return new (P || (P = Promise))(function (resolve, reject) { + function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } + function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } step((generator = generator.apply(thisArg, _arguments || [])).next()); }); }; Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.UnaryCall = void 0; +exports.ClientStreamingCall = void 0; /** - * A unary RPC call. Unary means there is exactly one input message and - * exactly one output message unless an error occurred. + * A client streaming RPC call. This means that the clients sends 0, 1, or + * more messages to the server, and the server replies with exactly one + * message. */ -class UnaryCall { +class ClientStreamingCall { constructor(method, requestHeaders, request, headers, response, status, trailers) { this.method = method; this.requestHeaders = requestHeaders; - this.request = request; + this.requests = request; this.headers = headers; this.response = response; this.status = status; this.trailers = trailers; } /** - * If you are only interested in the final outcome of this call, - * you can await it to receive a `FinishedUnaryCall`. + * Instead of awaiting the response status and trailers, you can + * just as well await this call itself to receive the server outcome. + * Note that it may still be valid to send more request messages. */ then(onfulfilled, onrejected) { return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); @@ -1204,7 +1057,6 @@ class UnaryCall { return { method: this.method, requestHeaders: this.requestHeaders, - request: this.request, headers, response, status, @@ -1213,1902 +1065,1995 @@ class UnaryCall { }); } } -exports.UnaryCall = UnaryCall; +exports.ClientStreamingCall = ClientStreamingCall; /***/ }), -/***/ 8602: +/***/ 1409: /***/ ((__unused_webpack_module, exports) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.assertFloat32 = exports.assertUInt32 = exports.assertInt32 = exports.assertNever = exports.assert = void 0; -/** - * assert that condition is true or throw error (with message) +exports.Deferred = exports.DeferredState = void 0; +var DeferredState; +(function (DeferredState) { + DeferredState[DeferredState["PENDING"] = 0] = "PENDING"; + DeferredState[DeferredState["REJECTED"] = 1] = "REJECTED"; + DeferredState[DeferredState["RESOLVED"] = 2] = "RESOLVED"; +})(DeferredState = exports.DeferredState || (exports.DeferredState = {})); +/** + * A deferred promise. This is a "controller" for a promise, which lets you + * pass a promise around and reject or resolve it from the outside. + * + * Warning: This class is to be used with care. Using it can make code very + * difficult to read. It is intended for use in library code that exposes + * promises, not for regular business logic. */ -function assert(condition, msg) { - if (!condition) { - throw new Error(msg); +class Deferred { + /** + * @param preventUnhandledRejectionWarning - prevents the warning + * "Unhandled Promise rejection" by adding a noop rejection handler. + * Working with calls returned from the runtime-rpc package in an + * async function usually means awaiting one call property after + * the other. This means that the "status" is not being awaited when + * an earlier await for the "headers" is rejected. This causes the + * "unhandled promise reject" warning. A more correct behaviour for + * calls might be to become aware whether at least one of the + * promises is handled and swallow the rejection warning for the + * others. + */ + constructor(preventUnhandledRejectionWarning = true) { + this._state = DeferredState.PENDING; + this._promise = new Promise((resolve, reject) => { + this._resolve = resolve; + this._reject = reject; + }); + if (preventUnhandledRejectionWarning) { + this._promise.catch(_ => { }); + } + } + /** + * Get the current state of the promise. + */ + get state() { + return this._state; + } + /** + * Get the deferred promise. + */ + get promise() { + return this._promise; + } + /** + * Resolve the promise. Throws if the promise is already resolved or rejected. + */ + resolve(value) { + if (this.state !== DeferredState.PENDING) + throw new Error(`cannot resolve ${DeferredState[this.state].toLowerCase()}`); + this._resolve(value); + this._state = DeferredState.RESOLVED; + } + /** + * Reject the promise. Throws if the promise is already resolved or rejected. + */ + reject(reason) { + if (this.state !== DeferredState.PENDING) + throw new Error(`cannot reject ${DeferredState[this.state].toLowerCase()}`); + this._reject(reason); + this._state = DeferredState.REJECTED; + } + /** + * Resolve the promise. Ignore if not pending. + */ + resolvePending(val) { + if (this._state === DeferredState.PENDING) + this.resolve(val); + } + /** + * Reject the promise. Ignore if not pending. + */ + rejectPending(reason) { + if (this._state === DeferredState.PENDING) + this.reject(reason); } } -exports.assert = assert; +exports.Deferred = Deferred; + + +/***/ }), + +/***/ 6826: +/***/ (function(__unused_webpack_module, exports) { + + +var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { + function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } + return new (P || (P = Promise))(function (resolve, reject) { + function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } + function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } + function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } + step((generator = generator.apply(thisArg, _arguments || [])).next()); + }); +}; +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.DuplexStreamingCall = void 0; /** - * assert that value cannot exist = type `never`. throw runtime error if it does. + * A duplex streaming RPC call. This means that the clients sends an + * arbitrary amount of messages to the server, while at the same time, + * the server sends an arbitrary amount of messages to the client. */ -function assertNever(value, msg) { - throw new Error(msg !== null && msg !== void 0 ? msg : 'Unexpected object: ' + value); -} -exports.assertNever = assertNever; -const FLOAT32_MAX = 3.4028234663852886e+38, FLOAT32_MIN = -3.4028234663852886e+38, UINT32_MAX = 0xFFFFFFFF, INT32_MAX = 0X7FFFFFFF, INT32_MIN = -0X80000000; -function assertInt32(arg) { - if (typeof arg !== "number") - throw new Error('invalid int 32: ' + typeof arg); - if (!Number.isInteger(arg) || arg > INT32_MAX || arg < INT32_MIN) - throw new Error('invalid int 32: ' + arg); -} -exports.assertInt32 = assertInt32; -function assertUInt32(arg) { - if (typeof arg !== "number") - throw new Error('invalid uint 32: ' + typeof arg); - if (!Number.isInteger(arg) || arg > UINT32_MAX || arg < 0) - throw new Error('invalid uint 32: ' + arg); -} -exports.assertUInt32 = assertUInt32; -function assertFloat32(arg) { - if (typeof arg !== "number") - throw new Error('invalid float 32: ' + typeof arg); - if (!Number.isFinite(arg)) - return; - if (arg > FLOAT32_MAX || arg < FLOAT32_MIN) - throw new Error('invalid float 32: ' + arg); +class DuplexStreamingCall { + constructor(method, requestHeaders, request, headers, response, status, trailers) { + this.method = method; + this.requestHeaders = requestHeaders; + this.requests = request; + this.headers = headers; + this.responses = response; + this.status = status; + this.trailers = trailers; + } + /** + * Instead of awaiting the response status and trailers, you can + * just as well await this call itself to receive the server outcome. + * Note that it may still be valid to send more request messages. + */ + then(onfulfilled, onrejected) { + return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); + } + promiseFinished() { + return __awaiter(this, void 0, void 0, function* () { + let [headers, status, trailers] = yield Promise.all([this.headers, this.status, this.trailers]); + return { + method: this.method, + requestHeaders: this.requestHeaders, + headers, + status, + trailers, + }; + }); + } } -exports.assertFloat32 = assertFloat32; +exports.DuplexStreamingCall = DuplexStreamingCall; /***/ }), -/***/ 6335: -/***/ ((__unused_webpack_module, exports) => { +/***/ 4420: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + +var __webpack_unused_export__; + +// Public API of the rpc runtime. +// Note: we do not use `export * from ...` to help tree shakers, +// webpack verbose output hints that this should be useful +__webpack_unused_export__ = ({ value: true }); +var service_type_1 = __nccwpck_require__(6892); +Object.defineProperty(exports, "C0", ({ enumerable: true, get: function () { return service_type_1.ServiceType; } })); +var reflection_info_1 = __nccwpck_require__(2496); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return reflection_info_1.readMethodOptions; } }); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return reflection_info_1.readMethodOption; } }); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return reflection_info_1.readServiceOption; } }); +var rpc_error_1 = __nccwpck_require__(8636); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_error_1.RpcError; } }); +var rpc_options_1 = __nccwpck_require__(8576); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_options_1.mergeRpcOptions; } }); +var rpc_output_stream_1 = __nccwpck_require__(2726); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_output_stream_1.RpcOutputStreamController; } }); +var test_transport_1 = __nccwpck_require__(9122); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return test_transport_1.TestTransport; } }); +var deferred_1 = __nccwpck_require__(1409); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return deferred_1.Deferred; } }); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return deferred_1.DeferredState; } }); +var duplex_streaming_call_1 = __nccwpck_require__(6826); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return duplex_streaming_call_1.DuplexStreamingCall; } }); +var client_streaming_call_1 = __nccwpck_require__(7889); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return client_streaming_call_1.ClientStreamingCall; } }); +var server_streaming_call_1 = __nccwpck_require__(6173); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return server_streaming_call_1.ServerStreamingCall; } }); +var unary_call_1 = __nccwpck_require__(9288); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return unary_call_1.UnaryCall; } }); +var rpc_interceptor_1 = __nccwpck_require__(2849); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackIntercept; } }); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackDuplexStreamingInterceptors; } }); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackClientStreamingInterceptors; } }); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackServerStreamingInterceptors; } }); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackUnaryInterceptors; } }); +var server_call_context_1 = __nccwpck_require__(3352); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return server_call_context_1.ServerCallContextController; } }); + + +/***/ }), + +/***/ 2496: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.base64encode = exports.base64decode = void 0; -// lookup table from base64 character to byte -let encTable = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/'.split(''); -// lookup table from base64 character *code* to byte because lookup by number is fast -let decTable = []; -for (let i = 0; i < encTable.length; i++) - decTable[encTable[i].charCodeAt(0)] = i; -// support base64url variants -decTable["-".charCodeAt(0)] = encTable.indexOf("+"); -decTable["_".charCodeAt(0)] = encTable.indexOf("/"); +exports.readServiceOption = exports.readMethodOption = exports.readMethodOptions = exports.normalizeMethodInfo = void 0; +const runtime_1 = __nccwpck_require__(8886); /** - * Decodes a base64 string to a byte array. - * - * - ignores white-space, including line breaks and tabs - * - allows inner padding (can decode concatenated base64 strings) - * - does not require padding - * - understands base64url encoding: - * "-" instead of "+", - * "_" instead of "/", - * no padding + * Turns PartialMethodInfo into MethodInfo. */ -function base64decode(base64Str) { - // estimate byte size, not accounting for inner padding and whitespace - let es = base64Str.length * 3 / 4; - // if (es % 3 !== 0) - // throw new Error('invalid base64 string'); - if (base64Str[base64Str.length - 2] == '=') - es -= 2; - else if (base64Str[base64Str.length - 1] == '=') - es -= 1; - let bytes = new Uint8Array(es), bytePos = 0, // position in byte array - groupPos = 0, // position in base64 group - b, // current byte - p = 0 // previous byte - ; - for (let i = 0; i < base64Str.length; i++) { - b = decTable[base64Str.charCodeAt(i)]; - if (b === undefined) { - // noinspection FallThroughInSwitchStatementJS - switch (base64Str[i]) { - case '=': - groupPos = 0; // reset state when padding found - case '\n': - case '\r': - case '\t': - case ' ': - continue; // skip white-space, and padding - default: - throw Error(`invalid base64 string.`); - } - } - switch (groupPos) { - case 0: - p = b; - groupPos = 1; - break; - case 1: - bytes[bytePos++] = p << 2 | (b & 48) >> 4; - p = b; - groupPos = 2; - break; - case 2: - bytes[bytePos++] = (p & 15) << 4 | (b & 60) >> 2; - p = b; - groupPos = 3; - break; - case 3: - bytes[bytePos++] = (p & 3) << 6 | b; - groupPos = 0; - break; - } - } - if (groupPos == 1) - throw Error(`invalid base64 string.`); - return bytes.subarray(0, bytePos); +function normalizeMethodInfo(method, service) { + var _a, _b, _c; + let m = method; + m.service = service; + m.localName = (_a = m.localName) !== null && _a !== void 0 ? _a : runtime_1.lowerCamelCase(m.name); + // noinspection PointlessBooleanExpressionJS + m.serverStreaming = !!m.serverStreaming; + // noinspection PointlessBooleanExpressionJS + m.clientStreaming = !!m.clientStreaming; + m.options = (_b = m.options) !== null && _b !== void 0 ? _b : {}; + m.idempotency = (_c = m.idempotency) !== null && _c !== void 0 ? _c : undefined; + return m; } -exports.base64decode = base64decode; +exports.normalizeMethodInfo = normalizeMethodInfo; /** - * Encodes a byte array to a base64 string. - * Adds padding at the end. - * Does not insert newlines. + * Read custom method options from a generated service client. + * + * @deprecated use readMethodOption() */ -function base64encode(bytes) { - let base64 = '', groupPos = 0, // position in base64 group - b, // current byte - p = 0; // carry over from previous byte - for (let i = 0; i < bytes.length; i++) { - b = bytes[i]; - switch (groupPos) { - case 0: - base64 += encTable[b >> 2]; - p = (b & 3) << 4; - groupPos = 1; - break; - case 1: - base64 += encTable[p | b >> 4]; - p = (b & 15) << 2; - groupPos = 2; - break; - case 2: - base64 += encTable[p | b >> 6]; - base64 += encTable[b & 63]; - groupPos = 0; - break; - } +function readMethodOptions(service, methodName, extensionName, extensionType) { + var _a; + const options = (_a = service.methods.find((m, i) => m.localName === methodName || i === methodName)) === null || _a === void 0 ? void 0 : _a.options; + return options && options[extensionName] ? extensionType.fromJson(options[extensionName]) : undefined; +} +exports.readMethodOptions = readMethodOptions; +function readMethodOption(service, methodName, extensionName, extensionType) { + var _a; + const options = (_a = service.methods.find((m, i) => m.localName === methodName || i === methodName)) === null || _a === void 0 ? void 0 : _a.options; + if (!options) { + return undefined; } - // padding required? - if (groupPos) { - base64 += encTable[p]; - base64 += '='; - if (groupPos == 1) - base64 += '='; + const optionVal = options[extensionName]; + if (optionVal === undefined) { + return optionVal; } - return base64; + return extensionType ? extensionType.fromJson(optionVal) : optionVal; } -exports.base64encode = base64encode; +exports.readMethodOption = readMethodOption; +function readServiceOption(service, extensionName, extensionType) { + const options = service.options; + if (!options) { + return undefined; + } + const optionVal = options[extensionName]; + if (optionVal === undefined) { + return optionVal; + } + return extensionType ? extensionType.fromJson(optionVal) : optionVal; +} +exports.readServiceOption = readServiceOption; /***/ }), -/***/ 4816: +/***/ 8636: /***/ ((__unused_webpack_module, exports) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.WireType = exports.mergeBinaryOptions = exports.UnknownFieldHandler = void 0; +exports.RpcError = void 0; /** - * This handler implements the default behaviour for unknown fields. - * When reading data, unknown fields are stored on the message, in a - * symbol property. - * When writing data, the symbol property is queried and unknown fields - * are serialized into the output again. + * An error that occurred while calling a RPC method. */ -var UnknownFieldHandler; -(function (UnknownFieldHandler) { - /** - * The symbol used to store unknown fields for a message. - * The property must conform to `UnknownFieldContainer`. - */ - UnknownFieldHandler.symbol = Symbol.for("protobuf-ts/unknown"); - /** - * Store an unknown field during binary read directly on the message. - * This method is compatible with `BinaryReadOptions.readUnknownField`. - */ - UnknownFieldHandler.onRead = (typeName, message, fieldNo, wireType, data) => { - let container = is(message) ? message[UnknownFieldHandler.symbol] : message[UnknownFieldHandler.symbol] = []; - container.push({ no: fieldNo, wireType, data }); - }; - /** - * Write unknown fields stored for the message to the writer. - * This method is compatible with `BinaryWriteOptions.writeUnknownFields`. - */ - UnknownFieldHandler.onWrite = (typeName, message, writer) => { - for (let { no, wireType, data } of UnknownFieldHandler.list(message)) - writer.tag(no, wireType).raw(data); - }; - /** - * List unknown fields stored for the message. - * Note that there may be multiples fields with the same number. - */ - UnknownFieldHandler.list = (message, fieldNo) => { - if (is(message)) { - let all = message[UnknownFieldHandler.symbol]; - return fieldNo ? all.filter(uf => uf.no == fieldNo) : all; +class RpcError extends Error { + constructor(message, code = 'UNKNOWN', meta) { + super(message); + this.name = 'RpcError'; + // see https://www.typescriptlang.org/docs/handbook/release-notes/typescript-2-2.html#example + Object.setPrototypeOf(this, new.target.prototype); + this.code = code; + this.meta = meta !== null && meta !== void 0 ? meta : {}; + } + toString() { + const l = [this.name + ': ' + this.message]; + if (this.code) { + l.push(''); + l.push('Code: ' + this.code); } - return []; - }; - /** - * Returns the last unknown field by field number. - */ - UnknownFieldHandler.last = (message, fieldNo) => UnknownFieldHandler.list(message, fieldNo).slice(-1)[0]; - const is = (message) => message && Array.isArray(message[UnknownFieldHandler.symbol]); -})(UnknownFieldHandler = exports.UnknownFieldHandler || (exports.UnknownFieldHandler = {})); -/** - * Merges binary write or read options. Later values override earlier values. - */ -function mergeBinaryOptions(a, b) { - return Object.assign(Object.assign({}, a), b); + if (this.serviceName && this.methodName) { + l.push('Method: ' + this.serviceName + '/' + this.methodName); + } + let m = Object.entries(this.meta); + if (m.length) { + l.push(''); + l.push('Meta:'); + for (let [k, v] of m) { + l.push(` ${k}: ${v}`); + } + } + return l.join('\n'); + } } -exports.mergeBinaryOptions = mergeBinaryOptions; -/** - * Protobuf binary format wire types. - * - * A wire type provides just enough information to find the length of the - * following value. - * - * See https://developers.google.com/protocol-buffers/docs/encoding#structure - */ -var WireType; -(function (WireType) { - /** - * Used for int32, int64, uint32, uint64, sint32, sint64, bool, enum - */ - WireType[WireType["Varint"] = 0] = "Varint"; - /** - * Used for fixed64, sfixed64, double. - * Always 8 bytes with little-endian byte order. - */ - WireType[WireType["Bit64"] = 1] = "Bit64"; - /** - * Used for string, bytes, embedded messages, packed repeated fields - * - * Only repeated numeric types (types which use the varint, 32-bit, - * or 64-bit wire types) can be packed. In proto3, such fields are - * packed by default. - */ - WireType[WireType["LengthDelimited"] = 2] = "LengthDelimited"; - /** - * Used for groups - * @deprecated - */ - WireType[WireType["StartGroup"] = 3] = "StartGroup"; - /** - * Used for groups - * @deprecated - */ - WireType[WireType["EndGroup"] = 4] = "EndGroup"; - /** - * Used for fixed32, sfixed32, float. - * Always 4 bytes with little-endian byte order. - */ - WireType[WireType["Bit32"] = 5] = "Bit32"; -})(WireType = exports.WireType || (exports.WireType = {})); +exports.RpcError = RpcError; /***/ }), -/***/ 2889: +/***/ 2849: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.BinaryReader = exports.binaryReadOptions = void 0; -const binary_format_contract_1 = __nccwpck_require__(4816); -const pb_long_1 = __nccwpck_require__(1753); -const goog_varint_1 = __nccwpck_require__(3223); -const defaultsRead = { - readUnknownField: true, - readerFactory: bytes => new BinaryReader(bytes), -}; +exports.stackDuplexStreamingInterceptors = exports.stackClientStreamingInterceptors = exports.stackServerStreamingInterceptors = exports.stackUnaryInterceptors = exports.stackIntercept = void 0; +const runtime_1 = __nccwpck_require__(8886); /** - * Make options for reading binary data form partial options. - */ -function binaryReadOptions(options) { - return options ? Object.assign(Object.assign({}, defaultsRead), options) : defaultsRead; -} -exports.binaryReadOptions = binaryReadOptions; -class BinaryReader { - constructor(buf, textDecoder) { - this.varint64 = goog_varint_1.varint64read; // dirty cast for `this` - /** - * Read a `uint32` field, an unsigned 32 bit varint. - */ - this.uint32 = goog_varint_1.varint32read; // dirty cast for `this` and access to protected `buf` - this.buf = buf; - this.len = buf.length; - this.pos = 0; - this.view = new DataView(buf.buffer, buf.byteOffset, buf.byteLength); - this.textDecoder = textDecoder !== null && textDecoder !== void 0 ? textDecoder : new TextDecoder("utf-8", { - fatal: true, - ignoreBOM: true, - }); + * Creates a "stack" of of all interceptors specified in the given `RpcOptions`. + * Used by generated client implementations. + * @internal + */ +function stackIntercept(kind, transport, method, options, input) { + var _a, _b, _c, _d; + if (kind == "unary") { + let tail = (mtd, inp, opt) => transport.unary(mtd, inp, opt); + for (const curr of ((_a = options.interceptors) !== null && _a !== void 0 ? _a : []).filter(i => i.interceptUnary).reverse()) { + const next = tail; + tail = (mtd, inp, opt) => curr.interceptUnary(next, mtd, inp, opt); + } + return tail(method, input, options); } - /** - * Reads a tag - field number and wire type. - */ - tag() { - let tag = this.uint32(), fieldNo = tag >>> 3, wireType = tag & 7; - if (fieldNo <= 0 || wireType < 0 || wireType > 5) - throw new Error("illegal tag: field no " + fieldNo + " wire type " + wireType); - return [fieldNo, wireType]; + if (kind == "serverStreaming") { + let tail = (mtd, inp, opt) => transport.serverStreaming(mtd, inp, opt); + for (const curr of ((_b = options.interceptors) !== null && _b !== void 0 ? _b : []).filter(i => i.interceptServerStreaming).reverse()) { + const next = tail; + tail = (mtd, inp, opt) => curr.interceptServerStreaming(next, mtd, inp, opt); + } + return tail(method, input, options); } - /** - * Skip one element on the wire and return the skipped data. - * Supports WireType.StartGroup since v2.0.0-alpha.23. - */ - skip(wireType) { - let start = this.pos; - // noinspection FallThroughInSwitchStatementJS - switch (wireType) { - case binary_format_contract_1.WireType.Varint: - while (this.buf[this.pos++] & 0x80) { - // ignore - } + if (kind == "clientStreaming") { + let tail = (mtd, opt) => transport.clientStreaming(mtd, opt); + for (const curr of ((_c = options.interceptors) !== null && _c !== void 0 ? _c : []).filter(i => i.interceptClientStreaming).reverse()) { + const next = tail; + tail = (mtd, opt) => curr.interceptClientStreaming(next, mtd, opt); + } + return tail(method, options); + } + if (kind == "duplex") { + let tail = (mtd, opt) => transport.duplex(mtd, opt); + for (const curr of ((_d = options.interceptors) !== null && _d !== void 0 ? _d : []).filter(i => i.interceptDuplex).reverse()) { + const next = tail; + tail = (mtd, opt) => curr.interceptDuplex(next, mtd, opt); + } + return tail(method, options); + } + runtime_1.assertNever(kind); +} +exports.stackIntercept = stackIntercept; +/** + * @deprecated replaced by `stackIntercept()`, still here to support older generated code + */ +function stackUnaryInterceptors(transport, method, input, options) { + return stackIntercept("unary", transport, method, options, input); +} +exports.stackUnaryInterceptors = stackUnaryInterceptors; +/** + * @deprecated replaced by `stackIntercept()`, still here to support older generated code + */ +function stackServerStreamingInterceptors(transport, method, input, options) { + return stackIntercept("serverStreaming", transport, method, options, input); +} +exports.stackServerStreamingInterceptors = stackServerStreamingInterceptors; +/** + * @deprecated replaced by `stackIntercept()`, still here to support older generated code + */ +function stackClientStreamingInterceptors(transport, method, options) { + return stackIntercept("clientStreaming", transport, method, options); +} +exports.stackClientStreamingInterceptors = stackClientStreamingInterceptors; +/** + * @deprecated replaced by `stackIntercept()`, still here to support older generated code + */ +function stackDuplexStreamingInterceptors(transport, method, options) { + return stackIntercept("duplex", transport, method, options); +} +exports.stackDuplexStreamingInterceptors = stackDuplexStreamingInterceptors; + + +/***/ }), + +/***/ 8576: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.mergeRpcOptions = void 0; +const runtime_1 = __nccwpck_require__(8886); +/** + * Merges custom RPC options with defaults. Returns a new instance and keeps + * the "defaults" and the "options" unmodified. + * + * Merges `RpcMetadata` "meta", overwriting values from "defaults" with + * values from "options". Does not append values to existing entries. + * + * Merges "jsonOptions", including "jsonOptions.typeRegistry", by creating + * a new array that contains types from "options.jsonOptions.typeRegistry" + * first, then types from "defaults.jsonOptions.typeRegistry". + * + * Merges "binaryOptions". + * + * Merges "interceptors" by creating a new array that contains interceptors + * from "defaults" first, then interceptors from "options". + * + * Works with objects that extend `RpcOptions`, but only if the added + * properties are of type Date, primitive like string, boolean, or Array + * of primitives. If you have other property types, you have to merge them + * yourself. + */ +function mergeRpcOptions(defaults, options) { + if (!options) + return defaults; + let o = {}; + copy(defaults, o); + copy(options, o); + for (let key of Object.keys(options)) { + let val = options[key]; + switch (key) { + case "jsonOptions": + o.jsonOptions = runtime_1.mergeJsonOptions(defaults.jsonOptions, o.jsonOptions); break; - case binary_format_contract_1.WireType.Bit64: - this.pos += 4; - case binary_format_contract_1.WireType.Bit32: - this.pos += 4; + case "binaryOptions": + o.binaryOptions = runtime_1.mergeBinaryOptions(defaults.binaryOptions, o.binaryOptions); break; - case binary_format_contract_1.WireType.LengthDelimited: - let len = this.uint32(); - this.pos += len; + case "meta": + o.meta = {}; + copy(defaults.meta, o.meta); + copy(options.meta, o.meta); break; - case binary_format_contract_1.WireType.StartGroup: - // From descriptor.proto: Group type is deprecated, not supported in proto3. - // But we must still be able to parse and treat as unknown. - let t; - while ((t = this.tag()[1]) !== binary_format_contract_1.WireType.EndGroup) { - this.skip(t); - } + case "interceptors": + o.interceptors = defaults.interceptors ? defaults.interceptors.concat(val) : val.concat(); break; - default: - throw new Error("cant skip wire type " + wireType); } - this.assertBounds(); - return this.buf.subarray(start, this.pos); } - /** - * Throws error if position in byte array is out of range. - */ - assertBounds() { - if (this.pos > this.len) - throw new RangeError("premature EOF"); + return o; +} +exports.mergeRpcOptions = mergeRpcOptions; +function copy(a, into) { + if (!a) + return; + let c = into; + for (let [k, v] of Object.entries(a)) { + if (v instanceof Date) + c[k] = new Date(v.getTime()); + else if (Array.isArray(v)) + c[k] = v.concat(); + else + c[k] = v; } - /** - * Read a `int32` field, a signed 32 bit varint. - */ - int32() { - return this.uint32() | 0; +} + + +/***/ }), + +/***/ 2726: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.RpcOutputStreamController = void 0; +const deferred_1 = __nccwpck_require__(1409); +const runtime_1 = __nccwpck_require__(8886); +/** + * A `RpcOutputStream` that you control. + */ +class RpcOutputStreamController { + constructor() { + this._lis = { + nxt: [], + msg: [], + err: [], + cmp: [], + }; + this._closed = false; + // --- RpcOutputStream async iterator API + // iterator state. + // is undefined when no iterator has been acquired yet. + this._itState = { q: [] }; } - /** - * Read a `sint32` field, a signed, zigzag-encoded 32-bit varint. - */ - sint32() { - let zze = this.uint32(); - // decode zigzag - return (zze >>> 1) ^ -(zze & 1); + // --- RpcOutputStream callback API + onNext(callback) { + return this.addLis(callback, this._lis.nxt); } - /** - * Read a `int64` field, a signed 64-bit varint. - */ - int64() { - return new pb_long_1.PbLong(...this.varint64()); + onMessage(callback) { + return this.addLis(callback, this._lis.msg); } - /** - * Read a `uint64` field, an unsigned 64-bit varint. - */ - uint64() { - return new pb_long_1.PbULong(...this.varint64()); + onError(callback) { + return this.addLis(callback, this._lis.err); } - /** - * Read a `sint64` field, a signed, zig-zag-encoded 64-bit varint. - */ - sint64() { - let [lo, hi] = this.varint64(); - // decode zig zag - let s = -(lo & 1); - lo = ((lo >>> 1 | (hi & 1) << 31) ^ s); - hi = (hi >>> 1 ^ s); - return new pb_long_1.PbLong(lo, hi); + onComplete(callback) { + return this.addLis(callback, this._lis.cmp); } - /** - * Read a `bool` field, a variant. - */ - bool() { - let [lo, hi] = this.varint64(); - return lo !== 0 || hi !== 0; + addLis(callback, list) { + list.push(callback); + return () => { + let i = list.indexOf(callback); + if (i >= 0) + list.splice(i, 1); + }; } - /** - * Read a `fixed32` field, an unsigned, fixed-length 32-bit integer. - */ - fixed32() { - return this.view.getUint32((this.pos += 4) - 4, true); + // remove all listeners + clearLis() { + for (let l of Object.values(this._lis)) + l.splice(0, l.length); } + // --- Controller API /** - * Read a `sfixed32` field, a signed, fixed-length 32-bit integer. + * Is this stream already closed by a completion or error? */ - sfixed32() { - return this.view.getInt32((this.pos += 4) - 4, true); + get closed() { + return this._closed !== false; } /** - * Read a `fixed64` field, an unsigned, fixed-length 64 bit integer. + * Emit message, close with error, or close successfully, but only one + * at a time. + * Can be used to wrap a stream by using the other stream's `onNext`. */ - fixed64() { - return new pb_long_1.PbULong(this.sfixed32(), this.sfixed32()); + notifyNext(message, error, complete) { + runtime_1.assert((message ? 1 : 0) + (error ? 1 : 0) + (complete ? 1 : 0) <= 1, 'only one emission at a time'); + if (message) + this.notifyMessage(message); + if (error) + this.notifyError(error); + if (complete) + this.notifyComplete(); } /** - * Read a `fixed64` field, a signed, fixed-length 64-bit integer. + * Emits a new message. Throws if stream is closed. + * + * Triggers onNext and onMessage callbacks. */ - sfixed64() { - return new pb_long_1.PbLong(this.sfixed32(), this.sfixed32()); + notifyMessage(message) { + runtime_1.assert(!this.closed, 'stream is closed'); + this.pushIt({ value: message, done: false }); + this._lis.msg.forEach(l => l(message)); + this._lis.nxt.forEach(l => l(message, undefined, false)); } /** - * Read a `float` field, 32-bit floating point number. + * Closes the stream with an error. Throws if stream is closed. + * + * Triggers onNext and onError callbacks. */ - float() { - return this.view.getFloat32((this.pos += 4) - 4, true); + notifyError(error) { + runtime_1.assert(!this.closed, 'stream is closed'); + this._closed = error; + this.pushIt(error); + this._lis.err.forEach(l => l(error)); + this._lis.nxt.forEach(l => l(undefined, error, false)); + this.clearLis(); } /** - * Read a `double` field, a 64-bit floating point number. + * Closes the stream successfully. Throws if stream is closed. + * + * Triggers onNext and onComplete callbacks. */ - double() { - return this.view.getFloat64((this.pos += 8) - 8, true); + notifyComplete() { + runtime_1.assert(!this.closed, 'stream is closed'); + this._closed = true; + this.pushIt({ value: null, done: true }); + this._lis.cmp.forEach(l => l()); + this._lis.nxt.forEach(l => l(undefined, undefined, true)); + this.clearLis(); } /** - * Read a `bytes` field, length-delimited arbitrary data. + * Creates an async iterator (that can be used with `for await {...}`) + * to consume the stream. + * + * Some things to note: + * - If an error occurs, the `for await` will throw it. + * - If an error occurred before the `for await` was started, `for await` + * will re-throw it. + * - If the stream is already complete, the `for await` will be empty. + * - If your `for await` consumes slower than the stream produces, + * for example because you are relaying messages in a slow operation, + * messages are queued. */ - bytes() { - let len = this.uint32(); - let start = this.pos; - this.pos += len; - this.assertBounds(); - return this.buf.subarray(start, start + len); + [Symbol.asyncIterator]() { + // if we are closed, we are definitely not receiving any more messages. + // but we can't let the iterator get stuck. we want to either: + // a) finish the new iterator immediately, because we are completed + // b) reject the new iterator, because we errored + if (this._closed === true) + this.pushIt({ value: null, done: true }); + else if (this._closed !== false) + this.pushIt(this._closed); + // the async iterator + return { + next: () => { + let state = this._itState; + runtime_1.assert(state, "bad state"); // if we don't have a state here, code is broken + // there should be no pending result. + // did the consumer call next() before we resolved our previous result promise? + runtime_1.assert(!state.p, "iterator contract broken"); + // did we produce faster than the iterator consumed? + // return the oldest result from the queue. + let first = state.q.shift(); + if (first) + return ("value" in first) ? Promise.resolve(first) : Promise.reject(first); + // we have no result ATM, but we promise one. + // as soon as we have a result, we must resolve promise. + state.p = new deferred_1.Deferred(); + return state.p.promise; + }, + }; } - /** - * Read a `string` field, length-delimited data converted to UTF-8 text. - */ - string() { - return this.textDecoder.decode(this.bytes()); + // "push" a new iterator result. + // this either resolves a pending promise, or enqueues the result. + pushIt(result) { + let state = this._itState; + // is the consumer waiting for us? + if (state.p) { + // yes, consumer is waiting for this promise. + const p = state.p; + runtime_1.assert(p.state == deferred_1.DeferredState.PENDING, "iterator contract broken"); + // resolve the promise + ("value" in result) ? p.resolve(result) : p.reject(result); + // must cleanup, otherwise iterator.next() would pick it up again. + delete state.p; + } + else { + // we are producing faster than the iterator consumes. + // push result onto queue. + state.q.push(result); + } } } -exports.BinaryReader = BinaryReader; +exports.RpcOutputStreamController = RpcOutputStreamController; /***/ }), -/***/ 3957: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { +/***/ 3352: +/***/ ((__unused_webpack_module, exports) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.BinaryWriter = exports.binaryWriteOptions = void 0; -const pb_long_1 = __nccwpck_require__(1753); -const goog_varint_1 = __nccwpck_require__(3223); -const assert_1 = __nccwpck_require__(8602); -const defaultsWrite = { - writeUnknownFields: true, - writerFactory: () => new BinaryWriter(), -}; -/** - * Make options for writing binary data form partial options. - */ -function binaryWriteOptions(options) { - return options ? Object.assign(Object.assign({}, defaultsWrite), options) : defaultsWrite; -} -exports.binaryWriteOptions = binaryWriteOptions; -class BinaryWriter { - constructor(textEncoder) { - /** - * Previous fork states. - */ - this.stack = []; - this.textEncoder = textEncoder !== null && textEncoder !== void 0 ? textEncoder : new TextEncoder(); - this.chunks = []; - this.buf = []; - } - /** - * Return all bytes written and reset this writer. - */ - finish() { - this.chunks.push(new Uint8Array(this.buf)); // flush the buffer - let len = 0; - for (let i = 0; i < this.chunks.length; i++) - len += this.chunks[i].length; - let bytes = new Uint8Array(len); - let offset = 0; - for (let i = 0; i < this.chunks.length; i++) { - bytes.set(this.chunks[i], offset); - offset += this.chunks[i].length; - } - this.chunks = []; - return bytes; +exports.ServerCallContextController = void 0; +class ServerCallContextController { + constructor(method, headers, deadline, sendResponseHeadersFn, defaultStatus = { code: 'OK', detail: '' }) { + this._cancelled = false; + this._listeners = []; + this.method = method; + this.headers = headers; + this.deadline = deadline; + this.trailers = {}; + this._sendRH = sendResponseHeadersFn; + this.status = defaultStatus; } /** - * Start a new fork for length-delimited data like a message - * or a packed repeated field. + * Set the call cancelled. * - * Must be joined later with `join()`. + * Invokes all callbacks registered with onCancel() and + * sets `cancelled = true`. */ - fork() { - this.stack.push({ chunks: this.chunks, buf: this.buf }); - this.chunks = []; - this.buf = []; - return this; + notifyCancelled() { + if (!this._cancelled) { + this._cancelled = true; + for (let l of this._listeners) { + l(); + } + } } /** - * Join the last fork. Write its length and bytes, then - * return to the previous state. + * Send response headers. */ - join() { - // get chunk of fork - let chunk = this.finish(); - // restore previous state - let prev = this.stack.pop(); - if (!prev) - throw new Error('invalid state, fork stack empty'); - this.chunks = prev.chunks; - this.buf = prev.buf; - // write length of chunk as varint - this.uint32(chunk.byteLength); - return this.raw(chunk); + sendResponseHeaders(data) { + this._sendRH(data); } /** - * Writes a tag (field number and wire type). + * Is the call cancelled? * - * Equivalent to `uint32( (fieldNo << 3 | type) >>> 0 )`. + * When the client closes the connection before the server + * is done, the call is cancelled. * - * Generated code should compute the tag ahead of time and call `uint32()`. - */ - tag(fieldNo, type) { - return this.uint32((fieldNo << 3 | type) >>> 0); - } - /** - * Write a chunk of raw bytes. - */ - raw(chunk) { - if (this.buf.length) { - this.chunks.push(new Uint8Array(this.buf)); - this.buf = []; - } - this.chunks.push(chunk); - return this; - } - /** - * Write a `uint32` value, an unsigned 32 bit varint. - */ - uint32(value) { - assert_1.assertUInt32(value); - // write value as varint 32, inlined for speed - while (value > 0x7f) { - this.buf.push((value & 0x7f) | 0x80); - value = value >>> 7; - } - this.buf.push(value); - return this; - } - /** - * Write a `int32` value, a signed 32 bit varint. - */ - int32(value) { - assert_1.assertInt32(value); - goog_varint_1.varint32write(value, this.buf); - return this; - } - /** - * Write a `bool` value, a variant. - */ - bool(value) { - this.buf.push(value ? 1 : 0); - return this; - } - /** - * Write a `bytes` value, length-delimited arbitrary data. - */ - bytes(value) { - this.uint32(value.byteLength); // write length of chunk as varint - return this.raw(value); - } - /** - * Write a `string` value, length-delimited data converted to UTF-8 text. - */ - string(value) { - let chunk = this.textEncoder.encode(value); - this.uint32(chunk.byteLength); // write length of chunk as varint - return this.raw(chunk); - } - /** - * Write a `float` value, 32-bit floating point number. - */ - float(value) { - assert_1.assertFloat32(value); - let chunk = new Uint8Array(4); - new DataView(chunk.buffer).setFloat32(0, value, true); - return this.raw(chunk); - } - /** - * Write a `double` value, a 64-bit floating point number. - */ - double(value) { - let chunk = new Uint8Array(8); - new DataView(chunk.buffer).setFloat64(0, value, true); - return this.raw(chunk); - } - /** - * Write a `fixed32` value, an unsigned, fixed-length 32-bit integer. - */ - fixed32(value) { - assert_1.assertUInt32(value); - let chunk = new Uint8Array(4); - new DataView(chunk.buffer).setUint32(0, value, true); - return this.raw(chunk); - } - /** - * Write a `sfixed32` value, a signed, fixed-length 32-bit integer. - */ - sfixed32(value) { - assert_1.assertInt32(value); - let chunk = new Uint8Array(4); - new DataView(chunk.buffer).setInt32(0, value, true); - return this.raw(chunk); - } - /** - * Write a `sint32` value, a signed, zigzag-encoded 32-bit varint. - */ - sint32(value) { - assert_1.assertInt32(value); - // zigzag encode - value = ((value << 1) ^ (value >> 31)) >>> 0; - goog_varint_1.varint32write(value, this.buf); - return this; - } - /** - * Write a `fixed64` value, a signed, fixed-length 64-bit integer. - */ - sfixed64(value) { - let chunk = new Uint8Array(8); - let view = new DataView(chunk.buffer); - let long = pb_long_1.PbLong.from(value); - view.setInt32(0, long.lo, true); - view.setInt32(4, long.hi, true); - return this.raw(chunk); - } - /** - * Write a `fixed64` value, an unsigned, fixed-length 64 bit integer. - */ - fixed64(value) { - let chunk = new Uint8Array(8); - let view = new DataView(chunk.buffer); - let long = pb_long_1.PbULong.from(value); - view.setInt32(0, long.lo, true); - view.setInt32(4, long.hi, true); - return this.raw(chunk); - } - /** - * Write a `int64` value, a signed 64-bit varint. - */ - int64(value) { - let long = pb_long_1.PbLong.from(value); - goog_varint_1.varint64write(long.lo, long.hi, this.buf); - return this; - } - /** - * Write a `sint64` value, a signed, zig-zag-encoded 64-bit varint. + * If you want to cancel a request on the server, throw a + * RpcError with the CANCELLED status code. */ - sint64(value) { - let long = pb_long_1.PbLong.from(value), - // zigzag encode - sign = long.hi >> 31, lo = (long.lo << 1) ^ sign, hi = ((long.hi << 1) | (long.lo >>> 31)) ^ sign; - goog_varint_1.varint64write(lo, hi, this.buf); - return this; + get cancelled() { + return this._cancelled; } /** - * Write a `uint64` value, an unsigned 64-bit varint. + * Add a callback for cancellation. */ - uint64(value) { - let long = pb_long_1.PbULong.from(value); - goog_varint_1.varint64write(long.lo, long.hi, this.buf); - return this; + onCancel(callback) { + const l = this._listeners; + l.push(callback); + return () => { + let i = l.indexOf(callback); + if (i >= 0) + l.splice(i, 1); + }; } } -exports.BinaryWriter = BinaryWriter; +exports.ServerCallContextController = ServerCallContextController; /***/ }), -/***/ 257: -/***/ ((__unused_webpack_module, exports) => { +/***/ 6173: +/***/ (function(__unused_webpack_module, exports) { +var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { + function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } + return new (P || (P = Promise))(function (resolve, reject) { + function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } + function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } + function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } + step((generator = generator.apply(thisArg, _arguments || [])).next()); + }); +}; Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.listEnumNumbers = exports.listEnumNames = exports.listEnumValues = exports.isEnumObject = void 0; +exports.ServerStreamingCall = void 0; /** - * Is this a lookup object generated by Typescript, for a Typescript enum - * generated by protobuf-ts? - * - * - No `const enum` (enum must not be inlined, we need reverse mapping). - * - No string enum (we need int32 for protobuf). - * - Must have a value for 0 (otherwise, we would need to support custom default values). + * A server streaming RPC call. The client provides exactly one input message + * but the server may respond with 0, 1, or more messages. */ -function isEnumObject(arg) { - if (typeof arg != 'object' || arg === null) { - return false; +class ServerStreamingCall { + constructor(method, requestHeaders, request, headers, response, status, trailers) { + this.method = method; + this.requestHeaders = requestHeaders; + this.request = request; + this.headers = headers; + this.responses = response; + this.status = status; + this.trailers = trailers; } - if (!arg.hasOwnProperty(0)) { - return false; + /** + * Instead of awaiting the response status and trailers, you can + * just as well await this call itself to receive the server outcome. + * You should first setup some listeners to the `request` to + * see the actual messages the server replied with. + */ + then(onfulfilled, onrejected) { + return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); } - for (let k of Object.keys(arg)) { - let num = parseInt(k); - if (!Number.isNaN(num)) { - // is there a name for the number? - let nam = arg[num]; - if (nam === undefined) - return false; - // does the name resolve back to the number? - if (arg[nam] !== num) - return false; - } - else { - // is there a number for the name? - let num = arg[k]; - if (num === undefined) - return false; - // is it a string enum? - if (typeof num !== 'number') - return false; - // do we know the number? - if (arg[num] === undefined) - return false; - } + promiseFinished() { + return __awaiter(this, void 0, void 0, function* () { + let [headers, status, trailers] = yield Promise.all([this.headers, this.status, this.trailers]); + return { + method: this.method, + requestHeaders: this.requestHeaders, + request: this.request, + headers, + status, + trailers, + }; + }); } - return true; -} -exports.isEnumObject = isEnumObject; -/** - * Lists all values of a Typescript enum, as an array of objects with a "name" - * property and a "number" property. - * - * Note that it is possible that a number appears more than once, because it is - * possible to have aliases in an enum. - * - * Throws if the enum does not adhere to the rules of enums generated by - * protobuf-ts. See `isEnumObject()`. - */ -function listEnumValues(enumObject) { - if (!isEnumObject(enumObject)) - throw new Error("not a typescript enum object"); - let values = []; - for (let [name, number] of Object.entries(enumObject)) - if (typeof number == "number") - values.push({ name, number }); - return values; -} -exports.listEnumValues = listEnumValues; -/** - * Lists the names of a Typescript enum. - * - * Throws if the enum does not adhere to the rules of enums generated by - * protobuf-ts. See `isEnumObject()`. - */ -function listEnumNames(enumObject) { - return listEnumValues(enumObject).map(val => val.name); } -exports.listEnumNames = listEnumNames; -/** - * Lists the numbers of a Typescript enum. - * - * Throws if the enum does not adhere to the rules of enums generated by - * protobuf-ts. See `isEnumObject()`. - */ -function listEnumNumbers(enumObject) { - return listEnumValues(enumObject) - .map(val => val.number) - .filter((num, index, arr) => arr.indexOf(num) == index); +exports.ServerStreamingCall = ServerStreamingCall; + + +/***/ }), + +/***/ 6892: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.ServiceType = void 0; +const reflection_info_1 = __nccwpck_require__(2496); +class ServiceType { + constructor(typeName, methods, options) { + this.typeName = typeName; + this.methods = methods.map(i => reflection_info_1.normalizeMethodInfo(i, this)); + this.options = options !== null && options !== void 0 ? options : {}; + } } -exports.listEnumNumbers = listEnumNumbers; +exports.ServiceType = ServiceType; /***/ }), -/***/ 3223: -/***/ ((__unused_webpack_module, exports) => { +/***/ 9122: +/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { -// Copyright 2008 Google Inc. All rights reserved. -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. -// -// Code generated by the Protocol Buffer compiler is owned by the owner -// of the input file used when generating it. This code is not -// standalone and requires a support library to be linked with it. This -// support library is itself covered by the above license. +var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { + function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } + return new (P || (P = Promise))(function (resolve, reject) { + function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } + function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } + function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } + step((generator = generator.apply(thisArg, _arguments || [])).next()); + }); +}; Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.varint32read = exports.varint32write = exports.int64toString = exports.int64fromString = exports.varint64write = exports.varint64read = void 0; +exports.TestTransport = void 0; +const rpc_error_1 = __nccwpck_require__(8636); +const runtime_1 = __nccwpck_require__(8886); +const rpc_output_stream_1 = __nccwpck_require__(2726); +const rpc_options_1 = __nccwpck_require__(8576); +const unary_call_1 = __nccwpck_require__(9288); +const server_streaming_call_1 = __nccwpck_require__(6173); +const client_streaming_call_1 = __nccwpck_require__(7889); +const duplex_streaming_call_1 = __nccwpck_require__(6826); /** - * Read a 64 bit varint as two JS numbers. - * - * Returns tuple: - * [0]: low bits - * [0]: high bits - * - * Copyright 2008 Google Inc. All rights reserved. - * - * See https://github.com/protocolbuffers/protobuf/blob/8a71927d74a4ce34efe2d8769fda198f52d20d12/js/experimental/runtime/kernel/buffer_decoder.js#L175 + * Transport for testing. */ -function varint64read() { - let lowBits = 0; - let highBits = 0; - for (let shift = 0; shift < 28; shift += 7) { - let b = this.buf[this.pos++]; - lowBits |= (b & 0x7F) << shift; - if ((b & 0x80) == 0) { - this.assertBounds(); - return [lowBits, highBits]; - } - } - let middleByte = this.buf[this.pos++]; - // last four bits of the first 32 bit number - lowBits |= (middleByte & 0x0F) << 28; - // 3 upper bits are part of the next 32 bit number - highBits = (middleByte & 0x70) >> 4; - if ((middleByte & 0x80) == 0) { - this.assertBounds(); - return [lowBits, highBits]; +class TestTransport { + /** + * Initialize with mock data. Omitted fields have default value. + */ + constructor(data) { + /** + * Suppress warning / error about uncaught rejections of + * "status" and "trailers". + */ + this.suppressUncaughtRejections = true; + this.headerDelay = 10; + this.responseDelay = 50; + this.betweenResponseDelay = 10; + this.afterResponseDelay = 10; + this.data = data !== null && data !== void 0 ? data : {}; } - for (let shift = 3; shift <= 31; shift += 7) { - let b = this.buf[this.pos++]; - highBits |= (b & 0x7F) << shift; - if ((b & 0x80) == 0) { - this.assertBounds(); - return [lowBits, highBits]; + /** + * Sent message(s) during the last operation. + */ + get sentMessages() { + if (this.lastInput instanceof TestInputStream) { + return this.lastInput.sent; + } + else if (typeof this.lastInput == "object") { + return [this.lastInput.single]; } + return []; } - throw new Error('invalid varint'); -} -exports.varint64read = varint64read; -/** - * Write a 64 bit varint, given as two JS numbers, to the given bytes array. - * - * Copyright 2008 Google Inc. All rights reserved. - * - * See https://github.com/protocolbuffers/protobuf/blob/8a71927d74a4ce34efe2d8769fda198f52d20d12/js/experimental/runtime/kernel/writer.js#L344 - */ -function varint64write(lo, hi, bytes) { - for (let i = 0; i < 28; i = i + 7) { - const shift = lo >>> i; - const hasNext = !((shift >>> 7) == 0 && hi == 0); - const byte = (hasNext ? shift | 0x80 : shift) & 0xFF; - bytes.push(byte); - if (!hasNext) { - return; + /** + * Sending message(s) completed? + */ + get sendComplete() { + if (this.lastInput instanceof TestInputStream) { + return this.lastInput.completed; + } + else if (typeof this.lastInput == "object") { + return true; } + return false; } - const splitBits = ((lo >>> 28) & 0x0F) | ((hi & 0x07) << 4); - const hasMoreBits = !((hi >> 3) == 0); - bytes.push((hasMoreBits ? splitBits | 0x80 : splitBits) & 0xFF); - if (!hasMoreBits) { - return; + // Creates a promise for response headers from the mock data. + promiseHeaders() { + var _a; + const headers = (_a = this.data.headers) !== null && _a !== void 0 ? _a : TestTransport.defaultHeaders; + return headers instanceof rpc_error_1.RpcError + ? Promise.reject(headers) + : Promise.resolve(headers); } - for (let i = 3; i < 31; i = i + 7) { - const shift = hi >>> i; - const hasNext = !((shift >>> 7) == 0); - const byte = (hasNext ? shift | 0x80 : shift) & 0xFF; - bytes.push(byte); - if (!hasNext) { - return; + // Creates a promise for a single, valid, message from the mock data. + promiseSingleResponse(method) { + if (this.data.response instanceof rpc_error_1.RpcError) { + return Promise.reject(this.data.response); } - } - bytes.push((hi >>> 31) & 0x01); -} -exports.varint64write = varint64write; -// constants for binary math -const TWO_PWR_32_DBL = (1 << 16) * (1 << 16); -/** - * Parse decimal string of 64 bit integer value as two JS numbers. - * - * Returns tuple: - * [0]: minus sign? - * [1]: low bits - * [2]: high bits - * - * Copyright 2008 Google Inc. - */ -function int64fromString(dec) { - // Check for minus sign. - let minus = dec[0] == '-'; - if (minus) - dec = dec.slice(1); - // Work 6 decimal digits at a time, acting like we're converting base 1e6 - // digits to binary. This is safe to do with floating point math because - // Number.isSafeInteger(ALL_32_BITS * 1e6) == true. - const base = 1e6; - let lowBits = 0; - let highBits = 0; - function add1e6digit(begin, end) { - // Note: Number('') is 0. - const digit1e6 = Number(dec.slice(begin, end)); - highBits *= base; - lowBits = lowBits * base + digit1e6; - // Carry bits from lowBits to highBits - if (lowBits >= TWO_PWR_32_DBL) { - highBits = highBits + ((lowBits / TWO_PWR_32_DBL) | 0); - lowBits = lowBits % TWO_PWR_32_DBL; + let r; + if (Array.isArray(this.data.response)) { + runtime_1.assert(this.data.response.length > 0); + r = this.data.response[0]; } + else if (this.data.response !== undefined) { + r = this.data.response; + } + else { + r = method.O.create(); + } + runtime_1.assert(method.O.is(r)); + return Promise.resolve(r); } - add1e6digit(-24, -18); - add1e6digit(-18, -12); - add1e6digit(-12, -6); - add1e6digit(-6); - return [minus, lowBits, highBits]; -} -exports.int64fromString = int64fromString; -/** - * Format 64 bit integer value (as two JS numbers) to decimal string. - * - * Copyright 2008 Google Inc. - */ -function int64toString(bitsLow, bitsHigh) { - // Skip the expensive conversion if the number is small enough to use the - // built-in conversions. - if ((bitsHigh >>> 0) <= 0x1FFFFF) { - return '' + (TWO_PWR_32_DBL * bitsHigh + (bitsLow >>> 0)); - } - // What this code is doing is essentially converting the input number from - // base-2 to base-1e7, which allows us to represent the 64-bit range with - // only 3 (very large) digits. Those digits are then trivial to convert to - // a base-10 string. - // The magic numbers used here are - - // 2^24 = 16777216 = (1,6777216) in base-1e7. - // 2^48 = 281474976710656 = (2,8147497,6710656) in base-1e7. - // Split 32:32 representation into 16:24:24 representation so our - // intermediate digits don't overflow. - let low = bitsLow & 0xFFFFFF; - let mid = (((bitsLow >>> 24) | (bitsHigh << 8)) >>> 0) & 0xFFFFFF; - let high = (bitsHigh >> 16) & 0xFFFF; - // Assemble our three base-1e7 digits, ignoring carries. The maximum - // value in a digit at this step is representable as a 48-bit integer, which - // can be stored in a 64-bit floating point number. - let digitA = low + (mid * 6777216) + (high * 6710656); - let digitB = mid + (high * 8147497); - let digitC = (high * 2); - // Apply carries from A to B and from B to C. - let base = 10000000; - if (digitA >= base) { - digitB += Math.floor(digitA / base); - digitA %= base; + /** + * Pushes response messages from the mock data to the output stream. + * If an error response, status or trailers are mocked, the stream is + * closed with the respective error. + * Otherwise, stream is completed successfully. + * + * The returned promise resolves when the stream is closed. It should + * not reject. If it does, code is broken. + */ + streamResponses(method, stream, abort) { + return __awaiter(this, void 0, void 0, function* () { + // normalize "data.response" into an array of valid output messages + const messages = []; + if (this.data.response === undefined) { + messages.push(method.O.create()); + } + else if (Array.isArray(this.data.response)) { + for (let msg of this.data.response) { + runtime_1.assert(method.O.is(msg)); + messages.push(msg); + } + } + else if (!(this.data.response instanceof rpc_error_1.RpcError)) { + runtime_1.assert(method.O.is(this.data.response)); + messages.push(this.data.response); + } + // start the stream with an initial delay. + // if the request is cancelled, notify() error and exit. + try { + yield delay(this.responseDelay, abort)(undefined); + } + catch (error) { + stream.notifyError(error); + return; + } + // if error response was mocked, notify() error (stream is now closed with error) and exit. + if (this.data.response instanceof rpc_error_1.RpcError) { + stream.notifyError(this.data.response); + return; + } + // regular response messages were mocked. notify() them. + for (let msg of messages) { + stream.notifyMessage(msg); + // add a short delay between responses + // if the request is cancelled, notify() error and exit. + try { + yield delay(this.betweenResponseDelay, abort)(undefined); + } + catch (error) { + stream.notifyError(error); + return; + } + } + // error status was mocked, notify() error (stream is now closed with error) and exit. + if (this.data.status instanceof rpc_error_1.RpcError) { + stream.notifyError(this.data.status); + return; + } + // error trailers were mocked, notify() error (stream is now closed with error) and exit. + if (this.data.trailers instanceof rpc_error_1.RpcError) { + stream.notifyError(this.data.trailers); + return; + } + // stream completed successfully + stream.notifyComplete(); + }); } - if (digitB >= base) { - digitC += Math.floor(digitB / base); - digitB %= base; + // Creates a promise for response status from the mock data. + promiseStatus() { + var _a; + const status = (_a = this.data.status) !== null && _a !== void 0 ? _a : TestTransport.defaultStatus; + return status instanceof rpc_error_1.RpcError + ? Promise.reject(status) + : Promise.resolve(status); } - // Convert base-1e7 digits to base-10, with optional leading zeroes. - function decimalFrom1e7(digit1e7, needLeadingZeros) { - let partial = digit1e7 ? String(digit1e7) : ''; - if (needLeadingZeros) { - return '0000000'.slice(partial.length) + partial; + // Creates a promise for response trailers from the mock data. + promiseTrailers() { + var _a; + const trailers = (_a = this.data.trailers) !== null && _a !== void 0 ? _a : TestTransport.defaultTrailers; + return trailers instanceof rpc_error_1.RpcError + ? Promise.reject(trailers) + : Promise.resolve(trailers); + } + maybeSuppressUncaught(...promise) { + if (this.suppressUncaughtRejections) { + for (let p of promise) { + p.catch(() => { + }); + } } - return partial; } - return decimalFrom1e7(digitC, /*needLeadingZeros=*/ 0) + - decimalFrom1e7(digitB, /*needLeadingZeros=*/ digitC) + - // If the final 1e7 digit didn't need leading zeros, we would have - // returned via the trivial code path at the top. - decimalFrom1e7(digitA, /*needLeadingZeros=*/ 1); + mergeOptions(options) { + return rpc_options_1.mergeRpcOptions({}, options); + } + unary(method, input, options) { + var _a; + const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() + .then(delay(this.headerDelay, options.abort)), responsePromise = headersPromise + .catch(_ => { + }) + .then(delay(this.responseDelay, options.abort)) + .then(_ => this.promiseSingleResponse(method)), statusPromise = responsePromise + .catch(_ => { + }) + .then(delay(this.afterResponseDelay, options.abort)) + .then(_ => this.promiseStatus()), trailersPromise = responsePromise + .catch(_ => { + }) + .then(delay(this.afterResponseDelay, options.abort)) + .then(_ => this.promiseTrailers()); + this.maybeSuppressUncaught(statusPromise, trailersPromise); + this.lastInput = { single: input }; + return new unary_call_1.UnaryCall(method, requestHeaders, input, headersPromise, responsePromise, statusPromise, trailersPromise); + } + serverStreaming(method, input, options) { + var _a; + const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() + .then(delay(this.headerDelay, options.abort)), outputStream = new rpc_output_stream_1.RpcOutputStreamController(), responseStreamClosedPromise = headersPromise + .then(delay(this.responseDelay, options.abort)) + .catch(() => { + }) + .then(() => this.streamResponses(method, outputStream, options.abort)) + .then(delay(this.afterResponseDelay, options.abort)), statusPromise = responseStreamClosedPromise + .then(() => this.promiseStatus()), trailersPromise = responseStreamClosedPromise + .then(() => this.promiseTrailers()); + this.maybeSuppressUncaught(statusPromise, trailersPromise); + this.lastInput = { single: input }; + return new server_streaming_call_1.ServerStreamingCall(method, requestHeaders, input, headersPromise, outputStream, statusPromise, trailersPromise); + } + clientStreaming(method, options) { + var _a; + const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() + .then(delay(this.headerDelay, options.abort)), responsePromise = headersPromise + .catch(_ => { + }) + .then(delay(this.responseDelay, options.abort)) + .then(_ => this.promiseSingleResponse(method)), statusPromise = responsePromise + .catch(_ => { + }) + .then(delay(this.afterResponseDelay, options.abort)) + .then(_ => this.promiseStatus()), trailersPromise = responsePromise + .catch(_ => { + }) + .then(delay(this.afterResponseDelay, options.abort)) + .then(_ => this.promiseTrailers()); + this.maybeSuppressUncaught(statusPromise, trailersPromise); + this.lastInput = new TestInputStream(this.data, options.abort); + return new client_streaming_call_1.ClientStreamingCall(method, requestHeaders, this.lastInput, headersPromise, responsePromise, statusPromise, trailersPromise); + } + duplex(method, options) { + var _a; + const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() + .then(delay(this.headerDelay, options.abort)), outputStream = new rpc_output_stream_1.RpcOutputStreamController(), responseStreamClosedPromise = headersPromise + .then(delay(this.responseDelay, options.abort)) + .catch(() => { + }) + .then(() => this.streamResponses(method, outputStream, options.abort)) + .then(delay(this.afterResponseDelay, options.abort)), statusPromise = responseStreamClosedPromise + .then(() => this.promiseStatus()), trailersPromise = responseStreamClosedPromise + .then(() => this.promiseTrailers()); + this.maybeSuppressUncaught(statusPromise, trailersPromise); + this.lastInput = new TestInputStream(this.data, options.abort); + return new duplex_streaming_call_1.DuplexStreamingCall(method, requestHeaders, this.lastInput, headersPromise, outputStream, statusPromise, trailersPromise); + } } -exports.int64toString = int64toString; -/** - * Write a 32 bit varint, signed or unsigned. Same as `varint64write(0, value, bytes)` - * - * Copyright 2008 Google Inc. All rights reserved. - * - * See https://github.com/protocolbuffers/protobuf/blob/1b18833f4f2a2f681f4e4a25cdf3b0a43115ec26/js/binary/encoder.js#L144 - */ -function varint32write(value, bytes) { - if (value >= 0) { - // write value as varint 32 - while (value > 0x7f) { - bytes.push((value & 0x7f) | 0x80); - value = value >>> 7; +exports.TestTransport = TestTransport; +TestTransport.defaultHeaders = { + responseHeader: "test" +}; +TestTransport.defaultStatus = { + code: "OK", detail: "all good" +}; +TestTransport.defaultTrailers = { + responseTrailer: "test" +}; +function delay(ms, abort) { + return (v) => new Promise((resolve, reject) => { + if (abort === null || abort === void 0 ? void 0 : abort.aborted) { + reject(new rpc_error_1.RpcError("user cancel", "CANCELLED")); } - bytes.push(value); - } - else { - for (let i = 0; i < 9; i++) { - bytes.push(value & 127 | 128); - value = value >> 7; + else { + const id = setTimeout(() => resolve(v), ms); + if (abort) { + abort.addEventListener("abort", ev => { + clearTimeout(id); + reject(new rpc_error_1.RpcError("user cancel", "CANCELLED")); + }); + } } - bytes.push(1); - } + }); } -exports.varint32write = varint32write; -/** - * Read an unsigned 32 bit varint. - * - * See https://github.com/protocolbuffers/protobuf/blob/8a71927d74a4ce34efe2d8769fda198f52d20d12/js/experimental/runtime/kernel/buffer_decoder.js#L220 - */ -function varint32read() { - let b = this.buf[this.pos++]; - let result = b & 0x7F; - if ((b & 0x80) == 0) { - this.assertBounds(); - return result; +class TestInputStream { + constructor(data, abort) { + this._completed = false; + this._sent = []; + this.data = data; + this.abort = abort; } - b = this.buf[this.pos++]; - result |= (b & 0x7F) << 7; - if ((b & 0x80) == 0) { - this.assertBounds(); - return result; + get sent() { + return this._sent; } - b = this.buf[this.pos++]; - result |= (b & 0x7F) << 14; - if ((b & 0x80) == 0) { - this.assertBounds(); - return result; + get completed() { + return this._completed; } - b = this.buf[this.pos++]; - result |= (b & 0x7F) << 21; - if ((b & 0x80) == 0) { - this.assertBounds(); - return result; + send(message) { + if (this.data.inputMessage instanceof rpc_error_1.RpcError) { + return Promise.reject(this.data.inputMessage); + } + const delayMs = this.data.inputMessage === undefined + ? 10 + : this.data.inputMessage; + return Promise.resolve(undefined) + .then(() => { + this._sent.push(message); + }) + .then(delay(delayMs, this.abort)); + } + complete() { + if (this.data.inputComplete instanceof rpc_error_1.RpcError) { + return Promise.reject(this.data.inputComplete); + } + const delayMs = this.data.inputComplete === undefined + ? 10 + : this.data.inputComplete; + return Promise.resolve(undefined) + .then(() => { + this._completed = true; + }) + .then(delay(delayMs, this.abort)); } - // Extract only last 4 bits - b = this.buf[this.pos++]; - result |= (b & 0x0F) << 28; - for (let readBytes = 5; ((b & 0x80) !== 0) && readBytes < 10; readBytes++) - b = this.buf[this.pos++]; - if ((b & 0x80) != 0) - throw new Error('invalid varint'); - this.assertBounds(); - // Result can have 32 bits, convert it to unsigned - return result >>> 0; } -exports.varint32read = varint32read; /***/ }), -/***/ 8886: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { +/***/ 9288: +/***/ (function(__unused_webpack_module, exports) { -// Public API of the protobuf-ts runtime. -// Note: we do not use `export * from ...` to help tree shakers, -// webpack verbose output hints that this should be useful +var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { + function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } + return new (P || (P = Promise))(function (resolve, reject) { + function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } + function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } + function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } + step((generator = generator.apply(thisArg, _arguments || [])).next()); + }); +}; Object.defineProperty(exports, "__esModule", ({ value: true })); -// Convenience JSON typings and corresponding type guards -var json_typings_1 = __nccwpck_require__(9999); -Object.defineProperty(exports, "typeofJsonValue", ({ enumerable: true, get: function () { return json_typings_1.typeofJsonValue; } })); -Object.defineProperty(exports, "isJsonObject", ({ enumerable: true, get: function () { return json_typings_1.isJsonObject; } })); -// Base 64 encoding -var base64_1 = __nccwpck_require__(6335); -Object.defineProperty(exports, "base64decode", ({ enumerable: true, get: function () { return base64_1.base64decode; } })); -Object.defineProperty(exports, "base64encode", ({ enumerable: true, get: function () { return base64_1.base64encode; } })); -// UTF8 encoding -var protobufjs_utf8_1 = __nccwpck_require__(8950); -Object.defineProperty(exports, "utf8read", ({ enumerable: true, get: function () { return protobufjs_utf8_1.utf8read; } })); -// Binary format contracts, options for reading and writing, for example -var binary_format_contract_1 = __nccwpck_require__(4816); -Object.defineProperty(exports, "WireType", ({ enumerable: true, get: function () { return binary_format_contract_1.WireType; } })); -Object.defineProperty(exports, "mergeBinaryOptions", ({ enumerable: true, get: function () { return binary_format_contract_1.mergeBinaryOptions; } })); -Object.defineProperty(exports, "UnknownFieldHandler", ({ enumerable: true, get: function () { return binary_format_contract_1.UnknownFieldHandler; } })); -// Standard IBinaryReader implementation -var binary_reader_1 = __nccwpck_require__(2889); -Object.defineProperty(exports, "BinaryReader", ({ enumerable: true, get: function () { return binary_reader_1.BinaryReader; } })); -Object.defineProperty(exports, "binaryReadOptions", ({ enumerable: true, get: function () { return binary_reader_1.binaryReadOptions; } })); -// Standard IBinaryWriter implementation -var binary_writer_1 = __nccwpck_require__(3957); -Object.defineProperty(exports, "BinaryWriter", ({ enumerable: true, get: function () { return binary_writer_1.BinaryWriter; } })); -Object.defineProperty(exports, "binaryWriteOptions", ({ enumerable: true, get: function () { return binary_writer_1.binaryWriteOptions; } })); -// Int64 and UInt64 implementations required for the binary format -var pb_long_1 = __nccwpck_require__(1753); -Object.defineProperty(exports, "PbLong", ({ enumerable: true, get: function () { return pb_long_1.PbLong; } })); -Object.defineProperty(exports, "PbULong", ({ enumerable: true, get: function () { return pb_long_1.PbULong; } })); -// JSON format contracts, options for reading and writing, for example -var json_format_contract_1 = __nccwpck_require__(9367); -Object.defineProperty(exports, "jsonReadOptions", ({ enumerable: true, get: function () { return json_format_contract_1.jsonReadOptions; } })); -Object.defineProperty(exports, "jsonWriteOptions", ({ enumerable: true, get: function () { return json_format_contract_1.jsonWriteOptions; } })); -Object.defineProperty(exports, "mergeJsonOptions", ({ enumerable: true, get: function () { return json_format_contract_1.mergeJsonOptions; } })); -// Message type contract -var message_type_contract_1 = __nccwpck_require__(3785); -Object.defineProperty(exports, "MESSAGE_TYPE", ({ enumerable: true, get: function () { return message_type_contract_1.MESSAGE_TYPE; } })); -// Message type implementation via reflection -var message_type_1 = __nccwpck_require__(5106); -Object.defineProperty(exports, "MessageType", ({ enumerable: true, get: function () { return message_type_1.MessageType; } })); -// Reflection info, generated by the plugin, exposed to the user, used by reflection ops -var reflection_info_1 = __nccwpck_require__(7910); -Object.defineProperty(exports, "ScalarType", ({ enumerable: true, get: function () { return reflection_info_1.ScalarType; } })); -Object.defineProperty(exports, "LongType", ({ enumerable: true, get: function () { return reflection_info_1.LongType; } })); -Object.defineProperty(exports, "RepeatType", ({ enumerable: true, get: function () { return reflection_info_1.RepeatType; } })); -Object.defineProperty(exports, "normalizeFieldInfo", ({ enumerable: true, get: function () { return reflection_info_1.normalizeFieldInfo; } })); -Object.defineProperty(exports, "readFieldOptions", ({ enumerable: true, get: function () { return reflection_info_1.readFieldOptions; } })); -Object.defineProperty(exports, "readFieldOption", ({ enumerable: true, get: function () { return reflection_info_1.readFieldOption; } })); -Object.defineProperty(exports, "readMessageOption", ({ enumerable: true, get: function () { return reflection_info_1.readMessageOption; } })); -// Message operations via reflection -var reflection_type_check_1 = __nccwpck_require__(5167); -Object.defineProperty(exports, "ReflectionTypeCheck", ({ enumerable: true, get: function () { return reflection_type_check_1.ReflectionTypeCheck; } })); -var reflection_create_1 = __nccwpck_require__(5726); -Object.defineProperty(exports, "reflectionCreate", ({ enumerable: true, get: function () { return reflection_create_1.reflectionCreate; } })); -var reflection_scalar_default_1 = __nccwpck_require__(9526); -Object.defineProperty(exports, "reflectionScalarDefault", ({ enumerable: true, get: function () { return reflection_scalar_default_1.reflectionScalarDefault; } })); -var reflection_merge_partial_1 = __nccwpck_require__(8044); -Object.defineProperty(exports, "reflectionMergePartial", ({ enumerable: true, get: function () { return reflection_merge_partial_1.reflectionMergePartial; } })); -var reflection_equals_1 = __nccwpck_require__(4827); -Object.defineProperty(exports, "reflectionEquals", ({ enumerable: true, get: function () { return reflection_equals_1.reflectionEquals; } })); -var reflection_binary_reader_1 = __nccwpck_require__(9611); -Object.defineProperty(exports, "ReflectionBinaryReader", ({ enumerable: true, get: function () { return reflection_binary_reader_1.ReflectionBinaryReader; } })); -var reflection_binary_writer_1 = __nccwpck_require__(6907); -Object.defineProperty(exports, "ReflectionBinaryWriter", ({ enumerable: true, get: function () { return reflection_binary_writer_1.ReflectionBinaryWriter; } })); -var reflection_json_reader_1 = __nccwpck_require__(6790); -Object.defineProperty(exports, "ReflectionJsonReader", ({ enumerable: true, get: function () { return reflection_json_reader_1.ReflectionJsonReader; } })); -var reflection_json_writer_1 = __nccwpck_require__(1094); -Object.defineProperty(exports, "ReflectionJsonWriter", ({ enumerable: true, get: function () { return reflection_json_writer_1.ReflectionJsonWriter; } })); -var reflection_contains_message_type_1 = __nccwpck_require__(9946); -Object.defineProperty(exports, "containsMessageType", ({ enumerable: true, get: function () { return reflection_contains_message_type_1.containsMessageType; } })); -// Oneof helpers -var oneof_1 = __nccwpck_require__(8063); -Object.defineProperty(exports, "isOneofGroup", ({ enumerable: true, get: function () { return oneof_1.isOneofGroup; } })); -Object.defineProperty(exports, "setOneofValue", ({ enumerable: true, get: function () { return oneof_1.setOneofValue; } })); -Object.defineProperty(exports, "getOneofValue", ({ enumerable: true, get: function () { return oneof_1.getOneofValue; } })); -Object.defineProperty(exports, "clearOneofValue", ({ enumerable: true, get: function () { return oneof_1.clearOneofValue; } })); -Object.defineProperty(exports, "getSelectedOneofValue", ({ enumerable: true, get: function () { return oneof_1.getSelectedOneofValue; } })); -// Enum object type guard and reflection util, may be interesting to the user. -var enum_object_1 = __nccwpck_require__(257); -Object.defineProperty(exports, "listEnumValues", ({ enumerable: true, get: function () { return enum_object_1.listEnumValues; } })); -Object.defineProperty(exports, "listEnumNames", ({ enumerable: true, get: function () { return enum_object_1.listEnumNames; } })); -Object.defineProperty(exports, "listEnumNumbers", ({ enumerable: true, get: function () { return enum_object_1.listEnumNumbers; } })); -Object.defineProperty(exports, "isEnumObject", ({ enumerable: true, get: function () { return enum_object_1.isEnumObject; } })); -// lowerCamelCase() is exported for plugin, rpc-runtime and other rpc packages -var lower_camel_case_1 = __nccwpck_require__(4073); -Object.defineProperty(exports, "lowerCamelCase", ({ enumerable: true, get: function () { return lower_camel_case_1.lowerCamelCase; } })); -// assertion functions are exported for plugin, may also be useful to user -var assert_1 = __nccwpck_require__(8602); -Object.defineProperty(exports, "assert", ({ enumerable: true, get: function () { return assert_1.assert; } })); -Object.defineProperty(exports, "assertNever", ({ enumerable: true, get: function () { return assert_1.assertNever; } })); -Object.defineProperty(exports, "assertInt32", ({ enumerable: true, get: function () { return assert_1.assertInt32; } })); -Object.defineProperty(exports, "assertUInt32", ({ enumerable: true, get: function () { return assert_1.assertUInt32; } })); -Object.defineProperty(exports, "assertFloat32", ({ enumerable: true, get: function () { return assert_1.assertFloat32; } })); +exports.UnaryCall = void 0; +/** + * A unary RPC call. Unary means there is exactly one input message and + * exactly one output message unless an error occurred. + */ +class UnaryCall { + constructor(method, requestHeaders, request, headers, response, status, trailers) { + this.method = method; + this.requestHeaders = requestHeaders; + this.request = request; + this.headers = headers; + this.response = response; + this.status = status; + this.trailers = trailers; + } + /** + * If you are only interested in the final outcome of this call, + * you can await it to receive a `FinishedUnaryCall`. + */ + then(onfulfilled, onrejected) { + return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); + } + promiseFinished() { + return __awaiter(this, void 0, void 0, function* () { + let [headers, response, status, trailers] = yield Promise.all([this.headers, this.response, this.status, this.trailers]); + return { + method: this.method, + requestHeaders: this.requestHeaders, + request: this.request, + headers, + response, + status, + trailers + }; + }); + } +} +exports.UnaryCall = UnaryCall; /***/ }), -/***/ 9367: +/***/ 8602: /***/ ((__unused_webpack_module, exports) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.mergeJsonOptions = exports.jsonWriteOptions = exports.jsonReadOptions = void 0; -const defaultsWrite = { - emitDefaultValues: false, - enumAsInteger: false, - useProtoFieldName: false, - prettySpaces: 0, -}, defaultsRead = { - ignoreUnknownFields: false, -}; +exports.assertFloat32 = exports.assertUInt32 = exports.assertInt32 = exports.assertNever = exports.assert = void 0; /** - * Make options for reading JSON data from partial options. + * assert that condition is true or throw error (with message) */ -function jsonReadOptions(options) { - return options ? Object.assign(Object.assign({}, defaultsRead), options) : defaultsRead; +function assert(condition, msg) { + if (!condition) { + throw new Error(msg); + } } -exports.jsonReadOptions = jsonReadOptions; +exports.assert = assert; /** - * Make options for writing JSON data from partial options. + * assert that value cannot exist = type `never`. throw runtime error if it does. */ -function jsonWriteOptions(options) { - return options ? Object.assign(Object.assign({}, defaultsWrite), options) : defaultsWrite; -} -exports.jsonWriteOptions = jsonWriteOptions; -/** - * Merges JSON write or read options. Later values override earlier values. Type registries are merged. - */ -function mergeJsonOptions(a, b) { - var _a, _b; - let c = Object.assign(Object.assign({}, a), b); - c.typeRegistry = [...((_a = a === null || a === void 0 ? void 0 : a.typeRegistry) !== null && _a !== void 0 ? _a : []), ...((_b = b === null || b === void 0 ? void 0 : b.typeRegistry) !== null && _b !== void 0 ? _b : [])]; - return c; +function assertNever(value, msg) { + throw new Error(msg !== null && msg !== void 0 ? msg : 'Unexpected object: ' + value); } -exports.mergeJsonOptions = mergeJsonOptions; +exports.assertNever = assertNever; +const FLOAT32_MAX = 3.4028234663852886e+38, FLOAT32_MIN = -3.4028234663852886e+38, UINT32_MAX = 0xFFFFFFFF, INT32_MAX = 0X7FFFFFFF, INT32_MIN = -0X80000000; +function assertInt32(arg) { + if (typeof arg !== "number") + throw new Error('invalid int 32: ' + typeof arg); + if (!Number.isInteger(arg) || arg > INT32_MAX || arg < INT32_MIN) + throw new Error('invalid int 32: ' + arg); +} +exports.assertInt32 = assertInt32; +function assertUInt32(arg) { + if (typeof arg !== "number") + throw new Error('invalid uint 32: ' + typeof arg); + if (!Number.isInteger(arg) || arg > UINT32_MAX || arg < 0) + throw new Error('invalid uint 32: ' + arg); +} +exports.assertUInt32 = assertUInt32; +function assertFloat32(arg) { + if (typeof arg !== "number") + throw new Error('invalid float 32: ' + typeof arg); + if (!Number.isFinite(arg)) + return; + if (arg > FLOAT32_MAX || arg < FLOAT32_MIN) + throw new Error('invalid float 32: ' + arg); +} +exports.assertFloat32 = assertFloat32; /***/ }), -/***/ 9999: +/***/ 6335: /***/ ((__unused_webpack_module, exports) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.isJsonObject = exports.typeofJsonValue = void 0; +exports.base64encode = exports.base64decode = void 0; +// lookup table from base64 character to byte +let encTable = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/'.split(''); +// lookup table from base64 character *code* to byte because lookup by number is fast +let decTable = []; +for (let i = 0; i < encTable.length; i++) + decTable[encTable[i].charCodeAt(0)] = i; +// support base64url variants +decTable["-".charCodeAt(0)] = encTable.indexOf("+"); +decTable["_".charCodeAt(0)] = encTable.indexOf("/"); /** - * Get the type of a JSON value. - * Distinguishes between array, null and object. + * Decodes a base64 string to a byte array. + * + * - ignores white-space, including line breaks and tabs + * - allows inner padding (can decode concatenated base64 strings) + * - does not require padding + * - understands base64url encoding: + * "-" instead of "+", + * "_" instead of "/", + * no padding */ -function typeofJsonValue(value) { - let t = typeof value; - if (t == "object") { - if (Array.isArray(value)) - return "array"; - if (value === null) - return "null"; +function base64decode(base64Str) { + // estimate byte size, not accounting for inner padding and whitespace + let es = base64Str.length * 3 / 4; + // if (es % 3 !== 0) + // throw new Error('invalid base64 string'); + if (base64Str[base64Str.length - 2] == '=') + es -= 2; + else if (base64Str[base64Str.length - 1] == '=') + es -= 1; + let bytes = new Uint8Array(es), bytePos = 0, // position in byte array + groupPos = 0, // position in base64 group + b, // current byte + p = 0 // previous byte + ; + for (let i = 0; i < base64Str.length; i++) { + b = decTable[base64Str.charCodeAt(i)]; + if (b === undefined) { + // noinspection FallThroughInSwitchStatementJS + switch (base64Str[i]) { + case '=': + groupPos = 0; // reset state when padding found + case '\n': + case '\r': + case '\t': + case ' ': + continue; // skip white-space, and padding + default: + throw Error(`invalid base64 string.`); + } + } + switch (groupPos) { + case 0: + p = b; + groupPos = 1; + break; + case 1: + bytes[bytePos++] = p << 2 | (b & 48) >> 4; + p = b; + groupPos = 2; + break; + case 2: + bytes[bytePos++] = (p & 15) << 4 | (b & 60) >> 2; + p = b; + groupPos = 3; + break; + case 3: + bytes[bytePos++] = (p & 3) << 6 | b; + groupPos = 0; + break; + } } - return t; + if (groupPos == 1) + throw Error(`invalid base64 string.`); + return bytes.subarray(0, bytePos); } -exports.typeofJsonValue = typeofJsonValue; +exports.base64decode = base64decode; /** - * Is this a JSON object (instead of an array or null)? + * Encodes a byte array to a base64 string. + * Adds padding at the end. + * Does not insert newlines. */ -function isJsonObject(value) { - return value !== null && typeof value == "object" && !Array.isArray(value); +function base64encode(bytes) { + let base64 = '', groupPos = 0, // position in base64 group + b, // current byte + p = 0; // carry over from previous byte + for (let i = 0; i < bytes.length; i++) { + b = bytes[i]; + switch (groupPos) { + case 0: + base64 += encTable[b >> 2]; + p = (b & 3) << 4; + groupPos = 1; + break; + case 1: + base64 += encTable[p | b >> 4]; + p = (b & 15) << 2; + groupPos = 2; + break; + case 2: + base64 += encTable[p | b >> 6]; + base64 += encTable[b & 63]; + groupPos = 0; + break; + } + } + // padding required? + if (groupPos) { + base64 += encTable[p]; + base64 += '='; + if (groupPos == 1) + base64 += '='; + } + return base64; } -exports.isJsonObject = isJsonObject; +exports.base64encode = base64encode; /***/ }), -/***/ 4073: +/***/ 4816: /***/ ((__unused_webpack_module, exports) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.lowerCamelCase = void 0; +exports.WireType = exports.mergeBinaryOptions = exports.UnknownFieldHandler = void 0; /** - * Converts snake_case to lowerCamelCase. - * - * Should behave like protoc: - * https://github.com/protocolbuffers/protobuf/blob/e8ae137c96444ea313485ed1118c5e43b2099cf1/src/google/protobuf/compiler/java/java_helpers.cc#L118 + * This handler implements the default behaviour for unknown fields. + * When reading data, unknown fields are stored on the message, in a + * symbol property. + * When writing data, the symbol property is queried and unknown fields + * are serialized into the output again. */ -function lowerCamelCase(snakeCase) { - let capNext = false; - const sb = []; - for (let i = 0; i < snakeCase.length; i++) { - let next = snakeCase.charAt(i); - if (next == '_') { - capNext = true; - } - else if (/\d/.test(next)) { - sb.push(next); - capNext = true; - } - else if (capNext) { - sb.push(next.toUpperCase()); - capNext = false; - } - else if (i == 0) { - sb.push(next.toLowerCase()); - } - else { - sb.push(next); +var UnknownFieldHandler; +(function (UnknownFieldHandler) { + /** + * The symbol used to store unknown fields for a message. + * The property must conform to `UnknownFieldContainer`. + */ + UnknownFieldHandler.symbol = Symbol.for("protobuf-ts/unknown"); + /** + * Store an unknown field during binary read directly on the message. + * This method is compatible with `BinaryReadOptions.readUnknownField`. + */ + UnknownFieldHandler.onRead = (typeName, message, fieldNo, wireType, data) => { + let container = is(message) ? message[UnknownFieldHandler.symbol] : message[UnknownFieldHandler.symbol] = []; + container.push({ no: fieldNo, wireType, data }); + }; + /** + * Write unknown fields stored for the message to the writer. + * This method is compatible with `BinaryWriteOptions.writeUnknownFields`. + */ + UnknownFieldHandler.onWrite = (typeName, message, writer) => { + for (let { no, wireType, data } of UnknownFieldHandler.list(message)) + writer.tag(no, wireType).raw(data); + }; + /** + * List unknown fields stored for the message. + * Note that there may be multiples fields with the same number. + */ + UnknownFieldHandler.list = (message, fieldNo) => { + if (is(message)) { + let all = message[UnknownFieldHandler.symbol]; + return fieldNo ? all.filter(uf => uf.no == fieldNo) : all; } - } - return sb.join(''); + return []; + }; + /** + * Returns the last unknown field by field number. + */ + UnknownFieldHandler.last = (message, fieldNo) => UnknownFieldHandler.list(message, fieldNo).slice(-1)[0]; + const is = (message) => message && Array.isArray(message[UnknownFieldHandler.symbol]); +})(UnknownFieldHandler = exports.UnknownFieldHandler || (exports.UnknownFieldHandler = {})); +/** + * Merges binary write or read options. Later values override earlier values. + */ +function mergeBinaryOptions(a, b) { + return Object.assign(Object.assign({}, a), b); } -exports.lowerCamelCase = lowerCamelCase; - - -/***/ }), - -/***/ 3785: -/***/ ((__unused_webpack_module, exports) => { - - -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.MESSAGE_TYPE = void 0; +exports.mergeBinaryOptions = mergeBinaryOptions; /** - * The symbol used as a key on message objects to store the message type. + * Protobuf binary format wire types. * - * Note that this is an experimental feature - it is here to stay, but - * implementation details may change without notice. + * A wire type provides just enough information to find the length of the + * following value. + * + * See https://developers.google.com/protocol-buffers/docs/encoding#structure */ -exports.MESSAGE_TYPE = Symbol.for("protobuf-ts/message-type"); +var WireType; +(function (WireType) { + /** + * Used for int32, int64, uint32, uint64, sint32, sint64, bool, enum + */ + WireType[WireType["Varint"] = 0] = "Varint"; + /** + * Used for fixed64, sfixed64, double. + * Always 8 bytes with little-endian byte order. + */ + WireType[WireType["Bit64"] = 1] = "Bit64"; + /** + * Used for string, bytes, embedded messages, packed repeated fields + * + * Only repeated numeric types (types which use the varint, 32-bit, + * or 64-bit wire types) can be packed. In proto3, such fields are + * packed by default. + */ + WireType[WireType["LengthDelimited"] = 2] = "LengthDelimited"; + /** + * Used for groups + * @deprecated + */ + WireType[WireType["StartGroup"] = 3] = "StartGroup"; + /** + * Used for groups + * @deprecated + */ + WireType[WireType["EndGroup"] = 4] = "EndGroup"; + /** + * Used for fixed32, sfixed32, float. + * Always 4 bytes with little-endian byte order. + */ + WireType[WireType["Bit32"] = 5] = "Bit32"; +})(WireType = exports.WireType || (exports.WireType = {})); /***/ }), -/***/ 5106: +/***/ 2889: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.MessageType = void 0; -const message_type_contract_1 = __nccwpck_require__(3785); -const reflection_info_1 = __nccwpck_require__(7910); -const reflection_type_check_1 = __nccwpck_require__(5167); -const reflection_json_reader_1 = __nccwpck_require__(6790); -const reflection_json_writer_1 = __nccwpck_require__(1094); -const reflection_binary_reader_1 = __nccwpck_require__(9611); -const reflection_binary_writer_1 = __nccwpck_require__(6907); -const reflection_create_1 = __nccwpck_require__(5726); -const reflection_merge_partial_1 = __nccwpck_require__(8044); -const json_typings_1 = __nccwpck_require__(9999); -const json_format_contract_1 = __nccwpck_require__(9367); -const reflection_equals_1 = __nccwpck_require__(4827); -const binary_writer_1 = __nccwpck_require__(3957); -const binary_reader_1 = __nccwpck_require__(2889); -const baseDescriptors = Object.getOwnPropertyDescriptors(Object.getPrototypeOf({})); -const messageTypeDescriptor = baseDescriptors[message_type_contract_1.MESSAGE_TYPE] = {}; +exports.BinaryReader = exports.binaryReadOptions = void 0; +const binary_format_contract_1 = __nccwpck_require__(4816); +const pb_long_1 = __nccwpck_require__(1753); +const goog_varint_1 = __nccwpck_require__(3223); +const defaultsRead = { + readUnknownField: true, + readerFactory: bytes => new BinaryReader(bytes), +}; /** - * This standard message type provides reflection-based - * operations to work with a message. + * Make options for reading binary data form partial options. */ -class MessageType { - constructor(name, fields, options) { - this.defaultCheckDepth = 16; - this.typeName = name; - this.fields = fields.map(reflection_info_1.normalizeFieldInfo); - this.options = options !== null && options !== void 0 ? options : {}; - messageTypeDescriptor.value = this; - this.messagePrototype = Object.create(null, baseDescriptors); - this.refTypeCheck = new reflection_type_check_1.ReflectionTypeCheck(this); - this.refJsonReader = new reflection_json_reader_1.ReflectionJsonReader(this); - this.refJsonWriter = new reflection_json_writer_1.ReflectionJsonWriter(this); - this.refBinReader = new reflection_binary_reader_1.ReflectionBinaryReader(this); - this.refBinWriter = new reflection_binary_writer_1.ReflectionBinaryWriter(this); - } - create(value) { - let message = reflection_create_1.reflectionCreate(this); - if (value !== undefined) { - reflection_merge_partial_1.reflectionMergePartial(this, message, value); - } - return message; +function binaryReadOptions(options) { + return options ? Object.assign(Object.assign({}, defaultsRead), options) : defaultsRead; +} +exports.binaryReadOptions = binaryReadOptions; +class BinaryReader { + constructor(buf, textDecoder) { + this.varint64 = goog_varint_1.varint64read; // dirty cast for `this` + /** + * Read a `uint32` field, an unsigned 32 bit varint. + */ + this.uint32 = goog_varint_1.varint32read; // dirty cast for `this` and access to protected `buf` + this.buf = buf; + this.len = buf.length; + this.pos = 0; + this.view = new DataView(buf.buffer, buf.byteOffset, buf.byteLength); + this.textDecoder = textDecoder !== null && textDecoder !== void 0 ? textDecoder : new TextDecoder("utf-8", { + fatal: true, + ignoreBOM: true, + }); } /** - * Clone the message. - * - * Unknown fields are discarded. + * Reads a tag - field number and wire type. */ - clone(message) { - let copy = this.create(); - reflection_merge_partial_1.reflectionMergePartial(this, copy, message); - return copy; + tag() { + let tag = this.uint32(), fieldNo = tag >>> 3, wireType = tag & 7; + if (fieldNo <= 0 || wireType < 0 || wireType > 5) + throw new Error("illegal tag: field no " + fieldNo + " wire type " + wireType); + return [fieldNo, wireType]; } /** - * Determines whether two message of the same type have the same field values. - * Checks for deep equality, traversing repeated fields, oneof groups, maps - * and messages recursively. - * Will also return true if both messages are `undefined`. + * Skip one element on the wire and return the skipped data. + * Supports WireType.StartGroup since v2.0.0-alpha.23. */ - equals(a, b) { - return reflection_equals_1.reflectionEquals(this, a, b); + skip(wireType) { + let start = this.pos; + // noinspection FallThroughInSwitchStatementJS + switch (wireType) { + case binary_format_contract_1.WireType.Varint: + while (this.buf[this.pos++] & 0x80) { + // ignore + } + break; + case binary_format_contract_1.WireType.Bit64: + this.pos += 4; + case binary_format_contract_1.WireType.Bit32: + this.pos += 4; + break; + case binary_format_contract_1.WireType.LengthDelimited: + let len = this.uint32(); + this.pos += len; + break; + case binary_format_contract_1.WireType.StartGroup: + // From descriptor.proto: Group type is deprecated, not supported in proto3. + // But we must still be able to parse and treat as unknown. + let t; + while ((t = this.tag()[1]) !== binary_format_contract_1.WireType.EndGroup) { + this.skip(t); + } + break; + default: + throw new Error("cant skip wire type " + wireType); + } + this.assertBounds(); + return this.buf.subarray(start, this.pos); } /** - * Is the given value assignable to our message type - * and contains no [excess properties](https://www.typescriptlang.org/docs/handbook/interfaces.html#excess-property-checks)? + * Throws error if position in byte array is out of range. */ - is(arg, depth = this.defaultCheckDepth) { - return this.refTypeCheck.is(arg, depth, false); + assertBounds() { + if (this.pos > this.len) + throw new RangeError("premature EOF"); } /** - * Is the given value assignable to our message type, - * regardless of [excess properties](https://www.typescriptlang.org/docs/handbook/interfaces.html#excess-property-checks)? + * Read a `int32` field, a signed 32 bit varint. */ - isAssignable(arg, depth = this.defaultCheckDepth) { - return this.refTypeCheck.is(arg, depth, true); + int32() { + return this.uint32() | 0; } /** - * Copy partial data into the target message. + * Read a `sint32` field, a signed, zigzag-encoded 32-bit varint. */ - mergePartial(target, source) { - reflection_merge_partial_1.reflectionMergePartial(this, target, source); + sint32() { + let zze = this.uint32(); + // decode zigzag + return (zze >>> 1) ^ -(zze & 1); } /** - * Create a new message from binary format. + * Read a `int64` field, a signed 64-bit varint. */ - fromBinary(data, options) { - let opt = binary_reader_1.binaryReadOptions(options); - return this.internalBinaryRead(opt.readerFactory(data), data.byteLength, opt); + int64() { + return new pb_long_1.PbLong(...this.varint64()); } /** - * Read a new message from a JSON value. + * Read a `uint64` field, an unsigned 64-bit varint. */ - fromJson(json, options) { - return this.internalJsonRead(json, json_format_contract_1.jsonReadOptions(options)); + uint64() { + return new pb_long_1.PbULong(...this.varint64()); } /** - * Read a new message from a JSON string. - * This is equivalent to `T.fromJson(JSON.parse(json))`. + * Read a `sint64` field, a signed, zig-zag-encoded 64-bit varint. */ - fromJsonString(json, options) { - let value = JSON.parse(json); - return this.fromJson(value, options); + sint64() { + let [lo, hi] = this.varint64(); + // decode zig zag + let s = -(lo & 1); + lo = ((lo >>> 1 | (hi & 1) << 31) ^ s); + hi = (hi >>> 1 ^ s); + return new pb_long_1.PbLong(lo, hi); } /** - * Write the message to canonical JSON value. + * Read a `bool` field, a variant. */ - toJson(message, options) { - return this.internalJsonWrite(message, json_format_contract_1.jsonWriteOptions(options)); + bool() { + let [lo, hi] = this.varint64(); + return lo !== 0 || hi !== 0; } /** - * Convert the message to canonical JSON string. - * This is equivalent to `JSON.stringify(T.toJson(t))` + * Read a `fixed32` field, an unsigned, fixed-length 32-bit integer. */ - toJsonString(message, options) { - var _a; - let value = this.toJson(message, options); - return JSON.stringify(value, null, (_a = options === null || options === void 0 ? void 0 : options.prettySpaces) !== null && _a !== void 0 ? _a : 0); + fixed32() { + return this.view.getUint32((this.pos += 4) - 4, true); } /** - * Write the message to binary format. + * Read a `sfixed32` field, a signed, fixed-length 32-bit integer. */ - toBinary(message, options) { - let opt = binary_writer_1.binaryWriteOptions(options); - return this.internalBinaryWrite(message, opt.writerFactory(), opt).finish(); + sfixed32() { + return this.view.getInt32((this.pos += 4) - 4, true); } /** - * This is an internal method. If you just want to read a message from - * JSON, use `fromJson()` or `fromJsonString()`. - * - * Reads JSON value and merges the fields into the target - * according to protobuf rules. If the target is omitted, - * a new instance is created first. + * Read a `fixed64` field, an unsigned, fixed-length 64 bit integer. */ - internalJsonRead(json, options, target) { - if (json !== null && typeof json == "object" && !Array.isArray(json)) { - let message = target !== null && target !== void 0 ? target : this.create(); - this.refJsonReader.read(json, message, options); - return message; - } - throw new Error(`Unable to parse message ${this.typeName} from JSON ${json_typings_1.typeofJsonValue(json)}.`); + fixed64() { + return new pb_long_1.PbULong(this.sfixed32(), this.sfixed32()); } /** - * This is an internal method. If you just want to write a message - * to JSON, use `toJson()` or `toJsonString(). - * - * Writes JSON value and returns it. + * Read a `fixed64` field, a signed, fixed-length 64-bit integer. */ - internalJsonWrite(message, options) { - return this.refJsonWriter.write(message, options); + sfixed64() { + return new pb_long_1.PbLong(this.sfixed32(), this.sfixed32()); } /** - * This is an internal method. If you just want to write a message - * in binary format, use `toBinary()`. - * - * Serializes the message in binary format and appends it to the given - * writer. Returns passed writer. + * Read a `float` field, 32-bit floating point number. */ - internalBinaryWrite(message, writer, options) { - this.refBinWriter.write(message, writer, options); - return writer; + float() { + return this.view.getFloat32((this.pos += 4) - 4, true); } /** - * This is an internal method. If you just want to read a message from - * binary data, use `fromBinary()`. - * - * Reads data from binary format and merges the fields into - * the target according to protobuf rules. If the target is - * omitted, a new instance is created first. + * Read a `double` field, a 64-bit floating point number. */ - internalBinaryRead(reader, length, options, target) { - let message = target !== null && target !== void 0 ? target : this.create(); - this.refBinReader.read(reader, message, options, length); - return message; + double() { + return this.view.getFloat64((this.pos += 8) - 8, true); + } + /** + * Read a `bytes` field, length-delimited arbitrary data. + */ + bytes() { + let len = this.uint32(); + let start = this.pos; + this.pos += len; + this.assertBounds(); + return this.buf.subarray(start, start + len); + } + /** + * Read a `string` field, length-delimited data converted to UTF-8 text. + */ + string() { + return this.textDecoder.decode(this.bytes()); } } -exports.MessageType = MessageType; +exports.BinaryReader = BinaryReader; /***/ }), -/***/ 8063: -/***/ ((__unused_webpack_module, exports) => { +/***/ 3957: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.getSelectedOneofValue = exports.clearOneofValue = exports.setUnknownOneofValue = exports.setOneofValue = exports.getOneofValue = exports.isOneofGroup = void 0; -/** - * Is the given value a valid oneof group? - * - * We represent protobuf `oneof` as algebraic data types (ADT) in generated - * code. But when working with messages of unknown type, the ADT does not - * help us. - * - * This type guard checks if the given object adheres to the ADT rules, which - * are as follows: - * - * 1) Must be an object. - * - * 2) Must have a "oneofKind" discriminator property. - * - * 3) If "oneofKind" is `undefined`, no member field is selected. The object - * must not have any other properties. - * - * 4) If "oneofKind" is a `string`, the member field with this name is - * selected. - * - * 5) If a member field is selected, the object must have a second property - * with this name. The property must not be `undefined`. - * - * 6) No extra properties are allowed. The object has either one property - * (no selection) or two properties (selection). - * - */ -function isOneofGroup(any) { - if (typeof any != 'object' || any === null || !any.hasOwnProperty('oneofKind')) { - return false; - } - switch (typeof any.oneofKind) { - case "string": - if (any[any.oneofKind] === undefined) - return false; - return Object.keys(any).length == 2; - case "undefined": - return Object.keys(any).length == 1; - default: - return false; - } -} -exports.isOneofGroup = isOneofGroup; +exports.BinaryWriter = exports.binaryWriteOptions = void 0; +const pb_long_1 = __nccwpck_require__(1753); +const goog_varint_1 = __nccwpck_require__(3223); +const assert_1 = __nccwpck_require__(8602); +const defaultsWrite = { + writeUnknownFields: true, + writerFactory: () => new BinaryWriter(), +}; /** - * Returns the value of the given field in a oneof group. + * Make options for writing binary data form partial options. */ -function getOneofValue(oneof, kind) { - return oneof[kind]; +function binaryWriteOptions(options) { + return options ? Object.assign(Object.assign({}, defaultsWrite), options) : defaultsWrite; } -exports.getOneofValue = getOneofValue; -function setOneofValue(oneof, kind, value) { - if (oneof.oneofKind !== undefined) { - delete oneof[oneof.oneofKind]; +exports.binaryWriteOptions = binaryWriteOptions; +class BinaryWriter { + constructor(textEncoder) { + /** + * Previous fork states. + */ + this.stack = []; + this.textEncoder = textEncoder !== null && textEncoder !== void 0 ? textEncoder : new TextEncoder(); + this.chunks = []; + this.buf = []; } - oneof.oneofKind = kind; - if (value !== undefined) { - oneof[kind] = value; + /** + * Return all bytes written and reset this writer. + */ + finish() { + this.chunks.push(new Uint8Array(this.buf)); // flush the buffer + let len = 0; + for (let i = 0; i < this.chunks.length; i++) + len += this.chunks[i].length; + let bytes = new Uint8Array(len); + let offset = 0; + for (let i = 0; i < this.chunks.length; i++) { + bytes.set(this.chunks[i], offset); + offset += this.chunks[i].length; + } + this.chunks = []; + return bytes; } -} -exports.setOneofValue = setOneofValue; -function setUnknownOneofValue(oneof, kind, value) { - if (oneof.oneofKind !== undefined) { - delete oneof[oneof.oneofKind]; + /** + * Start a new fork for length-delimited data like a message + * or a packed repeated field. + * + * Must be joined later with `join()`. + */ + fork() { + this.stack.push({ chunks: this.chunks, buf: this.buf }); + this.chunks = []; + this.buf = []; + return this; } - oneof.oneofKind = kind; - if (value !== undefined && kind !== undefined) { - oneof[kind] = value; + /** + * Join the last fork. Write its length and bytes, then + * return to the previous state. + */ + join() { + // get chunk of fork + let chunk = this.finish(); + // restore previous state + let prev = this.stack.pop(); + if (!prev) + throw new Error('invalid state, fork stack empty'); + this.chunks = prev.chunks; + this.buf = prev.buf; + // write length of chunk as varint + this.uint32(chunk.byteLength); + return this.raw(chunk); } -} -exports.setUnknownOneofValue = setUnknownOneofValue; -/** - * Removes the selected field in a oneof group. - * - * Note that the recommended way to modify a oneof group is to set - * a new object: - * - * ```ts - * message.result = { oneofKind: undefined }; - * ``` - */ -function clearOneofValue(oneof) { - if (oneof.oneofKind !== undefined) { - delete oneof[oneof.oneofKind]; + /** + * Writes a tag (field number and wire type). + * + * Equivalent to `uint32( (fieldNo << 3 | type) >>> 0 )`. + * + * Generated code should compute the tag ahead of time and call `uint32()`. + */ + tag(fieldNo, type) { + return this.uint32((fieldNo << 3 | type) >>> 0); } - oneof.oneofKind = undefined; -} -exports.clearOneofValue = clearOneofValue; -/** - * Returns the selected value of the given oneof group. - * - * Not that the recommended way to access a oneof group is to check - * the "oneofKind" property and let TypeScript narrow down the union - * type for you: - * - * ```ts - * if (message.result.oneofKind === "error") { - * message.result.error; // string - * } - * ``` - * - * In the rare case you just need the value, and do not care about - * which protobuf field is selected, you can use this function - * for convenience. - */ -function getSelectedOneofValue(oneof) { - if (oneof.oneofKind === undefined) { - return undefined; + /** + * Write a chunk of raw bytes. + */ + raw(chunk) { + if (this.buf.length) { + this.chunks.push(new Uint8Array(this.buf)); + this.buf = []; + } + this.chunks.push(chunk); + return this; } - return oneof[oneof.oneofKind]; -} -exports.getSelectedOneofValue = getSelectedOneofValue; - - -/***/ }), - -/***/ 1753: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { - - -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.PbLong = exports.PbULong = exports.detectBi = void 0; -const goog_varint_1 = __nccwpck_require__(3223); -let BI; -function detectBi() { - const dv = new DataView(new ArrayBuffer(8)); - const ok = globalThis.BigInt !== undefined - && typeof dv.getBigInt64 === "function" - && typeof dv.getBigUint64 === "function" - && typeof dv.setBigInt64 === "function" - && typeof dv.setBigUint64 === "function"; - BI = ok ? { - MIN: BigInt("-9223372036854775808"), - MAX: BigInt("9223372036854775807"), - UMIN: BigInt("0"), - UMAX: BigInt("18446744073709551615"), - C: BigInt, - V: dv, - } : undefined; -} -exports.detectBi = detectBi; -detectBi(); -function assertBi(bi) { - if (!bi) - throw new Error("BigInt unavailable, see https://github.com/timostamm/protobuf-ts/blob/v1.0.8/MANUAL.md#bigint-support"); -} -// used to validate from(string) input (when bigint is unavailable) -const RE_DECIMAL_STR = /^-?[0-9]+$/; -// constants for binary math -const TWO_PWR_32_DBL = 0x100000000; -const HALF_2_PWR_32 = 0x080000000; -// base class for PbLong and PbULong provides shared code -class SharedPbLong { /** - * Create a new instance with the given bits. + * Write a `uint32` value, an unsigned 32 bit varint. */ - constructor(lo, hi) { - this.lo = lo | 0; - this.hi = hi | 0; + uint32(value) { + assert_1.assertUInt32(value); + // write value as varint 32, inlined for speed + while (value > 0x7f) { + this.buf.push((value & 0x7f) | 0x80); + value = value >>> 7; + } + this.buf.push(value); + return this; } /** - * Is this instance equal to 0? + * Write a `int32` value, a signed 32 bit varint. */ - isZero() { - return this.lo == 0 && this.hi == 0; + int32(value) { + assert_1.assertInt32(value); + goog_varint_1.varint32write(value, this.buf); + return this; } /** - * Convert to a native number. + * Write a `bool` value, a variant. */ - toNumber() { - let result = this.hi * TWO_PWR_32_DBL + (this.lo >>> 0); - if (!Number.isSafeInteger(result)) - throw new Error("cannot convert to safe number"); - return result; + bool(value) { + this.buf.push(value ? 1 : 0); + return this; } -} -/** - * 64-bit unsigned integer as two 32-bit values. - * Converts between `string`, `number` and `bigint` representations. - */ -class PbULong extends SharedPbLong { /** - * Create instance from a `string`, `number` or `bigint`. + * Write a `bytes` value, length-delimited arbitrary data. */ - static from(value) { - if (BI) - // noinspection FallThroughInSwitchStatementJS - switch (typeof value) { - case "string": - if (value == "0") - return this.ZERO; - if (value == "") - throw new Error('string is no integer'); - value = BI.C(value); - case "number": - if (value === 0) - return this.ZERO; - value = BI.C(value); - case "bigint": - if (!value) - return this.ZERO; - if (value < BI.UMIN) - throw new Error('signed value for ulong'); - if (value > BI.UMAX) - throw new Error('ulong too large'); - BI.V.setBigUint64(0, value, true); - return new PbULong(BI.V.getInt32(0, true), BI.V.getInt32(4, true)); - } - else - switch (typeof value) { - case "string": - if (value == "0") - return this.ZERO; - value = value.trim(); - if (!RE_DECIMAL_STR.test(value)) - throw new Error('string is no integer'); - let [minus, lo, hi] = goog_varint_1.int64fromString(value); - if (minus) - throw new Error('signed value for ulong'); - return new PbULong(lo, hi); - case "number": - if (value == 0) - return this.ZERO; - if (!Number.isSafeInteger(value)) - throw new Error('number is no integer'); - if (value < 0) - throw new Error('signed value for ulong'); - return new PbULong(value, value / TWO_PWR_32_DBL); - } - throw new Error('unknown value ' + typeof value); + bytes(value) { + this.uint32(value.byteLength); // write length of chunk as varint + return this.raw(value); } /** - * Convert to decimal string. + * Write a `string` value, length-delimited data converted to UTF-8 text. */ - toString() { - return BI ? this.toBigInt().toString() : goog_varint_1.int64toString(this.lo, this.hi); + string(value) { + let chunk = this.textEncoder.encode(value); + this.uint32(chunk.byteLength); // write length of chunk as varint + return this.raw(chunk); } /** - * Convert to native bigint. + * Write a `float` value, 32-bit floating point number. */ - toBigInt() { - assertBi(BI); - BI.V.setInt32(0, this.lo, true); - BI.V.setInt32(4, this.hi, true); - return BI.V.getBigUint64(0, true); + float(value) { + assert_1.assertFloat32(value); + let chunk = new Uint8Array(4); + new DataView(chunk.buffer).setFloat32(0, value, true); + return this.raw(chunk); } -} -exports.PbULong = PbULong; -/** - * ulong 0 singleton. - */ -PbULong.ZERO = new PbULong(0, 0); -/** - * 64-bit signed integer as two 32-bit values. - * Converts between `string`, `number` and `bigint` representations. - */ -class PbLong extends SharedPbLong { /** - * Create instance from a `string`, `number` or `bigint`. + * Write a `double` value, a 64-bit floating point number. */ - static from(value) { - if (BI) - // noinspection FallThroughInSwitchStatementJS - switch (typeof value) { - case "string": - if (value == "0") - return this.ZERO; - if (value == "") - throw new Error('string is no integer'); - value = BI.C(value); - case "number": - if (value === 0) - return this.ZERO; - value = BI.C(value); - case "bigint": - if (!value) - return this.ZERO; - if (value < BI.MIN) - throw new Error('signed long too small'); - if (value > BI.MAX) - throw new Error('signed long too large'); - BI.V.setBigInt64(0, value, true); - return new PbLong(BI.V.getInt32(0, true), BI.V.getInt32(4, true)); - } - else - switch (typeof value) { - case "string": - if (value == "0") - return this.ZERO; - value = value.trim(); - if (!RE_DECIMAL_STR.test(value)) - throw new Error('string is no integer'); - let [minus, lo, hi] = goog_varint_1.int64fromString(value); - if (minus) { - if (hi > HALF_2_PWR_32 || (hi == HALF_2_PWR_32 && lo != 0)) - throw new Error('signed long too small'); - } - else if (hi >= HALF_2_PWR_32) - throw new Error('signed long too large'); - let pbl = new PbLong(lo, hi); - return minus ? pbl.negate() : pbl; - case "number": - if (value == 0) - return this.ZERO; - if (!Number.isSafeInteger(value)) - throw new Error('number is no integer'); - return value > 0 - ? new PbLong(value, value / TWO_PWR_32_DBL) - : new PbLong(-value, -value / TWO_PWR_32_DBL).negate(); - } - throw new Error('unknown value ' + typeof value); + double(value) { + let chunk = new Uint8Array(8); + new DataView(chunk.buffer).setFloat64(0, value, true); + return this.raw(chunk); } /** - * Do we have a minus sign? + * Write a `fixed32` value, an unsigned, fixed-length 32-bit integer. */ - isNegative() { - return (this.hi & HALF_2_PWR_32) !== 0; + fixed32(value) { + assert_1.assertUInt32(value); + let chunk = new Uint8Array(4); + new DataView(chunk.buffer).setUint32(0, value, true); + return this.raw(chunk); } /** - * Negate two's complement. - * Invert all the bits and add one to the result. + * Write a `sfixed32` value, a signed, fixed-length 32-bit integer. */ - negate() { - let hi = ~this.hi, lo = this.lo; - if (lo) - lo = ~lo + 1; - else - hi += 1; - return new PbLong(lo, hi); + sfixed32(value) { + assert_1.assertInt32(value); + let chunk = new Uint8Array(4); + new DataView(chunk.buffer).setInt32(0, value, true); + return this.raw(chunk); } /** - * Convert to decimal string. + * Write a `sint32` value, a signed, zigzag-encoded 32-bit varint. */ - toString() { - if (BI) - return this.toBigInt().toString(); - if (this.isNegative()) { - let n = this.negate(); - return '-' + goog_varint_1.int64toString(n.lo, n.hi); - } - return goog_varint_1.int64toString(this.lo, this.hi); + sint32(value) { + assert_1.assertInt32(value); + // zigzag encode + value = ((value << 1) ^ (value >> 31)) >>> 0; + goog_varint_1.varint32write(value, this.buf); + return this; } /** - * Convert to native bigint. + * Write a `fixed64` value, a signed, fixed-length 64-bit integer. */ - toBigInt() { - assertBi(BI); - BI.V.setInt32(0, this.lo, true); - BI.V.setInt32(4, this.hi, true); - return BI.V.getBigInt64(0, true); + sfixed64(value) { + let chunk = new Uint8Array(8); + let view = new DataView(chunk.buffer); + let long = pb_long_1.PbLong.from(value); + view.setInt32(0, long.lo, true); + view.setInt32(4, long.hi, true); + return this.raw(chunk); } -} -exports.PbLong = PbLong; + /** + * Write a `fixed64` value, an unsigned, fixed-length 64 bit integer. + */ + fixed64(value) { + let chunk = new Uint8Array(8); + let view = new DataView(chunk.buffer); + let long = pb_long_1.PbULong.from(value); + view.setInt32(0, long.lo, true); + view.setInt32(4, long.hi, true); + return this.raw(chunk); + } + /** + * Write a `int64` value, a signed 64-bit varint. + */ + int64(value) { + let long = pb_long_1.PbLong.from(value); + goog_varint_1.varint64write(long.lo, long.hi, this.buf); + return this; + } + /** + * Write a `sint64` value, a signed, zig-zag-encoded 64-bit varint. + */ + sint64(value) { + let long = pb_long_1.PbLong.from(value), + // zigzag encode + sign = long.hi >> 31, lo = (long.lo << 1) ^ sign, hi = ((long.hi << 1) | (long.lo >>> 31)) ^ sign; + goog_varint_1.varint64write(lo, hi, this.buf); + return this; + } + /** + * Write a `uint64` value, an unsigned 64-bit varint. + */ + uint64(value) { + let long = pb_long_1.PbULong.from(value); + goog_varint_1.varint64write(long.lo, long.hi, this.buf); + return this; + } +} +exports.BinaryWriter = BinaryWriter; + + +/***/ }), + +/***/ 257: +/***/ ((__unused_webpack_module, exports) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.listEnumNumbers = exports.listEnumNames = exports.listEnumValues = exports.isEnumObject = void 0; /** - * long 0 singleton. + * Is this a lookup object generated by Typescript, for a Typescript enum + * generated by protobuf-ts? + * + * - No `const enum` (enum must not be inlined, we need reverse mapping). + * - No string enum (we need int32 for protobuf). + * - Must have a value for 0 (otherwise, we would need to support custom default values). */ -PbLong.ZERO = new PbLong(0, 0); +function isEnumObject(arg) { + if (typeof arg != 'object' || arg === null) { + return false; + } + if (!arg.hasOwnProperty(0)) { + return false; + } + for (let k of Object.keys(arg)) { + let num = parseInt(k); + if (!Number.isNaN(num)) { + // is there a name for the number? + let nam = arg[num]; + if (nam === undefined) + return false; + // does the name resolve back to the number? + if (arg[nam] !== num) + return false; + } + else { + // is there a number for the name? + let num = arg[k]; + if (num === undefined) + return false; + // is it a string enum? + if (typeof num !== 'number') + return false; + // do we know the number? + if (arg[num] === undefined) + return false; + } + } + return true; +} +exports.isEnumObject = isEnumObject; +/** + * Lists all values of a Typescript enum, as an array of objects with a "name" + * property and a "number" property. + * + * Note that it is possible that a number appears more than once, because it is + * possible to have aliases in an enum. + * + * Throws if the enum does not adhere to the rules of enums generated by + * protobuf-ts. See `isEnumObject()`. + */ +function listEnumValues(enumObject) { + if (!isEnumObject(enumObject)) + throw new Error("not a typescript enum object"); + let values = []; + for (let [name, number] of Object.entries(enumObject)) + if (typeof number == "number") + values.push({ name, number }); + return values; +} +exports.listEnumValues = listEnumValues; +/** + * Lists the names of a Typescript enum. + * + * Throws if the enum does not adhere to the rules of enums generated by + * protobuf-ts. See `isEnumObject()`. + */ +function listEnumNames(enumObject) { + return listEnumValues(enumObject).map(val => val.name); +} +exports.listEnumNames = listEnumNames; +/** + * Lists the numbers of a Typescript enum. + * + * Throws if the enum does not adhere to the rules of enums generated by + * protobuf-ts. See `isEnumObject()`. + */ +function listEnumNumbers(enumObject) { + return listEnumValues(enumObject) + .map(val => val.number) + .filter((num, index, arr) => arr.indexOf(num) == index); +} +exports.listEnumNumbers = listEnumNumbers; /***/ }), -/***/ 8950: +/***/ 3223: /***/ ((__unused_webpack_module, exports) => { -// Copyright (c) 2016, Daniel Wirtz All rights reserved. +// Copyright 2008 Google Inc. All rights reserved. // // Redistribution and use in source and binary forms, with or without // modification, are permitted provided that the following conditions are // met: // // * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above copyright -// notice, this list of conditions and the following disclaimer in the -// documentation and/or other materials provided with the distribution. -// * Neither the name of its author, nor the names of its contributors -// may be used to endorse or promote products derived from this software -// without specific prior written permission. +// notice, this list of conditions and the following disclaimer. +// * Redistributions in binary form must reproduce the above +// copyright notice, this list of conditions and the following disclaimer +// in the documentation and/or other materials provided with the +// distribution. +// * Neither the name of Google Inc. nor the names of its +// contributors may be used to endorse or promote products derived from +// this software without specific prior written permission. // // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT @@ -3121,857 +3066,1153 @@ PbLong.ZERO = new PbLong(0, 0); // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. +// +// Code generated by the Protocol Buffer compiler is owned by the owner +// of the input file used when generating it. This code is not +// standalone and requires a support library to be linked with it. This +// support library is itself covered by the above license. Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.utf8read = void 0; -const fromCharCodes = (chunk) => String.fromCharCode.apply(String, chunk); +exports.varint32read = exports.varint32write = exports.int64toString = exports.int64fromString = exports.varint64write = exports.varint64read = void 0; /** - * @deprecated This function will no longer be exported with the next major - * release, since protobuf-ts has switch to TextDecoder API. If you need this - * function, please migrate to @protobufjs/utf8. For context, see - * https://github.com/timostamm/protobuf-ts/issues/184 + * Read a 64 bit varint as two JS numbers. * - * Reads UTF8 bytes as a string. + * Returns tuple: + * [0]: low bits + * [0]: high bits * - * See [protobufjs / utf8](https://github.com/protobufjs/protobuf.js/blob/9893e35b854621cce64af4bf6be2cff4fb892796/lib/utf8/index.js#L40) + * Copyright 2008 Google Inc. All rights reserved. * - * Copyright (c) 2016, Daniel Wirtz + * See https://github.com/protocolbuffers/protobuf/blob/8a71927d74a4ce34efe2d8769fda198f52d20d12/js/experimental/runtime/kernel/buffer_decoder.js#L175 */ -function utf8read(bytes) { - if (bytes.length < 1) - return ""; - let pos = 0, // position in bytes - parts = [], chunk = [], i = 0, // char offset - t; // temporary - let len = bytes.length; - while (pos < len) { - t = bytes[pos++]; - if (t < 128) - chunk[i++] = t; - else if (t > 191 && t < 224) - chunk[i++] = (t & 31) << 6 | bytes[pos++] & 63; - else if (t > 239 && t < 365) { - t = ((t & 7) << 18 | (bytes[pos++] & 63) << 12 | (bytes[pos++] & 63) << 6 | bytes[pos++] & 63) - 0x10000; - chunk[i++] = 0xD800 + (t >> 10); - chunk[i++] = 0xDC00 + (t & 1023); - } - else - chunk[i++] = (t & 15) << 12 | (bytes[pos++] & 63) << 6 | bytes[pos++] & 63; - if (i > 8191) { - parts.push(fromCharCodes(chunk)); - i = 0; +function varint64read() { + let lowBits = 0; + let highBits = 0; + for (let shift = 0; shift < 28; shift += 7) { + let b = this.buf[this.pos++]; + lowBits |= (b & 0x7F) << shift; + if ((b & 0x80) == 0) { + this.assertBounds(); + return [lowBits, highBits]; } } - if (parts.length) { - if (i) - parts.push(fromCharCodes(chunk.slice(0, i))); - return parts.join(""); + let middleByte = this.buf[this.pos++]; + // last four bits of the first 32 bit number + lowBits |= (middleByte & 0x0F) << 28; + // 3 upper bits are part of the next 32 bit number + highBits = (middleByte & 0x70) >> 4; + if ((middleByte & 0x80) == 0) { + this.assertBounds(); + return [lowBits, highBits]; } - return fromCharCodes(chunk.slice(0, i)); + for (let shift = 3; shift <= 31; shift += 7) { + let b = this.buf[this.pos++]; + highBits |= (b & 0x7F) << shift; + if ((b & 0x80) == 0) { + this.assertBounds(); + return [lowBits, highBits]; + } + } + throw new Error('invalid varint'); } -exports.utf8read = utf8read; - - -/***/ }), - -/***/ 9611: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { - - -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ReflectionBinaryReader = void 0; -const binary_format_contract_1 = __nccwpck_require__(4816); -const reflection_info_1 = __nccwpck_require__(7910); -const reflection_long_convert_1 = __nccwpck_require__(3402); -const reflection_scalar_default_1 = __nccwpck_require__(9526); +exports.varint64read = varint64read; /** - * Reads proto3 messages in binary format using reflection information. + * Write a 64 bit varint, given as two JS numbers, to the given bytes array. * - * https://developers.google.com/protocol-buffers/docs/encoding + * Copyright 2008 Google Inc. All rights reserved. + * + * See https://github.com/protocolbuffers/protobuf/blob/8a71927d74a4ce34efe2d8769fda198f52d20d12/js/experimental/runtime/kernel/writer.js#L344 */ -class ReflectionBinaryReader { - constructor(info) { - this.info = info; - } - prepare() { - var _a; - if (!this.fieldNoToField) { - const fieldsInput = (_a = this.info.fields) !== null && _a !== void 0 ? _a : []; - this.fieldNoToField = new Map(fieldsInput.map(field => [field.no, field])); +function varint64write(lo, hi, bytes) { + for (let i = 0; i < 28; i = i + 7) { + const shift = lo >>> i; + const hasNext = !((shift >>> 7) == 0 && hi == 0); + const byte = (hasNext ? shift | 0x80 : shift) & 0xFF; + bytes.push(byte); + if (!hasNext) { + return; } } - /** - * Reads a message from binary format into the target message. - * - * Repeated fields are appended. Map entries are added, overwriting - * existing keys. - * - * If a message field is already present, it will be merged with the - * new data. - */ - read(reader, message, options, length) { - this.prepare(); - const end = length === undefined ? reader.len : reader.pos + length; - while (reader.pos < end) { - // read the tag and find the field - const [fieldNo, wireType] = reader.tag(), field = this.fieldNoToField.get(fieldNo); - if (!field) { - let u = options.readUnknownField; - if (u == "throw") - throw new Error(`Unknown field ${fieldNo} (wire type ${wireType}) for ${this.info.typeName}`); - let d = reader.skip(wireType); - if (u !== false) - (u === true ? binary_format_contract_1.UnknownFieldHandler.onRead : u)(this.info.typeName, message, fieldNo, wireType, d); - continue; - } - // target object for the field we are reading - let target = message, repeated = field.repeat, localName = field.localName; - // if field is member of oneof ADT, use ADT as target - if (field.oneof) { - target = target[field.oneof]; - // if other oneof member selected, set new ADT - if (target.oneofKind !== localName) - target = message[field.oneof] = { - oneofKind: localName - }; - } - // we have handled oneof above, we just have read the value into `target[localName]` - switch (field.kind) { - case "scalar": - case "enum": - let T = field.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.T; - let L = field.kind == "scalar" ? field.L : undefined; - if (repeated) { - let arr = target[localName]; // safe to assume presence of array, oneof cannot contain repeated values - if (wireType == binary_format_contract_1.WireType.LengthDelimited && T != reflection_info_1.ScalarType.STRING && T != reflection_info_1.ScalarType.BYTES) { - let e = reader.uint32() + reader.pos; - while (reader.pos < e) - arr.push(this.scalar(reader, T, L)); - } - else - arr.push(this.scalar(reader, T, L)); - } - else - target[localName] = this.scalar(reader, T, L); - break; - case "message": - if (repeated) { - let arr = target[localName]; // safe to assume presence of array, oneof cannot contain repeated values - let msg = field.T().internalBinaryRead(reader, reader.uint32(), options); - arr.push(msg); - } - else - target[localName] = field.T().internalBinaryRead(reader, reader.uint32(), options, target[localName]); - break; - case "map": - let [mapKey, mapVal] = this.mapEntry(field, reader, options); - // safe to assume presence of map object, oneof cannot contain repeated values - target[localName][mapKey] = mapVal; - break; - } - } + const splitBits = ((lo >>> 28) & 0x0F) | ((hi & 0x07) << 4); + const hasMoreBits = !((hi >> 3) == 0); + bytes.push((hasMoreBits ? splitBits | 0x80 : splitBits) & 0xFF); + if (!hasMoreBits) { + return; } - /** - * Read a map field, expecting key field = 1, value field = 2 - */ - mapEntry(field, reader, options) { - let length = reader.uint32(); - let end = reader.pos + length; - let key = undefined; // javascript only allows number or string for object properties - let val = undefined; - while (reader.pos < end) { - let [fieldNo, wireType] = reader.tag(); - switch (fieldNo) { - case 1: - if (field.K == reflection_info_1.ScalarType.BOOL) - key = reader.bool().toString(); - else - // long types are read as string, number types are okay as number - key = this.scalar(reader, field.K, reflection_info_1.LongType.STRING); - break; - case 2: - switch (field.V.kind) { - case "scalar": - val = this.scalar(reader, field.V.T, field.V.L); - break; - case "enum": - val = reader.int32(); - break; - case "message": - val = field.V.T().internalBinaryRead(reader, reader.uint32(), options); - break; - } - break; - default: - throw new Error(`Unknown field ${fieldNo} (wire type ${wireType}) in map entry for ${this.info.typeName}#${field.name}`); - } - } - if (key === undefined) { - let keyRaw = reflection_scalar_default_1.reflectionScalarDefault(field.K); - key = field.K == reflection_info_1.ScalarType.BOOL ? keyRaw.toString() : keyRaw; + for (let i = 3; i < 31; i = i + 7) { + const shift = hi >>> i; + const hasNext = !((shift >>> 7) == 0); + const byte = (hasNext ? shift | 0x80 : shift) & 0xFF; + bytes.push(byte); + if (!hasNext) { + return; } - if (val === undefined) - switch (field.V.kind) { - case "scalar": - val = reflection_scalar_default_1.reflectionScalarDefault(field.V.T, field.V.L); - break; - case "enum": - val = 0; - break; - case "message": - val = field.V.T().create(); - break; - } - return [key, val]; } - scalar(reader, type, longType) { - switch (type) { - case reflection_info_1.ScalarType.INT32: - return reader.int32(); - case reflection_info_1.ScalarType.STRING: - return reader.string(); - case reflection_info_1.ScalarType.BOOL: - return reader.bool(); - case reflection_info_1.ScalarType.DOUBLE: - return reader.double(); - case reflection_info_1.ScalarType.FLOAT: - return reader.float(); - case reflection_info_1.ScalarType.INT64: - return reflection_long_convert_1.reflectionLongConvert(reader.int64(), longType); - case reflection_info_1.ScalarType.UINT64: - return reflection_long_convert_1.reflectionLongConvert(reader.uint64(), longType); - case reflection_info_1.ScalarType.FIXED64: - return reflection_long_convert_1.reflectionLongConvert(reader.fixed64(), longType); - case reflection_info_1.ScalarType.FIXED32: - return reader.fixed32(); - case reflection_info_1.ScalarType.BYTES: - return reader.bytes(); - case reflection_info_1.ScalarType.UINT32: - return reader.uint32(); - case reflection_info_1.ScalarType.SFIXED32: - return reader.sfixed32(); - case reflection_info_1.ScalarType.SFIXED64: - return reflection_long_convert_1.reflectionLongConvert(reader.sfixed64(), longType); - case reflection_info_1.ScalarType.SINT32: - return reader.sint32(); - case reflection_info_1.ScalarType.SINT64: - return reflection_long_convert_1.reflectionLongConvert(reader.sint64(), longType); + bytes.push((hi >>> 31) & 0x01); +} +exports.varint64write = varint64write; +// constants for binary math +const TWO_PWR_32_DBL = (1 << 16) * (1 << 16); +/** + * Parse decimal string of 64 bit integer value as two JS numbers. + * + * Returns tuple: + * [0]: minus sign? + * [1]: low bits + * [2]: high bits + * + * Copyright 2008 Google Inc. + */ +function int64fromString(dec) { + // Check for minus sign. + let minus = dec[0] == '-'; + if (minus) + dec = dec.slice(1); + // Work 6 decimal digits at a time, acting like we're converting base 1e6 + // digits to binary. This is safe to do with floating point math because + // Number.isSafeInteger(ALL_32_BITS * 1e6) == true. + const base = 1e6; + let lowBits = 0; + let highBits = 0; + function add1e6digit(begin, end) { + // Note: Number('') is 0. + const digit1e6 = Number(dec.slice(begin, end)); + highBits *= base; + lowBits = lowBits * base + digit1e6; + // Carry bits from lowBits to highBits + if (lowBits >= TWO_PWR_32_DBL) { + highBits = highBits + ((lowBits / TWO_PWR_32_DBL) | 0); + lowBits = lowBits % TWO_PWR_32_DBL; } } + add1e6digit(-24, -18); + add1e6digit(-18, -12); + add1e6digit(-12, -6); + add1e6digit(-6); + return [minus, lowBits, highBits]; } -exports.ReflectionBinaryReader = ReflectionBinaryReader; - - -/***/ }), - -/***/ 6907: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { - - -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ReflectionBinaryWriter = void 0; -const binary_format_contract_1 = __nccwpck_require__(4816); -const reflection_info_1 = __nccwpck_require__(7910); -const assert_1 = __nccwpck_require__(8602); -const pb_long_1 = __nccwpck_require__(1753); +exports.int64fromString = int64fromString; /** - * Writes proto3 messages in binary format using reflection information. + * Format 64 bit integer value (as two JS numbers) to decimal string. * - * https://developers.google.com/protocol-buffers/docs/encoding + * Copyright 2008 Google Inc. */ -class ReflectionBinaryWriter { - constructor(info) { - this.info = info; - } - prepare() { - if (!this.fields) { - const fieldsInput = this.info.fields ? this.info.fields.concat() : []; - this.fields = fieldsInput.sort((a, b) => a.no - b.no); - } +function int64toString(bitsLow, bitsHigh) { + // Skip the expensive conversion if the number is small enough to use the + // built-in conversions. + if ((bitsHigh >>> 0) <= 0x1FFFFF) { + return '' + (TWO_PWR_32_DBL * bitsHigh + (bitsLow >>> 0)); } - /** - * Writes the message to binary format. - */ - write(message, writer, options) { - this.prepare(); - for (const field of this.fields) { - let value, // this will be our field value, whether it is member of a oneof or not - emitDefault, // whether we emit the default value (only true for oneof members) - repeated = field.repeat, localName = field.localName; - // handle oneof ADT - if (field.oneof) { - const group = message[field.oneof]; - if (group.oneofKind !== localName) - continue; // if field is not selected, skip - value = group[localName]; - emitDefault = true; - } - else { - value = message[localName]; - emitDefault = false; - } - // we have handled oneof above. we just have to honor `emitDefault`. - switch (field.kind) { - case "scalar": - case "enum": - let T = field.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.T; - if (repeated) { - assert_1.assert(Array.isArray(value)); - if (repeated == reflection_info_1.RepeatType.PACKED) - this.packed(writer, T, field.no, value); - else - for (const item of value) - this.scalar(writer, T, field.no, item, true); - } - else if (value === undefined) - assert_1.assert(field.opt); - else - this.scalar(writer, T, field.no, value, emitDefault || field.opt); - break; - case "message": - if (repeated) { - assert_1.assert(Array.isArray(value)); - for (const item of value) - this.message(writer, options, field.T(), field.no, item); - } - else { - this.message(writer, options, field.T(), field.no, value); - } - break; - case "map": - assert_1.assert(typeof value == 'object' && value !== null); - for (const [key, val] of Object.entries(value)) - this.mapEntry(writer, options, field, key, val); - break; - } + // What this code is doing is essentially converting the input number from + // base-2 to base-1e7, which allows us to represent the 64-bit range with + // only 3 (very large) digits. Those digits are then trivial to convert to + // a base-10 string. + // The magic numbers used here are - + // 2^24 = 16777216 = (1,6777216) in base-1e7. + // 2^48 = 281474976710656 = (2,8147497,6710656) in base-1e7. + // Split 32:32 representation into 16:24:24 representation so our + // intermediate digits don't overflow. + let low = bitsLow & 0xFFFFFF; + let mid = (((bitsLow >>> 24) | (bitsHigh << 8)) >>> 0) & 0xFFFFFF; + let high = (bitsHigh >> 16) & 0xFFFF; + // Assemble our three base-1e7 digits, ignoring carries. The maximum + // value in a digit at this step is representable as a 48-bit integer, which + // can be stored in a 64-bit floating point number. + let digitA = low + (mid * 6777216) + (high * 6710656); + let digitB = mid + (high * 8147497); + let digitC = (high * 2); + // Apply carries from A to B and from B to C. + let base = 10000000; + if (digitA >= base) { + digitB += Math.floor(digitA / base); + digitA %= base; + } + if (digitB >= base) { + digitC += Math.floor(digitB / base); + digitB %= base; + } + // Convert base-1e7 digits to base-10, with optional leading zeroes. + function decimalFrom1e7(digit1e7, needLeadingZeros) { + let partial = digit1e7 ? String(digit1e7) : ''; + if (needLeadingZeros) { + return '0000000'.slice(partial.length) + partial; } - let u = options.writeUnknownFields; - if (u !== false) - (u === true ? binary_format_contract_1.UnknownFieldHandler.onWrite : u)(this.info.typeName, message, writer); + return partial; } - mapEntry(writer, options, field, key, value) { - writer.tag(field.no, binary_format_contract_1.WireType.LengthDelimited); - writer.fork(); - // javascript only allows number or string for object properties - // we convert from our representation to the protobuf type - let keyValue = key; - switch (field.K) { - case reflection_info_1.ScalarType.INT32: - case reflection_info_1.ScalarType.FIXED32: - case reflection_info_1.ScalarType.UINT32: - case reflection_info_1.ScalarType.SFIXED32: - case reflection_info_1.ScalarType.SINT32: - keyValue = Number.parseInt(key); - break; - case reflection_info_1.ScalarType.BOOL: - assert_1.assert(key == 'true' || key == 'false'); - keyValue = key == 'true'; - break; + return decimalFrom1e7(digitC, /*needLeadingZeros=*/ 0) + + decimalFrom1e7(digitB, /*needLeadingZeros=*/ digitC) + + // If the final 1e7 digit didn't need leading zeros, we would have + // returned via the trivial code path at the top. + decimalFrom1e7(digitA, /*needLeadingZeros=*/ 1); +} +exports.int64toString = int64toString; +/** + * Write a 32 bit varint, signed or unsigned. Same as `varint64write(0, value, bytes)` + * + * Copyright 2008 Google Inc. All rights reserved. + * + * See https://github.com/protocolbuffers/protobuf/blob/1b18833f4f2a2f681f4e4a25cdf3b0a43115ec26/js/binary/encoder.js#L144 + */ +function varint32write(value, bytes) { + if (value >= 0) { + // write value as varint 32 + while (value > 0x7f) { + bytes.push((value & 0x7f) | 0x80); + value = value >>> 7; } - // write key, expecting key field number = 1 - this.scalar(writer, field.K, 1, keyValue, true); - // write value, expecting value field number = 2 - switch (field.V.kind) { - case 'scalar': - this.scalar(writer, field.V.T, 2, value, true); - break; - case 'enum': - this.scalar(writer, reflection_info_1.ScalarType.INT32, 2, value, true); - break; - case 'message': - this.message(writer, options, field.V.T(), 2, value); - break; + bytes.push(value); + } + else { + for (let i = 0; i < 9; i++) { + bytes.push(value & 127 | 128); + value = value >> 7; } - writer.join(); + bytes.push(1); } - message(writer, options, handler, fieldNo, value) { - if (value === undefined) - return; - handler.internalBinaryWrite(value, writer.tag(fieldNo, binary_format_contract_1.WireType.LengthDelimited).fork(), options); - writer.join(); +} +exports.varint32write = varint32write; +/** + * Read an unsigned 32 bit varint. + * + * See https://github.com/protocolbuffers/protobuf/blob/8a71927d74a4ce34efe2d8769fda198f52d20d12/js/experimental/runtime/kernel/buffer_decoder.js#L220 + */ +function varint32read() { + let b = this.buf[this.pos++]; + let result = b & 0x7F; + if ((b & 0x80) == 0) { + this.assertBounds(); + return result; } - /** - * Write a single scalar value. - */ - scalar(writer, type, fieldNo, value, emitDefault) { - let [wireType, method, isDefault] = this.scalarInfo(type, value); - if (!isDefault || emitDefault) { - writer.tag(fieldNo, wireType); - writer[method](value); - } + b = this.buf[this.pos++]; + result |= (b & 0x7F) << 7; + if ((b & 0x80) == 0) { + this.assertBounds(); + return result; } - /** - * Write an array of scalar values in packed format. - */ - packed(writer, type, fieldNo, value) { - if (!value.length) - return; - assert_1.assert(type !== reflection_info_1.ScalarType.BYTES && type !== reflection_info_1.ScalarType.STRING); - // write tag - writer.tag(fieldNo, binary_format_contract_1.WireType.LengthDelimited); - // begin length-delimited - writer.fork(); - // write values without tags - let [, method,] = this.scalarInfo(type); - for (let i = 0; i < value.length; i++) - writer[method](value[i]); - // end length delimited - writer.join(); + b = this.buf[this.pos++]; + result |= (b & 0x7F) << 14; + if ((b & 0x80) == 0) { + this.assertBounds(); + return result; } - /** - * Get information for writing a scalar value. - * - * Returns tuple: - * [0]: appropriate WireType - * [1]: name of the appropriate method of IBinaryWriter - * [2]: whether the given value is a default value - * - * If argument `value` is omitted, [2] is always false. - */ - scalarInfo(type, value) { - let t = binary_format_contract_1.WireType.Varint; - let m; - let i = value === undefined; - let d = value === 0; - switch (type) { - case reflection_info_1.ScalarType.INT32: - m = "int32"; - break; - case reflection_info_1.ScalarType.STRING: - d = i || !value.length; - t = binary_format_contract_1.WireType.LengthDelimited; - m = "string"; - break; - case reflection_info_1.ScalarType.BOOL: - d = value === false; - m = "bool"; - break; - case reflection_info_1.ScalarType.UINT32: - m = "uint32"; - break; - case reflection_info_1.ScalarType.DOUBLE: - t = binary_format_contract_1.WireType.Bit64; - m = "double"; - break; - case reflection_info_1.ScalarType.FLOAT: - t = binary_format_contract_1.WireType.Bit32; - m = "float"; - break; - case reflection_info_1.ScalarType.INT64: - d = i || pb_long_1.PbLong.from(value).isZero(); - m = "int64"; - break; - case reflection_info_1.ScalarType.UINT64: - d = i || pb_long_1.PbULong.from(value).isZero(); - m = "uint64"; - break; - case reflection_info_1.ScalarType.FIXED64: - d = i || pb_long_1.PbULong.from(value).isZero(); - t = binary_format_contract_1.WireType.Bit64; - m = "fixed64"; - break; - case reflection_info_1.ScalarType.BYTES: - d = i || !value.byteLength; - t = binary_format_contract_1.WireType.LengthDelimited; - m = "bytes"; - break; - case reflection_info_1.ScalarType.FIXED32: - t = binary_format_contract_1.WireType.Bit32; - m = "fixed32"; - break; - case reflection_info_1.ScalarType.SFIXED32: - t = binary_format_contract_1.WireType.Bit32; - m = "sfixed32"; - break; - case reflection_info_1.ScalarType.SFIXED64: - d = i || pb_long_1.PbLong.from(value).isZero(); - t = binary_format_contract_1.WireType.Bit64; - m = "sfixed64"; - break; - case reflection_info_1.ScalarType.SINT32: - m = "sint32"; - break; - case reflection_info_1.ScalarType.SINT64: - d = i || pb_long_1.PbLong.from(value).isZero(); - m = "sint64"; - break; - } - return [t, m, i || d]; + b = this.buf[this.pos++]; + result |= (b & 0x7F) << 21; + if ((b & 0x80) == 0) { + this.assertBounds(); + return result; } + // Extract only last 4 bits + b = this.buf[this.pos++]; + result |= (b & 0x0F) << 28; + for (let readBytes = 5; ((b & 0x80) !== 0) && readBytes < 10; readBytes++) + b = this.buf[this.pos++]; + if ((b & 0x80) != 0) + throw new Error('invalid varint'); + this.assertBounds(); + // Result can have 32 bits, convert it to unsigned + return result >>> 0; } -exports.ReflectionBinaryWriter = ReflectionBinaryWriter; +exports.varint32read = varint32read; /***/ }), -/***/ 9946: +/***/ 8886: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { +// Public API of the protobuf-ts runtime. +// Note: we do not use `export * from ...` to help tree shakers, +// webpack verbose output hints that this should be useful Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.containsMessageType = void 0; -const message_type_contract_1 = __nccwpck_require__(3785); +// Convenience JSON typings and corresponding type guards +var json_typings_1 = __nccwpck_require__(9999); +Object.defineProperty(exports, "typeofJsonValue", ({ enumerable: true, get: function () { return json_typings_1.typeofJsonValue; } })); +Object.defineProperty(exports, "isJsonObject", ({ enumerable: true, get: function () { return json_typings_1.isJsonObject; } })); +// Base 64 encoding +var base64_1 = __nccwpck_require__(6335); +Object.defineProperty(exports, "base64decode", ({ enumerable: true, get: function () { return base64_1.base64decode; } })); +Object.defineProperty(exports, "base64encode", ({ enumerable: true, get: function () { return base64_1.base64encode; } })); +// UTF8 encoding +var protobufjs_utf8_1 = __nccwpck_require__(8950); +Object.defineProperty(exports, "utf8read", ({ enumerable: true, get: function () { return protobufjs_utf8_1.utf8read; } })); +// Binary format contracts, options for reading and writing, for example +var binary_format_contract_1 = __nccwpck_require__(4816); +Object.defineProperty(exports, "WireType", ({ enumerable: true, get: function () { return binary_format_contract_1.WireType; } })); +Object.defineProperty(exports, "mergeBinaryOptions", ({ enumerable: true, get: function () { return binary_format_contract_1.mergeBinaryOptions; } })); +Object.defineProperty(exports, "UnknownFieldHandler", ({ enumerable: true, get: function () { return binary_format_contract_1.UnknownFieldHandler; } })); +// Standard IBinaryReader implementation +var binary_reader_1 = __nccwpck_require__(2889); +Object.defineProperty(exports, "BinaryReader", ({ enumerable: true, get: function () { return binary_reader_1.BinaryReader; } })); +Object.defineProperty(exports, "binaryReadOptions", ({ enumerable: true, get: function () { return binary_reader_1.binaryReadOptions; } })); +// Standard IBinaryWriter implementation +var binary_writer_1 = __nccwpck_require__(3957); +Object.defineProperty(exports, "BinaryWriter", ({ enumerable: true, get: function () { return binary_writer_1.BinaryWriter; } })); +Object.defineProperty(exports, "binaryWriteOptions", ({ enumerable: true, get: function () { return binary_writer_1.binaryWriteOptions; } })); +// Int64 and UInt64 implementations required for the binary format +var pb_long_1 = __nccwpck_require__(1753); +Object.defineProperty(exports, "PbLong", ({ enumerable: true, get: function () { return pb_long_1.PbLong; } })); +Object.defineProperty(exports, "PbULong", ({ enumerable: true, get: function () { return pb_long_1.PbULong; } })); +// JSON format contracts, options for reading and writing, for example +var json_format_contract_1 = __nccwpck_require__(9367); +Object.defineProperty(exports, "jsonReadOptions", ({ enumerable: true, get: function () { return json_format_contract_1.jsonReadOptions; } })); +Object.defineProperty(exports, "jsonWriteOptions", ({ enumerable: true, get: function () { return json_format_contract_1.jsonWriteOptions; } })); +Object.defineProperty(exports, "mergeJsonOptions", ({ enumerable: true, get: function () { return json_format_contract_1.mergeJsonOptions; } })); +// Message type contract +var message_type_contract_1 = __nccwpck_require__(3785); +Object.defineProperty(exports, "MESSAGE_TYPE", ({ enumerable: true, get: function () { return message_type_contract_1.MESSAGE_TYPE; } })); +// Message type implementation via reflection +var message_type_1 = __nccwpck_require__(5106); +Object.defineProperty(exports, "MessageType", ({ enumerable: true, get: function () { return message_type_1.MessageType; } })); +// Reflection info, generated by the plugin, exposed to the user, used by reflection ops +var reflection_info_1 = __nccwpck_require__(7910); +Object.defineProperty(exports, "ScalarType", ({ enumerable: true, get: function () { return reflection_info_1.ScalarType; } })); +Object.defineProperty(exports, "LongType", ({ enumerable: true, get: function () { return reflection_info_1.LongType; } })); +Object.defineProperty(exports, "RepeatType", ({ enumerable: true, get: function () { return reflection_info_1.RepeatType; } })); +Object.defineProperty(exports, "normalizeFieldInfo", ({ enumerable: true, get: function () { return reflection_info_1.normalizeFieldInfo; } })); +Object.defineProperty(exports, "readFieldOptions", ({ enumerable: true, get: function () { return reflection_info_1.readFieldOptions; } })); +Object.defineProperty(exports, "readFieldOption", ({ enumerable: true, get: function () { return reflection_info_1.readFieldOption; } })); +Object.defineProperty(exports, "readMessageOption", ({ enumerable: true, get: function () { return reflection_info_1.readMessageOption; } })); +// Message operations via reflection +var reflection_type_check_1 = __nccwpck_require__(5167); +Object.defineProperty(exports, "ReflectionTypeCheck", ({ enumerable: true, get: function () { return reflection_type_check_1.ReflectionTypeCheck; } })); +var reflection_create_1 = __nccwpck_require__(5726); +Object.defineProperty(exports, "reflectionCreate", ({ enumerable: true, get: function () { return reflection_create_1.reflectionCreate; } })); +var reflection_scalar_default_1 = __nccwpck_require__(9526); +Object.defineProperty(exports, "reflectionScalarDefault", ({ enumerable: true, get: function () { return reflection_scalar_default_1.reflectionScalarDefault; } })); +var reflection_merge_partial_1 = __nccwpck_require__(8044); +Object.defineProperty(exports, "reflectionMergePartial", ({ enumerable: true, get: function () { return reflection_merge_partial_1.reflectionMergePartial; } })); +var reflection_equals_1 = __nccwpck_require__(4827); +Object.defineProperty(exports, "reflectionEquals", ({ enumerable: true, get: function () { return reflection_equals_1.reflectionEquals; } })); +var reflection_binary_reader_1 = __nccwpck_require__(9611); +Object.defineProperty(exports, "ReflectionBinaryReader", ({ enumerable: true, get: function () { return reflection_binary_reader_1.ReflectionBinaryReader; } })); +var reflection_binary_writer_1 = __nccwpck_require__(6907); +Object.defineProperty(exports, "ReflectionBinaryWriter", ({ enumerable: true, get: function () { return reflection_binary_writer_1.ReflectionBinaryWriter; } })); +var reflection_json_reader_1 = __nccwpck_require__(6790); +Object.defineProperty(exports, "ReflectionJsonReader", ({ enumerable: true, get: function () { return reflection_json_reader_1.ReflectionJsonReader; } })); +var reflection_json_writer_1 = __nccwpck_require__(1094); +Object.defineProperty(exports, "ReflectionJsonWriter", ({ enumerable: true, get: function () { return reflection_json_writer_1.ReflectionJsonWriter; } })); +var reflection_contains_message_type_1 = __nccwpck_require__(9946); +Object.defineProperty(exports, "containsMessageType", ({ enumerable: true, get: function () { return reflection_contains_message_type_1.containsMessageType; } })); +// Oneof helpers +var oneof_1 = __nccwpck_require__(8063); +Object.defineProperty(exports, "isOneofGroup", ({ enumerable: true, get: function () { return oneof_1.isOneofGroup; } })); +Object.defineProperty(exports, "setOneofValue", ({ enumerable: true, get: function () { return oneof_1.setOneofValue; } })); +Object.defineProperty(exports, "getOneofValue", ({ enumerable: true, get: function () { return oneof_1.getOneofValue; } })); +Object.defineProperty(exports, "clearOneofValue", ({ enumerable: true, get: function () { return oneof_1.clearOneofValue; } })); +Object.defineProperty(exports, "getSelectedOneofValue", ({ enumerable: true, get: function () { return oneof_1.getSelectedOneofValue; } })); +// Enum object type guard and reflection util, may be interesting to the user. +var enum_object_1 = __nccwpck_require__(257); +Object.defineProperty(exports, "listEnumValues", ({ enumerable: true, get: function () { return enum_object_1.listEnumValues; } })); +Object.defineProperty(exports, "listEnumNames", ({ enumerable: true, get: function () { return enum_object_1.listEnumNames; } })); +Object.defineProperty(exports, "listEnumNumbers", ({ enumerable: true, get: function () { return enum_object_1.listEnumNumbers; } })); +Object.defineProperty(exports, "isEnumObject", ({ enumerable: true, get: function () { return enum_object_1.isEnumObject; } })); +// lowerCamelCase() is exported for plugin, rpc-runtime and other rpc packages +var lower_camel_case_1 = __nccwpck_require__(4073); +Object.defineProperty(exports, "lowerCamelCase", ({ enumerable: true, get: function () { return lower_camel_case_1.lowerCamelCase; } })); +// assertion functions are exported for plugin, may also be useful to user +var assert_1 = __nccwpck_require__(8602); +Object.defineProperty(exports, "assert", ({ enumerable: true, get: function () { return assert_1.assert; } })); +Object.defineProperty(exports, "assertNever", ({ enumerable: true, get: function () { return assert_1.assertNever; } })); +Object.defineProperty(exports, "assertInt32", ({ enumerable: true, get: function () { return assert_1.assertInt32; } })); +Object.defineProperty(exports, "assertUInt32", ({ enumerable: true, get: function () { return assert_1.assertUInt32; } })); +Object.defineProperty(exports, "assertFloat32", ({ enumerable: true, get: function () { return assert_1.assertFloat32; } })); + + +/***/ }), + +/***/ 9367: +/***/ ((__unused_webpack_module, exports) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.mergeJsonOptions = exports.jsonWriteOptions = exports.jsonReadOptions = void 0; +const defaultsWrite = { + emitDefaultValues: false, + enumAsInteger: false, + useProtoFieldName: false, + prettySpaces: 0, +}, defaultsRead = { + ignoreUnknownFields: false, +}; /** - * Check if the provided object is a proto message. - * - * Note that this is an experimental feature - it is here to stay, but - * implementation details may change without notice. + * Make options for reading JSON data from partial options. */ -function containsMessageType(msg) { - return msg[message_type_contract_1.MESSAGE_TYPE] != null; +function jsonReadOptions(options) { + return options ? Object.assign(Object.assign({}, defaultsRead), options) : defaultsRead; } -exports.containsMessageType = containsMessageType; +exports.jsonReadOptions = jsonReadOptions; +/** + * Make options for writing JSON data from partial options. + */ +function jsonWriteOptions(options) { + return options ? Object.assign(Object.assign({}, defaultsWrite), options) : defaultsWrite; +} +exports.jsonWriteOptions = jsonWriteOptions; +/** + * Merges JSON write or read options. Later values override earlier values. Type registries are merged. + */ +function mergeJsonOptions(a, b) { + var _a, _b; + let c = Object.assign(Object.assign({}, a), b); + c.typeRegistry = [...((_a = a === null || a === void 0 ? void 0 : a.typeRegistry) !== null && _a !== void 0 ? _a : []), ...((_b = b === null || b === void 0 ? void 0 : b.typeRegistry) !== null && _b !== void 0 ? _b : [])]; + return c; +} +exports.mergeJsonOptions = mergeJsonOptions; /***/ }), -/***/ 5726: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { +/***/ 9999: +/***/ ((__unused_webpack_module, exports) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.reflectionCreate = void 0; -const reflection_scalar_default_1 = __nccwpck_require__(9526); -const message_type_contract_1 = __nccwpck_require__(3785); +exports.isJsonObject = exports.typeofJsonValue = void 0; /** - * Creates an instance of the generic message, using the field - * information. + * Get the type of a JSON value. + * Distinguishes between array, null and object. */ -function reflectionCreate(type) { - /** - * This ternary can be removed in the next major version. - * The `Object.create()` code path utilizes a new `messagePrototype` - * property on the `IMessageType` which has this same `MESSAGE_TYPE` - * non-enumerable property on it. Doing it this way means that we only - * pay the cost of `Object.defineProperty()` once per `IMessageType` - * class of once per "instance". The falsy code path is only provided - * for backwards compatibility in cases where the runtime library is - * updated without also updating the generated code. - */ - const msg = type.messagePrototype - ? Object.create(type.messagePrototype) - : Object.defineProperty({}, message_type_contract_1.MESSAGE_TYPE, { value: type }); - for (let field of type.fields) { - let name = field.localName; - if (field.opt) - continue; - if (field.oneof) - msg[field.oneof] = { oneofKind: undefined }; - else if (field.repeat) - msg[name] = []; - else - switch (field.kind) { - case "scalar": - msg[name] = reflection_scalar_default_1.reflectionScalarDefault(field.T, field.L); - break; - case "enum": - // we require 0 to be default value for all enums - msg[name] = 0; - break; - case "map": - msg[name] = {}; - break; - } +function typeofJsonValue(value) { + let t = typeof value; + if (t == "object") { + if (Array.isArray(value)) + return "array"; + if (value === null) + return "null"; } - return msg; + return t; } -exports.reflectionCreate = reflectionCreate; +exports.typeofJsonValue = typeofJsonValue; +/** + * Is this a JSON object (instead of an array or null)? + */ +function isJsonObject(value) { + return value !== null && typeof value == "object" && !Array.isArray(value); +} +exports.isJsonObject = isJsonObject; /***/ }), -/***/ 4827: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { +/***/ 4073: +/***/ ((__unused_webpack_module, exports) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.reflectionEquals = void 0; -const reflection_info_1 = __nccwpck_require__(7910); +exports.lowerCamelCase = void 0; /** - * Determines whether two message of the same type have the same field values. - * Checks for deep equality, traversing repeated fields, oneof groups, maps - * and messages recursively. - * Will also return true if both messages are `undefined`. + * Converts snake_case to lowerCamelCase. + * + * Should behave like protoc: + * https://github.com/protocolbuffers/protobuf/blob/e8ae137c96444ea313485ed1118c5e43b2099cf1/src/google/protobuf/compiler/java/java_helpers.cc#L118 */ -function reflectionEquals(info, a, b) { - if (a === b) - return true; - if (!a || !b) - return false; - for (let field of info.fields) { - let localName = field.localName; - let val_a = field.oneof ? a[field.oneof][localName] : a[localName]; - let val_b = field.oneof ? b[field.oneof][localName] : b[localName]; - switch (field.kind) { - case "enum": - case "scalar": - let t = field.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.T; - if (!(field.repeat - ? repeatedPrimitiveEq(t, val_a, val_b) - : primitiveEq(t, val_a, val_b))) - return false; - break; - case "map": - if (!(field.V.kind == "message" - ? repeatedMsgEq(field.V.T(), objectValues(val_a), objectValues(val_b)) - : repeatedPrimitiveEq(field.V.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.V.T, objectValues(val_a), objectValues(val_b)))) - return false; - break; - case "message": - let T = field.T(); - if (!(field.repeat - ? repeatedMsgEq(T, val_a, val_b) - : T.equals(val_a, val_b))) - return false; - break; +function lowerCamelCase(snakeCase) { + let capNext = false; + const sb = []; + for (let i = 0; i < snakeCase.length; i++) { + let next = snakeCase.charAt(i); + if (next == '_') { + capNext = true; + } + else if (/\d/.test(next)) { + sb.push(next); + capNext = true; + } + else if (capNext) { + sb.push(next.toUpperCase()); + capNext = false; + } + else if (i == 0) { + sb.push(next.toLowerCase()); + } + else { + sb.push(next); } } - return true; -} -exports.reflectionEquals = reflectionEquals; -const objectValues = Object.values; -function primitiveEq(type, a, b) { - if (a === b) - return true; - if (type !== reflection_info_1.ScalarType.BYTES) - return false; - let ba = a; - let bb = b; - if (ba.length !== bb.length) - return false; - for (let i = 0; i < ba.length; i++) - if (ba[i] != bb[i]) - return false; - return true; -} -function repeatedPrimitiveEq(type, a, b) { - if (a.length !== b.length) - return false; - for (let i = 0; i < a.length; i++) - if (!primitiveEq(type, a[i], b[i])) - return false; - return true; -} -function repeatedMsgEq(type, a, b) { - if (a.length !== b.length) - return false; - for (let i = 0; i < a.length; i++) - if (!type.equals(a[i], b[i])) - return false; - return true; + return sb.join(''); } +exports.lowerCamelCase = lowerCamelCase; /***/ }), -/***/ 7910: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { +/***/ 3785: +/***/ ((__unused_webpack_module, exports) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.readMessageOption = exports.readFieldOption = exports.readFieldOptions = exports.normalizeFieldInfo = exports.RepeatType = exports.LongType = exports.ScalarType = void 0; -const lower_camel_case_1 = __nccwpck_require__(4073); +exports.MESSAGE_TYPE = void 0; /** - * Scalar value types. This is a subset of field types declared by protobuf - * enum google.protobuf.FieldDescriptorProto.Type The types GROUP and MESSAGE - * are omitted, but the numerical values are identical. + * The symbol used as a key on message objects to store the message type. + * + * Note that this is an experimental feature - it is here to stay, but + * implementation details may change without notice. */ -var ScalarType; -(function (ScalarType) { - // 0 is reserved for errors. - // Order is weird for historical reasons. - ScalarType[ScalarType["DOUBLE"] = 1] = "DOUBLE"; - ScalarType[ScalarType["FLOAT"] = 2] = "FLOAT"; - // Not ZigZag encoded. Negative numbers take 10 bytes. Use TYPE_SINT64 if - // negative values are likely. - ScalarType[ScalarType["INT64"] = 3] = "INT64"; - ScalarType[ScalarType["UINT64"] = 4] = "UINT64"; - // Not ZigZag encoded. Negative numbers take 10 bytes. Use TYPE_SINT32 if - // negative values are likely. - ScalarType[ScalarType["INT32"] = 5] = "INT32"; - ScalarType[ScalarType["FIXED64"] = 6] = "FIXED64"; - ScalarType[ScalarType["FIXED32"] = 7] = "FIXED32"; - ScalarType[ScalarType["BOOL"] = 8] = "BOOL"; - ScalarType[ScalarType["STRING"] = 9] = "STRING"; - // Tag-delimited aggregate. - // Group type is deprecated and not supported in proto3. However, Proto3 - // implementations should still be able to parse the group wire format and - // treat group fields as unknown fields. - // TYPE_GROUP = 10, - // TYPE_MESSAGE = 11, // Length-delimited aggregate. - // New in version 2. - ScalarType[ScalarType["BYTES"] = 12] = "BYTES"; - ScalarType[ScalarType["UINT32"] = 13] = "UINT32"; - // TYPE_ENUM = 14, - ScalarType[ScalarType["SFIXED32"] = 15] = "SFIXED32"; - ScalarType[ScalarType["SFIXED64"] = 16] = "SFIXED64"; - ScalarType[ScalarType["SINT32"] = 17] = "SINT32"; - ScalarType[ScalarType["SINT64"] = 18] = "SINT64"; -})(ScalarType = exports.ScalarType || (exports.ScalarType = {})); +exports.MESSAGE_TYPE = Symbol.for("protobuf-ts/message-type"); + + +/***/ }), + +/***/ 5106: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.MessageType = void 0; +const message_type_contract_1 = __nccwpck_require__(3785); +const reflection_info_1 = __nccwpck_require__(7910); +const reflection_type_check_1 = __nccwpck_require__(5167); +const reflection_json_reader_1 = __nccwpck_require__(6790); +const reflection_json_writer_1 = __nccwpck_require__(1094); +const reflection_binary_reader_1 = __nccwpck_require__(9611); +const reflection_binary_writer_1 = __nccwpck_require__(6907); +const reflection_create_1 = __nccwpck_require__(5726); +const reflection_merge_partial_1 = __nccwpck_require__(8044); +const json_typings_1 = __nccwpck_require__(9999); +const json_format_contract_1 = __nccwpck_require__(9367); +const reflection_equals_1 = __nccwpck_require__(4827); +const binary_writer_1 = __nccwpck_require__(3957); +const binary_reader_1 = __nccwpck_require__(2889); +const baseDescriptors = Object.getOwnPropertyDescriptors(Object.getPrototypeOf({})); +const messageTypeDescriptor = baseDescriptors[message_type_contract_1.MESSAGE_TYPE] = {}; /** - * JavaScript representation of 64 bit integral types. Equivalent to the - * field option "jstype". - * - * By default, protobuf-ts represents 64 bit types as `bigint`. - * - * You can change the default behaviour by enabling the plugin parameter - * `long_type_string`, which will represent 64 bit types as `string`. - * - * Alternatively, you can change the behaviour for individual fields - * with the field option "jstype": - * - * ```protobuf - * uint64 my_field = 1 [jstype = JS_STRING]; - * uint64 other_field = 2 [jstype = JS_NUMBER]; - * ``` + * This standard message type provides reflection-based + * operations to work with a message. */ -var LongType; -(function (LongType) { +class MessageType { + constructor(name, fields, options) { + this.defaultCheckDepth = 16; + this.typeName = name; + this.fields = fields.map(reflection_info_1.normalizeFieldInfo); + this.options = options !== null && options !== void 0 ? options : {}; + messageTypeDescriptor.value = this; + this.messagePrototype = Object.create(null, baseDescriptors); + this.refTypeCheck = new reflection_type_check_1.ReflectionTypeCheck(this); + this.refJsonReader = new reflection_json_reader_1.ReflectionJsonReader(this); + this.refJsonWriter = new reflection_json_writer_1.ReflectionJsonWriter(this); + this.refBinReader = new reflection_binary_reader_1.ReflectionBinaryReader(this); + this.refBinWriter = new reflection_binary_writer_1.ReflectionBinaryWriter(this); + } + create(value) { + let message = reflection_create_1.reflectionCreate(this); + if (value !== undefined) { + reflection_merge_partial_1.reflectionMergePartial(this, message, value); + } + return message; + } /** - * Use JavaScript `bigint`. + * Clone the message. * - * Field option `[jstype = JS_NORMAL]`. + * Unknown fields are discarded. */ - LongType[LongType["BIGINT"] = 0] = "BIGINT"; + clone(message) { + let copy = this.create(); + reflection_merge_partial_1.reflectionMergePartial(this, copy, message); + return copy; + } /** - * Use JavaScript `string`. + * Determines whether two message of the same type have the same field values. + * Checks for deep equality, traversing repeated fields, oneof groups, maps + * and messages recursively. + * Will also return true if both messages are `undefined`. + */ + equals(a, b) { + return reflection_equals_1.reflectionEquals(this, a, b); + } + /** + * Is the given value assignable to our message type + * and contains no [excess properties](https://www.typescriptlang.org/docs/handbook/interfaces.html#excess-property-checks)? + */ + is(arg, depth = this.defaultCheckDepth) { + return this.refTypeCheck.is(arg, depth, false); + } + /** + * Is the given value assignable to our message type, + * regardless of [excess properties](https://www.typescriptlang.org/docs/handbook/interfaces.html#excess-property-checks)? + */ + isAssignable(arg, depth = this.defaultCheckDepth) { + return this.refTypeCheck.is(arg, depth, true); + } + /** + * Copy partial data into the target message. + */ + mergePartial(target, source) { + reflection_merge_partial_1.reflectionMergePartial(this, target, source); + } + /** + * Create a new message from binary format. + */ + fromBinary(data, options) { + let opt = binary_reader_1.binaryReadOptions(options); + return this.internalBinaryRead(opt.readerFactory(data), data.byteLength, opt); + } + /** + * Read a new message from a JSON value. + */ + fromJson(json, options) { + return this.internalJsonRead(json, json_format_contract_1.jsonReadOptions(options)); + } + /** + * Read a new message from a JSON string. + * This is equivalent to `T.fromJson(JSON.parse(json))`. + */ + fromJsonString(json, options) { + let value = JSON.parse(json); + return this.fromJson(value, options); + } + /** + * Write the message to canonical JSON value. + */ + toJson(message, options) { + return this.internalJsonWrite(message, json_format_contract_1.jsonWriteOptions(options)); + } + /** + * Convert the message to canonical JSON string. + * This is equivalent to `JSON.stringify(T.toJson(t))` + */ + toJsonString(message, options) { + var _a; + let value = this.toJson(message, options); + return JSON.stringify(value, null, (_a = options === null || options === void 0 ? void 0 : options.prettySpaces) !== null && _a !== void 0 ? _a : 0); + } + /** + * Write the message to binary format. + */ + toBinary(message, options) { + let opt = binary_writer_1.binaryWriteOptions(options); + return this.internalBinaryWrite(message, opt.writerFactory(), opt).finish(); + } + /** + * This is an internal method. If you just want to read a message from + * JSON, use `fromJson()` or `fromJsonString()`. * - * Field option `[jstype = JS_STRING]`. + * Reads JSON value and merges the fields into the target + * according to protobuf rules. If the target is omitted, + * a new instance is created first. */ - LongType[LongType["STRING"] = 1] = "STRING"; + internalJsonRead(json, options, target) { + if (json !== null && typeof json == "object" && !Array.isArray(json)) { + let message = target !== null && target !== void 0 ? target : this.create(); + this.refJsonReader.read(json, message, options); + return message; + } + throw new Error(`Unable to parse message ${this.typeName} from JSON ${json_typings_1.typeofJsonValue(json)}.`); + } /** - * Use JavaScript `number`. + * This is an internal method. If you just want to write a message + * to JSON, use `toJson()` or `toJsonString(). * - * Large values will loose precision. + * Writes JSON value and returns it. + */ + internalJsonWrite(message, options) { + return this.refJsonWriter.write(message, options); + } + /** + * This is an internal method. If you just want to write a message + * in binary format, use `toBinary()`. * - * Field option `[jstype = JS_NUMBER]`. + * Serializes the message in binary format and appends it to the given + * writer. Returns passed writer. */ - LongType[LongType["NUMBER"] = 2] = "NUMBER"; -})(LongType = exports.LongType || (exports.LongType = {})); + internalBinaryWrite(message, writer, options) { + this.refBinWriter.write(message, writer, options); + return writer; + } + /** + * This is an internal method. If you just want to read a message from + * binary data, use `fromBinary()`. + * + * Reads data from binary format and merges the fields into + * the target according to protobuf rules. If the target is + * omitted, a new instance is created first. + */ + internalBinaryRead(reader, length, options, target) { + let message = target !== null && target !== void 0 ? target : this.create(); + this.refBinReader.read(reader, message, options, length); + return message; + } +} +exports.MessageType = MessageType; + + +/***/ }), + +/***/ 8063: +/***/ ((__unused_webpack_module, exports) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.getSelectedOneofValue = exports.clearOneofValue = exports.setUnknownOneofValue = exports.setOneofValue = exports.getOneofValue = exports.isOneofGroup = void 0; /** - * Protobuf 2.1.0 introduced packed repeated fields. - * Setting the field option `[packed = true]` enables packing. + * Is the given value a valid oneof group? * - * In proto3, all repeated fields are packed by default. - * Setting the field option `[packed = false]` disables packing. + * We represent protobuf `oneof` as algebraic data types (ADT) in generated + * code. But when working with messages of unknown type, the ADT does not + * help us. * - * Packed repeated fields are encoded with a single tag, - * then a length-delimiter, then the element values. + * This type guard checks if the given object adheres to the ADT rules, which + * are as follows: * - * Unpacked repeated fields are encoded with a tag and - * value for each element. + * 1) Must be an object. + * + * 2) Must have a "oneofKind" discriminator property. + * + * 3) If "oneofKind" is `undefined`, no member field is selected. The object + * must not have any other properties. + * + * 4) If "oneofKind" is a `string`, the member field with this name is + * selected. + * + * 5) If a member field is selected, the object must have a second property + * with this name. The property must not be `undefined`. + * + * 6) No extra properties are allowed. The object has either one property + * (no selection) or two properties (selection). * - * `bytes` and `string` cannot be packed. */ -var RepeatType; -(function (RepeatType) { - /** - * The field is not repeated. - */ - RepeatType[RepeatType["NO"] = 0] = "NO"; - /** - * The field is repeated and should be packed. - * Invalid for `bytes` and `string`, they cannot be packed. - */ - RepeatType[RepeatType["PACKED"] = 1] = "PACKED"; - /** - * The field is repeated but should not be packed. - * The only valid repeat type for repeated `bytes` and `string`. - */ - RepeatType[RepeatType["UNPACKED"] = 2] = "UNPACKED"; -})(RepeatType = exports.RepeatType || (exports.RepeatType = {})); +function isOneofGroup(any) { + if (typeof any != 'object' || any === null || !any.hasOwnProperty('oneofKind')) { + return false; + } + switch (typeof any.oneofKind) { + case "string": + if (any[any.oneofKind] === undefined) + return false; + return Object.keys(any).length == 2; + case "undefined": + return Object.keys(any).length == 1; + default: + return false; + } +} +exports.isOneofGroup = isOneofGroup; /** - * Turns PartialFieldInfo into FieldInfo. + * Returns the value of the given field in a oneof group. */ -function normalizeFieldInfo(field) { - var _a, _b, _c, _d; - field.localName = (_a = field.localName) !== null && _a !== void 0 ? _a : lower_camel_case_1.lowerCamelCase(field.name); - field.jsonName = (_b = field.jsonName) !== null && _b !== void 0 ? _b : lower_camel_case_1.lowerCamelCase(field.name); - field.repeat = (_c = field.repeat) !== null && _c !== void 0 ? _c : RepeatType.NO; - field.opt = (_d = field.opt) !== null && _d !== void 0 ? _d : (field.repeat ? false : field.oneof ? false : field.kind == "message"); - return field; +function getOneofValue(oneof, kind) { + return oneof[kind]; } -exports.normalizeFieldInfo = normalizeFieldInfo; +exports.getOneofValue = getOneofValue; +function setOneofValue(oneof, kind, value) { + if (oneof.oneofKind !== undefined) { + delete oneof[oneof.oneofKind]; + } + oneof.oneofKind = kind; + if (value !== undefined) { + oneof[kind] = value; + } +} +exports.setOneofValue = setOneofValue; +function setUnknownOneofValue(oneof, kind, value) { + if (oneof.oneofKind !== undefined) { + delete oneof[oneof.oneofKind]; + } + oneof.oneofKind = kind; + if (value !== undefined && kind !== undefined) { + oneof[kind] = value; + } +} +exports.setUnknownOneofValue = setUnknownOneofValue; /** - * Read custom field options from a generated message type. + * Removes the selected field in a oneof group. * - * @deprecated use readFieldOption() + * Note that the recommended way to modify a oneof group is to set + * a new object: + * + * ```ts + * message.result = { oneofKind: undefined }; + * ``` */ -function readFieldOptions(messageType, fieldName, extensionName, extensionType) { - var _a; - const options = (_a = messageType.fields.find((m, i) => m.localName == fieldName || i == fieldName)) === null || _a === void 0 ? void 0 : _a.options; - return options && options[extensionName] ? extensionType.fromJson(options[extensionName]) : undefined; -} -exports.readFieldOptions = readFieldOptions; -function readFieldOption(messageType, fieldName, extensionName, extensionType) { - var _a; - const options = (_a = messageType.fields.find((m, i) => m.localName == fieldName || i == fieldName)) === null || _a === void 0 ? void 0 : _a.options; - if (!options) { - return undefined; - } - const optionVal = options[extensionName]; - if (optionVal === undefined) { - return optionVal; +function clearOneofValue(oneof) { + if (oneof.oneofKind !== undefined) { + delete oneof[oneof.oneofKind]; } - return extensionType ? extensionType.fromJson(optionVal) : optionVal; + oneof.oneofKind = undefined; } -exports.readFieldOption = readFieldOption; -function readMessageOption(messageType, extensionName, extensionType) { - const options = messageType.options; - const optionVal = options[extensionName]; - if (optionVal === undefined) { - return optionVal; +exports.clearOneofValue = clearOneofValue; +/** + * Returns the selected value of the given oneof group. + * + * Not that the recommended way to access a oneof group is to check + * the "oneofKind" property and let TypeScript narrow down the union + * type for you: + * + * ```ts + * if (message.result.oneofKind === "error") { + * message.result.error; // string + * } + * ``` + * + * In the rare case you just need the value, and do not care about + * which protobuf field is selected, you can use this function + * for convenience. + */ +function getSelectedOneofValue(oneof) { + if (oneof.oneofKind === undefined) { + return undefined; } - return extensionType ? extensionType.fromJson(optionVal) : optionVal; + return oneof[oneof.oneofKind]; } -exports.readMessageOption = readMessageOption; +exports.getSelectedOneofValue = getSelectedOneofValue; /***/ }), -/***/ 6790: +/***/ 1753: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ReflectionJsonReader = void 0; -const json_typings_1 = __nccwpck_require__(9999); -const base64_1 = __nccwpck_require__(6335); +exports.PbLong = exports.PbULong = exports.detectBi = void 0; +const goog_varint_1 = __nccwpck_require__(3223); +let BI; +function detectBi() { + const dv = new DataView(new ArrayBuffer(8)); + const ok = globalThis.BigInt !== undefined + && typeof dv.getBigInt64 === "function" + && typeof dv.getBigUint64 === "function" + && typeof dv.setBigInt64 === "function" + && typeof dv.setBigUint64 === "function"; + BI = ok ? { + MIN: BigInt("-9223372036854775808"), + MAX: BigInt("9223372036854775807"), + UMIN: BigInt("0"), + UMAX: BigInt("18446744073709551615"), + C: BigInt, + V: dv, + } : undefined; +} +exports.detectBi = detectBi; +detectBi(); +function assertBi(bi) { + if (!bi) + throw new Error("BigInt unavailable, see https://github.com/timostamm/protobuf-ts/blob/v1.0.8/MANUAL.md#bigint-support"); +} +// used to validate from(string) input (when bigint is unavailable) +const RE_DECIMAL_STR = /^-?[0-9]+$/; +// constants for binary math +const TWO_PWR_32_DBL = 0x100000000; +const HALF_2_PWR_32 = 0x080000000; +// base class for PbLong and PbULong provides shared code +class SharedPbLong { + /** + * Create a new instance with the given bits. + */ + constructor(lo, hi) { + this.lo = lo | 0; + this.hi = hi | 0; + } + /** + * Is this instance equal to 0? + */ + isZero() { + return this.lo == 0 && this.hi == 0; + } + /** + * Convert to a native number. + */ + toNumber() { + let result = this.hi * TWO_PWR_32_DBL + (this.lo >>> 0); + if (!Number.isSafeInteger(result)) + throw new Error("cannot convert to safe number"); + return result; + } +} +/** + * 64-bit unsigned integer as two 32-bit values. + * Converts between `string`, `number` and `bigint` representations. + */ +class PbULong extends SharedPbLong { + /** + * Create instance from a `string`, `number` or `bigint`. + */ + static from(value) { + if (BI) + // noinspection FallThroughInSwitchStatementJS + switch (typeof value) { + case "string": + if (value == "0") + return this.ZERO; + if (value == "") + throw new Error('string is no integer'); + value = BI.C(value); + case "number": + if (value === 0) + return this.ZERO; + value = BI.C(value); + case "bigint": + if (!value) + return this.ZERO; + if (value < BI.UMIN) + throw new Error('signed value for ulong'); + if (value > BI.UMAX) + throw new Error('ulong too large'); + BI.V.setBigUint64(0, value, true); + return new PbULong(BI.V.getInt32(0, true), BI.V.getInt32(4, true)); + } + else + switch (typeof value) { + case "string": + if (value == "0") + return this.ZERO; + value = value.trim(); + if (!RE_DECIMAL_STR.test(value)) + throw new Error('string is no integer'); + let [minus, lo, hi] = goog_varint_1.int64fromString(value); + if (minus) + throw new Error('signed value for ulong'); + return new PbULong(lo, hi); + case "number": + if (value == 0) + return this.ZERO; + if (!Number.isSafeInteger(value)) + throw new Error('number is no integer'); + if (value < 0) + throw new Error('signed value for ulong'); + return new PbULong(value, value / TWO_PWR_32_DBL); + } + throw new Error('unknown value ' + typeof value); + } + /** + * Convert to decimal string. + */ + toString() { + return BI ? this.toBigInt().toString() : goog_varint_1.int64toString(this.lo, this.hi); + } + /** + * Convert to native bigint. + */ + toBigInt() { + assertBi(BI); + BI.V.setInt32(0, this.lo, true); + BI.V.setInt32(4, this.hi, true); + return BI.V.getBigUint64(0, true); + } +} +exports.PbULong = PbULong; +/** + * ulong 0 singleton. + */ +PbULong.ZERO = new PbULong(0, 0); +/** + * 64-bit signed integer as two 32-bit values. + * Converts between `string`, `number` and `bigint` representations. + */ +class PbLong extends SharedPbLong { + /** + * Create instance from a `string`, `number` or `bigint`. + */ + static from(value) { + if (BI) + // noinspection FallThroughInSwitchStatementJS + switch (typeof value) { + case "string": + if (value == "0") + return this.ZERO; + if (value == "") + throw new Error('string is no integer'); + value = BI.C(value); + case "number": + if (value === 0) + return this.ZERO; + value = BI.C(value); + case "bigint": + if (!value) + return this.ZERO; + if (value < BI.MIN) + throw new Error('signed long too small'); + if (value > BI.MAX) + throw new Error('signed long too large'); + BI.V.setBigInt64(0, value, true); + return new PbLong(BI.V.getInt32(0, true), BI.V.getInt32(4, true)); + } + else + switch (typeof value) { + case "string": + if (value == "0") + return this.ZERO; + value = value.trim(); + if (!RE_DECIMAL_STR.test(value)) + throw new Error('string is no integer'); + let [minus, lo, hi] = goog_varint_1.int64fromString(value); + if (minus) { + if (hi > HALF_2_PWR_32 || (hi == HALF_2_PWR_32 && lo != 0)) + throw new Error('signed long too small'); + } + else if (hi >= HALF_2_PWR_32) + throw new Error('signed long too large'); + let pbl = new PbLong(lo, hi); + return minus ? pbl.negate() : pbl; + case "number": + if (value == 0) + return this.ZERO; + if (!Number.isSafeInteger(value)) + throw new Error('number is no integer'); + return value > 0 + ? new PbLong(value, value / TWO_PWR_32_DBL) + : new PbLong(-value, -value / TWO_PWR_32_DBL).negate(); + } + throw new Error('unknown value ' + typeof value); + } + /** + * Do we have a minus sign? + */ + isNegative() { + return (this.hi & HALF_2_PWR_32) !== 0; + } + /** + * Negate two's complement. + * Invert all the bits and add one to the result. + */ + negate() { + let hi = ~this.hi, lo = this.lo; + if (lo) + lo = ~lo + 1; + else + hi += 1; + return new PbLong(lo, hi); + } + /** + * Convert to decimal string. + */ + toString() { + if (BI) + return this.toBigInt().toString(); + if (this.isNegative()) { + let n = this.negate(); + return '-' + goog_varint_1.int64toString(n.lo, n.hi); + } + return goog_varint_1.int64toString(this.lo, this.hi); + } + /** + * Convert to native bigint. + */ + toBigInt() { + assertBi(BI); + BI.V.setInt32(0, this.lo, true); + BI.V.setInt32(4, this.hi, true); + return BI.V.getBigInt64(0, true); + } +} +exports.PbLong = PbLong; +/** + * long 0 singleton. + */ +PbLong.ZERO = new PbLong(0, 0); + + +/***/ }), + +/***/ 8950: +/***/ ((__unused_webpack_module, exports) => { + + +// Copyright (c) 2016, Daniel Wirtz All rights reserved. +// +// Redistribution and use in source and binary forms, with or without +// modification, are permitted provided that the following conditions are +// met: +// +// * Redistributions of source code must retain the above copyright +// notice, this list of conditions and the following disclaimer. +// * Redistributions in binary form must reproduce the above copyright +// notice, this list of conditions and the following disclaimer in the +// documentation and/or other materials provided with the distribution. +// * Neither the name of its author, nor the names of its contributors +// may be used to endorse or promote products derived from this software +// without specific prior written permission. +// +// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS +// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT +// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR +// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT +// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, +// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT +// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, +// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY +// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT +// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE +// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.utf8read = void 0; +const fromCharCodes = (chunk) => String.fromCharCode.apply(String, chunk); +/** + * @deprecated This function will no longer be exported with the next major + * release, since protobuf-ts has switch to TextDecoder API. If you need this + * function, please migrate to @protobufjs/utf8. For context, see + * https://github.com/timostamm/protobuf-ts/issues/184 + * + * Reads UTF8 bytes as a string. + * + * See [protobufjs / utf8](https://github.com/protobufjs/protobuf.js/blob/9893e35b854621cce64af4bf6be2cff4fb892796/lib/utf8/index.js#L40) + * + * Copyright (c) 2016, Daniel Wirtz + */ +function utf8read(bytes) { + if (bytes.length < 1) + return ""; + let pos = 0, // position in bytes + parts = [], chunk = [], i = 0, // char offset + t; // temporary + let len = bytes.length; + while (pos < len) { + t = bytes[pos++]; + if (t < 128) + chunk[i++] = t; + else if (t > 191 && t < 224) + chunk[i++] = (t & 31) << 6 | bytes[pos++] & 63; + else if (t > 239 && t < 365) { + t = ((t & 7) << 18 | (bytes[pos++] & 63) << 12 | (bytes[pos++] & 63) << 6 | bytes[pos++] & 63) - 0x10000; + chunk[i++] = 0xD800 + (t >> 10); + chunk[i++] = 0xDC00 + (t & 1023); + } + else + chunk[i++] = (t & 15) << 12 | (bytes[pos++] & 63) << 6 | bytes[pos++] & 63; + if (i > 8191) { + parts.push(fromCharCodes(chunk)); + i = 0; + } + } + if (parts.length) { + if (i) + parts.push(fromCharCodes(chunk.slice(0, i))); + return parts.join(""); + } + return fromCharCodes(chunk.slice(0, i)); +} +exports.utf8read = utf8read; + + +/***/ }), + +/***/ 9611: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.ReflectionBinaryReader = void 0; +const binary_format_contract_1 = __nccwpck_require__(4816); const reflection_info_1 = __nccwpck_require__(7910); -const pb_long_1 = __nccwpck_require__(1753); -const assert_1 = __nccwpck_require__(8602); const reflection_long_convert_1 = __nccwpck_require__(3402); +const reflection_scalar_default_1 = __nccwpck_require__(9526); /** - * Reads proto3 messages in canonical JSON format using reflection information. + * Reads proto3 messages in binary format using reflection information. * - * https://developers.google.com/protocol-buffers/docs/proto3#json + * https://developers.google.com/protocol-buffers/docs/encoding */ -class ReflectionJsonReader { +class ReflectionBinaryReader { constructor(info) { this.info = info; } prepare() { var _a; - if (this.fMap === undefined) { - this.fMap = {}; + if (!this.fieldNoToField) { const fieldsInput = (_a = this.info.fields) !== null && _a !== void 0 ? _a : []; - for (const field of fieldsInput) { - this.fMap[field.name] = field; - this.fMap[field.jsonName] = field; - this.fMap[field.localName] = field; - } - } - } - // Cannot parse JSON for #. - assert(condition, fieldName, jsonValue) { - if (!condition) { - let what = json_typings_1.typeofJsonValue(jsonValue); - if (what == "number" || what == "boolean") - what = jsonValue.toString(); - throw new Error(`Cannot parse JSON ${what} for ${this.info.typeName}#${fieldName}`); + this.fieldNoToField = new Map(fieldsInput.map(field => [field.no, field])); } } /** - * Reads a message from canonical JSON format into the target message. + * Reads a message from binary format into the target message. * * Repeated fields are appended. Map entries are added, overwriting * existing keys. @@ -3979,2512 +4220,1697 @@ class ReflectionJsonReader { * If a message field is already present, it will be merged with the * new data. */ - read(input, message, options) { + read(reader, message, options, length) { this.prepare(); - const oneofsHandled = []; - for (const [jsonKey, jsonValue] of Object.entries(input)) { - const field = this.fMap[jsonKey]; + const end = length === undefined ? reader.len : reader.pos + length; + while (reader.pos < end) { + // read the tag and find the field + const [fieldNo, wireType] = reader.tag(), field = this.fieldNoToField.get(fieldNo); if (!field) { - if (!options.ignoreUnknownFields) - throw new Error(`Found unknown field while reading ${this.info.typeName} from JSON format. JSON key: ${jsonKey}`); + let u = options.readUnknownField; + if (u == "throw") + throw new Error(`Unknown field ${fieldNo} (wire type ${wireType}) for ${this.info.typeName}`); + let d = reader.skip(wireType); + if (u !== false) + (u === true ? binary_format_contract_1.UnknownFieldHandler.onRead : u)(this.info.typeName, message, fieldNo, wireType, d); continue; } - const localName = field.localName; - // handle oneof ADT - let target; // this will be the target for the field value, whether it is member of a oneof or not + // target object for the field we are reading + let target = message, repeated = field.repeat, localName = field.localName; + // if field is member of oneof ADT, use ADT as target if (field.oneof) { - if (jsonValue === null && (field.kind !== 'enum' || field.T()[0] !== 'google.protobuf.NullValue')) { - continue; - } - // since json objects are unordered by specification, it is not possible to take the last of multiple oneofs - if (oneofsHandled.includes(field.oneof)) - throw new Error(`Multiple members of the oneof group "${field.oneof}" of ${this.info.typeName} are present in JSON.`); - oneofsHandled.push(field.oneof); - target = message[field.oneof] = { - oneofKind: localName - }; + target = target[field.oneof]; + // if other oneof member selected, set new ADT + if (target.oneofKind !== localName) + target = message[field.oneof] = { + oneofKind: localName + }; } - else { - target = message; + // we have handled oneof above, we just have read the value into `target[localName]` + switch (field.kind) { + case "scalar": + case "enum": + let T = field.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.T; + let L = field.kind == "scalar" ? field.L : undefined; + if (repeated) { + let arr = target[localName]; // safe to assume presence of array, oneof cannot contain repeated values + if (wireType == binary_format_contract_1.WireType.LengthDelimited && T != reflection_info_1.ScalarType.STRING && T != reflection_info_1.ScalarType.BYTES) { + let e = reader.uint32() + reader.pos; + while (reader.pos < e) + arr.push(this.scalar(reader, T, L)); + } + else + arr.push(this.scalar(reader, T, L)); + } + else + target[localName] = this.scalar(reader, T, L); + break; + case "message": + if (repeated) { + let arr = target[localName]; // safe to assume presence of array, oneof cannot contain repeated values + let msg = field.T().internalBinaryRead(reader, reader.uint32(), options); + arr.push(msg); + } + else + target[localName] = field.T().internalBinaryRead(reader, reader.uint32(), options, target[localName]); + break; + case "map": + let [mapKey, mapVal] = this.mapEntry(field, reader, options); + // safe to assume presence of map object, oneof cannot contain repeated values + target[localName][mapKey] = mapVal; + break; } - // we have handled oneof above. we just have read the value into `target`. - if (field.kind == 'map') { - if (jsonValue === null) { - continue; - } - // check input - this.assert(json_typings_1.isJsonObject(jsonValue), field.name, jsonValue); - // our target to put map entries into - const fieldObj = target[localName]; - // read entries - for (const [jsonObjKey, jsonObjValue] of Object.entries(jsonValue)) { - this.assert(jsonObjValue !== null, field.name + " map value", null); - // read value - let val; + } + } + /** + * Read a map field, expecting key field = 1, value field = 2 + */ + mapEntry(field, reader, options) { + let length = reader.uint32(); + let end = reader.pos + length; + let key = undefined; // javascript only allows number or string for object properties + let val = undefined; + while (reader.pos < end) { + let [fieldNo, wireType] = reader.tag(); + switch (fieldNo) { + case 1: + if (field.K == reflection_info_1.ScalarType.BOOL) + key = reader.bool().toString(); + else + // long types are read as string, number types are okay as number + key = this.scalar(reader, field.K, reflection_info_1.LongType.STRING); + break; + case 2: switch (field.V.kind) { - case "message": - val = field.V.T().internalJsonRead(jsonObjValue, options); - break; - case "enum": - val = this.enum(field.V.T(), jsonObjValue, field.name, options.ignoreUnknownFields); - if (val === false) - continue; - break; case "scalar": - val = this.scalar(jsonObjValue, field.V.T, field.V.L, field.name); - break; - } - this.assert(val !== undefined, field.name + " map value", jsonObjValue); - // read key - let key = jsonObjKey; - if (field.K == reflection_info_1.ScalarType.BOOL) - key = key == "true" ? true : key == "false" ? false : key; - key = this.scalar(key, field.K, reflection_info_1.LongType.STRING, field.name).toString(); - fieldObj[key] = val; - } - } - else if (field.repeat) { - if (jsonValue === null) - continue; - // check input - this.assert(Array.isArray(jsonValue), field.name, jsonValue); - // our target to put array entries into - const fieldArr = target[localName]; - // read array entries - for (const jsonItem of jsonValue) { - this.assert(jsonItem !== null, field.name, null); - let val; - switch (field.kind) { - case "message": - val = field.T().internalJsonRead(jsonItem, options); + val = this.scalar(reader, field.V.T, field.V.L); break; case "enum": - val = this.enum(field.T(), jsonItem, field.name, options.ignoreUnknownFields); - if (val === false) - continue; + val = reader.int32(); break; - case "scalar": - val = this.scalar(jsonItem, field.T, field.L, field.name); + case "message": + val = field.V.T().internalBinaryRead(reader, reader.uint32(), options); break; } - this.assert(val !== undefined, field.name, jsonValue); - fieldArr.push(val); - } - } - else { - switch (field.kind) { - case "message": - if (jsonValue === null && field.T().typeName != 'google.protobuf.Value') { - this.assert(field.oneof === undefined, field.name + " (oneof member)", null); - continue; - } - target[localName] = field.T().internalJsonRead(jsonValue, options, target[localName]); - break; - case "enum": - if (jsonValue === null) - continue; - let val = this.enum(field.T(), jsonValue, field.name, options.ignoreUnknownFields); - if (val === false) - continue; - target[localName] = val; - break; - case "scalar": - if (jsonValue === null) - continue; - target[localName] = this.scalar(jsonValue, field.T, field.L, field.name); - break; - } + break; + default: + throw new Error(`Unknown field ${fieldNo} (wire type ${wireType}) in map entry for ${this.info.typeName}#${field.name}`); } } - } - /** - * Returns `false` for unrecognized string representations. - * - * google.protobuf.NullValue accepts only JSON `null` (or the old `"NULL_VALUE"`). - */ - enum(type, json, fieldName, ignoreUnknownFields) { - if (type[0] == 'google.protobuf.NullValue') - assert_1.assert(json === null || json === "NULL_VALUE", `Unable to parse field ${this.info.typeName}#${fieldName}, enum ${type[0]} only accepts null.`); - if (json === null) - // we require 0 to be default value for all enums - return 0; - switch (typeof json) { - case "number": - assert_1.assert(Number.isInteger(json), `Unable to parse field ${this.info.typeName}#${fieldName}, enum can only be integral number, got ${json}.`); - return json; - case "string": - let localEnumName = json; - if (type[2] && json.substring(0, type[2].length) === type[2]) - // lookup without the shared prefix - localEnumName = json.substring(type[2].length); - let enumNumber = type[1][localEnumName]; - if (typeof enumNumber === 'undefined' && ignoreUnknownFields) { - return false; - } - assert_1.assert(typeof enumNumber == "number", `Unable to parse field ${this.info.typeName}#${fieldName}, enum ${type[0]} has no value for "${json}".`); - return enumNumber; + if (key === undefined) { + let keyRaw = reflection_scalar_default_1.reflectionScalarDefault(field.K); + key = field.K == reflection_info_1.ScalarType.BOOL ? keyRaw.toString() : keyRaw; } - assert_1.assert(false, `Unable to parse field ${this.info.typeName}#${fieldName}, cannot parse enum value from ${typeof json}".`); - } - scalar(json, type, longType, fieldName) { - let e; - try { - switch (type) { - // float, double: JSON value will be a number or one of the special string values "NaN", "Infinity", and "-Infinity". - // Either numbers or strings are accepted. Exponent notation is also accepted. - case reflection_info_1.ScalarType.DOUBLE: - case reflection_info_1.ScalarType.FLOAT: - if (json === null) - return .0; - if (json === "NaN") - return Number.NaN; - if (json === "Infinity") - return Number.POSITIVE_INFINITY; - if (json === "-Infinity") - return Number.NEGATIVE_INFINITY; - if (json === "") { - e = "empty string"; - break; - } - if (typeof json == "string" && json.trim().length !== json.length) { - e = "extra whitespace"; - break; - } - if (typeof json != "string" && typeof json != "number") { - break; - } - let float = Number(json); - if (Number.isNaN(float)) { - e = "not a number"; - break; - } - if (!Number.isFinite(float)) { - // infinity and -infinity are handled by string representation above, so this is an error - e = "too large or small"; - break; - } - if (type == reflection_info_1.ScalarType.FLOAT) - assert_1.assertFloat32(float); - return float; - // int32, fixed32, uint32: JSON value will be a decimal number. Either numbers or strings are accepted. - case reflection_info_1.ScalarType.INT32: - case reflection_info_1.ScalarType.FIXED32: - case reflection_info_1.ScalarType.SFIXED32: - case reflection_info_1.ScalarType.SINT32: - case reflection_info_1.ScalarType.UINT32: - if (json === null) - return 0; - let int32; - if (typeof json == "number") - int32 = json; - else if (json === "") - e = "empty string"; - else if (typeof json == "string") { - if (json.trim().length !== json.length) - e = "extra whitespace"; - else - int32 = Number(json); - } - if (int32 === undefined) - break; - if (type == reflection_info_1.ScalarType.UINT32) - assert_1.assertUInt32(int32); - else - assert_1.assertInt32(int32); - return int32; - // int64, fixed64, uint64: JSON value will be a decimal string. Either numbers or strings are accepted. - case reflection_info_1.ScalarType.INT64: - case reflection_info_1.ScalarType.SFIXED64: - case reflection_info_1.ScalarType.SINT64: - if (json === null) - return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.ZERO, longType); - if (typeof json != "number" && typeof json != "string") - break; - return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.from(json), longType); - case reflection_info_1.ScalarType.FIXED64: - case reflection_info_1.ScalarType.UINT64: - if (json === null) - return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.ZERO, longType); - if (typeof json != "number" && typeof json != "string") - break; - return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.from(json), longType); - // bool: - case reflection_info_1.ScalarType.BOOL: - if (json === null) - return false; - if (typeof json !== "boolean") - break; - return json; - // string: - case reflection_info_1.ScalarType.STRING: - if (json === null) - return ""; - if (typeof json !== "string") { - e = "extra whitespace"; - break; - } - try { - encodeURIComponent(json); - } - catch (e) { - e = "invalid UTF8"; - break; - } - return json; - // bytes: JSON value will be the data encoded as a string using standard base64 encoding with paddings. - // Either standard or URL-safe base64 encoding with/without paddings are accepted. - case reflection_info_1.ScalarType.BYTES: - if (json === null || json === "") - return new Uint8Array(0); - if (typeof json !== 'string') - break; - return base64_1.base64decode(json); + if (val === undefined) + switch (field.V.kind) { + case "scalar": + val = reflection_scalar_default_1.reflectionScalarDefault(field.V.T, field.V.L); + break; + case "enum": + val = 0; + break; + case "message": + val = field.V.T().create(); + break; } + return [key, val]; + } + scalar(reader, type, longType) { + switch (type) { + case reflection_info_1.ScalarType.INT32: + return reader.int32(); + case reflection_info_1.ScalarType.STRING: + return reader.string(); + case reflection_info_1.ScalarType.BOOL: + return reader.bool(); + case reflection_info_1.ScalarType.DOUBLE: + return reader.double(); + case reflection_info_1.ScalarType.FLOAT: + return reader.float(); + case reflection_info_1.ScalarType.INT64: + return reflection_long_convert_1.reflectionLongConvert(reader.int64(), longType); + case reflection_info_1.ScalarType.UINT64: + return reflection_long_convert_1.reflectionLongConvert(reader.uint64(), longType); + case reflection_info_1.ScalarType.FIXED64: + return reflection_long_convert_1.reflectionLongConvert(reader.fixed64(), longType); + case reflection_info_1.ScalarType.FIXED32: + return reader.fixed32(); + case reflection_info_1.ScalarType.BYTES: + return reader.bytes(); + case reflection_info_1.ScalarType.UINT32: + return reader.uint32(); + case reflection_info_1.ScalarType.SFIXED32: + return reader.sfixed32(); + case reflection_info_1.ScalarType.SFIXED64: + return reflection_long_convert_1.reflectionLongConvert(reader.sfixed64(), longType); + case reflection_info_1.ScalarType.SINT32: + return reader.sint32(); + case reflection_info_1.ScalarType.SINT64: + return reflection_long_convert_1.reflectionLongConvert(reader.sint64(), longType); } - catch (error) { - e = error.message; - } - this.assert(false, fieldName + (e ? " - " + e : ""), json); } } -exports.ReflectionJsonReader = ReflectionJsonReader; +exports.ReflectionBinaryReader = ReflectionBinaryReader; /***/ }), -/***/ 1094: +/***/ 6907: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ReflectionJsonWriter = void 0; -const base64_1 = __nccwpck_require__(6335); -const pb_long_1 = __nccwpck_require__(1753); +exports.ReflectionBinaryWriter = void 0; +const binary_format_contract_1 = __nccwpck_require__(4816); const reflection_info_1 = __nccwpck_require__(7910); const assert_1 = __nccwpck_require__(8602); +const pb_long_1 = __nccwpck_require__(1753); /** - * Writes proto3 messages in canonical JSON format using reflection - * information. + * Writes proto3 messages in binary format using reflection information. * - * https://developers.google.com/protocol-buffers/docs/proto3#json + * https://developers.google.com/protocol-buffers/docs/encoding */ -class ReflectionJsonWriter { +class ReflectionBinaryWriter { constructor(info) { - var _a; - this.fields = (_a = info.fields) !== null && _a !== void 0 ? _a : []; + this.info = info; + } + prepare() { + if (!this.fields) { + const fieldsInput = this.info.fields ? this.info.fields.concat() : []; + this.fields = fieldsInput.sort((a, b) => a.no - b.no); + } } /** - * Converts the message to a JSON object, based on the field descriptors. + * Writes the message to binary format. */ - write(message, options) { - const json = {}, source = message; + write(message, writer, options) { + this.prepare(); for (const field of this.fields) { - // field is not part of a oneof, simply write as is - if (!field.oneof) { - let jsonValue = this.field(field, source[field.localName], options); - if (jsonValue !== undefined) - json[options.useProtoFieldName ? field.name : field.jsonName] = jsonValue; - continue; + let value, // this will be our field value, whether it is member of a oneof or not + emitDefault, // whether we emit the default value (only true for oneof members) + repeated = field.repeat, localName = field.localName; + // handle oneof ADT + if (field.oneof) { + const group = message[field.oneof]; + if (group.oneofKind !== localName) + continue; // if field is not selected, skip + value = group[localName]; + emitDefault = true; } - // field is part of a oneof - const group = source[field.oneof]; - if (group.oneofKind !== field.localName) - continue; // not selected, skip - const opt = field.kind == 'scalar' || field.kind == 'enum' - ? Object.assign(Object.assign({}, options), { emitDefaultValues: true }) : options; - let jsonValue = this.field(field, group[field.localName], opt); - assert_1.assert(jsonValue !== undefined); - json[options.useProtoFieldName ? field.name : field.jsonName] = jsonValue; - } - return json; - } - field(field, value, options) { - let jsonValue = undefined; - if (field.kind == 'map') { - assert_1.assert(typeof value == "object" && value !== null); - const jsonObj = {}; - switch (field.V.kind) { - case "scalar": - for (const [entryKey, entryValue] of Object.entries(value)) { - const val = this.scalar(field.V.T, entryValue, field.name, false, true); - assert_1.assert(val !== undefined); - jsonObj[entryKey.toString()] = val; // JSON standard allows only (double quoted) string as property key - } - break; - case "message": - const messageType = field.V.T(); - for (const [entryKey, entryValue] of Object.entries(value)) { - const val = this.message(messageType, entryValue, field.name, options); - assert_1.assert(val !== undefined); - jsonObj[entryKey.toString()] = val; // JSON standard allows only (double quoted) string as property key - } - break; - case "enum": - const enumInfo = field.V.T(); - for (const [entryKey, entryValue] of Object.entries(value)) { - assert_1.assert(entryValue === undefined || typeof entryValue == 'number'); - const val = this.enum(enumInfo, entryValue, field.name, false, true, options.enumAsInteger); - assert_1.assert(val !== undefined); - jsonObj[entryKey.toString()] = val; // JSON standard allows only (double quoted) string as property key - } - break; + else { + value = message[localName]; + emitDefault = false; } - if (options.emitDefaultValues || Object.keys(jsonObj).length > 0) - jsonValue = jsonObj; - } - else if (field.repeat) { - assert_1.assert(Array.isArray(value)); - const jsonArr = []; + // we have handled oneof above. we just have to honor `emitDefault`. switch (field.kind) { case "scalar": - for (let i = 0; i < value.length; i++) { - const val = this.scalar(field.T, value[i], field.name, field.opt, true); - assert_1.assert(val !== undefined); - jsonArr.push(val); - } - break; case "enum": - const enumInfo = field.T(); - for (let i = 0; i < value.length; i++) { - assert_1.assert(value[i] === undefined || typeof value[i] == 'number'); - const val = this.enum(enumInfo, value[i], field.name, field.opt, true, options.enumAsInteger); - assert_1.assert(val !== undefined); - jsonArr.push(val); + let T = field.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.T; + if (repeated) { + assert_1.assert(Array.isArray(value)); + if (repeated == reflection_info_1.RepeatType.PACKED) + this.packed(writer, T, field.no, value); + else + for (const item of value) + this.scalar(writer, T, field.no, item, true); } + else if (value === undefined) + assert_1.assert(field.opt); + else + this.scalar(writer, T, field.no, value, emitDefault || field.opt); break; case "message": - const messageType = field.T(); - for (let i = 0; i < value.length; i++) { - const val = this.message(messageType, value[i], field.name, options); - assert_1.assert(val !== undefined); - jsonArr.push(val); + if (repeated) { + assert_1.assert(Array.isArray(value)); + for (const item of value) + this.message(writer, options, field.T(), field.no, item); + } + else { + this.message(writer, options, field.T(), field.no, value); } break; - } - // add converted array to json output - if (options.emitDefaultValues || jsonArr.length > 0 || options.emitDefaultValues) - jsonValue = jsonArr; - } - else { - switch (field.kind) { - case "scalar": - jsonValue = this.scalar(field.T, value, field.name, field.opt, options.emitDefaultValues); - break; - case "enum": - jsonValue = this.enum(field.T(), value, field.name, field.opt, options.emitDefaultValues, options.enumAsInteger); - break; - case "message": - jsonValue = this.message(field.T(), value, field.name, options); + case "map": + assert_1.assert(typeof value == 'object' && value !== null); + for (const [key, val] of Object.entries(value)) + this.mapEntry(writer, options, field, key, val); break; } } - return jsonValue; + let u = options.writeUnknownFields; + if (u !== false) + (u === true ? binary_format_contract_1.UnknownFieldHandler.onWrite : u)(this.info.typeName, message, writer); } - /** - * Returns `null` as the default for google.protobuf.NullValue. - */ - enum(type, value, fieldName, optional, emitDefaultValues, enumAsInteger) { - if (type[0] == 'google.protobuf.NullValue') - return !emitDefaultValues && !optional ? undefined : null; - if (value === undefined) { - assert_1.assert(optional); - return undefined; + mapEntry(writer, options, field, key, value) { + writer.tag(field.no, binary_format_contract_1.WireType.LengthDelimited); + writer.fork(); + // javascript only allows number or string for object properties + // we convert from our representation to the protobuf type + let keyValue = key; + switch (field.K) { + case reflection_info_1.ScalarType.INT32: + case reflection_info_1.ScalarType.FIXED32: + case reflection_info_1.ScalarType.UINT32: + case reflection_info_1.ScalarType.SFIXED32: + case reflection_info_1.ScalarType.SINT32: + keyValue = Number.parseInt(key); + break; + case reflection_info_1.ScalarType.BOOL: + assert_1.assert(key == 'true' || key == 'false'); + keyValue = key == 'true'; + break; } - if (value === 0 && !emitDefaultValues && !optional) - // we require 0 to be default value for all enums - return undefined; - assert_1.assert(typeof value == 'number'); - assert_1.assert(Number.isInteger(value)); - if (enumAsInteger || !type[1].hasOwnProperty(value)) - // if we don't now the enum value, just return the number - return value; - if (type[2]) - // restore the dropped prefix - return type[2] + type[1][value]; - return type[1][value]; + // write key, expecting key field number = 1 + this.scalar(writer, field.K, 1, keyValue, true); + // write value, expecting value field number = 2 + switch (field.V.kind) { + case 'scalar': + this.scalar(writer, field.V.T, 2, value, true); + break; + case 'enum': + this.scalar(writer, reflection_info_1.ScalarType.INT32, 2, value, true); + break; + case 'message': + this.message(writer, options, field.V.T(), 2, value); + break; + } + writer.join(); } - message(type, value, fieldName, options) { + message(writer, options, handler, fieldNo, value) { if (value === undefined) - return options.emitDefaultValues ? null : undefined; - return type.internalJsonWrite(value, options); + return; + handler.internalBinaryWrite(value, writer.tag(fieldNo, binary_format_contract_1.WireType.LengthDelimited).fork(), options); + writer.join(); } - scalar(type, value, fieldName, optional, emitDefaultValues) { - if (value === undefined) { - assert_1.assert(optional); - return undefined; + /** + * Write a single scalar value. + */ + scalar(writer, type, fieldNo, value, emitDefault) { + let [wireType, method, isDefault] = this.scalarInfo(type, value); + if (!isDefault || emitDefault) { + writer.tag(fieldNo, wireType); + writer[method](value); } - const ed = emitDefaultValues || optional; - // noinspection FallThroughInSwitchStatementJS + } + /** + * Write an array of scalar values in packed format. + */ + packed(writer, type, fieldNo, value) { + if (!value.length) + return; + assert_1.assert(type !== reflection_info_1.ScalarType.BYTES && type !== reflection_info_1.ScalarType.STRING); + // write tag + writer.tag(fieldNo, binary_format_contract_1.WireType.LengthDelimited); + // begin length-delimited + writer.fork(); + // write values without tags + let [, method,] = this.scalarInfo(type); + for (let i = 0; i < value.length; i++) + writer[method](value[i]); + // end length delimited + writer.join(); + } + /** + * Get information for writing a scalar value. + * + * Returns tuple: + * [0]: appropriate WireType + * [1]: name of the appropriate method of IBinaryWriter + * [2]: whether the given value is a default value + * + * If argument `value` is omitted, [2] is always false. + */ + scalarInfo(type, value) { + let t = binary_format_contract_1.WireType.Varint; + let m; + let i = value === undefined; + let d = value === 0; switch (type) { - // int32, fixed32, uint32: JSON value will be a decimal number. Either numbers or strings are accepted. case reflection_info_1.ScalarType.INT32: - case reflection_info_1.ScalarType.SFIXED32: - case reflection_info_1.ScalarType.SINT32: - if (value === 0) - return ed ? 0 : undefined; - assert_1.assertInt32(value); - return value; - case reflection_info_1.ScalarType.FIXED32: + m = "int32"; + break; + case reflection_info_1.ScalarType.STRING: + d = i || !value.length; + t = binary_format_contract_1.WireType.LengthDelimited; + m = "string"; + break; + case reflection_info_1.ScalarType.BOOL: + d = value === false; + m = "bool"; + break; case reflection_info_1.ScalarType.UINT32: - if (value === 0) - return ed ? 0 : undefined; - assert_1.assertUInt32(value); - return value; - // float, double: JSON value will be a number or one of the special string values "NaN", "Infinity", and "-Infinity". - // Either numbers or strings are accepted. Exponent notation is also accepted. - case reflection_info_1.ScalarType.FLOAT: - assert_1.assertFloat32(value); + m = "uint32"; + break; case reflection_info_1.ScalarType.DOUBLE: - if (value === 0) - return ed ? 0 : undefined; - assert_1.assert(typeof value == 'number'); - if (Number.isNaN(value)) - return 'NaN'; - if (value === Number.POSITIVE_INFINITY) - return 'Infinity'; - if (value === Number.NEGATIVE_INFINITY) - return '-Infinity'; - return value; - // string: - case reflection_info_1.ScalarType.STRING: - if (value === "") - return ed ? '' : undefined; - assert_1.assert(typeof value == 'string'); - return value; - // bool: - case reflection_info_1.ScalarType.BOOL: - if (value === false) - return ed ? false : undefined; - assert_1.assert(typeof value == 'boolean'); - return value; - // JSON value will be a decimal string. Either numbers or strings are accepted. + t = binary_format_contract_1.WireType.Bit64; + m = "double"; + break; + case reflection_info_1.ScalarType.FLOAT: + t = binary_format_contract_1.WireType.Bit32; + m = "float"; + break; + case reflection_info_1.ScalarType.INT64: + d = i || pb_long_1.PbLong.from(value).isZero(); + m = "int64"; + break; case reflection_info_1.ScalarType.UINT64: + d = i || pb_long_1.PbULong.from(value).isZero(); + m = "uint64"; + break; case reflection_info_1.ScalarType.FIXED64: - assert_1.assert(typeof value == 'number' || typeof value == 'string' || typeof value == 'bigint'); - let ulong = pb_long_1.PbULong.from(value); - if (ulong.isZero() && !ed) - return undefined; - return ulong.toString(); - // JSON value will be a decimal string. Either numbers or strings are accepted. - case reflection_info_1.ScalarType.INT64: + d = i || pb_long_1.PbULong.from(value).isZero(); + t = binary_format_contract_1.WireType.Bit64; + m = "fixed64"; + break; + case reflection_info_1.ScalarType.BYTES: + d = i || !value.byteLength; + t = binary_format_contract_1.WireType.LengthDelimited; + m = "bytes"; + break; + case reflection_info_1.ScalarType.FIXED32: + t = binary_format_contract_1.WireType.Bit32; + m = "fixed32"; + break; + case reflection_info_1.ScalarType.SFIXED32: + t = binary_format_contract_1.WireType.Bit32; + m = "sfixed32"; + break; case reflection_info_1.ScalarType.SFIXED64: + d = i || pb_long_1.PbLong.from(value).isZero(); + t = binary_format_contract_1.WireType.Bit64; + m = "sfixed64"; + break; + case reflection_info_1.ScalarType.SINT32: + m = "sint32"; + break; case reflection_info_1.ScalarType.SINT64: - assert_1.assert(typeof value == 'number' || typeof value == 'string' || typeof value == 'bigint'); - let long = pb_long_1.PbLong.from(value); - if (long.isZero() && !ed) - return undefined; - return long.toString(); - // bytes: JSON value will be the data encoded as a string using standard base64 encoding with paddings. - // Either standard or URL-safe base64 encoding with/without paddings are accepted. - case reflection_info_1.ScalarType.BYTES: - assert_1.assert(value instanceof Uint8Array); - if (!value.byteLength) - return ed ? "" : undefined; - return base64_1.base64encode(value); + d = i || pb_long_1.PbLong.from(value).isZero(); + m = "sint64"; + break; } + return [t, m, i || d]; } } -exports.ReflectionJsonWriter = ReflectionJsonWriter; +exports.ReflectionBinaryWriter = ReflectionBinaryWriter; /***/ }), -/***/ 3402: +/***/ 9946: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.reflectionLongConvert = void 0; -const reflection_info_1 = __nccwpck_require__(7910); +exports.containsMessageType = void 0; +const message_type_contract_1 = __nccwpck_require__(3785); /** - * Utility method to convert a PbLong or PbUlong to a JavaScript - * representation during runtime. + * Check if the provided object is a proto message. * - * Works with generated field information, `undefined` is equivalent - * to `STRING`. + * Note that this is an experimental feature - it is here to stay, but + * implementation details may change without notice. */ -function reflectionLongConvert(long, type) { - switch (type) { - case reflection_info_1.LongType.BIGINT: - return long.toBigInt(); - case reflection_info_1.LongType.NUMBER: - return long.toNumber(); - default: - // case undefined: - // case LongType.STRING: - return long.toString(); - } +function containsMessageType(msg) { + return msg[message_type_contract_1.MESSAGE_TYPE] != null; } -exports.reflectionLongConvert = reflectionLongConvert; +exports.containsMessageType = containsMessageType; /***/ }), -/***/ 8044: -/***/ ((__unused_webpack_module, exports) => { +/***/ 5726: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.reflectionMergePartial = void 0; +exports.reflectionCreate = void 0; +const reflection_scalar_default_1 = __nccwpck_require__(9526); +const message_type_contract_1 = __nccwpck_require__(3785); /** - * Copy partial data into the target message. - * - * If a singular scalar or enum field is present in the source, it - * replaces the field in the target. - * - * If a singular message field is present in the source, it is merged - * with the target field by calling mergePartial() of the responsible - * message type. - * - * If a repeated field is present in the source, its values replace - * all values in the target array, removing extraneous values. - * Repeated message fields are copied, not merged. - * - * If a map field is present in the source, entries are added to the - * target map, replacing entries with the same key. Entries that only - * exist in the target remain. Entries with message values are copied, - * not merged. - * - * Note that this function differs from protobuf merge semantics, - * which appends repeated fields. + * Creates an instance of the generic message, using the field + * information. */ -function reflectionMergePartial(info, target, source) { - let fieldValue, // the field value we are working with - input = source, output; // where we want our field value to go - for (let field of info.fields) { +function reflectionCreate(type) { + /** + * This ternary can be removed in the next major version. + * The `Object.create()` code path utilizes a new `messagePrototype` + * property on the `IMessageType` which has this same `MESSAGE_TYPE` + * non-enumerable property on it. Doing it this way means that we only + * pay the cost of `Object.defineProperty()` once per `IMessageType` + * class of once per "instance". The falsy code path is only provided + * for backwards compatibility in cases where the runtime library is + * updated without also updating the generated code. + */ + const msg = type.messagePrototype + ? Object.create(type.messagePrototype) + : Object.defineProperty({}, message_type_contract_1.MESSAGE_TYPE, { value: type }); + for (let field of type.fields) { let name = field.localName; - if (field.oneof) { - const group = input[field.oneof]; // this is the oneof`s group in the source - if ((group === null || group === void 0 ? void 0 : group.oneofKind) == undefined) { // the user is free to omit - continue; // we skip this field, and all other members too - } - fieldValue = group[name]; // our value comes from the the oneof group of the source - output = target[field.oneof]; // and our output is the oneof group of the target - output.oneofKind = group.oneofKind; // always update discriminator - if (fieldValue == undefined) { - delete output[name]; // remove any existing value - continue; // skip further work on field - } - } - else { - fieldValue = input[name]; // we are using the source directly - output = target; // we want our field value to go directly into the target - if (fieldValue == undefined) { - continue; // skip further work on field, existing value is used as is + if (field.opt) + continue; + if (field.oneof) + msg[field.oneof] = { oneofKind: undefined }; + else if (field.repeat) + msg[name] = []; + else + switch (field.kind) { + case "scalar": + msg[name] = reflection_scalar_default_1.reflectionScalarDefault(field.T, field.L); + break; + case "enum": + // we require 0 to be default value for all enums + msg[name] = 0; + break; + case "map": + msg[name] = {}; + break; } - } - if (field.repeat) - output[name].length = fieldValue.length; // resize target array to match source array - // now we just work with `fieldValue` and `output` to merge the value + } + return msg; +} +exports.reflectionCreate = reflectionCreate; + + +/***/ }), + +/***/ 4827: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.reflectionEquals = void 0; +const reflection_info_1 = __nccwpck_require__(7910); +/** + * Determines whether two message of the same type have the same field values. + * Checks for deep equality, traversing repeated fields, oneof groups, maps + * and messages recursively. + * Will also return true if both messages are `undefined`. + */ +function reflectionEquals(info, a, b) { + if (a === b) + return true; + if (!a || !b) + return false; + for (let field of info.fields) { + let localName = field.localName; + let val_a = field.oneof ? a[field.oneof][localName] : a[localName]; + let val_b = field.oneof ? b[field.oneof][localName] : b[localName]; switch (field.kind) { - case "scalar": case "enum": - if (field.repeat) - for (let i = 0; i < fieldValue.length; i++) - output[name][i] = fieldValue[i]; // not a reference type - else - output[name] = fieldValue; // not a reference type + case "scalar": + let t = field.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.T; + if (!(field.repeat + ? repeatedPrimitiveEq(t, val_a, val_b) + : primitiveEq(t, val_a, val_b))) + return false; + break; + case "map": + if (!(field.V.kind == "message" + ? repeatedMsgEq(field.V.T(), objectValues(val_a), objectValues(val_b)) + : repeatedPrimitiveEq(field.V.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.V.T, objectValues(val_a), objectValues(val_b)))) + return false; break; case "message": let T = field.T(); - if (field.repeat) - for (let i = 0; i < fieldValue.length; i++) - output[name][i] = T.create(fieldValue[i]); - else if (output[name] === undefined) - output[name] = T.create(fieldValue); // nothing to merge with - else - T.mergePartial(output[name], fieldValue); - break; - case "map": - // Map and repeated fields are simply overwritten, not appended or merged - switch (field.V.kind) { - case "scalar": - case "enum": - Object.assign(output[name], fieldValue); // elements are not reference types - break; - case "message": - let T = field.V.T(); - for (let k of Object.keys(fieldValue)) - output[name][k] = T.create(fieldValue[k]); - break; - } + if (!(field.repeat + ? repeatedMsgEq(T, val_a, val_b) + : T.equals(val_a, val_b))) + return false; break; } } + return true; +} +exports.reflectionEquals = reflectionEquals; +const objectValues = Object.values; +function primitiveEq(type, a, b) { + if (a === b) + return true; + if (type !== reflection_info_1.ScalarType.BYTES) + return false; + let ba = a; + let bb = b; + if (ba.length !== bb.length) + return false; + for (let i = 0; i < ba.length; i++) + if (ba[i] != bb[i]) + return false; + return true; +} +function repeatedPrimitiveEq(type, a, b) { + if (a.length !== b.length) + return false; + for (let i = 0; i < a.length; i++) + if (!primitiveEq(type, a[i], b[i])) + return false; + return true; +} +function repeatedMsgEq(type, a, b) { + if (a.length !== b.length) + return false; + for (let i = 0; i < a.length; i++) + if (!type.equals(a[i], b[i])) + return false; + return true; } -exports.reflectionMergePartial = reflectionMergePartial; /***/ }), -/***/ 9526: +/***/ 7910: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.reflectionScalarDefault = void 0; -const reflection_info_1 = __nccwpck_require__(7910); -const reflection_long_convert_1 = __nccwpck_require__(3402); -const pb_long_1 = __nccwpck_require__(1753); +exports.readMessageOption = exports.readFieldOption = exports.readFieldOptions = exports.normalizeFieldInfo = exports.RepeatType = exports.LongType = exports.ScalarType = void 0; +const lower_camel_case_1 = __nccwpck_require__(4073); /** - * Creates the default value for a scalar type. + * Scalar value types. This is a subset of field types declared by protobuf + * enum google.protobuf.FieldDescriptorProto.Type The types GROUP and MESSAGE + * are omitted, but the numerical values are identical. */ -function reflectionScalarDefault(type, longType = reflection_info_1.LongType.STRING) { - switch (type) { - case reflection_info_1.ScalarType.BOOL: - return false; - case reflection_info_1.ScalarType.UINT64: - case reflection_info_1.ScalarType.FIXED64: - return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.ZERO, longType); - case reflection_info_1.ScalarType.INT64: - case reflection_info_1.ScalarType.SFIXED64: - case reflection_info_1.ScalarType.SINT64: - return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.ZERO, longType); - case reflection_info_1.ScalarType.DOUBLE: - case reflection_info_1.ScalarType.FLOAT: - return 0.0; - case reflection_info_1.ScalarType.BYTES: - return new Uint8Array(0); - case reflection_info_1.ScalarType.STRING: - return ""; - default: - // case ScalarType.INT32: - // case ScalarType.UINT32: - // case ScalarType.SINT32: - // case ScalarType.FIXED32: - // case ScalarType.SFIXED32: - return 0; +var ScalarType; +(function (ScalarType) { + // 0 is reserved for errors. + // Order is weird for historical reasons. + ScalarType[ScalarType["DOUBLE"] = 1] = "DOUBLE"; + ScalarType[ScalarType["FLOAT"] = 2] = "FLOAT"; + // Not ZigZag encoded. Negative numbers take 10 bytes. Use TYPE_SINT64 if + // negative values are likely. + ScalarType[ScalarType["INT64"] = 3] = "INT64"; + ScalarType[ScalarType["UINT64"] = 4] = "UINT64"; + // Not ZigZag encoded. Negative numbers take 10 bytes. Use TYPE_SINT32 if + // negative values are likely. + ScalarType[ScalarType["INT32"] = 5] = "INT32"; + ScalarType[ScalarType["FIXED64"] = 6] = "FIXED64"; + ScalarType[ScalarType["FIXED32"] = 7] = "FIXED32"; + ScalarType[ScalarType["BOOL"] = 8] = "BOOL"; + ScalarType[ScalarType["STRING"] = 9] = "STRING"; + // Tag-delimited aggregate. + // Group type is deprecated and not supported in proto3. However, Proto3 + // implementations should still be able to parse the group wire format and + // treat group fields as unknown fields. + // TYPE_GROUP = 10, + // TYPE_MESSAGE = 11, // Length-delimited aggregate. + // New in version 2. + ScalarType[ScalarType["BYTES"] = 12] = "BYTES"; + ScalarType[ScalarType["UINT32"] = 13] = "UINT32"; + // TYPE_ENUM = 14, + ScalarType[ScalarType["SFIXED32"] = 15] = "SFIXED32"; + ScalarType[ScalarType["SFIXED64"] = 16] = "SFIXED64"; + ScalarType[ScalarType["SINT32"] = 17] = "SINT32"; + ScalarType[ScalarType["SINT64"] = 18] = "SINT64"; +})(ScalarType = exports.ScalarType || (exports.ScalarType = {})); +/** + * JavaScript representation of 64 bit integral types. Equivalent to the + * field option "jstype". + * + * By default, protobuf-ts represents 64 bit types as `bigint`. + * + * You can change the default behaviour by enabling the plugin parameter + * `long_type_string`, which will represent 64 bit types as `string`. + * + * Alternatively, you can change the behaviour for individual fields + * with the field option "jstype": + * + * ```protobuf + * uint64 my_field = 1 [jstype = JS_STRING]; + * uint64 other_field = 2 [jstype = JS_NUMBER]; + * ``` + */ +var LongType; +(function (LongType) { + /** + * Use JavaScript `bigint`. + * + * Field option `[jstype = JS_NORMAL]`. + */ + LongType[LongType["BIGINT"] = 0] = "BIGINT"; + /** + * Use JavaScript `string`. + * + * Field option `[jstype = JS_STRING]`. + */ + LongType[LongType["STRING"] = 1] = "STRING"; + /** + * Use JavaScript `number`. + * + * Large values will loose precision. + * + * Field option `[jstype = JS_NUMBER]`. + */ + LongType[LongType["NUMBER"] = 2] = "NUMBER"; +})(LongType = exports.LongType || (exports.LongType = {})); +/** + * Protobuf 2.1.0 introduced packed repeated fields. + * Setting the field option `[packed = true]` enables packing. + * + * In proto3, all repeated fields are packed by default. + * Setting the field option `[packed = false]` disables packing. + * + * Packed repeated fields are encoded with a single tag, + * then a length-delimiter, then the element values. + * + * Unpacked repeated fields are encoded with a tag and + * value for each element. + * + * `bytes` and `string` cannot be packed. + */ +var RepeatType; +(function (RepeatType) { + /** + * The field is not repeated. + */ + RepeatType[RepeatType["NO"] = 0] = "NO"; + /** + * The field is repeated and should be packed. + * Invalid for `bytes` and `string`, they cannot be packed. + */ + RepeatType[RepeatType["PACKED"] = 1] = "PACKED"; + /** + * The field is repeated but should not be packed. + * The only valid repeat type for repeated `bytes` and `string`. + */ + RepeatType[RepeatType["UNPACKED"] = 2] = "UNPACKED"; +})(RepeatType = exports.RepeatType || (exports.RepeatType = {})); +/** + * Turns PartialFieldInfo into FieldInfo. + */ +function normalizeFieldInfo(field) { + var _a, _b, _c, _d; + field.localName = (_a = field.localName) !== null && _a !== void 0 ? _a : lower_camel_case_1.lowerCamelCase(field.name); + field.jsonName = (_b = field.jsonName) !== null && _b !== void 0 ? _b : lower_camel_case_1.lowerCamelCase(field.name); + field.repeat = (_c = field.repeat) !== null && _c !== void 0 ? _c : RepeatType.NO; + field.opt = (_d = field.opt) !== null && _d !== void 0 ? _d : (field.repeat ? false : field.oneof ? false : field.kind == "message"); + return field; +} +exports.normalizeFieldInfo = normalizeFieldInfo; +/** + * Read custom field options from a generated message type. + * + * @deprecated use readFieldOption() + */ +function readFieldOptions(messageType, fieldName, extensionName, extensionType) { + var _a; + const options = (_a = messageType.fields.find((m, i) => m.localName == fieldName || i == fieldName)) === null || _a === void 0 ? void 0 : _a.options; + return options && options[extensionName] ? extensionType.fromJson(options[extensionName]) : undefined; +} +exports.readFieldOptions = readFieldOptions; +function readFieldOption(messageType, fieldName, extensionName, extensionType) { + var _a; + const options = (_a = messageType.fields.find((m, i) => m.localName == fieldName || i == fieldName)) === null || _a === void 0 ? void 0 : _a.options; + if (!options) { + return undefined; + } + const optionVal = options[extensionName]; + if (optionVal === undefined) { + return optionVal; } + return extensionType ? extensionType.fromJson(optionVal) : optionVal; } -exports.reflectionScalarDefault = reflectionScalarDefault; +exports.readFieldOption = readFieldOption; +function readMessageOption(messageType, extensionName, extensionType) { + const options = messageType.options; + const optionVal = options[extensionName]; + if (optionVal === undefined) { + return optionVal; + } + return extensionType ? extensionType.fromJson(optionVal) : optionVal; +} +exports.readMessageOption = readMessageOption; /***/ }), -/***/ 5167: +/***/ 6790: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ReflectionTypeCheck = void 0; +exports.ReflectionJsonReader = void 0; +const json_typings_1 = __nccwpck_require__(9999); +const base64_1 = __nccwpck_require__(6335); const reflection_info_1 = __nccwpck_require__(7910); -const oneof_1 = __nccwpck_require__(8063); -// noinspection JSMethodCanBeStatic -class ReflectionTypeCheck { - constructor(info) { - var _a; - this.fields = (_a = info.fields) !== null && _a !== void 0 ? _a : []; +const pb_long_1 = __nccwpck_require__(1753); +const assert_1 = __nccwpck_require__(8602); +const reflection_long_convert_1 = __nccwpck_require__(3402); +/** + * Reads proto3 messages in canonical JSON format using reflection information. + * + * https://developers.google.com/protocol-buffers/docs/proto3#json + */ +class ReflectionJsonReader { + constructor(info) { + this.info = info; } prepare() { - if (this.data) - return; - const req = [], known = [], oneofs = []; - for (let field of this.fields) { + var _a; + if (this.fMap === undefined) { + this.fMap = {}; + const fieldsInput = (_a = this.info.fields) !== null && _a !== void 0 ? _a : []; + for (const field of fieldsInput) { + this.fMap[field.name] = field; + this.fMap[field.jsonName] = field; + this.fMap[field.localName] = field; + } + } + } + // Cannot parse JSON for #. + assert(condition, fieldName, jsonValue) { + if (!condition) { + let what = json_typings_1.typeofJsonValue(jsonValue); + if (what == "number" || what == "boolean") + what = jsonValue.toString(); + throw new Error(`Cannot parse JSON ${what} for ${this.info.typeName}#${fieldName}`); + } + } + /** + * Reads a message from canonical JSON format into the target message. + * + * Repeated fields are appended. Map entries are added, overwriting + * existing keys. + * + * If a message field is already present, it will be merged with the + * new data. + */ + read(input, message, options) { + this.prepare(); + const oneofsHandled = []; + for (const [jsonKey, jsonValue] of Object.entries(input)) { + const field = this.fMap[jsonKey]; + if (!field) { + if (!options.ignoreUnknownFields) + throw new Error(`Found unknown field while reading ${this.info.typeName} from JSON format. JSON key: ${jsonKey}`); + continue; + } + const localName = field.localName; + // handle oneof ADT + let target; // this will be the target for the field value, whether it is member of a oneof or not if (field.oneof) { - if (!oneofs.includes(field.oneof)) { - oneofs.push(field.oneof); - req.push(field.oneof); - known.push(field.oneof); + if (jsonValue === null && (field.kind !== 'enum' || field.T()[0] !== 'google.protobuf.NullValue')) { + continue; + } + // since json objects are unordered by specification, it is not possible to take the last of multiple oneofs + if (oneofsHandled.includes(field.oneof)) + throw new Error(`Multiple members of the oneof group "${field.oneof}" of ${this.info.typeName} are present in JSON.`); + oneofsHandled.push(field.oneof); + target = message[field.oneof] = { + oneofKind: localName + }; + } + else { + target = message; + } + // we have handled oneof above. we just have read the value into `target`. + if (field.kind == 'map') { + if (jsonValue === null) { + continue; + } + // check input + this.assert(json_typings_1.isJsonObject(jsonValue), field.name, jsonValue); + // our target to put map entries into + const fieldObj = target[localName]; + // read entries + for (const [jsonObjKey, jsonObjValue] of Object.entries(jsonValue)) { + this.assert(jsonObjValue !== null, field.name + " map value", null); + // read value + let val; + switch (field.V.kind) { + case "message": + val = field.V.T().internalJsonRead(jsonObjValue, options); + break; + case "enum": + val = this.enum(field.V.T(), jsonObjValue, field.name, options.ignoreUnknownFields); + if (val === false) + continue; + break; + case "scalar": + val = this.scalar(jsonObjValue, field.V.T, field.V.L, field.name); + break; + } + this.assert(val !== undefined, field.name + " map value", jsonObjValue); + // read key + let key = jsonObjKey; + if (field.K == reflection_info_1.ScalarType.BOOL) + key = key == "true" ? true : key == "false" ? false : key; + key = this.scalar(key, field.K, reflection_info_1.LongType.STRING, field.name).toString(); + fieldObj[key] = val; + } + } + else if (field.repeat) { + if (jsonValue === null) + continue; + // check input + this.assert(Array.isArray(jsonValue), field.name, jsonValue); + // our target to put array entries into + const fieldArr = target[localName]; + // read array entries + for (const jsonItem of jsonValue) { + this.assert(jsonItem !== null, field.name, null); + let val; + switch (field.kind) { + case "message": + val = field.T().internalJsonRead(jsonItem, options); + break; + case "enum": + val = this.enum(field.T(), jsonItem, field.name, options.ignoreUnknownFields); + if (val === false) + continue; + break; + case "scalar": + val = this.scalar(jsonItem, field.T, field.L, field.name); + break; + } + this.assert(val !== undefined, field.name, jsonValue); + fieldArr.push(val); } } else { - known.push(field.localName); switch (field.kind) { - case "scalar": - case "enum": - if (!field.opt || field.repeat) - req.push(field.localName); - break; case "message": - if (field.repeat) - req.push(field.localName); + if (jsonValue === null && field.T().typeName != 'google.protobuf.Value') { + this.assert(field.oneof === undefined, field.name + " (oneof member)", null); + continue; + } + target[localName] = field.T().internalJsonRead(jsonValue, options, target[localName]); break; - case "map": - req.push(field.localName); + case "enum": + if (jsonValue === null) + continue; + let val = this.enum(field.T(), jsonValue, field.name, options.ignoreUnknownFields); + if (val === false) + continue; + target[localName] = val; + break; + case "scalar": + if (jsonValue === null) + continue; + target[localName] = this.scalar(jsonValue, field.T, field.L, field.name); break; } } } - this.data = { req, known, oneofs: Object.values(oneofs) }; } /** - * Is the argument a valid message as specified by the - * reflection information? - * - * Checks all field types recursively. The `depth` - * specifies how deep into the structure the check will be. - * - * With a depth of 0, only the presence of fields - * is checked. - * - * With a depth of 1 or more, the field types are checked. - * - * With a depth of 2 or more, the members of map, repeated - * and message fields are checked. - * - * Message fields will be checked recursively with depth - 1. + * Returns `false` for unrecognized string representations. * - * The number of map entries / repeated values being checked - * is < depth. + * google.protobuf.NullValue accepts only JSON `null` (or the old `"NULL_VALUE"`). */ - is(message, depth, allowExcessProperties = false) { - if (depth < 0) - return true; - if (message === null || message === undefined || typeof message != 'object') - return false; - this.prepare(); - let keys = Object.keys(message), data = this.data; - // if a required field is missing in arg, this cannot be a T - if (keys.length < data.req.length || data.req.some(n => !keys.includes(n))) - return false; - if (!allowExcessProperties) { - // if the arg contains a key we dont know, this is not a literal T - if (keys.some(k => !data.known.includes(k))) - return false; - } - // "With a depth of 0, only the presence and absence of fields is checked." - // "With a depth of 1 or more, the field types are checked." - if (depth < 1) { - return true; - } - // check oneof group - for (const name of data.oneofs) { - const group = message[name]; - if (!oneof_1.isOneofGroup(group)) - return false; - if (group.oneofKind === undefined) - continue; - const field = this.fields.find(f => f.localName === group.oneofKind); - if (!field) - return false; // we found no field, but have a kind, something is wrong - if (!this.field(group[group.oneofKind], field, allowExcessProperties, depth)) - return false; - } - // check types - for (const field of this.fields) { - if (field.oneof !== undefined) - continue; - if (!this.field(message[field.localName], field, allowExcessProperties, depth)) - return false; - } - return true; - } - field(arg, field, allowExcessProperties, depth) { - let repeated = field.repeat; - switch (field.kind) { - case "scalar": - if (arg === undefined) - return field.opt; - if (repeated) - return this.scalars(arg, field.T, depth, field.L); - return this.scalar(arg, field.T, field.L); - case "enum": - if (arg === undefined) - return field.opt; - if (repeated) - return this.scalars(arg, reflection_info_1.ScalarType.INT32, depth); - return this.scalar(arg, reflection_info_1.ScalarType.INT32); - case "message": - if (arg === undefined) - return true; - if (repeated) - return this.messages(arg, field.T(), allowExcessProperties, depth); - return this.message(arg, field.T(), allowExcessProperties, depth); - case "map": - if (typeof arg != 'object' || arg === null) - return false; - if (depth < 2) - return true; - if (!this.mapKeys(arg, field.K, depth)) - return false; - switch (field.V.kind) { - case "scalar": - return this.scalars(Object.values(arg), field.V.T, depth, field.V.L); - case "enum": - return this.scalars(Object.values(arg), reflection_info_1.ScalarType.INT32, depth); - case "message": - return this.messages(Object.values(arg), field.V.T(), allowExcessProperties, depth); - } - break; - } - return true; - } - message(arg, type, allowExcessProperties, depth) { - if (allowExcessProperties) { - return type.isAssignable(arg, depth); - } - return type.is(arg, depth); - } - messages(arg, type, allowExcessProperties, depth) { - if (!Array.isArray(arg)) - return false; - if (depth < 2) - return true; - if (allowExcessProperties) { - for (let i = 0; i < arg.length && i < depth; i++) - if (!type.isAssignable(arg[i], depth - 1)) - return false; - } - else { - for (let i = 0; i < arg.length && i < depth; i++) - if (!type.is(arg[i], depth - 1)) + enum(type, json, fieldName, ignoreUnknownFields) { + if (type[0] == 'google.protobuf.NullValue') + assert_1.assert(json === null || json === "NULL_VALUE", `Unable to parse field ${this.info.typeName}#${fieldName}, enum ${type[0]} only accepts null.`); + if (json === null) + // we require 0 to be default value for all enums + return 0; + switch (typeof json) { + case "number": + assert_1.assert(Number.isInteger(json), `Unable to parse field ${this.info.typeName}#${fieldName}, enum can only be integral number, got ${json}.`); + return json; + case "string": + let localEnumName = json; + if (type[2] && json.substring(0, type[2].length) === type[2]) + // lookup without the shared prefix + localEnumName = json.substring(type[2].length); + let enumNumber = type[1][localEnumName]; + if (typeof enumNumber === 'undefined' && ignoreUnknownFields) { return false; - } - return true; - } - scalar(arg, type, longType) { - let argType = typeof arg; - switch (type) { - case reflection_info_1.ScalarType.UINT64: - case reflection_info_1.ScalarType.FIXED64: - case reflection_info_1.ScalarType.INT64: - case reflection_info_1.ScalarType.SFIXED64: - case reflection_info_1.ScalarType.SINT64: - switch (longType) { - case reflection_info_1.LongType.BIGINT: - return argType == "bigint"; - case reflection_info_1.LongType.NUMBER: - return argType == "number" && !isNaN(arg); - default: - return argType == "string"; } - case reflection_info_1.ScalarType.BOOL: - return argType == 'boolean'; - case reflection_info_1.ScalarType.STRING: - return argType == 'string'; - case reflection_info_1.ScalarType.BYTES: - return arg instanceof Uint8Array; - case reflection_info_1.ScalarType.DOUBLE: - case reflection_info_1.ScalarType.FLOAT: - return argType == 'number' && !isNaN(arg); - default: - // case ScalarType.UINT32: - // case ScalarType.FIXED32: - // case ScalarType.INT32: - // case ScalarType.SINT32: - // case ScalarType.SFIXED32: - return argType == 'number' && Number.isInteger(arg); - } - } - scalars(arg, type, depth, longType) { - if (!Array.isArray(arg)) - return false; - if (depth < 2) - return true; - if (Array.isArray(arg)) - for (let i = 0; i < arg.length && i < depth; i++) - if (!this.scalar(arg[i], type, longType)) - return false; - return true; - } - mapKeys(map, type, depth) { - let keys = Object.keys(map); - switch (type) { - case reflection_info_1.ScalarType.INT32: - case reflection_info_1.ScalarType.FIXED32: - case reflection_info_1.ScalarType.SFIXED32: - case reflection_info_1.ScalarType.SINT32: - case reflection_info_1.ScalarType.UINT32: - return this.scalars(keys.slice(0, depth).map(k => parseInt(k)), type, depth); - case reflection_info_1.ScalarType.BOOL: - return this.scalars(keys.slice(0, depth).map(k => k == 'true' ? true : k == 'false' ? false : k), type, depth); - default: - return this.scalars(keys, type, depth, reflection_info_1.LongType.STRING); + assert_1.assert(typeof enumNumber == "number", `Unable to parse field ${this.info.typeName}#${fieldName}, enum ${type[0]} has no value for "${json}".`); + return enumNumber; } + assert_1.assert(false, `Unable to parse field ${this.info.typeName}#${fieldName}, cannot parse enum value from ${typeof json}".`); } -} -exports.ReflectionTypeCheck = ReflectionTypeCheck; - - -/***/ }), - -/***/ 5183: -/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { - - -var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { - if (k2 === undefined) k2 = k; - var desc = Object.getOwnPropertyDescriptor(m, k); - if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { - desc = { enumerable: true, get: function() { return m[k]; } }; - } - Object.defineProperty(o, k2, desc); -}) : (function(o, m, k, k2) { - if (k2 === undefined) k2 = k; - o[k2] = m[k]; -})); -var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { - Object.defineProperty(o, "default", { enumerable: true, value: v }); -}) : function(o, v) { - o["default"] = v; -}); -var __importStar = (this && this.__importStar) || function (mod) { - if (mod && mod.__esModule) return mod; - var result = {}; - if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); - __setModuleDefault(result, mod); - return result; -}; -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.req = exports.json = exports.toBuffer = void 0; -const http = __importStar(__nccwpck_require__(8611)); -const https = __importStar(__nccwpck_require__(5692)); -async function toBuffer(stream) { - let length = 0; - const chunks = []; - for await (const chunk of stream) { - length += chunk.length; - chunks.push(chunk); - } - return Buffer.concat(chunks, length); -} -exports.toBuffer = toBuffer; -// eslint-disable-next-line @typescript-eslint/no-explicit-any -async function json(stream) { - const buf = await toBuffer(stream); - const str = buf.toString('utf8'); - try { - return JSON.parse(str); - } - catch (_err) { - const err = _err; - err.message += ` (input: ${str})`; - throw err; - } -} -exports.json = json; -function req(url, opts = {}) { - const href = typeof url === 'string' ? url : url.href; - const req = (href.startsWith('https:') ? https : http).request(url, opts); - const promise = new Promise((resolve, reject) => { - req - .once('response', resolve) - .once('error', reject) - .end(); - }); - req.then = promise.then.bind(promise); - return req; -} -exports.req = req; -//# sourceMappingURL=helpers.js.map - -/***/ }), - -/***/ 8894: -/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { - - -var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { - if (k2 === undefined) k2 = k; - var desc = Object.getOwnPropertyDescriptor(m, k); - if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { - desc = { enumerable: true, get: function() { return m[k]; } }; - } - Object.defineProperty(o, k2, desc); -}) : (function(o, m, k, k2) { - if (k2 === undefined) k2 = k; - o[k2] = m[k]; -})); -var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { - Object.defineProperty(o, "default", { enumerable: true, value: v }); -}) : function(o, v) { - o["default"] = v; -}); -var __importStar = (this && this.__importStar) || function (mod) { - if (mod && mod.__esModule) return mod; - var result = {}; - if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); - __setModuleDefault(result, mod); - return result; -}; -var __exportStar = (this && this.__exportStar) || function(m, exports) { - for (var p in m) if (p !== "default" && !Object.prototype.hasOwnProperty.call(exports, p)) __createBinding(exports, m, p); -}; -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.Agent = void 0; -const net = __importStar(__nccwpck_require__(9278)); -const http = __importStar(__nccwpck_require__(8611)); -const https_1 = __nccwpck_require__(5692); -__exportStar(__nccwpck_require__(5183), exports); -const INTERNAL = Symbol('AgentBaseInternalState'); -class Agent extends http.Agent { - constructor(opts) { - super(opts); - this[INTERNAL] = {}; - } - /** - * Determine whether this is an `http` or `https` request. - */ - isSecureEndpoint(options) { - if (options) { - // First check the `secureEndpoint` property explicitly, since this - // means that a parent `Agent` is "passing through" to this instance. - // eslint-disable-next-line @typescript-eslint/no-explicit-any - if (typeof options.secureEndpoint === 'boolean') { - return options.secureEndpoint; - } - // If no explicit `secure` endpoint, check if `protocol` property is - // set. This will usually be the case since using a full string URL - // or `URL` instance should be the most common usage. - if (typeof options.protocol === 'string') { - return options.protocol === 'https:'; - } - } - // Finally, if no `protocol` property was set, then fall back to - // checking the stack trace of the current call stack, and try to - // detect the "https" module. - const { stack } = new Error(); - if (typeof stack !== 'string') - return false; - return stack - .split('\n') - .some((l) => l.indexOf('(https.js:') !== -1 || - l.indexOf('node:https:') !== -1); - } - // In order to support async signatures in `connect()` and Node's native - // connection pooling in `http.Agent`, the array of sockets for each origin - // has to be updated synchronously. This is so the length of the array is - // accurate when `addRequest()` is next called. We achieve this by creating a - // fake socket and adding it to `sockets[origin]` and incrementing - // `totalSocketCount`. - incrementSockets(name) { - // If `maxSockets` and `maxTotalSockets` are both Infinity then there is no - // need to create a fake socket because Node.js native connection pooling - // will never be invoked. - if (this.maxSockets === Infinity && this.maxTotalSockets === Infinity) { - return null; - } - // All instances of `sockets` are expected TypeScript errors. The - // alternative is to add it as a private property of this class but that - // will break TypeScript subclassing. - if (!this.sockets[name]) { - // @ts-expect-error `sockets` is readonly in `@types/node` - this.sockets[name] = []; - } - const fakeSocket = new net.Socket({ writable: false }); - this.sockets[name].push(fakeSocket); - // @ts-expect-error `totalSocketCount` isn't defined in `@types/node` - this.totalSocketCount++; - return fakeSocket; - } - decrementSockets(name, socket) { - if (!this.sockets[name] || socket === null) { - return; - } - const sockets = this.sockets[name]; - const index = sockets.indexOf(socket); - if (index !== -1) { - sockets.splice(index, 1); - // @ts-expect-error `totalSocketCount` isn't defined in `@types/node` - this.totalSocketCount--; - if (sockets.length === 0) { - // @ts-expect-error `sockets` is readonly in `@types/node` - delete this.sockets[name]; - } - } - } - // In order to properly update the socket pool, we need to call `getName()` on - // the core `https.Agent` if it is a secureEndpoint. - getName(options) { - const secureEndpoint = this.isSecureEndpoint(options); - if (secureEndpoint) { - // @ts-expect-error `getName()` isn't defined in `@types/node` - return https_1.Agent.prototype.getName.call(this, options); - } - // @ts-expect-error `getName()` isn't defined in `@types/node` - return super.getName(options); - } - createSocket(req, options, cb) { - const connectOpts = { - ...options, - secureEndpoint: this.isSecureEndpoint(options), - }; - const name = this.getName(connectOpts); - const fakeSocket = this.incrementSockets(name); - Promise.resolve() - .then(() => this.connect(req, connectOpts)) - .then((socket) => { - this.decrementSockets(name, fakeSocket); - if (socket instanceof http.Agent) { - try { - // @ts-expect-error `addRequest()` isn't defined in `@types/node` - return socket.addRequest(req, connectOpts); - } - catch (err) { - return cb(err); - } - } - this[INTERNAL].currentSocket = socket; - // @ts-expect-error `createSocket()` isn't defined in `@types/node` - super.createSocket(req, options, cb); - }, (err) => { - this.decrementSockets(name, fakeSocket); - cb(err); - }); - } - createConnection() { - const socket = this[INTERNAL].currentSocket; - this[INTERNAL].currentSocket = undefined; - if (!socket) { - throw new Error('No socket was returned in the `connect()` function'); - } - return socket; - } - get defaultPort() { - return (this[INTERNAL].defaultPort ?? - (this.protocol === 'https:' ? 443 : 80)); - } - set defaultPort(v) { - if (this[INTERNAL]) { - this[INTERNAL].defaultPort = v; - } - } - get protocol() { - return (this[INTERNAL].protocol ?? - (this.isSecureEndpoint() ? 'https:' : 'http:')); - } - set protocol(v) { - if (this[INTERNAL]) { - this[INTERNAL].protocol = v; - } - } -} -exports.Agent = Agent; -//# sourceMappingURL=index.js.map - -/***/ }), - -/***/ 9380: -/***/ ((module) => { - - -module.exports = balanced; -function balanced(a, b, str) { - if (a instanceof RegExp) a = maybeMatch(a, str); - if (b instanceof RegExp) b = maybeMatch(b, str); - - var r = range(a, b, str); - - return r && { - start: r[0], - end: r[1], - pre: str.slice(0, r[0]), - body: str.slice(r[0] + a.length, r[1]), - post: str.slice(r[1] + b.length) - }; -} - -function maybeMatch(reg, str) { - var m = str.match(reg); - return m ? m[0] : null; -} - -balanced.range = range; -function range(a, b, str) { - var begs, beg, left, right, result; - var ai = str.indexOf(a); - var bi = str.indexOf(b, ai + 1); - var i = ai; - - if (ai >= 0 && bi > 0) { - if(a===b) { - return [ai, bi]; - } - begs = []; - left = str.length; - - while (i >= 0 && !result) { - if (i == ai) { - begs.push(i); - ai = str.indexOf(a, i + 1); - } else if (begs.length == 1) { - result = [ begs.pop(), bi ]; - } else { - beg = begs.pop(); - if (beg < left) { - left = beg; - right = bi; - } - - bi = str.indexOf(b, i + 1); - } - - i = ai < bi && ai >= 0 ? ai : bi; - } - - if (begs.length) { - result = [ left, right ]; - } - } - - return result; -} - - -/***/ }), - -/***/ 4691: -/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { - -var concatMap = __nccwpck_require__(7087); -var balanced = __nccwpck_require__(9380); - -module.exports = expandTop; - -var escSlash = '\0SLASH'+Math.random()+'\0'; -var escOpen = '\0OPEN'+Math.random()+'\0'; -var escClose = '\0CLOSE'+Math.random()+'\0'; -var escComma = '\0COMMA'+Math.random()+'\0'; -var escPeriod = '\0PERIOD'+Math.random()+'\0'; - -function numeric(str) { - return parseInt(str, 10) == str - ? parseInt(str, 10) - : str.charCodeAt(0); -} - -function escapeBraces(str) { - return str.split('\\\\').join(escSlash) - .split('\\{').join(escOpen) - .split('\\}').join(escClose) - .split('\\,').join(escComma) - .split('\\.').join(escPeriod); -} - -function unescapeBraces(str) { - return str.split(escSlash).join('\\') - .split(escOpen).join('{') - .split(escClose).join('}') - .split(escComma).join(',') - .split(escPeriod).join('.'); -} - - -// Basically just str.split(","), but handling cases -// where we have nested braced sections, which should be -// treated as individual members, like {a,{b,c},d} -function parseCommaParts(str) { - if (!str) - return ['']; - - var parts = []; - var m = balanced('{', '}', str); - - if (!m) - return str.split(','); - - var pre = m.pre; - var body = m.body; - var post = m.post; - var p = pre.split(','); - - p[p.length-1] += '{' + body + '}'; - var postParts = parseCommaParts(post); - if (post.length) { - p[p.length-1] += postParts.shift(); - p.push.apply(p, postParts); - } - - parts.push.apply(parts, p); - - return parts; -} - -function expandTop(str) { - if (!str) - return []; - - // I don't know why Bash 4.3 does this, but it does. - // Anything starting with {} will have the first two bytes preserved - // but *only* at the top level, so {},a}b will not expand to anything, - // but a{},b}c will be expanded to [a}c,abc]. - // One could argue that this is a bug in Bash, but since the goal of - // this module is to match Bash's rules, we escape a leading {} - if (str.substr(0, 2) === '{}') { - str = '\\{\\}' + str.substr(2); - } - - return expand(escapeBraces(str), true).map(unescapeBraces); -} - -function identity(e) { - return e; -} - -function embrace(str) { - return '{' + str + '}'; -} -function isPadded(el) { - return /^-?0\d/.test(el); -} - -function lte(i, y) { - return i <= y; -} -function gte(i, y) { - return i >= y; -} - -function expand(str, isTop) { - var expansions = []; - - var m = balanced('{', '}', str); - if (!m || /\$$/.test(m.pre)) return [str]; - - var isNumericSequence = /^-?\d+\.\.-?\d+(?:\.\.-?\d+)?$/.test(m.body); - var isAlphaSequence = /^[a-zA-Z]\.\.[a-zA-Z](?:\.\.-?\d+)?$/.test(m.body); - var isSequence = isNumericSequence || isAlphaSequence; - var isOptions = m.body.indexOf(',') >= 0; - if (!isSequence && !isOptions) { - // {a},b} - if (m.post.match(/,(?!,).*\}/)) { - str = m.pre + '{' + m.body + escClose + m.post; - return expand(str); - } - return [str]; - } - - var n; - if (isSequence) { - n = m.body.split(/\.\./); - } else { - n = parseCommaParts(m.body); - if (n.length === 1) { - // x{{a,b}}y ==> x{a}y x{b}y - n = expand(n[0], false).map(embrace); - if (n.length === 1) { - var post = m.post.length - ? expand(m.post, false) - : ['']; - return post.map(function(p) { - return m.pre + n[0] + p; - }); - } - } - } - - // at this point, n is the parts, and we know it's not a comma set - // with a single entry. - - // no need to expand pre, since it is guaranteed to be free of brace-sets - var pre = m.pre; - var post = m.post.length - ? expand(m.post, false) - : ['']; - - var N; - - if (isSequence) { - var x = numeric(n[0]); - var y = numeric(n[1]); - var width = Math.max(n[0].length, n[1].length) - var incr = n.length == 3 - ? Math.max(Math.abs(numeric(n[2])), 1) - : 1; - var test = lte; - var reverse = y < x; - if (reverse) { - incr *= -1; - test = gte; - } - var pad = n.some(isPadded); - - N = []; - - for (var i = x; test(i, y); i += incr) { - var c; - if (isAlphaSequence) { - c = String.fromCharCode(i); - if (c === '\\') - c = ''; - } else { - c = String(i); - if (pad) { - var need = width - c.length; - if (need > 0) { - var z = new Array(need + 1).join('0'); - if (i < 0) - c = '-' + z + c.slice(1); - else - c = z + c; - } - } - } - N.push(c); - } - } else { - N = concatMap(n, function(el) { return expand(el, false) }); - } - - for (var j = 0; j < N.length; j++) { - for (var k = 0; k < post.length; k++) { - var expansion = pre + N[j] + post[k]; - if (!isTop || isSequence || expansion) - expansions.push(expansion); - } - } - - return expansions; -} - - -/***/ }), - -/***/ 7087: -/***/ ((module) => { - -module.exports = function (xs, fn) { - var res = []; - for (var i = 0; i < xs.length; i++) { - var x = fn(xs[i], i); - if (isArray(x)) res.push.apply(res, x); - else res.push(x); - } - return res; -}; - -var isArray = Array.isArray || function (xs) { - return Object.prototype.toString.call(xs) === '[object Array]'; -}; - - -/***/ }), - -/***/ 6110: -/***/ ((module, exports, __nccwpck_require__) => { - -/* eslint-env browser */ - -/** - * This is the web browser implementation of `debug()`. - */ - -exports.formatArgs = formatArgs; -exports.save = save; -exports.load = load; -exports.useColors = useColors; -exports.storage = localstorage(); -exports.destroy = (() => { - let warned = false; - - return () => { - if (!warned) { - warned = true; - console.warn('Instance method `debug.destroy()` is deprecated and no longer does anything. It will be removed in the next major version of `debug`.'); - } - }; -})(); - -/** - * Colors. - */ - -exports.colors = [ - '#0000CC', - '#0000FF', - '#0033CC', - '#0033FF', - '#0066CC', - '#0066FF', - '#0099CC', - '#0099FF', - '#00CC00', - '#00CC33', - '#00CC66', - '#00CC99', - '#00CCCC', - '#00CCFF', - '#3300CC', - '#3300FF', - '#3333CC', - '#3333FF', - '#3366CC', - '#3366FF', - '#3399CC', - '#3399FF', - '#33CC00', - '#33CC33', - '#33CC66', - '#33CC99', - '#33CCCC', - '#33CCFF', - '#6600CC', - '#6600FF', - '#6633CC', - '#6633FF', - '#66CC00', - '#66CC33', - '#9900CC', - '#9900FF', - '#9933CC', - '#9933FF', - '#99CC00', - '#99CC33', - '#CC0000', - '#CC0033', - '#CC0066', - '#CC0099', - '#CC00CC', - '#CC00FF', - '#CC3300', - '#CC3333', - '#CC3366', - '#CC3399', - '#CC33CC', - '#CC33FF', - '#CC6600', - '#CC6633', - '#CC9900', - '#CC9933', - '#CCCC00', - '#CCCC33', - '#FF0000', - '#FF0033', - '#FF0066', - '#FF0099', - '#FF00CC', - '#FF00FF', - '#FF3300', - '#FF3333', - '#FF3366', - '#FF3399', - '#FF33CC', - '#FF33FF', - '#FF6600', - '#FF6633', - '#FF9900', - '#FF9933', - '#FFCC00', - '#FFCC33' -]; - -/** - * Currently only WebKit-based Web Inspectors, Firefox >= v31, - * and the Firebug extension (any Firefox version) are known - * to support "%c" CSS customizations. - * - * TODO: add a `localStorage` variable to explicitly enable/disable colors - */ - -// eslint-disable-next-line complexity -function useColors() { - // NB: In an Electron preload script, document will be defined but not fully - // initialized. Since we know we're in Chrome, we'll just detect this case - // explicitly - if (typeof window !== 'undefined' && window.process && (window.process.type === 'renderer' || window.process.__nwjs)) { - return true; - } - - // Internet Explorer and Edge do not support colors. - if (typeof navigator !== 'undefined' && navigator.userAgent && navigator.userAgent.toLowerCase().match(/(edge|trident)\/(\d+)/)) { - return false; - } - - let m; - - // Is webkit? http://stackoverflow.com/a/16459606/376773 - // document is undefined in react-native: https://github.com/facebook/react-native/pull/1632 - // eslint-disable-next-line no-return-assign - return (typeof document !== 'undefined' && document.documentElement && document.documentElement.style && document.documentElement.style.WebkitAppearance) || - // Is firebug? http://stackoverflow.com/a/398120/376773 - (typeof window !== 'undefined' && window.console && (window.console.firebug || (window.console.exception && window.console.table))) || - // Is firefox >= v31? - // https://developer.mozilla.org/en-US/docs/Tools/Web_Console#Styling_messages - (typeof navigator !== 'undefined' && navigator.userAgent && (m = navigator.userAgent.toLowerCase().match(/firefox\/(\d+)/)) && parseInt(m[1], 10) >= 31) || - // Double check webkit in userAgent just in case we are in a worker - (typeof navigator !== 'undefined' && navigator.userAgent && navigator.userAgent.toLowerCase().match(/applewebkit\/(\d+)/)); -} - -/** - * Colorize log arguments if enabled. - * - * @api public - */ - -function formatArgs(args) { - args[0] = (this.useColors ? '%c' : '') + - this.namespace + - (this.useColors ? ' %c' : ' ') + - args[0] + - (this.useColors ? '%c ' : ' ') + - '+' + module.exports.humanize(this.diff); - - if (!this.useColors) { - return; - } - - const c = 'color: ' + this.color; - args.splice(1, 0, c, 'color: inherit'); - - // The final "%c" is somewhat tricky, because there could be other - // arguments passed either before or after the %c, so we need to - // figure out the correct index to insert the CSS into - let index = 0; - let lastC = 0; - args[0].replace(/%[a-zA-Z%]/g, match => { - if (match === '%%') { - return; - } - index++; - if (match === '%c') { - // We only are interested in the *last* %c - // (the user may have provided their own) - lastC = index; - } - }); - - args.splice(lastC, 0, c); -} - -/** - * Invokes `console.debug()` when available. - * No-op when `console.debug` is not a "function". - * If `console.debug` is not available, falls back - * to `console.log`. - * - * @api public - */ -exports.log = console.debug || console.log || (() => {}); - -/** - * Save `namespaces`. - * - * @param {String} namespaces - * @api private - */ -function save(namespaces) { - try { - if (namespaces) { - exports.storage.setItem('debug', namespaces); - } else { - exports.storage.removeItem('debug'); - } - } catch (error) { - // Swallow - // XXX (@Qix-) should we be logging these? - } -} - -/** - * Load `namespaces`. - * - * @return {String} returns the previously persisted debug modes - * @api private - */ -function load() { - let r; - try { - r = exports.storage.getItem('debug') || exports.storage.getItem('DEBUG') ; - } catch (error) { - // Swallow - // XXX (@Qix-) should we be logging these? - } - - // If debug isn't set in LS, and we're in Electron, try to load $DEBUG - if (!r && typeof process !== 'undefined' && 'env' in process) { - r = process.env.DEBUG; - } - - return r; -} - -/** - * Localstorage attempts to return the localstorage. - * - * This is necessary because safari throws - * when a user disables cookies/localstorage - * and you attempt to access it. - * - * @return {LocalStorage} - * @api private - */ - -function localstorage() { - try { - // TVMLKit (Apple TV JS Runtime) does not have a window object, just localStorage in the global context - // The Browser also has localStorage in the global context. - return localStorage; - } catch (error) { - // Swallow - // XXX (@Qix-) should we be logging these? - } -} - -module.exports = __nccwpck_require__(897)(exports); - -const {formatters} = module.exports; - -/** - * Map %j to `JSON.stringify()`, since no Web Inspectors do that by default. - */ - -formatters.j = function (v) { - try { - return JSON.stringify(v); - } catch (error) { - return '[UnexpectedJSONParseError]: ' + error.message; - } -}; - - -/***/ }), - -/***/ 897: -/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { - - -/** - * This is the common logic for both the Node.js and web browser - * implementations of `debug()`. - */ - -function setup(env) { - createDebug.debug = createDebug; - createDebug.default = createDebug; - createDebug.coerce = coerce; - createDebug.disable = disable; - createDebug.enable = enable; - createDebug.enabled = enabled; - createDebug.humanize = __nccwpck_require__(744); - createDebug.destroy = destroy; - - Object.keys(env).forEach(key => { - createDebug[key] = env[key]; - }); - - /** - * The currently active debug mode names, and names to skip. - */ - - createDebug.names = []; - createDebug.skips = []; - - /** - * Map of special "%n" handling functions, for the debug "format" argument. - * - * Valid key names are a single, lower or upper-case letter, i.e. "n" and "N". - */ - createDebug.formatters = {}; - - /** - * Selects a color for a debug namespace - * @param {String} namespace The namespace string for the debug instance to be colored - * @return {Number|String} An ANSI color code for the given namespace - * @api private - */ - function selectColor(namespace) { - let hash = 0; - - for (let i = 0; i < namespace.length; i++) { - hash = ((hash << 5) - hash) + namespace.charCodeAt(i); - hash |= 0; // Convert to 32bit integer - } - - return createDebug.colors[Math.abs(hash) % createDebug.colors.length]; - } - createDebug.selectColor = selectColor; - - /** - * Create a debugger with the given `namespace`. - * - * @param {String} namespace - * @return {Function} - * @api public - */ - function createDebug(namespace) { - let prevTime; - let enableOverride = null; - let namespacesCache; - let enabledCache; - - function debug(...args) { - // Disabled? - if (!debug.enabled) { - return; - } - - const self = debug; - - // Set `diff` timestamp - const curr = Number(new Date()); - const ms = curr - (prevTime || curr); - self.diff = ms; - self.prev = prevTime; - self.curr = curr; - prevTime = curr; - - args[0] = createDebug.coerce(args[0]); - - if (typeof args[0] !== 'string') { - // Anything else let's inspect with %O - args.unshift('%O'); - } - - // Apply any `formatters` transformations - let index = 0; - args[0] = args[0].replace(/%([a-zA-Z%])/g, (match, format) => { - // If we encounter an escaped % then don't increase the array index - if (match === '%%') { - return '%'; - } - index++; - const formatter = createDebug.formatters[format]; - if (typeof formatter === 'function') { - const val = args[index]; - match = formatter.call(self, val); - - // Now we need to remove `args[index]` since it's inlined in the `format` - args.splice(index, 1); - index--; - } - return match; - }); - - // Apply env-specific formatting (colors, etc.) - createDebug.formatArgs.call(self, args); - - const logFn = self.log || createDebug.log; - logFn.apply(self, args); - } - - debug.namespace = namespace; - debug.useColors = createDebug.useColors(); - debug.color = createDebug.selectColor(namespace); - debug.extend = extend; - debug.destroy = createDebug.destroy; // XXX Temporary. Will be removed in the next major release. - - Object.defineProperty(debug, 'enabled', { - enumerable: true, - configurable: false, - get: () => { - if (enableOverride !== null) { - return enableOverride; - } - if (namespacesCache !== createDebug.namespaces) { - namespacesCache = createDebug.namespaces; - enabledCache = createDebug.enabled(namespace); - } - - return enabledCache; - }, - set: v => { - enableOverride = v; - } - }); - - // Env-specific initialization logic for debug instances - if (typeof createDebug.init === 'function') { - createDebug.init(debug); - } - - return debug; - } - - function extend(namespace, delimiter) { - const newDebug = createDebug(this.namespace + (typeof delimiter === 'undefined' ? ':' : delimiter) + namespace); - newDebug.log = this.log; - return newDebug; - } - - /** - * Enables a debug mode by namespaces. This can include modes - * separated by a colon and wildcards. - * - * @param {String} namespaces - * @api public - */ - function enable(namespaces) { - createDebug.save(namespaces); - createDebug.namespaces = namespaces; - - createDebug.names = []; - createDebug.skips = []; - - const split = (typeof namespaces === 'string' ? namespaces : '') - .trim() - .replace(/\s+/g, ',') - .split(',') - .filter(Boolean); - - for (const ns of split) { - if (ns[0] === '-') { - createDebug.skips.push(ns.slice(1)); - } else { - createDebug.names.push(ns); - } - } - } - - /** - * Checks if the given string matches a namespace template, honoring - * asterisks as wildcards. - * - * @param {String} search - * @param {String} template - * @return {Boolean} - */ - function matchesTemplate(search, template) { - let searchIndex = 0; - let templateIndex = 0; - let starIndex = -1; - let matchIndex = 0; - - while (searchIndex < search.length) { - if (templateIndex < template.length && (template[templateIndex] === search[searchIndex] || template[templateIndex] === '*')) { - // Match character or proceed with wildcard - if (template[templateIndex] === '*') { - starIndex = templateIndex; - matchIndex = searchIndex; - templateIndex++; // Skip the '*' - } else { - searchIndex++; - templateIndex++; - } - } else if (starIndex !== -1) { // eslint-disable-line no-negated-condition - // Backtrack to the last '*' and try to match more characters - templateIndex = starIndex + 1; - matchIndex++; - searchIndex = matchIndex; - } else { - return false; // No match - } - } - - // Handle trailing '*' in template - while (templateIndex < template.length && template[templateIndex] === '*') { - templateIndex++; - } - - return templateIndex === template.length; - } - - /** - * Disable debug output. - * - * @return {String} namespaces - * @api public - */ - function disable() { - const namespaces = [ - ...createDebug.names, - ...createDebug.skips.map(namespace => '-' + namespace) - ].join(','); - createDebug.enable(''); - return namespaces; - } - - /** - * Returns true if the given mode name is enabled, false otherwise. - * - * @param {String} name - * @return {Boolean} - * @api public - */ - function enabled(name) { - for (const skip of createDebug.skips) { - if (matchesTemplate(name, skip)) { - return false; - } - } - - for (const ns of createDebug.names) { - if (matchesTemplate(name, ns)) { - return true; - } - } - - return false; - } - - /** - * Coerce `val`. - * - * @param {Mixed} val - * @return {Mixed} - * @api private - */ - function coerce(val) { - if (val instanceof Error) { - return val.stack || val.message; - } - return val; - } - - /** - * XXX DO NOT USE. This is a temporary stub function. - * XXX It WILL be removed in the next major release. - */ - function destroy() { - console.warn('Instance method `debug.destroy()` is deprecated and no longer does anything. It will be removed in the next major version of `debug`.'); - } - - createDebug.enable(createDebug.load()); - - return createDebug; -} - -module.exports = setup; - - -/***/ }), - -/***/ 2830: -/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { - -/** - * Detect Electron renderer / nwjs process, which is node, but we should - * treat as a browser. - */ - -if (typeof process === 'undefined' || process.type === 'renderer' || process.browser === true || process.__nwjs) { - module.exports = __nccwpck_require__(6110); -} else { - module.exports = __nccwpck_require__(5108); -} - - -/***/ }), - -/***/ 5108: -/***/ ((module, exports, __nccwpck_require__) => { - -/** - * Module dependencies. - */ - -const tty = __nccwpck_require__(2018); -const util = __nccwpck_require__(9023); - -/** - * This is the Node.js implementation of `debug()`. - */ - -exports.init = init; -exports.log = log; -exports.formatArgs = formatArgs; -exports.save = save; -exports.load = load; -exports.useColors = useColors; -exports.destroy = util.deprecate( - () => {}, - 'Instance method `debug.destroy()` is deprecated and no longer does anything. It will be removed in the next major version of `debug`.' -); - -/** - * Colors. - */ - -exports.colors = [6, 2, 3, 4, 5, 1]; - -try { - // Optional dependency (as in, doesn't need to be installed, NOT like optionalDependencies in package.json) - // eslint-disable-next-line import/no-extraneous-dependencies - const supportsColor = __nccwpck_require__(1450); - - if (supportsColor && (supportsColor.stderr || supportsColor).level >= 2) { - exports.colors = [ - 20, - 21, - 26, - 27, - 32, - 33, - 38, - 39, - 40, - 41, - 42, - 43, - 44, - 45, - 56, - 57, - 62, - 63, - 68, - 69, - 74, - 75, - 76, - 77, - 78, - 79, - 80, - 81, - 92, - 93, - 98, - 99, - 112, - 113, - 128, - 129, - 134, - 135, - 148, - 149, - 160, - 161, - 162, - 163, - 164, - 165, - 166, - 167, - 168, - 169, - 170, - 171, - 172, - 173, - 178, - 179, - 184, - 185, - 196, - 197, - 198, - 199, - 200, - 201, - 202, - 203, - 204, - 205, - 206, - 207, - 208, - 209, - 214, - 215, - 220, - 221 - ]; - } -} catch (error) { - // Swallow - we only care if `supports-color` is available; it doesn't have to be. -} - -/** - * Build up the default `inspectOpts` object from the environment variables. - * - * $ DEBUG_COLORS=no DEBUG_DEPTH=10 DEBUG_SHOW_HIDDEN=enabled node script.js - */ - -exports.inspectOpts = Object.keys(process.env).filter(key => { - return /^debug_/i.test(key); -}).reduce((obj, key) => { - // Camel-case - const prop = key - .substring(6) - .toLowerCase() - .replace(/_([a-z])/g, (_, k) => { - return k.toUpperCase(); - }); + scalar(json, type, longType, fieldName) { + let e; + try { + switch (type) { + // float, double: JSON value will be a number or one of the special string values "NaN", "Infinity", and "-Infinity". + // Either numbers or strings are accepted. Exponent notation is also accepted. + case reflection_info_1.ScalarType.DOUBLE: + case reflection_info_1.ScalarType.FLOAT: + if (json === null) + return .0; + if (json === "NaN") + return Number.NaN; + if (json === "Infinity") + return Number.POSITIVE_INFINITY; + if (json === "-Infinity") + return Number.NEGATIVE_INFINITY; + if (json === "") { + e = "empty string"; + break; + } + if (typeof json == "string" && json.trim().length !== json.length) { + e = "extra whitespace"; + break; + } + if (typeof json != "string" && typeof json != "number") { + break; + } + let float = Number(json); + if (Number.isNaN(float)) { + e = "not a number"; + break; + } + if (!Number.isFinite(float)) { + // infinity and -infinity are handled by string representation above, so this is an error + e = "too large or small"; + break; + } + if (type == reflection_info_1.ScalarType.FLOAT) + assert_1.assertFloat32(float); + return float; + // int32, fixed32, uint32: JSON value will be a decimal number. Either numbers or strings are accepted. + case reflection_info_1.ScalarType.INT32: + case reflection_info_1.ScalarType.FIXED32: + case reflection_info_1.ScalarType.SFIXED32: + case reflection_info_1.ScalarType.SINT32: + case reflection_info_1.ScalarType.UINT32: + if (json === null) + return 0; + let int32; + if (typeof json == "number") + int32 = json; + else if (json === "") + e = "empty string"; + else if (typeof json == "string") { + if (json.trim().length !== json.length) + e = "extra whitespace"; + else + int32 = Number(json); + } + if (int32 === undefined) + break; + if (type == reflection_info_1.ScalarType.UINT32) + assert_1.assertUInt32(int32); + else + assert_1.assertInt32(int32); + return int32; + // int64, fixed64, uint64: JSON value will be a decimal string. Either numbers or strings are accepted. + case reflection_info_1.ScalarType.INT64: + case reflection_info_1.ScalarType.SFIXED64: + case reflection_info_1.ScalarType.SINT64: + if (json === null) + return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.ZERO, longType); + if (typeof json != "number" && typeof json != "string") + break; + return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.from(json), longType); + case reflection_info_1.ScalarType.FIXED64: + case reflection_info_1.ScalarType.UINT64: + if (json === null) + return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.ZERO, longType); + if (typeof json != "number" && typeof json != "string") + break; + return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.from(json), longType); + // bool: + case reflection_info_1.ScalarType.BOOL: + if (json === null) + return false; + if (typeof json !== "boolean") + break; + return json; + // string: + case reflection_info_1.ScalarType.STRING: + if (json === null) + return ""; + if (typeof json !== "string") { + e = "extra whitespace"; + break; + } + try { + encodeURIComponent(json); + } + catch (e) { + e = "invalid UTF8"; + break; + } + return json; + // bytes: JSON value will be the data encoded as a string using standard base64 encoding with paddings. + // Either standard or URL-safe base64 encoding with/without paddings are accepted. + case reflection_info_1.ScalarType.BYTES: + if (json === null || json === "") + return new Uint8Array(0); + if (typeof json !== 'string') + break; + return base64_1.base64decode(json); + } + } + catch (error) { + e = error.message; + } + this.assert(false, fieldName + (e ? " - " + e : ""), json); + } +} +exports.ReflectionJsonReader = ReflectionJsonReader; - // Coerce string value into JS value - let val = process.env[key]; - if (/^(yes|on|true|enabled)$/i.test(val)) { - val = true; - } else if (/^(no|off|false|disabled)$/i.test(val)) { - val = false; - } else if (val === 'null') { - val = null; - } else { - val = Number(val); - } - obj[prop] = val; - return obj; -}, {}); +/***/ }), -/** - * Is stdout a TTY? Colored output is enabled when `true`. - */ +/***/ 1094: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { -function useColors() { - return 'colors' in exports.inspectOpts ? - Boolean(exports.inspectOpts.colors) : - tty.isatty(process.stderr.fd); -} +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.ReflectionJsonWriter = void 0; +const base64_1 = __nccwpck_require__(6335); +const pb_long_1 = __nccwpck_require__(1753); +const reflection_info_1 = __nccwpck_require__(7910); +const assert_1 = __nccwpck_require__(8602); /** - * Adds ANSI color escape codes if enabled. + * Writes proto3 messages in canonical JSON format using reflection + * information. * - * @api public + * https://developers.google.com/protocol-buffers/docs/proto3#json */ - -function formatArgs(args) { - const {namespace: name, useColors} = this; - - if (useColors) { - const c = this.color; - const colorCode = '\u001B[3' + (c < 8 ? c : '8;5;' + c); - const prefix = ` ${colorCode};1m${name} \u001B[0m`; - - args[0] = prefix + args[0].split('\n').join('\n' + prefix); - args.push(colorCode + 'm+' + module.exports.humanize(this.diff) + '\u001B[0m'); - } else { - args[0] = getDate() + name + ' ' + args[0]; - } -} - -function getDate() { - if (exports.inspectOpts.hideDate) { - return ''; - } - return new Date().toISOString() + ' '; +class ReflectionJsonWriter { + constructor(info) { + var _a; + this.fields = (_a = info.fields) !== null && _a !== void 0 ? _a : []; + } + /** + * Converts the message to a JSON object, based on the field descriptors. + */ + write(message, options) { + const json = {}, source = message; + for (const field of this.fields) { + // field is not part of a oneof, simply write as is + if (!field.oneof) { + let jsonValue = this.field(field, source[field.localName], options); + if (jsonValue !== undefined) + json[options.useProtoFieldName ? field.name : field.jsonName] = jsonValue; + continue; + } + // field is part of a oneof + const group = source[field.oneof]; + if (group.oneofKind !== field.localName) + continue; // not selected, skip + const opt = field.kind == 'scalar' || field.kind == 'enum' + ? Object.assign(Object.assign({}, options), { emitDefaultValues: true }) : options; + let jsonValue = this.field(field, group[field.localName], opt); + assert_1.assert(jsonValue !== undefined); + json[options.useProtoFieldName ? field.name : field.jsonName] = jsonValue; + } + return json; + } + field(field, value, options) { + let jsonValue = undefined; + if (field.kind == 'map') { + assert_1.assert(typeof value == "object" && value !== null); + const jsonObj = {}; + switch (field.V.kind) { + case "scalar": + for (const [entryKey, entryValue] of Object.entries(value)) { + const val = this.scalar(field.V.T, entryValue, field.name, false, true); + assert_1.assert(val !== undefined); + jsonObj[entryKey.toString()] = val; // JSON standard allows only (double quoted) string as property key + } + break; + case "message": + const messageType = field.V.T(); + for (const [entryKey, entryValue] of Object.entries(value)) { + const val = this.message(messageType, entryValue, field.name, options); + assert_1.assert(val !== undefined); + jsonObj[entryKey.toString()] = val; // JSON standard allows only (double quoted) string as property key + } + break; + case "enum": + const enumInfo = field.V.T(); + for (const [entryKey, entryValue] of Object.entries(value)) { + assert_1.assert(entryValue === undefined || typeof entryValue == 'number'); + const val = this.enum(enumInfo, entryValue, field.name, false, true, options.enumAsInteger); + assert_1.assert(val !== undefined); + jsonObj[entryKey.toString()] = val; // JSON standard allows only (double quoted) string as property key + } + break; + } + if (options.emitDefaultValues || Object.keys(jsonObj).length > 0) + jsonValue = jsonObj; + } + else if (field.repeat) { + assert_1.assert(Array.isArray(value)); + const jsonArr = []; + switch (field.kind) { + case "scalar": + for (let i = 0; i < value.length; i++) { + const val = this.scalar(field.T, value[i], field.name, field.opt, true); + assert_1.assert(val !== undefined); + jsonArr.push(val); + } + break; + case "enum": + const enumInfo = field.T(); + for (let i = 0; i < value.length; i++) { + assert_1.assert(value[i] === undefined || typeof value[i] == 'number'); + const val = this.enum(enumInfo, value[i], field.name, field.opt, true, options.enumAsInteger); + assert_1.assert(val !== undefined); + jsonArr.push(val); + } + break; + case "message": + const messageType = field.T(); + for (let i = 0; i < value.length; i++) { + const val = this.message(messageType, value[i], field.name, options); + assert_1.assert(val !== undefined); + jsonArr.push(val); + } + break; + } + // add converted array to json output + if (options.emitDefaultValues || jsonArr.length > 0 || options.emitDefaultValues) + jsonValue = jsonArr; + } + else { + switch (field.kind) { + case "scalar": + jsonValue = this.scalar(field.T, value, field.name, field.opt, options.emitDefaultValues); + break; + case "enum": + jsonValue = this.enum(field.T(), value, field.name, field.opt, options.emitDefaultValues, options.enumAsInteger); + break; + case "message": + jsonValue = this.message(field.T(), value, field.name, options); + break; + } + } + return jsonValue; + } + /** + * Returns `null` as the default for google.protobuf.NullValue. + */ + enum(type, value, fieldName, optional, emitDefaultValues, enumAsInteger) { + if (type[0] == 'google.protobuf.NullValue') + return !emitDefaultValues && !optional ? undefined : null; + if (value === undefined) { + assert_1.assert(optional); + return undefined; + } + if (value === 0 && !emitDefaultValues && !optional) + // we require 0 to be default value for all enums + return undefined; + assert_1.assert(typeof value == 'number'); + assert_1.assert(Number.isInteger(value)); + if (enumAsInteger || !type[1].hasOwnProperty(value)) + // if we don't now the enum value, just return the number + return value; + if (type[2]) + // restore the dropped prefix + return type[2] + type[1][value]; + return type[1][value]; + } + message(type, value, fieldName, options) { + if (value === undefined) + return options.emitDefaultValues ? null : undefined; + return type.internalJsonWrite(value, options); + } + scalar(type, value, fieldName, optional, emitDefaultValues) { + if (value === undefined) { + assert_1.assert(optional); + return undefined; + } + const ed = emitDefaultValues || optional; + // noinspection FallThroughInSwitchStatementJS + switch (type) { + // int32, fixed32, uint32: JSON value will be a decimal number. Either numbers or strings are accepted. + case reflection_info_1.ScalarType.INT32: + case reflection_info_1.ScalarType.SFIXED32: + case reflection_info_1.ScalarType.SINT32: + if (value === 0) + return ed ? 0 : undefined; + assert_1.assertInt32(value); + return value; + case reflection_info_1.ScalarType.FIXED32: + case reflection_info_1.ScalarType.UINT32: + if (value === 0) + return ed ? 0 : undefined; + assert_1.assertUInt32(value); + return value; + // float, double: JSON value will be a number or one of the special string values "NaN", "Infinity", and "-Infinity". + // Either numbers or strings are accepted. Exponent notation is also accepted. + case reflection_info_1.ScalarType.FLOAT: + assert_1.assertFloat32(value); + case reflection_info_1.ScalarType.DOUBLE: + if (value === 0) + return ed ? 0 : undefined; + assert_1.assert(typeof value == 'number'); + if (Number.isNaN(value)) + return 'NaN'; + if (value === Number.POSITIVE_INFINITY) + return 'Infinity'; + if (value === Number.NEGATIVE_INFINITY) + return '-Infinity'; + return value; + // string: + case reflection_info_1.ScalarType.STRING: + if (value === "") + return ed ? '' : undefined; + assert_1.assert(typeof value == 'string'); + return value; + // bool: + case reflection_info_1.ScalarType.BOOL: + if (value === false) + return ed ? false : undefined; + assert_1.assert(typeof value == 'boolean'); + return value; + // JSON value will be a decimal string. Either numbers or strings are accepted. + case reflection_info_1.ScalarType.UINT64: + case reflection_info_1.ScalarType.FIXED64: + assert_1.assert(typeof value == 'number' || typeof value == 'string' || typeof value == 'bigint'); + let ulong = pb_long_1.PbULong.from(value); + if (ulong.isZero() && !ed) + return undefined; + return ulong.toString(); + // JSON value will be a decimal string. Either numbers or strings are accepted. + case reflection_info_1.ScalarType.INT64: + case reflection_info_1.ScalarType.SFIXED64: + case reflection_info_1.ScalarType.SINT64: + assert_1.assert(typeof value == 'number' || typeof value == 'string' || typeof value == 'bigint'); + let long = pb_long_1.PbLong.from(value); + if (long.isZero() && !ed) + return undefined; + return long.toString(); + // bytes: JSON value will be the data encoded as a string using standard base64 encoding with paddings. + // Either standard or URL-safe base64 encoding with/without paddings are accepted. + case reflection_info_1.ScalarType.BYTES: + assert_1.assert(value instanceof Uint8Array); + if (!value.byteLength) + return ed ? "" : undefined; + return base64_1.base64encode(value); + } + } } +exports.ReflectionJsonWriter = ReflectionJsonWriter; -/** - * Invokes `util.formatWithOptions()` with the specified arguments and writes to stderr. - */ - -function log(...args) { - return process.stderr.write(util.formatWithOptions(exports.inspectOpts, ...args) + '\n'); -} -/** - * Save `namespaces`. - * - * @param {String} namespaces - * @api private - */ -function save(namespaces) { - if (namespaces) { - process.env.DEBUG = namespaces; - } else { - // If you set a process.env field to null or undefined, it gets cast to the - // string 'null' or 'undefined'. Just delete instead. - delete process.env.DEBUG; - } -} +/***/ }), -/** - * Load `namespaces`. - * - * @return {String} returns the previously persisted debug modes - * @api private - */ +/***/ 3402: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { -function load() { - return process.env.DEBUG; -} +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.reflectionLongConvert = void 0; +const reflection_info_1 = __nccwpck_require__(7910); /** - * Init logic for `debug` instances. + * Utility method to convert a PbLong or PbUlong to a JavaScript + * representation during runtime. * - * Create a new `inspectOpts` object in case `useColors` is set - * differently for a particular `debug` instance. + * Works with generated field information, `undefined` is equivalent + * to `STRING`. */ - -function init(debug) { - debug.inspectOpts = {}; - - const keys = Object.keys(exports.inspectOpts); - for (let i = 0; i < keys.length; i++) { - debug.inspectOpts[keys[i]] = exports.inspectOpts[keys[i]]; - } +function reflectionLongConvert(long, type) { + switch (type) { + case reflection_info_1.LongType.BIGINT: + return long.toBigInt(); + case reflection_info_1.LongType.NUMBER: + return long.toNumber(); + default: + // case undefined: + // case LongType.STRING: + return long.toString(); + } } +exports.reflectionLongConvert = reflectionLongConvert; -module.exports = __nccwpck_require__(897)(exports); -const {formatters} = module.exports; +/***/ }), -/** - * Map %o to `util.inspect()`, all on a single line. - */ +/***/ 8044: +/***/ ((__unused_webpack_module, exports) => { -formatters.o = function (v) { - this.inspectOpts.colors = this.useColors; - return util.inspect(v, this.inspectOpts) - .split('\n') - .map(str => str.trim()) - .join(' '); -}; +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.reflectionMergePartial = void 0; /** - * Map %O to `util.inspect()`, allowing multiple lines if needed. + * Copy partial data into the target message. + * + * If a singular scalar or enum field is present in the source, it + * replaces the field in the target. + * + * If a singular message field is present in the source, it is merged + * with the target field by calling mergePartial() of the responsible + * message type. + * + * If a repeated field is present in the source, its values replace + * all values in the target array, removing extraneous values. + * Repeated message fields are copied, not merged. + * + * If a map field is present in the source, entries are added to the + * target map, replacing entries with the same key. Entries that only + * exist in the target remain. Entries with message values are copied, + * not merged. + * + * Note that this function differs from protobuf merge semantics, + * which appends repeated fields. */ - -formatters.O = function (v) { - this.inspectOpts.colors = this.useColors; - return util.inspect(v, this.inspectOpts); -}; +function reflectionMergePartial(info, target, source) { + let fieldValue, // the field value we are working with + input = source, output; // where we want our field value to go + for (let field of info.fields) { + let name = field.localName; + if (field.oneof) { + const group = input[field.oneof]; // this is the oneof`s group in the source + if ((group === null || group === void 0 ? void 0 : group.oneofKind) == undefined) { // the user is free to omit + continue; // we skip this field, and all other members too + } + fieldValue = group[name]; // our value comes from the the oneof group of the source + output = target[field.oneof]; // and our output is the oneof group of the target + output.oneofKind = group.oneofKind; // always update discriminator + if (fieldValue == undefined) { + delete output[name]; // remove any existing value + continue; // skip further work on field + } + } + else { + fieldValue = input[name]; // we are using the source directly + output = target; // we want our field value to go directly into the target + if (fieldValue == undefined) { + continue; // skip further work on field, existing value is used as is + } + } + if (field.repeat) + output[name].length = fieldValue.length; // resize target array to match source array + // now we just work with `fieldValue` and `output` to merge the value + switch (field.kind) { + case "scalar": + case "enum": + if (field.repeat) + for (let i = 0; i < fieldValue.length; i++) + output[name][i] = fieldValue[i]; // not a reference type + else + output[name] = fieldValue; // not a reference type + break; + case "message": + let T = field.T(); + if (field.repeat) + for (let i = 0; i < fieldValue.length; i++) + output[name][i] = T.create(fieldValue[i]); + else if (output[name] === undefined) + output[name] = T.create(fieldValue); // nothing to merge with + else + T.mergePartial(output[name], fieldValue); + break; + case "map": + // Map and repeated fields are simply overwritten, not appended or merged + switch (field.V.kind) { + case "scalar": + case "enum": + Object.assign(output[name], fieldValue); // elements are not reference types + break; + case "message": + let T = field.V.T(); + for (let k of Object.keys(fieldValue)) + output[name][k] = T.create(fieldValue[k]); + break; + } + break; + } + } +} +exports.reflectionMergePartial = reflectionMergePartial; /***/ }), -/***/ 3813: -/***/ ((module) => { - +/***/ 9526: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { -module.exports = (flag, argv = process.argv) => { - const prefix = flag.startsWith('-') ? '' : (flag.length === 1 ? '-' : '--'); - const position = argv.indexOf(prefix + flag); - const terminatorPosition = argv.indexOf('--'); - return position !== -1 && (terminatorPosition === -1 || position < terminatorPosition); -}; +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.reflectionScalarDefault = void 0; +const reflection_info_1 = __nccwpck_require__(7910); +const reflection_long_convert_1 = __nccwpck_require__(3402); +const pb_long_1 = __nccwpck_require__(1753); +/** + * Creates the default value for a scalar type. + */ +function reflectionScalarDefault(type, longType = reflection_info_1.LongType.STRING) { + switch (type) { + case reflection_info_1.ScalarType.BOOL: + return false; + case reflection_info_1.ScalarType.UINT64: + case reflection_info_1.ScalarType.FIXED64: + return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.ZERO, longType); + case reflection_info_1.ScalarType.INT64: + case reflection_info_1.ScalarType.SFIXED64: + case reflection_info_1.ScalarType.SINT64: + return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.ZERO, longType); + case reflection_info_1.ScalarType.DOUBLE: + case reflection_info_1.ScalarType.FLOAT: + return 0.0; + case reflection_info_1.ScalarType.BYTES: + return new Uint8Array(0); + case reflection_info_1.ScalarType.STRING: + return ""; + default: + // case ScalarType.INT32: + // case ScalarType.UINT32: + // case ScalarType.SINT32: + // case ScalarType.FIXED32: + // case ScalarType.SFIXED32: + return 0; + } +} +exports.reflectionScalarDefault = reflectionScalarDefault; /***/ }), -/***/ 1970: -/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { +/***/ 5167: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { -var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { - if (k2 === undefined) k2 = k; - var desc = Object.getOwnPropertyDescriptor(m, k); - if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { - desc = { enumerable: true, get: function() { return m[k]; } }; - } - Object.defineProperty(o, k2, desc); -}) : (function(o, m, k, k2) { - if (k2 === undefined) k2 = k; - o[k2] = m[k]; -})); -var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { - Object.defineProperty(o, "default", { enumerable: true, value: v }); -}) : function(o, v) { - o["default"] = v; -}); -var __importStar = (this && this.__importStar) || function (mod) { - if (mod && mod.__esModule) return mod; - var result = {}; - if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); - __setModuleDefault(result, mod); - return result; -}; -var __importDefault = (this && this.__importDefault) || function (mod) { - return (mod && mod.__esModule) ? mod : { "default": mod }; -}; Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.HttpProxyAgent = void 0; -const net = __importStar(__nccwpck_require__(9278)); -const tls = __importStar(__nccwpck_require__(4756)); -const debug_1 = __importDefault(__nccwpck_require__(2830)); -const events_1 = __nccwpck_require__(4434); -const agent_base_1 = __nccwpck_require__(8894); -const url_1 = __nccwpck_require__(7016); -const debug = (0, debug_1.default)('http-proxy-agent'); -/** - * The `HttpProxyAgent` implements an HTTP Agent subclass that connects - * to the specified "HTTP proxy server" in order to proxy HTTP requests. - */ -class HttpProxyAgent extends agent_base_1.Agent { - constructor(proxy, opts) { - super(opts); - this.proxy = typeof proxy === 'string' ? new url_1.URL(proxy) : proxy; - this.proxyHeaders = opts?.headers ?? {}; - debug('Creating new HttpProxyAgent instance: %o', this.proxy.href); - // Trim off the brackets from IPv6 addresses - const host = (this.proxy.hostname || this.proxy.host).replace(/^\[|\]$/g, ''); - const port = this.proxy.port - ? parseInt(this.proxy.port, 10) - : this.proxy.protocol === 'https:' - ? 443 - : 80; - this.connectOpts = { - ...(opts ? omit(opts, 'headers') : null), - host, - port, - }; +exports.ReflectionTypeCheck = void 0; +const reflection_info_1 = __nccwpck_require__(7910); +const oneof_1 = __nccwpck_require__(8063); +// noinspection JSMethodCanBeStatic +class ReflectionTypeCheck { + constructor(info) { + var _a; + this.fields = (_a = info.fields) !== null && _a !== void 0 ? _a : []; } - addRequest(req, opts) { - req._header = null; - this.setRequestProps(req, opts); - // @ts-expect-error `addRequest()` isn't defined in `@types/node` - super.addRequest(req, opts); + prepare() { + if (this.data) + return; + const req = [], known = [], oneofs = []; + for (let field of this.fields) { + if (field.oneof) { + if (!oneofs.includes(field.oneof)) { + oneofs.push(field.oneof); + req.push(field.oneof); + known.push(field.oneof); + } + } + else { + known.push(field.localName); + switch (field.kind) { + case "scalar": + case "enum": + if (!field.opt || field.repeat) + req.push(field.localName); + break; + case "message": + if (field.repeat) + req.push(field.localName); + break; + case "map": + req.push(field.localName); + break; + } + } + } + this.data = { req, known, oneofs: Object.values(oneofs) }; } - setRequestProps(req, opts) { - const { proxy } = this; - const protocol = opts.secureEndpoint ? 'https:' : 'http:'; - const hostname = req.getHeader('host') || 'localhost'; - const base = `${protocol}//${hostname}`; - const url = new url_1.URL(req.path, base); - if (opts.port !== 80) { - url.port = String(opts.port); + /** + * Is the argument a valid message as specified by the + * reflection information? + * + * Checks all field types recursively. The `depth` + * specifies how deep into the structure the check will be. + * + * With a depth of 0, only the presence of fields + * is checked. + * + * With a depth of 1 or more, the field types are checked. + * + * With a depth of 2 or more, the members of map, repeated + * and message fields are checked. + * + * Message fields will be checked recursively with depth - 1. + * + * The number of map entries / repeated values being checked + * is < depth. + */ + is(message, depth, allowExcessProperties = false) { + if (depth < 0) + return true; + if (message === null || message === undefined || typeof message != 'object') + return false; + this.prepare(); + let keys = Object.keys(message), data = this.data; + // if a required field is missing in arg, this cannot be a T + if (keys.length < data.req.length || data.req.some(n => !keys.includes(n))) + return false; + if (!allowExcessProperties) { + // if the arg contains a key we dont know, this is not a literal T + if (keys.some(k => !data.known.includes(k))) + return false; } - // Change the `http.ClientRequest` instance's "path" field - // to the absolute path of the URL that will be requested. - req.path = String(url); - // Inject the `Proxy-Authorization` header if necessary. - const headers = typeof this.proxyHeaders === 'function' - ? this.proxyHeaders() - : { ...this.proxyHeaders }; - if (proxy.username || proxy.password) { - const auth = `${decodeURIComponent(proxy.username)}:${decodeURIComponent(proxy.password)}`; - headers['Proxy-Authorization'] = `Basic ${Buffer.from(auth).toString('base64')}`; + // "With a depth of 0, only the presence and absence of fields is checked." + // "With a depth of 1 or more, the field types are checked." + if (depth < 1) { + return true; } - if (!headers['Proxy-Connection']) { - headers['Proxy-Connection'] = this.keepAlive - ? 'Keep-Alive' - : 'close'; + // check oneof group + for (const name of data.oneofs) { + const group = message[name]; + if (!oneof_1.isOneofGroup(group)) + return false; + if (group.oneofKind === undefined) + continue; + const field = this.fields.find(f => f.localName === group.oneofKind); + if (!field) + return false; // we found no field, but have a kind, something is wrong + if (!this.field(group[group.oneofKind], field, allowExcessProperties, depth)) + return false; } - for (const name of Object.keys(headers)) { - const value = headers[name]; - if (value) { - req.setHeader(name, value); - } + // check types + for (const field of this.fields) { + if (field.oneof !== undefined) + continue; + if (!this.field(message[field.localName], field, allowExcessProperties, depth)) + return false; } + return true; } - async connect(req, opts) { - req._header = null; - if (!req.path.includes('://')) { - this.setRequestProps(req, opts); + field(arg, field, allowExcessProperties, depth) { + let repeated = field.repeat; + switch (field.kind) { + case "scalar": + if (arg === undefined) + return field.opt; + if (repeated) + return this.scalars(arg, field.T, depth, field.L); + return this.scalar(arg, field.T, field.L); + case "enum": + if (arg === undefined) + return field.opt; + if (repeated) + return this.scalars(arg, reflection_info_1.ScalarType.INT32, depth); + return this.scalar(arg, reflection_info_1.ScalarType.INT32); + case "message": + if (arg === undefined) + return true; + if (repeated) + return this.messages(arg, field.T(), allowExcessProperties, depth); + return this.message(arg, field.T(), allowExcessProperties, depth); + case "map": + if (typeof arg != 'object' || arg === null) + return false; + if (depth < 2) + return true; + if (!this.mapKeys(arg, field.K, depth)) + return false; + switch (field.V.kind) { + case "scalar": + return this.scalars(Object.values(arg), field.V.T, depth, field.V.L); + case "enum": + return this.scalars(Object.values(arg), reflection_info_1.ScalarType.INT32, depth); + case "message": + return this.messages(Object.values(arg), field.V.T(), allowExcessProperties, depth); + } + break; } - // At this point, the http ClientRequest's internal `_header` field - // might have already been set. If this is the case then we'll need - // to re-generate the string since we just changed the `req.path`. - let first; - let endOfHeaders; - debug('Regenerating stored HTTP header string for request'); - req._implicitHeader(); - if (req.outputData && req.outputData.length > 0) { - debug('Patching connection write() output buffer with updated header'); - first = req.outputData[0].data; - endOfHeaders = first.indexOf('\r\n\r\n') + 4; - req.outputData[0].data = - req._header + first.substring(endOfHeaders); - debug('Output buffer: %o', req.outputData[0].data); + return true; + } + message(arg, type, allowExcessProperties, depth) { + if (allowExcessProperties) { + return type.isAssignable(arg, depth); } - // Create a socket connection to the proxy server. - let socket; - if (this.proxy.protocol === 'https:') { - debug('Creating `tls.Socket`: %o', this.connectOpts); - socket = tls.connect(this.connectOpts); + return type.is(arg, depth); + } + messages(arg, type, allowExcessProperties, depth) { + if (!Array.isArray(arg)) + return false; + if (depth < 2) + return true; + if (allowExcessProperties) { + for (let i = 0; i < arg.length && i < depth; i++) + if (!type.isAssignable(arg[i], depth - 1)) + return false; } else { - debug('Creating `net.Socket`: %o', this.connectOpts); - socket = net.connect(this.connectOpts); + for (let i = 0; i < arg.length && i < depth; i++) + if (!type.is(arg[i], depth - 1)) + return false; } - // Wait for the socket's `connect` event, so that this `callback()` - // function throws instead of the `http` request machinery. This is - // important for i.e. `PacProxyAgent` which determines a failed proxy - // connection via the `callback()` function throwing. - await (0, events_1.once)(socket, 'connect'); - return socket; + return true; } -} -HttpProxyAgent.protocols = ['http', 'https']; -exports.HttpProxyAgent = HttpProxyAgent; -function omit(obj, ...keys) { - const ret = {}; - let key; - for (key in obj) { - if (!keys.includes(key)) { - ret[key] = obj[key]; + scalar(arg, type, longType) { + let argType = typeof arg; + switch (type) { + case reflection_info_1.ScalarType.UINT64: + case reflection_info_1.ScalarType.FIXED64: + case reflection_info_1.ScalarType.INT64: + case reflection_info_1.ScalarType.SFIXED64: + case reflection_info_1.ScalarType.SINT64: + switch (longType) { + case reflection_info_1.LongType.BIGINT: + return argType == "bigint"; + case reflection_info_1.LongType.NUMBER: + return argType == "number" && !isNaN(arg); + default: + return argType == "string"; + } + case reflection_info_1.ScalarType.BOOL: + return argType == 'boolean'; + case reflection_info_1.ScalarType.STRING: + return argType == 'string'; + case reflection_info_1.ScalarType.BYTES: + return arg instanceof Uint8Array; + case reflection_info_1.ScalarType.DOUBLE: + case reflection_info_1.ScalarType.FLOAT: + return argType == 'number' && !isNaN(arg); + default: + // case ScalarType.UINT32: + // case ScalarType.FIXED32: + // case ScalarType.INT32: + // case ScalarType.SINT32: + // case ScalarType.SFIXED32: + return argType == 'number' && Number.isInteger(arg); + } + } + scalars(arg, type, depth, longType) { + if (!Array.isArray(arg)) + return false; + if (depth < 2) + return true; + if (Array.isArray(arg)) + for (let i = 0; i < arg.length && i < depth; i++) + if (!this.scalar(arg[i], type, longType)) + return false; + return true; + } + mapKeys(map, type, depth) { + let keys = Object.keys(map); + switch (type) { + case reflection_info_1.ScalarType.INT32: + case reflection_info_1.ScalarType.FIXED32: + case reflection_info_1.ScalarType.SFIXED32: + case reflection_info_1.ScalarType.SINT32: + case reflection_info_1.ScalarType.UINT32: + return this.scalars(keys.slice(0, depth).map(k => parseInt(k)), type, depth); + case reflection_info_1.ScalarType.BOOL: + return this.scalars(keys.slice(0, depth).map(k => k == 'true' ? true : k == 'false' ? false : k), type, depth); + default: + return this.scalars(keys, type, depth, reflection_info_1.LongType.STRING); } } - return ret; } -//# sourceMappingURL=index.js.map +exports.ReflectionTypeCheck = ReflectionTypeCheck; + /***/ }), -/***/ 3669: +/***/ 5183: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { @@ -6511,1281 +5937,1559 @@ var __importStar = (this && this.__importStar) || function (mod) { __setModuleDefault(result, mod); return result; }; -var __importDefault = (this && this.__importDefault) || function (mod) { - return (mod && mod.__esModule) ? mod : { "default": mod }; -}; Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.HttpsProxyAgent = void 0; -const net = __importStar(__nccwpck_require__(9278)); -const tls = __importStar(__nccwpck_require__(4756)); -const assert_1 = __importDefault(__nccwpck_require__(2613)); -const debug_1 = __importDefault(__nccwpck_require__(2830)); -const agent_base_1 = __nccwpck_require__(8894); -const url_1 = __nccwpck_require__(7016); -const parse_proxy_response_1 = __nccwpck_require__(7943); -const debug = (0, debug_1.default)('https-proxy-agent'); -const setServernameFromNonIpHost = (options) => { - if (options.servername === undefined && - options.host && - !net.isIP(options.host)) { - return { - ...options, - servername: options.host, - }; - } - return options; -}; -/** - * The `HttpsProxyAgent` implements an HTTP Agent subclass that connects to - * the specified "HTTP(s) proxy server" in order to proxy HTTPS requests. - * - * Outgoing HTTP requests are first tunneled through the proxy server using the - * `CONNECT` HTTP request method to establish a connection to the proxy server, - * and then the proxy server connects to the destination target and issues the - * HTTP request from the proxy server. - * - * `https:` requests have their socket connection upgraded to TLS once - * the connection to the proxy server has been established. - */ -class HttpsProxyAgent extends agent_base_1.Agent { - constructor(proxy, opts) { - super(opts); - this.options = { path: undefined }; - this.proxy = typeof proxy === 'string' ? new url_1.URL(proxy) : proxy; - this.proxyHeaders = opts?.headers ?? {}; - debug('Creating new HttpsProxyAgent instance: %o', this.proxy.href); - // Trim off the brackets from IPv6 addresses - const host = (this.proxy.hostname || this.proxy.host).replace(/^\[|\]$/g, ''); - const port = this.proxy.port - ? parseInt(this.proxy.port, 10) - : this.proxy.protocol === 'https:' - ? 443 - : 80; - this.connectOpts = { - // Attempt to negotiate http/1.1 for proxy servers that support http/2 - ALPNProtocols: ['http/1.1'], - ...(opts ? omit(opts, 'headers') : null), - host, - port, - }; - } - /** - * Called when the node-core HTTP client library is creating a - * new HTTP request. - */ - async connect(req, opts) { - const { proxy } = this; - if (!opts.host) { - throw new TypeError('No "host" provided'); - } - // Create a socket connection to the proxy server. - let socket; - if (proxy.protocol === 'https:') { - debug('Creating `tls.Socket`: %o', this.connectOpts); - socket = tls.connect(setServernameFromNonIpHost(this.connectOpts)); - } - else { - debug('Creating `net.Socket`: %o', this.connectOpts); - socket = net.connect(this.connectOpts); - } - const headers = typeof this.proxyHeaders === 'function' - ? this.proxyHeaders() - : { ...this.proxyHeaders }; - const host = net.isIPv6(opts.host) ? `[${opts.host}]` : opts.host; - let payload = `CONNECT ${host}:${opts.port} HTTP/1.1\r\n`; - // Inject the `Proxy-Authorization` header if necessary. - if (proxy.username || proxy.password) { - const auth = `${decodeURIComponent(proxy.username)}:${decodeURIComponent(proxy.password)}`; - headers['Proxy-Authorization'] = `Basic ${Buffer.from(auth).toString('base64')}`; - } - headers.Host = `${host}:${opts.port}`; - if (!headers['Proxy-Connection']) { - headers['Proxy-Connection'] = this.keepAlive - ? 'Keep-Alive' - : 'close'; - } - for (const name of Object.keys(headers)) { - payload += `${name}: ${headers[name]}\r\n`; - } - const proxyResponsePromise = (0, parse_proxy_response_1.parseProxyResponse)(socket); - socket.write(`${payload}\r\n`); - const { connect, buffered } = await proxyResponsePromise; - req.emit('proxyConnect', connect); - this.emit('proxyConnect', connect, req); - if (connect.statusCode === 200) { - req.once('socket', resume); - if (opts.secureEndpoint) { - // The proxy is connecting to a TLS server, so upgrade - // this socket connection to a TLS connection. - debug('Upgrading socket connection to TLS'); - return tls.connect({ - ...omit(setServernameFromNonIpHost(opts), 'host', 'path', 'port'), - socket, - }); - } - return socket; - } - // Some other status code that's not 200... need to re-play the HTTP - // header "data" events onto the socket once the HTTP machinery is - // attached so that the node core `http` can parse and handle the - // error status code. - // Close the original socket, and a new "fake" socket is returned - // instead, so that the proxy doesn't get the HTTP request - // written to it (which may contain `Authorization` headers or other - // sensitive data). - // - // See: https://hackerone.com/reports/541502 - socket.destroy(); - const fakeSocket = new net.Socket({ writable: false }); - fakeSocket.readable = true; - // Need to wait for the "socket" event to re-play the "data" events. - req.once('socket', (s) => { - debug('Replaying proxy buffer for failed request'); - (0, assert_1.default)(s.listenerCount('data') > 0); - // Replay the "buffered" Buffer onto the fake `socket`, since at - // this point the HTTP module machinery has been hooked up for - // the user. - s.push(buffered); - s.push(null); - }); - return fakeSocket; +exports.req = exports.json = exports.toBuffer = void 0; +const http = __importStar(__nccwpck_require__(8611)); +const https = __importStar(__nccwpck_require__(5692)); +async function toBuffer(stream) { + let length = 0; + const chunks = []; + for await (const chunk of stream) { + length += chunk.length; + chunks.push(chunk); } + return Buffer.concat(chunks, length); } -HttpsProxyAgent.protocols = ['http', 'https']; -exports.HttpsProxyAgent = HttpsProxyAgent; -function resume(socket) { - socket.resume(); -} -function omit(obj, ...keys) { - const ret = {}; - let key; - for (key in obj) { - if (!keys.includes(key)) { - ret[key] = obj[key]; - } +exports.toBuffer = toBuffer; +// eslint-disable-next-line @typescript-eslint/no-explicit-any +async function json(stream) { + const buf = await toBuffer(stream); + const str = buf.toString('utf8'); + try { + return JSON.parse(str); + } + catch (_err) { + const err = _err; + err.message += ` (input: ${str})`; + throw err; } - return ret; } -//# sourceMappingURL=index.js.map +exports.json = json; +function req(url, opts = {}) { + const href = typeof url === 'string' ? url : url.href; + const req = (href.startsWith('https:') ? https : http).request(url, opts); + const promise = new Promise((resolve, reject) => { + req + .once('response', resolve) + .once('error', reject) + .end(); + }); + req.then = promise.then.bind(promise); + return req; +} +exports.req = req; +//# sourceMappingURL=helpers.js.map /***/ }), -/***/ 7943: +/***/ 8894: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { -var __importDefault = (this && this.__importDefault) || function (mod) { - return (mod && mod.__esModule) ? mod : { "default": mod }; +var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { + if (k2 === undefined) k2 = k; + var desc = Object.getOwnPropertyDescriptor(m, k); + if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { + desc = { enumerable: true, get: function() { return m[k]; } }; + } + Object.defineProperty(o, k2, desc); +}) : (function(o, m, k, k2) { + if (k2 === undefined) k2 = k; + o[k2] = m[k]; +})); +var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { + Object.defineProperty(o, "default", { enumerable: true, value: v }); +}) : function(o, v) { + o["default"] = v; +}); +var __importStar = (this && this.__importStar) || function (mod) { + if (mod && mod.__esModule) return mod; + var result = {}; + if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); + __setModuleDefault(result, mod); + return result; +}; +var __exportStar = (this && this.__exportStar) || function(m, exports) { + for (var p in m) if (p !== "default" && !Object.prototype.hasOwnProperty.call(exports, p)) __createBinding(exports, m, p); }; Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.parseProxyResponse = void 0; -const debug_1 = __importDefault(__nccwpck_require__(2830)); -const debug = (0, debug_1.default)('https-proxy-agent:parse-proxy-response'); -function parseProxyResponse(socket) { - return new Promise((resolve, reject) => { - // we need to buffer any HTTP traffic that happens with the proxy before we get - // the CONNECT response, so that if the response is anything other than an "200" - // response code, then we can re-play the "data" events on the socket once the - // HTTP parser is hooked up... - let buffersLength = 0; - const buffers = []; - function read() { - const b = socket.read(); - if (b) - ondata(b); - else - socket.once('readable', read); +exports.Agent = void 0; +const net = __importStar(__nccwpck_require__(9278)); +const http = __importStar(__nccwpck_require__(8611)); +const https_1 = __nccwpck_require__(5692); +__exportStar(__nccwpck_require__(5183), exports); +const INTERNAL = Symbol('AgentBaseInternalState'); +class Agent extends http.Agent { + constructor(opts) { + super(opts); + this[INTERNAL] = {}; + } + /** + * Determine whether this is an `http` or `https` request. + */ + isSecureEndpoint(options) { + if (options) { + // First check the `secureEndpoint` property explicitly, since this + // means that a parent `Agent` is "passing through" to this instance. + // eslint-disable-next-line @typescript-eslint/no-explicit-any + if (typeof options.secureEndpoint === 'boolean') { + return options.secureEndpoint; + } + // If no explicit `secure` endpoint, check if `protocol` property is + // set. This will usually be the case since using a full string URL + // or `URL` instance should be the most common usage. + if (typeof options.protocol === 'string') { + return options.protocol === 'https:'; + } } - function cleanup() { - socket.removeListener('end', onend); - socket.removeListener('error', onerror); - socket.removeListener('readable', read); + // Finally, if no `protocol` property was set, then fall back to + // checking the stack trace of the current call stack, and try to + // detect the "https" module. + const { stack } = new Error(); + if (typeof stack !== 'string') + return false; + return stack + .split('\n') + .some((l) => l.indexOf('(https.js:') !== -1 || + l.indexOf('node:https:') !== -1); + } + // In order to support async signatures in `connect()` and Node's native + // connection pooling in `http.Agent`, the array of sockets for each origin + // has to be updated synchronously. This is so the length of the array is + // accurate when `addRequest()` is next called. We achieve this by creating a + // fake socket and adding it to `sockets[origin]` and incrementing + // `totalSocketCount`. + incrementSockets(name) { + // If `maxSockets` and `maxTotalSockets` are both Infinity then there is no + // need to create a fake socket because Node.js native connection pooling + // will never be invoked. + if (this.maxSockets === Infinity && this.maxTotalSockets === Infinity) { + return null; } - function onend() { - cleanup(); - debug('onend'); - reject(new Error('Proxy connection ended before receiving CONNECT response')); + // All instances of `sockets` are expected TypeScript errors. The + // alternative is to add it as a private property of this class but that + // will break TypeScript subclassing. + if (!this.sockets[name]) { + // @ts-expect-error `sockets` is readonly in `@types/node` + this.sockets[name] = []; } - function onerror(err) { - cleanup(); - debug('onerror %o', err); - reject(err); + const fakeSocket = new net.Socket({ writable: false }); + this.sockets[name].push(fakeSocket); + // @ts-expect-error `totalSocketCount` isn't defined in `@types/node` + this.totalSocketCount++; + return fakeSocket; + } + decrementSockets(name, socket) { + if (!this.sockets[name] || socket === null) { + return; } - function ondata(b) { - buffers.push(b); - buffersLength += b.length; - const buffered = Buffer.concat(buffers, buffersLength); - const endOfHeaders = buffered.indexOf('\r\n\r\n'); - if (endOfHeaders === -1) { - // keep buffering - debug('have not received end of HTTP headers yet...'); - read(); - return; - } - const headerParts = buffered - .slice(0, endOfHeaders) - .toString('ascii') - .split('\r\n'); - const firstLine = headerParts.shift(); - if (!firstLine) { - socket.destroy(); - return reject(new Error('No header received from proxy CONNECT response')); + const sockets = this.sockets[name]; + const index = sockets.indexOf(socket); + if (index !== -1) { + sockets.splice(index, 1); + // @ts-expect-error `totalSocketCount` isn't defined in `@types/node` + this.totalSocketCount--; + if (sockets.length === 0) { + // @ts-expect-error `sockets` is readonly in `@types/node` + delete this.sockets[name]; } - const firstLineParts = firstLine.split(' '); - const statusCode = +firstLineParts[1]; - const statusText = firstLineParts.slice(2).join(' '); - const headers = {}; - for (const header of headerParts) { - if (!header) - continue; - const firstColon = header.indexOf(':'); - if (firstColon === -1) { - socket.destroy(); - return reject(new Error(`Invalid header from proxy CONNECT response: "${header}"`)); - } - const key = header.slice(0, firstColon).toLowerCase(); - const value = header.slice(firstColon + 1).trimStart(); - const current = headers[key]; - if (typeof current === 'string') { - headers[key] = [current, value]; - } - else if (Array.isArray(current)) { - current.push(value); + } + } + // In order to properly update the socket pool, we need to call `getName()` on + // the core `https.Agent` if it is a secureEndpoint. + getName(options) { + const secureEndpoint = this.isSecureEndpoint(options); + if (secureEndpoint) { + // @ts-expect-error `getName()` isn't defined in `@types/node` + return https_1.Agent.prototype.getName.call(this, options); + } + // @ts-expect-error `getName()` isn't defined in `@types/node` + return super.getName(options); + } + createSocket(req, options, cb) { + const connectOpts = { + ...options, + secureEndpoint: this.isSecureEndpoint(options), + }; + const name = this.getName(connectOpts); + const fakeSocket = this.incrementSockets(name); + Promise.resolve() + .then(() => this.connect(req, connectOpts)) + .then((socket) => { + this.decrementSockets(name, fakeSocket); + if (socket instanceof http.Agent) { + try { + // @ts-expect-error `addRequest()` isn't defined in `@types/node` + return socket.addRequest(req, connectOpts); } - else { - headers[key] = value; + catch (err) { + return cb(err); } } - debug('got proxy server response: %o %o', firstLine, headers); - cleanup(); - resolve({ - connect: { - statusCode, - statusText, - headers, - }, - buffered, - }); + this[INTERNAL].currentSocket = socket; + // @ts-expect-error `createSocket()` isn't defined in `@types/node` + super.createSocket(req, options, cb); + }, (err) => { + this.decrementSockets(name, fakeSocket); + cb(err); + }); + } + createConnection() { + const socket = this[INTERNAL].currentSocket; + this[INTERNAL].currentSocket = undefined; + if (!socket) { + throw new Error('No socket was returned in the `connect()` function'); } - socket.on('error', onerror); - socket.on('end', onend); - read(); - }); + return socket; + } + get defaultPort() { + return (this[INTERNAL].defaultPort ?? + (this.protocol === 'https:' ? 443 : 80)); + } + set defaultPort(v) { + if (this[INTERNAL]) { + this[INTERNAL].defaultPort = v; + } + } + get protocol() { + return (this[INTERNAL].protocol ?? + (this.isSecureEndpoint() ? 'https:' : 'http:')); + } + set protocol(v) { + if (this[INTERNAL]) { + this[INTERNAL].protocol = v; + } + } } -exports.parseProxyResponse = parseProxyResponse; -//# sourceMappingURL=parse-proxy-response.js.map +exports.Agent = Agent; +//# sourceMappingURL=index.js.map /***/ }), -/***/ 3772: -/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { - -module.exports = minimatch -minimatch.Minimatch = Minimatch - -var path = (function () { try { return __nccwpck_require__(6928) } catch (e) {}}()) || { - sep: '/' -} -minimatch.sep = path.sep +/***/ 6110: +/***/ ((module, exports, __nccwpck_require__) => { -var GLOBSTAR = minimatch.GLOBSTAR = Minimatch.GLOBSTAR = {} -var expand = __nccwpck_require__(4691) +/* eslint-env browser */ -var plTypes = { - '!': { open: '(?:(?!(?:', close: '))[^/]*?)'}, - '?': { open: '(?:', close: ')?' }, - '+': { open: '(?:', close: ')+' }, - '*': { open: '(?:', close: ')*' }, - '@': { open: '(?:', close: ')' } -} +/** + * This is the web browser implementation of `debug()`. + */ -// any single thing other than / -// don't need to escape / when using new RegExp() -var qmark = '[^/]' +exports.formatArgs = formatArgs; +exports.save = save; +exports.load = load; +exports.useColors = useColors; +exports.storage = localstorage(); +exports.destroy = (() => { + let warned = false; -// * => any number of characters -var star = qmark + '*?' + return () => { + if (!warned) { + warned = true; + console.warn('Instance method `debug.destroy()` is deprecated and no longer does anything. It will be removed in the next major version of `debug`.'); + } + }; +})(); -// ** when dots are allowed. Anything goes, except .. and . -// not (^ or / followed by one or two dots followed by $ or /), -// followed by anything, any number of times. -var twoStarDot = '(?:(?!(?:\\\/|^)(?:\\.{1,2})($|\\\/)).)*?' +/** + * Colors. + */ -// not a ^ or / followed by a dot, -// followed by anything, any number of times. -var twoStarNoDot = '(?:(?!(?:\\\/|^)\\.).)*?' +exports.colors = [ + '#0000CC', + '#0000FF', + '#0033CC', + '#0033FF', + '#0066CC', + '#0066FF', + '#0099CC', + '#0099FF', + '#00CC00', + '#00CC33', + '#00CC66', + '#00CC99', + '#00CCCC', + '#00CCFF', + '#3300CC', + '#3300FF', + '#3333CC', + '#3333FF', + '#3366CC', + '#3366FF', + '#3399CC', + '#3399FF', + '#33CC00', + '#33CC33', + '#33CC66', + '#33CC99', + '#33CCCC', + '#33CCFF', + '#6600CC', + '#6600FF', + '#6633CC', + '#6633FF', + '#66CC00', + '#66CC33', + '#9900CC', + '#9900FF', + '#9933CC', + '#9933FF', + '#99CC00', + '#99CC33', + '#CC0000', + '#CC0033', + '#CC0066', + '#CC0099', + '#CC00CC', + '#CC00FF', + '#CC3300', + '#CC3333', + '#CC3366', + '#CC3399', + '#CC33CC', + '#CC33FF', + '#CC6600', + '#CC6633', + '#CC9900', + '#CC9933', + '#CCCC00', + '#CCCC33', + '#FF0000', + '#FF0033', + '#FF0066', + '#FF0099', + '#FF00CC', + '#FF00FF', + '#FF3300', + '#FF3333', + '#FF3366', + '#FF3399', + '#FF33CC', + '#FF33FF', + '#FF6600', + '#FF6633', + '#FF9900', + '#FF9933', + '#FFCC00', + '#FFCC33' +]; -// characters that need to be escaped in RegExp. -var reSpecials = charSet('().*{}+?[]^$\\!') +/** + * Currently only WebKit-based Web Inspectors, Firefox >= v31, + * and the Firebug extension (any Firefox version) are known + * to support "%c" CSS customizations. + * + * TODO: add a `localStorage` variable to explicitly enable/disable colors + */ -// "abc" -> { a:true, b:true, c:true } -function charSet (s) { - return s.split('').reduce(function (set, c) { - set[c] = true - return set - }, {}) -} +// eslint-disable-next-line complexity +function useColors() { + // NB: In an Electron preload script, document will be defined but not fully + // initialized. Since we know we're in Chrome, we'll just detect this case + // explicitly + if (typeof window !== 'undefined' && window.process && (window.process.type === 'renderer' || window.process.__nwjs)) { + return true; + } -// normalizes slashes. -var slashSplit = /\/+/ + // Internet Explorer and Edge do not support colors. + if (typeof navigator !== 'undefined' && navigator.userAgent && navigator.userAgent.toLowerCase().match(/(edge|trident)\/(\d+)/)) { + return false; + } -minimatch.filter = filter -function filter (pattern, options) { - options = options || {} - return function (p, i, list) { - return minimatch(p, pattern, options) - } -} + let m; -function ext (a, b) { - b = b || {} - var t = {} - Object.keys(a).forEach(function (k) { - t[k] = a[k] - }) - Object.keys(b).forEach(function (k) { - t[k] = b[k] - }) - return t + // Is webkit? http://stackoverflow.com/a/16459606/376773 + // document is undefined in react-native: https://github.com/facebook/react-native/pull/1632 + // eslint-disable-next-line no-return-assign + return (typeof document !== 'undefined' && document.documentElement && document.documentElement.style && document.documentElement.style.WebkitAppearance) || + // Is firebug? http://stackoverflow.com/a/398120/376773 + (typeof window !== 'undefined' && window.console && (window.console.firebug || (window.console.exception && window.console.table))) || + // Is firefox >= v31? + // https://developer.mozilla.org/en-US/docs/Tools/Web_Console#Styling_messages + (typeof navigator !== 'undefined' && navigator.userAgent && (m = navigator.userAgent.toLowerCase().match(/firefox\/(\d+)/)) && parseInt(m[1], 10) >= 31) || + // Double check webkit in userAgent just in case we are in a worker + (typeof navigator !== 'undefined' && navigator.userAgent && navigator.userAgent.toLowerCase().match(/applewebkit\/(\d+)/)); } -minimatch.defaults = function (def) { - if (!def || typeof def !== 'object' || !Object.keys(def).length) { - return minimatch - } - - var orig = minimatch - - var m = function minimatch (p, pattern, options) { - return orig(p, pattern, ext(def, options)) - } +/** + * Colorize log arguments if enabled. + * + * @api public + */ - m.Minimatch = function Minimatch (pattern, options) { - return new orig.Minimatch(pattern, ext(def, options)) - } - m.Minimatch.defaults = function defaults (options) { - return orig.defaults(ext(def, options)).Minimatch - } +function formatArgs(args) { + args[0] = (this.useColors ? '%c' : '') + + this.namespace + + (this.useColors ? ' %c' : ' ') + + args[0] + + (this.useColors ? '%c ' : ' ') + + '+' + module.exports.humanize(this.diff); - m.filter = function filter (pattern, options) { - return orig.filter(pattern, ext(def, options)) - } + if (!this.useColors) { + return; + } - m.defaults = function defaults (options) { - return orig.defaults(ext(def, options)) - } + const c = 'color: ' + this.color; + args.splice(1, 0, c, 'color: inherit'); - m.makeRe = function makeRe (pattern, options) { - return orig.makeRe(pattern, ext(def, options)) - } + // The final "%c" is somewhat tricky, because there could be other + // arguments passed either before or after the %c, so we need to + // figure out the correct index to insert the CSS into + let index = 0; + let lastC = 0; + args[0].replace(/%[a-zA-Z%]/g, match => { + if (match === '%%') { + return; + } + index++; + if (match === '%c') { + // We only are interested in the *last* %c + // (the user may have provided their own) + lastC = index; + } + }); - m.braceExpand = function braceExpand (pattern, options) { - return orig.braceExpand(pattern, ext(def, options)) - } + args.splice(lastC, 0, c); +} - m.match = function (list, pattern, options) { - return orig.match(list, pattern, ext(def, options)) - } +/** + * Invokes `console.debug()` when available. + * No-op when `console.debug` is not a "function". + * If `console.debug` is not available, falls back + * to `console.log`. + * + * @api public + */ +exports.log = console.debug || console.log || (() => {}); - return m +/** + * Save `namespaces`. + * + * @param {String} namespaces + * @api private + */ +function save(namespaces) { + try { + if (namespaces) { + exports.storage.setItem('debug', namespaces); + } else { + exports.storage.removeItem('debug'); + } + } catch (error) { + // Swallow + // XXX (@Qix-) should we be logging these? + } } -Minimatch.defaults = function (def) { - return minimatch.defaults(def).Minimatch -} +/** + * Load `namespaces`. + * + * @return {String} returns the previously persisted debug modes + * @api private + */ +function load() { + let r; + try { + r = exports.storage.getItem('debug') || exports.storage.getItem('DEBUG') ; + } catch (error) { + // Swallow + // XXX (@Qix-) should we be logging these? + } -function minimatch (p, pattern, options) { - assertValidPattern(pattern) + // If debug isn't set in LS, and we're in Electron, try to load $DEBUG + if (!r && typeof process !== 'undefined' && 'env' in process) { + r = process.env.DEBUG; + } - if (!options) options = {} + return r; +} - // shortcut: comments match nothing. - if (!options.nocomment && pattern.charAt(0) === '#') { - return false - } +/** + * Localstorage attempts to return the localstorage. + * + * This is necessary because safari throws + * when a user disables cookies/localstorage + * and you attempt to access it. + * + * @return {LocalStorage} + * @api private + */ - return new Minimatch(pattern, options).match(p) +function localstorage() { + try { + // TVMLKit (Apple TV JS Runtime) does not have a window object, just localStorage in the global context + // The Browser also has localStorage in the global context. + return localStorage; + } catch (error) { + // Swallow + // XXX (@Qix-) should we be logging these? + } } -function Minimatch (pattern, options) { - if (!(this instanceof Minimatch)) { - return new Minimatch(pattern, options) - } - - assertValidPattern(pattern) +module.exports = __nccwpck_require__(897)(exports); - if (!options) options = {} +const {formatters} = module.exports; - pattern = pattern.trim() +/** + * Map %j to `JSON.stringify()`, since no Web Inspectors do that by default. + */ - // windows support: need to use /, not \ - if (!options.allowWindowsEscape && path.sep !== '/') { - pattern = pattern.split(path.sep).join('/') - } +formatters.j = function (v) { + try { + return JSON.stringify(v); + } catch (error) { + return '[UnexpectedJSONParseError]: ' + error.message; + } +}; - this.options = options - this.maxGlobstarRecursion = options.maxGlobstarRecursion !== undefined - ? options.maxGlobstarRecursion : 200 - this.set = [] - this.pattern = pattern - this.regexp = null - this.negate = false - this.comment = false - this.empty = false - this.partial = !!options.partial - // make the set of regexps etc. - this.make() -} +/***/ }), -Minimatch.prototype.debug = function () {} +/***/ 897: +/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { -Minimatch.prototype.make = make -function make () { - var pattern = this.pattern - var options = this.options - // empty patterns and comments match nothing. - if (!options.nocomment && pattern.charAt(0) === '#') { - this.comment = true - return - } - if (!pattern) { - this.empty = true - return - } +/** + * This is the common logic for both the Node.js and web browser + * implementations of `debug()`. + */ - // step 1: figure out negation, etc. - this.parseNegate() +function setup(env) { + createDebug.debug = createDebug; + createDebug.default = createDebug; + createDebug.coerce = coerce; + createDebug.disable = disable; + createDebug.enable = enable; + createDebug.enabled = enabled; + createDebug.humanize = __nccwpck_require__(744); + createDebug.destroy = destroy; - // step 2: expand braces - var set = this.globSet = this.braceExpand() + Object.keys(env).forEach(key => { + createDebug[key] = env[key]; + }); - if (options.debug) this.debug = function debug() { console.error.apply(console, arguments) } + /** + * The currently active debug mode names, and names to skip. + */ - this.debug(this.pattern, set) + createDebug.names = []; + createDebug.skips = []; - // step 3: now we have a set, so turn each one into a series of path-portion - // matching patterns. - // These will be regexps, except in the case of "**", which is - // set to the GLOBSTAR object for globstar behavior, - // and will not contain any / characters - set = this.globParts = set.map(function (s) { - return s.split(slashSplit) - }) + /** + * Map of special "%n" handling functions, for the debug "format" argument. + * + * Valid key names are a single, lower or upper-case letter, i.e. "n" and "N". + */ + createDebug.formatters = {}; - this.debug(this.pattern, set) + /** + * Selects a color for a debug namespace + * @param {String} namespace The namespace string for the debug instance to be colored + * @return {Number|String} An ANSI color code for the given namespace + * @api private + */ + function selectColor(namespace) { + let hash = 0; - // glob --> regexps - set = set.map(function (s, si, set) { - return s.map(this.parse, this) - }, this) + for (let i = 0; i < namespace.length; i++) { + hash = ((hash << 5) - hash) + namespace.charCodeAt(i); + hash |= 0; // Convert to 32bit integer + } - this.debug(this.pattern, set) + return createDebug.colors[Math.abs(hash) % createDebug.colors.length]; + } + createDebug.selectColor = selectColor; - // filter out everything that didn't compile properly. - set = set.filter(function (s) { - return s.indexOf(false) === -1 - }) + /** + * Create a debugger with the given `namespace`. + * + * @param {String} namespace + * @return {Function} + * @api public + */ + function createDebug(namespace) { + let prevTime; + let enableOverride = null; + let namespacesCache; + let enabledCache; - this.debug(this.pattern, set) + function debug(...args) { + // Disabled? + if (!debug.enabled) { + return; + } - this.set = set -} + const self = debug; -Minimatch.prototype.parseNegate = parseNegate -function parseNegate () { - var pattern = this.pattern - var negate = false - var options = this.options - var negateOffset = 0 + // Set `diff` timestamp + const curr = Number(new Date()); + const ms = curr - (prevTime || curr); + self.diff = ms; + self.prev = prevTime; + self.curr = curr; + prevTime = curr; - if (options.nonegate) return + args[0] = createDebug.coerce(args[0]); - for (var i = 0, l = pattern.length - ; i < l && pattern.charAt(i) === '!' - ; i++) { - negate = !negate - negateOffset++ - } + if (typeof args[0] !== 'string') { + // Anything else let's inspect with %O + args.unshift('%O'); + } - if (negateOffset) this.pattern = pattern.substr(negateOffset) - this.negate = negate -} + // Apply any `formatters` transformations + let index = 0; + args[0] = args[0].replace(/%([a-zA-Z%])/g, (match, format) => { + // If we encounter an escaped % then don't increase the array index + if (match === '%%') { + return '%'; + } + index++; + const formatter = createDebug.formatters[format]; + if (typeof formatter === 'function') { + const val = args[index]; + match = formatter.call(self, val); -// Brace expansion: -// a{b,c}d -> abd acd -// a{b,}c -> abc ac -// a{0..3}d -> a0d a1d a2d a3d -// a{b,c{d,e}f}g -> abg acdfg acefg -// a{b,c}d{e,f}g -> abdeg acdeg abdeg abdfg -// -// Invalid sets are not expanded. -// a{2..}b -> a{2..}b -// a{b}c -> a{b}c -minimatch.braceExpand = function (pattern, options) { - return braceExpand(pattern, options) -} + // Now we need to remove `args[index]` since it's inlined in the `format` + args.splice(index, 1); + index--; + } + return match; + }); -Minimatch.prototype.braceExpand = braceExpand + // Apply env-specific formatting (colors, etc.) + createDebug.formatArgs.call(self, args); -function braceExpand (pattern, options) { - if (!options) { - if (this instanceof Minimatch) { - options = this.options - } else { - options = {} - } - } + const logFn = self.log || createDebug.log; + logFn.apply(self, args); + } - pattern = typeof pattern === 'undefined' - ? this.pattern : pattern + debug.namespace = namespace; + debug.useColors = createDebug.useColors(); + debug.color = createDebug.selectColor(namespace); + debug.extend = extend; + debug.destroy = createDebug.destroy; // XXX Temporary. Will be removed in the next major release. - assertValidPattern(pattern) + Object.defineProperty(debug, 'enabled', { + enumerable: true, + configurable: false, + get: () => { + if (enableOverride !== null) { + return enableOverride; + } + if (namespacesCache !== createDebug.namespaces) { + namespacesCache = createDebug.namespaces; + enabledCache = createDebug.enabled(namespace); + } - // Thanks to Yeting Li for - // improving this regexp to avoid a ReDOS vulnerability. - if (options.nobrace || !/\{(?:(?!\{).)*\}/.test(pattern)) { - // shortcut. no need to expand. - return [pattern] - } + return enabledCache; + }, + set: v => { + enableOverride = v; + } + }); - return expand(pattern) -} + // Env-specific initialization logic for debug instances + if (typeof createDebug.init === 'function') { + createDebug.init(debug); + } -var MAX_PATTERN_LENGTH = 1024 * 64 -var assertValidPattern = function (pattern) { - if (typeof pattern !== 'string') { - throw new TypeError('invalid pattern') - } + return debug; + } - if (pattern.length > MAX_PATTERN_LENGTH) { - throw new TypeError('pattern is too long') - } -} + function extend(namespace, delimiter) { + const newDebug = createDebug(this.namespace + (typeof delimiter === 'undefined' ? ':' : delimiter) + namespace); + newDebug.log = this.log; + return newDebug; + } -// parse a component of the expanded set. -// At this point, no pattern may contain "/" in it -// so we're going to return a 2d array, where each entry is the full -// pattern, split on '/', and then turned into a regular expression. -// A regexp is made at the end which joins each array with an -// escaped /, and another full one which joins each regexp with |. -// -// Following the lead of Bash 4.1, note that "**" only has special meaning -// when it is the *only* thing in a path portion. Otherwise, any series -// of * is equivalent to a single *. Globstar behavior is enabled by -// default, and can be disabled by setting options.noglobstar. -Minimatch.prototype.parse = parse -var SUBPARSE = {} -function parse (pattern, isSub) { - assertValidPattern(pattern) + /** + * Enables a debug mode by namespaces. This can include modes + * separated by a colon and wildcards. + * + * @param {String} namespaces + * @api public + */ + function enable(namespaces) { + createDebug.save(namespaces); + createDebug.namespaces = namespaces; - var options = this.options + createDebug.names = []; + createDebug.skips = []; - // shortcuts - if (pattern === '**') { - if (!options.noglobstar) - return GLOBSTAR - else - pattern = '*' - } - if (pattern === '') return '' + const split = (typeof namespaces === 'string' ? namespaces : '') + .trim() + .replace(/\s+/g, ',') + .split(',') + .filter(Boolean); - var re = '' - var hasMagic = !!options.nocase - var escaping = false - // ? => one single character - var patternListStack = [] - var negativeLists = [] - var stateChar - var inClass = false - var reClassStart = -1 - var classStart = -1 - // . and .. never match anything that doesn't start with ., - // even when options.dot is set. - var patternStart = pattern.charAt(0) === '.' ? '' // anything - // not (start or / followed by . or .. followed by / or end) - : options.dot ? '(?!(?:^|\\\/)\\.{1,2}(?:$|\\\/))' - : '(?!\\.)' - var self = this + for (const ns of split) { + if (ns[0] === '-') { + createDebug.skips.push(ns.slice(1)); + } else { + createDebug.names.push(ns); + } + } + } - function clearStateChar () { - if (stateChar) { - // we had some state-tracking character - // that wasn't consumed by this pass. - switch (stateChar) { - case '*': - re += star - hasMagic = true - break - case '?': - re += qmark - hasMagic = true - break - default: - re += '\\' + stateChar - break - } - self.debug('clearStateChar %j %j', stateChar, re) - stateChar = false - } - } + /** + * Checks if the given string matches a namespace template, honoring + * asterisks as wildcards. + * + * @param {String} search + * @param {String} template + * @return {Boolean} + */ + function matchesTemplate(search, template) { + let searchIndex = 0; + let templateIndex = 0; + let starIndex = -1; + let matchIndex = 0; - for (var i = 0, len = pattern.length, c - ; (i < len) && (c = pattern.charAt(i)) - ; i++) { - this.debug('%s\t%s %s %j', pattern, i, re, c) + while (searchIndex < search.length) { + if (templateIndex < template.length && (template[templateIndex] === search[searchIndex] || template[templateIndex] === '*')) { + // Match character or proceed with wildcard + if (template[templateIndex] === '*') { + starIndex = templateIndex; + matchIndex = searchIndex; + templateIndex++; // Skip the '*' + } else { + searchIndex++; + templateIndex++; + } + } else if (starIndex !== -1) { // eslint-disable-line no-negated-condition + // Backtrack to the last '*' and try to match more characters + templateIndex = starIndex + 1; + matchIndex++; + searchIndex = matchIndex; + } else { + return false; // No match + } + } - // skip over any that are escaped. - if (escaping && reSpecials[c]) { - re += '\\' + c - escaping = false - continue - } + // Handle trailing '*' in template + while (templateIndex < template.length && template[templateIndex] === '*') { + templateIndex++; + } - switch (c) { - /* istanbul ignore next */ - case '/': { - // completely not allowed, even escaped. - // Should already be path-split by now. - return false - } + return templateIndex === template.length; + } - case '\\': - clearStateChar() - escaping = true - continue + /** + * Disable debug output. + * + * @return {String} namespaces + * @api public + */ + function disable() { + const namespaces = [ + ...createDebug.names, + ...createDebug.skips.map(namespace => '-' + namespace) + ].join(','); + createDebug.enable(''); + return namespaces; + } - // the various stateChar values - // for the "extglob" stuff. - case '?': - case '*': - case '+': - case '@': - case '!': - this.debug('%s\t%s %s %j <-- stateChar', pattern, i, re, c) + /** + * Returns true if the given mode name is enabled, false otherwise. + * + * @param {String} name + * @return {Boolean} + * @api public + */ + function enabled(name) { + for (const skip of createDebug.skips) { + if (matchesTemplate(name, skip)) { + return false; + } + } - // all of those are literals inside a class, except that - // the glob [!a] means [^a] in regexp - if (inClass) { - this.debug(' in class') - if (c === '!' && i === classStart + 1) c = '^' - re += c - continue - } + for (const ns of createDebug.names) { + if (matchesTemplate(name, ns)) { + return true; + } + } - // coalesce consecutive non-globstar * characters - if (c === '*' && stateChar === '*') continue + return false; + } - // if we already have a stateChar, then it means - // that there was something like ** or +? in there. - // Handle the stateChar, then proceed with this one. - self.debug('call clearStateChar %j', stateChar) - clearStateChar() - stateChar = c - // if extglob is disabled, then +(asdf|foo) isn't a thing. - // just clear the statechar *now*, rather than even diving into - // the patternList stuff. - if (options.noext) clearStateChar() - continue + /** + * Coerce `val`. + * + * @param {Mixed} val + * @return {Mixed} + * @api private + */ + function coerce(val) { + if (val instanceof Error) { + return val.stack || val.message; + } + return val; + } - case '(': - if (inClass) { - re += '(' - continue - } + /** + * XXX DO NOT USE. This is a temporary stub function. + * XXX It WILL be removed in the next major release. + */ + function destroy() { + console.warn('Instance method `debug.destroy()` is deprecated and no longer does anything. It will be removed in the next major version of `debug`.'); + } - if (!stateChar) { - re += '\\(' - continue - } + createDebug.enable(createDebug.load()); - patternListStack.push({ - type: stateChar, - start: i - 1, - reStart: re.length, - open: plTypes[stateChar].open, - close: plTypes[stateChar].close - }) - // negation is (?:(?!js)[^/]*) - re += stateChar === '!' ? '(?:(?!(?:' : '(?:' - this.debug('plType %j %j', stateChar, re) - stateChar = false - continue + return createDebug; +} - case ')': - if (inClass || !patternListStack.length) { - re += '\\)' - continue - } +module.exports = setup; - clearStateChar() - hasMagic = true - var pl = patternListStack.pop() - // negation is (?:(?!js)[^/]*) - // The others are (?:) - re += pl.close - if (pl.type === '!') { - negativeLists.push(pl) - } - pl.reEnd = re.length - continue - case '|': - if (inClass || !patternListStack.length || escaping) { - re += '\\|' - escaping = false - continue - } +/***/ }), - clearStateChar() - re += '|' - continue +/***/ 2830: +/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { - // these are mostly the same in regexp and glob - case '[': - // swallow any state-tracking char before the [ - clearStateChar() +/** + * Detect Electron renderer / nwjs process, which is node, but we should + * treat as a browser. + */ - if (inClass) { - re += '\\' + c - continue - } +if (typeof process === 'undefined' || process.type === 'renderer' || process.browser === true || process.__nwjs) { + module.exports = __nccwpck_require__(6110); +} else { + module.exports = __nccwpck_require__(5108); +} - inClass = true - classStart = i - reClassStart = re.length - re += c - continue - case ']': - // a right bracket shall lose its special - // meaning and represent itself in - // a bracket expression if it occurs - // first in the list. -- POSIX.2 2.8.3.2 - if (i === classStart + 1 || !inClass) { - re += '\\' + c - escaping = false - continue - } +/***/ }), - // handle the case where we left a class open. - // "[z-a]" is valid, equivalent to "\[z-a\]" - // split where the last [ was, make sure we don't have - // an invalid re. if so, re-walk the contents of the - // would-be class to re-translate any characters that - // were passed through as-is - // TODO: It would probably be faster to determine this - // without a try/catch and a new RegExp, but it's tricky - // to do safely. For now, this is safe and works. - var cs = pattern.substring(classStart + 1, i) - try { - RegExp('[' + cs + ']') - } catch (er) { - // not a valid class! - var sp = this.parse(cs, SUBPARSE) - re = re.substr(0, reClassStart) + '\\[' + sp[0] + '\\]' - hasMagic = hasMagic || sp[1] - inClass = false - continue - } +/***/ 5108: +/***/ ((module, exports, __nccwpck_require__) => { - // finish up the class. - hasMagic = true - inClass = false - re += c - continue +/** + * Module dependencies. + */ - default: - // swallow any state char that wasn't consumed - clearStateChar() +const tty = __nccwpck_require__(2018); +const util = __nccwpck_require__(9023); - if (escaping) { - // no need - escaping = false - } else if (reSpecials[c] - && !(c === '^' && inClass)) { - re += '\\' - } +/** + * This is the Node.js implementation of `debug()`. + */ - re += c +exports.init = init; +exports.log = log; +exports.formatArgs = formatArgs; +exports.save = save; +exports.load = load; +exports.useColors = useColors; +exports.destroy = util.deprecate( + () => {}, + 'Instance method `debug.destroy()` is deprecated and no longer does anything. It will be removed in the next major version of `debug`.' +); - } // switch - } // for +/** + * Colors. + */ - // handle the case where we left a class open. - // "[abc" is valid, equivalent to "\[abc" - if (inClass) { - // split where the last [ was, and escape it - // this is a huge pita. We now have to re-walk - // the contents of the would-be class to re-translate - // any characters that were passed through as-is - cs = pattern.substr(classStart + 1) - sp = this.parse(cs, SUBPARSE) - re = re.substr(0, reClassStart) + '\\[' + sp[0] - hasMagic = hasMagic || sp[1] - } +exports.colors = [6, 2, 3, 4, 5, 1]; - // handle the case where we had a +( thing at the *end* - // of the pattern. - // each pattern list stack adds 3 chars, and we need to go through - // and escape any | chars that were passed through as-is for the regexp. - // Go through and escape them, taking care not to double-escape any - // | chars that were already escaped. - for (pl = patternListStack.pop(); pl; pl = patternListStack.pop()) { - var tail = re.slice(pl.reStart + pl.open.length) - this.debug('setting tail', re, pl) - // maybe some even number of \, then maybe 1 \, followed by a | - tail = tail.replace(/((?:\\{2}){0,64})(\\?)\|/g, function (_, $1, $2) { - if (!$2) { - // the | isn't already escaped, so escape it. - $2 = '\\' - } +try { + // Optional dependency (as in, doesn't need to be installed, NOT like optionalDependencies in package.json) + // eslint-disable-next-line import/no-extraneous-dependencies + const supportsColor = __nccwpck_require__(1450); - // need to escape all those slashes *again*, without escaping the - // one that we need for escaping the | character. As it works out, - // escaping an even number of slashes can be done by simply repeating - // it exactly after itself. That's why this trick works. - // - // I am sorry that you have to see this. - return $1 + $1 + $2 + '|' - }) + if (supportsColor && (supportsColor.stderr || supportsColor).level >= 2) { + exports.colors = [ + 20, + 21, + 26, + 27, + 32, + 33, + 38, + 39, + 40, + 41, + 42, + 43, + 44, + 45, + 56, + 57, + 62, + 63, + 68, + 69, + 74, + 75, + 76, + 77, + 78, + 79, + 80, + 81, + 92, + 93, + 98, + 99, + 112, + 113, + 128, + 129, + 134, + 135, + 148, + 149, + 160, + 161, + 162, + 163, + 164, + 165, + 166, + 167, + 168, + 169, + 170, + 171, + 172, + 173, + 178, + 179, + 184, + 185, + 196, + 197, + 198, + 199, + 200, + 201, + 202, + 203, + 204, + 205, + 206, + 207, + 208, + 209, + 214, + 215, + 220, + 221 + ]; + } +} catch (error) { + // Swallow - we only care if `supports-color` is available; it doesn't have to be. +} - this.debug('tail=%j\n %s', tail, tail, pl, re) - var t = pl.type === '*' ? star - : pl.type === '?' ? qmark - : '\\' + pl.type +/** + * Build up the default `inspectOpts` object from the environment variables. + * + * $ DEBUG_COLORS=no DEBUG_DEPTH=10 DEBUG_SHOW_HIDDEN=enabled node script.js + */ - hasMagic = true - re = re.slice(0, pl.reStart) + t + '\\(' + tail - } +exports.inspectOpts = Object.keys(process.env).filter(key => { + return /^debug_/i.test(key); +}).reduce((obj, key) => { + // Camel-case + const prop = key + .substring(6) + .toLowerCase() + .replace(/_([a-z])/g, (_, k) => { + return k.toUpperCase(); + }); - // handle trailing things that only matter at the very end. - clearStateChar() - if (escaping) { - // trailing \\ - re += '\\\\' - } + // Coerce string value into JS value + let val = process.env[key]; + if (/^(yes|on|true|enabled)$/i.test(val)) { + val = true; + } else if (/^(no|off|false|disabled)$/i.test(val)) { + val = false; + } else if (val === 'null') { + val = null; + } else { + val = Number(val); + } - // only need to apply the nodot start if the re starts with - // something that could conceivably capture a dot - var addPatternStart = false - switch (re.charAt(0)) { - case '[': case '.': case '(': addPatternStart = true - } + obj[prop] = val; + return obj; +}, {}); - // Hack to work around lack of negative lookbehind in JS - // A pattern like: *.!(x).!(y|z) needs to ensure that a name - // like 'a.xyz.yz' doesn't match. So, the first negative - // lookahead, has to look ALL the way ahead, to the end of - // the pattern. - for (var n = negativeLists.length - 1; n > -1; n--) { - var nl = negativeLists[n] +/** + * Is stdout a TTY? Colored output is enabled when `true`. + */ - var nlBefore = re.slice(0, nl.reStart) - var nlFirst = re.slice(nl.reStart, nl.reEnd - 8) - var nlLast = re.slice(nl.reEnd - 8, nl.reEnd) - var nlAfter = re.slice(nl.reEnd) +function useColors() { + return 'colors' in exports.inspectOpts ? + Boolean(exports.inspectOpts.colors) : + tty.isatty(process.stderr.fd); +} - nlLast += nlAfter +/** + * Adds ANSI color escape codes if enabled. + * + * @api public + */ - // Handle nested stuff like *(*.js|!(*.json)), where open parens - // mean that we should *not* include the ) in the bit that is considered - // "after" the negated section. - var openParensBefore = nlBefore.split('(').length - 1 - var cleanAfter = nlAfter - for (i = 0; i < openParensBefore; i++) { - cleanAfter = cleanAfter.replace(/\)[+*?]?/, '') - } - nlAfter = cleanAfter +function formatArgs(args) { + const {namespace: name, useColors} = this; - var dollar = '' - if (nlAfter === '' && isSub !== SUBPARSE) { - dollar = '$' - } - var newRe = nlBefore + nlFirst + nlAfter + dollar + nlLast - re = newRe - } + if (useColors) { + const c = this.color; + const colorCode = '\u001B[3' + (c < 8 ? c : '8;5;' + c); + const prefix = ` ${colorCode};1m${name} \u001B[0m`; - // if the re is not "" at this point, then we need to make sure - // it doesn't match against an empty path part. - // Otherwise a/* will match a/, which it should not. - if (re !== '' && hasMagic) { - re = '(?=.)' + re - } + args[0] = prefix + args[0].split('\n').join('\n' + prefix); + args.push(colorCode + 'm+' + module.exports.humanize(this.diff) + '\u001B[0m'); + } else { + args[0] = getDate() + name + ' ' + args[0]; + } +} - if (addPatternStart) { - re = patternStart + re - } +function getDate() { + if (exports.inspectOpts.hideDate) { + return ''; + } + return new Date().toISOString() + ' '; +} - // parsing just a piece of a larger pattern. - if (isSub === SUBPARSE) { - return [re, hasMagic] - } +/** + * Invokes `util.formatWithOptions()` with the specified arguments and writes to stderr. + */ - // skip the regexp for non-magical patterns - // unescape anything in it, though, so that it'll be - // an exact match against a file etc. - if (!hasMagic) { - return globUnescape(pattern) - } +function log(...args) { + return process.stderr.write(util.formatWithOptions(exports.inspectOpts, ...args) + '\n'); +} - var flags = options.nocase ? 'i' : '' - try { - var regExp = new RegExp('^' + re + '$', flags) - } catch (er) /* istanbul ignore next - should be impossible */ { - // If it was an invalid regular expression, then it can't match - // anything. This trick looks for a character after the end of - // the string, which is of course impossible, except in multi-line - // mode, but it's not a /m regex. - return new RegExp('$.') - } +/** + * Save `namespaces`. + * + * @param {String} namespaces + * @api private + */ +function save(namespaces) { + if (namespaces) { + process.env.DEBUG = namespaces; + } else { + // If you set a process.env field to null or undefined, it gets cast to the + // string 'null' or 'undefined'. Just delete instead. + delete process.env.DEBUG; + } +} - regExp._glob = pattern - regExp._src = re +/** + * Load `namespaces`. + * + * @return {String} returns the previously persisted debug modes + * @api private + */ - return regExp +function load() { + return process.env.DEBUG; } -minimatch.makeRe = function (pattern, options) { - return new Minimatch(pattern, options || {}).makeRe() -} +/** + * Init logic for `debug` instances. + * + * Create a new `inspectOpts` object in case `useColors` is set + * differently for a particular `debug` instance. + */ -Minimatch.prototype.makeRe = makeRe -function makeRe () { - if (this.regexp || this.regexp === false) return this.regexp +function init(debug) { + debug.inspectOpts = {}; - // at this point, this.set is a 2d array of partial - // pattern strings, or "**". - // - // It's better to use .match(). This function shouldn't - // be used, really, but it's pretty convenient sometimes, - // when you just want to work with a regex. - var set = this.set + const keys = Object.keys(exports.inspectOpts); + for (let i = 0; i < keys.length; i++) { + debug.inspectOpts[keys[i]] = exports.inspectOpts[keys[i]]; + } +} - if (!set.length) { - this.regexp = false - return this.regexp - } - var options = this.options +module.exports = __nccwpck_require__(897)(exports); - var twoStar = options.noglobstar ? star - : options.dot ? twoStarDot - : twoStarNoDot - var flags = options.nocase ? 'i' : '' +const {formatters} = module.exports; - var re = set.map(function (pattern) { - return pattern.map(function (p) { - return (p === GLOBSTAR) ? twoStar - : (typeof p === 'string') ? regExpEscape(p) - : p._src - }).join('\\\/') - }).join('|') +/** + * Map %o to `util.inspect()`, all on a single line. + */ - // must match entire pattern - // ending in a * or ** will make it less strict. - re = '^(?:' + re + ')$' +formatters.o = function (v) { + this.inspectOpts.colors = this.useColors; + return util.inspect(v, this.inspectOpts) + .split('\n') + .map(str => str.trim()) + .join(' '); +}; - // can match anything, as long as it's not this. - if (this.negate) re = '^(?!' + re + ').*$' +/** + * Map %O to `util.inspect()`, allowing multiple lines if needed. + */ - try { - this.regexp = new RegExp(re, flags) - } catch (ex) /* istanbul ignore next - should be impossible */ { - this.regexp = false - } - return this.regexp -} +formatters.O = function (v) { + this.inspectOpts.colors = this.useColors; + return util.inspect(v, this.inspectOpts); +}; -minimatch.match = function (list, pattern, options) { - options = options || {} - var mm = new Minimatch(pattern, options) - list = list.filter(function (f) { - return mm.match(f) - }) - if (mm.options.nonull && !list.length) { - list.push(pattern) - } - return list -} -Minimatch.prototype.match = function match (f, partial) { - if (typeof partial === 'undefined') partial = this.partial - this.debug('match', f, this.pattern) - // short-circuit in the case of busted things. - // comments, etc. - if (this.comment) return false - if (this.empty) return f === '' +/***/ }), - if (f === '/' && partial) return true +/***/ 3813: +/***/ ((module) => { - var options = this.options - // windows: need to use /, not \ - if (path.sep !== '/') { - f = f.split(path.sep).join('/') - } - // treat the test path as a set of pathparts. - f = f.split(slashSplit) - this.debug(this.pattern, 'split', f) +module.exports = (flag, argv = process.argv) => { + const prefix = flag.startsWith('-') ? '' : (flag.length === 1 ? '-' : '--'); + const position = argv.indexOf(prefix + flag); + const terminatorPosition = argv.indexOf('--'); + return position !== -1 && (terminatorPosition === -1 || position < terminatorPosition); +}; - // just ONE of the pattern sets in this.set needs to match - // in order for it to be valid. If negating, then just one - // match means that we have failed. - // Either way, return on the first hit. - var set = this.set - this.debug(this.pattern, 'set', set) +/***/ }), - // Find the basename of the path by looking for the last non-empty segment - var filename - var i - for (i = f.length - 1; i >= 0; i--) { - filename = f[i] - if (filename) break - } +/***/ 1970: +/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { - for (i = 0; i < set.length; i++) { - var pattern = set[i] - var file = f - if (options.matchBase && pattern.length === 1) { - file = [filename] + +var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { + if (k2 === undefined) k2 = k; + var desc = Object.getOwnPropertyDescriptor(m, k); + if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { + desc = { enumerable: true, get: function() { return m[k]; } }; } - var hit = this.matchOne(file, pattern, partial) - if (hit) { - if (options.flipNegate) return true - return !this.negate + Object.defineProperty(o, k2, desc); +}) : (function(o, m, k, k2) { + if (k2 === undefined) k2 = k; + o[k2] = m[k]; +})); +var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { + Object.defineProperty(o, "default", { enumerable: true, value: v }); +}) : function(o, v) { + o["default"] = v; +}); +var __importStar = (this && this.__importStar) || function (mod) { + if (mod && mod.__esModule) return mod; + var result = {}; + if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); + __setModuleDefault(result, mod); + return result; +}; +var __importDefault = (this && this.__importDefault) || function (mod) { + return (mod && mod.__esModule) ? mod : { "default": mod }; +}; +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.HttpProxyAgent = void 0; +const net = __importStar(__nccwpck_require__(9278)); +const tls = __importStar(__nccwpck_require__(4756)); +const debug_1 = __importDefault(__nccwpck_require__(2830)); +const events_1 = __nccwpck_require__(4434); +const agent_base_1 = __nccwpck_require__(8894); +const url_1 = __nccwpck_require__(7016); +const debug = (0, debug_1.default)('http-proxy-agent'); +/** + * The `HttpProxyAgent` implements an HTTP Agent subclass that connects + * to the specified "HTTP proxy server" in order to proxy HTTP requests. + */ +class HttpProxyAgent extends agent_base_1.Agent { + constructor(proxy, opts) { + super(opts); + this.proxy = typeof proxy === 'string' ? new url_1.URL(proxy) : proxy; + this.proxyHeaders = opts?.headers ?? {}; + debug('Creating new HttpProxyAgent instance: %o', this.proxy.href); + // Trim off the brackets from IPv6 addresses + const host = (this.proxy.hostname || this.proxy.host).replace(/^\[|\]$/g, ''); + const port = this.proxy.port + ? parseInt(this.proxy.port, 10) + : this.proxy.protocol === 'https:' + ? 443 + : 80; + this.connectOpts = { + ...(opts ? omit(opts, 'headers') : null), + host, + port, + }; + } + addRequest(req, opts) { + req._header = null; + this.setRequestProps(req, opts); + // @ts-expect-error `addRequest()` isn't defined in `@types/node` + super.addRequest(req, opts); + } + setRequestProps(req, opts) { + const { proxy } = this; + const protocol = opts.secureEndpoint ? 'https:' : 'http:'; + const hostname = req.getHeader('host') || 'localhost'; + const base = `${protocol}//${hostname}`; + const url = new url_1.URL(req.path, base); + if (opts.port !== 80) { + url.port = String(opts.port); + } + // Change the `http.ClientRequest` instance's "path" field + // to the absolute path of the URL that will be requested. + req.path = String(url); + // Inject the `Proxy-Authorization` header if necessary. + const headers = typeof this.proxyHeaders === 'function' + ? this.proxyHeaders() + : { ...this.proxyHeaders }; + if (proxy.username || proxy.password) { + const auth = `${decodeURIComponent(proxy.username)}:${decodeURIComponent(proxy.password)}`; + headers['Proxy-Authorization'] = `Basic ${Buffer.from(auth).toString('base64')}`; + } + if (!headers['Proxy-Connection']) { + headers['Proxy-Connection'] = this.keepAlive + ? 'Keep-Alive' + : 'close'; + } + for (const name of Object.keys(headers)) { + const value = headers[name]; + if (value) { + req.setHeader(name, value); + } + } + } + async connect(req, opts) { + req._header = null; + if (!req.path.includes('://')) { + this.setRequestProps(req, opts); + } + // At this point, the http ClientRequest's internal `_header` field + // might have already been set. If this is the case then we'll need + // to re-generate the string since we just changed the `req.path`. + let first; + let endOfHeaders; + debug('Regenerating stored HTTP header string for request'); + req._implicitHeader(); + if (req.outputData && req.outputData.length > 0) { + debug('Patching connection write() output buffer with updated header'); + first = req.outputData[0].data; + endOfHeaders = first.indexOf('\r\n\r\n') + 4; + req.outputData[0].data = + req._header + first.substring(endOfHeaders); + debug('Output buffer: %o', req.outputData[0].data); + } + // Create a socket connection to the proxy server. + let socket; + if (this.proxy.protocol === 'https:') { + debug('Creating `tls.Socket`: %o', this.connectOpts); + socket = tls.connect(this.connectOpts); + } + else { + debug('Creating `net.Socket`: %o', this.connectOpts); + socket = net.connect(this.connectOpts); + } + // Wait for the socket's `connect` event, so that this `callback()` + // function throws instead of the `http` request machinery. This is + // important for i.e. `PacProxyAgent` which determines a failed proxy + // connection via the `callback()` function throwing. + await (0, events_1.once)(socket, 'connect'); + return socket; } - } - - // didn't get any hits. this is success if it's a negative - // pattern, failure otherwise. - if (options.flipNegate) return false - return this.negate } - -// set partial to true to test if, for example, -// "/a/b" matches the start of "/*/b/*/d" -// Partial means, if you run out of file before you run -// out of pattern, then that's fine, as long as all -// the parts match. -Minimatch.prototype.matchOne = function (file, pattern, partial) { - if (pattern.indexOf(GLOBSTAR) !== -1) { - return this._matchGlobstar(file, pattern, partial, 0, 0) - } - return this._matchOne(file, pattern, partial, 0, 0) +HttpProxyAgent.protocols = ['http', 'https']; +exports.HttpProxyAgent = HttpProxyAgent; +function omit(obj, ...keys) { + const ret = {}; + let key; + for (key in obj) { + if (!keys.includes(key)) { + ret[key] = obj[key]; + } + } + return ret; } +//# sourceMappingURL=index.js.map -Minimatch.prototype._matchGlobstar = function (file, pattern, partial, fileIndex, patternIndex) { - var i - - // find first globstar from patternIndex - var firstgs = -1 - for (i = patternIndex; i < pattern.length; i++) { - if (pattern[i] === GLOBSTAR) { firstgs = i; break } - } +/***/ }), - // find last globstar - var lastgs = -1 - for (i = pattern.length - 1; i >= 0; i--) { - if (pattern[i] === GLOBSTAR) { lastgs = i; break } - } +/***/ 3669: +/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { - var head = pattern.slice(patternIndex, firstgs) - var body = partial ? pattern.slice(firstgs + 1) : pattern.slice(firstgs + 1, lastgs) - var tail = partial ? [] : pattern.slice(lastgs + 1) - // check the head - if (head.length) { - var fileHead = file.slice(fileIndex, fileIndex + head.length) - if (!this._matchOne(fileHead, head, partial, 0, 0)) { - return false +var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { + if (k2 === undefined) k2 = k; + var desc = Object.getOwnPropertyDescriptor(m, k); + if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { + desc = { enumerable: true, get: function() { return m[k]; } }; } - fileIndex += head.length - } - - // check the tail - var fileTailMatch = 0 - if (tail.length) { - if (tail.length + fileIndex > file.length) return false - - var tailStart = file.length - tail.length - if (this._matchOne(file, tail, partial, tailStart, 0)) { - fileTailMatch = tail.length - } else { - // affordance for stuff like a/**/* matching a/b/ - if (file[file.length - 1] !== '' || - fileIndex + tail.length === file.length) { - return false - } - tailStart-- - if (!this._matchOne(file, tail, partial, tailStart, 0)) { - return false - } - fileTailMatch = tail.length + 1 + Object.defineProperty(o, k2, desc); +}) : (function(o, m, k, k2) { + if (k2 === undefined) k2 = k; + o[k2] = m[k]; +})); +var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { + Object.defineProperty(o, "default", { enumerable: true, value: v }); +}) : function(o, v) { + o["default"] = v; +}); +var __importStar = (this && this.__importStar) || function (mod) { + if (mod && mod.__esModule) return mod; + var result = {}; + if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); + __setModuleDefault(result, mod); + return result; +}; +var __importDefault = (this && this.__importDefault) || function (mod) { + return (mod && mod.__esModule) ? mod : { "default": mod }; +}; +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.HttpsProxyAgent = void 0; +const net = __importStar(__nccwpck_require__(9278)); +const tls = __importStar(__nccwpck_require__(4756)); +const assert_1 = __importDefault(__nccwpck_require__(2613)); +const debug_1 = __importDefault(__nccwpck_require__(2830)); +const agent_base_1 = __nccwpck_require__(8894); +const url_1 = __nccwpck_require__(7016); +const parse_proxy_response_1 = __nccwpck_require__(7943); +const debug = (0, debug_1.default)('https-proxy-agent'); +const setServernameFromNonIpHost = (options) => { + if (options.servername === undefined && + options.host && + !net.isIP(options.host)) { + return { + ...options, + servername: options.host, + }; } - } - - // if body is empty (single ** between head and tail) - if (!body.length) { - var sawSome = !!fileTailMatch - for (i = fileIndex; i < file.length - fileTailMatch; i++) { - var f = String(file[i]) - sawSome = true - if (f === '.' || f === '..' || - (!this.options.dot && f.charAt(0) === '.')) { - return false - } + return options; +}; +/** + * The `HttpsProxyAgent` implements an HTTP Agent subclass that connects to + * the specified "HTTP(s) proxy server" in order to proxy HTTPS requests. + * + * Outgoing HTTP requests are first tunneled through the proxy server using the + * `CONNECT` HTTP request method to establish a connection to the proxy server, + * and then the proxy server connects to the destination target and issues the + * HTTP request from the proxy server. + * + * `https:` requests have their socket connection upgraded to TLS once + * the connection to the proxy server has been established. + */ +class HttpsProxyAgent extends agent_base_1.Agent { + constructor(proxy, opts) { + super(opts); + this.options = { path: undefined }; + this.proxy = typeof proxy === 'string' ? new url_1.URL(proxy) : proxy; + this.proxyHeaders = opts?.headers ?? {}; + debug('Creating new HttpsProxyAgent instance: %o', this.proxy.href); + // Trim off the brackets from IPv6 addresses + const host = (this.proxy.hostname || this.proxy.host).replace(/^\[|\]$/g, ''); + const port = this.proxy.port + ? parseInt(this.proxy.port, 10) + : this.proxy.protocol === 'https:' + ? 443 + : 80; + this.connectOpts = { + // Attempt to negotiate http/1.1 for proxy servers that support http/2 + ALPNProtocols: ['http/1.1'], + ...(opts ? omit(opts, 'headers') : null), + host, + port, + }; } - return partial || sawSome - } - - // split body into segments at each GLOBSTAR - var bodySegments = [[[], 0]] - var currentBody = bodySegments[0] - var nonGsParts = 0 - var nonGsPartsSums = [0] - for (var bi = 0; bi < body.length; bi++) { - var b = body[bi] - if (b === GLOBSTAR) { - nonGsPartsSums.push(nonGsParts) - currentBody = [[], 0] - bodySegments.push(currentBody) - } else { - currentBody[0].push(b) - nonGsParts++ + /** + * Called when the node-core HTTP client library is creating a + * new HTTP request. + */ + async connect(req, opts) { + const { proxy } = this; + if (!opts.host) { + throw new TypeError('No "host" provided'); + } + // Create a socket connection to the proxy server. + let socket; + if (proxy.protocol === 'https:') { + debug('Creating `tls.Socket`: %o', this.connectOpts); + socket = tls.connect(setServernameFromNonIpHost(this.connectOpts)); + } + else { + debug('Creating `net.Socket`: %o', this.connectOpts); + socket = net.connect(this.connectOpts); + } + const headers = typeof this.proxyHeaders === 'function' + ? this.proxyHeaders() + : { ...this.proxyHeaders }; + const host = net.isIPv6(opts.host) ? `[${opts.host}]` : opts.host; + let payload = `CONNECT ${host}:${opts.port} HTTP/1.1\r\n`; + // Inject the `Proxy-Authorization` header if necessary. + if (proxy.username || proxy.password) { + const auth = `${decodeURIComponent(proxy.username)}:${decodeURIComponent(proxy.password)}`; + headers['Proxy-Authorization'] = `Basic ${Buffer.from(auth).toString('base64')}`; + } + headers.Host = `${host}:${opts.port}`; + if (!headers['Proxy-Connection']) { + headers['Proxy-Connection'] = this.keepAlive + ? 'Keep-Alive' + : 'close'; + } + for (const name of Object.keys(headers)) { + payload += `${name}: ${headers[name]}\r\n`; + } + const proxyResponsePromise = (0, parse_proxy_response_1.parseProxyResponse)(socket); + socket.write(`${payload}\r\n`); + const { connect, buffered } = await proxyResponsePromise; + req.emit('proxyConnect', connect); + this.emit('proxyConnect', connect, req); + if (connect.statusCode === 200) { + req.once('socket', resume); + if (opts.secureEndpoint) { + // The proxy is connecting to a TLS server, so upgrade + // this socket connection to a TLS connection. + debug('Upgrading socket connection to TLS'); + return tls.connect({ + ...omit(setServernameFromNonIpHost(opts), 'host', 'path', 'port'), + socket, + }); + } + return socket; + } + // Some other status code that's not 200... need to re-play the HTTP + // header "data" events onto the socket once the HTTP machinery is + // attached so that the node core `http` can parse and handle the + // error status code. + // Close the original socket, and a new "fake" socket is returned + // instead, so that the proxy doesn't get the HTTP request + // written to it (which may contain `Authorization` headers or other + // sensitive data). + // + // See: https://hackerone.com/reports/541502 + socket.destroy(); + const fakeSocket = new net.Socket({ writable: false }); + fakeSocket.readable = true; + // Need to wait for the "socket" event to re-play the "data" events. + req.once('socket', (s) => { + debug('Replaying proxy buffer for failed request'); + (0, assert_1.default)(s.listenerCount('data') > 0); + // Replay the "buffered" Buffer onto the fake `socket`, since at + // this point the HTTP module machinery has been hooked up for + // the user. + s.push(buffered); + s.push(null); + }); + return fakeSocket; } - } - - var idx = bodySegments.length - 1 - var fileLength = file.length - fileTailMatch - for (var si = 0; si < bodySegments.length; si++) { - bodySegments[si][1] = fileLength - - (nonGsPartsSums[idx--] + bodySegments[si][0].length) - } - - return !!this._matchGlobStarBodySections( - file, bodySegments, fileIndex, 0, partial, 0, !!fileTailMatch - ) } - -// return false for "nope, not matching" -// return null for "not matching, cannot keep trying" -Minimatch.prototype._matchGlobStarBodySections = function ( - file, bodySegments, fileIndex, bodyIndex, partial, globStarDepth, sawTail -) { - var bs = bodySegments[bodyIndex] - if (!bs) { - // just make sure there are no bad dots - for (var i = fileIndex; i < file.length; i++) { - sawTail = true - var f = file[i] - if (f === '.' || f === '..' || - (!this.options.dot && f.charAt(0) === '.')) { - return false - } - } - return sawTail - } - - var body = bs[0] - var after = bs[1] - while (fileIndex <= after) { - var m = this._matchOne( - file.slice(0, fileIndex + body.length), - body, - partial, - fileIndex, - 0 - ) - // if limit exceeded, no match. intentional false negative, - // acceptable break in correctness for security. - if (m && globStarDepth < this.maxGlobstarRecursion) { - var sub = this._matchGlobStarBodySections( - file, bodySegments, - fileIndex + body.length, bodyIndex + 1, - partial, globStarDepth + 1, sawTail - ) - if (sub !== false) { - return sub - } - } - var f = file[fileIndex] - if (f === '.' || f === '..' || - (!this.options.dot && f.charAt(0) === '.')) { - return false - } - fileIndex++ - } - return partial || null +HttpsProxyAgent.protocols = ['http', 'https']; +exports.HttpsProxyAgent = HttpsProxyAgent; +function resume(socket) { + socket.resume(); } - -Minimatch.prototype._matchOne = function (file, pattern, partial, fileIndex, patternIndex) { - var fi, pi, fl, pl - for ( - fi = fileIndex, pi = patternIndex, fl = file.length, pl = pattern.length - ; (fi < fl) && (pi < pl) - ; fi++, pi++ - ) { - this.debug('matchOne loop') - var p = pattern[pi] - var f = file[fi] - - this.debug(pattern, p, f) - - // should be impossible. - // some invalid regexp stuff in the set. - /* istanbul ignore if */ - if (p === false || p === GLOBSTAR) return false - - // something other than ** - // non-magic patterns just have to match exactly - // patterns with magic have been turned into regexps. - var hit - if (typeof p === 'string') { - hit = f === p - this.debug('string match', p, f, hit) - } else { - hit = f.match(p) - this.debug('pattern match', p, f, hit) +function omit(obj, ...keys) { + const ret = {}; + let key; + for (key in obj) { + if (!keys.includes(key)) { + ret[key] = obj[key]; + } } + return ret; +} +//# sourceMappingURL=index.js.map - if (!hit) return false - } - - // now either we fell off the end of the pattern, or we're done. - if (fi === fl && pi === pl) { - // ran out of pattern and filename at the same time. - // an exact hit! - return true - } else if (fi === fl) { - // ran out of file, but still had pattern left. - // this is ok if we're doing the match as part of - // a glob fs traversal. - return partial - } else /* istanbul ignore else */ if (pi === pl) { - // ran out of pattern, still have file left. - // this is only acceptable if we're on the very last - // empty segment of a file with a trailing slash. - // a/* should match a/b/ - return (fi === fl - 1) && (file[fi] === '') - } +/***/ }), - // should be unreachable. - /* istanbul ignore next */ - throw new Error('wtf?') -} +/***/ 7943: +/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { -// replace stuff like \* with * -function globUnescape (s) { - return s.replace(/\\(.)/g, '$1') -} -function regExpEscape (s) { - return s.replace(/[-[\]{}()*+?.,\\^$|#\s]/g, '\\$&') +var __importDefault = (this && this.__importDefault) || function (mod) { + return (mod && mod.__esModule) ? mod : { "default": mod }; +}; +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.parseProxyResponse = void 0; +const debug_1 = __importDefault(__nccwpck_require__(2830)); +const debug = (0, debug_1.default)('https-proxy-agent:parse-proxy-response'); +function parseProxyResponse(socket) { + return new Promise((resolve, reject) => { + // we need to buffer any HTTP traffic that happens with the proxy before we get + // the CONNECT response, so that if the response is anything other than an "200" + // response code, then we can re-play the "data" events on the socket once the + // HTTP parser is hooked up... + let buffersLength = 0; + const buffers = []; + function read() { + const b = socket.read(); + if (b) + ondata(b); + else + socket.once('readable', read); + } + function cleanup() { + socket.removeListener('end', onend); + socket.removeListener('error', onerror); + socket.removeListener('readable', read); + } + function onend() { + cleanup(); + debug('onend'); + reject(new Error('Proxy connection ended before receiving CONNECT response')); + } + function onerror(err) { + cleanup(); + debug('onerror %o', err); + reject(err); + } + function ondata(b) { + buffers.push(b); + buffersLength += b.length; + const buffered = Buffer.concat(buffers, buffersLength); + const endOfHeaders = buffered.indexOf('\r\n\r\n'); + if (endOfHeaders === -1) { + // keep buffering + debug('have not received end of HTTP headers yet...'); + read(); + return; + } + const headerParts = buffered + .slice(0, endOfHeaders) + .toString('ascii') + .split('\r\n'); + const firstLine = headerParts.shift(); + if (!firstLine) { + socket.destroy(); + return reject(new Error('No header received from proxy CONNECT response')); + } + const firstLineParts = firstLine.split(' '); + const statusCode = +firstLineParts[1]; + const statusText = firstLineParts.slice(2).join(' '); + const headers = {}; + for (const header of headerParts) { + if (!header) + continue; + const firstColon = header.indexOf(':'); + if (firstColon === -1) { + socket.destroy(); + return reject(new Error(`Invalid header from proxy CONNECT response: "${header}"`)); + } + const key = header.slice(0, firstColon).toLowerCase(); + const value = header.slice(firstColon + 1).trimStart(); + const current = headers[key]; + if (typeof current === 'string') { + headers[key] = [current, value]; + } + else if (Array.isArray(current)) { + current.push(value); + } + else { + headers[key] = value; + } + } + debug('got proxy server response: %o %o', firstLine, headers); + cleanup(); + resolve({ + connect: { + statusCode, + statusText, + headers, + }, + buffered, + }); + } + socket.on('error', onerror); + socket.on('end', onend); + read(); + }); } - +exports.parseProxyResponse = parseProxyResponse; +//# sourceMappingURL=parse-proxy-response.js.map /***/ }), @@ -9070,7 +8774,7 @@ module.exports = clean const eq = __nccwpck_require__(5082) -const neq = __nccwpck_require__(4974) +const neq = __nccwpck_require__(2593) const gt = __nccwpck_require__(6599) const gte = __nccwpck_require__(1236) const lt = __nccwpck_require__(3872) @@ -9415,7 +9119,7 @@ module.exports = minor /***/ }), -/***/ 4974: +/***/ 2593: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { @@ -9632,7 +9336,7 @@ const rsort = __nccwpck_require__(7192) const gt = __nccwpck_require__(6599) const lt = __nccwpck_require__(3872) const eq = __nccwpck_require__(5082) -const neq = __nccwpck_require__(4974) +const neq = __nccwpck_require__(2593) const gte = __nccwpck_require__(1236) const lte = __nccwpck_require__(6717) const cmp = __nccwpck_require__(8646) @@ -39003,6 +38707,340 @@ exports.w = { /***/ }), +/***/ 2649: +/***/ ((__unused_webpack_module, exports) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.range = exports.balanced = void 0; +const balanced = (a, b, str) => { + const ma = a instanceof RegExp ? maybeMatch(a, str) : a; + const mb = b instanceof RegExp ? maybeMatch(b, str) : b; + const r = ma !== null && mb != null && (0, exports.range)(ma, mb, str); + return (r && { + start: r[0], + end: r[1], + pre: str.slice(0, r[0]), + body: str.slice(r[0] + ma.length, r[1]), + post: str.slice(r[1] + mb.length), + }); +}; +exports.balanced = balanced; +const maybeMatch = (reg, str) => { + const m = str.match(reg); + return m ? m[0] : null; +}; +const range = (a, b, str) => { + let begs, beg, left, right = undefined, result; + let ai = str.indexOf(a); + let bi = str.indexOf(b, ai + 1); + let i = ai; + if (ai >= 0 && bi > 0) { + if (a === b) { + return [ai, bi]; + } + begs = []; + left = str.length; + while (i >= 0 && !result) { + if (i === ai) { + begs.push(i); + ai = str.indexOf(a, i + 1); + } + else if (begs.length === 1) { + const r = begs.pop(); + if (r !== undefined) + result = [r, bi]; + } + else { + beg = begs.pop(); + if (beg !== undefined && beg < left) { + left = beg; + right = bi; + } + bi = str.indexOf(b, i + 1); + } + i = ai < bi && ai >= 0 ? ai : bi; + } + if (begs.length && right !== undefined) { + result = [left, right]; + } + } + return result; +}; +exports.range = range; +//# sourceMappingURL=index.js.map + +/***/ }), + +/***/ 8968: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.EXPANSION_MAX_LENGTH = exports.EXPANSION_MAX = void 0; +exports.expand = expand; +const balanced_match_1 = __nccwpck_require__(2649); +const escSlash = '\0SLASH' + Math.random() + '\0'; +const escOpen = '\0OPEN' + Math.random() + '\0'; +const escClose = '\0CLOSE' + Math.random() + '\0'; +const escComma = '\0COMMA' + Math.random() + '\0'; +const escPeriod = '\0PERIOD' + Math.random() + '\0'; +const escSlashPattern = new RegExp(escSlash, 'g'); +const escOpenPattern = new RegExp(escOpen, 'g'); +const escClosePattern = new RegExp(escClose, 'g'); +const escCommaPattern = new RegExp(escComma, 'g'); +const escPeriodPattern = new RegExp(escPeriod, 'g'); +const slashPattern = /\\\\/g; +const openPattern = /\\{/g; +const closePattern = /\\}/g; +const commaPattern = /\\,/g; +const periodPattern = /\\\./g; +exports.EXPANSION_MAX = 100_000; +// `EXPANSION_MAX` caps the *number* of expansions, but not their length. An +// input like `'{a,b}'.repeat(1500)` stays under that count - its output is +// truncated to 100k results - while making every result ~1500 characters +// long. The result set, and the intermediate arrays built while combining +// brace sets, then grow large enough to exhaust memory and crash the process +// (CVE-2026-14257). `EXPANSION_MAX_LENGTH` bounds the total number of +// characters the accumulator may hold at any point, so memory stays flat no +// matter how many brace groups are chained. The limit sits well above any +// realistic expansion (100k results hitting `EXPANSION_MAX` measure ~1M +// characters) so legitimate input is unaffected. +exports.EXPANSION_MAX_LENGTH = 4_000_000; +function numeric(str) { + return !isNaN(str) ? parseInt(str, 10) : str.charCodeAt(0); +} +function escapeBraces(str) { + return str + .replace(slashPattern, escSlash) + .replace(openPattern, escOpen) + .replace(closePattern, escClose) + .replace(commaPattern, escComma) + .replace(periodPattern, escPeriod); +} +function unescapeBraces(str) { + return str + .replace(escSlashPattern, '\\') + .replace(escOpenPattern, '{') + .replace(escClosePattern, '}') + .replace(escCommaPattern, ',') + .replace(escPeriodPattern, '.'); +} +/** + * Basically just str.split(","), but handling cases + * where we have nested braced sections, which should be + * treated as individual members, like {a,{b,c},d} + */ +function parseCommaParts(str) { + if (!str) { + return ['']; + } + const parts = []; + const m = (0, balanced_match_1.balanced)('{', '}', str); + if (!m) { + return str.split(','); + } + const { pre, body, post } = m; + const p = pre.split(','); + p[p.length - 1] += '{' + body + '}'; + const postParts = parseCommaParts(post); + if (post.length) { + ; + p[p.length - 1] += postParts.shift(); + p.push.apply(p, postParts); + } + parts.push.apply(parts, p); + return parts; +} +function expand(str, options = {}) { + if (!str) { + return []; + } + const { max = exports.EXPANSION_MAX, maxLength = exports.EXPANSION_MAX_LENGTH } = options; + // I don't know why Bash 4.3 does this, but it does. + // Anything starting with {} will have the first two bytes preserved + // but *only* at the top level, so {},a}b will not expand to anything, + // but a{},b}c will be expanded to [a}c,abc]. + // One could argue that this is a bug in Bash, but since the goal of + // this module is to match Bash's rules, we escape a leading {} + if (str.slice(0, 2) === '{}') { + str = '\\{\\}' + str.slice(2); + } + return expand_(escapeBraces(str), max, maxLength, true).map(unescapeBraces); +} +function embrace(str) { + return '{' + str + '}'; +} +function isPadded(el) { + return /^-?0\d/.test(el); +} +function lte(i, y) { + return i <= y; +} +function gte(i, y) { + return i >= y; +} +// Build `{ acc[a] + pre + values[v] }` for every combination, capping the +// number of results at `max` and the total number of characters at `maxLength`. +// This is the one place output grows, so bounding it here keeps the single +// accumulator - and therefore memory - flat regardless of how many brace groups +// are combined (CVE-2026-14257). +function combine(acc, pre, values, max, maxLength, dropEmpties) { + const out = []; + let length = 0; + for (let a = 0; a < acc.length; a++) { + for (let v = 0; v < values.length; v++) { + if (out.length >= max) + return out; + const expansion = acc[a] + pre + values[v]; + // Bash drops empty results at the top level. Skip them before they count + // against `max`, so `max` bounds the number of *kept* results. + if (dropEmpties && !expansion) + continue; + if (length + expansion.length > maxLength) + return out; + out.push(expansion); + length += expansion.length; + } + } + return out; +} +// The expansion values of a single numeric (`1..5`) or alphabetic (`a..e..2`) +// sequence body. +function expandSequence(body, isAlphaSequence, max) { + const n = body.split(/\.\./); + const N = []; + // A sequence body always splits into two or three parts, but the compiler + // can't know that. + /* c8 ignore start */ + if (n[0] === undefined || n[1] === undefined) { + return N; + } + /* c8 ignore stop */ + const x = numeric(n[0]); + const y = numeric(n[1]); + const width = Math.max(n[0].length, n[1].length); + let incr = n.length === 3 && n[2] !== undefined ? + Math.max(Math.abs(numeric(n[2])), 1) + : 1; + let test = lte; + const reverse = y < x; + if (reverse) { + incr *= -1; + test = gte; + } + const pad = n.some(isPadded); + for (let i = x; test(i, y) && N.length < max; i += incr) { + let c; + if (isAlphaSequence) { + c = String.fromCharCode(i); + if (c === '\\') { + c = ''; + } + } + else { + c = String(i); + if (pad) { + const need = width - c.length; + if (need > 0) { + const z = new Array(need + 1).join('0'); + if (i < 0) { + c = '-' + z + c.slice(1); + } + else { + c = z + c; + } + } + } + } + N.push(c); + } + return N; +} +function expand_(str, max, maxLength, isTop) { + // Consume the string's top-level brace groups left to right, threading a + // running set of combined prefixes (`acc`). Expanding the tail iteratively - + // rather than recursing on `m.post` once per group - keeps the native stack + // depth constant, so deeply chained input (`'{a,b}'.repeat(3000)`) can no + // longer overflow the stack, and leaves a single accumulator whose size + // `maxLength` bounds directly (CVE-2026-14257). + let acc = ['']; + // Bash drops empty results, but only when the *first* top-level group is a + // comma set - a sequence like `{a..\}` may legitimately yield ''. The drop + // is on the final strings, so it is applied to whichever `combine` produces + // them (the one with no brace set left in the tail). + let dropEmpties = false; + let firstGroup = true; + for (;;) { + const m = (0, balanced_match_1.balanced)('{', '}', str); + // No brace set left: the rest of the string is literal. + if (!m) { + return combine(acc, str, [''], max, maxLength, dropEmpties); + } + // no need to expand pre, since it is guaranteed to be free of brace-sets + const pre = m.pre; + if (/\$$/.test(pre)) { + acc = combine(acc, pre + '{' + m.body + '}', [''], max, maxLength, dropEmpties && !m.post.length); + firstGroup = false; + if (!m.post.length) + break; + str = m.post; + continue; + } + const isNumericSequence = /^-?\d+\.\.-?\d+(?:\.\.-?\d+)?$/.test(m.body); + const isAlphaSequence = /^[a-zA-Z]\.\.[a-zA-Z](?:\.\.-?\d+)?$/.test(m.body); + const isSequence = isNumericSequence || isAlphaSequence; + const isOptions = m.body.indexOf(',') >= 0; + if (!isSequence && !isOptions) { + // {a},b} + if (m.post.match(/,(?!,).*\}/)) { + str = m.pre + '{' + m.body + escClose + m.post; + isTop = true; + continue; + } + // Nothing here expands, so the whole remaining string is literal. + return combine(acc, pre + '{' + m.body + '}' + m.post, [''], max, maxLength, dropEmpties); + } + if (firstGroup) { + dropEmpties = isTop && !isSequence; + firstGroup = false; + } + let values; + if (isSequence) { + values = expandSequence(m.body, isAlphaSequence, max); + } + else { + let n = parseCommaParts(m.body); + if (n.length === 1 && n[0] !== undefined) { + // x{{a,b}}y ==> x{a}y x{b}y + n = expand_(n[0], max, maxLength, false).map(embrace); + //XXX is this necessary? Can't seem to hit it in tests. + /* c8 ignore start */ + if (n.length === 1) { + acc = combine(acc, pre + n[0], [''], max, maxLength, dropEmpties && !m.post.length); + if (!m.post.length) + break; + str = m.post; + continue; + } + /* c8 ignore stop */ + } + values = []; + for (let j = 0; j < n.length; j++) { + values.push.apply(values, expand_(n[j], max, maxLength, false)); + } + } + acc = combine(acc, pre, values, max, maxLength, dropEmpties && !m.post.length); + if (!m.post.length) + break; + str = m.post; + } + return acc; +} +//# sourceMappingURL=index.js.map + +/***/ }), + /***/ 8658: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { @@ -42551,8 +42589,8 @@ function internal_pattern_helper_partialMatch(patterns, itemPath) { return patterns.some(x => !x.negate && x.partialMatch(itemPath)); } //# sourceMappingURL=internal-pattern-helper.js.map -// EXTERNAL MODULE: ./node_modules/minimatch/minimatch.js -var minimatch = __nccwpck_require__(3772); +// EXTERNAL MODULE: ./node_modules/@actions/cache/node_modules/minimatch/minimatch.js +var minimatch = __nccwpck_require__(4974); ;// CONCATENATED MODULE: ./node_modules/@actions/cache/node_modules/@actions/glob/lib/internal-path.js @@ -89565,7 +89603,7 @@ function partialMatch(patterns, itemPath) { return patterns.some(x => !x.negate && x.partialMatch(itemPath)); } //# sourceMappingURL=internal-pattern-helper.js.map -;// CONCATENATED MODULE: ./node_modules/@actions/glob/node_modules/balanced-match/dist/esm/index.js +;// CONCATENATED MODULE: ./node_modules/balanced-match/dist/esm/index.js const balanced = (a, b, str) => { const ma = a instanceof RegExp ? maybeMatch(a, str) : a; const mb = b instanceof RegExp ? maybeMatch(b, str) : b; @@ -89620,7 +89658,7 @@ const esm_range = (a, b, str) => { return result; }; //# sourceMappingURL=index.js.map -;// CONCATENATED MODULE: ./node_modules/@actions/glob/node_modules/brace-expansion/dist/esm/index.js +;// CONCATENATED MODULE: ./node_modules/brace-expansion/dist/esm/index.js const escSlash = '\0SLASH' + Math.random() + '\0'; const escOpen = '\0OPEN' + Math.random() + '\0'; @@ -89638,6 +89676,17 @@ const closePattern = /\\}/g; const commaPattern = /\\,/g; const periodPattern = /\\\./g; const EXPANSION_MAX = 100_000; +// `EXPANSION_MAX` caps the *number* of expansions, but not their length. An +// input like `'{a,b}'.repeat(1500)` stays under that count - its output is +// truncated to 100k results - while making every result ~1500 characters +// long. The result set, and the intermediate arrays built while combining +// brace sets, then grow large enough to exhaust memory and crash the process +// (CVE-2026-14257). `EXPANSION_MAX_LENGTH` bounds the total number of +// characters the accumulator may hold at any point, so memory stays flat no +// matter how many brace groups are chained. The limit sits well above any +// realistic expansion (100k results hitting `EXPANSION_MAX` measure ~1M +// characters) so legitimate input is unaffected. +const EXPANSION_MAX_LENGTH = 4_000_000; function numeric(str) { return !isNaN(str) ? parseInt(str, 10) : str.charCodeAt(0); } @@ -89687,7 +89736,7 @@ function expand(str, options = {}) { if (!str) { return []; } - const { max = EXPANSION_MAX } = options; + const { max = EXPANSION_MAX, maxLength = EXPANSION_MAX_LENGTH } = options; // I don't know why Bash 4.3 does this, but it does. // Anything starting with {} will have the first two bytes preserved // but *only* at the top level, so {},a}b will not expand to anything, @@ -89697,7 +89746,7 @@ function expand(str, options = {}) { if (str.slice(0, 2) === '{}') { str = '\\{\\}' + str.slice(2); } - return expand_(escapeBraces(str), max, true).map(unescapeBraces); + return expand_(escapeBraces(str), max, maxLength, true).map(unescapeBraces); } function embrace(str) { return '{' + str + '}'; @@ -89711,22 +89760,113 @@ function lte(i, y) { function gte(i, y) { return i >= y; } -function expand_(str, max, isTop) { - /** @type {string[]} */ - const expansions = []; - const m = balanced('{', '}', str); - if (!m) - return [str]; - // no need to expand pre, since it is guaranteed to be free of brace-sets - const pre = m.pre; - const post = m.post.length ? expand_(m.post, max, false) : ['']; - if (/\$$/.test(m.pre)) { - for (let k = 0; k < post.length && k < max; k++) { - const expansion = pre + '{' + m.body + '}' + post[k]; - expansions.push(expansion); +// Build `{ acc[a] + pre + values[v] }` for every combination, capping the +// number of results at `max` and the total number of characters at `maxLength`. +// This is the one place output grows, so bounding it here keeps the single +// accumulator - and therefore memory - flat regardless of how many brace groups +// are combined (CVE-2026-14257). +function combine(acc, pre, values, max, maxLength, dropEmpties) { + const out = []; + let length = 0; + for (let a = 0; a < acc.length; a++) { + for (let v = 0; v < values.length; v++) { + if (out.length >= max) + return out; + const expansion = acc[a] + pre + values[v]; + // Bash drops empty results at the top level. Skip them before they count + // against `max`, so `max` bounds the number of *kept* results. + if (dropEmpties && !expansion) + continue; + if (length + expansion.length > maxLength) + return out; + out.push(expansion); + length += expansion.length; } } - else { + return out; +} +// The expansion values of a single numeric (`1..5`) or alphabetic (`a..e..2`) +// sequence body. +function expandSequence(body, isAlphaSequence, max) { + const n = body.split(/\.\./); + const N = []; + // A sequence body always splits into two or three parts, but the compiler + // can't know that. + /* c8 ignore start */ + if (n[0] === undefined || n[1] === undefined) { + return N; + } + /* c8 ignore stop */ + const x = numeric(n[0]); + const y = numeric(n[1]); + const width = Math.max(n[0].length, n[1].length); + let incr = n.length === 3 && n[2] !== undefined ? + Math.max(Math.abs(numeric(n[2])), 1) + : 1; + let test = lte; + const reverse = y < x; + if (reverse) { + incr *= -1; + test = gte; + } + const pad = n.some(isPadded); + for (let i = x; test(i, y) && N.length < max; i += incr) { + let c; + if (isAlphaSequence) { + c = String.fromCharCode(i); + if (c === '\\') { + c = ''; + } + } + else { + c = String(i); + if (pad) { + const need = width - c.length; + if (need > 0) { + const z = new Array(need + 1).join('0'); + if (i < 0) { + c = '-' + z + c.slice(1); + } + else { + c = z + c; + } + } + } + } + N.push(c); + } + return N; +} +function expand_(str, max, maxLength, isTop) { + // Consume the string's top-level brace groups left to right, threading a + // running set of combined prefixes (`acc`). Expanding the tail iteratively - + // rather than recursing on `m.post` once per group - keeps the native stack + // depth constant, so deeply chained input (`'{a,b}'.repeat(3000)`) can no + // longer overflow the stack, and leaves a single accumulator whose size + // `maxLength` bounds directly (CVE-2026-14257). + let acc = ['']; + // Bash drops empty results, but only when the *first* top-level group is a + // comma set - a sequence like `{a..\}` may legitimately yield ''. The drop + // is on the final strings, so it is applied to whichever `combine` produces + // them (the one with no brace set left in the tail). + let dropEmpties = false; + let firstGroup = true; + for (;;) { + const m = balanced('{', '}', str); + // No brace set left: the rest of the string is literal. + if (!m) { + return combine(acc, str, [''], max, maxLength, dropEmpties); + } + // no need to expand pre, since it is guaranteed to be free of brace-sets + const pre = m.pre; + if (/\$$/.test(pre)) { + acc = combine(acc, pre + '{' + m.body + '}', [''], max, maxLength, dropEmpties && !m.post.length); + firstGroup = false; + if (!m.post.length) + break; + str = m.post; + continue; + } const isNumericSequence = /^-?\d+\.\.-?\d+(?:\.\.-?\d+)?$/.test(m.body); const isAlphaSequence = /^[a-zA-Z]\.\.[a-zA-Z](?:\.\.-?\d+)?$/.test(m.body); const isSequence = isNumericSequence || isAlphaSequence; @@ -89735,87 +89875,47 @@ function expand_(str, max, isTop) { // {a},b} if (m.post.match(/,(?!,).*\}/)) { str = m.pre + '{' + m.body + escClose + m.post; - return expand_(str, max, true); + isTop = true; + continue; } - return [str]; + // Nothing here expands, so the whole remaining string is literal. + return combine(acc, pre + '{' + m.body + '}' + m.post, [''], max, maxLength, dropEmpties); } - let n; + if (firstGroup) { + dropEmpties = isTop && !isSequence; + firstGroup = false; + } + let values; if (isSequence) { - n = m.body.split(/\.\./); + values = expandSequence(m.body, isAlphaSequence, max); } else { - n = parseCommaParts(m.body); + let n = parseCommaParts(m.body); if (n.length === 1 && n[0] !== undefined) { // x{{a,b}}y ==> x{a}y x{b}y - n = expand_(n[0], max, false).map(embrace); + n = expand_(n[0], max, maxLength, false).map(embrace); //XXX is this necessary? Can't seem to hit it in tests. /* c8 ignore start */ if (n.length === 1) { - return post.map(p => m.pre + n[0] + p); + acc = combine(acc, pre + n[0], [''], max, maxLength, dropEmpties && !m.post.length); + if (!m.post.length) + break; + str = m.post; + continue; } /* c8 ignore stop */ } - } - // at this point, n is the parts, and we know it's not a comma set - // with a single entry. - let N; - if (isSequence && n[0] !== undefined && n[1] !== undefined) { - const x = numeric(n[0]); - const y = numeric(n[1]); - const width = Math.max(n[0].length, n[1].length); - let incr = n.length === 3 && n[2] !== undefined ? - Math.max(Math.abs(numeric(n[2])), 1) - : 1; - let test = lte; - const reverse = y < x; - if (reverse) { - incr *= -1; - test = gte; - } - const pad = n.some(isPadded); - N = []; - for (let i = x; test(i, y) && N.length < max; i += incr) { - let c; - if (isAlphaSequence) { - c = String.fromCharCode(i); - if (c === '\\') { - c = ''; - } - } - else { - c = String(i); - if (pad) { - const need = width - c.length; - if (need > 0) { - const z = new Array(need + 1).join('0'); - if (i < 0) { - c = '-' + z + c.slice(1); - } - else { - c = z + c; - } - } - } - } - N.push(c); - } - } - else { - N = []; + values = []; for (let j = 0; j < n.length; j++) { - N.push.apply(N, expand_(n[j], max, false)); - } - } - for (let j = 0; j < N.length; j++) { - for (let k = 0; k < post.length && expansions.length < max; k++) { - const expansion = pre + N[j] + post[k]; - if (!isTop || isSequence || expansion) { - expansions.push(expansion); - } + values.push.apply(values, expand_(n[j], max, maxLength, false)); } } + acc = combine(acc, pre, values, max, maxLength, dropEmpties && !m.post.length); + if (!m.post.length) + break; + str = m.post; } - return expansions; + return acc; } //# sourceMappingURL=index.js.map ;// CONCATENATED MODULE: ./node_modules/@actions/glob/node_modules/minimatch/dist/esm/assert-valid-pattern.js diff --git a/dist/setup/index.js b/dist/setup/index.js index 105c3a9cf..1846a92e4 100644 --- a/dist/setup/index.js +++ b/dist/setup/index.js @@ -1,7333 +1,6759 @@ import { createRequire as __WEBPACK_EXTERNAL_createRequire } from "module"; /******/ var __webpack_modules__ = ({ -/***/ 9659: -/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { +/***/ 4974: +/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { +module.exports = minimatch +minimatch.Minimatch = Minimatch -/* eslint-disable @typescript-eslint/no-explicit-any */ -var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { - if (k2 === undefined) k2 = k; - var desc = Object.getOwnPropertyDescriptor(m, k); - if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { - desc = { enumerable: true, get: function() { return m[k]; } }; - } - Object.defineProperty(o, k2, desc); -}) : (function(o, m, k, k2) { - if (k2 === undefined) k2 = k; - o[k2] = m[k]; -})); -var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { - Object.defineProperty(o, "default", { enumerable: true, value: v }); -}) : function(o, v) { - o["default"] = v; -}); -var __importStar = (this && this.__importStar) || (function () { - var ownKeys = function(o) { - ownKeys = Object.getOwnPropertyNames || function (o) { - var ar = []; - for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; - return ar; - }; - return ownKeys(o); - }; - return function (mod) { - if (mod && mod.__esModule) return mod; - var result = {}; - if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); - __setModuleDefault(result, mod); - return result; - }; -})(); -var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { - function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } - return new (P || (P = Promise))(function (resolve, reject) { - function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } - function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } - function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } - step((generator = generator.apply(thisArg, _arguments || [])).next()); - }); -}; -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.HttpClient = exports.HttpClientResponse = exports.HttpClientError = exports.MediaTypes = exports.Headers = exports.HttpCodes = void 0; -exports.getProxyUrl = getProxyUrl; -exports.isHttps = isHttps; -const http = __importStar(__nccwpck_require__(8611)); -const https = __importStar(__nccwpck_require__(5692)); -const pm = __importStar(__nccwpck_require__(3335)); -const tunnel = __importStar(__nccwpck_require__(770)); -const undici_1 = __nccwpck_require__(6752); -var HttpCodes; -(function (HttpCodes) { - HttpCodes[HttpCodes["OK"] = 200] = "OK"; - HttpCodes[HttpCodes["MultipleChoices"] = 300] = "MultipleChoices"; - HttpCodes[HttpCodes["MovedPermanently"] = 301] = "MovedPermanently"; - HttpCodes[HttpCodes["ResourceMoved"] = 302] = "ResourceMoved"; - HttpCodes[HttpCodes["SeeOther"] = 303] = "SeeOther"; - HttpCodes[HttpCodes["NotModified"] = 304] = "NotModified"; - HttpCodes[HttpCodes["UseProxy"] = 305] = "UseProxy"; - HttpCodes[HttpCodes["SwitchProxy"] = 306] = "SwitchProxy"; - HttpCodes[HttpCodes["TemporaryRedirect"] = 307] = "TemporaryRedirect"; - HttpCodes[HttpCodes["PermanentRedirect"] = 308] = "PermanentRedirect"; - HttpCodes[HttpCodes["BadRequest"] = 400] = "BadRequest"; - HttpCodes[HttpCodes["Unauthorized"] = 401] = "Unauthorized"; - HttpCodes[HttpCodes["PaymentRequired"] = 402] = "PaymentRequired"; - HttpCodes[HttpCodes["Forbidden"] = 403] = "Forbidden"; - HttpCodes[HttpCodes["NotFound"] = 404] = "NotFound"; - HttpCodes[HttpCodes["MethodNotAllowed"] = 405] = "MethodNotAllowed"; - HttpCodes[HttpCodes["NotAcceptable"] = 406] = "NotAcceptable"; - HttpCodes[HttpCodes["ProxyAuthenticationRequired"] = 407] = "ProxyAuthenticationRequired"; - HttpCodes[HttpCodes["RequestTimeout"] = 408] = "RequestTimeout"; - HttpCodes[HttpCodes["Conflict"] = 409] = "Conflict"; - HttpCodes[HttpCodes["Gone"] = 410] = "Gone"; - HttpCodes[HttpCodes["TooManyRequests"] = 429] = "TooManyRequests"; - HttpCodes[HttpCodes["InternalServerError"] = 500] = "InternalServerError"; - HttpCodes[HttpCodes["NotImplemented"] = 501] = "NotImplemented"; - HttpCodes[HttpCodes["BadGateway"] = 502] = "BadGateway"; - HttpCodes[HttpCodes["ServiceUnavailable"] = 503] = "ServiceUnavailable"; - HttpCodes[HttpCodes["GatewayTimeout"] = 504] = "GatewayTimeout"; -})(HttpCodes || (exports.HttpCodes = HttpCodes = {})); -var Headers; -(function (Headers) { - Headers["Accept"] = "accept"; - Headers["ContentType"] = "content-type"; -})(Headers || (exports.Headers = Headers = {})); -var MediaTypes; -(function (MediaTypes) { - MediaTypes["ApplicationJson"] = "application/json"; -})(MediaTypes || (exports.MediaTypes = MediaTypes = {})); -/** - * Returns the proxy URL, depending upon the supplied url and proxy environment variables. - * @param serverUrl The server URL where the request will be sent. For example, https://api.github.com - */ -function getProxyUrl(serverUrl) { - const proxyUrl = pm.getProxyUrl(new URL(serverUrl)); - return proxyUrl ? proxyUrl.href : ''; -} -const HttpRedirectCodes = [ - HttpCodes.MovedPermanently, - HttpCodes.ResourceMoved, - HttpCodes.SeeOther, - HttpCodes.TemporaryRedirect, - HttpCodes.PermanentRedirect -]; -const HttpResponseRetryCodes = [ - HttpCodes.BadGateway, - HttpCodes.ServiceUnavailable, - HttpCodes.GatewayTimeout -]; -const RetryableHttpVerbs = ['OPTIONS', 'GET', 'DELETE', 'HEAD']; -const ExponentialBackoffCeiling = 10; -const ExponentialBackoffTimeSlice = 5; -class HttpClientError extends Error { - constructor(message, statusCode) { - super(message); - this.name = 'HttpClientError'; - this.statusCode = statusCode; - Object.setPrototypeOf(this, HttpClientError.prototype); - } -} -exports.HttpClientError = HttpClientError; -class HttpClientResponse { - constructor(message) { - this.message = message; - } - readBody() { - return __awaiter(this, void 0, void 0, function* () { - return new Promise((resolve) => __awaiter(this, void 0, void 0, function* () { - let output = Buffer.alloc(0); - this.message.on('data', (chunk) => { - output = Buffer.concat([output, chunk]); - }); - this.message.on('end', () => { - resolve(output.toString()); - }); - })); - }); - } - readBodyBuffer() { - return __awaiter(this, void 0, void 0, function* () { - return new Promise((resolve) => __awaiter(this, void 0, void 0, function* () { - const chunks = []; - this.message.on('data', (chunk) => { - chunks.push(chunk); - }); - this.message.on('end', () => { - resolve(Buffer.concat(chunks)); - }); - })); - }); - } -} -exports.HttpClientResponse = HttpClientResponse; -function isHttps(requestUrl) { - const parsedUrl = new URL(requestUrl); - return parsedUrl.protocol === 'https:'; +var path = (function () { try { return __nccwpck_require__(6928) } catch (e) {}}()) || { + sep: '/' } -class HttpClient { - constructor(userAgent, handlers, requestOptions) { - this._ignoreSslError = false; - this._allowRedirects = true; - this._allowRedirectDowngrade = false; - this._maxRedirects = 50; - this._allowRetries = false; - this._maxRetries = 1; - this._keepAlive = false; - this._disposed = false; - this.userAgent = this._getUserAgentWithOrchestrationId(userAgent); - this.handlers = handlers || []; - this.requestOptions = requestOptions; - if (requestOptions) { - if (requestOptions.ignoreSslError != null) { - this._ignoreSslError = requestOptions.ignoreSslError; - } - this._socketTimeout = requestOptions.socketTimeout; - if (requestOptions.allowRedirects != null) { - this._allowRedirects = requestOptions.allowRedirects; - } - if (requestOptions.allowRedirectDowngrade != null) { - this._allowRedirectDowngrade = requestOptions.allowRedirectDowngrade; - } - if (requestOptions.maxRedirects != null) { - this._maxRedirects = Math.max(requestOptions.maxRedirects, 0); - } - if (requestOptions.keepAlive != null) { - this._keepAlive = requestOptions.keepAlive; - } - if (requestOptions.allowRetries != null) { - this._allowRetries = requestOptions.allowRetries; - } - if (requestOptions.maxRetries != null) { - this._maxRetries = requestOptions.maxRetries; - } - } - } - options(requestUrl, additionalHeaders) { - return __awaiter(this, void 0, void 0, function* () { - return this.request('OPTIONS', requestUrl, null, additionalHeaders || {}); - }); - } - get(requestUrl, additionalHeaders) { - return __awaiter(this, void 0, void 0, function* () { - return this.request('GET', requestUrl, null, additionalHeaders || {}); - }); - } - del(requestUrl, additionalHeaders) { - return __awaiter(this, void 0, void 0, function* () { - return this.request('DELETE', requestUrl, null, additionalHeaders || {}); - }); - } - post(requestUrl, data, additionalHeaders) { - return __awaiter(this, void 0, void 0, function* () { - return this.request('POST', requestUrl, data, additionalHeaders || {}); - }); - } - patch(requestUrl, data, additionalHeaders) { - return __awaiter(this, void 0, void 0, function* () { - return this.request('PATCH', requestUrl, data, additionalHeaders || {}); - }); - } - put(requestUrl, data, additionalHeaders) { - return __awaiter(this, void 0, void 0, function* () { - return this.request('PUT', requestUrl, data, additionalHeaders || {}); - }); - } - head(requestUrl, additionalHeaders) { - return __awaiter(this, void 0, void 0, function* () { - return this.request('HEAD', requestUrl, null, additionalHeaders || {}); - }); - } - sendStream(verb, requestUrl, stream, additionalHeaders) { - return __awaiter(this, void 0, void 0, function* () { - return this.request(verb, requestUrl, stream, additionalHeaders); - }); - } - /** - * Gets a typed object from an endpoint - * Be aware that not found returns a null. Other errors (4xx, 5xx) reject the promise - */ - getJson(requestUrl_1) { - return __awaiter(this, arguments, void 0, function* (requestUrl, additionalHeaders = {}) { - additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); - const res = yield this.get(requestUrl, additionalHeaders); - return this._processResponse(res, this.requestOptions); - }); - } - postJson(requestUrl_1, obj_1) { - return __awaiter(this, arguments, void 0, function* (requestUrl, obj, additionalHeaders = {}) { - const data = JSON.stringify(obj, null, 2); - additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); - additionalHeaders[Headers.ContentType] = - this._getExistingOrDefaultContentTypeHeader(additionalHeaders, MediaTypes.ApplicationJson); - const res = yield this.post(requestUrl, data, additionalHeaders); - return this._processResponse(res, this.requestOptions); - }); - } - putJson(requestUrl_1, obj_1) { - return __awaiter(this, arguments, void 0, function* (requestUrl, obj, additionalHeaders = {}) { - const data = JSON.stringify(obj, null, 2); - additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); - additionalHeaders[Headers.ContentType] = - this._getExistingOrDefaultContentTypeHeader(additionalHeaders, MediaTypes.ApplicationJson); - const res = yield this.put(requestUrl, data, additionalHeaders); - return this._processResponse(res, this.requestOptions); - }); - } - patchJson(requestUrl_1, obj_1) { - return __awaiter(this, arguments, void 0, function* (requestUrl, obj, additionalHeaders = {}) { - const data = JSON.stringify(obj, null, 2); - additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); - additionalHeaders[Headers.ContentType] = - this._getExistingOrDefaultContentTypeHeader(additionalHeaders, MediaTypes.ApplicationJson); - const res = yield this.patch(requestUrl, data, additionalHeaders); - return this._processResponse(res, this.requestOptions); - }); - } - /** - * Makes a raw http request. - * All other methods such as get, post, patch, and request ultimately call this. - * Prefer get, del, post and patch - */ - request(verb, requestUrl, data, headers) { - return __awaiter(this, void 0, void 0, function* () { - if (this._disposed) { - throw new Error('Client has already been disposed.'); - } - const parsedUrl = new URL(requestUrl); - let info = this._prepareRequest(verb, parsedUrl, headers); - // Only perform retries on reads since writes may not be idempotent. - const maxTries = this._allowRetries && RetryableHttpVerbs.includes(verb) - ? this._maxRetries + 1 - : 1; - let numTries = 0; - let response; - do { - response = yield this.requestRaw(info, data); - // Check if it's an authentication challenge - if (response && - response.message && - response.message.statusCode === HttpCodes.Unauthorized) { - let authenticationHandler; - for (const handler of this.handlers) { - if (handler.canHandleAuthentication(response)) { - authenticationHandler = handler; - break; - } - } - if (authenticationHandler) { - return authenticationHandler.handleAuthentication(this, info, data); - } - else { - // We have received an unauthorized response but have no handlers to handle it. - // Let the response return to the caller. - return response; - } - } - let redirectsRemaining = this._maxRedirects; - while (response.message.statusCode && - HttpRedirectCodes.includes(response.message.statusCode) && - this._allowRedirects && - redirectsRemaining > 0) { - const redirectUrl = response.message.headers['location']; - if (!redirectUrl) { - // if there's no location to redirect to, we won't - break; - } - const parsedRedirectUrl = new URL(redirectUrl); - if (parsedUrl.protocol === 'https:' && - parsedUrl.protocol !== parsedRedirectUrl.protocol && - !this._allowRedirectDowngrade) { - throw new Error('Redirect from HTTPS to HTTP protocol. This downgrade is not allowed for security reasons. If you want to allow this behavior, set the allowRedirectDowngrade option to true.'); - } - // we need to finish reading the response before reassigning response - // which will leak the open socket. - yield response.readBody(); - // strip authorization header if redirected to a different hostname - if (parsedRedirectUrl.hostname !== parsedUrl.hostname) { - for (const header in headers) { - // header names are case insensitive - if (header.toLowerCase() === 'authorization') { - delete headers[header]; - } - } - } - // let's make the request with the new redirectUrl - info = this._prepareRequest(verb, parsedRedirectUrl, headers); - response = yield this.requestRaw(info, data); - redirectsRemaining--; - } - if (!response.message.statusCode || - !HttpResponseRetryCodes.includes(response.message.statusCode)) { - // If not a retry code, return immediately instead of retrying - return response; - } - numTries += 1; - if (numTries < maxTries) { - yield response.readBody(); - yield this._performExponentialBackoff(numTries); - } - } while (numTries < maxTries); - return response; - }); - } - /** - * Needs to be called if keepAlive is set to true in request options. - */ - dispose() { - if (this._agent) { - this._agent.destroy(); - } - this._disposed = true; - } - /** - * Raw request. - * @param info - * @param data - */ - requestRaw(info, data) { - return __awaiter(this, void 0, void 0, function* () { - return new Promise((resolve, reject) => { - function callbackForResult(err, res) { - if (err) { - reject(err); - } - else if (!res) { - // If `err` is not passed, then `res` must be passed. - reject(new Error('Unknown error')); - } - else { - resolve(res); - } - } - this.requestRawWithCallback(info, data, callbackForResult); - }); - }); - } - /** - * Raw request with callback. - * @param info - * @param data - * @param onResult - */ - requestRawWithCallback(info, data, onResult) { - if (typeof data === 'string') { - if (!info.options.headers) { - info.options.headers = {}; - } - info.options.headers['Content-Length'] = Buffer.byteLength(data, 'utf8'); - } - let callbackCalled = false; - function handleResult(err, res) { - if (!callbackCalled) { - callbackCalled = true; - onResult(err, res); - } - } - const req = info.httpModule.request(info.options, (msg) => { - const res = new HttpClientResponse(msg); - handleResult(undefined, res); - }); - let socket; - req.on('socket', sock => { - socket = sock; - }); - // If we ever get disconnected, we want the socket to timeout eventually - req.setTimeout(this._socketTimeout || 3 * 60000, () => { - if (socket) { - socket.end(); - } - handleResult(new Error(`Request timeout: ${info.options.path}`)); - }); - req.on('error', function (err) { - // err has statusCode property - // res should have headers - handleResult(err); - }); - if (data && typeof data === 'string') { - req.write(data, 'utf8'); - } - if (data && typeof data !== 'string') { - data.on('close', function () { - req.end(); - }); - data.pipe(req); - } - else { - req.end(); - } - } - /** - * Gets an http agent. This function is useful when you need an http agent that handles - * routing through a proxy server - depending upon the url and proxy environment variables. - * @param serverUrl The server URL where the request will be sent. For example, https://api.github.com - */ - getAgent(serverUrl) { - const parsedUrl = new URL(serverUrl); - return this._getAgent(parsedUrl); - } - getAgentDispatcher(serverUrl) { - const parsedUrl = new URL(serverUrl); - const proxyUrl = pm.getProxyUrl(parsedUrl); - const useProxy = proxyUrl && proxyUrl.hostname; - if (!useProxy) { - return; - } - return this._getProxyAgentDispatcher(parsedUrl, proxyUrl); - } - _prepareRequest(method, requestUrl, headers) { - const info = {}; - info.parsedUrl = requestUrl; - const usingSsl = info.parsedUrl.protocol === 'https:'; - info.httpModule = usingSsl ? https : http; - const defaultPort = usingSsl ? 443 : 80; - info.options = {}; - info.options.host = info.parsedUrl.hostname; - info.options.port = info.parsedUrl.port - ? parseInt(info.parsedUrl.port) - : defaultPort; - info.options.path = - (info.parsedUrl.pathname || '') + (info.parsedUrl.search || ''); - info.options.method = method; - info.options.headers = this._mergeHeaders(headers); - if (this.userAgent != null) { - info.options.headers['user-agent'] = this.userAgent; - } - info.options.agent = this._getAgent(info.parsedUrl); - // gives handlers an opportunity to participate - if (this.handlers) { - for (const handler of this.handlers) { - handler.prepareRequest(info.options); - } - } - return info; - } - _mergeHeaders(headers) { - if (this.requestOptions && this.requestOptions.headers) { - return Object.assign({}, lowercaseKeys(this.requestOptions.headers), lowercaseKeys(headers || {})); - } - return lowercaseKeys(headers || {}); - } - /** - * Gets an existing header value or returns a default. - * Handles converting number header values to strings since HTTP headers must be strings. - * Note: This returns string | string[] since some headers can have multiple values. - * For headers that must always be a single string (like Content-Type), use the - * specialized _getExistingOrDefaultContentTypeHeader method instead. - */ - _getExistingOrDefaultHeader(additionalHeaders, header, _default) { - let clientHeader; - if (this.requestOptions && this.requestOptions.headers) { - const headerValue = lowercaseKeys(this.requestOptions.headers)[header]; - if (headerValue) { - clientHeader = - typeof headerValue === 'number' ? headerValue.toString() : headerValue; - } - } - const additionalValue = additionalHeaders[header]; - if (additionalValue !== undefined) { - return typeof additionalValue === 'number' - ? additionalValue.toString() - : additionalValue; - } - if (clientHeader !== undefined) { - return clientHeader; - } - return _default; - } - /** - * Specialized version of _getExistingOrDefaultHeader for Content-Type header. - * Always returns a single string (not an array) since Content-Type should be a single value. - * Converts arrays to comma-separated strings and numbers to strings to ensure type safety. - * This was split from _getExistingOrDefaultHeader to provide stricter typing for callers - * that assign the result to places expecting a string (e.g., additionalHeaders[Headers.ContentType]). - */ - _getExistingOrDefaultContentTypeHeader(additionalHeaders, _default) { - let clientHeader; - if (this.requestOptions && this.requestOptions.headers) { - const headerValue = lowercaseKeys(this.requestOptions.headers)[Headers.ContentType]; - if (headerValue) { - if (typeof headerValue === 'number') { - clientHeader = String(headerValue); - } - else if (Array.isArray(headerValue)) { - clientHeader = headerValue.join(', '); - } - else { - clientHeader = headerValue; - } - } - } - const additionalValue = additionalHeaders[Headers.ContentType]; - // Return the first non-undefined value, converting numbers or arrays to strings if necessary - if (additionalValue !== undefined) { - if (typeof additionalValue === 'number') { - return String(additionalValue); - } - else if (Array.isArray(additionalValue)) { - return additionalValue.join(', '); - } - else { - return additionalValue; - } - } - if (clientHeader !== undefined) { - return clientHeader; - } - return _default; - } - _getAgent(parsedUrl) { - let agent; - const proxyUrl = pm.getProxyUrl(parsedUrl); - const useProxy = proxyUrl && proxyUrl.hostname; - if (this._keepAlive && useProxy) { - agent = this._proxyAgent; - } - if (!useProxy) { - agent = this._agent; - } - // if agent is already assigned use that agent. - if (agent) { - return agent; - } - const usingSsl = parsedUrl.protocol === 'https:'; - let maxSockets = 100; - if (this.requestOptions) { - maxSockets = this.requestOptions.maxSockets || http.globalAgent.maxSockets; - } - // This is `useProxy` again, but we need to check `proxyURl` directly for TypeScripts's flow analysis. - if (proxyUrl && proxyUrl.hostname) { - const agentOptions = { - maxSockets, - keepAlive: this._keepAlive, - proxy: Object.assign(Object.assign({}, ((proxyUrl.username || proxyUrl.password) && { - proxyAuth: `${proxyUrl.username}:${proxyUrl.password}` - })), { host: proxyUrl.hostname, port: proxyUrl.port }) - }; - let tunnelAgent; - const overHttps = proxyUrl.protocol === 'https:'; - if (usingSsl) { - tunnelAgent = overHttps ? tunnel.httpsOverHttps : tunnel.httpsOverHttp; - } - else { - tunnelAgent = overHttps ? tunnel.httpOverHttps : tunnel.httpOverHttp; - } - agent = tunnelAgent(agentOptions); - this._proxyAgent = agent; - } - // if tunneling agent isn't assigned create a new agent - if (!agent) { - const options = { keepAlive: this._keepAlive, maxSockets }; - agent = usingSsl ? new https.Agent(options) : new http.Agent(options); - this._agent = agent; - } - if (usingSsl && this._ignoreSslError) { - // we don't want to set NODE_TLS_REJECT_UNAUTHORIZED=0 since that will affect request for entire process - // http.RequestOptions doesn't expose a way to modify RequestOptions.agent.options - // we have to cast it to any and change it directly - agent.options = Object.assign(agent.options || {}, { - rejectUnauthorized: false - }); - } - return agent; - } - _getProxyAgentDispatcher(parsedUrl, proxyUrl) { - let proxyAgent; - if (this._keepAlive) { - proxyAgent = this._proxyAgentDispatcher; - } - // if agent is already assigned use that agent. - if (proxyAgent) { - return proxyAgent; - } - const usingSsl = parsedUrl.protocol === 'https:'; - proxyAgent = new undici_1.ProxyAgent(Object.assign({ uri: proxyUrl.href, pipelining: !this._keepAlive ? 0 : 1 }, ((proxyUrl.username || proxyUrl.password) && { - token: `Basic ${Buffer.from(`${proxyUrl.username}:${proxyUrl.password}`).toString('base64')}` - }))); - this._proxyAgentDispatcher = proxyAgent; - if (usingSsl && this._ignoreSslError) { - // we don't want to set NODE_TLS_REJECT_UNAUTHORIZED=0 since that will affect request for entire process - // http.RequestOptions doesn't expose a way to modify RequestOptions.agent.options - // we have to cast it to any and change it directly - proxyAgent.options = Object.assign(proxyAgent.options.requestTls || {}, { - rejectUnauthorized: false - }); - } - return proxyAgent; - } - _getUserAgentWithOrchestrationId(userAgent) { - const baseUserAgent = userAgent || 'actions/http-client'; - const orchId = process.env['ACTIONS_ORCHESTRATION_ID']; - if (orchId) { - // Sanitize the orchestration ID to ensure it contains only valid characters - // Valid characters: 0-9, a-z, _, -, . - const sanitizedId = orchId.replace(/[^a-z0-9_.-]/gi, '_'); - return `${baseUserAgent} actions_orchestration_id/${sanitizedId}`; - } - return baseUserAgent; - } - _performExponentialBackoff(retryNumber) { - return __awaiter(this, void 0, void 0, function* () { - retryNumber = Math.min(ExponentialBackoffCeiling, retryNumber); - const ms = ExponentialBackoffTimeSlice * Math.pow(2, retryNumber); - return new Promise(resolve => setTimeout(() => resolve(), ms)); - }); - } - _processResponse(res, options) { - return __awaiter(this, void 0, void 0, function* () { - return new Promise((resolve, reject) => __awaiter(this, void 0, void 0, function* () { - const statusCode = res.message.statusCode || 0; - const response = { - statusCode, - result: null, - headers: {} - }; - // not found leads to null obj returned - if (statusCode === HttpCodes.NotFound) { - resolve(response); - } - // get the result from the body - function dateTimeDeserializer(key, value) { - if (typeof value === 'string') { - const a = new Date(value); - if (!isNaN(a.valueOf())) { - return a; - } - } - return value; - } - let obj; - let contents; - try { - contents = yield res.readBody(); - if (contents && contents.length > 0) { - if (options && options.deserializeDates) { - obj = JSON.parse(contents, dateTimeDeserializer); - } - else { - obj = JSON.parse(contents); - } - response.result = obj; - } - response.headers = res.message.headers; - } - catch (err) { - // Invalid resource (contents not json); leaving result obj null - } - // note that 3xx redirects are handled by the http layer. - if (statusCode > 299) { - let msg; - // if exception/error in body, attempt to get better error - if (obj && obj.message) { - msg = obj.message; - } - else if (contents && contents.length > 0) { - // it may be the case that the exception is in the body message as string - msg = contents; - } - else { - msg = `Failed request: (${statusCode})`; - } - const err = new HttpClientError(msg, statusCode); - err.result = response.result; - reject(err); - } - else { - resolve(response); - } - })); - }); - } +minimatch.sep = path.sep + +var GLOBSTAR = minimatch.GLOBSTAR = Minimatch.GLOBSTAR = {} +var expand = __nccwpck_require__(8968) + +var plTypes = { + '!': { open: '(?:(?!(?:', close: '))[^/]*?)'}, + '?': { open: '(?:', close: ')?' }, + '+': { open: '(?:', close: ')+' }, + '*': { open: '(?:', close: ')*' }, + '@': { open: '(?:', close: ')' } } -exports.HttpClient = HttpClient; -const lowercaseKeys = (obj) => Object.keys(obj).reduce((c, k) => ((c[k.toLowerCase()] = obj[k]), c), {}); -//# sourceMappingURL=index.js.map -/***/ }), +// any single thing other than / +// don't need to escape / when using new RegExp() +var qmark = '[^/]' -/***/ 3335: -/***/ ((__unused_webpack_module, exports) => { +// * => any number of characters +var star = qmark + '*?' +// ** when dots are allowed. Anything goes, except .. and . +// not (^ or / followed by one or two dots followed by $ or /), +// followed by anything, any number of times. +var twoStarDot = '(?:(?!(?:\\\/|^)(?:\\.{1,2})($|\\\/)).)*?' -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.getProxyUrl = getProxyUrl; -exports.checkBypass = checkBypass; -function getProxyUrl(reqUrl) { - const usingSsl = reqUrl.protocol === 'https:'; - if (checkBypass(reqUrl)) { - return undefined; - } - const proxyVar = (() => { - if (usingSsl) { - return process.env['https_proxy'] || process.env['HTTPS_PROXY']; - } - else { - return process.env['http_proxy'] || process.env['HTTP_PROXY']; - } - })(); - if (proxyVar) { - try { - return new DecodedURL(proxyVar); - } - catch (_a) { - if (!proxyVar.startsWith('http://') && !proxyVar.startsWith('https://')) - return new DecodedURL(`http://${proxyVar}`); - } - } - else { - return undefined; - } -} -function checkBypass(reqUrl) { - if (!reqUrl.hostname) { - return false; - } - const reqHost = reqUrl.hostname; - if (isLoopbackAddress(reqHost)) { - return true; - } - const noProxy = process.env['no_proxy'] || process.env['NO_PROXY'] || ''; - if (!noProxy) { - return false; - } - // Determine the request port - let reqPort; - if (reqUrl.port) { - reqPort = Number(reqUrl.port); - } - else if (reqUrl.protocol === 'http:') { - reqPort = 80; - } - else if (reqUrl.protocol === 'https:') { - reqPort = 443; - } - // Format the request hostname and hostname with port - const upperReqHosts = [reqUrl.hostname.toUpperCase()]; - if (typeof reqPort === 'number') { - upperReqHosts.push(`${upperReqHosts[0]}:${reqPort}`); - } - // Compare request host against noproxy - for (const upperNoProxyItem of noProxy - .split(',') - .map(x => x.trim().toUpperCase()) - .filter(x => x)) { - if (upperNoProxyItem === '*' || - upperReqHosts.some(x => x === upperNoProxyItem || - x.endsWith(`.${upperNoProxyItem}`) || - (upperNoProxyItem.startsWith('.') && - x.endsWith(`${upperNoProxyItem}`)))) { - return true; - } - } - return false; +// not a ^ or / followed by a dot, +// followed by anything, any number of times. +var twoStarNoDot = '(?:(?!(?:\\\/|^)\\.).)*?' + +// characters that need to be escaped in RegExp. +var reSpecials = charSet('().*{}+?[]^$\\!') + +// "abc" -> { a:true, b:true, c:true } +function charSet (s) { + return s.split('').reduce(function (set, c) { + set[c] = true + return set + }, {}) } -function isLoopbackAddress(host) { - const hostLower = host.toLowerCase(); - return (hostLower === 'localhost' || - hostLower.startsWith('127.') || - hostLower.startsWith('[::1]') || - hostLower.startsWith('[0:0:0:0:0:0:0:1]')); + +// normalizes slashes. +var slashSplit = /\/+/ + +minimatch.filter = filter +function filter (pattern, options) { + options = options || {} + return function (p, i, list) { + return minimatch(p, pattern, options) + } } -class DecodedURL extends URL { - constructor(url, base) { - super(url, base); - this._decodedUsername = decodeURIComponent(super.username); - this._decodedPassword = decodeURIComponent(super.password); - } - get username() { - return this._decodedUsername; - } - get password() { - return this._decodedPassword; - } + +function ext (a, b) { + b = b || {} + var t = {} + Object.keys(a).forEach(function (k) { + t[k] = a[k] + }) + Object.keys(b).forEach(function (k) { + t[k] = b[k] + }) + return t } -//# sourceMappingURL=proxy.js.map -/***/ }), +minimatch.defaults = function (def) { + if (!def || typeof def !== 'object' || !Object.keys(def).length) { + return minimatch + } -/***/ 7889: -/***/ (function(__unused_webpack_module, exports) { + var orig = minimatch + var m = function minimatch (p, pattern, options) { + return orig(p, pattern, ext(def, options)) + } -var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { - function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } - return new (P || (P = Promise))(function (resolve, reject) { - function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } - function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } - function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } - step((generator = generator.apply(thisArg, _arguments || [])).next()); - }); -}; -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ClientStreamingCall = void 0; -/** - * A client streaming RPC call. This means that the clients sends 0, 1, or - * more messages to the server, and the server replies with exactly one - * message. - */ -class ClientStreamingCall { - constructor(method, requestHeaders, request, headers, response, status, trailers) { - this.method = method; - this.requestHeaders = requestHeaders; - this.requests = request; - this.headers = headers; - this.response = response; - this.status = status; - this.trailers = trailers; - } - /** - * Instead of awaiting the response status and trailers, you can - * just as well await this call itself to receive the server outcome. - * Note that it may still be valid to send more request messages. - */ - then(onfulfilled, onrejected) { - return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); - } - promiseFinished() { - return __awaiter(this, void 0, void 0, function* () { - let [headers, response, status, trailers] = yield Promise.all([this.headers, this.response, this.status, this.trailers]); - return { - method: this.method, - requestHeaders: this.requestHeaders, - headers, - response, - status, - trailers - }; - }); - } + m.Minimatch = function Minimatch (pattern, options) { + return new orig.Minimatch(pattern, ext(def, options)) + } + m.Minimatch.defaults = function defaults (options) { + return orig.defaults(ext(def, options)).Minimatch + } + + m.filter = function filter (pattern, options) { + return orig.filter(pattern, ext(def, options)) + } + + m.defaults = function defaults (options) { + return orig.defaults(ext(def, options)) + } + + m.makeRe = function makeRe (pattern, options) { + return orig.makeRe(pattern, ext(def, options)) + } + + m.braceExpand = function braceExpand (pattern, options) { + return orig.braceExpand(pattern, ext(def, options)) + } + + m.match = function (list, pattern, options) { + return orig.match(list, pattern, ext(def, options)) + } + + return m } -exports.ClientStreamingCall = ClientStreamingCall; +Minimatch.defaults = function (def) { + return minimatch.defaults(def).Minimatch +} -/***/ }), +function minimatch (p, pattern, options) { + assertValidPattern(pattern) -/***/ 1409: -/***/ ((__unused_webpack_module, exports) => { + if (!options) options = {} + // shortcut: comments match nothing. + if (!options.nocomment && pattern.charAt(0) === '#') { + return false + } -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.Deferred = exports.DeferredState = void 0; -var DeferredState; -(function (DeferredState) { - DeferredState[DeferredState["PENDING"] = 0] = "PENDING"; - DeferredState[DeferredState["REJECTED"] = 1] = "REJECTED"; - DeferredState[DeferredState["RESOLVED"] = 2] = "RESOLVED"; -})(DeferredState = exports.DeferredState || (exports.DeferredState = {})); -/** - * A deferred promise. This is a "controller" for a promise, which lets you - * pass a promise around and reject or resolve it from the outside. - * - * Warning: This class is to be used with care. Using it can make code very - * difficult to read. It is intended for use in library code that exposes - * promises, not for regular business logic. - */ -class Deferred { - /** - * @param preventUnhandledRejectionWarning - prevents the warning - * "Unhandled Promise rejection" by adding a noop rejection handler. - * Working with calls returned from the runtime-rpc package in an - * async function usually means awaiting one call property after - * the other. This means that the "status" is not being awaited when - * an earlier await for the "headers" is rejected. This causes the - * "unhandled promise reject" warning. A more correct behaviour for - * calls might be to become aware whether at least one of the - * promises is handled and swallow the rejection warning for the - * others. - */ - constructor(preventUnhandledRejectionWarning = true) { - this._state = DeferredState.PENDING; - this._promise = new Promise((resolve, reject) => { - this._resolve = resolve; - this._reject = reject; - }); - if (preventUnhandledRejectionWarning) { - this._promise.catch(_ => { }); - } - } - /** - * Get the current state of the promise. - */ - get state() { - return this._state; - } - /** - * Get the deferred promise. - */ - get promise() { - return this._promise; - } - /** - * Resolve the promise. Throws if the promise is already resolved or rejected. - */ - resolve(value) { - if (this.state !== DeferredState.PENDING) - throw new Error(`cannot resolve ${DeferredState[this.state].toLowerCase()}`); - this._resolve(value); - this._state = DeferredState.RESOLVED; - } - /** - * Reject the promise. Throws if the promise is already resolved or rejected. - */ - reject(reason) { - if (this.state !== DeferredState.PENDING) - throw new Error(`cannot reject ${DeferredState[this.state].toLowerCase()}`); - this._reject(reason); - this._state = DeferredState.REJECTED; - } - /** - * Resolve the promise. Ignore if not pending. - */ - resolvePending(val) { - if (this._state === DeferredState.PENDING) - this.resolve(val); - } - /** - * Reject the promise. Ignore if not pending. - */ - rejectPending(reason) { - if (this._state === DeferredState.PENDING) - this.reject(reason); - } + return new Minimatch(pattern, options).match(p) } -exports.Deferred = Deferred; +function Minimatch (pattern, options) { + if (!(this instanceof Minimatch)) { + return new Minimatch(pattern, options) + } -/***/ }), + assertValidPattern(pattern) -/***/ 6826: -/***/ (function(__unused_webpack_module, exports) { + if (!options) options = {} + pattern = pattern.trim() -var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { - function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } - return new (P || (P = Promise))(function (resolve, reject) { - function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } - function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } - function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } - step((generator = generator.apply(thisArg, _arguments || [])).next()); - }); -}; -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.DuplexStreamingCall = void 0; -/** - * A duplex streaming RPC call. This means that the clients sends an - * arbitrary amount of messages to the server, while at the same time, - * the server sends an arbitrary amount of messages to the client. - */ -class DuplexStreamingCall { - constructor(method, requestHeaders, request, headers, response, status, trailers) { - this.method = method; - this.requestHeaders = requestHeaders; - this.requests = request; - this.headers = headers; - this.responses = response; - this.status = status; - this.trailers = trailers; - } - /** - * Instead of awaiting the response status and trailers, you can - * just as well await this call itself to receive the server outcome. - * Note that it may still be valid to send more request messages. - */ - then(onfulfilled, onrejected) { - return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); - } - promiseFinished() { - return __awaiter(this, void 0, void 0, function* () { - let [headers, status, trailers] = yield Promise.all([this.headers, this.status, this.trailers]); - return { - method: this.method, - requestHeaders: this.requestHeaders, - headers, - status, - trailers, - }; - }); - } + // windows support: need to use /, not \ + if (!options.allowWindowsEscape && path.sep !== '/') { + pattern = pattern.split(path.sep).join('/') + } + + this.options = options + this.maxGlobstarRecursion = options.maxGlobstarRecursion !== undefined + ? options.maxGlobstarRecursion : 200 + this.set = [] + this.pattern = pattern + this.regexp = null + this.negate = false + this.comment = false + this.empty = false + this.partial = !!options.partial + + // make the set of regexps etc. + this.make() } -exports.DuplexStreamingCall = DuplexStreamingCall; +Minimatch.prototype.debug = function () {} -/***/ }), +Minimatch.prototype.make = make +function make () { + var pattern = this.pattern + var options = this.options -/***/ 4420: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + // empty patterns and comments match nothing. + if (!options.nocomment && pattern.charAt(0) === '#') { + this.comment = true + return + } + if (!pattern) { + this.empty = true + return + } -var __webpack_unused_export__; + // step 1: figure out negation, etc. + this.parseNegate() -// Public API of the rpc runtime. -// Note: we do not use `export * from ...` to help tree shakers, -// webpack verbose output hints that this should be useful -__webpack_unused_export__ = ({ value: true }); -var service_type_1 = __nccwpck_require__(6892); -Object.defineProperty(exports, "C0", ({ enumerable: true, get: function () { return service_type_1.ServiceType; } })); -var reflection_info_1 = __nccwpck_require__(2496); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return reflection_info_1.readMethodOptions; } }); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return reflection_info_1.readMethodOption; } }); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return reflection_info_1.readServiceOption; } }); -var rpc_error_1 = __nccwpck_require__(8636); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_error_1.RpcError; } }); -var rpc_options_1 = __nccwpck_require__(8576); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_options_1.mergeRpcOptions; } }); -var rpc_output_stream_1 = __nccwpck_require__(2726); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_output_stream_1.RpcOutputStreamController; } }); -var test_transport_1 = __nccwpck_require__(9122); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return test_transport_1.TestTransport; } }); -var deferred_1 = __nccwpck_require__(1409); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return deferred_1.Deferred; } }); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return deferred_1.DeferredState; } }); -var duplex_streaming_call_1 = __nccwpck_require__(6826); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return duplex_streaming_call_1.DuplexStreamingCall; } }); -var client_streaming_call_1 = __nccwpck_require__(7889); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return client_streaming_call_1.ClientStreamingCall; } }); -var server_streaming_call_1 = __nccwpck_require__(6173); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return server_streaming_call_1.ServerStreamingCall; } }); -var unary_call_1 = __nccwpck_require__(9288); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return unary_call_1.UnaryCall; } }); -var rpc_interceptor_1 = __nccwpck_require__(2849); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackIntercept; } }); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackDuplexStreamingInterceptors; } }); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackClientStreamingInterceptors; } }); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackServerStreamingInterceptors; } }); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackUnaryInterceptors; } }); -var server_call_context_1 = __nccwpck_require__(3352); -__webpack_unused_export__ = ({ enumerable: true, get: function () { return server_call_context_1.ServerCallContextController; } }); + // step 2: expand braces + var set = this.globSet = this.braceExpand() + if (options.debug) this.debug = function debug() { console.error.apply(console, arguments) } -/***/ }), + this.debug(this.pattern, set) -/***/ 2496: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + // step 3: now we have a set, so turn each one into a series of path-portion + // matching patterns. + // These will be regexps, except in the case of "**", which is + // set to the GLOBSTAR object for globstar behavior, + // and will not contain any / characters + set = this.globParts = set.map(function (s) { + return s.split(slashSplit) + }) + this.debug(this.pattern, set) -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.readServiceOption = exports.readMethodOption = exports.readMethodOptions = exports.normalizeMethodInfo = void 0; -const runtime_1 = __nccwpck_require__(8886); -/** - * Turns PartialMethodInfo into MethodInfo. - */ -function normalizeMethodInfo(method, service) { - var _a, _b, _c; - let m = method; - m.service = service; - m.localName = (_a = m.localName) !== null && _a !== void 0 ? _a : runtime_1.lowerCamelCase(m.name); - // noinspection PointlessBooleanExpressionJS - m.serverStreaming = !!m.serverStreaming; - // noinspection PointlessBooleanExpressionJS - m.clientStreaming = !!m.clientStreaming; - m.options = (_b = m.options) !== null && _b !== void 0 ? _b : {}; - m.idempotency = (_c = m.idempotency) !== null && _c !== void 0 ? _c : undefined; - return m; + // glob --> regexps + set = set.map(function (s, si, set) { + return s.map(this.parse, this) + }, this) + + this.debug(this.pattern, set) + + // filter out everything that didn't compile properly. + set = set.filter(function (s) { + return s.indexOf(false) === -1 + }) + + this.debug(this.pattern, set) + + this.set = set } -exports.normalizeMethodInfo = normalizeMethodInfo; -/** - * Read custom method options from a generated service client. - * - * @deprecated use readMethodOption() - */ -function readMethodOptions(service, methodName, extensionName, extensionType) { - var _a; - const options = (_a = service.methods.find((m, i) => m.localName === methodName || i === methodName)) === null || _a === void 0 ? void 0 : _a.options; - return options && options[extensionName] ? extensionType.fromJson(options[extensionName]) : undefined; + +Minimatch.prototype.parseNegate = parseNegate +function parseNegate () { + var pattern = this.pattern + var negate = false + var options = this.options + var negateOffset = 0 + + if (options.nonegate) return + + for (var i = 0, l = pattern.length + ; i < l && pattern.charAt(i) === '!' + ; i++) { + negate = !negate + negateOffset++ + } + + if (negateOffset) this.pattern = pattern.substr(negateOffset) + this.negate = negate } -exports.readMethodOptions = readMethodOptions; -function readMethodOption(service, methodName, extensionName, extensionType) { - var _a; - const options = (_a = service.methods.find((m, i) => m.localName === methodName || i === methodName)) === null || _a === void 0 ? void 0 : _a.options; - if (!options) { - return undefined; - } - const optionVal = options[extensionName]; - if (optionVal === undefined) { - return optionVal; - } - return extensionType ? extensionType.fromJson(optionVal) : optionVal; + +// Brace expansion: +// a{b,c}d -> abd acd +// a{b,}c -> abc ac +// a{0..3}d -> a0d a1d a2d a3d +// a{b,c{d,e}f}g -> abg acdfg acefg +// a{b,c}d{e,f}g -> abdeg acdeg abdeg abdfg +// +// Invalid sets are not expanded. +// a{2..}b -> a{2..}b +// a{b}c -> a{b}c +minimatch.braceExpand = function (pattern, options) { + return braceExpand(pattern, options) } -exports.readMethodOption = readMethodOption; -function readServiceOption(service, extensionName, extensionType) { - const options = service.options; - if (!options) { - return undefined; - } - const optionVal = options[extensionName]; - if (optionVal === undefined) { - return optionVal; + +Minimatch.prototype.braceExpand = braceExpand + +function braceExpand (pattern, options) { + if (!options) { + if (this instanceof Minimatch) { + options = this.options + } else { + options = {} } - return extensionType ? extensionType.fromJson(optionVal) : optionVal; + } + + pattern = typeof pattern === 'undefined' + ? this.pattern : pattern + + assertValidPattern(pattern) + + // Thanks to Yeting Li for + // improving this regexp to avoid a ReDOS vulnerability. + if (options.nobrace || !/\{(?:(?!\{).)*\}/.test(pattern)) { + // shortcut. no need to expand. + return [pattern] + } + + return expand(pattern) } -exports.readServiceOption = readServiceOption; +var MAX_PATTERN_LENGTH = 1024 * 64 +var assertValidPattern = function (pattern) { + if (typeof pattern !== 'string') { + throw new TypeError('invalid pattern') + } -/***/ }), + if (pattern.length > MAX_PATTERN_LENGTH) { + throw new TypeError('pattern is too long') + } +} + +// parse a component of the expanded set. +// At this point, no pattern may contain "/" in it +// so we're going to return a 2d array, where each entry is the full +// pattern, split on '/', and then turned into a regular expression. +// A regexp is made at the end which joins each array with an +// escaped /, and another full one which joins each regexp with |. +// +// Following the lead of Bash 4.1, note that "**" only has special meaning +// when it is the *only* thing in a path portion. Otherwise, any series +// of * is equivalent to a single *. Globstar behavior is enabled by +// default, and can be disabled by setting options.noglobstar. +Minimatch.prototype.parse = parse +var SUBPARSE = {} +function parse (pattern, isSub) { + assertValidPattern(pattern) + + var options = this.options + + // shortcuts + if (pattern === '**') { + if (!options.noglobstar) + return GLOBSTAR + else + pattern = '*' + } + if (pattern === '') return '' + + var re = '' + var hasMagic = !!options.nocase + var escaping = false + // ? => one single character + var patternListStack = [] + var negativeLists = [] + var stateChar + var inClass = false + var reClassStart = -1 + var classStart = -1 + // . and .. never match anything that doesn't start with ., + // even when options.dot is set. + var patternStart = pattern.charAt(0) === '.' ? '' // anything + // not (start or / followed by . or .. followed by / or end) + : options.dot ? '(?!(?:^|\\\/)\\.{1,2}(?:$|\\\/))' + : '(?!\\.)' + var self = this -/***/ 8636: -/***/ ((__unused_webpack_module, exports) => { + function clearStateChar () { + if (stateChar) { + // we had some state-tracking character + // that wasn't consumed by this pass. + switch (stateChar) { + case '*': + re += star + hasMagic = true + break + case '?': + re += qmark + hasMagic = true + break + default: + re += '\\' + stateChar + break + } + self.debug('clearStateChar %j %j', stateChar, re) + stateChar = false + } + } + for (var i = 0, len = pattern.length, c + ; (i < len) && (c = pattern.charAt(i)) + ; i++) { + this.debug('%s\t%s %s %j', pattern, i, re, c) -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.RpcError = void 0; -/** - * An error that occurred while calling a RPC method. - */ -class RpcError extends Error { - constructor(message, code = 'UNKNOWN', meta) { - super(message); - this.name = 'RpcError'; - // see https://www.typescriptlang.org/docs/handbook/release-notes/typescript-2-2.html#example - Object.setPrototypeOf(this, new.target.prototype); - this.code = code; - this.meta = meta !== null && meta !== void 0 ? meta : {}; - } - toString() { - const l = [this.name + ': ' + this.message]; - if (this.code) { - l.push(''); - l.push('Code: ' + this.code); - } - if (this.serviceName && this.methodName) { - l.push('Method: ' + this.serviceName + '/' + this.methodName); - } - let m = Object.entries(this.meta); - if (m.length) { - l.push(''); - l.push('Meta:'); - for (let [k, v] of m) { - l.push(` ${k}: ${v}`); - } - } - return l.join('\n'); + // skip over any that are escaped. + if (escaping && reSpecials[c]) { + re += '\\' + c + escaping = false + continue } -} -exports.RpcError = RpcError; + switch (c) { + /* istanbul ignore next */ + case '/': { + // completely not allowed, even escaped. + // Should already be path-split by now. + return false + } -/***/ }), - -/***/ 2849: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + case '\\': + clearStateChar() + escaping = true + continue + // the various stateChar values + // for the "extglob" stuff. + case '?': + case '*': + case '+': + case '@': + case '!': + this.debug('%s\t%s %s %j <-- stateChar', pattern, i, re, c) -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.stackDuplexStreamingInterceptors = exports.stackClientStreamingInterceptors = exports.stackServerStreamingInterceptors = exports.stackUnaryInterceptors = exports.stackIntercept = void 0; -const runtime_1 = __nccwpck_require__(8886); -/** - * Creates a "stack" of of all interceptors specified in the given `RpcOptions`. - * Used by generated client implementations. - * @internal - */ -function stackIntercept(kind, transport, method, options, input) { - var _a, _b, _c, _d; - if (kind == "unary") { - let tail = (mtd, inp, opt) => transport.unary(mtd, inp, opt); - for (const curr of ((_a = options.interceptors) !== null && _a !== void 0 ? _a : []).filter(i => i.interceptUnary).reverse()) { - const next = tail; - tail = (mtd, inp, opt) => curr.interceptUnary(next, mtd, inp, opt); - } - return tail(method, input, options); - } - if (kind == "serverStreaming") { - let tail = (mtd, inp, opt) => transport.serverStreaming(mtd, inp, opt); - for (const curr of ((_b = options.interceptors) !== null && _b !== void 0 ? _b : []).filter(i => i.interceptServerStreaming).reverse()) { - const next = tail; - tail = (mtd, inp, opt) => curr.interceptServerStreaming(next, mtd, inp, opt); - } - return tail(method, input, options); - } - if (kind == "clientStreaming") { - let tail = (mtd, opt) => transport.clientStreaming(mtd, opt); - for (const curr of ((_c = options.interceptors) !== null && _c !== void 0 ? _c : []).filter(i => i.interceptClientStreaming).reverse()) { - const next = tail; - tail = (mtd, opt) => curr.interceptClientStreaming(next, mtd, opt); - } - return tail(method, options); - } - if (kind == "duplex") { - let tail = (mtd, opt) => transport.duplex(mtd, opt); - for (const curr of ((_d = options.interceptors) !== null && _d !== void 0 ? _d : []).filter(i => i.interceptDuplex).reverse()) { - const next = tail; - tail = (mtd, opt) => curr.interceptDuplex(next, mtd, opt); + // all of those are literals inside a class, except that + // the glob [!a] means [^a] in regexp + if (inClass) { + this.debug(' in class') + if (c === '!' && i === classStart + 1) c = '^' + re += c + continue } - return tail(method, options); - } - runtime_1.assertNever(kind); -} -exports.stackIntercept = stackIntercept; -/** - * @deprecated replaced by `stackIntercept()`, still here to support older generated code - */ -function stackUnaryInterceptors(transport, method, input, options) { - return stackIntercept("unary", transport, method, options, input); -} -exports.stackUnaryInterceptors = stackUnaryInterceptors; -/** - * @deprecated replaced by `stackIntercept()`, still here to support older generated code - */ -function stackServerStreamingInterceptors(transport, method, input, options) { - return stackIntercept("serverStreaming", transport, method, options, input); -} -exports.stackServerStreamingInterceptors = stackServerStreamingInterceptors; -/** - * @deprecated replaced by `stackIntercept()`, still here to support older generated code - */ -function stackClientStreamingInterceptors(transport, method, options) { - return stackIntercept("clientStreaming", transport, method, options); -} -exports.stackClientStreamingInterceptors = stackClientStreamingInterceptors; -/** - * @deprecated replaced by `stackIntercept()`, still here to support older generated code - */ -function stackDuplexStreamingInterceptors(transport, method, options) { - return stackIntercept("duplex", transport, method, options); -} -exports.stackDuplexStreamingInterceptors = stackDuplexStreamingInterceptors; + // coalesce consecutive non-globstar * characters + if (c === '*' && stateChar === '*') continue -/***/ }), - -/***/ 8576: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { - + // if we already have a stateChar, then it means + // that there was something like ** or +? in there. + // Handle the stateChar, then proceed with this one. + self.debug('call clearStateChar %j', stateChar) + clearStateChar() + stateChar = c + // if extglob is disabled, then +(asdf|foo) isn't a thing. + // just clear the statechar *now*, rather than even diving into + // the patternList stuff. + if (options.noext) clearStateChar() + continue -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.mergeRpcOptions = void 0; -const runtime_1 = __nccwpck_require__(8886); -/** - * Merges custom RPC options with defaults. Returns a new instance and keeps - * the "defaults" and the "options" unmodified. - * - * Merges `RpcMetadata` "meta", overwriting values from "defaults" with - * values from "options". Does not append values to existing entries. - * - * Merges "jsonOptions", including "jsonOptions.typeRegistry", by creating - * a new array that contains types from "options.jsonOptions.typeRegistry" - * first, then types from "defaults.jsonOptions.typeRegistry". - * - * Merges "binaryOptions". - * - * Merges "interceptors" by creating a new array that contains interceptors - * from "defaults" first, then interceptors from "options". - * - * Works with objects that extend `RpcOptions`, but only if the added - * properties are of type Date, primitive like string, boolean, or Array - * of primitives. If you have other property types, you have to merge them - * yourself. - */ -function mergeRpcOptions(defaults, options) { - if (!options) - return defaults; - let o = {}; - copy(defaults, o); - copy(options, o); - for (let key of Object.keys(options)) { - let val = options[key]; - switch (key) { - case "jsonOptions": - o.jsonOptions = runtime_1.mergeJsonOptions(defaults.jsonOptions, o.jsonOptions); - break; - case "binaryOptions": - o.binaryOptions = runtime_1.mergeBinaryOptions(defaults.binaryOptions, o.binaryOptions); - break; - case "meta": - o.meta = {}; - copy(defaults.meta, o.meta); - copy(options.meta, o.meta); - break; - case "interceptors": - o.interceptors = defaults.interceptors ? defaults.interceptors.concat(val) : val.concat(); - break; + case '(': + if (inClass) { + re += '(' + continue } - } - return o; -} -exports.mergeRpcOptions = mergeRpcOptions; -function copy(a, into) { - if (!a) - return; - let c = into; - for (let [k, v] of Object.entries(a)) { - if (v instanceof Date) - c[k] = new Date(v.getTime()); - else if (Array.isArray(v)) - c[k] = v.concat(); - else - c[k] = v; - } -} + if (!stateChar) { + re += '\\(' + continue + } -/***/ }), - -/***/ 2726: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + patternListStack.push({ + type: stateChar, + start: i - 1, + reStart: re.length, + open: plTypes[stateChar].open, + close: plTypes[stateChar].close + }) + // negation is (?:(?!js)[^/]*) + re += stateChar === '!' ? '(?:(?!(?:' : '(?:' + this.debug('plType %j %j', stateChar, re) + stateChar = false + continue + case ')': + if (inClass || !patternListStack.length) { + re += '\\)' + continue + } -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.RpcOutputStreamController = void 0; -const deferred_1 = __nccwpck_require__(1409); -const runtime_1 = __nccwpck_require__(8886); -/** - * A `RpcOutputStream` that you control. - */ -class RpcOutputStreamController { - constructor() { - this._lis = { - nxt: [], - msg: [], - err: [], - cmp: [], - }; - this._closed = false; - // --- RpcOutputStream async iterator API - // iterator state. - // is undefined when no iterator has been acquired yet. - this._itState = { q: [] }; - } - // --- RpcOutputStream callback API - onNext(callback) { - return this.addLis(callback, this._lis.nxt); - } - onMessage(callback) { - return this.addLis(callback, this._lis.msg); - } - onError(callback) { - return this.addLis(callback, this._lis.err); - } - onComplete(callback) { - return this.addLis(callback, this._lis.cmp); - } - addLis(callback, list) { - list.push(callback); - return () => { - let i = list.indexOf(callback); - if (i >= 0) - list.splice(i, 1); - }; - } - // remove all listeners - clearLis() { - for (let l of Object.values(this._lis)) - l.splice(0, l.length); - } - // --- Controller API - /** - * Is this stream already closed by a completion or error? - */ - get closed() { - return this._closed !== false; - } - /** - * Emit message, close with error, or close successfully, but only one - * at a time. - * Can be used to wrap a stream by using the other stream's `onNext`. - */ - notifyNext(message, error, complete) { - runtime_1.assert((message ? 1 : 0) + (error ? 1 : 0) + (complete ? 1 : 0) <= 1, 'only one emission at a time'); - if (message) - this.notifyMessage(message); - if (error) - this.notifyError(error); - if (complete) - this.notifyComplete(); - } - /** - * Emits a new message. Throws if stream is closed. - * - * Triggers onNext and onMessage callbacks. - */ - notifyMessage(message) { - runtime_1.assert(!this.closed, 'stream is closed'); - this.pushIt({ value: message, done: false }); - this._lis.msg.forEach(l => l(message)); - this._lis.nxt.forEach(l => l(message, undefined, false)); - } - /** - * Closes the stream with an error. Throws if stream is closed. - * - * Triggers onNext and onError callbacks. - */ - notifyError(error) { - runtime_1.assert(!this.closed, 'stream is closed'); - this._closed = error; - this.pushIt(error); - this._lis.err.forEach(l => l(error)); - this._lis.nxt.forEach(l => l(undefined, error, false)); - this.clearLis(); - } - /** - * Closes the stream successfully. Throws if stream is closed. - * - * Triggers onNext and onComplete callbacks. - */ - notifyComplete() { - runtime_1.assert(!this.closed, 'stream is closed'); - this._closed = true; - this.pushIt({ value: null, done: true }); - this._lis.cmp.forEach(l => l()); - this._lis.nxt.forEach(l => l(undefined, undefined, true)); - this.clearLis(); - } - /** - * Creates an async iterator (that can be used with `for await {...}`) - * to consume the stream. - * - * Some things to note: - * - If an error occurs, the `for await` will throw it. - * - If an error occurred before the `for await` was started, `for await` - * will re-throw it. - * - If the stream is already complete, the `for await` will be empty. - * - If your `for await` consumes slower than the stream produces, - * for example because you are relaying messages in a slow operation, - * messages are queued. - */ - [Symbol.asyncIterator]() { - // if we are closed, we are definitely not receiving any more messages. - // but we can't let the iterator get stuck. we want to either: - // a) finish the new iterator immediately, because we are completed - // b) reject the new iterator, because we errored - if (this._closed === true) - this.pushIt({ value: null, done: true }); - else if (this._closed !== false) - this.pushIt(this._closed); - // the async iterator - return { - next: () => { - let state = this._itState; - runtime_1.assert(state, "bad state"); // if we don't have a state here, code is broken - // there should be no pending result. - // did the consumer call next() before we resolved our previous result promise? - runtime_1.assert(!state.p, "iterator contract broken"); - // did we produce faster than the iterator consumed? - // return the oldest result from the queue. - let first = state.q.shift(); - if (first) - return ("value" in first) ? Promise.resolve(first) : Promise.reject(first); - // we have no result ATM, but we promise one. - // as soon as we have a result, we must resolve promise. - state.p = new deferred_1.Deferred(); - return state.p.promise; - }, - }; - } - // "push" a new iterator result. - // this either resolves a pending promise, or enqueues the result. - pushIt(result) { - let state = this._itState; - // is the consumer waiting for us? - if (state.p) { - // yes, consumer is waiting for this promise. - const p = state.p; - runtime_1.assert(p.state == deferred_1.DeferredState.PENDING, "iterator contract broken"); - // resolve the promise - ("value" in result) ? p.resolve(result) : p.reject(result); - // must cleanup, otherwise iterator.next() would pick it up again. - delete state.p; + clearStateChar() + hasMagic = true + var pl = patternListStack.pop() + // negation is (?:(?!js)[^/]*) + // The others are (?:) + re += pl.close + if (pl.type === '!') { + negativeLists.push(pl) } - else { - // we are producing faster than the iterator consumes. - // push result onto queue. - state.q.push(result); + pl.reEnd = re.length + continue + + case '|': + if (inClass || !patternListStack.length || escaping) { + re += '\\|' + escaping = false + continue } - } -} -exports.RpcOutputStreamController = RpcOutputStreamController; + clearStateChar() + re += '|' + continue -/***/ }), + // these are mostly the same in regexp and glob + case '[': + // swallow any state-tracking char before the [ + clearStateChar() -/***/ 3352: -/***/ ((__unused_webpack_module, exports) => { + if (inClass) { + re += '\\' + c + continue + } + inClass = true + classStart = i + reClassStart = re.length + re += c + continue -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ServerCallContextController = void 0; -class ServerCallContextController { - constructor(method, headers, deadline, sendResponseHeadersFn, defaultStatus = { code: 'OK', detail: '' }) { - this._cancelled = false; - this._listeners = []; - this.method = method; - this.headers = headers; - this.deadline = deadline; - this.trailers = {}; - this._sendRH = sendResponseHeadersFn; - this.status = defaultStatus; - } - /** - * Set the call cancelled. - * - * Invokes all callbacks registered with onCancel() and - * sets `cancelled = true`. - */ - notifyCancelled() { - if (!this._cancelled) { - this._cancelled = true; - for (let l of this._listeners) { - l(); - } + case ']': + // a right bracket shall lose its special + // meaning and represent itself in + // a bracket expression if it occurs + // first in the list. -- POSIX.2 2.8.3.2 + if (i === classStart + 1 || !inClass) { + re += '\\' + c + escaping = false + continue } - } - /** - * Send response headers. - */ - sendResponseHeaders(data) { - this._sendRH(data); - } - /** - * Is the call cancelled? - * - * When the client closes the connection before the server - * is done, the call is cancelled. - * - * If you want to cancel a request on the server, throw a - * RpcError with the CANCELLED status code. - */ - get cancelled() { - return this._cancelled; - } - /** - * Add a callback for cancellation. - */ - onCancel(callback) { - const l = this._listeners; - l.push(callback); - return () => { - let i = l.indexOf(callback); - if (i >= 0) - l.splice(i, 1); - }; - } -} -exports.ServerCallContextController = ServerCallContextController; + // handle the case where we left a class open. + // "[z-a]" is valid, equivalent to "\[z-a\]" + // split where the last [ was, make sure we don't have + // an invalid re. if so, re-walk the contents of the + // would-be class to re-translate any characters that + // were passed through as-is + // TODO: It would probably be faster to determine this + // without a try/catch and a new RegExp, but it's tricky + // to do safely. For now, this is safe and works. + var cs = pattern.substring(classStart + 1, i) + try { + RegExp('[' + cs + ']') + } catch (er) { + // not a valid class! + var sp = this.parse(cs, SUBPARSE) + re = re.substr(0, reClassStart) + '\\[' + sp[0] + '\\]' + hasMagic = hasMagic || sp[1] + inClass = false + continue + } -/***/ }), + // finish up the class. + hasMagic = true + inClass = false + re += c + continue -/***/ 6173: -/***/ (function(__unused_webpack_module, exports) { + default: + // swallow any state char that wasn't consumed + clearStateChar() + if (escaping) { + // no need + escaping = false + } else if (reSpecials[c] + && !(c === '^' && inClass)) { + re += '\\' + } -var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { - function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } - return new (P || (P = Promise))(function (resolve, reject) { - function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } - function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } - function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } - step((generator = generator.apply(thisArg, _arguments || [])).next()); - }); -}; -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ServerStreamingCall = void 0; -/** - * A server streaming RPC call. The client provides exactly one input message - * but the server may respond with 0, 1, or more messages. - */ -class ServerStreamingCall { - constructor(method, requestHeaders, request, headers, response, status, trailers) { - this.method = method; - this.requestHeaders = requestHeaders; - this.request = request; - this.headers = headers; - this.responses = response; - this.status = status; - this.trailers = trailers; - } - /** - * Instead of awaiting the response status and trailers, you can - * just as well await this call itself to receive the server outcome. - * You should first setup some listeners to the `request` to - * see the actual messages the server replied with. - */ - then(onfulfilled, onrejected) { - return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); - } - promiseFinished() { - return __awaiter(this, void 0, void 0, function* () { - let [headers, status, trailers] = yield Promise.all([this.headers, this.status, this.trailers]); - return { - method: this.method, - requestHeaders: this.requestHeaders, - request: this.request, - headers, - status, - trailers, - }; - }); - } -} -exports.ServerStreamingCall = ServerStreamingCall; + re += c + } // switch + } // for -/***/ }), + // handle the case where we left a class open. + // "[abc" is valid, equivalent to "\[abc" + if (inClass) { + // split where the last [ was, and escape it + // this is a huge pita. We now have to re-walk + // the contents of the would-be class to re-translate + // any characters that were passed through as-is + cs = pattern.substr(classStart + 1) + sp = this.parse(cs, SUBPARSE) + re = re.substr(0, reClassStart) + '\\[' + sp[0] + hasMagic = hasMagic || sp[1] + } -/***/ 6892: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + // handle the case where we had a +( thing at the *end* + // of the pattern. + // each pattern list stack adds 3 chars, and we need to go through + // and escape any | chars that were passed through as-is for the regexp. + // Go through and escape them, taking care not to double-escape any + // | chars that were already escaped. + for (pl = patternListStack.pop(); pl; pl = patternListStack.pop()) { + var tail = re.slice(pl.reStart + pl.open.length) + this.debug('setting tail', re, pl) + // maybe some even number of \, then maybe 1 \, followed by a | + tail = tail.replace(/((?:\\{2}){0,64})(\\?)\|/g, function (_, $1, $2) { + if (!$2) { + // the | isn't already escaped, so escape it. + $2 = '\\' + } + // need to escape all those slashes *again*, without escaping the + // one that we need for escaping the | character. As it works out, + // escaping an even number of slashes can be done by simply repeating + // it exactly after itself. That's why this trick works. + // + // I am sorry that you have to see this. + return $1 + $1 + $2 + '|' + }) -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ServiceType = void 0; -const reflection_info_1 = __nccwpck_require__(2496); -class ServiceType { - constructor(typeName, methods, options) { - this.typeName = typeName; - this.methods = methods.map(i => reflection_info_1.normalizeMethodInfo(i, this)); - this.options = options !== null && options !== void 0 ? options : {}; - } -} -exports.ServiceType = ServiceType; + this.debug('tail=%j\n %s', tail, tail, pl, re) + var t = pl.type === '*' ? star + : pl.type === '?' ? qmark + : '\\' + pl.type + hasMagic = true + re = re.slice(0, pl.reStart) + t + '\\(' + tail + } -/***/ }), + // handle trailing things that only matter at the very end. + clearStateChar() + if (escaping) { + // trailing \\ + re += '\\\\' + } -/***/ 9122: -/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { + // only need to apply the nodot start if the re starts with + // something that could conceivably capture a dot + var addPatternStart = false + switch (re.charAt(0)) { + case '[': case '.': case '(': addPatternStart = true + } + // Hack to work around lack of negative lookbehind in JS + // A pattern like: *.!(x).!(y|z) needs to ensure that a name + // like 'a.xyz.yz' doesn't match. So, the first negative + // lookahead, has to look ALL the way ahead, to the end of + // the pattern. + for (var n = negativeLists.length - 1; n > -1; n--) { + var nl = negativeLists[n] -var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { - function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } - return new (P || (P = Promise))(function (resolve, reject) { - function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } - function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } - function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } - step((generator = generator.apply(thisArg, _arguments || [])).next()); - }); -}; -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.TestTransport = void 0; -const rpc_error_1 = __nccwpck_require__(8636); -const runtime_1 = __nccwpck_require__(8886); -const rpc_output_stream_1 = __nccwpck_require__(2726); -const rpc_options_1 = __nccwpck_require__(8576); -const unary_call_1 = __nccwpck_require__(9288); -const server_streaming_call_1 = __nccwpck_require__(6173); -const client_streaming_call_1 = __nccwpck_require__(7889); -const duplex_streaming_call_1 = __nccwpck_require__(6826); -/** - * Transport for testing. - */ -class TestTransport { - /** - * Initialize with mock data. Omitted fields have default value. - */ - constructor(data) { - /** - * Suppress warning / error about uncaught rejections of - * "status" and "trailers". - */ - this.suppressUncaughtRejections = true; - this.headerDelay = 10; - this.responseDelay = 50; - this.betweenResponseDelay = 10; - this.afterResponseDelay = 10; - this.data = data !== null && data !== void 0 ? data : {}; - } - /** - * Sent message(s) during the last operation. - */ - get sentMessages() { - if (this.lastInput instanceof TestInputStream) { - return this.lastInput.sent; - } - else if (typeof this.lastInput == "object") { - return [this.lastInput.single]; - } - return []; - } - /** - * Sending message(s) completed? - */ - get sendComplete() { - if (this.lastInput instanceof TestInputStream) { - return this.lastInput.completed; - } - else if (typeof this.lastInput == "object") { - return true; - } - return false; - } - // Creates a promise for response headers from the mock data. - promiseHeaders() { - var _a; - const headers = (_a = this.data.headers) !== null && _a !== void 0 ? _a : TestTransport.defaultHeaders; - return headers instanceof rpc_error_1.RpcError - ? Promise.reject(headers) - : Promise.resolve(headers); - } - // Creates a promise for a single, valid, message from the mock data. - promiseSingleResponse(method) { - if (this.data.response instanceof rpc_error_1.RpcError) { - return Promise.reject(this.data.response); - } - let r; - if (Array.isArray(this.data.response)) { - runtime_1.assert(this.data.response.length > 0); - r = this.data.response[0]; - } - else if (this.data.response !== undefined) { - r = this.data.response; - } - else { - r = method.O.create(); - } - runtime_1.assert(method.O.is(r)); - return Promise.resolve(r); - } - /** - * Pushes response messages from the mock data to the output stream. - * If an error response, status or trailers are mocked, the stream is - * closed with the respective error. - * Otherwise, stream is completed successfully. - * - * The returned promise resolves when the stream is closed. It should - * not reject. If it does, code is broken. - */ - streamResponses(method, stream, abort) { - return __awaiter(this, void 0, void 0, function* () { - // normalize "data.response" into an array of valid output messages - const messages = []; - if (this.data.response === undefined) { - messages.push(method.O.create()); - } - else if (Array.isArray(this.data.response)) { - for (let msg of this.data.response) { - runtime_1.assert(method.O.is(msg)); - messages.push(msg); - } - } - else if (!(this.data.response instanceof rpc_error_1.RpcError)) { - runtime_1.assert(method.O.is(this.data.response)); - messages.push(this.data.response); - } - // start the stream with an initial delay. - // if the request is cancelled, notify() error and exit. - try { - yield delay(this.responseDelay, abort)(undefined); - } - catch (error) { - stream.notifyError(error); - return; - } - // if error response was mocked, notify() error (stream is now closed with error) and exit. - if (this.data.response instanceof rpc_error_1.RpcError) { - stream.notifyError(this.data.response); - return; - } - // regular response messages were mocked. notify() them. - for (let msg of messages) { - stream.notifyMessage(msg); - // add a short delay between responses - // if the request is cancelled, notify() error and exit. - try { - yield delay(this.betweenResponseDelay, abort)(undefined); - } - catch (error) { - stream.notifyError(error); - return; - } - } - // error status was mocked, notify() error (stream is now closed with error) and exit. - if (this.data.status instanceof rpc_error_1.RpcError) { - stream.notifyError(this.data.status); - return; - } - // error trailers were mocked, notify() error (stream is now closed with error) and exit. - if (this.data.trailers instanceof rpc_error_1.RpcError) { - stream.notifyError(this.data.trailers); - return; - } - // stream completed successfully - stream.notifyComplete(); - }); - } - // Creates a promise for response status from the mock data. - promiseStatus() { - var _a; - const status = (_a = this.data.status) !== null && _a !== void 0 ? _a : TestTransport.defaultStatus; - return status instanceof rpc_error_1.RpcError - ? Promise.reject(status) - : Promise.resolve(status); - } - // Creates a promise for response trailers from the mock data. - promiseTrailers() { - var _a; - const trailers = (_a = this.data.trailers) !== null && _a !== void 0 ? _a : TestTransport.defaultTrailers; - return trailers instanceof rpc_error_1.RpcError - ? Promise.reject(trailers) - : Promise.resolve(trailers); - } - maybeSuppressUncaught(...promise) { - if (this.suppressUncaughtRejections) { - for (let p of promise) { - p.catch(() => { - }); - } - } - } - mergeOptions(options) { - return rpc_options_1.mergeRpcOptions({}, options); - } - unary(method, input, options) { - var _a; - const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() - .then(delay(this.headerDelay, options.abort)), responsePromise = headersPromise - .catch(_ => { - }) - .then(delay(this.responseDelay, options.abort)) - .then(_ => this.promiseSingleResponse(method)), statusPromise = responsePromise - .catch(_ => { - }) - .then(delay(this.afterResponseDelay, options.abort)) - .then(_ => this.promiseStatus()), trailersPromise = responsePromise - .catch(_ => { - }) - .then(delay(this.afterResponseDelay, options.abort)) - .then(_ => this.promiseTrailers()); - this.maybeSuppressUncaught(statusPromise, trailersPromise); - this.lastInput = { single: input }; - return new unary_call_1.UnaryCall(method, requestHeaders, input, headersPromise, responsePromise, statusPromise, trailersPromise); - } - serverStreaming(method, input, options) { - var _a; - const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() - .then(delay(this.headerDelay, options.abort)), outputStream = new rpc_output_stream_1.RpcOutputStreamController(), responseStreamClosedPromise = headersPromise - .then(delay(this.responseDelay, options.abort)) - .catch(() => { - }) - .then(() => this.streamResponses(method, outputStream, options.abort)) - .then(delay(this.afterResponseDelay, options.abort)), statusPromise = responseStreamClosedPromise - .then(() => this.promiseStatus()), trailersPromise = responseStreamClosedPromise - .then(() => this.promiseTrailers()); - this.maybeSuppressUncaught(statusPromise, trailersPromise); - this.lastInput = { single: input }; - return new server_streaming_call_1.ServerStreamingCall(method, requestHeaders, input, headersPromise, outputStream, statusPromise, trailersPromise); - } - clientStreaming(method, options) { - var _a; - const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() - .then(delay(this.headerDelay, options.abort)), responsePromise = headersPromise - .catch(_ => { - }) - .then(delay(this.responseDelay, options.abort)) - .then(_ => this.promiseSingleResponse(method)), statusPromise = responsePromise - .catch(_ => { - }) - .then(delay(this.afterResponseDelay, options.abort)) - .then(_ => this.promiseStatus()), trailersPromise = responsePromise - .catch(_ => { - }) - .then(delay(this.afterResponseDelay, options.abort)) - .then(_ => this.promiseTrailers()); - this.maybeSuppressUncaught(statusPromise, trailersPromise); - this.lastInput = new TestInputStream(this.data, options.abort); - return new client_streaming_call_1.ClientStreamingCall(method, requestHeaders, this.lastInput, headersPromise, responsePromise, statusPromise, trailersPromise); - } - duplex(method, options) { - var _a; - const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() - .then(delay(this.headerDelay, options.abort)), outputStream = new rpc_output_stream_1.RpcOutputStreamController(), responseStreamClosedPromise = headersPromise - .then(delay(this.responseDelay, options.abort)) - .catch(() => { - }) - .then(() => this.streamResponses(method, outputStream, options.abort)) - .then(delay(this.afterResponseDelay, options.abort)), statusPromise = responseStreamClosedPromise - .then(() => this.promiseStatus()), trailersPromise = responseStreamClosedPromise - .then(() => this.promiseTrailers()); - this.maybeSuppressUncaught(statusPromise, trailersPromise); - this.lastInput = new TestInputStream(this.data, options.abort); - return new duplex_streaming_call_1.DuplexStreamingCall(method, requestHeaders, this.lastInput, headersPromise, outputStream, statusPromise, trailersPromise); - } -} -exports.TestTransport = TestTransport; -TestTransport.defaultHeaders = { - responseHeader: "test" -}; -TestTransport.defaultStatus = { - code: "OK", detail: "all good" -}; -TestTransport.defaultTrailers = { - responseTrailer: "test" -}; -function delay(ms, abort) { - return (v) => new Promise((resolve, reject) => { - if (abort === null || abort === void 0 ? void 0 : abort.aborted) { - reject(new rpc_error_1.RpcError("user cancel", "CANCELLED")); - } - else { - const id = setTimeout(() => resolve(v), ms); - if (abort) { - abort.addEventListener("abort", ev => { - clearTimeout(id); - reject(new rpc_error_1.RpcError("user cancel", "CANCELLED")); - }); - } - } - }); -} -class TestInputStream { - constructor(data, abort) { - this._completed = false; - this._sent = []; - this.data = data; - this.abort = abort; - } - get sent() { - return this._sent; - } - get completed() { - return this._completed; - } - send(message) { - if (this.data.inputMessage instanceof rpc_error_1.RpcError) { - return Promise.reject(this.data.inputMessage); - } - const delayMs = this.data.inputMessage === undefined - ? 10 - : this.data.inputMessage; - return Promise.resolve(undefined) - .then(() => { - this._sent.push(message); - }) - .then(delay(delayMs, this.abort)); + var nlBefore = re.slice(0, nl.reStart) + var nlFirst = re.slice(nl.reStart, nl.reEnd - 8) + var nlLast = re.slice(nl.reEnd - 8, nl.reEnd) + var nlAfter = re.slice(nl.reEnd) + + nlLast += nlAfter + + // Handle nested stuff like *(*.js|!(*.json)), where open parens + // mean that we should *not* include the ) in the bit that is considered + // "after" the negated section. + var openParensBefore = nlBefore.split('(').length - 1 + var cleanAfter = nlAfter + for (i = 0; i < openParensBefore; i++) { + cleanAfter = cleanAfter.replace(/\)[+*?]?/, '') } - complete() { - if (this.data.inputComplete instanceof rpc_error_1.RpcError) { - return Promise.reject(this.data.inputComplete); - } - const delayMs = this.data.inputComplete === undefined - ? 10 - : this.data.inputComplete; - return Promise.resolve(undefined) - .then(() => { - this._completed = true; - }) - .then(delay(delayMs, this.abort)); + nlAfter = cleanAfter + + var dollar = '' + if (nlAfter === '' && isSub !== SUBPARSE) { + dollar = '$' } -} + var newRe = nlBefore + nlFirst + nlAfter + dollar + nlLast + re = newRe + } + // if the re is not "" at this point, then we need to make sure + // it doesn't match against an empty path part. + // Otherwise a/* will match a/, which it should not. + if (re !== '' && hasMagic) { + re = '(?=.)' + re + } -/***/ }), + if (addPatternStart) { + re = patternStart + re + } -/***/ 9288: -/***/ (function(__unused_webpack_module, exports) { + // parsing just a piece of a larger pattern. + if (isSub === SUBPARSE) { + return [re, hasMagic] + } + // skip the regexp for non-magical patterns + // unescape anything in it, though, so that it'll be + // an exact match against a file etc. + if (!hasMagic) { + return globUnescape(pattern) + } -var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { - function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } - return new (P || (P = Promise))(function (resolve, reject) { - function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } - function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } - function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } - step((generator = generator.apply(thisArg, _arguments || [])).next()); - }); -}; -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.UnaryCall = void 0; -/** - * A unary RPC call. Unary means there is exactly one input message and - * exactly one output message unless an error occurred. - */ -class UnaryCall { - constructor(method, requestHeaders, request, headers, response, status, trailers) { - this.method = method; - this.requestHeaders = requestHeaders; - this.request = request; - this.headers = headers; - this.response = response; - this.status = status; - this.trailers = trailers; - } - /** - * If you are only interested in the final outcome of this call, - * you can await it to receive a `FinishedUnaryCall`. - */ - then(onfulfilled, onrejected) { - return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); - } - promiseFinished() { - return __awaiter(this, void 0, void 0, function* () { - let [headers, response, status, trailers] = yield Promise.all([this.headers, this.response, this.status, this.trailers]); - return { - method: this.method, - requestHeaders: this.requestHeaders, - request: this.request, - headers, - response, - status, - trailers - }; - }); - } + var flags = options.nocase ? 'i' : '' + try { + var regExp = new RegExp('^' + re + '$', flags) + } catch (er) /* istanbul ignore next - should be impossible */ { + // If it was an invalid regular expression, then it can't match + // anything. This trick looks for a character after the end of + // the string, which is of course impossible, except in multi-line + // mode, but it's not a /m regex. + return new RegExp('$.') + } + + regExp._glob = pattern + regExp._src = re + + return regExp } -exports.UnaryCall = UnaryCall; +minimatch.makeRe = function (pattern, options) { + return new Minimatch(pattern, options || {}).makeRe() +} -/***/ }), +Minimatch.prototype.makeRe = makeRe +function makeRe () { + if (this.regexp || this.regexp === false) return this.regexp -/***/ 8602: -/***/ ((__unused_webpack_module, exports) => { + // at this point, this.set is a 2d array of partial + // pattern strings, or "**". + // + // It's better to use .match(). This function shouldn't + // be used, really, but it's pretty convenient sometimes, + // when you just want to work with a regex. + var set = this.set + if (!set.length) { + this.regexp = false + return this.regexp + } + var options = this.options -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.assertFloat32 = exports.assertUInt32 = exports.assertInt32 = exports.assertNever = exports.assert = void 0; -/** - * assert that condition is true or throw error (with message) - */ -function assert(condition, msg) { - if (!condition) { - throw new Error(msg); - } -} -exports.assert = assert; -/** - * assert that value cannot exist = type `never`. throw runtime error if it does. - */ -function assertNever(value, msg) { - throw new Error(msg !== null && msg !== void 0 ? msg : 'Unexpected object: ' + value); + var twoStar = options.noglobstar ? star + : options.dot ? twoStarDot + : twoStarNoDot + var flags = options.nocase ? 'i' : '' + + var re = set.map(function (pattern) { + return pattern.map(function (p) { + return (p === GLOBSTAR) ? twoStar + : (typeof p === 'string') ? regExpEscape(p) + : p._src + }).join('\\\/') + }).join('|') + + // must match entire pattern + // ending in a * or ** will make it less strict. + re = '^(?:' + re + ')$' + + // can match anything, as long as it's not this. + if (this.negate) re = '^(?!' + re + ').*$' + + try { + this.regexp = new RegExp(re, flags) + } catch (ex) /* istanbul ignore next - should be impossible */ { + this.regexp = false + } + return this.regexp } -exports.assertNever = assertNever; -const FLOAT32_MAX = 3.4028234663852886e+38, FLOAT32_MIN = -3.4028234663852886e+38, UINT32_MAX = 0xFFFFFFFF, INT32_MAX = 0X7FFFFFFF, INT32_MIN = -0X80000000; -function assertInt32(arg) { - if (typeof arg !== "number") - throw new Error('invalid int 32: ' + typeof arg); - if (!Number.isInteger(arg) || arg > INT32_MAX || arg < INT32_MIN) - throw new Error('invalid int 32: ' + arg); + +minimatch.match = function (list, pattern, options) { + options = options || {} + var mm = new Minimatch(pattern, options) + list = list.filter(function (f) { + return mm.match(f) + }) + if (mm.options.nonull && !list.length) { + list.push(pattern) + } + return list } -exports.assertInt32 = assertInt32; -function assertUInt32(arg) { - if (typeof arg !== "number") - throw new Error('invalid uint 32: ' + typeof arg); - if (!Number.isInteger(arg) || arg > UINT32_MAX || arg < 0) - throw new Error('invalid uint 32: ' + arg); + +Minimatch.prototype.match = function match (f, partial) { + if (typeof partial === 'undefined') partial = this.partial + this.debug('match', f, this.pattern) + // short-circuit in the case of busted things. + // comments, etc. + if (this.comment) return false + if (this.empty) return f === '' + + if (f === '/' && partial) return true + + var options = this.options + + // windows: need to use /, not \ + if (path.sep !== '/') { + f = f.split(path.sep).join('/') + } + + // treat the test path as a set of pathparts. + f = f.split(slashSplit) + this.debug(this.pattern, 'split', f) + + // just ONE of the pattern sets in this.set needs to match + // in order for it to be valid. If negating, then just one + // match means that we have failed. + // Either way, return on the first hit. + + var set = this.set + this.debug(this.pattern, 'set', set) + + // Find the basename of the path by looking for the last non-empty segment + var filename + var i + for (i = f.length - 1; i >= 0; i--) { + filename = f[i] + if (filename) break + } + + for (i = 0; i < set.length; i++) { + var pattern = set[i] + var file = f + if (options.matchBase && pattern.length === 1) { + file = [filename] + } + var hit = this.matchOne(file, pattern, partial) + if (hit) { + if (options.flipNegate) return true + return !this.negate + } + } + + // didn't get any hits. this is success if it's a negative + // pattern, failure otherwise. + if (options.flipNegate) return false + return this.negate } -exports.assertUInt32 = assertUInt32; -function assertFloat32(arg) { - if (typeof arg !== "number") - throw new Error('invalid float 32: ' + typeof arg); - if (!Number.isFinite(arg)) - return; - if (arg > FLOAT32_MAX || arg < FLOAT32_MIN) - throw new Error('invalid float 32: ' + arg); + +// set partial to true to test if, for example, +// "/a/b" matches the start of "/*/b/*/d" +// Partial means, if you run out of file before you run +// out of pattern, then that's fine, as long as all +// the parts match. +Minimatch.prototype.matchOne = function (file, pattern, partial) { + if (pattern.indexOf(GLOBSTAR) !== -1) { + return this._matchGlobstar(file, pattern, partial, 0, 0) + } + return this._matchOne(file, pattern, partial, 0, 0) } -exports.assertFloat32 = assertFloat32; +Minimatch.prototype._matchGlobstar = function (file, pattern, partial, fileIndex, patternIndex) { + var i -/***/ }), + // find first globstar from patternIndex + var firstgs = -1 + for (i = patternIndex; i < pattern.length; i++) { + if (pattern[i] === GLOBSTAR) { firstgs = i; break } + } -/***/ 6335: -/***/ ((__unused_webpack_module, exports) => { + // find last globstar + var lastgs = -1 + for (i = pattern.length - 1; i >= 0; i--) { + if (pattern[i] === GLOBSTAR) { lastgs = i; break } + } + var head = pattern.slice(patternIndex, firstgs) + var body = partial ? pattern.slice(firstgs + 1) : pattern.slice(firstgs + 1, lastgs) + var tail = partial ? [] : pattern.slice(lastgs + 1) -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.base64encode = exports.base64decode = void 0; -// lookup table from base64 character to byte -let encTable = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/'.split(''); -// lookup table from base64 character *code* to byte because lookup by number is fast -let decTable = []; -for (let i = 0; i < encTable.length; i++) - decTable[encTable[i].charCodeAt(0)] = i; -// support base64url variants -decTable["-".charCodeAt(0)] = encTable.indexOf("+"); -decTable["_".charCodeAt(0)] = encTable.indexOf("/"); -/** - * Decodes a base64 string to a byte array. - * - * - ignores white-space, including line breaks and tabs - * - allows inner padding (can decode concatenated base64 strings) - * - does not require padding - * - understands base64url encoding: - * "-" instead of "+", - * "_" instead of "/", - * no padding - */ -function base64decode(base64Str) { - // estimate byte size, not accounting for inner padding and whitespace - let es = base64Str.length * 3 / 4; - // if (es % 3 !== 0) - // throw new Error('invalid base64 string'); - if (base64Str[base64Str.length - 2] == '=') - es -= 2; - else if (base64Str[base64Str.length - 1] == '=') - es -= 1; - let bytes = new Uint8Array(es), bytePos = 0, // position in byte array - groupPos = 0, // position in base64 group - b, // current byte - p = 0 // previous byte - ; - for (let i = 0; i < base64Str.length; i++) { - b = decTable[base64Str.charCodeAt(i)]; - if (b === undefined) { - // noinspection FallThroughInSwitchStatementJS - switch (base64Str[i]) { - case '=': - groupPos = 0; // reset state when padding found - case '\n': - case '\r': - case '\t': - case ' ': - continue; // skip white-space, and padding - default: - throw Error(`invalid base64 string.`); - } - } - switch (groupPos) { - case 0: - p = b; - groupPos = 1; - break; - case 1: - bytes[bytePos++] = p << 2 | (b & 48) >> 4; - p = b; - groupPos = 2; - break; - case 2: - bytes[bytePos++] = (p & 15) << 4 | (b & 60) >> 2; - p = b; - groupPos = 3; - break; - case 3: - bytes[bytePos++] = (p & 3) << 6 | b; - groupPos = 0; - break; - } + // check the head + if (head.length) { + var fileHead = file.slice(fileIndex, fileIndex + head.length) + if (!this._matchOne(fileHead, head, partial, 0, 0)) { + return false } - if (groupPos == 1) - throw Error(`invalid base64 string.`); - return bytes.subarray(0, bytePos); + fileIndex += head.length + } + + // check the tail + var fileTailMatch = 0 + if (tail.length) { + if (tail.length + fileIndex > file.length) return false + + var tailStart = file.length - tail.length + if (this._matchOne(file, tail, partial, tailStart, 0)) { + fileTailMatch = tail.length + } else { + // affordance for stuff like a/**/* matching a/b/ + if (file[file.length - 1] !== '' || + fileIndex + tail.length === file.length) { + return false + } + tailStart-- + if (!this._matchOne(file, tail, partial, tailStart, 0)) { + return false + } + fileTailMatch = tail.length + 1 + } + } + + // if body is empty (single ** between head and tail) + if (!body.length) { + var sawSome = !!fileTailMatch + for (i = fileIndex; i < file.length - fileTailMatch; i++) { + var f = String(file[i]) + sawSome = true + if (f === '.' || f === '..' || + (!this.options.dot && f.charAt(0) === '.')) { + return false + } + } + return partial || sawSome + } + + // split body into segments at each GLOBSTAR + var bodySegments = [[[], 0]] + var currentBody = bodySegments[0] + var nonGsParts = 0 + var nonGsPartsSums = [0] + for (var bi = 0; bi < body.length; bi++) { + var b = body[bi] + if (b === GLOBSTAR) { + nonGsPartsSums.push(nonGsParts) + currentBody = [[], 0] + bodySegments.push(currentBody) + } else { + currentBody[0].push(b) + nonGsParts++ + } + } + + var idx = bodySegments.length - 1 + var fileLength = file.length - fileTailMatch + for (var si = 0; si < bodySegments.length; si++) { + bodySegments[si][1] = fileLength - + (nonGsPartsSums[idx--] + bodySegments[si][0].length) + } + + return !!this._matchGlobStarBodySections( + file, bodySegments, fileIndex, 0, partial, 0, !!fileTailMatch + ) } -exports.base64decode = base64decode; -/** - * Encodes a byte array to a base64 string. - * Adds padding at the end. - * Does not insert newlines. - */ -function base64encode(bytes) { - let base64 = '', groupPos = 0, // position in base64 group - b, // current byte - p = 0; // carry over from previous byte - for (let i = 0; i < bytes.length; i++) { - b = bytes[i]; - switch (groupPos) { - case 0: - base64 += encTable[b >> 2]; - p = (b & 3) << 4; - groupPos = 1; - break; - case 1: - base64 += encTable[p | b >> 4]; - p = (b & 15) << 2; - groupPos = 2; - break; - case 2: - base64 += encTable[p | b >> 6]; - base64 += encTable[b & 63]; - groupPos = 0; - break; - } + +// return false for "nope, not matching" +// return null for "not matching, cannot keep trying" +Minimatch.prototype._matchGlobStarBodySections = function ( + file, bodySegments, fileIndex, bodyIndex, partial, globStarDepth, sawTail +) { + var bs = bodySegments[bodyIndex] + if (!bs) { + // just make sure there are no bad dots + for (var i = fileIndex; i < file.length; i++) { + sawTail = true + var f = file[i] + if (f === '.' || f === '..' || + (!this.options.dot && f.charAt(0) === '.')) { + return false + } + } + return sawTail + } + + var body = bs[0] + var after = bs[1] + while (fileIndex <= after) { + var m = this._matchOne( + file.slice(0, fileIndex + body.length), + body, + partial, + fileIndex, + 0 + ) + // if limit exceeded, no match. intentional false negative, + // acceptable break in correctness for security. + if (m && globStarDepth < this.maxGlobstarRecursion) { + var sub = this._matchGlobStarBodySections( + file, bodySegments, + fileIndex + body.length, bodyIndex + 1, + partial, globStarDepth + 1, sawTail + ) + if (sub !== false) { + return sub + } } - // padding required? - if (groupPos) { - base64 += encTable[p]; - base64 += '='; - if (groupPos == 1) - base64 += '='; + var f = file[fileIndex] + if (f === '.' || f === '..' || + (!this.options.dot && f.charAt(0) === '.')) { + return false } - return base64; + fileIndex++ + } + return partial || null } -exports.base64encode = base64encode; - -/***/ }), - -/***/ 4816: -/***/ ((__unused_webpack_module, exports) => { +Minimatch.prototype._matchOne = function (file, pattern, partial, fileIndex, patternIndex) { + var fi, pi, fl, pl + for ( + fi = fileIndex, pi = patternIndex, fl = file.length, pl = pattern.length + ; (fi < fl) && (pi < pl) + ; fi++, pi++ + ) { + this.debug('matchOne loop') + var p = pattern[pi] + var f = file[fi] + this.debug(pattern, p, f) -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.WireType = exports.mergeBinaryOptions = exports.UnknownFieldHandler = void 0; -/** - * This handler implements the default behaviour for unknown fields. - * When reading data, unknown fields are stored on the message, in a - * symbol property. - * When writing data, the symbol property is queried and unknown fields - * are serialized into the output again. - */ -var UnknownFieldHandler; -(function (UnknownFieldHandler) { - /** - * The symbol used to store unknown fields for a message. - * The property must conform to `UnknownFieldContainer`. - */ - UnknownFieldHandler.symbol = Symbol.for("protobuf-ts/unknown"); - /** - * Store an unknown field during binary read directly on the message. - * This method is compatible with `BinaryReadOptions.readUnknownField`. - */ - UnknownFieldHandler.onRead = (typeName, message, fieldNo, wireType, data) => { - let container = is(message) ? message[UnknownFieldHandler.symbol] : message[UnknownFieldHandler.symbol] = []; - container.push({ no: fieldNo, wireType, data }); - }; - /** - * Write unknown fields stored for the message to the writer. - * This method is compatible with `BinaryWriteOptions.writeUnknownFields`. - */ - UnknownFieldHandler.onWrite = (typeName, message, writer) => { - for (let { no, wireType, data } of UnknownFieldHandler.list(message)) - writer.tag(no, wireType).raw(data); - }; - /** - * List unknown fields stored for the message. - * Note that there may be multiples fields with the same number. - */ - UnknownFieldHandler.list = (message, fieldNo) => { - if (is(message)) { - let all = message[UnknownFieldHandler.symbol]; - return fieldNo ? all.filter(uf => uf.no == fieldNo) : all; - } - return []; - }; - /** - * Returns the last unknown field by field number. - */ - UnknownFieldHandler.last = (message, fieldNo) => UnknownFieldHandler.list(message, fieldNo).slice(-1)[0]; - const is = (message) => message && Array.isArray(message[UnknownFieldHandler.symbol]); -})(UnknownFieldHandler = exports.UnknownFieldHandler || (exports.UnknownFieldHandler = {})); -/** - * Merges binary write or read options. Later values override earlier values. - */ -function mergeBinaryOptions(a, b) { - return Object.assign(Object.assign({}, a), b); -} -exports.mergeBinaryOptions = mergeBinaryOptions; -/** - * Protobuf binary format wire types. - * - * A wire type provides just enough information to find the length of the - * following value. - * - * See https://developers.google.com/protocol-buffers/docs/encoding#structure - */ -var WireType; -(function (WireType) { - /** - * Used for int32, int64, uint32, uint64, sint32, sint64, bool, enum - */ - WireType[WireType["Varint"] = 0] = "Varint"; - /** - * Used for fixed64, sfixed64, double. - * Always 8 bytes with little-endian byte order. - */ - WireType[WireType["Bit64"] = 1] = "Bit64"; - /** - * Used for string, bytes, embedded messages, packed repeated fields - * - * Only repeated numeric types (types which use the varint, 32-bit, - * or 64-bit wire types) can be packed. In proto3, such fields are - * packed by default. - */ - WireType[WireType["LengthDelimited"] = 2] = "LengthDelimited"; - /** - * Used for groups - * @deprecated - */ - WireType[WireType["StartGroup"] = 3] = "StartGroup"; - /** - * Used for groups - * @deprecated - */ - WireType[WireType["EndGroup"] = 4] = "EndGroup"; - /** - * Used for fixed32, sfixed32, float. - * Always 4 bytes with little-endian byte order. - */ - WireType[WireType["Bit32"] = 5] = "Bit32"; -})(WireType = exports.WireType || (exports.WireType = {})); + // should be impossible. + // some invalid regexp stuff in the set. + /* istanbul ignore if */ + if (p === false || p === GLOBSTAR) return false + // something other than ** + // non-magic patterns just have to match exactly + // patterns with magic have been turned into regexps. + var hit + if (typeof p === 'string') { + hit = f === p + this.debug('string match', p, f, hit) + } else { + hit = f.match(p) + this.debug('pattern match', p, f, hit) + } -/***/ }), + if (!hit) return false + } -/***/ 2889: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + // now either we fell off the end of the pattern, or we're done. + if (fi === fl && pi === pl) { + // ran out of pattern and filename at the same time. + // an exact hit! + return true + } else if (fi === fl) { + // ran out of file, but still had pattern left. + // this is ok if we're doing the match as part of + // a glob fs traversal. + return partial + } else /* istanbul ignore else */ if (pi === pl) { + // ran out of pattern, still have file left. + // this is only acceptable if we're on the very last + // empty segment of a file with a trailing slash. + // a/* should match a/b/ + return (fi === fl - 1) && (file[fi] === '') + } + // should be unreachable. + /* istanbul ignore next */ + throw new Error('wtf?') +} -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.BinaryReader = exports.binaryReadOptions = void 0; -const binary_format_contract_1 = __nccwpck_require__(4816); -const pb_long_1 = __nccwpck_require__(1753); -const goog_varint_1 = __nccwpck_require__(3223); -const defaultsRead = { - readUnknownField: true, - readerFactory: bytes => new BinaryReader(bytes), -}; -/** - * Make options for reading binary data form partial options. - */ -function binaryReadOptions(options) { - return options ? Object.assign(Object.assign({}, defaultsRead), options) : defaultsRead; +// replace stuff like \* with * +function globUnescape (s) { + return s.replace(/\\(.)/g, '$1') } -exports.binaryReadOptions = binaryReadOptions; -class BinaryReader { - constructor(buf, textDecoder) { - this.varint64 = goog_varint_1.varint64read; // dirty cast for `this` - /** - * Read a `uint32` field, an unsigned 32 bit varint. - */ - this.uint32 = goog_varint_1.varint32read; // dirty cast for `this` and access to protected `buf` - this.buf = buf; - this.len = buf.length; - this.pos = 0; - this.view = new DataView(buf.buffer, buf.byteOffset, buf.byteLength); - this.textDecoder = textDecoder !== null && textDecoder !== void 0 ? textDecoder : new TextDecoder("utf-8", { - fatal: true, - ignoreBOM: true, - }); - } - /** - * Reads a tag - field number and wire type. - */ - tag() { - let tag = this.uint32(), fieldNo = tag >>> 3, wireType = tag & 7; - if (fieldNo <= 0 || wireType < 0 || wireType > 5) - throw new Error("illegal tag: field no " + fieldNo + " wire type " + wireType); - return [fieldNo, wireType]; - } - /** - * Skip one element on the wire and return the skipped data. - * Supports WireType.StartGroup since v2.0.0-alpha.23. - */ - skip(wireType) { - let start = this.pos; - // noinspection FallThroughInSwitchStatementJS - switch (wireType) { - case binary_format_contract_1.WireType.Varint: - while (this.buf[this.pos++] & 0x80) { - // ignore - } - break; - case binary_format_contract_1.WireType.Bit64: - this.pos += 4; - case binary_format_contract_1.WireType.Bit32: - this.pos += 4; - break; - case binary_format_contract_1.WireType.LengthDelimited: - let len = this.uint32(); - this.pos += len; - break; - case binary_format_contract_1.WireType.StartGroup: - // From descriptor.proto: Group type is deprecated, not supported in proto3. - // But we must still be able to parse and treat as unknown. - let t; - while ((t = this.tag()[1]) !== binary_format_contract_1.WireType.EndGroup) { - this.skip(t); - } - break; - default: - throw new Error("cant skip wire type " + wireType); - } - this.assertBounds(); - return this.buf.subarray(start, this.pos); - } - /** - * Throws error if position in byte array is out of range. - */ - assertBounds() { - if (this.pos > this.len) - throw new RangeError("premature EOF"); - } - /** - * Read a `int32` field, a signed 32 bit varint. - */ - int32() { - return this.uint32() | 0; - } - /** - * Read a `sint32` field, a signed, zigzag-encoded 32-bit varint. - */ - sint32() { - let zze = this.uint32(); - // decode zigzag - return (zze >>> 1) ^ -(zze & 1); - } - /** - * Read a `int64` field, a signed 64-bit varint. - */ - int64() { - return new pb_long_1.PbLong(...this.varint64()); - } - /** - * Read a `uint64` field, an unsigned 64-bit varint. - */ - uint64() { - return new pb_long_1.PbULong(...this.varint64()); - } - /** - * Read a `sint64` field, a signed, zig-zag-encoded 64-bit varint. - */ - sint64() { - let [lo, hi] = this.varint64(); - // decode zig zag - let s = -(lo & 1); - lo = ((lo >>> 1 | (hi & 1) << 31) ^ s); - hi = (hi >>> 1 ^ s); - return new pb_long_1.PbLong(lo, hi); - } - /** - * Read a `bool` field, a variant. - */ - bool() { - let [lo, hi] = this.varint64(); - return lo !== 0 || hi !== 0; - } - /** - * Read a `fixed32` field, an unsigned, fixed-length 32-bit integer. - */ - fixed32() { - return this.view.getUint32((this.pos += 4) - 4, true); - } - /** - * Read a `sfixed32` field, a signed, fixed-length 32-bit integer. - */ - sfixed32() { - return this.view.getInt32((this.pos += 4) - 4, true); - } - /** - * Read a `fixed64` field, an unsigned, fixed-length 64 bit integer. - */ - fixed64() { - return new pb_long_1.PbULong(this.sfixed32(), this.sfixed32()); - } - /** - * Read a `fixed64` field, a signed, fixed-length 64-bit integer. - */ - sfixed64() { - return new pb_long_1.PbLong(this.sfixed32(), this.sfixed32()); - } - /** - * Read a `float` field, 32-bit floating point number. - */ - float() { - return this.view.getFloat32((this.pos += 4) - 4, true); - } - /** - * Read a `double` field, a 64-bit floating point number. - */ - double() { - return this.view.getFloat64((this.pos += 8) - 8, true); - } - /** - * Read a `bytes` field, length-delimited arbitrary data. - */ - bytes() { - let len = this.uint32(); - let start = this.pos; - this.pos += len; - this.assertBounds(); - return this.buf.subarray(start, start + len); - } - /** - * Read a `string` field, length-delimited data converted to UTF-8 text. - */ - string() { - return this.textDecoder.decode(this.bytes()); - } + +function regExpEscape (s) { + return s.replace(/[-[\]{}()*+?.,\\^$|#\s]/g, '\\$&') } -exports.BinaryReader = BinaryReader; /***/ }), -/***/ 3957: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { +/***/ 9659: +/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.BinaryWriter = exports.binaryWriteOptions = void 0; -const pb_long_1 = __nccwpck_require__(1753); -const goog_varint_1 = __nccwpck_require__(3223); -const assert_1 = __nccwpck_require__(8602); -const defaultsWrite = { - writeUnknownFields: true, - writerFactory: () => new BinaryWriter(), +/* eslint-disable @typescript-eslint/no-explicit-any */ +var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { + if (k2 === undefined) k2 = k; + var desc = Object.getOwnPropertyDescriptor(m, k); + if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { + desc = { enumerable: true, get: function() { return m[k]; } }; + } + Object.defineProperty(o, k2, desc); +}) : (function(o, m, k, k2) { + if (k2 === undefined) k2 = k; + o[k2] = m[k]; +})); +var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { + Object.defineProperty(o, "default", { enumerable: true, value: v }); +}) : function(o, v) { + o["default"] = v; +}); +var __importStar = (this && this.__importStar) || (function () { + var ownKeys = function(o) { + ownKeys = Object.getOwnPropertyNames || function (o) { + var ar = []; + for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; + return ar; + }; + return ownKeys(o); + }; + return function (mod) { + if (mod && mod.__esModule) return mod; + var result = {}; + if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); + __setModuleDefault(result, mod); + return result; + }; +})(); +var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { + function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } + return new (P || (P = Promise))(function (resolve, reject) { + function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } + function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } + function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } + step((generator = generator.apply(thisArg, _arguments || [])).next()); + }); }; +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.HttpClient = exports.HttpClientResponse = exports.HttpClientError = exports.MediaTypes = exports.Headers = exports.HttpCodes = void 0; +exports.getProxyUrl = getProxyUrl; +exports.isHttps = isHttps; +const http = __importStar(__nccwpck_require__(8611)); +const https = __importStar(__nccwpck_require__(5692)); +const pm = __importStar(__nccwpck_require__(3335)); +const tunnel = __importStar(__nccwpck_require__(770)); +const undici_1 = __nccwpck_require__(6752); +var HttpCodes; +(function (HttpCodes) { + HttpCodes[HttpCodes["OK"] = 200] = "OK"; + HttpCodes[HttpCodes["MultipleChoices"] = 300] = "MultipleChoices"; + HttpCodes[HttpCodes["MovedPermanently"] = 301] = "MovedPermanently"; + HttpCodes[HttpCodes["ResourceMoved"] = 302] = "ResourceMoved"; + HttpCodes[HttpCodes["SeeOther"] = 303] = "SeeOther"; + HttpCodes[HttpCodes["NotModified"] = 304] = "NotModified"; + HttpCodes[HttpCodes["UseProxy"] = 305] = "UseProxy"; + HttpCodes[HttpCodes["SwitchProxy"] = 306] = "SwitchProxy"; + HttpCodes[HttpCodes["TemporaryRedirect"] = 307] = "TemporaryRedirect"; + HttpCodes[HttpCodes["PermanentRedirect"] = 308] = "PermanentRedirect"; + HttpCodes[HttpCodes["BadRequest"] = 400] = "BadRequest"; + HttpCodes[HttpCodes["Unauthorized"] = 401] = "Unauthorized"; + HttpCodes[HttpCodes["PaymentRequired"] = 402] = "PaymentRequired"; + HttpCodes[HttpCodes["Forbidden"] = 403] = "Forbidden"; + HttpCodes[HttpCodes["NotFound"] = 404] = "NotFound"; + HttpCodes[HttpCodes["MethodNotAllowed"] = 405] = "MethodNotAllowed"; + HttpCodes[HttpCodes["NotAcceptable"] = 406] = "NotAcceptable"; + HttpCodes[HttpCodes["ProxyAuthenticationRequired"] = 407] = "ProxyAuthenticationRequired"; + HttpCodes[HttpCodes["RequestTimeout"] = 408] = "RequestTimeout"; + HttpCodes[HttpCodes["Conflict"] = 409] = "Conflict"; + HttpCodes[HttpCodes["Gone"] = 410] = "Gone"; + HttpCodes[HttpCodes["TooManyRequests"] = 429] = "TooManyRequests"; + HttpCodes[HttpCodes["InternalServerError"] = 500] = "InternalServerError"; + HttpCodes[HttpCodes["NotImplemented"] = 501] = "NotImplemented"; + HttpCodes[HttpCodes["BadGateway"] = 502] = "BadGateway"; + HttpCodes[HttpCodes["ServiceUnavailable"] = 503] = "ServiceUnavailable"; + HttpCodes[HttpCodes["GatewayTimeout"] = 504] = "GatewayTimeout"; +})(HttpCodes || (exports.HttpCodes = HttpCodes = {})); +var Headers; +(function (Headers) { + Headers["Accept"] = "accept"; + Headers["ContentType"] = "content-type"; +})(Headers || (exports.Headers = Headers = {})); +var MediaTypes; +(function (MediaTypes) { + MediaTypes["ApplicationJson"] = "application/json"; +})(MediaTypes || (exports.MediaTypes = MediaTypes = {})); /** - * Make options for writing binary data form partial options. + * Returns the proxy URL, depending upon the supplied url and proxy environment variables. + * @param serverUrl The server URL where the request will be sent. For example, https://api.github.com */ -function binaryWriteOptions(options) { - return options ? Object.assign(Object.assign({}, defaultsWrite), options) : defaultsWrite; +function getProxyUrl(serverUrl) { + const proxyUrl = pm.getProxyUrl(new URL(serverUrl)); + return proxyUrl ? proxyUrl.href : ''; } -exports.binaryWriteOptions = binaryWriteOptions; -class BinaryWriter { - constructor(textEncoder) { - /** - * Previous fork states. - */ - this.stack = []; - this.textEncoder = textEncoder !== null && textEncoder !== void 0 ? textEncoder : new TextEncoder(); - this.chunks = []; - this.buf = []; - } - /** - * Return all bytes written and reset this writer. - */ - finish() { - this.chunks.push(new Uint8Array(this.buf)); // flush the buffer - let len = 0; - for (let i = 0; i < this.chunks.length; i++) - len += this.chunks[i].length; - let bytes = new Uint8Array(len); - let offset = 0; - for (let i = 0; i < this.chunks.length; i++) { - bytes.set(this.chunks[i], offset); - offset += this.chunks[i].length; - } - this.chunks = []; - return bytes; - } - /** - * Start a new fork for length-delimited data like a message - * or a packed repeated field. - * - * Must be joined later with `join()`. - */ - fork() { - this.stack.push({ chunks: this.chunks, buf: this.buf }); - this.chunks = []; - this.buf = []; - return this; +const HttpRedirectCodes = [ + HttpCodes.MovedPermanently, + HttpCodes.ResourceMoved, + HttpCodes.SeeOther, + HttpCodes.TemporaryRedirect, + HttpCodes.PermanentRedirect +]; +const HttpResponseRetryCodes = [ + HttpCodes.BadGateway, + HttpCodes.ServiceUnavailable, + HttpCodes.GatewayTimeout +]; +const RetryableHttpVerbs = ['OPTIONS', 'GET', 'DELETE', 'HEAD']; +const ExponentialBackoffCeiling = 10; +const ExponentialBackoffTimeSlice = 5; +class HttpClientError extends Error { + constructor(message, statusCode) { + super(message); + this.name = 'HttpClientError'; + this.statusCode = statusCode; + Object.setPrototypeOf(this, HttpClientError.prototype); } - /** - * Join the last fork. Write its length and bytes, then - * return to the previous state. - */ - join() { - // get chunk of fork - let chunk = this.finish(); - // restore previous state - let prev = this.stack.pop(); - if (!prev) - throw new Error('invalid state, fork stack empty'); - this.chunks = prev.chunks; - this.buf = prev.buf; - // write length of chunk as varint - this.uint32(chunk.byteLength); - return this.raw(chunk); +} +exports.HttpClientError = HttpClientError; +class HttpClientResponse { + constructor(message) { + this.message = message; } - /** - * Writes a tag (field number and wire type). - * - * Equivalent to `uint32( (fieldNo << 3 | type) >>> 0 )`. - * - * Generated code should compute the tag ahead of time and call `uint32()`. - */ - tag(fieldNo, type) { - return this.uint32((fieldNo << 3 | type) >>> 0); + readBody() { + return __awaiter(this, void 0, void 0, function* () { + return new Promise((resolve) => __awaiter(this, void 0, void 0, function* () { + let output = Buffer.alloc(0); + this.message.on('data', (chunk) => { + output = Buffer.concat([output, chunk]); + }); + this.message.on('end', () => { + resolve(output.toString()); + }); + })); + }); } - /** - * Write a chunk of raw bytes. - */ - raw(chunk) { - if (this.buf.length) { - this.chunks.push(new Uint8Array(this.buf)); - this.buf = []; - } - this.chunks.push(chunk); - return this; + readBodyBuffer() { + return __awaiter(this, void 0, void 0, function* () { + return new Promise((resolve) => __awaiter(this, void 0, void 0, function* () { + const chunks = []; + this.message.on('data', (chunk) => { + chunks.push(chunk); + }); + this.message.on('end', () => { + resolve(Buffer.concat(chunks)); + }); + })); + }); } - /** - * Write a `uint32` value, an unsigned 32 bit varint. - */ - uint32(value) { - assert_1.assertUInt32(value); - // write value as varint 32, inlined for speed - while (value > 0x7f) { - this.buf.push((value & 0x7f) | 0x80); - value = value >>> 7; +} +exports.HttpClientResponse = HttpClientResponse; +function isHttps(requestUrl) { + const parsedUrl = new URL(requestUrl); + return parsedUrl.protocol === 'https:'; +} +class HttpClient { + constructor(userAgent, handlers, requestOptions) { + this._ignoreSslError = false; + this._allowRedirects = true; + this._allowRedirectDowngrade = false; + this._maxRedirects = 50; + this._allowRetries = false; + this._maxRetries = 1; + this._keepAlive = false; + this._disposed = false; + this.userAgent = this._getUserAgentWithOrchestrationId(userAgent); + this.handlers = handlers || []; + this.requestOptions = requestOptions; + if (requestOptions) { + if (requestOptions.ignoreSslError != null) { + this._ignoreSslError = requestOptions.ignoreSslError; + } + this._socketTimeout = requestOptions.socketTimeout; + if (requestOptions.allowRedirects != null) { + this._allowRedirects = requestOptions.allowRedirects; + } + if (requestOptions.allowRedirectDowngrade != null) { + this._allowRedirectDowngrade = requestOptions.allowRedirectDowngrade; + } + if (requestOptions.maxRedirects != null) { + this._maxRedirects = Math.max(requestOptions.maxRedirects, 0); + } + if (requestOptions.keepAlive != null) { + this._keepAlive = requestOptions.keepAlive; + } + if (requestOptions.allowRetries != null) { + this._allowRetries = requestOptions.allowRetries; + } + if (requestOptions.maxRetries != null) { + this._maxRetries = requestOptions.maxRetries; + } } - this.buf.push(value); - return this; - } - /** - * Write a `int32` value, a signed 32 bit varint. - */ - int32(value) { - assert_1.assertInt32(value); - goog_varint_1.varint32write(value, this.buf); - return this; } - /** - * Write a `bool` value, a variant. - */ - bool(value) { - this.buf.push(value ? 1 : 0); - return this; + options(requestUrl, additionalHeaders) { + return __awaiter(this, void 0, void 0, function* () { + return this.request('OPTIONS', requestUrl, null, additionalHeaders || {}); + }); } - /** - * Write a `bytes` value, length-delimited arbitrary data. - */ - bytes(value) { - this.uint32(value.byteLength); // write length of chunk as varint - return this.raw(value); + get(requestUrl, additionalHeaders) { + return __awaiter(this, void 0, void 0, function* () { + return this.request('GET', requestUrl, null, additionalHeaders || {}); + }); } - /** - * Write a `string` value, length-delimited data converted to UTF-8 text. - */ - string(value) { - let chunk = this.textEncoder.encode(value); - this.uint32(chunk.byteLength); // write length of chunk as varint - return this.raw(chunk); + del(requestUrl, additionalHeaders) { + return __awaiter(this, void 0, void 0, function* () { + return this.request('DELETE', requestUrl, null, additionalHeaders || {}); + }); } - /** - * Write a `float` value, 32-bit floating point number. - */ - float(value) { - assert_1.assertFloat32(value); - let chunk = new Uint8Array(4); - new DataView(chunk.buffer).setFloat32(0, value, true); - return this.raw(chunk); + post(requestUrl, data, additionalHeaders) { + return __awaiter(this, void 0, void 0, function* () { + return this.request('POST', requestUrl, data, additionalHeaders || {}); + }); } - /** - * Write a `double` value, a 64-bit floating point number. - */ - double(value) { - let chunk = new Uint8Array(8); - new DataView(chunk.buffer).setFloat64(0, value, true); - return this.raw(chunk); + patch(requestUrl, data, additionalHeaders) { + return __awaiter(this, void 0, void 0, function* () { + return this.request('PATCH', requestUrl, data, additionalHeaders || {}); + }); } - /** - * Write a `fixed32` value, an unsigned, fixed-length 32-bit integer. - */ - fixed32(value) { - assert_1.assertUInt32(value); - let chunk = new Uint8Array(4); - new DataView(chunk.buffer).setUint32(0, value, true); - return this.raw(chunk); + put(requestUrl, data, additionalHeaders) { + return __awaiter(this, void 0, void 0, function* () { + return this.request('PUT', requestUrl, data, additionalHeaders || {}); + }); } - /** - * Write a `sfixed32` value, a signed, fixed-length 32-bit integer. - */ - sfixed32(value) { - assert_1.assertInt32(value); - let chunk = new Uint8Array(4); - new DataView(chunk.buffer).setInt32(0, value, true); - return this.raw(chunk); + head(requestUrl, additionalHeaders) { + return __awaiter(this, void 0, void 0, function* () { + return this.request('HEAD', requestUrl, null, additionalHeaders || {}); + }); } - /** - * Write a `sint32` value, a signed, zigzag-encoded 32-bit varint. - */ - sint32(value) { - assert_1.assertInt32(value); - // zigzag encode - value = ((value << 1) ^ (value >> 31)) >>> 0; - goog_varint_1.varint32write(value, this.buf); - return this; + sendStream(verb, requestUrl, stream, additionalHeaders) { + return __awaiter(this, void 0, void 0, function* () { + return this.request(verb, requestUrl, stream, additionalHeaders); + }); } /** - * Write a `fixed64` value, a signed, fixed-length 64-bit integer. + * Gets a typed object from an endpoint + * Be aware that not found returns a null. Other errors (4xx, 5xx) reject the promise */ - sfixed64(value) { - let chunk = new Uint8Array(8); - let view = new DataView(chunk.buffer); - let long = pb_long_1.PbLong.from(value); - view.setInt32(0, long.lo, true); - view.setInt32(4, long.hi, true); - return this.raw(chunk); + getJson(requestUrl_1) { + return __awaiter(this, arguments, void 0, function* (requestUrl, additionalHeaders = {}) { + additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); + const res = yield this.get(requestUrl, additionalHeaders); + return this._processResponse(res, this.requestOptions); + }); } - /** - * Write a `fixed64` value, an unsigned, fixed-length 64 bit integer. - */ - fixed64(value) { - let chunk = new Uint8Array(8); - let view = new DataView(chunk.buffer); - let long = pb_long_1.PbULong.from(value); - view.setInt32(0, long.lo, true); - view.setInt32(4, long.hi, true); - return this.raw(chunk); + postJson(requestUrl_1, obj_1) { + return __awaiter(this, arguments, void 0, function* (requestUrl, obj, additionalHeaders = {}) { + const data = JSON.stringify(obj, null, 2); + additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); + additionalHeaders[Headers.ContentType] = + this._getExistingOrDefaultContentTypeHeader(additionalHeaders, MediaTypes.ApplicationJson); + const res = yield this.post(requestUrl, data, additionalHeaders); + return this._processResponse(res, this.requestOptions); + }); } - /** - * Write a `int64` value, a signed 64-bit varint. - */ - int64(value) { - let long = pb_long_1.PbLong.from(value); - goog_varint_1.varint64write(long.lo, long.hi, this.buf); - return this; + putJson(requestUrl_1, obj_1) { + return __awaiter(this, arguments, void 0, function* (requestUrl, obj, additionalHeaders = {}) { + const data = JSON.stringify(obj, null, 2); + additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); + additionalHeaders[Headers.ContentType] = + this._getExistingOrDefaultContentTypeHeader(additionalHeaders, MediaTypes.ApplicationJson); + const res = yield this.put(requestUrl, data, additionalHeaders); + return this._processResponse(res, this.requestOptions); + }); } - /** - * Write a `sint64` value, a signed, zig-zag-encoded 64-bit varint. - */ - sint64(value) { - let long = pb_long_1.PbLong.from(value), - // zigzag encode - sign = long.hi >> 31, lo = (long.lo << 1) ^ sign, hi = ((long.hi << 1) | (long.lo >>> 31)) ^ sign; - goog_varint_1.varint64write(lo, hi, this.buf); - return this; + patchJson(requestUrl_1, obj_1) { + return __awaiter(this, arguments, void 0, function* (requestUrl, obj, additionalHeaders = {}) { + const data = JSON.stringify(obj, null, 2); + additionalHeaders[Headers.Accept] = this._getExistingOrDefaultHeader(additionalHeaders, Headers.Accept, MediaTypes.ApplicationJson); + additionalHeaders[Headers.ContentType] = + this._getExistingOrDefaultContentTypeHeader(additionalHeaders, MediaTypes.ApplicationJson); + const res = yield this.patch(requestUrl, data, additionalHeaders); + return this._processResponse(res, this.requestOptions); + }); } /** - * Write a `uint64` value, an unsigned 64-bit varint. + * Makes a raw http request. + * All other methods such as get, post, patch, and request ultimately call this. + * Prefer get, del, post and patch */ - uint64(value) { - let long = pb_long_1.PbULong.from(value); - goog_varint_1.varint64write(long.lo, long.hi, this.buf); - return this; - } -} -exports.BinaryWriter = BinaryWriter; - - -/***/ }), - -/***/ 257: -/***/ ((__unused_webpack_module, exports) => { - - -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.listEnumNumbers = exports.listEnumNames = exports.listEnumValues = exports.isEnumObject = void 0; -/** - * Is this a lookup object generated by Typescript, for a Typescript enum - * generated by protobuf-ts? - * - * - No `const enum` (enum must not be inlined, we need reverse mapping). - * - No string enum (we need int32 for protobuf). - * - Must have a value for 0 (otherwise, we would need to support custom default values). - */ -function isEnumObject(arg) { - if (typeof arg != 'object' || arg === null) { - return false; - } - if (!arg.hasOwnProperty(0)) { - return false; - } - for (let k of Object.keys(arg)) { - let num = parseInt(k); - if (!Number.isNaN(num)) { - // is there a name for the number? - let nam = arg[num]; - if (nam === undefined) - return false; - // does the name resolve back to the number? - if (arg[nam] !== num) - return false; - } - else { - // is there a number for the name? - let num = arg[k]; - if (num === undefined) - return false; - // is it a string enum? - if (typeof num !== 'number') - return false; - // do we know the number? - if (arg[num] === undefined) - return false; - } - } - return true; -} -exports.isEnumObject = isEnumObject; -/** - * Lists all values of a Typescript enum, as an array of objects with a "name" - * property and a "number" property. - * - * Note that it is possible that a number appears more than once, because it is - * possible to have aliases in an enum. - * - * Throws if the enum does not adhere to the rules of enums generated by - * protobuf-ts. See `isEnumObject()`. - */ -function listEnumValues(enumObject) { - if (!isEnumObject(enumObject)) - throw new Error("not a typescript enum object"); - let values = []; - for (let [name, number] of Object.entries(enumObject)) - if (typeof number == "number") - values.push({ name, number }); - return values; -} -exports.listEnumValues = listEnumValues; -/** - * Lists the names of a Typescript enum. - * - * Throws if the enum does not adhere to the rules of enums generated by - * protobuf-ts. See `isEnumObject()`. - */ -function listEnumNames(enumObject) { - return listEnumValues(enumObject).map(val => val.name); -} -exports.listEnumNames = listEnumNames; -/** - * Lists the numbers of a Typescript enum. - * - * Throws if the enum does not adhere to the rules of enums generated by - * protobuf-ts. See `isEnumObject()`. - */ -function listEnumNumbers(enumObject) { - return listEnumValues(enumObject) - .map(val => val.number) - .filter((num, index, arr) => arr.indexOf(num) == index); -} -exports.listEnumNumbers = listEnumNumbers; - - -/***/ }), - -/***/ 3223: -/***/ ((__unused_webpack_module, exports) => { - - -// Copyright 2008 Google Inc. All rights reserved. -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above -// copyright notice, this list of conditions and the following disclaimer -// in the documentation and/or other materials provided with the -// distribution. -// * Neither the name of Google Inc. nor the names of its -// contributors may be used to endorse or promote products derived from -// this software without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. -// -// Code generated by the Protocol Buffer compiler is owned by the owner -// of the input file used when generating it. This code is not -// standalone and requires a support library to be linked with it. This -// support library is itself covered by the above license. -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.varint32read = exports.varint32write = exports.int64toString = exports.int64fromString = exports.varint64write = exports.varint64read = void 0; -/** - * Read a 64 bit varint as two JS numbers. - * - * Returns tuple: - * [0]: low bits - * [0]: high bits - * - * Copyright 2008 Google Inc. All rights reserved. - * - * See https://github.com/protocolbuffers/protobuf/blob/8a71927d74a4ce34efe2d8769fda198f52d20d12/js/experimental/runtime/kernel/buffer_decoder.js#L175 - */ -function varint64read() { - let lowBits = 0; - let highBits = 0; - for (let shift = 0; shift < 28; shift += 7) { - let b = this.buf[this.pos++]; - lowBits |= (b & 0x7F) << shift; - if ((b & 0x80) == 0) { - this.assertBounds(); - return [lowBits, highBits]; + request(verb, requestUrl, data, headers) { + return __awaiter(this, void 0, void 0, function* () { + if (this._disposed) { + throw new Error('Client has already been disposed.'); + } + const parsedUrl = new URL(requestUrl); + let info = this._prepareRequest(verb, parsedUrl, headers); + // Only perform retries on reads since writes may not be idempotent. + const maxTries = this._allowRetries && RetryableHttpVerbs.includes(verb) + ? this._maxRetries + 1 + : 1; + let numTries = 0; + let response; + do { + response = yield this.requestRaw(info, data); + // Check if it's an authentication challenge + if (response && + response.message && + response.message.statusCode === HttpCodes.Unauthorized) { + let authenticationHandler; + for (const handler of this.handlers) { + if (handler.canHandleAuthentication(response)) { + authenticationHandler = handler; + break; + } + } + if (authenticationHandler) { + return authenticationHandler.handleAuthentication(this, info, data); + } + else { + // We have received an unauthorized response but have no handlers to handle it. + // Let the response return to the caller. + return response; + } + } + let redirectsRemaining = this._maxRedirects; + while (response.message.statusCode && + HttpRedirectCodes.includes(response.message.statusCode) && + this._allowRedirects && + redirectsRemaining > 0) { + const redirectUrl = response.message.headers['location']; + if (!redirectUrl) { + // if there's no location to redirect to, we won't + break; + } + const parsedRedirectUrl = new URL(redirectUrl); + if (parsedUrl.protocol === 'https:' && + parsedUrl.protocol !== parsedRedirectUrl.protocol && + !this._allowRedirectDowngrade) { + throw new Error('Redirect from HTTPS to HTTP protocol. This downgrade is not allowed for security reasons. If you want to allow this behavior, set the allowRedirectDowngrade option to true.'); + } + // we need to finish reading the response before reassigning response + // which will leak the open socket. + yield response.readBody(); + // strip authorization header if redirected to a different hostname + if (parsedRedirectUrl.hostname !== parsedUrl.hostname) { + for (const header in headers) { + // header names are case insensitive + if (header.toLowerCase() === 'authorization') { + delete headers[header]; + } + } + } + // let's make the request with the new redirectUrl + info = this._prepareRequest(verb, parsedRedirectUrl, headers); + response = yield this.requestRaw(info, data); + redirectsRemaining--; + } + if (!response.message.statusCode || + !HttpResponseRetryCodes.includes(response.message.statusCode)) { + // If not a retry code, return immediately instead of retrying + return response; + } + numTries += 1; + if (numTries < maxTries) { + yield response.readBody(); + yield this._performExponentialBackoff(numTries); + } + } while (numTries < maxTries); + return response; + }); + } + /** + * Needs to be called if keepAlive is set to true in request options. + */ + dispose() { + if (this._agent) { + this._agent.destroy(); } + this._disposed = true; } - let middleByte = this.buf[this.pos++]; - // last four bits of the first 32 bit number - lowBits |= (middleByte & 0x0F) << 28; - // 3 upper bits are part of the next 32 bit number - highBits = (middleByte & 0x70) >> 4; - if ((middleByte & 0x80) == 0) { - this.assertBounds(); - return [lowBits, highBits]; + /** + * Raw request. + * @param info + * @param data + */ + requestRaw(info, data) { + return __awaiter(this, void 0, void 0, function* () { + return new Promise((resolve, reject) => { + function callbackForResult(err, res) { + if (err) { + reject(err); + } + else if (!res) { + // If `err` is not passed, then `res` must be passed. + reject(new Error('Unknown error')); + } + else { + resolve(res); + } + } + this.requestRawWithCallback(info, data, callbackForResult); + }); + }); } - for (let shift = 3; shift <= 31; shift += 7) { - let b = this.buf[this.pos++]; - highBits |= (b & 0x7F) << shift; - if ((b & 0x80) == 0) { - this.assertBounds(); - return [lowBits, highBits]; + /** + * Raw request with callback. + * @param info + * @param data + * @param onResult + */ + requestRawWithCallback(info, data, onResult) { + if (typeof data === 'string') { + if (!info.options.headers) { + info.options.headers = {}; + } + info.options.headers['Content-Length'] = Buffer.byteLength(data, 'utf8'); + } + let callbackCalled = false; + function handleResult(err, res) { + if (!callbackCalled) { + callbackCalled = true; + onResult(err, res); + } + } + const req = info.httpModule.request(info.options, (msg) => { + const res = new HttpClientResponse(msg); + handleResult(undefined, res); + }); + let socket; + req.on('socket', sock => { + socket = sock; + }); + // If we ever get disconnected, we want the socket to timeout eventually + req.setTimeout(this._socketTimeout || 3 * 60000, () => { + if (socket) { + socket.end(); + } + handleResult(new Error(`Request timeout: ${info.options.path}`)); + }); + req.on('error', function (err) { + // err has statusCode property + // res should have headers + handleResult(err); + }); + if (data && typeof data === 'string') { + req.write(data, 'utf8'); + } + if (data && typeof data !== 'string') { + data.on('close', function () { + req.end(); + }); + data.pipe(req); + } + else { + req.end(); } } - throw new Error('invalid varint'); -} -exports.varint64read = varint64read; -/** - * Write a 64 bit varint, given as two JS numbers, to the given bytes array. - * - * Copyright 2008 Google Inc. All rights reserved. - * - * See https://github.com/protocolbuffers/protobuf/blob/8a71927d74a4ce34efe2d8769fda198f52d20d12/js/experimental/runtime/kernel/writer.js#L344 - */ -function varint64write(lo, hi, bytes) { - for (let i = 0; i < 28; i = i + 7) { - const shift = lo >>> i; - const hasNext = !((shift >>> 7) == 0 && hi == 0); - const byte = (hasNext ? shift | 0x80 : shift) & 0xFF; - bytes.push(byte); - if (!hasNext) { + /** + * Gets an http agent. This function is useful when you need an http agent that handles + * routing through a proxy server - depending upon the url and proxy environment variables. + * @param serverUrl The server URL where the request will be sent. For example, https://api.github.com + */ + getAgent(serverUrl) { + const parsedUrl = new URL(serverUrl); + return this._getAgent(parsedUrl); + } + getAgentDispatcher(serverUrl) { + const parsedUrl = new URL(serverUrl); + const proxyUrl = pm.getProxyUrl(parsedUrl); + const useProxy = proxyUrl && proxyUrl.hostname; + if (!useProxy) { return; } + return this._getProxyAgentDispatcher(parsedUrl, proxyUrl); } - const splitBits = ((lo >>> 28) & 0x0F) | ((hi & 0x07) << 4); - const hasMoreBits = !((hi >> 3) == 0); - bytes.push((hasMoreBits ? splitBits | 0x80 : splitBits) & 0xFF); - if (!hasMoreBits) { - return; + _prepareRequest(method, requestUrl, headers) { + const info = {}; + info.parsedUrl = requestUrl; + const usingSsl = info.parsedUrl.protocol === 'https:'; + info.httpModule = usingSsl ? https : http; + const defaultPort = usingSsl ? 443 : 80; + info.options = {}; + info.options.host = info.parsedUrl.hostname; + info.options.port = info.parsedUrl.port + ? parseInt(info.parsedUrl.port) + : defaultPort; + info.options.path = + (info.parsedUrl.pathname || '') + (info.parsedUrl.search || ''); + info.options.method = method; + info.options.headers = this._mergeHeaders(headers); + if (this.userAgent != null) { + info.options.headers['user-agent'] = this.userAgent; + } + info.options.agent = this._getAgent(info.parsedUrl); + // gives handlers an opportunity to participate + if (this.handlers) { + for (const handler of this.handlers) { + handler.prepareRequest(info.options); + } + } + return info; } - for (let i = 3; i < 31; i = i + 7) { - const shift = hi >>> i; - const hasNext = !((shift >>> 7) == 0); - const byte = (hasNext ? shift | 0x80 : shift) & 0xFF; - bytes.push(byte); - if (!hasNext) { - return; + _mergeHeaders(headers) { + if (this.requestOptions && this.requestOptions.headers) { + return Object.assign({}, lowercaseKeys(this.requestOptions.headers), lowercaseKeys(headers || {})); } + return lowercaseKeys(headers || {}); } - bytes.push((hi >>> 31) & 0x01); -} -exports.varint64write = varint64write; -// constants for binary math -const TWO_PWR_32_DBL = (1 << 16) * (1 << 16); -/** - * Parse decimal string of 64 bit integer value as two JS numbers. - * - * Returns tuple: - * [0]: minus sign? - * [1]: low bits - * [2]: high bits - * - * Copyright 2008 Google Inc. - */ -function int64fromString(dec) { - // Check for minus sign. - let minus = dec[0] == '-'; - if (minus) - dec = dec.slice(1); - // Work 6 decimal digits at a time, acting like we're converting base 1e6 - // digits to binary. This is safe to do with floating point math because - // Number.isSafeInteger(ALL_32_BITS * 1e6) == true. - const base = 1e6; - let lowBits = 0; - let highBits = 0; - function add1e6digit(begin, end) { - // Note: Number('') is 0. - const digit1e6 = Number(dec.slice(begin, end)); - highBits *= base; - lowBits = lowBits * base + digit1e6; - // Carry bits from lowBits to highBits - if (lowBits >= TWO_PWR_32_DBL) { - highBits = highBits + ((lowBits / TWO_PWR_32_DBL) | 0); - lowBits = lowBits % TWO_PWR_32_DBL; + /** + * Gets an existing header value or returns a default. + * Handles converting number header values to strings since HTTP headers must be strings. + * Note: This returns string | string[] since some headers can have multiple values. + * For headers that must always be a single string (like Content-Type), use the + * specialized _getExistingOrDefaultContentTypeHeader method instead. + */ + _getExistingOrDefaultHeader(additionalHeaders, header, _default) { + let clientHeader; + if (this.requestOptions && this.requestOptions.headers) { + const headerValue = lowercaseKeys(this.requestOptions.headers)[header]; + if (headerValue) { + clientHeader = + typeof headerValue === 'number' ? headerValue.toString() : headerValue; + } } + const additionalValue = additionalHeaders[header]; + if (additionalValue !== undefined) { + return typeof additionalValue === 'number' + ? additionalValue.toString() + : additionalValue; + } + if (clientHeader !== undefined) { + return clientHeader; + } + return _default; } - add1e6digit(-24, -18); - add1e6digit(-18, -12); - add1e6digit(-12, -6); - add1e6digit(-6); - return [minus, lowBits, highBits]; -} -exports.int64fromString = int64fromString; -/** - * Format 64 bit integer value (as two JS numbers) to decimal string. - * - * Copyright 2008 Google Inc. - */ -function int64toString(bitsLow, bitsHigh) { - // Skip the expensive conversion if the number is small enough to use the - // built-in conversions. - if ((bitsHigh >>> 0) <= 0x1FFFFF) { - return '' + (TWO_PWR_32_DBL * bitsHigh + (bitsLow >>> 0)); + /** + * Specialized version of _getExistingOrDefaultHeader for Content-Type header. + * Always returns a single string (not an array) since Content-Type should be a single value. + * Converts arrays to comma-separated strings and numbers to strings to ensure type safety. + * This was split from _getExistingOrDefaultHeader to provide stricter typing for callers + * that assign the result to places expecting a string (e.g., additionalHeaders[Headers.ContentType]). + */ + _getExistingOrDefaultContentTypeHeader(additionalHeaders, _default) { + let clientHeader; + if (this.requestOptions && this.requestOptions.headers) { + const headerValue = lowercaseKeys(this.requestOptions.headers)[Headers.ContentType]; + if (headerValue) { + if (typeof headerValue === 'number') { + clientHeader = String(headerValue); + } + else if (Array.isArray(headerValue)) { + clientHeader = headerValue.join(', '); + } + else { + clientHeader = headerValue; + } + } + } + const additionalValue = additionalHeaders[Headers.ContentType]; + // Return the first non-undefined value, converting numbers or arrays to strings if necessary + if (additionalValue !== undefined) { + if (typeof additionalValue === 'number') { + return String(additionalValue); + } + else if (Array.isArray(additionalValue)) { + return additionalValue.join(', '); + } + else { + return additionalValue; + } + } + if (clientHeader !== undefined) { + return clientHeader; + } + return _default; } - // What this code is doing is essentially converting the input number from - // base-2 to base-1e7, which allows us to represent the 64-bit range with - // only 3 (very large) digits. Those digits are then trivial to convert to - // a base-10 string. - // The magic numbers used here are - - // 2^24 = 16777216 = (1,6777216) in base-1e7. - // 2^48 = 281474976710656 = (2,8147497,6710656) in base-1e7. - // Split 32:32 representation into 16:24:24 representation so our - // intermediate digits don't overflow. - let low = bitsLow & 0xFFFFFF; - let mid = (((bitsLow >>> 24) | (bitsHigh << 8)) >>> 0) & 0xFFFFFF; - let high = (bitsHigh >> 16) & 0xFFFF; - // Assemble our three base-1e7 digits, ignoring carries. The maximum - // value in a digit at this step is representable as a 48-bit integer, which - // can be stored in a 64-bit floating point number. - let digitA = low + (mid * 6777216) + (high * 6710656); - let digitB = mid + (high * 8147497); - let digitC = (high * 2); - // Apply carries from A to B and from B to C. - let base = 10000000; - if (digitA >= base) { - digitB += Math.floor(digitA / base); - digitA %= base; + _getAgent(parsedUrl) { + let agent; + const proxyUrl = pm.getProxyUrl(parsedUrl); + const useProxy = proxyUrl && proxyUrl.hostname; + if (this._keepAlive && useProxy) { + agent = this._proxyAgent; + } + if (!useProxy) { + agent = this._agent; + } + // if agent is already assigned use that agent. + if (agent) { + return agent; + } + const usingSsl = parsedUrl.protocol === 'https:'; + let maxSockets = 100; + if (this.requestOptions) { + maxSockets = this.requestOptions.maxSockets || http.globalAgent.maxSockets; + } + // This is `useProxy` again, but we need to check `proxyURl` directly for TypeScripts's flow analysis. + if (proxyUrl && proxyUrl.hostname) { + const agentOptions = { + maxSockets, + keepAlive: this._keepAlive, + proxy: Object.assign(Object.assign({}, ((proxyUrl.username || proxyUrl.password) && { + proxyAuth: `${proxyUrl.username}:${proxyUrl.password}` + })), { host: proxyUrl.hostname, port: proxyUrl.port }) + }; + let tunnelAgent; + const overHttps = proxyUrl.protocol === 'https:'; + if (usingSsl) { + tunnelAgent = overHttps ? tunnel.httpsOverHttps : tunnel.httpsOverHttp; + } + else { + tunnelAgent = overHttps ? tunnel.httpOverHttps : tunnel.httpOverHttp; + } + agent = tunnelAgent(agentOptions); + this._proxyAgent = agent; + } + // if tunneling agent isn't assigned create a new agent + if (!agent) { + const options = { keepAlive: this._keepAlive, maxSockets }; + agent = usingSsl ? new https.Agent(options) : new http.Agent(options); + this._agent = agent; + } + if (usingSsl && this._ignoreSslError) { + // we don't want to set NODE_TLS_REJECT_UNAUTHORIZED=0 since that will affect request for entire process + // http.RequestOptions doesn't expose a way to modify RequestOptions.agent.options + // we have to cast it to any and change it directly + agent.options = Object.assign(agent.options || {}, { + rejectUnauthorized: false + }); + } + return agent; } - if (digitB >= base) { - digitC += Math.floor(digitB / base); - digitB %= base; + _getProxyAgentDispatcher(parsedUrl, proxyUrl) { + let proxyAgent; + if (this._keepAlive) { + proxyAgent = this._proxyAgentDispatcher; + } + // if agent is already assigned use that agent. + if (proxyAgent) { + return proxyAgent; + } + const usingSsl = parsedUrl.protocol === 'https:'; + proxyAgent = new undici_1.ProxyAgent(Object.assign({ uri: proxyUrl.href, pipelining: !this._keepAlive ? 0 : 1 }, ((proxyUrl.username || proxyUrl.password) && { + token: `Basic ${Buffer.from(`${proxyUrl.username}:${proxyUrl.password}`).toString('base64')}` + }))); + this._proxyAgentDispatcher = proxyAgent; + if (usingSsl && this._ignoreSslError) { + // we don't want to set NODE_TLS_REJECT_UNAUTHORIZED=0 since that will affect request for entire process + // http.RequestOptions doesn't expose a way to modify RequestOptions.agent.options + // we have to cast it to any and change it directly + proxyAgent.options = Object.assign(proxyAgent.options.requestTls || {}, { + rejectUnauthorized: false + }); + } + return proxyAgent; } - // Convert base-1e7 digits to base-10, with optional leading zeroes. - function decimalFrom1e7(digit1e7, needLeadingZeros) { - let partial = digit1e7 ? String(digit1e7) : ''; - if (needLeadingZeros) { - return '0000000'.slice(partial.length) + partial; + _getUserAgentWithOrchestrationId(userAgent) { + const baseUserAgent = userAgent || 'actions/http-client'; + const orchId = process.env['ACTIONS_ORCHESTRATION_ID']; + if (orchId) { + // Sanitize the orchestration ID to ensure it contains only valid characters + // Valid characters: 0-9, a-z, _, -, . + const sanitizedId = orchId.replace(/[^a-z0-9_.-]/gi, '_'); + return `${baseUserAgent} actions_orchestration_id/${sanitizedId}`; } - return partial; + return baseUserAgent; + } + _performExponentialBackoff(retryNumber) { + return __awaiter(this, void 0, void 0, function* () { + retryNumber = Math.min(ExponentialBackoffCeiling, retryNumber); + const ms = ExponentialBackoffTimeSlice * Math.pow(2, retryNumber); + return new Promise(resolve => setTimeout(() => resolve(), ms)); + }); + } + _processResponse(res, options) { + return __awaiter(this, void 0, void 0, function* () { + return new Promise((resolve, reject) => __awaiter(this, void 0, void 0, function* () { + const statusCode = res.message.statusCode || 0; + const response = { + statusCode, + result: null, + headers: {} + }; + // not found leads to null obj returned + if (statusCode === HttpCodes.NotFound) { + resolve(response); + } + // get the result from the body + function dateTimeDeserializer(key, value) { + if (typeof value === 'string') { + const a = new Date(value); + if (!isNaN(a.valueOf())) { + return a; + } + } + return value; + } + let obj; + let contents; + try { + contents = yield res.readBody(); + if (contents && contents.length > 0) { + if (options && options.deserializeDates) { + obj = JSON.parse(contents, dateTimeDeserializer); + } + else { + obj = JSON.parse(contents); + } + response.result = obj; + } + response.headers = res.message.headers; + } + catch (err) { + // Invalid resource (contents not json); leaving result obj null + } + // note that 3xx redirects are handled by the http layer. + if (statusCode > 299) { + let msg; + // if exception/error in body, attempt to get better error + if (obj && obj.message) { + msg = obj.message; + } + else if (contents && contents.length > 0) { + // it may be the case that the exception is in the body message as string + msg = contents; + } + else { + msg = `Failed request: (${statusCode})`; + } + const err = new HttpClientError(msg, statusCode); + err.result = response.result; + reject(err); + } + else { + resolve(response); + } + })); + }); } - return decimalFrom1e7(digitC, /*needLeadingZeros=*/ 0) + - decimalFrom1e7(digitB, /*needLeadingZeros=*/ digitC) + - // If the final 1e7 digit didn't need leading zeros, we would have - // returned via the trivial code path at the top. - decimalFrom1e7(digitA, /*needLeadingZeros=*/ 1); } -exports.int64toString = int64toString; -/** - * Write a 32 bit varint, signed or unsigned. Same as `varint64write(0, value, bytes)` - * - * Copyright 2008 Google Inc. All rights reserved. - * - * See https://github.com/protocolbuffers/protobuf/blob/1b18833f4f2a2f681f4e4a25cdf3b0a43115ec26/js/binary/encoder.js#L144 - */ -function varint32write(value, bytes) { - if (value >= 0) { - // write value as varint 32 - while (value > 0x7f) { - bytes.push((value & 0x7f) | 0x80); - value = value >>> 7; +exports.HttpClient = HttpClient; +const lowercaseKeys = (obj) => Object.keys(obj).reduce((c, k) => ((c[k.toLowerCase()] = obj[k]), c), {}); +//# sourceMappingURL=index.js.map + +/***/ }), + +/***/ 3335: +/***/ ((__unused_webpack_module, exports) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.getProxyUrl = getProxyUrl; +exports.checkBypass = checkBypass; +function getProxyUrl(reqUrl) { + const usingSsl = reqUrl.protocol === 'https:'; + if (checkBypass(reqUrl)) { + return undefined; + } + const proxyVar = (() => { + if (usingSsl) { + return process.env['https_proxy'] || process.env['HTTPS_PROXY']; + } + else { + return process.env['http_proxy'] || process.env['HTTP_PROXY']; + } + })(); + if (proxyVar) { + try { + return new DecodedURL(proxyVar); + } + catch (_a) { + if (!proxyVar.startsWith('http://') && !proxyVar.startsWith('https://')) + return new DecodedURL(`http://${proxyVar}`); } - bytes.push(value); } else { - for (let i = 0; i < 9; i++) { - bytes.push(value & 127 | 128); - value = value >> 7; - } - bytes.push(1); + return undefined; } } -exports.varint32write = varint32write; -/** - * Read an unsigned 32 bit varint. - * - * See https://github.com/protocolbuffers/protobuf/blob/8a71927d74a4ce34efe2d8769fda198f52d20d12/js/experimental/runtime/kernel/buffer_decoder.js#L220 - */ -function varint32read() { - let b = this.buf[this.pos++]; - let result = b & 0x7F; - if ((b & 0x80) == 0) { - this.assertBounds(); - return result; +function checkBypass(reqUrl) { + if (!reqUrl.hostname) { + return false; } - b = this.buf[this.pos++]; - result |= (b & 0x7F) << 7; - if ((b & 0x80) == 0) { - this.assertBounds(); - return result; + const reqHost = reqUrl.hostname; + if (isLoopbackAddress(reqHost)) { + return true; } - b = this.buf[this.pos++]; - result |= (b & 0x7F) << 14; - if ((b & 0x80) == 0) { - this.assertBounds(); - return result; + const noProxy = process.env['no_proxy'] || process.env['NO_PROXY'] || ''; + if (!noProxy) { + return false; } - b = this.buf[this.pos++]; - result |= (b & 0x7F) << 21; - if ((b & 0x80) == 0) { - this.assertBounds(); - return result; + // Determine the request port + let reqPort; + if (reqUrl.port) { + reqPort = Number(reqUrl.port); } - // Extract only last 4 bits - b = this.buf[this.pos++]; - result |= (b & 0x0F) << 28; - for (let readBytes = 5; ((b & 0x80) !== 0) && readBytes < 10; readBytes++) - b = this.buf[this.pos++]; - if ((b & 0x80) != 0) - throw new Error('invalid varint'); - this.assertBounds(); - // Result can have 32 bits, convert it to unsigned - return result >>> 0; -} -exports.varint32read = varint32read; - - -/***/ }), - -/***/ 8886: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { - - -// Public API of the protobuf-ts runtime. -// Note: we do not use `export * from ...` to help tree shakers, -// webpack verbose output hints that this should be useful -Object.defineProperty(exports, "__esModule", ({ value: true })); -// Convenience JSON typings and corresponding type guards -var json_typings_1 = __nccwpck_require__(9999); -Object.defineProperty(exports, "typeofJsonValue", ({ enumerable: true, get: function () { return json_typings_1.typeofJsonValue; } })); -Object.defineProperty(exports, "isJsonObject", ({ enumerable: true, get: function () { return json_typings_1.isJsonObject; } })); -// Base 64 encoding -var base64_1 = __nccwpck_require__(6335); -Object.defineProperty(exports, "base64decode", ({ enumerable: true, get: function () { return base64_1.base64decode; } })); -Object.defineProperty(exports, "base64encode", ({ enumerable: true, get: function () { return base64_1.base64encode; } })); -// UTF8 encoding -var protobufjs_utf8_1 = __nccwpck_require__(8950); -Object.defineProperty(exports, "utf8read", ({ enumerable: true, get: function () { return protobufjs_utf8_1.utf8read; } })); -// Binary format contracts, options for reading and writing, for example -var binary_format_contract_1 = __nccwpck_require__(4816); -Object.defineProperty(exports, "WireType", ({ enumerable: true, get: function () { return binary_format_contract_1.WireType; } })); -Object.defineProperty(exports, "mergeBinaryOptions", ({ enumerable: true, get: function () { return binary_format_contract_1.mergeBinaryOptions; } })); -Object.defineProperty(exports, "UnknownFieldHandler", ({ enumerable: true, get: function () { return binary_format_contract_1.UnknownFieldHandler; } })); -// Standard IBinaryReader implementation -var binary_reader_1 = __nccwpck_require__(2889); -Object.defineProperty(exports, "BinaryReader", ({ enumerable: true, get: function () { return binary_reader_1.BinaryReader; } })); -Object.defineProperty(exports, "binaryReadOptions", ({ enumerable: true, get: function () { return binary_reader_1.binaryReadOptions; } })); -// Standard IBinaryWriter implementation -var binary_writer_1 = __nccwpck_require__(3957); -Object.defineProperty(exports, "BinaryWriter", ({ enumerable: true, get: function () { return binary_writer_1.BinaryWriter; } })); -Object.defineProperty(exports, "binaryWriteOptions", ({ enumerable: true, get: function () { return binary_writer_1.binaryWriteOptions; } })); -// Int64 and UInt64 implementations required for the binary format -var pb_long_1 = __nccwpck_require__(1753); -Object.defineProperty(exports, "PbLong", ({ enumerable: true, get: function () { return pb_long_1.PbLong; } })); -Object.defineProperty(exports, "PbULong", ({ enumerable: true, get: function () { return pb_long_1.PbULong; } })); -// JSON format contracts, options for reading and writing, for example -var json_format_contract_1 = __nccwpck_require__(9367); -Object.defineProperty(exports, "jsonReadOptions", ({ enumerable: true, get: function () { return json_format_contract_1.jsonReadOptions; } })); -Object.defineProperty(exports, "jsonWriteOptions", ({ enumerable: true, get: function () { return json_format_contract_1.jsonWriteOptions; } })); -Object.defineProperty(exports, "mergeJsonOptions", ({ enumerable: true, get: function () { return json_format_contract_1.mergeJsonOptions; } })); -// Message type contract -var message_type_contract_1 = __nccwpck_require__(3785); -Object.defineProperty(exports, "MESSAGE_TYPE", ({ enumerable: true, get: function () { return message_type_contract_1.MESSAGE_TYPE; } })); -// Message type implementation via reflection -var message_type_1 = __nccwpck_require__(5106); -Object.defineProperty(exports, "MessageType", ({ enumerable: true, get: function () { return message_type_1.MessageType; } })); -// Reflection info, generated by the plugin, exposed to the user, used by reflection ops -var reflection_info_1 = __nccwpck_require__(7910); -Object.defineProperty(exports, "ScalarType", ({ enumerable: true, get: function () { return reflection_info_1.ScalarType; } })); -Object.defineProperty(exports, "LongType", ({ enumerable: true, get: function () { return reflection_info_1.LongType; } })); -Object.defineProperty(exports, "RepeatType", ({ enumerable: true, get: function () { return reflection_info_1.RepeatType; } })); -Object.defineProperty(exports, "normalizeFieldInfo", ({ enumerable: true, get: function () { return reflection_info_1.normalizeFieldInfo; } })); -Object.defineProperty(exports, "readFieldOptions", ({ enumerable: true, get: function () { return reflection_info_1.readFieldOptions; } })); -Object.defineProperty(exports, "readFieldOption", ({ enumerable: true, get: function () { return reflection_info_1.readFieldOption; } })); -Object.defineProperty(exports, "readMessageOption", ({ enumerable: true, get: function () { return reflection_info_1.readMessageOption; } })); -// Message operations via reflection -var reflection_type_check_1 = __nccwpck_require__(5167); -Object.defineProperty(exports, "ReflectionTypeCheck", ({ enumerable: true, get: function () { return reflection_type_check_1.ReflectionTypeCheck; } })); -var reflection_create_1 = __nccwpck_require__(5726); -Object.defineProperty(exports, "reflectionCreate", ({ enumerable: true, get: function () { return reflection_create_1.reflectionCreate; } })); -var reflection_scalar_default_1 = __nccwpck_require__(9526); -Object.defineProperty(exports, "reflectionScalarDefault", ({ enumerable: true, get: function () { return reflection_scalar_default_1.reflectionScalarDefault; } })); -var reflection_merge_partial_1 = __nccwpck_require__(8044); -Object.defineProperty(exports, "reflectionMergePartial", ({ enumerable: true, get: function () { return reflection_merge_partial_1.reflectionMergePartial; } })); -var reflection_equals_1 = __nccwpck_require__(4827); -Object.defineProperty(exports, "reflectionEquals", ({ enumerable: true, get: function () { return reflection_equals_1.reflectionEquals; } })); -var reflection_binary_reader_1 = __nccwpck_require__(9611); -Object.defineProperty(exports, "ReflectionBinaryReader", ({ enumerable: true, get: function () { return reflection_binary_reader_1.ReflectionBinaryReader; } })); -var reflection_binary_writer_1 = __nccwpck_require__(6907); -Object.defineProperty(exports, "ReflectionBinaryWriter", ({ enumerable: true, get: function () { return reflection_binary_writer_1.ReflectionBinaryWriter; } })); -var reflection_json_reader_1 = __nccwpck_require__(6790); -Object.defineProperty(exports, "ReflectionJsonReader", ({ enumerable: true, get: function () { return reflection_json_reader_1.ReflectionJsonReader; } })); -var reflection_json_writer_1 = __nccwpck_require__(1094); -Object.defineProperty(exports, "ReflectionJsonWriter", ({ enumerable: true, get: function () { return reflection_json_writer_1.ReflectionJsonWriter; } })); -var reflection_contains_message_type_1 = __nccwpck_require__(9946); -Object.defineProperty(exports, "containsMessageType", ({ enumerable: true, get: function () { return reflection_contains_message_type_1.containsMessageType; } })); -// Oneof helpers -var oneof_1 = __nccwpck_require__(8063); -Object.defineProperty(exports, "isOneofGroup", ({ enumerable: true, get: function () { return oneof_1.isOneofGroup; } })); -Object.defineProperty(exports, "setOneofValue", ({ enumerable: true, get: function () { return oneof_1.setOneofValue; } })); -Object.defineProperty(exports, "getOneofValue", ({ enumerable: true, get: function () { return oneof_1.getOneofValue; } })); -Object.defineProperty(exports, "clearOneofValue", ({ enumerable: true, get: function () { return oneof_1.clearOneofValue; } })); -Object.defineProperty(exports, "getSelectedOneofValue", ({ enumerable: true, get: function () { return oneof_1.getSelectedOneofValue; } })); -// Enum object type guard and reflection util, may be interesting to the user. -var enum_object_1 = __nccwpck_require__(257); -Object.defineProperty(exports, "listEnumValues", ({ enumerable: true, get: function () { return enum_object_1.listEnumValues; } })); -Object.defineProperty(exports, "listEnumNames", ({ enumerable: true, get: function () { return enum_object_1.listEnumNames; } })); -Object.defineProperty(exports, "listEnumNumbers", ({ enumerable: true, get: function () { return enum_object_1.listEnumNumbers; } })); -Object.defineProperty(exports, "isEnumObject", ({ enumerable: true, get: function () { return enum_object_1.isEnumObject; } })); -// lowerCamelCase() is exported for plugin, rpc-runtime and other rpc packages -var lower_camel_case_1 = __nccwpck_require__(4073); -Object.defineProperty(exports, "lowerCamelCase", ({ enumerable: true, get: function () { return lower_camel_case_1.lowerCamelCase; } })); -// assertion functions are exported for plugin, may also be useful to user -var assert_1 = __nccwpck_require__(8602); -Object.defineProperty(exports, "assert", ({ enumerable: true, get: function () { return assert_1.assert; } })); -Object.defineProperty(exports, "assertNever", ({ enumerable: true, get: function () { return assert_1.assertNever; } })); -Object.defineProperty(exports, "assertInt32", ({ enumerable: true, get: function () { return assert_1.assertInt32; } })); -Object.defineProperty(exports, "assertUInt32", ({ enumerable: true, get: function () { return assert_1.assertUInt32; } })); -Object.defineProperty(exports, "assertFloat32", ({ enumerable: true, get: function () { return assert_1.assertFloat32; } })); - - -/***/ }), - -/***/ 9367: -/***/ ((__unused_webpack_module, exports) => { - - -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.mergeJsonOptions = exports.jsonWriteOptions = exports.jsonReadOptions = void 0; -const defaultsWrite = { - emitDefaultValues: false, - enumAsInteger: false, - useProtoFieldName: false, - prettySpaces: 0, -}, defaultsRead = { - ignoreUnknownFields: false, -}; -/** - * Make options for reading JSON data from partial options. - */ -function jsonReadOptions(options) { - return options ? Object.assign(Object.assign({}, defaultsRead), options) : defaultsRead; -} -exports.jsonReadOptions = jsonReadOptions; -/** - * Make options for writing JSON data from partial options. - */ -function jsonWriteOptions(options) { - return options ? Object.assign(Object.assign({}, defaultsWrite), options) : defaultsWrite; + else if (reqUrl.protocol === 'http:') { + reqPort = 80; + } + else if (reqUrl.protocol === 'https:') { + reqPort = 443; + } + // Format the request hostname and hostname with port + const upperReqHosts = [reqUrl.hostname.toUpperCase()]; + if (typeof reqPort === 'number') { + upperReqHosts.push(`${upperReqHosts[0]}:${reqPort}`); + } + // Compare request host against noproxy + for (const upperNoProxyItem of noProxy + .split(',') + .map(x => x.trim().toUpperCase()) + .filter(x => x)) { + if (upperNoProxyItem === '*' || + upperReqHosts.some(x => x === upperNoProxyItem || + x.endsWith(`.${upperNoProxyItem}`) || + (upperNoProxyItem.startsWith('.') && + x.endsWith(`${upperNoProxyItem}`)))) { + return true; + } + } + return false; } -exports.jsonWriteOptions = jsonWriteOptions; -/** - * Merges JSON write or read options. Later values override earlier values. Type registries are merged. - */ -function mergeJsonOptions(a, b) { - var _a, _b; - let c = Object.assign(Object.assign({}, a), b); - c.typeRegistry = [...((_a = a === null || a === void 0 ? void 0 : a.typeRegistry) !== null && _a !== void 0 ? _a : []), ...((_b = b === null || b === void 0 ? void 0 : b.typeRegistry) !== null && _b !== void 0 ? _b : [])]; - return c; +function isLoopbackAddress(host) { + const hostLower = host.toLowerCase(); + return (hostLower === 'localhost' || + hostLower.startsWith('127.') || + hostLower.startsWith('[::1]') || + hostLower.startsWith('[0:0:0:0:0:0:0:1]')); } -exports.mergeJsonOptions = mergeJsonOptions; - - -/***/ }), - -/***/ 9999: -/***/ ((__unused_webpack_module, exports) => { - - -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.isJsonObject = exports.typeofJsonValue = void 0; -/** - * Get the type of a JSON value. - * Distinguishes between array, null and object. - */ -function typeofJsonValue(value) { - let t = typeof value; - if (t == "object") { - if (Array.isArray(value)) - return "array"; - if (value === null) - return "null"; +class DecodedURL extends URL { + constructor(url, base) { + super(url, base); + this._decodedUsername = decodeURIComponent(super.username); + this._decodedPassword = decodeURIComponent(super.password); + } + get username() { + return this._decodedUsername; + } + get password() { + return this._decodedPassword; } - return t; -} -exports.typeofJsonValue = typeofJsonValue; -/** - * Is this a JSON object (instead of an array or null)? - */ -function isJsonObject(value) { - return value !== null && typeof value == "object" && !Array.isArray(value); } -exports.isJsonObject = isJsonObject; - +//# sourceMappingURL=proxy.js.map /***/ }), -/***/ 4073: -/***/ ((__unused_webpack_module, exports) => { +/***/ 7889: +/***/ (function(__unused_webpack_module, exports) { +var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { + function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } + return new (P || (P = Promise))(function (resolve, reject) { + function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } + function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } + function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } + step((generator = generator.apply(thisArg, _arguments || [])).next()); + }); +}; Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.lowerCamelCase = void 0; +exports.ClientStreamingCall = void 0; /** - * Converts snake_case to lowerCamelCase. - * - * Should behave like protoc: - * https://github.com/protocolbuffers/protobuf/blob/e8ae137c96444ea313485ed1118c5e43b2099cf1/src/google/protobuf/compiler/java/java_helpers.cc#L118 + * A client streaming RPC call. This means that the clients sends 0, 1, or + * more messages to the server, and the server replies with exactly one + * message. */ -function lowerCamelCase(snakeCase) { - let capNext = false; - const sb = []; - for (let i = 0; i < snakeCase.length; i++) { - let next = snakeCase.charAt(i); - if (next == '_') { - capNext = true; - } - else if (/\d/.test(next)) { - sb.push(next); - capNext = true; - } - else if (capNext) { - sb.push(next.toUpperCase()); - capNext = false; - } - else if (i == 0) { - sb.push(next.toLowerCase()); - } - else { - sb.push(next); - } +class ClientStreamingCall { + constructor(method, requestHeaders, request, headers, response, status, trailers) { + this.method = method; + this.requestHeaders = requestHeaders; + this.requests = request; + this.headers = headers; + this.response = response; + this.status = status; + this.trailers = trailers; + } + /** + * Instead of awaiting the response status and trailers, you can + * just as well await this call itself to receive the server outcome. + * Note that it may still be valid to send more request messages. + */ + then(onfulfilled, onrejected) { + return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); + } + promiseFinished() { + return __awaiter(this, void 0, void 0, function* () { + let [headers, response, status, trailers] = yield Promise.all([this.headers, this.response, this.status, this.trailers]); + return { + method: this.method, + requestHeaders: this.requestHeaders, + headers, + response, + status, + trailers + }; + }); } - return sb.join(''); } -exports.lowerCamelCase = lowerCamelCase; +exports.ClientStreamingCall = ClientStreamingCall; /***/ }), -/***/ 3785: +/***/ 1409: /***/ ((__unused_webpack_module, exports) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.MESSAGE_TYPE = void 0; +exports.Deferred = exports.DeferredState = void 0; +var DeferredState; +(function (DeferredState) { + DeferredState[DeferredState["PENDING"] = 0] = "PENDING"; + DeferredState[DeferredState["REJECTED"] = 1] = "REJECTED"; + DeferredState[DeferredState["RESOLVED"] = 2] = "RESOLVED"; +})(DeferredState = exports.DeferredState || (exports.DeferredState = {})); /** - * The symbol used as a key on message objects to store the message type. + * A deferred promise. This is a "controller" for a promise, which lets you + * pass a promise around and reject or resolve it from the outside. * - * Note that this is an experimental feature - it is here to stay, but - * implementation details may change without notice. - */ -exports.MESSAGE_TYPE = Symbol.for("protobuf-ts/message-type"); - - -/***/ }), - -/***/ 5106: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { - - -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.MessageType = void 0; -const message_type_contract_1 = __nccwpck_require__(3785); -const reflection_info_1 = __nccwpck_require__(7910); -const reflection_type_check_1 = __nccwpck_require__(5167); -const reflection_json_reader_1 = __nccwpck_require__(6790); -const reflection_json_writer_1 = __nccwpck_require__(1094); -const reflection_binary_reader_1 = __nccwpck_require__(9611); -const reflection_binary_writer_1 = __nccwpck_require__(6907); -const reflection_create_1 = __nccwpck_require__(5726); -const reflection_merge_partial_1 = __nccwpck_require__(8044); -const json_typings_1 = __nccwpck_require__(9999); -const json_format_contract_1 = __nccwpck_require__(9367); -const reflection_equals_1 = __nccwpck_require__(4827); -const binary_writer_1 = __nccwpck_require__(3957); -const binary_reader_1 = __nccwpck_require__(2889); -const baseDescriptors = Object.getOwnPropertyDescriptors(Object.getPrototypeOf({})); -const messageTypeDescriptor = baseDescriptors[message_type_contract_1.MESSAGE_TYPE] = {}; -/** - * This standard message type provides reflection-based - * operations to work with a message. + * Warning: This class is to be used with care. Using it can make code very + * difficult to read. It is intended for use in library code that exposes + * promises, not for regular business logic. */ -class MessageType { - constructor(name, fields, options) { - this.defaultCheckDepth = 16; - this.typeName = name; - this.fields = fields.map(reflection_info_1.normalizeFieldInfo); - this.options = options !== null && options !== void 0 ? options : {}; - messageTypeDescriptor.value = this; - this.messagePrototype = Object.create(null, baseDescriptors); - this.refTypeCheck = new reflection_type_check_1.ReflectionTypeCheck(this); - this.refJsonReader = new reflection_json_reader_1.ReflectionJsonReader(this); - this.refJsonWriter = new reflection_json_writer_1.ReflectionJsonWriter(this); - this.refBinReader = new reflection_binary_reader_1.ReflectionBinaryReader(this); - this.refBinWriter = new reflection_binary_writer_1.ReflectionBinaryWriter(this); - } - create(value) { - let message = reflection_create_1.reflectionCreate(this); - if (value !== undefined) { - reflection_merge_partial_1.reflectionMergePartial(this, message, value); - } - return message; - } - /** - * Clone the message. - * - * Unknown fields are discarded. - */ - clone(message) { - let copy = this.create(); - reflection_merge_partial_1.reflectionMergePartial(this, copy, message); - return copy; - } +class Deferred { /** - * Determines whether two message of the same type have the same field values. - * Checks for deep equality, traversing repeated fields, oneof groups, maps - * and messages recursively. - * Will also return true if both messages are `undefined`. + * @param preventUnhandledRejectionWarning - prevents the warning + * "Unhandled Promise rejection" by adding a noop rejection handler. + * Working with calls returned from the runtime-rpc package in an + * async function usually means awaiting one call property after + * the other. This means that the "status" is not being awaited when + * an earlier await for the "headers" is rejected. This causes the + * "unhandled promise reject" warning. A more correct behaviour for + * calls might be to become aware whether at least one of the + * promises is handled and swallow the rejection warning for the + * others. */ - equals(a, b) { - return reflection_equals_1.reflectionEquals(this, a, b); + constructor(preventUnhandledRejectionWarning = true) { + this._state = DeferredState.PENDING; + this._promise = new Promise((resolve, reject) => { + this._resolve = resolve; + this._reject = reject; + }); + if (preventUnhandledRejectionWarning) { + this._promise.catch(_ => { }); + } } /** - * Is the given value assignable to our message type - * and contains no [excess properties](https://www.typescriptlang.org/docs/handbook/interfaces.html#excess-property-checks)? + * Get the current state of the promise. */ - is(arg, depth = this.defaultCheckDepth) { - return this.refTypeCheck.is(arg, depth, false); + get state() { + return this._state; } /** - * Is the given value assignable to our message type, - * regardless of [excess properties](https://www.typescriptlang.org/docs/handbook/interfaces.html#excess-property-checks)? + * Get the deferred promise. */ - isAssignable(arg, depth = this.defaultCheckDepth) { - return this.refTypeCheck.is(arg, depth, true); + get promise() { + return this._promise; } /** - * Copy partial data into the target message. + * Resolve the promise. Throws if the promise is already resolved or rejected. */ - mergePartial(target, source) { - reflection_merge_partial_1.reflectionMergePartial(this, target, source); + resolve(value) { + if (this.state !== DeferredState.PENDING) + throw new Error(`cannot resolve ${DeferredState[this.state].toLowerCase()}`); + this._resolve(value); + this._state = DeferredState.RESOLVED; } /** - * Create a new message from binary format. + * Reject the promise. Throws if the promise is already resolved or rejected. */ - fromBinary(data, options) { - let opt = binary_reader_1.binaryReadOptions(options); - return this.internalBinaryRead(opt.readerFactory(data), data.byteLength, opt); + reject(reason) { + if (this.state !== DeferredState.PENDING) + throw new Error(`cannot reject ${DeferredState[this.state].toLowerCase()}`); + this._reject(reason); + this._state = DeferredState.REJECTED; } /** - * Read a new message from a JSON value. + * Resolve the promise. Ignore if not pending. */ - fromJson(json, options) { - return this.internalJsonRead(json, json_format_contract_1.jsonReadOptions(options)); + resolvePending(val) { + if (this._state === DeferredState.PENDING) + this.resolve(val); } /** - * Read a new message from a JSON string. - * This is equivalent to `T.fromJson(JSON.parse(json))`. + * Reject the promise. Ignore if not pending. */ - fromJsonString(json, options) { - let value = JSON.parse(json); - return this.fromJson(value, options); + rejectPending(reason) { + if (this._state === DeferredState.PENDING) + this.reject(reason); } - /** - * Write the message to canonical JSON value. - */ - toJson(message, options) { - return this.internalJsonWrite(message, json_format_contract_1.jsonWriteOptions(options)); +} +exports.Deferred = Deferred; + + +/***/ }), + +/***/ 6826: +/***/ (function(__unused_webpack_module, exports) { + + +var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { + function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } + return new (P || (P = Promise))(function (resolve, reject) { + function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } + function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } + function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } + step((generator = generator.apply(thisArg, _arguments || [])).next()); + }); +}; +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.DuplexStreamingCall = void 0; +/** + * A duplex streaming RPC call. This means that the clients sends an + * arbitrary amount of messages to the server, while at the same time, + * the server sends an arbitrary amount of messages to the client. + */ +class DuplexStreamingCall { + constructor(method, requestHeaders, request, headers, response, status, trailers) { + this.method = method; + this.requestHeaders = requestHeaders; + this.requests = request; + this.headers = headers; + this.responses = response; + this.status = status; + this.trailers = trailers; } /** - * Convert the message to canonical JSON string. - * This is equivalent to `JSON.stringify(T.toJson(t))` + * Instead of awaiting the response status and trailers, you can + * just as well await this call itself to receive the server outcome. + * Note that it may still be valid to send more request messages. */ - toJsonString(message, options) { - var _a; - let value = this.toJson(message, options); - return JSON.stringify(value, null, (_a = options === null || options === void 0 ? void 0 : options.prettySpaces) !== null && _a !== void 0 ? _a : 0); + then(onfulfilled, onrejected) { + return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); } - /** - * Write the message to binary format. - */ - toBinary(message, options) { - let opt = binary_writer_1.binaryWriteOptions(options); - return this.internalBinaryWrite(message, opt.writerFactory(), opt).finish(); + promiseFinished() { + return __awaiter(this, void 0, void 0, function* () { + let [headers, status, trailers] = yield Promise.all([this.headers, this.status, this.trailers]); + return { + method: this.method, + requestHeaders: this.requestHeaders, + headers, + status, + trailers, + }; + }); } - /** - * This is an internal method. If you just want to read a message from - * JSON, use `fromJson()` or `fromJsonString()`. - * - * Reads JSON value and merges the fields into the target - * according to protobuf rules. If the target is omitted, - * a new instance is created first. - */ - internalJsonRead(json, options, target) { - if (json !== null && typeof json == "object" && !Array.isArray(json)) { - let message = target !== null && target !== void 0 ? target : this.create(); - this.refJsonReader.read(json, message, options); - return message; - } - throw new Error(`Unable to parse message ${this.typeName} from JSON ${json_typings_1.typeofJsonValue(json)}.`); +} +exports.DuplexStreamingCall = DuplexStreamingCall; + + +/***/ }), + +/***/ 4420: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + +var __webpack_unused_export__; + +// Public API of the rpc runtime. +// Note: we do not use `export * from ...` to help tree shakers, +// webpack verbose output hints that this should be useful +__webpack_unused_export__ = ({ value: true }); +var service_type_1 = __nccwpck_require__(6892); +Object.defineProperty(exports, "C0", ({ enumerable: true, get: function () { return service_type_1.ServiceType; } })); +var reflection_info_1 = __nccwpck_require__(2496); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return reflection_info_1.readMethodOptions; } }); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return reflection_info_1.readMethodOption; } }); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return reflection_info_1.readServiceOption; } }); +var rpc_error_1 = __nccwpck_require__(8636); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_error_1.RpcError; } }); +var rpc_options_1 = __nccwpck_require__(8576); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_options_1.mergeRpcOptions; } }); +var rpc_output_stream_1 = __nccwpck_require__(2726); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_output_stream_1.RpcOutputStreamController; } }); +var test_transport_1 = __nccwpck_require__(9122); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return test_transport_1.TestTransport; } }); +var deferred_1 = __nccwpck_require__(1409); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return deferred_1.Deferred; } }); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return deferred_1.DeferredState; } }); +var duplex_streaming_call_1 = __nccwpck_require__(6826); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return duplex_streaming_call_1.DuplexStreamingCall; } }); +var client_streaming_call_1 = __nccwpck_require__(7889); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return client_streaming_call_1.ClientStreamingCall; } }); +var server_streaming_call_1 = __nccwpck_require__(6173); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return server_streaming_call_1.ServerStreamingCall; } }); +var unary_call_1 = __nccwpck_require__(9288); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return unary_call_1.UnaryCall; } }); +var rpc_interceptor_1 = __nccwpck_require__(2849); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackIntercept; } }); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackDuplexStreamingInterceptors; } }); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackClientStreamingInterceptors; } }); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackServerStreamingInterceptors; } }); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return rpc_interceptor_1.stackUnaryInterceptors; } }); +var server_call_context_1 = __nccwpck_require__(3352); +__webpack_unused_export__ = ({ enumerable: true, get: function () { return server_call_context_1.ServerCallContextController; } }); + + +/***/ }), + +/***/ 2496: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.readServiceOption = exports.readMethodOption = exports.readMethodOptions = exports.normalizeMethodInfo = void 0; +const runtime_1 = __nccwpck_require__(8886); +/** + * Turns PartialMethodInfo into MethodInfo. + */ +function normalizeMethodInfo(method, service) { + var _a, _b, _c; + let m = method; + m.service = service; + m.localName = (_a = m.localName) !== null && _a !== void 0 ? _a : runtime_1.lowerCamelCase(m.name); + // noinspection PointlessBooleanExpressionJS + m.serverStreaming = !!m.serverStreaming; + // noinspection PointlessBooleanExpressionJS + m.clientStreaming = !!m.clientStreaming; + m.options = (_b = m.options) !== null && _b !== void 0 ? _b : {}; + m.idempotency = (_c = m.idempotency) !== null && _c !== void 0 ? _c : undefined; + return m; +} +exports.normalizeMethodInfo = normalizeMethodInfo; +/** + * Read custom method options from a generated service client. + * + * @deprecated use readMethodOption() + */ +function readMethodOptions(service, methodName, extensionName, extensionType) { + var _a; + const options = (_a = service.methods.find((m, i) => m.localName === methodName || i === methodName)) === null || _a === void 0 ? void 0 : _a.options; + return options && options[extensionName] ? extensionType.fromJson(options[extensionName]) : undefined; +} +exports.readMethodOptions = readMethodOptions; +function readMethodOption(service, methodName, extensionName, extensionType) { + var _a; + const options = (_a = service.methods.find((m, i) => m.localName === methodName || i === methodName)) === null || _a === void 0 ? void 0 : _a.options; + if (!options) { + return undefined; } - /** - * This is an internal method. If you just want to write a message - * to JSON, use `toJson()` or `toJsonString(). - * - * Writes JSON value and returns it. - */ - internalJsonWrite(message, options) { - return this.refJsonWriter.write(message, options); + const optionVal = options[extensionName]; + if (optionVal === undefined) { + return optionVal; } - /** - * This is an internal method. If you just want to write a message - * in binary format, use `toBinary()`. - * - * Serializes the message in binary format and appends it to the given - * writer. Returns passed writer. - */ - internalBinaryWrite(message, writer, options) { - this.refBinWriter.write(message, writer, options); - return writer; + return extensionType ? extensionType.fromJson(optionVal) : optionVal; +} +exports.readMethodOption = readMethodOption; +function readServiceOption(service, extensionName, extensionType) { + const options = service.options; + if (!options) { + return undefined; } - /** - * This is an internal method. If you just want to read a message from - * binary data, use `fromBinary()`. - * - * Reads data from binary format and merges the fields into - * the target according to protobuf rules. If the target is - * omitted, a new instance is created first. - */ - internalBinaryRead(reader, length, options, target) { - let message = target !== null && target !== void 0 ? target : this.create(); - this.refBinReader.read(reader, message, options, length); - return message; + const optionVal = options[extensionName]; + if (optionVal === undefined) { + return optionVal; } + return extensionType ? extensionType.fromJson(optionVal) : optionVal; } -exports.MessageType = MessageType; +exports.readServiceOption = readServiceOption; /***/ }), -/***/ 8063: +/***/ 8636: /***/ ((__unused_webpack_module, exports) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.getSelectedOneofValue = exports.clearOneofValue = exports.setUnknownOneofValue = exports.setOneofValue = exports.getOneofValue = exports.isOneofGroup = void 0; +exports.RpcError = void 0; /** - * Is the given value a valid oneof group? - * - * We represent protobuf `oneof` as algebraic data types (ADT) in generated - * code. But when working with messages of unknown type, the ADT does not - * help us. - * - * This type guard checks if the given object adheres to the ADT rules, which - * are as follows: - * - * 1) Must be an object. - * - * 2) Must have a "oneofKind" discriminator property. - * - * 3) If "oneofKind" is `undefined`, no member field is selected. The object - * must not have any other properties. - * - * 4) If "oneofKind" is a `string`, the member field with this name is - * selected. - * - * 5) If a member field is selected, the object must have a second property - * with this name. The property must not be `undefined`. - * - * 6) No extra properties are allowed. The object has either one property - * (no selection) or two properties (selection). - * + * An error that occurred while calling a RPC method. */ -function isOneofGroup(any) { - if (typeof any != 'object' || any === null || !any.hasOwnProperty('oneofKind')) { - return false; +class RpcError extends Error { + constructor(message, code = 'UNKNOWN', meta) { + super(message); + this.name = 'RpcError'; + // see https://www.typescriptlang.org/docs/handbook/release-notes/typescript-2-2.html#example + Object.setPrototypeOf(this, new.target.prototype); + this.code = code; + this.meta = meta !== null && meta !== void 0 ? meta : {}; } - switch (typeof any.oneofKind) { - case "string": - if (any[any.oneofKind] === undefined) - return false; - return Object.keys(any).length == 2; - case "undefined": - return Object.keys(any).length == 1; - default: - return false; + toString() { + const l = [this.name + ': ' + this.message]; + if (this.code) { + l.push(''); + l.push('Code: ' + this.code); + } + if (this.serviceName && this.methodName) { + l.push('Method: ' + this.serviceName + '/' + this.methodName); + } + let m = Object.entries(this.meta); + if (m.length) { + l.push(''); + l.push('Meta:'); + for (let [k, v] of m) { + l.push(` ${k}: ${v}`); + } + } + return l.join('\n'); } } -exports.isOneofGroup = isOneofGroup; +exports.RpcError = RpcError; + + +/***/ }), + +/***/ 2849: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.stackDuplexStreamingInterceptors = exports.stackClientStreamingInterceptors = exports.stackServerStreamingInterceptors = exports.stackUnaryInterceptors = exports.stackIntercept = void 0; +const runtime_1 = __nccwpck_require__(8886); /** - * Returns the value of the given field in a oneof group. + * Creates a "stack" of of all interceptors specified in the given `RpcOptions`. + * Used by generated client implementations. + * @internal */ -function getOneofValue(oneof, kind) { - return oneof[kind]; -} -exports.getOneofValue = getOneofValue; -function setOneofValue(oneof, kind, value) { - if (oneof.oneofKind !== undefined) { - delete oneof[oneof.oneofKind]; +function stackIntercept(kind, transport, method, options, input) { + var _a, _b, _c, _d; + if (kind == "unary") { + let tail = (mtd, inp, opt) => transport.unary(mtd, inp, opt); + for (const curr of ((_a = options.interceptors) !== null && _a !== void 0 ? _a : []).filter(i => i.interceptUnary).reverse()) { + const next = tail; + tail = (mtd, inp, opt) => curr.interceptUnary(next, mtd, inp, opt); + } + return tail(method, input, options); } - oneof.oneofKind = kind; - if (value !== undefined) { - oneof[kind] = value; + if (kind == "serverStreaming") { + let tail = (mtd, inp, opt) => transport.serverStreaming(mtd, inp, opt); + for (const curr of ((_b = options.interceptors) !== null && _b !== void 0 ? _b : []).filter(i => i.interceptServerStreaming).reverse()) { + const next = tail; + tail = (mtd, inp, opt) => curr.interceptServerStreaming(next, mtd, inp, opt); + } + return tail(method, input, options); } -} -exports.setOneofValue = setOneofValue; -function setUnknownOneofValue(oneof, kind, value) { - if (oneof.oneofKind !== undefined) { - delete oneof[oneof.oneofKind]; + if (kind == "clientStreaming") { + let tail = (mtd, opt) => transport.clientStreaming(mtd, opt); + for (const curr of ((_c = options.interceptors) !== null && _c !== void 0 ? _c : []).filter(i => i.interceptClientStreaming).reverse()) { + const next = tail; + tail = (mtd, opt) => curr.interceptClientStreaming(next, mtd, opt); + } + return tail(method, options); } - oneof.oneofKind = kind; - if (value !== undefined && kind !== undefined) { - oneof[kind] = value; + if (kind == "duplex") { + let tail = (mtd, opt) => transport.duplex(mtd, opt); + for (const curr of ((_d = options.interceptors) !== null && _d !== void 0 ? _d : []).filter(i => i.interceptDuplex).reverse()) { + const next = tail; + tail = (mtd, opt) => curr.interceptDuplex(next, mtd, opt); + } + return tail(method, options); } + runtime_1.assertNever(kind); } -exports.setUnknownOneofValue = setUnknownOneofValue; +exports.stackIntercept = stackIntercept; /** - * Removes the selected field in a oneof group. - * - * Note that the recommended way to modify a oneof group is to set - * a new object: - * - * ```ts - * message.result = { oneofKind: undefined }; - * ``` + * @deprecated replaced by `stackIntercept()`, still here to support older generated code */ -function clearOneofValue(oneof) { - if (oneof.oneofKind !== undefined) { - delete oneof[oneof.oneofKind]; - } - oneof.oneofKind = undefined; +function stackUnaryInterceptors(transport, method, input, options) { + return stackIntercept("unary", transport, method, options, input); } -exports.clearOneofValue = clearOneofValue; +exports.stackUnaryInterceptors = stackUnaryInterceptors; /** - * Returns the selected value of the given oneof group. + * @deprecated replaced by `stackIntercept()`, still here to support older generated code + */ +function stackServerStreamingInterceptors(transport, method, input, options) { + return stackIntercept("serverStreaming", transport, method, options, input); +} +exports.stackServerStreamingInterceptors = stackServerStreamingInterceptors; +/** + * @deprecated replaced by `stackIntercept()`, still here to support older generated code + */ +function stackClientStreamingInterceptors(transport, method, options) { + return stackIntercept("clientStreaming", transport, method, options); +} +exports.stackClientStreamingInterceptors = stackClientStreamingInterceptors; +/** + * @deprecated replaced by `stackIntercept()`, still here to support older generated code + */ +function stackDuplexStreamingInterceptors(transport, method, options) { + return stackIntercept("duplex", transport, method, options); +} +exports.stackDuplexStreamingInterceptors = stackDuplexStreamingInterceptors; + + +/***/ }), + +/***/ 8576: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.mergeRpcOptions = void 0; +const runtime_1 = __nccwpck_require__(8886); +/** + * Merges custom RPC options with defaults. Returns a new instance and keeps + * the "defaults" and the "options" unmodified. * - * Not that the recommended way to access a oneof group is to check - * the "oneofKind" property and let TypeScript narrow down the union - * type for you: + * Merges `RpcMetadata` "meta", overwriting values from "defaults" with + * values from "options". Does not append values to existing entries. * - * ```ts - * if (message.result.oneofKind === "error") { - * message.result.error; // string - * } - * ``` + * Merges "jsonOptions", including "jsonOptions.typeRegistry", by creating + * a new array that contains types from "options.jsonOptions.typeRegistry" + * first, then types from "defaults.jsonOptions.typeRegistry". * - * In the rare case you just need the value, and do not care about - * which protobuf field is selected, you can use this function - * for convenience. + * Merges "binaryOptions". + * + * Merges "interceptors" by creating a new array that contains interceptors + * from "defaults" first, then interceptors from "options". + * + * Works with objects that extend `RpcOptions`, but only if the added + * properties are of type Date, primitive like string, boolean, or Array + * of primitives. If you have other property types, you have to merge them + * yourself. */ -function getSelectedOneofValue(oneof) { - if (oneof.oneofKind === undefined) { - return undefined; +function mergeRpcOptions(defaults, options) { + if (!options) + return defaults; + let o = {}; + copy(defaults, o); + copy(options, o); + for (let key of Object.keys(options)) { + let val = options[key]; + switch (key) { + case "jsonOptions": + o.jsonOptions = runtime_1.mergeJsonOptions(defaults.jsonOptions, o.jsonOptions); + break; + case "binaryOptions": + o.binaryOptions = runtime_1.mergeBinaryOptions(defaults.binaryOptions, o.binaryOptions); + break; + case "meta": + o.meta = {}; + copy(defaults.meta, o.meta); + copy(options.meta, o.meta); + break; + case "interceptors": + o.interceptors = defaults.interceptors ? defaults.interceptors.concat(val) : val.concat(); + break; + } + } + return o; +} +exports.mergeRpcOptions = mergeRpcOptions; +function copy(a, into) { + if (!a) + return; + let c = into; + for (let [k, v] of Object.entries(a)) { + if (v instanceof Date) + c[k] = new Date(v.getTime()); + else if (Array.isArray(v)) + c[k] = v.concat(); + else + c[k] = v; } - return oneof[oneof.oneofKind]; } -exports.getSelectedOneofValue = getSelectedOneofValue; /***/ }), -/***/ 1753: +/***/ 2726: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.PbLong = exports.PbULong = exports.detectBi = void 0; -const goog_varint_1 = __nccwpck_require__(3223); -let BI; -function detectBi() { - const dv = new DataView(new ArrayBuffer(8)); - const ok = globalThis.BigInt !== undefined - && typeof dv.getBigInt64 === "function" - && typeof dv.getBigUint64 === "function" - && typeof dv.setBigInt64 === "function" - && typeof dv.setBigUint64 === "function"; - BI = ok ? { - MIN: BigInt("-9223372036854775808"), - MAX: BigInt("9223372036854775807"), - UMIN: BigInt("0"), - UMAX: BigInt("18446744073709551615"), - C: BigInt, - V: dv, - } : undefined; -} -exports.detectBi = detectBi; -detectBi(); -function assertBi(bi) { - if (!bi) - throw new Error("BigInt unavailable, see https://github.com/timostamm/protobuf-ts/blob/v1.0.8/MANUAL.md#bigint-support"); -} -// used to validate from(string) input (when bigint is unavailable) -const RE_DECIMAL_STR = /^-?[0-9]+$/; -// constants for binary math -const TWO_PWR_32_DBL = 0x100000000; -const HALF_2_PWR_32 = 0x080000000; -// base class for PbLong and PbULong provides shared code -class SharedPbLong { +exports.RpcOutputStreamController = void 0; +const deferred_1 = __nccwpck_require__(1409); +const runtime_1 = __nccwpck_require__(8886); +/** + * A `RpcOutputStream` that you control. + */ +class RpcOutputStreamController { + constructor() { + this._lis = { + nxt: [], + msg: [], + err: [], + cmp: [], + }; + this._closed = false; + // --- RpcOutputStream async iterator API + // iterator state. + // is undefined when no iterator has been acquired yet. + this._itState = { q: [] }; + } + // --- RpcOutputStream callback API + onNext(callback) { + return this.addLis(callback, this._lis.nxt); + } + onMessage(callback) { + return this.addLis(callback, this._lis.msg); + } + onError(callback) { + return this.addLis(callback, this._lis.err); + } + onComplete(callback) { + return this.addLis(callback, this._lis.cmp); + } + addLis(callback, list) { + list.push(callback); + return () => { + let i = list.indexOf(callback); + if (i >= 0) + list.splice(i, 1); + }; + } + // remove all listeners + clearLis() { + for (let l of Object.values(this._lis)) + l.splice(0, l.length); + } + // --- Controller API /** - * Create a new instance with the given bits. + * Is this stream already closed by a completion or error? */ - constructor(lo, hi) { - this.lo = lo | 0; - this.hi = hi | 0; + get closed() { + return this._closed !== false; } /** - * Is this instance equal to 0? + * Emit message, close with error, or close successfully, but only one + * at a time. + * Can be used to wrap a stream by using the other stream's `onNext`. */ - isZero() { - return this.lo == 0 && this.hi == 0; + notifyNext(message, error, complete) { + runtime_1.assert((message ? 1 : 0) + (error ? 1 : 0) + (complete ? 1 : 0) <= 1, 'only one emission at a time'); + if (message) + this.notifyMessage(message); + if (error) + this.notifyError(error); + if (complete) + this.notifyComplete(); } /** - * Convert to a native number. + * Emits a new message. Throws if stream is closed. + * + * Triggers onNext and onMessage callbacks. */ - toNumber() { - let result = this.hi * TWO_PWR_32_DBL + (this.lo >>> 0); - if (!Number.isSafeInteger(result)) - throw new Error("cannot convert to safe number"); - return result; + notifyMessage(message) { + runtime_1.assert(!this.closed, 'stream is closed'); + this.pushIt({ value: message, done: false }); + this._lis.msg.forEach(l => l(message)); + this._lis.nxt.forEach(l => l(message, undefined, false)); } -} -/** - * 64-bit unsigned integer as two 32-bit values. - * Converts between `string`, `number` and `bigint` representations. - */ -class PbULong extends SharedPbLong { /** - * Create instance from a `string`, `number` or `bigint`. + * Closes the stream with an error. Throws if stream is closed. + * + * Triggers onNext and onError callbacks. */ - static from(value) { - if (BI) - // noinspection FallThroughInSwitchStatementJS - switch (typeof value) { - case "string": - if (value == "0") - return this.ZERO; - if (value == "") - throw new Error('string is no integer'); - value = BI.C(value); - case "number": - if (value === 0) - return this.ZERO; - value = BI.C(value); - case "bigint": - if (!value) - return this.ZERO; - if (value < BI.UMIN) - throw new Error('signed value for ulong'); - if (value > BI.UMAX) - throw new Error('ulong too large'); - BI.V.setBigUint64(0, value, true); - return new PbULong(BI.V.getInt32(0, true), BI.V.getInt32(4, true)); - } - else - switch (typeof value) { - case "string": - if (value == "0") - return this.ZERO; - value = value.trim(); - if (!RE_DECIMAL_STR.test(value)) - throw new Error('string is no integer'); - let [minus, lo, hi] = goog_varint_1.int64fromString(value); - if (minus) - throw new Error('signed value for ulong'); - return new PbULong(lo, hi); - case "number": - if (value == 0) - return this.ZERO; - if (!Number.isSafeInteger(value)) - throw new Error('number is no integer'); - if (value < 0) - throw new Error('signed value for ulong'); - return new PbULong(value, value / TWO_PWR_32_DBL); - } - throw new Error('unknown value ' + typeof value); + notifyError(error) { + runtime_1.assert(!this.closed, 'stream is closed'); + this._closed = error; + this.pushIt(error); + this._lis.err.forEach(l => l(error)); + this._lis.nxt.forEach(l => l(undefined, error, false)); + this.clearLis(); } /** - * Convert to decimal string. + * Closes the stream successfully. Throws if stream is closed. + * + * Triggers onNext and onComplete callbacks. */ - toString() { - return BI ? this.toBigInt().toString() : goog_varint_1.int64toString(this.lo, this.hi); + notifyComplete() { + runtime_1.assert(!this.closed, 'stream is closed'); + this._closed = true; + this.pushIt({ value: null, done: true }); + this._lis.cmp.forEach(l => l()); + this._lis.nxt.forEach(l => l(undefined, undefined, true)); + this.clearLis(); } /** - * Convert to native bigint. + * Creates an async iterator (that can be used with `for await {...}`) + * to consume the stream. + * + * Some things to note: + * - If an error occurs, the `for await` will throw it. + * - If an error occurred before the `for await` was started, `for await` + * will re-throw it. + * - If the stream is already complete, the `for await` will be empty. + * - If your `for await` consumes slower than the stream produces, + * for example because you are relaying messages in a slow operation, + * messages are queued. */ - toBigInt() { - assertBi(BI); - BI.V.setInt32(0, this.lo, true); - BI.V.setInt32(4, this.hi, true); - return BI.V.getBigUint64(0, true); + [Symbol.asyncIterator]() { + // if we are closed, we are definitely not receiving any more messages. + // but we can't let the iterator get stuck. we want to either: + // a) finish the new iterator immediately, because we are completed + // b) reject the new iterator, because we errored + if (this._closed === true) + this.pushIt({ value: null, done: true }); + else if (this._closed !== false) + this.pushIt(this._closed); + // the async iterator + return { + next: () => { + let state = this._itState; + runtime_1.assert(state, "bad state"); // if we don't have a state here, code is broken + // there should be no pending result. + // did the consumer call next() before we resolved our previous result promise? + runtime_1.assert(!state.p, "iterator contract broken"); + // did we produce faster than the iterator consumed? + // return the oldest result from the queue. + let first = state.q.shift(); + if (first) + return ("value" in first) ? Promise.resolve(first) : Promise.reject(first); + // we have no result ATM, but we promise one. + // as soon as we have a result, we must resolve promise. + state.p = new deferred_1.Deferred(); + return state.p.promise; + }, + }; + } + // "push" a new iterator result. + // this either resolves a pending promise, or enqueues the result. + pushIt(result) { + let state = this._itState; + // is the consumer waiting for us? + if (state.p) { + // yes, consumer is waiting for this promise. + const p = state.p; + runtime_1.assert(p.state == deferred_1.DeferredState.PENDING, "iterator contract broken"); + // resolve the promise + ("value" in result) ? p.resolve(result) : p.reject(result); + // must cleanup, otherwise iterator.next() would pick it up again. + delete state.p; + } + else { + // we are producing faster than the iterator consumes. + // push result onto queue. + state.q.push(result); + } } } -exports.PbULong = PbULong; -/** - * ulong 0 singleton. - */ -PbULong.ZERO = new PbULong(0, 0); -/** - * 64-bit signed integer as two 32-bit values. - * Converts between `string`, `number` and `bigint` representations. - */ -class PbLong extends SharedPbLong { - /** - * Create instance from a `string`, `number` or `bigint`. - */ - static from(value) { - if (BI) - // noinspection FallThroughInSwitchStatementJS - switch (typeof value) { - case "string": - if (value == "0") - return this.ZERO; - if (value == "") - throw new Error('string is no integer'); - value = BI.C(value); - case "number": - if (value === 0) - return this.ZERO; - value = BI.C(value); - case "bigint": - if (!value) - return this.ZERO; - if (value < BI.MIN) - throw new Error('signed long too small'); - if (value > BI.MAX) - throw new Error('signed long too large'); - BI.V.setBigInt64(0, value, true); - return new PbLong(BI.V.getInt32(0, true), BI.V.getInt32(4, true)); - } - else - switch (typeof value) { - case "string": - if (value == "0") - return this.ZERO; - value = value.trim(); - if (!RE_DECIMAL_STR.test(value)) - throw new Error('string is no integer'); - let [minus, lo, hi] = goog_varint_1.int64fromString(value); - if (minus) { - if (hi > HALF_2_PWR_32 || (hi == HALF_2_PWR_32 && lo != 0)) - throw new Error('signed long too small'); - } - else if (hi >= HALF_2_PWR_32) - throw new Error('signed long too large'); - let pbl = new PbLong(lo, hi); - return minus ? pbl.negate() : pbl; - case "number": - if (value == 0) - return this.ZERO; - if (!Number.isSafeInteger(value)) - throw new Error('number is no integer'); - return value > 0 - ? new PbLong(value, value / TWO_PWR_32_DBL) - : new PbLong(-value, -value / TWO_PWR_32_DBL).negate(); - } - throw new Error('unknown value ' + typeof value); +exports.RpcOutputStreamController = RpcOutputStreamController; + + +/***/ }), + +/***/ 3352: +/***/ ((__unused_webpack_module, exports) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.ServerCallContextController = void 0; +class ServerCallContextController { + constructor(method, headers, deadline, sendResponseHeadersFn, defaultStatus = { code: 'OK', detail: '' }) { + this._cancelled = false; + this._listeners = []; + this.method = method; + this.headers = headers; + this.deadline = deadline; + this.trailers = {}; + this._sendRH = sendResponseHeadersFn; + this.status = defaultStatus; } /** - * Do we have a minus sign? + * Set the call cancelled. + * + * Invokes all callbacks registered with onCancel() and + * sets `cancelled = true`. */ - isNegative() { - return (this.hi & HALF_2_PWR_32) !== 0; + notifyCancelled() { + if (!this._cancelled) { + this._cancelled = true; + for (let l of this._listeners) { + l(); + } + } } /** - * Negate two's complement. - * Invert all the bits and add one to the result. + * Send response headers. */ - negate() { - let hi = ~this.hi, lo = this.lo; - if (lo) - lo = ~lo + 1; - else - hi += 1; - return new PbLong(lo, hi); + sendResponseHeaders(data) { + this._sendRH(data); } /** - * Convert to decimal string. + * Is the call cancelled? + * + * When the client closes the connection before the server + * is done, the call is cancelled. + * + * If you want to cancel a request on the server, throw a + * RpcError with the CANCELLED status code. */ - toString() { - if (BI) - return this.toBigInt().toString(); - if (this.isNegative()) { - let n = this.negate(); - return '-' + goog_varint_1.int64toString(n.lo, n.hi); - } - return goog_varint_1.int64toString(this.lo, this.hi); + get cancelled() { + return this._cancelled; } /** - * Convert to native bigint. + * Add a callback for cancellation. */ - toBigInt() { - assertBi(BI); - BI.V.setInt32(0, this.lo, true); - BI.V.setInt32(4, this.hi, true); - return BI.V.getBigInt64(0, true); + onCancel(callback) { + const l = this._listeners; + l.push(callback); + return () => { + let i = l.indexOf(callback); + if (i >= 0) + l.splice(i, 1); + }; } } -exports.PbLong = PbLong; -/** - * long 0 singleton. - */ -PbLong.ZERO = new PbLong(0, 0); +exports.ServerCallContextController = ServerCallContextController; /***/ }), -/***/ 8950: -/***/ ((__unused_webpack_module, exports) => { +/***/ 6173: +/***/ (function(__unused_webpack_module, exports) { -// Copyright (c) 2016, Daniel Wirtz All rights reserved. -// -// Redistribution and use in source and binary forms, with or without -// modification, are permitted provided that the following conditions are -// met: -// -// * Redistributions of source code must retain the above copyright -// notice, this list of conditions and the following disclaimer. -// * Redistributions in binary form must reproduce the above copyright -// notice, this list of conditions and the following disclaimer in the -// documentation and/or other materials provided with the distribution. -// * Neither the name of its author, nor the names of its contributors -// may be used to endorse or promote products derived from this software -// without specific prior written permission. -// -// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. +var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { + function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } + return new (P || (P = Promise))(function (resolve, reject) { + function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } + function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } + function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } + step((generator = generator.apply(thisArg, _arguments || [])).next()); + }); +}; Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.utf8read = void 0; -const fromCharCodes = (chunk) => String.fromCharCode.apply(String, chunk); +exports.ServerStreamingCall = void 0; /** - * @deprecated This function will no longer be exported with the next major - * release, since protobuf-ts has switch to TextDecoder API. If you need this - * function, please migrate to @protobufjs/utf8. For context, see - * https://github.com/timostamm/protobuf-ts/issues/184 - * - * Reads UTF8 bytes as a string. - * - * See [protobufjs / utf8](https://github.com/protobufjs/protobuf.js/blob/9893e35b854621cce64af4bf6be2cff4fb892796/lib/utf8/index.js#L40) - * - * Copyright (c) 2016, Daniel Wirtz + * A server streaming RPC call. The client provides exactly one input message + * but the server may respond with 0, 1, or more messages. */ -function utf8read(bytes) { - if (bytes.length < 1) - return ""; - let pos = 0, // position in bytes - parts = [], chunk = [], i = 0, // char offset - t; // temporary - let len = bytes.length; - while (pos < len) { - t = bytes[pos++]; - if (t < 128) - chunk[i++] = t; - else if (t > 191 && t < 224) - chunk[i++] = (t & 31) << 6 | bytes[pos++] & 63; - else if (t > 239 && t < 365) { - t = ((t & 7) << 18 | (bytes[pos++] & 63) << 12 | (bytes[pos++] & 63) << 6 | bytes[pos++] & 63) - 0x10000; - chunk[i++] = 0xD800 + (t >> 10); - chunk[i++] = 0xDC00 + (t & 1023); - } - else - chunk[i++] = (t & 15) << 12 | (bytes[pos++] & 63) << 6 | bytes[pos++] & 63; - if (i > 8191) { - parts.push(fromCharCodes(chunk)); - i = 0; - } +class ServerStreamingCall { + constructor(method, requestHeaders, request, headers, response, status, trailers) { + this.method = method; + this.requestHeaders = requestHeaders; + this.request = request; + this.headers = headers; + this.responses = response; + this.status = status; + this.trailers = trailers; + } + /** + * Instead of awaiting the response status and trailers, you can + * just as well await this call itself to receive the server outcome. + * You should first setup some listeners to the `request` to + * see the actual messages the server replied with. + */ + then(onfulfilled, onrejected) { + return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); } - if (parts.length) { - if (i) - parts.push(fromCharCodes(chunk.slice(0, i))); - return parts.join(""); + promiseFinished() { + return __awaiter(this, void 0, void 0, function* () { + let [headers, status, trailers] = yield Promise.all([this.headers, this.status, this.trailers]); + return { + method: this.method, + requestHeaders: this.requestHeaders, + request: this.request, + headers, + status, + trailers, + }; + }); } - return fromCharCodes(chunk.slice(0, i)); } -exports.utf8read = utf8read; +exports.ServerStreamingCall = ServerStreamingCall; /***/ }), -/***/ 9611: +/***/ 6892: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ReflectionBinaryReader = void 0; -const binary_format_contract_1 = __nccwpck_require__(4816); -const reflection_info_1 = __nccwpck_require__(7910); -const reflection_long_convert_1 = __nccwpck_require__(3402); -const reflection_scalar_default_1 = __nccwpck_require__(9526); +exports.ServiceType = void 0; +const reflection_info_1 = __nccwpck_require__(2496); +class ServiceType { + constructor(typeName, methods, options) { + this.typeName = typeName; + this.methods = methods.map(i => reflection_info_1.normalizeMethodInfo(i, this)); + this.options = options !== null && options !== void 0 ? options : {}; + } +} +exports.ServiceType = ServiceType; + + +/***/ }), + +/***/ 9122: +/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { + + +var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { + function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } + return new (P || (P = Promise))(function (resolve, reject) { + function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } + function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } + function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } + step((generator = generator.apply(thisArg, _arguments || [])).next()); + }); +}; +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.TestTransport = void 0; +const rpc_error_1 = __nccwpck_require__(8636); +const runtime_1 = __nccwpck_require__(8886); +const rpc_output_stream_1 = __nccwpck_require__(2726); +const rpc_options_1 = __nccwpck_require__(8576); +const unary_call_1 = __nccwpck_require__(9288); +const server_streaming_call_1 = __nccwpck_require__(6173); +const client_streaming_call_1 = __nccwpck_require__(7889); +const duplex_streaming_call_1 = __nccwpck_require__(6826); /** - * Reads proto3 messages in binary format using reflection information. - * - * https://developers.google.com/protocol-buffers/docs/encoding + * Transport for testing. */ -class ReflectionBinaryReader { - constructor(info) { - this.info = info; - } - prepare() { - var _a; - if (!this.fieldNoToField) { - const fieldsInput = (_a = this.info.fields) !== null && _a !== void 0 ? _a : []; - this.fieldNoToField = new Map(fieldsInput.map(field => [field.no, field])); - } - } +class TestTransport { /** - * Reads a message from binary format into the target message. - * - * Repeated fields are appended. Map entries are added, overwriting - * existing keys. - * - * If a message field is already present, it will be merged with the - * new data. + * Initialize with mock data. Omitted fields have default value. */ - read(reader, message, options, length) { - this.prepare(); - const end = length === undefined ? reader.len : reader.pos + length; - while (reader.pos < end) { - // read the tag and find the field - const [fieldNo, wireType] = reader.tag(), field = this.fieldNoToField.get(fieldNo); - if (!field) { - let u = options.readUnknownField; - if (u == "throw") - throw new Error(`Unknown field ${fieldNo} (wire type ${wireType}) for ${this.info.typeName}`); - let d = reader.skip(wireType); - if (u !== false) - (u === true ? binary_format_contract_1.UnknownFieldHandler.onRead : u)(this.info.typeName, message, fieldNo, wireType, d); - continue; - } - // target object for the field we are reading - let target = message, repeated = field.repeat, localName = field.localName; - // if field is member of oneof ADT, use ADT as target - if (field.oneof) { - target = target[field.oneof]; - // if other oneof member selected, set new ADT - if (target.oneofKind !== localName) - target = message[field.oneof] = { - oneofKind: localName - }; - } - // we have handled oneof above, we just have read the value into `target[localName]` - switch (field.kind) { - case "scalar": - case "enum": - let T = field.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.T; - let L = field.kind == "scalar" ? field.L : undefined; - if (repeated) { - let arr = target[localName]; // safe to assume presence of array, oneof cannot contain repeated values - if (wireType == binary_format_contract_1.WireType.LengthDelimited && T != reflection_info_1.ScalarType.STRING && T != reflection_info_1.ScalarType.BYTES) { - let e = reader.uint32() + reader.pos; - while (reader.pos < e) - arr.push(this.scalar(reader, T, L)); - } - else - arr.push(this.scalar(reader, T, L)); - } - else - target[localName] = this.scalar(reader, T, L); - break; - case "message": - if (repeated) { - let arr = target[localName]; // safe to assume presence of array, oneof cannot contain repeated values - let msg = field.T().internalBinaryRead(reader, reader.uint32(), options); - arr.push(msg); - } - else - target[localName] = field.T().internalBinaryRead(reader, reader.uint32(), options, target[localName]); - break; - case "map": - let [mapKey, mapVal] = this.mapEntry(field, reader, options); - // safe to assume presence of map object, oneof cannot contain repeated values - target[localName][mapKey] = mapVal; - break; - } - } + constructor(data) { + /** + * Suppress warning / error about uncaught rejections of + * "status" and "trailers". + */ + this.suppressUncaughtRejections = true; + this.headerDelay = 10; + this.responseDelay = 50; + this.betweenResponseDelay = 10; + this.afterResponseDelay = 10; + this.data = data !== null && data !== void 0 ? data : {}; } /** - * Read a map field, expecting key field = 1, value field = 2 + * Sent message(s) during the last operation. */ - mapEntry(field, reader, options) { - let length = reader.uint32(); - let end = reader.pos + length; - let key = undefined; // javascript only allows number or string for object properties - let val = undefined; - while (reader.pos < end) { - let [fieldNo, wireType] = reader.tag(); - switch (fieldNo) { - case 1: - if (field.K == reflection_info_1.ScalarType.BOOL) - key = reader.bool().toString(); - else - // long types are read as string, number types are okay as number - key = this.scalar(reader, field.K, reflection_info_1.LongType.STRING); - break; - case 2: - switch (field.V.kind) { - case "scalar": - val = this.scalar(reader, field.V.T, field.V.L); - break; - case "enum": - val = reader.int32(); - break; - case "message": - val = field.V.T().internalBinaryRead(reader, reader.uint32(), options); - break; - } - break; - default: - throw new Error(`Unknown field ${fieldNo} (wire type ${wireType}) in map entry for ${this.info.typeName}#${field.name}`); - } + get sentMessages() { + if (this.lastInput instanceof TestInputStream) { + return this.lastInput.sent; } - if (key === undefined) { - let keyRaw = reflection_scalar_default_1.reflectionScalarDefault(field.K); - key = field.K == reflection_info_1.ScalarType.BOOL ? keyRaw.toString() : keyRaw; + else if (typeof this.lastInput == "object") { + return [this.lastInput.single]; } - if (val === undefined) - switch (field.V.kind) { - case "scalar": - val = reflection_scalar_default_1.reflectionScalarDefault(field.V.T, field.V.L); - break; - case "enum": - val = 0; - break; - case "message": - val = field.V.T().create(); - break; - } - return [key, val]; + return []; } - scalar(reader, type, longType) { - switch (type) { - case reflection_info_1.ScalarType.INT32: - return reader.int32(); - case reflection_info_1.ScalarType.STRING: - return reader.string(); - case reflection_info_1.ScalarType.BOOL: - return reader.bool(); - case reflection_info_1.ScalarType.DOUBLE: - return reader.double(); - case reflection_info_1.ScalarType.FLOAT: - return reader.float(); - case reflection_info_1.ScalarType.INT64: - return reflection_long_convert_1.reflectionLongConvert(reader.int64(), longType); - case reflection_info_1.ScalarType.UINT64: - return reflection_long_convert_1.reflectionLongConvert(reader.uint64(), longType); - case reflection_info_1.ScalarType.FIXED64: - return reflection_long_convert_1.reflectionLongConvert(reader.fixed64(), longType); - case reflection_info_1.ScalarType.FIXED32: - return reader.fixed32(); - case reflection_info_1.ScalarType.BYTES: - return reader.bytes(); - case reflection_info_1.ScalarType.UINT32: - return reader.uint32(); - case reflection_info_1.ScalarType.SFIXED32: - return reader.sfixed32(); - case reflection_info_1.ScalarType.SFIXED64: - return reflection_long_convert_1.reflectionLongConvert(reader.sfixed64(), longType); - case reflection_info_1.ScalarType.SINT32: - return reader.sint32(); - case reflection_info_1.ScalarType.SINT64: - return reflection_long_convert_1.reflectionLongConvert(reader.sint64(), longType); + /** + * Sending message(s) completed? + */ + get sendComplete() { + if (this.lastInput instanceof TestInputStream) { + return this.lastInput.completed; } + else if (typeof this.lastInput == "object") { + return true; + } + return false; } -} -exports.ReflectionBinaryReader = ReflectionBinaryReader; - - -/***/ }), - -/***/ 6907: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { - - -Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ReflectionBinaryWriter = void 0; -const binary_format_contract_1 = __nccwpck_require__(4816); -const reflection_info_1 = __nccwpck_require__(7910); -const assert_1 = __nccwpck_require__(8602); -const pb_long_1 = __nccwpck_require__(1753); -/** - * Writes proto3 messages in binary format using reflection information. - * - * https://developers.google.com/protocol-buffers/docs/encoding - */ -class ReflectionBinaryWriter { - constructor(info) { - this.info = info; + // Creates a promise for response headers from the mock data. + promiseHeaders() { + var _a; + const headers = (_a = this.data.headers) !== null && _a !== void 0 ? _a : TestTransport.defaultHeaders; + return headers instanceof rpc_error_1.RpcError + ? Promise.reject(headers) + : Promise.resolve(headers); } - prepare() { - if (!this.fields) { - const fieldsInput = this.info.fields ? this.info.fields.concat() : []; - this.fields = fieldsInput.sort((a, b) => a.no - b.no); + // Creates a promise for a single, valid, message from the mock data. + promiseSingleResponse(method) { + if (this.data.response instanceof rpc_error_1.RpcError) { + return Promise.reject(this.data.response); + } + let r; + if (Array.isArray(this.data.response)) { + runtime_1.assert(this.data.response.length > 0); + r = this.data.response[0]; + } + else if (this.data.response !== undefined) { + r = this.data.response; + } + else { + r = method.O.create(); } + runtime_1.assert(method.O.is(r)); + return Promise.resolve(r); } /** - * Writes the message to binary format. + * Pushes response messages from the mock data to the output stream. + * If an error response, status or trailers are mocked, the stream is + * closed with the respective error. + * Otherwise, stream is completed successfully. + * + * The returned promise resolves when the stream is closed. It should + * not reject. If it does, code is broken. */ - write(message, writer, options) { - this.prepare(); - for (const field of this.fields) { - let value, // this will be our field value, whether it is member of a oneof or not - emitDefault, // whether we emit the default value (only true for oneof members) - repeated = field.repeat, localName = field.localName; - // handle oneof ADT - if (field.oneof) { - const group = message[field.oneof]; - if (group.oneofKind !== localName) - continue; // if field is not selected, skip - value = group[localName]; - emitDefault = true; + streamResponses(method, stream, abort) { + return __awaiter(this, void 0, void 0, function* () { + // normalize "data.response" into an array of valid output messages + const messages = []; + if (this.data.response === undefined) { + messages.push(method.O.create()); } - else { - value = message[localName]; - emitDefault = false; + else if (Array.isArray(this.data.response)) { + for (let msg of this.data.response) { + runtime_1.assert(method.O.is(msg)); + messages.push(msg); + } } - // we have handled oneof above. we just have to honor `emitDefault`. - switch (field.kind) { - case "scalar": - case "enum": - let T = field.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.T; - if (repeated) { - assert_1.assert(Array.isArray(value)); - if (repeated == reflection_info_1.RepeatType.PACKED) - this.packed(writer, T, field.no, value); - else - for (const item of value) - this.scalar(writer, T, field.no, item, true); - } - else if (value === undefined) - assert_1.assert(field.opt); - else - this.scalar(writer, T, field.no, value, emitDefault || field.opt); - break; - case "message": - if (repeated) { - assert_1.assert(Array.isArray(value)); - for (const item of value) - this.message(writer, options, field.T(), field.no, item); - } - else { - this.message(writer, options, field.T(), field.no, value); - } - break; - case "map": - assert_1.assert(typeof value == 'object' && value !== null); - for (const [key, val] of Object.entries(value)) - this.mapEntry(writer, options, field, key, val); - break; + else if (!(this.data.response instanceof rpc_error_1.RpcError)) { + runtime_1.assert(method.O.is(this.data.response)); + messages.push(this.data.response); + } + // start the stream with an initial delay. + // if the request is cancelled, notify() error and exit. + try { + yield delay(this.responseDelay, abort)(undefined); + } + catch (error) { + stream.notifyError(error); + return; + } + // if error response was mocked, notify() error (stream is now closed with error) and exit. + if (this.data.response instanceof rpc_error_1.RpcError) { + stream.notifyError(this.data.response); + return; + } + // regular response messages were mocked. notify() them. + for (let msg of messages) { + stream.notifyMessage(msg); + // add a short delay between responses + // if the request is cancelled, notify() error and exit. + try { + yield delay(this.betweenResponseDelay, abort)(undefined); + } + catch (error) { + stream.notifyError(error); + return; + } + } + // error status was mocked, notify() error (stream is now closed with error) and exit. + if (this.data.status instanceof rpc_error_1.RpcError) { + stream.notifyError(this.data.status); + return; + } + // error trailers were mocked, notify() error (stream is now closed with error) and exit. + if (this.data.trailers instanceof rpc_error_1.RpcError) { + stream.notifyError(this.data.trailers); + return; + } + // stream completed successfully + stream.notifyComplete(); + }); + } + // Creates a promise for response status from the mock data. + promiseStatus() { + var _a; + const status = (_a = this.data.status) !== null && _a !== void 0 ? _a : TestTransport.defaultStatus; + return status instanceof rpc_error_1.RpcError + ? Promise.reject(status) + : Promise.resolve(status); + } + // Creates a promise for response trailers from the mock data. + promiseTrailers() { + var _a; + const trailers = (_a = this.data.trailers) !== null && _a !== void 0 ? _a : TestTransport.defaultTrailers; + return trailers instanceof rpc_error_1.RpcError + ? Promise.reject(trailers) + : Promise.resolve(trailers); + } + maybeSuppressUncaught(...promise) { + if (this.suppressUncaughtRejections) { + for (let p of promise) { + p.catch(() => { + }); } } - let u = options.writeUnknownFields; - if (u !== false) - (u === true ? binary_format_contract_1.UnknownFieldHandler.onWrite : u)(this.info.typeName, message, writer); } - mapEntry(writer, options, field, key, value) { - writer.tag(field.no, binary_format_contract_1.WireType.LengthDelimited); - writer.fork(); - // javascript only allows number or string for object properties - // we convert from our representation to the protobuf type - let keyValue = key; - switch (field.K) { - case reflection_info_1.ScalarType.INT32: - case reflection_info_1.ScalarType.FIXED32: - case reflection_info_1.ScalarType.UINT32: - case reflection_info_1.ScalarType.SFIXED32: - case reflection_info_1.ScalarType.SINT32: - keyValue = Number.parseInt(key); - break; - case reflection_info_1.ScalarType.BOOL: - assert_1.assert(key == 'true' || key == 'false'); - keyValue = key == 'true'; - break; + mergeOptions(options) { + return rpc_options_1.mergeRpcOptions({}, options); + } + unary(method, input, options) { + var _a; + const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() + .then(delay(this.headerDelay, options.abort)), responsePromise = headersPromise + .catch(_ => { + }) + .then(delay(this.responseDelay, options.abort)) + .then(_ => this.promiseSingleResponse(method)), statusPromise = responsePromise + .catch(_ => { + }) + .then(delay(this.afterResponseDelay, options.abort)) + .then(_ => this.promiseStatus()), trailersPromise = responsePromise + .catch(_ => { + }) + .then(delay(this.afterResponseDelay, options.abort)) + .then(_ => this.promiseTrailers()); + this.maybeSuppressUncaught(statusPromise, trailersPromise); + this.lastInput = { single: input }; + return new unary_call_1.UnaryCall(method, requestHeaders, input, headersPromise, responsePromise, statusPromise, trailersPromise); + } + serverStreaming(method, input, options) { + var _a; + const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() + .then(delay(this.headerDelay, options.abort)), outputStream = new rpc_output_stream_1.RpcOutputStreamController(), responseStreamClosedPromise = headersPromise + .then(delay(this.responseDelay, options.abort)) + .catch(() => { + }) + .then(() => this.streamResponses(method, outputStream, options.abort)) + .then(delay(this.afterResponseDelay, options.abort)), statusPromise = responseStreamClosedPromise + .then(() => this.promiseStatus()), trailersPromise = responseStreamClosedPromise + .then(() => this.promiseTrailers()); + this.maybeSuppressUncaught(statusPromise, trailersPromise); + this.lastInput = { single: input }; + return new server_streaming_call_1.ServerStreamingCall(method, requestHeaders, input, headersPromise, outputStream, statusPromise, trailersPromise); + } + clientStreaming(method, options) { + var _a; + const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() + .then(delay(this.headerDelay, options.abort)), responsePromise = headersPromise + .catch(_ => { + }) + .then(delay(this.responseDelay, options.abort)) + .then(_ => this.promiseSingleResponse(method)), statusPromise = responsePromise + .catch(_ => { + }) + .then(delay(this.afterResponseDelay, options.abort)) + .then(_ => this.promiseStatus()), trailersPromise = responsePromise + .catch(_ => { + }) + .then(delay(this.afterResponseDelay, options.abort)) + .then(_ => this.promiseTrailers()); + this.maybeSuppressUncaught(statusPromise, trailersPromise); + this.lastInput = new TestInputStream(this.data, options.abort); + return new client_streaming_call_1.ClientStreamingCall(method, requestHeaders, this.lastInput, headersPromise, responsePromise, statusPromise, trailersPromise); + } + duplex(method, options) { + var _a; + const requestHeaders = (_a = options.meta) !== null && _a !== void 0 ? _a : {}, headersPromise = this.promiseHeaders() + .then(delay(this.headerDelay, options.abort)), outputStream = new rpc_output_stream_1.RpcOutputStreamController(), responseStreamClosedPromise = headersPromise + .then(delay(this.responseDelay, options.abort)) + .catch(() => { + }) + .then(() => this.streamResponses(method, outputStream, options.abort)) + .then(delay(this.afterResponseDelay, options.abort)), statusPromise = responseStreamClosedPromise + .then(() => this.promiseStatus()), trailersPromise = responseStreamClosedPromise + .then(() => this.promiseTrailers()); + this.maybeSuppressUncaught(statusPromise, trailersPromise); + this.lastInput = new TestInputStream(this.data, options.abort); + return new duplex_streaming_call_1.DuplexStreamingCall(method, requestHeaders, this.lastInput, headersPromise, outputStream, statusPromise, trailersPromise); + } +} +exports.TestTransport = TestTransport; +TestTransport.defaultHeaders = { + responseHeader: "test" +}; +TestTransport.defaultStatus = { + code: "OK", detail: "all good" +}; +TestTransport.defaultTrailers = { + responseTrailer: "test" +}; +function delay(ms, abort) { + return (v) => new Promise((resolve, reject) => { + if (abort === null || abort === void 0 ? void 0 : abort.aborted) { + reject(new rpc_error_1.RpcError("user cancel", "CANCELLED")); } - // write key, expecting key field number = 1 - this.scalar(writer, field.K, 1, keyValue, true); - // write value, expecting value field number = 2 - switch (field.V.kind) { - case 'scalar': - this.scalar(writer, field.V.T, 2, value, true); - break; - case 'enum': - this.scalar(writer, reflection_info_1.ScalarType.INT32, 2, value, true); - break; - case 'message': - this.message(writer, options, field.V.T(), 2, value); - break; + else { + const id = setTimeout(() => resolve(v), ms); + if (abort) { + abort.addEventListener("abort", ev => { + clearTimeout(id); + reject(new rpc_error_1.RpcError("user cancel", "CANCELLED")); + }); + } } - writer.join(); + }); +} +class TestInputStream { + constructor(data, abort) { + this._completed = false; + this._sent = []; + this.data = data; + this.abort = abort; } - message(writer, options, handler, fieldNo, value) { - if (value === undefined) - return; - handler.internalBinaryWrite(value, writer.tag(fieldNo, binary_format_contract_1.WireType.LengthDelimited).fork(), options); - writer.join(); + get sent() { + return this._sent; } - /** - * Write a single scalar value. - */ - scalar(writer, type, fieldNo, value, emitDefault) { - let [wireType, method, isDefault] = this.scalarInfo(type, value); - if (!isDefault || emitDefault) { - writer.tag(fieldNo, wireType); - writer[method](value); - } + get completed() { + return this._completed; } - /** - * Write an array of scalar values in packed format. - */ - packed(writer, type, fieldNo, value) { - if (!value.length) - return; - assert_1.assert(type !== reflection_info_1.ScalarType.BYTES && type !== reflection_info_1.ScalarType.STRING); - // write tag - writer.tag(fieldNo, binary_format_contract_1.WireType.LengthDelimited); - // begin length-delimited - writer.fork(); - // write values without tags - let [, method,] = this.scalarInfo(type); - for (let i = 0; i < value.length; i++) - writer[method](value[i]); - // end length delimited - writer.join(); + send(message) { + if (this.data.inputMessage instanceof rpc_error_1.RpcError) { + return Promise.reject(this.data.inputMessage); + } + const delayMs = this.data.inputMessage === undefined + ? 10 + : this.data.inputMessage; + return Promise.resolve(undefined) + .then(() => { + this._sent.push(message); + }) + .then(delay(delayMs, this.abort)); } - /** - * Get information for writing a scalar value. - * - * Returns tuple: - * [0]: appropriate WireType - * [1]: name of the appropriate method of IBinaryWriter - * [2]: whether the given value is a default value - * - * If argument `value` is omitted, [2] is always false. - */ - scalarInfo(type, value) { - let t = binary_format_contract_1.WireType.Varint; - let m; - let i = value === undefined; - let d = value === 0; - switch (type) { - case reflection_info_1.ScalarType.INT32: - m = "int32"; - break; - case reflection_info_1.ScalarType.STRING: - d = i || !value.length; - t = binary_format_contract_1.WireType.LengthDelimited; - m = "string"; - break; - case reflection_info_1.ScalarType.BOOL: - d = value === false; - m = "bool"; - break; - case reflection_info_1.ScalarType.UINT32: - m = "uint32"; - break; - case reflection_info_1.ScalarType.DOUBLE: - t = binary_format_contract_1.WireType.Bit64; - m = "double"; - break; - case reflection_info_1.ScalarType.FLOAT: - t = binary_format_contract_1.WireType.Bit32; - m = "float"; - break; - case reflection_info_1.ScalarType.INT64: - d = i || pb_long_1.PbLong.from(value).isZero(); - m = "int64"; - break; - case reflection_info_1.ScalarType.UINT64: - d = i || pb_long_1.PbULong.from(value).isZero(); - m = "uint64"; - break; - case reflection_info_1.ScalarType.FIXED64: - d = i || pb_long_1.PbULong.from(value).isZero(); - t = binary_format_contract_1.WireType.Bit64; - m = "fixed64"; - break; - case reflection_info_1.ScalarType.BYTES: - d = i || !value.byteLength; - t = binary_format_contract_1.WireType.LengthDelimited; - m = "bytes"; - break; - case reflection_info_1.ScalarType.FIXED32: - t = binary_format_contract_1.WireType.Bit32; - m = "fixed32"; - break; - case reflection_info_1.ScalarType.SFIXED32: - t = binary_format_contract_1.WireType.Bit32; - m = "sfixed32"; - break; - case reflection_info_1.ScalarType.SFIXED64: - d = i || pb_long_1.PbLong.from(value).isZero(); - t = binary_format_contract_1.WireType.Bit64; - m = "sfixed64"; - break; - case reflection_info_1.ScalarType.SINT32: - m = "sint32"; - break; - case reflection_info_1.ScalarType.SINT64: - d = i || pb_long_1.PbLong.from(value).isZero(); - m = "sint64"; - break; + complete() { + if (this.data.inputComplete instanceof rpc_error_1.RpcError) { + return Promise.reject(this.data.inputComplete); } - return [t, m, i || d]; + const delayMs = this.data.inputComplete === undefined + ? 10 + : this.data.inputComplete; + return Promise.resolve(undefined) + .then(() => { + this._completed = true; + }) + .then(delay(delayMs, this.abort)); } } -exports.ReflectionBinaryWriter = ReflectionBinaryWriter; /***/ }), -/***/ 9946: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { +/***/ 9288: +/***/ (function(__unused_webpack_module, exports) { +var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) { + function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); } + return new (P || (P = Promise))(function (resolve, reject) { + function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } } + function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } } + function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); } + step((generator = generator.apply(thisArg, _arguments || [])).next()); + }); +}; Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.containsMessageType = void 0; -const message_type_contract_1 = __nccwpck_require__(3785); +exports.UnaryCall = void 0; /** - * Check if the provided object is a proto message. - * - * Note that this is an experimental feature - it is here to stay, but - * implementation details may change without notice. + * A unary RPC call. Unary means there is exactly one input message and + * exactly one output message unless an error occurred. */ -function containsMessageType(msg) { - return msg[message_type_contract_1.MESSAGE_TYPE] != null; +class UnaryCall { + constructor(method, requestHeaders, request, headers, response, status, trailers) { + this.method = method; + this.requestHeaders = requestHeaders; + this.request = request; + this.headers = headers; + this.response = response; + this.status = status; + this.trailers = trailers; + } + /** + * If you are only interested in the final outcome of this call, + * you can await it to receive a `FinishedUnaryCall`. + */ + then(onfulfilled, onrejected) { + return this.promiseFinished().then(value => onfulfilled ? Promise.resolve(onfulfilled(value)) : value, reason => onrejected ? Promise.resolve(onrejected(reason)) : Promise.reject(reason)); + } + promiseFinished() { + return __awaiter(this, void 0, void 0, function* () { + let [headers, response, status, trailers] = yield Promise.all([this.headers, this.response, this.status, this.trailers]); + return { + method: this.method, + requestHeaders: this.requestHeaders, + request: this.request, + headers, + response, + status, + trailers + }; + }); + } } -exports.containsMessageType = containsMessageType; +exports.UnaryCall = UnaryCall; /***/ }), -/***/ 5726: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { +/***/ 8602: +/***/ ((__unused_webpack_module, exports) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.reflectionCreate = void 0; -const reflection_scalar_default_1 = __nccwpck_require__(9526); -const message_type_contract_1 = __nccwpck_require__(3785); +exports.assertFloat32 = exports.assertUInt32 = exports.assertInt32 = exports.assertNever = exports.assert = void 0; /** - * Creates an instance of the generic message, using the field - * information. + * assert that condition is true or throw error (with message) */ -function reflectionCreate(type) { - /** - * This ternary can be removed in the next major version. - * The `Object.create()` code path utilizes a new `messagePrototype` - * property on the `IMessageType` which has this same `MESSAGE_TYPE` - * non-enumerable property on it. Doing it this way means that we only - * pay the cost of `Object.defineProperty()` once per `IMessageType` - * class of once per "instance". The falsy code path is only provided - * for backwards compatibility in cases where the runtime library is - * updated without also updating the generated code. - */ - const msg = type.messagePrototype - ? Object.create(type.messagePrototype) - : Object.defineProperty({}, message_type_contract_1.MESSAGE_TYPE, { value: type }); - for (let field of type.fields) { - let name = field.localName; - if (field.opt) - continue; - if (field.oneof) - msg[field.oneof] = { oneofKind: undefined }; - else if (field.repeat) - msg[name] = []; - else - switch (field.kind) { - case "scalar": - msg[name] = reflection_scalar_default_1.reflectionScalarDefault(field.T, field.L); - break; - case "enum": - // we require 0 to be default value for all enums - msg[name] = 0; - break; - case "map": - msg[name] = {}; - break; - } +function assert(condition, msg) { + if (!condition) { + throw new Error(msg); } - return msg; } -exports.reflectionCreate = reflectionCreate; +exports.assert = assert; +/** + * assert that value cannot exist = type `never`. throw runtime error if it does. + */ +function assertNever(value, msg) { + throw new Error(msg !== null && msg !== void 0 ? msg : 'Unexpected object: ' + value); +} +exports.assertNever = assertNever; +const FLOAT32_MAX = 3.4028234663852886e+38, FLOAT32_MIN = -3.4028234663852886e+38, UINT32_MAX = 0xFFFFFFFF, INT32_MAX = 0X7FFFFFFF, INT32_MIN = -0X80000000; +function assertInt32(arg) { + if (typeof arg !== "number") + throw new Error('invalid int 32: ' + typeof arg); + if (!Number.isInteger(arg) || arg > INT32_MAX || arg < INT32_MIN) + throw new Error('invalid int 32: ' + arg); +} +exports.assertInt32 = assertInt32; +function assertUInt32(arg) { + if (typeof arg !== "number") + throw new Error('invalid uint 32: ' + typeof arg); + if (!Number.isInteger(arg) || arg > UINT32_MAX || arg < 0) + throw new Error('invalid uint 32: ' + arg); +} +exports.assertUInt32 = assertUInt32; +function assertFloat32(arg) { + if (typeof arg !== "number") + throw new Error('invalid float 32: ' + typeof arg); + if (!Number.isFinite(arg)) + return; + if (arg > FLOAT32_MAX || arg < FLOAT32_MIN) + throw new Error('invalid float 32: ' + arg); +} +exports.assertFloat32 = assertFloat32; /***/ }), -/***/ 4827: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { +/***/ 6335: +/***/ ((__unused_webpack_module, exports) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.reflectionEquals = void 0; -const reflection_info_1 = __nccwpck_require__(7910); +exports.base64encode = exports.base64decode = void 0; +// lookup table from base64 character to byte +let encTable = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/'.split(''); +// lookup table from base64 character *code* to byte because lookup by number is fast +let decTable = []; +for (let i = 0; i < encTable.length; i++) + decTable[encTable[i].charCodeAt(0)] = i; +// support base64url variants +decTable["-".charCodeAt(0)] = encTable.indexOf("+"); +decTable["_".charCodeAt(0)] = encTable.indexOf("/"); /** - * Determines whether two message of the same type have the same field values. - * Checks for deep equality, traversing repeated fields, oneof groups, maps - * and messages recursively. - * Will also return true if both messages are `undefined`. + * Decodes a base64 string to a byte array. + * + * - ignores white-space, including line breaks and tabs + * - allows inner padding (can decode concatenated base64 strings) + * - does not require padding + * - understands base64url encoding: + * "-" instead of "+", + * "_" instead of "/", + * no padding */ -function reflectionEquals(info, a, b) { - if (a === b) - return true; - if (!a || !b) - return false; - for (let field of info.fields) { - let localName = field.localName; - let val_a = field.oneof ? a[field.oneof][localName] : a[localName]; - let val_b = field.oneof ? b[field.oneof][localName] : b[localName]; - switch (field.kind) { - case "enum": - case "scalar": - let t = field.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.T; - if (!(field.repeat - ? repeatedPrimitiveEq(t, val_a, val_b) - : primitiveEq(t, val_a, val_b))) - return false; +function base64decode(base64Str) { + // estimate byte size, not accounting for inner padding and whitespace + let es = base64Str.length * 3 / 4; + // if (es % 3 !== 0) + // throw new Error('invalid base64 string'); + if (base64Str[base64Str.length - 2] == '=') + es -= 2; + else if (base64Str[base64Str.length - 1] == '=') + es -= 1; + let bytes = new Uint8Array(es), bytePos = 0, // position in byte array + groupPos = 0, // position in base64 group + b, // current byte + p = 0 // previous byte + ; + for (let i = 0; i < base64Str.length; i++) { + b = decTable[base64Str.charCodeAt(i)]; + if (b === undefined) { + // noinspection FallThroughInSwitchStatementJS + switch (base64Str[i]) { + case '=': + groupPos = 0; // reset state when padding found + case '\n': + case '\r': + case '\t': + case ' ': + continue; // skip white-space, and padding + default: + throw Error(`invalid base64 string.`); + } + } + switch (groupPos) { + case 0: + p = b; + groupPos = 1; break; - case "map": - if (!(field.V.kind == "message" - ? repeatedMsgEq(field.V.T(), objectValues(val_a), objectValues(val_b)) - : repeatedPrimitiveEq(field.V.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.V.T, objectValues(val_a), objectValues(val_b)))) - return false; + case 1: + bytes[bytePos++] = p << 2 | (b & 48) >> 4; + p = b; + groupPos = 2; break; - case "message": - let T = field.T(); - if (!(field.repeat - ? repeatedMsgEq(T, val_a, val_b) - : T.equals(val_a, val_b))) - return false; + case 2: + bytes[bytePos++] = (p & 15) << 4 | (b & 60) >> 2; + p = b; + groupPos = 3; + break; + case 3: + bytes[bytePos++] = (p & 3) << 6 | b; + groupPos = 0; break; } } - return true; -} -exports.reflectionEquals = reflectionEquals; -const objectValues = Object.values; -function primitiveEq(type, a, b) { - if (a === b) - return true; - if (type !== reflection_info_1.ScalarType.BYTES) - return false; - let ba = a; - let bb = b; - if (ba.length !== bb.length) - return false; - for (let i = 0; i < ba.length; i++) - if (ba[i] != bb[i]) - return false; - return true; -} -function repeatedPrimitiveEq(type, a, b) { - if (a.length !== b.length) - return false; - for (let i = 0; i < a.length; i++) - if (!primitiveEq(type, a[i], b[i])) - return false; - return true; + if (groupPos == 1) + throw Error(`invalid base64 string.`); + return bytes.subarray(0, bytePos); } -function repeatedMsgEq(type, a, b) { - if (a.length !== b.length) - return false; - for (let i = 0; i < a.length; i++) - if (!type.equals(a[i], b[i])) - return false; - return true; +exports.base64decode = base64decode; +/** + * Encodes a byte array to a base64 string. + * Adds padding at the end. + * Does not insert newlines. + */ +function base64encode(bytes) { + let base64 = '', groupPos = 0, // position in base64 group + b, // current byte + p = 0; // carry over from previous byte + for (let i = 0; i < bytes.length; i++) { + b = bytes[i]; + switch (groupPos) { + case 0: + base64 += encTable[b >> 2]; + p = (b & 3) << 4; + groupPos = 1; + break; + case 1: + base64 += encTable[p | b >> 4]; + p = (b & 15) << 2; + groupPos = 2; + break; + case 2: + base64 += encTable[p | b >> 6]; + base64 += encTable[b & 63]; + groupPos = 0; + break; + } + } + // padding required? + if (groupPos) { + base64 += encTable[p]; + base64 += '='; + if (groupPos == 1) + base64 += '='; + } + return base64; } +exports.base64encode = base64encode; /***/ }), -/***/ 7910: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { +/***/ 4816: +/***/ ((__unused_webpack_module, exports) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.readMessageOption = exports.readFieldOption = exports.readFieldOptions = exports.normalizeFieldInfo = exports.RepeatType = exports.LongType = exports.ScalarType = void 0; -const lower_camel_case_1 = __nccwpck_require__(4073); +exports.WireType = exports.mergeBinaryOptions = exports.UnknownFieldHandler = void 0; /** - * Scalar value types. This is a subset of field types declared by protobuf - * enum google.protobuf.FieldDescriptorProto.Type The types GROUP and MESSAGE - * are omitted, but the numerical values are identical. + * This handler implements the default behaviour for unknown fields. + * When reading data, unknown fields are stored on the message, in a + * symbol property. + * When writing data, the symbol property is queried and unknown fields + * are serialized into the output again. */ -var ScalarType; -(function (ScalarType) { - // 0 is reserved for errors. - // Order is weird for historical reasons. - ScalarType[ScalarType["DOUBLE"] = 1] = "DOUBLE"; - ScalarType[ScalarType["FLOAT"] = 2] = "FLOAT"; - // Not ZigZag encoded. Negative numbers take 10 bytes. Use TYPE_SINT64 if - // negative values are likely. - ScalarType[ScalarType["INT64"] = 3] = "INT64"; - ScalarType[ScalarType["UINT64"] = 4] = "UINT64"; - // Not ZigZag encoded. Negative numbers take 10 bytes. Use TYPE_SINT32 if - // negative values are likely. - ScalarType[ScalarType["INT32"] = 5] = "INT32"; - ScalarType[ScalarType["FIXED64"] = 6] = "FIXED64"; - ScalarType[ScalarType["FIXED32"] = 7] = "FIXED32"; - ScalarType[ScalarType["BOOL"] = 8] = "BOOL"; - ScalarType[ScalarType["STRING"] = 9] = "STRING"; - // Tag-delimited aggregate. - // Group type is deprecated and not supported in proto3. However, Proto3 - // implementations should still be able to parse the group wire format and - // treat group fields as unknown fields. - // TYPE_GROUP = 10, - // TYPE_MESSAGE = 11, // Length-delimited aggregate. - // New in version 2. - ScalarType[ScalarType["BYTES"] = 12] = "BYTES"; - ScalarType[ScalarType["UINT32"] = 13] = "UINT32"; - // TYPE_ENUM = 14, - ScalarType[ScalarType["SFIXED32"] = 15] = "SFIXED32"; - ScalarType[ScalarType["SFIXED64"] = 16] = "SFIXED64"; - ScalarType[ScalarType["SINT32"] = 17] = "SINT32"; - ScalarType[ScalarType["SINT64"] = 18] = "SINT64"; -})(ScalarType = exports.ScalarType || (exports.ScalarType = {})); +var UnknownFieldHandler; +(function (UnknownFieldHandler) { + /** + * The symbol used to store unknown fields for a message. + * The property must conform to `UnknownFieldContainer`. + */ + UnknownFieldHandler.symbol = Symbol.for("protobuf-ts/unknown"); + /** + * Store an unknown field during binary read directly on the message. + * This method is compatible with `BinaryReadOptions.readUnknownField`. + */ + UnknownFieldHandler.onRead = (typeName, message, fieldNo, wireType, data) => { + let container = is(message) ? message[UnknownFieldHandler.symbol] : message[UnknownFieldHandler.symbol] = []; + container.push({ no: fieldNo, wireType, data }); + }; + /** + * Write unknown fields stored for the message to the writer. + * This method is compatible with `BinaryWriteOptions.writeUnknownFields`. + */ + UnknownFieldHandler.onWrite = (typeName, message, writer) => { + for (let { no, wireType, data } of UnknownFieldHandler.list(message)) + writer.tag(no, wireType).raw(data); + }; + /** + * List unknown fields stored for the message. + * Note that there may be multiples fields with the same number. + */ + UnknownFieldHandler.list = (message, fieldNo) => { + if (is(message)) { + let all = message[UnknownFieldHandler.symbol]; + return fieldNo ? all.filter(uf => uf.no == fieldNo) : all; + } + return []; + }; + /** + * Returns the last unknown field by field number. + */ + UnknownFieldHandler.last = (message, fieldNo) => UnknownFieldHandler.list(message, fieldNo).slice(-1)[0]; + const is = (message) => message && Array.isArray(message[UnknownFieldHandler.symbol]); +})(UnknownFieldHandler = exports.UnknownFieldHandler || (exports.UnknownFieldHandler = {})); /** - * JavaScript representation of 64 bit integral types. Equivalent to the - * field option "jstype". - * - * By default, protobuf-ts represents 64 bit types as `bigint`. - * - * You can change the default behaviour by enabling the plugin parameter - * `long_type_string`, which will represent 64 bit types as `string`. + * Merges binary write or read options. Later values override earlier values. + */ +function mergeBinaryOptions(a, b) { + return Object.assign(Object.assign({}, a), b); +} +exports.mergeBinaryOptions = mergeBinaryOptions; +/** + * Protobuf binary format wire types. * - * Alternatively, you can change the behaviour for individual fields - * with the field option "jstype": + * A wire type provides just enough information to find the length of the + * following value. * - * ```protobuf - * uint64 my_field = 1 [jstype = JS_STRING]; - * uint64 other_field = 2 [jstype = JS_NUMBER]; - * ``` + * See https://developers.google.com/protocol-buffers/docs/encoding#structure */ -var LongType; -(function (LongType) { +var WireType; +(function (WireType) { /** - * Use JavaScript `bigint`. - * - * Field option `[jstype = JS_NORMAL]`. + * Used for int32, int64, uint32, uint64, sint32, sint64, bool, enum */ - LongType[LongType["BIGINT"] = 0] = "BIGINT"; + WireType[WireType["Varint"] = 0] = "Varint"; /** - * Use JavaScript `string`. - * - * Field option `[jstype = JS_STRING]`. + * Used for fixed64, sfixed64, double. + * Always 8 bytes with little-endian byte order. */ - LongType[LongType["STRING"] = 1] = "STRING"; + WireType[WireType["Bit64"] = 1] = "Bit64"; /** - * Use JavaScript `number`. - * - * Large values will loose precision. + * Used for string, bytes, embedded messages, packed repeated fields * - * Field option `[jstype = JS_NUMBER]`. + * Only repeated numeric types (types which use the varint, 32-bit, + * or 64-bit wire types) can be packed. In proto3, such fields are + * packed by default. */ - LongType[LongType["NUMBER"] = 2] = "NUMBER"; -})(LongType = exports.LongType || (exports.LongType = {})); -/** - * Protobuf 2.1.0 introduced packed repeated fields. - * Setting the field option `[packed = true]` enables packing. - * - * In proto3, all repeated fields are packed by default. - * Setting the field option `[packed = false]` disables packing. - * - * Packed repeated fields are encoded with a single tag, - * then a length-delimiter, then the element values. - * - * Unpacked repeated fields are encoded with a tag and - * value for each element. - * - * `bytes` and `string` cannot be packed. - */ -var RepeatType; -(function (RepeatType) { + WireType[WireType["LengthDelimited"] = 2] = "LengthDelimited"; /** - * The field is not repeated. + * Used for groups + * @deprecated */ - RepeatType[RepeatType["NO"] = 0] = "NO"; + WireType[WireType["StartGroup"] = 3] = "StartGroup"; /** - * The field is repeated and should be packed. - * Invalid for `bytes` and `string`, they cannot be packed. + * Used for groups + * @deprecated */ - RepeatType[RepeatType["PACKED"] = 1] = "PACKED"; + WireType[WireType["EndGroup"] = 4] = "EndGroup"; /** - * The field is repeated but should not be packed. - * The only valid repeat type for repeated `bytes` and `string`. + * Used for fixed32, sfixed32, float. + * Always 4 bytes with little-endian byte order. */ - RepeatType[RepeatType["UNPACKED"] = 2] = "UNPACKED"; -})(RepeatType = exports.RepeatType || (exports.RepeatType = {})); -/** - * Turns PartialFieldInfo into FieldInfo. - */ -function normalizeFieldInfo(field) { - var _a, _b, _c, _d; - field.localName = (_a = field.localName) !== null && _a !== void 0 ? _a : lower_camel_case_1.lowerCamelCase(field.name); - field.jsonName = (_b = field.jsonName) !== null && _b !== void 0 ? _b : lower_camel_case_1.lowerCamelCase(field.name); - field.repeat = (_c = field.repeat) !== null && _c !== void 0 ? _c : RepeatType.NO; - field.opt = (_d = field.opt) !== null && _d !== void 0 ? _d : (field.repeat ? false : field.oneof ? false : field.kind == "message"); - return field; -} -exports.normalizeFieldInfo = normalizeFieldInfo; -/** - * Read custom field options from a generated message type. - * - * @deprecated use readFieldOption() - */ -function readFieldOptions(messageType, fieldName, extensionName, extensionType) { - var _a; - const options = (_a = messageType.fields.find((m, i) => m.localName == fieldName || i == fieldName)) === null || _a === void 0 ? void 0 : _a.options; - return options && options[extensionName] ? extensionType.fromJson(options[extensionName]) : undefined; -} -exports.readFieldOptions = readFieldOptions; -function readFieldOption(messageType, fieldName, extensionName, extensionType) { - var _a; - const options = (_a = messageType.fields.find((m, i) => m.localName == fieldName || i == fieldName)) === null || _a === void 0 ? void 0 : _a.options; - if (!options) { - return undefined; - } - const optionVal = options[extensionName]; - if (optionVal === undefined) { - return optionVal; - } - return extensionType ? extensionType.fromJson(optionVal) : optionVal; -} -exports.readFieldOption = readFieldOption; -function readMessageOption(messageType, extensionName, extensionType) { - const options = messageType.options; - const optionVal = options[extensionName]; - if (optionVal === undefined) { - return optionVal; - } - return extensionType ? extensionType.fromJson(optionVal) : optionVal; -} -exports.readMessageOption = readMessageOption; + WireType[WireType["Bit32"] = 5] = "Bit32"; +})(WireType = exports.WireType || (exports.WireType = {})); /***/ }), -/***/ 6790: +/***/ 2889: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ReflectionJsonReader = void 0; -const json_typings_1 = __nccwpck_require__(9999); -const base64_1 = __nccwpck_require__(6335); -const reflection_info_1 = __nccwpck_require__(7910); +exports.BinaryReader = exports.binaryReadOptions = void 0; +const binary_format_contract_1 = __nccwpck_require__(4816); const pb_long_1 = __nccwpck_require__(1753); -const assert_1 = __nccwpck_require__(8602); -const reflection_long_convert_1 = __nccwpck_require__(3402); +const goog_varint_1 = __nccwpck_require__(3223); +const defaultsRead = { + readUnknownField: true, + readerFactory: bytes => new BinaryReader(bytes), +}; /** - * Reads proto3 messages in canonical JSON format using reflection information. - * - * https://developers.google.com/protocol-buffers/docs/proto3#json + * Make options for reading binary data form partial options. */ -class ReflectionJsonReader { - constructor(info) { - this.info = info; - } - prepare() { - var _a; - if (this.fMap === undefined) { - this.fMap = {}; - const fieldsInput = (_a = this.info.fields) !== null && _a !== void 0 ? _a : []; - for (const field of fieldsInput) { - this.fMap[field.name] = field; - this.fMap[field.jsonName] = field; - this.fMap[field.localName] = field; - } - } +function binaryReadOptions(options) { + return options ? Object.assign(Object.assign({}, defaultsRead), options) : defaultsRead; +} +exports.binaryReadOptions = binaryReadOptions; +class BinaryReader { + constructor(buf, textDecoder) { + this.varint64 = goog_varint_1.varint64read; // dirty cast for `this` + /** + * Read a `uint32` field, an unsigned 32 bit varint. + */ + this.uint32 = goog_varint_1.varint32read; // dirty cast for `this` and access to protected `buf` + this.buf = buf; + this.len = buf.length; + this.pos = 0; + this.view = new DataView(buf.buffer, buf.byteOffset, buf.byteLength); + this.textDecoder = textDecoder !== null && textDecoder !== void 0 ? textDecoder : new TextDecoder("utf-8", { + fatal: true, + ignoreBOM: true, + }); } - // Cannot parse JSON for #. - assert(condition, fieldName, jsonValue) { - if (!condition) { - let what = json_typings_1.typeofJsonValue(jsonValue); - if (what == "number" || what == "boolean") - what = jsonValue.toString(); - throw new Error(`Cannot parse JSON ${what} for ${this.info.typeName}#${fieldName}`); - } + /** + * Reads a tag - field number and wire type. + */ + tag() { + let tag = this.uint32(), fieldNo = tag >>> 3, wireType = tag & 7; + if (fieldNo <= 0 || wireType < 0 || wireType > 5) + throw new Error("illegal tag: field no " + fieldNo + " wire type " + wireType); + return [fieldNo, wireType]; } /** - * Reads a message from canonical JSON format into the target message. - * - * Repeated fields are appended. Map entries are added, overwriting - * existing keys. - * - * If a message field is already present, it will be merged with the - * new data. + * Skip one element on the wire and return the skipped data. + * Supports WireType.StartGroup since v2.0.0-alpha.23. */ - read(input, message, options) { - this.prepare(); - const oneofsHandled = []; - for (const [jsonKey, jsonValue] of Object.entries(input)) { - const field = this.fMap[jsonKey]; - if (!field) { - if (!options.ignoreUnknownFields) - throw new Error(`Found unknown field while reading ${this.info.typeName} from JSON format. JSON key: ${jsonKey}`); - continue; - } - const localName = field.localName; - // handle oneof ADT - let target; // this will be the target for the field value, whether it is member of a oneof or not - if (field.oneof) { - if (jsonValue === null && (field.kind !== 'enum' || field.T()[0] !== 'google.protobuf.NullValue')) { - continue; - } - // since json objects are unordered by specification, it is not possible to take the last of multiple oneofs - if (oneofsHandled.includes(field.oneof)) - throw new Error(`Multiple members of the oneof group "${field.oneof}" of ${this.info.typeName} are present in JSON.`); - oneofsHandled.push(field.oneof); - target = message[field.oneof] = { - oneofKind: localName - }; - } - else { - target = message; - } - // we have handled oneof above. we just have read the value into `target`. - if (field.kind == 'map') { - if (jsonValue === null) { - continue; - } - // check input - this.assert(json_typings_1.isJsonObject(jsonValue), field.name, jsonValue); - // our target to put map entries into - const fieldObj = target[localName]; - // read entries - for (const [jsonObjKey, jsonObjValue] of Object.entries(jsonValue)) { - this.assert(jsonObjValue !== null, field.name + " map value", null); - // read value - let val; - switch (field.V.kind) { - case "message": - val = field.V.T().internalJsonRead(jsonObjValue, options); - break; - case "enum": - val = this.enum(field.V.T(), jsonObjValue, field.name, options.ignoreUnknownFields); - if (val === false) - continue; - break; - case "scalar": - val = this.scalar(jsonObjValue, field.V.T, field.V.L, field.name); - break; - } - this.assert(val !== undefined, field.name + " map value", jsonObjValue); - // read key - let key = jsonObjKey; - if (field.K == reflection_info_1.ScalarType.BOOL) - key = key == "true" ? true : key == "false" ? false : key; - key = this.scalar(key, field.K, reflection_info_1.LongType.STRING, field.name).toString(); - fieldObj[key] = val; - } - } - else if (field.repeat) { - if (jsonValue === null) - continue; - // check input - this.assert(Array.isArray(jsonValue), field.name, jsonValue); - // our target to put array entries into - const fieldArr = target[localName]; - // read array entries - for (const jsonItem of jsonValue) { - this.assert(jsonItem !== null, field.name, null); - let val; - switch (field.kind) { - case "message": - val = field.T().internalJsonRead(jsonItem, options); - break; - case "enum": - val = this.enum(field.T(), jsonItem, field.name, options.ignoreUnknownFields); - if (val === false) - continue; - break; - case "scalar": - val = this.scalar(jsonItem, field.T, field.L, field.name); - break; - } - this.assert(val !== undefined, field.name, jsonValue); - fieldArr.push(val); + skip(wireType) { + let start = this.pos; + // noinspection FallThroughInSwitchStatementJS + switch (wireType) { + case binary_format_contract_1.WireType.Varint: + while (this.buf[this.pos++] & 0x80) { + // ignore } - } - else { - switch (field.kind) { - case "message": - if (jsonValue === null && field.T().typeName != 'google.protobuf.Value') { - this.assert(field.oneof === undefined, field.name + " (oneof member)", null); - continue; - } - target[localName] = field.T().internalJsonRead(jsonValue, options, target[localName]); - break; - case "enum": - if (jsonValue === null) - continue; - let val = this.enum(field.T(), jsonValue, field.name, options.ignoreUnknownFields); - if (val === false) - continue; - target[localName] = val; - break; - case "scalar": - if (jsonValue === null) - continue; - target[localName] = this.scalar(jsonValue, field.T, field.L, field.name); - break; + break; + case binary_format_contract_1.WireType.Bit64: + this.pos += 4; + case binary_format_contract_1.WireType.Bit32: + this.pos += 4; + break; + case binary_format_contract_1.WireType.LengthDelimited: + let len = this.uint32(); + this.pos += len; + break; + case binary_format_contract_1.WireType.StartGroup: + // From descriptor.proto: Group type is deprecated, not supported in proto3. + // But we must still be able to parse and treat as unknown. + let t; + while ((t = this.tag()[1]) !== binary_format_contract_1.WireType.EndGroup) { + this.skip(t); } - } + break; + default: + throw new Error("cant skip wire type " + wireType); } + this.assertBounds(); + return this.buf.subarray(start, this.pos); + } + /** + * Throws error if position in byte array is out of range. + */ + assertBounds() { + if (this.pos > this.len) + throw new RangeError("premature EOF"); + } + /** + * Read a `int32` field, a signed 32 bit varint. + */ + int32() { + return this.uint32() | 0; + } + /** + * Read a `sint32` field, a signed, zigzag-encoded 32-bit varint. + */ + sint32() { + let zze = this.uint32(); + // decode zigzag + return (zze >>> 1) ^ -(zze & 1); + } + /** + * Read a `int64` field, a signed 64-bit varint. + */ + int64() { + return new pb_long_1.PbLong(...this.varint64()); + } + /** + * Read a `uint64` field, an unsigned 64-bit varint. + */ + uint64() { + return new pb_long_1.PbULong(...this.varint64()); + } + /** + * Read a `sint64` field, a signed, zig-zag-encoded 64-bit varint. + */ + sint64() { + let [lo, hi] = this.varint64(); + // decode zig zag + let s = -(lo & 1); + lo = ((lo >>> 1 | (hi & 1) << 31) ^ s); + hi = (hi >>> 1 ^ s); + return new pb_long_1.PbLong(lo, hi); + } + /** + * Read a `bool` field, a variant. + */ + bool() { + let [lo, hi] = this.varint64(); + return lo !== 0 || hi !== 0; + } + /** + * Read a `fixed32` field, an unsigned, fixed-length 32-bit integer. + */ + fixed32() { + return this.view.getUint32((this.pos += 4) - 4, true); } /** - * Returns `false` for unrecognized string representations. - * - * google.protobuf.NullValue accepts only JSON `null` (or the old `"NULL_VALUE"`). + * Read a `sfixed32` field, a signed, fixed-length 32-bit integer. */ - enum(type, json, fieldName, ignoreUnknownFields) { - if (type[0] == 'google.protobuf.NullValue') - assert_1.assert(json === null || json === "NULL_VALUE", `Unable to parse field ${this.info.typeName}#${fieldName}, enum ${type[0]} only accepts null.`); - if (json === null) - // we require 0 to be default value for all enums - return 0; - switch (typeof json) { - case "number": - assert_1.assert(Number.isInteger(json), `Unable to parse field ${this.info.typeName}#${fieldName}, enum can only be integral number, got ${json}.`); - return json; - case "string": - let localEnumName = json; - if (type[2] && json.substring(0, type[2].length) === type[2]) - // lookup without the shared prefix - localEnumName = json.substring(type[2].length); - let enumNumber = type[1][localEnumName]; - if (typeof enumNumber === 'undefined' && ignoreUnknownFields) { - return false; - } - assert_1.assert(typeof enumNumber == "number", `Unable to parse field ${this.info.typeName}#${fieldName}, enum ${type[0]} has no value for "${json}".`); - return enumNumber; - } - assert_1.assert(false, `Unable to parse field ${this.info.typeName}#${fieldName}, cannot parse enum value from ${typeof json}".`); + sfixed32() { + return this.view.getInt32((this.pos += 4) - 4, true); } - scalar(json, type, longType, fieldName) { - let e; - try { - switch (type) { - // float, double: JSON value will be a number or one of the special string values "NaN", "Infinity", and "-Infinity". - // Either numbers or strings are accepted. Exponent notation is also accepted. - case reflection_info_1.ScalarType.DOUBLE: - case reflection_info_1.ScalarType.FLOAT: - if (json === null) - return .0; - if (json === "NaN") - return Number.NaN; - if (json === "Infinity") - return Number.POSITIVE_INFINITY; - if (json === "-Infinity") - return Number.NEGATIVE_INFINITY; - if (json === "") { - e = "empty string"; - break; - } - if (typeof json == "string" && json.trim().length !== json.length) { - e = "extra whitespace"; - break; - } - if (typeof json != "string" && typeof json != "number") { - break; - } - let float = Number(json); - if (Number.isNaN(float)) { - e = "not a number"; - break; - } - if (!Number.isFinite(float)) { - // infinity and -infinity are handled by string representation above, so this is an error - e = "too large or small"; - break; - } - if (type == reflection_info_1.ScalarType.FLOAT) - assert_1.assertFloat32(float); - return float; - // int32, fixed32, uint32: JSON value will be a decimal number. Either numbers or strings are accepted. - case reflection_info_1.ScalarType.INT32: - case reflection_info_1.ScalarType.FIXED32: - case reflection_info_1.ScalarType.SFIXED32: - case reflection_info_1.ScalarType.SINT32: - case reflection_info_1.ScalarType.UINT32: - if (json === null) - return 0; - let int32; - if (typeof json == "number") - int32 = json; - else if (json === "") - e = "empty string"; - else if (typeof json == "string") { - if (json.trim().length !== json.length) - e = "extra whitespace"; - else - int32 = Number(json); - } - if (int32 === undefined) - break; - if (type == reflection_info_1.ScalarType.UINT32) - assert_1.assertUInt32(int32); - else - assert_1.assertInt32(int32); - return int32; - // int64, fixed64, uint64: JSON value will be a decimal string. Either numbers or strings are accepted. - case reflection_info_1.ScalarType.INT64: - case reflection_info_1.ScalarType.SFIXED64: - case reflection_info_1.ScalarType.SINT64: - if (json === null) - return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.ZERO, longType); - if (typeof json != "number" && typeof json != "string") - break; - return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.from(json), longType); - case reflection_info_1.ScalarType.FIXED64: - case reflection_info_1.ScalarType.UINT64: - if (json === null) - return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.ZERO, longType); - if (typeof json != "number" && typeof json != "string") - break; - return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.from(json), longType); - // bool: - case reflection_info_1.ScalarType.BOOL: - if (json === null) - return false; - if (typeof json !== "boolean") - break; - return json; - // string: - case reflection_info_1.ScalarType.STRING: - if (json === null) - return ""; - if (typeof json !== "string") { - e = "extra whitespace"; - break; - } - try { - encodeURIComponent(json); - } - catch (e) { - e = "invalid UTF8"; - break; - } - return json; - // bytes: JSON value will be the data encoded as a string using standard base64 encoding with paddings. - // Either standard or URL-safe base64 encoding with/without paddings are accepted. - case reflection_info_1.ScalarType.BYTES: - if (json === null || json === "") - return new Uint8Array(0); - if (typeof json !== 'string') - break; - return base64_1.base64decode(json); - } - } - catch (error) { - e = error.message; - } - this.assert(false, fieldName + (e ? " - " + e : ""), json); + /** + * Read a `fixed64` field, an unsigned, fixed-length 64 bit integer. + */ + fixed64() { + return new pb_long_1.PbULong(this.sfixed32(), this.sfixed32()); + } + /** + * Read a `fixed64` field, a signed, fixed-length 64-bit integer. + */ + sfixed64() { + return new pb_long_1.PbLong(this.sfixed32(), this.sfixed32()); + } + /** + * Read a `float` field, 32-bit floating point number. + */ + float() { + return this.view.getFloat32((this.pos += 4) - 4, true); + } + /** + * Read a `double` field, a 64-bit floating point number. + */ + double() { + return this.view.getFloat64((this.pos += 8) - 8, true); + } + /** + * Read a `bytes` field, length-delimited arbitrary data. + */ + bytes() { + let len = this.uint32(); + let start = this.pos; + this.pos += len; + this.assertBounds(); + return this.buf.subarray(start, start + len); + } + /** + * Read a `string` field, length-delimited data converted to UTF-8 text. + */ + string() { + return this.textDecoder.decode(this.bytes()); } } -exports.ReflectionJsonReader = ReflectionJsonReader; +exports.BinaryReader = BinaryReader; /***/ }), -/***/ 1094: +/***/ 3957: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ReflectionJsonWriter = void 0; -const base64_1 = __nccwpck_require__(6335); +exports.BinaryWriter = exports.binaryWriteOptions = void 0; const pb_long_1 = __nccwpck_require__(1753); -const reflection_info_1 = __nccwpck_require__(7910); +const goog_varint_1 = __nccwpck_require__(3223); const assert_1 = __nccwpck_require__(8602); +const defaultsWrite = { + writeUnknownFields: true, + writerFactory: () => new BinaryWriter(), +}; /** - * Writes proto3 messages in canonical JSON format using reflection - * information. - * - * https://developers.google.com/protocol-buffers/docs/proto3#json + * Make options for writing binary data form partial options. */ -class ReflectionJsonWriter { - constructor(info) { - var _a; - this.fields = (_a = info.fields) !== null && _a !== void 0 ? _a : []; +function binaryWriteOptions(options) { + return options ? Object.assign(Object.assign({}, defaultsWrite), options) : defaultsWrite; +} +exports.binaryWriteOptions = binaryWriteOptions; +class BinaryWriter { + constructor(textEncoder) { + /** + * Previous fork states. + */ + this.stack = []; + this.textEncoder = textEncoder !== null && textEncoder !== void 0 ? textEncoder : new TextEncoder(); + this.chunks = []; + this.buf = []; } /** - * Converts the message to a JSON object, based on the field descriptors. + * Return all bytes written and reset this writer. */ - write(message, options) { - const json = {}, source = message; - for (const field of this.fields) { - // field is not part of a oneof, simply write as is - if (!field.oneof) { - let jsonValue = this.field(field, source[field.localName], options); - if (jsonValue !== undefined) - json[options.useProtoFieldName ? field.name : field.jsonName] = jsonValue; - continue; - } - // field is part of a oneof - const group = source[field.oneof]; - if (group.oneofKind !== field.localName) - continue; // not selected, skip - const opt = field.kind == 'scalar' || field.kind == 'enum' - ? Object.assign(Object.assign({}, options), { emitDefaultValues: true }) : options; - let jsonValue = this.field(field, group[field.localName], opt); - assert_1.assert(jsonValue !== undefined); - json[options.useProtoFieldName ? field.name : field.jsonName] = jsonValue; + finish() { + this.chunks.push(new Uint8Array(this.buf)); // flush the buffer + let len = 0; + for (let i = 0; i < this.chunks.length; i++) + len += this.chunks[i].length; + let bytes = new Uint8Array(len); + let offset = 0; + for (let i = 0; i < this.chunks.length; i++) { + bytes.set(this.chunks[i], offset); + offset += this.chunks[i].length; } - return json; + this.chunks = []; + return bytes; } - field(field, value, options) { - let jsonValue = undefined; - if (field.kind == 'map') { - assert_1.assert(typeof value == "object" && value !== null); - const jsonObj = {}; - switch (field.V.kind) { - case "scalar": - for (const [entryKey, entryValue] of Object.entries(value)) { - const val = this.scalar(field.V.T, entryValue, field.name, false, true); - assert_1.assert(val !== undefined); - jsonObj[entryKey.toString()] = val; // JSON standard allows only (double quoted) string as property key - } - break; - case "message": - const messageType = field.V.T(); - for (const [entryKey, entryValue] of Object.entries(value)) { - const val = this.message(messageType, entryValue, field.name, options); - assert_1.assert(val !== undefined); - jsonObj[entryKey.toString()] = val; // JSON standard allows only (double quoted) string as property key - } - break; - case "enum": - const enumInfo = field.V.T(); - for (const [entryKey, entryValue] of Object.entries(value)) { - assert_1.assert(entryValue === undefined || typeof entryValue == 'number'); - const val = this.enum(enumInfo, entryValue, field.name, false, true, options.enumAsInteger); - assert_1.assert(val !== undefined); - jsonObj[entryKey.toString()] = val; // JSON standard allows only (double quoted) string as property key - } - break; - } - if (options.emitDefaultValues || Object.keys(jsonObj).length > 0) - jsonValue = jsonObj; - } - else if (field.repeat) { - assert_1.assert(Array.isArray(value)); - const jsonArr = []; - switch (field.kind) { - case "scalar": - for (let i = 0; i < value.length; i++) { - const val = this.scalar(field.T, value[i], field.name, field.opt, true); - assert_1.assert(val !== undefined); - jsonArr.push(val); - } - break; - case "enum": - const enumInfo = field.T(); - for (let i = 0; i < value.length; i++) { - assert_1.assert(value[i] === undefined || typeof value[i] == 'number'); - const val = this.enum(enumInfo, value[i], field.name, field.opt, true, options.enumAsInteger); - assert_1.assert(val !== undefined); - jsonArr.push(val); - } - break; - case "message": - const messageType = field.T(); - for (let i = 0; i < value.length; i++) { - const val = this.message(messageType, value[i], field.name, options); - assert_1.assert(val !== undefined); - jsonArr.push(val); - } - break; - } - // add converted array to json output - if (options.emitDefaultValues || jsonArr.length > 0 || options.emitDefaultValues) - jsonValue = jsonArr; - } - else { - switch (field.kind) { - case "scalar": - jsonValue = this.scalar(field.T, value, field.name, field.opt, options.emitDefaultValues); - break; - case "enum": - jsonValue = this.enum(field.T(), value, field.name, field.opt, options.emitDefaultValues, options.enumAsInteger); - break; - case "message": - jsonValue = this.message(field.T(), value, field.name, options); - break; - } + /** + * Start a new fork for length-delimited data like a message + * or a packed repeated field. + * + * Must be joined later with `join()`. + */ + fork() { + this.stack.push({ chunks: this.chunks, buf: this.buf }); + this.chunks = []; + this.buf = []; + return this; + } + /** + * Join the last fork. Write its length and bytes, then + * return to the previous state. + */ + join() { + // get chunk of fork + let chunk = this.finish(); + // restore previous state + let prev = this.stack.pop(); + if (!prev) + throw new Error('invalid state, fork stack empty'); + this.chunks = prev.chunks; + this.buf = prev.buf; + // write length of chunk as varint + this.uint32(chunk.byteLength); + return this.raw(chunk); + } + /** + * Writes a tag (field number and wire type). + * + * Equivalent to `uint32( (fieldNo << 3 | type) >>> 0 )`. + * + * Generated code should compute the tag ahead of time and call `uint32()`. + */ + tag(fieldNo, type) { + return this.uint32((fieldNo << 3 | type) >>> 0); + } + /** + * Write a chunk of raw bytes. + */ + raw(chunk) { + if (this.buf.length) { + this.chunks.push(new Uint8Array(this.buf)); + this.buf = []; } - return jsonValue; + this.chunks.push(chunk); + return this; } /** - * Returns `null` as the default for google.protobuf.NullValue. + * Write a `uint32` value, an unsigned 32 bit varint. */ - enum(type, value, fieldName, optional, emitDefaultValues, enumAsInteger) { - if (type[0] == 'google.protobuf.NullValue') - return !emitDefaultValues && !optional ? undefined : null; - if (value === undefined) { - assert_1.assert(optional); - return undefined; + uint32(value) { + assert_1.assertUInt32(value); + // write value as varint 32, inlined for speed + while (value > 0x7f) { + this.buf.push((value & 0x7f) | 0x80); + value = value >>> 7; } - if (value === 0 && !emitDefaultValues && !optional) - // we require 0 to be default value for all enums - return undefined; - assert_1.assert(typeof value == 'number'); - assert_1.assert(Number.isInteger(value)); - if (enumAsInteger || !type[1].hasOwnProperty(value)) - // if we don't now the enum value, just return the number - return value; - if (type[2]) - // restore the dropped prefix - return type[2] + type[1][value]; - return type[1][value]; + this.buf.push(value); + return this; + } + /** + * Write a `int32` value, a signed 32 bit varint. + */ + int32(value) { + assert_1.assertInt32(value); + goog_varint_1.varint32write(value, this.buf); + return this; + } + /** + * Write a `bool` value, a variant. + */ + bool(value) { + this.buf.push(value ? 1 : 0); + return this; + } + /** + * Write a `bytes` value, length-delimited arbitrary data. + */ + bytes(value) { + this.uint32(value.byteLength); // write length of chunk as varint + return this.raw(value); + } + /** + * Write a `string` value, length-delimited data converted to UTF-8 text. + */ + string(value) { + let chunk = this.textEncoder.encode(value); + this.uint32(chunk.byteLength); // write length of chunk as varint + return this.raw(chunk); + } + /** + * Write a `float` value, 32-bit floating point number. + */ + float(value) { + assert_1.assertFloat32(value); + let chunk = new Uint8Array(4); + new DataView(chunk.buffer).setFloat32(0, value, true); + return this.raw(chunk); + } + /** + * Write a `double` value, a 64-bit floating point number. + */ + double(value) { + let chunk = new Uint8Array(8); + new DataView(chunk.buffer).setFloat64(0, value, true); + return this.raw(chunk); + } + /** + * Write a `fixed32` value, an unsigned, fixed-length 32-bit integer. + */ + fixed32(value) { + assert_1.assertUInt32(value); + let chunk = new Uint8Array(4); + new DataView(chunk.buffer).setUint32(0, value, true); + return this.raw(chunk); + } + /** + * Write a `sfixed32` value, a signed, fixed-length 32-bit integer. + */ + sfixed32(value) { + assert_1.assertInt32(value); + let chunk = new Uint8Array(4); + new DataView(chunk.buffer).setInt32(0, value, true); + return this.raw(chunk); + } + /** + * Write a `sint32` value, a signed, zigzag-encoded 32-bit varint. + */ + sint32(value) { + assert_1.assertInt32(value); + // zigzag encode + value = ((value << 1) ^ (value >> 31)) >>> 0; + goog_varint_1.varint32write(value, this.buf); + return this; + } + /** + * Write a `fixed64` value, a signed, fixed-length 64-bit integer. + */ + sfixed64(value) { + let chunk = new Uint8Array(8); + let view = new DataView(chunk.buffer); + let long = pb_long_1.PbLong.from(value); + view.setInt32(0, long.lo, true); + view.setInt32(4, long.hi, true); + return this.raw(chunk); + } + /** + * Write a `fixed64` value, an unsigned, fixed-length 64 bit integer. + */ + fixed64(value) { + let chunk = new Uint8Array(8); + let view = new DataView(chunk.buffer); + let long = pb_long_1.PbULong.from(value); + view.setInt32(0, long.lo, true); + view.setInt32(4, long.hi, true); + return this.raw(chunk); } - message(type, value, fieldName, options) { - if (value === undefined) - return options.emitDefaultValues ? null : undefined; - return type.internalJsonWrite(value, options); + /** + * Write a `int64` value, a signed 64-bit varint. + */ + int64(value) { + let long = pb_long_1.PbLong.from(value); + goog_varint_1.varint64write(long.lo, long.hi, this.buf); + return this; } - scalar(type, value, fieldName, optional, emitDefaultValues) { - if (value === undefined) { - assert_1.assert(optional); - return undefined; - } - const ed = emitDefaultValues || optional; - // noinspection FallThroughInSwitchStatementJS - switch (type) { - // int32, fixed32, uint32: JSON value will be a decimal number. Either numbers or strings are accepted. - case reflection_info_1.ScalarType.INT32: - case reflection_info_1.ScalarType.SFIXED32: - case reflection_info_1.ScalarType.SINT32: - if (value === 0) - return ed ? 0 : undefined; - assert_1.assertInt32(value); - return value; - case reflection_info_1.ScalarType.FIXED32: - case reflection_info_1.ScalarType.UINT32: - if (value === 0) - return ed ? 0 : undefined; - assert_1.assertUInt32(value); - return value; - // float, double: JSON value will be a number or one of the special string values "NaN", "Infinity", and "-Infinity". - // Either numbers or strings are accepted. Exponent notation is also accepted. - case reflection_info_1.ScalarType.FLOAT: - assert_1.assertFloat32(value); - case reflection_info_1.ScalarType.DOUBLE: - if (value === 0) - return ed ? 0 : undefined; - assert_1.assert(typeof value == 'number'); - if (Number.isNaN(value)) - return 'NaN'; - if (value === Number.POSITIVE_INFINITY) - return 'Infinity'; - if (value === Number.NEGATIVE_INFINITY) - return '-Infinity'; - return value; - // string: - case reflection_info_1.ScalarType.STRING: - if (value === "") - return ed ? '' : undefined; - assert_1.assert(typeof value == 'string'); - return value; - // bool: - case reflection_info_1.ScalarType.BOOL: - if (value === false) - return ed ? false : undefined; - assert_1.assert(typeof value == 'boolean'); - return value; - // JSON value will be a decimal string. Either numbers or strings are accepted. - case reflection_info_1.ScalarType.UINT64: - case reflection_info_1.ScalarType.FIXED64: - assert_1.assert(typeof value == 'number' || typeof value == 'string' || typeof value == 'bigint'); - let ulong = pb_long_1.PbULong.from(value); - if (ulong.isZero() && !ed) - return undefined; - return ulong.toString(); - // JSON value will be a decimal string. Either numbers or strings are accepted. - case reflection_info_1.ScalarType.INT64: - case reflection_info_1.ScalarType.SFIXED64: - case reflection_info_1.ScalarType.SINT64: - assert_1.assert(typeof value == 'number' || typeof value == 'string' || typeof value == 'bigint'); - let long = pb_long_1.PbLong.from(value); - if (long.isZero() && !ed) - return undefined; - return long.toString(); - // bytes: JSON value will be the data encoded as a string using standard base64 encoding with paddings. - // Either standard or URL-safe base64 encoding with/without paddings are accepted. - case reflection_info_1.ScalarType.BYTES: - assert_1.assert(value instanceof Uint8Array); - if (!value.byteLength) - return ed ? "" : undefined; - return base64_1.base64encode(value); - } + /** + * Write a `sint64` value, a signed, zig-zag-encoded 64-bit varint. + */ + sint64(value) { + let long = pb_long_1.PbLong.from(value), + // zigzag encode + sign = long.hi >> 31, lo = (long.lo << 1) ^ sign, hi = ((long.hi << 1) | (long.lo >>> 31)) ^ sign; + goog_varint_1.varint64write(lo, hi, this.buf); + return this; + } + /** + * Write a `uint64` value, an unsigned 64-bit varint. + */ + uint64(value) { + let long = pb_long_1.PbULong.from(value); + goog_varint_1.varint64write(long.lo, long.hi, this.buf); + return this; } } -exports.ReflectionJsonWriter = ReflectionJsonWriter; +exports.BinaryWriter = BinaryWriter; /***/ }), -/***/ 3402: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { +/***/ 257: +/***/ ((__unused_webpack_module, exports) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.reflectionLongConvert = void 0; -const reflection_info_1 = __nccwpck_require__(7910); +exports.listEnumNumbers = exports.listEnumNames = exports.listEnumValues = exports.isEnumObject = void 0; /** - * Utility method to convert a PbLong or PbUlong to a JavaScript - * representation during runtime. + * Is this a lookup object generated by Typescript, for a Typescript enum + * generated by protobuf-ts? * - * Works with generated field information, `undefined` is equivalent - * to `STRING`. + * - No `const enum` (enum must not be inlined, we need reverse mapping). + * - No string enum (we need int32 for protobuf). + * - Must have a value for 0 (otherwise, we would need to support custom default values). */ -function reflectionLongConvert(long, type) { - switch (type) { - case reflection_info_1.LongType.BIGINT: - return long.toBigInt(); - case reflection_info_1.LongType.NUMBER: - return long.toNumber(); - default: - // case undefined: - // case LongType.STRING: - return long.toString(); +function isEnumObject(arg) { + if (typeof arg != 'object' || arg === null) { + return false; + } + if (!arg.hasOwnProperty(0)) { + return false; + } + for (let k of Object.keys(arg)) { + let num = parseInt(k); + if (!Number.isNaN(num)) { + // is there a name for the number? + let nam = arg[num]; + if (nam === undefined) + return false; + // does the name resolve back to the number? + if (arg[nam] !== num) + return false; + } + else { + // is there a number for the name? + let num = arg[k]; + if (num === undefined) + return false; + // is it a string enum? + if (typeof num !== 'number') + return false; + // do we know the number? + if (arg[num] === undefined) + return false; + } } + return true; } -exports.reflectionLongConvert = reflectionLongConvert; +exports.isEnumObject = isEnumObject; +/** + * Lists all values of a Typescript enum, as an array of objects with a "name" + * property and a "number" property. + * + * Note that it is possible that a number appears more than once, because it is + * possible to have aliases in an enum. + * + * Throws if the enum does not adhere to the rules of enums generated by + * protobuf-ts. See `isEnumObject()`. + */ +function listEnumValues(enumObject) { + if (!isEnumObject(enumObject)) + throw new Error("not a typescript enum object"); + let values = []; + for (let [name, number] of Object.entries(enumObject)) + if (typeof number == "number") + values.push({ name, number }); + return values; +} +exports.listEnumValues = listEnumValues; +/** + * Lists the names of a Typescript enum. + * + * Throws if the enum does not adhere to the rules of enums generated by + * protobuf-ts. See `isEnumObject()`. + */ +function listEnumNames(enumObject) { + return listEnumValues(enumObject).map(val => val.name); +} +exports.listEnumNames = listEnumNames; +/** + * Lists the numbers of a Typescript enum. + * + * Throws if the enum does not adhere to the rules of enums generated by + * protobuf-ts. See `isEnumObject()`. + */ +function listEnumNumbers(enumObject) { + return listEnumValues(enumObject) + .map(val => val.number) + .filter((num, index, arr) => arr.indexOf(num) == index); +} +exports.listEnumNumbers = listEnumNumbers; /***/ }), -/***/ 8044: +/***/ 3223: /***/ ((__unused_webpack_module, exports) => { +// Copyright 2008 Google Inc. All rights reserved. +// +// Redistribution and use in source and binary forms, with or without +// modification, are permitted provided that the following conditions are +// met: +// +// * Redistributions of source code must retain the above copyright +// notice, this list of conditions and the following disclaimer. +// * Redistributions in binary form must reproduce the above +// copyright notice, this list of conditions and the following disclaimer +// in the documentation and/or other materials provided with the +// distribution. +// * Neither the name of Google Inc. nor the names of its +// contributors may be used to endorse or promote products derived from +// this software without specific prior written permission. +// +// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS +// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT +// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR +// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT +// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, +// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT +// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, +// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY +// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT +// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE +// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. +// +// Code generated by the Protocol Buffer compiler is owned by the owner +// of the input file used when generating it. This code is not +// standalone and requires a support library to be linked with it. This +// support library is itself covered by the above license. Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.reflectionMergePartial = void 0; +exports.varint32read = exports.varint32write = exports.int64toString = exports.int64fromString = exports.varint64write = exports.varint64read = void 0; /** - * Copy partial data into the target message. + * Read a 64 bit varint as two JS numbers. * - * If a singular scalar or enum field is present in the source, it - * replaces the field in the target. + * Returns tuple: + * [0]: low bits + * [0]: high bits * - * If a singular message field is present in the source, it is merged - * with the target field by calling mergePartial() of the responsible - * message type. + * Copyright 2008 Google Inc. All rights reserved. * - * If a repeated field is present in the source, its values replace - * all values in the target array, removing extraneous values. - * Repeated message fields are copied, not merged. + * See https://github.com/protocolbuffers/protobuf/blob/8a71927d74a4ce34efe2d8769fda198f52d20d12/js/experimental/runtime/kernel/buffer_decoder.js#L175 + */ +function varint64read() { + let lowBits = 0; + let highBits = 0; + for (let shift = 0; shift < 28; shift += 7) { + let b = this.buf[this.pos++]; + lowBits |= (b & 0x7F) << shift; + if ((b & 0x80) == 0) { + this.assertBounds(); + return [lowBits, highBits]; + } + } + let middleByte = this.buf[this.pos++]; + // last four bits of the first 32 bit number + lowBits |= (middleByte & 0x0F) << 28; + // 3 upper bits are part of the next 32 bit number + highBits = (middleByte & 0x70) >> 4; + if ((middleByte & 0x80) == 0) { + this.assertBounds(); + return [lowBits, highBits]; + } + for (let shift = 3; shift <= 31; shift += 7) { + let b = this.buf[this.pos++]; + highBits |= (b & 0x7F) << shift; + if ((b & 0x80) == 0) { + this.assertBounds(); + return [lowBits, highBits]; + } + } + throw new Error('invalid varint'); +} +exports.varint64read = varint64read; +/** + * Write a 64 bit varint, given as two JS numbers, to the given bytes array. * - * If a map field is present in the source, entries are added to the - * target map, replacing entries with the same key. Entries that only - * exist in the target remain. Entries with message values are copied, - * not merged. + * Copyright 2008 Google Inc. All rights reserved. * - * Note that this function differs from protobuf merge semantics, - * which appends repeated fields. + * See https://github.com/protocolbuffers/protobuf/blob/8a71927d74a4ce34efe2d8769fda198f52d20d12/js/experimental/runtime/kernel/writer.js#L344 */ -function reflectionMergePartial(info, target, source) { - let fieldValue, // the field value we are working with - input = source, output; // where we want our field value to go - for (let field of info.fields) { - let name = field.localName; - if (field.oneof) { - const group = input[field.oneof]; // this is the oneof`s group in the source - if ((group === null || group === void 0 ? void 0 : group.oneofKind) == undefined) { // the user is free to omit - continue; // we skip this field, and all other members too - } - fieldValue = group[name]; // our value comes from the the oneof group of the source - output = target[field.oneof]; // and our output is the oneof group of the target - output.oneofKind = group.oneofKind; // always update discriminator - if (fieldValue == undefined) { - delete output[name]; // remove any existing value - continue; // skip further work on field - } +function varint64write(lo, hi, bytes) { + for (let i = 0; i < 28; i = i + 7) { + const shift = lo >>> i; + const hasNext = !((shift >>> 7) == 0 && hi == 0); + const byte = (hasNext ? shift | 0x80 : shift) & 0xFF; + bytes.push(byte); + if (!hasNext) { + return; } - else { - fieldValue = input[name]; // we are using the source directly - output = target; // we want our field value to go directly into the target - if (fieldValue == undefined) { - continue; // skip further work on field, existing value is used as is - } + } + const splitBits = ((lo >>> 28) & 0x0F) | ((hi & 0x07) << 4); + const hasMoreBits = !((hi >> 3) == 0); + bytes.push((hasMoreBits ? splitBits | 0x80 : splitBits) & 0xFF); + if (!hasMoreBits) { + return; + } + for (let i = 3; i < 31; i = i + 7) { + const shift = hi >>> i; + const hasNext = !((shift >>> 7) == 0); + const byte = (hasNext ? shift | 0x80 : shift) & 0xFF; + bytes.push(byte); + if (!hasNext) { + return; } - if (field.repeat) - output[name].length = fieldValue.length; // resize target array to match source array - // now we just work with `fieldValue` and `output` to merge the value - switch (field.kind) { - case "scalar": - case "enum": - if (field.repeat) - for (let i = 0; i < fieldValue.length; i++) - output[name][i] = fieldValue[i]; // not a reference type - else - output[name] = fieldValue; // not a reference type - break; - case "message": - let T = field.T(); - if (field.repeat) - for (let i = 0; i < fieldValue.length; i++) - output[name][i] = T.create(fieldValue[i]); - else if (output[name] === undefined) - output[name] = T.create(fieldValue); // nothing to merge with - else - T.mergePartial(output[name], fieldValue); - break; - case "map": - // Map and repeated fields are simply overwritten, not appended or merged - switch (field.V.kind) { - case "scalar": - case "enum": - Object.assign(output[name], fieldValue); // elements are not reference types - break; - case "message": - let T = field.V.T(); - for (let k of Object.keys(fieldValue)) - output[name][k] = T.create(fieldValue[k]); - break; - } - break; + } + bytes.push((hi >>> 31) & 0x01); +} +exports.varint64write = varint64write; +// constants for binary math +const TWO_PWR_32_DBL = (1 << 16) * (1 << 16); +/** + * Parse decimal string of 64 bit integer value as two JS numbers. + * + * Returns tuple: + * [0]: minus sign? + * [1]: low bits + * [2]: high bits + * + * Copyright 2008 Google Inc. + */ +function int64fromString(dec) { + // Check for minus sign. + let minus = dec[0] == '-'; + if (minus) + dec = dec.slice(1); + // Work 6 decimal digits at a time, acting like we're converting base 1e6 + // digits to binary. This is safe to do with floating point math because + // Number.isSafeInteger(ALL_32_BITS * 1e6) == true. + const base = 1e6; + let lowBits = 0; + let highBits = 0; + function add1e6digit(begin, end) { + // Note: Number('') is 0. + const digit1e6 = Number(dec.slice(begin, end)); + highBits *= base; + lowBits = lowBits * base + digit1e6; + // Carry bits from lowBits to highBits + if (lowBits >= TWO_PWR_32_DBL) { + highBits = highBits + ((lowBits / TWO_PWR_32_DBL) | 0); + lowBits = lowBits % TWO_PWR_32_DBL; + } + } + add1e6digit(-24, -18); + add1e6digit(-18, -12); + add1e6digit(-12, -6); + add1e6digit(-6); + return [minus, lowBits, highBits]; +} +exports.int64fromString = int64fromString; +/** + * Format 64 bit integer value (as two JS numbers) to decimal string. + * + * Copyright 2008 Google Inc. + */ +function int64toString(bitsLow, bitsHigh) { + // Skip the expensive conversion if the number is small enough to use the + // built-in conversions. + if ((bitsHigh >>> 0) <= 0x1FFFFF) { + return '' + (TWO_PWR_32_DBL * bitsHigh + (bitsLow >>> 0)); + } + // What this code is doing is essentially converting the input number from + // base-2 to base-1e7, which allows us to represent the 64-bit range with + // only 3 (very large) digits. Those digits are then trivial to convert to + // a base-10 string. + // The magic numbers used here are - + // 2^24 = 16777216 = (1,6777216) in base-1e7. + // 2^48 = 281474976710656 = (2,8147497,6710656) in base-1e7. + // Split 32:32 representation into 16:24:24 representation so our + // intermediate digits don't overflow. + let low = bitsLow & 0xFFFFFF; + let mid = (((bitsLow >>> 24) | (bitsHigh << 8)) >>> 0) & 0xFFFFFF; + let high = (bitsHigh >> 16) & 0xFFFF; + // Assemble our three base-1e7 digits, ignoring carries. The maximum + // value in a digit at this step is representable as a 48-bit integer, which + // can be stored in a 64-bit floating point number. + let digitA = low + (mid * 6777216) + (high * 6710656); + let digitB = mid + (high * 8147497); + let digitC = (high * 2); + // Apply carries from A to B and from B to C. + let base = 10000000; + if (digitA >= base) { + digitB += Math.floor(digitA / base); + digitA %= base; + } + if (digitB >= base) { + digitC += Math.floor(digitB / base); + digitB %= base; + } + // Convert base-1e7 digits to base-10, with optional leading zeroes. + function decimalFrom1e7(digit1e7, needLeadingZeros) { + let partial = digit1e7 ? String(digit1e7) : ''; + if (needLeadingZeros) { + return '0000000'.slice(partial.length) + partial; + } + return partial; + } + return decimalFrom1e7(digitC, /*needLeadingZeros=*/ 0) + + decimalFrom1e7(digitB, /*needLeadingZeros=*/ digitC) + + // If the final 1e7 digit didn't need leading zeros, we would have + // returned via the trivial code path at the top. + decimalFrom1e7(digitA, /*needLeadingZeros=*/ 1); +} +exports.int64toString = int64toString; +/** + * Write a 32 bit varint, signed or unsigned. Same as `varint64write(0, value, bytes)` + * + * Copyright 2008 Google Inc. All rights reserved. + * + * See https://github.com/protocolbuffers/protobuf/blob/1b18833f4f2a2f681f4e4a25cdf3b0a43115ec26/js/binary/encoder.js#L144 + */ +function varint32write(value, bytes) { + if (value >= 0) { + // write value as varint 32 + while (value > 0x7f) { + bytes.push((value & 0x7f) | 0x80); + value = value >>> 7; + } + bytes.push(value); + } + else { + for (let i = 0; i < 9; i++) { + bytes.push(value & 127 | 128); + value = value >> 7; } + bytes.push(1); + } +} +exports.varint32write = varint32write; +/** + * Read an unsigned 32 bit varint. + * + * See https://github.com/protocolbuffers/protobuf/blob/8a71927d74a4ce34efe2d8769fda198f52d20d12/js/experimental/runtime/kernel/buffer_decoder.js#L220 + */ +function varint32read() { + let b = this.buf[this.pos++]; + let result = b & 0x7F; + if ((b & 0x80) == 0) { + this.assertBounds(); + return result; + } + b = this.buf[this.pos++]; + result |= (b & 0x7F) << 7; + if ((b & 0x80) == 0) { + this.assertBounds(); + return result; + } + b = this.buf[this.pos++]; + result |= (b & 0x7F) << 14; + if ((b & 0x80) == 0) { + this.assertBounds(); + return result; + } + b = this.buf[this.pos++]; + result |= (b & 0x7F) << 21; + if ((b & 0x80) == 0) { + this.assertBounds(); + return result; } + // Extract only last 4 bits + b = this.buf[this.pos++]; + result |= (b & 0x0F) << 28; + for (let readBytes = 5; ((b & 0x80) !== 0) && readBytes < 10; readBytes++) + b = this.buf[this.pos++]; + if ((b & 0x80) != 0) + throw new Error('invalid varint'); + this.assertBounds(); + // Result can have 32 bits, convert it to unsigned + return result >>> 0; } -exports.reflectionMergePartial = reflectionMergePartial; +exports.varint32read = varint32read; /***/ }), -/***/ 9526: +/***/ 8886: /***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { +// Public API of the protobuf-ts runtime. +// Note: we do not use `export * from ...` to help tree shakers, +// webpack verbose output hints that this should be useful Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.reflectionScalarDefault = void 0; -const reflection_info_1 = __nccwpck_require__(7910); -const reflection_long_convert_1 = __nccwpck_require__(3402); -const pb_long_1 = __nccwpck_require__(1753); -/** - * Creates the default value for a scalar type. - */ -function reflectionScalarDefault(type, longType = reflection_info_1.LongType.STRING) { - switch (type) { - case reflection_info_1.ScalarType.BOOL: - return false; - case reflection_info_1.ScalarType.UINT64: - case reflection_info_1.ScalarType.FIXED64: - return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.ZERO, longType); - case reflection_info_1.ScalarType.INT64: - case reflection_info_1.ScalarType.SFIXED64: - case reflection_info_1.ScalarType.SINT64: - return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.ZERO, longType); - case reflection_info_1.ScalarType.DOUBLE: - case reflection_info_1.ScalarType.FLOAT: - return 0.0; - case reflection_info_1.ScalarType.BYTES: - return new Uint8Array(0); - case reflection_info_1.ScalarType.STRING: - return ""; - default: - // case ScalarType.INT32: - // case ScalarType.UINT32: - // case ScalarType.SINT32: - // case ScalarType.FIXED32: - // case ScalarType.SFIXED32: - return 0; - } -} -exports.reflectionScalarDefault = reflectionScalarDefault; +// Convenience JSON typings and corresponding type guards +var json_typings_1 = __nccwpck_require__(9999); +Object.defineProperty(exports, "typeofJsonValue", ({ enumerable: true, get: function () { return json_typings_1.typeofJsonValue; } })); +Object.defineProperty(exports, "isJsonObject", ({ enumerable: true, get: function () { return json_typings_1.isJsonObject; } })); +// Base 64 encoding +var base64_1 = __nccwpck_require__(6335); +Object.defineProperty(exports, "base64decode", ({ enumerable: true, get: function () { return base64_1.base64decode; } })); +Object.defineProperty(exports, "base64encode", ({ enumerable: true, get: function () { return base64_1.base64encode; } })); +// UTF8 encoding +var protobufjs_utf8_1 = __nccwpck_require__(8950); +Object.defineProperty(exports, "utf8read", ({ enumerable: true, get: function () { return protobufjs_utf8_1.utf8read; } })); +// Binary format contracts, options for reading and writing, for example +var binary_format_contract_1 = __nccwpck_require__(4816); +Object.defineProperty(exports, "WireType", ({ enumerable: true, get: function () { return binary_format_contract_1.WireType; } })); +Object.defineProperty(exports, "mergeBinaryOptions", ({ enumerable: true, get: function () { return binary_format_contract_1.mergeBinaryOptions; } })); +Object.defineProperty(exports, "UnknownFieldHandler", ({ enumerable: true, get: function () { return binary_format_contract_1.UnknownFieldHandler; } })); +// Standard IBinaryReader implementation +var binary_reader_1 = __nccwpck_require__(2889); +Object.defineProperty(exports, "BinaryReader", ({ enumerable: true, get: function () { return binary_reader_1.BinaryReader; } })); +Object.defineProperty(exports, "binaryReadOptions", ({ enumerable: true, get: function () { return binary_reader_1.binaryReadOptions; } })); +// Standard IBinaryWriter implementation +var binary_writer_1 = __nccwpck_require__(3957); +Object.defineProperty(exports, "BinaryWriter", ({ enumerable: true, get: function () { return binary_writer_1.BinaryWriter; } })); +Object.defineProperty(exports, "binaryWriteOptions", ({ enumerable: true, get: function () { return binary_writer_1.binaryWriteOptions; } })); +// Int64 and UInt64 implementations required for the binary format +var pb_long_1 = __nccwpck_require__(1753); +Object.defineProperty(exports, "PbLong", ({ enumerable: true, get: function () { return pb_long_1.PbLong; } })); +Object.defineProperty(exports, "PbULong", ({ enumerable: true, get: function () { return pb_long_1.PbULong; } })); +// JSON format contracts, options for reading and writing, for example +var json_format_contract_1 = __nccwpck_require__(9367); +Object.defineProperty(exports, "jsonReadOptions", ({ enumerable: true, get: function () { return json_format_contract_1.jsonReadOptions; } })); +Object.defineProperty(exports, "jsonWriteOptions", ({ enumerable: true, get: function () { return json_format_contract_1.jsonWriteOptions; } })); +Object.defineProperty(exports, "mergeJsonOptions", ({ enumerable: true, get: function () { return json_format_contract_1.mergeJsonOptions; } })); +// Message type contract +var message_type_contract_1 = __nccwpck_require__(3785); +Object.defineProperty(exports, "MESSAGE_TYPE", ({ enumerable: true, get: function () { return message_type_contract_1.MESSAGE_TYPE; } })); +// Message type implementation via reflection +var message_type_1 = __nccwpck_require__(5106); +Object.defineProperty(exports, "MessageType", ({ enumerable: true, get: function () { return message_type_1.MessageType; } })); +// Reflection info, generated by the plugin, exposed to the user, used by reflection ops +var reflection_info_1 = __nccwpck_require__(7910); +Object.defineProperty(exports, "ScalarType", ({ enumerable: true, get: function () { return reflection_info_1.ScalarType; } })); +Object.defineProperty(exports, "LongType", ({ enumerable: true, get: function () { return reflection_info_1.LongType; } })); +Object.defineProperty(exports, "RepeatType", ({ enumerable: true, get: function () { return reflection_info_1.RepeatType; } })); +Object.defineProperty(exports, "normalizeFieldInfo", ({ enumerable: true, get: function () { return reflection_info_1.normalizeFieldInfo; } })); +Object.defineProperty(exports, "readFieldOptions", ({ enumerable: true, get: function () { return reflection_info_1.readFieldOptions; } })); +Object.defineProperty(exports, "readFieldOption", ({ enumerable: true, get: function () { return reflection_info_1.readFieldOption; } })); +Object.defineProperty(exports, "readMessageOption", ({ enumerable: true, get: function () { return reflection_info_1.readMessageOption; } })); +// Message operations via reflection +var reflection_type_check_1 = __nccwpck_require__(5167); +Object.defineProperty(exports, "ReflectionTypeCheck", ({ enumerable: true, get: function () { return reflection_type_check_1.ReflectionTypeCheck; } })); +var reflection_create_1 = __nccwpck_require__(5726); +Object.defineProperty(exports, "reflectionCreate", ({ enumerable: true, get: function () { return reflection_create_1.reflectionCreate; } })); +var reflection_scalar_default_1 = __nccwpck_require__(9526); +Object.defineProperty(exports, "reflectionScalarDefault", ({ enumerable: true, get: function () { return reflection_scalar_default_1.reflectionScalarDefault; } })); +var reflection_merge_partial_1 = __nccwpck_require__(8044); +Object.defineProperty(exports, "reflectionMergePartial", ({ enumerable: true, get: function () { return reflection_merge_partial_1.reflectionMergePartial; } })); +var reflection_equals_1 = __nccwpck_require__(4827); +Object.defineProperty(exports, "reflectionEquals", ({ enumerable: true, get: function () { return reflection_equals_1.reflectionEquals; } })); +var reflection_binary_reader_1 = __nccwpck_require__(9611); +Object.defineProperty(exports, "ReflectionBinaryReader", ({ enumerable: true, get: function () { return reflection_binary_reader_1.ReflectionBinaryReader; } })); +var reflection_binary_writer_1 = __nccwpck_require__(6907); +Object.defineProperty(exports, "ReflectionBinaryWriter", ({ enumerable: true, get: function () { return reflection_binary_writer_1.ReflectionBinaryWriter; } })); +var reflection_json_reader_1 = __nccwpck_require__(6790); +Object.defineProperty(exports, "ReflectionJsonReader", ({ enumerable: true, get: function () { return reflection_json_reader_1.ReflectionJsonReader; } })); +var reflection_json_writer_1 = __nccwpck_require__(1094); +Object.defineProperty(exports, "ReflectionJsonWriter", ({ enumerable: true, get: function () { return reflection_json_writer_1.ReflectionJsonWriter; } })); +var reflection_contains_message_type_1 = __nccwpck_require__(9946); +Object.defineProperty(exports, "containsMessageType", ({ enumerable: true, get: function () { return reflection_contains_message_type_1.containsMessageType; } })); +// Oneof helpers +var oneof_1 = __nccwpck_require__(8063); +Object.defineProperty(exports, "isOneofGroup", ({ enumerable: true, get: function () { return oneof_1.isOneofGroup; } })); +Object.defineProperty(exports, "setOneofValue", ({ enumerable: true, get: function () { return oneof_1.setOneofValue; } })); +Object.defineProperty(exports, "getOneofValue", ({ enumerable: true, get: function () { return oneof_1.getOneofValue; } })); +Object.defineProperty(exports, "clearOneofValue", ({ enumerable: true, get: function () { return oneof_1.clearOneofValue; } })); +Object.defineProperty(exports, "getSelectedOneofValue", ({ enumerable: true, get: function () { return oneof_1.getSelectedOneofValue; } })); +// Enum object type guard and reflection util, may be interesting to the user. +var enum_object_1 = __nccwpck_require__(257); +Object.defineProperty(exports, "listEnumValues", ({ enumerable: true, get: function () { return enum_object_1.listEnumValues; } })); +Object.defineProperty(exports, "listEnumNames", ({ enumerable: true, get: function () { return enum_object_1.listEnumNames; } })); +Object.defineProperty(exports, "listEnumNumbers", ({ enumerable: true, get: function () { return enum_object_1.listEnumNumbers; } })); +Object.defineProperty(exports, "isEnumObject", ({ enumerable: true, get: function () { return enum_object_1.isEnumObject; } })); +// lowerCamelCase() is exported for plugin, rpc-runtime and other rpc packages +var lower_camel_case_1 = __nccwpck_require__(4073); +Object.defineProperty(exports, "lowerCamelCase", ({ enumerable: true, get: function () { return lower_camel_case_1.lowerCamelCase; } })); +// assertion functions are exported for plugin, may also be useful to user +var assert_1 = __nccwpck_require__(8602); +Object.defineProperty(exports, "assert", ({ enumerable: true, get: function () { return assert_1.assert; } })); +Object.defineProperty(exports, "assertNever", ({ enumerable: true, get: function () { return assert_1.assertNever; } })); +Object.defineProperty(exports, "assertInt32", ({ enumerable: true, get: function () { return assert_1.assertInt32; } })); +Object.defineProperty(exports, "assertUInt32", ({ enumerable: true, get: function () { return assert_1.assertUInt32; } })); +Object.defineProperty(exports, "assertFloat32", ({ enumerable: true, get: function () { return assert_1.assertFloat32; } })); /***/ }), -/***/ 5167: -/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { +/***/ 9367: +/***/ ((__unused_webpack_module, exports) => { Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.ReflectionTypeCheck = void 0; -const reflection_info_1 = __nccwpck_require__(7910); -const oneof_1 = __nccwpck_require__(8063); -// noinspection JSMethodCanBeStatic -class ReflectionTypeCheck { - constructor(info) { - var _a; - this.fields = (_a = info.fields) !== null && _a !== void 0 ? _a : []; - } - prepare() { - if (this.data) - return; - const req = [], known = [], oneofs = []; - for (let field of this.fields) { - if (field.oneof) { - if (!oneofs.includes(field.oneof)) { - oneofs.push(field.oneof); - req.push(field.oneof); - known.push(field.oneof); - } - } - else { - known.push(field.localName); - switch (field.kind) { - case "scalar": - case "enum": - if (!field.opt || field.repeat) - req.push(field.localName); - break; - case "message": - if (field.repeat) - req.push(field.localName); - break; - case "map": - req.push(field.localName); - break; - } - } - } - this.data = { req, known, oneofs: Object.values(oneofs) }; - } - /** - * Is the argument a valid message as specified by the - * reflection information? - * - * Checks all field types recursively. The `depth` - * specifies how deep into the structure the check will be. - * - * With a depth of 0, only the presence of fields - * is checked. - * - * With a depth of 1 or more, the field types are checked. - * - * With a depth of 2 or more, the members of map, repeated - * and message fields are checked. - * - * Message fields will be checked recursively with depth - 1. - * - * The number of map entries / repeated values being checked - * is < depth. - */ - is(message, depth, allowExcessProperties = false) { - if (depth < 0) - return true; - if (message === null || message === undefined || typeof message != 'object') - return false; - this.prepare(); - let keys = Object.keys(message), data = this.data; - // if a required field is missing in arg, this cannot be a T - if (keys.length < data.req.length || data.req.some(n => !keys.includes(n))) - return false; - if (!allowExcessProperties) { - // if the arg contains a key we dont know, this is not a literal T - if (keys.some(k => !data.known.includes(k))) - return false; - } - // "With a depth of 0, only the presence and absence of fields is checked." - // "With a depth of 1 or more, the field types are checked." - if (depth < 1) { - return true; - } - // check oneof group - for (const name of data.oneofs) { - const group = message[name]; - if (!oneof_1.isOneofGroup(group)) - return false; - if (group.oneofKind === undefined) - continue; - const field = this.fields.find(f => f.localName === group.oneofKind); - if (!field) - return false; // we found no field, but have a kind, something is wrong - if (!this.field(group[group.oneofKind], field, allowExcessProperties, depth)) - return false; - } - // check types - for (const field of this.fields) { - if (field.oneof !== undefined) - continue; - if (!this.field(message[field.localName], field, allowExcessProperties, depth)) - return false; - } - return true; - } - field(arg, field, allowExcessProperties, depth) { - let repeated = field.repeat; - switch (field.kind) { - case "scalar": - if (arg === undefined) - return field.opt; - if (repeated) - return this.scalars(arg, field.T, depth, field.L); - return this.scalar(arg, field.T, field.L); - case "enum": - if (arg === undefined) - return field.opt; - if (repeated) - return this.scalars(arg, reflection_info_1.ScalarType.INT32, depth); - return this.scalar(arg, reflection_info_1.ScalarType.INT32); - case "message": - if (arg === undefined) - return true; - if (repeated) - return this.messages(arg, field.T(), allowExcessProperties, depth); - return this.message(arg, field.T(), allowExcessProperties, depth); - case "map": - if (typeof arg != 'object' || arg === null) - return false; - if (depth < 2) - return true; - if (!this.mapKeys(arg, field.K, depth)) - return false; - switch (field.V.kind) { - case "scalar": - return this.scalars(Object.values(arg), field.V.T, depth, field.V.L); - case "enum": - return this.scalars(Object.values(arg), reflection_info_1.ScalarType.INT32, depth); - case "message": - return this.messages(Object.values(arg), field.V.T(), allowExcessProperties, depth); - } - break; - } - return true; - } - message(arg, type, allowExcessProperties, depth) { - if (allowExcessProperties) { - return type.isAssignable(arg, depth); - } - return type.is(arg, depth); - } - messages(arg, type, allowExcessProperties, depth) { - if (!Array.isArray(arg)) - return false; - if (depth < 2) - return true; - if (allowExcessProperties) { - for (let i = 0; i < arg.length && i < depth; i++) - if (!type.isAssignable(arg[i], depth - 1)) - return false; - } - else { - for (let i = 0; i < arg.length && i < depth; i++) - if (!type.is(arg[i], depth - 1)) - return false; - } - return true; - } - scalar(arg, type, longType) { - let argType = typeof arg; - switch (type) { - case reflection_info_1.ScalarType.UINT64: - case reflection_info_1.ScalarType.FIXED64: - case reflection_info_1.ScalarType.INT64: - case reflection_info_1.ScalarType.SFIXED64: - case reflection_info_1.ScalarType.SINT64: - switch (longType) { - case reflection_info_1.LongType.BIGINT: - return argType == "bigint"; - case reflection_info_1.LongType.NUMBER: - return argType == "number" && !isNaN(arg); - default: - return argType == "string"; - } - case reflection_info_1.ScalarType.BOOL: - return argType == 'boolean'; - case reflection_info_1.ScalarType.STRING: - return argType == 'string'; - case reflection_info_1.ScalarType.BYTES: - return arg instanceof Uint8Array; - case reflection_info_1.ScalarType.DOUBLE: - case reflection_info_1.ScalarType.FLOAT: - return argType == 'number' && !isNaN(arg); - default: - // case ScalarType.UINT32: - // case ScalarType.FIXED32: - // case ScalarType.INT32: - // case ScalarType.SINT32: - // case ScalarType.SFIXED32: - return argType == 'number' && Number.isInteger(arg); - } - } - scalars(arg, type, depth, longType) { - if (!Array.isArray(arg)) - return false; - if (depth < 2) - return true; - if (Array.isArray(arg)) - for (let i = 0; i < arg.length && i < depth; i++) - if (!this.scalar(arg[i], type, longType)) - return false; - return true; - } - mapKeys(map, type, depth) { - let keys = Object.keys(map); - switch (type) { - case reflection_info_1.ScalarType.INT32: - case reflection_info_1.ScalarType.FIXED32: - case reflection_info_1.ScalarType.SFIXED32: - case reflection_info_1.ScalarType.SINT32: - case reflection_info_1.ScalarType.UINT32: - return this.scalars(keys.slice(0, depth).map(k => parseInt(k)), type, depth); - case reflection_info_1.ScalarType.BOOL: - return this.scalars(keys.slice(0, depth).map(k => k == 'true' ? true : k == 'false' ? false : k), type, depth); - default: - return this.scalars(keys, type, depth, reflection_info_1.LongType.STRING); - } - } +exports.mergeJsonOptions = exports.jsonWriteOptions = exports.jsonReadOptions = void 0; +const defaultsWrite = { + emitDefaultValues: false, + enumAsInteger: false, + useProtoFieldName: false, + prettySpaces: 0, +}, defaultsRead = { + ignoreUnknownFields: false, +}; +/** + * Make options for reading JSON data from partial options. + */ +function jsonReadOptions(options) { + return options ? Object.assign(Object.assign({}, defaultsRead), options) : defaultsRead; } -exports.ReflectionTypeCheck = ReflectionTypeCheck; +exports.jsonReadOptions = jsonReadOptions; +/** + * Make options for writing JSON data from partial options. + */ +function jsonWriteOptions(options) { + return options ? Object.assign(Object.assign({}, defaultsWrite), options) : defaultsWrite; +} +exports.jsonWriteOptions = jsonWriteOptions; +/** + * Merges JSON write or read options. Later values override earlier values. Type registries are merged. + */ +function mergeJsonOptions(a, b) { + var _a, _b; + let c = Object.assign(Object.assign({}, a), b); + c.typeRegistry = [...((_a = a === null || a === void 0 ? void 0 : a.typeRegistry) !== null && _a !== void 0 ? _a : []), ...((_b = b === null || b === void 0 ? void 0 : b.typeRegistry) !== null && _b !== void 0 ? _b : [])]; + return c; +} +exports.mergeJsonOptions = mergeJsonOptions; /***/ }), -/***/ 5183: -/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { +/***/ 9999: +/***/ ((__unused_webpack_module, exports) => { -var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { - if (k2 === undefined) k2 = k; - var desc = Object.getOwnPropertyDescriptor(m, k); - if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { - desc = { enumerable: true, get: function() { return m[k]; } }; - } - Object.defineProperty(o, k2, desc); -}) : (function(o, m, k, k2) { - if (k2 === undefined) k2 = k; - o[k2] = m[k]; -})); -var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { - Object.defineProperty(o, "default", { enumerable: true, value: v }); -}) : function(o, v) { - o["default"] = v; -}); -var __importStar = (this && this.__importStar) || function (mod) { - if (mod && mod.__esModule) return mod; - var result = {}; - if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); - __setModuleDefault(result, mod); - return result; -}; Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.req = exports.json = exports.toBuffer = void 0; -const http = __importStar(__nccwpck_require__(8611)); -const https = __importStar(__nccwpck_require__(5692)); -async function toBuffer(stream) { - let length = 0; - const chunks = []; - for await (const chunk of stream) { - length += chunk.length; - chunks.push(chunk); - } - return Buffer.concat(chunks, length); -} -exports.toBuffer = toBuffer; -// eslint-disable-next-line @typescript-eslint/no-explicit-any -async function json(stream) { - const buf = await toBuffer(stream); - const str = buf.toString('utf8'); - try { - return JSON.parse(str); - } - catch (_err) { - const err = _err; - err.message += ` (input: ${str})`; - throw err; +exports.isJsonObject = exports.typeofJsonValue = void 0; +/** + * Get the type of a JSON value. + * Distinguishes between array, null and object. + */ +function typeofJsonValue(value) { + let t = typeof value; + if (t == "object") { + if (Array.isArray(value)) + return "array"; + if (value === null) + return "null"; } + return t; } -exports.json = json; -function req(url, opts = {}) { - const href = typeof url === 'string' ? url : url.href; - const req = (href.startsWith('https:') ? https : http).request(url, opts); - const promise = new Promise((resolve, reject) => { - req - .once('response', resolve) - .once('error', reject) - .end(); - }); - req.then = promise.then.bind(promise); - return req; +exports.typeofJsonValue = typeofJsonValue; +/** + * Is this a JSON object (instead of an array or null)? + */ +function isJsonObject(value) { + return value !== null && typeof value == "object" && !Array.isArray(value); } -exports.req = req; -//# sourceMappingURL=helpers.js.map +exports.isJsonObject = isJsonObject; + /***/ }), -/***/ 8894: -/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { +/***/ 4073: +/***/ ((__unused_webpack_module, exports) => { -var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { - if (k2 === undefined) k2 = k; - var desc = Object.getOwnPropertyDescriptor(m, k); - if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { - desc = { enumerable: true, get: function() { return m[k]; } }; - } - Object.defineProperty(o, k2, desc); -}) : (function(o, m, k, k2) { - if (k2 === undefined) k2 = k; - o[k2] = m[k]; -})); -var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { - Object.defineProperty(o, "default", { enumerable: true, value: v }); -}) : function(o, v) { - o["default"] = v; -}); -var __importStar = (this && this.__importStar) || function (mod) { - if (mod && mod.__esModule) return mod; - var result = {}; - if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); - __setModuleDefault(result, mod); - return result; -}; -var __exportStar = (this && this.__exportStar) || function(m, exports) { - for (var p in m) if (p !== "default" && !Object.prototype.hasOwnProperty.call(exports, p)) __createBinding(exports, m, p); -}; Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.Agent = void 0; -const net = __importStar(__nccwpck_require__(9278)); -const http = __importStar(__nccwpck_require__(8611)); -const https_1 = __nccwpck_require__(5692); -__exportStar(__nccwpck_require__(5183), exports); -const INTERNAL = Symbol('AgentBaseInternalState'); -class Agent extends http.Agent { - constructor(opts) { - super(opts); - this[INTERNAL] = {}; - } - /** - * Determine whether this is an `http` or `https` request. - */ - isSecureEndpoint(options) { - if (options) { - // First check the `secureEndpoint` property explicitly, since this - // means that a parent `Agent` is "passing through" to this instance. - // eslint-disable-next-line @typescript-eslint/no-explicit-any - if (typeof options.secureEndpoint === 'boolean') { - return options.secureEndpoint; - } - // If no explicit `secure` endpoint, check if `protocol` property is - // set. This will usually be the case since using a full string URL - // or `URL` instance should be the most common usage. - if (typeof options.protocol === 'string') { - return options.protocol === 'https:'; - } - } - // Finally, if no `protocol` property was set, then fall back to - // checking the stack trace of the current call stack, and try to - // detect the "https" module. - const { stack } = new Error(); - if (typeof stack !== 'string') - return false; - return stack - .split('\n') - .some((l) => l.indexOf('(https.js:') !== -1 || - l.indexOf('node:https:') !== -1); - } - // In order to support async signatures in `connect()` and Node's native - // connection pooling in `http.Agent`, the array of sockets for each origin - // has to be updated synchronously. This is so the length of the array is - // accurate when `addRequest()` is next called. We achieve this by creating a - // fake socket and adding it to `sockets[origin]` and incrementing - // `totalSocketCount`. - incrementSockets(name) { - // If `maxSockets` and `maxTotalSockets` are both Infinity then there is no - // need to create a fake socket because Node.js native connection pooling - // will never be invoked. - if (this.maxSockets === Infinity && this.maxTotalSockets === Infinity) { - return null; - } - // All instances of `sockets` are expected TypeScript errors. The - // alternative is to add it as a private property of this class but that - // will break TypeScript subclassing. - if (!this.sockets[name]) { - // @ts-expect-error `sockets` is readonly in `@types/node` - this.sockets[name] = []; - } - const fakeSocket = new net.Socket({ writable: false }); - this.sockets[name].push(fakeSocket); - // @ts-expect-error `totalSocketCount` isn't defined in `@types/node` - this.totalSocketCount++; - return fakeSocket; - } - decrementSockets(name, socket) { - if (!this.sockets[name] || socket === null) { - return; - } - const sockets = this.sockets[name]; - const index = sockets.indexOf(socket); - if (index !== -1) { - sockets.splice(index, 1); - // @ts-expect-error `totalSocketCount` isn't defined in `@types/node` - this.totalSocketCount--; - if (sockets.length === 0) { - // @ts-expect-error `sockets` is readonly in `@types/node` - delete this.sockets[name]; - } +exports.lowerCamelCase = void 0; +/** + * Converts snake_case to lowerCamelCase. + * + * Should behave like protoc: + * https://github.com/protocolbuffers/protobuf/blob/e8ae137c96444ea313485ed1118c5e43b2099cf1/src/google/protobuf/compiler/java/java_helpers.cc#L118 + */ +function lowerCamelCase(snakeCase) { + let capNext = false; + const sb = []; + for (let i = 0; i < snakeCase.length; i++) { + let next = snakeCase.charAt(i); + if (next == '_') { + capNext = true; } - } - // In order to properly update the socket pool, we need to call `getName()` on - // the core `https.Agent` if it is a secureEndpoint. - getName(options) { - const secureEndpoint = this.isSecureEndpoint(options); - if (secureEndpoint) { - // @ts-expect-error `getName()` isn't defined in `@types/node` - return https_1.Agent.prototype.getName.call(this, options); + else if (/\d/.test(next)) { + sb.push(next); + capNext = true; } - // @ts-expect-error `getName()` isn't defined in `@types/node` - return super.getName(options); - } - createSocket(req, options, cb) { - const connectOpts = { - ...options, - secureEndpoint: this.isSecureEndpoint(options), - }; - const name = this.getName(connectOpts); - const fakeSocket = this.incrementSockets(name); - Promise.resolve() - .then(() => this.connect(req, connectOpts)) - .then((socket) => { - this.decrementSockets(name, fakeSocket); - if (socket instanceof http.Agent) { - try { - // @ts-expect-error `addRequest()` isn't defined in `@types/node` - return socket.addRequest(req, connectOpts); - } - catch (err) { - return cb(err); - } - } - this[INTERNAL].currentSocket = socket; - // @ts-expect-error `createSocket()` isn't defined in `@types/node` - super.createSocket(req, options, cb); - }, (err) => { - this.decrementSockets(name, fakeSocket); - cb(err); - }); - } - createConnection() { - const socket = this[INTERNAL].currentSocket; - this[INTERNAL].currentSocket = undefined; - if (!socket) { - throw new Error('No socket was returned in the `connect()` function'); + else if (capNext) { + sb.push(next.toUpperCase()); + capNext = false; } - return socket; - } - get defaultPort() { - return (this[INTERNAL].defaultPort ?? - (this.protocol === 'https:' ? 443 : 80)); - } - set defaultPort(v) { - if (this[INTERNAL]) { - this[INTERNAL].defaultPort = v; + else if (i == 0) { + sb.push(next.toLowerCase()); } - } - get protocol() { - return (this[INTERNAL].protocol ?? - (this.isSecureEndpoint() ? 'https:' : 'http:')); - } - set protocol(v) { - if (this[INTERNAL]) { - this[INTERNAL].protocol = v; + else { + sb.push(next); } } + return sb.join(''); } -exports.Agent = Agent; -//# sourceMappingURL=index.js.map +exports.lowerCamelCase = lowerCamelCase; + /***/ }), -/***/ 9380: -/***/ ((module) => { +/***/ 3785: +/***/ ((__unused_webpack_module, exports) => { -module.exports = balanced; -function balanced(a, b, str) { - if (a instanceof RegExp) a = maybeMatch(a, str); - if (b instanceof RegExp) b = maybeMatch(b, str); +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.MESSAGE_TYPE = void 0; +/** + * The symbol used as a key on message objects to store the message type. + * + * Note that this is an experimental feature - it is here to stay, but + * implementation details may change without notice. + */ +exports.MESSAGE_TYPE = Symbol.for("protobuf-ts/message-type"); - var r = range(a, b, str); - return r && { - start: r[0], - end: r[1], - pre: str.slice(0, r[0]), - body: str.slice(r[0] + a.length, r[1]), - post: str.slice(r[1] + b.length) - }; -} +/***/ }), -function maybeMatch(reg, str) { - var m = str.match(reg); - return m ? m[0] : null; -} +/***/ 5106: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { -balanced.range = range; -function range(a, b, str) { - var begs, beg, left, right, result; - var ai = str.indexOf(a); - var bi = str.indexOf(b, ai + 1); - var i = ai; - if (ai >= 0 && bi > 0) { - if(a===b) { - return [ai, bi]; +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.MessageType = void 0; +const message_type_contract_1 = __nccwpck_require__(3785); +const reflection_info_1 = __nccwpck_require__(7910); +const reflection_type_check_1 = __nccwpck_require__(5167); +const reflection_json_reader_1 = __nccwpck_require__(6790); +const reflection_json_writer_1 = __nccwpck_require__(1094); +const reflection_binary_reader_1 = __nccwpck_require__(9611); +const reflection_binary_writer_1 = __nccwpck_require__(6907); +const reflection_create_1 = __nccwpck_require__(5726); +const reflection_merge_partial_1 = __nccwpck_require__(8044); +const json_typings_1 = __nccwpck_require__(9999); +const json_format_contract_1 = __nccwpck_require__(9367); +const reflection_equals_1 = __nccwpck_require__(4827); +const binary_writer_1 = __nccwpck_require__(3957); +const binary_reader_1 = __nccwpck_require__(2889); +const baseDescriptors = Object.getOwnPropertyDescriptors(Object.getPrototypeOf({})); +const messageTypeDescriptor = baseDescriptors[message_type_contract_1.MESSAGE_TYPE] = {}; +/** + * This standard message type provides reflection-based + * operations to work with a message. + */ +class MessageType { + constructor(name, fields, options) { + this.defaultCheckDepth = 16; + this.typeName = name; + this.fields = fields.map(reflection_info_1.normalizeFieldInfo); + this.options = options !== null && options !== void 0 ? options : {}; + messageTypeDescriptor.value = this; + this.messagePrototype = Object.create(null, baseDescriptors); + this.refTypeCheck = new reflection_type_check_1.ReflectionTypeCheck(this); + this.refJsonReader = new reflection_json_reader_1.ReflectionJsonReader(this); + this.refJsonWriter = new reflection_json_writer_1.ReflectionJsonWriter(this); + this.refBinReader = new reflection_binary_reader_1.ReflectionBinaryReader(this); + this.refBinWriter = new reflection_binary_writer_1.ReflectionBinaryWriter(this); } - begs = []; - left = str.length; - - while (i >= 0 && !result) { - if (i == ai) { - begs.push(i); - ai = str.indexOf(a, i + 1); - } else if (begs.length == 1) { - result = [ begs.pop(), bi ]; - } else { - beg = begs.pop(); - if (beg < left) { - left = beg; - right = bi; + create(value) { + let message = reflection_create_1.reflectionCreate(this); + if (value !== undefined) { + reflection_merge_partial_1.reflectionMergePartial(this, message, value); } - - bi = str.indexOf(b, i + 1); - } - - i = ai < bi && ai >= 0 ? ai : bi; + return message; } - - if (begs.length) { - result = [ left, right ]; + /** + * Clone the message. + * + * Unknown fields are discarded. + */ + clone(message) { + let copy = this.create(); + reflection_merge_partial_1.reflectionMergePartial(this, copy, message); + return copy; + } + /** + * Determines whether two message of the same type have the same field values. + * Checks for deep equality, traversing repeated fields, oneof groups, maps + * and messages recursively. + * Will also return true if both messages are `undefined`. + */ + equals(a, b) { + return reflection_equals_1.reflectionEquals(this, a, b); + } + /** + * Is the given value assignable to our message type + * and contains no [excess properties](https://www.typescriptlang.org/docs/handbook/interfaces.html#excess-property-checks)? + */ + is(arg, depth = this.defaultCheckDepth) { + return this.refTypeCheck.is(arg, depth, false); + } + /** + * Is the given value assignable to our message type, + * regardless of [excess properties](https://www.typescriptlang.org/docs/handbook/interfaces.html#excess-property-checks)? + */ + isAssignable(arg, depth = this.defaultCheckDepth) { + return this.refTypeCheck.is(arg, depth, true); + } + /** + * Copy partial data into the target message. + */ + mergePartial(target, source) { + reflection_merge_partial_1.reflectionMergePartial(this, target, source); + } + /** + * Create a new message from binary format. + */ + fromBinary(data, options) { + let opt = binary_reader_1.binaryReadOptions(options); + return this.internalBinaryRead(opt.readerFactory(data), data.byteLength, opt); + } + /** + * Read a new message from a JSON value. + */ + fromJson(json, options) { + return this.internalJsonRead(json, json_format_contract_1.jsonReadOptions(options)); + } + /** + * Read a new message from a JSON string. + * This is equivalent to `T.fromJson(JSON.parse(json))`. + */ + fromJsonString(json, options) { + let value = JSON.parse(json); + return this.fromJson(value, options); + } + /** + * Write the message to canonical JSON value. + */ + toJson(message, options) { + return this.internalJsonWrite(message, json_format_contract_1.jsonWriteOptions(options)); + } + /** + * Convert the message to canonical JSON string. + * This is equivalent to `JSON.stringify(T.toJson(t))` + */ + toJsonString(message, options) { + var _a; + let value = this.toJson(message, options); + return JSON.stringify(value, null, (_a = options === null || options === void 0 ? void 0 : options.prettySpaces) !== null && _a !== void 0 ? _a : 0); + } + /** + * Write the message to binary format. + */ + toBinary(message, options) { + let opt = binary_writer_1.binaryWriteOptions(options); + return this.internalBinaryWrite(message, opt.writerFactory(), opt).finish(); + } + /** + * This is an internal method. If you just want to read a message from + * JSON, use `fromJson()` or `fromJsonString()`. + * + * Reads JSON value and merges the fields into the target + * according to protobuf rules. If the target is omitted, + * a new instance is created first. + */ + internalJsonRead(json, options, target) { + if (json !== null && typeof json == "object" && !Array.isArray(json)) { + let message = target !== null && target !== void 0 ? target : this.create(); + this.refJsonReader.read(json, message, options); + return message; + } + throw new Error(`Unable to parse message ${this.typeName} from JSON ${json_typings_1.typeofJsonValue(json)}.`); + } + /** + * This is an internal method. If you just want to write a message + * to JSON, use `toJson()` or `toJsonString(). + * + * Writes JSON value and returns it. + */ + internalJsonWrite(message, options) { + return this.refJsonWriter.write(message, options); + } + /** + * This is an internal method. If you just want to write a message + * in binary format, use `toBinary()`. + * + * Serializes the message in binary format and appends it to the given + * writer. Returns passed writer. + */ + internalBinaryWrite(message, writer, options) { + this.refBinWriter.write(message, writer, options); + return writer; + } + /** + * This is an internal method. If you just want to read a message from + * binary data, use `fromBinary()`. + * + * Reads data from binary format and merges the fields into + * the target according to protobuf rules. If the target is + * omitted, a new instance is created first. + */ + internalBinaryRead(reader, length, options, target) { + let message = target !== null && target !== void 0 ? target : this.create(); + this.refBinReader.read(reader, message, options, length); + return message; } - } - - return result; } +exports.MessageType = MessageType; /***/ }), -/***/ 4691: -/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { - -var concatMap = __nccwpck_require__(7087); -var balanced = __nccwpck_require__(9380); - -module.exports = expandTop; +/***/ 8063: +/***/ ((__unused_webpack_module, exports) => { -var escSlash = '\0SLASH'+Math.random()+'\0'; -var escOpen = '\0OPEN'+Math.random()+'\0'; -var escClose = '\0CLOSE'+Math.random()+'\0'; -var escComma = '\0COMMA'+Math.random()+'\0'; -var escPeriod = '\0PERIOD'+Math.random()+'\0'; -function numeric(str) { - return parseInt(str, 10) == str - ? parseInt(str, 10) - : str.charCodeAt(0); +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.getSelectedOneofValue = exports.clearOneofValue = exports.setUnknownOneofValue = exports.setOneofValue = exports.getOneofValue = exports.isOneofGroup = void 0; +/** + * Is the given value a valid oneof group? + * + * We represent protobuf `oneof` as algebraic data types (ADT) in generated + * code. But when working with messages of unknown type, the ADT does not + * help us. + * + * This type guard checks if the given object adheres to the ADT rules, which + * are as follows: + * + * 1) Must be an object. + * + * 2) Must have a "oneofKind" discriminator property. + * + * 3) If "oneofKind" is `undefined`, no member field is selected. The object + * must not have any other properties. + * + * 4) If "oneofKind" is a `string`, the member field with this name is + * selected. + * + * 5) If a member field is selected, the object must have a second property + * with this name. The property must not be `undefined`. + * + * 6) No extra properties are allowed. The object has either one property + * (no selection) or two properties (selection). + * + */ +function isOneofGroup(any) { + if (typeof any != 'object' || any === null || !any.hasOwnProperty('oneofKind')) { + return false; + } + switch (typeof any.oneofKind) { + case "string": + if (any[any.oneofKind] === undefined) + return false; + return Object.keys(any).length == 2; + case "undefined": + return Object.keys(any).length == 1; + default: + return false; + } } - -function escapeBraces(str) { - return str.split('\\\\').join(escSlash) - .split('\\{').join(escOpen) - .split('\\}').join(escClose) - .split('\\,').join(escComma) - .split('\\.').join(escPeriod); +exports.isOneofGroup = isOneofGroup; +/** + * Returns the value of the given field in a oneof group. + */ +function getOneofValue(oneof, kind) { + return oneof[kind]; } - -function unescapeBraces(str) { - return str.split(escSlash).join('\\') - .split(escOpen).join('{') - .split(escClose).join('}') - .split(escComma).join(',') - .split(escPeriod).join('.'); +exports.getOneofValue = getOneofValue; +function setOneofValue(oneof, kind, value) { + if (oneof.oneofKind !== undefined) { + delete oneof[oneof.oneofKind]; + } + oneof.oneofKind = kind; + if (value !== undefined) { + oneof[kind] = value; + } } - - -// Basically just str.split(","), but handling cases -// where we have nested braced sections, which should be -// treated as individual members, like {a,{b,c},d} -function parseCommaParts(str) { - if (!str) - return ['']; - - var parts = []; - var m = balanced('{', '}', str); - - if (!m) - return str.split(','); - - var pre = m.pre; - var body = m.body; - var post = m.post; - var p = pre.split(','); - - p[p.length-1] += '{' + body + '}'; - var postParts = parseCommaParts(post); - if (post.length) { - p[p.length-1] += postParts.shift(); - p.push.apply(p, postParts); - } - - parts.push.apply(parts, p); - - return parts; +exports.setOneofValue = setOneofValue; +function setUnknownOneofValue(oneof, kind, value) { + if (oneof.oneofKind !== undefined) { + delete oneof[oneof.oneofKind]; + } + oneof.oneofKind = kind; + if (value !== undefined && kind !== undefined) { + oneof[kind] = value; + } +} +exports.setUnknownOneofValue = setUnknownOneofValue; +/** + * Removes the selected field in a oneof group. + * + * Note that the recommended way to modify a oneof group is to set + * a new object: + * + * ```ts + * message.result = { oneofKind: undefined }; + * ``` + */ +function clearOneofValue(oneof) { + if (oneof.oneofKind !== undefined) { + delete oneof[oneof.oneofKind]; + } + oneof.oneofKind = undefined; +} +exports.clearOneofValue = clearOneofValue; +/** + * Returns the selected value of the given oneof group. + * + * Not that the recommended way to access a oneof group is to check + * the "oneofKind" property and let TypeScript narrow down the union + * type for you: + * + * ```ts + * if (message.result.oneofKind === "error") { + * message.result.error; // string + * } + * ``` + * + * In the rare case you just need the value, and do not care about + * which protobuf field is selected, you can use this function + * for convenience. + */ +function getSelectedOneofValue(oneof) { + if (oneof.oneofKind === undefined) { + return undefined; + } + return oneof[oneof.oneofKind]; } +exports.getSelectedOneofValue = getSelectedOneofValue; -function expandTop(str) { - if (!str) - return []; - - // I don't know why Bash 4.3 does this, but it does. - // Anything starting with {} will have the first two bytes preserved - // but *only* at the top level, so {},a}b will not expand to anything, - // but a{},b}c will be expanded to [a}c,abc]. - // One could argue that this is a bug in Bash, but since the goal of - // this module is to match Bash's rules, we escape a leading {} - if (str.substr(0, 2) === '{}') { - str = '\\{\\}' + str.substr(2); - } - return expand(escapeBraces(str), true).map(unescapeBraces); -} +/***/ }), -function identity(e) { - return e; -} +/***/ 1753: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { -function embrace(str) { - return '{' + str + '}'; -} -function isPadded(el) { - return /^-?0\d/.test(el); -} -function lte(i, y) { - return i <= y; +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.PbLong = exports.PbULong = exports.detectBi = void 0; +const goog_varint_1 = __nccwpck_require__(3223); +let BI; +function detectBi() { + const dv = new DataView(new ArrayBuffer(8)); + const ok = globalThis.BigInt !== undefined + && typeof dv.getBigInt64 === "function" + && typeof dv.getBigUint64 === "function" + && typeof dv.setBigInt64 === "function" + && typeof dv.setBigUint64 === "function"; + BI = ok ? { + MIN: BigInt("-9223372036854775808"), + MAX: BigInt("9223372036854775807"), + UMIN: BigInt("0"), + UMAX: BigInt("18446744073709551615"), + C: BigInt, + V: dv, + } : undefined; } -function gte(i, y) { - return i >= y; +exports.detectBi = detectBi; +detectBi(); +function assertBi(bi) { + if (!bi) + throw new Error("BigInt unavailable, see https://github.com/timostamm/protobuf-ts/blob/v1.0.8/MANUAL.md#bigint-support"); } - -function expand(str, isTop) { - var expansions = []; - - var m = balanced('{', '}', str); - if (!m || /\$$/.test(m.pre)) return [str]; - - var isNumericSequence = /^-?\d+\.\.-?\d+(?:\.\.-?\d+)?$/.test(m.body); - var isAlphaSequence = /^[a-zA-Z]\.\.[a-zA-Z](?:\.\.-?\d+)?$/.test(m.body); - var isSequence = isNumericSequence || isAlphaSequence; - var isOptions = m.body.indexOf(',') >= 0; - if (!isSequence && !isOptions) { - // {a},b} - if (m.post.match(/,(?!,).*\}/)) { - str = m.pre + '{' + m.body + escClose + m.post; - return expand(str); +// used to validate from(string) input (when bigint is unavailable) +const RE_DECIMAL_STR = /^-?[0-9]+$/; +// constants for binary math +const TWO_PWR_32_DBL = 0x100000000; +const HALF_2_PWR_32 = 0x080000000; +// base class for PbLong and PbULong provides shared code +class SharedPbLong { + /** + * Create a new instance with the given bits. + */ + constructor(lo, hi) { + this.lo = lo | 0; + this.hi = hi | 0; } - return [str]; - } - - var n; - if (isSequence) { - n = m.body.split(/\.\./); - } else { - n = parseCommaParts(m.body); - if (n.length === 1) { - // x{{a,b}}y ==> x{a}y x{b}y - n = expand(n[0], false).map(embrace); - if (n.length === 1) { - var post = m.post.length - ? expand(m.post, false) - : ['']; - return post.map(function(p) { - return m.pre + n[0] + p; - }); - } + /** + * Is this instance equal to 0? + */ + isZero() { + return this.lo == 0 && this.hi == 0; } - } - - // at this point, n is the parts, and we know it's not a comma set - // with a single entry. - - // no need to expand pre, since it is guaranteed to be free of brace-sets - var pre = m.pre; - var post = m.post.length - ? expand(m.post, false) - : ['']; - - var N; - - if (isSequence) { - var x = numeric(n[0]); - var y = numeric(n[1]); - var width = Math.max(n[0].length, n[1].length) - var incr = n.length == 3 - ? Math.max(Math.abs(numeric(n[2])), 1) - : 1; - var test = lte; - var reverse = y < x; - if (reverse) { - incr *= -1; - test = gte; + /** + * Convert to a native number. + */ + toNumber() { + let result = this.hi * TWO_PWR_32_DBL + (this.lo >>> 0); + if (!Number.isSafeInteger(result)) + throw new Error("cannot convert to safe number"); + return result; } - var pad = n.some(isPadded); - - N = []; - - for (var i = x; test(i, y); i += incr) { - var c; - if (isAlphaSequence) { - c = String.fromCharCode(i); - if (c === '\\') - c = ''; - } else { - c = String(i); - if (pad) { - var need = width - c.length; - if (need > 0) { - var z = new Array(need + 1).join('0'); - if (i < 0) - c = '-' + z + c.slice(1); - else - c = z + c; - } - } - } - N.push(c); +} +/** + * 64-bit unsigned integer as two 32-bit values. + * Converts between `string`, `number` and `bigint` representations. + */ +class PbULong extends SharedPbLong { + /** + * Create instance from a `string`, `number` or `bigint`. + */ + static from(value) { + if (BI) + // noinspection FallThroughInSwitchStatementJS + switch (typeof value) { + case "string": + if (value == "0") + return this.ZERO; + if (value == "") + throw new Error('string is no integer'); + value = BI.C(value); + case "number": + if (value === 0) + return this.ZERO; + value = BI.C(value); + case "bigint": + if (!value) + return this.ZERO; + if (value < BI.UMIN) + throw new Error('signed value for ulong'); + if (value > BI.UMAX) + throw new Error('ulong too large'); + BI.V.setBigUint64(0, value, true); + return new PbULong(BI.V.getInt32(0, true), BI.V.getInt32(4, true)); + } + else + switch (typeof value) { + case "string": + if (value == "0") + return this.ZERO; + value = value.trim(); + if (!RE_DECIMAL_STR.test(value)) + throw new Error('string is no integer'); + let [minus, lo, hi] = goog_varint_1.int64fromString(value); + if (minus) + throw new Error('signed value for ulong'); + return new PbULong(lo, hi); + case "number": + if (value == 0) + return this.ZERO; + if (!Number.isSafeInteger(value)) + throw new Error('number is no integer'); + if (value < 0) + throw new Error('signed value for ulong'); + return new PbULong(value, value / TWO_PWR_32_DBL); + } + throw new Error('unknown value ' + typeof value); } - } else { - N = concatMap(n, function(el) { return expand(el, false) }); - } - - for (var j = 0; j < N.length; j++) { - for (var k = 0; k < post.length; k++) { - var expansion = pre + N[j] + post[k]; - if (!isTop || isSequence || expansion) - expansions.push(expansion); + /** + * Convert to decimal string. + */ + toString() { + return BI ? this.toBigInt().toString() : goog_varint_1.int64toString(this.lo, this.hi); } - } - - return expansions; -} - - -/***/ }), - -/***/ 7087: -/***/ ((module) => { - -module.exports = function (xs, fn) { - var res = []; - for (var i = 0; i < xs.length; i++) { - var x = fn(xs[i], i); - if (isArray(x)) res.push.apply(res, x); - else res.push(x); + /** + * Convert to native bigint. + */ + toBigInt() { + assertBi(BI); + BI.V.setInt32(0, this.lo, true); + BI.V.setInt32(4, this.hi, true); + return BI.V.getBigUint64(0, true); } - return res; -}; - -var isArray = Array.isArray || function (xs) { - return Object.prototype.toString.call(xs) === '[object Array]'; -}; - - -/***/ }), - -/***/ 6110: -/***/ ((module, exports, __nccwpck_require__) => { - -/* eslint-env browser */ - +} +exports.PbULong = PbULong; /** - * This is the web browser implementation of `debug()`. + * ulong 0 singleton. */ - -exports.formatArgs = formatArgs; -exports.save = save; -exports.load = load; -exports.useColors = useColors; -exports.storage = localstorage(); -exports.destroy = (() => { - let warned = false; - - return () => { - if (!warned) { - warned = true; - console.warn('Instance method `debug.destroy()` is deprecated and no longer does anything. It will be removed in the next major version of `debug`.'); - } - }; -})(); - +PbULong.ZERO = new PbULong(0, 0); /** - * Colors. + * 64-bit signed integer as two 32-bit values. + * Converts between `string`, `number` and `bigint` representations. */ - -exports.colors = [ - '#0000CC', - '#0000FF', - '#0033CC', - '#0033FF', - '#0066CC', - '#0066FF', - '#0099CC', - '#0099FF', - '#00CC00', - '#00CC33', - '#00CC66', - '#00CC99', - '#00CCCC', - '#00CCFF', - '#3300CC', - '#3300FF', - '#3333CC', - '#3333FF', - '#3366CC', - '#3366FF', - '#3399CC', - '#3399FF', - '#33CC00', - '#33CC33', - '#33CC66', - '#33CC99', - '#33CCCC', - '#33CCFF', - '#6600CC', - '#6600FF', - '#6633CC', - '#6633FF', - '#66CC00', - '#66CC33', - '#9900CC', - '#9900FF', - '#9933CC', - '#9933FF', - '#99CC00', - '#99CC33', - '#CC0000', - '#CC0033', - '#CC0066', - '#CC0099', - '#CC00CC', - '#CC00FF', - '#CC3300', - '#CC3333', - '#CC3366', - '#CC3399', - '#CC33CC', - '#CC33FF', - '#CC6600', - '#CC6633', - '#CC9900', - '#CC9933', - '#CCCC00', - '#CCCC33', - '#FF0000', - '#FF0033', - '#FF0066', - '#FF0099', - '#FF00CC', - '#FF00FF', - '#FF3300', - '#FF3333', - '#FF3366', - '#FF3399', - '#FF33CC', - '#FF33FF', - '#FF6600', - '#FF6633', - '#FF9900', - '#FF9933', - '#FFCC00', - '#FFCC33' -]; - +class PbLong extends SharedPbLong { + /** + * Create instance from a `string`, `number` or `bigint`. + */ + static from(value) { + if (BI) + // noinspection FallThroughInSwitchStatementJS + switch (typeof value) { + case "string": + if (value == "0") + return this.ZERO; + if (value == "") + throw new Error('string is no integer'); + value = BI.C(value); + case "number": + if (value === 0) + return this.ZERO; + value = BI.C(value); + case "bigint": + if (!value) + return this.ZERO; + if (value < BI.MIN) + throw new Error('signed long too small'); + if (value > BI.MAX) + throw new Error('signed long too large'); + BI.V.setBigInt64(0, value, true); + return new PbLong(BI.V.getInt32(0, true), BI.V.getInt32(4, true)); + } + else + switch (typeof value) { + case "string": + if (value == "0") + return this.ZERO; + value = value.trim(); + if (!RE_DECIMAL_STR.test(value)) + throw new Error('string is no integer'); + let [minus, lo, hi] = goog_varint_1.int64fromString(value); + if (minus) { + if (hi > HALF_2_PWR_32 || (hi == HALF_2_PWR_32 && lo != 0)) + throw new Error('signed long too small'); + } + else if (hi >= HALF_2_PWR_32) + throw new Error('signed long too large'); + let pbl = new PbLong(lo, hi); + return minus ? pbl.negate() : pbl; + case "number": + if (value == 0) + return this.ZERO; + if (!Number.isSafeInteger(value)) + throw new Error('number is no integer'); + return value > 0 + ? new PbLong(value, value / TWO_PWR_32_DBL) + : new PbLong(-value, -value / TWO_PWR_32_DBL).negate(); + } + throw new Error('unknown value ' + typeof value); + } + /** + * Do we have a minus sign? + */ + isNegative() { + return (this.hi & HALF_2_PWR_32) !== 0; + } + /** + * Negate two's complement. + * Invert all the bits and add one to the result. + */ + negate() { + let hi = ~this.hi, lo = this.lo; + if (lo) + lo = ~lo + 1; + else + hi += 1; + return new PbLong(lo, hi); + } + /** + * Convert to decimal string. + */ + toString() { + if (BI) + return this.toBigInt().toString(); + if (this.isNegative()) { + let n = this.negate(); + return '-' + goog_varint_1.int64toString(n.lo, n.hi); + } + return goog_varint_1.int64toString(this.lo, this.hi); + } + /** + * Convert to native bigint. + */ + toBigInt() { + assertBi(BI); + BI.V.setInt32(0, this.lo, true); + BI.V.setInt32(4, this.hi, true); + return BI.V.getBigInt64(0, true); + } +} +exports.PbLong = PbLong; /** - * Currently only WebKit-based Web Inspectors, Firefox >= v31, - * and the Firebug extension (any Firefox version) are known - * to support "%c" CSS customizations. - * - * TODO: add a `localStorage` variable to explicitly enable/disable colors + * long 0 singleton. */ +PbLong.ZERO = new PbLong(0, 0); -// eslint-disable-next-line complexity -function useColors() { - // NB: In an Electron preload script, document will be defined but not fully - // initialized. Since we know we're in Chrome, we'll just detect this case - // explicitly - if (typeof window !== 'undefined' && window.process && (window.process.type === 'renderer' || window.process.__nwjs)) { - return true; - } - // Internet Explorer and Edge do not support colors. - if (typeof navigator !== 'undefined' && navigator.userAgent && navigator.userAgent.toLowerCase().match(/(edge|trident)\/(\d+)/)) { - return false; - } +/***/ }), - let m; +/***/ 8950: +/***/ ((__unused_webpack_module, exports) => { - // Is webkit? http://stackoverflow.com/a/16459606/376773 - // document is undefined in react-native: https://github.com/facebook/react-native/pull/1632 - // eslint-disable-next-line no-return-assign - return (typeof document !== 'undefined' && document.documentElement && document.documentElement.style && document.documentElement.style.WebkitAppearance) || - // Is firebug? http://stackoverflow.com/a/398120/376773 - (typeof window !== 'undefined' && window.console && (window.console.firebug || (window.console.exception && window.console.table))) || - // Is firefox >= v31? - // https://developer.mozilla.org/en-US/docs/Tools/Web_Console#Styling_messages - (typeof navigator !== 'undefined' && navigator.userAgent && (m = navigator.userAgent.toLowerCase().match(/firefox\/(\d+)/)) && parseInt(m[1], 10) >= 31) || - // Double check webkit in userAgent just in case we are in a worker - (typeof navigator !== 'undefined' && navigator.userAgent && navigator.userAgent.toLowerCase().match(/applewebkit\/(\d+)/)); -} +// Copyright (c) 2016, Daniel Wirtz All rights reserved. +// +// Redistribution and use in source and binary forms, with or without +// modification, are permitted provided that the following conditions are +// met: +// +// * Redistributions of source code must retain the above copyright +// notice, this list of conditions and the following disclaimer. +// * Redistributions in binary form must reproduce the above copyright +// notice, this list of conditions and the following disclaimer in the +// documentation and/or other materials provided with the distribution. +// * Neither the name of its author, nor the names of its contributors +// may be used to endorse or promote products derived from this software +// without specific prior written permission. +// +// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS +// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT +// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR +// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT +// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, +// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT +// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, +// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY +// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT +// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE +// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.utf8read = void 0; +const fromCharCodes = (chunk) => String.fromCharCode.apply(String, chunk); /** - * Colorize log arguments if enabled. + * @deprecated This function will no longer be exported with the next major + * release, since protobuf-ts has switch to TextDecoder API. If you need this + * function, please migrate to @protobufjs/utf8. For context, see + * https://github.com/timostamm/protobuf-ts/issues/184 * - * @api public + * Reads UTF8 bytes as a string. + * + * See [protobufjs / utf8](https://github.com/protobufjs/protobuf.js/blob/9893e35b854621cce64af4bf6be2cff4fb892796/lib/utf8/index.js#L40) + * + * Copyright (c) 2016, Daniel Wirtz */ +function utf8read(bytes) { + if (bytes.length < 1) + return ""; + let pos = 0, // position in bytes + parts = [], chunk = [], i = 0, // char offset + t; // temporary + let len = bytes.length; + while (pos < len) { + t = bytes[pos++]; + if (t < 128) + chunk[i++] = t; + else if (t > 191 && t < 224) + chunk[i++] = (t & 31) << 6 | bytes[pos++] & 63; + else if (t > 239 && t < 365) { + t = ((t & 7) << 18 | (bytes[pos++] & 63) << 12 | (bytes[pos++] & 63) << 6 | bytes[pos++] & 63) - 0x10000; + chunk[i++] = 0xD800 + (t >> 10); + chunk[i++] = 0xDC00 + (t & 1023); + } + else + chunk[i++] = (t & 15) << 12 | (bytes[pos++] & 63) << 6 | bytes[pos++] & 63; + if (i > 8191) { + parts.push(fromCharCodes(chunk)); + i = 0; + } + } + if (parts.length) { + if (i) + parts.push(fromCharCodes(chunk.slice(0, i))); + return parts.join(""); + } + return fromCharCodes(chunk.slice(0, i)); +} +exports.utf8read = utf8read; -function formatArgs(args) { - args[0] = (this.useColors ? '%c' : '') + - this.namespace + - (this.useColors ? ' %c' : ' ') + - args[0] + - (this.useColors ? '%c ' : ' ') + - '+' + module.exports.humanize(this.diff); - - if (!this.useColors) { - return; - } - - const c = 'color: ' + this.color; - args.splice(1, 0, c, 'color: inherit'); - // The final "%c" is somewhat tricky, because there could be other - // arguments passed either before or after the %c, so we need to - // figure out the correct index to insert the CSS into - let index = 0; - let lastC = 0; - args[0].replace(/%[a-zA-Z%]/g, match => { - if (match === '%%') { - return; - } - index++; - if (match === '%c') { - // We only are interested in the *last* %c - // (the user may have provided their own) - lastC = index; - } - }); +/***/ }), - args.splice(lastC, 0, c); -} +/***/ 9611: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { -/** - * Invokes `console.debug()` when available. - * No-op when `console.debug` is not a "function". - * If `console.debug` is not available, falls back - * to `console.log`. - * - * @api public - */ -exports.log = console.debug || console.log || (() => {}); +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.ReflectionBinaryReader = void 0; +const binary_format_contract_1 = __nccwpck_require__(4816); +const reflection_info_1 = __nccwpck_require__(7910); +const reflection_long_convert_1 = __nccwpck_require__(3402); +const reflection_scalar_default_1 = __nccwpck_require__(9526); /** - * Save `namespaces`. + * Reads proto3 messages in binary format using reflection information. * - * @param {String} namespaces - * @api private + * https://developers.google.com/protocol-buffers/docs/encoding */ -function save(namespaces) { - try { - if (namespaces) { - exports.storage.setItem('debug', namespaces); - } else { - exports.storage.removeItem('debug'); - } - } catch (error) { - // Swallow - // XXX (@Qix-) should we be logging these? - } +class ReflectionBinaryReader { + constructor(info) { + this.info = info; + } + prepare() { + var _a; + if (!this.fieldNoToField) { + const fieldsInput = (_a = this.info.fields) !== null && _a !== void 0 ? _a : []; + this.fieldNoToField = new Map(fieldsInput.map(field => [field.no, field])); + } + } + /** + * Reads a message from binary format into the target message. + * + * Repeated fields are appended. Map entries are added, overwriting + * existing keys. + * + * If a message field is already present, it will be merged with the + * new data. + */ + read(reader, message, options, length) { + this.prepare(); + const end = length === undefined ? reader.len : reader.pos + length; + while (reader.pos < end) { + // read the tag and find the field + const [fieldNo, wireType] = reader.tag(), field = this.fieldNoToField.get(fieldNo); + if (!field) { + let u = options.readUnknownField; + if (u == "throw") + throw new Error(`Unknown field ${fieldNo} (wire type ${wireType}) for ${this.info.typeName}`); + let d = reader.skip(wireType); + if (u !== false) + (u === true ? binary_format_contract_1.UnknownFieldHandler.onRead : u)(this.info.typeName, message, fieldNo, wireType, d); + continue; + } + // target object for the field we are reading + let target = message, repeated = field.repeat, localName = field.localName; + // if field is member of oneof ADT, use ADT as target + if (field.oneof) { + target = target[field.oneof]; + // if other oneof member selected, set new ADT + if (target.oneofKind !== localName) + target = message[field.oneof] = { + oneofKind: localName + }; + } + // we have handled oneof above, we just have read the value into `target[localName]` + switch (field.kind) { + case "scalar": + case "enum": + let T = field.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.T; + let L = field.kind == "scalar" ? field.L : undefined; + if (repeated) { + let arr = target[localName]; // safe to assume presence of array, oneof cannot contain repeated values + if (wireType == binary_format_contract_1.WireType.LengthDelimited && T != reflection_info_1.ScalarType.STRING && T != reflection_info_1.ScalarType.BYTES) { + let e = reader.uint32() + reader.pos; + while (reader.pos < e) + arr.push(this.scalar(reader, T, L)); + } + else + arr.push(this.scalar(reader, T, L)); + } + else + target[localName] = this.scalar(reader, T, L); + break; + case "message": + if (repeated) { + let arr = target[localName]; // safe to assume presence of array, oneof cannot contain repeated values + let msg = field.T().internalBinaryRead(reader, reader.uint32(), options); + arr.push(msg); + } + else + target[localName] = field.T().internalBinaryRead(reader, reader.uint32(), options, target[localName]); + break; + case "map": + let [mapKey, mapVal] = this.mapEntry(field, reader, options); + // safe to assume presence of map object, oneof cannot contain repeated values + target[localName][mapKey] = mapVal; + break; + } + } + } + /** + * Read a map field, expecting key field = 1, value field = 2 + */ + mapEntry(field, reader, options) { + let length = reader.uint32(); + let end = reader.pos + length; + let key = undefined; // javascript only allows number or string for object properties + let val = undefined; + while (reader.pos < end) { + let [fieldNo, wireType] = reader.tag(); + switch (fieldNo) { + case 1: + if (field.K == reflection_info_1.ScalarType.BOOL) + key = reader.bool().toString(); + else + // long types are read as string, number types are okay as number + key = this.scalar(reader, field.K, reflection_info_1.LongType.STRING); + break; + case 2: + switch (field.V.kind) { + case "scalar": + val = this.scalar(reader, field.V.T, field.V.L); + break; + case "enum": + val = reader.int32(); + break; + case "message": + val = field.V.T().internalBinaryRead(reader, reader.uint32(), options); + break; + } + break; + default: + throw new Error(`Unknown field ${fieldNo} (wire type ${wireType}) in map entry for ${this.info.typeName}#${field.name}`); + } + } + if (key === undefined) { + let keyRaw = reflection_scalar_default_1.reflectionScalarDefault(field.K); + key = field.K == reflection_info_1.ScalarType.BOOL ? keyRaw.toString() : keyRaw; + } + if (val === undefined) + switch (field.V.kind) { + case "scalar": + val = reflection_scalar_default_1.reflectionScalarDefault(field.V.T, field.V.L); + break; + case "enum": + val = 0; + break; + case "message": + val = field.V.T().create(); + break; + } + return [key, val]; + } + scalar(reader, type, longType) { + switch (type) { + case reflection_info_1.ScalarType.INT32: + return reader.int32(); + case reflection_info_1.ScalarType.STRING: + return reader.string(); + case reflection_info_1.ScalarType.BOOL: + return reader.bool(); + case reflection_info_1.ScalarType.DOUBLE: + return reader.double(); + case reflection_info_1.ScalarType.FLOAT: + return reader.float(); + case reflection_info_1.ScalarType.INT64: + return reflection_long_convert_1.reflectionLongConvert(reader.int64(), longType); + case reflection_info_1.ScalarType.UINT64: + return reflection_long_convert_1.reflectionLongConvert(reader.uint64(), longType); + case reflection_info_1.ScalarType.FIXED64: + return reflection_long_convert_1.reflectionLongConvert(reader.fixed64(), longType); + case reflection_info_1.ScalarType.FIXED32: + return reader.fixed32(); + case reflection_info_1.ScalarType.BYTES: + return reader.bytes(); + case reflection_info_1.ScalarType.UINT32: + return reader.uint32(); + case reflection_info_1.ScalarType.SFIXED32: + return reader.sfixed32(); + case reflection_info_1.ScalarType.SFIXED64: + return reflection_long_convert_1.reflectionLongConvert(reader.sfixed64(), longType); + case reflection_info_1.ScalarType.SINT32: + return reader.sint32(); + case reflection_info_1.ScalarType.SINT64: + return reflection_long_convert_1.reflectionLongConvert(reader.sint64(), longType); + } + } } +exports.ReflectionBinaryReader = ReflectionBinaryReader; -/** - * Load `namespaces`. - * - * @return {String} returns the previously persisted debug modes - * @api private - */ -function load() { - let r; - try { - r = exports.storage.getItem('debug') || exports.storage.getItem('DEBUG') ; - } catch (error) { - // Swallow - // XXX (@Qix-) should we be logging these? - } - // If debug isn't set in LS, and we're in Electron, try to load $DEBUG - if (!r && typeof process !== 'undefined' && 'env' in process) { - r = process.env.DEBUG; - } +/***/ }), + +/***/ 6907: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { - return r; -} +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.ReflectionBinaryWriter = void 0; +const binary_format_contract_1 = __nccwpck_require__(4816); +const reflection_info_1 = __nccwpck_require__(7910); +const assert_1 = __nccwpck_require__(8602); +const pb_long_1 = __nccwpck_require__(1753); /** - * Localstorage attempts to return the localstorage. - * - * This is necessary because safari throws - * when a user disables cookies/localstorage - * and you attempt to access it. + * Writes proto3 messages in binary format using reflection information. * - * @return {LocalStorage} - * @api private + * https://developers.google.com/protocol-buffers/docs/encoding */ - -function localstorage() { - try { - // TVMLKit (Apple TV JS Runtime) does not have a window object, just localStorage in the global context - // The Browser also has localStorage in the global context. - return localStorage; - } catch (error) { - // Swallow - // XXX (@Qix-) should we be logging these? - } +class ReflectionBinaryWriter { + constructor(info) { + this.info = info; + } + prepare() { + if (!this.fields) { + const fieldsInput = this.info.fields ? this.info.fields.concat() : []; + this.fields = fieldsInput.sort((a, b) => a.no - b.no); + } + } + /** + * Writes the message to binary format. + */ + write(message, writer, options) { + this.prepare(); + for (const field of this.fields) { + let value, // this will be our field value, whether it is member of a oneof or not + emitDefault, // whether we emit the default value (only true for oneof members) + repeated = field.repeat, localName = field.localName; + // handle oneof ADT + if (field.oneof) { + const group = message[field.oneof]; + if (group.oneofKind !== localName) + continue; // if field is not selected, skip + value = group[localName]; + emitDefault = true; + } + else { + value = message[localName]; + emitDefault = false; + } + // we have handled oneof above. we just have to honor `emitDefault`. + switch (field.kind) { + case "scalar": + case "enum": + let T = field.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.T; + if (repeated) { + assert_1.assert(Array.isArray(value)); + if (repeated == reflection_info_1.RepeatType.PACKED) + this.packed(writer, T, field.no, value); + else + for (const item of value) + this.scalar(writer, T, field.no, item, true); + } + else if (value === undefined) + assert_1.assert(field.opt); + else + this.scalar(writer, T, field.no, value, emitDefault || field.opt); + break; + case "message": + if (repeated) { + assert_1.assert(Array.isArray(value)); + for (const item of value) + this.message(writer, options, field.T(), field.no, item); + } + else { + this.message(writer, options, field.T(), field.no, value); + } + break; + case "map": + assert_1.assert(typeof value == 'object' && value !== null); + for (const [key, val] of Object.entries(value)) + this.mapEntry(writer, options, field, key, val); + break; + } + } + let u = options.writeUnknownFields; + if (u !== false) + (u === true ? binary_format_contract_1.UnknownFieldHandler.onWrite : u)(this.info.typeName, message, writer); + } + mapEntry(writer, options, field, key, value) { + writer.tag(field.no, binary_format_contract_1.WireType.LengthDelimited); + writer.fork(); + // javascript only allows number or string for object properties + // we convert from our representation to the protobuf type + let keyValue = key; + switch (field.K) { + case reflection_info_1.ScalarType.INT32: + case reflection_info_1.ScalarType.FIXED32: + case reflection_info_1.ScalarType.UINT32: + case reflection_info_1.ScalarType.SFIXED32: + case reflection_info_1.ScalarType.SINT32: + keyValue = Number.parseInt(key); + break; + case reflection_info_1.ScalarType.BOOL: + assert_1.assert(key == 'true' || key == 'false'); + keyValue = key == 'true'; + break; + } + // write key, expecting key field number = 1 + this.scalar(writer, field.K, 1, keyValue, true); + // write value, expecting value field number = 2 + switch (field.V.kind) { + case 'scalar': + this.scalar(writer, field.V.T, 2, value, true); + break; + case 'enum': + this.scalar(writer, reflection_info_1.ScalarType.INT32, 2, value, true); + break; + case 'message': + this.message(writer, options, field.V.T(), 2, value); + break; + } + writer.join(); + } + message(writer, options, handler, fieldNo, value) { + if (value === undefined) + return; + handler.internalBinaryWrite(value, writer.tag(fieldNo, binary_format_contract_1.WireType.LengthDelimited).fork(), options); + writer.join(); + } + /** + * Write a single scalar value. + */ + scalar(writer, type, fieldNo, value, emitDefault) { + let [wireType, method, isDefault] = this.scalarInfo(type, value); + if (!isDefault || emitDefault) { + writer.tag(fieldNo, wireType); + writer[method](value); + } + } + /** + * Write an array of scalar values in packed format. + */ + packed(writer, type, fieldNo, value) { + if (!value.length) + return; + assert_1.assert(type !== reflection_info_1.ScalarType.BYTES && type !== reflection_info_1.ScalarType.STRING); + // write tag + writer.tag(fieldNo, binary_format_contract_1.WireType.LengthDelimited); + // begin length-delimited + writer.fork(); + // write values without tags + let [, method,] = this.scalarInfo(type); + for (let i = 0; i < value.length; i++) + writer[method](value[i]); + // end length delimited + writer.join(); + } + /** + * Get information for writing a scalar value. + * + * Returns tuple: + * [0]: appropriate WireType + * [1]: name of the appropriate method of IBinaryWriter + * [2]: whether the given value is a default value + * + * If argument `value` is omitted, [2] is always false. + */ + scalarInfo(type, value) { + let t = binary_format_contract_1.WireType.Varint; + let m; + let i = value === undefined; + let d = value === 0; + switch (type) { + case reflection_info_1.ScalarType.INT32: + m = "int32"; + break; + case reflection_info_1.ScalarType.STRING: + d = i || !value.length; + t = binary_format_contract_1.WireType.LengthDelimited; + m = "string"; + break; + case reflection_info_1.ScalarType.BOOL: + d = value === false; + m = "bool"; + break; + case reflection_info_1.ScalarType.UINT32: + m = "uint32"; + break; + case reflection_info_1.ScalarType.DOUBLE: + t = binary_format_contract_1.WireType.Bit64; + m = "double"; + break; + case reflection_info_1.ScalarType.FLOAT: + t = binary_format_contract_1.WireType.Bit32; + m = "float"; + break; + case reflection_info_1.ScalarType.INT64: + d = i || pb_long_1.PbLong.from(value).isZero(); + m = "int64"; + break; + case reflection_info_1.ScalarType.UINT64: + d = i || pb_long_1.PbULong.from(value).isZero(); + m = "uint64"; + break; + case reflection_info_1.ScalarType.FIXED64: + d = i || pb_long_1.PbULong.from(value).isZero(); + t = binary_format_contract_1.WireType.Bit64; + m = "fixed64"; + break; + case reflection_info_1.ScalarType.BYTES: + d = i || !value.byteLength; + t = binary_format_contract_1.WireType.LengthDelimited; + m = "bytes"; + break; + case reflection_info_1.ScalarType.FIXED32: + t = binary_format_contract_1.WireType.Bit32; + m = "fixed32"; + break; + case reflection_info_1.ScalarType.SFIXED32: + t = binary_format_contract_1.WireType.Bit32; + m = "sfixed32"; + break; + case reflection_info_1.ScalarType.SFIXED64: + d = i || pb_long_1.PbLong.from(value).isZero(); + t = binary_format_contract_1.WireType.Bit64; + m = "sfixed64"; + break; + case reflection_info_1.ScalarType.SINT32: + m = "sint32"; + break; + case reflection_info_1.ScalarType.SINT64: + d = i || pb_long_1.PbLong.from(value).isZero(); + m = "sint64"; + break; + } + return [t, m, i || d]; + } } - -module.exports = __nccwpck_require__(897)(exports); - -const {formatters} = module.exports; - -/** - * Map %j to `JSON.stringify()`, since no Web Inspectors do that by default. - */ - -formatters.j = function (v) { - try { - return JSON.stringify(v); - } catch (error) { - return '[UnexpectedJSONParseError]: ' + error.message; - } -}; +exports.ReflectionBinaryWriter = ReflectionBinaryWriter; /***/ }), -/***/ 897: -/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { +/***/ 9946: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.containsMessageType = void 0; +const message_type_contract_1 = __nccwpck_require__(3785); /** - * This is the common logic for both the Node.js and web browser - * implementations of `debug()`. + * Check if the provided object is a proto message. + * + * Note that this is an experimental feature - it is here to stay, but + * implementation details may change without notice. */ +function containsMessageType(msg) { + return msg[message_type_contract_1.MESSAGE_TYPE] != null; +} +exports.containsMessageType = containsMessageType; -function setup(env) { - createDebug.debug = createDebug; - createDebug.default = createDebug; - createDebug.coerce = coerce; - createDebug.disable = disable; - createDebug.enable = enable; - createDebug.enabled = enabled; - createDebug.humanize = __nccwpck_require__(744); - createDebug.destroy = destroy; - - Object.keys(env).forEach(key => { - createDebug[key] = env[key]; - }); - - /** - * The currently active debug mode names, and names to skip. - */ - - createDebug.names = []; - createDebug.skips = []; - - /** - * Map of special "%n" handling functions, for the debug "format" argument. - * - * Valid key names are a single, lower or upper-case letter, i.e. "n" and "N". - */ - createDebug.formatters = {}; - - /** - * Selects a color for a debug namespace - * @param {String} namespace The namespace string for the debug instance to be colored - * @return {Number|String} An ANSI color code for the given namespace - * @api private - */ - function selectColor(namespace) { - let hash = 0; - - for (let i = 0; i < namespace.length; i++) { - hash = ((hash << 5) - hash) + namespace.charCodeAt(i); - hash |= 0; // Convert to 32bit integer - } - - return createDebug.colors[Math.abs(hash) % createDebug.colors.length]; - } - createDebug.selectColor = selectColor; - - /** - * Create a debugger with the given `namespace`. - * - * @param {String} namespace - * @return {Function} - * @api public - */ - function createDebug(namespace) { - let prevTime; - let enableOverride = null; - let namespacesCache; - let enabledCache; - - function debug(...args) { - // Disabled? - if (!debug.enabled) { - return; - } - - const self = debug; - - // Set `diff` timestamp - const curr = Number(new Date()); - const ms = curr - (prevTime || curr); - self.diff = ms; - self.prev = prevTime; - self.curr = curr; - prevTime = curr; - - args[0] = createDebug.coerce(args[0]); - - if (typeof args[0] !== 'string') { - // Anything else let's inspect with %O - args.unshift('%O'); - } - - // Apply any `formatters` transformations - let index = 0; - args[0] = args[0].replace(/%([a-zA-Z%])/g, (match, format) => { - // If we encounter an escaped % then don't increase the array index - if (match === '%%') { - return '%'; - } - index++; - const formatter = createDebug.formatters[format]; - if (typeof formatter === 'function') { - const val = args[index]; - match = formatter.call(self, val); - - // Now we need to remove `args[index]` since it's inlined in the `format` - args.splice(index, 1); - index--; - } - return match; - }); - - // Apply env-specific formatting (colors, etc.) - createDebug.formatArgs.call(self, args); - - const logFn = self.log || createDebug.log; - logFn.apply(self, args); - } - - debug.namespace = namespace; - debug.useColors = createDebug.useColors(); - debug.color = createDebug.selectColor(namespace); - debug.extend = extend; - debug.destroy = createDebug.destroy; // XXX Temporary. Will be removed in the next major release. - - Object.defineProperty(debug, 'enabled', { - enumerable: true, - configurable: false, - get: () => { - if (enableOverride !== null) { - return enableOverride; - } - if (namespacesCache !== createDebug.namespaces) { - namespacesCache = createDebug.namespaces; - enabledCache = createDebug.enabled(namespace); - } - - return enabledCache; - }, - set: v => { - enableOverride = v; - } - }); - - // Env-specific initialization logic for debug instances - if (typeof createDebug.init === 'function') { - createDebug.init(debug); - } - - return debug; - } - - function extend(namespace, delimiter) { - const newDebug = createDebug(this.namespace + (typeof delimiter === 'undefined' ? ':' : delimiter) + namespace); - newDebug.log = this.log; - return newDebug; - } - - /** - * Enables a debug mode by namespaces. This can include modes - * separated by a colon and wildcards. - * - * @param {String} namespaces - * @api public - */ - function enable(namespaces) { - createDebug.save(namespaces); - createDebug.namespaces = namespaces; - - createDebug.names = []; - createDebug.skips = []; - - const split = (typeof namespaces === 'string' ? namespaces : '') - .trim() - .replace(/\s+/g, ',') - .split(',') - .filter(Boolean); - - for (const ns of split) { - if (ns[0] === '-') { - createDebug.skips.push(ns.slice(1)); - } else { - createDebug.names.push(ns); - } - } - } - - /** - * Checks if the given string matches a namespace template, honoring - * asterisks as wildcards. - * - * @param {String} search - * @param {String} template - * @return {Boolean} - */ - function matchesTemplate(search, template) { - let searchIndex = 0; - let templateIndex = 0; - let starIndex = -1; - let matchIndex = 0; - - while (searchIndex < search.length) { - if (templateIndex < template.length && (template[templateIndex] === search[searchIndex] || template[templateIndex] === '*')) { - // Match character or proceed with wildcard - if (template[templateIndex] === '*') { - starIndex = templateIndex; - matchIndex = searchIndex; - templateIndex++; // Skip the '*' - } else { - searchIndex++; - templateIndex++; - } - } else if (starIndex !== -1) { // eslint-disable-line no-negated-condition - // Backtrack to the last '*' and try to match more characters - templateIndex = starIndex + 1; - matchIndex++; - searchIndex = matchIndex; - } else { - return false; // No match - } - } - - // Handle trailing '*' in template - while (templateIndex < template.length && template[templateIndex] === '*') { - templateIndex++; - } - - return templateIndex === template.length; - } - - /** - * Disable debug output. - * - * @return {String} namespaces - * @api public - */ - function disable() { - const namespaces = [ - ...createDebug.names, - ...createDebug.skips.map(namespace => '-' + namespace) - ].join(','); - createDebug.enable(''); - return namespaces; - } - - /** - * Returns true if the given mode name is enabled, false otherwise. - * - * @param {String} name - * @return {Boolean} - * @api public - */ - function enabled(name) { - for (const skip of createDebug.skips) { - if (matchesTemplate(name, skip)) { - return false; - } - } - - for (const ns of createDebug.names) { - if (matchesTemplate(name, ns)) { - return true; - } - } - - return false; - } - /** - * Coerce `val`. - * - * @param {Mixed} val - * @return {Mixed} - * @api private - */ - function coerce(val) { - if (val instanceof Error) { - return val.stack || val.message; - } - return val; - } +/***/ }), - /** - * XXX DO NOT USE. This is a temporary stub function. - * XXX It WILL be removed in the next major release. - */ - function destroy() { - console.warn('Instance method `debug.destroy()` is deprecated and no longer does anything. It will be removed in the next major version of `debug`.'); - } +/***/ 5726: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { - createDebug.enable(createDebug.load()); - return createDebug; +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.reflectionCreate = void 0; +const reflection_scalar_default_1 = __nccwpck_require__(9526); +const message_type_contract_1 = __nccwpck_require__(3785); +/** + * Creates an instance of the generic message, using the field + * information. + */ +function reflectionCreate(type) { + /** + * This ternary can be removed in the next major version. + * The `Object.create()` code path utilizes a new `messagePrototype` + * property on the `IMessageType` which has this same `MESSAGE_TYPE` + * non-enumerable property on it. Doing it this way means that we only + * pay the cost of `Object.defineProperty()` once per `IMessageType` + * class of once per "instance". The falsy code path is only provided + * for backwards compatibility in cases where the runtime library is + * updated without also updating the generated code. + */ + const msg = type.messagePrototype + ? Object.create(type.messagePrototype) + : Object.defineProperty({}, message_type_contract_1.MESSAGE_TYPE, { value: type }); + for (let field of type.fields) { + let name = field.localName; + if (field.opt) + continue; + if (field.oneof) + msg[field.oneof] = { oneofKind: undefined }; + else if (field.repeat) + msg[name] = []; + else + switch (field.kind) { + case "scalar": + msg[name] = reflection_scalar_default_1.reflectionScalarDefault(field.T, field.L); + break; + case "enum": + // we require 0 to be default value for all enums + msg[name] = 0; + break; + case "map": + msg[name] = {}; + break; + } + } + return msg; } - -module.exports = setup; +exports.reflectionCreate = reflectionCreate; /***/ }), -/***/ 2830: -/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { +/***/ 4827: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.reflectionEquals = void 0; +const reflection_info_1 = __nccwpck_require__(7910); /** - * Detect Electron renderer / nwjs process, which is node, but we should - * treat as a browser. + * Determines whether two message of the same type have the same field values. + * Checks for deep equality, traversing repeated fields, oneof groups, maps + * and messages recursively. + * Will also return true if both messages are `undefined`. */ - -if (typeof process === 'undefined' || process.type === 'renderer' || process.browser === true || process.__nwjs) { - module.exports = __nccwpck_require__(6110); -} else { - module.exports = __nccwpck_require__(5108); +function reflectionEquals(info, a, b) { + if (a === b) + return true; + if (!a || !b) + return false; + for (let field of info.fields) { + let localName = field.localName; + let val_a = field.oneof ? a[field.oneof][localName] : a[localName]; + let val_b = field.oneof ? b[field.oneof][localName] : b[localName]; + switch (field.kind) { + case "enum": + case "scalar": + let t = field.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.T; + if (!(field.repeat + ? repeatedPrimitiveEq(t, val_a, val_b) + : primitiveEq(t, val_a, val_b))) + return false; + break; + case "map": + if (!(field.V.kind == "message" + ? repeatedMsgEq(field.V.T(), objectValues(val_a), objectValues(val_b)) + : repeatedPrimitiveEq(field.V.kind == "enum" ? reflection_info_1.ScalarType.INT32 : field.V.T, objectValues(val_a), objectValues(val_b)))) + return false; + break; + case "message": + let T = field.T(); + if (!(field.repeat + ? repeatedMsgEq(T, val_a, val_b) + : T.equals(val_a, val_b))) + return false; + break; + } + } + return true; +} +exports.reflectionEquals = reflectionEquals; +const objectValues = Object.values; +function primitiveEq(type, a, b) { + if (a === b) + return true; + if (type !== reflection_info_1.ScalarType.BYTES) + return false; + let ba = a; + let bb = b; + if (ba.length !== bb.length) + return false; + for (let i = 0; i < ba.length; i++) + if (ba[i] != bb[i]) + return false; + return true; +} +function repeatedPrimitiveEq(type, a, b) { + if (a.length !== b.length) + return false; + for (let i = 0; i < a.length; i++) + if (!primitiveEq(type, a[i], b[i])) + return false; + return true; +} +function repeatedMsgEq(type, a, b) { + if (a.length !== b.length) + return false; + for (let i = 0; i < a.length; i++) + if (!type.equals(a[i], b[i])) + return false; + return true; } /***/ }), -/***/ 5108: -/***/ ((module, exports, __nccwpck_require__) => { +/***/ 7910: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.readMessageOption = exports.readFieldOption = exports.readFieldOptions = exports.normalizeFieldInfo = exports.RepeatType = exports.LongType = exports.ScalarType = void 0; +const lower_camel_case_1 = __nccwpck_require__(4073); /** - * Module dependencies. + * Scalar value types. This is a subset of field types declared by protobuf + * enum google.protobuf.FieldDescriptorProto.Type The types GROUP and MESSAGE + * are omitted, but the numerical values are identical. */ - -const tty = __nccwpck_require__(2018); -const util = __nccwpck_require__(9023); - +var ScalarType; +(function (ScalarType) { + // 0 is reserved for errors. + // Order is weird for historical reasons. + ScalarType[ScalarType["DOUBLE"] = 1] = "DOUBLE"; + ScalarType[ScalarType["FLOAT"] = 2] = "FLOAT"; + // Not ZigZag encoded. Negative numbers take 10 bytes. Use TYPE_SINT64 if + // negative values are likely. + ScalarType[ScalarType["INT64"] = 3] = "INT64"; + ScalarType[ScalarType["UINT64"] = 4] = "UINT64"; + // Not ZigZag encoded. Negative numbers take 10 bytes. Use TYPE_SINT32 if + // negative values are likely. + ScalarType[ScalarType["INT32"] = 5] = "INT32"; + ScalarType[ScalarType["FIXED64"] = 6] = "FIXED64"; + ScalarType[ScalarType["FIXED32"] = 7] = "FIXED32"; + ScalarType[ScalarType["BOOL"] = 8] = "BOOL"; + ScalarType[ScalarType["STRING"] = 9] = "STRING"; + // Tag-delimited aggregate. + // Group type is deprecated and not supported in proto3. However, Proto3 + // implementations should still be able to parse the group wire format and + // treat group fields as unknown fields. + // TYPE_GROUP = 10, + // TYPE_MESSAGE = 11, // Length-delimited aggregate. + // New in version 2. + ScalarType[ScalarType["BYTES"] = 12] = "BYTES"; + ScalarType[ScalarType["UINT32"] = 13] = "UINT32"; + // TYPE_ENUM = 14, + ScalarType[ScalarType["SFIXED32"] = 15] = "SFIXED32"; + ScalarType[ScalarType["SFIXED64"] = 16] = "SFIXED64"; + ScalarType[ScalarType["SINT32"] = 17] = "SINT32"; + ScalarType[ScalarType["SINT64"] = 18] = "SINT64"; +})(ScalarType = exports.ScalarType || (exports.ScalarType = {})); +/** + * JavaScript representation of 64 bit integral types. Equivalent to the + * field option "jstype". + * + * By default, protobuf-ts represents 64 bit types as `bigint`. + * + * You can change the default behaviour by enabling the plugin parameter + * `long_type_string`, which will represent 64 bit types as `string`. + * + * Alternatively, you can change the behaviour for individual fields + * with the field option "jstype": + * + * ```protobuf + * uint64 my_field = 1 [jstype = JS_STRING]; + * uint64 other_field = 2 [jstype = JS_NUMBER]; + * ``` + */ +var LongType; +(function (LongType) { + /** + * Use JavaScript `bigint`. + * + * Field option `[jstype = JS_NORMAL]`. + */ + LongType[LongType["BIGINT"] = 0] = "BIGINT"; + /** + * Use JavaScript `string`. + * + * Field option `[jstype = JS_STRING]`. + */ + LongType[LongType["STRING"] = 1] = "STRING"; + /** + * Use JavaScript `number`. + * + * Large values will loose precision. + * + * Field option `[jstype = JS_NUMBER]`. + */ + LongType[LongType["NUMBER"] = 2] = "NUMBER"; +})(LongType = exports.LongType || (exports.LongType = {})); /** - * This is the Node.js implementation of `debug()`. + * Protobuf 2.1.0 introduced packed repeated fields. + * Setting the field option `[packed = true]` enables packing. + * + * In proto3, all repeated fields are packed by default. + * Setting the field option `[packed = false]` disables packing. + * + * Packed repeated fields are encoded with a single tag, + * then a length-delimiter, then the element values. + * + * Unpacked repeated fields are encoded with a tag and + * value for each element. + * + * `bytes` and `string` cannot be packed. */ - -exports.init = init; -exports.log = log; -exports.formatArgs = formatArgs; -exports.save = save; -exports.load = load; -exports.useColors = useColors; -exports.destroy = util.deprecate( - () => {}, - 'Instance method `debug.destroy()` is deprecated and no longer does anything. It will be removed in the next major version of `debug`.' -); - +var RepeatType; +(function (RepeatType) { + /** + * The field is not repeated. + */ + RepeatType[RepeatType["NO"] = 0] = "NO"; + /** + * The field is repeated and should be packed. + * Invalid for `bytes` and `string`, they cannot be packed. + */ + RepeatType[RepeatType["PACKED"] = 1] = "PACKED"; + /** + * The field is repeated but should not be packed. + * The only valid repeat type for repeated `bytes` and `string`. + */ + RepeatType[RepeatType["UNPACKED"] = 2] = "UNPACKED"; +})(RepeatType = exports.RepeatType || (exports.RepeatType = {})); /** - * Colors. + * Turns PartialFieldInfo into FieldInfo. */ - -exports.colors = [6, 2, 3, 4, 5, 1]; - -try { - // Optional dependency (as in, doesn't need to be installed, NOT like optionalDependencies in package.json) - // eslint-disable-next-line import/no-extraneous-dependencies - const supportsColor = __nccwpck_require__(1450); - - if (supportsColor && (supportsColor.stderr || supportsColor).level >= 2) { - exports.colors = [ - 20, - 21, - 26, - 27, - 32, - 33, - 38, - 39, - 40, - 41, - 42, - 43, - 44, - 45, - 56, - 57, - 62, - 63, - 68, - 69, - 74, - 75, - 76, - 77, - 78, - 79, - 80, - 81, - 92, - 93, - 98, - 99, - 112, - 113, - 128, - 129, - 134, - 135, - 148, - 149, - 160, - 161, - 162, - 163, - 164, - 165, - 166, - 167, - 168, - 169, - 170, - 171, - 172, - 173, - 178, - 179, - 184, - 185, - 196, - 197, - 198, - 199, - 200, - 201, - 202, - 203, - 204, - 205, - 206, - 207, - 208, - 209, - 214, - 215, - 220, - 221 - ]; - } -} catch (error) { - // Swallow - we only care if `supports-color` is available; it doesn't have to be. +function normalizeFieldInfo(field) { + var _a, _b, _c, _d; + field.localName = (_a = field.localName) !== null && _a !== void 0 ? _a : lower_camel_case_1.lowerCamelCase(field.name); + field.jsonName = (_b = field.jsonName) !== null && _b !== void 0 ? _b : lower_camel_case_1.lowerCamelCase(field.name); + field.repeat = (_c = field.repeat) !== null && _c !== void 0 ? _c : RepeatType.NO; + field.opt = (_d = field.opt) !== null && _d !== void 0 ? _d : (field.repeat ? false : field.oneof ? false : field.kind == "message"); + return field; } - +exports.normalizeFieldInfo = normalizeFieldInfo; /** - * Build up the default `inspectOpts` object from the environment variables. + * Read custom field options from a generated message type. * - * $ DEBUG_COLORS=no DEBUG_DEPTH=10 DEBUG_SHOW_HIDDEN=enabled node script.js + * @deprecated use readFieldOption() */ +function readFieldOptions(messageType, fieldName, extensionName, extensionType) { + var _a; + const options = (_a = messageType.fields.find((m, i) => m.localName == fieldName || i == fieldName)) === null || _a === void 0 ? void 0 : _a.options; + return options && options[extensionName] ? extensionType.fromJson(options[extensionName]) : undefined; +} +exports.readFieldOptions = readFieldOptions; +function readFieldOption(messageType, fieldName, extensionName, extensionType) { + var _a; + const options = (_a = messageType.fields.find((m, i) => m.localName == fieldName || i == fieldName)) === null || _a === void 0 ? void 0 : _a.options; + if (!options) { + return undefined; + } + const optionVal = options[extensionName]; + if (optionVal === undefined) { + return optionVal; + } + return extensionType ? extensionType.fromJson(optionVal) : optionVal; +} +exports.readFieldOption = readFieldOption; +function readMessageOption(messageType, extensionName, extensionType) { + const options = messageType.options; + const optionVal = options[extensionName]; + if (optionVal === undefined) { + return optionVal; + } + return extensionType ? extensionType.fromJson(optionVal) : optionVal; +} +exports.readMessageOption = readMessageOption; -exports.inspectOpts = Object.keys(process.env).filter(key => { - return /^debug_/i.test(key); -}).reduce((obj, key) => { - // Camel-case - const prop = key - .substring(6) - .toLowerCase() - .replace(/_([a-z])/g, (_, k) => { - return k.toUpperCase(); - }); - // Coerce string value into JS value - let val = process.env[key]; - if (/^(yes|on|true|enabled)$/i.test(val)) { - val = true; - } else if (/^(no|off|false|disabled)$/i.test(val)) { - val = false; - } else if (val === 'null') { - val = null; - } else { - val = Number(val); - } +/***/ }), - obj[prop] = val; - return obj; -}, {}); +/***/ 6790: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.ReflectionJsonReader = void 0; +const json_typings_1 = __nccwpck_require__(9999); +const base64_1 = __nccwpck_require__(6335); +const reflection_info_1 = __nccwpck_require__(7910); +const pb_long_1 = __nccwpck_require__(1753); +const assert_1 = __nccwpck_require__(8602); +const reflection_long_convert_1 = __nccwpck_require__(3402); /** - * Is stdout a TTY? Colored output is enabled when `true`. + * Reads proto3 messages in canonical JSON format using reflection information. + * + * https://developers.google.com/protocol-buffers/docs/proto3#json */ - -function useColors() { - return 'colors' in exports.inspectOpts ? - Boolean(exports.inspectOpts.colors) : - tty.isatty(process.stderr.fd); +class ReflectionJsonReader { + constructor(info) { + this.info = info; + } + prepare() { + var _a; + if (this.fMap === undefined) { + this.fMap = {}; + const fieldsInput = (_a = this.info.fields) !== null && _a !== void 0 ? _a : []; + for (const field of fieldsInput) { + this.fMap[field.name] = field; + this.fMap[field.jsonName] = field; + this.fMap[field.localName] = field; + } + } + } + // Cannot parse JSON for #. + assert(condition, fieldName, jsonValue) { + if (!condition) { + let what = json_typings_1.typeofJsonValue(jsonValue); + if (what == "number" || what == "boolean") + what = jsonValue.toString(); + throw new Error(`Cannot parse JSON ${what} for ${this.info.typeName}#${fieldName}`); + } + } + /** + * Reads a message from canonical JSON format into the target message. + * + * Repeated fields are appended. Map entries are added, overwriting + * existing keys. + * + * If a message field is already present, it will be merged with the + * new data. + */ + read(input, message, options) { + this.prepare(); + const oneofsHandled = []; + for (const [jsonKey, jsonValue] of Object.entries(input)) { + const field = this.fMap[jsonKey]; + if (!field) { + if (!options.ignoreUnknownFields) + throw new Error(`Found unknown field while reading ${this.info.typeName} from JSON format. JSON key: ${jsonKey}`); + continue; + } + const localName = field.localName; + // handle oneof ADT + let target; // this will be the target for the field value, whether it is member of a oneof or not + if (field.oneof) { + if (jsonValue === null && (field.kind !== 'enum' || field.T()[0] !== 'google.protobuf.NullValue')) { + continue; + } + // since json objects are unordered by specification, it is not possible to take the last of multiple oneofs + if (oneofsHandled.includes(field.oneof)) + throw new Error(`Multiple members of the oneof group "${field.oneof}" of ${this.info.typeName} are present in JSON.`); + oneofsHandled.push(field.oneof); + target = message[field.oneof] = { + oneofKind: localName + }; + } + else { + target = message; + } + // we have handled oneof above. we just have read the value into `target`. + if (field.kind == 'map') { + if (jsonValue === null) { + continue; + } + // check input + this.assert(json_typings_1.isJsonObject(jsonValue), field.name, jsonValue); + // our target to put map entries into + const fieldObj = target[localName]; + // read entries + for (const [jsonObjKey, jsonObjValue] of Object.entries(jsonValue)) { + this.assert(jsonObjValue !== null, field.name + " map value", null); + // read value + let val; + switch (field.V.kind) { + case "message": + val = field.V.T().internalJsonRead(jsonObjValue, options); + break; + case "enum": + val = this.enum(field.V.T(), jsonObjValue, field.name, options.ignoreUnknownFields); + if (val === false) + continue; + break; + case "scalar": + val = this.scalar(jsonObjValue, field.V.T, field.V.L, field.name); + break; + } + this.assert(val !== undefined, field.name + " map value", jsonObjValue); + // read key + let key = jsonObjKey; + if (field.K == reflection_info_1.ScalarType.BOOL) + key = key == "true" ? true : key == "false" ? false : key; + key = this.scalar(key, field.K, reflection_info_1.LongType.STRING, field.name).toString(); + fieldObj[key] = val; + } + } + else if (field.repeat) { + if (jsonValue === null) + continue; + // check input + this.assert(Array.isArray(jsonValue), field.name, jsonValue); + // our target to put array entries into + const fieldArr = target[localName]; + // read array entries + for (const jsonItem of jsonValue) { + this.assert(jsonItem !== null, field.name, null); + let val; + switch (field.kind) { + case "message": + val = field.T().internalJsonRead(jsonItem, options); + break; + case "enum": + val = this.enum(field.T(), jsonItem, field.name, options.ignoreUnknownFields); + if (val === false) + continue; + break; + case "scalar": + val = this.scalar(jsonItem, field.T, field.L, field.name); + break; + } + this.assert(val !== undefined, field.name, jsonValue); + fieldArr.push(val); + } + } + else { + switch (field.kind) { + case "message": + if (jsonValue === null && field.T().typeName != 'google.protobuf.Value') { + this.assert(field.oneof === undefined, field.name + " (oneof member)", null); + continue; + } + target[localName] = field.T().internalJsonRead(jsonValue, options, target[localName]); + break; + case "enum": + if (jsonValue === null) + continue; + let val = this.enum(field.T(), jsonValue, field.name, options.ignoreUnknownFields); + if (val === false) + continue; + target[localName] = val; + break; + case "scalar": + if (jsonValue === null) + continue; + target[localName] = this.scalar(jsonValue, field.T, field.L, field.name); + break; + } + } + } + } + /** + * Returns `false` for unrecognized string representations. + * + * google.protobuf.NullValue accepts only JSON `null` (or the old `"NULL_VALUE"`). + */ + enum(type, json, fieldName, ignoreUnknownFields) { + if (type[0] == 'google.protobuf.NullValue') + assert_1.assert(json === null || json === "NULL_VALUE", `Unable to parse field ${this.info.typeName}#${fieldName}, enum ${type[0]} only accepts null.`); + if (json === null) + // we require 0 to be default value for all enums + return 0; + switch (typeof json) { + case "number": + assert_1.assert(Number.isInteger(json), `Unable to parse field ${this.info.typeName}#${fieldName}, enum can only be integral number, got ${json}.`); + return json; + case "string": + let localEnumName = json; + if (type[2] && json.substring(0, type[2].length) === type[2]) + // lookup without the shared prefix + localEnumName = json.substring(type[2].length); + let enumNumber = type[1][localEnumName]; + if (typeof enumNumber === 'undefined' && ignoreUnknownFields) { + return false; + } + assert_1.assert(typeof enumNumber == "number", `Unable to parse field ${this.info.typeName}#${fieldName}, enum ${type[0]} has no value for "${json}".`); + return enumNumber; + } + assert_1.assert(false, `Unable to parse field ${this.info.typeName}#${fieldName}, cannot parse enum value from ${typeof json}".`); + } + scalar(json, type, longType, fieldName) { + let e; + try { + switch (type) { + // float, double: JSON value will be a number or one of the special string values "NaN", "Infinity", and "-Infinity". + // Either numbers or strings are accepted. Exponent notation is also accepted. + case reflection_info_1.ScalarType.DOUBLE: + case reflection_info_1.ScalarType.FLOAT: + if (json === null) + return .0; + if (json === "NaN") + return Number.NaN; + if (json === "Infinity") + return Number.POSITIVE_INFINITY; + if (json === "-Infinity") + return Number.NEGATIVE_INFINITY; + if (json === "") { + e = "empty string"; + break; + } + if (typeof json == "string" && json.trim().length !== json.length) { + e = "extra whitespace"; + break; + } + if (typeof json != "string" && typeof json != "number") { + break; + } + let float = Number(json); + if (Number.isNaN(float)) { + e = "not a number"; + break; + } + if (!Number.isFinite(float)) { + // infinity and -infinity are handled by string representation above, so this is an error + e = "too large or small"; + break; + } + if (type == reflection_info_1.ScalarType.FLOAT) + assert_1.assertFloat32(float); + return float; + // int32, fixed32, uint32: JSON value will be a decimal number. Either numbers or strings are accepted. + case reflection_info_1.ScalarType.INT32: + case reflection_info_1.ScalarType.FIXED32: + case reflection_info_1.ScalarType.SFIXED32: + case reflection_info_1.ScalarType.SINT32: + case reflection_info_1.ScalarType.UINT32: + if (json === null) + return 0; + let int32; + if (typeof json == "number") + int32 = json; + else if (json === "") + e = "empty string"; + else if (typeof json == "string") { + if (json.trim().length !== json.length) + e = "extra whitespace"; + else + int32 = Number(json); + } + if (int32 === undefined) + break; + if (type == reflection_info_1.ScalarType.UINT32) + assert_1.assertUInt32(int32); + else + assert_1.assertInt32(int32); + return int32; + // int64, fixed64, uint64: JSON value will be a decimal string. Either numbers or strings are accepted. + case reflection_info_1.ScalarType.INT64: + case reflection_info_1.ScalarType.SFIXED64: + case reflection_info_1.ScalarType.SINT64: + if (json === null) + return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.ZERO, longType); + if (typeof json != "number" && typeof json != "string") + break; + return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.from(json), longType); + case reflection_info_1.ScalarType.FIXED64: + case reflection_info_1.ScalarType.UINT64: + if (json === null) + return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.ZERO, longType); + if (typeof json != "number" && typeof json != "string") + break; + return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.from(json), longType); + // bool: + case reflection_info_1.ScalarType.BOOL: + if (json === null) + return false; + if (typeof json !== "boolean") + break; + return json; + // string: + case reflection_info_1.ScalarType.STRING: + if (json === null) + return ""; + if (typeof json !== "string") { + e = "extra whitespace"; + break; + } + try { + encodeURIComponent(json); + } + catch (e) { + e = "invalid UTF8"; + break; + } + return json; + // bytes: JSON value will be the data encoded as a string using standard base64 encoding with paddings. + // Either standard or URL-safe base64 encoding with/without paddings are accepted. + case reflection_info_1.ScalarType.BYTES: + if (json === null || json === "") + return new Uint8Array(0); + if (typeof json !== 'string') + break; + return base64_1.base64decode(json); + } + } + catch (error) { + e = error.message; + } + this.assert(false, fieldName + (e ? " - " + e : ""), json); + } } +exports.ReflectionJsonReader = ReflectionJsonReader; -/** - * Adds ANSI color escape codes if enabled. - * - * @api public - */ - -function formatArgs(args) { - const {namespace: name, useColors} = this; - - if (useColors) { - const c = this.color; - const colorCode = '\u001B[3' + (c < 8 ? c : '8;5;' + c); - const prefix = ` ${colorCode};1m${name} \u001B[0m`; - - args[0] = prefix + args[0].split('\n').join('\n' + prefix); - args.push(colorCode + 'm+' + module.exports.humanize(this.diff) + '\u001B[0m'); - } else { - args[0] = getDate() + name + ' ' + args[0]; - } -} -function getDate() { - if (exports.inspectOpts.hideDate) { - return ''; - } - return new Date().toISOString() + ' '; -} +/***/ }), -/** - * Invokes `util.formatWithOptions()` with the specified arguments and writes to stderr. - */ +/***/ 1094: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { -function log(...args) { - return process.stderr.write(util.formatWithOptions(exports.inspectOpts, ...args) + '\n'); -} +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.ReflectionJsonWriter = void 0; +const base64_1 = __nccwpck_require__(6335); +const pb_long_1 = __nccwpck_require__(1753); +const reflection_info_1 = __nccwpck_require__(7910); +const assert_1 = __nccwpck_require__(8602); /** - * Save `namespaces`. + * Writes proto3 messages in canonical JSON format using reflection + * information. * - * @param {String} namespaces - * @api private + * https://developers.google.com/protocol-buffers/docs/proto3#json */ -function save(namespaces) { - if (namespaces) { - process.env.DEBUG = namespaces; - } else { - // If you set a process.env field to null or undefined, it gets cast to the - // string 'null' or 'undefined'. Just delete instead. - delete process.env.DEBUG; - } +class ReflectionJsonWriter { + constructor(info) { + var _a; + this.fields = (_a = info.fields) !== null && _a !== void 0 ? _a : []; + } + /** + * Converts the message to a JSON object, based on the field descriptors. + */ + write(message, options) { + const json = {}, source = message; + for (const field of this.fields) { + // field is not part of a oneof, simply write as is + if (!field.oneof) { + let jsonValue = this.field(field, source[field.localName], options); + if (jsonValue !== undefined) + json[options.useProtoFieldName ? field.name : field.jsonName] = jsonValue; + continue; + } + // field is part of a oneof + const group = source[field.oneof]; + if (group.oneofKind !== field.localName) + continue; // not selected, skip + const opt = field.kind == 'scalar' || field.kind == 'enum' + ? Object.assign(Object.assign({}, options), { emitDefaultValues: true }) : options; + let jsonValue = this.field(field, group[field.localName], opt); + assert_1.assert(jsonValue !== undefined); + json[options.useProtoFieldName ? field.name : field.jsonName] = jsonValue; + } + return json; + } + field(field, value, options) { + let jsonValue = undefined; + if (field.kind == 'map') { + assert_1.assert(typeof value == "object" && value !== null); + const jsonObj = {}; + switch (field.V.kind) { + case "scalar": + for (const [entryKey, entryValue] of Object.entries(value)) { + const val = this.scalar(field.V.T, entryValue, field.name, false, true); + assert_1.assert(val !== undefined); + jsonObj[entryKey.toString()] = val; // JSON standard allows only (double quoted) string as property key + } + break; + case "message": + const messageType = field.V.T(); + for (const [entryKey, entryValue] of Object.entries(value)) { + const val = this.message(messageType, entryValue, field.name, options); + assert_1.assert(val !== undefined); + jsonObj[entryKey.toString()] = val; // JSON standard allows only (double quoted) string as property key + } + break; + case "enum": + const enumInfo = field.V.T(); + for (const [entryKey, entryValue] of Object.entries(value)) { + assert_1.assert(entryValue === undefined || typeof entryValue == 'number'); + const val = this.enum(enumInfo, entryValue, field.name, false, true, options.enumAsInteger); + assert_1.assert(val !== undefined); + jsonObj[entryKey.toString()] = val; // JSON standard allows only (double quoted) string as property key + } + break; + } + if (options.emitDefaultValues || Object.keys(jsonObj).length > 0) + jsonValue = jsonObj; + } + else if (field.repeat) { + assert_1.assert(Array.isArray(value)); + const jsonArr = []; + switch (field.kind) { + case "scalar": + for (let i = 0; i < value.length; i++) { + const val = this.scalar(field.T, value[i], field.name, field.opt, true); + assert_1.assert(val !== undefined); + jsonArr.push(val); + } + break; + case "enum": + const enumInfo = field.T(); + for (let i = 0; i < value.length; i++) { + assert_1.assert(value[i] === undefined || typeof value[i] == 'number'); + const val = this.enum(enumInfo, value[i], field.name, field.opt, true, options.enumAsInteger); + assert_1.assert(val !== undefined); + jsonArr.push(val); + } + break; + case "message": + const messageType = field.T(); + for (let i = 0; i < value.length; i++) { + const val = this.message(messageType, value[i], field.name, options); + assert_1.assert(val !== undefined); + jsonArr.push(val); + } + break; + } + // add converted array to json output + if (options.emitDefaultValues || jsonArr.length > 0 || options.emitDefaultValues) + jsonValue = jsonArr; + } + else { + switch (field.kind) { + case "scalar": + jsonValue = this.scalar(field.T, value, field.name, field.opt, options.emitDefaultValues); + break; + case "enum": + jsonValue = this.enum(field.T(), value, field.name, field.opt, options.emitDefaultValues, options.enumAsInteger); + break; + case "message": + jsonValue = this.message(field.T(), value, field.name, options); + break; + } + } + return jsonValue; + } + /** + * Returns `null` as the default for google.protobuf.NullValue. + */ + enum(type, value, fieldName, optional, emitDefaultValues, enumAsInteger) { + if (type[0] == 'google.protobuf.NullValue') + return !emitDefaultValues && !optional ? undefined : null; + if (value === undefined) { + assert_1.assert(optional); + return undefined; + } + if (value === 0 && !emitDefaultValues && !optional) + // we require 0 to be default value for all enums + return undefined; + assert_1.assert(typeof value == 'number'); + assert_1.assert(Number.isInteger(value)); + if (enumAsInteger || !type[1].hasOwnProperty(value)) + // if we don't now the enum value, just return the number + return value; + if (type[2]) + // restore the dropped prefix + return type[2] + type[1][value]; + return type[1][value]; + } + message(type, value, fieldName, options) { + if (value === undefined) + return options.emitDefaultValues ? null : undefined; + return type.internalJsonWrite(value, options); + } + scalar(type, value, fieldName, optional, emitDefaultValues) { + if (value === undefined) { + assert_1.assert(optional); + return undefined; + } + const ed = emitDefaultValues || optional; + // noinspection FallThroughInSwitchStatementJS + switch (type) { + // int32, fixed32, uint32: JSON value will be a decimal number. Either numbers or strings are accepted. + case reflection_info_1.ScalarType.INT32: + case reflection_info_1.ScalarType.SFIXED32: + case reflection_info_1.ScalarType.SINT32: + if (value === 0) + return ed ? 0 : undefined; + assert_1.assertInt32(value); + return value; + case reflection_info_1.ScalarType.FIXED32: + case reflection_info_1.ScalarType.UINT32: + if (value === 0) + return ed ? 0 : undefined; + assert_1.assertUInt32(value); + return value; + // float, double: JSON value will be a number or one of the special string values "NaN", "Infinity", and "-Infinity". + // Either numbers or strings are accepted. Exponent notation is also accepted. + case reflection_info_1.ScalarType.FLOAT: + assert_1.assertFloat32(value); + case reflection_info_1.ScalarType.DOUBLE: + if (value === 0) + return ed ? 0 : undefined; + assert_1.assert(typeof value == 'number'); + if (Number.isNaN(value)) + return 'NaN'; + if (value === Number.POSITIVE_INFINITY) + return 'Infinity'; + if (value === Number.NEGATIVE_INFINITY) + return '-Infinity'; + return value; + // string: + case reflection_info_1.ScalarType.STRING: + if (value === "") + return ed ? '' : undefined; + assert_1.assert(typeof value == 'string'); + return value; + // bool: + case reflection_info_1.ScalarType.BOOL: + if (value === false) + return ed ? false : undefined; + assert_1.assert(typeof value == 'boolean'); + return value; + // JSON value will be a decimal string. Either numbers or strings are accepted. + case reflection_info_1.ScalarType.UINT64: + case reflection_info_1.ScalarType.FIXED64: + assert_1.assert(typeof value == 'number' || typeof value == 'string' || typeof value == 'bigint'); + let ulong = pb_long_1.PbULong.from(value); + if (ulong.isZero() && !ed) + return undefined; + return ulong.toString(); + // JSON value will be a decimal string. Either numbers or strings are accepted. + case reflection_info_1.ScalarType.INT64: + case reflection_info_1.ScalarType.SFIXED64: + case reflection_info_1.ScalarType.SINT64: + assert_1.assert(typeof value == 'number' || typeof value == 'string' || typeof value == 'bigint'); + let long = pb_long_1.PbLong.from(value); + if (long.isZero() && !ed) + return undefined; + return long.toString(); + // bytes: JSON value will be the data encoded as a string using standard base64 encoding with paddings. + // Either standard or URL-safe base64 encoding with/without paddings are accepted. + case reflection_info_1.ScalarType.BYTES: + assert_1.assert(value instanceof Uint8Array); + if (!value.byteLength) + return ed ? "" : undefined; + return base64_1.base64encode(value); + } + } } +exports.ReflectionJsonWriter = ReflectionJsonWriter; -/** - * Load `namespaces`. - * - * @return {String} returns the previously persisted debug modes - * @api private - */ -function load() { - return process.env.DEBUG; -} +/***/ }), + +/***/ 3402: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.reflectionLongConvert = void 0; +const reflection_info_1 = __nccwpck_require__(7910); /** - * Init logic for `debug` instances. + * Utility method to convert a PbLong or PbUlong to a JavaScript + * representation during runtime. * - * Create a new `inspectOpts` object in case `useColors` is set - * differently for a particular `debug` instance. + * Works with generated field information, `undefined` is equivalent + * to `STRING`. */ - -function init(debug) { - debug.inspectOpts = {}; - - const keys = Object.keys(exports.inspectOpts); - for (let i = 0; i < keys.length; i++) { - debug.inspectOpts[keys[i]] = exports.inspectOpts[keys[i]]; - } +function reflectionLongConvert(long, type) { + switch (type) { + case reflection_info_1.LongType.BIGINT: + return long.toBigInt(); + case reflection_info_1.LongType.NUMBER: + return long.toNumber(); + default: + // case undefined: + // case LongType.STRING: + return long.toString(); + } } +exports.reflectionLongConvert = reflectionLongConvert; -module.exports = __nccwpck_require__(897)(exports); -const {formatters} = module.exports; +/***/ }), -/** - * Map %o to `util.inspect()`, all on a single line. - */ +/***/ 8044: +/***/ ((__unused_webpack_module, exports) => { -formatters.o = function (v) { - this.inspectOpts.colors = this.useColors; - return util.inspect(v, this.inspectOpts) - .split('\n') - .map(str => str.trim()) - .join(' '); -}; +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.reflectionMergePartial = void 0; /** - * Map %O to `util.inspect()`, allowing multiple lines if needed. + * Copy partial data into the target message. + * + * If a singular scalar or enum field is present in the source, it + * replaces the field in the target. + * + * If a singular message field is present in the source, it is merged + * with the target field by calling mergePartial() of the responsible + * message type. + * + * If a repeated field is present in the source, its values replace + * all values in the target array, removing extraneous values. + * Repeated message fields are copied, not merged. + * + * If a map field is present in the source, entries are added to the + * target map, replacing entries with the same key. Entries that only + * exist in the target remain. Entries with message values are copied, + * not merged. + * + * Note that this function differs from protobuf merge semantics, + * which appends repeated fields. */ - -formatters.O = function (v) { - this.inspectOpts.colors = this.useColors; - return util.inspect(v, this.inspectOpts); -}; - - -/***/ }), - -/***/ 3813: -/***/ ((module) => { - - - -module.exports = (flag, argv = process.argv) => { - const prefix = flag.startsWith('-') ? '' : (flag.length === 1 ? '-' : '--'); - const position = argv.indexOf(prefix + flag); - const terminatorPosition = argv.indexOf('--'); - return position !== -1 && (terminatorPosition === -1 || position < terminatorPosition); -}; +function reflectionMergePartial(info, target, source) { + let fieldValue, // the field value we are working with + input = source, output; // where we want our field value to go + for (let field of info.fields) { + let name = field.localName; + if (field.oneof) { + const group = input[field.oneof]; // this is the oneof`s group in the source + if ((group === null || group === void 0 ? void 0 : group.oneofKind) == undefined) { // the user is free to omit + continue; // we skip this field, and all other members too + } + fieldValue = group[name]; // our value comes from the the oneof group of the source + output = target[field.oneof]; // and our output is the oneof group of the target + output.oneofKind = group.oneofKind; // always update discriminator + if (fieldValue == undefined) { + delete output[name]; // remove any existing value + continue; // skip further work on field + } + } + else { + fieldValue = input[name]; // we are using the source directly + output = target; // we want our field value to go directly into the target + if (fieldValue == undefined) { + continue; // skip further work on field, existing value is used as is + } + } + if (field.repeat) + output[name].length = fieldValue.length; // resize target array to match source array + // now we just work with `fieldValue` and `output` to merge the value + switch (field.kind) { + case "scalar": + case "enum": + if (field.repeat) + for (let i = 0; i < fieldValue.length; i++) + output[name][i] = fieldValue[i]; // not a reference type + else + output[name] = fieldValue; // not a reference type + break; + case "message": + let T = field.T(); + if (field.repeat) + for (let i = 0; i < fieldValue.length; i++) + output[name][i] = T.create(fieldValue[i]); + else if (output[name] === undefined) + output[name] = T.create(fieldValue); // nothing to merge with + else + T.mergePartial(output[name], fieldValue); + break; + case "map": + // Map and repeated fields are simply overwritten, not appended or merged + switch (field.V.kind) { + case "scalar": + case "enum": + Object.assign(output[name], fieldValue); // elements are not reference types + break; + case "message": + let T = field.V.T(); + for (let k of Object.keys(fieldValue)) + output[name][k] = T.create(fieldValue[k]); + break; + } + break; + } + } +} +exports.reflectionMergePartial = reflectionMergePartial; /***/ }), -/***/ 1970: -/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { +/***/ 9526: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.reflectionScalarDefault = void 0; +const reflection_info_1 = __nccwpck_require__(7910); +const reflection_long_convert_1 = __nccwpck_require__(3402); +const pb_long_1 = __nccwpck_require__(1753); +/** + * Creates the default value for a scalar type. + */ +function reflectionScalarDefault(type, longType = reflection_info_1.LongType.STRING) { + switch (type) { + case reflection_info_1.ScalarType.BOOL: + return false; + case reflection_info_1.ScalarType.UINT64: + case reflection_info_1.ScalarType.FIXED64: + return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbULong.ZERO, longType); + case reflection_info_1.ScalarType.INT64: + case reflection_info_1.ScalarType.SFIXED64: + case reflection_info_1.ScalarType.SINT64: + return reflection_long_convert_1.reflectionLongConvert(pb_long_1.PbLong.ZERO, longType); + case reflection_info_1.ScalarType.DOUBLE: + case reflection_info_1.ScalarType.FLOAT: + return 0.0; + case reflection_info_1.ScalarType.BYTES: + return new Uint8Array(0); + case reflection_info_1.ScalarType.STRING: + return ""; + default: + // case ScalarType.INT32: + // case ScalarType.UINT32: + // case ScalarType.SINT32: + // case ScalarType.FIXED32: + // case ScalarType.SFIXED32: + return 0; + } +} +exports.reflectionScalarDefault = reflectionScalarDefault; + + +/***/ }), + +/***/ 5167: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { -var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { - if (k2 === undefined) k2 = k; - var desc = Object.getOwnPropertyDescriptor(m, k); - if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { - desc = { enumerable: true, get: function() { return m[k]; } }; - } - Object.defineProperty(o, k2, desc); -}) : (function(o, m, k, k2) { - if (k2 === undefined) k2 = k; - o[k2] = m[k]; -})); -var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { - Object.defineProperty(o, "default", { enumerable: true, value: v }); -}) : function(o, v) { - o["default"] = v; -}); -var __importStar = (this && this.__importStar) || function (mod) { - if (mod && mod.__esModule) return mod; - var result = {}; - if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); - __setModuleDefault(result, mod); - return result; -}; -var __importDefault = (this && this.__importDefault) || function (mod) { - return (mod && mod.__esModule) ? mod : { "default": mod }; -}; Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.HttpProxyAgent = void 0; -const net = __importStar(__nccwpck_require__(9278)); -const tls = __importStar(__nccwpck_require__(4756)); -const debug_1 = __importDefault(__nccwpck_require__(2830)); -const events_1 = __nccwpck_require__(4434); -const agent_base_1 = __nccwpck_require__(8894); -const url_1 = __nccwpck_require__(7016); -const debug = (0, debug_1.default)('http-proxy-agent'); -/** - * The `HttpProxyAgent` implements an HTTP Agent subclass that connects - * to the specified "HTTP proxy server" in order to proxy HTTP requests. - */ -class HttpProxyAgent extends agent_base_1.Agent { - constructor(proxy, opts) { - super(opts); - this.proxy = typeof proxy === 'string' ? new url_1.URL(proxy) : proxy; - this.proxyHeaders = opts?.headers ?? {}; - debug('Creating new HttpProxyAgent instance: %o', this.proxy.href); - // Trim off the brackets from IPv6 addresses - const host = (this.proxy.hostname || this.proxy.host).replace(/^\[|\]$/g, ''); - const port = this.proxy.port - ? parseInt(this.proxy.port, 10) - : this.proxy.protocol === 'https:' - ? 443 - : 80; - this.connectOpts = { - ...(opts ? omit(opts, 'headers') : null), - host, - port, - }; +exports.ReflectionTypeCheck = void 0; +const reflection_info_1 = __nccwpck_require__(7910); +const oneof_1 = __nccwpck_require__(8063); +// noinspection JSMethodCanBeStatic +class ReflectionTypeCheck { + constructor(info) { + var _a; + this.fields = (_a = info.fields) !== null && _a !== void 0 ? _a : []; } - addRequest(req, opts) { - req._header = null; - this.setRequestProps(req, opts); - // @ts-expect-error `addRequest()` isn't defined in `@types/node` - super.addRequest(req, opts); + prepare() { + if (this.data) + return; + const req = [], known = [], oneofs = []; + for (let field of this.fields) { + if (field.oneof) { + if (!oneofs.includes(field.oneof)) { + oneofs.push(field.oneof); + req.push(field.oneof); + known.push(field.oneof); + } + } + else { + known.push(field.localName); + switch (field.kind) { + case "scalar": + case "enum": + if (!field.opt || field.repeat) + req.push(field.localName); + break; + case "message": + if (field.repeat) + req.push(field.localName); + break; + case "map": + req.push(field.localName); + break; + } + } + } + this.data = { req, known, oneofs: Object.values(oneofs) }; } - setRequestProps(req, opts) { - const { proxy } = this; - const protocol = opts.secureEndpoint ? 'https:' : 'http:'; - const hostname = req.getHeader('host') || 'localhost'; - const base = `${protocol}//${hostname}`; - const url = new url_1.URL(req.path, base); - if (opts.port !== 80) { - url.port = String(opts.port); + /** + * Is the argument a valid message as specified by the + * reflection information? + * + * Checks all field types recursively. The `depth` + * specifies how deep into the structure the check will be. + * + * With a depth of 0, only the presence of fields + * is checked. + * + * With a depth of 1 or more, the field types are checked. + * + * With a depth of 2 or more, the members of map, repeated + * and message fields are checked. + * + * Message fields will be checked recursively with depth - 1. + * + * The number of map entries / repeated values being checked + * is < depth. + */ + is(message, depth, allowExcessProperties = false) { + if (depth < 0) + return true; + if (message === null || message === undefined || typeof message != 'object') + return false; + this.prepare(); + let keys = Object.keys(message), data = this.data; + // if a required field is missing in arg, this cannot be a T + if (keys.length < data.req.length || data.req.some(n => !keys.includes(n))) + return false; + if (!allowExcessProperties) { + // if the arg contains a key we dont know, this is not a literal T + if (keys.some(k => !data.known.includes(k))) + return false; } - // Change the `http.ClientRequest` instance's "path" field - // to the absolute path of the URL that will be requested. - req.path = String(url); - // Inject the `Proxy-Authorization` header if necessary. - const headers = typeof this.proxyHeaders === 'function' - ? this.proxyHeaders() - : { ...this.proxyHeaders }; - if (proxy.username || proxy.password) { - const auth = `${decodeURIComponent(proxy.username)}:${decodeURIComponent(proxy.password)}`; - headers['Proxy-Authorization'] = `Basic ${Buffer.from(auth).toString('base64')}`; + // "With a depth of 0, only the presence and absence of fields is checked." + // "With a depth of 1 or more, the field types are checked." + if (depth < 1) { + return true; } - if (!headers['Proxy-Connection']) { - headers['Proxy-Connection'] = this.keepAlive - ? 'Keep-Alive' - : 'close'; + // check oneof group + for (const name of data.oneofs) { + const group = message[name]; + if (!oneof_1.isOneofGroup(group)) + return false; + if (group.oneofKind === undefined) + continue; + const field = this.fields.find(f => f.localName === group.oneofKind); + if (!field) + return false; // we found no field, but have a kind, something is wrong + if (!this.field(group[group.oneofKind], field, allowExcessProperties, depth)) + return false; } - for (const name of Object.keys(headers)) { - const value = headers[name]; - if (value) { - req.setHeader(name, value); - } + // check types + for (const field of this.fields) { + if (field.oneof !== undefined) + continue; + if (!this.field(message[field.localName], field, allowExcessProperties, depth)) + return false; } + return true; } - async connect(req, opts) { - req._header = null; - if (!req.path.includes('://')) { - this.setRequestProps(req, opts); + field(arg, field, allowExcessProperties, depth) { + let repeated = field.repeat; + switch (field.kind) { + case "scalar": + if (arg === undefined) + return field.opt; + if (repeated) + return this.scalars(arg, field.T, depth, field.L); + return this.scalar(arg, field.T, field.L); + case "enum": + if (arg === undefined) + return field.opt; + if (repeated) + return this.scalars(arg, reflection_info_1.ScalarType.INT32, depth); + return this.scalar(arg, reflection_info_1.ScalarType.INT32); + case "message": + if (arg === undefined) + return true; + if (repeated) + return this.messages(arg, field.T(), allowExcessProperties, depth); + return this.message(arg, field.T(), allowExcessProperties, depth); + case "map": + if (typeof arg != 'object' || arg === null) + return false; + if (depth < 2) + return true; + if (!this.mapKeys(arg, field.K, depth)) + return false; + switch (field.V.kind) { + case "scalar": + return this.scalars(Object.values(arg), field.V.T, depth, field.V.L); + case "enum": + return this.scalars(Object.values(arg), reflection_info_1.ScalarType.INT32, depth); + case "message": + return this.messages(Object.values(arg), field.V.T(), allowExcessProperties, depth); + } + break; } - // At this point, the http ClientRequest's internal `_header` field - // might have already been set. If this is the case then we'll need - // to re-generate the string since we just changed the `req.path`. - let first; - let endOfHeaders; - debug('Regenerating stored HTTP header string for request'); - req._implicitHeader(); - if (req.outputData && req.outputData.length > 0) { - debug('Patching connection write() output buffer with updated header'); - first = req.outputData[0].data; - endOfHeaders = first.indexOf('\r\n\r\n') + 4; - req.outputData[0].data = - req._header + first.substring(endOfHeaders); - debug('Output buffer: %o', req.outputData[0].data); + return true; + } + message(arg, type, allowExcessProperties, depth) { + if (allowExcessProperties) { + return type.isAssignable(arg, depth); } - // Create a socket connection to the proxy server. - let socket; - if (this.proxy.protocol === 'https:') { - debug('Creating `tls.Socket`: %o', this.connectOpts); - socket = tls.connect(this.connectOpts); + return type.is(arg, depth); + } + messages(arg, type, allowExcessProperties, depth) { + if (!Array.isArray(arg)) + return false; + if (depth < 2) + return true; + if (allowExcessProperties) { + for (let i = 0; i < arg.length && i < depth; i++) + if (!type.isAssignable(arg[i], depth - 1)) + return false; } else { - debug('Creating `net.Socket`: %o', this.connectOpts); - socket = net.connect(this.connectOpts); + for (let i = 0; i < arg.length && i < depth; i++) + if (!type.is(arg[i], depth - 1)) + return false; } - // Wait for the socket's `connect` event, so that this `callback()` - // function throws instead of the `http` request machinery. This is - // important for i.e. `PacProxyAgent` which determines a failed proxy - // connection via the `callback()` function throwing. - await (0, events_1.once)(socket, 'connect'); - return socket; + return true; } -} -HttpProxyAgent.protocols = ['http', 'https']; -exports.HttpProxyAgent = HttpProxyAgent; -function omit(obj, ...keys) { - const ret = {}; - let key; - for (key in obj) { - if (!keys.includes(key)) { - ret[key] = obj[key]; + scalar(arg, type, longType) { + let argType = typeof arg; + switch (type) { + case reflection_info_1.ScalarType.UINT64: + case reflection_info_1.ScalarType.FIXED64: + case reflection_info_1.ScalarType.INT64: + case reflection_info_1.ScalarType.SFIXED64: + case reflection_info_1.ScalarType.SINT64: + switch (longType) { + case reflection_info_1.LongType.BIGINT: + return argType == "bigint"; + case reflection_info_1.LongType.NUMBER: + return argType == "number" && !isNaN(arg); + default: + return argType == "string"; + } + case reflection_info_1.ScalarType.BOOL: + return argType == 'boolean'; + case reflection_info_1.ScalarType.STRING: + return argType == 'string'; + case reflection_info_1.ScalarType.BYTES: + return arg instanceof Uint8Array; + case reflection_info_1.ScalarType.DOUBLE: + case reflection_info_1.ScalarType.FLOAT: + return argType == 'number' && !isNaN(arg); + default: + // case ScalarType.UINT32: + // case ScalarType.FIXED32: + // case ScalarType.INT32: + // case ScalarType.SINT32: + // case ScalarType.SFIXED32: + return argType == 'number' && Number.isInteger(arg); + } + } + scalars(arg, type, depth, longType) { + if (!Array.isArray(arg)) + return false; + if (depth < 2) + return true; + if (Array.isArray(arg)) + for (let i = 0; i < arg.length && i < depth; i++) + if (!this.scalar(arg[i], type, longType)) + return false; + return true; + } + mapKeys(map, type, depth) { + let keys = Object.keys(map); + switch (type) { + case reflection_info_1.ScalarType.INT32: + case reflection_info_1.ScalarType.FIXED32: + case reflection_info_1.ScalarType.SFIXED32: + case reflection_info_1.ScalarType.SINT32: + case reflection_info_1.ScalarType.UINT32: + return this.scalars(keys.slice(0, depth).map(k => parseInt(k)), type, depth); + case reflection_info_1.ScalarType.BOOL: + return this.scalars(keys.slice(0, depth).map(k => k == 'true' ? true : k == 'false' ? false : k), type, depth); + default: + return this.scalars(keys, type, depth, reflection_info_1.LongType.STRING); } } - return ret; } -//# sourceMappingURL=index.js.map +exports.ReflectionTypeCheck = ReflectionTypeCheck; + /***/ }), -/***/ 3669: +/***/ 5183: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { @@ -7354,1281 +6780,1559 @@ var __importStar = (this && this.__importStar) || function (mod) { __setModuleDefault(result, mod); return result; }; -var __importDefault = (this && this.__importDefault) || function (mod) { - return (mod && mod.__esModule) ? mod : { "default": mod }; -}; Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.HttpsProxyAgent = void 0; -const net = __importStar(__nccwpck_require__(9278)); -const tls = __importStar(__nccwpck_require__(4756)); -const assert_1 = __importDefault(__nccwpck_require__(2613)); -const debug_1 = __importDefault(__nccwpck_require__(2830)); -const agent_base_1 = __nccwpck_require__(8894); -const url_1 = __nccwpck_require__(7016); -const parse_proxy_response_1 = __nccwpck_require__(7943); -const debug = (0, debug_1.default)('https-proxy-agent'); -const setServernameFromNonIpHost = (options) => { - if (options.servername === undefined && - options.host && - !net.isIP(options.host)) { - return { - ...options, - servername: options.host, - }; +exports.req = exports.json = exports.toBuffer = void 0; +const http = __importStar(__nccwpck_require__(8611)); +const https = __importStar(__nccwpck_require__(5692)); +async function toBuffer(stream) { + let length = 0; + const chunks = []; + for await (const chunk of stream) { + length += chunk.length; + chunks.push(chunk); } - return options; -}; -/** - * The `HttpsProxyAgent` implements an HTTP Agent subclass that connects to - * the specified "HTTP(s) proxy server" in order to proxy HTTPS requests. - * - * Outgoing HTTP requests are first tunneled through the proxy server using the - * `CONNECT` HTTP request method to establish a connection to the proxy server, - * and then the proxy server connects to the destination target and issues the - * HTTP request from the proxy server. - * - * `https:` requests have their socket connection upgraded to TLS once - * the connection to the proxy server has been established. - */ -class HttpsProxyAgent extends agent_base_1.Agent { - constructor(proxy, opts) { - super(opts); - this.options = { path: undefined }; - this.proxy = typeof proxy === 'string' ? new url_1.URL(proxy) : proxy; - this.proxyHeaders = opts?.headers ?? {}; - debug('Creating new HttpsProxyAgent instance: %o', this.proxy.href); - // Trim off the brackets from IPv6 addresses - const host = (this.proxy.hostname || this.proxy.host).replace(/^\[|\]$/g, ''); - const port = this.proxy.port - ? parseInt(this.proxy.port, 10) - : this.proxy.protocol === 'https:' - ? 443 - : 80; - this.connectOpts = { - // Attempt to negotiate http/1.1 for proxy servers that support http/2 - ALPNProtocols: ['http/1.1'], - ...(opts ? omit(opts, 'headers') : null), - host, - port, - }; + return Buffer.concat(chunks, length); +} +exports.toBuffer = toBuffer; +// eslint-disable-next-line @typescript-eslint/no-explicit-any +async function json(stream) { + const buf = await toBuffer(stream); + const str = buf.toString('utf8'); + try { + return JSON.parse(str); } - /** - * Called when the node-core HTTP client library is creating a - * new HTTP request. - */ - async connect(req, opts) { - const { proxy } = this; - if (!opts.host) { - throw new TypeError('No "host" provided'); - } - // Create a socket connection to the proxy server. - let socket; - if (proxy.protocol === 'https:') { - debug('Creating `tls.Socket`: %o', this.connectOpts); - socket = tls.connect(setServernameFromNonIpHost(this.connectOpts)); - } - else { - debug('Creating `net.Socket`: %o', this.connectOpts); - socket = net.connect(this.connectOpts); - } - const headers = typeof this.proxyHeaders === 'function' - ? this.proxyHeaders() - : { ...this.proxyHeaders }; - const host = net.isIPv6(opts.host) ? `[${opts.host}]` : opts.host; - let payload = `CONNECT ${host}:${opts.port} HTTP/1.1\r\n`; - // Inject the `Proxy-Authorization` header if necessary. - if (proxy.username || proxy.password) { - const auth = `${decodeURIComponent(proxy.username)}:${decodeURIComponent(proxy.password)}`; - headers['Proxy-Authorization'] = `Basic ${Buffer.from(auth).toString('base64')}`; - } - headers.Host = `${host}:${opts.port}`; - if (!headers['Proxy-Connection']) { - headers['Proxy-Connection'] = this.keepAlive - ? 'Keep-Alive' - : 'close'; - } - for (const name of Object.keys(headers)) { - payload += `${name}: ${headers[name]}\r\n`; - } - const proxyResponsePromise = (0, parse_proxy_response_1.parseProxyResponse)(socket); - socket.write(`${payload}\r\n`); - const { connect, buffered } = await proxyResponsePromise; - req.emit('proxyConnect', connect); - this.emit('proxyConnect', connect, req); - if (connect.statusCode === 200) { - req.once('socket', resume); - if (opts.secureEndpoint) { - // The proxy is connecting to a TLS server, so upgrade - // this socket connection to a TLS connection. - debug('Upgrading socket connection to TLS'); - return tls.connect({ - ...omit(setServernameFromNonIpHost(opts), 'host', 'path', 'port'), - socket, - }); - } - return socket; - } - // Some other status code that's not 200... need to re-play the HTTP - // header "data" events onto the socket once the HTTP machinery is - // attached so that the node core `http` can parse and handle the - // error status code. - // Close the original socket, and a new "fake" socket is returned - // instead, so that the proxy doesn't get the HTTP request - // written to it (which may contain `Authorization` headers or other - // sensitive data). - // - // See: https://hackerone.com/reports/541502 - socket.destroy(); - const fakeSocket = new net.Socket({ writable: false }); - fakeSocket.readable = true; - // Need to wait for the "socket" event to re-play the "data" events. - req.once('socket', (s) => { - debug('Replaying proxy buffer for failed request'); - (0, assert_1.default)(s.listenerCount('data') > 0); - // Replay the "buffered" Buffer onto the fake `socket`, since at - // this point the HTTP module machinery has been hooked up for - // the user. - s.push(buffered); - s.push(null); - }); - return fakeSocket; + catch (_err) { + const err = _err; + err.message += ` (input: ${str})`; + throw err; } } -HttpsProxyAgent.protocols = ['http', 'https']; -exports.HttpsProxyAgent = HttpsProxyAgent; -function resume(socket) { - socket.resume(); -} -function omit(obj, ...keys) { - const ret = {}; - let key; - for (key in obj) { - if (!keys.includes(key)) { - ret[key] = obj[key]; - } - } - return ret; +exports.json = json; +function req(url, opts = {}) { + const href = typeof url === 'string' ? url : url.href; + const req = (href.startsWith('https:') ? https : http).request(url, opts); + const promise = new Promise((resolve, reject) => { + req + .once('response', resolve) + .once('error', reject) + .end(); + }); + req.then = promise.then.bind(promise); + return req; } -//# sourceMappingURL=index.js.map +exports.req = req; +//# sourceMappingURL=helpers.js.map /***/ }), -/***/ 7943: +/***/ 8894: /***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { -var __importDefault = (this && this.__importDefault) || function (mod) { - return (mod && mod.__esModule) ? mod : { "default": mod }; +var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { + if (k2 === undefined) k2 = k; + var desc = Object.getOwnPropertyDescriptor(m, k); + if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { + desc = { enumerable: true, get: function() { return m[k]; } }; + } + Object.defineProperty(o, k2, desc); +}) : (function(o, m, k, k2) { + if (k2 === undefined) k2 = k; + o[k2] = m[k]; +})); +var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { + Object.defineProperty(o, "default", { enumerable: true, value: v }); +}) : function(o, v) { + o["default"] = v; +}); +var __importStar = (this && this.__importStar) || function (mod) { + if (mod && mod.__esModule) return mod; + var result = {}; + if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); + __setModuleDefault(result, mod); + return result; +}; +var __exportStar = (this && this.__exportStar) || function(m, exports) { + for (var p in m) if (p !== "default" && !Object.prototype.hasOwnProperty.call(exports, p)) __createBinding(exports, m, p); }; Object.defineProperty(exports, "__esModule", ({ value: true })); -exports.parseProxyResponse = void 0; -const debug_1 = __importDefault(__nccwpck_require__(2830)); -const debug = (0, debug_1.default)('https-proxy-agent:parse-proxy-response'); -function parseProxyResponse(socket) { - return new Promise((resolve, reject) => { - // we need to buffer any HTTP traffic that happens with the proxy before we get - // the CONNECT response, so that if the response is anything other than an "200" - // response code, then we can re-play the "data" events on the socket once the - // HTTP parser is hooked up... - let buffersLength = 0; - const buffers = []; - function read() { - const b = socket.read(); - if (b) - ondata(b); - else - socket.once('readable', read); +exports.Agent = void 0; +const net = __importStar(__nccwpck_require__(9278)); +const http = __importStar(__nccwpck_require__(8611)); +const https_1 = __nccwpck_require__(5692); +__exportStar(__nccwpck_require__(5183), exports); +const INTERNAL = Symbol('AgentBaseInternalState'); +class Agent extends http.Agent { + constructor(opts) { + super(opts); + this[INTERNAL] = {}; + } + /** + * Determine whether this is an `http` or `https` request. + */ + isSecureEndpoint(options) { + if (options) { + // First check the `secureEndpoint` property explicitly, since this + // means that a parent `Agent` is "passing through" to this instance. + // eslint-disable-next-line @typescript-eslint/no-explicit-any + if (typeof options.secureEndpoint === 'boolean') { + return options.secureEndpoint; + } + // If no explicit `secure` endpoint, check if `protocol` property is + // set. This will usually be the case since using a full string URL + // or `URL` instance should be the most common usage. + if (typeof options.protocol === 'string') { + return options.protocol === 'https:'; + } } - function cleanup() { - socket.removeListener('end', onend); - socket.removeListener('error', onerror); - socket.removeListener('readable', read); + // Finally, if no `protocol` property was set, then fall back to + // checking the stack trace of the current call stack, and try to + // detect the "https" module. + const { stack } = new Error(); + if (typeof stack !== 'string') + return false; + return stack + .split('\n') + .some((l) => l.indexOf('(https.js:') !== -1 || + l.indexOf('node:https:') !== -1); + } + // In order to support async signatures in `connect()` and Node's native + // connection pooling in `http.Agent`, the array of sockets for each origin + // has to be updated synchronously. This is so the length of the array is + // accurate when `addRequest()` is next called. We achieve this by creating a + // fake socket and adding it to `sockets[origin]` and incrementing + // `totalSocketCount`. + incrementSockets(name) { + // If `maxSockets` and `maxTotalSockets` are both Infinity then there is no + // need to create a fake socket because Node.js native connection pooling + // will never be invoked. + if (this.maxSockets === Infinity && this.maxTotalSockets === Infinity) { + return null; } - function onend() { - cleanup(); - debug('onend'); - reject(new Error('Proxy connection ended before receiving CONNECT response')); + // All instances of `sockets` are expected TypeScript errors. The + // alternative is to add it as a private property of this class but that + // will break TypeScript subclassing. + if (!this.sockets[name]) { + // @ts-expect-error `sockets` is readonly in `@types/node` + this.sockets[name] = []; } - function onerror(err) { - cleanup(); - debug('onerror %o', err); - reject(err); + const fakeSocket = new net.Socket({ writable: false }); + this.sockets[name].push(fakeSocket); + // @ts-expect-error `totalSocketCount` isn't defined in `@types/node` + this.totalSocketCount++; + return fakeSocket; + } + decrementSockets(name, socket) { + if (!this.sockets[name] || socket === null) { + return; } - function ondata(b) { - buffers.push(b); - buffersLength += b.length; - const buffered = Buffer.concat(buffers, buffersLength); - const endOfHeaders = buffered.indexOf('\r\n\r\n'); - if (endOfHeaders === -1) { - // keep buffering - debug('have not received end of HTTP headers yet...'); - read(); - return; - } - const headerParts = buffered - .slice(0, endOfHeaders) - .toString('ascii') - .split('\r\n'); - const firstLine = headerParts.shift(); - if (!firstLine) { - socket.destroy(); - return reject(new Error('No header received from proxy CONNECT response')); + const sockets = this.sockets[name]; + const index = sockets.indexOf(socket); + if (index !== -1) { + sockets.splice(index, 1); + // @ts-expect-error `totalSocketCount` isn't defined in `@types/node` + this.totalSocketCount--; + if (sockets.length === 0) { + // @ts-expect-error `sockets` is readonly in `@types/node` + delete this.sockets[name]; } - const firstLineParts = firstLine.split(' '); - const statusCode = +firstLineParts[1]; - const statusText = firstLineParts.slice(2).join(' '); - const headers = {}; - for (const header of headerParts) { - if (!header) - continue; - const firstColon = header.indexOf(':'); - if (firstColon === -1) { - socket.destroy(); - return reject(new Error(`Invalid header from proxy CONNECT response: "${header}"`)); - } - const key = header.slice(0, firstColon).toLowerCase(); - const value = header.slice(firstColon + 1).trimStart(); - const current = headers[key]; - if (typeof current === 'string') { - headers[key] = [current, value]; - } - else if (Array.isArray(current)) { - current.push(value); + } + } + // In order to properly update the socket pool, we need to call `getName()` on + // the core `https.Agent` if it is a secureEndpoint. + getName(options) { + const secureEndpoint = this.isSecureEndpoint(options); + if (secureEndpoint) { + // @ts-expect-error `getName()` isn't defined in `@types/node` + return https_1.Agent.prototype.getName.call(this, options); + } + // @ts-expect-error `getName()` isn't defined in `@types/node` + return super.getName(options); + } + createSocket(req, options, cb) { + const connectOpts = { + ...options, + secureEndpoint: this.isSecureEndpoint(options), + }; + const name = this.getName(connectOpts); + const fakeSocket = this.incrementSockets(name); + Promise.resolve() + .then(() => this.connect(req, connectOpts)) + .then((socket) => { + this.decrementSockets(name, fakeSocket); + if (socket instanceof http.Agent) { + try { + // @ts-expect-error `addRequest()` isn't defined in `@types/node` + return socket.addRequest(req, connectOpts); } - else { - headers[key] = value; + catch (err) { + return cb(err); } } - debug('got proxy server response: %o %o', firstLine, headers); - cleanup(); - resolve({ - connect: { - statusCode, - statusText, - headers, - }, - buffered, - }); + this[INTERNAL].currentSocket = socket; + // @ts-expect-error `createSocket()` isn't defined in `@types/node` + super.createSocket(req, options, cb); + }, (err) => { + this.decrementSockets(name, fakeSocket); + cb(err); + }); + } + createConnection() { + const socket = this[INTERNAL].currentSocket; + this[INTERNAL].currentSocket = undefined; + if (!socket) { + throw new Error('No socket was returned in the `connect()` function'); } - socket.on('error', onerror); - socket.on('end', onend); - read(); - }); + return socket; + } + get defaultPort() { + return (this[INTERNAL].defaultPort ?? + (this.protocol === 'https:' ? 443 : 80)); + } + set defaultPort(v) { + if (this[INTERNAL]) { + this[INTERNAL].defaultPort = v; + } + } + get protocol() { + return (this[INTERNAL].protocol ?? + (this.isSecureEndpoint() ? 'https:' : 'http:')); + } + set protocol(v) { + if (this[INTERNAL]) { + this[INTERNAL].protocol = v; + } + } } -exports.parseProxyResponse = parseProxyResponse; -//# sourceMappingURL=parse-proxy-response.js.map +exports.Agent = Agent; +//# sourceMappingURL=index.js.map /***/ }), -/***/ 3772: -/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { - -module.exports = minimatch -minimatch.Minimatch = Minimatch - -var path = (function () { try { return __nccwpck_require__(6928) } catch (e) {}}()) || { - sep: '/' -} -minimatch.sep = path.sep +/***/ 6110: +/***/ ((module, exports, __nccwpck_require__) => { -var GLOBSTAR = minimatch.GLOBSTAR = Minimatch.GLOBSTAR = {} -var expand = __nccwpck_require__(4691) +/* eslint-env browser */ -var plTypes = { - '!': { open: '(?:(?!(?:', close: '))[^/]*?)'}, - '?': { open: '(?:', close: ')?' }, - '+': { open: '(?:', close: ')+' }, - '*': { open: '(?:', close: ')*' }, - '@': { open: '(?:', close: ')' } -} +/** + * This is the web browser implementation of `debug()`. + */ -// any single thing other than / -// don't need to escape / when using new RegExp() -var qmark = '[^/]' +exports.formatArgs = formatArgs; +exports.save = save; +exports.load = load; +exports.useColors = useColors; +exports.storage = localstorage(); +exports.destroy = (() => { + let warned = false; -// * => any number of characters -var star = qmark + '*?' + return () => { + if (!warned) { + warned = true; + console.warn('Instance method `debug.destroy()` is deprecated and no longer does anything. It will be removed in the next major version of `debug`.'); + } + }; +})(); -// ** when dots are allowed. Anything goes, except .. and . -// not (^ or / followed by one or two dots followed by $ or /), -// followed by anything, any number of times. -var twoStarDot = '(?:(?!(?:\\\/|^)(?:\\.{1,2})($|\\\/)).)*?' +/** + * Colors. + */ -// not a ^ or / followed by a dot, -// followed by anything, any number of times. -var twoStarNoDot = '(?:(?!(?:\\\/|^)\\.).)*?' +exports.colors = [ + '#0000CC', + '#0000FF', + '#0033CC', + '#0033FF', + '#0066CC', + '#0066FF', + '#0099CC', + '#0099FF', + '#00CC00', + '#00CC33', + '#00CC66', + '#00CC99', + '#00CCCC', + '#00CCFF', + '#3300CC', + '#3300FF', + '#3333CC', + '#3333FF', + '#3366CC', + '#3366FF', + '#3399CC', + '#3399FF', + '#33CC00', + '#33CC33', + '#33CC66', + '#33CC99', + '#33CCCC', + '#33CCFF', + '#6600CC', + '#6600FF', + '#6633CC', + '#6633FF', + '#66CC00', + '#66CC33', + '#9900CC', + '#9900FF', + '#9933CC', + '#9933FF', + '#99CC00', + '#99CC33', + '#CC0000', + '#CC0033', + '#CC0066', + '#CC0099', + '#CC00CC', + '#CC00FF', + '#CC3300', + '#CC3333', + '#CC3366', + '#CC3399', + '#CC33CC', + '#CC33FF', + '#CC6600', + '#CC6633', + '#CC9900', + '#CC9933', + '#CCCC00', + '#CCCC33', + '#FF0000', + '#FF0033', + '#FF0066', + '#FF0099', + '#FF00CC', + '#FF00FF', + '#FF3300', + '#FF3333', + '#FF3366', + '#FF3399', + '#FF33CC', + '#FF33FF', + '#FF6600', + '#FF6633', + '#FF9900', + '#FF9933', + '#FFCC00', + '#FFCC33' +]; -// characters that need to be escaped in RegExp. -var reSpecials = charSet('().*{}+?[]^$\\!') +/** + * Currently only WebKit-based Web Inspectors, Firefox >= v31, + * and the Firebug extension (any Firefox version) are known + * to support "%c" CSS customizations. + * + * TODO: add a `localStorage` variable to explicitly enable/disable colors + */ -// "abc" -> { a:true, b:true, c:true } -function charSet (s) { - return s.split('').reduce(function (set, c) { - set[c] = true - return set - }, {}) -} +// eslint-disable-next-line complexity +function useColors() { + // NB: In an Electron preload script, document will be defined but not fully + // initialized. Since we know we're in Chrome, we'll just detect this case + // explicitly + if (typeof window !== 'undefined' && window.process && (window.process.type === 'renderer' || window.process.__nwjs)) { + return true; + } -// normalizes slashes. -var slashSplit = /\/+/ + // Internet Explorer and Edge do not support colors. + if (typeof navigator !== 'undefined' && navigator.userAgent && navigator.userAgent.toLowerCase().match(/(edge|trident)\/(\d+)/)) { + return false; + } -minimatch.filter = filter -function filter (pattern, options) { - options = options || {} - return function (p, i, list) { - return minimatch(p, pattern, options) - } -} + let m; -function ext (a, b) { - b = b || {} - var t = {} - Object.keys(a).forEach(function (k) { - t[k] = a[k] - }) - Object.keys(b).forEach(function (k) { - t[k] = b[k] - }) - return t + // Is webkit? http://stackoverflow.com/a/16459606/376773 + // document is undefined in react-native: https://github.com/facebook/react-native/pull/1632 + // eslint-disable-next-line no-return-assign + return (typeof document !== 'undefined' && document.documentElement && document.documentElement.style && document.documentElement.style.WebkitAppearance) || + // Is firebug? http://stackoverflow.com/a/398120/376773 + (typeof window !== 'undefined' && window.console && (window.console.firebug || (window.console.exception && window.console.table))) || + // Is firefox >= v31? + // https://developer.mozilla.org/en-US/docs/Tools/Web_Console#Styling_messages + (typeof navigator !== 'undefined' && navigator.userAgent && (m = navigator.userAgent.toLowerCase().match(/firefox\/(\d+)/)) && parseInt(m[1], 10) >= 31) || + // Double check webkit in userAgent just in case we are in a worker + (typeof navigator !== 'undefined' && navigator.userAgent && navigator.userAgent.toLowerCase().match(/applewebkit\/(\d+)/)); } -minimatch.defaults = function (def) { - if (!def || typeof def !== 'object' || !Object.keys(def).length) { - return minimatch - } - - var orig = minimatch - - var m = function minimatch (p, pattern, options) { - return orig(p, pattern, ext(def, options)) - } - - m.Minimatch = function Minimatch (pattern, options) { - return new orig.Minimatch(pattern, ext(def, options)) - } - m.Minimatch.defaults = function defaults (options) { - return orig.defaults(ext(def, options)).Minimatch - } - - m.filter = function filter (pattern, options) { - return orig.filter(pattern, ext(def, options)) - } - - m.defaults = function defaults (options) { - return orig.defaults(ext(def, options)) - } - - m.makeRe = function makeRe (pattern, options) { - return orig.makeRe(pattern, ext(def, options)) - } - - m.braceExpand = function braceExpand (pattern, options) { - return orig.braceExpand(pattern, ext(def, options)) - } - - m.match = function (list, pattern, options) { - return orig.match(list, pattern, ext(def, options)) - } - - return m -} +/** + * Colorize log arguments if enabled. + * + * @api public + */ -Minimatch.defaults = function (def) { - return minimatch.defaults(def).Minimatch -} +function formatArgs(args) { + args[0] = (this.useColors ? '%c' : '') + + this.namespace + + (this.useColors ? ' %c' : ' ') + + args[0] + + (this.useColors ? '%c ' : ' ') + + '+' + module.exports.humanize(this.diff); -function minimatch (p, pattern, options) { - assertValidPattern(pattern) + if (!this.useColors) { + return; + } - if (!options) options = {} + const c = 'color: ' + this.color; + args.splice(1, 0, c, 'color: inherit'); - // shortcut: comments match nothing. - if (!options.nocomment && pattern.charAt(0) === '#') { - return false - } + // The final "%c" is somewhat tricky, because there could be other + // arguments passed either before or after the %c, so we need to + // figure out the correct index to insert the CSS into + let index = 0; + let lastC = 0; + args[0].replace(/%[a-zA-Z%]/g, match => { + if (match === '%%') { + return; + } + index++; + if (match === '%c') { + // We only are interested in the *last* %c + // (the user may have provided their own) + lastC = index; + } + }); - return new Minimatch(pattern, options).match(p) + args.splice(lastC, 0, c); } -function Minimatch (pattern, options) { - if (!(this instanceof Minimatch)) { - return new Minimatch(pattern, options) - } +/** + * Invokes `console.debug()` when available. + * No-op when `console.debug` is not a "function". + * If `console.debug` is not available, falls back + * to `console.log`. + * + * @api public + */ +exports.log = console.debug || console.log || (() => {}); - assertValidPattern(pattern) +/** + * Save `namespaces`. + * + * @param {String} namespaces + * @api private + */ +function save(namespaces) { + try { + if (namespaces) { + exports.storage.setItem('debug', namespaces); + } else { + exports.storage.removeItem('debug'); + } + } catch (error) { + // Swallow + // XXX (@Qix-) should we be logging these? + } +} - if (!options) options = {} +/** + * Load `namespaces`. + * + * @return {String} returns the previously persisted debug modes + * @api private + */ +function load() { + let r; + try { + r = exports.storage.getItem('debug') || exports.storage.getItem('DEBUG') ; + } catch (error) { + // Swallow + // XXX (@Qix-) should we be logging these? + } - pattern = pattern.trim() + // If debug isn't set in LS, and we're in Electron, try to load $DEBUG + if (!r && typeof process !== 'undefined' && 'env' in process) { + r = process.env.DEBUG; + } - // windows support: need to use /, not \ - if (!options.allowWindowsEscape && path.sep !== '/') { - pattern = pattern.split(path.sep).join('/') - } + return r; +} - this.options = options - this.maxGlobstarRecursion = options.maxGlobstarRecursion !== undefined - ? options.maxGlobstarRecursion : 200 - this.set = [] - this.pattern = pattern - this.regexp = null - this.negate = false - this.comment = false - this.empty = false - this.partial = !!options.partial +/** + * Localstorage attempts to return the localstorage. + * + * This is necessary because safari throws + * when a user disables cookies/localstorage + * and you attempt to access it. + * + * @return {LocalStorage} + * @api private + */ - // make the set of regexps etc. - this.make() +function localstorage() { + try { + // TVMLKit (Apple TV JS Runtime) does not have a window object, just localStorage in the global context + // The Browser also has localStorage in the global context. + return localStorage; + } catch (error) { + // Swallow + // XXX (@Qix-) should we be logging these? + } } -Minimatch.prototype.debug = function () {} +module.exports = __nccwpck_require__(897)(exports); -Minimatch.prototype.make = make -function make () { - var pattern = this.pattern - var options = this.options +const {formatters} = module.exports; - // empty patterns and comments match nothing. - if (!options.nocomment && pattern.charAt(0) === '#') { - this.comment = true - return - } - if (!pattern) { - this.empty = true - return - } +/** + * Map %j to `JSON.stringify()`, since no Web Inspectors do that by default. + */ - // step 1: figure out negation, etc. - this.parseNegate() +formatters.j = function (v) { + try { + return JSON.stringify(v); + } catch (error) { + return '[UnexpectedJSONParseError]: ' + error.message; + } +}; - // step 2: expand braces - var set = this.globSet = this.braceExpand() - if (options.debug) this.debug = function debug() { console.error.apply(console, arguments) } +/***/ }), - this.debug(this.pattern, set) +/***/ 897: +/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { - // step 3: now we have a set, so turn each one into a series of path-portion - // matching patterns. - // These will be regexps, except in the case of "**", which is - // set to the GLOBSTAR object for globstar behavior, - // and will not contain any / characters - set = this.globParts = set.map(function (s) { - return s.split(slashSplit) - }) - this.debug(this.pattern, set) +/** + * This is the common logic for both the Node.js and web browser + * implementations of `debug()`. + */ - // glob --> regexps - set = set.map(function (s, si, set) { - return s.map(this.parse, this) - }, this) +function setup(env) { + createDebug.debug = createDebug; + createDebug.default = createDebug; + createDebug.coerce = coerce; + createDebug.disable = disable; + createDebug.enable = enable; + createDebug.enabled = enabled; + createDebug.humanize = __nccwpck_require__(744); + createDebug.destroy = destroy; - this.debug(this.pattern, set) + Object.keys(env).forEach(key => { + createDebug[key] = env[key]; + }); - // filter out everything that didn't compile properly. - set = set.filter(function (s) { - return s.indexOf(false) === -1 - }) + /** + * The currently active debug mode names, and names to skip. + */ - this.debug(this.pattern, set) + createDebug.names = []; + createDebug.skips = []; - this.set = set -} + /** + * Map of special "%n" handling functions, for the debug "format" argument. + * + * Valid key names are a single, lower or upper-case letter, i.e. "n" and "N". + */ + createDebug.formatters = {}; -Minimatch.prototype.parseNegate = parseNegate -function parseNegate () { - var pattern = this.pattern - var negate = false - var options = this.options - var negateOffset = 0 + /** + * Selects a color for a debug namespace + * @param {String} namespace The namespace string for the debug instance to be colored + * @return {Number|String} An ANSI color code for the given namespace + * @api private + */ + function selectColor(namespace) { + let hash = 0; - if (options.nonegate) return + for (let i = 0; i < namespace.length; i++) { + hash = ((hash << 5) - hash) + namespace.charCodeAt(i); + hash |= 0; // Convert to 32bit integer + } - for (var i = 0, l = pattern.length - ; i < l && pattern.charAt(i) === '!' - ; i++) { - negate = !negate - negateOffset++ - } + return createDebug.colors[Math.abs(hash) % createDebug.colors.length]; + } + createDebug.selectColor = selectColor; - if (negateOffset) this.pattern = pattern.substr(negateOffset) - this.negate = negate -} + /** + * Create a debugger with the given `namespace`. + * + * @param {String} namespace + * @return {Function} + * @api public + */ + function createDebug(namespace) { + let prevTime; + let enableOverride = null; + let namespacesCache; + let enabledCache; -// Brace expansion: -// a{b,c}d -> abd acd -// a{b,}c -> abc ac -// a{0..3}d -> a0d a1d a2d a3d -// a{b,c{d,e}f}g -> abg acdfg acefg -// a{b,c}d{e,f}g -> abdeg acdeg abdeg abdfg -// -// Invalid sets are not expanded. -// a{2..}b -> a{2..}b -// a{b}c -> a{b}c -minimatch.braceExpand = function (pattern, options) { - return braceExpand(pattern, options) -} + function debug(...args) { + // Disabled? + if (!debug.enabled) { + return; + } -Minimatch.prototype.braceExpand = braceExpand + const self = debug; -function braceExpand (pattern, options) { - if (!options) { - if (this instanceof Minimatch) { - options = this.options - } else { - options = {} - } - } + // Set `diff` timestamp + const curr = Number(new Date()); + const ms = curr - (prevTime || curr); + self.diff = ms; + self.prev = prevTime; + self.curr = curr; + prevTime = curr; - pattern = typeof pattern === 'undefined' - ? this.pattern : pattern + args[0] = createDebug.coerce(args[0]); - assertValidPattern(pattern) + if (typeof args[0] !== 'string') { + // Anything else let's inspect with %O + args.unshift('%O'); + } - // Thanks to Yeting Li for - // improving this regexp to avoid a ReDOS vulnerability. - if (options.nobrace || !/\{(?:(?!\{).)*\}/.test(pattern)) { - // shortcut. no need to expand. - return [pattern] - } + // Apply any `formatters` transformations + let index = 0; + args[0] = args[0].replace(/%([a-zA-Z%])/g, (match, format) => { + // If we encounter an escaped % then don't increase the array index + if (match === '%%') { + return '%'; + } + index++; + const formatter = createDebug.formatters[format]; + if (typeof formatter === 'function') { + const val = args[index]; + match = formatter.call(self, val); - return expand(pattern) -} + // Now we need to remove `args[index]` since it's inlined in the `format` + args.splice(index, 1); + index--; + } + return match; + }); -var MAX_PATTERN_LENGTH = 1024 * 64 -var assertValidPattern = function (pattern) { - if (typeof pattern !== 'string') { - throw new TypeError('invalid pattern') - } + // Apply env-specific formatting (colors, etc.) + createDebug.formatArgs.call(self, args); - if (pattern.length > MAX_PATTERN_LENGTH) { - throw new TypeError('pattern is too long') - } -} + const logFn = self.log || createDebug.log; + logFn.apply(self, args); + } -// parse a component of the expanded set. -// At this point, no pattern may contain "/" in it -// so we're going to return a 2d array, where each entry is the full -// pattern, split on '/', and then turned into a regular expression. -// A regexp is made at the end which joins each array with an -// escaped /, and another full one which joins each regexp with |. -// -// Following the lead of Bash 4.1, note that "**" only has special meaning -// when it is the *only* thing in a path portion. Otherwise, any series -// of * is equivalent to a single *. Globstar behavior is enabled by -// default, and can be disabled by setting options.noglobstar. -Minimatch.prototype.parse = parse -var SUBPARSE = {} -function parse (pattern, isSub) { - assertValidPattern(pattern) + debug.namespace = namespace; + debug.useColors = createDebug.useColors(); + debug.color = createDebug.selectColor(namespace); + debug.extend = extend; + debug.destroy = createDebug.destroy; // XXX Temporary. Will be removed in the next major release. - var options = this.options + Object.defineProperty(debug, 'enabled', { + enumerable: true, + configurable: false, + get: () => { + if (enableOverride !== null) { + return enableOverride; + } + if (namespacesCache !== createDebug.namespaces) { + namespacesCache = createDebug.namespaces; + enabledCache = createDebug.enabled(namespace); + } - // shortcuts - if (pattern === '**') { - if (!options.noglobstar) - return GLOBSTAR - else - pattern = '*' - } - if (pattern === '') return '' + return enabledCache; + }, + set: v => { + enableOverride = v; + } + }); - var re = '' - var hasMagic = !!options.nocase - var escaping = false - // ? => one single character - var patternListStack = [] - var negativeLists = [] - var stateChar - var inClass = false - var reClassStart = -1 - var classStart = -1 - // . and .. never match anything that doesn't start with ., - // even when options.dot is set. - var patternStart = pattern.charAt(0) === '.' ? '' // anything - // not (start or / followed by . or .. followed by / or end) - : options.dot ? '(?!(?:^|\\\/)\\.{1,2}(?:$|\\\/))' - : '(?!\\.)' - var self = this + // Env-specific initialization logic for debug instances + if (typeof createDebug.init === 'function') { + createDebug.init(debug); + } - function clearStateChar () { - if (stateChar) { - // we had some state-tracking character - // that wasn't consumed by this pass. - switch (stateChar) { - case '*': - re += star - hasMagic = true - break - case '?': - re += qmark - hasMagic = true - break - default: - re += '\\' + stateChar - break - } - self.debug('clearStateChar %j %j', stateChar, re) - stateChar = false - } - } + return debug; + } - for (var i = 0, len = pattern.length, c - ; (i < len) && (c = pattern.charAt(i)) - ; i++) { - this.debug('%s\t%s %s %j', pattern, i, re, c) + function extend(namespace, delimiter) { + const newDebug = createDebug(this.namespace + (typeof delimiter === 'undefined' ? ':' : delimiter) + namespace); + newDebug.log = this.log; + return newDebug; + } - // skip over any that are escaped. - if (escaping && reSpecials[c]) { - re += '\\' + c - escaping = false - continue - } + /** + * Enables a debug mode by namespaces. This can include modes + * separated by a colon and wildcards. + * + * @param {String} namespaces + * @api public + */ + function enable(namespaces) { + createDebug.save(namespaces); + createDebug.namespaces = namespaces; - switch (c) { - /* istanbul ignore next */ - case '/': { - // completely not allowed, even escaped. - // Should already be path-split by now. - return false - } + createDebug.names = []; + createDebug.skips = []; - case '\\': - clearStateChar() - escaping = true - continue + const split = (typeof namespaces === 'string' ? namespaces : '') + .trim() + .replace(/\s+/g, ',') + .split(',') + .filter(Boolean); - // the various stateChar values - // for the "extglob" stuff. - case '?': - case '*': - case '+': - case '@': - case '!': - this.debug('%s\t%s %s %j <-- stateChar', pattern, i, re, c) + for (const ns of split) { + if (ns[0] === '-') { + createDebug.skips.push(ns.slice(1)); + } else { + createDebug.names.push(ns); + } + } + } + + /** + * Checks if the given string matches a namespace template, honoring + * asterisks as wildcards. + * + * @param {String} search + * @param {String} template + * @return {Boolean} + */ + function matchesTemplate(search, template) { + let searchIndex = 0; + let templateIndex = 0; + let starIndex = -1; + let matchIndex = 0; + + while (searchIndex < search.length) { + if (templateIndex < template.length && (template[templateIndex] === search[searchIndex] || template[templateIndex] === '*')) { + // Match character or proceed with wildcard + if (template[templateIndex] === '*') { + starIndex = templateIndex; + matchIndex = searchIndex; + templateIndex++; // Skip the '*' + } else { + searchIndex++; + templateIndex++; + } + } else if (starIndex !== -1) { // eslint-disable-line no-negated-condition + // Backtrack to the last '*' and try to match more characters + templateIndex = starIndex + 1; + matchIndex++; + searchIndex = matchIndex; + } else { + return false; // No match + } + } - // all of those are literals inside a class, except that - // the glob [!a] means [^a] in regexp - if (inClass) { - this.debug(' in class') - if (c === '!' && i === classStart + 1) c = '^' - re += c - continue - } + // Handle trailing '*' in template + while (templateIndex < template.length && template[templateIndex] === '*') { + templateIndex++; + } - // coalesce consecutive non-globstar * characters - if (c === '*' && stateChar === '*') continue + return templateIndex === template.length; + } - // if we already have a stateChar, then it means - // that there was something like ** or +? in there. - // Handle the stateChar, then proceed with this one. - self.debug('call clearStateChar %j', stateChar) - clearStateChar() - stateChar = c - // if extglob is disabled, then +(asdf|foo) isn't a thing. - // just clear the statechar *now*, rather than even diving into - // the patternList stuff. - if (options.noext) clearStateChar() - continue + /** + * Disable debug output. + * + * @return {String} namespaces + * @api public + */ + function disable() { + const namespaces = [ + ...createDebug.names, + ...createDebug.skips.map(namespace => '-' + namespace) + ].join(','); + createDebug.enable(''); + return namespaces; + } - case '(': - if (inClass) { - re += '(' - continue - } + /** + * Returns true if the given mode name is enabled, false otherwise. + * + * @param {String} name + * @return {Boolean} + * @api public + */ + function enabled(name) { + for (const skip of createDebug.skips) { + if (matchesTemplate(name, skip)) { + return false; + } + } - if (!stateChar) { - re += '\\(' - continue - } + for (const ns of createDebug.names) { + if (matchesTemplate(name, ns)) { + return true; + } + } - patternListStack.push({ - type: stateChar, - start: i - 1, - reStart: re.length, - open: plTypes[stateChar].open, - close: plTypes[stateChar].close - }) - // negation is (?:(?!js)[^/]*) - re += stateChar === '!' ? '(?:(?!(?:' : '(?:' - this.debug('plType %j %j', stateChar, re) - stateChar = false - continue + return false; + } - case ')': - if (inClass || !patternListStack.length) { - re += '\\)' - continue - } + /** + * Coerce `val`. + * + * @param {Mixed} val + * @return {Mixed} + * @api private + */ + function coerce(val) { + if (val instanceof Error) { + return val.stack || val.message; + } + return val; + } - clearStateChar() - hasMagic = true - var pl = patternListStack.pop() - // negation is (?:(?!js)[^/]*) - // The others are (?:) - re += pl.close - if (pl.type === '!') { - negativeLists.push(pl) - } - pl.reEnd = re.length - continue + /** + * XXX DO NOT USE. This is a temporary stub function. + * XXX It WILL be removed in the next major release. + */ + function destroy() { + console.warn('Instance method `debug.destroy()` is deprecated and no longer does anything. It will be removed in the next major version of `debug`.'); + } - case '|': - if (inClass || !patternListStack.length || escaping) { - re += '\\|' - escaping = false - continue - } + createDebug.enable(createDebug.load()); - clearStateChar() - re += '|' - continue + return createDebug; +} - // these are mostly the same in regexp and glob - case '[': - // swallow any state-tracking char before the [ - clearStateChar() +module.exports = setup; - if (inClass) { - re += '\\' + c - continue - } - inClass = true - classStart = i - reClassStart = re.length - re += c - continue +/***/ }), - case ']': - // a right bracket shall lose its special - // meaning and represent itself in - // a bracket expression if it occurs - // first in the list. -- POSIX.2 2.8.3.2 - if (i === classStart + 1 || !inClass) { - re += '\\' + c - escaping = false - continue - } +/***/ 2830: +/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { - // handle the case where we left a class open. - // "[z-a]" is valid, equivalent to "\[z-a\]" - // split where the last [ was, make sure we don't have - // an invalid re. if so, re-walk the contents of the - // would-be class to re-translate any characters that - // were passed through as-is - // TODO: It would probably be faster to determine this - // without a try/catch and a new RegExp, but it's tricky - // to do safely. For now, this is safe and works. - var cs = pattern.substring(classStart + 1, i) - try { - RegExp('[' + cs + ']') - } catch (er) { - // not a valid class! - var sp = this.parse(cs, SUBPARSE) - re = re.substr(0, reClassStart) + '\\[' + sp[0] + '\\]' - hasMagic = hasMagic || sp[1] - inClass = false - continue - } +/** + * Detect Electron renderer / nwjs process, which is node, but we should + * treat as a browser. + */ - // finish up the class. - hasMagic = true - inClass = false - re += c - continue +if (typeof process === 'undefined' || process.type === 'renderer' || process.browser === true || process.__nwjs) { + module.exports = __nccwpck_require__(6110); +} else { + module.exports = __nccwpck_require__(5108); +} - default: - // swallow any state char that wasn't consumed - clearStateChar() - if (escaping) { - // no need - escaping = false - } else if (reSpecials[c] - && !(c === '^' && inClass)) { - re += '\\' - } +/***/ }), - re += c +/***/ 5108: +/***/ ((module, exports, __nccwpck_require__) => { - } // switch - } // for +/** + * Module dependencies. + */ - // handle the case where we left a class open. - // "[abc" is valid, equivalent to "\[abc" - if (inClass) { - // split where the last [ was, and escape it - // this is a huge pita. We now have to re-walk - // the contents of the would-be class to re-translate - // any characters that were passed through as-is - cs = pattern.substr(classStart + 1) - sp = this.parse(cs, SUBPARSE) - re = re.substr(0, reClassStart) + '\\[' + sp[0] - hasMagic = hasMagic || sp[1] - } +const tty = __nccwpck_require__(2018); +const util = __nccwpck_require__(9023); - // handle the case where we had a +( thing at the *end* - // of the pattern. - // each pattern list stack adds 3 chars, and we need to go through - // and escape any | chars that were passed through as-is for the regexp. - // Go through and escape them, taking care not to double-escape any - // | chars that were already escaped. - for (pl = patternListStack.pop(); pl; pl = patternListStack.pop()) { - var tail = re.slice(pl.reStart + pl.open.length) - this.debug('setting tail', re, pl) - // maybe some even number of \, then maybe 1 \, followed by a | - tail = tail.replace(/((?:\\{2}){0,64})(\\?)\|/g, function (_, $1, $2) { - if (!$2) { - // the | isn't already escaped, so escape it. - $2 = '\\' - } +/** + * This is the Node.js implementation of `debug()`. + */ - // need to escape all those slashes *again*, without escaping the - // one that we need for escaping the | character. As it works out, - // escaping an even number of slashes can be done by simply repeating - // it exactly after itself. That's why this trick works. - // - // I am sorry that you have to see this. - return $1 + $1 + $2 + '|' - }) +exports.init = init; +exports.log = log; +exports.formatArgs = formatArgs; +exports.save = save; +exports.load = load; +exports.useColors = useColors; +exports.destroy = util.deprecate( + () => {}, + 'Instance method `debug.destroy()` is deprecated and no longer does anything. It will be removed in the next major version of `debug`.' +); - this.debug('tail=%j\n %s', tail, tail, pl, re) - var t = pl.type === '*' ? star - : pl.type === '?' ? qmark - : '\\' + pl.type +/** + * Colors. + */ - hasMagic = true - re = re.slice(0, pl.reStart) + t + '\\(' + tail - } +exports.colors = [6, 2, 3, 4, 5, 1]; - // handle trailing things that only matter at the very end. - clearStateChar() - if (escaping) { - // trailing \\ - re += '\\\\' - } +try { + // Optional dependency (as in, doesn't need to be installed, NOT like optionalDependencies in package.json) + // eslint-disable-next-line import/no-extraneous-dependencies + const supportsColor = __nccwpck_require__(1450); - // only need to apply the nodot start if the re starts with - // something that could conceivably capture a dot - var addPatternStart = false - switch (re.charAt(0)) { - case '[': case '.': case '(': addPatternStart = true - } + if (supportsColor && (supportsColor.stderr || supportsColor).level >= 2) { + exports.colors = [ + 20, + 21, + 26, + 27, + 32, + 33, + 38, + 39, + 40, + 41, + 42, + 43, + 44, + 45, + 56, + 57, + 62, + 63, + 68, + 69, + 74, + 75, + 76, + 77, + 78, + 79, + 80, + 81, + 92, + 93, + 98, + 99, + 112, + 113, + 128, + 129, + 134, + 135, + 148, + 149, + 160, + 161, + 162, + 163, + 164, + 165, + 166, + 167, + 168, + 169, + 170, + 171, + 172, + 173, + 178, + 179, + 184, + 185, + 196, + 197, + 198, + 199, + 200, + 201, + 202, + 203, + 204, + 205, + 206, + 207, + 208, + 209, + 214, + 215, + 220, + 221 + ]; + } +} catch (error) { + // Swallow - we only care if `supports-color` is available; it doesn't have to be. +} - // Hack to work around lack of negative lookbehind in JS - // A pattern like: *.!(x).!(y|z) needs to ensure that a name - // like 'a.xyz.yz' doesn't match. So, the first negative - // lookahead, has to look ALL the way ahead, to the end of - // the pattern. - for (var n = negativeLists.length - 1; n > -1; n--) { - var nl = negativeLists[n] +/** + * Build up the default `inspectOpts` object from the environment variables. + * + * $ DEBUG_COLORS=no DEBUG_DEPTH=10 DEBUG_SHOW_HIDDEN=enabled node script.js + */ - var nlBefore = re.slice(0, nl.reStart) - var nlFirst = re.slice(nl.reStart, nl.reEnd - 8) - var nlLast = re.slice(nl.reEnd - 8, nl.reEnd) - var nlAfter = re.slice(nl.reEnd) +exports.inspectOpts = Object.keys(process.env).filter(key => { + return /^debug_/i.test(key); +}).reduce((obj, key) => { + // Camel-case + const prop = key + .substring(6) + .toLowerCase() + .replace(/_([a-z])/g, (_, k) => { + return k.toUpperCase(); + }); - nlLast += nlAfter + // Coerce string value into JS value + let val = process.env[key]; + if (/^(yes|on|true|enabled)$/i.test(val)) { + val = true; + } else if (/^(no|off|false|disabled)$/i.test(val)) { + val = false; + } else if (val === 'null') { + val = null; + } else { + val = Number(val); + } - // Handle nested stuff like *(*.js|!(*.json)), where open parens - // mean that we should *not* include the ) in the bit that is considered - // "after" the negated section. - var openParensBefore = nlBefore.split('(').length - 1 - var cleanAfter = nlAfter - for (i = 0; i < openParensBefore; i++) { - cleanAfter = cleanAfter.replace(/\)[+*?]?/, '') - } - nlAfter = cleanAfter + obj[prop] = val; + return obj; +}, {}); - var dollar = '' - if (nlAfter === '' && isSub !== SUBPARSE) { - dollar = '$' - } - var newRe = nlBefore + nlFirst + nlAfter + dollar + nlLast - re = newRe - } +/** + * Is stdout a TTY? Colored output is enabled when `true`. + */ - // if the re is not "" at this point, then we need to make sure - // it doesn't match against an empty path part. - // Otherwise a/* will match a/, which it should not. - if (re !== '' && hasMagic) { - re = '(?=.)' + re - } +function useColors() { + return 'colors' in exports.inspectOpts ? + Boolean(exports.inspectOpts.colors) : + tty.isatty(process.stderr.fd); +} - if (addPatternStart) { - re = patternStart + re - } +/** + * Adds ANSI color escape codes if enabled. + * + * @api public + */ - // parsing just a piece of a larger pattern. - if (isSub === SUBPARSE) { - return [re, hasMagic] - } +function formatArgs(args) { + const {namespace: name, useColors} = this; - // skip the regexp for non-magical patterns - // unescape anything in it, though, so that it'll be - // an exact match against a file etc. - if (!hasMagic) { - return globUnescape(pattern) - } + if (useColors) { + const c = this.color; + const colorCode = '\u001B[3' + (c < 8 ? c : '8;5;' + c); + const prefix = ` ${colorCode};1m${name} \u001B[0m`; - var flags = options.nocase ? 'i' : '' - try { - var regExp = new RegExp('^' + re + '$', flags) - } catch (er) /* istanbul ignore next - should be impossible */ { - // If it was an invalid regular expression, then it can't match - // anything. This trick looks for a character after the end of - // the string, which is of course impossible, except in multi-line - // mode, but it's not a /m regex. - return new RegExp('$.') - } + args[0] = prefix + args[0].split('\n').join('\n' + prefix); + args.push(colorCode + 'm+' + module.exports.humanize(this.diff) + '\u001B[0m'); + } else { + args[0] = getDate() + name + ' ' + args[0]; + } +} - regExp._glob = pattern - regExp._src = re +function getDate() { + if (exports.inspectOpts.hideDate) { + return ''; + } + return new Date().toISOString() + ' '; +} - return regExp +/** + * Invokes `util.formatWithOptions()` with the specified arguments and writes to stderr. + */ + +function log(...args) { + return process.stderr.write(util.formatWithOptions(exports.inspectOpts, ...args) + '\n'); +} + +/** + * Save `namespaces`. + * + * @param {String} namespaces + * @api private + */ +function save(namespaces) { + if (namespaces) { + process.env.DEBUG = namespaces; + } else { + // If you set a process.env field to null or undefined, it gets cast to the + // string 'null' or 'undefined'. Just delete instead. + delete process.env.DEBUG; + } } -minimatch.makeRe = function (pattern, options) { - return new Minimatch(pattern, options || {}).makeRe() +/** + * Load `namespaces`. + * + * @return {String} returns the previously persisted debug modes + * @api private + */ + +function load() { + return process.env.DEBUG; } -Minimatch.prototype.makeRe = makeRe -function makeRe () { - if (this.regexp || this.regexp === false) return this.regexp +/** + * Init logic for `debug` instances. + * + * Create a new `inspectOpts` object in case `useColors` is set + * differently for a particular `debug` instance. + */ - // at this point, this.set is a 2d array of partial - // pattern strings, or "**". - // - // It's better to use .match(). This function shouldn't - // be used, really, but it's pretty convenient sometimes, - // when you just want to work with a regex. - var set = this.set +function init(debug) { + debug.inspectOpts = {}; - if (!set.length) { - this.regexp = false - return this.regexp - } - var options = this.options + const keys = Object.keys(exports.inspectOpts); + for (let i = 0; i < keys.length; i++) { + debug.inspectOpts[keys[i]] = exports.inspectOpts[keys[i]]; + } +} - var twoStar = options.noglobstar ? star - : options.dot ? twoStarDot - : twoStarNoDot - var flags = options.nocase ? 'i' : '' +module.exports = __nccwpck_require__(897)(exports); - var re = set.map(function (pattern) { - return pattern.map(function (p) { - return (p === GLOBSTAR) ? twoStar - : (typeof p === 'string') ? regExpEscape(p) - : p._src - }).join('\\\/') - }).join('|') +const {formatters} = module.exports; - // must match entire pattern - // ending in a * or ** will make it less strict. - re = '^(?:' + re + ')$' +/** + * Map %o to `util.inspect()`, all on a single line. + */ - // can match anything, as long as it's not this. - if (this.negate) re = '^(?!' + re + ').*$' +formatters.o = function (v) { + this.inspectOpts.colors = this.useColors; + return util.inspect(v, this.inspectOpts) + .split('\n') + .map(str => str.trim()) + .join(' '); +}; - try { - this.regexp = new RegExp(re, flags) - } catch (ex) /* istanbul ignore next - should be impossible */ { - this.regexp = false - } - return this.regexp -} +/** + * Map %O to `util.inspect()`, allowing multiple lines if needed. + */ -minimatch.match = function (list, pattern, options) { - options = options || {} - var mm = new Minimatch(pattern, options) - list = list.filter(function (f) { - return mm.match(f) - }) - if (mm.options.nonull && !list.length) { - list.push(pattern) - } - return list -} +formatters.O = function (v) { + this.inspectOpts.colors = this.useColors; + return util.inspect(v, this.inspectOpts); +}; -Minimatch.prototype.match = function match (f, partial) { - if (typeof partial === 'undefined') partial = this.partial - this.debug('match', f, this.pattern) - // short-circuit in the case of busted things. - // comments, etc. - if (this.comment) return false - if (this.empty) return f === '' - if (f === '/' && partial) return true +/***/ }), - var options = this.options +/***/ 3813: +/***/ ((module) => { - // windows: need to use /, not \ - if (path.sep !== '/') { - f = f.split(path.sep).join('/') - } - // treat the test path as a set of pathparts. - f = f.split(slashSplit) - this.debug(this.pattern, 'split', f) - // just ONE of the pattern sets in this.set needs to match - // in order for it to be valid. If negating, then just one - // match means that we have failed. - // Either way, return on the first hit. +module.exports = (flag, argv = process.argv) => { + const prefix = flag.startsWith('-') ? '' : (flag.length === 1 ? '-' : '--'); + const position = argv.indexOf(prefix + flag); + const terminatorPosition = argv.indexOf('--'); + return position !== -1 && (terminatorPosition === -1 || position < terminatorPosition); +}; - var set = this.set - this.debug(this.pattern, 'set', set) - // Find the basename of the path by looking for the last non-empty segment - var filename - var i - for (i = f.length - 1; i >= 0; i--) { - filename = f[i] - if (filename) break - } +/***/ }), - for (i = 0; i < set.length; i++) { - var pattern = set[i] - var file = f - if (options.matchBase && pattern.length === 1) { - file = [filename] +/***/ 1970: +/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { + + +var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { + if (k2 === undefined) k2 = k; + var desc = Object.getOwnPropertyDescriptor(m, k); + if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { + desc = { enumerable: true, get: function() { return m[k]; } }; } - var hit = this.matchOne(file, pattern, partial) - if (hit) { - if (options.flipNegate) return true - return !this.negate + Object.defineProperty(o, k2, desc); +}) : (function(o, m, k, k2) { + if (k2 === undefined) k2 = k; + o[k2] = m[k]; +})); +var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { + Object.defineProperty(o, "default", { enumerable: true, value: v }); +}) : function(o, v) { + o["default"] = v; +}); +var __importStar = (this && this.__importStar) || function (mod) { + if (mod && mod.__esModule) return mod; + var result = {}; + if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); + __setModuleDefault(result, mod); + return result; +}; +var __importDefault = (this && this.__importDefault) || function (mod) { + return (mod && mod.__esModule) ? mod : { "default": mod }; +}; +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.HttpProxyAgent = void 0; +const net = __importStar(__nccwpck_require__(9278)); +const tls = __importStar(__nccwpck_require__(4756)); +const debug_1 = __importDefault(__nccwpck_require__(2830)); +const events_1 = __nccwpck_require__(4434); +const agent_base_1 = __nccwpck_require__(8894); +const url_1 = __nccwpck_require__(7016); +const debug = (0, debug_1.default)('http-proxy-agent'); +/** + * The `HttpProxyAgent` implements an HTTP Agent subclass that connects + * to the specified "HTTP proxy server" in order to proxy HTTP requests. + */ +class HttpProxyAgent extends agent_base_1.Agent { + constructor(proxy, opts) { + super(opts); + this.proxy = typeof proxy === 'string' ? new url_1.URL(proxy) : proxy; + this.proxyHeaders = opts?.headers ?? {}; + debug('Creating new HttpProxyAgent instance: %o', this.proxy.href); + // Trim off the brackets from IPv6 addresses + const host = (this.proxy.hostname || this.proxy.host).replace(/^\[|\]$/g, ''); + const port = this.proxy.port + ? parseInt(this.proxy.port, 10) + : this.proxy.protocol === 'https:' + ? 443 + : 80; + this.connectOpts = { + ...(opts ? omit(opts, 'headers') : null), + host, + port, + }; + } + addRequest(req, opts) { + req._header = null; + this.setRequestProps(req, opts); + // @ts-expect-error `addRequest()` isn't defined in `@types/node` + super.addRequest(req, opts); + } + setRequestProps(req, opts) { + const { proxy } = this; + const protocol = opts.secureEndpoint ? 'https:' : 'http:'; + const hostname = req.getHeader('host') || 'localhost'; + const base = `${protocol}//${hostname}`; + const url = new url_1.URL(req.path, base); + if (opts.port !== 80) { + url.port = String(opts.port); + } + // Change the `http.ClientRequest` instance's "path" field + // to the absolute path of the URL that will be requested. + req.path = String(url); + // Inject the `Proxy-Authorization` header if necessary. + const headers = typeof this.proxyHeaders === 'function' + ? this.proxyHeaders() + : { ...this.proxyHeaders }; + if (proxy.username || proxy.password) { + const auth = `${decodeURIComponent(proxy.username)}:${decodeURIComponent(proxy.password)}`; + headers['Proxy-Authorization'] = `Basic ${Buffer.from(auth).toString('base64')}`; + } + if (!headers['Proxy-Connection']) { + headers['Proxy-Connection'] = this.keepAlive + ? 'Keep-Alive' + : 'close'; + } + for (const name of Object.keys(headers)) { + const value = headers[name]; + if (value) { + req.setHeader(name, value); + } + } + } + async connect(req, opts) { + req._header = null; + if (!req.path.includes('://')) { + this.setRequestProps(req, opts); + } + // At this point, the http ClientRequest's internal `_header` field + // might have already been set. If this is the case then we'll need + // to re-generate the string since we just changed the `req.path`. + let first; + let endOfHeaders; + debug('Regenerating stored HTTP header string for request'); + req._implicitHeader(); + if (req.outputData && req.outputData.length > 0) { + debug('Patching connection write() output buffer with updated header'); + first = req.outputData[0].data; + endOfHeaders = first.indexOf('\r\n\r\n') + 4; + req.outputData[0].data = + req._header + first.substring(endOfHeaders); + debug('Output buffer: %o', req.outputData[0].data); + } + // Create a socket connection to the proxy server. + let socket; + if (this.proxy.protocol === 'https:') { + debug('Creating `tls.Socket`: %o', this.connectOpts); + socket = tls.connect(this.connectOpts); + } + else { + debug('Creating `net.Socket`: %o', this.connectOpts); + socket = net.connect(this.connectOpts); + } + // Wait for the socket's `connect` event, so that this `callback()` + // function throws instead of the `http` request machinery. This is + // important for i.e. `PacProxyAgent` which determines a failed proxy + // connection via the `callback()` function throwing. + await (0, events_1.once)(socket, 'connect'); + return socket; } - } - - // didn't get any hits. this is success if it's a negative - // pattern, failure otherwise. - if (options.flipNegate) return false - return this.negate } - -// set partial to true to test if, for example, -// "/a/b" matches the start of "/*/b/*/d" -// Partial means, if you run out of file before you run -// out of pattern, then that's fine, as long as all -// the parts match. -Minimatch.prototype.matchOne = function (file, pattern, partial) { - if (pattern.indexOf(GLOBSTAR) !== -1) { - return this._matchGlobstar(file, pattern, partial, 0, 0) - } - return this._matchOne(file, pattern, partial, 0, 0) +HttpProxyAgent.protocols = ['http', 'https']; +exports.HttpProxyAgent = HttpProxyAgent; +function omit(obj, ...keys) { + const ret = {}; + let key; + for (key in obj) { + if (!keys.includes(key)) { + ret[key] = obj[key]; + } + } + return ret; } +//# sourceMappingURL=index.js.map -Minimatch.prototype._matchGlobstar = function (file, pattern, partial, fileIndex, patternIndex) { - var i - - // find first globstar from patternIndex - var firstgs = -1 - for (i = patternIndex; i < pattern.length; i++) { - if (pattern[i] === GLOBSTAR) { firstgs = i; break } - } +/***/ }), - // find last globstar - var lastgs = -1 - for (i = pattern.length - 1; i >= 0; i--) { - if (pattern[i] === GLOBSTAR) { lastgs = i; break } - } +/***/ 3669: +/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { - var head = pattern.slice(patternIndex, firstgs) - var body = partial ? pattern.slice(firstgs + 1) : pattern.slice(firstgs + 1, lastgs) - var tail = partial ? [] : pattern.slice(lastgs + 1) - // check the head - if (head.length) { - var fileHead = file.slice(fileIndex, fileIndex + head.length) - if (!this._matchOne(fileHead, head, partial, 0, 0)) { - return false +var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { + if (k2 === undefined) k2 = k; + var desc = Object.getOwnPropertyDescriptor(m, k); + if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { + desc = { enumerable: true, get: function() { return m[k]; } }; } - fileIndex += head.length - } - - // check the tail - var fileTailMatch = 0 - if (tail.length) { - if (tail.length + fileIndex > file.length) return false - - var tailStart = file.length - tail.length - if (this._matchOne(file, tail, partial, tailStart, 0)) { - fileTailMatch = tail.length - } else { - // affordance for stuff like a/**/* matching a/b/ - if (file[file.length - 1] !== '' || - fileIndex + tail.length === file.length) { - return false - } - tailStart-- - if (!this._matchOne(file, tail, partial, tailStart, 0)) { - return false - } - fileTailMatch = tail.length + 1 + Object.defineProperty(o, k2, desc); +}) : (function(o, m, k, k2) { + if (k2 === undefined) k2 = k; + o[k2] = m[k]; +})); +var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { + Object.defineProperty(o, "default", { enumerable: true, value: v }); +}) : function(o, v) { + o["default"] = v; +}); +var __importStar = (this && this.__importStar) || function (mod) { + if (mod && mod.__esModule) return mod; + var result = {}; + if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); + __setModuleDefault(result, mod); + return result; +}; +var __importDefault = (this && this.__importDefault) || function (mod) { + return (mod && mod.__esModule) ? mod : { "default": mod }; +}; +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.HttpsProxyAgent = void 0; +const net = __importStar(__nccwpck_require__(9278)); +const tls = __importStar(__nccwpck_require__(4756)); +const assert_1 = __importDefault(__nccwpck_require__(2613)); +const debug_1 = __importDefault(__nccwpck_require__(2830)); +const agent_base_1 = __nccwpck_require__(8894); +const url_1 = __nccwpck_require__(7016); +const parse_proxy_response_1 = __nccwpck_require__(7943); +const debug = (0, debug_1.default)('https-proxy-agent'); +const setServernameFromNonIpHost = (options) => { + if (options.servername === undefined && + options.host && + !net.isIP(options.host)) { + return { + ...options, + servername: options.host, + }; } - } - - // if body is empty (single ** between head and tail) - if (!body.length) { - var sawSome = !!fileTailMatch - for (i = fileIndex; i < file.length - fileTailMatch; i++) { - var f = String(file[i]) - sawSome = true - if (f === '.' || f === '..' || - (!this.options.dot && f.charAt(0) === '.')) { - return false - } + return options; +}; +/** + * The `HttpsProxyAgent` implements an HTTP Agent subclass that connects to + * the specified "HTTP(s) proxy server" in order to proxy HTTPS requests. + * + * Outgoing HTTP requests are first tunneled through the proxy server using the + * `CONNECT` HTTP request method to establish a connection to the proxy server, + * and then the proxy server connects to the destination target and issues the + * HTTP request from the proxy server. + * + * `https:` requests have their socket connection upgraded to TLS once + * the connection to the proxy server has been established. + */ +class HttpsProxyAgent extends agent_base_1.Agent { + constructor(proxy, opts) { + super(opts); + this.options = { path: undefined }; + this.proxy = typeof proxy === 'string' ? new url_1.URL(proxy) : proxy; + this.proxyHeaders = opts?.headers ?? {}; + debug('Creating new HttpsProxyAgent instance: %o', this.proxy.href); + // Trim off the brackets from IPv6 addresses + const host = (this.proxy.hostname || this.proxy.host).replace(/^\[|\]$/g, ''); + const port = this.proxy.port + ? parseInt(this.proxy.port, 10) + : this.proxy.protocol === 'https:' + ? 443 + : 80; + this.connectOpts = { + // Attempt to negotiate http/1.1 for proxy servers that support http/2 + ALPNProtocols: ['http/1.1'], + ...(opts ? omit(opts, 'headers') : null), + host, + port, + }; } - return partial || sawSome - } - - // split body into segments at each GLOBSTAR - var bodySegments = [[[], 0]] - var currentBody = bodySegments[0] - var nonGsParts = 0 - var nonGsPartsSums = [0] - for (var bi = 0; bi < body.length; bi++) { - var b = body[bi] - if (b === GLOBSTAR) { - nonGsPartsSums.push(nonGsParts) - currentBody = [[], 0] - bodySegments.push(currentBody) - } else { - currentBody[0].push(b) - nonGsParts++ + /** + * Called when the node-core HTTP client library is creating a + * new HTTP request. + */ + async connect(req, opts) { + const { proxy } = this; + if (!opts.host) { + throw new TypeError('No "host" provided'); + } + // Create a socket connection to the proxy server. + let socket; + if (proxy.protocol === 'https:') { + debug('Creating `tls.Socket`: %o', this.connectOpts); + socket = tls.connect(setServernameFromNonIpHost(this.connectOpts)); + } + else { + debug('Creating `net.Socket`: %o', this.connectOpts); + socket = net.connect(this.connectOpts); + } + const headers = typeof this.proxyHeaders === 'function' + ? this.proxyHeaders() + : { ...this.proxyHeaders }; + const host = net.isIPv6(opts.host) ? `[${opts.host}]` : opts.host; + let payload = `CONNECT ${host}:${opts.port} HTTP/1.1\r\n`; + // Inject the `Proxy-Authorization` header if necessary. + if (proxy.username || proxy.password) { + const auth = `${decodeURIComponent(proxy.username)}:${decodeURIComponent(proxy.password)}`; + headers['Proxy-Authorization'] = `Basic ${Buffer.from(auth).toString('base64')}`; + } + headers.Host = `${host}:${opts.port}`; + if (!headers['Proxy-Connection']) { + headers['Proxy-Connection'] = this.keepAlive + ? 'Keep-Alive' + : 'close'; + } + for (const name of Object.keys(headers)) { + payload += `${name}: ${headers[name]}\r\n`; + } + const proxyResponsePromise = (0, parse_proxy_response_1.parseProxyResponse)(socket); + socket.write(`${payload}\r\n`); + const { connect, buffered } = await proxyResponsePromise; + req.emit('proxyConnect', connect); + this.emit('proxyConnect', connect, req); + if (connect.statusCode === 200) { + req.once('socket', resume); + if (opts.secureEndpoint) { + // The proxy is connecting to a TLS server, so upgrade + // this socket connection to a TLS connection. + debug('Upgrading socket connection to TLS'); + return tls.connect({ + ...omit(setServernameFromNonIpHost(opts), 'host', 'path', 'port'), + socket, + }); + } + return socket; + } + // Some other status code that's not 200... need to re-play the HTTP + // header "data" events onto the socket once the HTTP machinery is + // attached so that the node core `http` can parse and handle the + // error status code. + // Close the original socket, and a new "fake" socket is returned + // instead, so that the proxy doesn't get the HTTP request + // written to it (which may contain `Authorization` headers or other + // sensitive data). + // + // See: https://hackerone.com/reports/541502 + socket.destroy(); + const fakeSocket = new net.Socket({ writable: false }); + fakeSocket.readable = true; + // Need to wait for the "socket" event to re-play the "data" events. + req.once('socket', (s) => { + debug('Replaying proxy buffer for failed request'); + (0, assert_1.default)(s.listenerCount('data') > 0); + // Replay the "buffered" Buffer onto the fake `socket`, since at + // this point the HTTP module machinery has been hooked up for + // the user. + s.push(buffered); + s.push(null); + }); + return fakeSocket; } - } - - var idx = bodySegments.length - 1 - var fileLength = file.length - fileTailMatch - for (var si = 0; si < bodySegments.length; si++) { - bodySegments[si][1] = fileLength - - (nonGsPartsSums[idx--] + bodySegments[si][0].length) - } - - return !!this._matchGlobStarBodySections( - file, bodySegments, fileIndex, 0, partial, 0, !!fileTailMatch - ) } - -// return false for "nope, not matching" -// return null for "not matching, cannot keep trying" -Minimatch.prototype._matchGlobStarBodySections = function ( - file, bodySegments, fileIndex, bodyIndex, partial, globStarDepth, sawTail -) { - var bs = bodySegments[bodyIndex] - if (!bs) { - // just make sure there are no bad dots - for (var i = fileIndex; i < file.length; i++) { - sawTail = true - var f = file[i] - if (f === '.' || f === '..' || - (!this.options.dot && f.charAt(0) === '.')) { - return false - } - } - return sawTail - } - - var body = bs[0] - var after = bs[1] - while (fileIndex <= after) { - var m = this._matchOne( - file.slice(0, fileIndex + body.length), - body, - partial, - fileIndex, - 0 - ) - // if limit exceeded, no match. intentional false negative, - // acceptable break in correctness for security. - if (m && globStarDepth < this.maxGlobstarRecursion) { - var sub = this._matchGlobStarBodySections( - file, bodySegments, - fileIndex + body.length, bodyIndex + 1, - partial, globStarDepth + 1, sawTail - ) - if (sub !== false) { - return sub - } - } - var f = file[fileIndex] - if (f === '.' || f === '..' || - (!this.options.dot && f.charAt(0) === '.')) { - return false - } - fileIndex++ - } - return partial || null +HttpsProxyAgent.protocols = ['http', 'https']; +exports.HttpsProxyAgent = HttpsProxyAgent; +function resume(socket) { + socket.resume(); } - -Minimatch.prototype._matchOne = function (file, pattern, partial, fileIndex, patternIndex) { - var fi, pi, fl, pl - for ( - fi = fileIndex, pi = patternIndex, fl = file.length, pl = pattern.length - ; (fi < fl) && (pi < pl) - ; fi++, pi++ - ) { - this.debug('matchOne loop') - var p = pattern[pi] - var f = file[fi] - - this.debug(pattern, p, f) - - // should be impossible. - // some invalid regexp stuff in the set. - /* istanbul ignore if */ - if (p === false || p === GLOBSTAR) return false - - // something other than ** - // non-magic patterns just have to match exactly - // patterns with magic have been turned into regexps. - var hit - if (typeof p === 'string') { - hit = f === p - this.debug('string match', p, f, hit) - } else { - hit = f.match(p) - this.debug('pattern match', p, f, hit) +function omit(obj, ...keys) { + const ret = {}; + let key; + for (key in obj) { + if (!keys.includes(key)) { + ret[key] = obj[key]; + } } + return ret; +} +//# sourceMappingURL=index.js.map - if (!hit) return false - } - - // now either we fell off the end of the pattern, or we're done. - if (fi === fl && pi === pl) { - // ran out of pattern and filename at the same time. - // an exact hit! - return true - } else if (fi === fl) { - // ran out of file, but still had pattern left. - // this is ok if we're doing the match as part of - // a glob fs traversal. - return partial - } else /* istanbul ignore else */ if (pi === pl) { - // ran out of pattern, still have file left. - // this is only acceptable if we're on the very last - // empty segment of a file with a trailing slash. - // a/* should match a/b/ - return (fi === fl - 1) && (file[fi] === '') - } +/***/ }), - // should be unreachable. - /* istanbul ignore next */ - throw new Error('wtf?') -} +/***/ 7943: +/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) { -// replace stuff like \* with * -function globUnescape (s) { - return s.replace(/\\(.)/g, '$1') -} -function regExpEscape (s) { - return s.replace(/[-[\]{}()*+?.,\\^$|#\s]/g, '\\$&') +var __importDefault = (this && this.__importDefault) || function (mod) { + return (mod && mod.__esModule) ? mod : { "default": mod }; +}; +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.parseProxyResponse = void 0; +const debug_1 = __importDefault(__nccwpck_require__(2830)); +const debug = (0, debug_1.default)('https-proxy-agent:parse-proxy-response'); +function parseProxyResponse(socket) { + return new Promise((resolve, reject) => { + // we need to buffer any HTTP traffic that happens with the proxy before we get + // the CONNECT response, so that if the response is anything other than an "200" + // response code, then we can re-play the "data" events on the socket once the + // HTTP parser is hooked up... + let buffersLength = 0; + const buffers = []; + function read() { + const b = socket.read(); + if (b) + ondata(b); + else + socket.once('readable', read); + } + function cleanup() { + socket.removeListener('end', onend); + socket.removeListener('error', onerror); + socket.removeListener('readable', read); + } + function onend() { + cleanup(); + debug('onend'); + reject(new Error('Proxy connection ended before receiving CONNECT response')); + } + function onerror(err) { + cleanup(); + debug('onerror %o', err); + reject(err); + } + function ondata(b) { + buffers.push(b); + buffersLength += b.length; + const buffered = Buffer.concat(buffers, buffersLength); + const endOfHeaders = buffered.indexOf('\r\n\r\n'); + if (endOfHeaders === -1) { + // keep buffering + debug('have not received end of HTTP headers yet...'); + read(); + return; + } + const headerParts = buffered + .slice(0, endOfHeaders) + .toString('ascii') + .split('\r\n'); + const firstLine = headerParts.shift(); + if (!firstLine) { + socket.destroy(); + return reject(new Error('No header received from proxy CONNECT response')); + } + const firstLineParts = firstLine.split(' '); + const statusCode = +firstLineParts[1]; + const statusText = firstLineParts.slice(2).join(' '); + const headers = {}; + for (const header of headerParts) { + if (!header) + continue; + const firstColon = header.indexOf(':'); + if (firstColon === -1) { + socket.destroy(); + return reject(new Error(`Invalid header from proxy CONNECT response: "${header}"`)); + } + const key = header.slice(0, firstColon).toLowerCase(); + const value = header.slice(firstColon + 1).trimStart(); + const current = headers[key]; + if (typeof current === 'string') { + headers[key] = [current, value]; + } + else if (Array.isArray(current)) { + current.push(value); + } + else { + headers[key] = value; + } + } + debug('got proxy server response: %o %o', firstLine, headers); + cleanup(); + resolve({ + connect: { + statusCode, + statusText, + headers, + }, + buffered, + }); + } + socket.on('error', onerror); + socket.on('end', onend); + read(); + }); } - +exports.parseProxyResponse = parseProxyResponse; +//# sourceMappingURL=parse-proxy-response.js.map /***/ }), @@ -9913,7 +9617,7 @@ module.exports = clean const eq = __nccwpck_require__(5082) -const neq = __nccwpck_require__(4974) +const neq = __nccwpck_require__(2593) const gt = __nccwpck_require__(6599) const gte = __nccwpck_require__(1236) const lt = __nccwpck_require__(3872) @@ -10258,7 +9962,7 @@ module.exports = minor /***/ }), -/***/ 4974: +/***/ 2593: /***/ ((module, __unused_webpack_exports, __nccwpck_require__) => { @@ -10475,7 +10179,7 @@ const rsort = __nccwpck_require__(7192) const gt = __nccwpck_require__(6599) const lt = __nccwpck_require__(3872) const eq = __nccwpck_require__(5082) -const neq = __nccwpck_require__(4974) +const neq = __nccwpck_require__(2593) const gte = __nccwpck_require__(1236) const lte = __nccwpck_require__(6717) const cmp = __nccwpck_require__(8646) @@ -39844,6 +39548,340 @@ exports.w = { /***/ }), +/***/ 2649: +/***/ ((__unused_webpack_module, exports) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.range = exports.balanced = void 0; +const balanced = (a, b, str) => { + const ma = a instanceof RegExp ? maybeMatch(a, str) : a; + const mb = b instanceof RegExp ? maybeMatch(b, str) : b; + const r = ma !== null && mb != null && (0, exports.range)(ma, mb, str); + return (r && { + start: r[0], + end: r[1], + pre: str.slice(0, r[0]), + body: str.slice(r[0] + ma.length, r[1]), + post: str.slice(r[1] + mb.length), + }); +}; +exports.balanced = balanced; +const maybeMatch = (reg, str) => { + const m = str.match(reg); + return m ? m[0] : null; +}; +const range = (a, b, str) => { + let begs, beg, left, right = undefined, result; + let ai = str.indexOf(a); + let bi = str.indexOf(b, ai + 1); + let i = ai; + if (ai >= 0 && bi > 0) { + if (a === b) { + return [ai, bi]; + } + begs = []; + left = str.length; + while (i >= 0 && !result) { + if (i === ai) { + begs.push(i); + ai = str.indexOf(a, i + 1); + } + else if (begs.length === 1) { + const r = begs.pop(); + if (r !== undefined) + result = [r, bi]; + } + else { + beg = begs.pop(); + if (beg !== undefined && beg < left) { + left = beg; + right = bi; + } + bi = str.indexOf(b, i + 1); + } + i = ai < bi && ai >= 0 ? ai : bi; + } + if (begs.length && right !== undefined) { + result = [left, right]; + } + } + return result; +}; +exports.range = range; +//# sourceMappingURL=index.js.map + +/***/ }), + +/***/ 8968: +/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => { + + +Object.defineProperty(exports, "__esModule", ({ value: true })); +exports.EXPANSION_MAX_LENGTH = exports.EXPANSION_MAX = void 0; +exports.expand = expand; +const balanced_match_1 = __nccwpck_require__(2649); +const escSlash = '\0SLASH' + Math.random() + '\0'; +const escOpen = '\0OPEN' + Math.random() + '\0'; +const escClose = '\0CLOSE' + Math.random() + '\0'; +const escComma = '\0COMMA' + Math.random() + '\0'; +const escPeriod = '\0PERIOD' + Math.random() + '\0'; +const escSlashPattern = new RegExp(escSlash, 'g'); +const escOpenPattern = new RegExp(escOpen, 'g'); +const escClosePattern = new RegExp(escClose, 'g'); +const escCommaPattern = new RegExp(escComma, 'g'); +const escPeriodPattern = new RegExp(escPeriod, 'g'); +const slashPattern = /\\\\/g; +const openPattern = /\\{/g; +const closePattern = /\\}/g; +const commaPattern = /\\,/g; +const periodPattern = /\\\./g; +exports.EXPANSION_MAX = 100_000; +// `EXPANSION_MAX` caps the *number* of expansions, but not their length. An +// input like `'{a,b}'.repeat(1500)` stays under that count - its output is +// truncated to 100k results - while making every result ~1500 characters +// long. The result set, and the intermediate arrays built while combining +// brace sets, then grow large enough to exhaust memory and crash the process +// (CVE-2026-14257). `EXPANSION_MAX_LENGTH` bounds the total number of +// characters the accumulator may hold at any point, so memory stays flat no +// matter how many brace groups are chained. The limit sits well above any +// realistic expansion (100k results hitting `EXPANSION_MAX` measure ~1M +// characters) so legitimate input is unaffected. +exports.EXPANSION_MAX_LENGTH = 4_000_000; +function numeric(str) { + return !isNaN(str) ? parseInt(str, 10) : str.charCodeAt(0); +} +function escapeBraces(str) { + return str + .replace(slashPattern, escSlash) + .replace(openPattern, escOpen) + .replace(closePattern, escClose) + .replace(commaPattern, escComma) + .replace(periodPattern, escPeriod); +} +function unescapeBraces(str) { + return str + .replace(escSlashPattern, '\\') + .replace(escOpenPattern, '{') + .replace(escClosePattern, '}') + .replace(escCommaPattern, ',') + .replace(escPeriodPattern, '.'); +} +/** + * Basically just str.split(","), but handling cases + * where we have nested braced sections, which should be + * treated as individual members, like {a,{b,c},d} + */ +function parseCommaParts(str) { + if (!str) { + return ['']; + } + const parts = []; + const m = (0, balanced_match_1.balanced)('{', '}', str); + if (!m) { + return str.split(','); + } + const { pre, body, post } = m; + const p = pre.split(','); + p[p.length - 1] += '{' + body + '}'; + const postParts = parseCommaParts(post); + if (post.length) { + ; + p[p.length - 1] += postParts.shift(); + p.push.apply(p, postParts); + } + parts.push.apply(parts, p); + return parts; +} +function expand(str, options = {}) { + if (!str) { + return []; + } + const { max = exports.EXPANSION_MAX, maxLength = exports.EXPANSION_MAX_LENGTH } = options; + // I don't know why Bash 4.3 does this, but it does. + // Anything starting with {} will have the first two bytes preserved + // but *only* at the top level, so {},a}b will not expand to anything, + // but a{},b}c will be expanded to [a}c,abc]. + // One could argue that this is a bug in Bash, but since the goal of + // this module is to match Bash's rules, we escape a leading {} + if (str.slice(0, 2) === '{}') { + str = '\\{\\}' + str.slice(2); + } + return expand_(escapeBraces(str), max, maxLength, true).map(unescapeBraces); +} +function embrace(str) { + return '{' + str + '}'; +} +function isPadded(el) { + return /^-?0\d/.test(el); +} +function lte(i, y) { + return i <= y; +} +function gte(i, y) { + return i >= y; +} +// Build `{ acc[a] + pre + values[v] }` for every combination, capping the +// number of results at `max` and the total number of characters at `maxLength`. +// This is the one place output grows, so bounding it here keeps the single +// accumulator - and therefore memory - flat regardless of how many brace groups +// are combined (CVE-2026-14257). +function combine(acc, pre, values, max, maxLength, dropEmpties) { + const out = []; + let length = 0; + for (let a = 0; a < acc.length; a++) { + for (let v = 0; v < values.length; v++) { + if (out.length >= max) + return out; + const expansion = acc[a] + pre + values[v]; + // Bash drops empty results at the top level. Skip them before they count + // against `max`, so `max` bounds the number of *kept* results. + if (dropEmpties && !expansion) + continue; + if (length + expansion.length > maxLength) + return out; + out.push(expansion); + length += expansion.length; + } + } + return out; +} +// The expansion values of a single numeric (`1..5`) or alphabetic (`a..e..2`) +// sequence body. +function expandSequence(body, isAlphaSequence, max) { + const n = body.split(/\.\./); + const N = []; + // A sequence body always splits into two or three parts, but the compiler + // can't know that. + /* c8 ignore start */ + if (n[0] === undefined || n[1] === undefined) { + return N; + } + /* c8 ignore stop */ + const x = numeric(n[0]); + const y = numeric(n[1]); + const width = Math.max(n[0].length, n[1].length); + let incr = n.length === 3 && n[2] !== undefined ? + Math.max(Math.abs(numeric(n[2])), 1) + : 1; + let test = lte; + const reverse = y < x; + if (reverse) { + incr *= -1; + test = gte; + } + const pad = n.some(isPadded); + for (let i = x; test(i, y) && N.length < max; i += incr) { + let c; + if (isAlphaSequence) { + c = String.fromCharCode(i); + if (c === '\\') { + c = ''; + } + } + else { + c = String(i); + if (pad) { + const need = width - c.length; + if (need > 0) { + const z = new Array(need + 1).join('0'); + if (i < 0) { + c = '-' + z + c.slice(1); + } + else { + c = z + c; + } + } + } + } + N.push(c); + } + return N; +} +function expand_(str, max, maxLength, isTop) { + // Consume the string's top-level brace groups left to right, threading a + // running set of combined prefixes (`acc`). Expanding the tail iteratively - + // rather than recursing on `m.post` once per group - keeps the native stack + // depth constant, so deeply chained input (`'{a,b}'.repeat(3000)`) can no + // longer overflow the stack, and leaves a single accumulator whose size + // `maxLength` bounds directly (CVE-2026-14257). + let acc = ['']; + // Bash drops empty results, but only when the *first* top-level group is a + // comma set - a sequence like `{a..\}` may legitimately yield ''. The drop + // is on the final strings, so it is applied to whichever `combine` produces + // them (the one with no brace set left in the tail). + let dropEmpties = false; + let firstGroup = true; + for (;;) { + const m = (0, balanced_match_1.balanced)('{', '}', str); + // No brace set left: the rest of the string is literal. + if (!m) { + return combine(acc, str, [''], max, maxLength, dropEmpties); + } + // no need to expand pre, since it is guaranteed to be free of brace-sets + const pre = m.pre; + if (/\$$/.test(pre)) { + acc = combine(acc, pre + '{' + m.body + '}', [''], max, maxLength, dropEmpties && !m.post.length); + firstGroup = false; + if (!m.post.length) + break; + str = m.post; + continue; + } + const isNumericSequence = /^-?\d+\.\.-?\d+(?:\.\.-?\d+)?$/.test(m.body); + const isAlphaSequence = /^[a-zA-Z]\.\.[a-zA-Z](?:\.\.-?\d+)?$/.test(m.body); + const isSequence = isNumericSequence || isAlphaSequence; + const isOptions = m.body.indexOf(',') >= 0; + if (!isSequence && !isOptions) { + // {a},b} + if (m.post.match(/,(?!,).*\}/)) { + str = m.pre + '{' + m.body + escClose + m.post; + isTop = true; + continue; + } + // Nothing here expands, so the whole remaining string is literal. + return combine(acc, pre + '{' + m.body + '}' + m.post, [''], max, maxLength, dropEmpties); + } + if (firstGroup) { + dropEmpties = isTop && !isSequence; + firstGroup = false; + } + let values; + if (isSequence) { + values = expandSequence(m.body, isAlphaSequence, max); + } + else { + let n = parseCommaParts(m.body); + if (n.length === 1 && n[0] !== undefined) { + // x{{a,b}}y ==> x{a}y x{b}y + n = expand_(n[0], max, maxLength, false).map(embrace); + //XXX is this necessary? Can't seem to hit it in tests. + /* c8 ignore start */ + if (n.length === 1) { + acc = combine(acc, pre + n[0], [''], max, maxLength, dropEmpties && !m.post.length); + if (!m.post.length) + break; + str = m.post; + continue; + } + /* c8 ignore stop */ + } + values = []; + for (let j = 0; j < n.length; j++) { + values.push.apply(values, expand_(n[j], max, maxLength, false)); + } + } + acc = combine(acc, pre, values, max, maxLength, dropEmpties && !m.post.length); + if (!m.post.length) + break; + str = m.post; + } + return acc; +} +//# sourceMappingURL=index.js.map + +/***/ }), + /***/ 1120: /***/ ((module) => { @@ -47944,8 +47982,8 @@ function partialMatch(patterns, itemPath) { return patterns.some(x => !x.negate && x.partialMatch(itemPath)); } //# sourceMappingURL=internal-pattern-helper.js.map -// EXTERNAL MODULE: ./node_modules/minimatch/minimatch.js -var minimatch = __nccwpck_require__(3772); +// EXTERNAL MODULE: ./node_modules/@actions/cache/node_modules/minimatch/minimatch.js +var minimatch = __nccwpck_require__(4974); ;// CONCATENATED MODULE: ./node_modules/@actions/cache/node_modules/@actions/glob/lib/internal-path.js @@ -94933,7 +94971,7 @@ function internal_pattern_helper_partialMatch(patterns, itemPath) { return patterns.some(x => !x.negate && x.partialMatch(itemPath)); } //# sourceMappingURL=internal-pattern-helper.js.map -;// CONCATENATED MODULE: ./node_modules/@actions/glob/node_modules/balanced-match/dist/esm/index.js +;// CONCATENATED MODULE: ./node_modules/balanced-match/dist/esm/index.js const balanced = (a, b, str) => { const ma = a instanceof RegExp ? maybeMatch(a, str) : a; const mb = b instanceof RegExp ? maybeMatch(b, str) : b; @@ -94988,7 +95026,7 @@ const esm_range = (a, b, str) => { return result; }; //# sourceMappingURL=index.js.map -;// CONCATENATED MODULE: ./node_modules/@actions/glob/node_modules/brace-expansion/dist/esm/index.js +;// CONCATENATED MODULE: ./node_modules/brace-expansion/dist/esm/index.js const escSlash = '\0SLASH' + Math.random() + '\0'; const escOpen = '\0OPEN' + Math.random() + '\0'; @@ -95006,6 +95044,17 @@ const closePattern = /\\}/g; const commaPattern = /\\,/g; const periodPattern = /\\\./g; const EXPANSION_MAX = 100_000; +// `EXPANSION_MAX` caps the *number* of expansions, but not their length. An +// input like `'{a,b}'.repeat(1500)` stays under that count - its output is +// truncated to 100k results - while making every result ~1500 characters +// long. The result set, and the intermediate arrays built while combining +// brace sets, then grow large enough to exhaust memory and crash the process +// (CVE-2026-14257). `EXPANSION_MAX_LENGTH` bounds the total number of +// characters the accumulator may hold at any point, so memory stays flat no +// matter how many brace groups are chained. The limit sits well above any +// realistic expansion (100k results hitting `EXPANSION_MAX` measure ~1M +// characters) so legitimate input is unaffected. +const EXPANSION_MAX_LENGTH = 4_000_000; function numeric(str) { return !isNaN(str) ? parseInt(str, 10) : str.charCodeAt(0); } @@ -95055,7 +95104,7 @@ function esm_expand(str, options = {}) { if (!str) { return []; } - const { max = EXPANSION_MAX } = options; + const { max = EXPANSION_MAX, maxLength = EXPANSION_MAX_LENGTH } = options; // I don't know why Bash 4.3 does this, but it does. // Anything starting with {} will have the first two bytes preserved // but *only* at the top level, so {},a}b will not expand to anything, @@ -95065,7 +95114,7 @@ function esm_expand(str, options = {}) { if (str.slice(0, 2) === '{}') { str = '\\{\\}' + str.slice(2); } - return expand_(escapeBraces(str), max, true).map(unescapeBraces); + return expand_(escapeBraces(str), max, maxLength, true).map(unescapeBraces); } function embrace(str) { return '{' + str + '}'; @@ -95079,22 +95128,113 @@ function lte(i, y) { function gte(i, y) { return i >= y; } -function expand_(str, max, isTop) { - /** @type {string[]} */ - const expansions = []; - const m = balanced('{', '}', str); - if (!m) - return [str]; - // no need to expand pre, since it is guaranteed to be free of brace-sets - const pre = m.pre; - const post = m.post.length ? expand_(m.post, max, false) : ['']; - if (/\$$/.test(m.pre)) { - for (let k = 0; k < post.length && k < max; k++) { - const expansion = pre + '{' + m.body + '}' + post[k]; - expansions.push(expansion); +// Build `{ acc[a] + pre + values[v] }` for every combination, capping the +// number of results at `max` and the total number of characters at `maxLength`. +// This is the one place output grows, so bounding it here keeps the single +// accumulator - and therefore memory - flat regardless of how many brace groups +// are combined (CVE-2026-14257). +function combine(acc, pre, values, max, maxLength, dropEmpties) { + const out = []; + let length = 0; + for (let a = 0; a < acc.length; a++) { + for (let v = 0; v < values.length; v++) { + if (out.length >= max) + return out; + const expansion = acc[a] + pre + values[v]; + // Bash drops empty results at the top level. Skip them before they count + // against `max`, so `max` bounds the number of *kept* results. + if (dropEmpties && !expansion) + continue; + if (length + expansion.length > maxLength) + return out; + out.push(expansion); + length += expansion.length; } } - else { + return out; +} +// The expansion values of a single numeric (`1..5`) or alphabetic (`a..e..2`) +// sequence body. +function expandSequence(body, isAlphaSequence, max) { + const n = body.split(/\.\./); + const N = []; + // A sequence body always splits into two or three parts, but the compiler + // can't know that. + /* c8 ignore start */ + if (n[0] === undefined || n[1] === undefined) { + return N; + } + /* c8 ignore stop */ + const x = numeric(n[0]); + const y = numeric(n[1]); + const width = Math.max(n[0].length, n[1].length); + let incr = n.length === 3 && n[2] !== undefined ? + Math.max(Math.abs(numeric(n[2])), 1) + : 1; + let test = lte; + const reverse = y < x; + if (reverse) { + incr *= -1; + test = gte; + } + const pad = n.some(isPadded); + for (let i = x; test(i, y) && N.length < max; i += incr) { + let c; + if (isAlphaSequence) { + c = String.fromCharCode(i); + if (c === '\\') { + c = ''; + } + } + else { + c = String(i); + if (pad) { + const need = width - c.length; + if (need > 0) { + const z = new Array(need + 1).join('0'); + if (i < 0) { + c = '-' + z + c.slice(1); + } + else { + c = z + c; + } + } + } + } + N.push(c); + } + return N; +} +function expand_(str, max, maxLength, isTop) { + // Consume the string's top-level brace groups left to right, threading a + // running set of combined prefixes (`acc`). Expanding the tail iteratively - + // rather than recursing on `m.post` once per group - keeps the native stack + // depth constant, so deeply chained input (`'{a,b}'.repeat(3000)`) can no + // longer overflow the stack, and leaves a single accumulator whose size + // `maxLength` bounds directly (CVE-2026-14257). + let acc = ['']; + // Bash drops empty results, but only when the *first* top-level group is a + // comma set - a sequence like `{a..\}` may legitimately yield ''. The drop + // is on the final strings, so it is applied to whichever `combine` produces + // them (the one with no brace set left in the tail). + let dropEmpties = false; + let firstGroup = true; + for (;;) { + const m = balanced('{', '}', str); + // No brace set left: the rest of the string is literal. + if (!m) { + return combine(acc, str, [''], max, maxLength, dropEmpties); + } + // no need to expand pre, since it is guaranteed to be free of brace-sets + const pre = m.pre; + if (/\$$/.test(pre)) { + acc = combine(acc, pre + '{' + m.body + '}', [''], max, maxLength, dropEmpties && !m.post.length); + firstGroup = false; + if (!m.post.length) + break; + str = m.post; + continue; + } const isNumericSequence = /^-?\d+\.\.-?\d+(?:\.\.-?\d+)?$/.test(m.body); const isAlphaSequence = /^[a-zA-Z]\.\.[a-zA-Z](?:\.\.-?\d+)?$/.test(m.body); const isSequence = isNumericSequence || isAlphaSequence; @@ -95103,87 +95243,47 @@ function expand_(str, max, isTop) { // {a},b} if (m.post.match(/,(?!,).*\}/)) { str = m.pre + '{' + m.body + escClose + m.post; - return expand_(str, max, true); + isTop = true; + continue; } - return [str]; + // Nothing here expands, so the whole remaining string is literal. + return combine(acc, pre + '{' + m.body + '}' + m.post, [''], max, maxLength, dropEmpties); } - let n; + if (firstGroup) { + dropEmpties = isTop && !isSequence; + firstGroup = false; + } + let values; if (isSequence) { - n = m.body.split(/\.\./); + values = expandSequence(m.body, isAlphaSequence, max); } else { - n = parseCommaParts(m.body); + let n = parseCommaParts(m.body); if (n.length === 1 && n[0] !== undefined) { // x{{a,b}}y ==> x{a}y x{b}y - n = expand_(n[0], max, false).map(embrace); + n = expand_(n[0], max, maxLength, false).map(embrace); //XXX is this necessary? Can't seem to hit it in tests. /* c8 ignore start */ if (n.length === 1) { - return post.map(p => m.pre + n[0] + p); + acc = combine(acc, pre + n[0], [''], max, maxLength, dropEmpties && !m.post.length); + if (!m.post.length) + break; + str = m.post; + continue; } /* c8 ignore stop */ } - } - // at this point, n is the parts, and we know it's not a comma set - // with a single entry. - let N; - if (isSequence && n[0] !== undefined && n[1] !== undefined) { - const x = numeric(n[0]); - const y = numeric(n[1]); - const width = Math.max(n[0].length, n[1].length); - let incr = n.length === 3 && n[2] !== undefined ? - Math.max(Math.abs(numeric(n[2])), 1) - : 1; - let test = lte; - const reverse = y < x; - if (reverse) { - incr *= -1; - test = gte; - } - const pad = n.some(isPadded); - N = []; - for (let i = x; test(i, y) && N.length < max; i += incr) { - let c; - if (isAlphaSequence) { - c = String.fromCharCode(i); - if (c === '\\') { - c = ''; - } - } - else { - c = String(i); - if (pad) { - const need = width - c.length; - if (need > 0) { - const z = new Array(need + 1).join('0'); - if (i < 0) { - c = '-' + z + c.slice(1); - } - else { - c = z + c; - } - } - } - } - N.push(c); - } - } - else { - N = []; + values = []; for (let j = 0; j < n.length; j++) { - N.push.apply(N, expand_(n[j], max, false)); - } - } - for (let j = 0; j < N.length; j++) { - for (let k = 0; k < post.length && expansions.length < max; k++) { - const expansion = pre + N[j] + post[k]; - if (!isTop || isSequence || expansion) { - expansions.push(expansion); - } + values.push.apply(values, expand_(n[j], max, maxLength, false)); } } + acc = combine(acc, pre, values, max, maxLength, dropEmpties && !m.post.length); + if (!m.post.length) + break; + str = m.post; } - return expansions; + return acc; } //# sourceMappingURL=index.js.map ;// CONCATENATED MODULE: ./node_modules/@actions/glob/node_modules/minimatch/dist/esm/assert-valid-pattern.js diff --git a/package-lock.json b/package-lock.json index 1beedf691..ef003b741 100644 --- a/package-lock.json +++ b/package-lock.json @@ -69,6 +69,18 @@ "minimatch": "^3.0.4" } }, + "node_modules/@actions/cache/node_modules/minimatch": { + "version": "3.1.5", + "resolved": "https://registry.npmjs.org/minimatch/-/minimatch-3.1.5.tgz", + "integrity": "sha512-VgjWUsnnT6n+NUk6eZq77zeFdpW2LWDzP6zFGrCbHXiYNul5Dzqk2HHQ5uFH2DNW5Xbp8+jVzaeNt94ssEEl4w==", + "license": "ISC", + "dependencies": { + "brace-expansion": "^1.1.7" + }, + "engines": { + "node": "*" + } + }, "node_modules/@actions/core": { "version": "3.0.1", "resolved": "https://registry.npmjs.org/@actions/core/-/core-3.0.1.tgz", @@ -123,27 +135,6 @@ "minimatch": "^10.2.5" } }, - 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Please update. Support for old versions may be purchased (at exorbitant rates) by contacting i@izs.me", + "dev": true, + "license": "ISC", + "dependencies": { + "fs.realpath": "^1.0.0", + "inflight": "^1.0.4", + "inherits": "2", + "minimatch": "^3.1.1", + "once": "^1.3.0", + "path-is-absolute": "^1.0.0" + }, + "engines": { + "node": "*" + }, + "funding": { + "url": "https://github.com/sponsors/isaacs" + } + }, + "node_modules/babel-plugin-istanbul/node_modules/minimatch": { + "version": "3.1.5", + "resolved": "https://registry.npmjs.org/minimatch/-/minimatch-3.1.5.tgz", + "integrity": "sha512-VgjWUsnnT6n+NUk6eZq77zeFdpW2LWDzP6zFGrCbHXiYNul5Dzqk2HHQ5uFH2DNW5Xbp8+jVzaeNt94ssEEl4w==", + "dev": true, + "license": "ISC", + "dependencies": { + "brace-expansion": "^1.1.7" + }, + "engines": { + "node": "*" + } + }, + "node_modules/babel-plugin-istanbul/node_modules/test-exclude": { + "version": "6.0.0", + "resolved": "https://registry.npmjs.org/test-exclude/-/test-exclude-6.0.0.tgz", + "integrity": "sha512-cAGWPIyOHU6zlmg88jwm7VRyXnMN7iV68OGAbYDk/Mh/xC/pzVPlQtY6ngoIH/5/tciuhGfvESU8GrHrcxD56w==", + "dev": true, + "license": "ISC", + "dependencies": { + "@istanbuljs/schema": "^0.1.2", + "glob": "^7.1.4", + "minimatch": "^3.0.4" + }, + "engines": { + "node": ">=8" + } + }, "node_modules/babel-plugin-jest-hoist": { "version": "30.4.0", "resolved": "https://registry.npmjs.org/babel-plugin-jest-hoist/-/babel-plugin-jest-hoist-30.4.0.tgz", @@ -2866,10 +2925,13 @@ } }, "node_modules/balanced-match": { - 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"balanced-match": "^1.0.0", - "concat-map": "0.0.1" + "balanced-match": "^4.0.2" + }, + "engines": { + "node": "20 || >=22" } }, "node_modules/browserslist": { @@ -3171,12 +3235,6 @@ "dev": true, "license": "MIT" }, - "node_modules/concat-map": { - "version": "0.0.1", - "resolved": "https://registry.npmjs.org/concat-map/-/concat-map-0.0.1.tgz", - "integrity": "sha512-/Srv4dswyQNBfohGpz9o6Yb3Gz3SrUDqBH5rTuhGR7ahtlbYKnVxw2bCFMRljaA7EXHaXZ8wsHdodFvbkhKmqg==", - "license": "MIT" - }, "node_modules/convert-source-map": { "version": "2.0.0", "resolved": "https://registry.npmjs.org/convert-source-map/-/convert-source-map-2.0.0.tgz", @@ -3563,29 +3621,6 @@ "url": "https://opencollective.com/eslint" } }, - "node_modules/eslint/node_modules/balanced-match": { - "version": "4.0.4", - "resolved": "https://registry.npmjs.org/balanced-match/-/balanced-match-4.0.4.tgz", - "integrity": "sha512-BLrgEcRTwX2o6gGxGOCNyMvGSp35YofuYzw9h1IMTRmKqttAZZVU67bdb9Pr2vUHA8+j3i2tJfjO6C6+4myGTA==", - "dev": true, - "license": "MIT", - "engines": { - "node": "18 || 20 || >=22" - } - }, - "node_modules/eslint/node_modules/brace-expansion": { - "version": "5.0.6", - "resolved": "https://registry.npmjs.org/brace-expansion/-/brace-expansion-5.0.6.tgz", - "integrity": "sha512-kLpxurY4Z4r9sgMsyG0Z9uzsBlgiU/EFKhj/h91/8yHu0edo7XuixOIH3VcJ8kkxs6/jPzoI6U9Vj3WqbMQ94g==", - "dev": true, - "license": "MIT", - "dependencies": { - "balanced-match": "^4.0.2" - }, - "engines": { - "node": "18 || 20 || >=22" - } - }, "node_modules/eslint/node_modules/eslint-visitor-keys": { "version": "5.0.1", "resolved": "https://registry.npmjs.org/eslint-visitor-keys/-/eslint-visitor-keys-5.0.1.tgz", @@ -4039,16 +4074,6 @@ "node": ">=10.13.0" } }, - "node_modules/glob/node_modules/brace-expansion": { - "version": "2.1.1", - "resolved": "https://registry.npmjs.org/brace-expansion/-/brace-expansion-2.1.1.tgz", - "integrity": "sha512-WR1cURNjuvBLMZBMbqM0UoE+WAfdUcEV1ccD8PVBVOI+Z3ND4+SZbN8RsfT2bMuG1qwz5RFvPukSZm5fF2D5eA==", - "dev": true, - "license": "MIT", - "dependencies": { - "balanced-match": "^1.0.0" - } - }, "node_modules/glob/node_modules/minimatch": { "version": "9.0.9", "resolved": "https://registry.npmjs.org/minimatch/-/minimatch-9.0.9.tgz", @@ -5207,18 +5232,6 @@ "node": ">=6" } }, - "node_modules/minimatch": { - "version": "3.1.5", - "resolved": "https://registry.npmjs.org/minimatch/-/minimatch-3.1.5.tgz", - "integrity": "sha512-VgjWUsnnT6n+NUk6eZq77zeFdpW2LWDzP6zFGrCbHXiYNul5Dzqk2HHQ5uFH2DNW5Xbp8+jVzaeNt94ssEEl4w==", - "license": "ISC", - "dependencies": { - "brace-expansion": "^1.1.7" - }, - "engines": { - "node": "*" - } - }, "node_modules/minimist": { "version": "1.2.8", "resolved": "https://registry.npmjs.org/minimist/-/minimist-1.2.8.tgz", @@ -6074,43 +6087,6 @@ "url": "https://opencollective.com/webpack" } }, - "node_modules/test-exclude": { - "version": "6.0.0", - "resolved": "https://registry.npmjs.org/test-exclude/-/test-exclude-6.0.0.tgz", - "integrity": "sha512-cAGWPIyOHU6zlmg88jwm7VRyXnMN7iV68OGAbYDk/Mh/xC/pzVPlQtY6ngoIH/5/tciuhGfvESU8GrHrcxD56w==", - "dev": true, - "license": "ISC", - "dependencies": { - "@istanbuljs/schema": "^0.1.2", - "glob": "^7.1.4", - "minimatch": "^3.0.4" - }, - "engines": { - "node": ">=8" - } - }, - "node_modules/test-exclude/node_modules/glob": { - "version": "7.2.3", - "resolved": "https://registry.npmjs.org/glob/-/glob-7.2.3.tgz", - "integrity": "sha512-nFR0zLpU2YCaRxwoCJvL6UvCH2JFyFVIvwTLsIf21AuHlMskA1hhTdk+LlYJtOlYt9v6dvszD2BGRqBL+iQK9Q==", - "deprecated": "Old versions of glob are not supported, and contain widely publicized security vulnerabilities, which have been fixed in the current version. Please update. Support for old versions may be purchased (at exorbitant rates) by contacting i@izs.me", - "dev": true, - "license": "ISC", - "dependencies": { - "fs.realpath": "^1.0.0", - "inflight": "^1.0.4", - "inherits": "2", - "minimatch": "^3.1.1", - "once": "^1.3.0", - "path-is-absolute": "^1.0.0" - }, - "engines": { - "node": "*" - }, - "funding": { - "url": "https://github.com/sponsors/isaacs" - } - }, "node_modules/tinyglobby": { "version": "0.2.17", "resolved": "https://registry.npmjs.org/tinyglobby/-/tinyglobby-0.2.17.tgz", diff --git a/package.json b/package.json index f192ce3da..4cf033700 100644 --- a/package.json +++ b/package.json @@ -39,6 +39,9 @@ "@actions/tool-cache": "^4.0.0", "semver": "^7.8.5" }, + "overrides": { + "brace-expansion": "5.0.8" + }, "devDependencies": { "@eslint/js": "^10.0.1", "@jest/globals": "^30.4.1",