denoify
Version:
For NPM module authors that would like to support Deno but do not want to write and maintain a port.
44,231 lines • 1.76 MB
JavaScript
#!/usr/bin/env node
/******/ (() => { // webpackBootstrap
/******/ var __webpack_modules__ = ({
/***/ 7444:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.modification = exports.test = void 0;
const DIRNAME_IS_USED = /(?:^|[\s\(\);=><{}\[\]\/:?,])__dirname(?:$|[^a-zA-Z0-9$_-])/;
const test = (sourceCode) => DIRNAME_IS_USED.test(sourceCode);
exports.test = test;
exports.modification = [
`const __dirname = (() => {`,
` const { url: urlStr } = import.meta;`,
` const url = new URL(urlStr);`,
` const __filename = (url.protocol === "file:" ? url.pathname : urlStr)`,
` .replace(/[/][^/]*$/, '');`,
``,
` const isWindows = (() => {`,
``,
` let NATIVE_OS: typeof Deno.build.os = "linux";`,
` // eslint-disable-next-line @typescript-eslint/no-explicit-any`,
` const navigator = (globalThis as any).navigator;`,
` if (globalThis.Deno != null) {`,
` NATIVE_OS = Deno.build.os;`,
` } else if (navigator?.appVersion?.includes?.("Win") ?? false) {`,
` NATIVE_OS = "windows";`,
` }`,
``,
` return NATIVE_OS == "windows";`,
``,
` })();`,
``,
` return isWindows ?`,
` __filename.split("/").join("\\\\").substring(1) :`,
` __filename;`,
`})();`,
``
];
/***/ }),
/***/ 6679:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.modification = exports.test = void 0;
const FILENAME_IS_USED = /(?:^|[\s\(\);=><{}\[\]\/:?,])__filename(?:$|[^a-zA-Z0-9$_-])/;
const test = (sourceCode) => FILENAME_IS_USED.test(sourceCode);
exports.test = test;
exports.modification = [
`const __filename = (() => {`,
` const { url: urlStr } = import.meta;`,
` const url = new URL(urlStr);`,
` const __filename = (url.protocol === "file:" ? url.pathname : urlStr);`,
``,
` const isWindows = (() => {`,
``,
` let NATIVE_OS: typeof Deno.build.os = "linux";`,
` // eslint-disable-next-line @typescript-eslint/no-explicit-any`,
` const navigator = (globalThis as any).navigator;`,
` if (globalThis.Deno != null) {`,
` NATIVE_OS = Deno.build.os;`,
` } else if (navigator?.appVersion?.includes?.("Win") ?? false) {`,
` NATIVE_OS = "windows";`,
` }`,
``,
` return NATIVE_OS == "windows";`,
``,
` })();`,
``,
` return isWindows ?`,
` __filename.split("/").join("\\\\").substring(1) :`,
` __filename;`,
`})();`,
``
];
/***/ }),
/***/ 5838:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.modification = exports.test = void 0;
const BUFFER_IS_USED = /(?:^|[\s\(\);=><{}\[\]\/:?,])Buffer(?:$|[^a-zA-Z0-9$_-])/;
const BUFFER_IS_IMPORTED = /import\s*{[^}]*Buffer[^}]*}\s*from\s*["'][^"']+["']/;
const test = (sourceCode) => BUFFER_IS_USED.test(sourceCode) && !BUFFER_IS_IMPORTED.test(sourceCode);
exports.test = test;
exports.modification = [`import { Buffer } from "buffer";`];
/***/ }),
/***/ 4782:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
const __dirnameBuiltin = __nccwpck_require__(7444);
const __filenameBuiltin = __nccwpck_require__(6679);
const bufferBuiltin = __nccwpck_require__(5838);
const processBuiltin = __nccwpck_require__(8771);
/**
* This is how we handle Node builtins
*
* Each module in this directory should export two functions:
* - test: (sourceCode: string) => boolean returns true if the source code needs to be modified because it refers to a Node builtin
* - modification: string[] the lines of code to prepend to the source code
*/
const builtins = [__filenameBuiltin, __dirnameBuiltin, bufferBuiltin, processBuiltin];
exports["default"] = builtins;
/***/ }),
/***/ 8771:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.modification = exports.test = void 0;
const PROCESS_IS_USED = /process\./;
const test = (sourceCode) => PROCESS_IS_USED.test(sourceCode);
exports.test = test;
exports.modification = [`import process from "node:process";`];
/***/ }),
/***/ 2294:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
const _1 = __nccwpck_require__(4460);
function tryParseAsJson(content) {
try {
return JSON.parse(content);
}
catch {
return undefined;
}
}
function parseConfig({ configFileBasename, configFileRawContent }) {
if (configFileBasename === undefined ||
configFileRawContent === undefined ||
!_1.default.supportedConfigFile.find(configFile => configFileBasename.endsWith(configFile))) {
return {
type: "absent"
};
}
if (configFileBasename.endsWith(".json") && tryParseAsJson(configFileRawContent)) {
return {
type: "json",
configFileBasename,
configFileRawContent
};
}
if (configFileBasename.endsWith(".js")) {
return {
type: "js",
configFileBasename,
configFileRawContent
};
}
return {
type: "absent"
};
}
function getFileTypeAndContent({ getConfigFileRawContent }) {
return _1.default.supportedConfigFile.reduce(async (configFileType, configFileBasename) => {
if ((await configFileType).type !== "absent") {
return configFileType;
}
const configFileRawContent = await getConfigFileRawContent(configFileBasename);
if (!configFileRawContent || (configFileBasename === _1.default.packageJson && !tryParseAsJson(configFileRawContent)?.denoify)) {
return configFileType;
}
return parseConfig({
configFileBasename,
configFileRawContent
});
}, Promise.resolve({ type: "absent" }));
}
exports["default"] = getFileTypeAndContent;
/***/ }),
/***/ 4460:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
const cosmiconfig_1 = __nccwpck_require__(2488);
const parseParams_1 = __nccwpck_require__(7689);
const config = (() => {
const packageJson = "package.json";
return {
packageJson,
"supportedConfigFile": [packageJson, ...["json", "js"].map(extension => `denoify.config.${extension}`)],
"getDenoifyParamsWithCosmiconfig": async () => {
const explorer = (0, cosmiconfig_1.cosmiconfig)("denoify");
const search = await explorer.search();
if (search) {
console.log(`Configurations from ${search.filepath} are used`);
}
return (0, parseParams_1.parseAsDenoifyParams)(search?.config ?? undefined);
}
};
})();
exports["default"] = config;
/***/ }),
/***/ 7689:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.getDenoifyParamsWithCosmiconfig = exports.parseAsDenoifyConfig = exports.parseAsDenoifyParams = void 0;
const fs = __nccwpck_require__(9896);
const cosmiconfig_1 = __nccwpck_require__(2488);
const _1 = __nccwpck_require__(4460);
const path_1 = __nccwpck_require__(6928);
const guardAsOptionalString = (string) => (typeof string === "string" ? string : undefined);
const guardAsString = (param) => {
if (typeof param.string === "string") {
return param.string;
}
throw new Error(param.errorMessage);
};
function parseAsDenoifyParams(denoifyParams) {
if (denoifyParams === undefined) {
return undefined;
}
const generateErrorMessage = ({ name, type, param }) => [
"Denoify configuration Error",
`Expect ${name} to be ${type}, got ${param} instead`,
"See: https://github.com/garronej/my_dummy_npm_and_deno_module"
].join("\n");
const { includes } = denoifyParams;
return {
"replacer": guardAsOptionalString(denoifyParams.replacer),
"out": guardAsOptionalString(denoifyParams.out),
"index": guardAsOptionalString(denoifyParams.index),
"includes": !Array.isArray(includes)
? undefined
: includes.map(element => {
const result = guardAsOptionalString(element);
if (result !== undefined) {
return result;
}
if (typeof element !== "object") {
throw new Error(generateErrorMessage({
"param": includes,
"name": "element in includes",
"type": "object with type: { destDir: string?, destBasename: string?, src: string }"
}));
}
return {
"destDir": guardAsOptionalString(element.destDir),
"destBasename": guardAsOptionalString(element.destBasename),
"src": guardAsString({
string: element.src,
errorMessage: generateErrorMessage({
"type": "string",
"param": element.src,
"name": "src in includes array"
})
})
};
}),
"ports": denoifyParams.ports === undefined || denoifyParams.ports === null
? undefined
: Object.entries(denoifyParams.ports).reduce((prev, [portName, string]) => ({
...prev,
[portName]: guardAsString({
string,
errorMessage: generateErrorMessage({
"param": string,
"type": "string",
"name": "value of ports object"
})
})
}), {})
};
}
exports.parseAsDenoifyParams = parseAsDenoifyParams;
function parseAsDenoifyConfig({ configFileType }) {
switch (configFileType.type) {
case "absent":
return undefined;
case "json": {
const parsed = JSON.parse(configFileType.configFileRawContent);
return parseAsDenoifyParams(configFileType.configFileBasename !== _1.default.packageJson ? parsed : parsed.denoify);
}
case "js": {
const cacheFilePath = (0, path_1.join)(process.cwd(), "node_modules", ".cache", "denoify", "cacheDirPath", "config.js");
{
const dirPath = (0, path_1.dirname)(cacheFilePath);
if (!fs.existsSync(dirPath)) {
fs.mkdirSync(dirPath, {
"recursive": true
});
}
}
fs.writeFileSync(cacheFilePath, configFileType.configFileRawContent);
// cosmiconfig internally uses import-fresh to parse JS config
// import-fresh only support commonjs export, so we can use require
const denoifyParams = parseAsDenoifyParams(require(cacheFilePath));
fs.rmSync(cacheFilePath, { "force": true });
return denoifyParams;
}
}
}
exports.parseAsDenoifyConfig = parseAsDenoifyConfig;
async function getDenoifyParamsWithCosmiconfig() {
const explorer = (0, cosmiconfig_1.cosmiconfig)("denoify");
const search = await explorer.search();
if (search) {
console.log(`Configurations from ${search.filepath} are used`);
}
return parseAsDenoifyParams(search?.config ?? undefined);
}
exports.getDenoifyParamsWithCosmiconfig = getDenoifyParamsWithCosmiconfig;
/***/ }),
/***/ 5491:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.denoify = void 0;
const denoifySingleFile_1 = __nccwpck_require__(4561);
const transformCodebase_1 = __nccwpck_require__(2009);
const resolveNodeModuleToDenoModule_1 = __nccwpck_require__(2603);
const fs = __nccwpck_require__(9896);
const path = __nccwpck_require__(6928);
const commentJson = __nccwpck_require__(9515);
const denoifyImportExportStatement_1 = __nccwpck_require__(2067);
const isInsideOrIsDir_1 = __nccwpck_require__(4449);
const getInstalledVersionPackageJson_1 = __nccwpck_require__(5533);
const toPosix_1 = __nccwpck_require__(1661);
const tsafe_1 = __nccwpck_require__(4653);
const resolvePathsWithWildcards_1 = __nccwpck_require__(494);
const partition_1 = __nccwpck_require__(8517);
const fsCopy_1 = __nccwpck_require__(7199);
const parseParams_1 = __nccwpck_require__(7689);
async function denoify(params) {
process.chdir(params.projectPath ?? ".");
const srcDirPath = params.srcDirPath !== undefined ? params.srcDirPath : ["src", "lib"].find(sourceDirPath => fs.existsSync(sourceDirPath));
console.log(`Denoify is reading sources files from ${srcDirPath}`);
if (!srcDirPath) {
throw new Error("No src directory found");
}
const packageJsonParsed = JSON.parse(fs.readFileSync("package.json").toString("utf8"));
const denoifyParams = await (0, parseParams_1.getDenoifyParamsWithCosmiconfig)();
const tsconfigOutDir = getTsConfigOutDir();
const denoDistPath = (() => {
if (params.denoDistPath !== undefined) {
return params.denoDistPath;
}
if (denoifyParams?.out !== undefined) {
return denoifyParams?.out;
}
if (tsconfigOutDir !== undefined) {
return path.join(path.dirname(tsconfigOutDir), `deno_${path.basename(tsconfigOutDir)}`);
}
throw new Error(`You should specify output directory by --out option or specify "outDir" in tsconfig.json`);
})();
console.log(`Deno distribution will be generated at ${denoDistPath}`);
const { denoifySingleFile } = (0, denoifySingleFile_1.denoifySingleFileFactory)((() => {
const { getInstalledVersionPackageJson } = (0, getInstalledVersionPackageJson_1.getInstalledVersionPackageJsonFactory)({
"projectPath": "."
});
const { denoifyImportExportStatement } = (0, denoifyImportExportStatement_1.denoifyImportExportStatementFactory)((() => {
const { resolveNodeModuleToDenoModule } = (0, resolveNodeModuleToDenoModule_1.resolveNodeModuleToDenoModuleFactory)({
"userProvidedPorts": denoifyParams?.ports ?? {},
"dependencies": packageJsonParsed["dependencies"] ?? {},
"devDependencies": packageJsonParsed["devDependencies"] ?? {},
"log": console.log,
getInstalledVersionPackageJson
});
return (0, tsafe_1.id)({
"getDestDirPath": ({ dirPath }) => path.join(denoDistPath, path.relative(srcDirPath, dirPath)),
resolveNodeModuleToDenoModule,
"userProvidedReplacerPath": denoifyParams?.replacer,
getInstalledVersionPackageJson
});
})());
return { denoifyImportExportStatement };
})());
await (0, transformCodebase_1.transformCodebase)({
srcDirPath,
"destDirPath": denoDistPath,
"transformSourceCodeString": async ({ sourceCode, filePath }) => {
if (/\.deno\.tsx?$/i.test(filePath)) {
const nodeFilePath = filePath.replace(/\.deno\.ts/i, ".ts");
if (fs.existsSync(nodeFilePath)) {
return undefined;
}
return {
"modifiedSourceCode": sourceCode,
"newFileName": path.basename(nodeFilePath)
};
}
if (!/\.(?:ts|tsx|js|jsx)$/i.test(filePath)) {
return { "modifiedSourceCode": sourceCode };
}
const denoVersionFilePath = (() => {
const split = filePath.split(".");
split.splice(split.length - 1, 0, "deno");
return split.join(".");
})();
if (fs.existsSync(denoVersionFilePath)) {
return {
"modifiedSourceCode": fs.readFileSync(denoVersionFilePath).toString("utf8")
};
}
if (/^\s*\/\/\s*@denoify-ignore/.test(sourceCode)) {
return undefined;
}
return {
"modifiedSourceCode": await denoifySingleFile({
sourceCode,
"dirPath": path.dirname(filePath)
})
};
}
});
generateModFile({
packageJsonParsed,
tsconfigOutDir,
denoDistPath,
srcDirPath,
"explicitlyProvidedIndexFilePath": params.indexFilePath ?? denoifyParams?.index
});
{
const includes = (denoifyParams?.includes ?? ["README.md", "LICENSE"]).map(pathOrObj => typeof pathOrObj === "string"
? path.normalize(pathOrObj)
: {
...pathOrObj,
"src": path.normalize(pathOrObj.src)
});
const [strIncludes, objIncludes] = (0, partition_1.arrPartition)(includes, (include) => typeof include === "string");
(0, resolvePathsWithWildcards_1.resolvePathsWithWildcards)({ "pathWithWildcards": strIncludes }).forEach(resolvedPath => (0, fsCopy_1.fsCopy)(resolvedPath, path.join(denoDistPath, resolvedPath)));
objIncludes.forEach(({ src, destDir, destBasename }) => (0, fsCopy_1.fsCopy)(src, path.join(denoDistPath, path.join(destDir ?? path.dirname(src), destBasename ?? path.basename(src)))));
}
}
exports.denoify = denoify;
function getTsConfigOutDir() {
const parsedTsCompile = commentJson.parse(fs.readFileSync("tsconfig.json").toString("utf8"));
const { outDir } = parsedTsCompile["compilerOptions"];
if (!outDir) {
return;
}
return path.normalize(outDir);
}
function generateModFile(params) {
const { denoDistPath, packageJsonParsed, tsconfigOutDir, explicitlyProvidedIndexFilePath, srcDirPath } = params;
const indexFileRelativePath = getIndexFileRelativePath({
packageJsonParsed,
tsconfigOutDir,
explicitlyProvidedIndexFilePath,
srcDirPath
});
//No need to generate a mod.ts files, user have explicitly provided one.
if (fs.existsSync(path.join(srcDirPath, "mod.ts"))) {
return;
}
if (indexFileRelativePath === undefined) {
console.warn([
`Denoify did not generate "mod.ts" file because your index wasn't found. You have two options:`,
`1) You may create ${path.join(srcDirPath, "mod.ts")} it will be denoified and moved to ${denoDistPath}.`,
`2) You can also specify where is your index using the denoify.index field in package.json`
].join("\n"));
return;
}
if (fs.existsSync(path.resolve(denoDistPath, indexFileRelativePath))) {
fs.writeFileSync(path.join(denoDistPath, "mod.ts"), Buffer.from(`export * from "${indexFileRelativePath.replace(/^(:?\.\/)?/, "./")}";`, "utf8"));
}
}
/** Relative to the src/ dir */
function getIndexFileRelativePath(params) {
const { packageJsonParsed, tsconfigOutDir, explicitlyProvidedIndexFilePath, srcDirPath } = params;
if (explicitlyProvidedIndexFilePath !== undefined) {
return path.relative(srcDirPath, (0, toPosix_1.toPosix)(explicitlyProvidedIndexFilePath));
}
if (tsconfigOutDir === undefined) {
return;
}
if (!("main" in packageJsonParsed)) {
return;
}
if (!(0, isInsideOrIsDir_1.isInsideOrIsDir)({
"dirPath": tsconfigOutDir,
"fileOrDirPath": path.normalize(packageJsonParsed["main"])
})) {
return;
}
const indexFileRelativePath = (0, toPosix_1.toPosix)(path
.relative(tsconfigOutDir, path.normalize(packageJsonParsed["main"]) // ./dist/lib/index.js
) // ./lib/index.js, NOTE: The the extension is commonly .js but it can be .cjs, .jsx...
.replace(/\.[^.]+$/i, ".ts") // ./lib/index.ts
);
return indexFileRelativePath;
}
/***/ }),
/***/ 2067:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.denoifyImportExportStatementFactory = void 0;
const path = __nccwpck_require__(6928);
const tsafe_1 = __nccwpck_require__(4653);
const fs = __nccwpck_require__(9896);
const ParsedImportExportStatement_1 = __nccwpck_require__(9832);
const replacer_1 = __nccwpck_require__(1107);
const getProjectRoot_1 = __nccwpck_require__(7492);
/**
* examples:
* import { Evt } from "evt" -> import { Evt } from "https://deno.land/x/evt@.../mod.ts"
* import { id } "evt/dist/tools/typeSafety" -> "https://deno.land/x/evt@.../deno_dist/tools/typeSafety/index.ts"
* import * as interfaces from "./interfaces" -> import * as interfaces from "./interfaces/index.ts"
*/
function denoifyImportExportStatementFactory(params) {
const { userProvidedReplacerPath, getDestDirPath, resolveNodeModuleToDenoModule, getInstalledVersionPackageJson } = params;
const { consumeExecutableReplacer: consumeExecutableBuiltinsReplacer } = (0, replacer_1.consumeExecutableReplacerFactory)({
"executableFilePath": path.join((0, getProjectRoot_1.getProjectRoot)(), fs.existsSync(path.join((0, getProjectRoot_1.getProjectRoot)(), "dist")) ? "dist" : "", "bin", "replacer", "index.js")
});
const { consumeExecutableReplacer: consumeExecutableUserProvidedReplacer } = userProvidedReplacerPath === undefined
? { "consumeExecutableReplacer": undefined }
: (0, replacer_1.consumeExecutableReplacerFactory)({
"executableFilePath": userProvidedReplacerPath
});
async function denoifyImportExportStatement(params) {
const { dirPath, importExportStatement } = params;
const parsedImportExportStatement = ParsedImportExportStatement_1.ParsedImportExportStatement.parse(params.importExportStatement);
if (parsedImportExportStatement.parsedArgument.type === "URL") {
//There is no reason to have url import in the source
//file as url import are not supported by node it does not
//hurt to leave the import unchanged. See #7
return importExportStatement;
}
const stringify = (argument) => ParsedImportExportStatement_1.ParsedImportExportStatement.stringify({
...parsedImportExportStatement,
"parsedArgument": ParsedImportExportStatement_1.ParsedImportExportStatement.ParsedArgument.parse(argument)
});
if (parsedImportExportStatement.parsedArgument.type === "PROJECT LOCAL FILE") {
const { relativePath } = parsedImportExportStatement.parsedArgument;
if (/\.json$/i.test(relativePath)) {
return stringify(relativePath);
}
for (const ext of ["ts", "tsx"]) {
if (fs.existsSync(path.join(dirPath, `${relativePath}.${ext}`))) {
return stringify(`${relativePath}.${ext}`);
}
if (relativePath.endsWith(`.${ext}`) && fs.existsSync(path.join(dirPath, relativePath))) {
return stringify(relativePath);
}
}
// relative esm module import
const esmReg = /\.m?js$/;
if (esmReg.test(path.extname(relativePath)) && fs.existsSync(path.join(dirPath, relativePath.replace(esmReg, ".ts")))) {
return stringify(relativePath.replace(esmReg, ".ts"));
}
const out = path.posix.join(relativePath, "index.ts");
return stringify(out.startsWith(".") ? out : `./${out}`);
}
//NOTE: Should be inferable...
(0, tsafe_1.assert)((0, tsafe_1.is)(parsedImportExportStatement));
const { nodeModuleName, specificImportPath } = parsedImportExportStatement.parsedArgument;
const { version } = await getInstalledVersionPackageJson({ nodeModuleName }).catch(() => ({ "version": "0.0.0" }));
for (const consumeExecutableReplacer of [consumeExecutableUserProvidedReplacer, consumeExecutableBuiltinsReplacer]) {
const result = await consumeExecutableReplacer?.({
parsedImportExportStatement,
version,
"destDirPath": getDestDirPath({ dirPath })
});
if (result === undefined) {
continue;
}
return result;
}
const nodeToDenoModuleResolutionResult = await resolveNodeModuleToDenoModule({ nodeModuleName });
if (nodeToDenoModuleResolutionResult.result === "UNKNOWN BUILTIN") {
return stringify(`node:${ParsedImportExportStatement_1.ParsedImportExportStatement.ParsedArgument.stringify(parsedImportExportStatement.parsedArgument)}`);
}
const { getValidImportUrl } = nodeToDenoModuleResolutionResult;
return stringify(await getValidImportUrl(!specificImportPath ? { "target": "DEFAULT EXPORT" } : { "target": "SPECIFIC FILE", specificImportPath }));
}
return { denoifyImportExportStatement };
}
exports.denoifyImportExportStatementFactory = denoifyImportExportStatementFactory;
/***/ }),
/***/ 4561:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.denoifySingleFileFactory = void 0;
const replaceAsync_1 = __nccwpck_require__(3217);
const crypto = __nccwpck_require__(6982);
const index_1 = __nccwpck_require__(4782);
/**
* Remove any lines containing and following // @denoify-line-ignore
*/
const IGNORE_LINE_COMMENT = /^\/\/\s+@denoify-line-ignore/;
function dealWithDenoifyLineIgnoreSpecialComment(sourceCode) {
let previousLineHadIgnoreComment = false;
return sourceCode
.split("\n")
.filter(line => {
const thisLineHasIgnoreComment = IGNORE_LINE_COMMENT.test(line);
const skipThisLine = thisLineHasIgnoreComment || previousLineHadIgnoreComment;
if (previousLineHadIgnoreComment) {
previousLineHadIgnoreComment = false;
}
if (thisLineHasIgnoreComment) {
previousLineHadIgnoreComment = thisLineHasIgnoreComment;
}
return !skipThisLine;
})
.join("\n");
}
function denoifySingleFileFactory(params) {
const { denoifyImportExportStatement } = params;
/** Returns source code with deno imports replaced */
async function denoifySingleFile(params) {
const { dirPath, sourceCode } = params;
// Handle ignore comments
let modifiedSourceCode = dealWithDenoifyLineIgnoreSpecialComment(sourceCode);
// Add support for Node builtins
for (const builtin of index_1.default) {
if (builtin.test(modifiedSourceCode)) {
modifiedSourceCode = [...builtin.modification, modifiedSourceCode].join("\n");
}
}
// Cleanup import/export statements
const denoifiedImportExportStatementByHash = new Map();
for (const quoteSymbol of [`"`, `'`]) {
const strRegExpInQuote = `${quoteSymbol}[^${quoteSymbol}\\r\\n]+${quoteSymbol}`;
for (const regExpStr of [
...[
`export\\s+\\*\\s+from\\s*${strRegExpInQuote}`,
`(?:import|export)(?:\\s+type)?\\s*\\*\\s*as\\s+[^\\s]+\\s+from\\s*${strRegExpInQuote}`,
`(?:import|export)(?:\\s+type)?\\s*{[^}]*}\\s*from\\s*${strRegExpInQuote}`,
`import(?:\\s+type)?\\s+[^\\*{][^\\s]*\\s*(?:,\\s*{[^}]*})?\\s+from\\s*${strRegExpInQuote}`,
`import\\s*${strRegExpInQuote}`,
`declare\\s+module\\s+${strRegExpInQuote}`
].map(s => `(?<=^|[\\r\\n\\s;])(?<! \\* )${s}`),
`(?<=[^a-zA-Z\._0-9$\*])import\\s*\\(\\s*${strRegExpInQuote}\\s*\\)` //type Foo = import("...").Foo
]) {
modifiedSourceCode = await (0, replaceAsync_1.replaceAsync)(modifiedSourceCode, new RegExp(regExpStr, "g"), async (importExportStatement) => {
const denoifiedImportExportStatement = await denoifyImportExportStatement({
dirPath,
importExportStatement
});
const hash = crypto.createHash("sha256").update(denoifiedImportExportStatement).digest("hex");
denoifiedImportExportStatementByHash.set(hash, denoifiedImportExportStatement);
return hash;
});
}
}
for (const [hash, denoifiedImportExportStatement] of denoifiedImportExportStatementByHash) {
modifiedSourceCode = modifiedSourceCode.replace(new RegExp(hash, "g"), denoifiedImportExportStatement);
}
return modifiedSourceCode;
}
return { denoifySingleFile };
}
exports.denoifySingleFileFactory = denoifySingleFileFactory;
/***/ }),
/***/ 9983:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.getCurrentStdVersion = void 0;
const Version_1 = __nccwpck_require__(8165);
const githubTags_1 = __nccwpck_require__(1991);
const addCache_1 = __nccwpck_require__(8590);
exports.getCurrentStdVersion = (0, addCache_1.addCache)(async () => {
const stdBranch = [];
for await (const branch of (0, githubTags_1.listTags)({
"owner": "denoland",
"repo": "deno_std"
})) {
const match = branch.match(/^([0-9]+\.[0-9]+\.[0-9]+)$/);
if (!match) {
continue;
}
stdBranch.push(match[1]);
}
return Version_1.Version.stringify(stdBranch.map(Version_1.Version.parse).sort((vX, vY) => Version_1.Version.compare(vY, vX))[0]);
});
/***/ }),
/***/ 5533:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.getInstalledVersionPackageJsonFactory = void 0;
const st = __nccwpck_require__(7516);
const addCache_1 = __nccwpck_require__(8590);
const path_1 = __nccwpck_require__(6928);
const fs = __nccwpck_require__(9896);
const tsafe_1 = __nccwpck_require__(4653);
function getInstalledVersionPackageJsonFactory(params) {
const { projectPath } = params;
const getTargetModulePath = (params) => {
const { nodeModuleName } = params;
try {
return st.find_module_path(nodeModuleName, projectPath);
}
catch { }
return (function callee(thePath) {
const theDirname = (0, path_1.dirname)(thePath);
(0, tsafe_1.assert)(theDirname !== thePath);
return (0, path_1.basename)(theDirname) === "node_modules" ? thePath : callee(theDirname);
})(require.resolve(nodeModuleName, { "paths": [projectPath] }));
};
/** Throw if not installed locally */
const getInstalledVersionPackageJson = (0, addCache_1.addCache)(async (params) => {
const { nodeModuleName } = params;
//NOTE: Can throw
// node_modules/js-yaml
const targetModulePath = getTargetModulePath({ nodeModuleName });
return JSON.parse(await new Promise((resolve, reject) => fs.readFile((0, path_1.join)(targetModulePath, "package.json"), (err, buff) => {
if (err) {
reject(err);
return;
}
resolve(buff.toString("utf8"));
})));
});
return { getInstalledVersionPackageJson };
}
exports.getInstalledVersionPackageJsonFactory = getInstalledVersionPackageJsonFactory;
/***/ }),
/***/ 6965:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.getThirdPartyDenoModuleInfos = void 0;
const node_fetch_1 = __nccwpck_require__(1485);
const addCache_1 = __nccwpck_require__(8590);
// https://api.deno.land/modules
// https://cdn.deno.land/evt/meta/versions.json
// https://cdn.deno.land/evt/versions/v1.6.8/meta/meta.json
exports.getThirdPartyDenoModuleInfos = (0, addCache_1.addCache)(async (params) => {
const { denoModuleName } = params;
const latestVersion = await (0, node_fetch_1.default)(`https://cdn.deno.land/${denoModuleName}/meta/versions.json`).then(async (res) => !/^2[0-9]{2}$/.test(`${res.status}`) ? undefined : JSON.parse(await res.text())["latest"]);
if (latestVersion === undefined) {
return undefined;
}
const infos = await (0, node_fetch_1.default)(`https://cdn.deno.land/${denoModuleName}/versions/${latestVersion}/meta/meta.json`).then(async (res) => !/^2[0-9]{2}$/.test(`${res.status}`)
? undefined
: JSON.parse(await res.text())["upload_options"]);
if (infos?.type !== "github") {
return undefined;
}
if (infos.repository === undefined) {
return undefined;
}
const [owner, repo] = infos.repository.split("/");
return {
owner,
repo,
latestVersion,
"subdir": infos.subdir ?? "/"
};
});
/***/ }),
/***/ 1107:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.consumeExecutableReplacerFactory = exports.makeThisModuleAnExecutableReplacer = exports.ParsedImportExportStatement = void 0;
const tsafe_1 = __nccwpck_require__(4653);
const st = __nccwpck_require__(7516);
const addCache_1 = __nccwpck_require__(8590);
const ParsedImportExportStatement_1 = __nccwpck_require__(9832);
var ParsedImportExportStatement;
(function (ParsedImportExportStatement) {
ParsedImportExportStatement.stringify = ParsedImportExportStatement_1.ParsedImportExportStatement.stringify;
})(ParsedImportExportStatement = exports.ParsedImportExportStatement || (exports.ParsedImportExportStatement = {}));
const exitCodeForUndefined = 153;
const separatorBetweenDebugAndResult = "\n===========>> | REPLACER RESULT | <<===========\n";
/**
* Assert the replacer never throws, if you do not want to override
* the normal module resolution just return undefined.
*/
async function makeThisModuleAnExecutableReplacer(replacer) {
process.once("unhandledRejection", error => {
throw error;
});
let [, , importExportStatement, version, destDirPath] = process.argv;
(0, tsafe_1.assert)(typeof version !== undefined, `expect: node ${process.argv[1]} '<importExportStatement>' <version>`);
const parsedImportExportStatement = ParsedImportExportStatement_1.ParsedImportExportStatement.parse(JSON.parse(`"${importExportStatement.replace(/"/g, '\\"')}"`));
(0, tsafe_1.assert)(parsedImportExportStatement.parsedArgument.type === "DEPENDENCY");
//NOTE: Should be inferable...
(0, tsafe_1.assert)((0, tsafe_1.is)(parsedImportExportStatement));
const result = await replacer({
parsedImportExportStatement,
importExportStatement,
version,
destDirPath
});
if (result === undefined) {
process.exit(exitCodeForUndefined);
}
process.stdout.write(separatorBetweenDebugAndResult + result);
process.exit(0);
}
exports.makeThisModuleAnExecutableReplacer = makeThisModuleAnExecutableReplacer;
function consumeExecutableReplacerFactory(params) {
const { executableFilePath } = params;
const consumeExecutableReplacer = (0, addCache_1.addCache)(async (params) => {
const { parsedImportExportStatement, version, destDirPath } = params;
let out;
try {
out = await st.exec(`"${process.argv[0]}" "${executableFilePath}" ${JSON.stringify(ParsedImportExportStatement_1.ParsedImportExportStatement.stringify(parsedImportExportStatement))} ${version} ${JSON.stringify(destDirPath)}`);
}
catch (error) {
(0, tsafe_1.assert)((0, tsafe_1.is)(error));
if (error.code === exitCodeForUndefined) {
return undefined;
}
throw error;
}
const [debugLog, result] = out.split(separatorBetweenDebugAndResult);
if (debugLog) {
process.stdout.write(debugLog);
}
return result;
});
return { consumeExecutableReplacer };
}
exports.consumeExecutableReplacerFactory = consumeExecutableReplacerFactory;
/***/ }),
/***/ 2603:
/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) {
"use strict";
var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) {
if (k2 === undefined) k2 = k;
var desc = Object.getOwnPropertyDescriptor(m, k);
if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) {
desc = { enumerable: true, get: function() { return m[k]; } };
}
Object.defineProperty(o, k2, desc);
}) : (function(o, m, k, k2) {
if (k2 === undefined) k2 = k;
o[k2] = m[k];
}));
var __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 }));
__exportStar(__nccwpck_require__(7430), exports);
/***/ }),
/***/ 1034:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.knownPorts = void 0;
exports.knownPorts = {
"builtins": {
"events": "https://deno.land/std/node/events.ts",
"fs": "https://deno.land/std/node/fs.ts",
"os": "https://deno.land/std/node/os.ts",
"path": "https://deno.land/std/node/path.ts",
"process": "https://deno.land/std/node/process.ts",
"querystring": "https://deno.land/std/node/querystring.ts",
"timers": "https://deno.land/std/node/timers.ts",
"util": "https://deno.land/std/node/util.ts",
"global": "https://deno.land/std/node/global.ts",
"buffer": "https://deno.land/std/node/buffer.ts",
"url": "https://deno.land/std/node/url.ts",
"assert": "https://deno.land/std/node/assert.ts",
"crypto": "https://deno.land/std/node/crypto.ts",
"stream": "https://deno.land/std/node/stream.ts",
"child_process": "https://deno.land/std/node/child_process.ts",
"console": "https://deno.land/std/node/console.ts",
"cluster": "https://deno.land/std/node/cluster.ts",
"dgram": "https://deno.land/std/node/dgram.ts",
"dns": "https://deno.land/std/node/dns.ts",
"http": "https://deno.land/std/node/http.ts",
"http2": "https://deno.land/std/node/http2.ts",
"https": "https://deno.land/std/node/https.ts",
"inspector": "https://deno.land/std/node/inspector.ts",
"module": "https://deno.land/std/node/module.ts",
"net": "https://deno.land/std/node/net.ts",
"perf_hooks": "https://deno.land/std/node/perf_hooks.ts",
"readline": "https://deno.land/std/node/readline.ts",
"repl": "https://deno.land/std/node/repl.ts",
"string_decoder": "https://deno.land/std/node/string_decoder.ts",
"sys": "https://deno.land/std/node/sys.ts",
"tls": "https://deno.land/std/node/tls.ts",
"tty": "https://deno.land/std/node/tty.ts",
"v8": "https://deno.land/std/node/v8.ts",
"vm": "https://deno.land/std/node/vm.ts",
"wasi": "https://deno.land/std/node/wasi.ts",
"worker_threads": "https://deno.land/std/node/worker_threads.ts",
"zlib": "https://deno.land/std/node/zlib.ts"
/*
Important: built in missing: http, https...
Follow evolution of support here: https://deno.land/std/node/README.md
__filename and __dirname supported.
*/
},
"third_party": {
"js-yaml": "https://deno.land/x/js_yaml_port/js-yaml.js",
"ts-md5": "garronej/ts-md5",
/*
Unfortunately, you still have to use //@ts-ignore when using Reflect.getMetadata('design:paramtypes', target, key);
or other reflect-metadata feature. There is currently no way of loading the types definitions in Deno.
See: https://github.com/ovesco/diosaur/pull/4
*/
"reflect-metadata": "https://raw.githubusercontent.com/rbuckton/reflect-metadata/master/Reflect.js",
"fp-ts": "garronej/fp-ts"
/*
NOTE: react, react-dom, rxjs and other modules are supported via custom import replacer.
Checkout the complete list here: https://github.com/garronej/denoify/tree/master/src/bin/replacer
More module coming soon.
*/
}
};
/***/ }),
/***/ 7430:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.getValidImportUrlFactory = exports.resolveNodeModuleToDenoModuleFactory = void 0;
const ModuleAddress_1 = __nccwpck_require__(6939);
const is404_1 = __nccwpck_require__(6689);
const urlJoin_1 = __nccwpck_require__(6748);
const get_github_default_branch_name_1 = __nccwpck_require__(8593);
const getThirdPartyDenoModuleInfos_1 = __nccwpck_require__(6965);
const node_fetch_1 = __nccwpck_require__(1485);
const commentJson = __nccwpck_require__(9515);
const path = __nccwpck_require__(6928);
const getCurrentStdVersion_1 = __nccwpck_require__(9983);
const addCache_1 = __nccwpck_require__(8590);
const toPosix_1 = __nccwpck_require__(1661);
const tsafe_1 = __nccwpck_require__(4653);
const githubTags_1 = __nccwpck_require__(1991);
const isInsideOrIsDir_1 = __nccwpck_require__(4449);
const knownPorts_1 = __nccwpck_require__(1034);
const assert_1 = __nccwpck_require__(2419);
const exclude_1 = __nccwpck_require__(5567);
const fileAndContent_1 = __nccwpck_require__(2294);
const parseParams_1 = __nccwpck_require__(7689);
const fetchWithTimeout_1 = __nccwpck_require__(674);
function resolveNodeModuleToDenoModuleFactory(params) {
const { log, getInstalledVersionPackageJson } = params;
const { denoPorts } = (() => {
const denoPorts = {};
[knownPorts_1.knownPorts.third_party, knownPorts_1.knownPorts.builtins, params.userProvidedPorts].forEach(record => Object.keys(record).forEach(nodeModuleName => (denoPorts[nodeModuleName] = record[nodeModuleName])));
return { denoPorts };
})();
const allDependencies = {
...params.dependencies,
...params.devDependencies
};
const isInUserProvidedPort = (nodeModuleName) => nodeModuleName in params.userProvidedPorts;
const resolveNodeModuleToDenoModule = (0, addCache_1.addCache)(async (params) => {
const { nodeModuleName //js-yaml
} = params;
walk: {
if (nodeModuleName in allDependencies) {
break walk;
}
if (!(nodeModuleName in denoPorts)) {
return { "result": "UNKNOWN BUILTIN" };
}
const getValidImportUrlFactoryResult = await (0, exports.getValidImportUrlFactory)({
"moduleAddress": ModuleAddress_1.ModuleAddress.parse(denoPorts[nodeModuleName]),
"desc": "NOT LISTED AS A DEPENDENCY (PROBABLY NODE BUILTIN)"
});
if (!getValidImportUrlFactoryResult.couldConnect) {
return { "result": "UNKNOWN BUILTIN" };
}
const { getValidImportUrl } = getValidImportUrlFactoryResult;
return {
"result": "SUCCESS",
getValidImportUrl
};
}
let gitHubRepo = undefined;
if (ModuleAddress_1.ModuleAddress.GitHubRepo.match(allDependencies[nodeModuleName])) {
/*
If we are here then:
allDependencies[nodeModuleName] === "github:garronej/ts-md5#1.2.7"
else:
allDependencies[nodeModuleName] === "^1.2.3"
*/
gitHubRepo = ModuleAddress_1.ModuleAddress.GitHubRepo.parse(allDependencies[nodeModuleName]);
}
const { version, // 3.13.1 (version installed)
repository: repositoryEntryOfPackageJson } = await getInstalledVersionPackageJson({ nodeModuleName }).catch(() => {
log([
`${nodeModuleName} could not be found in the node_module directory`,
`seems like you needs to re-install your project dependency ( npm install )`
].join(" "));
process.exit(-1);
});
if (gitHubRepo === undefined) {
gitHubRepo = (() => {
const repositoryUrl = repositoryEntryOfPackageJson?.["url"];
if (!repositoryUrl) {
return undefined;
}
const [repositoryName, userOrOrg] = repositoryUrl
.replace(/\.git$/i, "")
.split("/")
.filter((s) => !!s)
.reverse();
if (!repositoryName || !userOrOrg) {
return undefined;
}
return ModuleAddress_1.ModuleAddress.GitHubRepo.parse(`github:${userOrOrg}/${repositoryName}`);
})();
}
walk: {
if (!(nodeModuleName in denoPorts)) {
break walk;
}
const getValidImportUrlFactoryResult = await (0, exports.getValidImportUrlFactory)({
"moduleAddress": ModuleAddress_1.ModuleAddress.parse(denoPorts[nodeModuleName]),
"desc": "MATCH VERSION INSTALLED IN NODE_MODULES",
version
});
if (!getValidImportUrlFactoryResult.couldConnect) {
log([
`WARNING: Even if the port ${denoPorts[nodeModuleName]}`,
`was specified for ${nodeModuleName} we couldn't connect to the repo`
]);
break walk;
}
const { versionFallbackWarning, getValidImportUrl } = getValidImportUrlFactoryResult;
if (versionFallbackWarning) {
log(versionFallbackWarning);
}
return {
"result": "SUCCESS",
getValidImportUrl
};
}
walk: {
if (gitHubRepo === undefined) {
break walk;
}
const getValidImportUrlFactoryResult = await (0, exports.getValidImportUrlFactory)({
"moduleAddress": gitHubRepo,
"desc": "MATCH VERSION INSTALLED IN NODE_MODULES",
version
});
if (!getValidImportUrlFactoryResult.couldConnect) {
break walk;
}
const { versionFallbackWarning, getValidImportUrl } = getValidImportUrlFactoryResult;
if (versionFallbackWarning) {
log(versionFallbackWarning);
}
if (isInUserProvidedPort(nodeModuleName)) {
log([`NOTE: ${nodeModuleName} is a denoified module,`, `there is no need for an entry for in package.json denoPorts`].join(" "));
}
return {
result: "SUCCESS",
getValidImportUrl
};
}
return {
"result": "SUCCESS",
"getValidImportUrl": params => Promise.resolve(`npm:${nodeModuleName}@${version}${(() => {
switch (params.target) {
case "DEFAULT EXPORT":
return "";
case "SPECIFIC FILE":
return `/${params.specificImportPath}`;
}
})()}`)
};
});
return { resolveNodeModuleToDenoModule };
}
exports.resolveNodeModuleToDenoModuleFactory = resolveNodeModuleToDenoModuleFactory;
/** Exported only for tests purpose */
exports.getValidImportUrlFactory = (() => {
/**
* Perform no check, just synchronously assemble the url
* from a ModuleAddress, a branch and a path to file.
* */
function buildUrlFactory(params) {
const { moduleAddress } = params;
const buildUrl = (() => {
switch (moduleAddress.type) {
case "GITHUB REPO":
return (candidateBranch, pathToFile) => (0, urlJoin_1.urlJoin)("https://raw.githubusercontent.com", moduleAddress.userOrOrg, moduleAddress.repositoryName, candidateBranch, (0, toPosix_1.toPosix)(pathToFile));
case "DENO.LAND URL":
return (candidateBranch, pathToFile) => (0, urlJoin_1.urlJoin)([moduleAddress.baseUrlWithoutBranch.replace(/\/$/, ""), `@${candidateBranch}`].join(""), (0, toPosix_1.toPosix)(pathToFile));
case "GITHUB-RAW URL":
return (candidateBranch, pathToFile) => (0, urlJoin_1.urlJoin)(moduleAddress.baseUrlWithoutBranch.replace(/\/$/, ""), candidateBranch, (0, toPosix_1.toPosix)(pathToFile));
}
})();
return { buildUrl };
}
async function* candidateBranches(params) {
const { moduleAddress } = params;
let fallback = false;
if (moduleAddress.type === "DENO.LAND URL" && moduleAddress.isStd) {
yield [await (0, getCurrentStdVersion_1.getCurrentStdVersion)(), fallback];
return undefined;
}
if (params.desc === "MATCH VERSION INSTALLED IN NODE_MODULES") {
const { version } = params;
yield ["v" + version, fallback];
yield [version, fallback];
fallback = { version };
}
if (moduleAddress.branch !== undefined) {
yield [moduleAddress.branch, fallback];
}
switch (moduleAddress.type) {
case "GITHUB-RAW URL":
return undefined;
case "GITHUB REPO":
const latestTag = await (0, githubTags_1.getLatestTag)({
"owner": moduleAddress.userOrOrg,
"repo": moduleAddress.repositoryName
});
if (latestTag !== undefined) {
yield [latestTag, fallback];
}
yield [
await (0, get_github_default_branch_name_1.getGithubDefaultBranchName)({
"owner": moduleAddress.userOrOrg,
"repo": moduleAddress.repositoryName
}),
fallback
];
break;
case "DENO.LAND URL":
if (moduleAddress.branch !== undefined) {
break;
}
if (moduleAddress.isStd) {
yield [
await (0, get_github_default_branch_name_1.getGithubDefaultBranchName)({
"owner": "denoland",
"repo": "deno"
}),
fallback
];
}
else {
const latestVersion = (await (0, getThirdPartyDenoModuleInfos_1.getThirdPartyDenoModuleInfos)({
"denoModuleName": moduleAddress.baseUrlWithoutBranch.split("/").reverse()[0]
}))?.latestVersion;
if (latestVersion === undefined) {
break;
}
yield [latestVersion, fallback];
}
break;
}
}
const getTsconfigOutDir = (0, addCache_1.addCache)(async (params) => {
const { moduleAddress, gitTag } = params;
const { buildUrl } = buildUrlFactory({ moduleAddress });
const tsconfigJson = await (0, node_fetch_1.default)(buildUrl(gitTag, "tsconfig.json")).then(res => (`${res.status}`.startsWith("2") ? res.text() : undefined), () => undefined);
if (tsconfigJson === undefined) {
return undefined;
}
const outDir = commentJson.parse(tsconfigJson)["compilerOptions"]?.["outDir"];
if (typeof outDir !== "string") {
return undefined;
}
return path.normalize((0, toPosix_1.toPosix)(outDir));
});
const { getDenoifyOutDir } = (() => {
const getExplicitDenoifyOutDir = (0, addCache_1.addCache)(async (params) => {
const { gitTag, moduleAddress } = params;
const { buildUrl } = buildUrlFactory({ moduleAddress });
const denoifyOut = (0, parseParams_1.parseAsDenoifyConfig)({
"configFileType": await (0, fileAndContent_1.default)({
"getConfigFileRawContent": async (file) => await (0, node_fetch_1.default)(buildUrl(gitTag, file)).then(res => (`${res.status}`.startsWith("2") ? res.text() : undefined), () => undefined)
})
})?.out;
if (denoifyOut === undefined) {
return undefined;
}
return path.normalize((0, toPosix_1.toPosix)(denoifyOut));
});
const getDenoifyOutDir = (0, addCache_1.addCache)(async (params) => {
const { gitTag, moduleAddress } = params;
explicitely_specified: {
const denoifyOutDir = await getExplicitDenoifyOutDir({ moduleAddress, gitTag });
if (denoifyOutDir === undefined) {
break explicitely_specified;
}
return denoifyOutDir;
}
default_based_on_tsconfig_outDir: {
const tsconfigOutDir = await getTsconfigOutDir({ moduleAddress, gitTag });
if (tsconfigOutDir === undefined) {
break default_based_on_tsconfig_outDir;
}
return path.join(path.dirname(tsconfigOutDir), // .
`deno_${path.basename(tsconfigOutDir)}` //deno_dist
); // deno_dist
}
return undefined;
});
return { getDenoifyOutDir };
})();
async function resolveVersion(params) {
const { moduleAddress } = params;
const { buildUrl } = buildUrlFactory({ moduleAddress });
for await (const [candidateBranch, fallback] of candidateBranches(params)) {
let indexUrl;
switch (moduleAddress.type) {
case "DENO.LAND URL":
case "GITHUB-RAW URL": {
indexUrl = buildUrl(candidateBranch, moduleAddress.pathToIndex);
if (!(await (0, is404_1.is404)(indexUrl))) {
break;
}
continue;
}
case "GITHUB REPO": {
const denoifyOutDir = await getDenoifyOutDir({ moduleAddress, "gitTag": candidateBranch });
if (denoifyOutDir === undefined) {
continue;
}
indexUrl = buildUrl(candidateBranch, path.join(denoifyOutDir, "mod.ts"));
if (await (0, is404_1.is404)(indexUrl)) {
continue;
}
break;
}
}
return {
"branchForVersion": candidateBranch,
"versionFallbackWarning": !fallback
? undefined
: `Can't lookup version ${fallback.version} for module ${JSON.stringify(moduleAddress)}, falling back to ${candidateBranch}`,
indexUrl
};
}
return undefined;
}
const getValidImportUrlFactory = (0, addCache_1.addCache)(async (params) => {
const { moduleAddress } = params;
const { buildUrl } = buildUrlFactory({ moduleAddress });
const versionResolutionResult = await resolveVersion(params);
if (versionResolutionResult === undefined) {
return { "couldConnect": false };
}
const { branchForVersion, versionFallbackWarning, indexUrl } = versionResolutionResult;
const denoifyOutDir = moduleAddress.type !== "GITHUB REPO" ? undefined : await getDenoifyOutDir({ moduleAddress, "gitTag": branchForVersion });
const getValidImportUrl = (0, addCache_1.addCache)((0, tsafe_1.id)(async (params) => {
if (params.target === "DEFAULT EXPORT") {
return indexUrl;
}
const { specificImportPath } = params;
let url = await (async () => {
const pathToFile = await (async () => {
switch (moduleAddress.type) {
case "DENO.LAND URL":
return moduleAddress.isStd
? `${moduleAddress.pathToIndex.replace(/\.ts$/, "")}/${specificImportPath}.ts`
: `${specificImportPath}.ts`;
case "GITHUB-RAW URL":
return `${specificImportPath}.ts`;
case "GITHUB REPO":
//NOTE: resolveVersion was successful so we can assert that:
(0, assert_1.assert)(denoifyOutDir !== undefined);
const tsconfigOutDir = await getTsconfigOutDir({ moduleAddress, "gitTag": branchForVersion });
return (path.join(denoifyOutDir, //deno_dist
tsconfigOutDir !== undefined &&
(0, isInsideOrIsDir_1.isInsideOrIsDir)({ "dirPath": tsconfigOutDir, "fileOrDirPath": specificImportPath })
? path.relative(tsconfigOutDir, // dist
specificImportPath // dist/tools/typeSafety
) // tools/typeSafety
: specificImportPath // tools/typeSafety ( when using enable short path )
) + // deno_dist/tool/typeSafety
".ts"); // deno_dist/tool/typeSafety.ts
}
})();
return buildUrl(branchForVersion, pathToFile);
})();
walk: {
if (await (0, is404_1.is404)(url)) {
break walk;
}
return url;
}
url = url.replace(/\.ts$/, "/index.ts");
// https://.../deno_dist/tool/typeSafety/index.ts
walk: {
if (await (0, is404_1.is404)(url)) {
break walk;
}
return url;
}
throw new Error(`Can't locate ${specificImportPath} from ${JSON.stringify(moduleAddress)}`);
}));
const rawGitHubUserContentUrlToDenoLandXUrl = (0, addCache_1.addCache)(async (params) => {
const { validRawGitHubUserContentUrl, denoifyOutDir } = params;
// https://raw.githubusercontent.com/garronej/tsafe/v0.10.1/deno_dist/assert.ts;
// https://deno.land/x/tsafe@v0.10.1/assert.ts
const regExpMatchArray = validRawGitHubUserContentUrl.match(/^https:\/\/raw\.githubusercontent\.com\/[^\/]+\/([^\/]+)+\/([^\/]+)\/(.*)$/);
(0, assert_1.assert)(regExpMatchArray !== null);
const [, repoName, version, fullPathToFile] = regExpMatchArray;
for (const moduleName of [repoName.replace(/-/g, "_"), repoName.replace(/-/g, "")]) {
const buildDenoLandXUrl = (pathToFile) => (0, urlJoin_1.urlJoin)("https://deno.land/x", `${moduleName}@${version}`, (0, toPosix_1.toPosix)(pathToFile));
for (const pathToFile of [
(0, isInsideOrIsDir_1.isInsideOrIsDir)({ "dirPath": denoifyOutDir, "fileOrDirPath": fullPathToFile })
? path.relative(denoifyOutDir, fullPathToFile)
: undefined,
fullPathToFile
].filter((0, exclude_1.exclude)(undefined))) {
const denoLandXUrl = buildDenoLandXUrl(pathToFile);
const fetchResponse = await (0, fetchWithTimeout_1.fetchWithTimeout)(denoLandXUrl, { "timeout": 8000 });
if (fetchResponse.status === 404 || fetchResponse.status === 400) {
continue;
}
const [denoLandXRawFileContent, gitHubUserContentFileContent] = await Promise.all([
fetchResponse.text(),
(0, node_fetch_1.default)(validRawGitHubUserContentUrl).then(resp => resp.text())
]);
if (denoLandXRawFileContent !== gitHubUserContentFileContent) {
continue;
}
return denoLandXUrl;
}
}
return validRawGitHubUserContentUrl;
});
return {
"couldConnect": true,
versionFallbackWarning,
"getValidImportUrl": moduleAddress.type !== "GITHUB REPO"
? getValidImportUrl
: async (params) => rawGitHubUserContentUrlToDenoLandXUrl({
"validRawGitHubUserContentUrl": await getValidImportUrl(params),
"denoifyOutDir": ((0, assert_1.assert)(denoifyOutDir !== undefined), denoifyOutDir)
})
};
});
return { getValidImportUrlFactory };
})().getValidImportUrlFactory;
/***/ }),
/***/ 6939:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.ModuleAddress = void 0;
var ModuleAddress;
(function (ModuleAddress) {
let GitHubRepo;
(function (GitHubRepo) {
/**
* Input example
* KSXGitHub/simple-js-yaml-port-for-deno or
* github:KSXGitHub/simple-js-yaml-port-for-deno or
* KSXGitHub/simple-js-yaml-port-for-deno#3.12.1 or
* github:KSXGitHub/simple-js-yaml-port-for-deno#3.12.1 or
*/
function parse(raw) {
const match = raw.match(/^(?:github:\s*)?([^\/]*)\/([^\/]+)$/i);
const [repositoryName, branch] = match[2].split("#");
return {
"type": "GITHUB REPO",
"userOrOrg": match[1],
repositoryName,
branch
};
}
GitHubRepo.parse = parse;
/** Match valid parse input */
function match(raw) {
return /^(?:github:)?[^\/\:]+\/[^\/]+$/.test(raw);
}
GitHubRepo.match = match;
})(GitHubRepo = ModuleAddress.GitHubRepo || (ModuleAddress.GitHubRepo = {}));
let GitHubRawUrl;
(function (GitHubRawUrl) {
function parse(raw) {
const match = raw.match(/^(https?:\/\/raw\.github(?:usercontent)?\.com\/[^\/]+\/[^\/]+\/)([^\/]+)\/(.*)$/);
return {
"type": "GITHUB-RAW URL",
"baseUrlWithoutBranch": match[1]
.replace(/^https?:\/\/raw\.github(?:usercontent)?/, "https://raw.githubusercontent")
.replace(/\/$/, ""),
"branch": match[2],
"pathToIndex": match[3]
};
}
GitHubRawUrl.parse = parse;
function match(raw) {
return /^https?:\/\/raw\.github(?:usercontent)?\.com/.test(raw);
}
GitHubRawUrl.match = match;
})(GitHubRawUrl = ModuleAddress.GitHubRawUrl || (ModuleAddress.GitHubRawUrl = {}));
let DenoLandUrl;
(function (DenoLandUrl) {
function parse(raw) {
const isStd = /^https?:\/\/deno\.land\/std/.test(raw);
const match = isStd
? raw.match(/^(https?:\/\/deno\.land\/std)([@\/].*)$/)
: raw.match(/^(https?:\/\/deno\.land\/x\/[^@\/]+)([@\/].*)$/);
// https://deno.land/std@master/node/querystring.ts
// [1]: https://deno.land/std
// [2]: @master/node/querystring.ts
// https://deno.land/std/node/querystring.ts
// [1]: https://deno.land/std
// [2]: /node/querystring.ts
//https://deno.land/x/foo@1.2.3/mod.js
// [1]: https://deno.land/x/foo
// [2]: @1.2.3/mod.js
//https://deno.land/x/foo/mod.js
// [1]: https://deno.land/x/foo
// [2]: /mod.js
const { branch, pathToIndex } = match[2].startsWith("@")
? (() => {
const [, branch, // 1.2.3
pathToIndex // mod.js
] = match[2].match(/^@([^\/]+)\/(.*)$/);
return { branch, pathToIndex };
})()
: {
"branch": undefined,
"pathToIndex": match[2].replace(/^\//, "") // mod.js
};
return {
"type": "DENO.LAND URL",
isStd,
"baseUrlWithoutBranch": match[1],
"branch": branch,
pathToIndex
};
}
DenoLandUrl.parse = parse;
function match(raw) {
return /^https?:\/\/deno\.land\/(?:(?:std)|(?:x))[\/|@]/.test(raw);
}
DenoLandUrl.match = match;
})(DenoLandUrl = ModuleAddress.DenoLandUrl || (ModuleAddress.DenoLandUrl = {}));
function parse(raw) {
for (const ns of [GitHubRepo, GitHubRawUrl, DenoLandUrl]) {
if (!ns.match(raw)) {
continue;
}
return ns.parse(raw);
}
throw new Error(`${raw} is not a valid module address`);
}
ModuleAddress.parse = parse;
})(ModuleAddress = exports.ModuleAddress || (exports.ModuleAddress = {}));
/***/ }),
/***/ 9832:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.ParsedImportExportStatement = void 0;
const tsafe_1 = __nccwpck_require__(4653);
var ParsedImportExportStatement;
(function (ParsedImportExportStatement) {
let ParsedArgument;
(function (ParsedArgument) {
function parse(argument) {
if (argument.startsWith(".")) {
return (0, tsafe_1.id)({
"type": "PROJECT LOCAL FILE",
"relativePath": argument
});
}
if (/^(https?:)?\/\//i.test(argument)) {
return (0, tsafe_1.id)({
"type": "URL",
"url": argument
});
}
{
let [nodeModuleName, ...rest] = argument.split("/");
if (nodeModuleName.startsWith("@") && rest.length !== 0) {
const [scopedNodeModuleName, ...restNew] = rest;
nodeModuleName = `${nodeModuleName}/${scopedNodeModuleName}`;
rest = restNew;
}
return (0, tsafe_1.id)({
"type": "DEPENDENCY",
nodeModuleName,
"specificImportPath": rest.join("/") || undefined
});
}
}
ParsedArgument.parse = parse;
function stringify(parsedArgument) {
switch (parsedArgument.type) {
case "PROJECT LOCAL FILE":
return parsedArgument.relativePath;
case "DEPENDENCY": {
const { nodeModuleName, specificImportPath } = parsedArgument;
return `${nodeModuleName}${specificImportPath ? `/${specificImportPath}` : ``}`;
}
case "URL":
return parsedArgument.url;
}
}
ParsedArgument.stringify = stringify;
})(ParsedArgument = ParsedImportExportStatement.ParsedArgument || (ParsedImportExportStatement.ParsedArgument = {}));
function parse(importExportStatement) {
importExportStatement = importExportStatement.replace(/\s+^/, "").replace(/$\s+/, "");
const isAsyncImport = importExportStatement.endsWith(")");
const quoteSymbol = importExportStatement.endsWith(`'${isAsyncImport ? ")" : ""}`) ? "'" : '"';
const parsedArgument = ParsedImportExportStatement.ParsedArgument.parse(importExportStatement.match(new RegExp(`^[^${quoteSymbol}]*${quoteSymbol}([^${quoteSymbol}]+)${quoteSymbol}[^${quoteSymbol}]*$`))[1]);
if (isAsyncImport) {
return (0, tsafe_1.id)({
"isAsyncImport": true,
quoteSymbol,
parsedArgument
});
}
if (new RegExp(`^declare\\s+module\\s+${quoteSymbol}`).test(importExportStatement)) {
return (0, tsafe_1.id)({
parsedArgument,
"isAsyncImport": false,
quoteSymbol,
"statementType": "declare module"
});
}
if (new RegExp(`^import\\s+${quoteSymbol}`).test(importExportStatement)) {
return (0, tsafe_1.id)({
parsedArgument,
"isAsyncImport": false,
quoteSymbol,
"statementType": "import",
"target": undefined
});
}
const statementType = importExportStatement.startsWith("import") ? "import" : "export";
const isTypeOnly = /^(?:import|export)\s+type/.test(importExportStatement);
const target = importExportStatement
.match(new RegExp(`^(?:import|export)(?:\\s+type)?\\s*([^${quoteSymbol}]+)${quoteSymbol}`))[1]
.replace(/\s*from\s*$/, "");
return (0, tsafe_1.id)({
"isAsyncImport": false,
parsedArgument,
isTypeOnly,
quoteSymbol,
statementType,
target
});
}
ParsedImportExportStatement.parse = parse;
function stringify(parsedImportExportStatement) {
const { quoteSymbol, parsedArgument } = parsedImportExportStatement;
const quotedArgument = `${quoteSymbol}${ParsedImportExportStatement.ParsedArgument.stringify(parsedArgument)}${quoteSymbol}`;
if (parsedImportExportStatement.isAsyncImport) {
return `import(${quotedArgument})`;
}
if (parsedImportExportStatement.statementType === "declare module") {
return `declare module ${quotedArgument}`;
}
if (parsedImportExportStatement.target === undefined) {
return `import ${quotedArgument}`;
}
const { statementType, isTypeOnly, target } = parsedImportExportStatement;
return [statementType, ...(isTypeOnly ? ["type"] : []), target, "from", quotedArgument].join(" ");
}
ParsedImportExportStatement.stringify = stringify;
})(ParsedImportExportStatement = exports.ParsedImportExportStatement || (exports.ParsedImportExportStatement = {}));
/***/ }),
/***/ 8165:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.Version = void 0;
var Version;
(function (Version) {
function parse(versionStr) {
const match = versionStr.match(/^([0-9]+)\.([0-9]+)\.([0-9]+)$/);
if (!match) {
throw new Error(`${versionStr} is not a valid NPM version`);
}
return {
"major": parseInt(match[1]),
"minor": parseInt(match[2]),
"patch": parseInt(match[3])
};
}
Version.parse = parse;
function stringify(v) {
return `${v.major}.${v.minor}.${v.patch}`;
}
Version.stringify = stringify;
/**
*
* v1 < v2 => -1
* v1 === v2 => 0
* v1 > v2 => 1
*
*/
function compare(v1, v2) {
const sign = (n) => (n === 0 ? 0 : n < 0 ? -1 : 1);
if (v1.major === v2.major) {
if (v1.minor === v2.minor) {
return sign(v1.patch - v2.patch);
}
else {
return sign(v1.minor - v2.minor);
}
}
else {
return sign(v1.major - v2.major);
}
}
Version.compare = compare;
function bumpType(params) {
const versionAhead = parse(params.versionAheadStr);
const versionBehind = parse(params.versionBehindStr);
if (compare(versionBehind, versionAhead) === 1) {
throw new Error(`Version regression ${versionBehind} -> ${versionAhead}`);
}
if (versionBehind.major !== versionAhead.major) {
return "MAJOR";
}
else if (versionBehind.minor !== versionAhead.minor) {
return "MINOR";
}
else if (versionBehind.patch !== versionAhead.patch) {
return "PATCH";
}
else {
return "SAME";
}
}
Version.bumpType = bumpType;
})(Version = exports.Version || (exports.Version = {}));
/***/ }),
/***/ 8590:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.addCache = void 0;
const fs = __nccwpck_require__(9896);
/** Save results of anterior calls */
function addCache(f, params) {
const previousResults = params === undefined || !fs.existsSync(params.filePathForPersistanceAcrossRun)
? {}
: JSON.parse(fs.readFileSync(params.filePathForPersistanceAcrossRun).toString("utf8"));
if (params !== undefined) {
process.once("exit", () => fs.writeFileSync(params.filePathForPersistanceAcrossRun, Buffer.from(JSON.stringify(previousResults), "utf8") //TODO: reorder props
));
}
return async function callee(...args) {
const key = shallowEqualStringifyInvariant(args);
if (key in previousResults) {
return previousResults[key][0];
}
previousResults[key] = [await f(...args)];
//NOTE: So that JSON.parse restore it well.
if (previousResults[key][0] === undefined) {
previousResults[key].pop();
}
return callee(...args);
};
}
exports.addCache = addCache;
/**
Two shallow equal object will return the same string.
assert(
shallowEqualStringifyInvariant({ "p1": "foo", "p2": "bar" })
===
shallowEqualStringifyInvariant({ "p2": "bar", "p1": "foo" })
);
*/
function shallowEqualStringifyInvariant(o) {
const s1 = JSON.stringify(o);
const p1 = JSON.parse(s1);
const p2 = {};
Object.keys(p1)
.sort()
.forEach(key => (p2[key] = p1[key]));
return JSON.stringify(p2);
}
/***/ }),
/***/ 9002:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.crawl = void 0;
const fs = __nccwpck_require__(9896);
const path = __nccwpck_require__(6928);
/** List all files in a given directory return paths relative to the dir_path */
exports.crawl = (() => {
const crawlRec = (dir_path, paths) => {
for (const file_name of fs.readdirSync(dir_path)) {
const file_path = path.join(dir_path, file_name);
if (fs.lstatSync(file_path).isDirectory()) {
crawlRec(file_path, paths);
continue;
}
paths.push(file_path);
}
};
return function crawl(dir_path) {
const paths = [];
crawlRec(dir_path, paths);
return paths.map(file_path => path.relative(dir_path, file_path));
};
})();
/***/ }),
/***/ 4906:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.createDirectoryIfNotExistsRecursive = void 0;
const fs = __nccwpck_require__(9896);
const path = __nccwpck_require__(6928);
/** To support node < v10 we don't use fs.mkdir */
async function createDirectoryIfNotExistsRecursive(dirname) {
return new Promise(resolve => {
// initialize directories with final directory
const directories_backwards = [dirname];
let minimize_dir = dirname;
while ((minimize_dir = minimize_dir.substring(0, minimize_dir.lastIndexOf(path.sep)))) {
directories_backwards.push(minimize_dir);
}
const directories_needed = [];
//stop on first directory found
for (const d in directories_backwards) {
if (!fs.existsSync(directories_backwards[d])) {
directories_needed.push(directories_backwards[d]);
}
else {
break;
}
}
//no directories missing
if (!directories_needed.length) {
return resolve();
}
// make all directories in ascending order
var directories_forwards = directories_needed.reverse();
for (const d in directories_forwards) {
fs.mkdirSync(directories_forwards[d]);
}
return resolve();
});
}
exports.createDirectoryIfNotExistsRecursive = createDirectoryIfNotExistsRecursive;
/***/ }),
/***/ 674:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.fetchWithTimeout = void 0;
const node_fetch_1 = __nccwpck_require__(1485);
async function fetchWithTimeout(url, options) {
const controller = new AbortController();
const timer = setTimeout(() => {
controller.abort();
}, options.timeout); // Timeout set to 8000 ms
let fetchResponse;
try {
fetchResponse = await (0, node_fetch_1.default)(url, {
signal: controller.signal
});
}
catch (err) {
throw err;
}
finally {
clearTimeout(timer);
}
return fetchResponse;
}
exports.fetchWithTimeout = fetchWithTimeout;
/***/ }),
/***/ 7199:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.fsCopy = void 0;
const fs = __nccwpck_require__(9896);
const path = __nccwpck_require__(6928);
const crawl_1 = __nccwpck_require__(9002);
/** Copy file or directory. Works on windows.
* Non exsisting directories are created recursively
*/
const fsCopy = (src, dest) => {
if (!fs.lstatSync(src).isDirectory()) {
fs.mkdirSync(path.dirname(dest), { "recursive": true });
fs.copyFileSync(src, dest);
return;
}
(0, crawl_1.crawl)(src).forEach(relativeFilePath => {
fs.mkdirSync(dest, { "recursive": true });
fs.copyFileSync(path.join(src, relativeFilePath), path.join(dest, relativeFilePath));
});
};
exports.fsCopy = fsCopy;
/***/ }),
/***/ 7492:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.getProjectRoot = void 0;
const fs = __nccwpck_require__(9896);
const path = __nccwpck_require__(6928);
function getProjectRootRec(dirPath) {
if (fs.existsSync(path.join(dirPath, "package.json"))) {
return dirPath;
}
return getProjectRootRec(path.join(dirPath, ".."));
}
let result = undefined;
function getProjectRoot() {
if (result !== undefined) {
return result;
}
return (result = getProjectRootRec(__dirname));
}
exports.getProjectRoot = getProjectRoot;
/***/ }),
/***/ 1991:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.getLatestTag = exports.listTags = void 0;
const rest_1 = __nccwpck_require__(5772);
const addCache_1 = __nccwpck_require__(8590);
let octokit = undefined;
const octokit_repos_listTags = (0, addCache_1.addCache)(async (params) => {
if (octokit === undefined) {
const auth = process.env["GITHUB_TOKEN"];
octokit = new rest_1.Octokit(auth ? { auth } : undefined);
}
return octokit.repos.listTags(params);
});
const per_page = 99;
async function* listTags(params) {
const { owner, repo } = params;
let page = 1;
while (true) {
const resp = await octokit_repos_listTags({
owner,
repo,
per_page,
"page": page++
});
for (const branch of resp.data.map(({ name }) => name)) {
yield branch;
}
if (resp.data.length < 99) {
break;
}
}
}
exports.listTags = listTags;
/** Returns the same "latest" tag as deno.land/x, not actually the latest though */
async function getLatestTag(params) {
const { owner, repo } = params;
const itRes = await listTags({ owner, repo }).next();
if (itRes.done) {
return undefined;
}
return itRes.value;
}
exports.getLatestTag = getLatestTag;
/***/ }),
/***/ 3787:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.globProxyFactory = void 0;
const glob = __nccwpck_require__(3574);
function globProxyFactory(params) {
const { cwdAndRoot } = params;
function globProxy(params) {
const { pathWithWildcard } = params;
return glob.sync(pathWithWildcard, {
"cwd": cwdAndRoot,
"root": cwdAndRoot,
"dot": true
});
}
return { globProxy };
}
exports.globProxyFactory = globProxyFactory;
/***/ }),
/***/ 6689:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.is404 = void 0;
const fetchWithTimeout_1 = __nccwpck_require__(674);
/** Return true if 404 or 400 */
function is404(url) {
return (0, fetchWithTimeout_1.fetchWithTimeout)(url, { "timeout": 8000 }).then(({ status }) => status === 404 || status === 400);
}
exports.is404 = is404;
/***/ }),
/***/ 4449:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.isInsideOrIsDir = void 0;
const path = __nccwpck_require__(6928);
function isInsideOrIsDir(params) {
const { dirPath, fileOrDirPath } = params;
const relative = path.relative(dirPath, fileOrDirPath);
if (relative === "") {
return true;
}
return !relative.startsWith("..");
}
exports.isInsideOrIsDir = isInsideOrIsDir;
/***/ }),
/***/ 3217:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.replaceAsync = void 0;
/** Equivalent of String.prototype.replace but with async replacer is async */
async function replaceAsync(str, regex, replacerAsync) {
const promises = [];
str.replace(regex, (match, ...args) => {
const promise = replacerAsync(match, ...args);
promises.push(promise);
return "";
});
const data = await Promise.all(promises);
return str.replace(regex, () => data.shift());
}
exports.replaceAsync = replaceAsync;
/***/ }),
/***/ 494:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.resolvePathsWithWildcards = void 0;
const globProxy_1 = __nccwpck_require__(3787);
const fs = __nccwpck_require__(9896);
const crawl_1 = __nccwpck_require__(9002);
const path = __nccwpck_require__(6928);
function resolvePathsWithWildcards_noPriority(params) {
const { pathWithWildcards } = params;
const { globProxy } = (0, globProxy_1.globProxyFactory)({ "cwdAndRoot": "." });
const flat = [(prev, curr) => [...prev, ...curr], []];
const resolvePaths = (pathWithWildcards) => pathWithWildcards
.map(pathWithWildcard => globProxy({ pathWithWildcard }))
.reduce(...flat)
//Next op is to get the appropriate case in the outputs
//Ex if we have README.md as input but readme.md is the
//file that is actually there we want readme.md as output.
.map(fileOrDirPath => path.join(path.dirname(fileOrDirPath), fs.readdirSync(path.dirname(fileOrDirPath)).find(basename => path.relative(basename, path.basename(fileOrDirPath)) === "")))
.map(fileOrDirPath => !fs.lstatSync(fileOrDirPath).isDirectory()
? [fileOrDirPath]
: (0, crawl_1.crawl)(fileOrDirPath).map(filePath => path.join(fileOrDirPath, filePath)))
.reduce(...flat);
const filesToInclude = resolvePaths(pathWithWildcards.filter(p => !p.startsWith("!")));
const filesToExclude = resolvePaths(pathWithWildcards.filter(p => p.startsWith("!")).map(p => p.replace(/^\!/, "")));
return Array.from(new Set(filesToInclude.filter(p => !filesToExclude.includes(p))));
}
function resolvePathsWithWildcards(params) {
const { pathWithWildcards } = params;
let resolvedPaths = [];
for (const pathWithWildcard of pathWithWildcards) {
const resolvedPaths_i = resolvePathsWithWildcards_noPriority({ "pathWithWildcards": [...resolvedPaths, pathWithWildcard] });
resolvedPaths = resolvedPaths_i;
}
return resolvedPaths;
}
exports.resolvePathsWithWildcards = resolvePathsWithWildcards;
/***/ }),
/***/ 1661:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.toPosix = void 0;
function toPosix(potentiallyWin32Path) {
return potentiallyWin32Path.replace(/\\/g, "/");
}
exports.toPosix = toPosix;
/***/ }),
/***/ 2009:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.transformCodebase = void 0;
const fs = __nccwpck_require__(9896);
const path = __nccwpck_require__(6928);
const crawl_1 = __nccwpck_require__(9002);
const createDirectoryIfNotExistsRecursive_1 = __nccwpck_require__(4906);
/** Apply a transformation function to every file of directory */
async function transformCodebase(params) {
const { srcDirPath, destDirPath, transformSourceCodeString } = params;
for (const file_relative_path of (0, crawl_1.crawl)(srcDirPath)) {
const filePath = path.join(srcDirPath, file_relative_path);
const transformSourceCodeStringResult = await transformSourceCodeString({
"sourceCode": fs.readFileSync(filePath).toString("utf8"),
"filePath": path.join(srcDirPath, file_relative_path)
});
if (transformSourceCodeStringResult === undefined) {
continue;
}
await (0, createDirectoryIfNotExistsRecursive_1.createDirectoryIfNotExistsRecursive)(path.dirname(path.join(destDirPath, file_relative_path)));
const { newFileName, modifiedSourceCode } = transformSourceCodeStringResult;
fs.writeFileSync(path.join(path.dirname(path.join(destDirPath, file_relative_path)), newFileName ?? path.basename(file_relative_path)), Buffer.from(modifiedSourceCode, "utf8"));
}
}
exports.transformCodebase = transformCodebase;
/***/ }),
/***/ 6748:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.urlJoin = void 0;
exports.urlJoin = __nccwpck_require__(4106);
/***/ }),
/***/ 4609:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
"use strict";
/* module decorator */ module = __nccwpck_require__.nmd(module);
const colorConvert = __nccwpck_require__(744);
const wrapAnsi16 = (fn, offset) => function () {
const code = fn.apply(colorConvert, arguments);
return `\u001B[${code + offset}m`;
};
const wrapAnsi256 = (fn, offset) => function () {
const code = fn.apply(colorConvert, arguments);
return `\u001B[${38 + offset};5;${code}m`;
};
const wrapAnsi16m = (fn, offset) => function () {
const rgb = fn.apply(colorConvert, arguments);
return `\u001B[${38 + offset};2;${rgb[0]};${rgb[1]};${rgb[2]}m`;
};
function assembleStyles() {
const codes = new Map();
const styles = {
modifier: {
reset: [0, 0],
// 21 isn't widely supported and 22 does the same thing
bold: [1, 22],
dim: [2, 22],
italic: [3, 23],
underline: [4, 24],
inverse: [7, 27],
hidden: [8, 28],
strikethrough: [9, 29]
},
color: {
black: [30, 39],
red: [31, 39],
green: [32, 39],
yellow: [33, 39],
blue: [34, 39],
magenta: [35, 39],
cyan: [36, 39],
white: [37, 39],
gray: [90, 39],
// Bright color
redBright: [91, 39],
greenBright: [92, 39],
yellowBright: [93, 39],
blueBright: [94, 39],
magentaBright: [95, 39],
cyanBright: [96, 39],
whiteBright: [97, 39]
},
bgColor: {
bgBlack: [40, 49],
bgRed: [41, 49],
bgGreen: [42, 49],
bgYellow: [43, 49],
bgBlue: [44, 49],
bgMagenta: [45, 49],
bgCyan: [46, 49],
bgWhite: [47, 49],
// Bright color
bgBlackBright: [100, 49],
bgRedBright: [101, 49],
bgGreenBright: [102, 49],
bgYellowBright: [103, 49],
bgBlueBright: [104, 49],
bgMagentaBright: [105, 49],
bgCyanBright: [106, 49],
bgWhiteBright: [107, 49]
}
};
// Fix humans
styles.color.grey = styles.color.gray;
for (const groupName of Object.keys(styles)) {
const group = styles[groupName];
for (const styleName of Object.keys(group)) {
const style = group[styleName];
styles[styleName] = {
open: `\u001B[${style[0]}m`,
close: `\u001B[${style[1]}m`
};
group[styleName] = styles[styleName];
codes.set(style[0], style[1]);
}
Object.defineProperty(styles, groupName, {
value: group,
enumerable: false
});
Object.defineProperty(styles, 'codes', {
value: codes,
enumerable: false
});
}
const ansi2ansi = n => n;
const rgb2rgb = (r, g, b) => [r, g, b];
styles.color.close = '\u001B[39m';
styles.bgColor.close = '\u001B[49m';
styles.color.ansi = {
ansi: wrapAnsi16(ansi2ansi, 0)
};
styles.color.ansi256 = {
ansi256: wrapAnsi256(ansi2ansi, 0)
};
styles.color.ansi16m = {
rgb: wrapAnsi16m(rgb2rgb, 0)
};
styles.bgColor.ansi = {
ansi: wrapAnsi16(ansi2ansi, 10)
};
styles.bgColor.ansi256 = {
ansi256: wrapAnsi256(ansi2ansi, 10)
};
styles.bgColor.ansi16m = {
rgb: wrapAnsi16m(rgb2rgb, 10)
};
for (let key of Object.keys(colorConvert)) {
if (typeof colorConvert[key] !== 'object') {
continue;
}
const suite = colorConvert[key];
if (key === 'ansi16') {
key = 'ansi';
}
if ('ansi16' in suite) {
styles.color.ansi[key] = wrapAnsi16(suite.ansi16, 0);
styles.bgColor.ansi[key] = wrapAnsi16(suite.ansi16, 10);
}
if ('ansi256' in suite) {
styles.color.ansi256[key] = wrapAnsi256(suite.ansi256, 0);
styles.bgColor.ansi256[key] = wrapAnsi256(suite.ansi256, 10);
}
if ('rgb' in suite) {
styles.color.ansi16m[key] = wrapAnsi16m(suite.rgb, 0);
styles.bgColor.ansi16m[key] = wrapAnsi16m(suite.rgb, 10);
}
}
return styles;
}
// Make the export immutable
Object.defineProperty(module, 'exports', {
enumerable: true,
get: assembleStyles
});
/***/ }),
/***/ 1318:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
"use strict";
const escapeStringRegexp = __nccwpck_require__(3580);
const ansiStyles = __nccwpck_require__(4609);
const stdoutColor = (__nccwpck_require__(5809).stdout);
const template = __nccwpck_require__(5125);
const isSimpleWindowsTerm = process.platform === 'win32' && !(process.env.TERM || '').toLowerCase().startsWith('xterm');
// `supportsColor.level` → `ansiStyles.color[name]` mapping
const levelMapping = ['ansi', 'ansi', 'ansi256', 'ansi16m'];
// `color-convert` models to exclude from the Chalk API due to conflicts and such
const skipModels = new Set(['gray']);
const styles = Object.create(null);
function applyOptions(obj, options) {
options = options || {};
// Detect level if not set manually
const scLevel = stdoutColor ? stdoutColor.level : 0;
obj.level = options.level === undefined ? scLevel : options.level;
obj.enabled = 'enabled' in options ? options.enabled : obj.level > 0;
}
function Chalk(options) {
// We check for this.template here since calling `chalk.constructor()`
// by itself will have a `this` of a previously constructed chalk object
if (!this || !(this instanceof Chalk) || this.template) {
const chalk = {};
applyOptions(chalk, options);
chalk.template = function () {
const args = [].slice.call(arguments);
return chalkTag.apply(null, [chalk.template].concat(args));
};
Object.setPrototypeOf(chalk, Chalk.prototype);
Object.setPrototypeOf(chalk.template, chalk);
chalk.template.constructor = Chalk;
return chalk.template;
}
applyOptions(this, options);
}
// Use bright blue on Windows as the normal blue color is illegible
if (isSimpleWindowsTerm) {
ansiStyles.blue.open = '\u001B[94m';
}
for (const key of Object.keys(ansiStyles)) {
ansiStyles[key].closeRe = new RegExp(escapeStringRegexp(ansiStyles[key].close), 'g');
styles[key] = {
get() {
const codes = ansiStyles[key];
return build.call(this, this._styles ? this._styles.concat(codes) : [codes], this._empty, key);
}
};
}
styles.visible = {
get() {
return build.call(this, this._styles || [], true, 'visible');
}
};
ansiStyles.color.closeRe = new RegExp(escapeStringRegexp(ansiStyles.color.close), 'g');
for (const model of Object.keys(ansiStyles.color.ansi)) {
if (skipModels.has(model)) {
continue;
}
styles[model] = {
get() {
const level = this.level;
return function () {
const open = ansiStyles.color[levelMapping[level]][model].apply(null, arguments);
const codes = {
open,
close: ansiStyles.color.close,
closeRe: ansiStyles.color.closeRe
};
return build.call(this, this._styles ? this._styles.concat(codes) : [codes], this._empty, model);
};
}
};
}
ansiStyles.bgColor.closeRe = new RegExp(escapeStringRegexp(ansiStyles.bgColor.close), 'g');
for (const model of Object.keys(ansiStyles.bgColor.ansi)) {
if (skipModels.has(model)) {
continue;
}
const bgModel = 'bg' + model[0].toUpperCase() + model.slice(1);
styles[bgModel] = {
get() {
const level = this.level;
return function () {
const open = ansiStyles.bgColor[levelMapping[level]][model].apply(null, arguments);
const codes = {
open,
close: ansiStyles.bgColor.close,
closeRe: ansiStyles.bgColor.closeRe
};
return build.call(this, this._styles ? this._styles.concat(codes) : [codes], this._empty, model);
};
}
};
}
const proto = Object.defineProperties(() => {}, styles);
function build(_styles, _empty, key) {
const builder = function () {
return applyStyle.apply(builder, arguments);
};
builder._styles = _styles;
builder._empty = _empty;
const self = this;
Object.defineProperty(builder, 'level', {
enumerable: true,
get() {
return self.level;
},
set(level) {
self.level = level;
}
});
Object.defineProperty(builder, 'enabled', {
enumerable: true,
get() {
return self.enabled;
},
set(enabled) {
self.enabled = enabled;
}
});
// See below for fix regarding invisible grey/dim combination on Windows
builder.hasGrey = this.hasGrey || key === 'gray' || key === 'grey';
// `__proto__` is used because we must return a function, but there is
// no way to create a function with a different prototype
builder.__proto__ = proto; // eslint-disable-line no-proto
return builder;
}
function applyStyle() {
// Support varags, but simply cast to string in case there's only one arg
const args = arguments;
const argsLen = args.length;
let str = String(arguments[0]);
if (argsLen === 0) {
return '';
}
if (argsLen > 1) {
// Don't slice `arguments`, it prevents V8 optimizations
for (let a = 1; a < argsLen; a++) {
str += ' ' + args[a];
}
}
if (!this.enabled || this.level <= 0 || !str) {
return this._empty ? '' : str;
}
// Turns out that on Windows dimmed gray text becomes invisible in cmd.exe,
// see https://github.com/chalk/chalk/issues/58
// If we're on Windows and we're dealing with a gray color, temporarily make 'dim' a noop.
const originalDim = ansiStyles.dim.open;
if (isSimpleWindowsTerm && this.hasGrey) {
ansiStyles.dim.open = '';
}
for (const code of this._styles.slice().reverse()) {
// Replace any instances already present with a re-opening code
// otherwise only the part of the string until said closing code
// will be colored, and the rest will simply be 'plain'.
str = code.open + str.replace(code.closeRe, code.open) + code.close;
// Close the styling before a linebreak and reopen
// after next line to fix a bleed issue on macOS
// https://github.com/chalk/chalk/pull/92
str = str.replace(/\r?\n/g, `${code.close}$&${code.open}`);
}
// Reset the original `dim` if we changed it to work around the Windows dimmed gray issue
ansiStyles.dim.open = originalDim;
return str;
}
function chalkTag(chalk, strings) {
if (!Array.isArray(strings)) {
// If chalk() was called by itself or with a string,
// return the string itself as a string.
return [].slice.call(arguments, 1).join(' ');
}
const args = [].slice.call(arguments, 2);
const parts = [strings.raw[0]];
for (let i = 1; i < strings.length; i++) {
parts.push(String(args[i - 1]).replace(/[{}\\]/g, '\\$&'));
parts.push(String(strings.raw[i]));
}
return template(chalk, parts.join(''));
}
Object.defineProperties(Chalk.prototype, styles);
module.exports = Chalk(); // eslint-disable-line new-cap
module.exports.supportsColor = stdoutColor;
module.exports["default"] = module.exports; // For TypeScript
/***/ }),
/***/ 5125:
/***/ ((module) => {
"use strict";
const TEMPLATE_REGEX = /(?:\\(u[a-f\d]{4}|x[a-f\d]{2}|.))|(?:\{(~)?(\w+(?:\([^)]*\))?(?:\.\w+(?:\([^)]*\))?)*)(?:[ \t]|(?=\r?\n)))|(\})|((?:.|[\r\n\f])+?)/gi;
const STYLE_REGEX = /(?:^|\.)(\w+)(?:\(([^)]*)\))?/g;
const STRING_REGEX = /^(['"])((?:\\.|(?!\1)[^\\])*)\1$/;
const ESCAPE_REGEX = /\\(u[a-f\d]{4}|x[a-f\d]{2}|.)|([^\\])/gi;
const ESCAPES = new Map([
['n', '\n'],
['r', '\r'],
['t', '\t'],
['b', '\b'],
['f', '\f'],
['v', '\v'],
['0', '\0'],
['\\', '\\'],
['e', '\u001B'],
['a', '\u0007']
]);
function unescape(c) {
if ((c[0] === 'u' && c.length === 5) || (c[0] === 'x' && c.length === 3)) {
return String.fromCharCode(parseInt(c.slice(1), 16));
}
return ESCAPES.get(c) || c;
}
function parseArguments(name, args) {
const results = [];
const chunks = args.trim().split(/\s*,\s*/g);
let matches;
for (const chunk of chunks) {
if (!isNaN(chunk)) {
results.push(Number(chunk));
} else if ((matches = chunk.match(STRING_REGEX))) {
results.push(matches[2].replace(ESCAPE_REGEX, (m, escape, chr) => escape ? unescape(escape) : chr));
} else {
throw new Error(`Invalid Chalk template style argument: ${chunk} (in style '${name}')`);
}
}
return results;
}
function parseStyle(style) {
STYLE_REGEX.lastIndex = 0;
const results = [];
let matches;
while ((matches = STYLE_REGEX.exec(style)) !== null) {
const name = matches[1];
if (matches[2]) {
const args = parseArguments(name, matches[2]);
results.push([name].concat(args));
} else {
results.push([name]);
}
}
return results;
}
function buildStyle(chalk, styles) {
const enabled = {};
for (const layer of styles) {
for (const style of layer.styles) {
enabled[style[0]] = layer.inverse ? null : style.slice(1);
}
}
let current = chalk;
for (const styleName of Object.keys(enabled)) {
if (Array.isArray(enabled[styleName])) {
if (!(styleName in current)) {
throw new Error(`Unknown Chalk style: ${styleName}`);
}
if (enabled[styleName].length > 0) {
current = current[styleName].apply(current, enabled[styleName]);
} else {
current = current[styleName];
}
}
}
return current;
}
module.exports = (chalk, tmp) => {
const styles = [];
const chunks = [];
let chunk = [];
// eslint-disable-next-line max-params
tmp.replace(TEMPLATE_REGEX, (m, escapeChar, inverse, style, close, chr) => {
if (escapeChar) {
chunk.push(unescape(escapeChar));
} else if (style) {
const str = chunk.join('');
chunk = [];
chunks.push(styles.length === 0 ? str : buildStyle(chalk, styles)(str));
styles.push({inverse, styles: parseStyle(style)});
} else if (close) {
if (styles.length === 0) {
throw new Error('Found extraneous } in Chalk template literal');
}
chunks.push(buildStyle(chalk, styles)(chunk.join('')));
chunk = [];
styles.pop();
} else {
chunk.push(chr);
}
});
chunks.push(chunk.join(''));
if (styles.length > 0) {
const errMsg = `Chalk template literal is missing ${styles.length} closing bracket${styles.length === 1 ? '' : 's'} (\`}\`)`;
throw new Error(errMsg);
}
return chunks.join('');
};
/***/ }),
/***/ 5061:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
/* MIT license */
var cssKeywords = __nccwpck_require__(1018);
// NOTE: conversions should only return primitive values (i.e. arrays, or
// values that give correct `typeof` results).
// do not use box values types (i.e. Number(), String(), etc.)
var reverseKeywords = {};
for (var key in cssKeywords) {
if (cssKeywords.hasOwnProperty(key)) {
reverseKeywords[cssKeywords[key]] = key;
}
}
var convert = module.exports = {
rgb: {channels: 3, labels: 'rgb'},
hsl: {channels: 3, labels: 'hsl'},
hsv: {channels: 3, labels: 'hsv'},
hwb: {channels: 3, labels: 'hwb'},
cmyk: {channels: 4, labels: 'cmyk'},
xyz: {channels: 3, labels: 'xyz'},
lab: {channels: 3, labels: 'lab'},
lch: {channels: 3, labels: 'lch'},
hex: {channels: 1, labels: ['hex']},
keyword: {channels: 1, labels: ['keyword']},
ansi16: {channels: 1, labels: ['ansi16']},
ansi256: {channels: 1, labels: ['ansi256']},
hcg: {channels: 3, labels: ['h', 'c', 'g']},
apple: {channels: 3, labels: ['r16', 'g16', 'b16']},
gray: {channels: 1, labels: ['gray']}
};
// hide .channels and .labels properties
for (var model in convert) {
if (convert.hasOwnProperty(model)) {
if (!('channels' in convert[model])) {
throw new Error('missing channels property: ' + model);
}
if (!('labels' in convert[model])) {
throw new Error('missing channel labels property: ' + model);
}
if (convert[model].labels.length !== convert[model].channels) {
throw new Error('channel and label counts mismatch: ' + model);
}
var channels = convert[model].channels;
var labels = convert[model].labels;
delete convert[model].channels;
delete convert[model].labels;
Object.defineProperty(convert[model], 'channels', {value: channels});
Object.defineProperty(convert[model], 'labels', {value: labels});
}
}
convert.rgb.hsl = function (rgb) {
var r = rgb[0] / 255;
var g = rgb[1] / 255;
var b = rgb[2] / 255;
var min = Math.min(r, g, b);
var max = Math.max(r, g, b);
var delta = max - min;
var h;
var s;
var l;
if (max === min) {
h = 0;
} else if (r === max) {
h = (g - b) / delta;
} else if (g === max) {
h = 2 + (b - r) / delta;
} else if (b === max) {
h = 4 + (r - g) / delta;
}
h = Math.min(h * 60, 360);
if (h < 0) {
h += 360;
}
l = (min + max) / 2;
if (max === min) {
s = 0;
} else if (l <= 0.5) {
s = delta / (max + min);
} else {
s = delta / (2 - max - min);
}
return [h, s * 100, l * 100];
};
convert.rgb.hsv = function (rgb) {
var rdif;
var gdif;
var bdif;
var h;
var s;
var r = rgb[0] / 255;
var g = rgb[1] / 255;
var b = rgb[2] / 255;
var v = Math.max(r, g, b);
var diff = v - Math.min(r, g, b);
var diffc = function (c) {
return (v - c) / 6 / diff + 1 / 2;
};
if (diff === 0) {
h = s = 0;
} else {
s = diff / v;
rdif = diffc(r);
gdif = diffc(g);
bdif = diffc(b);
if (r === v) {
h = bdif - gdif;
} else if (g === v) {
h = (1 / 3) + rdif - bdif;
} else if (b === v) {
h = (2 / 3) + gdif - rdif;
}
if (h < 0) {
h += 1;
} else if (h > 1) {
h -= 1;
}
}
return [
h * 360,
s * 100,
v * 100
];
};
convert.rgb.hwb = function (rgb) {
var r = rgb[0];
var g = rgb[1];
var b = rgb[2];
var h = convert.rgb.hsl(rgb)[0];
var w = 1 / 255 * Math.min(r, Math.min(g, b));
b = 1 - 1 / 255 * Math.max(r, Math.max(g, b));
return [h, w * 100, b * 100];
};
convert.rgb.cmyk = function (rgb) {
var r = rgb[0] / 255;
var g = rgb[1] / 255;
var b = rgb[2] / 255;
var c;
var m;
var y;
var k;
k = Math.min(1 - r, 1 - g, 1 - b);
c = (1 - r - k) / (1 - k) || 0;
m = (1 - g - k) / (1 - k) || 0;
y = (1 - b - k) / (1 - k) || 0;
return [c * 100, m * 100, y * 100, k * 100];
};
/**
* See https://en.m.wikipedia.org/wiki/Euclidean_distance#Squared_Euclidean_distance
* */
function comparativeDistance(x, y) {
return (
Math.pow(x[0] - y[0], 2) +
Math.pow(x[1] - y[1], 2) +
Math.pow(x[2] - y[2], 2)
);
}
convert.rgb.keyword = function (rgb) {
var reversed = reverseKeywords[rgb];
if (reversed) {
return reversed;
}
var currentClosestDistance = Infinity;
var currentClosestKeyword;
for (var keyword in cssKeywords) {
if (cssKeywords.hasOwnProperty(keyword)) {
var value = cssKeywords[keyword];
// Compute comparative distance
var distance = comparativeDistance(rgb, value);
// Check if its less, if so set as closest
if (distance < currentClosestDistance) {
currentClosestDistance = distance;
currentClosestKeyword = keyword;
}
}
}
return currentClosestKeyword;
};
convert.keyword.rgb = function (keyword) {
return cssKeywords[keyword];
};
convert.rgb.xyz = function (rgb) {
var r = rgb[0] / 255;
var g = rgb[1] / 255;
var b = rgb[2] / 255;
// assume sRGB
r = r > 0.04045 ? Math.pow(((r + 0.055) / 1.055), 2.4) : (r / 12.92);
g = g > 0.04045 ? Math.pow(((g + 0.055) / 1.055), 2.4) : (g / 12.92);
b = b > 0.04045 ? Math.pow(((b + 0.055) / 1.055), 2.4) : (b / 12.92);
var x = (r * 0.4124) + (g * 0.3576) + (b * 0.1805);
var y = (r * 0.2126) + (g * 0.7152) + (b * 0.0722);
var z = (r * 0.0193) + (g * 0.1192) + (b * 0.9505);
return [x * 100, y * 100, z * 100];
};
convert.rgb.lab = function (rgb) {
var xyz = convert.rgb.xyz(rgb);
var x = xyz[0];
var y = xyz[1];
var z = xyz[2];
var l;
var a;
var b;
x /= 95.047;
y /= 100;
z /= 108.883;
x = x > 0.008856 ? Math.pow(x, 1 / 3) : (7.787 * x) + (16 / 116);
y = y > 0.008856 ? Math.pow(y, 1 / 3) : (7.787 * y) + (16 / 116);
z = z > 0.008856 ? Math.pow(z, 1 / 3) : (7.787 * z) + (16 / 116);
l = (116 * y) - 16;
a = 500 * (x - y);
b = 200 * (y - z);
return [l, a, b];
};
convert.hsl.rgb = function (hsl) {
var h = hsl[0] / 360;
var s = hsl[1] / 100;
var l = hsl[2] / 100;
var t1;
var t2;
var t3;
var rgb;
var val;
if (s === 0) {
val = l * 255;
return [val, val, val];
}
if (l < 0.5) {
t2 = l * (1 + s);
} else {
t2 = l + s - l * s;
}
t1 = 2 * l - t2;
rgb = [0, 0, 0];
for (var i = 0; i < 3; i++) {
t3 = h + 1 / 3 * -(i - 1);
if (t3 < 0) {
t3++;
}
if (t3 > 1) {
t3--;
}
if (6 * t3 < 1) {
val = t1 + (t2 - t1) * 6 * t3;
} else if (2 * t3 < 1) {
val = t2;
} else if (3 * t3 < 2) {
val = t1 + (t2 - t1) * (2 / 3 - t3) * 6;
} else {
val = t1;
}
rgb[i] = val * 255;
}
return rgb;
};
convert.hsl.hsv = function (hsl) {
var h = hsl[0];
var s = hsl[1] / 100;
var l = hsl[2] / 100;
var smin = s;
var lmin = Math.max(l, 0.01);
var sv;
var v;
l *= 2;
s *= (l <= 1) ? l : 2 - l;
smin *= lmin <= 1 ? lmin : 2 - lmin;
v = (l + s) / 2;
sv = l === 0 ? (2 * smin) / (lmin + smin) : (2 * s) / (l + s);
return [h, sv * 100, v * 100];
};
convert.hsv.rgb = function (hsv) {
var h = hsv[0] / 60;
var s = hsv[1] / 100;
var v = hsv[2] / 100;
var hi = Math.floor(h) % 6;
var f = h - Math.floor(h);
var p = 255 * v * (1 - s);
var q = 255 * v * (1 - (s * f));
var t = 255 * v * (1 - (s * (1 - f)));
v *= 255;
switch (hi) {
case 0:
return [v, t, p];
case 1:
return [q, v, p];
case 2:
return [p, v, t];
case 3:
return [p, q, v];
case 4:
return [t, p, v];
case 5:
return [v, p, q];
}
};
convert.hsv.hsl = function (hsv) {
var h = hsv[0];
var s = hsv[1] / 100;
var v = hsv[2] / 100;
var vmin = Math.max(v, 0.01);
var lmin;
var sl;
var l;
l = (2 - s) * v;
lmin = (2 - s) * vmin;
sl = s * vmin;
sl /= (lmin <= 1) ? lmin : 2 - lmin;
sl = sl || 0;
l /= 2;
return [h, sl * 100, l * 100];
};
// http://dev.w3.org/csswg/css-color/#hwb-to-rgb
convert.hwb.rgb = function (hwb) {
var h = hwb[0] / 360;
var wh = hwb[1] / 100;
var bl = hwb[2] / 100;
var ratio = wh + bl;
var i;
var v;
var f;
var n;
// wh + bl cant be > 1
if (ratio > 1) {
wh /= ratio;
bl /= ratio;
}
i = Math.floor(6 * h);
v = 1 - bl;
f = 6 * h - i;
if ((i & 0x01) !== 0) {
f = 1 - f;
}
n = wh + f * (v - wh); // linear interpolation
var r;
var g;
var b;
switch (i) {
default:
case 6:
case 0: r = v; g = n; b = wh; break;
case 1: r = n; g = v; b = wh; break;
case 2: r = wh; g = v; b = n; break;
case 3: r = wh; g = n; b = v; break;
case 4: r = n; g = wh; b = v; break;
case 5: r = v; g = wh; b = n; break;
}
return [r * 255, g * 255, b * 255];
};
convert.cmyk.rgb = function (cmyk) {
var c = cmyk[0] / 100;
var m = cmyk[1] / 100;
var y = cmyk[2] / 100;
var k = cmyk[3] / 100;
var r;
var g;
var b;
r = 1 - Math.min(1, c * (1 - k) + k);
g = 1 - Math.min(1, m * (1 - k) + k);
b = 1 - Math.min(1, y * (1 - k) + k);
return [r * 255, g * 255, b * 255];
};
convert.xyz.rgb = function (xyz) {
var x = xyz[0] / 100;
var y = xyz[1] / 100;
var z = xyz[2] / 100;
var r;
var g;
var b;
r = (x * 3.2406) + (y * -1.5372) + (z * -0.4986);
g = (x * -0.9689) + (y * 1.8758) + (z * 0.0415);
b = (x * 0.0557) + (y * -0.2040) + (z * 1.0570);
// assume sRGB
r = r > 0.0031308
? ((1.055 * Math.pow(r, 1.0 / 2.4)) - 0.055)
: r * 12.92;
g = g > 0.0031308
? ((1.055 * Math.pow(g, 1.0 / 2.4)) - 0.055)
: g * 12.92;
b = b > 0.0031308
? ((1.055 * Math.pow(b, 1.0 / 2.4)) - 0.055)
: b * 12.92;
r = Math.min(Math.max(0, r), 1);
g = Math.min(Math.max(0, g), 1);
b = Math.min(Math.max(0, b), 1);
return [r * 255, g * 255, b * 255];
};
convert.xyz.lab = function (xyz) {
var x = xyz[0];
var y = xyz[1];
var z = xyz[2];
var l;
var a;
var b;
x /= 95.047;
y /= 100;
z /= 108.883;
x = x > 0.008856 ? Math.pow(x, 1 / 3) : (7.787 * x) + (16 / 116);
y = y > 0.008856 ? Math.pow(y, 1 / 3) : (7.787 * y) + (16 / 116);
z = z > 0.008856 ? Math.pow(z, 1 / 3) : (7.787 * z) + (16 / 116);
l = (116 * y) - 16;
a = 500 * (x - y);
b = 200 * (y - z);
return [l, a, b];
};
convert.lab.xyz = function (lab) {
var l = lab[0];
var a = lab[1];
var b = lab[2];
var x;
var y;
var z;
y = (l + 16) / 116;
x = a / 500 + y;
z = y - b / 200;
var y2 = Math.pow(y, 3);
var x2 = Math.pow(x, 3);
var z2 = Math.pow(z, 3);
y = y2 > 0.008856 ? y2 : (y - 16 / 116) / 7.787;
x = x2 > 0.008856 ? x2 : (x - 16 / 116) / 7.787;
z = z2 > 0.008856 ? z2 : (z - 16 / 116) / 7.787;
x *= 95.047;
y *= 100;
z *= 108.883;
return [x, y, z];
};
convert.lab.lch = function (lab) {
var l = lab[0];
var a = lab[1];
var b = lab[2];
var hr;
var h;
var c;
hr = Math.atan2(b, a);
h = hr * 360 / 2 / Math.PI;
if (h < 0) {
h += 360;
}
c = Math.sqrt(a * a + b * b);
return [l, c, h];
};
convert.lch.lab = function (lch) {
var l = lch[0];
var c = lch[1];
var h = lch[2];
var a;
var b;
var hr;
hr = h / 360 * 2 * Math.PI;
a = c * Math.cos(hr);
b = c * Math.sin(hr);
return [l, a, b];
};
convert.rgb.ansi16 = function (args) {
var r = args[0];
var g = args[1];
var b = args[2];
var value = 1 in arguments ? arguments[1] : convert.rgb.hsv(args)[2]; // hsv -> ansi16 optimization
value = Math.round(value / 50);
if (value === 0) {
return 30;
}
var ansi = 30
+ ((Math.round(b / 255) << 2)
| (Math.round(g / 255) << 1)
| Math.round(r / 255));
if (value === 2) {
ansi += 60;
}
return ansi;
};
convert.hsv.ansi16 = function (args) {
// optimization here; we already know the value and don't need to get
// it converted for us.
return convert.rgb.ansi16(convert.hsv.rgb(args), args[2]);
};
convert.rgb.ansi256 = function (args) {
var r = args[0];
var g = args[1];
var b = args[2];
// we use the extended greyscale palette here, with the exception of
// black and white. normal palette only has 4 greyscale shades.
if (r === g && g === b) {
if (r < 8) {
return 16;
}
if (r > 248) {
return 231;
}
return Math.round(((r - 8) / 247) * 24) + 232;
}
var ansi = 16
+ (36 * Math.round(r / 255 * 5))
+ (6 * Math.round(g / 255 * 5))
+ Math.round(b / 255 * 5);
return ansi;
};
convert.ansi16.rgb = function (args) {
var color = args % 10;
// handle greyscale
if (color === 0 || color === 7) {
if (args > 50) {
color += 3.5;
}
color = color / 10.5 * 255;
return [color, color, color];
}
var mult = (~~(args > 50) + 1) * 0.5;
var r = ((color & 1) * mult) * 255;
var g = (((color >> 1) & 1) * mult) * 255;
var b = (((color >> 2) & 1) * mult) * 255;
return [r, g, b];
};
convert.ansi256.rgb = function (args) {
// handle greyscale
if (args >= 232) {
var c = (args - 232) * 10 + 8;
return [c, c, c];
}
args -= 16;
var rem;
var r = Math.floor(args / 36) / 5 * 255;
var g = Math.floor((rem = args % 36) / 6) / 5 * 255;
var b = (rem % 6) / 5 * 255;
return [r, g, b];
};
convert.rgb.hex = function (args) {
var integer = ((Math.round(args[0]) & 0xFF) << 16)
+ ((Math.round(args[1]) & 0xFF) << 8)
+ (Math.round(args[2]) & 0xFF);
var string = integer.toString(16).toUpperCase();
return '000000'.substring(string.length) + string;
};
convert.hex.rgb = function (args) {
var match = args.toString(16).match(/[a-f0-9]{6}|[a-f0-9]{3}/i);
if (!match) {
return [0, 0, 0];
}
var colorString = match[0];
if (match[0].length === 3) {
colorString = colorString.split('').map(function (char) {
return char + char;
}).join('');
}
var integer = parseInt(colorString, 16);
var r = (integer >> 16) & 0xFF;
var g = (integer >> 8) & 0xFF;
var b = integer & 0xFF;
return [r, g, b];
};
convert.rgb.hcg = function (rgb) {
var r = rgb[0] / 255;
var g = rgb[1] / 255;
var b = rgb[2] / 255;
var max = Math.max(Math.max(r, g), b);
var min = Math.min(Math.min(r, g), b);
var chroma = (max - min);
var grayscale;
var hue;
if (chroma < 1) {
grayscale = min / (1 - chroma);
} else {
grayscale = 0;
}
if (chroma <= 0) {
hue = 0;
} else
if (max === r) {
hue = ((g - b) / chroma) % 6;
} else
if (max === g) {
hue = 2 + (b - r) / chroma;
} else {
hue = 4 + (r - g) / chroma + 4;
}
hue /= 6;
hue %= 1;
return [hue * 360, chroma * 100, grayscale * 100];
};
convert.hsl.hcg = function (hsl) {
var s = hsl[1] / 100;
var l = hsl[2] / 100;
var c = 1;
var f = 0;
if (l < 0.5) {
c = 2.0 * s * l;
} else {
c = 2.0 * s * (1.0 - l);
}
if (c < 1.0) {
f = (l - 0.5 * c) / (1.0 - c);
}
return [hsl[0], c * 100, f * 100];
};
convert.hsv.hcg = function (hsv) {
var s = hsv[1] / 100;
var v = hsv[2] / 100;
var c = s * v;
var f = 0;
if (c < 1.0) {
f = (v - c) / (1 - c);
}
return [hsv[0], c * 100, f * 100];
};
convert.hcg.rgb = function (hcg) {
var h = hcg[0] / 360;
var c = hcg[1] / 100;
var g = hcg[2] / 100;
if (c === 0.0) {
return [g * 255, g * 255, g * 255];
}
var pure = [0, 0, 0];
var hi = (h % 1) * 6;
var v = hi % 1;
var w = 1 - v;
var mg = 0;
switch (Math.floor(hi)) {
case 0:
pure[0] = 1; pure[1] = v; pure[2] = 0; break;
case 1:
pure[0] = w; pure[1] = 1; pure[2] = 0; break;
case 2:
pure[0] = 0; pure[1] = 1; pure[2] = v; break;
case 3:
pure[0] = 0; pure[1] = w; pure[2] = 1; break;
case 4:
pure[0] = v; pure[1] = 0; pure[2] = 1; break;
default:
pure[0] = 1; pure[1] = 0; pure[2] = w;
}
mg = (1.0 - c) * g;
return [
(c * pure[0] + mg) * 255,
(c * pure[1] + mg) * 255,
(c * pure[2] + mg) * 255
];
};
convert.hcg.hsv = function (hcg) {
var c = hcg[1] / 100;
var g = hcg[2] / 100;
var v = c + g * (1.0 - c);
var f = 0;
if (v > 0.0) {
f = c / v;
}
return [hcg[0], f * 100, v * 100];
};
convert.hcg.hsl = function (hcg) {
var c = hcg[1] / 100;
var g = hcg[2] / 100;
var l = g * (1.0 - c) + 0.5 * c;
var s = 0;
if (l > 0.0 && l < 0.5) {
s = c / (2 * l);
} else
if (l >= 0.5 && l < 1.0) {
s = c / (2 * (1 - l));
}
return [hcg[0], s * 100, l * 100];
};
convert.hcg.hwb = function (hcg) {
var c = hcg[1] / 100;
var g = hcg[2] / 100;
var v = c + g * (1.0 - c);
return [hcg[0], (v - c) * 100, (1 - v) * 100];
};
convert.hwb.hcg = function (hwb) {
var w = hwb[1] / 100;
var b = hwb[2] / 100;
var v = 1 - b;
var c = v - w;
var g = 0;
if (c < 1) {
g = (v - c) / (1 - c);
}
return [hwb[0], c * 100, g * 100];
};
convert.apple.rgb = function (apple) {
return [(apple[0] / 65535) * 255, (apple[1] / 65535) * 255, (apple[2] / 65535) * 255];
};
convert.rgb.apple = function (rgb) {
return [(rgb[0] / 255) * 65535, (rgb[1] / 255) * 65535, (rgb[2] / 255) * 65535];
};
convert.gray.rgb = function (args) {
return [args[0] / 100 * 255, args[0] / 100 * 255, args[0] / 100 * 255];
};
convert.gray.hsl = convert.gray.hsv = function (args) {
return [0, 0, args[0]];
};
convert.gray.hwb = function (gray) {
return [0, 100, gray[0]];
};
convert.gray.cmyk = function (gray) {
return [0, 0, 0, gray[0]];
};
convert.gray.lab = function (gray) {
return [gray[0], 0, 0];
};
convert.gray.hex = function (gray) {
var val = Math.round(gray[0] / 100 * 255) & 0xFF;
var integer = (val << 16) + (val << 8) + val;
var string = integer.toString(16).toUpperCase();
return '000000'.substring(string.length) + string;
};
convert.rgb.gray = function (rgb) {
var val = (rgb[0] + rgb[1] + rgb[2]) / 3;
return [val / 255 * 100];
};
/***/ }),
/***/ 744:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
var conversions = __nccwpck_require__(5061);
var route = __nccwpck_require__(3286);
var convert = {};
var models = Object.keys(conversions);
function wrapRaw(fn) {
var wrappedFn = function (args) {
if (args === undefined || args === null) {
return args;
}
if (arguments.length > 1) {
args = Array.prototype.slice.call(arguments);
}
return fn(args);
};
// preserve .conversion property if there is one
if ('conversion' in fn) {
wrappedFn.conversion = fn.conversion;
}
return wrappedFn;
}
function wrapRounded(fn) {
var wrappedFn = function (args) {
if (args === undefined || args === null) {
return args;
}
if (arguments.length > 1) {
args = Array.prototype.slice.call(arguments);
}
var result = fn(args);
// we're assuming the result is an array here.
// see notice in conversions.js; don't use box types
// in conversion functions.
if (typeof result === 'object') {
for (var len = result.length, i = 0; i < len; i++) {
result[i] = Math.round(result[i]);
}
}
return result;
};
// preserve .conversion property if there is one
if ('conversion' in fn) {
wrappedFn.conversion = fn.conversion;
}
return wrappedFn;
}
models.forEach(function (fromModel) {
convert[fromModel] = {};
Object.defineProperty(convert[fromModel], 'channels', {value: conversions[fromModel].channels});
Object.defineProperty(convert[fromModel], 'labels', {value: conversions[fromModel].labels});
var routes = route(fromModel);
var routeModels = Object.keys(routes);
routeModels.forEach(function (toModel) {
var fn = routes[toModel];
convert[fromModel][toModel] = wrapRounded(fn);
convert[fromModel][toModel].raw = wrapRaw(fn);
});
});
module.exports = convert;
/***/ }),
/***/ 3286:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
var conversions = __nccwpck_require__(5061);
/*
this function routes a model to all other models.
all functions that are routed have a property `.conversion` attached
to the returned synthetic function. This property is an array
of strings, each with the steps in between the 'from' and 'to'
color models (inclusive).
conversions that are not possible simply are not included.
*/
function buildGraph() {
var graph = {};
// https://jsperf.com/object-keys-vs-for-in-with-closure/3
var models = Object.keys(conversions);
for (var len = models.length, i = 0; i < len; i++) {
graph[models[i]] = {
// http://jsperf.com/1-vs-infinity
// micro-opt, but this is simple.
distance: -1,
parent: null
};
}
return graph;
}
// https://en.wikipedia.org/wiki/Breadth-first_search
function deriveBFS(fromModel) {
var graph = buildGraph();
var queue = [fromModel]; // unshift -> queue -> pop
graph[fromModel].distance = 0;
while (queue.length) {
var current = queue.pop();
var adjacents = Object.keys(conversions[current]);
for (var len = adjacents.length, i = 0; i < len; i++) {
var adjacent = adjacents[i];
var node = graph[adjacent];
if (node.distance === -1) {
node.distance = graph[current].distance + 1;
node.parent = current;
queue.unshift(adjacent);
}
}
}
return graph;
}
function link(from, to) {
return function (args) {
return to(from(args));
};
}
function wrapConversion(toModel, graph) {
var path = [graph[toModel].parent, toModel];
var fn = conversions[graph[toModel].parent][toModel];
var cur = graph[toModel].parent;
while (graph[cur].parent) {
path.unshift(graph[cur].parent);
fn = link(conversions[graph[cur].parent][cur], fn);
cur = graph[cur].parent;
}
fn.conversion = path;
return fn;
}
module.exports = function (fromModel) {
var graph = deriveBFS(fromModel);
var conversion = {};
var models = Object.keys(graph);
for (var len = models.length, i = 0; i < len; i++) {
var toModel = models[i];
var node = graph[toModel];
if (node.parent === null) {
// no possible conversion, or this node is the source model.
continue;
}
conversion[toModel] = wrapConversion(toModel, graph);
}
return conversion;
};
/***/ }),
/***/ 1018:
/***/ ((module) => {
"use strict";
module.exports = {
"aliceblue": [240, 248, 255],
"antiquewhite": [250, 235, 215],
"aqua": [0, 255, 255],
"aquamarine": [127, 255, 212],
"azure": [240, 255, 255],
"beige": [245, 245, 220],
"bisque": [255, 228, 196],
"black": [0, 0, 0],
"blanchedalmond": [255, 235, 205],
"blue": [0, 0, 255],
"blueviolet": [138, 43, 226],
"brown": [165, 42, 42],
"burlywood": [222, 184, 135],
"cadetblue": [95, 158, 160],
"chartreuse": [127, 255, 0],
"chocolate": [210, 105, 30],
"coral": [255, 127, 80],
"cornflowerblue": [100, 149, 237],
"cornsilk": [255, 248, 220],
"crimson": [220, 20, 60],
"cyan": [0, 255, 255],
"darkblue": [0, 0, 139],
"darkcyan": [0, 139, 139],
"darkgoldenrod": [184, 134, 11],
"darkgray": [169, 169, 169],
"darkgreen": [0, 100, 0],
"darkgrey": [169, 169, 169],
"darkkhaki": [189, 183, 107],
"darkmagenta": [139, 0, 139],
"darkolivegreen": [85, 107, 47],
"darkorange": [255, 140, 0],
"darkorchid": [153, 50, 204],
"darkred": [139, 0, 0],
"darksalmon": [233, 150, 122],
"darkseagreen": [143, 188, 143],
"darkslateblue": [72, 61, 139],
"darkslategray": [47, 79, 79],
"darkslategrey": [47, 79, 79],
"darkturquoise": [0, 206, 209],
"darkviolet": [148, 0, 211],
"deeppink": [255, 20, 147],
"deepskyblue": [0, 191, 255],
"dimgray": [105, 105, 105],
"dimgrey": [105, 105, 105],
"dodgerblue": [30, 144, 255],
"firebrick": [178, 34, 34],
"floralwhite": [255, 250, 240],
"forestgreen": [34, 139, 34],
"fuchsia": [255, 0, 255],
"gainsboro": [220, 220, 220],
"ghostwhite": [248, 248, 255],
"gold": [255, 215, 0],
"goldenrod": [218, 165, 32],
"gray": [128, 128, 128],
"green": [0, 128, 0],
"greenyellow": [173, 255, 47],
"grey": [128, 128, 128],
"honeydew": [240, 255, 240],
"hotpink": [255, 105, 180],
"indianred": [205, 92, 92],
"indigo": [75, 0, 130],
"ivory": [255, 255, 240],
"khaki": [240, 230, 140],
"lavender": [230, 230, 250],
"lavenderblush": [255, 240, 245],
"lawngreen": [124, 252, 0],
"lemonchiffon": [255, 250, 205],
"lightblue": [173, 216, 230],
"lightcoral": [240, 128, 128],
"lightcyan": [224, 255, 255],
"lightgoldenrodyellow": [250, 250, 210],
"lightgray": [211, 211, 211],
"lightgreen": [144, 238, 144],
"lightgrey": [211, 211, 211],
"lightpink": [255, 182, 193],
"lightsalmon": [255, 160, 122],
"lightseagreen": [32, 178, 170],
"lightskyblue": [135, 206, 250],
"lightslategray": [119, 136, 153],
"lightslategrey": [119, 136, 153],
"lightsteelblue": [176, 196, 222],
"lightyellow": [255, 255, 224],
"lime": [0, 255, 0],
"limegreen": [50, 205, 50],
"linen": [250, 240, 230],
"magenta": [255, 0, 255],
"maroon": [128, 0, 0],
"mediumaquamarine": [102, 205, 170],
"mediumblue": [0, 0, 205],
"mediumorchid": [186, 85, 211],
"mediumpurple": [147, 112, 219],
"mediumseagreen": [60, 179, 113],
"mediumslateblue": [123, 104, 238],
"mediumspringgreen": [0, 250, 154],
"mediumturquoise": [72, 209, 204],
"mediumvioletred": [199, 21, 133],
"midnightblue": [25, 25, 112],
"mintcream": [245, 255, 250],
"mistyrose": [255, 228, 225],
"moccasin": [255, 228, 181],
"navajowhite": [255, 222, 173],
"navy": [0, 0, 128],
"oldlace": [253, 245, 230],
"olive": [128, 128, 0],
"olivedrab": [107, 142, 35],
"orange": [255, 165, 0],
"orangered": [255, 69, 0],
"orchid": [218, 112, 214],
"palegoldenrod": [238, 232, 170],
"palegreen": [152, 251, 152],
"paleturquoise": [175, 238, 238],
"palevioletred": [219, 112, 147],
"papayawhip": [255, 239, 213],
"peachpuff": [255, 218, 185],
"peru": [205, 133, 63],
"pink": [255, 192, 203],
"plum": [221, 160, 221],
"powderblue": [176, 224, 230],
"purple": [128, 0, 128],
"rebeccapurple": [102, 51, 153],
"red": [255, 0, 0],
"rosybrown": [188, 143, 143],
"royalblue": [65, 105, 225],
"saddlebrown": [139, 69, 19],
"salmon": [250, 128, 114],
"sandybrown": [244, 164, 96],
"seagreen": [46, 139, 87],
"seashell": [255, 245, 238],
"sienna": [160, 82, 45],
"silver": [192, 192, 192],
"skyblue": [135, 206, 235],
"slateblue": [106, 90, 205],
"slategray": [112, 128, 144],
"slategrey": [112, 128, 144],
"snow": [255, 250, 250],
"springgreen": [0, 255, 127],
"steelblue": [70, 130, 180],
"tan": [210, 180, 140],
"teal": [0, 128, 128],
"thistle": [216, 191, 216],
"tomato": [255, 99, 71],
"turquoise": [64, 224, 208],
"violet": [238, 130, 238],
"wheat": [245, 222, 179],
"white": [255, 255, 255],
"whitesmoke": [245, 245, 245],
"yellow": [255, 255, 0],
"yellowgreen": [154, 205, 50]
};
/***/ }),
/***/ 3498:
/***/ ((module) => {
"use strict";
module.exports = (flag, argv) => {
argv = argv || process.argv;
const prefix = flag.startsWith('-') ? '' : (flag.length === 1 ? '-' : '--');
const pos = argv.indexOf(prefix + flag);
const terminatorPos = argv.indexOf('--');
return pos !== -1 && (terminatorPos === -1 ? true : pos < terminatorPos);
};
/***/ }),
/***/ 5809:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
"use strict";
const os = __nccwpck_require__(857);
const hasFlag = __nccwpck_require__(3498);
const env = process.env;
let forceColor;
if (hasFlag('no-color') ||
hasFlag('no-colors') ||
hasFlag('color=false')) {
forceColor = false;
} else if (hasFlag('color') ||
hasFlag('colors') ||
hasFlag('color=true') ||
hasFlag('color=always')) {
forceColor = true;
}
if ('FORCE_COLOR' in env) {
forceColor = env.FORCE_COLOR.length === 0 || parseInt(env.FORCE_COLOR, 10) !== 0;
}
function translateLevel(level) {
if (level === 0) {
return false;
}
return {
level,
hasBasic: true,
has256: level >= 2,
has16m: level >= 3
};
}
function supportsColor(stream) {
if (forceColor === false) {
return 0;
}
if (hasFlag('color=16m') ||
hasFlag('color=full') ||
hasFlag('color=truecolor')) {
return 3;
}
if (hasFlag('color=256')) {
return 2;
}
if (stream && !stream.isTTY && forceColor !== true) {
return 0;
}
const min = forceColor ? 1 : 0;
if (process.platform === 'win32') {
// Node.js 7.5.0 is the first version of Node.js to include a patch to
// libuv that enables 256 color output on Windows. Anything earlier and it
// won't work. However, here we target Node.js 8 at minimum as it is an LTS
// release, and Node.js 7 is not. Windows 10 build 10586 is the first Windows
// release that supports 256 colors. Windows 10 build 14931 is the first release
// that supports 16m/TrueColor.
const osRelease = os.release().split('.');
if (
Number(process.versions.node.split('.')[0]) >= 8 &&
Number(osRelease[0]) >= 10 &&
Number(osRelease[2]) >= 10586
) {
return Number(osRelease[2]) >= 14931 ? 3 : 2;
}
return 1;
}
if ('CI' in env) {
if (['TRAVIS', 'CIRCLECI', 'APPVEYOR', 'GITLAB_CI'].some(sign => sign in env) || env.CI_NAME === 'codeship') {
return 1;
}
return min;
}
if ('TEAMCITY_VERSION' in env) {
return /^(9\.(0*[1-9]\d*)\.|\d{2,}\.)/.test(env.TEAMCITY_VERSION) ? 1 : 0;
}
if (env.COLORTERM === 'truecolor') {
return 3;
}
if ('TERM_PROGRAM' in env) {
const version = parseInt((env.TERM_PROGRAM_VERSION || '').split('.')[0], 10);
switch (env.TERM_PROGRAM) {
case 'iTerm.app':
return version >= 3 ? 3 : 2;
case 'Apple_Terminal':
return 2;
// No default
}
}
if (/-256(color)?$/i.test(env.TERM)) {
return 2;
}
if (/^screen|^xterm|^vt100|^vt220|^rxvt|color|ansi|cygwin|linux/i.test(env.TERM)) {
return 1;
}
if ('COLORTERM' in env) {
return 1;
}
if (env.TERM === 'dumb') {
return min;
}
return min;
}
function getSupportLevel(stream) {
const level = supportsColor(stream);
return translateLevel(level);
}
module.exports = {
supportsColor: getSupportLevel,
stdout: getSupportLevel(process.stdout),
stderr: getSupportLevel(process.stderr)
};
/***/ }),
/***/ 7864:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
const REGEX_IS_INSTALLATION_LEGACY = /^v1\./;
const REGEX_IS_INSTALLATION = /^ghs_/;
const REGEX_IS_USER_TO_SERVER = /^ghu_/;
async function auth(token) {
const isApp = token.split(/\./).length === 3;
const isInstallation = REGEX_IS_INSTALLATION_LEGACY.test(token) || REGEX_IS_INSTALLATION.test(token);
const isUserToServer = REGEX_IS_USER_TO_SERVER.test(token);
const tokenType = isApp ? "app" : isInstallation ? "installation" : isUserToServer ? "user-to-server" : "oauth";
return {
type: "token",
token: token,
tokenType
};
}
/**
* Prefix token for usage in the Authorization header
*
* @param token OAuth token or JSON Web Token
*/
function withAuthorizationPrefix(token) {
if (token.split(/\./).length === 3) {
return `bearer ${token}`;
}
return `token ${token}`;
}
async function hook(token, request, route, parameters) {
const endpoint = request.endpoint.merge(route, parameters);
endpoint.headers.authorization = withAuthorizationPrefix(token);
return request(endpoint);
}
const createTokenAuth = function createTokenAuth(token) {
if (!token) {
throw new Error("[@octokit/auth-token] No token passed to createTokenAuth");
}
if (typeof token !== "string") {
throw new Error("[@octokit/auth-token] Token passed to createTokenAuth is not a string");
}
token = token.replace(/^(token|bearer) +/i, "");
return Object.assign(auth.bind(null, token), {
hook: hook.bind(null, token)
});
};
exports.createTokenAuth = createTokenAuth;
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 1897:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
var universalUserAgent = __nccwpck_require__(3843);
var beforeAfterHook = __nccwpck_require__(2732);
var request = __nccwpck_require__(6255);
var graphql = __nccwpck_require__(7);
var authToken = __nccwpck_require__(7864);
function _objectWithoutPropertiesLoose(source, excluded) {
if (source == null) return {};
var target = {};
var sourceKeys = Object.keys(source);
var key, i;
for (i = 0; i < sourceKeys.length; i++) {
key = sourceKeys[i];
if (excluded.indexOf(key) >= 0) continue;
target[key] = source[key];
}
return target;
}
function _objectWithoutProperties(source, excluded) {
if (source == null) return {};
var target = _objectWithoutPropertiesLoose(source, excluded);
var key, i;
if (Object.getOwnPropertySymbols) {
var sourceSymbolKeys = Object.getOwnPropertySymbols(source);
for (i = 0; i < sourceSymbolKeys.length; i++) {
key = sourceSymbolKeys[i];
if (excluded.indexOf(key) >= 0) continue;
if (!Object.prototype.propertyIsEnumerable.call(source, key)) continue;
target[key] = source[key];
}
}
return target;
}
const VERSION = "3.6.0";
const _excluded = ["authStrategy"];
class Octokit {
constructor(options = {}) {
const hook = new beforeAfterHook.Collection();
const requestDefaults = {
baseUrl: request.request.endpoint.DEFAULTS.baseUrl,
headers: {},
request: Object.assign({}, options.request, {
// @ts-ignore internal usage only, no need to type
hook: hook.bind(null, "request")
}),
mediaType: {
previews: [],
format: ""
}
}; // prepend default user agent with `options.userAgent` if set
requestDefaults.headers["user-agent"] = [options.userAgent, `octokit-core.js/${VERSION} ${universalUserAgent.getUserAgent()}`].filter(Boolean).join(" ");
if (options.baseUrl) {
requestDefaults.baseUrl = options.baseUrl;
}
if (options.previews) {
requestDefaults.mediaType.previews = options.previews;
}
if (options.timeZone) {
requestDefaults.headers["time-zone"] = options.timeZone;
}
this.request = request.request.defaults(requestDefaults);
this.graphql = graphql.withCustomRequest(this.request).defaults(requestDefaults);
this.log = Object.assign({
debug: () => {},
info: () => {},
warn: console.warn.bind(console),
error: console.error.bind(console)
}, options.log);
this.hook = hook; // (1) If neither `options.authStrategy` nor `options.auth` are set, the `octokit` instance
// is unauthenticated. The `this.auth()` method is a no-op and no request hook is registered.
// (2) If only `options.auth` is set, use the default token authentication strategy.
// (3) If `options.authStrategy` is set then use it and pass in `options.auth`. Always pass own request as many strategies accept a custom request instance.
// TODO: type `options.auth` based on `options.authStrategy`.
if (!options.authStrategy) {
if (!options.auth) {
// (1)
this.auth = async () => ({
type: "unauthenticated"
});
} else {
// (2)
const auth = authToken.createTokenAuth(options.auth); // @ts-ignore ¯\_(ツ)_/¯
hook.wrap("request", auth.hook);
this.auth = auth;
}
} else {
const {
authStrategy
} = options,
otherOptions = _objectWithoutProperties(options, _excluded);
const auth = authStrategy(Object.assign({
request: this.request,
log: this.log,
// we pass the current octokit instance as well as its constructor options
// to allow for authentication strategies that return a new octokit instance
// that shares the same internal state as the current one. The original
// requirement for this was the "event-octokit" authentication strategy
// of https://github.com/probot/octokit-auth-probot.
octokit: this,
octokitOptions: otherOptions
}, options.auth)); // @ts-ignore ¯\_(ツ)_/¯
hook.wrap("request", auth.hook);
this.auth = auth;
} // apply plugins
// https://stackoverflow.com/a/16345172
const classConstructor = this.constructor;
classConstructor.plugins.forEach(plugin => {
Object.assign(this, plugin(this, options));
});
}
static defaults(defaults) {
const OctokitWithDefaults = class extends this {
constructor(...args) {
const options = args[0] || {};
if (typeof defaults === "function") {
super(defaults(options));
return;
}
super(Object.assign({}, defaults, options, options.userAgent && defaults.userAgent ? {
userAgent: `${options.userAgent} ${defaults.userAgent}`
} : null));
}
};
return OctokitWithDefaults;
}
/**
* Attach a plugin (or many) to your Octokit instance.
*
* @example
* const API = Octokit.plugin(plugin1, plugin2, plugin3, ...)
*/
static plugin(...newPlugins) {
var _a;
const currentPlugins = this.plugins;
const NewOctokit = (_a = class extends this {}, _a.plugins = currentPlugins.concat(newPlugins.filter(plugin => !currentPlugins.includes(plugin))), _a);
return NewOctokit;
}
}
Octokit.VERSION = VERSION;
Octokit.plugins = [];
exports.Octokit = Octokit;
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 4471:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
var isPlainObject = __nccwpck_require__(3407);
var universalUserAgent = __nccwpck_require__(3843);
function lowercaseKeys(object) {
if (!object) {
return {};
}
return Object.keys(object).reduce((newObj, key) => {
newObj[key.toLowerCase()] = object[key];
return newObj;
}, {});
}
function mergeDeep(defaults, options) {
const result = Object.assign({}, defaults);
Object.keys(options).forEach(key => {
if (isPlainObject.isPlainObject(options[key])) {
if (!(key in defaults)) Object.assign(result, {
[key]: options[key]
});else result[key] = mergeDeep(defaults[key], options[key]);
} else {
Object.assign(result, {
[key]: options[key]
});
}
});
return result;
}
function removeUndefinedProperties(obj) {
for (const key in obj) {
if (obj[key] === undefined) {
delete obj[key];
}
}
return obj;
}
function merge(defaults, route, options) {
if (typeof route === "string") {
let [method, url] = route.split(" ");
options = Object.assign(url ? {
method,
url
} : {
url: method
}, options);
} else {
options = Object.assign({}, route);
} // lowercase header names before merging with defaults to avoid duplicates
options.headers = lowercaseKeys(options.headers); // remove properties with undefined values before merging
removeUndefinedProperties(options);
removeUndefinedProperties(options.headers);
const mergedOptions = mergeDeep(defaults || {}, options); // mediaType.previews arrays are merged, instead of overwritten
if (defaults && defaults.mediaType.previews.length) {
mergedOptions.mediaType.previews = defaults.mediaType.previews.filter(preview => !mergedOptions.mediaType.previews.includes(preview)).concat(mergedOptions.mediaType.previews);
}
mergedOptions.mediaType.previews = mergedOptions.mediaType.previews.map(preview => preview.replace(/-preview/, ""));
return mergedOptions;
}
function addQueryParameters(url, parameters) {
const separator = /\?/.test(url) ? "&" : "?";
const names = Object.keys(parameters);
if (names.length === 0) {
return url;
}
return url + separator + names.map(name => {
if (name === "q") {
return "q=" + parameters.q.split("+").map(encodeURIComponent).join("+");
}
return `${name}=${encodeURIComponent(parameters[name])}`;
}).join("&");
}
const urlVariableRegex = /\{[^}]+\}/g;
function removeNonChars(variableName) {
return variableName.replace(/^\W+|\W+$/g, "").split(/,/);
}
function extractUrlVariableNames(url) {
const matches = url.match(urlVariableRegex);
if (!matches) {
return [];
}
return matches.map(removeNonChars).reduce((a, b) => a.concat(b), []);
}
function omit(object, keysToOmit) {
return Object.keys(object).filter(option => !keysToOmit.includes(option)).reduce((obj, key) => {
obj[key] = object[key];
return obj;
}, {});
}
// Based on https://github.com/bramstein/url-template, licensed under BSD
// TODO: create separate package.
//
// Copyright (c) 2012-2014, Bram Stein
// All rights reserved.
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions
// are met:
// 1. Redistributions of source code must retain the above copyright
// notice, this list of conditions and the following disclaimer.
// 2. Redistributions in binary form must reproduce the above copyright
// notice, this list of conditions and the following disclaimer in the
// documentation and/or other materials provided with the distribution.
// 3. The name of the author may not be used to endorse or promote products
// derived from this software without specific prior written permission.
// THIS SOFTWARE IS PROVIDED BY THE AUTHOR "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.
/* istanbul ignore file */
function encodeReserved(str) {
return str.split(/(%[0-9A-Fa-f]{2})/g).map(function (part) {
if (!/%[0-9A-Fa-f]/.test(part)) {
part = encodeURI(part).replace(/%5B/g, "[").replace(/%5D/g, "]");
}
return part;
}).join("");
}
function encodeUnreserved(str) {
return encodeURIComponent(str).replace(/[!'()*]/g, function (c) {
return "%" + c.charCodeAt(0).toString(16).toUpperCase();
});
}
function encodeValue(operator, value, key) {
value = operator === "+" || operator === "#" ? encodeReserved(value) : encodeUnreserved(value);
if (key) {
return encodeUnreserved(key) + "=" + value;
} else {
return value;
}
}
function isDefined(value) {
return value !== undefined && value !== null;
}
function isKeyOperator(operator) {
return operator === ";" || operator === "&" || operator === "?";
}
function getValues(context, operator, key, modifier) {
var value = context[key],
result = [];
if (isDefined(value) && value !== "") {
if (typeof value === "string" || typeof value === "number" || typeof value === "boolean") {
value = value.toString();
if (modifier && modifier !== "*") {
value = value.substring(0, parseInt(modifier, 10));
}
result.push(encodeValue(operator, value, isKeyOperator(operator) ? key : ""));
} else {
if (modifier === "*") {
if (Array.isArray(value)) {
value.filter(isDefined).forEach(function (value) {
result.push(encodeValue(operator, value, isKeyOperator(operator) ? key : ""));
});
} else {
Object.keys(value).forEach(function (k) {
if (isDefined(value[k])) {
result.push(encodeValue(operator, value[k], k));
}
});
}
} else {
const tmp = [];
if (Array.isArray(value)) {
value.filter(isDefined).forEach(function (value) {
tmp.push(encodeValue(operator, value));
});
} else {
Object.keys(value).forEach(function (k) {
if (isDefined(value[k])) {
tmp.push(encodeUnreserved(k));
tmp.push(encodeValue(operator, value[k].toString()));
}
});
}
if (isKeyOperator(operator)) {
result.push(encodeUnreserved(key) + "=" + tmp.join(","));
} else if (tmp.length !== 0) {
result.push(tmp.join(","));
}
}
}
} else {
if (operator === ";") {
if (isDefined(value)) {
result.push(encodeUnreserved(key));
}
} else if (value === "" && (operator === "&" || operator === "?")) {
result.push(encodeUnreserved(key) + "=");
} else if (value === "") {
result.push("");
}
}
return result;
}
function parseUrl(template) {
return {
expand: expand.bind(null, template)
};
}
function expand(template, context) {
var operators = ["+", "#", ".", "/", ";", "?", "&"];
return template.replace(/\{([^\{\}]+)\}|([^\{\}]+)/g, function (_, expression, literal) {
if (expression) {
let operator = "";
const values = [];
if (operators.indexOf(expression.charAt(0)) !== -1) {
operator = expression.charAt(0);
expression = expression.substr(1);
}
expression.split(/,/g).forEach(function (variable) {
var tmp = /([^:\*]*)(?::(\d+)|(\*))?/.exec(variable);
values.push(getValues(context, operator, tmp[1], tmp[2] || tmp[3]));
});
if (operator && operator !== "+") {
var separator = ",";
if (operator === "?") {
separator = "&";
} else if (operator !== "#") {
separator = operator;
}
return (values.length !== 0 ? operator : "") + values.join(separator);
} else {
return values.join(",");
}
} else {
return encodeReserved(literal);
}
});
}
function parse(options) {
// https://fetch.spec.whatwg.org/#methods
let method = options.method.toUpperCase(); // replace :varname with {varname} to make it RFC 6570 compatible
let url = (options.url || "/").replace(/:([a-z]\w+)/g, "{$1}");
let headers = Object.assign({}, options.headers);
let body;
let parameters = omit(options, ["method", "baseUrl", "url", "headers", "request", "mediaType"]); // extract variable names from URL to calculate remaining variables later
const urlVariableNames = extractUrlVariableNames(url);
url = parseUrl(url).expand(parameters);
if (!/^http/.test(url)) {
url = options.baseUrl + url;
}
const omittedParameters = Object.keys(options).filter(option => urlVariableNames.includes(option)).concat("baseUrl");
const remainingParameters = omit(parameters, omittedParameters);
const isBinaryRequest = /application\/octet-stream/i.test(headers.accept);
if (!isBinaryRequest) {
if (options.mediaType.format) {
// e.g. application/vnd.github.v3+json => application/vnd.github.v3.raw
headers.accept = headers.accept.split(/,/).map(preview => preview.replace(/application\/vnd(\.\w+)(\.v3)?(\.\w+)?(\+json)?$/, `application/vnd$1$2.${options.mediaType.format}`)).join(",");
}
if (options.mediaType.previews.length) {
const previewsFromAcceptHeader = headers.accept.match(/[\w-]+(?=-preview)/g) || [];
headers.accept = previewsFromAcceptHeader.concat(options.mediaType.previews).map(preview => {
const format = options.mediaType.format ? `.${options.mediaType.format}` : "+json";
return `application/vnd.github.${preview}-preview${format}`;
}).join(",");
}
} // for GET/HEAD requests, set URL query parameters from remaining parameters
// for PATCH/POST/PUT/DELETE requests, set request body from remaining parameters
if (["GET", "HEAD"].includes(method)) {
url = addQueryParameters(url, remainingParameters);
} else {
if ("data" in remainingParameters) {
body = remainingParameters.data;
} else {
if (Object.keys(remainingParameters).length) {
body = remainingParameters;
} else {
headers["content-length"] = 0;
}
}
} // default content-type for JSON if body is set
if (!headers["content-type"] && typeof body !== "undefined") {
headers["content-type"] = "application/json; charset=utf-8";
} // GitHub expects 'content-length: 0' header for PUT/PATCH requests without body.
// fetch does not allow to set `content-length` header, but we can set body to an empty string
if (["PATCH", "PUT"].includes(method) && typeof body === "undefined") {
body = "";
} // Only return body/request keys if present
return Object.assign({
method,
url,
headers
}, typeof body !== "undefined" ? {
body
} : null, options.request ? {
request: options.request
} : null);
}
function endpointWithDefaults(defaults, route, options) {
return parse(merge(defaults, route, options));
}
function withDefaults(oldDefaults, newDefaults) {
const DEFAULTS = merge(oldDefaults, newDefaults);
const endpoint = endpointWithDefaults.bind(null, DEFAULTS);
return Object.assign(endpoint, {
DEFAULTS,
defaults: withDefaults.bind(null, DEFAULTS),
merge: merge.bind(null, DEFAULTS),
parse
});
}
const VERSION = "6.0.12";
const userAgent = `octokit-endpoint.js/${VERSION} ${universalUserAgent.getUserAgent()}`; // DEFAULTS has all properties set that EndpointOptions has, except url.
// So we use RequestParameters and add method as additional required property.
const DEFAULTS = {
method: "GET",
baseUrl: "https://api.github.com",
headers: {
accept: "application/vnd.github.v3+json",
"user-agent": userAgent
},
mediaType: {
format: "",
previews: []
}
};
const endpoint = withDefaults(null, DEFAULTS);
exports.endpoint = endpoint;
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 7:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
var request = __nccwpck_require__(6255);
var universalUserAgent = __nccwpck_require__(3843);
const VERSION = "4.8.0";
function _buildMessageForResponseErrors(data) {
return `Request failed due to following response errors:\n` + data.errors.map(e => ` - ${e.message}`).join("\n");
}
class GraphqlResponseError extends Error {
constructor(request, headers, response) {
super(_buildMessageForResponseErrors(response));
this.request = request;
this.headers = headers;
this.response = response;
this.name = "GraphqlResponseError"; // Expose the errors and response data in their shorthand properties.
this.errors = response.errors;
this.data = response.data; // Maintains proper stack trace (only available on V8)
/* istanbul ignore next */
if (Error.captureStackTrace) {
Error.captureStackTrace(this, this.constructor);
}
}
}
const NON_VARIABLE_OPTIONS = ["method", "baseUrl", "url", "headers", "request", "query", "mediaType"];
const FORBIDDEN_VARIABLE_OPTIONS = ["query", "method", "url"];
const GHES_V3_SUFFIX_REGEX = /\/api\/v3\/?$/;
function graphql(request, query, options) {
if (options) {
if (typeof query === "string" && "query" in options) {
return Promise.reject(new Error(`[@octokit/graphql] "query" cannot be used as variable name`));
}
for (const key in options) {
if (!FORBIDDEN_VARIABLE_OPTIONS.includes(key)) continue;
return Promise.reject(new Error(`[@octokit/graphql] "${key}" cannot be used as variable name`));
}
}
const parsedOptions = typeof query === "string" ? Object.assign({
query
}, options) : query;
const requestOptions = Object.keys(parsedOptions).reduce((result, key) => {
if (NON_VARIABLE_OPTIONS.includes(key)) {
result[key] = parsedOptions[key];
return result;
}
if (!result.variables) {
result.variables = {};
}
result.variables[key] = parsedOptions[key];
return result;
}, {}); // workaround for GitHub Enterprise baseUrl set with /api/v3 suffix
// https://github.com/octokit/auth-app.js/issues/111#issuecomment-657610451
const baseUrl = parsedOptions.baseUrl || request.endpoint.DEFAULTS.baseUrl;
if (GHES_V3_SUFFIX_REGEX.test(baseUrl)) {
requestOptions.url = baseUrl.replace(GHES_V3_SUFFIX_REGEX, "/api/graphql");
}
return request(requestOptions).then(response => {
if (response.data.errors) {
const headers = {};
for (const key of Object.keys(response.headers)) {
headers[key] = response.headers[key];
}
throw new GraphqlResponseError(requestOptions, headers, response.data);
}
return response.data.data;
});
}
function withDefaults(request$1, newDefaults) {
const newRequest = request$1.defaults(newDefaults);
const newApi = (query, options) => {
return graphql(newRequest, query, options);
};
return Object.assign(newApi, {
defaults: withDefaults.bind(null, newRequest),
endpoint: request.request.endpoint
});
}
const graphql$1 = withDefaults(request.request, {
headers: {
"user-agent": `octokit-graphql.js/${VERSION} ${universalUserAgent.getUserAgent()}`
},
method: "POST",
url: "/graphql"
});
function withCustomRequest(customRequest) {
return withDefaults(customRequest, {
method: "POST",
url: "/graphql"
});
}
exports.GraphqlResponseError = GraphqlResponseError;
exports.graphql = graphql$1;
exports.withCustomRequest = withCustomRequest;
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 8082:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
const VERSION = "2.21.3";
function ownKeys(object, enumerableOnly) {
var keys = Object.keys(object);
if (Object.getOwnPropertySymbols) {
var symbols = Object.getOwnPropertySymbols(object);
enumerableOnly && (symbols = symbols.filter(function (sym) {
return Object.getOwnPropertyDescriptor(object, sym).enumerable;
})), keys.push.apply(keys, symbols);
}
return keys;
}
function _objectSpread2(target) {
for (var i = 1; i < arguments.length; i++) {
var source = null != arguments[i] ? arguments[i] : {};
i % 2 ? ownKeys(Object(source), !0).forEach(function (key) {
_defineProperty(target, key, source[key]);
}) : Object.getOwnPropertyDescriptors ? Object.defineProperties(target, Object.getOwnPropertyDescriptors(source)) : ownKeys(Object(source)).forEach(function (key) {
Object.defineProperty(target, key, Object.getOwnPropertyDescriptor(source, key));
});
}
return target;
}
function _defineProperty(obj, key, value) {
if (key in obj) {
Object.defineProperty(obj, key, {
value: value,
enumerable: true,
configurable: true,
writable: true
});
} else {
obj[key] = value;
}
return obj;
}
/**
* Some “list” response that can be paginated have a different response structure
*
* They have a `total_count` key in the response (search also has `incomplete_results`,
* /installation/repositories also has `repository_selection`), as well as a key with
* the list of the items which name varies from endpoint to endpoint.
*
* Octokit normalizes these responses so that paginated results are always returned following
* the same structure. One challenge is that if the list response has only one page, no Link
* header is provided, so this header alone is not sufficient to check wether a response is
* paginated or not.
*
* We check if a "total_count" key is present in the response data, but also make sure that
* a "url" property is not, as the "Get the combined status for a specific ref" endpoint would
* otherwise match: https://developer.github.com/v3/repos/statuses/#get-the-combined-status-for-a-specific-ref
*/
function normalizePaginatedListResponse(response) {
// endpoints can respond with 204 if repository is empty
if (!response.data) {
return _objectSpread2(_objectSpread2({}, response), {}, {
data: []
});
}
const responseNeedsNormalization = "total_count" in response.data && !("url" in response.data);
if (!responseNeedsNormalization) return response; // keep the additional properties intact as there is currently no other way
// to retrieve the same information.
const incompleteResults = response.data.incomplete_results;
const repositorySelection = response.data.repository_selection;
const totalCount = response.data.total_count;
delete response.data.incomplete_results;
delete response.data.repository_selection;
delete response.data.total_count;
const namespaceKey = Object.keys(response.data)[0];
const data = response.data[namespaceKey];
response.data = data;
if (typeof incompleteResults !== "undefined") {
response.data.incomplete_results = incompleteResults;
}
if (typeof repositorySelection !== "undefined") {
response.data.repository_selection = repositorySelection;
}
response.data.total_count = totalCount;
return response;
}
function iterator(octokit, route, parameters) {
const options = typeof route === "function" ? route.endpoint(parameters) : octokit.request.endpoint(route, parameters);
const requestMethod = typeof route === "function" ? route : octokit.request;
const method = options.method;
const headers = options.headers;
let url = options.url;
return {
[Symbol.asyncIterator]: () => ({
async next() {
if (!url) return {
done: true
};
try {
const response = await requestMethod({
method,
url,
headers
});
const normalizedResponse = normalizePaginatedListResponse(response); // `response.headers.link` format:
// '<https://api.github.com/users/aseemk/followers?page=2>; rel="next", <https://api.github.com/users/aseemk/followers?page=2>; rel="last"'
// sets `url` to undefined if "next" URL is not present or `link` header is not set
url = ((normalizedResponse.headers.link || "").match(/<([^>]+)>;\s*rel="next"/) || [])[1];
return {
value: normalizedResponse
};
} catch (error) {
if (error.status !== 409) throw error;
url = "";
return {
value: {
status: 200,
headers: {},
data: []
}
};
}
}
})
};
}
function paginate(octokit, route, parameters, mapFn) {
if (typeof parameters === "function") {
mapFn = parameters;
parameters = undefined;
}
return gather(octokit, [], iterator(octokit, route, parameters)[Symbol.asyncIterator](), mapFn);
}
function gather(octokit, results, iterator, mapFn) {
return iterator.next().then(result => {
if (result.done) {
return results;
}
let earlyExit = false;
function done() {
earlyExit = true;
}
results = results.concat(mapFn ? mapFn(result.value, done) : result.value.data);
if (earlyExit) {
return results;
}
return gather(octokit, results, iterator, mapFn);
});
}
const composePaginateRest = Object.assign(paginate, {
iterator
});
const paginatingEndpoints = ["GET /app/hook/deliveries", "GET /app/installations", "GET /applications/grants", "GET /authorizations", "GET /enterprises/{enterprise}/actions/permissions/organizations", "GET /enterprises/{enterprise}/actions/runner-groups", "GET /enterprises/{enterprise}/actions/runner-groups/{runner_group_id}/organizations", "GET /enterprises/{enterprise}/actions/runner-groups/{runner_group_id}/runners", "GET /enterprises/{enterprise}/actions/runners", "GET /enterprises/{enterprise}/audit-log", "GET /enterprises/{enterprise}/secret-scanning/alerts", "GET /enterprises/{enterprise}/settings/billing/advanced-security", "GET /events", "GET /gists", "GET /gists/public", "GET /gists/starred", "GET /gists/{gist_id}/comments", "GET /gists/{gist_id}/commits", "GET /gists/{gist_id}/forks", "GET /installation/repositories", "GET /issues", "GET /licenses", "GET /marketplace_listing/plans", "GET /marketplace_listing/plans/{plan_id}/accounts", "GET /marketplace_listing/stubbed/plans", "GET /marketplace_listing/stubbed/plans/{plan_id}/accounts", "GET /networks/{owner}/{repo}/events", "GET /notifications", "GET /organizations", "GET /orgs/{org}/actions/cache/usage-by-repository", "GET /orgs/{org}/actions/permissions/repositories", "GET /orgs/{org}/actions/runner-groups", "GET /orgs/{org}/actions/runner-groups/{runner_group_id}/repositories", "GET /orgs/{org}/actions/runner-groups/{runner_group_id}/runners", "GET /orgs/{org}/actions/runners", "GET /orgs/{org}/actions/secrets", "GET /orgs/{org}/actions/secrets/{secret_name}/repositories", "GET /orgs/{org}/audit-log", "GET /orgs/{org}/blocks", "GET /orgs/{org}/code-scanning/alerts", "GET /orgs/{org}/codespaces", "GET /orgs/{org}/credential-authorizations", "GET /orgs/{org}/dependabot/secrets", "GET /orgs/{org}/dependabot/secrets/{secret_name}/repositories", "GET /orgs/{org}/events", "GET /orgs/{org}/external-groups", "GET /orgs/{org}/failed_invitations", "GET /orgs/{org}/hooks", "GET /orgs/{org}/hooks/{hook_id}/deliveries", "GET /orgs/{org}/installations", "GET /orgs/{org}/invitations", "GET /orgs/{org}/invitations/{invitation_id}/teams", "GET /orgs/{org}/issues", "GET /orgs/{org}/members", "GET /orgs/{org}/migrations", "GET /orgs/{org}/migrations/{migration_id}/repositories", "GET /orgs/{org}/outside_collaborators", "GET /orgs/{org}/packages", "GET /orgs/{org}/packages/{package_type}/{package_name}/versions", "GET /orgs/{org}/projects", "GET /orgs/{org}/public_members", "GET /orgs/{org}/repos", "GET /orgs/{org}/secret-scanning/alerts", "GET /orgs/{org}/settings/billing/advanced-security", "GET /orgs/{org}/team-sync/groups", "GET /orgs/{org}/teams", "GET /orgs/{org}/teams/{team_slug}/discussions", "GET /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments", "GET /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments/{comment_number}/reactions", "GET /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/reactions", "GET /orgs/{org}/teams/{team_slug}/invitations", "GET /orgs/{org}/teams/{team_slug}/members", "GET /orgs/{org}/teams/{team_slug}/projects", "GET /orgs/{org}/teams/{team_slug}/repos", "GET /orgs/{org}/teams/{team_slug}/teams", "GET /projects/columns/{column_id}/cards", "GET /projects/{project_id}/collaborators", "GET /projects/{project_id}/columns", "GET /repos/{owner}/{repo}/actions/artifacts", "GET /repos/{owner}/{repo}/actions/caches", "GET /repos/{owner}/{repo}/actions/runners", "GET /repos/{owner}/{repo}/actions/runs", "GET /repos/{owner}/{repo}/actions/runs/{run_id}/artifacts", "GET /repos/{owner}/{repo}/actions/runs/{run_id}/attempts/{attempt_number}/jobs", "GET /repos/{owner}/{repo}/actions/runs/{run_id}/jobs", "GET /repos/{owner}/{repo}/actions/secrets", "GET /repos/{owner}/{repo}/actions/workflows", "GET /repos/{owner}/{repo}/actions/workflows/{workflow_id}/runs", "GET /repos/{owner}/{repo}/assignees", "GET /repos/{owner}/{repo}/branches", "GET /repos/{owner}/{repo}/check-runs/{check_run_id}/annotations", "GET /repos/{owner}/{repo}/check-suites/{check_suite_id}/check-runs", "GET /repos/{owner}/{repo}/code-scanning/alerts", "GET /repos/{owner}/{repo}/code-scanning/alerts/{alert_number}/instances", "GET /repos/{owner}/{repo}/code-scanning/analyses", "GET /repos/{owner}/{repo}/codespaces", "GET /repos/{owner}/{repo}/codespaces/devcontainers", "GET /repos/{owner}/{repo}/codespaces/secrets", "GET /repos/{owner}/{repo}/collaborators", "GET /repos/{owner}/{repo}/comments", "GET /repos/{owner}/{repo}/comments/{comment_id}/reactions", "GET /repos/{owner}/{repo}/commits", "GET /repos/{owner}/{repo}/commits/{commit_sha}/comments", "GET /repos/{owner}/{repo}/commits/{commit_sha}/pulls", "GET /repos/{owner}/{repo}/commits/{ref}/check-runs", "GET /repos/{owner}/{repo}/commits/{ref}/check-suites", "GET /repos/{owner}/{repo}/commits/{ref}/status", "GET /repos/{owner}/{repo}/commits/{ref}/statuses", "GET /repos/{owner}/{repo}/contributors", "GET /repos/{owner}/{repo}/dependabot/secrets", "GET /repos/{owner}/{repo}/deployments", "GET /repos/{owner}/{repo}/deployments/{deployment_id}/statuses", "GET /repos/{owner}/{repo}/environments", "GET /repos/{owner}/{repo}/events", "GET /repos/{owner}/{repo}/forks", "GET /repos/{owner}/{repo}/git/matching-refs/{ref}", "GET /repos/{owner}/{repo}/hooks", "GET /repos/{owner}/{repo}/hooks/{hook_id}/deliveries", "GET /repos/{owner}/{repo}/invitations", "GET /repos/{owner}/{repo}/issues", "GET /repos/{owner}/{repo}/issues/comments", "GET /repos/{owner}/{repo}/issues/comments/{comment_id}/reactions", "GET /repos/{owner}/{repo}/issues/events", "GET /repos/{owner}/{repo}/issues/{issue_number}/comments", "GET /repos/{owner}/{repo}/issues/{issue_number}/events", "GET /repos/{owner}/{repo}/issues/{issue_number}/labels", "GET /repos/{owner}/{repo}/issues/{issue_number}/reactions", "GET /repos/{owner}/{repo}/issues/{issue_number}/timeline", "GET /repos/{owner}/{repo}/keys", "GET /repos/{owner}/{repo}/labels", "GET /repos/{owner}/{repo}/milestones", "GET /repos/{owner}/{repo}/milestones/{milestone_number}/labels", "GET /repos/{owner}/{repo}/notifications", "GET /repos/{owner}/{repo}/pages/builds", "GET /repos/{owner}/{repo}/projects", "GET /repos/{owner}/{repo}/pulls", "GET /repos/{owner}/{repo}/pulls/comments", "GET /repos/{owner}/{repo}/pulls/comments/{comment_id}/reactions", "GET /repos/{owner}/{repo}/pulls/{pull_number}/comments", "GET /repos/{owner}/{repo}/pulls/{pull_number}/commits", "GET /repos/{owner}/{repo}/pulls/{pull_number}/files", "GET /repos/{owner}/{repo}/pulls/{pull_number}/requested_reviewers", "GET /repos/{owner}/{repo}/pulls/{pull_number}/reviews", "GET /repos/{owner}/{repo}/pulls/{pull_number}/reviews/{review_id}/comments", "GET /repos/{owner}/{repo}/releases", "GET /repos/{owner}/{repo}/releases/{release_id}/assets", "GET /repos/{owner}/{repo}/releases/{release_id}/reactions", "GET /repos/{owner}/{repo}/secret-scanning/alerts", "GET /repos/{owner}/{repo}/secret-scanning/alerts/{alert_number}/locations", "GET /repos/{owner}/{repo}/stargazers", "GET /repos/{owner}/{repo}/subscribers", "GET /repos/{owner}/{repo}/tags", "GET /repos/{owner}/{repo}/teams", "GET /repos/{owner}/{repo}/topics", "GET /repositories", "GET /repositories/{repository_id}/environments/{environment_name}/secrets", "GET /search/code", "GET /search/commits", "GET /search/issues", "GET /search/labels", "GET /search/repositories", "GET /search/topics", "GET /search/users", "GET /teams/{team_id}/discussions", "GET /teams/{team_id}/discussions/{discussion_number}/comments", "GET /teams/{team_id}/discussions/{discussion_number}/comments/{comment_number}/reactions", "GET /teams/{team_id}/discussions/{discussion_number}/reactions", "GET /teams/{team_id}/invitations", "GET /teams/{team_id}/members", "GET /teams/{team_id}/projects", "GET /teams/{team_id}/repos", "GET /teams/{team_id}/teams", "GET /user/blocks", "GET /user/codespaces", "GET /user/codespaces/secrets", "GET /user/emails", "GET /user/followers", "GET /user/following", "GET /user/gpg_keys", "GET /user/installations", "GET /user/installations/{installation_id}/repositories", "GET /user/issues", "GET /user/keys", "GET /user/marketplace_purchases", "GET /user/marketplace_purchases/stubbed", "GET /user/memberships/orgs", "GET /user/migrations", "GET /user/migrations/{migration_id}/repositories", "GET /user/orgs", "GET /user/packages", "GET /user/packages/{package_type}/{package_name}/versions", "GET /user/public_emails", "GET /user/repos", "GET /user/repository_invitations", "GET /user/starred", "GET /user/subscriptions", "GET /user/teams", "GET /users", "GET /users/{username}/events", "GET /users/{username}/events/orgs/{org}", "GET /users/{username}/events/public", "GET /users/{username}/followers", "GET /users/{username}/following", "GET /users/{username}/gists", "GET /users/{username}/gpg_keys", "GET /users/{username}/keys", "GET /users/{username}/orgs", "GET /users/{username}/packages", "GET /users/{username}/projects", "GET /users/{username}/received_events", "GET /users/{username}/received_events/public", "GET /users/{username}/repos", "GET /users/{username}/starred", "GET /users/{username}/subscriptions"];
function isPaginatingEndpoint(arg) {
if (typeof arg === "string") {
return paginatingEndpoints.includes(arg);
} else {
return false;
}
}
/**
* @param octokit Octokit instance
* @param options Options passed to Octokit constructor
*/
function paginateRest(octokit) {
return {
paginate: Object.assign(paginate.bind(null, octokit), {
iterator: iterator.bind(null, octokit)
})
};
}
paginateRest.VERSION = VERSION;
exports.composePaginateRest = composePaginateRest;
exports.isPaginatingEndpoint = isPaginatingEndpoint;
exports.paginateRest = paginateRest;
exports.paginatingEndpoints = paginatingEndpoints;
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 6966:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
const VERSION = "1.0.4";
/**
* @param octokit Octokit instance
* @param options Options passed to Octokit constructor
*/
function requestLog(octokit) {
octokit.hook.wrap("request", (request, options) => {
octokit.log.debug("request", options);
const start = Date.now();
const requestOptions = octokit.request.endpoint.parse(options);
const path = requestOptions.url.replace(options.baseUrl, "");
return request(options).then(response => {
octokit.log.info(`${requestOptions.method} ${path} - ${response.status} in ${Date.now() - start}ms`);
return response;
}).catch(error => {
octokit.log.info(`${requestOptions.method} ${path} - ${error.status} in ${Date.now() - start}ms`);
throw error;
});
});
}
requestLog.VERSION = VERSION;
exports.requestLog = requestLog;
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 4935:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
function ownKeys(object, enumerableOnly) {
var keys = Object.keys(object);
if (Object.getOwnPropertySymbols) {
var symbols = Object.getOwnPropertySymbols(object);
if (enumerableOnly) {
symbols = symbols.filter(function (sym) {
return Object.getOwnPropertyDescriptor(object, sym).enumerable;
});
}
keys.push.apply(keys, symbols);
}
return keys;
}
function _objectSpread2(target) {
for (var i = 1; i < arguments.length; i++) {
var source = arguments[i] != null ? arguments[i] : {};
if (i % 2) {
ownKeys(Object(source), true).forEach(function (key) {
_defineProperty(target, key, source[key]);
});
} else if (Object.getOwnPropertyDescriptors) {
Object.defineProperties(target, Object.getOwnPropertyDescriptors(source));
} else {
ownKeys(Object(source)).forEach(function (key) {
Object.defineProperty(target, key, Object.getOwnPropertyDescriptor(source, key));
});
}
}
return target;
}
function _defineProperty(obj, key, value) {
if (key in obj) {
Object.defineProperty(obj, key, {
value: value,
enumerable: true,
configurable: true,
writable: true
});
} else {
obj[key] = value;
}
return obj;
}
const Endpoints = {
actions: {
addCustomLabelsToSelfHostedRunnerForOrg: ["POST /orgs/{org}/actions/runners/{runner_id}/labels"],
addCustomLabelsToSelfHostedRunnerForRepo: ["POST /repos/{owner}/{repo}/actions/runners/{runner_id}/labels"],
addSelectedRepoToOrgSecret: ["PUT /orgs/{org}/actions/secrets/{secret_name}/repositories/{repository_id}"],
approveWorkflowRun: ["POST /repos/{owner}/{repo}/actions/runs/{run_id}/approve"],
cancelWorkflowRun: ["POST /repos/{owner}/{repo}/actions/runs/{run_id}/cancel"],
createOrUpdateEnvironmentSecret: ["PUT /repositories/{repository_id}/environments/{environment_name}/secrets/{secret_name}"],
createOrUpdateOrgSecret: ["PUT /orgs/{org}/actions/secrets/{secret_name}"],
createOrUpdateRepoSecret: ["PUT /repos/{owner}/{repo}/actions/secrets/{secret_name}"],
createRegistrationTokenForOrg: ["POST /orgs/{org}/actions/runners/registration-token"],
createRegistrationTokenForRepo: ["POST /repos/{owner}/{repo}/actions/runners/registration-token"],
createRemoveTokenForOrg: ["POST /orgs/{org}/actions/runners/remove-token"],
createRemoveTokenForRepo: ["POST /repos/{owner}/{repo}/actions/runners/remove-token"],
createWorkflowDispatch: ["POST /repos/{owner}/{repo}/actions/workflows/{workflow_id}/dispatches"],
deleteActionsCacheById: ["DELETE /repos/{owner}/{repo}/actions/caches/{cache_id}"],
deleteActionsCacheByKey: ["DELETE /repos/{owner}/{repo}/actions/caches{?key,ref}"],
deleteArtifact: ["DELETE /repos/{owner}/{repo}/actions/artifacts/{artifact_id}"],
deleteEnvironmentSecret: ["DELETE /repositories/{repository_id}/environments/{environment_name}/secrets/{secret_name}"],
deleteOrgSecret: ["DELETE /orgs/{org}/actions/secrets/{secret_name}"],
deleteRepoSecret: ["DELETE /repos/{owner}/{repo}/actions/secrets/{secret_name}"],
deleteSelfHostedRunnerFromOrg: ["DELETE /orgs/{org}/actions/runners/{runner_id}"],
deleteSelfHostedRunnerFromRepo: ["DELETE /repos/{owner}/{repo}/actions/runners/{runner_id}"],
deleteWorkflowRun: ["DELETE /repos/{owner}/{repo}/actions/runs/{run_id}"],
deleteWorkflowRunLogs: ["DELETE /repos/{owner}/{repo}/actions/runs/{run_id}/logs"],
disableSelectedRepositoryGithubActionsOrganization: ["DELETE /orgs/{org}/actions/permissions/repositories/{repository_id}"],
disableWorkflow: ["PUT /repos/{owner}/{repo}/actions/workflows/{workflow_id}/disable"],
downloadArtifact: ["GET /repos/{owner}/{repo}/actions/artifacts/{artifact_id}/{archive_format}"],
downloadJobLogsForWorkflowRun: ["GET /repos/{owner}/{repo}/actions/jobs/{job_id}/logs"],
downloadWorkflowRunAttemptLogs: ["GET /repos/{owner}/{repo}/actions/runs/{run_id}/attempts/{attempt_number}/logs"],
downloadWorkflowRunLogs: ["GET /repos/{owner}/{repo}/actions/runs/{run_id}/logs"],
enableSelectedRepositoryGithubActionsOrganization: ["PUT /orgs/{org}/actions/permissions/repositories/{repository_id}"],
enableWorkflow: ["PUT /repos/{owner}/{repo}/actions/workflows/{workflow_id}/enable"],
getActionsCacheList: ["GET /repos/{owner}/{repo}/actions/caches"],
getActionsCacheUsage: ["GET /repos/{owner}/{repo}/actions/cache/usage"],
getActionsCacheUsageByRepoForOrg: ["GET /orgs/{org}/actions/cache/usage-by-repository"],
getActionsCacheUsageForEnterprise: ["GET /enterprises/{enterprise}/actions/cache/usage"],
getActionsCacheUsageForOrg: ["GET /orgs/{org}/actions/cache/usage"],
getAllowedActionsOrganization: ["GET /orgs/{org}/actions/permissions/selected-actions"],
getAllowedActionsRepository: ["GET /repos/{owner}/{repo}/actions/permissions/selected-actions"],
getArtifact: ["GET /repos/{owner}/{repo}/actions/artifacts/{artifact_id}"],
getEnvironmentPublicKey: ["GET /repositories/{repository_id}/environments/{environment_name}/secrets/public-key"],
getEnvironmentSecret: ["GET /repositories/{repository_id}/environments/{environment_name}/secrets/{secret_name}"],
getGithubActionsDefaultWorkflowPermissionsEnterprise: ["GET /enterprises/{enterprise}/actions/permissions/workflow"],
getGithubActionsDefaultWorkflowPermissionsOrganization: ["GET /orgs/{org}/actions/permissions/workflow"],
getGithubActionsDefaultWorkflowPermissionsRepository: ["GET /repos/{owner}/{repo}/actions/permissions/workflow"],
getGithubActionsPermissionsOrganization: ["GET /orgs/{org}/actions/permissions"],
getGithubActionsPermissionsRepository: ["GET /repos/{owner}/{repo}/actions/permissions"],
getJobForWorkflowRun: ["GET /repos/{owner}/{repo}/actions/jobs/{job_id}"],
getOrgPublicKey: ["GET /orgs/{org}/actions/secrets/public-key"],
getOrgSecret: ["GET /orgs/{org}/actions/secrets/{secret_name}"],
getPendingDeploymentsForRun: ["GET /repos/{owner}/{repo}/actions/runs/{run_id}/pending_deployments"],
getRepoPermissions: ["GET /repos/{owner}/{repo}/actions/permissions", {}, {
renamed: ["actions", "getGithubActionsPermissionsRepository"]
}],
getRepoPublicKey: ["GET /repos/{owner}/{repo}/actions/secrets/public-key"],
getRepoSecret: ["GET /repos/{owner}/{repo}/actions/secrets/{secret_name}"],
getReviewsForRun: ["GET /repos/{owner}/{repo}/actions/runs/{run_id}/approvals"],
getSelfHostedRunnerForOrg: ["GET /orgs/{org}/actions/runners/{runner_id}"],
getSelfHostedRunnerForRepo: ["GET /repos/{owner}/{repo}/actions/runners/{runner_id}"],
getWorkflow: ["GET /repos/{owner}/{repo}/actions/workflows/{workflow_id}"],
getWorkflowAccessToRepository: ["GET /repos/{owner}/{repo}/actions/permissions/access"],
getWorkflowRun: ["GET /repos/{owner}/{repo}/actions/runs/{run_id}"],
getWorkflowRunAttempt: ["GET /repos/{owner}/{repo}/actions/runs/{run_id}/attempts/{attempt_number}"],
getWorkflowRunUsage: ["GET /repos/{owner}/{repo}/actions/runs/{run_id}/timing"],
getWorkflowUsage: ["GET /repos/{owner}/{repo}/actions/workflows/{workflow_id}/timing"],
listArtifactsForRepo: ["GET /repos/{owner}/{repo}/actions/artifacts"],
listEnvironmentSecrets: ["GET /repositories/{repository_id}/environments/{environment_name}/secrets"],
listJobsForWorkflowRun: ["GET /repos/{owner}/{repo}/actions/runs/{run_id}/jobs"],
listJobsForWorkflowRunAttempt: ["GET /repos/{owner}/{repo}/actions/runs/{run_id}/attempts/{attempt_number}/jobs"],
listLabelsForSelfHostedRunnerForOrg: ["GET /orgs/{org}/actions/runners/{runner_id}/labels"],
listLabelsForSelfHostedRunnerForRepo: ["GET /repos/{owner}/{repo}/actions/runners/{runner_id}/labels"],
listOrgSecrets: ["GET /orgs/{org}/actions/secrets"],
listRepoSecrets: ["GET /repos/{owner}/{repo}/actions/secrets"],
listRepoWorkflows: ["GET /repos/{owner}/{repo}/actions/workflows"],
listRunnerApplicationsForOrg: ["GET /orgs/{org}/actions/runners/downloads"],
listRunnerApplicationsForRepo: ["GET /repos/{owner}/{repo}/actions/runners/downloads"],
listSelectedReposForOrgSecret: ["GET /orgs/{org}/actions/secrets/{secret_name}/repositories"],
listSelectedRepositoriesEnabledGithubActionsOrganization: ["GET /orgs/{org}/actions/permissions/repositories"],
listSelfHostedRunnersForOrg: ["GET /orgs/{org}/actions/runners"],
listSelfHostedRunnersForRepo: ["GET /repos/{owner}/{repo}/actions/runners"],
listWorkflowRunArtifacts: ["GET /repos/{owner}/{repo}/actions/runs/{run_id}/artifacts"],
listWorkflowRuns: ["GET /repos/{owner}/{repo}/actions/workflows/{workflow_id}/runs"],
listWorkflowRunsForRepo: ["GET /repos/{owner}/{repo}/actions/runs"],
reRunJobForWorkflowRun: ["POST /repos/{owner}/{repo}/actions/jobs/{job_id}/rerun"],
reRunWorkflow: ["POST /repos/{owner}/{repo}/actions/runs/{run_id}/rerun"],
reRunWorkflowFailedJobs: ["POST /repos/{owner}/{repo}/actions/runs/{run_id}/rerun-failed-jobs"],
removeAllCustomLabelsFromSelfHostedRunnerForOrg: ["DELETE /orgs/{org}/actions/runners/{runner_id}/labels"],
removeAllCustomLabelsFromSelfHostedRunnerForRepo: ["DELETE /repos/{owner}/{repo}/actions/runners/{runner_id}/labels"],
removeCustomLabelFromSelfHostedRunnerForOrg: ["DELETE /orgs/{org}/actions/runners/{runner_id}/labels/{name}"],
removeCustomLabelFromSelfHostedRunnerForRepo: ["DELETE /repos/{owner}/{repo}/actions/runners/{runner_id}/labels/{name}"],
removeSelectedRepoFromOrgSecret: ["DELETE /orgs/{org}/actions/secrets/{secret_name}/repositories/{repository_id}"],
reviewPendingDeploymentsForRun: ["POST /repos/{owner}/{repo}/actions/runs/{run_id}/pending_deployments"],
setAllowedActionsOrganization: ["PUT /orgs/{org}/actions/permissions/selected-actions"],
setAllowedActionsRepository: ["PUT /repos/{owner}/{repo}/actions/permissions/selected-actions"],
setCustomLabelsForSelfHostedRunnerForOrg: ["PUT /orgs/{org}/actions/runners/{runner_id}/labels"],
setCustomLabelsForSelfHostedRunnerForRepo: ["PUT /repos/{owner}/{repo}/actions/runners/{runner_id}/labels"],
setGithubActionsDefaultWorkflowPermissionsEnterprise: ["PUT /enterprises/{enterprise}/actions/permissions/workflow"],
setGithubActionsDefaultWorkflowPermissionsOrganization: ["PUT /orgs/{org}/actions/permissions/workflow"],
setGithubActionsDefaultWorkflowPermissionsRepository: ["PUT /repos/{owner}/{repo}/actions/permissions/workflow"],
setGithubActionsPermissionsOrganization: ["PUT /orgs/{org}/actions/permissions"],
setGithubActionsPermissionsRepository: ["PUT /repos/{owner}/{repo}/actions/permissions"],
setSelectedReposForOrgSecret: ["PUT /orgs/{org}/actions/secrets/{secret_name}/repositories"],
setSelectedRepositoriesEnabledGithubActionsOrganization: ["PUT /orgs/{org}/actions/permissions/repositories"],
setWorkflowAccessToRepository: ["PUT /repos/{owner}/{repo}/actions/permissions/access"]
},
activity: {
checkRepoIsStarredByAuthenticatedUser: ["GET /user/starred/{owner}/{repo}"],
deleteRepoSubscription: ["DELETE /repos/{owner}/{repo}/subscription"],
deleteThreadSubscription: ["DELETE /notifications/threads/{thread_id}/subscription"],
getFeeds: ["GET /feeds"],
getRepoSubscription: ["GET /repos/{owner}/{repo}/subscription"],
getThread: ["GET /notifications/threads/{thread_id}"],
getThreadSubscriptionForAuthenticatedUser: ["GET /notifications/threads/{thread_id}/subscription"],
listEventsForAuthenticatedUser: ["GET /users/{username}/events"],
listNotificationsForAuthenticatedUser: ["GET /notifications"],
listOrgEventsForAuthenticatedUser: ["GET /users/{username}/events/orgs/{org}"],
listPublicEvents: ["GET /events"],
listPublicEventsForRepoNetwork: ["GET /networks/{owner}/{repo}/events"],
listPublicEventsForUser: ["GET /users/{username}/events/public"],
listPublicOrgEvents: ["GET /orgs/{org}/events"],
listReceivedEventsForUser: ["GET /users/{username}/received_events"],
listReceivedPublicEventsForUser: ["GET /users/{username}/received_events/public"],
listRepoEvents: ["GET /repos/{owner}/{repo}/events"],
listRepoNotificationsForAuthenticatedUser: ["GET /repos/{owner}/{repo}/notifications"],
listReposStarredByAuthenticatedUser: ["GET /user/starred"],
listReposStarredByUser: ["GET /users/{username}/starred"],
listReposWatchedByUser: ["GET /users/{username}/subscriptions"],
listStargazersForRepo: ["GET /repos/{owner}/{repo}/stargazers"],
listWatchedReposForAuthenticatedUser: ["GET /user/subscriptions"],
listWatchersForRepo: ["GET /repos/{owner}/{repo}/subscribers"],
markNotificationsAsRead: ["PUT /notifications"],
markRepoNotificationsAsRead: ["PUT /repos/{owner}/{repo}/notifications"],
markThreadAsRead: ["PATCH /notifications/threads/{thread_id}"],
setRepoSubscription: ["PUT /repos/{owner}/{repo}/subscription"],
setThreadSubscription: ["PUT /notifications/threads/{thread_id}/subscription"],
starRepoForAuthenticatedUser: ["PUT /user/starred/{owner}/{repo}"],
unstarRepoForAuthenticatedUser: ["DELETE /user/starred/{owner}/{repo}"]
},
apps: {
addRepoToInstallation: ["PUT /user/installations/{installation_id}/repositories/{repository_id}", {}, {
renamed: ["apps", "addRepoToInstallationForAuthenticatedUser"]
}],
addRepoToInstallationForAuthenticatedUser: ["PUT /user/installations/{installation_id}/repositories/{repository_id}"],
checkToken: ["POST /applications/{client_id}/token"],
createFromManifest: ["POST /app-manifests/{code}/conversions"],
createInstallationAccessToken: ["POST /app/installations/{installation_id}/access_tokens"],
deleteAuthorization: ["DELETE /applications/{client_id}/grant"],
deleteInstallation: ["DELETE /app/installations/{installation_id}"],
deleteToken: ["DELETE /applications/{client_id}/token"],
getAuthenticated: ["GET /app"],
getBySlug: ["GET /apps/{app_slug}"],
getInstallation: ["GET /app/installations/{installation_id}"],
getOrgInstallation: ["GET /orgs/{org}/installation"],
getRepoInstallation: ["GET /repos/{owner}/{repo}/installation"],
getSubscriptionPlanForAccount: ["GET /marketplace_listing/accounts/{account_id}"],
getSubscriptionPlanForAccountStubbed: ["GET /marketplace_listing/stubbed/accounts/{account_id}"],
getUserInstallation: ["GET /users/{username}/installation"],
getWebhookConfigForApp: ["GET /app/hook/config"],
getWebhookDelivery: ["GET /app/hook/deliveries/{delivery_id}"],
listAccountsForPlan: ["GET /marketplace_listing/plans/{plan_id}/accounts"],
listAccountsForPlanStubbed: ["GET /marketplace_listing/stubbed/plans/{plan_id}/accounts"],
listInstallationReposForAuthenticatedUser: ["GET /user/installations/{installation_id}/repositories"],
listInstallations: ["GET /app/installations"],
listInstallationsForAuthenticatedUser: ["GET /user/installations"],
listPlans: ["GET /marketplace_listing/plans"],
listPlansStubbed: ["GET /marketplace_listing/stubbed/plans"],
listReposAccessibleToInstallation: ["GET /installation/repositories"],
listSubscriptionsForAuthenticatedUser: ["GET /user/marketplace_purchases"],
listSubscriptionsForAuthenticatedUserStubbed: ["GET /user/marketplace_purchases/stubbed"],
listWebhookDeliveries: ["GET /app/hook/deliveries"],
redeliverWebhookDelivery: ["POST /app/hook/deliveries/{delivery_id}/attempts"],
removeRepoFromInstallation: ["DELETE /user/installations/{installation_id}/repositories/{repository_id}", {}, {
renamed: ["apps", "removeRepoFromInstallationForAuthenticatedUser"]
}],
removeRepoFromInstallationForAuthenticatedUser: ["DELETE /user/installations/{installation_id}/repositories/{repository_id}"],
resetToken: ["PATCH /applications/{client_id}/token"],
revokeInstallationAccessToken: ["DELETE /installation/token"],
scopeToken: ["POST /applications/{client_id}/token/scoped"],
suspendInstallation: ["PUT /app/installations/{installation_id}/suspended"],
unsuspendInstallation: ["DELETE /app/installations/{installation_id}/suspended"],
updateWebhookConfigForApp: ["PATCH /app/hook/config"]
},
billing: {
getGithubActionsBillingOrg: ["GET /orgs/{org}/settings/billing/actions"],
getGithubActionsBillingUser: ["GET /users/{username}/settings/billing/actions"],
getGithubAdvancedSecurityBillingGhe: ["GET /enterprises/{enterprise}/settings/billing/advanced-security"],
getGithubAdvancedSecurityBillingOrg: ["GET /orgs/{org}/settings/billing/advanced-security"],
getGithubPackagesBillingOrg: ["GET /orgs/{org}/settings/billing/packages"],
getGithubPackagesBillingUser: ["GET /users/{username}/settings/billing/packages"],
getSharedStorageBillingOrg: ["GET /orgs/{org}/settings/billing/shared-storage"],
getSharedStorageBillingUser: ["GET /users/{username}/settings/billing/shared-storage"]
},
checks: {
create: ["POST /repos/{owner}/{repo}/check-runs"],
createSuite: ["POST /repos/{owner}/{repo}/check-suites"],
get: ["GET /repos/{owner}/{repo}/check-runs/{check_run_id}"],
getSuite: ["GET /repos/{owner}/{repo}/check-suites/{check_suite_id}"],
listAnnotations: ["GET /repos/{owner}/{repo}/check-runs/{check_run_id}/annotations"],
listForRef: ["GET /repos/{owner}/{repo}/commits/{ref}/check-runs"],
listForSuite: ["GET /repos/{owner}/{repo}/check-suites/{check_suite_id}/check-runs"],
listSuitesForRef: ["GET /repos/{owner}/{repo}/commits/{ref}/check-suites"],
rerequestRun: ["POST /repos/{owner}/{repo}/check-runs/{check_run_id}/rerequest"],
rerequestSuite: ["POST /repos/{owner}/{repo}/check-suites/{check_suite_id}/rerequest"],
setSuitesPreferences: ["PATCH /repos/{owner}/{repo}/check-suites/preferences"],
update: ["PATCH /repos/{owner}/{repo}/check-runs/{check_run_id}"]
},
codeScanning: {
deleteAnalysis: ["DELETE /repos/{owner}/{repo}/code-scanning/analyses/{analysis_id}{?confirm_delete}"],
getAlert: ["GET /repos/{owner}/{repo}/code-scanning/alerts/{alert_number}", {}, {
renamedParameters: {
alert_id: "alert_number"
}
}],
getAnalysis: ["GET /repos/{owner}/{repo}/code-scanning/analyses/{analysis_id}"],
getSarif: ["GET /repos/{owner}/{repo}/code-scanning/sarifs/{sarif_id}"],
listAlertInstances: ["GET /repos/{owner}/{repo}/code-scanning/alerts/{alert_number}/instances"],
listAlertsForOrg: ["GET /orgs/{org}/code-scanning/alerts"],
listAlertsForRepo: ["GET /repos/{owner}/{repo}/code-scanning/alerts"],
listAlertsInstances: ["GET /repos/{owner}/{repo}/code-scanning/alerts/{alert_number}/instances", {}, {
renamed: ["codeScanning", "listAlertInstances"]
}],
listRecentAnalyses: ["GET /repos/{owner}/{repo}/code-scanning/analyses"],
updateAlert: ["PATCH /repos/{owner}/{repo}/code-scanning/alerts/{alert_number}"],
uploadSarif: ["POST /repos/{owner}/{repo}/code-scanning/sarifs"]
},
codesOfConduct: {
getAllCodesOfConduct: ["GET /codes_of_conduct"],
getConductCode: ["GET /codes_of_conduct/{key}"]
},
codespaces: {
addRepositoryForSecretForAuthenticatedUser: ["PUT /user/codespaces/secrets/{secret_name}/repositories/{repository_id}"],
codespaceMachinesForAuthenticatedUser: ["GET /user/codespaces/{codespace_name}/machines"],
createForAuthenticatedUser: ["POST /user/codespaces"],
createOrUpdateRepoSecret: ["PUT /repos/{owner}/{repo}/codespaces/secrets/{secret_name}"],
createOrUpdateSecretForAuthenticatedUser: ["PUT /user/codespaces/secrets/{secret_name}"],
createWithPrForAuthenticatedUser: ["POST /repos/{owner}/{repo}/pulls/{pull_number}/codespaces"],
createWithRepoForAuthenticatedUser: ["POST /repos/{owner}/{repo}/codespaces"],
deleteForAuthenticatedUser: ["DELETE /user/codespaces/{codespace_name}"],
deleteFromOrganization: ["DELETE /orgs/{org}/members/{username}/codespaces/{codespace_name}"],
deleteRepoSecret: ["DELETE /repos/{owner}/{repo}/codespaces/secrets/{secret_name}"],
deleteSecretForAuthenticatedUser: ["DELETE /user/codespaces/secrets/{secret_name}"],
exportForAuthenticatedUser: ["POST /user/codespaces/{codespace_name}/exports"],
getExportDetailsForAuthenticatedUser: ["GET /user/codespaces/{codespace_name}/exports/{export_id}"],
getForAuthenticatedUser: ["GET /user/codespaces/{codespace_name}"],
getPublicKeyForAuthenticatedUser: ["GET /user/codespaces/secrets/public-key"],
getRepoPublicKey: ["GET /repos/{owner}/{repo}/codespaces/secrets/public-key"],
getRepoSecret: ["GET /repos/{owner}/{repo}/codespaces/secrets/{secret_name}"],
getSecretForAuthenticatedUser: ["GET /user/codespaces/secrets/{secret_name}"],
listDevcontainersInRepositoryForAuthenticatedUser: ["GET /repos/{owner}/{repo}/codespaces/devcontainers"],
listForAuthenticatedUser: ["GET /user/codespaces"],
listInOrganization: ["GET /orgs/{org}/codespaces", {}, {
renamedParameters: {
org_id: "org"
}
}],
listInRepositoryForAuthenticatedUser: ["GET /repos/{owner}/{repo}/codespaces"],
listRepoSecrets: ["GET /repos/{owner}/{repo}/codespaces/secrets"],
listRepositoriesForSecretForAuthenticatedUser: ["GET /user/codespaces/secrets/{secret_name}/repositories"],
listSecretsForAuthenticatedUser: ["GET /user/codespaces/secrets"],
removeRepositoryForSecretForAuthenticatedUser: ["DELETE /user/codespaces/secrets/{secret_name}/repositories/{repository_id}"],
repoMachinesForAuthenticatedUser: ["GET /repos/{owner}/{repo}/codespaces/machines"],
setRepositoriesForSecretForAuthenticatedUser: ["PUT /user/codespaces/secrets/{secret_name}/repositories"],
startForAuthenticatedUser: ["POST /user/codespaces/{codespace_name}/start"],
stopForAuthenticatedUser: ["POST /user/codespaces/{codespace_name}/stop"],
stopInOrganization: ["POST /orgs/{org}/members/{username}/codespaces/{codespace_name}/stop"],
updateForAuthenticatedUser: ["PATCH /user/codespaces/{codespace_name}"]
},
dependabot: {
addSelectedRepoToOrgSecret: ["PUT /orgs/{org}/dependabot/secrets/{secret_name}/repositories/{repository_id}"],
createOrUpdateOrgSecret: ["PUT /orgs/{org}/dependabot/secrets/{secret_name}"],
createOrUpdateRepoSecret: ["PUT /repos/{owner}/{repo}/dependabot/secrets/{secret_name}"],
deleteOrgSecret: ["DELETE /orgs/{org}/dependabot/secrets/{secret_name}"],
deleteRepoSecret: ["DELETE /repos/{owner}/{repo}/dependabot/secrets/{secret_name}"],
getOrgPublicKey: ["GET /orgs/{org}/dependabot/secrets/public-key"],
getOrgSecret: ["GET /orgs/{org}/dependabot/secrets/{secret_name}"],
getRepoPublicKey: ["GET /repos/{owner}/{repo}/dependabot/secrets/public-key"],
getRepoSecret: ["GET /repos/{owner}/{repo}/dependabot/secrets/{secret_name}"],
listOrgSecrets: ["GET /orgs/{org}/dependabot/secrets"],
listRepoSecrets: ["GET /repos/{owner}/{repo}/dependabot/secrets"],
listSelectedReposForOrgSecret: ["GET /orgs/{org}/dependabot/secrets/{secret_name}/repositories"],
removeSelectedRepoFromOrgSecret: ["DELETE /orgs/{org}/dependabot/secrets/{secret_name}/repositories/{repository_id}"],
setSelectedReposForOrgSecret: ["PUT /orgs/{org}/dependabot/secrets/{secret_name}/repositories"]
},
dependencyGraph: {
createRepositorySnapshot: ["POST /repos/{owner}/{repo}/dependency-graph/snapshots"],
diffRange: ["GET /repos/{owner}/{repo}/dependency-graph/compare/{basehead}"]
},
emojis: {
get: ["GET /emojis"]
},
enterpriseAdmin: {
addCustomLabelsToSelfHostedRunnerForEnterprise: ["POST /enterprises/{enterprise}/actions/runners/{runner_id}/labels"],
disableSelectedOrganizationGithubActionsEnterprise: ["DELETE /enterprises/{enterprise}/actions/permissions/organizations/{org_id}"],
enableSelectedOrganizationGithubActionsEnterprise: ["PUT /enterprises/{enterprise}/actions/permissions/organizations/{org_id}"],
getAllowedActionsEnterprise: ["GET /enterprises/{enterprise}/actions/permissions/selected-actions"],
getGithubActionsPermissionsEnterprise: ["GET /enterprises/{enterprise}/actions/permissions"],
getServerStatistics: ["GET /enterprise-installation/{enterprise_or_org}/server-statistics"],
listLabelsForSelfHostedRunnerForEnterprise: ["GET /enterprises/{enterprise}/actions/runners/{runner_id}/labels"],
listSelectedOrganizationsEnabledGithubActionsEnterprise: ["GET /enterprises/{enterprise}/actions/permissions/organizations"],
removeAllCustomLabelsFromSelfHostedRunnerForEnterprise: ["DELETE /enterprises/{enterprise}/actions/runners/{runner_id}/labels"],
removeCustomLabelFromSelfHostedRunnerForEnterprise: ["DELETE /enterprises/{enterprise}/actions/runners/{runner_id}/labels/{name}"],
setAllowedActionsEnterprise: ["PUT /enterprises/{enterprise}/actions/permissions/selected-actions"],
setCustomLabelsForSelfHostedRunnerForEnterprise: ["PUT /enterprises/{enterprise}/actions/runners/{runner_id}/labels"],
setGithubActionsPermissionsEnterprise: ["PUT /enterprises/{enterprise}/actions/permissions"],
setSelectedOrganizationsEnabledGithubActionsEnterprise: ["PUT /enterprises/{enterprise}/actions/permissions/organizations"]
},
gists: {
checkIsStarred: ["GET /gists/{gist_id}/star"],
create: ["POST /gists"],
createComment: ["POST /gists/{gist_id}/comments"],
delete: ["DELETE /gists/{gist_id}"],
deleteComment: ["DELETE /gists/{gist_id}/comments/{comment_id}"],
fork: ["POST /gists/{gist_id}/forks"],
get: ["GET /gists/{gist_id}"],
getComment: ["GET /gists/{gist_id}/comments/{comment_id}"],
getRevision: ["GET /gists/{gist_id}/{sha}"],
list: ["GET /gists"],
listComments: ["GET /gists/{gist_id}/comments"],
listCommits: ["GET /gists/{gist_id}/commits"],
listForUser: ["GET /users/{username}/gists"],
listForks: ["GET /gists/{gist_id}/forks"],
listPublic: ["GET /gists/public"],
listStarred: ["GET /gists/starred"],
star: ["PUT /gists/{gist_id}/star"],
unstar: ["DELETE /gists/{gist_id}/star"],
update: ["PATCH /gists/{gist_id}"],
updateComment: ["PATCH /gists/{gist_id}/comments/{comment_id}"]
},
git: {
createBlob: ["POST /repos/{owner}/{repo}/git/blobs"],
createCommit: ["POST /repos/{owner}/{repo}/git/commits"],
createRef: ["POST /repos/{owner}/{repo}/git/refs"],
createTag: ["POST /repos/{owner}/{repo}/git/tags"],
createTree: ["POST /repos/{owner}/{repo}/git/trees"],
deleteRef: ["DELETE /repos/{owner}/{repo}/git/refs/{ref}"],
getBlob: ["GET /repos/{owner}/{repo}/git/blobs/{file_sha}"],
getCommit: ["GET /repos/{owner}/{repo}/git/commits/{commit_sha}"],
getRef: ["GET /repos/{owner}/{repo}/git/ref/{ref}"],
getTag: ["GET /repos/{owner}/{repo}/git/tags/{tag_sha}"],
getTree: ["GET /repos/{owner}/{repo}/git/trees/{tree_sha}"],
listMatchingRefs: ["GET /repos/{owner}/{repo}/git/matching-refs/{ref}"],
updateRef: ["PATCH /repos/{owner}/{repo}/git/refs/{ref}"]
},
gitignore: {
getAllTemplates: ["GET /gitignore/templates"],
getTemplate: ["GET /gitignore/templates/{name}"]
},
interactions: {
getRestrictionsForAuthenticatedUser: ["GET /user/interaction-limits"],
getRestrictionsForOrg: ["GET /orgs/{org}/interaction-limits"],
getRestrictionsForRepo: ["GET /repos/{owner}/{repo}/interaction-limits"],
getRestrictionsForYourPublicRepos: ["GET /user/interaction-limits", {}, {
renamed: ["interactions", "getRestrictionsForAuthenticatedUser"]
}],
removeRestrictionsForAuthenticatedUser: ["DELETE /user/interaction-limits"],
removeRestrictionsForOrg: ["DELETE /orgs/{org}/interaction-limits"],
removeRestrictionsForRepo: ["DELETE /repos/{owner}/{repo}/interaction-limits"],
removeRestrictionsForYourPublicRepos: ["DELETE /user/interaction-limits", {}, {
renamed: ["interactions", "removeRestrictionsForAuthenticatedUser"]
}],
setRestrictionsForAuthenticatedUser: ["PUT /user/interaction-limits"],
setRestrictionsForOrg: ["PUT /orgs/{org}/interaction-limits"],
setRestrictionsForRepo: ["PUT /repos/{owner}/{repo}/interaction-limits"],
setRestrictionsForYourPublicRepos: ["PUT /user/interaction-limits", {}, {
renamed: ["interactions", "setRestrictionsForAuthenticatedUser"]
}]
},
issues: {
addAssignees: ["POST /repos/{owner}/{repo}/issues/{issue_number}/assignees"],
addLabels: ["POST /repos/{owner}/{repo}/issues/{issue_number}/labels"],
checkUserCanBeAssigned: ["GET /repos/{owner}/{repo}/assignees/{assignee}"],
create: ["POST /repos/{owner}/{repo}/issues"],
createComment: ["POST /repos/{owner}/{repo}/issues/{issue_number}/comments"],
createLabel: ["POST /repos/{owner}/{repo}/labels"],
createMilestone: ["POST /repos/{owner}/{repo}/milestones"],
deleteComment: ["DELETE /repos/{owner}/{repo}/issues/comments/{comment_id}"],
deleteLabel: ["DELETE /repos/{owner}/{repo}/labels/{name}"],
deleteMilestone: ["DELETE /repos/{owner}/{repo}/milestones/{milestone_number}"],
get: ["GET /repos/{owner}/{repo}/issues/{issue_number}"],
getComment: ["GET /repos/{owner}/{repo}/issues/comments/{comment_id}"],
getEvent: ["GET /repos/{owner}/{repo}/issues/events/{event_id}"],
getLabel: ["GET /repos/{owner}/{repo}/labels/{name}"],
getMilestone: ["GET /repos/{owner}/{repo}/milestones/{milestone_number}"],
list: ["GET /issues"],
listAssignees: ["GET /repos/{owner}/{repo}/assignees"],
listComments: ["GET /repos/{owner}/{repo}/issues/{issue_number}/comments"],
listCommentsForRepo: ["GET /repos/{owner}/{repo}/issues/comments"],
listEvents: ["GET /repos/{owner}/{repo}/issues/{issue_number}/events"],
listEventsForRepo: ["GET /repos/{owner}/{repo}/issues/events"],
listEventsForTimeline: ["GET /repos/{owner}/{repo}/issues/{issue_number}/timeline"],
listForAuthenticatedUser: ["GET /user/issues"],
listForOrg: ["GET /orgs/{org}/issues"],
listForRepo: ["GET /repos/{owner}/{repo}/issues"],
listLabelsForMilestone: ["GET /repos/{owner}/{repo}/milestones/{milestone_number}/labels"],
listLabelsForRepo: ["GET /repos/{owner}/{repo}/labels"],
listLabelsOnIssue: ["GET /repos/{owner}/{repo}/issues/{issue_number}/labels"],
listMilestones: ["GET /repos/{owner}/{repo}/milestones"],
lock: ["PUT /repos/{owner}/{repo}/issues/{issue_number}/lock"],
removeAllLabels: ["DELETE /repos/{owner}/{repo}/issues/{issue_number}/labels"],
removeAssignees: ["DELETE /repos/{owner}/{repo}/issues/{issue_number}/assignees"],
removeLabel: ["DELETE /repos/{owner}/{repo}/issues/{issue_number}/labels/{name}"],
setLabels: ["PUT /repos/{owner}/{repo}/issues/{issue_number}/labels"],
unlock: ["DELETE /repos/{owner}/{repo}/issues/{issue_number}/lock"],
update: ["PATCH /repos/{owner}/{repo}/issues/{issue_number}"],
updateComment: ["PATCH /repos/{owner}/{repo}/issues/comments/{comment_id}"],
updateLabel: ["PATCH /repos/{owner}/{repo}/labels/{name}"],
updateMilestone: ["PATCH /repos/{owner}/{repo}/milestones/{milestone_number}"]
},
licenses: {
get: ["GET /licenses/{license}"],
getAllCommonlyUsed: ["GET /licenses"],
getForRepo: ["GET /repos/{owner}/{repo}/license"]
},
markdown: {
render: ["POST /markdown"],
renderRaw: ["POST /markdown/raw", {
headers: {
"content-type": "text/plain; charset=utf-8"
}
}]
},
meta: {
get: ["GET /meta"],
getOctocat: ["GET /octocat"],
getZen: ["GET /zen"],
root: ["GET /"]
},
migrations: {
cancelImport: ["DELETE /repos/{owner}/{repo}/import"],
deleteArchiveForAuthenticatedUser: ["DELETE /user/migrations/{migration_id}/archive"],
deleteArchiveForOrg: ["DELETE /orgs/{org}/migrations/{migration_id}/archive"],
downloadArchiveForOrg: ["GET /orgs/{org}/migrations/{migration_id}/archive"],
getArchiveForAuthenticatedUser: ["GET /user/migrations/{migration_id}/archive"],
getCommitAuthors: ["GET /repos/{owner}/{repo}/import/authors"],
getImportStatus: ["GET /repos/{owner}/{repo}/import"],
getLargeFiles: ["GET /repos/{owner}/{repo}/import/large_files"],
getStatusForAuthenticatedUser: ["GET /user/migrations/{migration_id}"],
getStatusForOrg: ["GET /orgs/{org}/migrations/{migration_id}"],
listForAuthenticatedUser: ["GET /user/migrations"],
listForOrg: ["GET /orgs/{org}/migrations"],
listReposForAuthenticatedUser: ["GET /user/migrations/{migration_id}/repositories"],
listReposForOrg: ["GET /orgs/{org}/migrations/{migration_id}/repositories"],
listReposForUser: ["GET /user/migrations/{migration_id}/repositories", {}, {
renamed: ["migrations", "listReposForAuthenticatedUser"]
}],
mapCommitAuthor: ["PATCH /repos/{owner}/{repo}/import/authors/{author_id}"],
setLfsPreference: ["PATCH /repos/{owner}/{repo}/import/lfs"],
startForAuthenticatedUser: ["POST /user/migrations"],
startForOrg: ["POST /orgs/{org}/migrations"],
startImport: ["PUT /repos/{owner}/{repo}/import"],
unlockRepoForAuthenticatedUser: ["DELETE /user/migrations/{migration_id}/repos/{repo_name}/lock"],
unlockRepoForOrg: ["DELETE /orgs/{org}/migrations/{migration_id}/repos/{repo_name}/lock"],
updateImport: ["PATCH /repos/{owner}/{repo}/import"]
},
orgs: {
blockUser: ["PUT /orgs/{org}/blocks/{username}"],
cancelInvitation: ["DELETE /orgs/{org}/invitations/{invitation_id}"],
checkBlockedUser: ["GET /orgs/{org}/blocks/{username}"],
checkMembershipForUser: ["GET /orgs/{org}/members/{username}"],
checkPublicMembershipForUser: ["GET /orgs/{org}/public_members/{username}"],
convertMemberToOutsideCollaborator: ["PUT /orgs/{org}/outside_collaborators/{username}"],
createInvitation: ["POST /orgs/{org}/invitations"],
createWebhook: ["POST /orgs/{org}/hooks"],
deleteWebhook: ["DELETE /orgs/{org}/hooks/{hook_id}"],
get: ["GET /orgs/{org}"],
getMembershipForAuthenticatedUser: ["GET /user/memberships/orgs/{org}"],
getMembershipForUser: ["GET /orgs/{org}/memberships/{username}"],
getWebhook: ["GET /orgs/{org}/hooks/{hook_id}"],
getWebhookConfigForOrg: ["GET /orgs/{org}/hooks/{hook_id}/config"],
getWebhookDelivery: ["GET /orgs/{org}/hooks/{hook_id}/deliveries/{delivery_id}"],
list: ["GET /organizations"],
listAppInstallations: ["GET /orgs/{org}/installations"],
listBlockedUsers: ["GET /orgs/{org}/blocks"],
listCustomRoles: ["GET /organizations/{organization_id}/custom_roles"],
listFailedInvitations: ["GET /orgs/{org}/failed_invitations"],
listForAuthenticatedUser: ["GET /user/orgs"],
listForUser: ["GET /users/{username}/orgs"],
listInvitationTeams: ["GET /orgs/{org}/invitations/{invitation_id}/teams"],
listMembers: ["GET /orgs/{org}/members"],
listMembershipsForAuthenticatedUser: ["GET /user/memberships/orgs"],
listOutsideCollaborators: ["GET /orgs/{org}/outside_collaborators"],
listPendingInvitations: ["GET /orgs/{org}/invitations"],
listPublicMembers: ["GET /orgs/{org}/public_members"],
listWebhookDeliveries: ["GET /orgs/{org}/hooks/{hook_id}/deliveries"],
listWebhooks: ["GET /orgs/{org}/hooks"],
pingWebhook: ["POST /orgs/{org}/hooks/{hook_id}/pings"],
redeliverWebhookDelivery: ["POST /orgs/{org}/hooks/{hook_id}/deliveries/{delivery_id}/attempts"],
removeMember: ["DELETE /orgs/{org}/members/{username}"],
removeMembershipForUser: ["DELETE /orgs/{org}/memberships/{username}"],
removeOutsideCollaborator: ["DELETE /orgs/{org}/outside_collaborators/{username}"],
removePublicMembershipForAuthenticatedUser: ["DELETE /orgs/{org}/public_members/{username}"],
setMembershipForUser: ["PUT /orgs/{org}/memberships/{username}"],
setPublicMembershipForAuthenticatedUser: ["PUT /orgs/{org}/public_members/{username}"],
unblockUser: ["DELETE /orgs/{org}/blocks/{username}"],
update: ["PATCH /orgs/{org}"],
updateMembershipForAuthenticatedUser: ["PATCH /user/memberships/orgs/{org}"],
updateWebhook: ["PATCH /orgs/{org}/hooks/{hook_id}"],
updateWebhookConfigForOrg: ["PATCH /orgs/{org}/hooks/{hook_id}/config"]
},
packages: {
deletePackageForAuthenticatedUser: ["DELETE /user/packages/{package_type}/{package_name}"],
deletePackageForOrg: ["DELETE /orgs/{org}/packages/{package_type}/{package_name}"],
deletePackageForUser: ["DELETE /users/{username}/packages/{package_type}/{package_name}"],
deletePackageVersionForAuthenticatedUser: ["DELETE /user/packages/{package_type}/{package_name}/versions/{package_version_id}"],
deletePackageVersionForOrg: ["DELETE /orgs/{org}/packages/{package_type}/{package_name}/versions/{package_version_id}"],
deletePackageVersionForUser: ["DELETE /users/{username}/packages/{package_type}/{package_name}/versions/{package_version_id}"],
getAllPackageVersionsForAPackageOwnedByAnOrg: ["GET /orgs/{org}/packages/{package_type}/{package_name}/versions", {}, {
renamed: ["packages", "getAllPackageVersionsForPackageOwnedByOrg"]
}],
getAllPackageVersionsForAPackageOwnedByTheAuthenticatedUser: ["GET /user/packages/{package_type}/{package_name}/versions", {}, {
renamed: ["packages", "getAllPackageVersionsForPackageOwnedByAuthenticatedUser"]
}],
getAllPackageVersionsForPackageOwnedByAuthenticatedUser: ["GET /user/packages/{package_type}/{package_name}/versions"],
getAllPackageVersionsForPackageOwnedByOrg: ["GET /orgs/{org}/packages/{package_type}/{package_name}/versions"],
getAllPackageVersionsForPackageOwnedByUser: ["GET /users/{username}/packages/{package_type}/{package_name}/versions"],
getPackageForAuthenticatedUser: ["GET /user/packages/{package_type}/{package_name}"],
getPackageForOrganization: ["GET /orgs/{org}/packages/{package_type}/{package_name}"],
getPackageForUser: ["GET /users/{username}/packages/{package_type}/{package_name}"],
getPackageVersionForAuthenticatedUser: ["GET /user/packages/{package_type}/{package_name}/versions/{package_version_id}"],
getPackageVersionForOrganization: ["GET /orgs/{org}/packages/{package_type}/{package_name}/versions/{package_version_id}"],
getPackageVersionForUser: ["GET /users/{username}/packages/{package_type}/{package_name}/versions/{package_version_id}"],
listPackagesForAuthenticatedUser: ["GET /user/packages"],
listPackagesForOrganization: ["GET /orgs/{org}/packages"],
listPackagesForUser: ["GET /users/{username}/packages"],
restorePackageForAuthenticatedUser: ["POST /user/packages/{package_type}/{package_name}/restore{?token}"],
restorePackageForOrg: ["POST /orgs/{org}/packages/{package_type}/{package_name}/restore{?token}"],
restorePackageForUser: ["POST /users/{username}/packages/{package_type}/{package_name}/restore{?token}"],
restorePackageVersionForAuthenticatedUser: ["POST /user/packages/{package_type}/{package_name}/versions/{package_version_id}/restore"],
restorePackageVersionForOrg: ["POST /orgs/{org}/packages/{package_type}/{package_name}/versions/{package_version_id}/restore"],
restorePackageVersionForUser: ["POST /users/{username}/packages/{package_type}/{package_name}/versions/{package_version_id}/restore"]
},
projects: {
addCollaborator: ["PUT /projects/{project_id}/collaborators/{username}"],
createCard: ["POST /projects/columns/{column_id}/cards"],
createColumn: ["POST /projects/{project_id}/columns"],
createForAuthenticatedUser: ["POST /user/projects"],
createForOrg: ["POST /orgs/{org}/projects"],
createForRepo: ["POST /repos/{owner}/{repo}/projects"],
delete: ["DELETE /projects/{project_id}"],
deleteCard: ["DELETE /projects/columns/cards/{card_id}"],
deleteColumn: ["DELETE /projects/columns/{column_id}"],
get: ["GET /projects/{project_id}"],
getCard: ["GET /projects/columns/cards/{card_id}"],
getColumn: ["GET /projects/columns/{column_id}"],
getPermissionForUser: ["GET /projects/{project_id}/collaborators/{username}/permission"],
listCards: ["GET /projects/columns/{column_id}/cards"],
listCollaborators: ["GET /projects/{project_id}/collaborators"],
listColumns: ["GET /projects/{project_id}/columns"],
listForOrg: ["GET /orgs/{org}/projects"],
listForRepo: ["GET /repos/{owner}/{repo}/projects"],
listForUser: ["GET /users/{username}/projects"],
moveCard: ["POST /projects/columns/cards/{card_id}/moves"],
moveColumn: ["POST /projects/columns/{column_id}/moves"],
removeCollaborator: ["DELETE /projects/{project_id}/collaborators/{username}"],
update: ["PATCH /projects/{project_id}"],
updateCard: ["PATCH /projects/columns/cards/{card_id}"],
updateColumn: ["PATCH /projects/columns/{column_id}"]
},
pulls: {
checkIfMerged: ["GET /repos/{owner}/{repo}/pulls/{pull_number}/merge"],
create: ["POST /repos/{owner}/{repo}/pulls"],
createReplyForReviewComment: ["POST /repos/{owner}/{repo}/pulls/{pull_number}/comments/{comment_id}/replies"],
createReview: ["POST /repos/{owner}/{repo}/pulls/{pull_number}/reviews"],
createReviewComment: ["POST /repos/{owner}/{repo}/pulls/{pull_number}/comments"],
deletePendingReview: ["DELETE /repos/{owner}/{repo}/pulls/{pull_number}/reviews/{review_id}"],
deleteReviewComment: ["DELETE /repos/{owner}/{repo}/pulls/comments/{comment_id}"],
dismissReview: ["PUT /repos/{owner}/{repo}/pulls/{pull_number}/reviews/{review_id}/dismissals"],
get: ["GET /repos/{owner}/{repo}/pulls/{pull_number}"],
getReview: ["GET /repos/{owner}/{repo}/pulls/{pull_number}/reviews/{review_id}"],
getReviewComment: ["GET /repos/{owner}/{repo}/pulls/comments/{comment_id}"],
list: ["GET /repos/{owner}/{repo}/pulls"],
listCommentsForReview: ["GET /repos/{owner}/{repo}/pulls/{pull_number}/reviews/{review_id}/comments"],
listCommits: ["GET /repos/{owner}/{repo}/pulls/{pull_number}/commits"],
listFiles: ["GET /repos/{owner}/{repo}/pulls/{pull_number}/files"],
listRequestedReviewers: ["GET /repos/{owner}/{repo}/pulls/{pull_number}/requested_reviewers"],
listReviewComments: ["GET /repos/{owner}/{repo}/pulls/{pull_number}/comments"],
listReviewCommentsForRepo: ["GET /repos/{owner}/{repo}/pulls/comments"],
listReviews: ["GET /repos/{owner}/{repo}/pulls/{pull_number}/reviews"],
merge: ["PUT /repos/{owner}/{repo}/pulls/{pull_number}/merge"],
removeRequestedReviewers: ["DELETE /repos/{owner}/{repo}/pulls/{pull_number}/requested_reviewers"],
requestReviewers: ["POST /repos/{owner}/{repo}/pulls/{pull_number}/requested_reviewers"],
submitReview: ["POST /repos/{owner}/{repo}/pulls/{pull_number}/reviews/{review_id}/events"],
update: ["PATCH /repos/{owner}/{repo}/pulls/{pull_number}"],
updateBranch: ["PUT /repos/{owner}/{repo}/pulls/{pull_number}/update-branch"],
updateReview: ["PUT /repos/{owner}/{repo}/pulls/{pull_number}/reviews/{review_id}"],
updateReviewComment: ["PATCH /repos/{owner}/{repo}/pulls/comments/{comment_id}"]
},
rateLimit: {
get: ["GET /rate_limit"]
},
reactions: {
createForCommitComment: ["POST /repos/{owner}/{repo}/comments/{comment_id}/reactions"],
createForIssue: ["POST /repos/{owner}/{repo}/issues/{issue_number}/reactions"],
createForIssueComment: ["POST /repos/{owner}/{repo}/issues/comments/{comment_id}/reactions"],
createForPullRequestReviewComment: ["POST /repos/{owner}/{repo}/pulls/comments/{comment_id}/reactions"],
createForRelease: ["POST /repos/{owner}/{repo}/releases/{release_id}/reactions"],
createForTeamDiscussionCommentInOrg: ["POST /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments/{comment_number}/reactions"],
createForTeamDiscussionInOrg: ["POST /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/reactions"],
deleteForCommitComment: ["DELETE /repos/{owner}/{repo}/comments/{comment_id}/reactions/{reaction_id}"],
deleteForIssue: ["DELETE /repos/{owner}/{repo}/issues/{issue_number}/reactions/{reaction_id}"],
deleteForIssueComment: ["DELETE /repos/{owner}/{repo}/issues/comments/{comment_id}/reactions/{reaction_id}"],
deleteForPullRequestComment: ["DELETE /repos/{owner}/{repo}/pulls/comments/{comment_id}/reactions/{reaction_id}"],
deleteForRelease: ["DELETE /repos/{owner}/{repo}/releases/{release_id}/reactions/{reaction_id}"],
deleteForTeamDiscussion: ["DELETE /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/reactions/{reaction_id}"],
deleteForTeamDiscussionComment: ["DELETE /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments/{comment_number}/reactions/{reaction_id}"],
listForCommitComment: ["GET /repos/{owner}/{repo}/comments/{comment_id}/reactions"],
listForIssue: ["GET /repos/{owner}/{repo}/issues/{issue_number}/reactions"],
listForIssueComment: ["GET /repos/{owner}/{repo}/issues/comments/{comment_id}/reactions"],
listForPullRequestReviewComment: ["GET /repos/{owner}/{repo}/pulls/comments/{comment_id}/reactions"],
listForRelease: ["GET /repos/{owner}/{repo}/releases/{release_id}/reactions"],
listForTeamDiscussionCommentInOrg: ["GET /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments/{comment_number}/reactions"],
listForTeamDiscussionInOrg: ["GET /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/reactions"]
},
repos: {
acceptInvitation: ["PATCH /user/repository_invitations/{invitation_id}", {}, {
renamed: ["repos", "acceptInvitationForAuthenticatedUser"]
}],
acceptInvitationForAuthenticatedUser: ["PATCH /user/repository_invitations/{invitation_id}"],
addAppAccessRestrictions: ["POST /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/apps", {}, {
mapToData: "apps"
}],
addCollaborator: ["PUT /repos/{owner}/{repo}/collaborators/{username}"],
addStatusCheckContexts: ["POST /repos/{owner}/{repo}/branches/{branch}/protection/required_status_checks/contexts", {}, {
mapToData: "contexts"
}],
addTeamAccessRestrictions: ["POST /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/teams", {}, {
mapToData: "teams"
}],
addUserAccessRestrictions: ["POST /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/users", {}, {
mapToData: "users"
}],
checkCollaborator: ["GET /repos/{owner}/{repo}/collaborators/{username}"],
checkVulnerabilityAlerts: ["GET /repos/{owner}/{repo}/vulnerability-alerts"],
codeownersErrors: ["GET /repos/{owner}/{repo}/codeowners/errors"],
compareCommits: ["GET /repos/{owner}/{repo}/compare/{base}...{head}"],
compareCommitsWithBasehead: ["GET /repos/{owner}/{repo}/compare/{basehead}"],
createAutolink: ["POST /repos/{owner}/{repo}/autolinks"],
createCommitComment: ["POST /repos/{owner}/{repo}/commits/{commit_sha}/comments"],
createCommitSignatureProtection: ["POST /repos/{owner}/{repo}/branches/{branch}/protection/required_signatures"],
createCommitStatus: ["POST /repos/{owner}/{repo}/statuses/{sha}"],
createDeployKey: ["POST /repos/{owner}/{repo}/keys"],
createDeployment: ["POST /repos/{owner}/{repo}/deployments"],
createDeploymentStatus: ["POST /repos/{owner}/{repo}/deployments/{deployment_id}/statuses"],
createDispatchEvent: ["POST /repos/{owner}/{repo}/dispatches"],
createForAuthenticatedUser: ["POST /user/repos"],
createFork: ["POST /repos/{owner}/{repo}/forks"],
createInOrg: ["POST /orgs/{org}/repos"],
createOrUpdateEnvironment: ["PUT /repos/{owner}/{repo}/environments/{environment_name}"],
createOrUpdateFileContents: ["PUT /repos/{owner}/{repo}/contents/{path}"],
createPagesSite: ["POST /repos/{owner}/{repo}/pages"],
createRelease: ["POST /repos/{owner}/{repo}/releases"],
createTagProtection: ["POST /repos/{owner}/{repo}/tags/protection"],
createUsingTemplate: ["POST /repos/{template_owner}/{template_repo}/generate"],
createWebhook: ["POST /repos/{owner}/{repo}/hooks"],
declineInvitation: ["DELETE /user/repository_invitations/{invitation_id}", {}, {
renamed: ["repos", "declineInvitationForAuthenticatedUser"]
}],
declineInvitationForAuthenticatedUser: ["DELETE /user/repository_invitations/{invitation_id}"],
delete: ["DELETE /repos/{owner}/{repo}"],
deleteAccessRestrictions: ["DELETE /repos/{owner}/{repo}/branches/{branch}/protection/restrictions"],
deleteAdminBranchProtection: ["DELETE /repos/{owner}/{repo}/branches/{branch}/protection/enforce_admins"],
deleteAnEnvironment: ["DELETE /repos/{owner}/{repo}/environments/{environment_name}"],
deleteAutolink: ["DELETE /repos/{owner}/{repo}/autolinks/{autolink_id}"],
deleteBranchProtection: ["DELETE /repos/{owner}/{repo}/branches/{branch}/protection"],
deleteCommitComment: ["DELETE /repos/{owner}/{repo}/comments/{comment_id}"],
deleteCommitSignatureProtection: ["DELETE /repos/{owner}/{repo}/branches/{branch}/protection/required_signatures"],
deleteDeployKey: ["DELETE /repos/{owner}/{repo}/keys/{key_id}"],
deleteDeployment: ["DELETE /repos/{owner}/{repo}/deployments/{deployment_id}"],
deleteFile: ["DELETE /repos/{owner}/{repo}/contents/{path}"],
deleteInvitation: ["DELETE /repos/{owner}/{repo}/invitations/{invitation_id}"],
deletePagesSite: ["DELETE /repos/{owner}/{repo}/pages"],
deletePullRequestReviewProtection: ["DELETE /repos/{owner}/{repo}/branches/{branch}/protection/required_pull_request_reviews"],
deleteRelease: ["DELETE /repos/{owner}/{repo}/releases/{release_id}"],
deleteReleaseAsset: ["DELETE /repos/{owner}/{repo}/releases/assets/{asset_id}"],
deleteTagProtection: ["DELETE /repos/{owner}/{repo}/tags/protection/{tag_protection_id}"],
deleteWebhook: ["DELETE /repos/{owner}/{repo}/hooks/{hook_id}"],
disableAutomatedSecurityFixes: ["DELETE /repos/{owner}/{repo}/automated-security-fixes"],
disableLfsForRepo: ["DELETE /repos/{owner}/{repo}/lfs"],
disableVulnerabilityAlerts: ["DELETE /repos/{owner}/{repo}/vulnerability-alerts"],
downloadArchive: ["GET /repos/{owner}/{repo}/zipball/{ref}", {}, {
renamed: ["repos", "downloadZipballArchive"]
}],
downloadTarballArchive: ["GET /repos/{owner}/{repo}/tarball/{ref}"],
downloadZipballArchive: ["GET /repos/{owner}/{repo}/zipball/{ref}"],
enableAutomatedSecurityFixes: ["PUT /repos/{owner}/{repo}/automated-security-fixes"],
enableLfsForRepo: ["PUT /repos/{owner}/{repo}/lfs"],
enableVulnerabilityAlerts: ["PUT /repos/{owner}/{repo}/vulnerability-alerts"],
generateReleaseNotes: ["POST /repos/{owner}/{repo}/releases/generate-notes"],
get: ["GET /repos/{owner}/{repo}"],
getAccessRestrictions: ["GET /repos/{owner}/{repo}/branches/{branch}/protection/restrictions"],
getAdminBranchProtection: ["GET /repos/{owner}/{repo}/branches/{branch}/protection/enforce_admins"],
getAllEnvironments: ["GET /repos/{owner}/{repo}/environments"],
getAllStatusCheckContexts: ["GET /repos/{owner}/{repo}/branches/{branch}/protection/required_status_checks/contexts"],
getAllTopics: ["GET /repos/{owner}/{repo}/topics"],
getAppsWithAccessToProtectedBranch: ["GET /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/apps"],
getAutolink: ["GET /repos/{owner}/{repo}/autolinks/{autolink_id}"],
getBranch: ["GET /repos/{owner}/{repo}/branches/{branch}"],
getBranchProtection: ["GET /repos/{owner}/{repo}/branches/{branch}/protection"],
getClones: ["GET /repos/{owner}/{repo}/traffic/clones"],
getCodeFrequencyStats: ["GET /repos/{owner}/{repo}/stats/code_frequency"],
getCollaboratorPermissionLevel: ["GET /repos/{owner}/{repo}/collaborators/{username}/permission"],
getCombinedStatusForRef: ["GET /repos/{owner}/{repo}/commits/{ref}/status"],
getCommit: ["GET /repos/{owner}/{repo}/commits/{ref}"],
getCommitActivityStats: ["GET /repos/{owner}/{repo}/stats/commit_activity"],
getCommitComment: ["GET /repos/{owner}/{repo}/comments/{comment_id}"],
getCommitSignatureProtection: ["GET /repos/{owner}/{repo}/branches/{branch}/protection/required_signatures"],
getCommunityProfileMetrics: ["GET /repos/{owner}/{repo}/community/profile"],
getContent: ["GET /repos/{owner}/{repo}/contents/{path}"],
getContributorsStats: ["GET /repos/{owner}/{repo}/stats/contributors"],
getDeployKey: ["GET /repos/{owner}/{repo}/keys/{key_id}"],
getDeployment: ["GET /repos/{owner}/{repo}/deployments/{deployment_id}"],
getDeploymentStatus: ["GET /repos/{owner}/{repo}/deployments/{deployment_id}/statuses/{status_id}"],
getEnvironment: ["GET /repos/{owner}/{repo}/environments/{environment_name}"],
getLatestPagesBuild: ["GET /repos/{owner}/{repo}/pages/builds/latest"],
getLatestRelease: ["GET /repos/{owner}/{repo}/releases/latest"],
getPages: ["GET /repos/{owner}/{repo}/pages"],
getPagesBuild: ["GET /repos/{owner}/{repo}/pages/builds/{build_id}"],
getPagesHealthCheck: ["GET /repos/{owner}/{repo}/pages/health"],
getParticipationStats: ["GET /repos/{owner}/{repo}/stats/participation"],
getPullRequestReviewProtection: ["GET /repos/{owner}/{repo}/branches/{branch}/protection/required_pull_request_reviews"],
getPunchCardStats: ["GET /repos/{owner}/{repo}/stats/punch_card"],
getReadme: ["GET /repos/{owner}/{repo}/readme"],
getReadmeInDirectory: ["GET /repos/{owner}/{repo}/readme/{dir}"],
getRelease: ["GET /repos/{owner}/{repo}/releases/{release_id}"],
getReleaseAsset: ["GET /repos/{owner}/{repo}/releases/assets/{asset_id}"],
getReleaseByTag: ["GET /repos/{owner}/{repo}/releases/tags/{tag}"],
getStatusChecksProtection: ["GET /repos/{owner}/{repo}/branches/{branch}/protection/required_status_checks"],
getTeamsWithAccessToProtectedBranch: ["GET /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/teams"],
getTopPaths: ["GET /repos/{owner}/{repo}/traffic/popular/paths"],
getTopReferrers: ["GET /repos/{owner}/{repo}/traffic/popular/referrers"],
getUsersWithAccessToProtectedBranch: ["GET /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/users"],
getViews: ["GET /repos/{owner}/{repo}/traffic/views"],
getWebhook: ["GET /repos/{owner}/{repo}/hooks/{hook_id}"],
getWebhookConfigForRepo: ["GET /repos/{owner}/{repo}/hooks/{hook_id}/config"],
getWebhookDelivery: ["GET /repos/{owner}/{repo}/hooks/{hook_id}/deliveries/{delivery_id}"],
listAutolinks: ["GET /repos/{owner}/{repo}/autolinks"],
listBranches: ["GET /repos/{owner}/{repo}/branches"],
listBranchesForHeadCommit: ["GET /repos/{owner}/{repo}/commits/{commit_sha}/branches-where-head"],
listCollaborators: ["GET /repos/{owner}/{repo}/collaborators"],
listCommentsForCommit: ["GET /repos/{owner}/{repo}/commits/{commit_sha}/comments"],
listCommitCommentsForRepo: ["GET /repos/{owner}/{repo}/comments"],
listCommitStatusesForRef: ["GET /repos/{owner}/{repo}/commits/{ref}/statuses"],
listCommits: ["GET /repos/{owner}/{repo}/commits"],
listContributors: ["GET /repos/{owner}/{repo}/contributors"],
listDeployKeys: ["GET /repos/{owner}/{repo}/keys"],
listDeploymentStatuses: ["GET /repos/{owner}/{repo}/deployments/{deployment_id}/statuses"],
listDeployments: ["GET /repos/{owner}/{repo}/deployments"],
listForAuthenticatedUser: ["GET /user/repos"],
listForOrg: ["GET /orgs/{org}/repos"],
listForUser: ["GET /users/{username}/repos"],
listForks: ["GET /repos/{owner}/{repo}/forks"],
listInvitations: ["GET /repos/{owner}/{repo}/invitations"],
listInvitationsForAuthenticatedUser: ["GET /user/repository_invitations"],
listLanguages: ["GET /repos/{owner}/{repo}/languages"],
listPagesBuilds: ["GET /repos/{owner}/{repo}/pages/builds"],
listPublic: ["GET /repositories"],
listPullRequestsAssociatedWithCommit: ["GET /repos/{owner}/{repo}/commits/{commit_sha}/pulls"],
listReleaseAssets: ["GET /repos/{owner}/{repo}/releases/{release_id}/assets"],
listReleases: ["GET /repos/{owner}/{repo}/releases"],
listTagProtection: ["GET /repos/{owner}/{repo}/tags/protection"],
listTags: ["GET /repos/{owner}/{repo}/tags"],
listTeams: ["GET /repos/{owner}/{repo}/teams"],
listWebhookDeliveries: ["GET /repos/{owner}/{repo}/hooks/{hook_id}/deliveries"],
listWebhooks: ["GET /repos/{owner}/{repo}/hooks"],
merge: ["POST /repos/{owner}/{repo}/merges"],
mergeUpstream: ["POST /repos/{owner}/{repo}/merge-upstream"],
pingWebhook: ["POST /repos/{owner}/{repo}/hooks/{hook_id}/pings"],
redeliverWebhookDelivery: ["POST /repos/{owner}/{repo}/hooks/{hook_id}/deliveries/{delivery_id}/attempts"],
removeAppAccessRestrictions: ["DELETE /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/apps", {}, {
mapToData: "apps"
}],
removeCollaborator: ["DELETE /repos/{owner}/{repo}/collaborators/{username}"],
removeStatusCheckContexts: ["DELETE /repos/{owner}/{repo}/branches/{branch}/protection/required_status_checks/contexts", {}, {
mapToData: "contexts"
}],
removeStatusCheckProtection: ["DELETE /repos/{owner}/{repo}/branches/{branch}/protection/required_status_checks"],
removeTeamAccessRestrictions: ["DELETE /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/teams", {}, {
mapToData: "teams"
}],
removeUserAccessRestrictions: ["DELETE /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/users", {}, {
mapToData: "users"
}],
renameBranch: ["POST /repos/{owner}/{repo}/branches/{branch}/rename"],
replaceAllTopics: ["PUT /repos/{owner}/{repo}/topics"],
requestPagesBuild: ["POST /repos/{owner}/{repo}/pages/builds"],
setAdminBranchProtection: ["POST /repos/{owner}/{repo}/branches/{branch}/protection/enforce_admins"],
setAppAccessRestrictions: ["PUT /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/apps", {}, {
mapToData: "apps"
}],
setStatusCheckContexts: ["PUT /repos/{owner}/{repo}/branches/{branch}/protection/required_status_checks/contexts", {}, {
mapToData: "contexts"
}],
setTeamAccessRestrictions: ["PUT /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/teams", {}, {
mapToData: "teams"
}],
setUserAccessRestrictions: ["PUT /repos/{owner}/{repo}/branches/{branch}/protection/restrictions/users", {}, {
mapToData: "users"
}],
testPushWebhook: ["POST /repos/{owner}/{repo}/hooks/{hook_id}/tests"],
transfer: ["POST /repos/{owner}/{repo}/transfer"],
update: ["PATCH /repos/{owner}/{repo}"],
updateBranchProtection: ["PUT /repos/{owner}/{repo}/branches/{branch}/protection"],
updateCommitComment: ["PATCH /repos/{owner}/{repo}/comments/{comment_id}"],
updateInformationAboutPagesSite: ["PUT /repos/{owner}/{repo}/pages"],
updateInvitation: ["PATCH /repos/{owner}/{repo}/invitations/{invitation_id}"],
updatePullRequestReviewProtection: ["PATCH /repos/{owner}/{repo}/branches/{branch}/protection/required_pull_request_reviews"],
updateRelease: ["PATCH /repos/{owner}/{repo}/releases/{release_id}"],
updateReleaseAsset: ["PATCH /repos/{owner}/{repo}/releases/assets/{asset_id}"],
updateStatusCheckPotection: ["PATCH /repos/{owner}/{repo}/branches/{branch}/protection/required_status_checks", {}, {
renamed: ["repos", "updateStatusCheckProtection"]
}],
updateStatusCheckProtection: ["PATCH /repos/{owner}/{repo}/branches/{branch}/protection/required_status_checks"],
updateWebhook: ["PATCH /repos/{owner}/{repo}/hooks/{hook_id}"],
updateWebhookConfigForRepo: ["PATCH /repos/{owner}/{repo}/hooks/{hook_id}/config"],
uploadReleaseAsset: ["POST /repos/{owner}/{repo}/releases/{release_id}/assets{?name,label}", {
baseUrl: "https://uploads.github.com"
}]
},
search: {
code: ["GET /search/code"],
commits: ["GET /search/commits"],
issuesAndPullRequests: ["GET /search/issues"],
labels: ["GET /search/labels"],
repos: ["GET /search/repositories"],
topics: ["GET /search/topics"],
users: ["GET /search/users"]
},
secretScanning: {
getAlert: ["GET /repos/{owner}/{repo}/secret-scanning/alerts/{alert_number}"],
listAlertsForEnterprise: ["GET /enterprises/{enterprise}/secret-scanning/alerts"],
listAlertsForOrg: ["GET /orgs/{org}/secret-scanning/alerts"],
listAlertsForRepo: ["GET /repos/{owner}/{repo}/secret-scanning/alerts"],
listLocationsForAlert: ["GET /repos/{owner}/{repo}/secret-scanning/alerts/{alert_number}/locations"],
updateAlert: ["PATCH /repos/{owner}/{repo}/secret-scanning/alerts/{alert_number}"]
},
teams: {
addOrUpdateMembershipForUserInOrg: ["PUT /orgs/{org}/teams/{team_slug}/memberships/{username}"],
addOrUpdateProjectPermissionsInOrg: ["PUT /orgs/{org}/teams/{team_slug}/projects/{project_id}"],
addOrUpdateRepoPermissionsInOrg: ["PUT /orgs/{org}/teams/{team_slug}/repos/{owner}/{repo}"],
checkPermissionsForProjectInOrg: ["GET /orgs/{org}/teams/{team_slug}/projects/{project_id}"],
checkPermissionsForRepoInOrg: ["GET /orgs/{org}/teams/{team_slug}/repos/{owner}/{repo}"],
create: ["POST /orgs/{org}/teams"],
createDiscussionCommentInOrg: ["POST /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments"],
createDiscussionInOrg: ["POST /orgs/{org}/teams/{team_slug}/discussions"],
deleteDiscussionCommentInOrg: ["DELETE /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments/{comment_number}"],
deleteDiscussionInOrg: ["DELETE /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}"],
deleteInOrg: ["DELETE /orgs/{org}/teams/{team_slug}"],
getByName: ["GET /orgs/{org}/teams/{team_slug}"],
getDiscussionCommentInOrg: ["GET /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments/{comment_number}"],
getDiscussionInOrg: ["GET /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}"],
getMembershipForUserInOrg: ["GET /orgs/{org}/teams/{team_slug}/memberships/{username}"],
list: ["GET /orgs/{org}/teams"],
listChildInOrg: ["GET /orgs/{org}/teams/{team_slug}/teams"],
listDiscussionCommentsInOrg: ["GET /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments"],
listDiscussionsInOrg: ["GET /orgs/{org}/teams/{team_slug}/discussions"],
listForAuthenticatedUser: ["GET /user/teams"],
listMembersInOrg: ["GET /orgs/{org}/teams/{team_slug}/members"],
listPendingInvitationsInOrg: ["GET /orgs/{org}/teams/{team_slug}/invitations"],
listProjectsInOrg: ["GET /orgs/{org}/teams/{team_slug}/projects"],
listReposInOrg: ["GET /orgs/{org}/teams/{team_slug}/repos"],
removeMembershipForUserInOrg: ["DELETE /orgs/{org}/teams/{team_slug}/memberships/{username}"],
removeProjectInOrg: ["DELETE /orgs/{org}/teams/{team_slug}/projects/{project_id}"],
removeRepoInOrg: ["DELETE /orgs/{org}/teams/{team_slug}/repos/{owner}/{repo}"],
updateDiscussionCommentInOrg: ["PATCH /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}/comments/{comment_number}"],
updateDiscussionInOrg: ["PATCH /orgs/{org}/teams/{team_slug}/discussions/{discussion_number}"],
updateInOrg: ["PATCH /orgs/{org}/teams/{team_slug}"]
},
users: {
addEmailForAuthenticated: ["POST /user/emails", {}, {
renamed: ["users", "addEmailForAuthenticatedUser"]
}],
addEmailForAuthenticatedUser: ["POST /user/emails"],
block: ["PUT /user/blocks/{username}"],
checkBlocked: ["GET /user/blocks/{username}"],
checkFollowingForUser: ["GET /users/{username}/following/{target_user}"],
checkPersonIsFollowedByAuthenticated: ["GET /user/following/{username}"],
createGpgKeyForAuthenticated: ["POST /user/gpg_keys", {}, {
renamed: ["users", "createGpgKeyForAuthenticatedUser"]
}],
createGpgKeyForAuthenticatedUser: ["POST /user/gpg_keys"],
createPublicSshKeyForAuthenticated: ["POST /user/keys", {}, {
renamed: ["users", "createPublicSshKeyForAuthenticatedUser"]
}],
createPublicSshKeyForAuthenticatedUser: ["POST /user/keys"],
deleteEmailForAuthenticated: ["DELETE /user/emails", {}, {
renamed: ["users", "deleteEmailForAuthenticatedUser"]
}],
deleteEmailForAuthenticatedUser: ["DELETE /user/emails"],
deleteGpgKeyForAuthenticated: ["DELETE /user/gpg_keys/{gpg_key_id}", {}, {
renamed: ["users", "deleteGpgKeyForAuthenticatedUser"]
}],
deleteGpgKeyForAuthenticatedUser: ["DELETE /user/gpg_keys/{gpg_key_id}"],
deletePublicSshKeyForAuthenticated: ["DELETE /user/keys/{key_id}", {}, {
renamed: ["users", "deletePublicSshKeyForAuthenticatedUser"]
}],
deletePublicSshKeyForAuthenticatedUser: ["DELETE /user/keys/{key_id}"],
follow: ["PUT /user/following/{username}"],
getAuthenticated: ["GET /user"],
getByUsername: ["GET /users/{username}"],
getContextForUser: ["GET /users/{username}/hovercard"],
getGpgKeyForAuthenticated: ["GET /user/gpg_keys/{gpg_key_id}", {}, {
renamed: ["users", "getGpgKeyForAuthenticatedUser"]
}],
getGpgKeyForAuthenticatedUser: ["GET /user/gpg_keys/{gpg_key_id}"],
getPublicSshKeyForAuthenticated: ["GET /user/keys/{key_id}", {}, {
renamed: ["users", "getPublicSshKeyForAuthenticatedUser"]
}],
getPublicSshKeyForAuthenticatedUser: ["GET /user/keys/{key_id}"],
list: ["GET /users"],
listBlockedByAuthenticated: ["GET /user/blocks", {}, {
renamed: ["users", "listBlockedByAuthenticatedUser"]
}],
listBlockedByAuthenticatedUser: ["GET /user/blocks"],
listEmailsForAuthenticated: ["GET /user/emails", {}, {
renamed: ["users", "listEmailsForAuthenticatedUser"]
}],
listEmailsForAuthenticatedUser: ["GET /user/emails"],
listFollowedByAuthenticated: ["GET /user/following", {}, {
renamed: ["users", "listFollowedByAuthenticatedUser"]
}],
listFollowedByAuthenticatedUser: ["GET /user/following"],
listFollowersForAuthenticatedUser: ["GET /user/followers"],
listFollowersForUser: ["GET /users/{username}/followers"],
listFollowingForUser: ["GET /users/{username}/following"],
listGpgKeysForAuthenticated: ["GET /user/gpg_keys", {}, {
renamed: ["users", "listGpgKeysForAuthenticatedUser"]
}],
listGpgKeysForAuthenticatedUser: ["GET /user/gpg_keys"],
listGpgKeysForUser: ["GET /users/{username}/gpg_keys"],
listPublicEmailsForAuthenticated: ["GET /user/public_emails", {}, {
renamed: ["users", "listPublicEmailsForAuthenticatedUser"]
}],
listPublicEmailsForAuthenticatedUser: ["GET /user/public_emails"],
listPublicKeysForUser: ["GET /users/{username}/keys"],
listPublicSshKeysForAuthenticated: ["GET /user/keys", {}, {
renamed: ["users", "listPublicSshKeysForAuthenticatedUser"]
}],
listPublicSshKeysForAuthenticatedUser: ["GET /user/keys"],
setPrimaryEmailVisibilityForAuthenticated: ["PATCH /user/email/visibility", {}, {
renamed: ["users", "setPrimaryEmailVisibilityForAuthenticatedUser"]
}],
setPrimaryEmailVisibilityForAuthenticatedUser: ["PATCH /user/email/visibility"],
unblock: ["DELETE /user/blocks/{username}"],
unfollow: ["DELETE /user/following/{username}"],
updateAuthenticated: ["PATCH /user"]
}
};
const VERSION = "5.16.2";
function endpointsToMethods(octokit, endpointsMap) {
const newMethods = {};
for (const [scope, endpoints] of Object.entries(endpointsMap)) {
for (const [methodName, endpoint] of Object.entries(endpoints)) {
const [route, defaults, decorations] = endpoint;
const [method, url] = route.split(/ /);
const endpointDefaults = Object.assign({
method,
url
}, defaults);
if (!newMethods[scope]) {
newMethods[scope] = {};
}
const scopeMethods = newMethods[scope];
if (decorations) {
scopeMethods[methodName] = decorate(octokit, scope, methodName, endpointDefaults, decorations);
continue;
}
scopeMethods[methodName] = octokit.request.defaults(endpointDefaults);
}
}
return newMethods;
}
function decorate(octokit, scope, methodName, defaults, decorations) {
const requestWithDefaults = octokit.request.defaults(defaults);
/* istanbul ignore next */
function withDecorations(...args) {
// @ts-ignore https://github.com/microsoft/TypeScript/issues/25488
let options = requestWithDefaults.endpoint.merge(...args); // There are currently no other decorations than `.mapToData`
if (decorations.mapToData) {
options = Object.assign({}, options, {
data: options[decorations.mapToData],
[decorations.mapToData]: undefined
});
return requestWithDefaults(options);
}
if (decorations.renamed) {
const [newScope, newMethodName] = decorations.renamed;
octokit.log.warn(`octokit.${scope}.${methodName}() has been renamed to octokit.${newScope}.${newMethodName}()`);
}
if (decorations.deprecated) {
octokit.log.warn(decorations.deprecated);
}
if (decorations.renamedParameters) {
// @ts-ignore https://github.com/microsoft/TypeScript/issues/25488
const options = requestWithDefaults.endpoint.merge(...args);
for (const [name, alias] of Object.entries(decorations.renamedParameters)) {
if (name in options) {
octokit.log.warn(`"${name}" parameter is deprecated for "octokit.${scope}.${methodName}()". Use "${alias}" instead`);
if (!(alias in options)) {
options[alias] = options[name];
}
delete options[name];
}
}
return requestWithDefaults(options);
} // @ts-ignore https://github.com/microsoft/TypeScript/issues/25488
return requestWithDefaults(...args);
}
return Object.assign(withDecorations, requestWithDefaults);
}
function restEndpointMethods(octokit) {
const api = endpointsToMethods(octokit, Endpoints);
return {
rest: api
};
}
restEndpointMethods.VERSION = VERSION;
function legacyRestEndpointMethods(octokit) {
const api = endpointsToMethods(octokit, Endpoints);
return _objectSpread2(_objectSpread2({}, api), {}, {
rest: api
});
}
legacyRestEndpointMethods.VERSION = VERSION;
exports.legacyRestEndpointMethods = legacyRestEndpointMethods;
exports.restEndpointMethods = restEndpointMethods;
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 3708:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
function _interopDefault (ex) { return (ex && (typeof ex === 'object') && 'default' in ex) ? ex['default'] : ex; }
var deprecation = __nccwpck_require__(4150);
var once = _interopDefault(__nccwpck_require__(5560));
const logOnceCode = once(deprecation => console.warn(deprecation));
const logOnceHeaders = once(deprecation => console.warn(deprecation));
/**
* Error with extra properties to help with debugging
*/
class RequestError extends Error {
constructor(message, statusCode, options) {
super(message); // Maintains proper stack trace (only available on V8)
/* istanbul ignore next */
if (Error.captureStackTrace) {
Error.captureStackTrace(this, this.constructor);
}
this.name = "HttpError";
this.status = statusCode;
let headers;
if ("headers" in options && typeof options.headers !== "undefined") {
headers = options.headers;
}
if ("response" in options) {
this.response = options.response;
headers = options.response.headers;
} // redact request credentials without mutating original request options
const requestCopy = Object.assign({}, options.request);
if (options.request.headers.authorization) {
requestCopy.headers = Object.assign({}, options.request.headers, {
authorization: options.request.headers.authorization.replace(/ .*$/, " [REDACTED]")
});
}
requestCopy.url = requestCopy.url // client_id & client_secret can be passed as URL query parameters to increase rate limit
// see https://developer.github.com/v3/#increasing-the-unauthenticated-rate-limit-for-oauth-applications
.replace(/\bclient_secret=\w+/g, "client_secret=[REDACTED]") // OAuth tokens can be passed as URL query parameters, although it is not recommended
// see https://developer.github.com/v3/#oauth2-token-sent-in-a-header
.replace(/\baccess_token=\w+/g, "access_token=[REDACTED]");
this.request = requestCopy; // deprecations
Object.defineProperty(this, "code", {
get() {
logOnceCode(new deprecation.Deprecation("[@octokit/request-error] `error.code` is deprecated, use `error.status`."));
return statusCode;
}
});
Object.defineProperty(this, "headers", {
get() {
logOnceHeaders(new deprecation.Deprecation("[@octokit/request-error] `error.headers` is deprecated, use `error.response.headers`."));
return headers || {};
}
});
}
}
exports.RequestError = RequestError;
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 6255:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
function _interopDefault (ex) { return (ex && (typeof ex === 'object') && 'default' in ex) ? ex['default'] : ex; }
var endpoint = __nccwpck_require__(4471);
var universalUserAgent = __nccwpck_require__(3843);
var isPlainObject = __nccwpck_require__(3407);
var nodeFetch = _interopDefault(__nccwpck_require__(5250));
var requestError = __nccwpck_require__(3708);
const VERSION = "5.6.3";
function getBufferResponse(response) {
return response.arrayBuffer();
}
function fetchWrapper(requestOptions) {
const log = requestOptions.request && requestOptions.request.log ? requestOptions.request.log : console;
if (isPlainObject.isPlainObject(requestOptions.body) || Array.isArray(requestOptions.body)) {
requestOptions.body = JSON.stringify(requestOptions.body);
}
let headers = {};
let status;
let url;
const fetch = requestOptions.request && requestOptions.request.fetch || nodeFetch;
return fetch(requestOptions.url, Object.assign({
method: requestOptions.method,
body: requestOptions.body,
headers: requestOptions.headers,
redirect: requestOptions.redirect
}, // `requestOptions.request.agent` type is incompatible
// see https://github.com/octokit/types.ts/pull/264
requestOptions.request)).then(async response => {
url = response.url;
status = response.status;
for (const keyAndValue of response.headers) {
headers[keyAndValue[0]] = keyAndValue[1];
}
if ("deprecation" in headers) {
const matches = headers.link && headers.link.match(/<([^>]+)>; rel="deprecation"/);
const deprecationLink = matches && matches.pop();
log.warn(`[@octokit/request] "${requestOptions.method} ${requestOptions.url}" is deprecated. It is scheduled to be removed on ${headers.sunset}${deprecationLink ? `. See ${deprecationLink}` : ""}`);
}
if (status === 204 || status === 205) {
return;
} // GitHub API returns 200 for HEAD requests
if (requestOptions.method === "HEAD") {
if (status < 400) {
return;
}
throw new requestError.RequestError(response.statusText, status, {
response: {
url,
status,
headers,
data: undefined
},
request: requestOptions
});
}
if (status === 304) {
throw new requestError.RequestError("Not modified", status, {
response: {
url,
status,
headers,
data: await getResponseData(response)
},
request: requestOptions
});
}
if (status >= 400) {
const data = await getResponseData(response);
const error = new requestError.RequestError(toErrorMessage(data), status, {
response: {
url,
status,
headers,
data
},
request: requestOptions
});
throw error;
}
return getResponseData(response);
}).then(data => {
return {
status,
url,
headers,
data
};
}).catch(error => {
if (error instanceof requestError.RequestError) throw error;
throw new requestError.RequestError(error.message, 500, {
request: requestOptions
});
});
}
async function getResponseData(response) {
const contentType = response.headers.get("content-type");
if (/application\/json/.test(contentType)) {
return response.json();
}
if (!contentType || /^text\/|charset=utf-8$/.test(contentType)) {
return response.text();
}
return getBufferResponse(response);
}
function toErrorMessage(data) {
if (typeof data === "string") return data; // istanbul ignore else - just in case
if ("message" in data) {
if (Array.isArray(data.errors)) {
return `${data.message}: ${data.errors.map(JSON.stringify).join(", ")}`;
}
return data.message;
} // istanbul ignore next - just in case
return `Unknown error: ${JSON.stringify(data)}`;
}
function withDefaults(oldEndpoint, newDefaults) {
const endpoint = oldEndpoint.defaults(newDefaults);
const newApi = function (route, parameters) {
const endpointOptions = endpoint.merge(route, parameters);
if (!endpointOptions.request || !endpointOptions.request.hook) {
return fetchWrapper(endpoint.parse(endpointOptions));
}
const request = (route, parameters) => {
return fetchWrapper(endpoint.parse(endpoint.merge(route, parameters)));
};
Object.assign(request, {
endpoint,
defaults: withDefaults.bind(null, endpoint)
});
return endpointOptions.request.hook(request, endpointOptions);
};
return Object.assign(newApi, {
endpoint,
defaults: withDefaults.bind(null, endpoint)
});
}
const request = withDefaults(endpoint.endpoint, {
headers: {
"user-agent": `octokit-request.js/${VERSION} ${universalUserAgent.getUserAgent()}`
}
});
exports.request = request;
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 5250:
/***/ ((module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
function _interopDefault (ex) { return (ex && (typeof ex === 'object') && 'default' in ex) ? ex['default'] : ex; }
var Stream = _interopDefault(__nccwpck_require__(2203));
var http = _interopDefault(__nccwpck_require__(8611));
var Url = _interopDefault(__nccwpck_require__(7016));
var whatwgUrl = _interopDefault(__nccwpck_require__(2686));
var https = _interopDefault(__nccwpck_require__(5692));
var zlib = _interopDefault(__nccwpck_require__(3106));
// Based on https://github.com/tmpvar/jsdom/blob/aa85b2abf07766ff7bf5c1f6daafb3726f2f2db5/lib/jsdom/living/blob.js
// fix for "Readable" isn't a named export issue
const Readable = Stream.Readable;
const BUFFER = Symbol('buffer');
const TYPE = Symbol('type');
class Blob {
constructor() {
this[TYPE] = '';
const blobParts = arguments[0];
const options = arguments[1];
const buffers = [];
let size = 0;
if (blobParts) {
const a = blobParts;
const length = Number(a.length);
for (let i = 0; i < length; i++) {
const element = a[i];
let buffer;
if (element instanceof Buffer) {
buffer = element;
} else if (ArrayBuffer.isView(element)) {
buffer = Buffer.from(element.buffer, element.byteOffset, element.byteLength);
} else if (element instanceof ArrayBuffer) {
buffer = Buffer.from(element);
} else if (element instanceof Blob) {
buffer = element[BUFFER];
} else {
buffer = Buffer.from(typeof element === 'string' ? element : String(element));
}
size += buffer.length;
buffers.push(buffer);
}
}
this[BUFFER] = Buffer.concat(buffers);
let type = options && options.type !== undefined && String(options.type).toLowerCase();
if (type && !/[^\u0020-\u007E]/.test(type)) {
this[TYPE] = type;
}
}
get size() {
return this[BUFFER].length;
}
get type() {
return this[TYPE];
}
text() {
return Promise.resolve(this[BUFFER].toString());
}
arrayBuffer() {
const buf = this[BUFFER];
const ab = buf.buffer.slice(buf.byteOffset, buf.byteOffset + buf.byteLength);
return Promise.resolve(ab);
}
stream() {
const readable = new Readable();
readable._read = function () {};
readable.push(this[BUFFER]);
readable.push(null);
return readable;
}
toString() {
return '[object Blob]';
}
slice() {
const size = this.size;
const start = arguments[0];
const end = arguments[1];
let relativeStart, relativeEnd;
if (start === undefined) {
relativeStart = 0;
} else if (start < 0) {
relativeStart = Math.max(size + start, 0);
} else {
relativeStart = Math.min(start, size);
}
if (end === undefined) {
relativeEnd = size;
} else if (end < 0) {
relativeEnd = Math.max(size + end, 0);
} else {
relativeEnd = Math.min(end, size);
}
const span = Math.max(relativeEnd - relativeStart, 0);
const buffer = this[BUFFER];
const slicedBuffer = buffer.slice(relativeStart, relativeStart + span);
const blob = new Blob([], { type: arguments[2] });
blob[BUFFER] = slicedBuffer;
return blob;
}
}
Object.defineProperties(Blob.prototype, {
size: { enumerable: true },
type: { enumerable: true },
slice: { enumerable: true }
});
Object.defineProperty(Blob.prototype, Symbol.toStringTag, {
value: 'Blob',
writable: false,
enumerable: false,
configurable: true
});
/**
* fetch-error.js
*
* FetchError interface for operational errors
*/
/**
* Create FetchError instance
*
* @param String message Error message for human
* @param String type Error type for machine
* @param String systemError For Node.js system error
* @return FetchError
*/
function FetchError(message, type, systemError) {
Error.call(this, message);
this.message = message;
this.type = type;
// when err.type is `system`, err.code contains system error code
if (systemError) {
this.code = this.errno = systemError.code;
}
// hide custom error implementation details from end-users
Error.captureStackTrace(this, this.constructor);
}
FetchError.prototype = Object.create(Error.prototype);
FetchError.prototype.constructor = FetchError;
FetchError.prototype.name = 'FetchError';
let convert;
try {
convert = (__nccwpck_require__(2078).convert);
} catch (e) {}
const INTERNALS = Symbol('Body internals');
// fix an issue where "PassThrough" isn't a named export for node <10
const PassThrough = Stream.PassThrough;
/**
* Body mixin
*
* Ref: https://fetch.spec.whatwg.org/#body
*
* @param Stream body Readable stream
* @param Object opts Response options
* @return Void
*/
function Body(body) {
var _this = this;
var _ref = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : {},
_ref$size = _ref.size;
let size = _ref$size === undefined ? 0 : _ref$size;
var _ref$timeout = _ref.timeout;
let timeout = _ref$timeout === undefined ? 0 : _ref$timeout;
if (body == null) {
// body is undefined or null
body = null;
} else if (isURLSearchParams(body)) {
// body is a URLSearchParams
body = Buffer.from(body.toString());
} else if (isBlob(body)) ; else if (Buffer.isBuffer(body)) ; else if (Object.prototype.toString.call(body) === '[object ArrayBuffer]') {
// body is ArrayBuffer
body = Buffer.from(body);
} else if (ArrayBuffer.isView(body)) {
// body is ArrayBufferView
body = Buffer.from(body.buffer, body.byteOffset, body.byteLength);
} else if (body instanceof Stream) ; else {
// none of the above
// coerce to string then buffer
body = Buffer.from(String(body));
}
this[INTERNALS] = {
body,
disturbed: false,
error: null
};
this.size = size;
this.timeout = timeout;
if (body instanceof Stream) {
body.on('error', function (err) {
const error = err.name === 'AbortError' ? err : new FetchError(`Invalid response body while trying to fetch ${_this.url}: ${err.message}`, 'system', err);
_this[INTERNALS].error = error;
});
}
}
Body.prototype = {
get body() {
return this[INTERNALS].body;
},
get bodyUsed() {
return this[INTERNALS].disturbed;
},
/**
* Decode response as ArrayBuffer
*
* @return Promise
*/
arrayBuffer() {
return consumeBody.call(this).then(function (buf) {
return buf.buffer.slice(buf.byteOffset, buf.byteOffset + buf.byteLength);
});
},
/**
* Return raw response as Blob
*
* @return Promise
*/
blob() {
let ct = this.headers && this.headers.get('content-type') || '';
return consumeBody.call(this).then(function (buf) {
return Object.assign(
// Prevent copying
new Blob([], {
type: ct.toLowerCase()
}), {
[BUFFER]: buf
});
});
},
/**
* Decode response as json
*
* @return Promise
*/
json() {
var _this2 = this;
return consumeBody.call(this).then(function (buffer) {
try {
return JSON.parse(buffer.toString());
} catch (err) {
return Body.Promise.reject(new FetchError(`invalid json response body at ${_this2.url} reason: ${err.message}`, 'invalid-json'));
}
});
},
/**
* Decode response as text
*
* @return Promise
*/
text() {
return consumeBody.call(this).then(function (buffer) {
return buffer.toString();
});
},
/**
* Decode response as buffer (non-spec api)
*
* @return Promise
*/
buffer() {
return consumeBody.call(this);
},
/**
* Decode response as text, while automatically detecting the encoding and
* trying to decode to UTF-8 (non-spec api)
*
* @return Promise
*/
textConverted() {
var _this3 = this;
return consumeBody.call(this).then(function (buffer) {
return convertBody(buffer, _this3.headers);
});
}
};
// In browsers, all properties are enumerable.
Object.defineProperties(Body.prototype, {
body: { enumerable: true },
bodyUsed: { enumerable: true },
arrayBuffer: { enumerable: true },
blob: { enumerable: true },
json: { enumerable: true },
text: { enumerable: true }
});
Body.mixIn = function (proto) {
for (const name of Object.getOwnPropertyNames(Body.prototype)) {
// istanbul ignore else: future proof
if (!(name in proto)) {
const desc = Object.getOwnPropertyDescriptor(Body.prototype, name);
Object.defineProperty(proto, name, desc);
}
}
};
/**
* Consume and convert an entire Body to a Buffer.
*
* Ref: https://fetch.spec.whatwg.org/#concept-body-consume-body
*
* @return Promise
*/
function consumeBody() {
var _this4 = this;
if (this[INTERNALS].disturbed) {
return Body.Promise.reject(new TypeError(`body used already for: ${this.url}`));
}
this[INTERNALS].disturbed = true;
if (this[INTERNALS].error) {
return Body.Promise.reject(this[INTERNALS].error);
}
let body = this.body;
// body is null
if (body === null) {
return Body.Promise.resolve(Buffer.alloc(0));
}
// body is blob
if (isBlob(body)) {
body = body.stream();
}
// body is buffer
if (Buffer.isBuffer(body)) {
return Body.Promise.resolve(body);
}
// istanbul ignore if: should never happen
if (!(body instanceof Stream)) {
return Body.Promise.resolve(Buffer.alloc(0));
}
// body is stream
// get ready to actually consume the body
let accum = [];
let accumBytes = 0;
let abort = false;
return new Body.Promise(function (resolve, reject) {
let resTimeout;
// allow timeout on slow response body
if (_this4.timeout) {
resTimeout = setTimeout(function () {
abort = true;
reject(new FetchError(`Response timeout while trying to fetch ${_this4.url} (over ${_this4.timeout}ms)`, 'body-timeout'));
}, _this4.timeout);
}
// handle stream errors
body.on('error', function (err) {
if (err.name === 'AbortError') {
// if the request was aborted, reject with this Error
abort = true;
reject(err);
} else {
// other errors, such as incorrect content-encoding
reject(new FetchError(`Invalid response body while trying to fetch ${_this4.url}: ${err.message}`, 'system', err));
}
});
body.on('data', function (chunk) {
if (abort || chunk === null) {
return;
}
if (_this4.size && accumBytes + chunk.length > _this4.size) {
abort = true;
reject(new FetchError(`content size at ${_this4.url} over limit: ${_this4.size}`, 'max-size'));
return;
}
accumBytes += chunk.length;
accum.push(chunk);
});
body.on('end', function () {
if (abort) {
return;
}
clearTimeout(resTimeout);
try {
resolve(Buffer.concat(accum, accumBytes));
} catch (err) {
// handle streams that have accumulated too much data (issue #414)
reject(new FetchError(`Could not create Buffer from response body for ${_this4.url}: ${err.message}`, 'system', err));
}
});
});
}
/**
* Detect buffer encoding and convert to target encoding
* ref: http://www.w3.org/TR/2011/WD-html5-20110113/parsing.html#determining-the-character-encoding
*
* @param Buffer buffer Incoming buffer
* @param String encoding Target encoding
* @return String
*/
function convertBody(buffer, headers) {
if (typeof convert !== 'function') {
throw new Error('The package `encoding` must be installed to use the textConverted() function');
}
const ct = headers.get('content-type');
let charset = 'utf-8';
let res, str;
// header
if (ct) {
res = /charset=([^;]*)/i.exec(ct);
}
// no charset in content type, peek at response body for at most 1024 bytes
str = buffer.slice(0, 1024).toString();
// html5
if (!res && str) {
res = /<meta.+?charset=(['"])(.+?)\1/i.exec(str);
}
// html4
if (!res && str) {
res = /<meta[\s]+?http-equiv=(['"])content-type\1[\s]+?content=(['"])(.+?)\2/i.exec(str);
if (!res) {
res = /<meta[\s]+?content=(['"])(.+?)\1[\s]+?http-equiv=(['"])content-type\3/i.exec(str);
if (res) {
res.pop(); // drop last quote
}
}
if (res) {
res = /charset=(.*)/i.exec(res.pop());
}
}
// xml
if (!res && str) {
res = /<\?xml.+?encoding=(['"])(.+?)\1/i.exec(str);
}
// found charset
if (res) {
charset = res.pop();
// prevent decode issues when sites use incorrect encoding
// ref: https://hsivonen.fi/encoding-menu/
if (charset === 'gb2312' || charset === 'gbk') {
charset = 'gb18030';
}
}
// turn raw buffers into a single utf-8 buffer
return convert(buffer, 'UTF-8', charset).toString();
}
/**
* Detect a URLSearchParams object
* ref: https://github.com/bitinn/node-fetch/issues/296#issuecomment-307598143
*
* @param Object obj Object to detect by type or brand
* @return String
*/
function isURLSearchParams(obj) {
// Duck-typing as a necessary condition.
if (typeof obj !== 'object' || typeof obj.append !== 'function' || typeof obj.delete !== 'function' || typeof obj.get !== 'function' || typeof obj.getAll !== 'function' || typeof obj.has !== 'function' || typeof obj.set !== 'function') {
return false;
}
// Brand-checking and more duck-typing as optional condition.
return obj.constructor.name === 'URLSearchParams' || Object.prototype.toString.call(obj) === '[object URLSearchParams]' || typeof obj.sort === 'function';
}
/**
* Check if `obj` is a W3C `Blob` object (which `File` inherits from)
* @param {*} obj
* @return {boolean}
*/
function isBlob(obj) {
return typeof obj === 'object' && typeof obj.arrayBuffer === 'function' && typeof obj.type === 'string' && typeof obj.stream === 'function' && typeof obj.constructor === 'function' && typeof obj.constructor.name === 'string' && /^(Blob|File)$/.test(obj.constructor.name) && /^(Blob|File)$/.test(obj[Symbol.toStringTag]);
}
/**
* Clone body given Res/Req instance
*
* @param Mixed instance Response or Request instance
* @return Mixed
*/
function clone(instance) {
let p1, p2;
let body = instance.body;
// don't allow cloning a used body
if (instance.bodyUsed) {
throw new Error('cannot clone body after it is used');
}
// check that body is a stream and not form-data object
// note: we can't clone the form-data object without having it as a dependency
if (body instanceof Stream && typeof body.getBoundary !== 'function') {
// tee instance body
p1 = new PassThrough();
p2 = new PassThrough();
body.pipe(p1);
body.pipe(p2);
// set instance body to teed body and return the other teed body
instance[INTERNALS].body = p1;
body = p2;
}
return body;
}
/**
* Performs the operation "extract a `Content-Type` value from |object|" as
* specified in the specification:
* https://fetch.spec.whatwg.org/#concept-bodyinit-extract
*
* This function assumes that instance.body is present.
*
* @param Mixed instance Any options.body input
*/
function extractContentType(body) {
if (body === null) {
// body is null
return null;
} else if (typeof body === 'string') {
// body is string
return 'text/plain;charset=UTF-8';
} else if (isURLSearchParams(body)) {
// body is a URLSearchParams
return 'application/x-www-form-urlencoded;charset=UTF-8';
} else if (isBlob(body)) {
// body is blob
return body.type || null;
} else if (Buffer.isBuffer(body)) {
// body is buffer
return null;
} else if (Object.prototype.toString.call(body) === '[object ArrayBuffer]') {
// body is ArrayBuffer
return null;
} else if (ArrayBuffer.isView(body)) {
// body is ArrayBufferView
return null;
} else if (typeof body.getBoundary === 'function') {
// detect form data input from form-data module
return `multipart/form-data;boundary=${body.getBoundary()}`;
} else if (body instanceof Stream) {
// body is stream
// can't really do much about this
return null;
} else {
// Body constructor defaults other things to string
return 'text/plain;charset=UTF-8';
}
}
/**
* The Fetch Standard treats this as if "total bytes" is a property on the body.
* For us, we have to explicitly get it with a function.
*
* ref: https://fetch.spec.whatwg.org/#concept-body-total-bytes
*
* @param Body instance Instance of Body
* @return Number? Number of bytes, or null if not possible
*/
function getTotalBytes(instance) {
const body = instance.body;
if (body === null) {
// body is null
return 0;
} else if (isBlob(body)) {
return body.size;
} else if (Buffer.isBuffer(body)) {
// body is buffer
return body.length;
} else if (body && typeof body.getLengthSync === 'function') {
// detect form data input from form-data module
if (body._lengthRetrievers && body._lengthRetrievers.length == 0 || // 1.x
body.hasKnownLength && body.hasKnownLength()) {
// 2.x
return body.getLengthSync();
}
return null;
} else {
// body is stream
return null;
}
}
/**
* Write a Body to a Node.js WritableStream (e.g. http.Request) object.
*
* @param Body instance Instance of Body
* @return Void
*/
function writeToStream(dest, instance) {
const body = instance.body;
if (body === null) {
// body is null
dest.end();
} else if (isBlob(body)) {
body.stream().pipe(dest);
} else if (Buffer.isBuffer(body)) {
// body is buffer
dest.write(body);
dest.end();
} else {
// body is stream
body.pipe(dest);
}
}
// expose Promise
Body.Promise = global.Promise;
/**
* headers.js
*
* Headers class offers convenient helpers
*/
const invalidTokenRegex = /[^\^_`a-zA-Z\-0-9!#$%&'*+.|~]/;
const invalidHeaderCharRegex = /[^\t\x20-\x7e\x80-\xff]/;
function validateName(name) {
name = `${name}`;
if (invalidTokenRegex.test(name) || name === '') {
throw new TypeError(`${name} is not a legal HTTP header name`);
}
}
function validateValue(value) {
value = `${value}`;
if (invalidHeaderCharRegex.test(value)) {
throw new TypeError(`${value} is not a legal HTTP header value`);
}
}
/**
* Find the key in the map object given a header name.
*
* Returns undefined if not found.
*
* @param String name Header name
* @return String|Undefined
*/
function find(map, name) {
name = name.toLowerCase();
for (const key in map) {
if (key.toLowerCase() === name) {
return key;
}
}
return undefined;
}
const MAP = Symbol('map');
class Headers {
/**
* Headers class
*
* @param Object headers Response headers
* @return Void
*/
constructor() {
let init = arguments.length > 0 && arguments[0] !== undefined ? arguments[0] : undefined;
this[MAP] = Object.create(null);
if (init instanceof Headers) {
const rawHeaders = init.raw();
const headerNames = Object.keys(rawHeaders);
for (const headerName of headerNames) {
for (const value of rawHeaders[headerName]) {
this.append(headerName, value);
}
}
return;
}
// We don't worry about converting prop to ByteString here as append()
// will handle it.
if (init == null) ; else if (typeof init === 'object') {
const method = init[Symbol.iterator];
if (method != null) {
if (typeof method !== 'function') {
throw new TypeError('Header pairs must be iterable');
}
// sequence<sequence<ByteString>>
// Note: per spec we have to first exhaust the lists then process them
const pairs = [];
for (const pair of init) {
if (typeof pair !== 'object' || typeof pair[Symbol.iterator] !== 'function') {
throw new TypeError('Each header pair must be iterable');
}
pairs.push(Array.from(pair));
}
for (const pair of pairs) {
if (pair.length !== 2) {
throw new TypeError('Each header pair must be a name/value tuple');
}
this.append(pair[0], pair[1]);
}
} else {
// record<ByteString, ByteString>
for (const key of Object.keys(init)) {
const value = init[key];
this.append(key, value);
}
}
} else {
throw new TypeError('Provided initializer must be an object');
}
}
/**
* Return combined header value given name
*
* @param String name Header name
* @return Mixed
*/
get(name) {
name = `${name}`;
validateName(name);
const key = find(this[MAP], name);
if (key === undefined) {
return null;
}
return this[MAP][key].join(', ');
}
/**
* Iterate over all headers
*
* @param Function callback Executed for each item with parameters (value, name, thisArg)
* @param Boolean thisArg `this` context for callback function
* @return Void
*/
forEach(callback) {
let thisArg = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : undefined;
let pairs = getHeaders(this);
let i = 0;
while (i < pairs.length) {
var _pairs$i = pairs[i];
const name = _pairs$i[0],
value = _pairs$i[1];
callback.call(thisArg, value, name, this);
pairs = getHeaders(this);
i++;
}
}
/**
* Overwrite header values given name
*
* @param String name Header name
* @param String value Header value
* @return Void
*/
set(name, value) {
name = `${name}`;
value = `${value}`;
validateName(name);
validateValue(value);
const key = find(this[MAP], name);
this[MAP][key !== undefined ? key : name] = [value];
}
/**
* Append a value onto existing header
*
* @param String name Header name
* @param String value Header value
* @return Void
*/
append(name, value) {
name = `${name}`;
value = `${value}`;
validateName(name);
validateValue(value);
const key = find(this[MAP], name);
if (key !== undefined) {
this[MAP][key].push(value);
} else {
this[MAP][name] = [value];
}
}
/**
* Check for header name existence
*
* @param String name Header name
* @return Boolean
*/
has(name) {
name = `${name}`;
validateName(name);
return find(this[MAP], name) !== undefined;
}
/**
* Delete all header values given name
*
* @param String name Header name
* @return Void
*/
delete(name) {
name = `${name}`;
validateName(name);
const key = find(this[MAP], name);
if (key !== undefined) {
delete this[MAP][key];
}
}
/**
* Return raw headers (non-spec api)
*
* @return Object
*/
raw() {
return this[MAP];
}
/**
* Get an iterator on keys.
*
* @return Iterator
*/
keys() {
return createHeadersIterator(this, 'key');
}
/**
* Get an iterator on values.
*
* @return Iterator
*/
values() {
return createHeadersIterator(this, 'value');
}
/**
* Get an iterator on entries.
*
* This is the default iterator of the Headers object.
*
* @return Iterator
*/
[Symbol.iterator]() {
return createHeadersIterator(this, 'key+value');
}
}
Headers.prototype.entries = Headers.prototype[Symbol.iterator];
Object.defineProperty(Headers.prototype, Symbol.toStringTag, {
value: 'Headers',
writable: false,
enumerable: false,
configurable: true
});
Object.defineProperties(Headers.prototype, {
get: { enumerable: true },
forEach: { enumerable: true },
set: { enumerable: true },
append: { enumerable: true },
has: { enumerable: true },
delete: { enumerable: true },
keys: { enumerable: true },
values: { enumerable: true },
entries: { enumerable: true }
});
function getHeaders(headers) {
let kind = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : 'key+value';
const keys = Object.keys(headers[MAP]).sort();
return keys.map(kind === 'key' ? function (k) {
return k.toLowerCase();
} : kind === 'value' ? function (k) {
return headers[MAP][k].join(', ');
} : function (k) {
return [k.toLowerCase(), headers[MAP][k].join(', ')];
});
}
const INTERNAL = Symbol('internal');
function createHeadersIterator(target, kind) {
const iterator = Object.create(HeadersIteratorPrototype);
iterator[INTERNAL] = {
target,
kind,
index: 0
};
return iterator;
}
const HeadersIteratorPrototype = Object.setPrototypeOf({
next() {
// istanbul ignore if
if (!this || Object.getPrototypeOf(this) !== HeadersIteratorPrototype) {
throw new TypeError('Value of `this` is not a HeadersIterator');
}
var _INTERNAL = this[INTERNAL];
const target = _INTERNAL.target,
kind = _INTERNAL.kind,
index = _INTERNAL.index;
const values = getHeaders(target, kind);
const len = values.length;
if (index >= len) {
return {
value: undefined,
done: true
};
}
this[INTERNAL].index = index + 1;
return {
value: values[index],
done: false
};
}
}, Object.getPrototypeOf(Object.getPrototypeOf([][Symbol.iterator]())));
Object.defineProperty(HeadersIteratorPrototype, Symbol.toStringTag, {
value: 'HeadersIterator',
writable: false,
enumerable: false,
configurable: true
});
/**
* Export the Headers object in a form that Node.js can consume.
*
* @param Headers headers
* @return Object
*/
function exportNodeCompatibleHeaders(headers) {
const obj = Object.assign({ __proto__: null }, headers[MAP]);
// http.request() only supports string as Host header. This hack makes
// specifying custom Host header possible.
const hostHeaderKey = find(headers[MAP], 'Host');
if (hostHeaderKey !== undefined) {
obj[hostHeaderKey] = obj[hostHeaderKey][0];
}
return obj;
}
/**
* Create a Headers object from an object of headers, ignoring those that do
* not conform to HTTP grammar productions.
*
* @param Object obj Object of headers
* @return Headers
*/
function createHeadersLenient(obj) {
const headers = new Headers();
for (const name of Object.keys(obj)) {
if (invalidTokenRegex.test(name)) {
continue;
}
if (Array.isArray(obj[name])) {
for (const val of obj[name]) {
if (invalidHeaderCharRegex.test(val)) {
continue;
}
if (headers[MAP][name] === undefined) {
headers[MAP][name] = [val];
} else {
headers[MAP][name].push(val);
}
}
} else if (!invalidHeaderCharRegex.test(obj[name])) {
headers[MAP][name] = [obj[name]];
}
}
return headers;
}
const INTERNALS$1 = Symbol('Response internals');
// fix an issue where "STATUS_CODES" aren't a named export for node <10
const STATUS_CODES = http.STATUS_CODES;
/**
* Response class
*
* @param Stream body Readable stream
* @param Object opts Response options
* @return Void
*/
class Response {
constructor() {
let body = arguments.length > 0 && arguments[0] !== undefined ? arguments[0] : null;
let opts = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : {};
Body.call(this, body, opts);
const status = opts.status || 200;
const headers = new Headers(opts.headers);
if (body != null && !headers.has('Content-Type')) {
const contentType = extractContentType(body);
if (contentType) {
headers.append('Content-Type', contentType);
}
}
this[INTERNALS$1] = {
url: opts.url,
status,
statusText: opts.statusText || STATUS_CODES[status],
headers,
counter: opts.counter
};
}
get url() {
return this[INTERNALS$1].url || '';
}
get status() {
return this[INTERNALS$1].status;
}
/**
* Convenience property representing if the request ended normally
*/
get ok() {
return this[INTERNALS$1].status >= 200 && this[INTERNALS$1].status < 300;
}
get redirected() {
return this[INTERNALS$1].counter > 0;
}
get statusText() {
return this[INTERNALS$1].statusText;
}
get headers() {
return this[INTERNALS$1].headers;
}
/**
* Clone this response
*
* @return Response
*/
clone() {
return new Response(clone(this), {
url: this.url,
status: this.status,
statusText: this.statusText,
headers: this.headers,
ok: this.ok,
redirected: this.redirected
});
}
}
Body.mixIn(Response.prototype);
Object.defineProperties(Response.prototype, {
url: { enumerable: true },
status: { enumerable: true },
ok: { enumerable: true },
redirected: { enumerable: true },
statusText: { enumerable: true },
headers: { enumerable: true },
clone: { enumerable: true }
});
Object.defineProperty(Response.prototype, Symbol.toStringTag, {
value: 'Response',
writable: false,
enumerable: false,
configurable: true
});
const INTERNALS$2 = Symbol('Request internals');
const URL = Url.URL || whatwgUrl.URL;
// fix an issue where "format", "parse" aren't a named export for node <10
const parse_url = Url.parse;
const format_url = Url.format;
/**
* Wrapper around `new URL` to handle arbitrary URLs
*
* @param {string} urlStr
* @return {void}
*/
function parseURL(urlStr) {
/*
Check whether the URL is absolute or not
Scheme: https://tools.ietf.org/html/rfc3986#section-3.1
Absolute URL: https://tools.ietf.org/html/rfc3986#section-4.3
*/
if (/^[a-zA-Z][a-zA-Z\d+\-.]*:/.exec(urlStr)) {
urlStr = new URL(urlStr).toString();
}
// Fallback to old implementation for arbitrary URLs
return parse_url(urlStr);
}
const streamDestructionSupported = 'destroy' in Stream.Readable.prototype;
/**
* Check if a value is an instance of Request.
*
* @param Mixed input
* @return Boolean
*/
function isRequest(input) {
return typeof input === 'object' && typeof input[INTERNALS$2] === 'object';
}
function isAbortSignal(signal) {
const proto = signal && typeof signal === 'object' && Object.getPrototypeOf(signal);
return !!(proto && proto.constructor.name === 'AbortSignal');
}
/**
* Request class
*
* @param Mixed input Url or Request instance
* @param Object init Custom options
* @return Void
*/
class Request {
constructor(input) {
let init = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : {};
let parsedURL;
// normalize input
if (!isRequest(input)) {
if (input && input.href) {
// in order to support Node.js' Url objects; though WHATWG's URL objects
// will fall into this branch also (since their `toString()` will return
// `href` property anyway)
parsedURL = parseURL(input.href);
} else {
// coerce input to a string before attempting to parse
parsedURL = parseURL(`${input}`);
}
input = {};
} else {
parsedURL = parseURL(input.url);
}
let method = init.method || input.method || 'GET';
method = method.toUpperCase();
if ((init.body != null || isRequest(input) && input.body !== null) && (method === 'GET' || method === 'HEAD')) {
throw new TypeError('Request with GET/HEAD method cannot have body');
}
let inputBody = init.body != null ? init.body : isRequest(input) && input.body !== null ? clone(input) : null;
Body.call(this, inputBody, {
timeout: init.timeout || input.timeout || 0,
size: init.size || input.size || 0
});
const headers = new Headers(init.headers || input.headers || {});
if (inputBody != null && !headers.has('Content-Type')) {
const contentType = extractContentType(inputBody);
if (contentType) {
headers.append('Content-Type', contentType);
}
}
let signal = isRequest(input) ? input.signal : null;
if ('signal' in init) signal = init.signal;
if (signal != null && !isAbortSignal(signal)) {
throw new TypeError('Expected signal to be an instanceof AbortSignal');
}
this[INTERNALS$2] = {
method,
redirect: init.redirect || input.redirect || 'follow',
headers,
parsedURL,
signal
};
// node-fetch-only options
this.follow = init.follow !== undefined ? init.follow : input.follow !== undefined ? input.follow : 20;
this.compress = init.compress !== undefined ? init.compress : input.compress !== undefined ? input.compress : true;
this.counter = init.counter || input.counter || 0;
this.agent = init.agent || input.agent;
}
get method() {
return this[INTERNALS$2].method;
}
get url() {
return format_url(this[INTERNALS$2].parsedURL);
}
get headers() {
return this[INTERNALS$2].headers;
}
get redirect() {
return this[INTERNALS$2].redirect;
}
get signal() {
return this[INTERNALS$2].signal;
}
/**
* Clone this request
*
* @return Request
*/
clone() {
return new Request(this);
}
}
Body.mixIn(Request.prototype);
Object.defineProperty(Request.prototype, Symbol.toStringTag, {
value: 'Request',
writable: false,
enumerable: false,
configurable: true
});
Object.defineProperties(Request.prototype, {
method: { enumerable: true },
url: { enumerable: true },
headers: { enumerable: true },
redirect: { enumerable: true },
clone: { enumerable: true },
signal: { enumerable: true }
});
/**
* Convert a Request to Node.js http request options.
*
* @param Request A Request instance
* @return Object The options object to be passed to http.request
*/
function getNodeRequestOptions(request) {
const parsedURL = request[INTERNALS$2].parsedURL;
const headers = new Headers(request[INTERNALS$2].headers);
// fetch step 1.3
if (!headers.has('Accept')) {
headers.set('Accept', '*/*');
}
// Basic fetch
if (!parsedURL.protocol || !parsedURL.hostname) {
throw new TypeError('Only absolute URLs are supported');
}
if (!/^https?:$/.test(parsedURL.protocol)) {
throw new TypeError('Only HTTP(S) protocols are supported');
}
if (request.signal && request.body instanceof Stream.Readable && !streamDestructionSupported) {
throw new Error('Cancellation of streamed requests with AbortSignal is not supported in node < 8');
}
// HTTP-network-or-cache fetch steps 2.4-2.7
let contentLengthValue = null;
if (request.body == null && /^(POST|PUT)$/i.test(request.method)) {
contentLengthValue = '0';
}
if (request.body != null) {
const totalBytes = getTotalBytes(request);
if (typeof totalBytes === 'number') {
contentLengthValue = String(totalBytes);
}
}
if (contentLengthValue) {
headers.set('Content-Length', contentLengthValue);
}
// HTTP-network-or-cache fetch step 2.11
if (!headers.has('User-Agent')) {
headers.set('User-Agent', 'node-fetch/1.0 (+https://github.com/bitinn/node-fetch)');
}
// HTTP-network-or-cache fetch step 2.15
if (request.compress && !headers.has('Accept-Encoding')) {
headers.set('Accept-Encoding', 'gzip,deflate');
}
let agent = request.agent;
if (typeof agent === 'function') {
agent = agent(parsedURL);
}
if (!headers.has('Connection') && !agent) {
headers.set('Connection', 'close');
}
// HTTP-network fetch step 4.2
// chunked encoding is handled by Node.js
return Object.assign({}, parsedURL, {
method: request.method,
headers: exportNodeCompatibleHeaders(headers),
agent
});
}
/**
* abort-error.js
*
* AbortError interface for cancelled requests
*/
/**
* Create AbortError instance
*
* @param String message Error message for human
* @return AbortError
*/
function AbortError(message) {
Error.call(this, message);
this.type = 'aborted';
this.message = message;
// hide custom error implementation details from end-users
Error.captureStackTrace(this, this.constructor);
}
AbortError.prototype = Object.create(Error.prototype);
AbortError.prototype.constructor = AbortError;
AbortError.prototype.name = 'AbortError';
const URL$1 = Url.URL || whatwgUrl.URL;
// fix an issue where "PassThrough", "resolve" aren't a named export for node <10
const PassThrough$1 = Stream.PassThrough;
const isDomainOrSubdomain = function isDomainOrSubdomain(destination, original) {
const orig = new URL$1(original).hostname;
const dest = new URL$1(destination).hostname;
return orig === dest || orig[orig.length - dest.length - 1] === '.' && orig.endsWith(dest);
};
/**
* isSameProtocol reports whether the two provided URLs use the same protocol.
*
* Both domains must already be in canonical form.
* @param {string|URL} original
* @param {string|URL} destination
*/
const isSameProtocol = function isSameProtocol(destination, original) {
const orig = new URL$1(original).protocol;
const dest = new URL$1(destination).protocol;
return orig === dest;
};
/**
* Fetch function
*
* @param Mixed url Absolute url or Request instance
* @param Object opts Fetch options
* @return Promise
*/
function fetch(url, opts) {
// allow custom promise
if (!fetch.Promise) {
throw new Error('native promise missing, set fetch.Promise to your favorite alternative');
}
Body.Promise = fetch.Promise;
// wrap http.request into fetch
return new fetch.Promise(function (resolve, reject) {
// build request object
const request = new Request(url, opts);
const options = getNodeRequestOptions(request);
const send = (options.protocol === 'https:' ? https : http).request;
const signal = request.signal;
let response = null;
const abort = function abort() {
let error = new AbortError('The user aborted a request.');
reject(error);
if (request.body && request.body instanceof Stream.Readable) {
destroyStream(request.body, error);
}
if (!response || !response.body) return;
response.body.emit('error', error);
};
if (signal && signal.aborted) {
abort();
return;
}
const abortAndFinalize = function abortAndFinalize() {
abort();
finalize();
};
// send request
const req = send(options);
let reqTimeout;
if (signal) {
signal.addEventListener('abort', abortAndFinalize);
}
function finalize() {
req.abort();
if (signal) signal.removeEventListener('abort', abortAndFinalize);
clearTimeout(reqTimeout);
}
if (request.timeout) {
req.once('socket', function (socket) {
reqTimeout = setTimeout(function () {
reject(new FetchError(`network timeout at: ${request.url}`, 'request-timeout'));
finalize();
}, request.timeout);
});
}
req.on('error', function (err) {
reject(new FetchError(`request to ${request.url} failed, reason: ${err.message}`, 'system', err));
if (response && response.body) {
destroyStream(response.body, err);
}
finalize();
});
fixResponseChunkedTransferBadEnding(req, function (err) {
if (signal && signal.aborted) {
return;
}
if (response && response.body) {
destroyStream(response.body, err);
}
});
/* c8 ignore next 18 */
if (parseInt(process.version.substring(1)) < 14) {
// Before Node.js 14, pipeline() does not fully support async iterators and does not always
// properly handle when the socket close/end events are out of order.
req.on('socket', function (s) {
s.addListener('close', function (hadError) {
// if a data listener is still present we didn't end cleanly
const hasDataListener = s.listenerCount('data') > 0;
// if end happened before close but the socket didn't emit an error, do it now
if (response && hasDataListener && !hadError && !(signal && signal.aborted)) {
const err = new Error('Premature close');
err.code = 'ERR_STREAM_PREMATURE_CLOSE';
response.body.emit('error', err);
}
});
});
}
req.on('response', function (res) {
clearTimeout(reqTimeout);
const headers = createHeadersLenient(res.headers);
// HTTP fetch step 5
if (fetch.isRedirect(res.statusCode)) {
// HTTP fetch step 5.2
const location = headers.get('Location');
// HTTP fetch step 5.3
let locationURL = null;
try {
locationURL = location === null ? null : new URL$1(location, request.url).toString();
} catch (err) {
// error here can only be invalid URL in Location: header
// do not throw when options.redirect == manual
// let the user extract the errorneous redirect URL
if (request.redirect !== 'manual') {
reject(new FetchError(`uri requested responds with an invalid redirect URL: ${location}`, 'invalid-redirect'));
finalize();
return;
}
}
// HTTP fetch step 5.5
switch (request.redirect) {
case 'error':
reject(new FetchError(`uri requested responds with a redirect, redirect mode is set to error: ${request.url}`, 'no-redirect'));
finalize();
return;
case 'manual':
// node-fetch-specific step: make manual redirect a bit easier to use by setting the Location header value to the resolved URL.
if (locationURL !== null) {
// handle corrupted header
try {
headers.set('Location', locationURL);
} catch (err) {
// istanbul ignore next: nodejs server prevent invalid response headers, we can't test this through normal request
reject(err);
}
}
break;
case 'follow':
// HTTP-redirect fetch step 2
if (locationURL === null) {
break;
}
// HTTP-redirect fetch step 5
if (request.counter >= request.follow) {
reject(new FetchError(`maximum redirect reached at: ${request.url}`, 'max-redirect'));
finalize();
return;
}
// HTTP-redirect fetch step 6 (counter increment)
// Create a new Request object.
const requestOpts = {
headers: new Headers(request.headers),
follow: request.follow,
counter: request.counter + 1,
agent: request.agent,
compress: request.compress,
method: request.method,
body: request.body,
signal: request.signal,
timeout: request.timeout,
size: request.size
};
if (!isDomainOrSubdomain(request.url, locationURL) || !isSameProtocol(request.url, locationURL)) {
for (const name of ['authorization', 'www-authenticate', 'cookie', 'cookie2']) {
requestOpts.headers.delete(name);
}
}
// HTTP-redirect fetch step 9
if (res.statusCode !== 303 && request.body && getTotalBytes(request) === null) {
reject(new FetchError('Cannot follow redirect with body being a readable stream', 'unsupported-redirect'));
finalize();
return;
}
// HTTP-redirect fetch step 11
if (res.statusCode === 303 || (res.statusCode === 301 || res.statusCode === 302) && request.method === 'POST') {
requestOpts.method = 'GET';
requestOpts.body = undefined;
requestOpts.headers.delete('content-length');
}
// HTTP-redirect fetch step 15
resolve(fetch(new Request(locationURL, requestOpts)));
finalize();
return;
}
}
// prepare response
res.once('end', function () {
if (signal) signal.removeEventListener('abort', abortAndFinalize);
});
let body = res.pipe(new PassThrough$1());
const response_options = {
url: request.url,
status: res.statusCode,
statusText: res.statusMessage,
headers: headers,
size: request.size,
timeout: request.timeout,
counter: request.counter
};
// HTTP-network fetch step 12.1.1.3
const codings = headers.get('Content-Encoding');
// HTTP-network fetch step 12.1.1.4: handle content codings
// in following scenarios we ignore compression support
// 1. compression support is disabled
// 2. HEAD request
// 3. no Content-Encoding header
// 4. no content response (204)
// 5. content not modified response (304)
if (!request.compress || request.method === 'HEAD' || codings === null || res.statusCode === 204 || res.statusCode === 304) {
response = new Response(body, response_options);
resolve(response);
return;
}
// For Node v6+
// Be less strict when decoding compressed responses, since sometimes
// servers send slightly invalid responses that are still accepted
// by common browsers.
// Always using Z_SYNC_FLUSH is what cURL does.
const zlibOptions = {
flush: zlib.Z_SYNC_FLUSH,
finishFlush: zlib.Z_SYNC_FLUSH
};
// for gzip
if (codings == 'gzip' || codings == 'x-gzip') {
body = body.pipe(zlib.createGunzip(zlibOptions));
response = new Response(body, response_options);
resolve(response);
return;
}
// for deflate
if (codings == 'deflate' || codings == 'x-deflate') {
// handle the infamous raw deflate response from old servers
// a hack for old IIS and Apache servers
const raw = res.pipe(new PassThrough$1());
raw.once('data', function (chunk) {
// see http://stackoverflow.com/questions/37519828
if ((chunk[0] & 0x0F) === 0x08) {
body = body.pipe(zlib.createInflate());
} else {
body = body.pipe(zlib.createInflateRaw());
}
response = new Response(body, response_options);
resolve(response);
});
raw.on('end', function () {
// some old IIS servers return zero-length OK deflate responses, so 'data' is never emitted.
if (!response) {
response = new Response(body, response_options);
resolve(response);
}
});
return;
}
// for br
if (codings == 'br' && typeof zlib.createBrotliDecompress === 'function') {
body = body.pipe(zlib.createBrotliDecompress());
response = new Response(body, response_options);
resolve(response);
return;
}
// otherwise, use response as-is
response = new Response(body, response_options);
resolve(response);
});
writeToStream(req, request);
});
}
function fixResponseChunkedTransferBadEnding(request, errorCallback) {
let socket;
request.on('socket', function (s) {
socket = s;
});
request.on('response', function (response) {
const headers = response.headers;
if (headers['transfer-encoding'] === 'chunked' && !headers['content-length']) {
response.once('close', function (hadError) {
// if a data listener is still present we didn't end cleanly
const hasDataListener = socket.listenerCount('data') > 0;
if (hasDataListener && !hadError) {
const err = new Error('Premature close');
err.code = 'ERR_STREAM_PREMATURE_CLOSE';
errorCallback(err);
}
});
}
});
}
function destroyStream(stream, err) {
if (stream.destroy) {
stream.destroy(err);
} else {
// node < 8
stream.emit('error', err);
stream.end();
}
}
/**
* Redirect code matching
*
* @param Number code Status code
* @return Boolean
*/
fetch.isRedirect = function (code) {
return code === 301 || code === 302 || code === 303 || code === 307 || code === 308;
};
// expose Promise
fetch.Promise = global.Promise;
module.exports = exports = fetch;
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports["default"] = exports;
exports.Headers = Headers;
exports.Request = Request;
exports.Response = Response;
exports.FetchError = FetchError;
/***/ }),
/***/ 5772:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
var core = __nccwpck_require__(1897);
var pluginRequestLog = __nccwpck_require__(6966);
var pluginPaginateRest = __nccwpck_require__(8082);
var pluginRestEndpointMethods = __nccwpck_require__(4935);
const VERSION = "18.12.0";
const Octokit = core.Octokit.plugin(pluginRequestLog.requestLog, pluginRestEndpointMethods.legacyRestEndpointMethods, pluginPaginateRest.paginateRest).defaults({
userAgent: `octokit-rest.js/${VERSION}`
});
exports.Octokit = Octokit;
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 9380:
/***/ ((module) => {
"use strict";
module.exports = balanced;
function balanced(a, b, str) {
if (a instanceof RegExp) a = maybeMatch(a, str);
if (b instanceof RegExp) b = maybeMatch(b, str);
var r = range(a, b, str);
return r && {
start: r[0],
end: r[1],
pre: str.slice(0, r[0]),
body: str.slice(r[0] + a.length, r[1]),
post: str.slice(r[1] + b.length)
};
}
function maybeMatch(reg, str) {
var m = str.match(reg);
return m ? m[0] : null;
}
balanced.range = range;
function range(a, b, str) {
var begs, beg, left, right, result;
var ai = str.indexOf(a);
var bi = str.indexOf(b, ai + 1);
var i = ai;
if (ai >= 0 && bi > 0) {
if(a===b) {
return [ai, bi];
}
begs = [];
left = str.length;
while (i >= 0 && !result) {
if (i == ai) {
begs.push(i);
ai = str.indexOf(a, i + 1);
} else if (begs.length == 1) {
result = [ begs.pop(), bi ];
} else {
beg = begs.pop();
if (beg < left) {
left = beg;
right = bi;
}
bi = str.indexOf(b, i + 1);
}
i = ai < bi && ai >= 0 ? ai : bi;
}
if (begs.length) {
result = [ left, right ];
}
}
return result;
}
/***/ }),
/***/ 2732:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
var register = __nccwpck_require__(1063);
var addHook = __nccwpck_require__(2027);
var removeHook = __nccwpck_require__(9934);
// bind with array of arguments: https://stackoverflow.com/a/21792913
var bind = Function.bind;
var bindable = bind.bind(bind);
function bindApi(hook, state, name) {
var removeHookRef = bindable(removeHook, null).apply(
null,
name ? [state, name] : [state]
);
hook.api = { remove: removeHookRef };
hook.remove = removeHookRef;
["before", "error", "after", "wrap"].forEach(function (kind) {
var args = name ? [state, kind, name] : [state, kind];
hook[kind] = hook.api[kind] = bindable(addHook, null).apply(null, args);
});
}
function HookSingular() {
var singularHookName = "h";
var singularHookState = {
registry: {},
};
var singularHook = register.bind(null, singularHookState, singularHookName);
bindApi(singularHook, singularHookState, singularHookName);
return singularHook;
}
function HookCollection() {
var state = {
registry: {},
};
var hook = register.bind(null, state);
bindApi(hook, state);
return hook;
}
var collectionHookDeprecationMessageDisplayed = false;
function Hook() {
if (!collectionHookDeprecationMessageDisplayed) {
console.warn(
'[before-after-hook]: "Hook()" repurposing warning, use "Hook.Collection()". Read more: https://git.io/upgrade-before-after-hook-to-1.4'
);
collectionHookDeprecationMessageDisplayed = true;
}
return HookCollection();
}
Hook.Singular = HookSingular.bind();
Hook.Collection = HookCollection.bind();
module.exports = Hook;
// expose constructors as a named property for TypeScript
module.exports.Hook = Hook;
module.exports.Singular = Hook.Singular;
module.exports.Collection = Hook.Collection;
/***/ }),
/***/ 2027:
/***/ ((module) => {
module.exports = addHook;
function addHook(state, kind, name, hook) {
var orig = hook;
if (!state.registry[name]) {
state.registry[name] = [];
}
if (kind === "before") {
hook = function (method, options) {
return Promise.resolve()
.then(orig.bind(null, options))
.then(method.bind(null, options));
};
}
if (kind === "after") {
hook = function (method, options) {
var result;
return Promise.resolve()
.then(method.bind(null, options))
.then(function (result_) {
result = result_;
return orig(result, options);
})
.then(function () {
return result;
});
};
}
if (kind === "error") {
hook = function (method, options) {
return Promise.resolve()
.then(method.bind(null, options))
.catch(function (error) {
return orig(error, options);
});
};
}
state.registry[name].push({
hook: hook,
orig: orig,
});
}
/***/ }),
/***/ 1063:
/***/ ((module) => {
module.exports = register;
function register(state, name, method, options) {
if (typeof method !== "function") {
throw new Error("method for before hook must be a function");
}
if (!options) {
options = {};
}
if (Array.isArray(name)) {
return name.reverse().reduce(function (callback, name) {
return register.bind(null, state, name, callback, options);
}, method)();
}
return Promise.resolve().then(function () {
if (!state.registry[name]) {
return method(options);
}
return state.registry[name].reduce(function (method, registered) {
return registered.hook.bind(null, method, options);
}, method)();
});
}
/***/ }),
/***/ 9934:
/***/ ((module) => {
module.exports = removeHook;
function removeHook(state, name, method) {
if (!state.registry[name]) {
return;
}
var index = state.registry[name]
.map(function (registered) {
return registered.orig;
})
.indexOf(method);
if (index === -1) {
return;
}
state.registry[name].splice(index, 1);
}
/***/ }),
/***/ 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.abs(numeric(n[2]))
: 1;
var test = lte;
var reverse = y < x;
if (reverse) {
incr *= -1;
test = gte;
}
var pad = n.some(isPadded);
N = [];
for (var i = x; test(i, y); i += incr) {
var c;
if (isAlphaSequence) {
c = String.fromCharCode(i);
if (c === '\\')
c = '';
} else {
c = String(i);
if (pad) {
var need = width - c.length;
if (need > 0) {
var z = new Array(need + 1).join('0');
if (i < 0)
c = '-' + z + c.slice(1);
else
c = z + c;
}
}
}
N.push(c);
}
} else {
N = concatMap(n, function(el) { return expand(el, false) });
}
for (var j = 0; j < N.length; j++) {
for (var k = 0; k < post.length; k++) {
var expansion = pre + N[j] + post[k];
if (!isTop || isSequence || expansion)
expansions.push(expansion);
}
}
return expansions;
}
/***/ }),
/***/ 4060:
/***/ ((module) => {
"use strict";
const callsites = () => {
const _prepareStackTrace = Error.prepareStackTrace;
Error.prepareStackTrace = (_, stack) => stack;
const stack = new Error().stack.slice(1);
Error.prepareStackTrace = _prepareStackTrace;
return stack;
};
module.exports = callsites;
// TODO: Remove this for the next major release
module.exports["default"] = callsites;
/***/ }),
/***/ 5694:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
const hasOwnProperty = __nccwpck_require__(1337)
const {isObject, isArray} = __nccwpck_require__(5481)
const PREFIX_BEFORE = 'before'
const PREFIX_AFTER_PROP = 'after-prop'
const PREFIX_AFTER_COLON = 'after-colon'
const PREFIX_AFTER_VALUE = 'after-value'
const PREFIX_AFTER_COMMA = 'after-comma'
const SYMBOL_PREFIXES = [
PREFIX_BEFORE,
PREFIX_AFTER_PROP,
PREFIX_AFTER_COLON,
PREFIX_AFTER_VALUE,
PREFIX_AFTER_COMMA
]
const COLON = ':'
const UNDEFINED = undefined
const symbol = (prefix, key) => Symbol.for(prefix + COLON + key)
const assign_comments = (
target, source, target_key, source_key, prefix, remove_source
) => {
const source_prop = symbol(prefix, source_key)
if (!hasOwnProperty(source, source_prop)) {
return
}
const target_prop = target_key === source_key
? source_prop
: symbol(prefix, target_key)
target[target_prop] = source[source_prop]
if (remove_source) {
delete source[source_prop]
}
}
// Assign keys and comments
const assign = (target, source, keys) => {
keys.forEach(key => {
if (!hasOwnProperty(source, key)) {
return
}
target[key] = source[key]
SYMBOL_PREFIXES.forEach(prefix => {
assign_comments(target, source, key, key, prefix)
})
})
return target
}
const swap_comments = (array, from, to) => {
if (from === to) {
return
}
SYMBOL_PREFIXES.forEach(prefix => {
const target_prop = symbol(prefix, to)
if (!hasOwnProperty(array, target_prop)) {
assign_comments(array, array, to, from, prefix)
return
}
const comments = array[target_prop]
assign_comments(array, array, to, from, prefix)
array[symbol(prefix, from)] = comments
})
}
const reverse_comments = array => {
const {length} = array
let i = 0
const max = length / 2
for (; i < max; i ++) {
swap_comments(array, i, length - i - 1)
}
}
const move_comment = (target, source, i, offset, remove) => {
SYMBOL_PREFIXES.forEach(prefix => {
assign_comments(target, source, i + offset, i, prefix, remove)
})
}
const move_comments = (
// `Array` target array
target,
// `Array` source array
source,
// `number` start index
start,
// `number` number of indexes to move
count,
// `number` offset to move
offset,
// `boolean` whether should remove the comments from source
remove
) => {
if (offset > 0) {
let i = count
// | count | offset |
// source: -------------
// target: -------------
// | remove |
// => remove === offset
// From [count - 1, 0]
while (i -- > 0) {
move_comment(target, source, start + i, offset, remove && i < offset)
}
return
}
let i = 0
const min_remove = count + offset
// | remove | count |
// -------------
// -------------
// | offset |
// From [0, count - 1]
while (i < count) {
const ii = i ++
move_comment(target, source, start + ii, offset, remove && i >= min_remove)
}
}
class CommentArray extends Array {
// - deleteCount + items.length
// We should avoid `splice(begin, deleteCount, ...items)`,
// because `splice(0, undefined)` is not equivalent to `splice(0)`,
// as well as:
// - slice
splice (...args) {
const {length} = this
const ret = super.splice(...args)
// #16
// If no element removed, we might still need to move comments,
// because splice could add new items
// if (!ret.length) {
// return ret
// }
// JavaScript syntax is silly
// eslint-disable-next-line prefer-const
let [begin, deleteCount, ...items] = args
if (begin < 0) {
begin += length
}
if (arguments.length === 1) {
deleteCount = length - begin
} else {
deleteCount = Math.min(length - begin, deleteCount)
}
const {
length: item_length
} = items
// itemsToDelete: -
// itemsToAdd: +
// | dc | count |
// =======-------------============
// =======++++++============
// | il |
const offset = item_length - deleteCount
const start = begin + deleteCount
const count = length - start
move_comments(this, this, start, count, offset, true)
return ret
}
slice (...args) {
const {length} = this
const array = super.slice(...args)
if (!array.length) {
return new CommentArray()
}
let [begin, before] = args
// Ref:
// https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/Array/slice
if (before === UNDEFINED) {
before = length
} else if (before < 0) {
before += length
}
if (begin < 0) {
begin += length
} else if (begin === UNDEFINED) {
begin = 0
}
move_comments(array, this, begin, before - begin, - begin)
return array
}
unshift (...items) {
const {length} = this
const ret = super.unshift(...items)
const {
length: items_length
} = items
if (items_length > 0) {
move_comments(this, this, 0, length, items_length, true)
}
return ret
}
shift () {
const ret = super.shift()
const {length} = this
move_comments(this, this, 1, length, - 1, true)
return ret
}
reverse () {
super.reverse()
reverse_comments(this)
return this
}
pop () {
const ret = super.pop()
// Removes comments
const {length} = this
SYMBOL_PREFIXES.forEach(prefix => {
const prop = symbol(prefix, length)
delete this[prop]
})
return ret
}
concat (...items) {
let {length} = this
const ret = super.concat(...items)
if (!items.length) {
return ret
}
items.forEach(item => {
const prev = length
length += isArray(item)
? item.length
: 1
if (!(item instanceof CommentArray)) {
return
}
move_comments(ret, item, 0, item.length, prev)
})
return ret
}
}
module.exports = {
CommentArray,
assign (target, source, keys) {
if (!isObject(target)) {
throw new TypeError('Cannot convert undefined or null to object')
}
if (!isObject(source)) {
return target
}
if (keys === UNDEFINED) {
keys = Object.keys(source)
} else if (!isArray(keys)) {
throw new TypeError('keys must be array or undefined')
}
return assign(target, source, keys)
},
PREFIX_BEFORE,
PREFIX_AFTER_PROP,
PREFIX_AFTER_COLON,
PREFIX_AFTER_VALUE,
PREFIX_AFTER_COMMA,
COLON,
UNDEFINED
}
/***/ }),
/***/ 9515:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
const {parse, tokenize} = __nccwpck_require__(100)
const stringify = __nccwpck_require__(9546)
const {CommentArray, assign} = __nccwpck_require__(5694)
module.exports = {
parse,
stringify,
tokenize,
CommentArray,
assign
}
/***/ }),
/***/ 100:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
// JSON formatting
const esprima = __nccwpck_require__(3963)
const {
CommentArray,
PREFIX_BEFORE,
PREFIX_AFTER_PROP,
PREFIX_AFTER_COLON,
PREFIX_AFTER_VALUE,
PREFIX_AFTER_COMMA,
COLON,
UNDEFINED
} = __nccwpck_require__(5694)
const tokenize = code => esprima.tokenize(code, {
comment: true,
loc: true
})
const previous_hosts = []
let comments_host = null
let unassigned_comments = null
const previous_props = []
let last_prop
let remove_comments = false
let inline = false
let tokens = null
let last = null
let current = null
let index
let reviver = null
const clean = () => {
previous_props.length =
previous_hosts.length = 0
last = null
last_prop = UNDEFINED
}
const free = () => {
clean()
tokens.length = 0
unassigned_comments =
comments_host =
tokens =
last =
current =
reviver = null
}
const PREFIX_BEFORE_ALL = 'before-all'
const PREFIX_AFTER = 'after'
const PREFIX_AFTER_ALL = 'after-all'
const BRACKET_OPEN = '['
const BRACKET_CLOSE = ']'
const CURLY_BRACKET_OPEN = '{'
const CURLY_BRACKET_CLOSE = '}'
const COMMA = ','
const EMPTY = ''
const MINUS = '-'
const symbolFor = prefix => Symbol.for(
last_prop !== UNDEFINED
? `${prefix}:${last_prop}`
: prefix
)
const transform = (k, v) => reviver
? reviver(k, v)
: v
const unexpected = () => {
const error = new SyntaxError(`Unexpected token ${current.value.slice(0, 1)}`)
Object.assign(error, current.loc.start)
throw error
}
const unexpected_end = () => {
const error = new SyntaxError('Unexpected end of JSON input')
Object.assign(error, last
? last.loc.end
// Empty string
: {
line: 1,
column: 0
})
throw error
}
// Move the reader to the next
const next = () => {
const new_token = tokens[++ index]
inline = current
&& new_token
&& current.loc.end.line === new_token.loc.start.line
|| false
last = current
current = new_token
}
const type = () => {
if (!current) {
unexpected_end()
}
return current.type === 'Punctuator'
? current.value
: current.type
}
const is = t => type() === t
const expect = a => {
if (!is(a)) {
unexpected()
}
}
const set_comments_host = new_host => {
previous_hosts.push(comments_host)
comments_host = new_host
}
const restore_comments_host = () => {
comments_host = previous_hosts.pop()
}
const assign_after_comma_comments = () => {
if (!unassigned_comments) {
return
}
const after_comma_comments = []
for (const comment of unassigned_comments) {
// If the comment is inline, then it is an after-comma comment
if (comment.inline) {
after_comma_comments.push(comment)
// Otherwise, all comments are before:<next-prop> comment
} else {
break
}
}
const {length} = after_comma_comments
if (!length) {
return
}
if (length === unassigned_comments.length) {
// If unassigned_comments are all consumed
unassigned_comments = null
} else {
unassigned_comments.splice(0, length)
}
comments_host[symbolFor(PREFIX_AFTER_COMMA)] = after_comma_comments
}
const assign_comments = prefix => {
if (!unassigned_comments) {
return
}
comments_host[symbolFor(prefix)] = unassigned_comments
unassigned_comments = null
}
const parse_comments = prefix => {
const comments = []
while (
current
&& (
is('LineComment')
|| is('BlockComment')
)
) {
const comment = {
...current,
inline
}
// delete comment.loc
comments.push(comment)
next()
}
if (remove_comments) {
return
}
if (!comments.length) {
return
}
if (prefix) {
comments_host[symbolFor(prefix)] = comments
return
}
unassigned_comments = comments
}
const set_prop = (prop, push) => {
if (push) {
previous_props.push(last_prop)
}
last_prop = prop
}
const restore_prop = () => {
last_prop = previous_props.pop()
}
const parse_object = () => {
const obj = {}
set_comments_host(obj)
set_prop(UNDEFINED, true)
let started = false
let name
parse_comments()
while (!is(CURLY_BRACKET_CLOSE)) {
if (started) {
// key-value pair delimiter
expect(COMMA)
next()
parse_comments()
assign_after_comma_comments()
// If there is a trailing comma, we might reach the end
// ```
// {
// "a": 1,
// }
// ```
if (is(CURLY_BRACKET_CLOSE)) {
break
}
}
started = true
expect('String')
name = JSON.parse(current.value)
set_prop(name)
assign_comments(PREFIX_BEFORE)
next()
parse_comments(PREFIX_AFTER_PROP)
expect(COLON)
next()
parse_comments(PREFIX_AFTER_COLON)
obj[name] = transform(name, walk())
parse_comments(PREFIX_AFTER_VALUE)
}
// bypass }
next()
last_prop = undefined
// If there is no properties in the object,
// try to save unassigned comments
assign_comments(
started
? PREFIX_AFTER
: PREFIX_BEFORE
)
restore_comments_host()
restore_prop()
return obj
}
const parse_array = () => {
const array = new CommentArray()
set_comments_host(array)
set_prop(UNDEFINED, true)
let started = false
let i = 0
parse_comments()
while (!is(BRACKET_CLOSE)) {
if (started) {
expect(COMMA)
next()
parse_comments()
assign_after_comma_comments()
if (is(BRACKET_CLOSE)) {
break
}
}
started = true
set_prop(i)
assign_comments(PREFIX_BEFORE)
array[i] = transform(i, walk())
parse_comments(PREFIX_AFTER_VALUE)
i ++
}
next()
last_prop = undefined
assign_comments(
started
? PREFIX_AFTER
: PREFIX_BEFORE
)
restore_comments_host()
restore_prop()
return array
}
function walk () {
let tt = type()
if (tt === CURLY_BRACKET_OPEN) {
next()
return parse_object()
}
if (tt === BRACKET_OPEN) {
next()
return parse_array()
}
let negative = EMPTY
// -1
if (tt === MINUS) {
next()
tt = type()
negative = MINUS
}
let v
switch (tt) {
case 'String':
case 'Boolean':
case 'Null':
case 'Numeric':
v = current.value
next()
return JSON.parse(negative + v)
default:
}
}
const isObject = subject => Object(subject) === subject
const parse = (code, rev, no_comments) => {
// Clean variables in closure
clean()
tokens = tokenize(code)
reviver = rev
remove_comments = no_comments
if (!tokens.length) {
unexpected_end()
}
index = - 1
next()
set_comments_host({})
parse_comments(PREFIX_BEFORE_ALL)
let result = walk()
parse_comments(PREFIX_AFTER_ALL)
if (current) {
unexpected()
}
if (!no_comments && result !== null) {
if (!isObject(result)) {
// 1 -> new Number(1)
// true -> new Boolean(1)
// "foo" -> new String("foo")
// eslint-disable-next-line no-new-object
result = new Object(result)
}
Object.assign(result, comments_host)
}
restore_comments_host()
// reviver
result = transform('', result)
free()
return result
}
module.exports = {
parse,
tokenize,
PREFIX_BEFORE,
PREFIX_BEFORE_ALL,
PREFIX_AFTER_PROP,
PREFIX_AFTER_COLON,
PREFIX_AFTER_VALUE,
PREFIX_AFTER_COMMA,
PREFIX_AFTER,
PREFIX_AFTER_ALL,
BRACKET_OPEN,
BRACKET_CLOSE,
CURLY_BRACKET_OPEN,
CURLY_BRACKET_CLOSE,
COLON,
COMMA,
EMPTY,
UNDEFINED
}
/***/ }),
/***/ 9546:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
const {
isArray, isObject, isFunction, isNumber, isString
} = __nccwpck_require__(5481)
const repeat = __nccwpck_require__(471)
const {
PREFIX_BEFORE_ALL,
PREFIX_BEFORE,
PREFIX_AFTER_PROP,
PREFIX_AFTER_COLON,
PREFIX_AFTER_VALUE,
PREFIX_AFTER_COMMA,
PREFIX_AFTER,
PREFIX_AFTER_ALL,
BRACKET_OPEN,
BRACKET_CLOSE,
CURLY_BRACKET_OPEN,
CURLY_BRACKET_CLOSE,
COLON,
COMMA,
EMPTY,
UNDEFINED
} = __nccwpck_require__(100)
// eslint-disable-next-line no-control-regex, no-misleading-character-class
const ESCAPABLE = /[\\"\x00-\x1f\x7f-\x9f\u00ad\u0600-\u0604\u070f\u17b4\u17b5\u200c-\u200f\u2028-\u202f\u2060-\u206f\ufeff\ufff0-\uffff]/g
// String constants
const SPACE = ' '
const LF = '\n'
const STR_NULL = 'null'
// Symbol tags
const BEFORE = prop => `${PREFIX_BEFORE}:${prop}`
const AFTER_PROP = prop => `${PREFIX_AFTER_PROP}:${prop}`
const AFTER_COLON = prop => `${PREFIX_AFTER_COLON}:${prop}`
const AFTER_VALUE = prop => `${PREFIX_AFTER_VALUE}:${prop}`
const AFTER_COMMA = prop => `${PREFIX_AFTER_COMMA}:${prop}`
// table of character substitutions
const meta = {
'\b': '\\b',
'\t': '\\t',
'\n': '\\n',
'\f': '\\f',
'\r': '\\r',
'"': '\\"',
'\\': '\\\\'
}
const escape = string => {
ESCAPABLE.lastIndex = 0
if (!ESCAPABLE.test(string)) {
return string
}
return string.replace(ESCAPABLE, a => {
const c = meta[a]
return typeof c === 'string'
? c
: a
})
}
// Escape no control characters, no quote characters,
// and no backslash characters,
// then we can safely slap some quotes around it.
const quote = string => `"${escape(string)}"`
const comment_stringify = (value, line) => line
? `//${value}`
: `/*${value}*/`
// display_block `boolean` whether the
// WHOLE block of comments is always a block group
const process_comments = (host, symbol_tag, deeper_gap, display_block) => {
const comments = host[Symbol.for(symbol_tag)]
if (!comments || !comments.length) {
return EMPTY
}
let is_line_comment = false
const str = comments.reduce((prev, {
inline,
type,
value
}) => {
const delimiter = inline
? SPACE
: LF + deeper_gap
is_line_comment = type === 'LineComment'
return prev + delimiter + comment_stringify(value, is_line_comment)
}, EMPTY)
return display_block
// line comment should always end with a LF
|| is_line_comment
? str + LF + deeper_gap
: str
}
let replacer = null
let indent = EMPTY
const clean = () => {
replacer = null
indent = EMPTY
}
const join = (one, two, gap) =>
one
? two
// Symbol.for('before') and Symbol.for('before:prop')
// might both exist if user mannually add comments to the object
// and make a mistake.
// SO, we are not to only trimRight but trim for both sides
? one + two.trim() + LF + gap
: one.trimRight() + LF + gap
: two
? two.trimRight() + LF + gap
: EMPTY
const join_content = (inside, value, gap) => {
const comment = process_comments(value, PREFIX_BEFORE, gap + indent, true)
return join(comment, inside, gap)
}
// | deeper_gap |
// | gap | indent |
// [
// "foo",
// "bar"
// ]
const array_stringify = (value, gap) => {
const deeper_gap = gap + indent
const {length} = value
// From the item to before close
let inside = EMPTY
let after_comma = EMPTY
// Never use Array.prototype.forEach,
// that we should iterate all items
for (let i = 0; i < length; i ++) {
if (i !== 0) {
inside += COMMA
}
const before = join(
after_comma,
process_comments(value, BEFORE(i), deeper_gap),
deeper_gap
)
inside += before || (LF + deeper_gap)
// JSON.stringify([undefined]) => [null]
inside += stringify(i, value, deeper_gap) || STR_NULL
inside += process_comments(value, AFTER_VALUE(i), deeper_gap)
after_comma = process_comments(value, AFTER_COMMA(i), deeper_gap)
}
inside += join(
after_comma,
process_comments(value, PREFIX_AFTER, deeper_gap),
deeper_gap
)
return BRACKET_OPEN
+ join_content(inside, value, gap)
+ BRACKET_CLOSE
}
// | deeper_gap |
// | gap | indent |
// {
// "foo": 1,
// "bar": 2
// }
const object_stringify = (value, gap) => {
// Due to a specification blunder in ECMAScript, typeof null is 'object',
// so watch out for that case.
if (!value) {
return 'null'
}
const deeper_gap = gap + indent
// From the first element to before close
let inside = EMPTY
let after_comma = EMPTY
let first = true
const keys = isArray(replacer)
? replacer
: Object.keys(value)
const iteratee = key => {
// Stringified value
const sv = stringify(key, value, deeper_gap)
// If a value is undefined, then the key-value pair should be ignored
if (sv === UNDEFINED) {
return
}
// The treat ment
if (!first) {
inside += COMMA
}
first = false
const before = join(
after_comma,
process_comments(value, BEFORE(key), deeper_gap),
deeper_gap
)
inside += before || (LF + deeper_gap)
inside += quote(key)
+ process_comments(value, AFTER_PROP(key), deeper_gap)
+ COLON
+ process_comments(value, AFTER_COLON(key), deeper_gap)
+ SPACE
+ sv
+ process_comments(value, AFTER_VALUE(key), deeper_gap)
after_comma = process_comments(value, AFTER_COMMA(key), deeper_gap)
}
keys.forEach(iteratee)
// if (after_comma) {
// inside += COMMA
// }
inside += join(
after_comma,
process_comments(value, PREFIX_AFTER, deeper_gap),
deeper_gap
)
return CURLY_BRACKET_OPEN
+ join_content(inside, value, gap)
+ CURLY_BRACKET_CLOSE
}
// @param {string} key
// @param {Object} holder
// @param {function()|Array} replacer
// @param {string} indent
// @param {string} gap
function stringify (key, holder, gap) {
let value = holder[key]
// If the value has a toJSON method, call it to obtain a replacement value.
if (isObject(value) && isFunction(value.toJSON)) {
value = value.toJSON(key)
}
// If we were called with a replacer function, then call the replacer to
// obtain a replacement value.
if (isFunction(replacer)) {
value = replacer.call(holder, key, value)
}
switch (typeof value) {
case 'string':
return quote(value)
case 'number':
// JSON numbers must be finite. Encode non-finite numbers as null.
return Number.isFinite(value) ? String(value) : STR_NULL
case 'boolean':
case 'null':
// If the value is a boolean or null, convert it to a string. Note:
// typeof null does not produce 'null'. The case is included here in
// the remote chance that this gets fixed someday.
return String(value)
// If the type is 'object', we might be dealing with an object or an array or
// null.
case 'object':
return isArray(value)
? array_stringify(value, gap)
: object_stringify(value, gap)
// undefined
default:
// JSON.stringify(undefined) === undefined
// JSON.stringify('foo', () => undefined) === undefined
}
}
const get_indent = space => isString(space)
// If the space parameter is a string, it will be used as the indent string.
? space
: isNumber(space)
? repeat(SPACE, space)
: EMPTY
const {toString} = Object.prototype
const PRIMITIVE_OBJECT_TYPES = [
'[object Number]',
'[object String]',
'[object Boolean]'
]
const is_primitive_object = subject => {
if (typeof subject !== 'object') {
return false
}
const str = toString.call(subject)
return PRIMITIVE_OBJECT_TYPES.includes(str)
}
// @param {function()|Array} replacer
// @param {string|number} space
module.exports = (value, replacer_, space) => {
// The stringify method takes a value and an optional replacer, and an optional
// space parameter, and returns a JSON text. The replacer can be a function
// that can replace values, or an array of strings that will select the keys.
// A default replacer method can be provided. Use of the space parameter can
// produce text that is more easily readable.
// If the space parameter is a number, make an indent string containing that
// many spaces.
const indent_ = get_indent(space)
if (!indent_) {
return JSON.stringify(value, replacer_)
}
// vanilla `JSON.parse` allow invalid replacer
if (!isFunction(replacer_) && !isArray(replacer_)) {
replacer_ = null
}
replacer = replacer_
indent = indent_
const str = is_primitive_object(value)
? JSON.stringify(value)
: stringify('', {'': value}, EMPTY)
clean()
return isObject(value)
? process_comments(value, PREFIX_BEFORE_ALL, EMPTY).trimLeft()
+ str
+ process_comments(value, PREFIX_AFTER_ALL, EMPTY).trimRight()
: str
}
/***/ }),
/***/ 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]';
};
/***/ }),
/***/ 5481:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
// Copyright Joyent, Inc. and other Node contributors.
//
// Permission is hereby granted, free of charge, to any person obtaining a
// copy of this software and associated documentation files (the
// "Software"), to deal in the Software without restriction, including
// without limitation the rights to use, copy, modify, merge, publish,
// distribute, sublicense, and/or sell copies of the Software, and to permit
// persons to whom the Software is furnished to do so, subject to the
// following conditions:
//
// The above copyright notice and this permission notice shall be included
// in all copies or substantial portions of the Software.
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
// OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
// MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN
// NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM,
// DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
// OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
// USE OR OTHER DEALINGS IN THE SOFTWARE.
// NOTE: These type checking functions intentionally don't use `instanceof`
// because it is fragile and can be easily faked with `Object.create()`.
function isArray(arg) {
if (Array.isArray) {
return Array.isArray(arg);
}
return objectToString(arg) === '[object Array]';
}
exports.isArray = isArray;
function isBoolean(arg) {
return typeof arg === 'boolean';
}
exports.isBoolean = isBoolean;
function isNull(arg) {
return arg === null;
}
exports.isNull = isNull;
function isNullOrUndefined(arg) {
return arg == null;
}
exports.isNullOrUndefined = isNullOrUndefined;
function isNumber(arg) {
return typeof arg === 'number';
}
exports.isNumber = isNumber;
function isString(arg) {
return typeof arg === 'string';
}
exports.isString = isString;
function isSymbol(arg) {
return typeof arg === 'symbol';
}
exports.isSymbol = isSymbol;
function isUndefined(arg) {
return arg === void 0;
}
exports.isUndefined = isUndefined;
function isRegExp(re) {
return objectToString(re) === '[object RegExp]';
}
exports.isRegExp = isRegExp;
function isObject(arg) {
return typeof arg === 'object' && arg !== null;
}
exports.isObject = isObject;
function isDate(d) {
return objectToString(d) === '[object Date]';
}
exports.isDate = isDate;
function isError(e) {
return (objectToString(e) === '[object Error]' || e instanceof Error);
}
exports.isError = isError;
function isFunction(arg) {
return typeof arg === 'function';
}
exports.isFunction = isFunction;
function isPrimitive(arg) {
return arg === null ||
typeof arg === 'boolean' ||
typeof arg === 'number' ||
typeof arg === 'string' ||
typeof arg === 'symbol' || // ES6 symbol
typeof arg === 'undefined';
}
exports.isPrimitive = isPrimitive;
exports.isBuffer = __nccwpck_require__(181).Buffer.isBuffer;
function objectToString(o) {
return Object.prototype.toString.call(o);
}
/***/ }),
/***/ 1365:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({
value: true
}));
exports.Explorer = void 0;
var _path = _interopRequireDefault(__nccwpck_require__(6928));
var _ExplorerBase = __nccwpck_require__(5908);
var _readFile = __nccwpck_require__(9848);
var _cacheWrapper = __nccwpck_require__(5803);
var _getDirectory = __nccwpck_require__(3625);
function _interopRequireDefault(obj) { return obj && obj.__esModule ? obj : { default: obj }; }
class Explorer extends _ExplorerBase.ExplorerBase {
constructor(options) {
super(options);
}
async search(searchFrom = process.cwd()) {
const startDirectory = await (0, _getDirectory.getDirectory)(searchFrom);
const result = await this.searchFromDirectory(startDirectory);
return result;
}
async searchFromDirectory(dir) {
const absoluteDir = _path.default.resolve(process.cwd(), dir);
const run = async () => {
const result = await this.searchDirectory(absoluteDir);
const nextDir = this.nextDirectoryToSearch(absoluteDir, result);
if (nextDir) {
return this.searchFromDirectory(nextDir);
}
const transformResult = await this.config.transform(result);
return transformResult;
};
if (this.searchCache) {
return (0, _cacheWrapper.cacheWrapper)(this.searchCache, absoluteDir, run);
}
return run();
}
async searchDirectory(dir) {
for await (const place of this.config.searchPlaces) {
const placeResult = await this.loadSearchPlace(dir, place);
if (this.shouldSearchStopWithResult(placeResult) === true) {
return placeResult;
}
} // config not found
return null;
}
async loadSearchPlace(dir, place) {
const filepath = _path.default.join(dir, place);
const fileContents = await (0, _readFile.readFile)(filepath);
const result = await this.createCosmiconfigResult(filepath, fileContents);
return result;
}
async loadFileContent(filepath, content) {
if (content === null) {
return null;
}
if (content.trim() === '') {
return undefined;
}
const loader = this.getLoaderEntryForFile(filepath);
const loaderResult = await loader(filepath, content);
return loaderResult;
}
async createCosmiconfigResult(filepath, content) {
const fileContent = await this.loadFileContent(filepath, content);
const result = this.loadedContentToCosmiconfigResult(filepath, fileContent);
return result;
}
async load(filepath) {
this.validateFilePath(filepath);
const absoluteFilePath = _path.default.resolve(process.cwd(), filepath);
const runLoad = async () => {
const fileContents = await (0, _readFile.readFile)(absoluteFilePath, {
throwNotFound: true
});
const result = await this.createCosmiconfigResult(absoluteFilePath, fileContents);
const transformResult = await this.config.transform(result);
return transformResult;
};
if (this.loadCache) {
return (0, _cacheWrapper.cacheWrapper)(this.loadCache, absoluteFilePath, runLoad);
}
return runLoad();
}
}
exports.Explorer = Explorer;
//# sourceMappingURL=Explorer.js.map
/***/ }),
/***/ 5908:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({
value: true
}));
exports.ExplorerBase = void 0;
exports.getExtensionDescription = getExtensionDescription;
var _path = _interopRequireDefault(__nccwpck_require__(6928));
var _loaders = __nccwpck_require__(8424);
var _getPropertyByPath = __nccwpck_require__(5663);
function _interopRequireDefault(obj) { return obj && obj.__esModule ? obj : { default: obj }; }
class ExplorerBase {
constructor(options) {
if (options.cache === true) {
this.loadCache = new Map();
this.searchCache = new Map();
}
this.config = options;
this.validateConfig();
}
clearLoadCache() {
if (this.loadCache) {
this.loadCache.clear();
}
}
clearSearchCache() {
if (this.searchCache) {
this.searchCache.clear();
}
}
clearCaches() {
this.clearLoadCache();
this.clearSearchCache();
}
validateConfig() {
const config = this.config;
config.searchPlaces.forEach(place => {
const loaderKey = _path.default.extname(place) || 'noExt';
const loader = config.loaders[loaderKey];
if (!loader) {
throw new Error(`No loader specified for ${getExtensionDescription(place)}, so searchPlaces item "${place}" is invalid`);
}
if (typeof loader !== 'function') {
throw new Error(`loader for ${getExtensionDescription(place)} is not a function (type provided: "${typeof loader}"), so searchPlaces item "${place}" is invalid`);
}
});
}
shouldSearchStopWithResult(result) {
if (result === null) return false;
if (result.isEmpty && this.config.ignoreEmptySearchPlaces) return false;
return true;
}
nextDirectoryToSearch(currentDir, currentResult) {
if (this.shouldSearchStopWithResult(currentResult)) {
return null;
}
const nextDir = nextDirUp(currentDir);
if (nextDir === currentDir || currentDir === this.config.stopDir) {
return null;
}
return nextDir;
}
loadPackageProp(filepath, content) {
const parsedContent = _loaders.loaders.loadJson(filepath, content);
const packagePropValue = (0, _getPropertyByPath.getPropertyByPath)(parsedContent, this.config.packageProp);
return packagePropValue || null;
}
getLoaderEntryForFile(filepath) {
if (_path.default.basename(filepath) === 'package.json') {
const loader = this.loadPackageProp.bind(this);
return loader;
}
const loaderKey = _path.default.extname(filepath) || 'noExt';
const loader = this.config.loaders[loaderKey];
if (!loader) {
throw new Error(`No loader specified for ${getExtensionDescription(filepath)}`);
}
return loader;
}
loadedContentToCosmiconfigResult(filepath, loadedContent) {
if (loadedContent === null) {
return null;
}
if (loadedContent === undefined) {
return {
filepath,
config: undefined,
isEmpty: true
};
}
return {
config: loadedContent,
filepath
};
}
validateFilePath(filepath) {
if (!filepath) {
throw new Error('load must pass a non-empty string');
}
}
}
exports.ExplorerBase = ExplorerBase;
function nextDirUp(dir) {
return _path.default.dirname(dir);
}
function getExtensionDescription(filepath) {
const ext = _path.default.extname(filepath);
return ext ? `extension "${ext}"` : 'files without extensions';
}
//# sourceMappingURL=ExplorerBase.js.map
/***/ }),
/***/ 4010:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({
value: true
}));
exports.ExplorerSync = void 0;
var _path = _interopRequireDefault(__nccwpck_require__(6928));
var _ExplorerBase = __nccwpck_require__(5908);
var _readFile = __nccwpck_require__(9848);
var _cacheWrapper = __nccwpck_require__(5803);
var _getDirectory = __nccwpck_require__(3625);
function _interopRequireDefault(obj) { return obj && obj.__esModule ? obj : { default: obj }; }
class ExplorerSync extends _ExplorerBase.ExplorerBase {
constructor(options) {
super(options);
}
searchSync(searchFrom = process.cwd()) {
const startDirectory = (0, _getDirectory.getDirectorySync)(searchFrom);
const result = this.searchFromDirectorySync(startDirectory);
return result;
}
searchFromDirectorySync(dir) {
const absoluteDir = _path.default.resolve(process.cwd(), dir);
const run = () => {
const result = this.searchDirectorySync(absoluteDir);
const nextDir = this.nextDirectoryToSearch(absoluteDir, result);
if (nextDir) {
return this.searchFromDirectorySync(nextDir);
}
const transformResult = this.config.transform(result);
return transformResult;
};
if (this.searchCache) {
return (0, _cacheWrapper.cacheWrapperSync)(this.searchCache, absoluteDir, run);
}
return run();
}
searchDirectorySync(dir) {
for (const place of this.config.searchPlaces) {
const placeResult = this.loadSearchPlaceSync(dir, place);
if (this.shouldSearchStopWithResult(placeResult) === true) {
return placeResult;
}
} // config not found
return null;
}
loadSearchPlaceSync(dir, place) {
const filepath = _path.default.join(dir, place);
const content = (0, _readFile.readFileSync)(filepath);
const result = this.createCosmiconfigResultSync(filepath, content);
return result;
}
loadFileContentSync(filepath, content) {
if (content === null) {
return null;
}
if (content.trim() === '') {
return undefined;
}
const loader = this.getLoaderEntryForFile(filepath);
const loaderResult = loader(filepath, content);
return loaderResult;
}
createCosmiconfigResultSync(filepath, content) {
const fileContent = this.loadFileContentSync(filepath, content);
const result = this.loadedContentToCosmiconfigResult(filepath, fileContent);
return result;
}
loadSync(filepath) {
this.validateFilePath(filepath);
const absoluteFilePath = _path.default.resolve(process.cwd(), filepath);
const runLoadSync = () => {
const content = (0, _readFile.readFileSync)(absoluteFilePath, {
throwNotFound: true
});
const cosmiconfigResult = this.createCosmiconfigResultSync(absoluteFilePath, content);
const transformResult = this.config.transform(cosmiconfigResult);
return transformResult;
};
if (this.loadCache) {
return (0, _cacheWrapper.cacheWrapperSync)(this.loadCache, absoluteFilePath, runLoadSync);
}
return runLoadSync();
}
}
exports.ExplorerSync = ExplorerSync;
//# sourceMappingURL=ExplorerSync.js.map
/***/ }),
/***/ 5803:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({
value: true
}));
exports.cacheWrapper = cacheWrapper;
exports.cacheWrapperSync = cacheWrapperSync;
async function cacheWrapper(cache, key, fn) {
const cached = cache.get(key);
if (cached !== undefined) {
return cached;
}
const result = await fn();
cache.set(key, result);
return result;
}
function cacheWrapperSync(cache, key, fn) {
const cached = cache.get(key);
if (cached !== undefined) {
return cached;
}
const result = fn();
cache.set(key, result);
return result;
}
//# sourceMappingURL=cacheWrapper.js.map
/***/ }),
/***/ 3625:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({
value: true
}));
exports.getDirectory = getDirectory;
exports.getDirectorySync = getDirectorySync;
var _path = _interopRequireDefault(__nccwpck_require__(6928));
var _pathType = __nccwpck_require__(430);
function _interopRequireDefault(obj) { return obj && obj.__esModule ? obj : { default: obj }; }
async function getDirectory(filepath) {
const filePathIsDirectory = await (0, _pathType.isDirectory)(filepath);
if (filePathIsDirectory === true) {
return filepath;
}
const directory = _path.default.dirname(filepath);
return directory;
}
function getDirectorySync(filepath) {
const filePathIsDirectory = (0, _pathType.isDirectorySync)(filepath);
if (filePathIsDirectory === true) {
return filepath;
}
const directory = _path.default.dirname(filepath);
return directory;
}
//# sourceMappingURL=getDirectory.js.map
/***/ }),
/***/ 5663:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({
value: true
}));
exports.getPropertyByPath = getPropertyByPath;
// Resolves property names or property paths defined with period-delimited
// strings or arrays of strings. Property names that are found on the source
// object are used directly (even if they include a period).
// Nested property names that include periods, within a path, are only
// understood in array paths.
function getPropertyByPath(source, path) {
if (typeof path === 'string' && Object.prototype.hasOwnProperty.call(source, path)) {
return source[path];
}
const parsedPath = typeof path === 'string' ? path.split('.') : path; // eslint-disable-next-line @typescript-eslint/no-explicit-any
return parsedPath.reduce((previous, key) => {
if (previous === undefined) {
return previous;
}
return previous[key];
}, source);
}
//# sourceMappingURL=getPropertyByPath.js.map
/***/ }),
/***/ 2488:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({
value: true
}));
exports.cosmiconfig = cosmiconfig;
exports.cosmiconfigSync = cosmiconfigSync;
exports.defaultLoaders = void 0;
var _os = _interopRequireDefault(__nccwpck_require__(857));
var _Explorer = __nccwpck_require__(1365);
var _ExplorerSync = __nccwpck_require__(4010);
var _loaders = __nccwpck_require__(8424);
var _types = __nccwpck_require__(9741);
function _interopRequireDefault(obj) { return obj && obj.__esModule ? obj : { default: obj }; }
/* eslint-disable @typescript-eslint/explicit-module-boundary-types */
// eslint-disable-next-line @typescript-eslint/explicit-function-return-type
function cosmiconfig(moduleName, options = {}) {
const normalizedOptions = normalizeOptions(moduleName, options);
const explorer = new _Explorer.Explorer(normalizedOptions);
return {
search: explorer.search.bind(explorer),
load: explorer.load.bind(explorer),
clearLoadCache: explorer.clearLoadCache.bind(explorer),
clearSearchCache: explorer.clearSearchCache.bind(explorer),
clearCaches: explorer.clearCaches.bind(explorer)
};
} // eslint-disable-next-line @typescript-eslint/explicit-function-return-type
function cosmiconfigSync(moduleName, options = {}) {
const normalizedOptions = normalizeOptions(moduleName, options);
const explorerSync = new _ExplorerSync.ExplorerSync(normalizedOptions);
return {
search: explorerSync.searchSync.bind(explorerSync),
load: explorerSync.loadSync.bind(explorerSync),
clearLoadCache: explorerSync.clearLoadCache.bind(explorerSync),
clearSearchCache: explorerSync.clearSearchCache.bind(explorerSync),
clearCaches: explorerSync.clearCaches.bind(explorerSync)
};
} // do not allow mutation of default loaders. Make sure it is set inside options
const defaultLoaders = Object.freeze({
'.cjs': _loaders.loaders.loadJs,
'.js': _loaders.loaders.loadJs,
'.json': _loaders.loaders.loadJson,
'.yaml': _loaders.loaders.loadYaml,
'.yml': _loaders.loaders.loadYaml,
noExt: _loaders.loaders.loadYaml
});
exports.defaultLoaders = defaultLoaders;
const identity = function identity(x) {
return x;
};
function normalizeOptions(moduleName, options) {
const defaults = {
packageProp: moduleName,
searchPlaces: ['package.json', `.${moduleName}rc`, `.${moduleName}rc.json`, `.${moduleName}rc.yaml`, `.${moduleName}rc.yml`, `.${moduleName}rc.js`, `.${moduleName}rc.cjs`, `.config/${moduleName}rc`, `.config/${moduleName}rc.json`, `.config/${moduleName}rc.yaml`, `.config/${moduleName}rc.yml`, `.config/${moduleName}rc.js`, `.config/${moduleName}rc.cjs`, `${moduleName}.config.js`, `${moduleName}.config.cjs`],
ignoreEmptySearchPlaces: true,
stopDir: _os.default.homedir(),
cache: true,
transform: identity,
loaders: defaultLoaders
};
const normalizedOptions = { ...defaults,
...options,
loaders: { ...defaults.loaders,
...options.loaders
}
};
return normalizedOptions;
}
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 8424:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({
value: true
}));
exports.loaders = void 0;
/* eslint-disable @typescript-eslint/no-require-imports */
let importFresh;
const loadJs = function loadJs(filepath) {
if (importFresh === undefined) {
importFresh = __nccwpck_require__(6656);
}
const result = importFresh(filepath);
return result;
};
let parseJson;
const loadJson = function loadJson(filepath, content) {
if (parseJson === undefined) {
parseJson = __nccwpck_require__(2308);
}
try {
const result = parseJson(content);
return result;
} catch (error) {
error.message = `JSON Error in ${filepath}:\n${error.message}`;
throw error;
}
};
let yaml;
const loadYaml = function loadYaml(filepath, content) {
if (yaml === undefined) {
yaml = __nccwpck_require__(434);
}
try {
const result = yaml.parse(content, {
prettyErrors: true
});
return result;
} catch (error) {
error.message = `YAML Error in ${filepath}:\n${error.message}`;
throw error;
}
};
const loaders = {
loadJs,
loadJson,
loadYaml
};
exports.loaders = loaders;
//# sourceMappingURL=loaders.js.map
/***/ }),
/***/ 9848:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({
value: true
}));
exports.readFile = readFile;
exports.readFileSync = readFileSync;
var _fs = _interopRequireDefault(__nccwpck_require__(9896));
function _interopRequireDefault(obj) { return obj && obj.__esModule ? obj : { default: obj }; }
async function fsReadFileAsync(pathname, encoding) {
return new Promise((resolve, reject) => {
_fs.default.readFile(pathname, encoding, (error, contents) => {
if (error) {
reject(error);
return;
}
resolve(contents);
});
});
}
async function readFile(filepath, options = {}) {
const throwNotFound = options.throwNotFound === true;
try {
const content = await fsReadFileAsync(filepath, 'utf8');
return content;
} catch (error) {
if (throwNotFound === false && (error.code === 'ENOENT' || error.code === 'EISDIR')) {
return null;
}
throw error;
}
}
function readFileSync(filepath, options = {}) {
const throwNotFound = options.throwNotFound === true;
try {
const content = _fs.default.readFileSync(filepath, 'utf8');
return content;
} catch (error) {
if (throwNotFound === false && (error.code === 'ENOENT' || error.code === 'EISDIR')) {
return null;
}
throw error;
}
}
//# sourceMappingURL=readFile.js.map
/***/ }),
/***/ 9741:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({
value: true
}));
//# sourceMappingURL=types.js.map
/***/ }),
/***/ 4150:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
class Deprecation extends Error {
constructor(message) {
super(message); // Maintains proper stack trace (only available on V8)
/* istanbul ignore next */
if (Error.captureStackTrace) {
Error.captureStackTrace(this, this.constructor);
}
this.name = 'Deprecation';
}
}
exports.Deprecation = Deprecation;
/***/ }),
/***/ 8296:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
"use strict";
var util = __nccwpck_require__(9023);
var isArrayish = __nccwpck_require__(8000);
var errorEx = function errorEx(name, properties) {
if (!name || name.constructor !== String) {
properties = name || {};
name = Error.name;
}
var errorExError = function ErrorEXError(message) {
if (!this) {
return new ErrorEXError(message);
}
message = message instanceof Error
? message.message
: (message || this.message);
Error.call(this, message);
Error.captureStackTrace(this, errorExError);
this.name = name;
Object.defineProperty(this, 'message', {
configurable: true,
enumerable: false,
get: function () {
var newMessage = message.split(/\r?\n/g);
for (var key in properties) {
if (!properties.hasOwnProperty(key)) {
continue;
}
var modifier = properties[key];
if ('message' in modifier) {
newMessage = modifier.message(this[key], newMessage) || newMessage;
if (!isArrayish(newMessage)) {
newMessage = [newMessage];
}
}
}
return newMessage.join('\n');
},
set: function (v) {
message = v;
}
});
var overwrittenStack = null;
var stackDescriptor = Object.getOwnPropertyDescriptor(this, 'stack');
var stackGetter = stackDescriptor.get;
var stackValue = stackDescriptor.value;
delete stackDescriptor.value;
delete stackDescriptor.writable;
stackDescriptor.set = function (newstack) {
overwrittenStack = newstack;
};
stackDescriptor.get = function () {
var stack = (overwrittenStack || ((stackGetter)
? stackGetter.call(this)
: stackValue)).split(/\r?\n+/g);
// starting in Node 7, the stack builder caches the message.
// just replace it.
if (!overwrittenStack) {
stack[0] = this.name + ': ' + this.message;
}
var lineCount = 1;
for (var key in properties) {
if (!properties.hasOwnProperty(key)) {
continue;
}
var modifier = properties[key];
if ('line' in modifier) {
var line = modifier.line(this[key]);
if (line) {
stack.splice(lineCount++, 0, ' ' + line);
}
}
if ('stack' in modifier) {
modifier.stack(this[key], stack);
}
}
return stack.join('\n');
};
Object.defineProperty(this, 'stack', stackDescriptor);
};
if (Object.setPrototypeOf) {
Object.setPrototypeOf(errorExError.prototype, Error.prototype);
Object.setPrototypeOf(errorExError, Error);
} else {
util.inherits(errorExError, Error);
}
return errorExError;
};
errorEx.append = function (str, def) {
return {
message: function (v, message) {
v = v || def;
if (v) {
message[0] += ' ' + str.replace('%s', v.toString());
}
return message;
}
};
};
errorEx.line = function (str, def) {
return {
line: function (v) {
v = v || def;
if (v) {
return str.replace('%s', v.toString());
}
return null;
}
};
};
module.exports = errorEx;
/***/ }),
/***/ 3580:
/***/ ((module) => {
"use strict";
var matchOperatorsRe = /[|\\{}()[\]^$+*?.]/g;
module.exports = function (str) {
if (typeof str !== 'string') {
throw new TypeError('Expected a string');
}
return str.replace(matchOperatorsRe, '\\$&');
};
/***/ }),
/***/ 3963:
/***/ (function(module) {
(function webpackUniversalModuleDefinition(root, factory) {
/* istanbul ignore next */
if(true)
module.exports = factory();
else {}
})(this, function() {
return /******/ (function(modules) { // webpackBootstrap
/******/ // The module cache
/******/ var installedModules = {};
/******/ // The require function
/******/ function __nested_webpack_require_583__(moduleId) {
/******/ // Check if module is in cache
/* istanbul ignore if */
/******/ if(installedModules[moduleId])
/******/ return installedModules[moduleId].exports;
/******/ // Create a new module (and put it into the cache)
/******/ var module = installedModules[moduleId] = {
/******/ exports: {},
/******/ id: moduleId,
/******/ loaded: false
/******/ };
/******/ // Execute the module function
/******/ modules[moduleId].call(module.exports, module, module.exports, __nested_webpack_require_583__);
/******/ // Flag the module as loaded
/******/ module.loaded = true;
/******/ // Return the exports of the module
/******/ return module.exports;
/******/ }
/******/ // expose the modules object (__webpack_modules__)
/******/ __nested_webpack_require_583__.m = modules;
/******/ // expose the module cache
/******/ __nested_webpack_require_583__.c = installedModules;
/******/ // __webpack_public_path__
/******/ __nested_webpack_require_583__.p = "";
/******/ // Load entry module and return exports
/******/ return __nested_webpack_require_583__(0);
/******/ })
/************************************************************************/
/******/ ([
/* 0 */
/***/ function(module, exports, __nested_webpack_require_1808__) {
"use strict";
/*
Copyright JS Foundation and other contributors, https://js.foundation/
Redistribution and use in source and binary forms, with or without
modification, are permitted provided that the following conditions are met:
* Redistributions of source code must retain the above copyright
notice, this list of conditions and the following disclaimer.
* Redistributions in binary form must reproduce the above copyright
notice, this list of conditions and the following disclaimer in the
documentation and/or other materials provided with the distribution.
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
ARE DISCLAIMED. IN NO EVENT SHALL <COPYRIGHT HOLDER> 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 });
var comment_handler_1 = __nested_webpack_require_1808__(1);
var jsx_parser_1 = __nested_webpack_require_1808__(3);
var parser_1 = __nested_webpack_require_1808__(8);
var tokenizer_1 = __nested_webpack_require_1808__(15);
function parse(code, options, delegate) {
var commentHandler = null;
var proxyDelegate = function (node, metadata) {
if (delegate) {
delegate(node, metadata);
}
if (commentHandler) {
commentHandler.visit(node, metadata);
}
};
var parserDelegate = (typeof delegate === 'function') ? proxyDelegate : null;
var collectComment = false;
if (options) {
collectComment = (typeof options.comment === 'boolean' && options.comment);
var attachComment = (typeof options.attachComment === 'boolean' && options.attachComment);
if (collectComment || attachComment) {
commentHandler = new comment_handler_1.CommentHandler();
commentHandler.attach = attachComment;
options.comment = true;
parserDelegate = proxyDelegate;
}
}
var isModule = false;
if (options && typeof options.sourceType === 'string') {
isModule = (options.sourceType === 'module');
}
var parser;
if (options && typeof options.jsx === 'boolean' && options.jsx) {
parser = new jsx_parser_1.JSXParser(code, options, parserDelegate);
}
else {
parser = new parser_1.Parser(code, options, parserDelegate);
}
var program = isModule ? parser.parseModule() : parser.parseScript();
var ast = program;
if (collectComment && commentHandler) {
ast.comments = commentHandler.comments;
}
if (parser.config.tokens) {
ast.tokens = parser.tokens;
}
if (parser.config.tolerant) {
ast.errors = parser.errorHandler.errors;
}
return ast;
}
exports.parse = parse;
function parseModule(code, options, delegate) {
var parsingOptions = options || {};
parsingOptions.sourceType = 'module';
return parse(code, parsingOptions, delegate);
}
exports.parseModule = parseModule;
function parseScript(code, options, delegate) {
var parsingOptions = options || {};
parsingOptions.sourceType = 'script';
return parse(code, parsingOptions, delegate);
}
exports.parseScript = parseScript;
function tokenize(code, options, delegate) {
var tokenizer = new tokenizer_1.Tokenizer(code, options);
var tokens;
tokens = [];
try {
while (true) {
var token = tokenizer.getNextToken();
if (!token) {
break;
}
if (delegate) {
token = delegate(token);
}
tokens.push(token);
}
}
catch (e) {
tokenizer.errorHandler.tolerate(e);
}
if (tokenizer.errorHandler.tolerant) {
tokens.errors = tokenizer.errors();
}
return tokens;
}
exports.tokenize = tokenize;
var syntax_1 = __nested_webpack_require_1808__(2);
exports.Syntax = syntax_1.Syntax;
// Sync with *.json manifests.
exports.version = '4.0.1';
/***/ },
/* 1 */
/***/ function(module, exports, __nested_webpack_require_6456__) {
"use strict";
Object.defineProperty(exports, "__esModule", { value: true });
var syntax_1 = __nested_webpack_require_6456__(2);
var CommentHandler = (function () {
function CommentHandler() {
this.attach = false;
this.comments = [];
this.stack = [];
this.leading = [];
this.trailing = [];
}
CommentHandler.prototype.insertInnerComments = function (node, metadata) {
// innnerComments for properties empty block
// `function a() {/** comments **\/}`
if (node.type === syntax_1.Syntax.BlockStatement && node.body.length === 0) {
var innerComments = [];
for (var i = this.leading.length - 1; i >= 0; --i) {
var entry = this.leading[i];
if (metadata.end.offset >= entry.start) {
innerComments.unshift(entry.comment);
this.leading.splice(i, 1);
this.trailing.splice(i, 1);
}
}
if (innerComments.length) {
node.innerComments = innerComments;
}
}
};
CommentHandler.prototype.findTrailingComments = function (metadata) {
var trailingComments = [];
if (this.trailing.length > 0) {
for (var i = this.trailing.length - 1; i >= 0; --i) {
var entry_1 = this.trailing[i];
if (entry_1.start >= metadata.end.offset) {
trailingComments.unshift(entry_1.comment);
}
}
this.trailing.length = 0;
return trailingComments;
}
var entry = this.stack[this.stack.length - 1];
if (entry && entry.node.trailingComments) {
var firstComment = entry.node.trailingComments[0];
if (firstComment && firstComment.range[0] >= metadata.end.offset) {
trailingComments = entry.node.trailingComments;
delete entry.node.trailingComments;
}
}
return trailingComments;
};
CommentHandler.prototype.findLeadingComments = function (metadata) {
var leadingComments = [];
var target;
while (this.stack.length > 0) {
var entry = this.stack[this.stack.length - 1];
if (entry && entry.start >= metadata.start.offset) {
target = entry.node;
this.stack.pop();
}
else {
break;
}
}
if (target) {
var count = target.leadingComments ? target.leadingComments.length : 0;
for (var i = count - 1; i >= 0; --i) {
var comment = target.leadingComments[i];
if (comment.range[1] <= metadata.start.offset) {
leadingComments.unshift(comment);
target.leadingComments.splice(i, 1);
}
}
if (target.leadingComments && target.leadingComments.length === 0) {
delete target.leadingComments;
}
return leadingComments;
}
for (var i = this.leading.length - 1; i >= 0; --i) {
var entry = this.leading[i];
if (entry.start <= metadata.start.offset) {
leadingComments.unshift(entry.comment);
this.leading.splice(i, 1);
}
}
return leadingComments;
};
CommentHandler.prototype.visitNode = function (node, metadata) {
if (node.type === syntax_1.Syntax.Program && node.body.length > 0) {
return;
}
this.insertInnerComments(node, metadata);
var trailingComments = this.findTrailingComments(metadata);
var leadingComments = this.findLeadingComments(metadata);
if (leadingComments.length > 0) {
node.leadingComments = leadingComments;
}
if (trailingComments.length > 0) {
node.trailingComments = trailingComments;
}
this.stack.push({
node: node,
start: metadata.start.offset
});
};
CommentHandler.prototype.visitComment = function (node, metadata) {
var type = (node.type[0] === 'L') ? 'Line' : 'Block';
var comment = {
type: type,
value: node.value
};
if (node.range) {
comment.range = node.range;
}
if (node.loc) {
comment.loc = node.loc;
}
this.comments.push(comment);
if (this.attach) {
var entry = {
comment: {
type: type,
value: node.value,
range: [metadata.start.offset, metadata.end.offset]
},
start: metadata.start.offset
};
if (node.loc) {
entry.comment.loc = node.loc;
}
node.type = type;
this.leading.push(entry);
this.trailing.push(entry);
}
};
CommentHandler.prototype.visit = function (node, metadata) {
if (node.type === 'LineComment') {
this.visitComment(node, metadata);
}
else if (node.type === 'BlockComment') {
this.visitComment(node, metadata);
}
else if (this.attach) {
this.visitNode(node, metadata);
}
};
return CommentHandler;
}());
exports.CommentHandler = CommentHandler;
/***/ },
/* 2 */
/***/ function(module, exports) {
"use strict";
Object.defineProperty(exports, "__esModule", { value: true });
exports.Syntax = {
AssignmentExpression: 'AssignmentExpression',
AssignmentPattern: 'AssignmentPattern',
ArrayExpression: 'ArrayExpression',
ArrayPattern: 'ArrayPattern',
ArrowFunctionExpression: 'ArrowFunctionExpression',
AwaitExpression: 'AwaitExpression',
BlockStatement: 'BlockStatement',
BinaryExpression: 'BinaryExpression',
BreakStatement: 'BreakStatement',
CallExpression: 'CallExpression',
CatchClause: 'CatchClause',
ClassBody: 'ClassBody',
ClassDeclaration: 'ClassDeclaration',
ClassExpression: 'ClassExpression',
ConditionalExpression: 'ConditionalExpression',
ContinueStatement: 'ContinueStatement',
DoWhileStatement: 'DoWhileStatement',
DebuggerStatement: 'DebuggerStatement',
EmptyStatement: 'EmptyStatement',
ExportAllDeclaration: 'ExportAllDeclaration',
ExportDefaultDeclaration: 'ExportDefaultDeclaration',
ExportNamedDeclaration: 'ExportNamedDeclaration',
ExportSpecifier: 'ExportSpecifier',
ExpressionStatement: 'ExpressionStatement',
ForStatement: 'ForStatement',
ForOfStatement: 'ForOfStatement',
ForInStatement: 'ForInStatement',
FunctionDeclaration: 'FunctionDeclaration',
FunctionExpression: 'FunctionExpression',
Identifier: 'Identifier',
IfStatement: 'IfStatement',
ImportDeclaration: 'ImportDeclaration',
ImportDefaultSpecifier: 'ImportDefaultSpecifier',
ImportNamespaceSpecifier: 'ImportNamespaceSpecifier',
ImportSpecifier: 'ImportSpecifier',
Literal: 'Literal',
LabeledStatement: 'LabeledStatement',
LogicalExpression: 'LogicalExpression',
MemberExpression: 'MemberExpression',
MetaProperty: 'MetaProperty',
MethodDefinition: 'MethodDefinition',
NewExpression: 'NewExpression',
ObjectExpression: 'ObjectExpression',
ObjectPattern: 'ObjectPattern',
Program: 'Program',
Property: 'Property',
RestElement: 'RestElement',
ReturnStatement: 'ReturnStatement',
SequenceExpression: 'SequenceExpression',
SpreadElement: 'SpreadElement',
Super: 'Super',
SwitchCase: 'SwitchCase',
SwitchStatement: 'SwitchStatement',
TaggedTemplateExpression: 'TaggedTemplateExpression',
TemplateElement: 'TemplateElement',
TemplateLiteral: 'TemplateLiteral',
ThisExpression: 'ThisExpression',
ThrowStatement: 'ThrowStatement',
TryStatement: 'TryStatement',
UnaryExpression: 'UnaryExpression',
UpdateExpression: 'UpdateExpression',
VariableDeclaration: 'VariableDeclaration',
VariableDeclarator: 'VariableDeclarator',
WhileStatement: 'WhileStatement',
WithStatement: 'WithStatement',
YieldExpression: 'YieldExpression'
};
/***/ },
/* 3 */
/***/ function(module, exports, __nested_webpack_require_15019__) {
"use strict";
/* istanbul ignore next */
var __extends = (this && this.__extends) || (function () {
var extendStatics = Object.setPrototypeOf ||
({ __proto__: [] } instanceof Array && function (d, b) { d.__proto__ = b; }) ||
function (d, b) { for (var p in b) if (b.hasOwnProperty(p)) d[p] = b[p]; };
return function (d, b) {
extendStatics(d, b);
function __() { this.constructor = d; }
d.prototype = b === null ? Object.create(b) : (__.prototype = b.prototype, new __());
};
})();
Object.defineProperty(exports, "__esModule", { value: true });
var character_1 = __nested_webpack_require_15019__(4);
var JSXNode = __nested_webpack_require_15019__(5);
var jsx_syntax_1 = __nested_webpack_require_15019__(6);
var Node = __nested_webpack_require_15019__(7);
var parser_1 = __nested_webpack_require_15019__(8);
var token_1 = __nested_webpack_require_15019__(13);
var xhtml_entities_1 = __nested_webpack_require_15019__(14);
token_1.TokenName[100 /* Identifier */] = 'JSXIdentifier';
token_1.TokenName[101 /* Text */] = 'JSXText';
// Fully qualified element name, e.g. <svg:path> returns "svg:path"
function getQualifiedElementName(elementName) {
var qualifiedName;
switch (elementName.type) {
case jsx_syntax_1.JSXSyntax.JSXIdentifier:
var id = elementName;
qualifiedName = id.name;
break;
case jsx_syntax_1.JSXSyntax.JSXNamespacedName:
var ns = elementName;
qualifiedName = getQualifiedElementName(ns.namespace) + ':' +
getQualifiedElementName(ns.name);
break;
case jsx_syntax_1.JSXSyntax.JSXMemberExpression:
var expr = elementName;
qualifiedName = getQualifiedElementName(expr.object) + '.' +
getQualifiedElementName(expr.property);
break;
/* istanbul ignore next */
default:
break;
}
return qualifiedName;
}
var JSXParser = (function (_super) {
__extends(JSXParser, _super);
function JSXParser(code, options, delegate) {
return _super.call(this, code, options, delegate) || this;
}
JSXParser.prototype.parsePrimaryExpression = function () {
return this.match('<') ? this.parseJSXRoot() : _super.prototype.parsePrimaryExpression.call(this);
};
JSXParser.prototype.startJSX = function () {
// Unwind the scanner before the lookahead token.
this.scanner.index = this.startMarker.index;
this.scanner.lineNumber = this.startMarker.line;
this.scanner.lineStart = this.startMarker.index - this.startMarker.column;
};
JSXParser.prototype.finishJSX = function () {
// Prime the next lookahead.
this.nextToken();
};
JSXParser.prototype.reenterJSX = function () {
this.startJSX();
this.expectJSX('}');
// Pop the closing '}' added from the lookahead.
if (this.config.tokens) {
this.tokens.pop();
}
};
JSXParser.prototype.createJSXNode = function () {
this.collectComments();
return {
index: this.scanner.index,
line: this.scanner.lineNumber,
column: this.scanner.index - this.scanner.lineStart
};
};
JSXParser.prototype.createJSXChildNode = function () {
return {
index: this.scanner.index,
line: this.scanner.lineNumber,
column: this.scanner.index - this.scanner.lineStart
};
};
JSXParser.prototype.scanXHTMLEntity = function (quote) {
var result = '&';
var valid = true;
var terminated = false;
var numeric = false;
var hex = false;
while (!this.scanner.eof() && valid && !terminated) {
var ch = this.scanner.source[this.scanner.index];
if (ch === quote) {
break;
}
terminated = (ch === ';');
result += ch;
++this.scanner.index;
if (!terminated) {
switch (result.length) {
case 2:
// e.g. '{'
numeric = (ch === '#');
break;
case 3:
if (numeric) {
// e.g. 'A'
hex = (ch === 'x');
valid = hex || character_1.Character.isDecimalDigit(ch.charCodeAt(0));
numeric = numeric && !hex;
}
break;
default:
valid = valid && !(numeric && !character_1.Character.isDecimalDigit(ch.charCodeAt(0)));
valid = valid && !(hex && !character_1.Character.isHexDigit(ch.charCodeAt(0)));
break;
}
}
}
if (valid && terminated && result.length > 2) {
// e.g. 'A' becomes just '#x41'
var str = result.substr(1, result.length - 2);
if (numeric && str.length > 1) {
result = String.fromCharCode(parseInt(str.substr(1), 10));
}
else if (hex && str.length > 2) {
result = String.fromCharCode(parseInt('0' + str.substr(1), 16));
}
else if (!numeric && !hex && xhtml_entities_1.XHTMLEntities[str]) {
result = xhtml_entities_1.XHTMLEntities[str];
}
}
return result;
};
// Scan the next JSX token. This replaces Scanner#lex when in JSX mode.
JSXParser.prototype.lexJSX = function () {
var cp = this.scanner.source.charCodeAt(this.scanner.index);
// < > / : = { }
if (cp === 60 || cp === 62 || cp === 47 || cp === 58 || cp === 61 || cp === 123 || cp === 125) {
var value = this.scanner.source[this.scanner.index++];
return {
type: 7 /* Punctuator */,
value: value,
lineNumber: this.scanner.lineNumber,
lineStart: this.scanner.lineStart,
start: this.scanner.index - 1,
end: this.scanner.index
};
}
// " '
if (cp === 34 || cp === 39) {
var start = this.scanner.index;
var quote = this.scanner.source[this.scanner.index++];
var str = '';
while (!this.scanner.eof()) {
var ch = this.scanner.source[this.scanner.index++];
if (ch === quote) {
break;
}
else if (ch === '&') {
str += this.scanXHTMLEntity(quote);
}
else {
str += ch;
}
}
return {
type: 8 /* StringLiteral */,
value: str,
lineNumber: this.scanner.lineNumber,
lineStart: this.scanner.lineStart,
start: start,
end: this.scanner.index
};
}
// ... or .
if (cp === 46) {
var n1 = this.scanner.source.charCodeAt(this.scanner.index + 1);
var n2 = this.scanner.source.charCodeAt(this.scanner.index + 2);
var value = (n1 === 46 && n2 === 46) ? '...' : '.';
var start = this.scanner.index;
this.scanner.index += value.length;
return {
type: 7 /* Punctuator */,
value: value,
lineNumber: this.scanner.lineNumber,
lineStart: this.scanner.lineStart,
start: start,
end: this.scanner.index
};
}
// `
if (cp === 96) {
// Only placeholder, since it will be rescanned as a real assignment expression.
return {
type: 10 /* Template */,
value: '',
lineNumber: this.scanner.lineNumber,
lineStart: this.scanner.lineStart,
start: this.scanner.index,
end: this.scanner.index
};
}
// Identifer can not contain backslash (char code 92).
if (character_1.Character.isIdentifierStart(cp) && (cp !== 92)) {
var start = this.scanner.index;
++this.scanner.index;
while (!this.scanner.eof()) {
var ch = this.scanner.source.charCodeAt(this.scanner.index);
if (character_1.Character.isIdentifierPart(ch) && (ch !== 92)) {
++this.scanner.index;
}
else if (ch === 45) {
// Hyphen (char code 45) can be part of an identifier.
++this.scanner.index;
}
else {
break;
}
}
var id = this.scanner.source.slice(start, this.scanner.index);
return {
type: 100 /* Identifier */,
value: id,
lineNumber: this.scanner.lineNumber,
lineStart: this.scanner.lineStart,
start: start,
end: this.scanner.index
};
}
return this.scanner.lex();
};
JSXParser.prototype.nextJSXToken = function () {
this.collectComments();
this.startMarker.index = this.scanner.index;
this.startMarker.line = this.scanner.lineNumber;
this.startMarker.column = this.scanner.index - this.scanner.lineStart;
var token = this.lexJSX();
this.lastMarker.index = this.scanner.index;
this.lastMarker.line = this.scanner.lineNumber;
this.lastMarker.column = this.scanner.index - this.scanner.lineStart;
if (this.config.tokens) {
this.tokens.push(this.convertToken(token));
}
return token;
};
JSXParser.prototype.nextJSXText = function () {
this.startMarker.index = this.scanner.index;
this.startMarker.line = this.scanner.lineNumber;
this.startMarker.column = this.scanner.index - this.scanner.lineStart;
var start = this.scanner.index;
var text = '';
while (!this.scanner.eof()) {
var ch = this.scanner.source[this.scanner.index];
if (ch === '{' || ch === '<') {
break;
}
++this.scanner.index;
text += ch;
if (character_1.Character.isLineTerminator(ch.charCodeAt(0))) {
++this.scanner.lineNumber;
if (ch === '\r' && this.scanner.source[this.scanner.index] === '\n') {
++this.scanner.index;
}
this.scanner.lineStart = this.scanner.index;
}
}
this.lastMarker.index = this.scanner.index;
this.lastMarker.line = this.scanner.lineNumber;
this.lastMarker.column = this.scanner.index - this.scanner.lineStart;
var token = {
type: 101 /* Text */,
value: text,
lineNumber: this.scanner.lineNumber,
lineStart: this.scanner.lineStart,
start: start,
end: this.scanner.index
};
if ((text.length > 0) && this.config.tokens) {
this.tokens.push(this.convertToken(token));
}
return token;
};
JSXParser.prototype.peekJSXToken = function () {
var state = this.scanner.saveState();
this.scanner.scanComments();
var next = this.lexJSX();
this.scanner.restoreState(state);
return next;
};
// Expect the next JSX token to match the specified punctuator.
// If not, an exception will be thrown.
JSXParser.prototype.expectJSX = function (value) {
var token = this.nextJSXToken();
if (token.type !== 7 /* Punctuator */ || token.value !== value) {
this.throwUnexpectedToken(token);
}
};
// Return true if the next JSX token matches the specified punctuator.
JSXParser.prototype.matchJSX = function (value) {
var next = this.peekJSXToken();
return next.type === 7 /* Punctuator */ && next.value === value;
};
JSXParser.prototype.parseJSXIdentifier = function () {
var node = this.createJSXNode();
var token = this.nextJSXToken();
if (token.type !== 100 /* Identifier */) {
this.throwUnexpectedToken(token);
}
return this.finalize(node, new JSXNode.JSXIdentifier(token.value));
};
JSXParser.prototype.parseJSXElementName = function () {
var node = this.createJSXNode();
var elementName = this.parseJSXIdentifier();
if (this.matchJSX(':')) {
var namespace = elementName;
this.expectJSX(':');
var name_1 = this.parseJSXIdentifier();
elementName = this.finalize(node, new JSXNode.JSXNamespacedName(namespace, name_1));
}
else if (this.matchJSX('.')) {
while (this.matchJSX('.')) {
var object = elementName;
this.expectJSX('.');
var property = this.parseJSXIdentifier();
elementName = this.finalize(node, new JSXNode.JSXMemberExpression(object, property));
}
}
return elementName;
};
JSXParser.prototype.parseJSXAttributeName = function () {
var node = this.createJSXNode();
var attributeName;
var identifier = this.parseJSXIdentifier();
if (this.matchJSX(':')) {
var namespace = identifier;
this.expectJSX(':');
var name_2 = this.parseJSXIdentifier();
attributeName = this.finalize(node, new JSXNode.JSXNamespacedName(namespace, name_2));
}
else {
attributeName = identifier;
}
return attributeName;
};
JSXParser.prototype.parseJSXStringLiteralAttribute = function () {
var node = this.createJSXNode();
var token = this.nextJSXToken();
if (token.type !== 8 /* StringLiteral */) {
this.throwUnexpectedToken(token);
}
var raw = this.getTokenRaw(token);
return this.finalize(node, new Node.Literal(token.value, raw));
};
JSXParser.prototype.parseJSXExpressionAttribute = function () {
var node = this.createJSXNode();
this.expectJSX('{');
this.finishJSX();
if (this.match('}')) {
this.tolerateError('JSX attributes must only be assigned a non-empty expression');
}
var expression = this.parseAssignmentExpression();
this.reenterJSX();
return this.finalize(node, new JSXNode.JSXExpressionContainer(expression));
};
JSXParser.prototype.parseJSXAttributeValue = function () {
return this.matchJSX('{') ? this.parseJSXExpressionAttribute() :
this.matchJSX('<') ? this.parseJSXElement() : this.parseJSXStringLiteralAttribute();
};
JSXParser.prototype.parseJSXNameValueAttribute = function () {
var node = this.createJSXNode();
var name = this.parseJSXAttributeName();
var value = null;
if (this.matchJSX('=')) {
this.expectJSX('=');
value = this.parseJSXAttributeValue();
}
return this.finalize(node, new JSXNode.JSXAttribute(name, value));
};
JSXParser.prototype.parseJSXSpreadAttribute = function () {
var node = this.createJSXNode();
this.expectJSX('{');
this.expectJSX('...');
this.finishJSX();
var argument = this.parseAssignmentExpression();
this.reenterJSX();
return this.finalize(node, new JSXNode.JSXSpreadAttribute(argument));
};
JSXParser.prototype.parseJSXAttributes = function () {
var attributes = [];
while (!this.matchJSX('/') && !this.matchJSX('>')) {
var attribute = this.matchJSX('{') ? this.parseJSXSpreadAttribute() :
this.parseJSXNameValueAttribute();
attributes.push(attribute);
}
return attributes;
};
JSXParser.prototype.parseJSXOpeningElement = function () {
var node = this.createJSXNode();
this.expectJSX('<');
var name = this.parseJSXElementName();
var attributes = this.parseJSXAttributes();
var selfClosing = this.matchJSX('/');
if (selfClosing) {
this.expectJSX('/');
}
this.expectJSX('>');
return this.finalize(node, new JSXNode.JSXOpeningElement(name, selfClosing, attributes));
};
JSXParser.prototype.parseJSXBoundaryElement = function () {
var node = this.createJSXNode();
this.expectJSX('<');
if (this.matchJSX('/')) {
this.expectJSX('/');
var name_3 = this.parseJSXElementName();
this.expectJSX('>');
return this.finalize(node, new JSXNode.JSXClosingElement(name_3));
}
var name = this.parseJSXElementName();
var attributes = this.parseJSXAttributes();
var selfClosing = this.matchJSX('/');
if (selfClosing) {
this.expectJSX('/');
}
this.expectJSX('>');
return this.finalize(node, new JSXNode.JSXOpeningElement(name, selfClosing, attributes));
};
JSXParser.prototype.parseJSXEmptyExpression = function () {
var node = this.createJSXChildNode();
this.collectComments();
this.lastMarker.index = this.scanner.index;
this.lastMarker.line = this.scanner.lineNumber;
this.lastMarker.column = this.scanner.index - this.scanner.lineStart;
return this.finalize(node, new JSXNode.JSXEmptyExpression());
};
JSXParser.prototype.parseJSXExpressionContainer = function () {
var node = this.createJSXNode();
this.expectJSX('{');
var expression;
if (this.matchJSX('}')) {
expression = this.parseJSXEmptyExpression();
this.expectJSX('}');
}
else {
this.finishJSX();
expression = this.parseAssignmentExpression();
this.reenterJSX();
}
return this.finalize(node, new JSXNode.JSXExpressionContainer(expression));
};
JSXParser.prototype.parseJSXChildren = function () {
var children = [];
while (!this.scanner.eof()) {
var node = this.createJSXChildNode();
var token = this.nextJSXText();
if (token.start < token.end) {
var raw = this.getTokenRaw(token);
var child = this.finalize(node, new JSXNode.JSXText(token.value, raw));
children.push(child);
}
if (this.scanner.source[this.scanner.index] === '{') {
var container = this.parseJSXExpressionContainer();
children.push(container);
}
else {
break;
}
}
return children;
};
JSXParser.prototype.parseComplexJSXElement = function (el) {
var stack = [];
while (!this.scanner.eof()) {
el.children = el.children.concat(this.parseJSXChildren());
var node = this.createJSXChildNode();
var element = this.parseJSXBoundaryElement();
if (element.type === jsx_syntax_1.JSXSyntax.JSXOpeningElement) {
var opening = element;
if (opening.selfClosing) {
var child = this.finalize(node, new JSXNode.JSXElement(opening, [], null));
el.children.push(child);
}
else {
stack.push(el);
el = { node: node, opening: opening, closing: null, children: [] };
}
}
if (element.type === jsx_syntax_1.JSXSyntax.JSXClosingElement) {
el.closing = element;
var open_1 = getQualifiedElementName(el.opening.name);
var close_1 = getQualifiedElementName(el.closing.name);
if (open_1 !== close_1) {
this.tolerateError('Expected corresponding JSX closing tag for %0', open_1);
}
if (stack.length > 0) {
var child = this.finalize(el.node, new JSXNode.JSXElement(el.opening, el.children, el.closing));
el = stack[stack.length - 1];
el.children.push(child);
stack.pop();
}
else {
break;
}
}
}
return el;
};
JSXParser.prototype.parseJSXElement = function () {
var node = this.createJSXNode();
var opening = this.parseJSXOpeningElement();
var children = [];
var closing = null;
if (!opening.selfClosing) {
var el = this.parseComplexJSXElement({ node: node, opening: opening, closing: closing, children: children });
children = el.children;
closing = el.closing;
}
return this.finalize(node, new JSXNode.JSXElement(opening, children, closing));
};
JSXParser.prototype.parseJSXRoot = function () {
// Pop the opening '<' added from the lookahead.
if (this.config.tokens) {
this.tokens.pop();
}
this.startJSX();
var element = this.parseJSXElement();
this.finishJSX();
return element;
};
JSXParser.prototype.isStartOfExpression = function () {
return _super.prototype.isStartOfExpression.call(this) || this.match('<');
};
return JSXParser;
}(parser_1.Parser));
exports.JSXParser = JSXParser;
/***/ },
/* 4 */
/***/ function(module, exports) {
"use strict";
Object.defineProperty(exports, "__esModule", { value: true });
// See also tools/generate-unicode-regex.js.
var Regex = {
// Unicode v8.0.0 NonAsciiIdentifierStart:
NonAsciiIdentifierStart: /[\xAA\xB5\xBA\xC0-\xD6\xD8-\xF6\xF8-\u02C1\u02C6-\u02D1\u02E0-\u02E4\u02EC\u02EE\u0370-\u0374\u0376\u0377\u037A-\u037D\u037F\u0386\u0388-\u038A\u038C\u038E-\u03A1\u03A3-\u03F5\u03F7-\u0481\u048A-\u052F\u0531-\u0556\u0559\u0561-\u0587\u05D0-\u05EA\u05F0-\u05F2\u0620-\u064A\u066E\u066F\u0671-\u06D3\u06D5\u06E5\u06E6\u06EE\u06EF\u06FA-\u06FC\u06FF\u0710\u0712-\u072F\u074D-\u07A5\u07B1\u07CA-\u07EA\u07F4\u07F5\u07FA\u0800-\u0815\u081A\u0824\u0828\u0840-\u0858\u08A0-\u08B4\u0904-\u0939\u093D\u0950\u0958-\u0961\u0971-\u0980\u0985-\u098C\u098F\u0990\u0993-\u09A8\u09AA-\u09B0\u09B2\u09B6-\u09B9\u09BD\u09CE\u09DC\u09DD\u09DF-\u09E1\u09F0\u09F1\u0A05-\u0A0A\u0A0F\u0A10\u0A13-\u0A28\u0A2A-\u0A30\u0A32\u0A33\u0A35\u0A36\u0A38\u0A39\u0A59-\u0A5C\u0A5E\u0A72-\u0A74\u0A85-\u0A8D\u0A8F-\u0A91\u0A93-\u0AA8\u0AAA-\u0AB0\u0AB2\u0AB3\u0AB5-\u0AB9\u0ABD\u0AD0\u0AE0\u0AE1\u0AF9\u0B05-\u0B0C\u0B0F\u0B10\u0B13-\u0B28\u0B2A-\u0B30\u0B32\u0B33\u0B35-\u0B39\u0B3D\u0B5C\u0B5D\u0B5F-\u0B61\u0B71\u0B83\u0B85-\u0B8A\u0B8E-\u0B90\u0B92-\u0B95\u0B99\u0B9A\u0B9C\u0B9E\u0B9F\u0BA3\u0BA4\u0BA8-\u0BAA\u0BAE-\u0BB9\u0BD0\u0C05-\u0C0C\u0C0E-\u0C10\u0C12-\u0C28\u0C2A-\u0C39\u0C3D\u0C58-\u0C5A\u0C60\u0C61\u0C85-\u0C8C\u0C8E-\u0C90\u0C92-\u0CA8\u0CAA-\u0CB3\u0CB5-\u0CB9\u0CBD\u0CDE\u0CE0\u0CE1\u0CF1\u0CF2\u0D05-\u0D0C\u0D0E-\u0D10\u0D12-\u0D3A\u0D3D\u0D4E\u0D5F-\u0D61\u0D7A-\u0D7F\u0D85-\u0D96\u0D9A-\u0DB1\u0DB3-\u0DBB\u0DBD\u0DC0-\u0DC6\u0E01-\u0E30\u0E32\u0E33\u0E40-\u0E46\u0E81\u0E82\u0E84\u0E87\u0E88\u0E8A\u0E8D\u0E94-\u0E97\u0E99-\u0E9F\u0EA1-\u0EA3\u0EA5\u0EA7\u0EAA\u0EAB\u0EAD-\u0EB0\u0EB2\u0EB3\u0EBD\u0EC0-\u0EC4\u0EC6\u0EDC-\u0EDF\u0F00\u0F40-\u0F47\u0F49-\u0F6C\u0F88-\u0F8C\u1000-\u102A\u103F\u1050-\u1055\u105A-\u105D\u1061\u1065\u1066\u106E-\u1070\u1075-\u1081\u108E\u10A0-\u10C5\u10C7\u10CD\u10D0-\u10FA\u10FC-\u1248\u124A-\u124D\u1250-\u1256\u1258\u125A-\u125D\u1260-\u1288\u128A-\u128D\u1290-\u12B0\u12B2-\u12B5\u12B8-\u12BE\u12C0\u12C2-\u12C5\u12C8-\u12D6\u12D8-\u1310\u1312-\u1315\u1318-\u135A\u1380-\u138F\u13A0-\u13F5\u13F8-\u13FD\u1401-\u166C\u166F-\u167F\u1681-\u169A\u16A0-\u16EA\u16EE-\u16F8\u1700-\u170C\u170E-\u1711\u1720-\u1731\u1740-\u1751\u1760-\u176C\u176E-\u1770\u1780-\u17B3\u17D7\u17DC\u1820-\u1877\u1880-\u18A8\u18AA\u18B0-\u18F5\u1900-\u191E\u1950-\u196D\u1970-\u1974\u1980-\u19AB\u19B0-\u19C9\u1A00-\u1A16\u1A20-\u1A54\u1AA7\u1B05-\u1B33\u1B45-\u1B4B\u1B83-\u1BA0\u1BAE\u1BAF\u1BBA-\u1BE5\u1C00-\u1C23\u1C4D-\u1C4F\u1C5A-\u1C7D\u1CE9-\u1CEC\u1CEE-\u1CF1\u1CF5\u1CF6\u1D00-\u1DBF\u1E00-\u1F15\u1F18-\u1F1D\u1F20-\u1F45\u1F48-\u1F4D\u1F50-\u1F57\u1F59\u1F5B\u1F5D\u1F5F-\u1F7D\u1F80-\u1FB4\u1FB6-\u1FBC\u1FBE\u1FC2-\u1FC4\u1FC6-\u1FCC\u1FD0-\u1FD3\u1FD6-\u1FDB\u1FE0-\u1FEC\u1FF2-\u1FF4\u1FF6-\u1FFC\u2071\u207F\u2090-\u209C\u2102\u2107\u210A-\u2113\u2115\u2118-\u211D\u2124\u2126\u2128\u212A-\u2139\u213C-\u213F\u2145-\u2149\u214E\u2160-\u2188\u2C00-\u2C2E\u2C30-\u2C5E\u2C60-\u2CE4\u2CEB-\u2CEE\u2CF2\u2CF3\u2D00-\u2D25\u2D27\u2D2D\u2D30-\u2D67\u2D6F\u2D80-\u2D96\u2DA0-\u2DA6\u2DA8-\u2DAE\u2DB0-\u2DB6\u2DB8-\u2DBE\u2DC0-\u2DC6\u2DC8-\u2DCE\u2DD0-\u2DD6\u2DD8-\u2DDE\u3005-\u3007\u3021-\u3029\u3031-\u3035\u3038-\u303C\u3041-\u3096\u309B-\u309F\u30A1-\u30FA\u30FC-\u30FF\u3105-\u312D\u3131-\u318E\u31A0-\u31BA\u31F0-\u31FF\u3400-\u4DB5\u4E00-\u9FD5\uA000-\uA48C\uA4D0-\uA4FD\uA500-\uA60C\uA610-\uA61F\uA62A\uA62B\uA640-\uA66E\uA67F-\uA69D\uA6A0-\uA6EF\uA717-\uA71F\uA722-\uA788\uA78B-\uA7AD\uA7B0-\uA7B7\uA7F7-\uA801\uA803-\uA805\uA807-\uA80A\uA80C-\uA822\uA840-\uA873\uA882-\uA8B3\uA8F2-\uA8F7\uA8FB\uA8FD\uA90A-\uA925\uA930-\uA946\uA960-\uA97C\uA984-\uA9B2\uA9CF\uA9E0-\uA9E4\uA9E6-\uA9EF\uA9FA-\uA9FE\uAA00-\uAA28\uAA40-\uAA42\uAA44-\uAA4B\uAA60-\uAA76\uAA7A\uAA7E-\uAAAF\uAAB1\uAAB5\uAAB6\uAAB9-\uAABD\uAAC0\uAAC2\uAADB-\uAADD\uAAE0-\uAAEA\uAAF2-\uAAF4\uAB01-\uAB06\uAB09-\uAB0E\uAB11-\uAB16\uAB20-\uAB26\uAB28-\uAB2E\uAB30-\uAB5A\uAB5C-\uAB65\uAB70-\uABE2\uAC00-\uD7A3\uD7B0-\uD7C6\uD7CB-\uD7FB\uF900-\uFA6D\uFA70-\uFAD9\uFB00-\uFB06\uFB13-\uFB17\uFB1D\uFB1F-\uFB28\uFB2A-\uFB36\uFB38-\uFB3C\uFB3E\uFB40\uFB41\uFB43\uFB44\uFB46-\uFBB1\uFBD3-\uFD3D\uFD50-\uFD8F\uFD92-\uFDC7\uFDF0-\uFDFB\uFE70-\uFE74\uFE76-\uFEFC\uFF21-\uFF3A\uFF41-\uFF5A\uFF66-\uFFBE\uFFC2-\uFFC7\uFFCA-\uFFCF\uFFD2-\uFFD7\uFFDA-\uFFDC]|\uD800[\uDC00-\uDC0B\uDC0D-\uDC26\uDC28-\uDC3A\uDC3C\uDC3D\uDC3F-\uDC4D\uDC50-\uDC5D\uDC80-\uDCFA\uDD40-\uDD74\uDE80-\uDE9C\uDEA0-\uDED0\uDF00-\uDF1F\uDF30-\uDF4A\uDF50-\uDF75\uDF80-\uDF9D\uDFA0-\uDFC3\uDFC8-\uDFCF\uDFD1-\uDFD5]|\uD801[\uDC00-\uDC9D\uDD00-\uDD27\uDD30-\uDD63\uDE00-\uDF36\uDF40-\uDF55\uDF60-\uDF67]|\uD802[\uDC00-\uDC05\uDC08\uDC0A-\uDC35\uDC37\uDC38\uDC3C\uDC3F-\uDC55\uDC60-\uDC76\uDC80-\uDC9E\uDCE0-\uDCF2\uDCF4\uDCF5\uDD00-\uDD15\uDD20-\uDD39\uDD80-\uDDB7\uDDBE\uDDBF\uDE00\uDE10-\uDE13\uDE15-\uDE17\uDE19-\uDE33\uDE60-\uDE7C\uDE80-\uDE9C\uDEC0-\uDEC7\uDEC9-\uDEE4\uDF00-\uDF35\uDF40-\uDF55\uDF60-\uDF72\uDF80-\uDF91]|\uD803[\uDC00-\uDC48\uDC80-\uDCB2\uDCC0-\uDCF2]|\uD804[\uDC03-\uDC37\uDC83-\uDCAF\uDCD0-\uDCE8\uDD03-\uDD26\uDD50-\uDD72\uDD76\uDD83-\uDDB2\uDDC1-\uDDC4\uDDDA\uDDDC\uDE00-\uDE11\uDE13-\uDE2B\uDE80-\uDE86\uDE88\uDE8A-\uDE8D\uDE8F-\uDE9D\uDE9F-\uDEA8\uDEB0-\uDEDE\uDF05-\uDF0C\uDF0F\uDF10\uDF13-\uDF28\uDF2A-\uDF30\uDF32\uDF33\uDF35-\uDF39\uDF3D\uDF50\uDF5D-\uDF61]|\uD805[\uDC80-\uDCAF\uDCC4\uDCC5\uDCC7\uDD80-\uDDAE\uDDD8-\uDDDB\uDE00-\uDE2F\uDE44\uDE80-\uDEAA\uDF00-\uDF19]|\uD806[\uDCA0-\uDCDF\uDCFF\uDEC0-\uDEF8]|\uD808[\uDC00-\uDF99]|\uD809[\uDC00-\uDC6E\uDC80-\uDD43]|[\uD80C\uD840-\uD868\uD86A-\uD86C\uD86F-\uD872][\uDC00-\uDFFF]|\uD80D[\uDC00-\uDC2E]|\uD811[\uDC00-\uDE46]|\uD81A[\uDC00-\uDE38\uDE40-\uDE5E\uDED0-\uDEED\uDF00-\uDF2F\uDF40-\uDF43\uDF63-\uDF77\uDF7D-\uDF8F]|\uD81B[\uDF00-\uDF44\uDF50\uDF93-\uDF9F]|\uD82C[\uDC00\uDC01]|\uD82F[\uDC00-\uDC6A\uDC70-\uDC7C\uDC80-\uDC88\uDC90-\uDC99]|\uD835[\uDC00-\uDC54\uDC56-\uDC9C\uDC9E\uDC9F\uDCA2\uDCA5\uDCA6\uDCA9-\uDCAC\uDCAE-\uDCB9\uDCBB\uDCBD-\uDCC3\uDCC5-\uDD05\uDD07-\uDD0A\uDD0D-\uDD14\uDD16-\uDD1C\uDD1E-\uDD39\uDD3B-\uDD3E\uDD40-\uDD44\uDD46\uDD4A-\uDD50\uDD52-\uDEA5\uDEA8-\uDEC0\uDEC2-\uDEDA\uDEDC-\uDEFA\uDEFC-\uDF14\uDF16-\uDF34\uDF36-\uDF4E\uDF50-\uDF6E\uDF70-\uDF88\uDF8A-\uDFA8\uDFAA-\uDFC2\uDFC4-\uDFCB]|\uD83A[\uDC00-\uDCC4]|\uD83B[\uDE00-\uDE03\uDE05-\uDE1F\uDE21\uDE22\uDE24\uDE27\uDE29-\uDE32\uDE34-\uDE37\uDE39\uDE3B\uDE42\uDE47\uDE49\uDE4B\uDE4D-\uDE4F\uDE51\uDE52\uDE54\uDE57\uDE59\uDE5B\uDE5D\uDE5F\uDE61\uDE62\uDE64\uDE67-\uDE6A\uDE6C-\uDE72\uDE74-\uDE77\uDE79-\uDE7C\uDE7E\uDE80-\uDE89\uDE8B-\uDE9B\uDEA1-\uDEA3\uDEA5-\uDEA9\uDEAB-\uDEBB]|\uD869[\uDC00-\uDED6\uDF00-\uDFFF]|\uD86D[\uDC00-\uDF34\uDF40-\uDFFF]|\uD86E[\uDC00-\uDC1D\uDC20-\uDFFF]|\uD873[\uDC00-\uDEA1]|\uD87E[\uDC00-\uDE1D]/,
// Unicode v8.0.0 NonAsciiIdentifierPart:
NonAsciiIdentifierPart: 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};
exports.Character = {
/* tslint:disable:no-bitwise */
fromCodePoint: function (cp) {
return (cp < 0x10000) ? String.fromCharCode(cp) :
String.fromCharCode(0xD800 + ((cp - 0x10000) >> 10)) +
String.fromCharCode(0xDC00 + ((cp - 0x10000) & 1023));
},
// https://tc39.github.io/ecma262/#sec-white-space
isWhiteSpace: function (cp) {
return (cp === 0x20) || (cp === 0x09) || (cp === 0x0B) || (cp === 0x0C) || (cp === 0xA0) ||
(cp >= 0x1680 && [0x1680, 0x2000, 0x2001, 0x2002, 0x2003, 0x2004, 0x2005, 0x2006, 0x2007, 0x2008, 0x2009, 0x200A, 0x202F, 0x205F, 0x3000, 0xFEFF].indexOf(cp) >= 0);
},
// https://tc39.github.io/ecma262/#sec-line-terminators
isLineTerminator: function (cp) {
return (cp === 0x0A) || (cp === 0x0D) || (cp === 0x2028) || (cp === 0x2029);
},
// https://tc39.github.io/ecma262/#sec-names-and-keywords
isIdentifierStart: function (cp) {
return (cp === 0x24) || (cp === 0x5F) ||
(cp >= 0x41 && cp <= 0x5A) ||
(cp >= 0x61 && cp <= 0x7A) ||
(cp === 0x5C) ||
((cp >= 0x80) && Regex.NonAsciiIdentifierStart.test(exports.Character.fromCodePoint(cp)));
},
isIdentifierPart: function (cp) {
return (cp === 0x24) || (cp === 0x5F) ||
(cp >= 0x41 && cp <= 0x5A) ||
(cp >= 0x61 && cp <= 0x7A) ||
(cp >= 0x30 && cp <= 0x39) ||
(cp === 0x5C) ||
((cp >= 0x80) && Regex.NonAsciiIdentifierPart.test(exports.Character.fromCodePoint(cp)));
},
// https://tc39.github.io/ecma262/#sec-literals-numeric-literals
isDecimalDigit: function (cp) {
return (cp >= 0x30 && cp <= 0x39); // 0..9
},
isHexDigit: function (cp) {
return (cp >= 0x30 && cp <= 0x39) ||
(cp >= 0x41 && cp <= 0x46) ||
(cp >= 0x61 && cp <= 0x66); // a..f
},
isOctalDigit: function (cp) {
return (cp >= 0x30 && cp <= 0x37); // 0..7
}
};
/***/ },
/* 5 */
/***/ function(module, exports, __nested_webpack_require_54354__) {
"use strict";
Object.defineProperty(exports, "__esModule", { value: true });
var jsx_syntax_1 = __nested_webpack_require_54354__(6);
/* tslint:disable:max-classes-per-file */
var JSXClosingElement = (function () {
function JSXClosingElement(name) {
this.type = jsx_syntax_1.JSXSyntax.JSXClosingElement;
this.name = name;
}
return JSXClosingElement;
}());
exports.JSXClosingElement = JSXClosingElement;
var JSXElement = (function () {
function JSXElement(openingElement, children, closingElement) {
this.type = jsx_syntax_1.JSXSyntax.JSXElement;
this.openingElement = openingElement;
this.children = children;
this.closingElement = closingElement;
}
return JSXElement;
}());
exports.JSXElement = JSXElement;
var JSXEmptyExpression = (function () {
function JSXEmptyExpression() {
this.type = jsx_syntax_1.JSXSyntax.JSXEmptyExpression;
}
return JSXEmptyExpression;
}());
exports.JSXEmptyExpression = JSXEmptyExpression;
var JSXExpressionContainer = (function () {
function JSXExpressionContainer(expression) {
this.type = jsx_syntax_1.JSXSyntax.JSXExpressionContainer;
this.expression = expression;
}
return JSXExpressionContainer;
}());
exports.JSXExpressionContainer = JSXExpressionContainer;
var JSXIdentifier = (function () {
function JSXIdentifier(name) {
this.type = jsx_syntax_1.JSXSyntax.JSXIdentifier;
this.name = name;
}
return JSXIdentifier;
}());
exports.JSXIdentifier = JSXIdentifier;
var JSXMemberExpression = (function () {
function JSXMemberExpression(object, property) {
this.type = jsx_syntax_1.JSXSyntax.JSXMemberExpression;
this.object = object;
this.property = property;
}
return JSXMemberExpression;
}());
exports.JSXMemberExpression = JSXMemberExpression;
var JSXAttribute = (function () {
function JSXAttribute(name, value) {
this.type = jsx_syntax_1.JSXSyntax.JSXAttribute;
this.name = name;
this.value = value;
}
return JSXAttribute;
}());
exports.JSXAttribute = JSXAttribute;
var JSXNamespacedName = (function () {
function JSXNamespacedName(namespace, name) {
this.type = jsx_syntax_1.JSXSyntax.JSXNamespacedName;
this.namespace = namespace;
this.name = name;
}
return JSXNamespacedName;
}());
exports.JSXNamespacedName = JSXNamespacedName;
var JSXOpeningElement = (function () {
function JSXOpeningElement(name, selfClosing, attributes) {
this.type = jsx_syntax_1.JSXSyntax.JSXOpeningElement;
this.name = name;
this.selfClosing = selfClosing;
this.attributes = attributes;
}
return JSXOpeningElement;
}());
exports.JSXOpeningElement = JSXOpeningElement;
var JSXSpreadAttribute = (function () {
function JSXSpreadAttribute(argument) {
this.type = jsx_syntax_1.JSXSyntax.JSXSpreadAttribute;
this.argument = argument;
}
return JSXSpreadAttribute;
}());
exports.JSXSpreadAttribute = JSXSpreadAttribute;
var JSXText = (function () {
function JSXText(value, raw) {
this.type = jsx_syntax_1.JSXSyntax.JSXText;
this.value = value;
this.raw = raw;
}
return JSXText;
}());
exports.JSXText = JSXText;
/***/ },
/* 6 */
/***/ function(module, exports) {
"use strict";
Object.defineProperty(exports, "__esModule", { value: true });
exports.JSXSyntax = {
JSXAttribute: 'JSXAttribute',
JSXClosingElement: 'JSXClosingElement',
JSXElement: 'JSXElement',
JSXEmptyExpression: 'JSXEmptyExpression',
JSXExpressionContainer: 'JSXExpressionContainer',
JSXIdentifier: 'JSXIdentifier',
JSXMemberExpression: 'JSXMemberExpression',
JSXNamespacedName: 'JSXNamespacedName',
JSXOpeningElement: 'JSXOpeningElement',
JSXSpreadAttribute: 'JSXSpreadAttribute',
JSXText: 'JSXText'
};
/***/ },
/* 7 */
/***/ function(module, exports, __nested_webpack_require_58416__) {
"use strict";
Object.defineProperty(exports, "__esModule", { value: true });
var syntax_1 = __nested_webpack_require_58416__(2);
/* tslint:disable:max-classes-per-file */
var ArrayExpression = (function () {
function ArrayExpression(elements) {
this.type = syntax_1.Syntax.ArrayExpression;
this.elements = elements;
}
return ArrayExpression;
}());
exports.ArrayExpression = ArrayExpression;
var ArrayPattern = (function () {
function ArrayPattern(elements) {
this.type = syntax_1.Syntax.ArrayPattern;
this.elements = elements;
}
return ArrayPattern;
}());
exports.ArrayPattern = ArrayPattern;
var ArrowFunctionExpression = (function () {
function ArrowFunctionExpression(params, body, expression) {
this.type = syntax_1.Syntax.ArrowFunctionExpression;
this.id = null;
this.params = params;
this.body = body;
this.generator = false;
this.expression = expression;
this.async = false;
}
return ArrowFunctionExpression;
}());
exports.ArrowFunctionExpression = ArrowFunctionExpression;
var AssignmentExpression = (function () {
function AssignmentExpression(operator, left, right) {
this.type = syntax_1.Syntax.AssignmentExpression;
this.operator = operator;
this.left = left;
this.right = right;
}
return AssignmentExpression;
}());
exports.AssignmentExpression = AssignmentExpression;
var AssignmentPattern = (function () {
function AssignmentPattern(left, right) {
this.type = syntax_1.Syntax.AssignmentPattern;
this.left = left;
this.right = right;
}
return AssignmentPattern;
}());
exports.AssignmentPattern = AssignmentPattern;
var AsyncArrowFunctionExpression = (function () {
function AsyncArrowFunctionExpression(params, body, expression) {
this.type = syntax_1.Syntax.ArrowFunctionExpression;
this.id = null;
this.params = params;
this.body = body;
this.generator = false;
this.expression = expression;
this.async = true;
}
return AsyncArrowFunctionExpression;
}());
exports.AsyncArrowFunctionExpression = AsyncArrowFunctionExpression;
var AsyncFunctionDeclaration = (function () {
function AsyncFunctionDeclaration(id, params, body) {
this.type = syntax_1.Syntax.FunctionDeclaration;
this.id = id;
this.params = params;
this.body = body;
this.generator = false;
this.expression = false;
this.async = true;
}
return AsyncFunctionDeclaration;
}());
exports.AsyncFunctionDeclaration = AsyncFunctionDeclaration;
var AsyncFunctionExpression = (function () {
function AsyncFunctionExpression(id, params, body) {
this.type = syntax_1.Syntax.FunctionExpression;
this.id = id;
this.params = params;
this.body = body;
this.generator = false;
this.expression = false;
this.async = true;
}
return AsyncFunctionExpression;
}());
exports.AsyncFunctionExpression = AsyncFunctionExpression;
var AwaitExpression = (function () {
function AwaitExpression(argument) {
this.type = syntax_1.Syntax.AwaitExpression;
this.argument = argument;
}
return AwaitExpression;
}());
exports.AwaitExpression = AwaitExpression;
var BinaryExpression = (function () {
function BinaryExpression(operator, left, right) {
var logical = (operator === '||' || operator === '&&');
this.type = logical ? syntax_1.Syntax.LogicalExpression : syntax_1.Syntax.BinaryExpression;
this.operator = operator;
this.left = left;
this.right = right;
}
return BinaryExpression;
}());
exports.BinaryExpression = BinaryExpression;
var BlockStatement = (function () {
function BlockStatement(body) {
this.type = syntax_1.Syntax.BlockStatement;
this.body = body;
}
return BlockStatement;
}());
exports.BlockStatement = BlockStatement;
var BreakStatement = (function () {
function BreakStatement(label) {
this.type = syntax_1.Syntax.BreakStatement;
this.label = label;
}
return BreakStatement;
}());
exports.BreakStatement = BreakStatement;
var CallExpression = (function () {
function CallExpression(callee, args) {
this.type = syntax_1.Syntax.CallExpression;
this.callee = callee;
this.arguments = args;
}
return CallExpression;
}());
exports.CallExpression = CallExpression;
var CatchClause = (function () {
function CatchClause(param, body) {
this.type = syntax_1.Syntax.CatchClause;
this.param = param;
this.body = body;
}
return CatchClause;
}());
exports.CatchClause = CatchClause;
var ClassBody = (function () {
function ClassBody(body) {
this.type = syntax_1.Syntax.ClassBody;
this.body = body;
}
return ClassBody;
}());
exports.ClassBody = ClassBody;
var ClassDeclaration = (function () {
function ClassDeclaration(id, superClass, body) {
this.type = syntax_1.Syntax.ClassDeclaration;
this.id = id;
this.superClass = superClass;
this.body = body;
}
return ClassDeclaration;
}());
exports.ClassDeclaration = ClassDeclaration;
var ClassExpression = (function () {
function ClassExpression(id, superClass, body) {
this.type = syntax_1.Syntax.ClassExpression;
this.id = id;
this.superClass = superClass;
this.body = body;
}
return ClassExpression;
}());
exports.ClassExpression = ClassExpression;
var ComputedMemberExpression = (function () {
function ComputedMemberExpression(object, property) {
this.type = syntax_1.Syntax.MemberExpression;
this.computed = true;
this.object = object;
this.property = property;
}
return ComputedMemberExpression;
}());
exports.ComputedMemberExpression = ComputedMemberExpression;
var ConditionalExpression = (function () {
function ConditionalExpression(test, consequent, alternate) {
this.type = syntax_1.Syntax.ConditionalExpression;
this.test = test;
this.consequent = consequent;
this.alternate = alternate;
}
return ConditionalExpression;
}());
exports.ConditionalExpression = ConditionalExpression;
var ContinueStatement = (function () {
function ContinueStatement(label) {
this.type = syntax_1.Syntax.ContinueStatement;
this.label = label;
}
return ContinueStatement;
}());
exports.ContinueStatement = ContinueStatement;
var DebuggerStatement = (function () {
function DebuggerStatement() {
this.type = syntax_1.Syntax.DebuggerStatement;
}
return DebuggerStatement;
}());
exports.DebuggerStatement = DebuggerStatement;
var Directive = (function () {
function Directive(expression, directive) {
this.type = syntax_1.Syntax.ExpressionStatement;
this.expression = expression;
this.directive = directive;
}
return Directive;
}());
exports.Directive = Directive;
var DoWhileStatement = (function () {
function DoWhileStatement(body, test) {
this.type = syntax_1.Syntax.DoWhileStatement;
this.body = body;
this.test = test;
}
return DoWhileStatement;
}());
exports.DoWhileStatement = DoWhileStatement;
var EmptyStatement = (function () {
function EmptyStatement() {
this.type = syntax_1.Syntax.EmptyStatement;
}
return EmptyStatement;
}());
exports.EmptyStatement = EmptyStatement;
var ExportAllDeclaration = (function () {
function ExportAllDeclaration(source) {
this.type = syntax_1.Syntax.ExportAllDeclaration;
this.source = source;
}
return ExportAllDeclaration;
}());
exports.ExportAllDeclaration = ExportAllDeclaration;
var ExportDefaultDeclaration = (function () {
function ExportDefaultDeclaration(declaration) {
this.type = syntax_1.Syntax.ExportDefaultDeclaration;
this.declaration = declaration;
}
return ExportDefaultDeclaration;
}());
exports.ExportDefaultDeclaration = ExportDefaultDeclaration;
var ExportNamedDeclaration = (function () {
function ExportNamedDeclaration(declaration, specifiers, source) {
this.type = syntax_1.Syntax.ExportNamedDeclaration;
this.declaration = declaration;
this.specifiers = specifiers;
this.source = source;
}
return ExportNamedDeclaration;
}());
exports.ExportNamedDeclaration = ExportNamedDeclaration;
var ExportSpecifier = (function () {
function ExportSpecifier(local, exported) {
this.type = syntax_1.Syntax.ExportSpecifier;
this.exported = exported;
this.local = local;
}
return ExportSpecifier;
}());
exports.ExportSpecifier = ExportSpecifier;
var ExpressionStatement = (function () {
function ExpressionStatement(expression) {
this.type = syntax_1.Syntax.ExpressionStatement;
this.expression = expression;
}
return ExpressionStatement;
}());
exports.ExpressionStatement = ExpressionStatement;
var ForInStatement = (function () {
function ForInStatement(left, right, body) {
this.type = syntax_1.Syntax.ForInStatement;
this.left = left;
this.right = right;
this.body = body;
this.each = false;
}
return ForInStatement;
}());
exports.ForInStatement = ForInStatement;
var ForOfStatement = (function () {
function ForOfStatement(left, right, body) {
this.type = syntax_1.Syntax.ForOfStatement;
this.left = left;
this.right = right;
this.body = body;
}
return ForOfStatement;
}());
exports.ForOfStatement = ForOfStatement;
var ForStatement = (function () {
function ForStatement(init, test, update, body) {
this.type = syntax_1.Syntax.ForStatement;
this.init = init;
this.test = test;
this.update = update;
this.body = body;
}
return ForStatement;
}());
exports.ForStatement = ForStatement;
var FunctionDeclaration = (function () {
function FunctionDeclaration(id, params, body, generator) {
this.type = syntax_1.Syntax.FunctionDeclaration;
this.id = id;
this.params = params;
this.body = body;
this.generator = generator;
this.expression = false;
this.async = false;
}
return FunctionDeclaration;
}());
exports.FunctionDeclaration = FunctionDeclaration;
var FunctionExpression = (function () {
function FunctionExpression(id, params, body, generator) {
this.type = syntax_1.Syntax.FunctionExpression;
this.id = id;
this.params = params;
this.body = body;
this.generator = generator;
this.expression = false;
this.async = false;
}
return FunctionExpression;
}());
exports.FunctionExpression = FunctionExpression;
var Identifier = (function () {
function Identifier(name) {
this.type = syntax_1.Syntax.Identifier;
this.name = name;
}
return Identifier;
}());
exports.Identifier = Identifier;
var IfStatement = (function () {
function IfStatement(test, consequent, alternate) {
this.type = syntax_1.Syntax.IfStatement;
this.test = test;
this.consequent = consequent;
this.alternate = alternate;
}
return IfStatement;
}());
exports.IfStatement = IfStatement;
var ImportDeclaration = (function () {
function ImportDeclaration(specifiers, source) {
this.type = syntax_1.Syntax.ImportDeclaration;
this.specifiers = specifiers;
this.source = source;
}
return ImportDeclaration;
}());
exports.ImportDeclaration = ImportDeclaration;
var ImportDefaultSpecifier = (function () {
function ImportDefaultSpecifier(local) {
this.type = syntax_1.Syntax.ImportDefaultSpecifier;
this.local = local;
}
return ImportDefaultSpecifier;
}());
exports.ImportDefaultSpecifier = ImportDefaultSpecifier;
var ImportNamespaceSpecifier = (function () {
function ImportNamespaceSpecifier(local) {
this.type = syntax_1.Syntax.ImportNamespaceSpecifier;
this.local = local;
}
return ImportNamespaceSpecifier;
}());
exports.ImportNamespaceSpecifier = ImportNamespaceSpecifier;
var ImportSpecifier = (function () {
function ImportSpecifier(local, imported) {
this.type = syntax_1.Syntax.ImportSpecifier;
this.local = local;
this.imported = imported;
}
return ImportSpecifier;
}());
exports.ImportSpecifier = ImportSpecifier;
var LabeledStatement = (function () {
function LabeledStatement(label, body) {
this.type = syntax_1.Syntax.LabeledStatement;
this.label = label;
this.body = body;
}
return LabeledStatement;
}());
exports.LabeledStatement = LabeledStatement;
var Literal = (function () {
function Literal(value, raw) {
this.type = syntax_1.Syntax.Literal;
this.value = value;
this.raw = raw;
}
return Literal;
}());
exports.Literal = Literal;
var MetaProperty = (function () {
function MetaProperty(meta, property) {
this.type = syntax_1.Syntax.MetaProperty;
this.meta = meta;
this.property = property;
}
return MetaProperty;
}());
exports.MetaProperty = MetaProperty;
var MethodDefinition = (function () {
function MethodDefinition(key, computed, value, kind, isStatic) {
this.type = syntax_1.Syntax.MethodDefinition;
this.key = key;
this.computed = computed;
this.value = value;
this.kind = kind;
this.static = isStatic;
}
return MethodDefinition;
}());
exports.MethodDefinition = MethodDefinition;
var Module = (function () {
function Module(body) {
this.type = syntax_1.Syntax.Program;
this.body = body;
this.sourceType = 'module';
}
return Module;
}());
exports.Module = Module;
var NewExpression = (function () {
function NewExpression(callee, args) {
this.type = syntax_1.Syntax.NewExpression;
this.callee = callee;
this.arguments = args;
}
return NewExpression;
}());
exports.NewExpression = NewExpression;
var ObjectExpression = (function () {
function ObjectExpression(properties) {
this.type = syntax_1.Syntax.ObjectExpression;
this.properties = properties;
}
return ObjectExpression;
}());
exports.ObjectExpression = ObjectExpression;
var ObjectPattern = (function () {
function ObjectPattern(properties) {
this.type = syntax_1.Syntax.ObjectPattern;
this.properties = properties;
}
return ObjectPattern;
}());
exports.ObjectPattern = ObjectPattern;
var Property = (function () {
function Property(kind, key, computed, value, method, shorthand) {
this.type = syntax_1.Syntax.Property;
this.key = key;
this.computed = computed;
this.value = value;
this.kind = kind;
this.method = method;
this.shorthand = shorthand;
}
return Property;
}());
exports.Property = Property;
var RegexLiteral = (function () {
function RegexLiteral(value, raw, pattern, flags) {
this.type = syntax_1.Syntax.Literal;
this.value = value;
this.raw = raw;
this.regex = { pattern: pattern, flags: flags };
}
return RegexLiteral;
}());
exports.RegexLiteral = RegexLiteral;
var RestElement = (function () {
function RestElement(argument) {
this.type = syntax_1.Syntax.RestElement;
this.argument = argument;
}
return RestElement;
}());
exports.RestElement = RestElement;
var ReturnStatement = (function () {
function ReturnStatement(argument) {
this.type = syntax_1.Syntax.ReturnStatement;
this.argument = argument;
}
return ReturnStatement;
}());
exports.ReturnStatement = ReturnStatement;
var Script = (function () {
function Script(body) {
this.type = syntax_1.Syntax.Program;
this.body = body;
this.sourceType = 'script';
}
return Script;
}());
exports.Script = Script;
var SequenceExpression = (function () {
function SequenceExpression(expressions) {
this.type = syntax_1.Syntax.SequenceExpression;
this.expressions = expressions;
}
return SequenceExpression;
}());
exports.SequenceExpression = SequenceExpression;
var SpreadElement = (function () {
function SpreadElement(argument) {
this.type = syntax_1.Syntax.SpreadElement;
this.argument = argument;
}
return SpreadElement;
}());
exports.SpreadElement = SpreadElement;
var StaticMemberExpression = (function () {
function StaticMemberExpression(object, property) {
this.type = syntax_1.Syntax.MemberExpression;
this.computed = false;
this.object = object;
this.property = property;
}
return StaticMemberExpression;
}());
exports.StaticMemberExpression = StaticMemberExpression;
var Super = (function () {
function Super() {
this.type = syntax_1.Syntax.Super;
}
return Super;
}());
exports.Super = Super;
var SwitchCase = (function () {
function SwitchCase(test, consequent) {
this.type = syntax_1.Syntax.SwitchCase;
this.test = test;
this.consequent = consequent;
}
return SwitchCase;
}());
exports.SwitchCase = SwitchCase;
var SwitchStatement = (function () {
function SwitchStatement(discriminant, cases) {
this.type = syntax_1.Syntax.SwitchStatement;
this.discriminant = discriminant;
this.cases = cases;
}
return SwitchStatement;
}());
exports.SwitchStatement = SwitchStatement;
var TaggedTemplateExpression = (function () {
function TaggedTemplateExpression(tag, quasi) {
this.type = syntax_1.Syntax.TaggedTemplateExpression;
this.tag = tag;
this.quasi = quasi;
}
return TaggedTemplateExpression;
}());
exports.TaggedTemplateExpression = TaggedTemplateExpression;
var TemplateElement = (function () {
function TemplateElement(value, tail) {
this.type = syntax_1.Syntax.TemplateElement;
this.value = value;
this.tail = tail;
}
return TemplateElement;
}());
exports.TemplateElement = TemplateElement;
var TemplateLiteral = (function () {
function TemplateLiteral(quasis, expressions) {
this.type = syntax_1.Syntax.TemplateLiteral;
this.quasis = quasis;
this.expressions = expressions;
}
return TemplateLiteral;
}());
exports.TemplateLiteral = TemplateLiteral;
var ThisExpression = (function () {
function ThisExpression() {
this.type = syntax_1.Syntax.ThisExpression;
}
return ThisExpression;
}());
exports.ThisExpression = ThisExpression;
var ThrowStatement = (function () {
function ThrowStatement(argument) {
this.type = syntax_1.Syntax.ThrowStatement;
this.argument = argument;
}
return ThrowStatement;
}());
exports.ThrowStatement = ThrowStatement;
var TryStatement = (function () {
function TryStatement(block, handler, finalizer) {
this.type = syntax_1.Syntax.TryStatement;
this.block = block;
this.handler = handler;
this.finalizer = finalizer;
}
return TryStatement;
}());
exports.TryStatement = TryStatement;
var UnaryExpression = (function () {
function UnaryExpression(operator, argument) {
this.type = syntax_1.Syntax.UnaryExpression;
this.operator = operator;
this.argument = argument;
this.prefix = true;
}
return UnaryExpression;
}());
exports.UnaryExpression = UnaryExpression;
var UpdateExpression = (function () {
function UpdateExpression(operator, argument, prefix) {
this.type = syntax_1.Syntax.UpdateExpression;
this.operator = operator;
this.argument = argument;
this.prefix = prefix;
}
return UpdateExpression;
}());
exports.UpdateExpression = UpdateExpression;
var VariableDeclaration = (function () {
function VariableDeclaration(declarations, kind) {
this.type = syntax_1.Syntax.VariableDeclaration;
this.declarations = declarations;
this.kind = kind;
}
return VariableDeclaration;
}());
exports.VariableDeclaration = VariableDeclaration;
var VariableDeclarator = (function () {
function VariableDeclarator(id, init) {
this.type = syntax_1.Syntax.VariableDeclarator;
this.id = id;
this.init = init;
}
return VariableDeclarator;
}());
exports.VariableDeclarator = VariableDeclarator;
var WhileStatement = (function () {
function WhileStatement(test, body) {
this.type = syntax_1.Syntax.WhileStatement;
this.test = test;
this.body = body;
}
return WhileStatement;
}());
exports.WhileStatement = WhileStatement;
var WithStatement = (function () {
function WithStatement(object, body) {
this.type = syntax_1.Syntax.WithStatement;
this.object = object;
this.body = body;
}
return WithStatement;
}());
exports.WithStatement = WithStatement;
var YieldExpression = (function () {
function YieldExpression(argument, delegate) {
this.type = syntax_1.Syntax.YieldExpression;
this.argument = argument;
this.delegate = delegate;
}
return YieldExpression;
}());
exports.YieldExpression = YieldExpression;
/***/ },
/* 8 */
/***/ function(module, exports, __nested_webpack_require_80491__) {
"use strict";
Object.defineProperty(exports, "__esModule", { value: true });
var assert_1 = __nested_webpack_require_80491__(9);
var error_handler_1 = __nested_webpack_require_80491__(10);
var messages_1 = __nested_webpack_require_80491__(11);
var Node = __nested_webpack_require_80491__(7);
var scanner_1 = __nested_webpack_require_80491__(12);
var syntax_1 = __nested_webpack_require_80491__(2);
var token_1 = __nested_webpack_require_80491__(13);
var ArrowParameterPlaceHolder = 'ArrowParameterPlaceHolder';
var Parser = (function () {
function Parser(code, options, delegate) {
if (options === void 0) { options = {}; }
this.config = {
range: (typeof options.range === 'boolean') && options.range,
loc: (typeof options.loc === 'boolean') && options.loc,
source: null,
tokens: (typeof options.tokens === 'boolean') && options.tokens,
comment: (typeof options.comment === 'boolean') && options.comment,
tolerant: (typeof options.tolerant === 'boolean') && options.tolerant
};
if (this.config.loc && options.source && options.source !== null) {
this.config.source = String(options.source);
}
this.delegate = delegate;
this.errorHandler = new error_handler_1.ErrorHandler();
this.errorHandler.tolerant = this.config.tolerant;
this.scanner = new scanner_1.Scanner(code, this.errorHandler);
this.scanner.trackComment = this.config.comment;
this.operatorPrecedence = {
')': 0,
';': 0,
',': 0,
'=': 0,
']': 0,
'||': 1,
'&&': 2,
'|': 3,
'^': 4,
'&': 5,
'==': 6,
'!=': 6,
'===': 6,
'!==': 6,
'<': 7,
'>': 7,
'<=': 7,
'>=': 7,
'<<': 8,
'>>': 8,
'>>>': 8,
'+': 9,
'-': 9,
'*': 11,
'/': 11,
'%': 11
};
this.lookahead = {
type: 2 /* EOF */,
value: '',
lineNumber: this.scanner.lineNumber,
lineStart: 0,
start: 0,
end: 0
};
this.hasLineTerminator = false;
this.context = {
isModule: false,
await: false,
allowIn: true,
allowStrictDirective: true,
allowYield: true,
firstCoverInitializedNameError: null,
isAssignmentTarget: false,
isBindingElement: false,
inFunctionBody: false,
inIteration: false,
inSwitch: false,
labelSet: {},
strict: false
};
this.tokens = [];
this.startMarker = {
index: 0,
line: this.scanner.lineNumber,
column: 0
};
this.lastMarker = {
index: 0,
line: this.scanner.lineNumber,
column: 0
};
this.nextToken();
this.lastMarker = {
index: this.scanner.index,
line: this.scanner.lineNumber,
column: this.scanner.index - this.scanner.lineStart
};
}
Parser.prototype.throwError = function (messageFormat) {
var values = [];
for (var _i = 1; _i < arguments.length; _i++) {
values[_i - 1] = arguments[_i];
}
var args = Array.prototype.slice.call(arguments, 1);
var msg = messageFormat.replace(/%(\d)/g, function (whole, idx) {
assert_1.assert(idx < args.length, 'Message reference must be in range');
return args[idx];
});
var index = this.lastMarker.index;
var line = this.lastMarker.line;
var column = this.lastMarker.column + 1;
throw this.errorHandler.createError(index, line, column, msg);
};
Parser.prototype.tolerateError = function (messageFormat) {
var values = [];
for (var _i = 1; _i < arguments.length; _i++) {
values[_i - 1] = arguments[_i];
}
var args = Array.prototype.slice.call(arguments, 1);
var msg = messageFormat.replace(/%(\d)/g, function (whole, idx) {
assert_1.assert(idx < args.length, 'Message reference must be in range');
return args[idx];
});
var index = this.lastMarker.index;
var line = this.scanner.lineNumber;
var column = this.lastMarker.column + 1;
this.errorHandler.tolerateError(index, line, column, msg);
};
// Throw an exception because of the token.
Parser.prototype.unexpectedTokenError = function (token, message) {
var msg = message || messages_1.Messages.UnexpectedToken;
var value;
if (token) {
if (!message) {
msg = (token.type === 2 /* EOF */) ? messages_1.Messages.UnexpectedEOS :
(token.type === 3 /* Identifier */) ? messages_1.Messages.UnexpectedIdentifier :
(token.type === 6 /* NumericLiteral */) ? messages_1.Messages.UnexpectedNumber :
(token.type === 8 /* StringLiteral */) ? messages_1.Messages.UnexpectedString :
(token.type === 10 /* Template */) ? messages_1.Messages.UnexpectedTemplate :
messages_1.Messages.UnexpectedToken;
if (token.type === 4 /* Keyword */) {
if (this.scanner.isFutureReservedWord(token.value)) {
msg = messages_1.Messages.UnexpectedReserved;
}
else if (this.context.strict && this.scanner.isStrictModeReservedWord(token.value)) {
msg = messages_1.Messages.StrictReservedWord;
}
}
}
value = token.value;
}
else {
value = 'ILLEGAL';
}
msg = msg.replace('%0', value);
if (token && typeof token.lineNumber === 'number') {
var index = token.start;
var line = token.lineNumber;
var lastMarkerLineStart = this.lastMarker.index - this.lastMarker.column;
var column = token.start - lastMarkerLineStart + 1;
return this.errorHandler.createError(index, line, column, msg);
}
else {
var index = this.lastMarker.index;
var line = this.lastMarker.line;
var column = this.lastMarker.column + 1;
return this.errorHandler.createError(index, line, column, msg);
}
};
Parser.prototype.throwUnexpectedToken = function (token, message) {
throw this.unexpectedTokenError(token, message);
};
Parser.prototype.tolerateUnexpectedToken = function (token, message) {
this.errorHandler.tolerate(this.unexpectedTokenError(token, message));
};
Parser.prototype.collectComments = function () {
if (!this.config.comment) {
this.scanner.scanComments();
}
else {
var comments = this.scanner.scanComments();
if (comments.length > 0 && this.delegate) {
for (var i = 0; i < comments.length; ++i) {
var e = comments[i];
var node = void 0;
node = {
type: e.multiLine ? 'BlockComment' : 'LineComment',
value: this.scanner.source.slice(e.slice[0], e.slice[1])
};
if (this.config.range) {
node.range = e.range;
}
if (this.config.loc) {
node.loc = e.loc;
}
var metadata = {
start: {
line: e.loc.start.line,
column: e.loc.start.column,
offset: e.range[0]
},
end: {
line: e.loc.end.line,
column: e.loc.end.column,
offset: e.range[1]
}
};
this.delegate(node, metadata);
}
}
}
};
// From internal representation to an external structure
Parser.prototype.getTokenRaw = function (token) {
return this.scanner.source.slice(token.start, token.end);
};
Parser.prototype.convertToken = function (token) {
var t = {
type: token_1.TokenName[token.type],
value: this.getTokenRaw(token)
};
if (this.config.range) {
t.range = [token.start, token.end];
}
if (this.config.loc) {
t.loc = {
start: {
line: this.startMarker.line,
column: this.startMarker.column
},
end: {
line: this.scanner.lineNumber,
column: this.scanner.index - this.scanner.lineStart
}
};
}
if (token.type === 9 /* RegularExpression */) {
var pattern = token.pattern;
var flags = token.flags;
t.regex = { pattern: pattern, flags: flags };
}
return t;
};
Parser.prototype.nextToken = function () {
var token = this.lookahead;
this.lastMarker.index = this.scanner.index;
this.lastMarker.line = this.scanner.lineNumber;
this.lastMarker.column = this.scanner.index - this.scanner.lineStart;
this.collectComments();
if (this.scanner.index !== this.startMarker.index) {
this.startMarker.index = this.scanner.index;
this.startMarker.line = this.scanner.lineNumber;
this.startMarker.column = this.scanner.index - this.scanner.lineStart;
}
var next = this.scanner.lex();
this.hasLineTerminator = (token.lineNumber !== next.lineNumber);
if (next && this.context.strict && next.type === 3 /* Identifier */) {
if (this.scanner.isStrictModeReservedWord(next.value)) {
next.type = 4 /* Keyword */;
}
}
this.lookahead = next;
if (this.config.tokens && next.type !== 2 /* EOF */) {
this.tokens.push(this.convertToken(next));
}
return token;
};
Parser.prototype.nextRegexToken = function () {
this.collectComments();
var token = this.scanner.scanRegExp();
if (this.config.tokens) {
// Pop the previous token, '/' or '/='
// This is added from the lookahead token.
this.tokens.pop();
this.tokens.push(this.convertToken(token));
}
// Prime the next lookahead.
this.lookahead = token;
this.nextToken();
return token;
};
Parser.prototype.createNode = function () {
return {
index: this.startMarker.index,
line: this.startMarker.line,
column: this.startMarker.column
};
};
Parser.prototype.startNode = function (token, lastLineStart) {
if (lastLineStart === void 0) { lastLineStart = 0; }
var column = token.start - token.lineStart;
var line = token.lineNumber;
if (column < 0) {
column += lastLineStart;
line--;
}
return {
index: token.start,
line: line,
column: column
};
};
Parser.prototype.finalize = function (marker, node) {
if (this.config.range) {
node.range = [marker.index, this.lastMarker.index];
}
if (this.config.loc) {
node.loc = {
start: {
line: marker.line,
column: marker.column,
},
end: {
line: this.lastMarker.line,
column: this.lastMarker.column
}
};
if (this.config.source) {
node.loc.source = this.config.source;
}
}
if (this.delegate) {
var metadata = {
start: {
line: marker.line,
column: marker.column,
offset: marker.index
},
end: {
line: this.lastMarker.line,
column: this.lastMarker.column,
offset: this.lastMarker.index
}
};
this.delegate(node, metadata);
}
return node;
};
// Expect the next token to match the specified punctuator.
// If not, an exception will be thrown.
Parser.prototype.expect = function (value) {
var token = this.nextToken();
if (token.type !== 7 /* Punctuator */ || token.value !== value) {
this.throwUnexpectedToken(token);
}
};
// Quietly expect a comma when in tolerant mode, otherwise delegates to expect().
Parser.prototype.expectCommaSeparator = function () {
if (this.config.tolerant) {
var token = this.lookahead;
if (token.type === 7 /* Punctuator */ && token.value === ',') {
this.nextToken();
}
else if (token.type === 7 /* Punctuator */ && token.value === ';') {
this.nextToken();
this.tolerateUnexpectedToken(token);
}
else {
this.tolerateUnexpectedToken(token, messages_1.Messages.UnexpectedToken);
}
}
else {
this.expect(',');
}
};
// Expect the next token to match the specified keyword.
// If not, an exception will be thrown.
Parser.prototype.expectKeyword = function (keyword) {
var token = this.nextToken();
if (token.type !== 4 /* Keyword */ || token.value !== keyword) {
this.throwUnexpectedToken(token);
}
};
// Return true if the next token matches the specified punctuator.
Parser.prototype.match = function (value) {
return this.lookahead.type === 7 /* Punctuator */ && this.lookahead.value === value;
};
// Return true if the next token matches the specified keyword
Parser.prototype.matchKeyword = function (keyword) {
return this.lookahead.type === 4 /* Keyword */ && this.lookahead.value === keyword;
};
// Return true if the next token matches the specified contextual keyword
// (where an identifier is sometimes a keyword depending on the context)
Parser.prototype.matchContextualKeyword = function (keyword) {
return this.lookahead.type === 3 /* Identifier */ && this.lookahead.value === keyword;
};
// Return true if the next token is an assignment operator
Parser.prototype.matchAssign = function () {
if (this.lookahead.type !== 7 /* Punctuator */) {
return false;
}
var op = this.lookahead.value;
return op === '=' ||
op === '*=' ||
op === '**=' ||
op === '/=' ||
op === '%=' ||
op === '+=' ||
op === '-=' ||
op === '<<=' ||
op === '>>=' ||
op === '>>>=' ||
op === '&=' ||
op === '^=' ||
op === '|=';
};
// Cover grammar support.
//
// When an assignment expression position starts with an left parenthesis, the determination of the type
// of the syntax is to be deferred arbitrarily long until the end of the parentheses pair (plus a lookahead)
// or the first comma. This situation also defers the determination of all the expressions nested in the pair.
//
// There are three productions that can be parsed in a parentheses pair that needs to be determined
// after the outermost pair is closed. They are:
//
// 1. AssignmentExpression
// 2. BindingElements
// 3. AssignmentTargets
//
// In order to avoid exponential backtracking, we use two flags to denote if the production can be
// binding element or assignment target.
//
// The three productions have the relationship:
//
// BindingElements ⊆ AssignmentTargets ⊆ AssignmentExpression
//
// with a single exception that CoverInitializedName when used directly in an Expression, generates
// an early error. Therefore, we need the third state, firstCoverInitializedNameError, to track the
// first usage of CoverInitializedName and report it when we reached the end of the parentheses pair.
//
// isolateCoverGrammar function runs the given parser function with a new cover grammar context, and it does not
// effect the current flags. This means the production the parser parses is only used as an expression. Therefore
// the CoverInitializedName check is conducted.
//
// inheritCoverGrammar function runs the given parse function with a new cover grammar context, and it propagates
// the flags outside of the parser. This means the production the parser parses is used as a part of a potential
// pattern. The CoverInitializedName check is deferred.
Parser.prototype.isolateCoverGrammar = function (parseFunction) {
var previousIsBindingElement = this.context.isBindingElement;
var previousIsAssignmentTarget = this.context.isAssignmentTarget;
var previousFirstCoverInitializedNameError = this.context.firstCoverInitializedNameError;
this.context.isBindingElement = true;
this.context.isAssignmentTarget = true;
this.context.firstCoverInitializedNameError = null;
var result = parseFunction.call(this);
if (this.context.firstCoverInitializedNameError !== null) {
this.throwUnexpectedToken(this.context.firstCoverInitializedNameError);
}
this.context.isBindingElement = previousIsBindingElement;
this.context.isAssignmentTarget = previousIsAssignmentTarget;
this.context.firstCoverInitializedNameError = previousFirstCoverInitializedNameError;
return result;
};
Parser.prototype.inheritCoverGrammar = function (parseFunction) {
var previousIsBindingElement = this.context.isBindingElement;
var previousIsAssignmentTarget = this.context.isAssignmentTarget;
var previousFirstCoverInitializedNameError = this.context.firstCoverInitializedNameError;
this.context.isBindingElement = true;
this.context.isAssignmentTarget = true;
this.context.firstCoverInitializedNameError = null;
var result = parseFunction.call(this);
this.context.isBindingElement = this.context.isBindingElement && previousIsBindingElement;
this.context.isAssignmentTarget = this.context.isAssignmentTarget && previousIsAssignmentTarget;
this.context.firstCoverInitializedNameError = previousFirstCoverInitializedNameError || this.context.firstCoverInitializedNameError;
return result;
};
Parser.prototype.consumeSemicolon = function () {
if (this.match(';')) {
this.nextToken();
}
else if (!this.hasLineTerminator) {
if (this.lookahead.type !== 2 /* EOF */ && !this.match('}')) {
this.throwUnexpectedToken(this.lookahead);
}
this.lastMarker.index = this.startMarker.index;
this.lastMarker.line = this.startMarker.line;
this.lastMarker.column = this.startMarker.column;
}
};
// https://tc39.github.io/ecma262/#sec-primary-expression
Parser.prototype.parsePrimaryExpression = function () {
var node = this.createNode();
var expr;
var token, raw;
switch (this.lookahead.type) {
case 3 /* Identifier */:
if ((this.context.isModule || this.context.await) && this.lookahead.value === 'await') {
this.tolerateUnexpectedToken(this.lookahead);
}
expr = this.matchAsyncFunction() ? this.parseFunctionExpression() : this.finalize(node, new Node.Identifier(this.nextToken().value));
break;
case 6 /* NumericLiteral */:
case 8 /* StringLiteral */:
if (this.context.strict && this.lookahead.octal) {
this.tolerateUnexpectedToken(this.lookahead, messages_1.Messages.StrictOctalLiteral);
}
this.context.isAssignmentTarget = false;
this.context.isBindingElement = false;
token = this.nextToken();
raw = this.getTokenRaw(token);
expr = this.finalize(node, new Node.Literal(token.value, raw));
break;
case 1 /* BooleanLiteral */:
this.context.isAssignmentTarget = false;
this.context.isBindingElement = false;
token = this.nextToken();
raw = this.getTokenRaw(token);
expr = this.finalize(node, new Node.Literal(token.value === 'true', raw));
break;
case 5 /* NullLiteral */:
this.context.isAssignmentTarget = false;
this.context.isBindingElement = false;
token = this.nextToken();
raw = this.getTokenRaw(token);
expr = this.finalize(node, new Node.Literal(null, raw));
break;
case 10 /* Template */:
expr = this.parseTemplateLiteral();
break;
case 7 /* Punctuator */:
switch (this.lookahead.value) {
case '(':
this.context.isBindingElement = false;
expr = this.inheritCoverGrammar(this.parseGroupExpression);
break;
case '[':
expr = this.inheritCoverGrammar(this.parseArrayInitializer);
break;
case '{':
expr = this.inheritCoverGrammar(this.parseObjectInitializer);
break;
case '/':
case '/=':
this.context.isAssignmentTarget = false;
this.context.isBindingElement = false;
this.scanner.index = this.startMarker.index;
token = this.nextRegexToken();
raw = this.getTokenRaw(token);
expr = this.finalize(node, new Node.RegexLiteral(token.regex, raw, token.pattern, token.flags));
break;
default:
expr = this.throwUnexpectedToken(this.nextToken());
}
break;
case 4 /* Keyword */:
if (!this.context.strict && this.context.allowYield && this.matchKeyword('yield')) {
expr = this.parseIdentifierName();
}
else if (!this.context.strict && this.matchKeyword('let')) {
expr = this.finalize(node, new Node.Identifier(this.nextToken().value));
}
else {
this.context.isAssignmentTarget = false;
this.context.isBindingElement = false;
if (this.matchKeyword('function')) {
expr = this.parseFunctionExpression();
}
else if (this.matchKeyword('this')) {
this.nextToken();
expr = this.finalize(node, new Node.ThisExpression());
}
else if (this.matchKeyword('class')) {
expr = this.parseClassExpression();
}
else {
expr = this.throwUnexpectedToken(this.nextToken());
}
}
break;
default:
expr = this.throwUnexpectedToken(this.nextToken());
}
return expr;
};
// https://tc39.github.io/ecma262/#sec-array-initializer
Parser.prototype.parseSpreadElement = function () {
var node = this.createNode();
this.expect('...');
var arg = this.inheritCoverGrammar(this.parseAssignmentExpression);
return this.finalize(node, new Node.SpreadElement(arg));
};
Parser.prototype.parseArrayInitializer = function () {
var node = this.createNode();
var elements = [];
this.expect('[');
while (!this.match(']')) {
if (this.match(',')) {
this.nextToken();
elements.push(null);
}
else if (this.match('...')) {
var element = this.parseSpreadElement();
if (!this.match(']')) {
this.context.isAssignmentTarget = false;
this.context.isBindingElement = false;
this.expect(',');
}
elements.push(element);
}
else {
elements.push(this.inheritCoverGrammar(this.parseAssignmentExpression));
if (!this.match(']')) {
this.expect(',');
}
}
}
this.expect(']');
return this.finalize(node, new Node.ArrayExpression(elements));
};
// https://tc39.github.io/ecma262/#sec-object-initializer
Parser.prototype.parsePropertyMethod = function (params) {
this.context.isAssignmentTarget = false;
this.context.isBindingElement = false;
var previousStrict = this.context.strict;
var previousAllowStrictDirective = this.context.allowStrictDirective;
this.context.allowStrictDirective = params.simple;
var body = this.isolateCoverGrammar(this.parseFunctionSourceElements);
if (this.context.strict && params.firstRestricted) {
this.tolerateUnexpectedToken(params.firstRestricted, params.message);
}
if (this.context.strict && params.stricted) {
this.tolerateUnexpectedToken(params.stricted, params.message);
}
this.context.strict = previousStrict;
this.context.allowStrictDirective = previousAllowStrictDirective;
return body;
};
Parser.prototype.parsePropertyMethodFunction = function () {
var isGenerator = false;
var node = this.createNode();
var previousAllowYield = this.context.allowYield;
this.context.allowYield = true;
var params = this.parseFormalParameters();
var method = this.parsePropertyMethod(params);
this.context.allowYield = previousAllowYield;
return this.finalize(node, new Node.FunctionExpression(null, params.params, method, isGenerator));
};
Parser.prototype.parsePropertyMethodAsyncFunction = function () {
var node = this.createNode();
var previousAllowYield = this.context.allowYield;
var previousAwait = this.context.await;
this.context.allowYield = false;
this.context.await = true;
var params = this.parseFormalParameters();
var method = this.parsePropertyMethod(params);
this.context.allowYield = previousAllowYield;
this.context.await = previousAwait;
return this.finalize(node, new Node.AsyncFunctionExpression(null, params.params, method));
};
Parser.prototype.parseObjectPropertyKey = function () {
var node = this.createNode();
var token = this.nextToken();
var key;
switch (token.type) {
case 8 /* StringLiteral */:
case 6 /* NumericLiteral */:
if (this.context.strict && token.octal) {
this.tolerateUnexpectedToken(token, messages_1.Messages.StrictOctalLiteral);
}
var raw = this.getTokenRaw(token);
key = this.finalize(node, new Node.Literal(token.value, raw));
break;
case 3 /* Identifier */:
case 1 /* BooleanLiteral */:
case 5 /* NullLiteral */:
case 4 /* Keyword */:
key = this.finalize(node, new Node.Identifier(token.value));
break;
case 7 /* Punctuator */:
if (token.value === '[') {
key = this.isolateCoverGrammar(this.parseAssignmentExpression);
this.expect(']');
}
else {
key = this.throwUnexpectedToken(token);
}
break;
default:
key = this.throwUnexpectedToken(token);
}
return key;
};
Parser.prototype.isPropertyKey = function (key, value) {
return (key.type === syntax_1.Syntax.Identifier && key.name === value) ||
(key.type === syntax_1.Syntax.Literal && key.value === value);
};
Parser.prototype.parseObjectProperty = function (hasProto) {
var node = this.createNode();
var token = this.lookahead;
var kind;
var key = null;
var value = null;
var computed = false;
var method = false;
var shorthand = false;
var isAsync = false;
if (token.type === 3 /* Identifier */) {
var id = token.value;
this.nextToken();
computed = this.match('[');
isAsync = !this.hasLineTerminator && (id === 'async') &&
!this.match(':') && !this.match('(') && !this.match('*') && !this.match(',');
key = isAsync ? this.parseObjectPropertyKey() : this.finalize(node, new Node.Identifier(id));
}
else if (this.match('*')) {
this.nextToken();
}
else {
computed = this.match('[');
key = this.parseObjectPropertyKey();
}
var lookaheadPropertyKey = this.qualifiedPropertyName(this.lookahead);
if (token.type === 3 /* Identifier */ && !isAsync && token.value === 'get' && lookaheadPropertyKey) {
kind = 'get';
computed = this.match('[');
key = this.parseObjectPropertyKey();
this.context.allowYield = false;
value = this.parseGetterMethod();
}
else if (token.type === 3 /* Identifier */ && !isAsync && token.value === 'set' && lookaheadPropertyKey) {
kind = 'set';
computed = this.match('[');
key = this.parseObjectPropertyKey();
value = this.parseSetterMethod();
}
else if (token.type === 7 /* Punctuator */ && token.value === '*' && lookaheadPropertyKey) {
kind = 'init';
computed = this.match('[');
key = this.parseObjectPropertyKey();
value = this.parseGeneratorMethod();
method = true;
}
else {
if (!key) {
this.throwUnexpectedToken(this.lookahead);
}
kind = 'init';
if (this.match(':') && !isAsync) {
if (!computed && this.isPropertyKey(key, '__proto__')) {
if (hasProto.value) {
this.tolerateError(messages_1.Messages.DuplicateProtoProperty);
}
hasProto.value = true;
}
this.nextToken();
value = this.inheritCoverGrammar(this.parseAssignmentExpression);
}
else if (this.match('(')) {
value = isAsync ? this.parsePropertyMethodAsyncFunction() : this.parsePropertyMethodFunction();
method = true;
}
else if (token.type === 3 /* Identifier */) {
var id = this.finalize(node, new Node.Identifier(token.value));
if (this.match('=')) {
this.context.firstCoverInitializedNameError = this.lookahead;
this.nextToken();
shorthand = true;
var init = this.isolateCoverGrammar(this.parseAssignmentExpression);
value = this.finalize(node, new Node.AssignmentPattern(id, init));
}
else {
shorthand = true;
value = id;
}
}
else {
this.throwUnexpectedToken(this.nextToken());
}
}
return this.finalize(node, new Node.Property(kind, key, computed, value, method, shorthand));
};
Parser.prototype.parseObjectInitializer = function () {
var node = this.createNode();
this.expect('{');
var properties = [];
var hasProto = { value: false };
while (!this.match('}')) {
properties.push(this.parseObjectProperty(hasProto));
if (!this.match('}')) {
this.expectCommaSeparator();
}
}
this.expect('}');
return this.finalize(node, new Node.ObjectExpression(properties));
};
// https://tc39.github.io/ecma262/#sec-template-literals
Parser.prototype.parseTemplateHead = function () {
assert_1.assert(this.lookahead.head, 'Template literal must start with a template head');
var node = this.createNode();
var token = this.nextToken();
var raw = token.value;
var cooked = token.cooked;
return this.finalize(node, new Node.TemplateElement({ raw: raw, cooked: cooked }, token.tail));
};
Parser.prototype.parseTemplateElement = function () {
if (this.lookahead.type !== 10 /* Template */) {
this.throwUnexpectedToken();
}
var node = this.createNode();
var token = this.nextToken();
var raw = token.value;
var cooked = token.cooked;
return this.finalize(node, new Node.TemplateElement({ raw: raw, cooked: cooked }, token.tail));
};
Parser.prototype.parseTemplateLiteral = function () {
var node = this.createNode();
var expressions = [];
var quasis = [];
var quasi = this.parseTemplateHead();
quasis.push(quasi);
while (!quasi.tail) {
expressions.push(this.parseExpression());
quasi = this.parseTemplateElement();
quasis.push(quasi);
}
return this.finalize(node, new Node.TemplateLiteral(quasis, expressions));
};
// https://tc39.github.io/ecma262/#sec-grouping-operator
Parser.prototype.reinterpretExpressionAsPattern = function (expr) {
switch (expr.type) {
case syntax_1.Syntax.Identifier:
case syntax_1.Syntax.MemberExpression:
case syntax_1.Syntax.RestElement:
case syntax_1.Syntax.AssignmentPattern:
break;
case syntax_1.Syntax.SpreadElement:
expr.type = syntax_1.Syntax.RestElement;
this.reinterpretExpressionAsPattern(expr.argument);
break;
case syntax_1.Syntax.ArrayExpression:
expr.type = syntax_1.Syntax.ArrayPattern;
for (var i = 0; i < expr.elements.length; i++) {
if (expr.elements[i] !== null) {
this.reinterpretExpressionAsPattern(expr.elements[i]);
}
}
break;
case syntax_1.Syntax.ObjectExpression:
expr.type = syntax_1.Syntax.ObjectPattern;
for (var i = 0; i < expr.properties.length; i++) {
this.reinterpretExpressionAsPattern(expr.properties[i].value);
}
break;
case syntax_1.Syntax.AssignmentExpression:
expr.type = syntax_1.Syntax.AssignmentPattern;
delete expr.operator;
this.reinterpretExpressionAsPattern(expr.left);
break;
default:
// Allow other node type for tolerant parsing.
break;
}
};
Parser.prototype.parseGroupExpression = function () {
var expr;
this.expect('(');
if (this.match(')')) {
this.nextToken();
if (!this.match('=>')) {
this.expect('=>');
}
expr = {
type: ArrowParameterPlaceHolder,
params: [],
async: false
};
}
else {
var startToken = this.lookahead;
var params = [];
if (this.match('...')) {
expr = this.parseRestElement(params);
this.expect(')');
if (!this.match('=>')) {
this.expect('=>');
}
expr = {
type: ArrowParameterPlaceHolder,
params: [expr],
async: false
};
}
else {
var arrow = false;
this.context.isBindingElement = true;
expr = this.inheritCoverGrammar(this.parseAssignmentExpression);
if (this.match(',')) {
var expressions = [];
this.context.isAssignmentTarget = false;
expressions.push(expr);
while (this.lookahead.type !== 2 /* EOF */) {
if (!this.match(',')) {
break;
}
this.nextToken();
if (this.match(')')) {
this.nextToken();
for (var i = 0; i < expressions.length; i++) {
this.reinterpretExpressionAsPattern(expressions[i]);
}
arrow = true;
expr = {
type: ArrowParameterPlaceHolder,
params: expressions,
async: false
};
}
else if (this.match('...')) {
if (!this.context.isBindingElement) {
this.throwUnexpectedToken(this.lookahead);
}
expressions.push(this.parseRestElement(params));
this.expect(')');
if (!this.match('=>')) {
this.expect('=>');
}
this.context.isBindingElement = false;
for (var i = 0; i < expressions.length; i++) {
this.reinterpretExpressionAsPattern(expressions[i]);
}
arrow = true;
expr = {
type: ArrowParameterPlaceHolder,
params: expressions,
async: false
};
}
else {
expressions.push(this.inheritCoverGrammar(this.parseAssignmentExpression));
}
if (arrow) {
break;
}
}
if (!arrow) {
expr = this.finalize(this.startNode(startToken), new Node.SequenceExpression(expressions));
}
}
if (!arrow) {
this.expect(')');
if (this.match('=>')) {
if (expr.type === syntax_1.Syntax.Identifier && expr.name === 'yield') {
arrow = true;
expr = {
type: ArrowParameterPlaceHolder,
params: [expr],
async: false
};
}
if (!arrow) {
if (!this.context.isBindingElement) {
this.throwUnexpectedToken(this.lookahead);
}
if (expr.type === syntax_1.Syntax.SequenceExpression) {
for (var i = 0; i < expr.expressions.length; i++) {
this.reinterpretExpressionAsPattern(expr.expressions[i]);
}
}
else {
this.reinterpretExpressionAsPattern(expr);
}
var parameters = (expr.type === syntax_1.Syntax.SequenceExpression ? expr.expressions : [expr]);
expr = {
type: ArrowParameterPlaceHolder,
params: parameters,
async: false
};
}
}
this.context.isBindingElement = false;
}
}
}
return expr;
};
// https://tc39.github.io/ecma262/#sec-left-hand-side-expressions
Parser.prototype.parseArguments = function () {
this.expect('(');
var args = [];
if (!this.match(')')) {
while (true) {
var expr = this.match('...') ? this.parseSpreadElement() :
this.isolateCoverGrammar(this.parseAssignmentExpression);
args.push(expr);
if (this.match(')')) {
break;
}
this.expectCommaSeparator();
if (this.match(')')) {
break;
}
}
}
this.expect(')');
return args;
};
Parser.prototype.isIdentifierName = function (token) {
return token.type === 3 /* Identifier */ ||
token.type === 4 /* Keyword */ ||
token.type === 1 /* BooleanLiteral */ ||
token.type === 5 /* NullLiteral */;
};
Parser.prototype.parseIdentifierName = function () {
var node = this.createNode();
var token = this.nextToken();
if (!this.isIdentifierName(token)) {
this.throwUnexpectedToken(token);
}
return this.finalize(node, new Node.Identifier(token.value));
};
Parser.prototype.parseNewExpression = function () {
var node = this.createNode();
var id = this.parseIdentifierName();
assert_1.assert(id.name === 'new', 'New expression must start with `new`');
var expr;
if (this.match('.')) {
this.nextToken();
if (this.lookahead.type === 3 /* Identifier */ && this.context.inFunctionBody && this.lookahead.value === 'target') {
var property = this.parseIdentifierName();
expr = new Node.MetaProperty(id, property);
}
else {
this.throwUnexpectedToken(this.lookahead);
}
}
else {
var callee = this.isolateCoverGrammar(this.parseLeftHandSideExpression);
var args = this.match('(') ? this.parseArguments() : [];
expr = new Node.NewExpression(callee, args);
this.context.isAssignmentTarget = false;
this.context.isBindingElement = false;
}
return this.finalize(node, expr);
};
Parser.prototype.parseAsyncArgument = function () {
var arg = this.parseAssignmentExpression();
this.context.firstCoverInitializedNameError = null;
return arg;
};
Parser.prototype.parseAsyncArguments = function () {
this.expect('(');
var args = [];
if (!this.match(')')) {
while (true) {
var expr = this.match('...') ? this.parseSpreadElement() :
this.isolateCoverGrammar(this.parseAsyncArgument);
args.push(expr);
if (this.match(')')) {
break;
}
this.expectCommaSeparator();
if (this.match(')')) {
break;
}
}
}
this.expect(')');
return args;
};
Parser.prototype.parseLeftHandSideExpressionAllowCall = function () {
var startToken = this.lookahead;
var maybeAsync = this.matchContextualKeyword('async');
var previousAllowIn = this.context.allowIn;
this.context.allowIn = true;
var expr;
if (this.matchKeyword('super') && this.context.inFunctionBody) {
expr = this.createNode();
this.nextToken();
expr = this.finalize(expr, new Node.Super());
if (!this.match('(') && !this.match('.') && !this.match('[')) {
this.throwUnexpectedToken(this.lookahead);
}
}
else {
expr = this.inheritCoverGrammar(this.matchKeyword('new') ? this.parseNewExpression : this.parsePrimaryExpression);
}
while (true) {
if (this.match('.')) {
this.context.isBindingElement = false;
this.context.isAssignmentTarget = true;
this.expect('.');
var property = this.parseIdentifierName();
expr = this.finalize(this.startNode(startToken), new Node.StaticMemberExpression(expr, property));
}
else if (this.match('(')) {
var asyncArrow = maybeAsync && (startToken.lineNumber === this.lookahead.lineNumber);
this.context.isBindingElement = false;
this.context.isAssignmentTarget = false;
var args = asyncArrow ? this.parseAsyncArguments() : this.parseArguments();
expr = this.finalize(this.startNode(startToken), new Node.CallExpression(expr, args));
if (asyncArrow && this.match('=>')) {
for (var i = 0; i < args.length; ++i) {
this.reinterpretExpressionAsPattern(args[i]);
}
expr = {
type: ArrowParameterPlaceHolder,
params: args,
async: true
};
}
}
else if (this.match('[')) {
this.context.isBindingElement = false;
this.context.isAssignmentTarget = true;
this.expect('[');
var property = this.isolateCoverGrammar(this.parseExpression);
this.expect(']');
expr = this.finalize(this.startNode(startToken), new Node.ComputedMemberExpression(expr, property));
}
else if (this.lookahead.type === 10 /* Template */ && this.lookahead.head) {
var quasi = this.parseTemplateLiteral();
expr = this.finalize(this.startNode(startToken), new Node.TaggedTemplateExpression(expr, quasi));
}
else {
break;
}
}
this.context.allowIn = previousAllowIn;
return expr;
};
Parser.prototype.parseSuper = function () {
var node = this.createNode();
this.expectKeyword('super');
if (!this.match('[') && !this.match('.')) {
this.throwUnexpectedToken(this.lookahead);
}
return this.finalize(node, new Node.Super());
};
Parser.prototype.parseLeftHandSideExpression = function () {
assert_1.assert(this.context.allowIn, 'callee of new expression always allow in keyword.');
var node = this.startNode(this.lookahead);
var expr = (this.matchKeyword('super') && this.context.inFunctionBody) ? this.parseSuper() :
this.inheritCoverGrammar(this.matchKeyword('new') ? this.parseNewExpression : this.parsePrimaryExpression);
while (true) {
if (this.match('[')) {
this.context.isBindingElement = false;
this.context.isAssignmentTarget = true;
this.expect('[');
var property = this.isolateCoverGrammar(this.parseExpression);
this.expect(']');
expr = this.finalize(node, new Node.ComputedMemberExpression(expr, property));
}
else if (this.match('.')) {
this.context.isBindingElement = false;
this.context.isAssignmentTarget = true;
this.expect('.');
var property = this.parseIdentifierName();
expr = this.finalize(node, new Node.StaticMemberExpression(expr, property));
}
else if (this.lookahead.type === 10 /* Template */ && this.lookahead.head) {
var quasi = this.parseTemplateLiteral();
expr = this.finalize(node, new Node.TaggedTemplateExpression(expr, quasi));
}
else {
break;
}
}
return expr;
};
// https://tc39.github.io/ecma262/#sec-update-expressions
Parser.prototype.parseUpdateExpression = function () {
var expr;
var startToken = this.lookahead;
if (this.match('++') || this.match('--')) {
var node = this.startNode(startToken);
var token = this.nextToken();
expr = this.inheritCoverGrammar(this.parseUnaryExpression);
if (this.context.strict && expr.type === syntax_1.Syntax.Identifier && this.scanner.isRestrictedWord(expr.name)) {
this.tolerateError(messages_1.Messages.StrictLHSPrefix);
}
if (!this.context.isAssignmentTarget) {
this.tolerateError(messages_1.Messages.InvalidLHSInAssignment);
}
var prefix = true;
expr = this.finalize(node, new Node.UpdateExpression(token.value, expr, prefix));
this.context.isAssignmentTarget = false;
this.context.isBindingElement = false;
}
else {
expr = this.inheritCoverGrammar(this.parseLeftHandSideExpressionAllowCall);
if (!this.hasLineTerminator && this.lookahead.type === 7 /* Punctuator */) {
if (this.match('++') || this.match('--')) {
if (this.context.strict && expr.type === syntax_1.Syntax.Identifier && this.scanner.isRestrictedWord(expr.name)) {
this.tolerateError(messages_1.Messages.StrictLHSPostfix);
}
if (!this.context.isAssignmentTarget) {
this.tolerateError(messages_1.Messages.InvalidLHSInAssignment);
}
this.context.isAssignmentTarget = false;
this.context.isBindingElement = false;
var operator = this.nextToken().value;
var prefix = false;
expr = this.finalize(this.startNode(startToken), new Node.UpdateExpression(operator, expr, prefix));
}
}
}
return expr;
};
// https://tc39.github.io/ecma262/#sec-unary-operators
Parser.prototype.parseAwaitExpression = function () {
var node = this.createNode();
this.nextToken();
var argument = this.parseUnaryExpression();
return this.finalize(node, new Node.AwaitExpression(argument));
};
Parser.prototype.parseUnaryExpression = function () {
var expr;
if (this.match('+') || this.match('-') || this.match('~') || this.match('!') ||
this.matchKeyword('delete') || this.matchKeyword('void') || this.matchKeyword('typeof')) {
var node = this.startNode(this.lookahead);
var token = this.nextToken();
expr = this.inheritCoverGrammar(this.parseUnaryExpression);
expr = this.finalize(node, new Node.UnaryExpression(token.value, expr));
if (this.context.strict && expr.operator === 'delete' && expr.argument.type === syntax_1.Syntax.Identifier) {
this.tolerateError(messages_1.Messages.StrictDelete);
}
this.context.isAssignmentTarget = false;
this.context.isBindingElement = false;
}
else if (this.context.await && this.matchContextualKeyword('await')) {
expr = this.parseAwaitExpression();
}
else {
expr = this.parseUpdateExpression();
}
return expr;
};
Parser.prototype.parseExponentiationExpression = function () {
var startToken = this.lookahead;
var expr = this.inheritCoverGrammar(this.parseUnaryExpression);
if (expr.type !== syntax_1.Syntax.UnaryExpression && this.match('**')) {
this.nextToken();
this.context.isAssignmentTarget = false;
this.context.isBindingElement = false;
var left = expr;
var right = this.isolateCoverGrammar(this.parseExponentiationExpression);
expr = this.finalize(this.startNode(startToken), new Node.BinaryExpression('**', left, right));
}
return expr;
};
// https://tc39.github.io/ecma262/#sec-exp-operator
// https://tc39.github.io/ecma262/#sec-multiplicative-operators
// https://tc39.github.io/ecma262/#sec-additive-operators
// https://tc39.github.io/ecma262/#sec-bitwise-shift-operators
// https://tc39.github.io/ecma262/#sec-relational-operators
// https://tc39.github.io/ecma262/#sec-equality-operators
// https://tc39.github.io/ecma262/#sec-binary-bitwise-operators
// https://tc39.github.io/ecma262/#sec-binary-logical-operators
Parser.prototype.binaryPrecedence = function (token) {
var op = token.value;
var precedence;
if (token.type === 7 /* Punctuator */) {
precedence = this.operatorPrecedence[op] || 0;
}
else if (token.type === 4 /* Keyword */) {
precedence = (op === 'instanceof' || (this.context.allowIn && op === 'in')) ? 7 : 0;
}
else {
precedence = 0;
}
return precedence;
};
Parser.prototype.parseBinaryExpression = function () {
var startToken = this.lookahead;
var expr = this.inheritCoverGrammar(this.parseExponentiationExpression);
var token = this.lookahead;
var prec = this.binaryPrecedence(token);
if (prec > 0) {
this.nextToken();
this.context.isAssignmentTarget = false;
this.context.isBindingElement = false;
var markers = [startToken, this.lookahead];
var left = expr;
var right = this.isolateCoverGrammar(this.parseExponentiationExpression);
var stack = [left, token.value, right];
var precedences = [prec];
while (true) {
prec = this.binaryPrecedence(this.lookahead);
if (prec <= 0) {
break;
}
// Reduce: make a binary expression from the three topmost entries.
while ((stack.length > 2) && (prec <= precedences[precedences.length - 1])) {
right = stack.pop();
var operator = stack.pop();
precedences.pop();
left = stack.pop();
markers.pop();
var node = this.startNode(markers[markers.length - 1]);
stack.push(this.finalize(node, new Node.BinaryExpression(operator, left, right)));
}
// Shift.
stack.push(this.nextToken().value);
precedences.push(prec);
markers.push(this.lookahead);
stack.push(this.isolateCoverGrammar(this.parseExponentiationExpression));
}
// Final reduce to clean-up the stack.
var i = stack.length - 1;
expr = stack[i];
var lastMarker = markers.pop();
while (i > 1) {
var marker = markers.pop();
var lastLineStart = lastMarker && lastMarker.lineStart;
var node = this.startNode(marker, lastLineStart);
var operator = stack[i - 1];
expr = this.finalize(node, new Node.BinaryExpression(operator, stack[i - 2], expr));
i -= 2;
lastMarker = marker;
}
}
return expr;
};
// https://tc39.github.io/ecma262/#sec-conditional-operator
Parser.prototype.parseConditionalExpression = function () {
var startToken = this.lookahead;
var expr = this.inheritCoverGrammar(this.parseBinaryExpression);
if (this.match('?')) {
this.nextToken();
var previousAllowIn = this.context.allowIn;
this.context.allowIn = true;
var consequent = this.isolateCoverGrammar(this.parseAssignmentExpression);
this.context.allowIn = previousAllowIn;
this.expect(':');
var alternate = this.isolateCoverGrammar(this.parseAssignmentExpression);
expr = this.finalize(this.startNode(startToken), new Node.ConditionalExpression(expr, consequent, alternate));
this.context.isAssignmentTarget = false;
this.context.isBindingElement = false;
}
return expr;
};
// https://tc39.github.io/ecma262/#sec-assignment-operators
Parser.prototype.checkPatternParam = function (options, param) {
switch (param.type) {
case syntax_1.Syntax.Identifier:
this.validateParam(options, param, param.name);
break;
case syntax_1.Syntax.RestElement:
this.checkPatternParam(options, param.argument);
break;
case syntax_1.Syntax.AssignmentPattern:
this.checkPatternParam(options, param.left);
break;
case syntax_1.Syntax.ArrayPattern:
for (var i = 0; i < param.elements.length; i++) {
if (param.elements[i] !== null) {
this.checkPatternParam(options, param.elements[i]);
}
}
break;
case syntax_1.Syntax.ObjectPattern:
for (var i = 0; i < param.properties.length; i++) {
this.checkPatternParam(options, param.properties[i].value);
}
break;
default:
break;
}
options.simple = options.simple && (param instanceof Node.Identifier);
};
Parser.prototype.reinterpretAsCoverFormalsList = function (expr) {
var params = [expr];
var options;
var asyncArrow = false;
switch (expr.type) {
case syntax_1.Syntax.Identifier:
break;
case ArrowParameterPlaceHolder:
params = expr.params;
asyncArrow = expr.async;
break;
default:
return null;
}
options = {
simple: true,
paramSet: {}
};
for (var i = 0; i < params.length; ++i) {
var param = params[i];
if (param.type === syntax_1.Syntax.AssignmentPattern) {
if (param.right.type === syntax_1.Syntax.YieldExpression) {
if (param.right.argument) {
this.throwUnexpectedToken(this.lookahead);
}
param.right.type = syntax_1.Syntax.Identifier;
param.right.name = 'yield';
delete param.right.argument;
delete param.right.delegate;
}
}
else if (asyncArrow && param.type === syntax_1.Syntax.Identifier && param.name === 'await') {
this.throwUnexpectedToken(this.lookahead);
}
this.checkPatternParam(options, param);
params[i] = param;
}
if (this.context.strict || !this.context.allowYield) {
for (var i = 0; i < params.length; ++i) {
var param = params[i];
if (param.type === syntax_1.Syntax.YieldExpression) {
this.throwUnexpectedToken(this.lookahead);
}
}
}
if (options.message === messages_1.Messages.StrictParamDupe) {
var token = this.context.strict ? options.stricted : options.firstRestricted;
this.throwUnexpectedToken(token, options.message);
}
return {
simple: options.simple,
params: params,
stricted: options.stricted,
firstRestricted: options.firstRestricted,
message: options.message
};
};
Parser.prototype.parseAssignmentExpression = function () {
var expr;
if (!this.context.allowYield && this.matchKeyword('yield')) {
expr = this.parseYieldExpression();
}
else {
var startToken = this.lookahead;
var token = startToken;
expr = this.parseConditionalExpression();
if (token.type === 3 /* Identifier */ && (token.lineNumber === this.lookahead.lineNumber) && token.value === 'async') {
if (this.lookahead.type === 3 /* Identifier */ || this.matchKeyword('yield')) {
var arg = this.parsePrimaryExpression();
this.reinterpretExpressionAsPattern(arg);
expr = {
type: ArrowParameterPlaceHolder,
params: [arg],
async: true
};
}
}
if (expr.type === ArrowParameterPlaceHolder || this.match('=>')) {
// https://tc39.github.io/ecma262/#sec-arrow-function-definitions
this.context.isAssignmentTarget = false;
this.context.isBindingElement = false;
var isAsync = expr.async;
var list = this.reinterpretAsCoverFormalsList(expr);
if (list) {
if (this.hasLineTerminator) {
this.tolerateUnexpectedToken(this.lookahead);
}
this.context.firstCoverInitializedNameError = null;
var previousStrict = this.context.strict;
var previousAllowStrictDirective = this.context.allowStrictDirective;
this.context.allowStrictDirective = list.simple;
var previousAllowYield = this.context.allowYield;
var previousAwait = this.context.await;
this.context.allowYield = true;
this.context.await = isAsync;
var node = this.startNode(startToken);
this.expect('=>');
var body = void 0;
if (this.match('{')) {
var previousAllowIn = this.context.allowIn;
this.context.allowIn = true;
body = this.parseFunctionSourceElements();
this.context.allowIn = previousAllowIn;
}
else {
body = this.isolateCoverGrammar(this.parseAssignmentExpression);
}
var expression = body.type !== syntax_1.Syntax.BlockStatement;
if (this.context.strict && list.firstRestricted) {
this.throwUnexpectedToken(list.firstRestricted, list.message);
}
if (this.context.strict && list.stricted) {
this.tolerateUnexpectedToken(list.stricted, list.message);
}
expr = isAsync ? this.finalize(node, new Node.AsyncArrowFunctionExpression(list.params, body, expression)) :
this.finalize(node, new Node.ArrowFunctionExpression(list.params, body, expression));
this.context.strict = previousStrict;
this.context.allowStrictDirective = previousAllowStrictDirective;
this.context.allowYield = previousAllowYield;
this.context.await = previousAwait;
}
}
else {
if (this.matchAssign()) {
if (!this.context.isAssignmentTarget) {
this.tolerateError(messages_1.Messages.InvalidLHSInAssignment);
}
if (this.context.strict && expr.type === syntax_1.Syntax.Identifier) {
var id = expr;
if (this.scanner.isRestrictedWord(id.name)) {
this.tolerateUnexpectedToken(token, messages_1.Messages.StrictLHSAssignment);
}
if (this.scanner.isStrictModeReservedWord(id.name)) {
this.tolerateUnexpectedToken(token, messages_1.Messages.StrictReservedWord);
}
}
if (!this.match('=')) {
this.context.isAssignmentTarget = false;
this.context.isBindingElement = false;
}
else {
this.reinterpretExpressionAsPattern(expr);
}
token = this.nextToken();
var operator = token.value;
var right = this.isolateCoverGrammar(this.parseAssignmentExpression);
expr = this.finalize(this.startNode(startToken), new Node.AssignmentExpression(operator, expr, right));
this.context.firstCoverInitializedNameError = null;
}
}
}
return expr;
};
// https://tc39.github.io/ecma262/#sec-comma-operator
Parser.prototype.parseExpression = function () {
var startToken = this.lookahead;
var expr = this.isolateCoverGrammar(this.parseAssignmentExpression);
if (this.match(',')) {
var expressions = [];
expressions.push(expr);
while (this.lookahead.type !== 2 /* EOF */) {
if (!this.match(',')) {
break;
}
this.nextToken();
expressions.push(this.isolateCoverGrammar(this.parseAssignmentExpression));
}
expr = this.finalize(this.startNode(startToken), new Node.SequenceExpression(expressions));
}
return expr;
};
// https://tc39.github.io/ecma262/#sec-block
Parser.prototype.parseStatementListItem = function () {
var statement;
this.context.isAssignmentTarget = true;
this.context.isBindingElement = true;
if (this.lookahead.type === 4 /* Keyword */) {
switch (this.lookahead.value) {
case 'export':
if (!this.context.isModule) {
this.tolerateUnexpectedToken(this.lookahead, messages_1.Messages.IllegalExportDeclaration);
}
statement = this.parseExportDeclaration();
break;
case 'import':
if (!this.context.isModule) {
this.tolerateUnexpectedToken(this.lookahead, messages_1.Messages.IllegalImportDeclaration);
}
statement = this.parseImportDeclaration();
break;
case 'const':
statement = this.parseLexicalDeclaration({ inFor: false });
break;
case 'function':
statement = this.parseFunctionDeclaration();
break;
case 'class':
statement = this.parseClassDeclaration();
break;
case 'let':
statement = this.isLexicalDeclaration() ? this.parseLexicalDeclaration({ inFor: false }) : this.parseStatement();
break;
default:
statement = this.parseStatement();
break;
}
}
else {
statement = this.parseStatement();
}
return statement;
};
Parser.prototype.parseBlock = function () {
var node = this.createNode();
this.expect('{');
var block = [];
while (true) {
if (this.match('}')) {
break;
}
block.push(this.parseStatementListItem());
}
this.expect('}');
return this.finalize(node, new Node.BlockStatement(block));
};
// https://tc39.github.io/ecma262/#sec-let-and-const-declarations
Parser.prototype.parseLexicalBinding = function (kind, options) {
var node = this.createNode();
var params = [];
var id = this.parsePattern(params, kind);
if (this.context.strict && id.type === syntax_1.Syntax.Identifier) {
if (this.scanner.isRestrictedWord(id.name)) {
this.tolerateError(messages_1.Messages.StrictVarName);
}
}
var init = null;
if (kind === 'const') {
if (!this.matchKeyword('in') && !this.matchContextualKeyword('of')) {
if (this.match('=')) {
this.nextToken();
init = this.isolateCoverGrammar(this.parseAssignmentExpression);
}
else {
this.throwError(messages_1.Messages.DeclarationMissingInitializer, 'const');
}
}
}
else if ((!options.inFor && id.type !== syntax_1.Syntax.Identifier) || this.match('=')) {
this.expect('=');
init = this.isolateCoverGrammar(this.parseAssignmentExpression);
}
return this.finalize(node, new Node.VariableDeclarator(id, init));
};
Parser.prototype.parseBindingList = function (kind, options) {
var list = [this.parseLexicalBinding(kind, options)];
while (this.match(',')) {
this.nextToken();
list.push(this.parseLexicalBinding(kind, options));
}
return list;
};
Parser.prototype.isLexicalDeclaration = function () {
var state = this.scanner.saveState();
this.scanner.scanComments();
var next = this.scanner.lex();
this.scanner.restoreState(state);
return (next.type === 3 /* Identifier */) ||
(next.type === 7 /* Punctuator */ && next.value === '[') ||
(next.type === 7 /* Punctuator */ && next.value === '{') ||
(next.type === 4 /* Keyword */ && next.value === 'let') ||
(next.type === 4 /* Keyword */ && next.value === 'yield');
};
Parser.prototype.parseLexicalDeclaration = function (options) {
var node = this.createNode();
var kind = this.nextToken().value;
assert_1.assert(kind === 'let' || kind === 'const', 'Lexical declaration must be either let or const');
var declarations = this.parseBindingList(kind, options);
this.consumeSemicolon();
return this.finalize(node, new Node.VariableDeclaration(declarations, kind));
};
// https://tc39.github.io/ecma262/#sec-destructuring-binding-patterns
Parser.prototype.parseBindingRestElement = function (params, kind) {
var node = this.createNode();
this.expect('...');
var arg = this.parsePattern(params, kind);
return this.finalize(node, new Node.RestElement(arg));
};
Parser.prototype.parseArrayPattern = function (params, kind) {
var node = this.createNode();
this.expect('[');
var elements = [];
while (!this.match(']')) {
if (this.match(',')) {
this.nextToken();
elements.push(null);
}
else {
if (this.match('...')) {
elements.push(this.parseBindingRestElement(params, kind));
break;
}
else {
elements.push(this.parsePatternWithDefault(params, kind));
}
if (!this.match(']')) {
this.expect(',');
}
}
}
this.expect(']');
return this.finalize(node, new Node.ArrayPattern(elements));
};
Parser.prototype.parsePropertyPattern = function (params, kind) {
var node = this.createNode();
var computed = false;
var shorthand = false;
var method = false;
var key;
var value;
if (this.lookahead.type === 3 /* Identifier */) {
var keyToken = this.lookahead;
key = this.parseVariableIdentifier();
var init = this.finalize(node, new Node.Identifier(keyToken.value));
if (this.match('=')) {
params.push(keyToken);
shorthand = true;
this.nextToken();
var expr = this.parseAssignmentExpression();
value = this.finalize(this.startNode(keyToken), new Node.AssignmentPattern(init, expr));
}
else if (!this.match(':')) {
params.push(keyToken);
shorthand = true;
value = init;
}
else {
this.expect(':');
value = this.parsePatternWithDefault(params, kind);
}
}
else {
computed = this.match('[');
key = this.parseObjectPropertyKey();
this.expect(':');
value = this.parsePatternWithDefault(params, kind);
}
return this.finalize(node, new Node.Property('init', key, computed, value, method, shorthand));
};
Parser.prototype.parseObjectPattern = function (params, kind) {
var node = this.createNode();
var properties = [];
this.expect('{');
while (!this.match('}')) {
properties.push(this.parsePropertyPattern(params, kind));
if (!this.match('}')) {
this.expect(',');
}
}
this.expect('}');
return this.finalize(node, new Node.ObjectPattern(properties));
};
Parser.prototype.parsePattern = function (params, kind) {
var pattern;
if (this.match('[')) {
pattern = this.parseArrayPattern(params, kind);
}
else if (this.match('{')) {
pattern = this.parseObjectPattern(params, kind);
}
else {
if (this.matchKeyword('let') && (kind === 'const' || kind === 'let')) {
this.tolerateUnexpectedToken(this.lookahead, messages_1.Messages.LetInLexicalBinding);
}
params.push(this.lookahead);
pattern = this.parseVariableIdentifier(kind);
}
return pattern;
};
Parser.prototype.parsePatternWithDefault = function (params, kind) {
var startToken = this.lookahead;
var pattern = this.parsePattern(params, kind);
if (this.match('=')) {
this.nextToken();
var previousAllowYield = this.context.allowYield;
this.context.allowYield = true;
var right = this.isolateCoverGrammar(this.parseAssignmentExpression);
this.context.allowYield = previousAllowYield;
pattern = this.finalize(this.startNode(startToken), new Node.AssignmentPattern(pattern, right));
}
return pattern;
};
// https://tc39.github.io/ecma262/#sec-variable-statement
Parser.prototype.parseVariableIdentifier = function (kind) {
var node = this.createNode();
var token = this.nextToken();
if (token.type === 4 /* Keyword */ && token.value === 'yield') {
if (this.context.strict) {
this.tolerateUnexpectedToken(token, messages_1.Messages.StrictReservedWord);
}
else if (!this.context.allowYield) {
this.throwUnexpectedToken(token);
}
}
else if (token.type !== 3 /* Identifier */) {
if (this.context.strict && token.type === 4 /* Keyword */ && this.scanner.isStrictModeReservedWord(token.value)) {
this.tolerateUnexpectedToken(token, messages_1.Messages.StrictReservedWord);
}
else {
if (this.context.strict || token.value !== 'let' || kind !== 'var') {
this.throwUnexpectedToken(token);
}
}
}
else if ((this.context.isModule || this.context.await) && token.type === 3 /* Identifier */ && token.value === 'await') {
this.tolerateUnexpectedToken(token);
}
return this.finalize(node, new Node.Identifier(token.value));
};
Parser.prototype.parseVariableDeclaration = function (options) {
var node = this.createNode();
var params = [];
var id = this.parsePattern(params, 'var');
if (this.context.strict && id.type === syntax_1.Syntax.Identifier) {
if (this.scanner.isRestrictedWord(id.name)) {
this.tolerateError(messages_1.Messages.StrictVarName);
}
}
var init = null;
if (this.match('=')) {
this.nextToken();
init = this.isolateCoverGrammar(this.parseAssignmentExpression);
}
else if (id.type !== syntax_1.Syntax.Identifier && !options.inFor) {
this.expect('=');
}
return this.finalize(node, new Node.VariableDeclarator(id, init));
};
Parser.prototype.parseVariableDeclarationList = function (options) {
var opt = { inFor: options.inFor };
var list = [];
list.push(this.parseVariableDeclaration(opt));
while (this.match(',')) {
this.nextToken();
list.push(this.parseVariableDeclaration(opt));
}
return list;
};
Parser.prototype.parseVariableStatement = function () {
var node = this.createNode();
this.expectKeyword('var');
var declarations = this.parseVariableDeclarationList({ inFor: false });
this.consumeSemicolon();
return this.finalize(node, new Node.VariableDeclaration(declarations, 'var'));
};
// https://tc39.github.io/ecma262/#sec-empty-statement
Parser.prototype.parseEmptyStatement = function () {
var node = this.createNode();
this.expect(';');
return this.finalize(node, new Node.EmptyStatement());
};
// https://tc39.github.io/ecma262/#sec-expression-statement
Parser.prototype.parseExpressionStatement = function () {
var node = this.createNode();
var expr = this.parseExpression();
this.consumeSemicolon();
return this.finalize(node, new Node.ExpressionStatement(expr));
};
// https://tc39.github.io/ecma262/#sec-if-statement
Parser.prototype.parseIfClause = function () {
if (this.context.strict && this.matchKeyword('function')) {
this.tolerateError(messages_1.Messages.StrictFunction);
}
return this.parseStatement();
};
Parser.prototype.parseIfStatement = function () {
var node = this.createNode();
var consequent;
var alternate = null;
this.expectKeyword('if');
this.expect('(');
var test = this.parseExpression();
if (!this.match(')') && this.config.tolerant) {
this.tolerateUnexpectedToken(this.nextToken());
consequent = this.finalize(this.createNode(), new Node.EmptyStatement());
}
else {
this.expect(')');
consequent = this.parseIfClause();
if (this.matchKeyword('else')) {
this.nextToken();
alternate = this.parseIfClause();
}
}
return this.finalize(node, new Node.IfStatement(test, consequent, alternate));
};
// https://tc39.github.io/ecma262/#sec-do-while-statement
Parser.prototype.parseDoWhileStatement = function () {
var node = this.createNode();
this.expectKeyword('do');
var previousInIteration = this.context.inIteration;
this.context.inIteration = true;
var body = this.parseStatement();
this.context.inIteration = previousInIteration;
this.expectKeyword('while');
this.expect('(');
var test = this.parseExpression();
if (!this.match(')') && this.config.tolerant) {
this.tolerateUnexpectedToken(this.nextToken());
}
else {
this.expect(')');
if (this.match(';')) {
this.nextToken();
}
}
return this.finalize(node, new Node.DoWhileStatement(body, test));
};
// https://tc39.github.io/ecma262/#sec-while-statement
Parser.prototype.parseWhileStatement = function () {
var node = this.createNode();
var body;
this.expectKeyword('while');
this.expect('(');
var test = this.parseExpression();
if (!this.match(')') && this.config.tolerant) {
this.tolerateUnexpectedToken(this.nextToken());
body = this.finalize(this.createNode(), new Node.EmptyStatement());
}
else {
this.expect(')');
var previousInIteration = this.context.inIteration;
this.context.inIteration = true;
body = this.parseStatement();
this.context.inIteration = previousInIteration;
}
return this.finalize(node, new Node.WhileStatement(test, body));
};
// https://tc39.github.io/ecma262/#sec-for-statement
// https://tc39.github.io/ecma262/#sec-for-in-and-for-of-statements
Parser.prototype.parseForStatement = function () {
var init = null;
var test = null;
var update = null;
var forIn = true;
var left, right;
var node = this.createNode();
this.expectKeyword('for');
this.expect('(');
if (this.match(';')) {
this.nextToken();
}
else {
if (this.matchKeyword('var')) {
init = this.createNode();
this.nextToken();
var previousAllowIn = this.context.allowIn;
this.context.allowIn = false;
var declarations = this.parseVariableDeclarationList({ inFor: true });
this.context.allowIn = previousAllowIn;
if (declarations.length === 1 && this.matchKeyword('in')) {
var decl = declarations[0];
if (decl.init && (decl.id.type === syntax_1.Syntax.ArrayPattern || decl.id.type === syntax_1.Syntax.ObjectPattern || this.context.strict)) {
this.tolerateError(messages_1.Messages.ForInOfLoopInitializer, 'for-in');
}
init = this.finalize(init, new Node.VariableDeclaration(declarations, 'var'));
this.nextToken();
left = init;
right = this.parseExpression();
init = null;
}
else if (declarations.length === 1 && declarations[0].init === null && this.matchContextualKeyword('of')) {
init = this.finalize(init, new Node.VariableDeclaration(declarations, 'var'));
this.nextToken();
left = init;
right = this.parseAssignmentExpression();
init = null;
forIn = false;
}
else {
init = this.finalize(init, new Node.VariableDeclaration(declarations, 'var'));
this.expect(';');
}
}
else if (this.matchKeyword('const') || this.matchKeyword('let')) {
init = this.createNode();
var kind = this.nextToken().value;
if (!this.context.strict && this.lookahead.value === 'in') {
init = this.finalize(init, new Node.Identifier(kind));
this.nextToken();
left = init;
right = this.parseExpression();
init = null;
}
else {
var previousAllowIn = this.context.allowIn;
this.context.allowIn = false;
var declarations = this.parseBindingList(kind, { inFor: true });
this.context.allowIn = previousAllowIn;
if (declarations.length === 1 && declarations[0].init === null && this.matchKeyword('in')) {
init = this.finalize(init, new Node.VariableDeclaration(declarations, kind));
this.nextToken();
left = init;
right = this.parseExpression();
init = null;
}
else if (declarations.length === 1 && declarations[0].init === null && this.matchContextualKeyword('of')) {
init = this.finalize(init, new Node.VariableDeclaration(declarations, kind));
this.nextToken();
left = init;
right = this.parseAssignmentExpression();
init = null;
forIn = false;
}
else {
this.consumeSemicolon();
init = this.finalize(init, new Node.VariableDeclaration(declarations, kind));
}
}
}
else {
var initStartToken = this.lookahead;
var previousAllowIn = this.context.allowIn;
this.context.allowIn = false;
init = this.inheritCoverGrammar(this.parseAssignmentExpression);
this.context.allowIn = previousAllowIn;
if (this.matchKeyword('in')) {
if (!this.context.isAssignmentTarget || init.type === syntax_1.Syntax.AssignmentExpression) {
this.tolerateError(messages_1.Messages.InvalidLHSInForIn);
}
this.nextToken();
this.reinterpretExpressionAsPattern(init);
left = init;
right = this.parseExpression();
init = null;
}
else if (this.matchContextualKeyword('of')) {
if (!this.context.isAssignmentTarget || init.type === syntax_1.Syntax.AssignmentExpression) {
this.tolerateError(messages_1.Messages.InvalidLHSInForLoop);
}
this.nextToken();
this.reinterpretExpressionAsPattern(init);
left = init;
right = this.parseAssignmentExpression();
init = null;
forIn = false;
}
else {
if (this.match(',')) {
var initSeq = [init];
while (this.match(',')) {
this.nextToken();
initSeq.push(this.isolateCoverGrammar(this.parseAssignmentExpression));
}
init = this.finalize(this.startNode(initStartToken), new Node.SequenceExpression(initSeq));
}
this.expect(';');
}
}
}
if (typeof left === 'undefined') {
if (!this.match(';')) {
test = this.parseExpression();
}
this.expect(';');
if (!this.match(')')) {
update = this.parseExpression();
}
}
var body;
if (!this.match(')') && this.config.tolerant) {
this.tolerateUnexpectedToken(this.nextToken());
body = this.finalize(this.createNode(), new Node.EmptyStatement());
}
else {
this.expect(')');
var previousInIteration = this.context.inIteration;
this.context.inIteration = true;
body = this.isolateCoverGrammar(this.parseStatement);
this.context.inIteration = previousInIteration;
}
return (typeof left === 'undefined') ?
this.finalize(node, new Node.ForStatement(init, test, update, body)) :
forIn ? this.finalize(node, new Node.ForInStatement(left, right, body)) :
this.finalize(node, new Node.ForOfStatement(left, right, body));
};
// https://tc39.github.io/ecma262/#sec-continue-statement
Parser.prototype.parseContinueStatement = function () {
var node = this.createNode();
this.expectKeyword('continue');
var label = null;
if (this.lookahead.type === 3 /* Identifier */ && !this.hasLineTerminator) {
var id = this.parseVariableIdentifier();
label = id;
var key = '$' + id.name;
if (!Object.prototype.hasOwnProperty.call(this.context.labelSet, key)) {
this.throwError(messages_1.Messages.UnknownLabel, id.name);
}
}
this.consumeSemicolon();
if (label === null && !this.context.inIteration) {
this.throwError(messages_1.Messages.IllegalContinue);
}
return this.finalize(node, new Node.ContinueStatement(label));
};
// https://tc39.github.io/ecma262/#sec-break-statement
Parser.prototype.parseBreakStatement = function () {
var node = this.createNode();
this.expectKeyword('break');
var label = null;
if (this.lookahead.type === 3 /* Identifier */ && !this.hasLineTerminator) {
var id = this.parseVariableIdentifier();
var key = '$' + id.name;
if (!Object.prototype.hasOwnProperty.call(this.context.labelSet, key)) {
this.throwError(messages_1.Messages.UnknownLabel, id.name);
}
label = id;
}
this.consumeSemicolon();
if (label === null && !this.context.inIteration && !this.context.inSwitch) {
this.throwError(messages_1.Messages.IllegalBreak);
}
return this.finalize(node, new Node.BreakStatement(label));
};
// https://tc39.github.io/ecma262/#sec-return-statement
Parser.prototype.parseReturnStatement = function () {
if (!this.context.inFunctionBody) {
this.tolerateError(messages_1.Messages.IllegalReturn);
}
var node = this.createNode();
this.expectKeyword('return');
var hasArgument = (!this.match(';') && !this.match('}') &&
!this.hasLineTerminator && this.lookahead.type !== 2 /* EOF */) ||
this.lookahead.type === 8 /* StringLiteral */ ||
this.lookahead.type === 10 /* Template */;
var argument = hasArgument ? this.parseExpression() : null;
this.consumeSemicolon();
return this.finalize(node, new Node.ReturnStatement(argument));
};
// https://tc39.github.io/ecma262/#sec-with-statement
Parser.prototype.parseWithStatement = function () {
if (this.context.strict) {
this.tolerateError(messages_1.Messages.StrictModeWith);
}
var node = this.createNode();
var body;
this.expectKeyword('with');
this.expect('(');
var object = this.parseExpression();
if (!this.match(')') && this.config.tolerant) {
this.tolerateUnexpectedToken(this.nextToken());
body = this.finalize(this.createNode(), new Node.EmptyStatement());
}
else {
this.expect(')');
body = this.parseStatement();
}
return this.finalize(node, new Node.WithStatement(object, body));
};
// https://tc39.github.io/ecma262/#sec-switch-statement
Parser.prototype.parseSwitchCase = function () {
var node = this.createNode();
var test;
if (this.matchKeyword('default')) {
this.nextToken();
test = null;
}
else {
this.expectKeyword('case');
test = this.parseExpression();
}
this.expect(':');
var consequent = [];
while (true) {
if (this.match('}') || this.matchKeyword('default') || this.matchKeyword('case')) {
break;
}
consequent.push(this.parseStatementListItem());
}
return this.finalize(node, new Node.SwitchCase(test, consequent));
};
Parser.prototype.parseSwitchStatement = function () {
var node = this.createNode();
this.expectKeyword('switch');
this.expect('(');
var discriminant = this.parseExpression();
this.expect(')');
var previousInSwitch = this.context.inSwitch;
this.context.inSwitch = true;
var cases = [];
var defaultFound = false;
this.expect('{');
while (true) {
if (this.match('}')) {
break;
}
var clause = this.parseSwitchCase();
if (clause.test === null) {
if (defaultFound) {
this.throwError(messages_1.Messages.MultipleDefaultsInSwitch);
}
defaultFound = true;
}
cases.push(clause);
}
this.expect('}');
this.context.inSwitch = previousInSwitch;
return this.finalize(node, new Node.SwitchStatement(discriminant, cases));
};
// https://tc39.github.io/ecma262/#sec-labelled-statements
Parser.prototype.parseLabelledStatement = function () {
var node = this.createNode();
var expr = this.parseExpression();
var statement;
if ((expr.type === syntax_1.Syntax.Identifier) && this.match(':')) {
this.nextToken();
var id = expr;
var key = '$' + id.name;
if (Object.prototype.hasOwnProperty.call(this.context.labelSet, key)) {
this.throwError(messages_1.Messages.Redeclaration, 'Label', id.name);
}
this.context.labelSet[key] = true;
var body = void 0;
if (this.matchKeyword('class')) {
this.tolerateUnexpectedToken(this.lookahead);
body = this.parseClassDeclaration();
}
else if (this.matchKeyword('function')) {
var token = this.lookahead;
var declaration = this.parseFunctionDeclaration();
if (this.context.strict) {
this.tolerateUnexpectedToken(token, messages_1.Messages.StrictFunction);
}
else if (declaration.generator) {
this.tolerateUnexpectedToken(token, messages_1.Messages.GeneratorInLegacyContext);
}
body = declaration;
}
else {
body = this.parseStatement();
}
delete this.context.labelSet[key];
statement = new Node.LabeledStatement(id, body);
}
else {
this.consumeSemicolon();
statement = new Node.ExpressionStatement(expr);
}
return this.finalize(node, statement);
};
// https://tc39.github.io/ecma262/#sec-throw-statement
Parser.prototype.parseThrowStatement = function () {
var node = this.createNode();
this.expectKeyword('throw');
if (this.hasLineTerminator) {
this.throwError(messages_1.Messages.NewlineAfterThrow);
}
var argument = this.parseExpression();
this.consumeSemicolon();
return this.finalize(node, new Node.ThrowStatement(argument));
};
// https://tc39.github.io/ecma262/#sec-try-statement
Parser.prototype.parseCatchClause = function () {
var node = this.createNode();
this.expectKeyword('catch');
this.expect('(');
if (this.match(')')) {
this.throwUnexpectedToken(this.lookahead);
}
var params = [];
var param = this.parsePattern(params);
var paramMap = {};
for (var i = 0; i < params.length; i++) {
var key = '$' + params[i].value;
if (Object.prototype.hasOwnProperty.call(paramMap, key)) {
this.tolerateError(messages_1.Messages.DuplicateBinding, params[i].value);
}
paramMap[key] = true;
}
if (this.context.strict && param.type === syntax_1.Syntax.Identifier) {
if (this.scanner.isRestrictedWord(param.name)) {
this.tolerateError(messages_1.Messages.StrictCatchVariable);
}
}
this.expect(')');
var body = this.parseBlock();
return this.finalize(node, new Node.CatchClause(param, body));
};
Parser.prototype.parseFinallyClause = function () {
this.expectKeyword('finally');
return this.parseBlock();
};
Parser.prototype.parseTryStatement = function () {
var node = this.createNode();
this.expectKeyword('try');
var block = this.parseBlock();
var handler = this.matchKeyword('catch') ? this.parseCatchClause() : null;
var finalizer = this.matchKeyword('finally') ? this.parseFinallyClause() : null;
if (!handler && !finalizer) {
this.throwError(messages_1.Messages.NoCatchOrFinally);
}
return this.finalize(node, new Node.TryStatement(block, handler, finalizer));
};
// https://tc39.github.io/ecma262/#sec-debugger-statement
Parser.prototype.parseDebuggerStatement = function () {
var node = this.createNode();
this.expectKeyword('debugger');
this.consumeSemicolon();
return this.finalize(node, new Node.DebuggerStatement());
};
// https://tc39.github.io/ecma262/#sec-ecmascript-language-statements-and-declarations
Parser.prototype.parseStatement = function () {
var statement;
switch (this.lookahead.type) {
case 1 /* BooleanLiteral */:
case 5 /* NullLiteral */:
case 6 /* NumericLiteral */:
case 8 /* StringLiteral */:
case 10 /* Template */:
case 9 /* RegularExpression */:
statement = this.parseExpressionStatement();
break;
case 7 /* Punctuator */:
var value = this.lookahead.value;
if (value === '{') {
statement = this.parseBlock();
}
else if (value === '(') {
statement = this.parseExpressionStatement();
}
else if (value === ';') {
statement = this.parseEmptyStatement();
}
else {
statement = this.parseExpressionStatement();
}
break;
case 3 /* Identifier */:
statement = this.matchAsyncFunction() ? this.parseFunctionDeclaration() : this.parseLabelledStatement();
break;
case 4 /* Keyword */:
switch (this.lookahead.value) {
case 'break':
statement = this.parseBreakStatement();
break;
case 'continue':
statement = this.parseContinueStatement();
break;
case 'debugger':
statement = this.parseDebuggerStatement();
break;
case 'do':
statement = this.parseDoWhileStatement();
break;
case 'for':
statement = this.parseForStatement();
break;
case 'function':
statement = this.parseFunctionDeclaration();
break;
case 'if':
statement = this.parseIfStatement();
break;
case 'return':
statement = this.parseReturnStatement();
break;
case 'switch':
statement = this.parseSwitchStatement();
break;
case 'throw':
statement = this.parseThrowStatement();
break;
case 'try':
statement = this.parseTryStatement();
break;
case 'var':
statement = this.parseVariableStatement();
break;
case 'while':
statement = this.parseWhileStatement();
break;
case 'with':
statement = this.parseWithStatement();
break;
default:
statement = this.parseExpressionStatement();
break;
}
break;
default:
statement = this.throwUnexpectedToken(this.lookahead);
}
return statement;
};
// https://tc39.github.io/ecma262/#sec-function-definitions
Parser.prototype.parseFunctionSourceElements = function () {
var node = this.createNode();
this.expect('{');
var body = this.parseDirectivePrologues();
var previousLabelSet = this.context.labelSet;
var previousInIteration = this.context.inIteration;
var previousInSwitch = this.context.inSwitch;
var previousInFunctionBody = this.context.inFunctionBody;
this.context.labelSet = {};
this.context.inIteration = false;
this.context.inSwitch = false;
this.context.inFunctionBody = true;
while (this.lookahead.type !== 2 /* EOF */) {
if (this.match('}')) {
break;
}
body.push(this.parseStatementListItem());
}
this.expect('}');
this.context.labelSet = previousLabelSet;
this.context.inIteration = previousInIteration;
this.context.inSwitch = previousInSwitch;
this.context.inFunctionBody = previousInFunctionBody;
return this.finalize(node, new Node.BlockStatement(body));
};
Parser.prototype.validateParam = function (options, param, name) {
var key = '$' + name;
if (this.context.strict) {
if (this.scanner.isRestrictedWord(name)) {
options.stricted = param;
options.message = messages_1.Messages.StrictParamName;
}
if (Object.prototype.hasOwnProperty.call(options.paramSet, key)) {
options.stricted = param;
options.message = messages_1.Messages.StrictParamDupe;
}
}
else if (!options.firstRestricted) {
if (this.scanner.isRestrictedWord(name)) {
options.firstRestricted = param;
options.message = messages_1.Messages.StrictParamName;
}
else if (this.scanner.isStrictModeReservedWord(name)) {
options.firstRestricted = param;
options.message = messages_1.Messages.StrictReservedWord;
}
else if (Object.prototype.hasOwnProperty.call(options.paramSet, key)) {
options.stricted = param;
options.message = messages_1.Messages.StrictParamDupe;
}
}
/* istanbul ignore next */
if (typeof Object.defineProperty === 'function') {
Object.defineProperty(options.paramSet, key, { value: true, enumerable: true, writable: true, configurable: true });
}
else {
options.paramSet[key] = true;
}
};
Parser.prototype.parseRestElement = function (params) {
var node = this.createNode();
this.expect('...');
var arg = this.parsePattern(params);
if (this.match('=')) {
this.throwError(messages_1.Messages.DefaultRestParameter);
}
if (!this.match(')')) {
this.throwError(messages_1.Messages.ParameterAfterRestParameter);
}
return this.finalize(node, new Node.RestElement(arg));
};
Parser.prototype.parseFormalParameter = function (options) {
var params = [];
var param = this.match('...') ? this.parseRestElement(params) : this.parsePatternWithDefault(params);
for (var i = 0; i < params.length; i++) {
this.validateParam(options, params[i], params[i].value);
}
options.simple = options.simple && (param instanceof Node.Identifier);
options.params.push(param);
};
Parser.prototype.parseFormalParameters = function (firstRestricted) {
var options;
options = {
simple: true,
params: [],
firstRestricted: firstRestricted
};
this.expect('(');
if (!this.match(')')) {
options.paramSet = {};
while (this.lookahead.type !== 2 /* EOF */) {
this.parseFormalParameter(options);
if (this.match(')')) {
break;
}
this.expect(',');
if (this.match(')')) {
break;
}
}
}
this.expect(')');
return {
simple: options.simple,
params: options.params,
stricted: options.stricted,
firstRestricted: options.firstRestricted,
message: options.message
};
};
Parser.prototype.matchAsyncFunction = function () {
var match = this.matchContextualKeyword('async');
if (match) {
var state = this.scanner.saveState();
this.scanner.scanComments();
var next = this.scanner.lex();
this.scanner.restoreState(state);
match = (state.lineNumber === next.lineNumber) && (next.type === 4 /* Keyword */) && (next.value === 'function');
}
return match;
};
Parser.prototype.parseFunctionDeclaration = function (identifierIsOptional) {
var node = this.createNode();
var isAsync = this.matchContextualKeyword('async');
if (isAsync) {
this.nextToken();
}
this.expectKeyword('function');
var isGenerator = isAsync ? false : this.match('*');
if (isGenerator) {
this.nextToken();
}
var message;
var id = null;
var firstRestricted = null;
if (!identifierIsOptional || !this.match('(')) {
var token = this.lookahead;
id = this.parseVariableIdentifier();
if (this.context.strict) {
if (this.scanner.isRestrictedWord(token.value)) {
this.tolerateUnexpectedToken(token, messages_1.Messages.StrictFunctionName);
}
}
else {
if (this.scanner.isRestrictedWord(token.value)) {
firstRestricted = token;
message = messages_1.Messages.StrictFunctionName;
}
else if (this.scanner.isStrictModeReservedWord(token.value)) {
firstRestricted = token;
message = messages_1.Messages.StrictReservedWord;
}
}
}
var previousAllowAwait = this.context.await;
var previousAllowYield = this.context.allowYield;
this.context.await = isAsync;
this.context.allowYield = !isGenerator;
var formalParameters = this.parseFormalParameters(firstRestricted);
var params = formalParameters.params;
var stricted = formalParameters.stricted;
firstRestricted = formalParameters.firstRestricted;
if (formalParameters.message) {
message = formalParameters.message;
}
var previousStrict = this.context.strict;
var previousAllowStrictDirective = this.context.allowStrictDirective;
this.context.allowStrictDirective = formalParameters.simple;
var body = this.parseFunctionSourceElements();
if (this.context.strict && firstRestricted) {
this.throwUnexpectedToken(firstRestricted, message);
}
if (this.context.strict && stricted) {
this.tolerateUnexpectedToken(stricted, message);
}
this.context.strict = previousStrict;
this.context.allowStrictDirective = previousAllowStrictDirective;
this.context.await = previousAllowAwait;
this.context.allowYield = previousAllowYield;
return isAsync ? this.finalize(node, new Node.AsyncFunctionDeclaration(id, params, body)) :
this.finalize(node, new Node.FunctionDeclaration(id, params, body, isGenerator));
};
Parser.prototype.parseFunctionExpression = function () {
var node = this.createNode();
var isAsync = this.matchContextualKeyword('async');
if (isAsync) {
this.nextToken();
}
this.expectKeyword('function');
var isGenerator = isAsync ? false : this.match('*');
if (isGenerator) {
this.nextToken();
}
var message;
var id = null;
var firstRestricted;
var previousAllowAwait = this.context.await;
var previousAllowYield = this.context.allowYield;
this.context.await = isAsync;
this.context.allowYield = !isGenerator;
if (!this.match('(')) {
var token = this.lookahead;
id = (!this.context.strict && !isGenerator && this.matchKeyword('yield')) ? this.parseIdentifierName() : this.parseVariableIdentifier();
if (this.context.strict) {
if (this.scanner.isRestrictedWord(token.value)) {
this.tolerateUnexpectedToken(token, messages_1.Messages.StrictFunctionName);
}
}
else {
if (this.scanner.isRestrictedWord(token.value)) {
firstRestricted = token;
message = messages_1.Messages.StrictFunctionName;
}
else if (this.scanner.isStrictModeReservedWord(token.value)) {
firstRestricted = token;
message = messages_1.Messages.StrictReservedWord;
}
}
}
var formalParameters = this.parseFormalParameters(firstRestricted);
var params = formalParameters.params;
var stricted = formalParameters.stricted;
firstRestricted = formalParameters.firstRestricted;
if (formalParameters.message) {
message = formalParameters.message;
}
var previousStrict = this.context.strict;
var previousAllowStrictDirective = this.context.allowStrictDirective;
this.context.allowStrictDirective = formalParameters.simple;
var body = this.parseFunctionSourceElements();
if (this.context.strict && firstRestricted) {
this.throwUnexpectedToken(firstRestricted, message);
}
if (this.context.strict && stricted) {
this.tolerateUnexpectedToken(stricted, message);
}
this.context.strict = previousStrict;
this.context.allowStrictDirective = previousAllowStrictDirective;
this.context.await = previousAllowAwait;
this.context.allowYield = previousAllowYield;
return isAsync ? this.finalize(node, new Node.AsyncFunctionExpression(id, params, body)) :
this.finalize(node, new Node.FunctionExpression(id, params, body, isGenerator));
};
// https://tc39.github.io/ecma262/#sec-directive-prologues-and-the-use-strict-directive
Parser.prototype.parseDirective = function () {
var token = this.lookahead;
var node = this.createNode();
var expr = this.parseExpression();
var directive = (expr.type === syntax_1.Syntax.Literal) ? this.getTokenRaw(token).slice(1, -1) : null;
this.consumeSemicolon();
return this.finalize(node, directive ? new Node.Directive(expr, directive) : new Node.ExpressionStatement(expr));
};
Parser.prototype.parseDirectivePrologues = function () {
var firstRestricted = null;
var body = [];
while (true) {
var token = this.lookahead;
if (token.type !== 8 /* StringLiteral */) {
break;
}
var statement = this.parseDirective();
body.push(statement);
var directive = statement.directive;
if (typeof directive !== 'string') {
break;
}
if (directive === 'use strict') {
this.context.strict = true;
if (firstRestricted) {
this.tolerateUnexpectedToken(firstRestricted, messages_1.Messages.StrictOctalLiteral);
}
if (!this.context.allowStrictDirective) {
this.tolerateUnexpectedToken(token, messages_1.Messages.IllegalLanguageModeDirective);
}
}
else {
if (!firstRestricted && token.octal) {
firstRestricted = token;
}
}
}
return body;
};
// https://tc39.github.io/ecma262/#sec-method-definitions
Parser.prototype.qualifiedPropertyName = function (token) {
switch (token.type) {
case 3 /* Identifier */:
case 8 /* StringLiteral */:
case 1 /* BooleanLiteral */:
case 5 /* NullLiteral */:
case 6 /* NumericLiteral */:
case 4 /* Keyword */:
return true;
case 7 /* Punctuator */:
return token.value === '[';
default:
break;
}
return false;
};
Parser.prototype.parseGetterMethod = function () {
var node = this.createNode();
var isGenerator = false;
var previousAllowYield = this.context.allowYield;
this.context.allowYield = !isGenerator;
var formalParameters = this.parseFormalParameters();
if (formalParameters.params.length > 0) {
this.tolerateError(messages_1.Messages.BadGetterArity);
}
var method = this.parsePropertyMethod(formalParameters);
this.context.allowYield = previousAllowYield;
return this.finalize(node, new Node.FunctionExpression(null, formalParameters.params, method, isGenerator));
};
Parser.prototype.parseSetterMethod = function () {
var node = this.createNode();
var isGenerator = false;
var previousAllowYield = this.context.allowYield;
this.context.allowYield = !isGenerator;
var formalParameters = this.parseFormalParameters();
if (formalParameters.params.length !== 1) {
this.tolerateError(messages_1.Messages.BadSetterArity);
}
else if (formalParameters.params[0] instanceof Node.RestElement) {
this.tolerateError(messages_1.Messages.BadSetterRestParameter);
}
var method = this.parsePropertyMethod(formalParameters);
this.context.allowYield = previousAllowYield;
return this.finalize(node, new Node.FunctionExpression(null, formalParameters.params, method, isGenerator));
};
Parser.prototype.parseGeneratorMethod = function () {
var node = this.createNode();
var isGenerator = true;
var previousAllowYield = this.context.allowYield;
this.context.allowYield = true;
var params = this.parseFormalParameters();
this.context.allowYield = false;
var method = this.parsePropertyMethod(params);
this.context.allowYield = previousAllowYield;
return this.finalize(node, new Node.FunctionExpression(null, params.params, method, isGenerator));
};
// https://tc39.github.io/ecma262/#sec-generator-function-definitions
Parser.prototype.isStartOfExpression = function () {
var start = true;
var value = this.lookahead.value;
switch (this.lookahead.type) {
case 7 /* Punctuator */:
start = (value === '[') || (value === '(') || (value === '{') ||
(value === '+') || (value === '-') ||
(value === '!') || (value === '~') ||
(value === '++') || (value === '--') ||
(value === '/') || (value === '/='); // regular expression literal
break;
case 4 /* Keyword */:
start = (value === 'class') || (value === 'delete') ||
(value === 'function') || (value === 'let') || (value === 'new') ||
(value === 'super') || (value === 'this') || (value === 'typeof') ||
(value === 'void') || (value === 'yield');
break;
default:
break;
}
return start;
};
Parser.prototype.parseYieldExpression = function () {
var node = this.createNode();
this.expectKeyword('yield');
var argument = null;
var delegate = false;
if (!this.hasLineTerminator) {
var previousAllowYield = this.context.allowYield;
this.context.allowYield = false;
delegate = this.match('*');
if (delegate) {
this.nextToken();
argument = this.parseAssignmentExpression();
}
else if (this.isStartOfExpression()) {
argument = this.parseAssignmentExpression();
}
this.context.allowYield = previousAllowYield;
}
return this.finalize(node, new Node.YieldExpression(argument, delegate));
};
// https://tc39.github.io/ecma262/#sec-class-definitions
Parser.prototype.parseClassElement = function (hasConstructor) {
var token = this.lookahead;
var node = this.createNode();
var kind = '';
var key = null;
var value = null;
var computed = false;
var method = false;
var isStatic = false;
var isAsync = false;
if (this.match('*')) {
this.nextToken();
}
else {
computed = this.match('[');
key = this.parseObjectPropertyKey();
var id = key;
if (id.name === 'static' && (this.qualifiedPropertyName(this.lookahead) || this.match('*'))) {
token = this.lookahead;
isStatic = true;
computed = this.match('[');
if (this.match('*')) {
this.nextToken();
}
else {
key = this.parseObjectPropertyKey();
}
}
if ((token.type === 3 /* Identifier */) && !this.hasLineTerminator && (token.value === 'async')) {
var punctuator = this.lookahead.value;
if (punctuator !== ':' && punctuator !== '(' && punctuator !== '*') {
isAsync = true;
token = this.lookahead;
key = this.parseObjectPropertyKey();
if (token.type === 3 /* Identifier */ && token.value === 'constructor') {
this.tolerateUnexpectedToken(token, messages_1.Messages.ConstructorIsAsync);
}
}
}
}
var lookaheadPropertyKey = this.qualifiedPropertyName(this.lookahead);
if (token.type === 3 /* Identifier */) {
if (token.value === 'get' && lookaheadPropertyKey) {
kind = 'get';
computed = this.match('[');
key = this.parseObjectPropertyKey();
this.context.allowYield = false;
value = this.parseGetterMethod();
}
else if (token.value === 'set' && lookaheadPropertyKey) {
kind = 'set';
computed = this.match('[');
key = this.parseObjectPropertyKey();
value = this.parseSetterMethod();
}
}
else if (token.type === 7 /* Punctuator */ && token.value === '*' && lookaheadPropertyKey) {
kind = 'init';
computed = this.match('[');
key = this.parseObjectPropertyKey();
value = this.parseGeneratorMethod();
method = true;
}
if (!kind && key && this.match('(')) {
kind = 'init';
value = isAsync ? this.parsePropertyMethodAsyncFunction() : this.parsePropertyMethodFunction();
method = true;
}
if (!kind) {
this.throwUnexpectedToken(this.lookahead);
}
if (kind === 'init') {
kind = 'method';
}
if (!computed) {
if (isStatic && this.isPropertyKey(key, 'prototype')) {
this.throwUnexpectedToken(token, messages_1.Messages.StaticPrototype);
}
if (!isStatic && this.isPropertyKey(key, 'constructor')) {
if (kind !== 'method' || !method || (value && value.generator)) {
this.throwUnexpectedToken(token, messages_1.Messages.ConstructorSpecialMethod);
}
if (hasConstructor.value) {
this.throwUnexpectedToken(token, messages_1.Messages.DuplicateConstructor);
}
else {
hasConstructor.value = true;
}
kind = 'constructor';
}
}
return this.finalize(node, new Node.MethodDefinition(key, computed, value, kind, isStatic));
};
Parser.prototype.parseClassElementList = function () {
var body = [];
var hasConstructor = { value: false };
this.expect('{');
while (!this.match('}')) {
if (this.match(';')) {
this.nextToken();
}
else {
body.push(this.parseClassElement(hasConstructor));
}
}
this.expect('}');
return body;
};
Parser.prototype.parseClassBody = function () {
var node = this.createNode();
var elementList = this.parseClassElementList();
return this.finalize(node, new Node.ClassBody(elementList));
};
Parser.prototype.parseClassDeclaration = function (identifierIsOptional) {
var node = this.createNode();
var previousStrict = this.context.strict;
this.context.strict = true;
this.expectKeyword('class');
var id = (identifierIsOptional && (this.lookahead.type !== 3 /* Identifier */)) ? null : this.parseVariableIdentifier();
var superClass = null;
if (this.matchKeyword('extends')) {
this.nextToken();
superClass = this.isolateCoverGrammar(this.parseLeftHandSideExpressionAllowCall);
}
var classBody = this.parseClassBody();
this.context.strict = previousStrict;
return this.finalize(node, new Node.ClassDeclaration(id, superClass, classBody));
};
Parser.prototype.parseClassExpression = function () {
var node = this.createNode();
var previousStrict = this.context.strict;
this.context.strict = true;
this.expectKeyword('class');
var id = (this.lookahead.type === 3 /* Identifier */) ? this.parseVariableIdentifier() : null;
var superClass = null;
if (this.matchKeyword('extends')) {
this.nextToken();
superClass = this.isolateCoverGrammar(this.parseLeftHandSideExpressionAllowCall);
}
var classBody = this.parseClassBody();
this.context.strict = previousStrict;
return this.finalize(node, new Node.ClassExpression(id, superClass, classBody));
};
// https://tc39.github.io/ecma262/#sec-scripts
// https://tc39.github.io/ecma262/#sec-modules
Parser.prototype.parseModule = function () {
this.context.strict = true;
this.context.isModule = true;
this.scanner.isModule = true;
var node = this.createNode();
var body = this.parseDirectivePrologues();
while (this.lookahead.type !== 2 /* EOF */) {
body.push(this.parseStatementListItem());
}
return this.finalize(node, new Node.Module(body));
};
Parser.prototype.parseScript = function () {
var node = this.createNode();
var body = this.parseDirectivePrologues();
while (this.lookahead.type !== 2 /* EOF */) {
body.push(this.parseStatementListItem());
}
return this.finalize(node, new Node.Script(body));
};
// https://tc39.github.io/ecma262/#sec-imports
Parser.prototype.parseModuleSpecifier = function () {
var node = this.createNode();
if (this.lookahead.type !== 8 /* StringLiteral */) {
this.throwError(messages_1.Messages.InvalidModuleSpecifier);
}
var token = this.nextToken();
var raw = this.getTokenRaw(token);
return this.finalize(node, new Node.Literal(token.value, raw));
};
// import {<foo as bar>} ...;
Parser.prototype.parseImportSpecifier = function () {
var node = this.createNode();
var imported;
var local;
if (this.lookahead.type === 3 /* Identifier */) {
imported = this.parseVariableIdentifier();
local = imported;
if (this.matchContextualKeyword('as')) {
this.nextToken();
local = this.parseVariableIdentifier();
}
}
else {
imported = this.parseIdentifierName();
local = imported;
if (this.matchContextualKeyword('as')) {
this.nextToken();
local = this.parseVariableIdentifier();
}
else {
this.throwUnexpectedToken(this.nextToken());
}
}
return this.finalize(node, new Node.ImportSpecifier(local, imported));
};
// {foo, bar as bas}
Parser.prototype.parseNamedImports = function () {
this.expect('{');
var specifiers = [];
while (!this.match('}')) {
specifiers.push(this.parseImportSpecifier());
if (!this.match('}')) {
this.expect(',');
}
}
this.expect('}');
return specifiers;
};
// import <foo> ...;
Parser.prototype.parseImportDefaultSpecifier = function () {
var node = this.createNode();
var local = this.parseIdentifierName();
return this.finalize(node, new Node.ImportDefaultSpecifier(local));
};
// import <* as foo> ...;
Parser.prototype.parseImportNamespaceSpecifier = function () {
var node = this.createNode();
this.expect('*');
if (!this.matchContextualKeyword('as')) {
this.throwError(messages_1.Messages.NoAsAfterImportNamespace);
}
this.nextToken();
var local = this.parseIdentifierName();
return this.finalize(node, new Node.ImportNamespaceSpecifier(local));
};
Parser.prototype.parseImportDeclaration = function () {
if (this.context.inFunctionBody) {
this.throwError(messages_1.Messages.IllegalImportDeclaration);
}
var node = this.createNode();
this.expectKeyword('import');
var src;
var specifiers = [];
if (this.lookahead.type === 8 /* StringLiteral */) {
// import 'foo';
src = this.parseModuleSpecifier();
}
else {
if (this.match('{')) {
// import {bar}
specifiers = specifiers.concat(this.parseNamedImports());
}
else if (this.match('*')) {
// import * as foo
specifiers.push(this.parseImportNamespaceSpecifier());
}
else if (this.isIdentifierName(this.lookahead) && !this.matchKeyword('default')) {
// import foo
specifiers.push(this.parseImportDefaultSpecifier());
if (this.match(',')) {
this.nextToken();
if (this.match('*')) {
// import foo, * as foo
specifiers.push(this.parseImportNamespaceSpecifier());
}
else if (this.match('{')) {
// import foo, {bar}
specifiers = specifiers.concat(this.parseNamedImports());
}
else {
this.throwUnexpectedToken(this.lookahead);
}
}
}
else {
this.throwUnexpectedToken(this.nextToken());
}
if (!this.matchContextualKeyword('from')) {
var message = this.lookahead.value ? messages_1.Messages.UnexpectedToken : messages_1.Messages.MissingFromClause;
this.throwError(message, this.lookahead.value);
}
this.nextToken();
src = this.parseModuleSpecifier();
}
this.consumeSemicolon();
return this.finalize(node, new Node.ImportDeclaration(specifiers, src));
};
// https://tc39.github.io/ecma262/#sec-exports
Parser.prototype.parseExportSpecifier = function () {
var node = this.createNode();
var local = this.parseIdentifierName();
var exported = local;
if (this.matchContextualKeyword('as')) {
this.nextToken();
exported = this.parseIdentifierName();
}
return this.finalize(node, new Node.ExportSpecifier(local, exported));
};
Parser.prototype.parseExportDeclaration = function () {
if (this.context.inFunctionBody) {
this.throwError(messages_1.Messages.IllegalExportDeclaration);
}
var node = this.createNode();
this.expectKeyword('export');
var exportDeclaration;
if (this.matchKeyword('default')) {
// export default ...
this.nextToken();
if (this.matchKeyword('function')) {
// export default function foo () {}
// export default function () {}
var declaration = this.parseFunctionDeclaration(true);
exportDeclaration = this.finalize(node, new Node.ExportDefaultDeclaration(declaration));
}
else if (this.matchKeyword('class')) {
// export default class foo {}
var declaration = this.parseClassDeclaration(true);
exportDeclaration = this.finalize(node, new Node.ExportDefaultDeclaration(declaration));
}
else if (this.matchContextualKeyword('async')) {
// export default async function f () {}
// export default async function () {}
// export default async x => x
var declaration = this.matchAsyncFunction() ? this.parseFunctionDeclaration(true) : this.parseAssignmentExpression();
exportDeclaration = this.finalize(node, new Node.ExportDefaultDeclaration(declaration));
}
else {
if (this.matchContextualKeyword('from')) {
this.throwError(messages_1.Messages.UnexpectedToken, this.lookahead.value);
}
// export default {};
// export default [];
// export default (1 + 2);
var declaration = this.match('{') ? this.parseObjectInitializer() :
this.match('[') ? this.parseArrayInitializer() : this.parseAssignmentExpression();
this.consumeSemicolon();
exportDeclaration = this.finalize(node, new Node.ExportDefaultDeclaration(declaration));
}
}
else if (this.match('*')) {
// export * from 'foo';
this.nextToken();
if (!this.matchContextualKeyword('from')) {
var message = this.lookahead.value ? messages_1.Messages.UnexpectedToken : messages_1.Messages.MissingFromClause;
this.throwError(message, this.lookahead.value);
}
this.nextToken();
var src = this.parseModuleSpecifier();
this.consumeSemicolon();
exportDeclaration = this.finalize(node, new Node.ExportAllDeclaration(src));
}
else if (this.lookahead.type === 4 /* Keyword */) {
// export var f = 1;
var declaration = void 0;
switch (this.lookahead.value) {
case 'let':
case 'const':
declaration = this.parseLexicalDeclaration({ inFor: false });
break;
case 'var':
case 'class':
case 'function':
declaration = this.parseStatementListItem();
break;
default:
this.throwUnexpectedToken(this.lookahead);
}
exportDeclaration = this.finalize(node, new Node.ExportNamedDeclaration(declaration, [], null));
}
else if (this.matchAsyncFunction()) {
var declaration = this.parseFunctionDeclaration();
exportDeclaration = this.finalize(node, new Node.ExportNamedDeclaration(declaration, [], null));
}
else {
var specifiers = [];
var source = null;
var isExportFromIdentifier = false;
this.expect('{');
while (!this.match('}')) {
isExportFromIdentifier = isExportFromIdentifier || this.matchKeyword('default');
specifiers.push(this.parseExportSpecifier());
if (!this.match('}')) {
this.expect(',');
}
}
this.expect('}');
if (this.matchContextualKeyword('from')) {
// export {default} from 'foo';
// export {foo} from 'foo';
this.nextToken();
source = this.parseModuleSpecifier();
this.consumeSemicolon();
}
else if (isExportFromIdentifier) {
// export {default}; // missing fromClause
var message = this.lookahead.value ? messages_1.Messages.UnexpectedToken : messages_1.Messages.MissingFromClause;
this.throwError(message, this.lookahead.value);
}
else {
// export {foo};
this.consumeSemicolon();
}
exportDeclaration = this.finalize(node, new Node.ExportNamedDeclaration(null, specifiers, source));
}
return exportDeclaration;
};
return Parser;
}());
exports.Parser = Parser;
/***/ },
/* 9 */
/***/ function(module, exports) {
"use strict";
// Ensure the condition is true, otherwise throw an error.
// This is only to have a better contract semantic, i.e. another safety net
// to catch a logic error. The condition shall be fulfilled in normal case.
// Do NOT use this to enforce a certain condition on any user input.
Object.defineProperty(exports, "__esModule", { value: true });
function assert(condition, message) {
/* istanbul ignore if */
if (!condition) {
throw new Error('ASSERT: ' + message);
}
}
exports.assert = assert;
/***/ },
/* 10 */
/***/ function(module, exports) {
"use strict";
/* tslint:disable:max-classes-per-file */
Object.defineProperty(exports, "__esModule", { value: true });
var ErrorHandler = (function () {
function ErrorHandler() {
this.errors = [];
this.tolerant = false;
}
ErrorHandler.prototype.recordError = function (error) {
this.errors.push(error);
};
ErrorHandler.prototype.tolerate = function (error) {
if (this.tolerant) {
this.recordError(error);
}
else {
throw error;
}
};
ErrorHandler.prototype.constructError = function (msg, column) {
var error = new Error(msg);
try {
throw error;
}
catch (base) {
/* istanbul ignore else */
if (Object.create && Object.defineProperty) {
error = Object.create(base);
Object.defineProperty(error, 'column', { value: column });
}
}
/* istanbul ignore next */
return error;
};
ErrorHandler.prototype.createError = function (index, line, col, description) {
var msg = 'Line ' + line + ': ' + description;
var error = this.constructError(msg, col);
error.index = index;
error.lineNumber = line;
error.description = description;
return error;
};
ErrorHandler.prototype.throwError = function (index, line, col, description) {
throw this.createError(index, line, col, description);
};
ErrorHandler.prototype.tolerateError = function (index, line, col, description) {
var error = this.createError(index, line, col, description);
if (this.tolerant) {
this.recordError(error);
}
else {
throw error;
}
};
return ErrorHandler;
}());
exports.ErrorHandler = ErrorHandler;
/***/ },
/* 11 */
/***/ function(module, exports) {
"use strict";
Object.defineProperty(exports, "__esModule", { value: true });
// Error messages should be identical to V8.
exports.Messages = {
BadGetterArity: 'Getter must not have any formal parameters',
BadSetterArity: 'Setter must have exactly one formal parameter',
BadSetterRestParameter: 'Setter function argument must not be a rest parameter',
ConstructorIsAsync: 'Class constructor may not be an async method',
ConstructorSpecialMethod: 'Class constructor may not be an accessor',
DeclarationMissingInitializer: 'Missing initializer in %0 declaration',
DefaultRestParameter: 'Unexpected token =',
DuplicateBinding: 'Duplicate binding %0',
DuplicateConstructor: 'A class may only have one constructor',
DuplicateProtoProperty: 'Duplicate __proto__ fields are not allowed in object literals',
ForInOfLoopInitializer: '%0 loop variable declaration may not have an initializer',
GeneratorInLegacyContext: 'Generator declarations are not allowed in legacy contexts',
IllegalBreak: 'Illegal break statement',
IllegalContinue: 'Illegal continue statement',
IllegalExportDeclaration: 'Unexpected token',
IllegalImportDeclaration: 'Unexpected token',
IllegalLanguageModeDirective: 'Illegal \'use strict\' directive in function with non-simple parameter list',
IllegalReturn: 'Illegal return statement',
InvalidEscapedReservedWord: 'Keyword must not contain escaped characters',
InvalidHexEscapeSequence: 'Invalid hexadecimal escape sequence',
InvalidLHSInAssignment: 'Invalid left-hand side in assignment',
InvalidLHSInForIn: 'Invalid left-hand side in for-in',
InvalidLHSInForLoop: 'Invalid left-hand side in for-loop',
InvalidModuleSpecifier: 'Unexpected token',
InvalidRegExp: 'Invalid regular expression',
LetInLexicalBinding: 'let is disallowed as a lexically bound name',
MissingFromClause: 'Unexpected token',
MultipleDefaultsInSwitch: 'More than one default clause in switch statement',
NewlineAfterThrow: 'Illegal newline after throw',
NoAsAfterImportNamespace: 'Unexpected token',
NoCatchOrFinally: 'Missing catch or finally after try',
ParameterAfterRestParameter: 'Rest parameter must be last formal parameter',
Redeclaration: '%0 \'%1\' has already been declared',
StaticPrototype: 'Classes may not have static property named prototype',
StrictCatchVariable: 'Catch variable may not be eval or arguments in strict mode',
StrictDelete: 'Delete of an unqualified identifier in strict mode.',
StrictFunction: 'In strict mode code, functions can only be declared at top level or inside a block',
StrictFunctionName: 'Function name may not be eval or arguments in strict mode',
StrictLHSAssignment: 'Assignment to eval or arguments is not allowed in strict mode',
StrictLHSPostfix: 'Postfix increment/decrement may not have eval or arguments operand in strict mode',
StrictLHSPrefix: 'Prefix increment/decrement may not have eval or arguments operand in strict mode',
StrictModeWith: 'Strict mode code may not include a with statement',
StrictOctalLiteral: 'Octal literals are not allowed in strict mode.',
StrictParamDupe: 'Strict mode function may not have duplicate parameter names',
StrictParamName: 'Parameter name eval or arguments is not allowed in strict mode',
StrictReservedWord: 'Use of future reserved word in strict mode',
StrictVarName: 'Variable name may not be eval or arguments in strict mode',
TemplateOctalLiteral: 'Octal literals are not allowed in template strings.',
UnexpectedEOS: 'Unexpected end of input',
UnexpectedIdentifier: 'Unexpected identifier',
UnexpectedNumber: 'Unexpected number',
UnexpectedReserved: 'Unexpected reserved word',
UnexpectedString: 'Unexpected string',
UnexpectedTemplate: 'Unexpected quasi %0',
UnexpectedToken: 'Unexpected token %0',
UnexpectedTokenIllegal: 'Unexpected token ILLEGAL',
UnknownLabel: 'Undefined label \'%0\'',
UnterminatedRegExp: 'Invalid regular expression: missing /'
};
/***/ },
/* 12 */
/***/ function(module, exports, __nested_webpack_require_226595__) {
"use strict";
Object.defineProperty(exports, "__esModule", { value: true });
var assert_1 = __nested_webpack_require_226595__(9);
var character_1 = __nested_webpack_require_226595__(4);
var messages_1 = __nested_webpack_require_226595__(11);
function hexValue(ch) {
return '0123456789abcdef'.indexOf(ch.toLowerCase());
}
function octalValue(ch) {
return '01234567'.indexOf(ch);
}
var Scanner = (function () {
function Scanner(code, handler) {
this.source = code;
this.errorHandler = handler;
this.trackComment = false;
this.isModule = false;
this.length = code.length;
this.index = 0;
this.lineNumber = (code.length > 0) ? 1 : 0;
this.lineStart = 0;
this.curlyStack = [];
}
Scanner.prototype.saveState = function () {
return {
index: this.index,
lineNumber: this.lineNumber,
lineStart: this.lineStart
};
};
Scanner.prototype.restoreState = function (state) {
this.index = state.index;
this.lineNumber = state.lineNumber;
this.lineStart = state.lineStart;
};
Scanner.prototype.eof = function () {
return this.index >= this.length;
};
Scanner.prototype.throwUnexpectedToken = function (message) {
if (message === void 0) { message = messages_1.Messages.UnexpectedTokenIllegal; }
return this.errorHandler.throwError(this.index, this.lineNumber, this.index - this.lineStart + 1, message);
};
Scanner.prototype.tolerateUnexpectedToken = function (message) {
if (message === void 0) { message = messages_1.Messages.UnexpectedTokenIllegal; }
this.errorHandler.tolerateError(this.index, this.lineNumber, this.index - this.lineStart + 1, message);
};
// https://tc39.github.io/ecma262/#sec-comments
Scanner.prototype.skipSingleLineComment = function (offset) {
var comments = [];
var start, loc;
if (this.trackComment) {
comments = [];
start = this.index - offset;
loc = {
start: {
line: this.lineNumber,
column: this.index - this.lineStart - offset
},
end: {}
};
}
while (!this.eof()) {
var ch = this.source.charCodeAt(this.index);
++this.index;
if (character_1.Character.isLineTerminator(ch)) {
if (this.trackComment) {
loc.end = {
line: this.lineNumber,
column: this.index - this.lineStart - 1
};
var entry = {
multiLine: false,
slice: [start + offset, this.index - 1],
range: [start, this.index - 1],
loc: loc
};
comments.push(entry);
}
if (ch === 13 && this.source.charCodeAt(this.index) === 10) {
++this.index;
}
++this.lineNumber;
this.lineStart = this.index;
return comments;
}
}
if (this.trackComment) {
loc.end = {
line: this.lineNumber,
column: this.index - this.lineStart
};
var entry = {
multiLine: false,
slice: [start + offset, this.index],
range: [start, this.index],
loc: loc
};
comments.push(entry);
}
return comments;
};
Scanner.prototype.skipMultiLineComment = function () {
var comments = [];
var start, loc;
if (this.trackComment) {
comments = [];
start = this.index - 2;
loc = {
start: {
line: this.lineNumber,
column: this.index - this.lineStart - 2
},
end: {}
};
}
while (!this.eof()) {
var ch = this.source.charCodeAt(this.index);
if (character_1.Character.isLineTerminator(ch)) {
if (ch === 0x0D && this.source.charCodeAt(this.index + 1) === 0x0A) {
++this.index;
}
++this.lineNumber;
++this.index;
this.lineStart = this.index;
}
else if (ch === 0x2A) {
// Block comment ends with '*/'.
if (this.source.charCodeAt(this.index + 1) === 0x2F) {
this.index += 2;
if (this.trackComment) {
loc.end = {
line: this.lineNumber,
column: this.index - this.lineStart
};
var entry = {
multiLine: true,
slice: [start + 2, this.index - 2],
range: [start, this.index],
loc: loc
};
comments.push(entry);
}
return comments;
}
++this.index;
}
else {
++this.index;
}
}
// Ran off the end of the file - the whole thing is a comment
if (this.trackComment) {
loc.end = {
line: this.lineNumber,
column: this.index - this.lineStart
};
var entry = {
multiLine: true,
slice: [start + 2, this.index],
range: [start, this.index],
loc: loc
};
comments.push(entry);
}
this.tolerateUnexpectedToken();
return comments;
};
Scanner.prototype.scanComments = function () {
var comments;
if (this.trackComment) {
comments = [];
}
var start = (this.index === 0);
while (!this.eof()) {
var ch = this.source.charCodeAt(this.index);
if (character_1.Character.isWhiteSpace(ch)) {
++this.index;
}
else if (character_1.Character.isLineTerminator(ch)) {
++this.index;
if (ch === 0x0D && this.source.charCodeAt(this.index) === 0x0A) {
++this.index;
}
++this.lineNumber;
this.lineStart = this.index;
start = true;
}
else if (ch === 0x2F) {
ch = this.source.charCodeAt(this.index + 1);
if (ch === 0x2F) {
this.index += 2;
var comment = this.skipSingleLineComment(2);
if (this.trackComment) {
comments = comments.concat(comment);
}
start = true;
}
else if (ch === 0x2A) {
this.index += 2;
var comment = this.skipMultiLineComment();
if (this.trackComment) {
comments = comments.concat(comment);
}
}
else {
break;
}
}
else if (start && ch === 0x2D) {
// U+003E is '>'
if ((this.source.charCodeAt(this.index + 1) === 0x2D) && (this.source.charCodeAt(this.index + 2) === 0x3E)) {
// '-->' is a single-line comment
this.index += 3;
var comment = this.skipSingleLineComment(3);
if (this.trackComment) {
comments = comments.concat(comment);
}
}
else {
break;
}
}
else if (ch === 0x3C && !this.isModule) {
if (this.source.slice(this.index + 1, this.index + 4) === '!--') {
this.index += 4; // `<!--`
var comment = this.skipSingleLineComment(4);
if (this.trackComment) {
comments = comments.concat(comment);
}
}
else {
break;
}
}
else {
break;
}
}
return comments;
};
// https://tc39.github.io/ecma262/#sec-future-reserved-words
Scanner.prototype.isFutureReservedWord = function (id) {
switch (id) {
case 'enum':
case 'export':
case 'import':
case 'super':
return true;
default:
return false;
}
};
Scanner.prototype.isStrictModeReservedWord = function (id) {
switch (id) {
case 'implements':
case 'interface':
case 'package':
case 'private':
case 'protected':
case 'public':
case 'static':
case 'yield':
case 'let':
return true;
default:
return false;
}
};
Scanner.prototype.isRestrictedWord = function (id) {
return id === 'eval' || id === 'arguments';
};
// https://tc39.github.io/ecma262/#sec-keywords
Scanner.prototype.isKeyword = function (id) {
switch (id.length) {
case 2:
return (id === 'if') || (id === 'in') || (id === 'do');
case 3:
return (id === 'var') || (id === 'for') || (id === 'new') ||
(id === 'try') || (id === 'let');
case 4:
return (id === 'this') || (id === 'else') || (id === 'case') ||
(id === 'void') || (id === 'with') || (id === 'enum');
case 5:
return (id === 'while') || (id === 'break') || (id === 'catch') ||
(id === 'throw') || (id === 'const') || (id === 'yield') ||
(id === 'class') || (id === 'super');
case 6:
return (id === 'return') || (id === 'typeof') || (id === 'delete') ||
(id === 'switch') || (id === 'export') || (id === 'import');
case 7:
return (id === 'default') || (id === 'finally') || (id === 'extends');
case 8:
return (id === 'function') || (id === 'continue') || (id === 'debugger');
case 10:
return (id === 'instanceof');
default:
return false;
}
};
Scanner.prototype.codePointAt = function (i) {
var cp = this.source.charCodeAt(i);
if (cp >= 0xD800 && cp <= 0xDBFF) {
var second = this.source.charCodeAt(i + 1);
if (second >= 0xDC00 && second <= 0xDFFF) {
var first = cp;
cp = (first - 0xD800) * 0x400 + second - 0xDC00 + 0x10000;
}
}
return cp;
};
Scanner.prototype.scanHexEscape = function (prefix) {
var len = (prefix === 'u') ? 4 : 2;
var code = 0;
for (var i = 0; i < len; ++i) {
if (!this.eof() && character_1.Character.isHexDigit(this.source.charCodeAt(this.index))) {
code = code * 16 + hexValue(this.source[this.index++]);
}
else {
return null;
}
}
return String.fromCharCode(code);
};
Scanner.prototype.scanUnicodeCodePointEscape = function () {
var ch = this.source[this.index];
var code = 0;
// At least, one hex digit is required.
if (ch === '}') {
this.throwUnexpectedToken();
}
while (!this.eof()) {
ch = this.source[this.index++];
if (!character_1.Character.isHexDigit(ch.charCodeAt(0))) {
break;
}
code = code * 16 + hexValue(ch);
}
if (code > 0x10FFFF || ch !== '}') {
this.throwUnexpectedToken();
}
return character_1.Character.fromCodePoint(code);
};
Scanner.prototype.getIdentifier = function () {
var start = this.index++;
while (!this.eof()) {
var ch = this.source.charCodeAt(this.index);
if (ch === 0x5C) {
// Blackslash (U+005C) marks Unicode escape sequence.
this.index = start;
return this.getComplexIdentifier();
}
else if (ch >= 0xD800 && ch < 0xDFFF) {
// Need to handle surrogate pairs.
this.index = start;
return this.getComplexIdentifier();
}
if (character_1.Character.isIdentifierPart(ch)) {
++this.index;
}
else {
break;
}
}
return this.source.slice(start, this.index);
};
Scanner.prototype.getComplexIdentifier = function () {
var cp = this.codePointAt(this.index);
var id = character_1.Character.fromCodePoint(cp);
this.index += id.length;
// '\u' (U+005C, U+0075) denotes an escaped character.
var ch;
if (cp === 0x5C) {
if (this.source.charCodeAt(this.index) !== 0x75) {
this.throwUnexpectedToken();
}
++this.index;
if (this.source[this.index] === '{') {
++this.index;
ch = this.scanUnicodeCodePointEscape();
}
else {
ch = this.scanHexEscape('u');
if (ch === null || ch === '\\' || !character_1.Character.isIdentifierStart(ch.charCodeAt(0))) {
this.throwUnexpectedToken();
}
}
id = ch;
}
while (!this.eof()) {
cp = this.codePointAt(this.index);
if (!character_1.Character.isIdentifierPart(cp)) {
break;
}
ch = character_1.Character.fromCodePoint(cp);
id += ch;
this.index += ch.length;
// '\u' (U+005C, U+0075) denotes an escaped character.
if (cp === 0x5C) {
id = id.substr(0, id.length - 1);
if (this.source.charCodeAt(this.index) !== 0x75) {
this.throwUnexpectedToken();
}
++this.index;
if (this.source[this.index] === '{') {
++this.index;
ch = this.scanUnicodeCodePointEscape();
}
else {
ch = this.scanHexEscape('u');
if (ch === null || ch === '\\' || !character_1.Character.isIdentifierPart(ch.charCodeAt(0))) {
this.throwUnexpectedToken();
}
}
id += ch;
}
}
return id;
};
Scanner.prototype.octalToDecimal = function (ch) {
// \0 is not octal escape sequence
var octal = (ch !== '0');
var code = octalValue(ch);
if (!this.eof() && character_1.Character.isOctalDigit(this.source.charCodeAt(this.index))) {
octal = true;
code = code * 8 + octalValue(this.source[this.index++]);
// 3 digits are only allowed when string starts
// with 0, 1, 2, 3
if ('0123'.indexOf(ch) >= 0 && !this.eof() && character_1.Character.isOctalDigit(this.source.charCodeAt(this.index))) {
code = code * 8 + octalValue(this.source[this.index++]);
}
}
return {
code: code,
octal: octal
};
};
// https://tc39.github.io/ecma262/#sec-names-and-keywords
Scanner.prototype.scanIdentifier = function () {
var type;
var start = this.index;
// Backslash (U+005C) starts an escaped character.
var id = (this.source.charCodeAt(start) === 0x5C) ? this.getComplexIdentifier() : this.getIdentifier();
// There is no keyword or literal with only one character.
// Thus, it must be an identifier.
if (id.length === 1) {
type = 3 /* Identifier */;
}
else if (this.isKeyword(id)) {
type = 4 /* Keyword */;
}
else if (id === 'null') {
type = 5 /* NullLiteral */;
}
else if (id === 'true' || id === 'false') {
type = 1 /* BooleanLiteral */;
}
else {
type = 3 /* Identifier */;
}
if (type !== 3 /* Identifier */ && (start + id.length !== this.index)) {
var restore = this.index;
this.index = start;
this.tolerateUnexpectedToken(messages_1.Messages.InvalidEscapedReservedWord);
this.index = restore;
}
return {
type: type,
value: id,
lineNumber: this.lineNumber,
lineStart: this.lineStart,
start: start,
end: this.index
};
};
// https://tc39.github.io/ecma262/#sec-punctuators
Scanner.prototype.scanPunctuator = function () {
var start = this.index;
// Check for most common single-character punctuators.
var str = this.source[this.index];
switch (str) {
case '(':
case '{':
if (str === '{') {
this.curlyStack.push('{');
}
++this.index;
break;
case '.':
++this.index;
if (this.source[this.index] === '.' && this.source[this.index + 1] === '.') {
// Spread operator: ...
this.index += 2;
str = '...';
}
break;
case '}':
++this.index;
this.curlyStack.pop();
break;
case ')':
case ';':
case ',':
case '[':
case ']':
case ':':
case '?':
case '~':
++this.index;
break;
default:
// 4-character punctuator.
str = this.source.substr(this.index, 4);
if (str === '>>>=') {
this.index += 4;
}
else {
// 3-character punctuators.
str = str.substr(0, 3);
if (str === '===' || str === '!==' || str === '>>>' ||
str === '<<=' || str === '>>=' || str === '**=') {
this.index += 3;
}
else {
// 2-character punctuators.
str = str.substr(0, 2);
if (str === '&&' || str === '||' || str === '==' || str === '!=' ||
str === '+=' || str === '-=' || str === '*=' || str === '/=' ||
str === '++' || str === '--' || str === '<<' || str === '>>' ||
str === '&=' || str === '|=' || str === '^=' || str === '%=' ||
str === '<=' || str === '>=' || str === '=>' || str === '**') {
this.index += 2;
}
else {
// 1-character punctuators.
str = this.source[this.index];
if ('<>=!+-*%&|^/'.indexOf(str) >= 0) {
++this.index;
}
}
}
}
}
if (this.index === start) {
this.throwUnexpectedToken();
}
return {
type: 7 /* Punctuator */,
value: str,
lineNumber: this.lineNumber,
lineStart: this.lineStart,
start: start,
end: this.index
};
};
// https://tc39.github.io/ecma262/#sec-literals-numeric-literals
Scanner.prototype.scanHexLiteral = function (start) {
var num = '';
while (!this.eof()) {
if (!character_1.Character.isHexDigit(this.source.charCodeAt(this.index))) {
break;
}
num += this.source[this.index++];
}
if (num.length === 0) {
this.throwUnexpectedToken();
}
if (character_1.Character.isIdentifierStart(this.source.charCodeAt(this.index))) {
this.throwUnexpectedToken();
}
return {
type: 6 /* NumericLiteral */,
value: parseInt('0x' + num, 16),
lineNumber: this.lineNumber,
lineStart: this.lineStart,
start: start,
end: this.index
};
};
Scanner.prototype.scanBinaryLiteral = function (start) {
var num = '';
var ch;
while (!this.eof()) {
ch = this.source[this.index];
if (ch !== '0' && ch !== '1') {
break;
}
num += this.source[this.index++];
}
if (num.length === 0) {
// only 0b or 0B
this.throwUnexpectedToken();
}
if (!this.eof()) {
ch = this.source.charCodeAt(this.index);
/* istanbul ignore else */
if (character_1.Character.isIdentifierStart(ch) || character_1.Character.isDecimalDigit(ch)) {
this.throwUnexpectedToken();
}
}
return {
type: 6 /* NumericLiteral */,
value: parseInt(num, 2),
lineNumber: this.lineNumber,
lineStart: this.lineStart,
start: start,
end: this.index
};
};
Scanner.prototype.scanOctalLiteral = function (prefix, start) {
var num = '';
var octal = false;
if (character_1.Character.isOctalDigit(prefix.charCodeAt(0))) {
octal = true;
num = '0' + this.source[this.index++];
}
else {
++this.index;
}
while (!this.eof()) {
if (!character_1.Character.isOctalDigit(this.source.charCodeAt(this.index))) {
break;
}
num += this.source[this.index++];
}
if (!octal && num.length === 0) {
// only 0o or 0O
this.throwUnexpectedToken();
}
if (character_1.Character.isIdentifierStart(this.source.charCodeAt(this.index)) || character_1.Character.isDecimalDigit(this.source.charCodeAt(this.index))) {
this.throwUnexpectedToken();
}
return {
type: 6 /* NumericLiteral */,
value: parseInt(num, 8),
octal: octal,
lineNumber: this.lineNumber,
lineStart: this.lineStart,
start: start,
end: this.index
};
};
Scanner.prototype.isImplicitOctalLiteral = function () {
// Implicit octal, unless there is a non-octal digit.
// (Annex B.1.1 on Numeric Literals)
for (var i = this.index + 1; i < this.length; ++i) {
var ch = this.source[i];
if (ch === '8' || ch === '9') {
return false;
}
if (!character_1.Character.isOctalDigit(ch.charCodeAt(0))) {
return true;
}
}
return true;
};
Scanner.prototype.scanNumericLiteral = function () {
var start = this.index;
var ch = this.source[start];
assert_1.assert(character_1.Character.isDecimalDigit(ch.charCodeAt(0)) || (ch === '.'), 'Numeric literal must start with a decimal digit or a decimal point');
var num = '';
if (ch !== '.') {
num = this.source[this.index++];
ch = this.source[this.index];
// Hex number starts with '0x'.
// Octal number starts with '0'.
// Octal number in ES6 starts with '0o'.
// Binary number in ES6 starts with '0b'.
if (num === '0') {
if (ch === 'x' || ch === 'X') {
++this.index;
return this.scanHexLiteral(start);
}
if (ch === 'b' || ch === 'B') {
++this.index;
return this.scanBinaryLiteral(start);
}
if (ch === 'o' || ch === 'O') {
return this.scanOctalLiteral(ch, start);
}
if (ch && character_1.Character.isOctalDigit(ch.charCodeAt(0))) {
if (this.isImplicitOctalLiteral()) {
return this.scanOctalLiteral(ch, start);
}
}
}
while (character_1.Character.isDecimalDigit(this.source.charCodeAt(this.index))) {
num += this.source[this.index++];
}
ch = this.source[this.index];
}
if (ch === '.') {
num += this.source[this.index++];
while (character_1.Character.isDecimalDigit(this.source.charCodeAt(this.index))) {
num += this.source[this.index++];
}
ch = this.source[this.index];
}
if (ch === 'e' || ch === 'E') {
num += this.source[this.index++];
ch = this.source[this.index];
if (ch === '+' || ch === '-') {
num += this.source[this.index++];
}
if (character_1.Character.isDecimalDigit(this.source.charCodeAt(this.index))) {
while (character_1.Character.isDecimalDigit(this.source.charCodeAt(this.index))) {
num += this.source[this.index++];
}
}
else {
this.throwUnexpectedToken();
}
}
if (character_1.Character.isIdentifierStart(this.source.charCodeAt(this.index))) {
this.throwUnexpectedToken();
}
return {
type: 6 /* NumericLiteral */,
value: parseFloat(num),
lineNumber: this.lineNumber,
lineStart: this.lineStart,
start: start,
end: this.index
};
};
// https://tc39.github.io/ecma262/#sec-literals-string-literals
Scanner.prototype.scanStringLiteral = function () {
var start = this.index;
var quote = this.source[start];
assert_1.assert((quote === '\'' || quote === '"'), 'String literal must starts with a quote');
++this.index;
var octal = false;
var str = '';
while (!this.eof()) {
var ch = this.source[this.index++];
if (ch === quote) {
quote = '';
break;
}
else if (ch === '\\') {
ch = this.source[this.index++];
if (!ch || !character_1.Character.isLineTerminator(ch.charCodeAt(0))) {
switch (ch) {
case 'u':
if (this.source[this.index] === '{') {
++this.index;
str += this.scanUnicodeCodePointEscape();
}
else {
var unescaped_1 = this.scanHexEscape(ch);
if (unescaped_1 === null) {
this.throwUnexpectedToken();
}
str += unescaped_1;
}
break;
case 'x':
var unescaped = this.scanHexEscape(ch);
if (unescaped === null) {
this.throwUnexpectedToken(messages_1.Messages.InvalidHexEscapeSequence);
}
str += unescaped;
break;
case 'n':
str += '\n';
break;
case 'r':
str += '\r';
break;
case 't':
str += '\t';
break;
case 'b':
str += '\b';
break;
case 'f':
str += '\f';
break;
case 'v':
str += '\x0B';
break;
case '8':
case '9':
str += ch;
this.tolerateUnexpectedToken();
break;
default:
if (ch && character_1.Character.isOctalDigit(ch.charCodeAt(0))) {
var octToDec = this.octalToDecimal(ch);
octal = octToDec.octal || octal;
str += String.fromCharCode(octToDec.code);
}
else {
str += ch;
}
break;
}
}
else {
++this.lineNumber;
if (ch === '\r' && this.source[this.index] === '\n') {
++this.index;
}
this.lineStart = this.index;
}
}
else if (character_1.Character.isLineTerminator(ch.charCodeAt(0))) {
break;
}
else {
str += ch;
}
}
if (quote !== '') {
this.index = start;
this.throwUnexpectedToken();
}
return {
type: 8 /* StringLiteral */,
value: str,
octal: octal,
lineNumber: this.lineNumber,
lineStart: this.lineStart,
start: start,
end: this.index
};
};
// https://tc39.github.io/ecma262/#sec-template-literal-lexical-components
Scanner.prototype.scanTemplate = function () {
var cooked = '';
var terminated = false;
var start = this.index;
var head = (this.source[start] === '`');
var tail = false;
var rawOffset = 2;
++this.index;
while (!this.eof()) {
var ch = this.source[this.index++];
if (ch === '`') {
rawOffset = 1;
tail = true;
terminated = true;
break;
}
else if (ch === '$') {
if (this.source[this.index] === '{') {
this.curlyStack.push('${');
++this.index;
terminated = true;
break;
}
cooked += ch;
}
else if (ch === '\\') {
ch = this.source[this.index++];
if (!character_1.Character.isLineTerminator(ch.charCodeAt(0))) {
switch (ch) {
case 'n':
cooked += '\n';
break;
case 'r':
cooked += '\r';
break;
case 't':
cooked += '\t';
break;
case 'u':
if (this.source[this.index] === '{') {
++this.index;
cooked += this.scanUnicodeCodePointEscape();
}
else {
var restore = this.index;
var unescaped_2 = this.scanHexEscape(ch);
if (unescaped_2 !== null) {
cooked += unescaped_2;
}
else {
this.index = restore;
cooked += ch;
}
}
break;
case 'x':
var unescaped = this.scanHexEscape(ch);
if (unescaped === null) {
this.throwUnexpectedToken(messages_1.Messages.InvalidHexEscapeSequence);
}
cooked += unescaped;
break;
case 'b':
cooked += '\b';
break;
case 'f':
cooked += '\f';
break;
case 'v':
cooked += '\v';
break;
default:
if (ch === '0') {
if (character_1.Character.isDecimalDigit(this.source.charCodeAt(this.index))) {
// Illegal: \01 \02 and so on
this.throwUnexpectedToken(messages_1.Messages.TemplateOctalLiteral);
}
cooked += '\0';
}
else if (character_1.Character.isOctalDigit(ch.charCodeAt(0))) {
// Illegal: \1 \2
this.throwUnexpectedToken(messages_1.Messages.TemplateOctalLiteral);
}
else {
cooked += ch;
}
break;
}
}
else {
++this.lineNumber;
if (ch === '\r' && this.source[this.index] === '\n') {
++this.index;
}
this.lineStart = this.index;
}
}
else if (character_1.Character.isLineTerminator(ch.charCodeAt(0))) {
++this.lineNumber;
if (ch === '\r' && this.source[this.index] === '\n') {
++this.index;
}
this.lineStart = this.index;
cooked += '\n';
}
else {
cooked += ch;
}
}
if (!terminated) {
this.throwUnexpectedToken();
}
if (!head) {
this.curlyStack.pop();
}
return {
type: 10 /* Template */,
value: this.source.slice(start + 1, this.index - rawOffset),
cooked: cooked,
head: head,
tail: tail,
lineNumber: this.lineNumber,
lineStart: this.lineStart,
start: start,
end: this.index
};
};
// https://tc39.github.io/ecma262/#sec-literals-regular-expression-literals
Scanner.prototype.testRegExp = function (pattern, flags) {
// The BMP character to use as a replacement for astral symbols when
// translating an ES6 "u"-flagged pattern to an ES5-compatible
// approximation.
// Note: replacing with '\uFFFF' enables false positives in unlikely
// scenarios. For example, `[\u{1044f}-\u{10440}]` is an invalid
// pattern that would not be detected by this substitution.
var astralSubstitute = '\uFFFF';
var tmp = pattern;
var self = this;
if (flags.indexOf('u') >= 0) {
tmp = tmp
.replace(/\\u\{([0-9a-fA-F]+)\}|\\u([a-fA-F0-9]{4})/g, function ($0, $1, $2) {
var codePoint = parseInt($1 || $2, 16);
if (codePoint > 0x10FFFF) {
self.throwUnexpectedToken(messages_1.Messages.InvalidRegExp);
}
if (codePoint <= 0xFFFF) {
return String.fromCharCode(codePoint);
}
return astralSubstitute;
})
.replace(/[\uD800-\uDBFF][\uDC00-\uDFFF]/g, astralSubstitute);
}
// First, detect invalid regular expressions.
try {
RegExp(tmp);
}
catch (e) {
this.throwUnexpectedToken(messages_1.Messages.InvalidRegExp);
}
// Return a regular expression object for this pattern-flag pair, or
// `null` in case the current environment doesn't support the flags it
// uses.
try {
return new RegExp(pattern, flags);
}
catch (exception) {
/* istanbul ignore next */
return null;
}
};
Scanner.prototype.scanRegExpBody = function () {
var ch = this.source[this.index];
assert_1.assert(ch === '/', 'Regular expression literal must start with a slash');
var str = this.source[this.index++];
var classMarker = false;
var terminated = false;
while (!this.eof()) {
ch = this.source[this.index++];
str += ch;
if (ch === '\\') {
ch = this.source[this.index++];
// https://tc39.github.io/ecma262/#sec-literals-regular-expression-literals
if (character_1.Character.isLineTerminator(ch.charCodeAt(0))) {
this.throwUnexpectedToken(messages_1.Messages.UnterminatedRegExp);
}
str += ch;
}
else if (character_1.Character.isLineTerminator(ch.charCodeAt(0))) {
this.throwUnexpectedToken(messages_1.Messages.UnterminatedRegExp);
}
else if (classMarker) {
if (ch === ']') {
classMarker = false;
}
}
else {
if (ch === '/') {
terminated = true;
break;
}
else if (ch === '[') {
classMarker = true;
}
}
}
if (!terminated) {
this.throwUnexpectedToken(messages_1.Messages.UnterminatedRegExp);
}
// Exclude leading and trailing slash.
return str.substr(1, str.length - 2);
};
Scanner.prototype.scanRegExpFlags = function () {
var str = '';
var flags = '';
while (!this.eof()) {
var ch = this.source[this.index];
if (!character_1.Character.isIdentifierPart(ch.charCodeAt(0))) {
break;
}
++this.index;
if (ch === '\\' && !this.eof()) {
ch = this.source[this.index];
if (ch === 'u') {
++this.index;
var restore = this.index;
var char = this.scanHexEscape('u');
if (char !== null) {
flags += char;
for (str += '\\u'; restore < this.index; ++restore) {
str += this.source[restore];
}
}
else {
this.index = restore;
flags += 'u';
str += '\\u';
}
this.tolerateUnexpectedToken();
}
else {
str += '\\';
this.tolerateUnexpectedToken();
}
}
else {
flags += ch;
str += ch;
}
}
return flags;
};
Scanner.prototype.scanRegExp = function () {
var start = this.index;
var pattern = this.scanRegExpBody();
var flags = this.scanRegExpFlags();
var value = this.testRegExp(pattern, flags);
return {
type: 9 /* RegularExpression */,
value: '',
pattern: pattern,
flags: flags,
regex: value,
lineNumber: this.lineNumber,
lineStart: this.lineStart,
start: start,
end: this.index
};
};
Scanner.prototype.lex = function () {
if (this.eof()) {
return {
type: 2 /* EOF */,
value: '',
lineNumber: this.lineNumber,
lineStart: this.lineStart,
start: this.index,
end: this.index
};
}
var cp = this.source.charCodeAt(this.index);
if (character_1.Character.isIdentifierStart(cp)) {
return this.scanIdentifier();
}
// Very common: ( and ) and ;
if (cp === 0x28 || cp === 0x29 || cp === 0x3B) {
return this.scanPunctuator();
}
// String literal starts with single quote (U+0027) or double quote (U+0022).
if (cp === 0x27 || cp === 0x22) {
return this.scanStringLiteral();
}
// Dot (.) U+002E can also start a floating-point number, hence the need
// to check the next character.
if (cp === 0x2E) {
if (character_1.Character.isDecimalDigit(this.source.charCodeAt(this.index + 1))) {
return this.scanNumericLiteral();
}
return this.scanPunctuator();
}
if (character_1.Character.isDecimalDigit(cp)) {
return this.scanNumericLiteral();
}
// Template literals start with ` (U+0060) for template head
// or } (U+007D) for template middle or template tail.
if (cp === 0x60 || (cp === 0x7D && this.curlyStack[this.curlyStack.length - 1] === '${')) {
return this.scanTemplate();
}
// Possible identifier start in a surrogate pair.
if (cp >= 0xD800 && cp < 0xDFFF) {
if (character_1.Character.isIdentifierStart(this.codePointAt(this.index))) {
return this.scanIdentifier();
}
}
return this.scanPunctuator();
};
return Scanner;
}());
exports.Scanner = Scanner;
/***/ },
/* 13 */
/***/ function(module, exports) {
"use strict";
Object.defineProperty(exports, "__esModule", { value: true });
exports.TokenName = {};
exports.TokenName[1 /* BooleanLiteral */] = 'Boolean';
exports.TokenName[2 /* EOF */] = '<end>';
exports.TokenName[3 /* Identifier */] = 'Identifier';
exports.TokenName[4 /* Keyword */] = 'Keyword';
exports.TokenName[5 /* NullLiteral */] = 'Null';
exports.TokenName[6 /* NumericLiteral */] = 'Numeric';
exports.TokenName[7 /* Punctuator */] = 'Punctuator';
exports.TokenName[8 /* StringLiteral */] = 'String';
exports.TokenName[9 /* RegularExpression */] = 'RegularExpression';
exports.TokenName[10 /* Template */] = 'Template';
/***/ },
/* 14 */
/***/ function(module, exports) {
"use strict";
// Generated by generate-xhtml-entities.js. DO NOT MODIFY!
Object.defineProperty(exports, "__esModule", { value: true });
exports.XHTMLEntities = {
quot: '\u0022',
amp: '\u0026',
apos: '\u0027',
gt: '\u003E',
nbsp: '\u00A0',
iexcl: '\u00A1',
cent: '\u00A2',
pound: '\u00A3',
curren: '\u00A4',
yen: '\u00A5',
brvbar: '\u00A6',
sect: '\u00A7',
uml: '\u00A8',
copy: '\u00A9',
ordf: '\u00AA',
laquo: '\u00AB',
not: '\u00AC',
shy: '\u00AD',
reg: '\u00AE',
macr: '\u00AF',
deg: '\u00B0',
plusmn: '\u00B1',
sup2: '\u00B2',
sup3: '\u00B3',
acute: '\u00B4',
micro: '\u00B5',
para: '\u00B6',
middot: '\u00B7',
cedil: '\u00B8',
sup1: '\u00B9',
ordm: '\u00BA',
raquo: '\u00BB',
frac14: '\u00BC',
frac12: '\u00BD',
frac34: '\u00BE',
iquest: '\u00BF',
Agrave: '\u00C0',
Aacute: '\u00C1',
Acirc: '\u00C2',
Atilde: '\u00C3',
Auml: '\u00C4',
Aring: '\u00C5',
AElig: '\u00C6',
Ccedil: '\u00C7',
Egrave: '\u00C8',
Eacute: '\u00C9',
Ecirc: '\u00CA',
Euml: '\u00CB',
Igrave: '\u00CC',
Iacute: '\u00CD',
Icirc: '\u00CE',
Iuml: '\u00CF',
ETH: '\u00D0',
Ntilde: '\u00D1',
Ograve: '\u00D2',
Oacute: '\u00D3',
Ocirc: '\u00D4',
Otilde: '\u00D5',
Ouml: '\u00D6',
times: '\u00D7',
Oslash: '\u00D8',
Ugrave: '\u00D9',
Uacute: '\u00DA',
Ucirc: '\u00DB',
Uuml: '\u00DC',
Yacute: '\u00DD',
THORN: '\u00DE',
szlig: '\u00DF',
agrave: '\u00E0',
aacute: '\u00E1',
acirc: '\u00E2',
atilde: '\u00E3',
auml: '\u00E4',
aring: '\u00E5',
aelig: '\u00E6',
ccedil: '\u00E7',
egrave: '\u00E8',
eacute: '\u00E9',
ecirc: '\u00EA',
euml: '\u00EB',
igrave: '\u00EC',
iacute: '\u00ED',
icirc: '\u00EE',
iuml: '\u00EF',
eth: '\u00F0',
ntilde: '\u00F1',
ograve: '\u00F2',
oacute: '\u00F3',
ocirc: '\u00F4',
otilde: '\u00F5',
ouml: '\u00F6',
divide: '\u00F7',
oslash: '\u00F8',
ugrave: '\u00F9',
uacute: '\u00FA',
ucirc: '\u00FB',
uuml: '\u00FC',
yacute: '\u00FD',
thorn: '\u00FE',
yuml: '\u00FF',
OElig: '\u0152',
oelig: '\u0153',
Scaron: '\u0160',
scaron: '\u0161',
Yuml: '\u0178',
fnof: '\u0192',
circ: '\u02C6',
tilde: '\u02DC',
Alpha: '\u0391',
Beta: '\u0392',
Gamma: '\u0393',
Delta: '\u0394',
Epsilon: '\u0395',
Zeta: '\u0396',
Eta: '\u0397',
Theta: '\u0398',
Iota: '\u0399',
Kappa: '\u039A',
Lambda: '\u039B',
Mu: '\u039C',
Nu: '\u039D',
Xi: '\u039E',
Omicron: '\u039F',
Pi: '\u03A0',
Rho: '\u03A1',
Sigma: '\u03A3',
Tau: '\u03A4',
Upsilon: '\u03A5',
Phi: '\u03A6',
Chi: '\u03A7',
Psi: '\u03A8',
Omega: '\u03A9',
alpha: '\u03B1',
beta: '\u03B2',
gamma: '\u03B3',
delta: '\u03B4',
epsilon: '\u03B5',
zeta: '\u03B6',
eta: '\u03B7',
theta: '\u03B8',
iota: '\u03B9',
kappa: '\u03BA',
lambda: '\u03BB',
mu: '\u03BC',
nu: '\u03BD',
xi: '\u03BE',
omicron: '\u03BF',
pi: '\u03C0',
rho: '\u03C1',
sigmaf: '\u03C2',
sigma: '\u03C3',
tau: '\u03C4',
upsilon: '\u03C5',
phi: '\u03C6',
chi: '\u03C7',
psi: '\u03C8',
omega: '\u03C9',
thetasym: '\u03D1',
upsih: '\u03D2',
piv: '\u03D6',
ensp: '\u2002',
emsp: '\u2003',
thinsp: '\u2009',
zwnj: '\u200C',
zwj: '\u200D',
lrm: '\u200E',
rlm: '\u200F',
ndash: '\u2013',
mdash: '\u2014',
lsquo: '\u2018',
rsquo: '\u2019',
sbquo: '\u201A',
ldquo: '\u201C',
rdquo: '\u201D',
bdquo: '\u201E',
dagger: '\u2020',
Dagger: '\u2021',
bull: '\u2022',
hellip: '\u2026',
permil: '\u2030',
prime: '\u2032',
Prime: '\u2033',
lsaquo: '\u2039',
rsaquo: '\u203A',
oline: '\u203E',
frasl: '\u2044',
euro: '\u20AC',
image: '\u2111',
weierp: '\u2118',
real: '\u211C',
trade: '\u2122',
alefsym: '\u2135',
larr: '\u2190',
uarr: '\u2191',
rarr: '\u2192',
darr: '\u2193',
harr: '\u2194',
crarr: '\u21B5',
lArr: '\u21D0',
uArr: '\u21D1',
rArr: '\u21D2',
dArr: '\u21D3',
hArr: '\u21D4',
forall: '\u2200',
part: '\u2202',
exist: '\u2203',
empty: '\u2205',
nabla: '\u2207',
isin: '\u2208',
notin: '\u2209',
ni: '\u220B',
prod: '\u220F',
sum: '\u2211',
minus: '\u2212',
lowast: '\u2217',
radic: '\u221A',
prop: '\u221D',
infin: '\u221E',
ang: '\u2220',
and: '\u2227',
or: '\u2228',
cap: '\u2229',
cup: '\u222A',
int: '\u222B',
there4: '\u2234',
sim: '\u223C',
cong: '\u2245',
asymp: '\u2248',
ne: '\u2260',
equiv: '\u2261',
le: '\u2264',
ge: '\u2265',
sub: '\u2282',
sup: '\u2283',
nsub: '\u2284',
sube: '\u2286',
supe: '\u2287',
oplus: '\u2295',
otimes: '\u2297',
perp: '\u22A5',
sdot: '\u22C5',
lceil: '\u2308',
rceil: '\u2309',
lfloor: '\u230A',
rfloor: '\u230B',
loz: '\u25CA',
spades: '\u2660',
clubs: '\u2663',
hearts: '\u2665',
diams: '\u2666',
lang: '\u27E8',
rang: '\u27E9'
};
/***/ },
/* 15 */
/***/ function(module, exports, __nested_webpack_require_277122__) {
"use strict";
Object.defineProperty(exports, "__esModule", { value: true });
var error_handler_1 = __nested_webpack_require_277122__(10);
var scanner_1 = __nested_webpack_require_277122__(12);
var token_1 = __nested_webpack_require_277122__(13);
var Reader = (function () {
function Reader() {
this.values = [];
this.curly = this.paren = -1;
}
// A function following one of those tokens is an expression.
Reader.prototype.beforeFunctionExpression = function (t) {
return ['(', '{', '[', 'in', 'typeof', 'instanceof', 'new',
'return', 'case', 'delete', 'throw', 'void',
// assignment operators
'=', '+=', '-=', '*=', '**=', '/=', '%=', '<<=', '>>=', '>>>=',
'&=', '|=', '^=', ',',
// binary/unary operators
'+', '-', '*', '**', '/', '%', '++', '--', '<<', '>>', '>>>', '&',
'|', '^', '!', '~', '&&', '||', '?', ':', '===', '==', '>=',
'<=', '<', '>', '!=', '!=='].indexOf(t) >= 0;
};
// Determine if forward slash (/) is an operator or part of a regular expression
// https://github.com/mozilla/sweet.js/wiki/design
Reader.prototype.isRegexStart = function () {
var previous = this.values[this.values.length - 1];
var regex = (previous !== null);
switch (previous) {
case 'this':
case ']':
regex = false;
break;
case ')':
var keyword = this.values[this.paren - 1];
regex = (keyword === 'if' || keyword === 'while' || keyword === 'for' || keyword === 'with');
break;
case '}':
// Dividing a function by anything makes little sense,
// but we have to check for that.
regex = false;
if (this.values[this.curly - 3] === 'function') {
// Anonymous function, e.g. function(){} /42
var check = this.values[this.curly - 4];
regex = check ? !this.beforeFunctionExpression(check) : false;
}
else if (this.values[this.curly - 4] === 'function') {
// Named function, e.g. function f(){} /42/
var check = this.values[this.curly - 5];
regex = check ? !this.beforeFunctionExpression(check) : true;
}
break;
default:
break;
}
return regex;
};
Reader.prototype.push = function (token) {
if (token.type === 7 /* Punctuator */ || token.type === 4 /* Keyword */) {
if (token.value === '{') {
this.curly = this.values.length;
}
else if (token.value === '(') {
this.paren = this.values.length;
}
this.values.push(token.value);
}
else {
this.values.push(null);
}
};
return Reader;
}());
var Tokenizer = (function () {
function Tokenizer(code, config) {
this.errorHandler = new error_handler_1.ErrorHandler();
this.errorHandler.tolerant = config ? (typeof config.tolerant === 'boolean' && config.tolerant) : false;
this.scanner = new scanner_1.Scanner(code, this.errorHandler);
this.scanner.trackComment = config ? (typeof config.comment === 'boolean' && config.comment) : false;
this.trackRange = config ? (typeof config.range === 'boolean' && config.range) : false;
this.trackLoc = config ? (typeof config.loc === 'boolean' && config.loc) : false;
this.buffer = [];
this.reader = new Reader();
}
Tokenizer.prototype.errors = function () {
return this.errorHandler.errors;
};
Tokenizer.prototype.getNextToken = function () {
if (this.buffer.length === 0) {
var comments = this.scanner.scanComments();
if (this.scanner.trackComment) {
for (var i = 0; i < comments.length; ++i) {
var e = comments[i];
var value = this.scanner.source.slice(e.slice[0], e.slice[1]);
var comment = {
type: e.multiLine ? 'BlockComment' : 'LineComment',
value: value
};
if (this.trackRange) {
comment.range = e.range;
}
if (this.trackLoc) {
comment.loc = e.loc;
}
this.buffer.push(comment);
}
}
if (!this.scanner.eof()) {
var loc = void 0;
if (this.trackLoc) {
loc = {
start: {
line: this.scanner.lineNumber,
column: this.scanner.index - this.scanner.lineStart
},
end: {}
};
}
var startRegex = (this.scanner.source[this.scanner.index] === '/') && this.reader.isRegexStart();
var token = startRegex ? this.scanner.scanRegExp() : this.scanner.lex();
this.reader.push(token);
var entry = {
type: token_1.TokenName[token.type],
value: this.scanner.source.slice(token.start, token.end)
};
if (this.trackRange) {
entry.range = [token.start, token.end];
}
if (this.trackLoc) {
loc.end = {
line: this.scanner.lineNumber,
column: this.scanner.index - this.scanner.lineStart
};
entry.loc = loc;
}
if (token.type === 9 /* RegularExpression */) {
var pattern = token.pattern;
var flags = token.flags;
entry.regex = { pattern: pattern, flags: flags };
}
this.buffer.push(entry);
}
}
return this.buffer.shift();
};
return Tokenizer;
}());
exports.Tokenizer = Tokenizer;
/***/ }
/******/ ])
});
;
/***/ }),
/***/ 3626:
/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) {
"use strict";
var __extends = (this && this.__extends) || (function () {
var extendStatics = function (d, b) {
extendStatics = Object.setPrototypeOf ||
({ __proto__: [] } instanceof Array && function (d, b) { d.__proto__ = b; }) ||
function (d, b) { for (var p in b) if (Object.prototype.hasOwnProperty.call(b, p)) d[p] = b[p]; };
return extendStatics(d, b);
};
return function (d, b) {
if (typeof b !== "function" && b !== null)
throw new TypeError("Class extends value " + String(b) + " is not a constructor or null");
extendStatics(d, b);
function __() { this.constructor = d; }
d.prototype = b === null ? Object.create(b) : (__.prototype = b.prototype, new __());
};
})();
var __read = (this && this.__read) || function (o, n) {
var m = typeof Symbol === "function" && o[Symbol.iterator];
if (!m) return o;
var i = m.call(o), r, ar = [], e;
try {
while ((n === void 0 || n-- > 0) && !(r = i.next()).done) ar.push(r.value);
}
catch (error) { e = { error: error }; }
finally {
try {
if (r && !r.done && (m = i["return"])) m.call(i);
}
finally { if (e) throw e.error; }
}
return ar;
};
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.assert = exports.AssertionError = void 0;
/* eslint-disable @typescript-eslint/no-unused-vars */
var overwriteReadonlyProp_1 = __nccwpck_require__(1804);
var assertIsRefWrapper_1 = __nccwpck_require__(4819);
/** @see <https://docs.tsafe.dev/assert#error-thrown> */
var AssertionError = /** @class */ (function (_super) {
__extends(AssertionError, _super);
function AssertionError(msg) {
var _newTarget = this.constructor;
var _this = _super.call(this, "Wrong assertion encountered" + (!msg ? "" : ": \"".concat(msg, "\""))) || this;
Object.setPrototypeOf(_this, _newTarget.prototype);
if (!_this.stack) {
return _this;
}
try {
(0, overwriteReadonlyProp_1.overwriteReadonlyProp)(_this, "stack", _this.stack
.split("\n")
.filter(function () {
var _a = [];
for (var _i = 0; _i < arguments.length; _i++) {
_a[_i] = arguments[_i];
}
var _b = __read(_a, 2), i = _b[1];
return i !== 1 && i !== 2;
})
.join("\n"));
// eslint-disable-next-line no-empty
}
catch (_a) { }
return _this;
}
return AssertionError;
}(Error));
exports.AssertionError = AssertionError;
/** https://docs.tsafe.dev/assert */
// eslint-disable-next-line @typescript-eslint/no-explicit-any
function assert(condition, msg) {
if (arguments.length === 0) {
condition = true;
}
if (assertIsRefWrapper_1.assertIsRefWrapper.ref !== undefined) {
assertIsRefWrapper_1.assertIsRefWrapper.ref = undefined;
return;
}
if (!condition) {
throw new AssertionError(msg);
}
}
exports.assert = assert;
//# sourceMappingURL=assert.js.map
/***/ }),
/***/ 29:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.id = void 0;
/** https://docs.tsafe.dev/id */
var id = function (x) { return x; };
exports.id = id;
//# sourceMappingURL=id.js.map
/***/ }),
/***/ 3240:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
/* eslint-disable @typescript-eslint/no-namespace */
/* eslint-disable @typescript-eslint/no-explicit-any */
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.is = void 0;
var assertIsRefWrapper_1 = __nccwpck_require__(4819);
var errorMessage = [
"Wrong usage of the ".concat(is.name, " function refer to"),
"https://docs.tsafe.dev/".concat(is.name.toLowerCase()),
].join(" ");
function is(_value) {
var ref = {};
if (assertIsRefWrapper_1.assertIsRefWrapper.ref !== undefined) {
assertIsRefWrapper_1.assertIsRefWrapper.ref = undefined;
throw new Error(errorMessage);
}
assertIsRefWrapper_1.assertIsRefWrapper.ref = ref;
Promise.resolve().then(function () {
if (assertIsRefWrapper_1.assertIsRefWrapper.ref === ref) {
throw new Error(errorMessage);
}
});
return null;
}
exports.is = is;
//# sourceMappingURL=is.js.map
/***/ }),
/***/ 1804:
/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) {
"use strict";
var __assign = (this && this.__assign) || function () {
__assign = Object.assign || function(t) {
for (var s, i = 1, n = arguments.length; i < n; i++) {
s = arguments[i];
for (var p in s) if (Object.prototype.hasOwnProperty.call(s, p))
t[p] = s[p];
}
return t;
};
return __assign.apply(this, arguments);
};
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.overwriteReadonlyProp = void 0;
/* eslint-disable no-empty */
/* eslint-disable @typescript-eslint/no-explicit-any */
var assert_1 = __nccwpck_require__(3626);
var is_1 = __nccwpck_require__(3240);
/**
* Assign a value to a property even if the object is freezed or if the property is not writable
* Throw if the assignation fail ( for example if the property is non configurable write: false )
* */
var overwriteReadonlyProp = function (obj, propertyName, value) {
try {
obj[propertyName] = value;
}
catch (_a) { }
if (obj[propertyName] === value) {
return value;
}
var errorDefineProperty = undefined;
var propertyDescriptor = Object.getOwnPropertyDescriptor(obj, propertyName) || {
"enumerable": true,
"configurable": true,
};
if (!!propertyDescriptor.get) {
throw new Error("Probably a wrong ides to overwrite ".concat(String(propertyName), " getter"));
}
try {
Object.defineProperty(obj, propertyName, __assign(__assign({}, propertyDescriptor), { value: value }));
}
catch (error) {
(0, assert_1.assert)((0, is_1.is)(error));
errorDefineProperty = error;
}
if (obj[propertyName] !== value) {
throw errorDefineProperty || new Error("Can't assign");
}
return value;
};
exports.overwriteReadonlyProp = overwriteReadonlyProp;
//# sourceMappingURL=overwriteReadonlyProp.js.map
/***/ }),
/***/ 4819:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.assertIsRefWrapper = void 0;
var id_1 = __nccwpck_require__(29);
exports.assertIsRefWrapper = {
"ref": (0, id_1.id)(undefined),
};
//# sourceMappingURL=assertIsRefWrapper.js.map
/***/ }),
/***/ 8517:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.partition = exports.arrPartition = void 0;
var assert_1 = __nccwpck_require__(3626);
var is_1 = __nccwpck_require__(3240);
var reduceify_1 = __nccwpck_require__(6195);
function arrPartitionImpl(arr, matcher) {
return arr.reduce(function (previousValue, currentValue) {
if (matcher(currentValue)) {
previousValue[0].push(currentValue);
}
else {
//NOTE: Should be deduced by the compiler
(0, assert_1.assert)((0, is_1.is)(currentValue));
previousValue[1].push(currentValue);
}
return previousValue;
}, [[], []]);
}
function arrPartition(arr, matcher) {
return arrPartitionImpl(arr, function (entry) { return matcher(entry); });
}
exports.arrPartition = arrPartition;
function partition(matcher) {
return (0, reduceify_1.toReduceArguments)(arrPartition, matcher);
}
exports.partition = partition;
//# sourceMappingURL=partition.js.map
/***/ }),
/***/ 6195:
/***/ (function(__unused_webpack_module, exports) {
"use strict";
var __read = (this && this.__read) || function (o, n) {
var m = typeof Symbol === "function" && o[Symbol.iterator];
if (!m) return o;
var i = m.call(o), r, ar = [], e;
try {
while ((n === void 0 || n-- > 0) && !(r = i.next()).done) ar.push(r.value);
}
catch (error) { e = { error: error }; }
finally {
try {
if (r && !r.done && (m = i["return"])) m.call(i);
}
finally { if (e) throw e.error; }
}
return ar;
};
var __spreadArray = (this && this.__spreadArray) || function (to, from, pack) {
if (pack || arguments.length === 2) for (var i = 0, l = from.length, ar; i < l; i++) {
if (ar || !(i in from)) {
if (!ar) ar = Array.prototype.slice.call(from, 0, i);
ar[i] = from[i];
}
}
return to.concat(ar || Array.prototype.slice.call(from));
};
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.toReduceArguments = void 0;
function toReduceArguments(arrOp) {
var params = [];
for (var _i = 1; _i < arguments.length; _i++) {
params[_i - 1] = arguments[_i];
}
var outWrap = [];
var reduceCallbackFunction = function () {
var _a = [];
for (var _i = 0; _i < arguments.length; _i++) {
_a[_i] = arguments[_i];
}
var _b = __read(_a, 4), array = _b[3];
var out;
if (outWrap.length === 1) {
out = outWrap[0];
}
else {
out = arrOp.apply(void 0, __spreadArray([array], __read(params), false));
outWrap = [out];
}
return out;
};
return [
reduceCallbackFunction,
arrOp.apply(void 0, __spreadArray([[]], __read(params), false))
];
}
exports.toReduceArguments = toReduceArguments;
//# sourceMappingURL=reduceify.js.map
/***/ }),
/***/ 9728:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
module.exports = realpath
realpath.realpath = realpath
realpath.sync = realpathSync
realpath.realpathSync = realpathSync
realpath.monkeypatch = monkeypatch
realpath.unmonkeypatch = unmonkeypatch
var fs = __nccwpck_require__(9896)
var origRealpath = fs.realpath
var origRealpathSync = fs.realpathSync
var version = process.version
var ok = /^v[0-5]\./.test(version)
var old = __nccwpck_require__(1201)
function newError (er) {
return er && er.syscall === 'realpath' && (
er.code === 'ELOOP' ||
er.code === 'ENOMEM' ||
er.code === 'ENAMETOOLONG'
)
}
function realpath (p, cache, cb) {
if (ok) {
return origRealpath(p, cache, cb)
}
if (typeof cache === 'function') {
cb = cache
cache = null
}
origRealpath(p, cache, function (er, result) {
if (newError(er)) {
old.realpath(p, cache, cb)
} else {
cb(er, result)
}
})
}
function realpathSync (p, cache) {
if (ok) {
return origRealpathSync(p, cache)
}
try {
return origRealpathSync(p, cache)
} catch (er) {
if (newError(er)) {
return old.realpathSync(p, cache)
} else {
throw er
}
}
}
function monkeypatch () {
fs.realpath = realpath
fs.realpathSync = realpathSync
}
function unmonkeypatch () {
fs.realpath = origRealpath
fs.realpathSync = origRealpathSync
}
/***/ }),
/***/ 1201:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
// Copyright Joyent, Inc. and other Node contributors.
//
// Permission is hereby granted, free of charge, to any person obtaining a
// copy of this software and associated documentation files (the
// "Software"), to deal in the Software without restriction, including
// without limitation the rights to use, copy, modify, merge, publish,
// distribute, sublicense, and/or sell copies of the Software, and to permit
// persons to whom the Software is furnished to do so, subject to the
// following conditions:
//
// The above copyright notice and this permission notice shall be included
// in all copies or substantial portions of the Software.
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
// OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
// MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN
// NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM,
// DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
// OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
// USE OR OTHER DEALINGS IN THE SOFTWARE.
var pathModule = __nccwpck_require__(6928);
var isWindows = process.platform === 'win32';
var fs = __nccwpck_require__(9896);
// JavaScript implementation of realpath, ported from node pre-v6
var DEBUG = process.env.NODE_DEBUG && /fs/.test(process.env.NODE_DEBUG);
function rethrow() {
// Only enable in debug mode. A backtrace uses ~1000 bytes of heap space and
// is fairly slow to generate.
var callback;
if (DEBUG) {
var backtrace = new Error;
callback = debugCallback;
} else
callback = missingCallback;
return callback;
function debugCallback(err) {
if (err) {
backtrace.message = err.message;
err = backtrace;
missingCallback(err);
}
}
function missingCallback(err) {
if (err) {
if (process.throwDeprecation)
throw err; // Forgot a callback but don't know where? Use NODE_DEBUG=fs
else if (!process.noDeprecation) {
var msg = 'fs: missing callback ' + (err.stack || err.message);
if (process.traceDeprecation)
console.trace(msg);
else
console.error(msg);
}
}
}
}
function maybeCallback(cb) {
return typeof cb === 'function' ? cb : rethrow();
}
var normalize = pathModule.normalize;
// Regexp that finds the next partion of a (partial) path
// result is [base_with_slash, base], e.g. ['somedir/', 'somedir']
if (isWindows) {
var nextPartRe = /(.*?)(?:[\/\\]+|$)/g;
} else {
var nextPartRe = /(.*?)(?:[\/]+|$)/g;
}
// Regex to find the device root, including trailing slash. E.g. 'c:\\'.
if (isWindows) {
var splitRootRe = /^(?:[a-zA-Z]:|[\\\/]{2}[^\\\/]+[\\\/][^\\\/]+)?[\\\/]*/;
} else {
var splitRootRe = /^[\/]*/;
}
exports.realpathSync = function realpathSync(p, cache) {
// make p is absolute
p = pathModule.resolve(p);
if (cache && Object.prototype.hasOwnProperty.call(cache, p)) {
return cache[p];
}
var original = p,
seenLinks = {},
knownHard = {};
// current character position in p
var pos;
// the partial path so far, including a trailing slash if any
var current;
// the partial path without a trailing slash (except when pointing at a root)
var base;
// the partial path scanned in the previous round, with slash
var previous;
start();
function start() {
// Skip over roots
var m = splitRootRe.exec(p);
pos = m[0].length;
current = m[0];
base = m[0];
previous = '';
// On windows, check that the root exists. On unix there is no need.
if (isWindows && !knownHard[base]) {
fs.lstatSync(base);
knownHard[base] = true;
}
}
// walk down the path, swapping out linked pathparts for their real
// values
// NB: p.length changes.
while (pos < p.length) {
// find the next part
nextPartRe.lastIndex = pos;
var result = nextPartRe.exec(p);
previous = current;
current += result[0];
base = previous + result[1];
pos = nextPartRe.lastIndex;
// continue if not a symlink
if (knownHard[base] || (cache && cache[base] === base)) {
continue;
}
var resolvedLink;
if (cache && Object.prototype.hasOwnProperty.call(cache, base)) {
// some known symbolic link. no need to stat again.
resolvedLink = cache[base];
} else {
var stat = fs.lstatSync(base);
if (!stat.isSymbolicLink()) {
knownHard[base] = true;
if (cache) cache[base] = base;
continue;
}
// read the link if it wasn't read before
// dev/ino always return 0 on windows, so skip the check.
var linkTarget = null;
if (!isWindows) {
var id = stat.dev.toString(32) + ':' + stat.ino.toString(32);
if (seenLinks.hasOwnProperty(id)) {
linkTarget = seenLinks[id];
}
}
if (linkTarget === null) {
fs.statSync(base);
linkTarget = fs.readlinkSync(base);
}
resolvedLink = pathModule.resolve(previous, linkTarget);
// track this, if given a cache.
if (cache) cache[base] = resolvedLink;
if (!isWindows) seenLinks[id] = linkTarget;
}
// resolve the link, then start over
p = pathModule.resolve(resolvedLink, p.slice(pos));
start();
}
if (cache) cache[original] = p;
return p;
};
exports.realpath = function realpath(p, cache, cb) {
if (typeof cb !== 'function') {
cb = maybeCallback(cache);
cache = null;
}
// make p is absolute
p = pathModule.resolve(p);
if (cache && Object.prototype.hasOwnProperty.call(cache, p)) {
return process.nextTick(cb.bind(null, null, cache[p]));
}
var original = p,
seenLinks = {},
knownHard = {};
// current character position in p
var pos;
// the partial path so far, including a trailing slash if any
var current;
// the partial path without a trailing slash (except when pointing at a root)
var base;
// the partial path scanned in the previous round, with slash
var previous;
start();
function start() {
// Skip over roots
var m = splitRootRe.exec(p);
pos = m[0].length;
current = m[0];
base = m[0];
previous = '';
// On windows, check that the root exists. On unix there is no need.
if (isWindows && !knownHard[base]) {
fs.lstat(base, function(err) {
if (err) return cb(err);
knownHard[base] = true;
LOOP();
});
} else {
process.nextTick(LOOP);
}
}
// walk down the path, swapping out linked pathparts for their real
// values
function LOOP() {
// stop if scanned past end of path
if (pos >= p.length) {
if (cache) cache[original] = p;
return cb(null, p);
}
// find the next part
nextPartRe.lastIndex = pos;
var result = nextPartRe.exec(p);
previous = current;
current += result[0];
base = previous + result[1];
pos = nextPartRe.lastIndex;
// continue if not a symlink
if (knownHard[base] || (cache && cache[base] === base)) {
return process.nextTick(LOOP);
}
if (cache && Object.prototype.hasOwnProperty.call(cache, base)) {
// known symbolic link. no need to stat again.
return gotResolvedLink(cache[base]);
}
return fs.lstat(base, gotStat);
}
function gotStat(err, stat) {
if (err) return cb(err);
// if not a symlink, skip to the next path part
if (!stat.isSymbolicLink()) {
knownHard[base] = true;
if (cache) cache[base] = base;
return process.nextTick(LOOP);
}
// stat & read the link if not read before
// call gotTarget as soon as the link target is known
// dev/ino always return 0 on windows, so skip the check.
if (!isWindows) {
var id = stat.dev.toString(32) + ':' + stat.ino.toString(32);
if (seenLinks.hasOwnProperty(id)) {
return gotTarget(null, seenLinks[id], base);
}
}
fs.stat(base, function(err) {
if (err) return cb(err);
fs.readlink(base, function(err, target) {
if (!isWindows) seenLinks[id] = target;
gotTarget(err, target);
});
});
}
function gotTarget(err, target, base) {
if (err) return cb(err);
var resolvedLink = pathModule.resolve(previous, target);
if (cache) cache[base] = resolvedLink;
gotResolvedLink(resolvedLink);
}
function gotResolvedLink(resolvedLink) {
// resolve the link, then start over
p = pathModule.resolve(resolvedLink, p.slice(pos));
start();
}
};
/***/ }),
/***/ 8593:
/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) {
"use strict";
var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) {
function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); }
return new (P || (P = Promise))(function (resolve, reject) {
function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } }
function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } }
function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); }
step((generator = generator.apply(thisArg, _arguments || [])).next());
});
};
var __generator = (this && this.__generator) || function (thisArg, body) {
var _ = { label: 0, sent: function() { if (t[0] & 1) throw t[1]; return t[1]; }, trys: [], ops: [] }, f, y, t, g;
return g = { next: verb(0), "throw": verb(1), "return": verb(2) }, typeof Symbol === "function" && (g[Symbol.iterator] = function() { return this; }), g;
function verb(n) { return function (v) { return step([n, v]); }; }
function step(op) {
if (f) throw new TypeError("Generator is already executing.");
while (_) try {
if (f = 1, y && (t = op[0] & 2 ? y["return"] : op[0] ? y["throw"] || ((t = y["return"]) && t.call(y), 0) : y.next) && !(t = t.call(y, op[1])).done) return t;
if (y = 0, t) op = [op[0] & 2, t.value];
switch (op[0]) {
case 0: case 1: t = op; break;
case 4: _.label++; return { value: op[1], done: false };
case 5: _.label++; y = op[1]; op = [0]; continue;
case 7: op = _.ops.pop(); _.trys.pop(); continue;
default:
if (!(t = _.trys, t = t.length > 0 && t[t.length - 1]) && (op[0] === 6 || op[0] === 2)) { _ = 0; continue; }
if (op[0] === 3 && (!t || (op[1] > t[0] && op[1] < t[3]))) { _.label = op[1]; break; }
if (op[0] === 6 && _.label < t[1]) { _.label = t[1]; t = op; break; }
if (t && _.label < t[2]) { _.label = t[2]; _.ops.push(op); break; }
if (t[2]) _.ops.pop();
_.trys.pop(); continue;
}
op = body.call(thisArg, _);
} catch (e) { op = [6, e]; y = 0; } finally { f = t = 0; }
if (op[0] & 5) throw op[1]; return { value: op[0] ? op[1] : void 0, done: true };
}
};
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.getGithubDefaultBranchNameSync = exports.getGithubDefaultBranchName = exports.previousResults = void 0;
var rest_1 = __nccwpck_require__(5772);
var st = __nccwpck_require__(7516);
exports.previousResults = {};
var getOctokit = (function () {
var octokit = undefined;
return function () {
if (octokit !== undefined) {
return octokit;
}
var auth = process.env["GITHUB_TOKEN"];
octokit = new rest_1.Octokit(auth ? { auth: auth } : undefined);
return getOctokit();
};
})();
function getGithubDefaultBranchName(params) {
return __awaiter(this, void 0, void 0, function () {
var owner, repo, key, octokit, resp;
return __generator(this, function (_a) {
switch (_a.label) {
case 0:
owner = params.owner, repo = params.repo;
key = owner + "/" + repo;
if (key in exports.previousResults) {
return [2 /*return*/, exports.previousResults[key]];
}
octokit = getOctokit();
return [4 /*yield*/, octokit.repos
.get({
owner: owner,
repo: repo,
})
.catch(function (error) { return error; })];
case 1:
resp = _a.sent();
if (resp instanceof Error) {
throw new Error("Can't get default branch name for " + key + ": " + resp.message);
}
exports.previousResults[key] = resp.data.default_branch;
return [2 /*return*/, getGithubDefaultBranchName(params)];
}
});
});
}
exports.getGithubDefaultBranchName = getGithubDefaultBranchName;
function getGithubDefaultBranchNameSync(params) {
var owner = params.owner, repo = params.repo;
var key = owner + "/" + repo;
if (key in exports.previousResults) {
return exports.previousResults[key];
}
exports.previousResults[key] = st.execSync(process.argv[0] + " " + __filename, {
"env": {
"OWNER": owner,
"REPO": repo,
},
});
return getGithubDefaultBranchNameSync(params);
}
exports.getGithubDefaultBranchNameSync = getGithubDefaultBranchNameSync;
if (false) {}
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 2541:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
exports.setopts = setopts
exports.ownProp = ownProp
exports.makeAbs = makeAbs
exports.finish = finish
exports.mark = mark
exports.isIgnored = isIgnored
exports.childrenIgnored = childrenIgnored
function ownProp (obj, field) {
return Object.prototype.hasOwnProperty.call(obj, field)
}
var fs = __nccwpck_require__(9896)
var path = __nccwpck_require__(6928)
var minimatch = __nccwpck_require__(3772)
var isAbsolute = __nccwpck_require__(9024)
var Minimatch = minimatch.Minimatch
function alphasort (a, b) {
return a.localeCompare(b, 'en')
}
function setupIgnores (self, options) {
self.ignore = options.ignore || []
if (!Array.isArray(self.ignore))
self.ignore = [self.ignore]
if (self.ignore.length) {
self.ignore = self.ignore.map(ignoreMap)
}
}
// ignore patterns are always in dot:true mode.
function ignoreMap (pattern) {
var gmatcher = null
if (pattern.slice(-3) === '/**') {
var gpattern = pattern.replace(/(\/\*\*)+$/, '')
gmatcher = new Minimatch(gpattern, { dot: true })
}
return {
matcher: new Minimatch(pattern, { dot: true }),
gmatcher: gmatcher
}
}
function setopts (self, pattern, options) {
if (!options)
options = {}
// base-matching: just use globstar for that.
if (options.matchBase && -1 === pattern.indexOf("/")) {
if (options.noglobstar) {
throw new Error("base matching requires globstar")
}
pattern = "**/" + pattern
}
self.silent = !!options.silent
self.pattern = pattern
self.strict = options.strict !== false
self.realpath = !!options.realpath
self.realpathCache = options.realpathCache || Object.create(null)
self.follow = !!options.follow
self.dot = !!options.dot
self.mark = !!options.mark
self.nodir = !!options.nodir
if (self.nodir)
self.mark = true
self.sync = !!options.sync
self.nounique = !!options.nounique
self.nonull = !!options.nonull
self.nosort = !!options.nosort
self.nocase = !!options.nocase
self.stat = !!options.stat
self.noprocess = !!options.noprocess
self.absolute = !!options.absolute
self.fs = options.fs || fs
self.maxLength = options.maxLength || Infinity
self.cache = options.cache || Object.create(null)
self.statCache = options.statCache || Object.create(null)
self.symlinks = options.symlinks || Object.create(null)
setupIgnores(self, options)
self.changedCwd = false
var cwd = process.cwd()
if (!ownProp(options, "cwd"))
self.cwd = cwd
else {
self.cwd = path.resolve(options.cwd)
self.changedCwd = self.cwd !== cwd
}
self.root = options.root || path.resolve(self.cwd, "/")
self.root = path.resolve(self.root)
if (process.platform === "win32")
self.root = self.root.replace(/\\/g, "/")
// TODO: is an absolute `cwd` supposed to be resolved against `root`?
// e.g. { cwd: '/test', root: __dirname } === path.join(__dirname, '/test')
self.cwdAbs = isAbsolute(self.cwd) ? self.cwd : makeAbs(self, self.cwd)
if (process.platform === "win32")
self.cwdAbs = self.cwdAbs.replace(/\\/g, "/")
self.nomount = !!options.nomount
// disable comments and negation in Minimatch.
// Note that they are not supported in Glob itself anyway.
options.nonegate = true
options.nocomment = true
// always treat \ in patterns as escapes, not path separators
options.allowWindowsEscape = false
self.minimatch = new Minimatch(pattern, options)
self.options = self.minimatch.options
}
function finish (self) {
var nou = self.nounique
var all = nou ? [] : Object.create(null)
for (var i = 0, l = self.matches.length; i < l; i ++) {
var matches = self.matches[i]
if (!matches || Object.keys(matches).length === 0) {
if (self.nonull) {
// do like the shell, and spit out the literal glob
var literal = self.minimatch.globSet[i]
if (nou)
all.push(literal)
else
all[literal] = true
}
} else {
// had matches
var m = Object.keys(matches)
if (nou)
all.push.apply(all, m)
else
m.forEach(function (m) {
all[m] = true
})
}
}
if (!nou)
all = Object.keys(all)
if (!self.nosort)
all = all.sort(alphasort)
// at *some* point we statted all of these
if (self.mark) {
for (var i = 0; i < all.length; i++) {
all[i] = self._mark(all[i])
}
if (self.nodir) {
all = all.filter(function (e) {
var notDir = !(/\/$/.test(e))
var c = self.cache[e] || self.cache[makeAbs(self, e)]
if (notDir && c)
notDir = c !== 'DIR' && !Array.isArray(c)
return notDir
})
}
}
if (self.ignore.length)
all = all.filter(function(m) {
return !isIgnored(self, m)
})
self.found = all
}
function mark (self, p) {
var abs = makeAbs(self, p)
var c = self.cache[abs]
var m = p
if (c) {
var isDir = c === 'DIR' || Array.isArray(c)
var slash = p.slice(-1) === '/'
if (isDir && !slash)
m += '/'
else if (!isDir && slash)
m = m.slice(0, -1)
if (m !== p) {
var mabs = makeAbs(self, m)
self.statCache[mabs] = self.statCache[abs]
self.cache[mabs] = self.cache[abs]
}
}
return m
}
// lotta situps...
function makeAbs (self, f) {
var abs = f
if (f.charAt(0) === '/') {
abs = path.join(self.root, f)
} else if (isAbsolute(f) || f === '') {
abs = f
} else if (self.changedCwd) {
abs = path.resolve(self.cwd, f)
} else {
abs = path.resolve(f)
}
if (process.platform === 'win32')
abs = abs.replace(/\\/g, '/')
return abs
}
// Return true, if pattern ends with globstar '**', for the accompanying parent directory.
// Ex:- If node_modules/** is the pattern, add 'node_modules' to ignore list along with it's contents
function isIgnored (self, path) {
if (!self.ignore.length)
return false
return self.ignore.some(function(item) {
return item.matcher.match(path) || !!(item.gmatcher && item.gmatcher.match(path))
})
}
function childrenIgnored (self, path) {
if (!self.ignore.length)
return false
return self.ignore.some(function(item) {
return !!(item.gmatcher && item.gmatcher.match(path))
})
}
/***/ }),
/***/ 3574:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
// Approach:
//
// 1. Get the minimatch set
// 2. For each pattern in the set, PROCESS(pattern, false)
// 3. Store matches per-set, then uniq them
//
// PROCESS(pattern, inGlobStar)
// Get the first [n] items from pattern that are all strings
// Join these together. This is PREFIX.
// If there is no more remaining, then stat(PREFIX) and
// add to matches if it succeeds. END.
//
// If inGlobStar and PREFIX is symlink and points to dir
// set ENTRIES = []
// else readdir(PREFIX) as ENTRIES
// If fail, END
//
// with ENTRIES
// If pattern[n] is GLOBSTAR
// // handle the case where the globstar match is empty
// // by pruning it out, and testing the resulting pattern
// PROCESS(pattern[0..n] + pattern[n+1 .. $], false)
// // handle other cases.
// for ENTRY in ENTRIES (not dotfiles)
// // attach globstar + tail onto the entry
// // Mark that this entry is a globstar match
// PROCESS(pattern[0..n] + ENTRY + pattern[n .. $], true)
//
// else // not globstar
// for ENTRY in ENTRIES (not dotfiles, unless pattern[n] is dot)
// Test ENTRY against pattern[n]
// If fails, continue
// If passes, PROCESS(pattern[0..n] + item + pattern[n+1 .. $])
//
// Caveat:
// Cache all stats and readdirs results to minimize syscall. Since all
// we ever care about is existence and directory-ness, we can just keep
// `true` for files, and [children,...] for directories, or `false` for
// things that don't exist.
module.exports = glob
var rp = __nccwpck_require__(9728)
var minimatch = __nccwpck_require__(3772)
var Minimatch = minimatch.Minimatch
var inherits = __nccwpck_require__(9598)
var EE = (__nccwpck_require__(4434).EventEmitter)
var path = __nccwpck_require__(6928)
var assert = __nccwpck_require__(2613)
var isAbsolute = __nccwpck_require__(9024)
var globSync = __nccwpck_require__(9795)
var common = __nccwpck_require__(2541)
var setopts = common.setopts
var ownProp = common.ownProp
var inflight = __nccwpck_require__(3176)
var util = __nccwpck_require__(9023)
var childrenIgnored = common.childrenIgnored
var isIgnored = common.isIgnored
var once = __nccwpck_require__(5560)
function glob (pattern, options, cb) {
if (typeof options === 'function') cb = options, options = {}
if (!options) options = {}
if (options.sync) {
if (cb)
throw new TypeError('callback provided to sync glob')
return globSync(pattern, options)
}
return new Glob(pattern, options, cb)
}
glob.sync = globSync
var GlobSync = glob.GlobSync = globSync.GlobSync
// old api surface
glob.glob = glob
function extend (origin, add) {
if (add === null || typeof add !== 'object') {
return origin
}
var keys = Object.keys(add)
var i = keys.length
while (i--) {
origin[keys[i]] = add[keys[i]]
}
return origin
}
glob.hasMagic = function (pattern, options_) {
var options = extend({}, options_)
options.noprocess = true
var g = new Glob(pattern, options)
var set = g.minimatch.set
if (!pattern)
return false
if (set.length > 1)
return true
for (var j = 0; j < set[0].length; j++) {
if (typeof set[0][j] !== 'string')
return true
}
return false
}
glob.Glob = Glob
inherits(Glob, EE)
function Glob (pattern, options, cb) {
if (typeof options === 'function') {
cb = options
options = null
}
if (options && options.sync) {
if (cb)
throw new TypeError('callback provided to sync glob')
return new GlobSync(pattern, options)
}
if (!(this instanceof Glob))
return new Glob(pattern, options, cb)
setopts(this, pattern, options)
this._didRealPath = false
// process each pattern in the minimatch set
var n = this.minimatch.set.length
// The matches are stored as {<filename>: true,...} so that
// duplicates are automagically pruned.
// Later, we do an Object.keys() on these.
// Keep them as a list so we can fill in when nonull is set.
this.matches = new Array(n)
if (typeof cb === 'function') {
cb = once(cb)
this.on('error', cb)
this.on('end', function (matches) {
cb(null, matches)
})
}
var self = this
this._processing = 0
this._emitQueue = []
this._processQueue = []
this.paused = false
if (this.noprocess)
return this
if (n === 0)
return done()
var sync = true
for (var i = 0; i < n; i ++) {
this._process(this.minimatch.set[i], i, false, done)
}
sync = false
function done () {
--self._processing
if (self._processing <= 0) {
if (sync) {
process.nextTick(function () {
self._finish()
})
} else {
self._finish()
}
}
}
}
Glob.prototype._finish = function () {
assert(this instanceof Glob)
if (this.aborted)
return
if (this.realpath && !this._didRealpath)
return this._realpath()
common.finish(this)
this.emit('end', this.found)
}
Glob.prototype._realpath = function () {
if (this._didRealpath)
return
this._didRealpath = true
var n = this.matches.length
if (n === 0)
return this._finish()
var self = this
for (var i = 0; i < this.matches.length; i++)
this._realpathSet(i, next)
function next () {
if (--n === 0)
self._finish()
}
}
Glob.prototype._realpathSet = function (index, cb) {
var matchset = this.matches[index]
if (!matchset)
return cb()
var found = Object.keys(matchset)
var self = this
var n = found.length
if (n === 0)
return cb()
var set = this.matches[index] = Object.create(null)
found.forEach(function (p, i) {
// If there's a problem with the stat, then it means that
// one or more of the links in the realpath couldn't be
// resolved. just return the abs value in that case.
p = self._makeAbs(p)
rp.realpath(p, self.realpathCache, function (er, real) {
if (!er)
set[real] = true
else if (er.syscall === 'stat')
set[p] = true
else
self.emit('error', er) // srsly wtf right here
if (--n === 0) {
self.matches[index] = set
cb()
}
})
})
}
Glob.prototype._mark = function (p) {
return common.mark(this, p)
}
Glob.prototype._makeAbs = function (f) {
return common.makeAbs(this, f)
}
Glob.prototype.abort = function () {
this.aborted = true
this.emit('abort')
}
Glob.prototype.pause = function () {
if (!this.paused) {
this.paused = true
this.emit('pause')
}
}
Glob.prototype.resume = function () {
if (this.paused) {
this.emit('resume')
this.paused = false
if (this._emitQueue.length) {
var eq = this._emitQueue.slice(0)
this._emitQueue.length = 0
for (var i = 0; i < eq.length; i ++) {
var e = eq[i]
this._emitMatch(e[0], e[1])
}
}
if (this._processQueue.length) {
var pq = this._processQueue.slice(0)
this._processQueue.length = 0
for (var i = 0; i < pq.length; i ++) {
var p = pq[i]
this._processing--
this._process(p[0], p[1], p[2], p[3])
}
}
}
}
Glob.prototype._process = function (pattern, index, inGlobStar, cb) {
assert(this instanceof Glob)
assert(typeof cb === 'function')
if (this.aborted)
return
this._processing++
if (this.paused) {
this._processQueue.push([pattern, index, inGlobStar, cb])
return
}
//console.error('PROCESS %d', this._processing, pattern)
// Get the first [n] parts of pattern that are all strings.
var n = 0
while (typeof pattern[n] === 'string') {
n ++
}
// now n is the index of the first one that is *not* a string.
// see if there's anything else
var prefix
switch (n) {
// if not, then this is rather simple
case pattern.length:
this._processSimple(pattern.join('/'), index, cb)
return
case 0:
// pattern *starts* with some non-trivial item.
// going to readdir(cwd), but not include the prefix in matches.
prefix = null
break
default:
// pattern has some string bits in the front.
// whatever it starts with, whether that's 'absolute' like /foo/bar,
// or 'relative' like '../baz'
prefix = pattern.slice(0, n).join('/')
break
}
var remain = pattern.slice(n)
// get the list of entries.
var read
if (prefix === null)
read = '.'
else if (isAbsolute(prefix) ||
isAbsolute(pattern.map(function (p) {
return typeof p === 'string' ? p : '[*]'
}).join('/'))) {
if (!prefix || !isAbsolute(prefix))
prefix = '/' + prefix
read = prefix
} else
read = prefix
var abs = this._makeAbs(read)
//if ignored, skip _processing
if (childrenIgnored(this, read))
return cb()
var isGlobStar = remain[0] === minimatch.GLOBSTAR
if (isGlobStar)
this._processGlobStar(prefix, read, abs, remain, index, inGlobStar, cb)
else
this._processReaddir(prefix, read, abs, remain, index, inGlobStar, cb)
}
Glob.prototype._processReaddir = function (prefix, read, abs, remain, index, inGlobStar, cb) {
var self = this
this._readdir(abs, inGlobStar, function (er, entries) {
return self._processReaddir2(prefix, read, abs, remain, index, inGlobStar, entries, cb)
})
}
Glob.prototype._processReaddir2 = function (prefix, read, abs, remain, index, inGlobStar, entries, cb) {
// if the abs isn't a dir, then nothing can match!
if (!entries)
return cb()
// It will only match dot entries if it starts with a dot, or if
// dot is set. Stuff like @(.foo|.bar) isn't allowed.
var pn = remain[0]
var negate = !!this.minimatch.negate
var rawGlob = pn._glob
var dotOk = this.dot || rawGlob.charAt(0) === '.'
var matchedEntries = []
for (var i = 0; i < entries.length; i++) {
var e = entries[i]
if (e.charAt(0) !== '.' || dotOk) {
var m
if (negate && !prefix) {
m = !e.match(pn)
} else {
m = e.match(pn)
}
if (m)
matchedEntries.push(e)
}
}
//console.error('prd2', prefix, entries, remain[0]._glob, matchedEntries)
var len = matchedEntries.length
// If there are no matched entries, then nothing matches.
if (len === 0)
return cb()
// if this is the last remaining pattern bit, then no need for
// an additional stat *unless* the user has specified mark or
// stat explicitly. We know they exist, since readdir returned
// them.
if (remain.length === 1 && !this.mark && !this.stat) {
if (!this.matches[index])
this.matches[index] = Object.create(null)
for (var i = 0; i < len; i ++) {
var e = matchedEntries[i]
if (prefix) {
if (prefix !== '/')
e = prefix + '/' + e
else
e = prefix + e
}
if (e.charAt(0) === '/' && !this.nomount) {
e = path.join(this.root, e)
}
this._emitMatch(index, e)
}
// This was the last one, and no stats were needed
return cb()
}
// now test all matched entries as stand-ins for that part
// of the pattern.
remain.shift()
for (var i = 0; i < len; i ++) {
var e = matchedEntries[i]
var newPattern
if (prefix) {
if (prefix !== '/')
e = prefix + '/' + e
else
e = prefix + e
}
this._process([e].concat(remain), index, inGlobStar, cb)
}
cb()
}
Glob.prototype._emitMatch = function (index, e) {
if (this.aborted)
return
if (isIgnored(this, e))
return
if (this.paused) {
this._emitQueue.push([index, e])
return
}
var abs = isAbsolute(e) ? e : this._makeAbs(e)
if (this.mark)
e = this._mark(e)
if (this.absolute)
e = abs
if (this.matches[index][e])
return
if (this.nodir) {
var c = this.cache[abs]
if (c === 'DIR' || Array.isArray(c))
return
}
this.matches[index][e] = true
var st = this.statCache[abs]
if (st)
this.emit('stat', e, st)
this.emit('match', e)
}
Glob.prototype._readdirInGlobStar = function (abs, cb) {
if (this.aborted)
return
// follow all symlinked directories forever
// just proceed as if this is a non-globstar situation
if (this.follow)
return this._readdir(abs, false, cb)
var lstatkey = 'lstat\0' + abs
var self = this
var lstatcb = inflight(lstatkey, lstatcb_)
if (lstatcb)
self.fs.lstat(abs, lstatcb)
function lstatcb_ (er, lstat) {
if (er && er.code === 'ENOENT')
return cb()
var isSym = lstat && lstat.isSymbolicLink()
self.symlinks[abs] = isSym
// If it's not a symlink or a dir, then it's definitely a regular file.
// don't bother doing a readdir in that case.
if (!isSym && lstat && !lstat.isDirectory()) {
self.cache[abs] = 'FILE'
cb()
} else
self._readdir(abs, false, cb)
}
}
Glob.prototype._readdir = function (abs, inGlobStar, cb) {
if (this.aborted)
return
cb = inflight('readdir\0'+abs+'\0'+inGlobStar, cb)
if (!cb)
return
//console.error('RD %j %j', +inGlobStar, abs)
if (inGlobStar && !ownProp(this.symlinks, abs))
return this._readdirInGlobStar(abs, cb)
if (ownProp(this.cache, abs)) {
var c = this.cache[abs]
if (!c || c === 'FILE')
return cb()
if (Array.isArray(c))
return cb(null, c)
}
var self = this
self.fs.readdir(abs, readdirCb(this, abs, cb))
}
function readdirCb (self, abs, cb) {
return function (er, entries) {
if (er)
self._readdirError(abs, er, cb)
else
self._readdirEntries(abs, entries, cb)
}
}
Glob.prototype._readdirEntries = function (abs, entries, cb) {
if (this.aborted)
return
// if we haven't asked to stat everything, then just
// assume that everything in there exists, so we can avoid
// having to stat it a second time.
if (!this.mark && !this.stat) {
for (var i = 0; i < entries.length; i ++) {
var e = entries[i]
if (abs === '/')
e = abs + e
else
e = abs + '/' + e
this.cache[e] = true
}
}
this.cache[abs] = entries
return cb(null, entries)
}
Glob.prototype._readdirError = function (f, er, cb) {
if (this.aborted)
return
// handle errors, and cache the information
switch (er.code) {
case 'ENOTSUP': // https://github.com/isaacs/node-glob/issues/205
case 'ENOTDIR': // totally normal. means it *does* exist.
var abs = this._makeAbs(f)
this.cache[abs] = 'FILE'
if (abs === this.cwdAbs) {
var error = new Error(er.code + ' invalid cwd ' + this.cwd)
error.path = this.cwd
error.code = er.code
this.emit('error', error)
this.abort()
}
break
case 'ENOENT': // not terribly unusual
case 'ELOOP':
case 'ENAMETOOLONG':
case 'UNKNOWN':
this.cache[this._makeAbs(f)] = false
break
default: // some unusual error. Treat as failure.
this.cache[this._makeAbs(f)] = false
if (this.strict) {
this.emit('error', er)
// If the error is handled, then we abort
// if not, we threw out of here
this.abort()
}
if (!this.silent)
console.error('glob error', er)
break
}
return cb()
}
Glob.prototype._processGlobStar = function (prefix, read, abs, remain, index, inGlobStar, cb) {
var self = this
this._readdir(abs, inGlobStar, function (er, entries) {
self._processGlobStar2(prefix, read, abs, remain, index, inGlobStar, entries, cb)
})
}
Glob.prototype._processGlobStar2 = function (prefix, read, abs, remain, index, inGlobStar, entries, cb) {
//console.error('pgs2', prefix, remain[0], entries)
// no entries means not a dir, so it can never have matches
// foo.txt/** doesn't match foo.txt
if (!entries)
return cb()
// test without the globstar, and with every child both below
// and replacing the globstar.
var remainWithoutGlobStar = remain.slice(1)
var gspref = prefix ? [ prefix ] : []
var noGlobStar = gspref.concat(remainWithoutGlobStar)
// the noGlobStar pattern exits the inGlobStar state
this._process(noGlobStar, index, false, cb)
var isSym = this.symlinks[abs]
var len = entries.length
// If it's a symlink, and we're in a globstar, then stop
if (isSym && inGlobStar)
return cb()
for (var i = 0; i < len; i++) {
var e = entries[i]
if (e.charAt(0) === '.' && !this.dot)
continue
// these two cases enter the inGlobStar state
var instead = gspref.concat(entries[i], remainWithoutGlobStar)
this._process(instead, index, true, cb)
var below = gspref.concat(entries[i], remain)
this._process(below, index, true, cb)
}
cb()
}
Glob.prototype._processSimple = function (prefix, index, cb) {
// XXX review this. Shouldn't it be doing the mounting etc
// before doing stat? kinda weird?
var self = this
this._stat(prefix, function (er, exists) {
self._processSimple2(prefix, index, er, exists, cb)
})
}
Glob.prototype._processSimple2 = function (prefix, index, er, exists, cb) {
//console.error('ps2', prefix, exists)
if (!this.matches[index])
this.matches[index] = Object.create(null)
// If it doesn't exist, then just mark the lack of results
if (!exists)
return cb()
if (prefix && isAbsolute(prefix) && !this.nomount) {
var trail = /[\/\\]$/.test(prefix)
if (prefix.charAt(0) === '/') {
prefix = path.join(this.root, prefix)
} else {
prefix = path.resolve(this.root, prefix)
if (trail)
prefix += '/'
}
}
if (process.platform === 'win32')
prefix = prefix.replace(/\\/g, '/')
// Mark this as a match
this._emitMatch(index, prefix)
cb()
}
// Returns either 'DIR', 'FILE', or false
Glob.prototype._stat = function (f, cb) {
var abs = this._makeAbs(f)
var needDir = f.slice(-1) === '/'
if (f.length > this.maxLength)
return cb()
if (!this.stat && ownProp(this.cache, abs)) {
var c = this.cache[abs]
if (Array.isArray(c))
c = 'DIR'
// It exists, but maybe not how we need it
if (!needDir || c === 'DIR')
return cb(null, c)
if (needDir && c === 'FILE')
return cb()
// otherwise we have to stat, because maybe c=true
// if we know it exists, but not what it is.
}
var exists
var stat = this.statCache[abs]
if (stat !== undefined) {
if (stat === false)
return cb(null, stat)
else {
var type = stat.isDirectory() ? 'DIR' : 'FILE'
if (needDir && type === 'FILE')
return cb()
else
return cb(null, type, stat)
}
}
var self = this
var statcb = inflight('stat\0' + abs, lstatcb_)
if (statcb)
self.fs.lstat(abs, statcb)
function lstatcb_ (er, lstat) {
if (lstat && lstat.isSymbolicLink()) {
// If it's a symlink, then treat it as the target, unless
// the target does not exist, then treat it as a file.
return self.fs.stat(abs, function (er, stat) {
if (er)
self._stat2(f, abs, null, lstat, cb)
else
self._stat2(f, abs, er, stat, cb)
})
} else {
self._stat2(f, abs, er, lstat, cb)
}
}
}
Glob.prototype._stat2 = function (f, abs, er, stat, cb) {
if (er && (er.code === 'ENOENT' || er.code === 'ENOTDIR')) {
this.statCache[abs] = false
return cb()
}
var needDir = f.slice(-1) === '/'
this.statCache[abs] = stat
if (abs.slice(-1) === '/' && stat && !stat.isDirectory())
return cb(null, false, stat)
var c = true
if (stat)
c = stat.isDirectory() ? 'DIR' : 'FILE'
this.cache[abs] = this.cache[abs] || c
if (needDir && c === 'FILE')
return cb()
return cb(null, c, stat)
}
/***/ }),
/***/ 9795:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
module.exports = globSync
globSync.GlobSync = GlobSync
var rp = __nccwpck_require__(9728)
var minimatch = __nccwpck_require__(3772)
var Minimatch = minimatch.Minimatch
var Glob = (__nccwpck_require__(3574).Glob)
var util = __nccwpck_require__(9023)
var path = __nccwpck_require__(6928)
var assert = __nccwpck_require__(2613)
var isAbsolute = __nccwpck_require__(9024)
var common = __nccwpck_require__(2541)
var setopts = common.setopts
var ownProp = common.ownProp
var childrenIgnored = common.childrenIgnored
var isIgnored = common.isIgnored
function globSync (pattern, options) {
if (typeof options === 'function' || arguments.length === 3)
throw new TypeError('callback provided to sync glob\n'+
'See: https://github.com/isaacs/node-glob/issues/167')
return new GlobSync(pattern, options).found
}
function GlobSync (pattern, options) {
if (!pattern)
throw new Error('must provide pattern')
if (typeof options === 'function' || arguments.length === 3)
throw new TypeError('callback provided to sync glob\n'+
'See: https://github.com/isaacs/node-glob/issues/167')
if (!(this instanceof GlobSync))
return new GlobSync(pattern, options)
setopts(this, pattern, options)
if (this.noprocess)
return this
var n = this.minimatch.set.length
this.matches = new Array(n)
for (var i = 0; i < n; i ++) {
this._process(this.minimatch.set[i], i, false)
}
this._finish()
}
GlobSync.prototype._finish = function () {
assert.ok(this instanceof GlobSync)
if (this.realpath) {
var self = this
this.matches.forEach(function (matchset, index) {
var set = self.matches[index] = Object.create(null)
for (var p in matchset) {
try {
p = self._makeAbs(p)
var real = rp.realpathSync(p, self.realpathCache)
set[real] = true
} catch (er) {
if (er.syscall === 'stat')
set[self._makeAbs(p)] = true
else
throw er
}
}
})
}
common.finish(this)
}
GlobSync.prototype._process = function (pattern, index, inGlobStar) {
assert.ok(this instanceof GlobSync)
// Get the first [n] parts of pattern that are all strings.
var n = 0
while (typeof pattern[n] === 'string') {
n ++
}
// now n is the index of the first one that is *not* a string.
// See if there's anything else
var prefix
switch (n) {
// if not, then this is rather simple
case pattern.length:
this._processSimple(pattern.join('/'), index)
return
case 0:
// pattern *starts* with some non-trivial item.
// going to readdir(cwd), but not include the prefix in matches.
prefix = null
break
default:
// pattern has some string bits in the front.
// whatever it starts with, whether that's 'absolute' like /foo/bar,
// or 'relative' like '../baz'
prefix = pattern.slice(0, n).join('/')
break
}
var remain = pattern.slice(n)
// get the list of entries.
var read
if (prefix === null)
read = '.'
else if (isAbsolute(prefix) ||
isAbsolute(pattern.map(function (p) {
return typeof p === 'string' ? p : '[*]'
}).join('/'))) {
if (!prefix || !isAbsolute(prefix))
prefix = '/' + prefix
read = prefix
} else
read = prefix
var abs = this._makeAbs(read)
//if ignored, skip processing
if (childrenIgnored(this, read))
return
var isGlobStar = remain[0] === minimatch.GLOBSTAR
if (isGlobStar)
this._processGlobStar(prefix, read, abs, remain, index, inGlobStar)
else
this._processReaddir(prefix, read, abs, remain, index, inGlobStar)
}
GlobSync.prototype._processReaddir = function (prefix, read, abs, remain, index, inGlobStar) {
var entries = this._readdir(abs, inGlobStar)
// if the abs isn't a dir, then nothing can match!
if (!entries)
return
// It will only match dot entries if it starts with a dot, or if
// dot is set. Stuff like @(.foo|.bar) isn't allowed.
var pn = remain[0]
var negate = !!this.minimatch.negate
var rawGlob = pn._glob
var dotOk = this.dot || rawGlob.charAt(0) === '.'
var matchedEntries = []
for (var i = 0; i < entries.length; i++) {
var e = entries[i]
if (e.charAt(0) !== '.' || dotOk) {
var m
if (negate && !prefix) {
m = !e.match(pn)
} else {
m = e.match(pn)
}
if (m)
matchedEntries.push(e)
}
}
var len = matchedEntries.length
// If there are no matched entries, then nothing matches.
if (len === 0)
return
// if this is the last remaining pattern bit, then no need for
// an additional stat *unless* the user has specified mark or
// stat explicitly. We know they exist, since readdir returned
// them.
if (remain.length === 1 && !this.mark && !this.stat) {
if (!this.matches[index])
this.matches[index] = Object.create(null)
for (var i = 0; i < len; i ++) {
var e = matchedEntries[i]
if (prefix) {
if (prefix.slice(-1) !== '/')
e = prefix + '/' + e
else
e = prefix + e
}
if (e.charAt(0) === '/' && !this.nomount) {
e = path.join(this.root, e)
}
this._emitMatch(index, e)
}
// This was the last one, and no stats were needed
return
}
// now test all matched entries as stand-ins for that part
// of the pattern.
remain.shift()
for (var i = 0; i < len; i ++) {
var e = matchedEntries[i]
var newPattern
if (prefix)
newPattern = [prefix, e]
else
newPattern = [e]
this._process(newPattern.concat(remain), index, inGlobStar)
}
}
GlobSync.prototype._emitMatch = function (index, e) {
if (isIgnored(this, e))
return
var abs = this._makeAbs(e)
if (this.mark)
e = this._mark(e)
if (this.absolute) {
e = abs
}
if (this.matches[index][e])
return
if (this.nodir) {
var c = this.cache[abs]
if (c === 'DIR' || Array.isArray(c))
return
}
this.matches[index][e] = true
if (this.stat)
this._stat(e)
}
GlobSync.prototype._readdirInGlobStar = function (abs) {
// follow all symlinked directories forever
// just proceed as if this is a non-globstar situation
if (this.follow)
return this._readdir(abs, false)
var entries
var lstat
var stat
try {
lstat = this.fs.lstatSync(abs)
} catch (er) {
if (er.code === 'ENOENT') {
// lstat failed, doesn't exist
return null
}
}
var isSym = lstat && lstat.isSymbolicLink()
this.symlinks[abs] = isSym
// If it's not a symlink or a dir, then it's definitely a regular file.
// don't bother doing a readdir in that case.
if (!isSym && lstat && !lstat.isDirectory())
this.cache[abs] = 'FILE'
else
entries = this._readdir(abs, false)
return entries
}
GlobSync.prototype._readdir = function (abs, inGlobStar) {
var entries
if (inGlobStar && !ownProp(this.symlinks, abs))
return this._readdirInGlobStar(abs)
if (ownProp(this.cache, abs)) {
var c = this.cache[abs]
if (!c || c === 'FILE')
return null
if (Array.isArray(c))
return c
}
try {
return this._readdirEntries(abs, this.fs.readdirSync(abs))
} catch (er) {
this._readdirError(abs, er)
return null
}
}
GlobSync.prototype._readdirEntries = function (abs, entries) {
// if we haven't asked to stat everything, then just
// assume that everything in there exists, so we can avoid
// having to stat it a second time.
if (!this.mark && !this.stat) {
for (var i = 0; i < entries.length; i ++) {
var e = entries[i]
if (abs === '/')
e = abs + e
else
e = abs + '/' + e
this.cache[e] = true
}
}
this.cache[abs] = entries
// mark and cache dir-ness
return entries
}
GlobSync.prototype._readdirError = function (f, er) {
// handle errors, and cache the information
switch (er.code) {
case 'ENOTSUP': // https://github.com/isaacs/node-glob/issues/205
case 'ENOTDIR': // totally normal. means it *does* exist.
var abs = this._makeAbs(f)
this.cache[abs] = 'FILE'
if (abs === this.cwdAbs) {
var error = new Error(er.code + ' invalid cwd ' + this.cwd)
error.path = this.cwd
error.code = er.code
throw error
}
break
case 'ENOENT': // not terribly unusual
case 'ELOOP':
case 'ENAMETOOLONG':
case 'UNKNOWN':
this.cache[this._makeAbs(f)] = false
break
default: // some unusual error. Treat as failure.
this.cache[this._makeAbs(f)] = false
if (this.strict)
throw er
if (!this.silent)
console.error('glob error', er)
break
}
}
GlobSync.prototype._processGlobStar = function (prefix, read, abs, remain, index, inGlobStar) {
var entries = this._readdir(abs, inGlobStar)
// no entries means not a dir, so it can never have matches
// foo.txt/** doesn't match foo.txt
if (!entries)
return
// test without the globstar, and with every child both below
// and replacing the globstar.
var remainWithoutGlobStar = remain.slice(1)
var gspref = prefix ? [ prefix ] : []
var noGlobStar = gspref.concat(remainWithoutGlobStar)
// the noGlobStar pattern exits the inGlobStar state
this._process(noGlobStar, index, false)
var len = entries.length
var isSym = this.symlinks[abs]
// If it's a symlink, and we're in a globstar, then stop
if (isSym && inGlobStar)
return
for (var i = 0; i < len; i++) {
var e = entries[i]
if (e.charAt(0) === '.' && !this.dot)
continue
// these two cases enter the inGlobStar state
var instead = gspref.concat(entries[i], remainWithoutGlobStar)
this._process(instead, index, true)
var below = gspref.concat(entries[i], remain)
this._process(below, index, true)
}
}
GlobSync.prototype._processSimple = function (prefix, index) {
// XXX review this. Shouldn't it be doing the mounting etc
// before doing stat? kinda weird?
var exists = this._stat(prefix)
if (!this.matches[index])
this.matches[index] = Object.create(null)
// If it doesn't exist, then just mark the lack of results
if (!exists)
return
if (prefix && isAbsolute(prefix) && !this.nomount) {
var trail = /[\/\\]$/.test(prefix)
if (prefix.charAt(0) === '/') {
prefix = path.join(this.root, prefix)
} else {
prefix = path.resolve(this.root, prefix)
if (trail)
prefix += '/'
}
}
if (process.platform === 'win32')
prefix = prefix.replace(/\\/g, '/')
// Mark this as a match
this._emitMatch(index, prefix)
}
// Returns either 'DIR', 'FILE', or false
GlobSync.prototype._stat = function (f) {
var abs = this._makeAbs(f)
var needDir = f.slice(-1) === '/'
if (f.length > this.maxLength)
return false
if (!this.stat && ownProp(this.cache, abs)) {
var c = this.cache[abs]
if (Array.isArray(c))
c = 'DIR'
// It exists, but maybe not how we need it
if (!needDir || c === 'DIR')
return c
if (needDir && c === 'FILE')
return false
// otherwise we have to stat, because maybe c=true
// if we know it exists, but not what it is.
}
var exists
var stat = this.statCache[abs]
if (!stat) {
var lstat
try {
lstat = this.fs.lstatSync(abs)
} catch (er) {
if (er && (er.code === 'ENOENT' || er.code === 'ENOTDIR')) {
this.statCache[abs] = false
return false
}
}
if (lstat && lstat.isSymbolicLink()) {
try {
stat = this.fs.statSync(abs)
} catch (er) {
stat = lstat
}
} else {
stat = lstat
}
}
this.statCache[abs] = stat
var c = true
if (stat)
c = stat.isDirectory() ? 'DIR' : 'FILE'
this.cache[abs] = this.cache[abs] || c
if (needDir && c === 'FILE')
return false
return c
}
GlobSync.prototype._mark = function (p) {
return common.mark(this, p)
}
GlobSync.prototype._makeAbs = function (f) {
return common.makeAbs(this, f)
}
/***/ }),
/***/ 1337:
/***/ ((module) => {
"use strict";
const hasOwnProp = Object.prototype.hasOwnProperty;
module.exports = (object, property) => hasOwnProp.call(object, property);
/***/ }),
/***/ 6656:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
"use strict";
const path = __nccwpck_require__(6928);
const resolveFrom = __nccwpck_require__(1631);
const parentModule = __nccwpck_require__(4984);
module.exports = moduleId => {
if (typeof moduleId !== 'string') {
throw new TypeError('Expected a string');
}
const parentPath = parentModule(__filename);
const cwd = parentPath ? path.dirname(parentPath) : __dirname;
const filePath = resolveFrom(cwd, moduleId);
const oldModule = require.cache[filePath];
// Delete itself from module parent
if (oldModule && oldModule.parent) {
let i = oldModule.parent.children.length;
while (i--) {
if (oldModule.parent.children[i].id === filePath) {
oldModule.parent.children.splice(i, 1);
}
}
}
delete require.cache[filePath]; // Delete module from cache
const parent = require.cache[parentPath]; // If `filePath` and `parentPath` are the same, cache will already be deleted so we won't get a memory leak in next step
return parent === undefined ? require(filePath) : parent.require(filePath); // In case cache doesn't have parent, fall back to normal require
};
/***/ }),
/***/ 3176:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
var wrappy = __nccwpck_require__(8264)
var reqs = Object.create(null)
var once = __nccwpck_require__(5560)
module.exports = wrappy(inflight)
function inflight (key, cb) {
if (reqs[key]) {
reqs[key].push(cb)
return null
} else {
reqs[key] = [cb]
return makeres(key)
}
}
function makeres (key) {
return once(function RES () {
var cbs = reqs[key]
var len = cbs.length
var args = slice(arguments)
// XXX It's somewhat ambiguous whether a new callback added in this
// pass should be queued for later execution if something in the
// list of callbacks throws, or if it should just be discarded.
// However, it's such an edge case that it hardly matters, and either
// choice is likely as surprising as the other.
// As it happens, we do go ahead and schedule it for later execution.
try {
for (var i = 0; i < len; i++) {
cbs[i].apply(null, args)
}
} finally {
if (cbs.length > len) {
// added more in the interim.
// de-zalgo, just in case, but don't call again.
cbs.splice(0, len)
process.nextTick(function () {
RES.apply(null, args)
})
} else {
delete reqs[key]
}
}
})
}
function slice (args) {
var length = args.length
var array = []
for (var i = 0; i < length; i++) array[i] = args[i]
return array
}
/***/ }),
/***/ 9598:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
try {
var util = __nccwpck_require__(9023);
/* istanbul ignore next */
if (typeof util.inherits !== 'function') throw '';
module.exports = util.inherits;
} catch (e) {
/* istanbul ignore next */
module.exports = __nccwpck_require__(6589);
}
/***/ }),
/***/ 6589:
/***/ ((module) => {
if (typeof Object.create === 'function') {
// implementation from standard node.js 'util' module
module.exports = function inherits(ctor, superCtor) {
if (superCtor) {
ctor.super_ = superCtor
ctor.prototype = Object.create(superCtor.prototype, {
constructor: {
value: ctor,
enumerable: false,
writable: true,
configurable: true
}
})
}
};
} else {
// old school shim for old browsers
module.exports = function inherits(ctor, superCtor) {
if (superCtor) {
ctor.super_ = superCtor
var TempCtor = function () {}
TempCtor.prototype = superCtor.prototype
ctor.prototype = new TempCtor()
ctor.prototype.constructor = ctor
}
}
}
/***/ }),
/***/ 8000:
/***/ ((module) => {
"use strict";
module.exports = function isArrayish(obj) {
if (!obj) {
return false;
}
return obj instanceof Array || Array.isArray(obj) ||
(obj.length >= 0 && obj.splice instanceof Function);
};
/***/ }),
/***/ 3407:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
/*!
* is-plain-object <https://github.com/jonschlinkert/is-plain-object>
*
* Copyright (c) 2014-2017, Jon Schlinkert.
* Released under the MIT License.
*/
function isObject(o) {
return Object.prototype.toString.call(o) === '[object Object]';
}
function isPlainObject(o) {
var ctor,prot;
if (isObject(o) === false) return false;
// If has modified constructor
ctor = o.constructor;
if (ctor === undefined) return true;
// If has modified prototype
prot = ctor.prototype;
if (isObject(prot) === false) return false;
// If constructor does not have an Object-specific method
if (prot.hasOwnProperty('isPrototypeOf') === false) {
return false;
}
// Most likely a plain Object
return true;
}
exports.isPlainObject = isPlainObject;
/***/ }),
/***/ 5756:
/***/ ((__unused_webpack_module, exports) => {
// Copyright 2014, 2015, 2016, 2017, 2018 Simon Lydell
// License: MIT. (See LICENSE.)
Object.defineProperty(exports, "__esModule", ({
value: true
}))
// This regex comes from regex.coffee, and is inserted here by generate-index.js
// (run `npm run build`).
exports["default"] = /((['"])(?:(?!\2|\\).|\\(?:\r\n|[\s\S]))*(\2)?|`(?:[^`\\$]|\\[\s\S]|\$(?!\{)|\$\{(?:[^{}]|\{[^}]*\}?)*\}?)*(`)?)|(\/\/.*)|(\/\*(?:[^*]|\*(?!\/))*(\*\/)?)|(\/(?!\*)(?:\[(?:(?![\]\\]).|\\.)*\]|(?![\/\]\\]).|\\.)+\/(?:(?!\s*(?:\b|[\u0080-\uFFFF$\\'"~({]|[+\-!](?!=)|\.?\d))|[gmiyus]{1,6}\b(?![\u0080-\uFFFF$\\]|\s*(?:[+\-*%&|^<>!=?({]|\/(?![\/*])))))|(0[xX][\da-fA-F]+|0[oO][0-7]+|0[bB][01]+|(?:\d*\.\d+|\d+\.?)(?:[eE][+-]?\d+)?)|((?!\d)(?:(?!\s)[$\w\u0080-\uFFFF]|\\u[\da-fA-F]{4}|\\u\{[\da-fA-F]+\})+)|(--|\+\+|&&|\|\||=>|\.{3}|(?:[+\-\/%&|^]|\*{1,2}|<{1,2}|>{1,3}|!=?|={1,2})=?|[?~.,:;[\](){}])|(\s+)|(^$|[\s\S])/g
exports.matchToToken = function(match) {
var token = {type: "invalid", value: match[0], closed: undefined}
if (match[ 1]) token.type = "string" , token.closed = !!(match[3] || match[4])
else if (match[ 5]) token.type = "comment"
else if (match[ 6]) token.type = "comment", token.closed = !!match[7]
else if (match[ 8]) token.type = "regex"
else if (match[ 9]) token.type = "number"
else if (match[10]) token.type = "name"
else if (match[11]) token.type = "punctuator"
else if (match[12]) token.type = "whitespace"
return token
}
/***/ }),
/***/ 6712:
/***/ ((module) => {
"use strict";
const hexify = char => {
const h = char.charCodeAt(0).toString(16).toUpperCase()
return '0x' + (h.length % 2 ? '0' : '') + h
}
const parseError = (e, txt, context) => {
if (!txt) {
return {
message: e.message + ' while parsing empty string',
position: 0,
}
}
const badToken = e.message.match(/^Unexpected token (.) .*position\s+(\d+)/i)
const errIdx = badToken ? +badToken[2]
: e.message.match(/^Unexpected end of JSON.*/i) ? txt.length - 1
: null
const msg = badToken ? e.message.replace(/^Unexpected token ./, `Unexpected token ${
JSON.stringify(badToken[1])
} (${hexify(badToken[1])})`)
: e.message
if (errIdx !== null && errIdx !== undefined) {
const start = errIdx <= context ? 0
: errIdx - context
const end = errIdx + context >= txt.length ? txt.length
: errIdx + context
const slice = (start === 0 ? '' : '...') +
txt.slice(start, end) +
(end === txt.length ? '' : '...')
const near = txt === slice ? '' : 'near '
return {
message: msg + ` while parsing ${near}${JSON.stringify(slice)}`,
position: errIdx,
}
} else {
return {
message: msg + ` while parsing '${txt.slice(0, context * 2)}'`,
position: 0,
}
}
}
class JSONParseError extends SyntaxError {
constructor (er, txt, context, caller) {
context = context || 20
const metadata = parseError(er, txt, context)
super(metadata.message)
Object.assign(this, metadata)
this.code = 'EJSONPARSE'
this.systemError = er
Error.captureStackTrace(this, caller || this.constructor)
}
get name () { return this.constructor.name }
set name (n) {}
get [Symbol.toStringTag] () { return this.constructor.name }
}
const kIndent = Symbol.for('indent')
const kNewline = Symbol.for('newline')
// only respect indentation if we got a line break, otherwise squash it
// things other than objects and arrays aren't indented, so ignore those
// Important: in both of these regexps, the $1 capture group is the newline
// or undefined, and the $2 capture group is the indent, or undefined.
const formatRE = /^\s*[{\[]((?:\r?\n)+)([\s\t]*)/
const emptyRE = /^(?:\{\}|\[\])((?:\r?\n)+)?$/
const parseJson = (txt, reviver, context) => {
const parseText = stripBOM(txt)
context = context || 20
try {
// get the indentation so that we can save it back nicely
// if the file starts with {" then we have an indent of '', ie, none
// otherwise, pick the indentation of the next line after the first \n
// If the pattern doesn't match, then it means no indentation.
// JSON.stringify ignores symbols, so this is reasonably safe.
// if the string is '{}' or '[]', then use the default 2-space indent.
const [, newline = '\n', indent = ' '] = parseText.match(emptyRE) ||
parseText.match(formatRE) ||
[, '', '']
const result = JSON.parse(parseText, reviver)
if (result && typeof result === 'object') {
result[kNewline] = newline
result[kIndent] = indent
}
return result
} catch (e) {
if (typeof txt !== 'string' && !Buffer.isBuffer(txt)) {
const isEmptyArray = Array.isArray(txt) && txt.length === 0
throw Object.assign(new TypeError(
`Cannot parse ${isEmptyArray ? 'an empty array' : String(txt)}`
), {
code: 'EJSONPARSE',
systemError: e,
})
}
throw new JSONParseError(e, parseText, context, parseJson)
}
}
// Remove byte order marker. This catches EF BB BF (the UTF-8 BOM)
// because the buffer-to-string conversion in `fs.readFileSync()`
// translates it to FEFF, the UTF-16 BOM.
const stripBOM = txt => String(txt).replace(/^\uFEFF/, '')
module.exports = parseJson
parseJson.JSONParseError = JSONParseError
parseJson.noExceptions = (txt, reviver) => {
try {
return JSON.parse(stripBOM(txt), reviver)
} catch (e) {}
}
/***/ }),
/***/ 1402:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
exports.__esModule = true;
exports.LinesAndColumns = void 0;
var LF = '\n';
var CR = '\r';
var LinesAndColumns = /** @class */ (function () {
function LinesAndColumns(string) {
this.string = string;
var offsets = [0];
for (var offset = 0; offset < string.length;) {
switch (string[offset]) {
case LF:
offset += LF.length;
offsets.push(offset);
break;
case CR:
offset += CR.length;
if (string[offset] === LF) {
offset += LF.length;
}
offsets.push(offset);
break;
default:
offset++;
break;
}
}
this.offsets = offsets;
}
LinesAndColumns.prototype.locationForIndex = function (index) {
if (index < 0 || index > this.string.length) {
return null;
}
var line = 0;
var offsets = this.offsets;
while (offsets[line + 1] <= index) {
line++;
}
var column = index - offsets[line];
return { line: line, column: column };
};
LinesAndColumns.prototype.indexForLocation = function (location) {
var line = location.line, column = location.column;
if (line < 0 || line >= this.offsets.length) {
return null;
}
if (column < 0 || column > this.lengthOfLine(line)) {
return null;
}
return this.offsets[line] + column;
};
LinesAndColumns.prototype.lengthOfLine = function (line) {
var offset = this.offsets[line];
var nextOffset = line === this.offsets.length - 1
? this.string.length
: this.offsets[line + 1];
return nextOffset - offset;
};
return LinesAndColumns;
}());
exports.LinesAndColumns = LinesAndColumns;
exports["default"] = LinesAndColumns;
/***/ }),
/***/ 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
var GLOBSTAR = minimatch.GLOBSTAR = Minimatch.GLOBSTAR = {}
var expand = __nccwpck_require__(4691)
var plTypes = {
'!': { open: '(?:(?!(?:', close: '))[^/]*?)'},
'?': { open: '(?:', close: ')?' },
'+': { open: '(?:', close: ')+' },
'*': { open: '(?:', close: ')*' },
'@': { open: '(?:', close: ')' }
}
// any single thing other than /
// don't need to escape / when using new RegExp()
var qmark = '[^/]'
// * => any number of characters
var star = qmark + '*?'
// ** when dots are allowed. Anything goes, except .. and .
// not (^ or / followed by one or two dots followed by $ or /),
// followed by anything, any number of times.
var twoStarDot = '(?:(?!(?:\\\/|^)(?:\\.{1,2})($|\\\/)).)*?'
// not a ^ or / followed by a dot,
// followed by anything, any number of times.
var twoStarNoDot = '(?:(?!(?:\\\/|^)\\.).)*?'
// characters that need to be escaped in RegExp.
var reSpecials = charSet('().*{}+?[]^$\\!')
// "abc" -> { a:true, b:true, c:true }
function charSet (s) {
return s.split('').reduce(function (set, c) {
set[c] = true
return set
}, {})
}
// normalizes slashes.
var slashSplit = /\/+/
minimatch.filter = filter
function filter (pattern, options) {
options = options || {}
return function (p, i, list) {
return minimatch(p, pattern, options)
}
}
function ext (a, b) {
b = b || {}
var t = {}
Object.keys(a).forEach(function (k) {
t[k] = a[k]
})
Object.keys(b).forEach(function (k) {
t[k] = b[k]
})
return t
}
minimatch.defaults = function (def) {
if (!def || typeof def !== 'object' || !Object.keys(def).length) {
return minimatch
}
var orig = minimatch
var m = function minimatch (p, pattern, options) {
return orig(p, pattern, ext(def, options))
}
m.Minimatch = function Minimatch (pattern, options) {
return new orig.Minimatch(pattern, ext(def, options))
}
m.Minimatch.defaults = function defaults (options) {
return orig.defaults(ext(def, options)).Minimatch
}
m.filter = function filter (pattern, options) {
return orig.filter(pattern, ext(def, options))
}
m.defaults = function defaults (options) {
return orig.defaults(ext(def, options))
}
m.makeRe = function makeRe (pattern, options) {
return orig.makeRe(pattern, ext(def, options))
}
m.braceExpand = function braceExpand (pattern, options) {
return orig.braceExpand(pattern, ext(def, options))
}
m.match = function (list, pattern, options) {
return orig.match(list, pattern, ext(def, options))
}
return m
}
Minimatch.defaults = function (def) {
return minimatch.defaults(def).Minimatch
}
function minimatch (p, pattern, options) {
assertValidPattern(pattern)
if (!options) options = {}
// shortcut: comments match nothing.
if (!options.nocomment && pattern.charAt(0) === '#') {
return false
}
return new Minimatch(pattern, options).match(p)
}
function Minimatch (pattern, options) {
if (!(this instanceof Minimatch)) {
return new Minimatch(pattern, options)
}
assertValidPattern(pattern)
if (!options) options = {}
pattern = pattern.trim()
// windows support: need to use /, not \
if (!options.allowWindowsEscape && path.sep !== '/') {
pattern = pattern.split(path.sep).join('/')
}
this.options = options
this.set = []
this.pattern = pattern
this.regexp = null
this.negate = false
this.comment = false
this.empty = false
this.partial = !!options.partial
// make the set of regexps etc.
this.make()
}
Minimatch.prototype.debug = function () {}
Minimatch.prototype.make = make
function make () {
var pattern = this.pattern
var options = this.options
// empty patterns and comments match nothing.
if (!options.nocomment && pattern.charAt(0) === '#') {
this.comment = true
return
}
if (!pattern) {
this.empty = true
return
}
// step 1: figure out negation, etc.
this.parseNegate()
// step 2: expand braces
var set = this.globSet = this.braceExpand()
if (options.debug) this.debug = function debug() { console.error.apply(console, arguments) }
this.debug(this.pattern, set)
// step 3: now we have a set, so turn each one into a series of path-portion
// matching patterns.
// These will be regexps, except in the case of "**", which is
// set to the GLOBSTAR object for globstar behavior,
// and will not contain any / characters
set = this.globParts = set.map(function (s) {
return s.split(slashSplit)
})
this.debug(this.pattern, set)
// glob --> regexps
set = set.map(function (s, si, set) {
return s.map(this.parse, this)
}, this)
this.debug(this.pattern, set)
// filter out everything that didn't compile properly.
set = set.filter(function (s) {
return s.indexOf(false) === -1
})
this.debug(this.pattern, set)
this.set = set
}
Minimatch.prototype.parseNegate = parseNegate
function parseNegate () {
var pattern = this.pattern
var negate = false
var options = this.options
var negateOffset = 0
if (options.nonegate) return
for (var i = 0, l = pattern.length
; i < l && pattern.charAt(i) === '!'
; i++) {
negate = !negate
negateOffset++
}
if (negateOffset) this.pattern = pattern.substr(negateOffset)
this.negate = negate
}
// Brace expansion:
// a{b,c}d -> abd acd
// a{b,}c -> abc ac
// a{0..3}d -> a0d a1d a2d a3d
// a{b,c{d,e}f}g -> abg acdfg acefg
// a{b,c}d{e,f}g -> abdeg acdeg abdeg abdfg
//
// Invalid sets are not expanded.
// a{2..}b -> a{2..}b
// a{b}c -> a{b}c
minimatch.braceExpand = function (pattern, options) {
return braceExpand(pattern, options)
}
Minimatch.prototype.braceExpand = braceExpand
function braceExpand (pattern, options) {
if (!options) {
if (this instanceof Minimatch) {
options = this.options
} else {
options = {}
}
}
pattern = typeof pattern === 'undefined'
? this.pattern : pattern
assertValidPattern(pattern)
// Thanks to Yeting Li <https://github.com/yetingli> for
// improving this regexp to avoid a ReDOS vulnerability.
if (options.nobrace || !/\{(?:(?!\{).)*\}/.test(pattern)) {
// shortcut. no need to expand.
return [pattern]
}
return expand(pattern)
}
var MAX_PATTERN_LENGTH = 1024 * 64
var assertValidPattern = function (pattern) {
if (typeof pattern !== 'string') {
throw new TypeError('invalid pattern')
}
if (pattern.length > MAX_PATTERN_LENGTH) {
throw new TypeError('pattern is too long')
}
}
// parse a component of the expanded set.
// At this point, no pattern may contain "/" in it
// so we're going to return a 2d array, where each entry is the full
// pattern, split on '/', and then turned into a regular expression.
// A regexp is made at the end which joins each array with an
// escaped /, and another full one which joins each regexp with |.
//
// Following the lead of Bash 4.1, note that "**" only has special meaning
// when it is the *only* thing in a path portion. Otherwise, any series
// of * is equivalent to a single *. Globstar behavior is enabled by
// default, and can be disabled by setting options.noglobstar.
Minimatch.prototype.parse = parse
var SUBPARSE = {}
function parse (pattern, isSub) {
assertValidPattern(pattern)
var options = this.options
// shortcuts
if (pattern === '**') {
if (!options.noglobstar)
return GLOBSTAR
else
pattern = '*'
}
if (pattern === '') return ''
var re = ''
var hasMagic = !!options.nocase
var escaping = false
// ? => one single character
var patternListStack = []
var negativeLists = []
var stateChar
var inClass = false
var reClassStart = -1
var classStart = -1
// . and .. never match anything that doesn't start with .,
// even when options.dot is set.
var patternStart = pattern.charAt(0) === '.' ? '' // anything
// not (start or / followed by . or .. followed by / or end)
: options.dot ? '(?!(?:^|\\\/)\\.{1,2}(?:$|\\\/))'
: '(?!\\.)'
var self = this
function clearStateChar () {
if (stateChar) {
// we had some state-tracking character
// that wasn't consumed by this pass.
switch (stateChar) {
case '*':
re += star
hasMagic = true
break
case '?':
re += qmark
hasMagic = true
break
default:
re += '\\' + stateChar
break
}
self.debug('clearStateChar %j %j', stateChar, re)
stateChar = false
}
}
for (var i = 0, len = pattern.length, c
; (i < len) && (c = pattern.charAt(i))
; i++) {
this.debug('%s\t%s %s %j', pattern, i, re, c)
// skip over any that are escaped.
if (escaping && reSpecials[c]) {
re += '\\' + c
escaping = false
continue
}
switch (c) {
/* istanbul ignore next */
case '/': {
// completely not allowed, even escaped.
// Should already be path-split by now.
return false
}
case '\\':
clearStateChar()
escaping = true
continue
// the various stateChar values
// for the "extglob" stuff.
case '?':
case '*':
case '+':
case '@':
case '!':
this.debug('%s\t%s %s %j <-- stateChar', pattern, i, re, c)
// all of those are literals inside a class, except that
// the glob [!a] means [^a] in regexp
if (inClass) {
this.debug(' in class')
if (c === '!' && i === classStart + 1) c = '^'
re += c
continue
}
// if we already have a stateChar, then it means
// that there was something like ** or +? in there.
// Handle the stateChar, then proceed with this one.
self.debug('call clearStateChar %j', stateChar)
clearStateChar()
stateChar = c
// if extglob is disabled, then +(asdf|foo) isn't a thing.
// just clear the statechar *now*, rather than even diving into
// the patternList stuff.
if (options.noext) clearStateChar()
continue
case '(':
if (inClass) {
re += '('
continue
}
if (!stateChar) {
re += '\\('
continue
}
patternListStack.push({
type: stateChar,
start: i - 1,
reStart: re.length,
open: plTypes[stateChar].open,
close: plTypes[stateChar].close
})
// negation is (?:(?!js)[^/]*)
re += stateChar === '!' ? '(?:(?!(?:' : '(?:'
this.debug('plType %j %j', stateChar, re)
stateChar = false
continue
case ')':
if (inClass || !patternListStack.length) {
re += '\\)'
continue
}
clearStateChar()
hasMagic = true
var pl = patternListStack.pop()
// negation is (?:(?!js)[^/]*)
// The others are (?:<pattern>)<type>
re += pl.close
if (pl.type === '!') {
negativeLists.push(pl)
}
pl.reEnd = re.length
continue
case '|':
if (inClass || !patternListStack.length || escaping) {
re += '\\|'
escaping = false
continue
}
clearStateChar()
re += '|'
continue
// these are mostly the same in regexp and glob
case '[':
// swallow any state-tracking char before the [
clearStateChar()
if (inClass) {
re += '\\' + c
continue
}
inClass = true
classStart = i
reClassStart = re.length
re += c
continue
case ']':
// a right bracket shall lose its special
// meaning and represent itself in
// a bracket expression if it occurs
// first in the list. -- POSIX.2 2.8.3.2
if (i === classStart + 1 || !inClass) {
re += '\\' + c
escaping = false
continue
}
// handle the case where we left a class open.
// "[z-a]" is valid, equivalent to "\[z-a\]"
// split where the last [ was, make sure we don't have
// an invalid re. if so, re-walk the contents of the
// would-be class to re-translate any characters that
// were passed through as-is
// TODO: It would probably be faster to determine this
// without a try/catch and a new RegExp, but it's tricky
// to do safely. For now, this is safe and works.
var cs = pattern.substring(classStart + 1, i)
try {
RegExp('[' + cs + ']')
} catch (er) {
// not a valid class!
var sp = this.parse(cs, SUBPARSE)
re = re.substr(0, reClassStart) + '\\[' + sp[0] + '\\]'
hasMagic = hasMagic || sp[1]
inClass = false
continue
}
// finish up the class.
hasMagic = true
inClass = false
re += c
continue
default:
// swallow any state char that wasn't consumed
clearStateChar()
if (escaping) {
// no need
escaping = false
} else if (reSpecials[c]
&& !(c === '^' && inClass)) {
re += '\\'
}
re += c
} // switch
} // for
// handle the case where we left a class open.
// "[abc" is valid, equivalent to "\[abc"
if (inClass) {
// split where the last [ was, and escape it
// this is a huge pita. We now have to re-walk
// the contents of the would-be class to re-translate
// any characters that were passed through as-is
cs = pattern.substr(classStart + 1)
sp = this.parse(cs, SUBPARSE)
re = re.substr(0, reClassStart) + '\\[' + sp[0]
hasMagic = hasMagic || sp[1]
}
// handle the case where we had a +( thing at the *end*
// of the pattern.
// each pattern list stack adds 3 chars, and we need to go through
// and escape any | chars that were passed through as-is for the regexp.
// Go through and escape them, taking care not to double-escape any
// | chars that were already escaped.
for (pl = patternListStack.pop(); pl; pl = patternListStack.pop()) {
var tail = re.slice(pl.reStart + pl.open.length)
this.debug('setting tail', re, pl)
// maybe some even number of \, then maybe 1 \, followed by a |
tail = tail.replace(/((?:\\{2}){0,64})(\\?)\|/g, function (_, $1, $2) {
if (!$2) {
// the | isn't already escaped, so escape it.
$2 = '\\'
}
// need to escape all those slashes *again*, without escaping the
// one that we need for escaping the | character. As it works out,
// escaping an even number of slashes can be done by simply repeating
// it exactly after itself. That's why this trick works.
//
// I am sorry that you have to see this.
return $1 + $1 + $2 + '|'
})
this.debug('tail=%j\n %s', tail, tail, pl, re)
var t = pl.type === '*' ? star
: pl.type === '?' ? qmark
: '\\' + pl.type
hasMagic = true
re = re.slice(0, pl.reStart) + t + '\\(' + tail
}
// handle trailing things that only matter at the very end.
clearStateChar()
if (escaping) {
// trailing \\
re += '\\\\'
}
// only need to apply the nodot start if the re starts with
// something that could conceivably capture a dot
var addPatternStart = false
switch (re.charAt(0)) {
case '[': case '.': case '(': addPatternStart = true
}
// Hack to work around lack of negative lookbehind in JS
// A pattern like: *.!(x).!(y|z) needs to ensure that a name
// like 'a.xyz.yz' doesn't match. So, the first negative
// lookahead, has to look ALL the way ahead, to the end of
// the pattern.
for (var n = negativeLists.length - 1; n > -1; n--) {
var nl = negativeLists[n]
var nlBefore = re.slice(0, nl.reStart)
var nlFirst = re.slice(nl.reStart, nl.reEnd - 8)
var nlLast = re.slice(nl.reEnd - 8, nl.reEnd)
var nlAfter = re.slice(nl.reEnd)
nlLast += nlAfter
// Handle nested stuff like *(*.js|!(*.json)), where open parens
// mean that we should *not* include the ) in the bit that is considered
// "after" the negated section.
var openParensBefore = nlBefore.split('(').length - 1
var cleanAfter = nlAfter
for (i = 0; i < openParensBefore; i++) {
cleanAfter = cleanAfter.replace(/\)[+*?]?/, '')
}
nlAfter = cleanAfter
var dollar = ''
if (nlAfter === '' && isSub !== SUBPARSE) {
dollar = '$'
}
var newRe = nlBefore + nlFirst + nlAfter + dollar + nlLast
re = newRe
}
// if the re is not "" at this point, then we need to make sure
// it doesn't match against an empty path part.
// Otherwise a/* will match a/, which it should not.
if (re !== '' && hasMagic) {
re = '(?=.)' + re
}
if (addPatternStart) {
re = patternStart + re
}
// parsing just a piece of a larger pattern.
if (isSub === SUBPARSE) {
return [re, hasMagic]
}
// skip the regexp for non-magical patterns
// unescape anything in it, though, so that it'll be
// an exact match against a file etc.
if (!hasMagic) {
return globUnescape(pattern)
}
var flags = options.nocase ? 'i' : ''
try {
var regExp = new RegExp('^' + re + '$', flags)
} catch (er) /* istanbul ignore next - should be impossible */ {
// If it was an invalid regular expression, then it can't match
// anything. This trick looks for a character after the end of
// the string, which is of course impossible, except in multi-line
// mode, but it's not a /m regex.
return new RegExp('$.')
}
regExp._glob = pattern
regExp._src = re
return regExp
}
minimatch.makeRe = function (pattern, options) {
return new Minimatch(pattern, options || {}).makeRe()
}
Minimatch.prototype.makeRe = makeRe
function makeRe () {
if (this.regexp || this.regexp === false) return this.regexp
// at this point, this.set is a 2d array of partial
// pattern strings, or "**".
//
// It's better to use .match(). This function shouldn't
// be used, really, but it's pretty convenient sometimes,
// when you just want to work with a regex.
var set = this.set
if (!set.length) {
this.regexp = false
return this.regexp
}
var options = this.options
var twoStar = options.noglobstar ? star
: options.dot ? twoStarDot
: twoStarNoDot
var flags = options.nocase ? 'i' : ''
var re = set.map(function (pattern) {
return pattern.map(function (p) {
return (p === GLOBSTAR) ? twoStar
: (typeof p === 'string') ? regExpEscape(p)
: p._src
}).join('\\\/')
}).join('|')
// must match entire pattern
// ending in a * or ** will make it less strict.
re = '^(?:' + re + ')$'
// can match anything, as long as it's not this.
if (this.negate) re = '^(?!' + re + ').*$'
try {
this.regexp = new RegExp(re, flags)
} catch (ex) /* istanbul ignore next - should be impossible */ {
this.regexp = false
}
return this.regexp
}
minimatch.match = function (list, pattern, options) {
options = options || {}
var mm = new Minimatch(pattern, options)
list = list.filter(function (f) {
return mm.match(f)
})
if (mm.options.nonull && !list.length) {
list.push(pattern)
}
return list
}
Minimatch.prototype.match = function match (f, partial) {
if (typeof partial === 'undefined') partial = this.partial
this.debug('match', f, this.pattern)
// short-circuit in the case of busted things.
// comments, etc.
if (this.comment) return false
if (this.empty) return f === ''
if (f === '/' && partial) return true
var options = this.options
// windows: need to use /, not \
if (path.sep !== '/') {
f = f.split(path.sep).join('/')
}
// treat the test path as a set of pathparts.
f = f.split(slashSplit)
this.debug(this.pattern, 'split', f)
// just ONE of the pattern sets in this.set needs to match
// in order for it to be valid. If negating, then just one
// match means that we have failed.
// Either way, return on the first hit.
var set = this.set
this.debug(this.pattern, 'set', set)
// Find the basename of the path by looking for the last non-empty segment
var filename
var i
for (i = f.length - 1; i >= 0; i--) {
filename = f[i]
if (filename) break
}
for (i = 0; i < set.length; i++) {
var pattern = set[i]
var file = f
if (options.matchBase && pattern.length === 1) {
file = [filename]
}
var hit = this.matchOne(file, pattern, partial)
if (hit) {
if (options.flipNegate) return true
return !this.negate
}
}
// didn't get any hits. this is success if it's a negative
// pattern, failure otherwise.
if (options.flipNegate) return false
return this.negate
}
// set partial to true to test if, for example,
// "/a/b" matches the start of "/*/b/*/d"
// Partial means, if you run out of file before you run
// out of pattern, then that's fine, as long as all
// the parts match.
Minimatch.prototype.matchOne = function (file, pattern, partial) {
var options = this.options
this.debug('matchOne',
{ 'this': this, file: file, pattern: pattern })
this.debug('matchOne', file.length, pattern.length)
for (var fi = 0,
pi = 0,
fl = file.length,
pl = pattern.length
; (fi < fl) && (pi < pl)
; fi++, pi++) {
this.debug('matchOne loop')
var p = pattern[pi]
var f = file[fi]
this.debug(pattern, p, f)
// should be impossible.
// some invalid regexp stuff in the set.
/* istanbul ignore if */
if (p === false) return false
if (p === GLOBSTAR) {
this.debug('GLOBSTAR', [pattern, p, f])
// "**"
// a/**/b/**/c would match the following:
// a/b/x/y/z/c
// a/x/y/z/b/c
// a/b/x/b/x/c
// a/b/c
// To do this, take the rest of the pattern after
// the **, and see if it would match the file remainder.
// If so, return success.
// If not, the ** "swallows" a segment, and try again.
// This is recursively awful.
//
// a/**/b/**/c matching a/b/x/y/z/c
// - a matches a
// - doublestar
// - matchOne(b/x/y/z/c, b/**/c)
// - b matches b
// - doublestar
// - matchOne(x/y/z/c, c) -> no
// - matchOne(y/z/c, c) -> no
// - matchOne(z/c, c) -> no
// - matchOne(c, c) yes, hit
var fr = fi
var pr = pi + 1
if (pr === pl) {
this.debug('** at the end')
// a ** at the end will just swallow the rest.
// We have found a match.
// however, it will not swallow /.x, unless
// options.dot is set.
// . and .. are *never* matched by **, for explosively
// exponential reasons.
for (; fi < fl; fi++) {
if (file[fi] === '.' || file[fi] === '..' ||
(!options.dot && file[fi].charAt(0) === '.')) return false
}
return true
}
// ok, let's see if we can swallow whatever we can.
while (fr < fl) {
var swallowee = file[fr]
this.debug('\nglobstar while', file, fr, pattern, pr, swallowee)
// XXX remove this slice. Just pass the start index.
if (this.matchOne(file.slice(fr), pattern.slice(pr), partial)) {
this.debug('globstar found match!', fr, fl, swallowee)
// found a match.
return true
} else {
// can't swallow "." or ".." ever.
// can only swallow ".foo" when explicitly asked.
if (swallowee === '.' || swallowee === '..' ||
(!options.dot && swallowee.charAt(0) === '.')) {
this.debug('dot detected!', file, fr, pattern, pr)
break
}
// ** swallows a segment, and continue.
this.debug('globstar swallow a segment, and continue')
fr++
}
}
// no match was found.
// However, in partial mode, we can't say this is necessarily over.
// If there's more *pattern* left, then
/* istanbul ignore if */
if (partial) {
// ran out of file
this.debug('\n>>> no match, partial?', file, fr, pattern, pr)
if (fr === fl) return true
}
return false
}
// something other than **
// non-magic patterns just have to match exactly
// patterns with magic have been turned into regexps.
var hit
if (typeof p === 'string') {
hit = f === p
this.debug('string match', p, f, hit)
} else {
hit = f.match(p)
this.debug('pattern match', p, f, hit)
}
if (!hit) return false
}
// Note: ending in / means that we'll get a final ""
// at the end of the pattern. This can only match a
// corresponding "" at the end of the file.
// If the file ends in /, then it can only match a
// a pattern that ends in /, unless the pattern just
// doesn't have any more for it. But, a/b/ should *not*
// match "a/b/*", even though "" matches against the
// [^/]*? pattern, except in partial mode, where it might
// simply not be reached yet.
// However, a/b/ should still satisfy a/*
// now either we fell off the end of the pattern, or we're done.
if (fi === fl && pi === pl) {
// ran out of pattern and filename at the same time.
// an exact hit!
return true
} else if (fi === fl) {
// ran out of file, but still had pattern left.
// this is ok if we're doing the match as part of
// a glob fs traversal.
return partial
} else /* istanbul ignore else */ if (pi === pl) {
// ran out of pattern, still have file left.
// this is only acceptable if we're on the very last
// empty segment of a file with a trailing slash.
// a/* should match a/b/
return (fi === fl - 1) && (file[fi] === '')
}
// should be unreachable.
/* istanbul ignore next */
throw new Error('wtf?')
}
// replace stuff like \* with *
function globUnescape (s) {
return s.replace(/\\(.)/g, '$1')
}
function regExpEscape (s) {
return s.replace(/[-[\]{}()*+?.,\\^$|#\s]/g, '\\$&')
}
/***/ }),
/***/ 7666:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
/*! node-domexception. MIT License. Jimmy Wärting <https://jimmy.warting.se/opensource> */
if (!globalThis.DOMException) {
try {
const { MessageChannel } = __nccwpck_require__(8167),
port = new MessageChannel().port1,
ab = new ArrayBuffer()
port.postMessage(ab, [ab, ab])
} catch (err) {
err.constructor.name === 'DOMException' && (
globalThis.DOMException = err.constructor
)
}
}
module.exports = globalThis.DOMException
/***/ }),
/***/ 5560:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
var wrappy = __nccwpck_require__(8264)
module.exports = wrappy(once)
module.exports.strict = wrappy(onceStrict)
once.proto = once(function () {
Object.defineProperty(Function.prototype, 'once', {
value: function () {
return once(this)
},
configurable: true
})
Object.defineProperty(Function.prototype, 'onceStrict', {
value: function () {
return onceStrict(this)
},
configurable: true
})
})
function once (fn) {
var f = function () {
if (f.called) return f.value
f.called = true
return f.value = fn.apply(this, arguments)
}
f.called = false
return f
}
function onceStrict (fn) {
var f = function () {
if (f.called)
throw new Error(f.onceError)
f.called = true
return f.value = fn.apply(this, arguments)
}
var name = fn.name || 'Function wrapped with `once`'
f.onceError = name + " shouldn't be called more than once"
f.called = false
return f
}
/***/ }),
/***/ 4984:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
"use strict";
const callsites = __nccwpck_require__(4060);
module.exports = filepath => {
const stacks = callsites();
if (!filepath) {
return stacks[2].getFileName();
}
let seenVal = false;
// Skip the first stack as it's this function
stacks.shift();
for (const stack of stacks) {
const parentFilepath = stack.getFileName();
if (typeof parentFilepath !== 'string') {
continue;
}
if (parentFilepath === filepath) {
seenVal = true;
continue;
}
// Skip native modules
if (parentFilepath === 'module.js') {
continue;
}
if (seenVal && parentFilepath !== filepath) {
return parentFilepath;
}
}
};
/***/ }),
/***/ 2308:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
"use strict";
const errorEx = __nccwpck_require__(8296);
const fallback = __nccwpck_require__(6712);
const {default: LinesAndColumns} = __nccwpck_require__(1402);
const {codeFrameColumns} = __nccwpck_require__(147);
const JSONError = errorEx('JSONError', {
fileName: errorEx.append('in %s'),
codeFrame: errorEx.append('\n\n%s\n')
});
const parseJson = (string, reviver, filename) => {
if (typeof reviver === 'string') {
filename = reviver;
reviver = null;
}
try {
try {
return JSON.parse(string, reviver);
} catch (error) {
fallback(string, reviver);
throw error;
}
} catch (error) {
error.message = error.message.replace(/\n/g, '');
const indexMatch = error.message.match(/in JSON at position (\d+) while parsing/);
const jsonError = new JSONError(error);
if (filename) {
jsonError.fileName = filename;
}
if (indexMatch && indexMatch.length > 0) {
const lines = new LinesAndColumns(string);
const index = Number(indexMatch[1]);
const location = lines.locationForIndex(index);
const codeFrame = codeFrameColumns(
string,
{start: {line: location.line + 1, column: location.column + 1}},
{highlightCode: true}
);
jsonError.codeFrame = codeFrame;
}
throw jsonError;
}
};
parseJson.JSONError = JSONError;
module.exports = parseJson;
/***/ }),
/***/ 9024:
/***/ ((module) => {
"use strict";
function posix(path) {
return path.charAt(0) === '/';
}
function win32(path) {
// https://github.com/nodejs/node/blob/b3fcc245fb25539909ef1d5eaa01dbf92e168633/lib/path.js#L56
var splitDeviceRe = /^([a-zA-Z]:|[\\\/]{2}[^\\\/]+[\\\/]+[^\\\/]+)?([\\\/])?([\s\S]*?)$/;
var result = splitDeviceRe.exec(path);
var device = result[1] || '';
var isUnc = Boolean(device && device.charAt(1) !== ':');
// UNC paths are always absolute
return Boolean(result[2] || isUnc);
}
module.exports = process.platform === 'win32' ? win32 : posix;
module.exports.posix = posix;
module.exports.win32 = win32;
/***/ }),
/***/ 430:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
const {promisify} = __nccwpck_require__(9023);
const fs = __nccwpck_require__(9896);
async function isType(fsStatType, statsMethodName, filePath) {
if (typeof filePath !== 'string') {
throw new TypeError(`Expected a string, got ${typeof filePath}`);
}
try {
const stats = await promisify(fs[fsStatType])(filePath);
return stats[statsMethodName]();
} catch (error) {
if (error.code === 'ENOENT') {
return false;
}
throw error;
}
}
function isTypeSync(fsStatType, statsMethodName, filePath) {
if (typeof filePath !== 'string') {
throw new TypeError(`Expected a string, got ${typeof filePath}`);
}
try {
return fs[fsStatType](filePath)[statsMethodName]();
} catch (error) {
if (error.code === 'ENOENT') {
return false;
}
throw error;
}
}
exports.isFile = isType.bind(null, 'stat', 'isFile');
exports.isDirectory = isType.bind(null, 'stat', 'isDirectory');
exports.isSymlink = isType.bind(null, 'lstat', 'isSymbolicLink');
exports.isFileSync = isTypeSync.bind(null, 'statSync', 'isFile');
exports.isDirectorySync = isTypeSync.bind(null, 'statSync', 'isDirectory');
exports.isSymlinkSync = isTypeSync.bind(null, 'lstatSync', 'isSymbolicLink');
/***/ }),
/***/ 8328:
/***/ ((module) => {
"use strict";
/** Highest positive signed 32-bit float value */
const maxInt = 2147483647; // aka. 0x7FFFFFFF or 2^31-1
/** Bootstring parameters */
const base = 36;
const tMin = 1;
const tMax = 26;
const skew = 38;
const damp = 700;
const initialBias = 72;
const initialN = 128; // 0x80
const delimiter = '-'; // '\x2D'
/** Regular expressions */
const regexPunycode = /^xn--/;
const regexNonASCII = /[^\0-\x7F]/; // Note: U+007F DEL is excluded too.
const regexSeparators = /[\x2E\u3002\uFF0E\uFF61]/g; // RFC 3490 separators
/** Error messages */
const errors = {
'overflow': 'Overflow: input needs wider integers to process',
'not-basic': 'Illegal input >= 0x80 (not a basic code point)',
'invalid-input': 'Invalid input'
};
/** Convenience shortcuts */
const baseMinusTMin = base - tMin;
const floor = Math.floor;
const stringFromCharCode = String.fromCharCode;
/*--------------------------------------------------------------------------*/
/**
* A generic error utility function.
* @private
* @param {String} type The error type.
* @returns {Error} Throws a `RangeError` with the applicable error message.
*/
function error(type) {
throw new RangeError(errors[type]);
}
/**
* A generic `Array#map` utility function.
* @private
* @param {Array} array The array to iterate over.
* @param {Function} callback The function that gets called for every array
* item.
* @returns {Array} A new array of values returned by the callback function.
*/
function map(array, callback) {
const result = [];
let length = array.length;
while (length--) {
result[length] = callback(array[length]);
}
return result;
}
/**
* A simple `Array#map`-like wrapper to work with domain name strings or email
* addresses.
* @private
* @param {String} domain The domain name or email address.
* @param {Function} callback The function that gets called for every
* character.
* @returns {String} A new string of characters returned by the callback
* function.
*/
function mapDomain(domain, callback) {
const parts = domain.split('@');
let result = '';
if (parts.length > 1) {
// In email addresses, only the domain name should be punycoded. Leave
// the local part (i.e. everything up to `@`) intact.
result = parts[0] + '@';
domain = parts[1];
}
// Avoid `split(regex)` for IE8 compatibility. See #17.
domain = domain.replace(regexSeparators, '\x2E');
const labels = domain.split('.');
const encoded = map(labels, callback).join('.');
return result + encoded;
}
/**
* Creates an array containing the numeric code points of each Unicode
* character in the string. While JavaScript uses UCS-2 internally,
* this function will convert a pair of surrogate halves (each of which
* UCS-2 exposes as separate characters) into a single code point,
* matching UTF-16.
* @see `punycode.ucs2.encode`
* @see <https://mathiasbynens.be/notes/javascript-encoding>
* @memberOf punycode.ucs2
* @name decode
* @param {String} string The Unicode input string (UCS-2).
* @returns {Array} The new array of code points.
*/
function ucs2decode(string) {
const output = [];
let counter = 0;
const length = string.length;
while (counter < length) {
const value = string.charCodeAt(counter++);
if (value >= 0xD800 && value <= 0xDBFF && counter < length) {
// It's a high surrogate, and there is a next character.
const extra = string.charCodeAt(counter++);
if ((extra & 0xFC00) == 0xDC00) { // Low surrogate.
output.push(((value & 0x3FF) << 10) + (extra & 0x3FF) + 0x10000);
} else {
// It's an unmatched surrogate; only append this code unit, in case the
// next code unit is the high surrogate of a surrogate pair.
output.push(value);
counter--;
}
} else {
output.push(value);
}
}
return output;
}
/**
* Creates a string based on an array of numeric code points.
* @see `punycode.ucs2.decode`
* @memberOf punycode.ucs2
* @name encode
* @param {Array} codePoints The array of numeric code points.
* @returns {String} The new Unicode string (UCS-2).
*/
const ucs2encode = codePoints => String.fromCodePoint(...codePoints);
/**
* Converts a basic code point into a digit/integer.
* @see `digitToBasic()`
* @private
* @param {Number} codePoint The basic numeric code point value.
* @returns {Number} The numeric value of a basic code point (for use in
* representing integers) in the range `0` to `base - 1`, or `base` if
* the code point does not represent a value.
*/
const basicToDigit = function(codePoint) {
if (codePoint >= 0x30 && codePoint < 0x3A) {
return 26 + (codePoint - 0x30);
}
if (codePoint >= 0x41 && codePoint < 0x5B) {
return codePoint - 0x41;
}
if (codePoint >= 0x61 && codePoint < 0x7B) {
return codePoint - 0x61;
}
return base;
};
/**
* Converts a digit/integer into a basic code point.
* @see `basicToDigit()`
* @private
* @param {Number} digit The numeric value of a basic code point.
* @returns {Number} The basic code point whose value (when used for
* representing integers) is `digit`, which needs to be in the range
* `0` to `base - 1`. If `flag` is non-zero, the uppercase form is
* used; else, the lowercase form is used. The behavior is undefined
* if `flag` is non-zero and `digit` has no uppercase form.
*/
const digitToBasic = function(digit, flag) {
// 0..25 map to ASCII a..z or A..Z
// 26..35 map to ASCII 0..9
return digit + 22 + 75 * (digit < 26) - ((flag != 0) << 5);
};
/**
* Bias adaptation function as per section 3.4 of RFC 3492.
* https://tools.ietf.org/html/rfc3492#section-3.4
* @private
*/
const adapt = function(delta, numPoints, firstTime) {
let k = 0;
delta = firstTime ? floor(delta / damp) : delta >> 1;
delta += floor(delta / numPoints);
for (/* no initialization */; delta > baseMinusTMin * tMax >> 1; k += base) {
delta = floor(delta / baseMinusTMin);
}
return floor(k + (baseMinusTMin + 1) * delta / (delta + skew));
};
/**
* Converts a Punycode string of ASCII-only symbols to a string of Unicode
* symbols.
* @memberOf punycode
* @param {String} input The Punycode string of ASCII-only symbols.
* @returns {String} The resulting string of Unicode symbols.
*/
const decode = function(input) {
// Don't use UCS-2.
const output = [];
const inputLength = input.length;
let i = 0;
let n = initialN;
let bias = initialBias;
// Handle the basic code points: let `basic` be the number of input code
// points before the last delimiter, or `0` if there is none, then copy
// the first basic code points to the output.
let basic = input.lastIndexOf(delimiter);
if (basic < 0) {
basic = 0;
}
for (let j = 0; j < basic; ++j) {
// if it's not a basic code point
if (input.charCodeAt(j) >= 0x80) {
error('not-basic');
}
output.push(input.charCodeAt(j));
}
// Main decoding loop: start just after the last delimiter if any basic code
// points were copied; start at the beginning otherwise.
for (let index = basic > 0 ? basic + 1 : 0; index < inputLength; /* no final expression */) {
// `index` is the index of the next character to be consumed.
// Decode a generalized variable-length integer into `delta`,
// which gets added to `i`. The overflow checking is easier
// if we increase `i` as we go, then subtract off its starting
// value at the end to obtain `delta`.
const oldi = i;
for (let w = 1, k = base; /* no condition */; k += base) {
if (index >= inputLength) {
error('invalid-input');
}
const digit = basicToDigit(input.charCodeAt(index++));
if (digit >= base) {
error('invalid-input');
}
if (digit > floor((maxInt - i) / w)) {
error('overflow');
}
i += digit * w;
const t = k <= bias ? tMin : (k >= bias + tMax ? tMax : k - bias);
if (digit < t) {
break;
}
const baseMinusT = base - t;
if (w > floor(maxInt / baseMinusT)) {
error('overflow');
}
w *= baseMinusT;
}
const out = output.length + 1;
bias = adapt(i - oldi, out, oldi == 0);
// `i` was supposed to wrap around from `out` to `0`,
// incrementing `n` each time, so we'll fix that now:
if (floor(i / out) > maxInt - n) {
error('overflow');
}
n += floor(i / out);
i %= out;
// Insert `n` at position `i` of the output.
output.splice(i++, 0, n);
}
return String.fromCodePoint(...output);
};
/**
* Converts a string of Unicode symbols (e.g. a domain name label) to a
* Punycode string of ASCII-only symbols.
* @memberOf punycode
* @param {String} input The string of Unicode symbols.
* @returns {String} The resulting Punycode string of ASCII-only symbols.
*/
const encode = function(input) {
const output = [];
// Convert the input in UCS-2 to an array of Unicode code points.
input = ucs2decode(input);
// Cache the length.
const inputLength = input.length;
// Initialize the state.
let n = initialN;
let delta = 0;
let bias = initialBias;
// Handle the basic code points.
for (const currentValue of input) {
if (currentValue < 0x80) {
output.push(stringFromCharCode(currentValue));
}
}
const basicLength = output.length;
let handledCPCount = basicLength;
// `handledCPCount` is the number of code points that have been handled;
// `basicLength` is the number of basic code points.
// Finish the basic string with a delimiter unless it's empty.
if (basicLength) {
output.push(delimiter);
}
// Main encoding loop:
while (handledCPCount < inputLength) {
// All non-basic code points < n have been handled already. Find the next
// larger one:
let m = maxInt;
for (const currentValue of input) {
if (currentValue >= n && currentValue < m) {
m = currentValue;
}
}
// Increase `delta` enough to advance the decoder's <n,i> state to <m,0>,
// but guard against overflow.
const handledCPCountPlusOne = handledCPCount + 1;
if (m - n > floor((maxInt - delta) / handledCPCountPlusOne)) {
error('overflow');
}
delta += (m - n) * handledCPCountPlusOne;
n = m;
for (const currentValue of input) {
if (currentValue < n && ++delta > maxInt) {
error('overflow');
}
if (currentValue === n) {
// Represent delta as a generalized variable-length integer.
let q = delta;
for (let k = base; /* no condition */; k += base) {
const t = k <= bias ? tMin : (k >= bias + tMax ? tMax : k - bias);
if (q < t) {
break;
}
const qMinusT = q - t;
const baseMinusT = base - t;
output.push(
stringFromCharCode(digitToBasic(t + qMinusT % baseMinusT, 0))
);
q = floor(qMinusT / baseMinusT);
}
output.push(stringFromCharCode(digitToBasic(q, 0)));
bias = adapt(delta, handledCPCountPlusOne, handledCPCount === basicLength);
delta = 0;
++handledCPCount;
}
}
++delta;
++n;
}
return output.join('');
};
/**
* Converts a Punycode string representing a domain name or an email address
* to Unicode. Only the Punycoded parts of the input will be converted, i.e.
* it doesn't matter if you call it on a string that has already been
* converted to Unicode.
* @memberOf punycode
* @param {String} input The Punycoded domain name or email address to
* convert to Unicode.
* @returns {String} The Unicode representation of the given Punycode
* string.
*/
const toUnicode = function(input) {
return mapDomain(input, function(string) {
return regexPunycode.test(string)
? decode(string.slice(4).toLowerCase())
: string;
});
};
/**
* Converts a Unicode string representing a domain name or an email address to
* Punycode. Only the non-ASCII parts of the domain name will be converted,
* i.e. it doesn't matter if you call it with a domain that's already in
* ASCII.
* @memberOf punycode
* @param {String} input The domain name or email address to convert, as a
* Unicode string.
* @returns {String} The Punycode representation of the given domain name or
* email address.
*/
const toASCII = function(input) {
return mapDomain(input, function(string) {
return regexNonASCII.test(string)
? 'xn--' + encode(string)
: string;
});
};
/*--------------------------------------------------------------------------*/
/** Define the public API */
const punycode = {
/**
* A string representing the current Punycode.js version number.
* @memberOf punycode
* @type String
*/
'version': '2.3.1',
/**
* An object of methods to convert from JavaScript's internal character
* representation (UCS-2) to Unicode code points, and back.
* @see <https://mathiasbynens.be/notes/javascript-encoding>
* @memberOf punycode
* @type Object
*/
'ucs2': {
'decode': ucs2decode,
'encode': ucs2encode
},
'decode': decode,
'encode': encode,
'toASCII': toASCII,
'toUnicode': toUnicode
};
module.exports = punycode;
/***/ }),
/***/ 471:
/***/ ((module) => {
"use strict";
/*!
* repeat-string <https://github.com/jonschlinkert/repeat-string>
*
* Copyright (c) 2014-2015, Jon Schlinkert.
* Licensed under the MIT License.
*/
/**
* Results cache
*/
var res = '';
var cache;
/**
* Expose `repeat`
*/
module.exports = repeat;
/**
* Repeat the given `string` the specified `number`
* of times.
*
* **Example:**
*
* ```js
* var repeat = require('repeat-string');
* repeat('A', 5);
* //=> AAAAA
* ```
*
* @param {String} `string` The string to repeat
* @param {Number} `number` The number of times to repeat the string
* @return {String} Repeated string
* @api public
*/
function repeat(str, num) {
if (typeof str !== 'string') {
throw new TypeError('expected a string');
}
// cover common, quick use cases
if (num === 1) return str;
if (num === 2) return str + str;
var max = str.length * num;
if (cache !== str || typeof cache === 'undefined') {
cache = str;
res = '';
} else if (res.length >= max) {
return res.substr(0, max);
}
while (max > res.length && num > 1) {
if (num & 1) {
res += str;
}
num >>= 1;
str += str;
}
res += str;
res = res.substr(0, max);
return res;
}
/***/ }),
/***/ 1631:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
"use strict";
const path = __nccwpck_require__(6928);
const Module = __nccwpck_require__(3339);
const fs = __nccwpck_require__(9896);
const resolveFrom = (fromDir, moduleId, silent) => {
if (typeof fromDir !== 'string') {
throw new TypeError(`Expected \`fromDir\` to be of type \`string\`, got \`${typeof fromDir}\``);
}
if (typeof moduleId !== 'string') {
throw new TypeError(`Expected \`moduleId\` to be of type \`string\`, got \`${typeof moduleId}\``);
}
try {
fromDir = fs.realpathSync(fromDir);
} catch (err) {
if (err.code === 'ENOENT') {
fromDir = path.resolve(fromDir);
} else if (silent) {
return null;
} else {
throw err;
}
}
const fromFile = path.join(fromDir, 'noop.js');
const resolveFileName = () => Module._resolveFilename(moduleId, {
id: fromFile,
filename: fromFile,
paths: Module._nodeModulePaths(fromDir)
});
if (silent) {
try {
return resolveFileName();
} catch (err) {
return null;
}
}
return resolveFileName();
};
module.exports = (fromDir, moduleId) => resolveFrom(fromDir, moduleId);
module.exports.silent = (fromDir, moduleId) => resolveFrom(fromDir, moduleId, true);
/***/ }),
/***/ 1199:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
/**
*
* Let's say we have this function declared somewhere.
*
* function get__filename(){
* return get_caller_file_path();
* }
*
* Then we can assert that:
*
* get__filename() === __filename
*
*
*/
function get_caller_file_path() {
//NOTE: Cannot be move to the index file.
//The function can't be declared and used
//in the same file.
var prepareStackTraceBackup = Error.prepareStackTrace;
var callerFile = "";
try {
var error = new Error();
Error.prepareStackTrace = function (_, stack) { return stack; };
error.stack.shift().getFileName();
var fileImportedFrom = error.stack.shift().getFileName();
while (error.stack.length) {
var fileName = error.stack.shift().getFileName();
if (fileName === callerFile) {
break;
}
callerFile = fileName;
if (fileImportedFrom !== callerFile) {
break;
}
}
}
catch (_a) { }
Error.prepareStackTrace = prepareStackTraceBackup;
return callerFile;
}
exports.get_caller_file_path = get_caller_file_path;
/***/ }),
/***/ 7516:
/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) {
"use strict";
var __extends = (this && this.__extends) || (function () {
var extendStatics = function (d, b) {
extendStatics = Object.setPrototypeOf ||
({ __proto__: [] } instanceof Array && function (d, b) { d.__proto__ = b; }) ||
function (d, b) { for (var p in b) if (b.hasOwnProperty(p)) d[p] = b[p]; };
return extendStatics(d, b);
};
return function (d, b) {
extendStatics(d, b);
function __() { this.constructor = d; }
d.prototype = b === null ? Object.create(b) : (__.prototype = b.prototype, new __());
};
})();
var __assign = (this && this.__assign) || function () {
__assign = Object.assign || function(t) {
for (var s, i = 1, n = arguments.length; i < n; i++) {
s = arguments[i];
for (var p in s) if (Object.prototype.hasOwnProperty.call(s, p))
t[p] = s[p];
}
return t;
};
return __assign.apply(this, arguments);
};
var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) {
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) : new P(function (resolve) { resolve(result.value); }).then(fulfilled, rejected); }
step((generator = generator.apply(thisArg, _arguments || [])).next());
});
};
var __generator = (this && this.__generator) || function (thisArg, body) {
var _ = { label: 0, sent: function() { if (t[0] & 1) throw t[1]; return t[1]; }, trys: [], ops: [] }, f, y, t, g;
return g = { next: verb(0), "throw": verb(1), "return": verb(2) }, typeof Symbol === "function" && (g[Symbol.iterator] = function() { return this; }), g;
function verb(n) { return function (v) { return step([n, v]); }; }
function step(op) {
if (f) throw new TypeError("Generator is already executing.");
while (_) try {
if (f = 1, y && (t = op[0] & 2 ? y["return"] : op[0] ? y["throw"] || ((t = y["return"]) && t.call(y), 0) : y.next) && !(t = t.call(y, op[1])).done) return t;
if (y = 0, t) op = [op[0] & 2, t.value];
switch (op[0]) {
case 0: case 1: t = op; break;
case 4: _.label++; return { value: op[1], done: false };
case 5: _.label++; y = op[1]; op = [0]; continue;
case 7: op = _.ops.pop(); _.trys.pop(); continue;
default:
if (!(t = _.trys, t = t.length > 0 && t[t.length - 1]) && (op[0] === 6 || op[0] === 2)) { _ = 0; continue; }
if (op[0] === 3 && (!t || (op[1] > t[0] && op[1] < t[3]))) { _.label = op[1]; break; }
if (op[0] === 6 && _.label < t[1]) { _.label = t[1]; t = op; break; }
if (t && _.label < t[2]) { _.label = t[2]; _.ops.push(op); break; }
if (t[2]) _.ops.pop();
_.trys.pop(); continue;
}
op = body.call(thisArg, _);
} catch (e) { op = [6, e]; y = 0; } finally { f = t = 0; }
if (op[0] & 5) throw op[1]; return { value: op[0] ? op[1] : void 0, done: true };
}
};
var __read = (this && this.__read) || function (o, n) {
var m = typeof Symbol === "function" && o[Symbol.iterator];
if (!m) return o;
var i = m.call(o), r, ar = [], e;
try {
while ((n === void 0 || n-- > 0) && !(r = i.next()).done) ar.push(r.value);
}
catch (error) { e = { error: error }; }
finally {
try {
if (r && !r.done && (m = i["return"])) m.call(i);
}
finally { if (e) throw e.error; }
}
return ar;
};
var __spread = (this && this.__spread) || function () {
for (var ar = [], i = 0; i < arguments.length; i++) ar = ar.concat(__read(arguments[i]));
return ar;
};
var __values = (this && this.__values) || function (o) {
var m = typeof Symbol === "function" && o[Symbol.iterator], i = 0;
if (m) return m.call(o);
return {
next: function () {
if (o && i >= o.length) o = void 0;
return { value: o && o[i++], done: !o };
}
};
};
Object.defineProperty(exports, "__esModule", ({ value: true }));
var child_process = __nccwpck_require__(5317);
var readline = __nccwpck_require__(3785);
var fs = __nccwpck_require__(9896);
var path = __nccwpck_require__(6928);
var https = __nccwpck_require__(5692);
var http = __nccwpck_require__(8611);
var util = __nccwpck_require__(9023);
var os = __nccwpck_require__(857);
var crypto = __nccwpck_require__(6982);
/**
* After this function is called every call to execSync
* or exec will print the unix commands being executed.
* */
function enableCmdTrace() {
traceCmdIfEnabled.enabled = true;
}
exports.enableCmdTrace = enableCmdTrace;
function traceCmdIfEnabled(cmd, options) {
if (!traceCmdIfEnabled.enabled) {
return;
}
console.log(colorize("$ " + cmd + " ", "YELLOW") + (!!options ? JSON.stringify(options) + "\n" : ""));
}
(function (traceCmdIfEnabled) {
traceCmdIfEnabled.enabled = false;
})(traceCmdIfEnabled || (traceCmdIfEnabled = {}));
function get_uid(unix_user) {
return parseInt(sh_eval("id -u " + unix_user));
}
exports.get_uid = get_uid;
function get_gid(unix_user) {
return parseInt(sh_eval("id -g " + unix_user));
}
exports.get_gid = get_gid;
function colorize(str, color) {
var color_code = (function () {
switch (color) {
case "GREEN": return "\x1b[32m";
case "RED": return "\x1b[31m";
case "YELLOW": return "\x1b[33m";
}
})();
return "" + color_code + str + "\u001B[0m";
}
exports.colorize = colorize;
/**
*
* The stderr is forwarded to the console realtime.
*
* The returned value is the concatenated data received on stdout.
*
* If the return code of the cmd is not 0 an exception is thrown
* and the message cmd + the concatenated data received on stderr.
*
* If enableTrace() have been called the command called will be printed.
*
*/
function execSync(cmd, options) {
traceCmdIfEnabled(cmd, options);
return child_process.execSync(cmd, __assign({}, (options || {}), { "encoding": "utf8" }));
}
exports.execSync = execSync;
/**
*
* The cmd is printed before execution
* stdout and stderr are forwarded to the console realtime.
* Return nothing.
*
* stdio is set to "inherit" and thus should not be redefined.
*
*/
function execSyncTrace(cmd, options) {
traceCmdIfEnabled(cmd, options);
child_process.execSync(cmd, __assign({}, (options || {}), { "stdio": "inherit" }));
}
exports.execSyncTrace = execSyncTrace;
/** Same as execSync except that it dose not print cmd even if cmdTrace have been enabled */
var execSyncNoCmdTrace = function () {
var args = [];
for (var _i = 0; _i < arguments.length; _i++) {
args[_i] = arguments[_i];
}
var enabled_back = traceCmdIfEnabled.enabled;
traceCmdIfEnabled.enabled = false;
try {
var out = execSync.apply(null, args);
traceCmdIfEnabled.enabled = enabled_back;
return out;
}
catch (error) {
traceCmdIfEnabled.enabled = enabled_back;
throw error;
}
};
/**
*
* Like execSync but stderr is not forwarded.
* WARNING: If mean that when the cmd return 0
* all data that may have been wrote on stderr
* are lost into oblivion.
*
* stdio is set to "pipe" and thus should not be redefined.
*
*/
function execSyncQuiet(cmd, options) {
return execSync(cmd, __assign({}, (options || {}), { "stdio": "pipe" }));
}
exports.execSyncQuiet = execSyncQuiet;
/** Same as execSync but async */
function exec(cmd, options) {
var _this = this;
traceCmdIfEnabled(cmd, options);
return new Promise(function (resolve, reject) { return __awaiter(_this, void 0, void 0, function () {
return __generator(this, function (_a) {
child_process.exec(cmd, __assign({}, (options || {}), { "encoding": "utf8" }), function (error, stdout, stderr) {
if (!!error) {
error["stderr"] = stderr;
reject(error);
}
else {
resolve(stdout);
}
});
return [2 /*return*/];
});
}); });
}
exports.exec = exec;
/**
* Spawn a process that continue running after current process exit.
* This process will be ignored by stopSubProcessesAsapSync.
* If a logfile_path if provided stdout and stderr will be redirected to this file.
*
* detached, and stdio options should not be set as they are set internally.
* */
function spawnAndDetach(command, args, options, logfile_path) {
var out = !!logfile_path ? fs.openSync(logfile_path, "a") : "ignore";
var subprocess = child_process.spawn(command, args, __assign({}, (options || {}), { "detached": true, "stdio": ["ignore", out, out] }));
stopProcessSync.stopSubProcessesAsapSync.ignorePids.add(subprocess.pid);
subprocess.unref();
return subprocess;
}
exports.spawnAndDetach = spawnAndDetach;
/**
*
* Print a message and enable a moving loading bar.
* WARNING: Nothing should be printed to stdout until we stop showing the moving loading.
*
* returns:
* -exec: A proxy to the exec fnc that will call onError before it throw the error.
* -onSuccess: Stop showing the moving loading and pretty print a success message ("ok" by default)
* -onError: Stop showing the moving loading and pretty print error message.
*
*/
function start_long_running_process(message) {
process.stdout.write(message + "... ");
var moveBack = (function () {
var cp = message.length + 3;
return function () { return readline.cursorTo(process.stdout, cp); };
})();
var p = ["\\", "|", "/", "-"].map(function (i) { return colorize(i, "GREEN"); });
var x = 0;
var timer = setInterval(function () {
moveBack();
process.stdout.write(p[x++]);
x = x % p.length;
}, 250);
var onComplete = function (message) {
clearInterval(timer);
moveBack();
process.stdout.write(message + "\n");
};
var onError = function (errorMessage) { return onComplete(colorize(errorMessage, "RED")); };
var onSuccess = function (message) { return onComplete(colorize(message || "ok", "GREEN")); };
if (traceCmdIfEnabled.enabled) {
onComplete("");
onComplete = function (message) { return console.log(message); };
}
return {
onError: onError,
onSuccess: onSuccess,
"exec": function () {
var args = [];
for (var _i = 0; _i < arguments.length; _i++) {
args[_i] = arguments[_i];
}
return __awaiter(this, void 0, void 0, function () {
var error_1;
return __generator(this, function (_a) {
switch (_a.label) {
case 0:
_a.trys.push([0, 2, , 3]);
return [4 /*yield*/, exec.apply(null, args)];
case 1: return [2 /*return*/, _a.sent()];
case 2:
error_1 = _a.sent();
onError(error_1.message);
throw error_1;
case 3: return [2 /*return*/];
}
});
});
}
};
}
exports.start_long_running_process = start_long_running_process;
;
/**
* Apt package if not already installed,
* if prog is provided and prog is in the PATH the package will not be installed
* */
function apt_get_install_if_missing(package_name, prog) {
return __awaiter(this, void 0, void 0, function () {
return __generator(this, function (_a) {
switch (_a.label) {
case 0:
process.stdout.write("Looking for " + package_name + " ... ");
if (!!prog && apt_get_install_if_missing.doesHaveProg(prog)) {
console.log(prog + " executable found. " + colorize("OK", "GREEN"));
return [2 /*return*/];
}
if (apt_get_install_if_missing.isPkgInstalled(package_name)) {
console.log(package_name + " is installed. " + colorize("OK", "GREEN"));
return [2 /*return*/];
}
readline.clearLine(process.stdout, 0);
process.stdout.write("\r");
return [4 /*yield*/, apt_get_install(package_name)];
case 1: return [2 /*return*/, _a.sent()];
}
});
});
}
exports.apt_get_install_if_missing = apt_get_install_if_missing;
(function (apt_get_install_if_missing) {
function isPkgInstalled(package_name) {
try {
console.assert(!!execSyncNoCmdTrace("dpkg-query -W -f='${Status}' " + package_name, { "stdio": "pipe" })
.match(/^install ok installed$/));
}
catch (_a) {
return false;
}
return true;
}
apt_get_install_if_missing.isPkgInstalled = isPkgInstalled;
function doesHaveProg(prog) {
try {
execSyncNoCmdTrace("which " + prog);
}
catch (_a) {
return false;
}
return true;
}
apt_get_install_if_missing.doesHaveProg = doesHaveProg;
})(apt_get_install_if_missing = exports.apt_get_install_if_missing || (exports.apt_get_install_if_missing = {}));
/** Install or upgrade package via APT */
function apt_get_install(package_name) {
return __awaiter(this, void 0, void 0, function () {
var _a, onSuccess, exec, was_installed_before, error_2;
return __generator(this, function (_b) {
switch (_b.label) {
case 0:
_a = start_long_running_process("Installing or upgrading " + package_name + " package"), onSuccess = _a.onSuccess, exec = _a.exec;
_b.label = 1;
case 1:
_b.trys.push([1, 5, , 6]);
if (!apt_get_install.isFirst) return [3 /*break*/, 3];
return [4 /*yield*/, exec("apt-get update || true")];
case 2:
_b.sent();
apt_get_install.isFirst = false;
_b.label = 3;
case 3:
was_installed_before = apt_get_install_if_missing.isPkgInstalled(package_name);
return [4 /*yield*/, exec("apt-get -y install " + package_name)];
case 4:
_b.sent();
if (!was_installed_before) {
apt_get_install.onInstallSuccess(package_name);
}
return [3 /*break*/, 6];
case 5:
error_2 = _b.sent();
apt_get_install.onError(error_2);
return [3 /*break*/, 6];
case 6:
onSuccess("DONE");
return [2 /*return*/];
}
});
});
}
exports.apt_get_install = apt_get_install;
(function (apt_get_install) {
apt_get_install.isFirst = true;
function record_installed_package(file_json_path, package_name) {
execSyncNoCmdTrace("touch " + file_json_path);
var raw = fs.readFileSync(file_json_path).toString("utf8");
var list = raw === "" ? [] : JSON.parse(raw);
if (!list.find(function (p) { return p === package_name; })) {
list.push(package_name);
fs.writeFileSync(file_json_path, Buffer.from(JSON.stringify(list, null, 2), "utf8"));
}
}
apt_get_install.record_installed_package = record_installed_package;
apt_get_install.onError = function (error) { throw error; };
apt_get_install.onInstallSuccess = function (package_name) { };
})(apt_get_install = exports.apt_get_install || (exports.apt_get_install = {}));
function exit_if_not_root() {
if (process.getuid() !== 0) {
console.log(colorize("Error: root privilege required ", "RED"));
process.exit(1);
}
}
exports.exit_if_not_root = exit_if_not_root;
/**
*
* Locate a given module in a node_modules directory.
* If the module is required in different version and thus
* present multiple times will be returned the shorter path.
* This ensure that if a given module is in package.json 's dependencies
* section the returned path will be the one we looking for.
*
* @param module_name The name of the module.
* @param module_dir_path Path to the root of the module ( will search in ./node_modules ).
*
* Throw if the module is not found.
*
*/
function find_module_path(module_name, module_dir_path) {
if (module_dir_path.endsWith(module_name)) {
return module_dir_path;
}
var node_module_path = path.join(module_dir_path, "node_modules");
if (!fs.existsSync(node_module_path)) {
throw new Error("No node_modules in " + module_dir_path);
}
var _a = __read(fs.readdirSync(node_module_path)
.filter(function (file_or_dir_name) { return fs.statSync(path.join(node_module_path, file_or_dir_name)).isDirectory; })
.map(function (dir_name) {
return !dir_name.startsWith("@") ?
[path.join(node_module_path, dir_name)] :
fs.readdirSync(path.join(node_module_path, dir_name))
.map(function (file_or_dir_name) { return path.join(node_module_path, dir_name, file_or_dir_name); })
.filter(function (file_or_dir_path) { return fs.statSync(file_or_dir_path).isDirectory; });
})
.reduce(function (prev, curr) { return __spread(prev, curr); }, [])
.filter(function (file_or_dir_path) { return fs.existsSync(path.join(file_or_dir_path, "package.json")); })
.map(function (module_dir_path) {
try {
return find_module_path(module_name, module_dir_path);
}
catch (_a) {
return "";
}
})
.filter(function (module_dir_path) { return !!module_dir_path; })
.sort(function (a, b) { return a.length - b.length; }), 1), out = _a[0];
if (out === undefined) {
throw new Error("module " + module_name + " not installed in " + module_dir_path);
}
return out;
}
exports.find_module_path = find_module_path;
/**
*
* Test if two file of folder are same.
* Does not consider stat ( ownership and permission ).
* transparent handling of symlinks.
*
* Example
*
* /foo1/bar/file.txt
* /foo2/bar/file.txt
*
* to compare the two version of file.txt
* call with "/foo1", "/foo2", "./bar/file.txt";
* or with "/foo1/bar/file.txt", "/foo2/bar/file.txt"
*
* @param relative_from_path1 absolute path ex: '/foo1'
* @param relative_from_path2 absolute path ex: '/foo2'
* @param relative_to_path relative path ex: './bar/file.txt" or 'bar/file.txt'
* for convenience relative_to_path can be absolute as long as it has relative_from_path1
* or relative_from_path2 as parent.
*
*/
function fs_areSame(relative_from_path1, relative_from_path2, relative_to_path) {
if (relative_to_path === void 0) { relative_to_path = "."; }
relative_to_path = fs_areSame.get_relative_to_path(relative_from_path1, relative_from_path2, relative_to_path);
try {
execSyncNoCmdTrace([
"diff -r",
path.join(relative_from_path1, relative_to_path),
path.join(relative_from_path2, relative_to_path)
].join(" "), { "stdio": "pipe" });
}
catch (_a) {
return false;
}
return true;
}
exports.fs_areSame = fs_areSame;
(function (fs_areSame) {
function get_relative_to_path(dir_path1, dir_path2, to_path) {
if (path.isAbsolute(to_path)) {
var dir_path = [dir_path1, dir_path2]
.filter(function (v) { return to_path.startsWith(v); })
.sort(function (a, b) { return b.length - a.length; })[0];
if (!dir_path) {
throw new Error("Not relative!");
}
return path.relative(dir_path, to_path);
}
else {
return to_path;
}
}
fs_areSame.get_relative_to_path = get_relative_to_path;
})(fs_areSame = exports.fs_areSame || (exports.fs_areSame = {}));
/**
*
* Move or copy file of folder.
* -If dest is identical to source nothing is copied nor moved.
* -If dest exist and is different of source it will be deleted prior to proceeding with action.
* -In move mode if dest identical to source source will be removed.
* -When copy is effectively performed the stat are conserved.
* -If dirname of dest does not exist in fs, it will be created.
* -Unlike cp or mv "/src/file.txt" "/dest" will NOT place file.txt in dest but dest will become file.txt
*
* calling [action] "/src/foo" "/dst/foo" is equivalent
* to calling [action] "/src" "/dst" "./foo" ( or "foo" )
* or [action] "/src" "/dst" "src/foo"
* or [action] "/src" "/dst" "dst/foo"
*
*/
function fs_move(action, relative_from_path_src, relative_from_path_dest, relative_to_path) {
if (relative_to_path === void 0) { relative_to_path = "."; }
relative_to_path = fs_areSame.get_relative_to_path(relative_from_path_src, relative_from_path_dest, relative_to_path);
var src_path = path.join(relative_from_path_src, relative_to_path);
var dst_path = path.join(relative_from_path_dest, relative_to_path);
if (!fs_areSame(src_path, dst_path)) {
if (!fs.existsSync(dst_path)) {
execSyncNoCmdTrace("mkdir -p " + dst_path);
}
execSyncNoCmdTrace("rm -rf " + dst_path);
execSyncNoCmdTrace([
action === "COPY" ? "cp -rp" : "mv",
src_path,
dst_path
].join(" "));
}
else {
if (action === "MOVE") {
execSyncNoCmdTrace("rm -r " + src_path);
}
}
}
exports.fs_move = fs_move;
/**
* Download and extract a tarball. throws web_get.DownloadError and Error
*
* Example
*
* website.com/rel.tar.gz
* ./file1.txt
* ./dir/file2.txt
*
* /foo/
* ./file3.txt
* ./dir/file4.txt
*
* calling with "website.com/rel.tar.gz", "MERGE" will result in:
*
* /foo/
* ./file1.txt
* ./file3.txt
* ./dir/file4.txt
*
* calling with "website.com/rel.tar.gz", "OVERWRITE IF EXIST" will result in:
*
* /foo/
* ./file1.txt
* ./dir/file2.txt
*
*/
function download_and_extract_tarball(url, dest_dir_path, mode) {
return __awaiter(this, void 0, void 0, function () {
var _a, exec, onSuccess, onError, tarball_dir_path, tarball_path, error_3, _b, _c, name;
var e_1, _d;
return __generator(this, function (_e) {
switch (_e.label) {
case 0:
_a = start_long_running_process("Downloading " + url + " and extracting to " + dest_dir_path), exec = _a.exec, onSuccess = _a.onSuccess, onError = _a.onError;
tarball_dir_path = (function () {
var hash = crypto.createHash("sha1");
hash.write(url);
hash.end();
return "/tmp/_" + hash.read().toString("hex");
})();
tarball_path = tarball_dir_path + ".tar.gz";
if (!(fs.existsSync(tarball_dir_path) || fs.existsSync(tarball_path))) return [3 /*break*/, 2];
return [4 /*yield*/, exec("rm -rf " + tarball_dir_path + " " + tarball_path)];
case 1:
_e.sent();
_e.label = 2;
case 2:
_e.trys.push([2, 4, , 5]);
return [4 /*yield*/, web_get(url, tarball_path)];
case 3:
_e.sent();
return [3 /*break*/, 5];
case 4:
error_3 = _e.sent();
onError(error_3.message);
throw error_3;
case 5: return [4 /*yield*/, exec("mkdir " + tarball_dir_path)];
case 6:
_e.sent();
return [4 /*yield*/, exec("tar -xzf " + tarball_path + " -C " + tarball_dir_path)];
case 7:
_e.sent();
return [4 /*yield*/, exec("rm " + tarball_path)];
case 8:
_e.sent();
if (!(mode === "MERGE")) return [3 /*break*/, 10];
try {
for (_b = __values(fs_ls(tarball_dir_path)), _c = _b.next(); !_c.done; _c = _b.next()) {
name = _c.value;
fs_move("MOVE", tarball_dir_path, dest_dir_path, name);
}
}
catch (e_1_1) { e_1 = { error: e_1_1 }; }
finally {
try {
if (_c && !_c.done && (_d = _b.return)) _d.call(_b);
}
finally { if (e_1) throw e_1.error; }
}
return [4 /*yield*/, exec("rm -r " + tarball_dir_path)];
case 9:
_e.sent();
return [3 /*break*/, 11];
case 10:
fs_move("MOVE", tarball_dir_path, dest_dir_path);
_e.label = 11;
case 11:
onSuccess();
return [2 /*return*/];
}
});
});
}
exports.download_and_extract_tarball = download_and_extract_tarball;
function web_get(url, file_path) {
if (!url.startsWith("http")) {
url = "http://" + url;
}
return new Promise(function (resolve, reject) {
var get = url.startsWith("https") ?
https.get.bind(https) : http.get.bind(http);
var timer = setTimeout(function () {
clientRequest.abort();
reject(new web_get.DownloadError(url, "CONNECTION ERROR", "web_get connection error: timeout"));
}, 20000);
var clientRequest = get(url, function (res) {
clearTimeout(timer);
if (("" + res.statusCode).startsWith("30")) {
var url_redirect = res.headers.location;
if (!!url_redirect) {
web_get(url_redirect, file_path)
.then(function (out) { return resolve(out); })
.catch(function (error) { return reject(error); });
return;
}
}
if (!("" + res.statusCode).startsWith("2")) {
reject(new web_get.DownloadErrorHttpErrorCode(url, res.statusCode));
return;
}
var contentLength = undefined;
var receivedBytes = 0;
if (res.headers["content-length"] !== undefined) {
contentLength = parseInt(res.headers["content-length"]);
res.on("data", function (chunk) { return receivedBytes += chunk.length; });
(function () {
var resolve_src = resolve;
resolve = function () {
var args = [];
for (var _i = 0; _i < arguments.length; _i++) {
args[_i] = arguments[_i];
}
if (receivedBytes !== contentLength) {
reject(new web_get.DownloadErrorIncomplete(url, contentLength, receivedBytes));
return;
}
resolve_src.apply(null, args);
};
})();
}
res.socket.setTimeout(60000, function () { return res.socket.destroy(new web_get.DownloadErrorIncomplete(url, contentLength, receivedBytes, "socket timeout")); });
if (!!file_path) {
(function () {
var reject_src = reject;
reject = function () {
var args = [];
for (var _i = 0; _i < arguments.length; _i++) {
args[_i] = arguments[_i];
}
return fs.unlink(file_path, function () { return reject_src.apply(null, args); });
};
})();
fs.writeFileSync(file_path, new Buffer(0));
var fsWriteStream = fs.createWriteStream(file_path);
res.pipe(fsWriteStream);
fsWriteStream.once("finish", function () { return resolve(); });
res.once("error", function (error) { return reject(new web_get.DownloadErrorIncomplete(url, contentLength, receivedBytes, error.message)); });
fsWriteStream.once("error", function (error) { return reject(new web_get.DownloadErrorIncomplete(url, contentLength, receivedBytes, error.message)); });
}
else {
var data_1 = new Buffer(0);
res.on("data", function (chunk) { return data_1 = Buffer.concat([data_1, chunk]); });
res.once("end", function () { return resolve(data_1.toString("utf8")); });
}
});
clientRequest.once("error", function (error) {
clearTimeout(timer);
reject(new web_get.DownloadError(url, "CONNECTION ERROR", error.message));
});
});
}
exports.web_get = web_get;
(function (web_get) {
var DownloadError = /** @class */ (function (_super) {
__extends(DownloadError, _super);
function DownloadError(url, cause, message) {
var _newTarget = this.constructor;
var _this = _super.call(this, message) || this;
_this.url = url;
_this.cause = cause;
Object.setPrototypeOf(_this, _newTarget.prototype);
return _this;
}
return DownloadError;
}(Error));
web_get.DownloadError = DownloadError;
var DownloadErrorIncomplete = /** @class */ (function (_super) {
__extends(DownloadErrorIncomplete, _super);
function DownloadErrorIncomplete(url, contentLength, receivedBytes, info) {
var _newTarget = this.constructor;
var _this = _super.call(this, url, "INCOMPLETE", "web_get failed, download incomplete " + receivedBytes + "/" + contentLength + ", " + (!!info ? info : "")) || this;
_this.contentLength = contentLength;
_this.receivedBytes = receivedBytes;
Object.setPrototypeOf(_this, _newTarget.prototype);
return _this;
}
return DownloadErrorIncomplete;
}(DownloadError));
web_get.DownloadErrorIncomplete = DownloadErrorIncomplete;
var DownloadErrorHttpErrorCode = /** @class */ (function (_super) {
__extends(DownloadErrorHttpErrorCode, _super);
function DownloadErrorHttpErrorCode(url, code) {
var _newTarget = this.constructor;
var _this = _super.call(this, url, "HTTP ERROR CODE", "web_get failed, HTTP error code: " + code) || this;
_this.code = code;
Object.setPrototypeOf(_this, _newTarget.prototype);
return _this;
}
return DownloadErrorHttpErrorCode;
}(DownloadError));
web_get.DownloadErrorHttpErrorCode = DownloadErrorHttpErrorCode;
})(web_get = exports.web_get || (exports.web_get = {}));
function fs_ls(dir_path, mode, showHidden) {
if (mode === void 0) { mode = "FILENAME"; }
if (showHidden === void 0) { showHidden = false; }
return execSyncNoCmdTrace("ls" + (showHidden ? " -a" : ""), { "cwd": dir_path })
.slice(0, -1)
.split("\n")
.map(function (name) { return mode === "ABSOLUTE PATH" ? path.join(dir_path, name) : name; });
}
exports.fs_ls = fs_ls;
/**
*
* Create a symbolic link.
* If dst exist it is removed.
* directories leading to dest are created if necessary.
*
*/
function createSymlink(src_path, dst_path) {
if (!fs.existsSync(dst_path)) {
execSyncNoCmdTrace("mkdir -p " + dst_path);
}
execSyncNoCmdTrace("rm -rf " + dst_path);
execSync("ln -s " + src_path + " " + dst_path);
}
exports.createSymlink = createSymlink;
/** Create a executable file */
function createScript(file_path, content) {
if (traceCmdIfEnabled.enabled) {
console.log("Creating script " + file_path);
}
fs.writeFileSync(file_path, Buffer.from(content, "utf8"));
execSyncNoCmdTrace("chmod +x " + file_path);
}
exports.createScript = createScript;
var unixUser;
(function (unixUser) {
function create(unix_user, home_dir_path) {
if (home_dir_path === void 0) { home_dir_path = "/tmp"; }
execSyncNoCmdTrace("useradd -M " + unix_user + " -s /bin/false -d " + home_dir_path);
}
unixUser.create = create;
function remove(unix_user) {
execSyncNoCmdTrace("userdel " + unix_user, { "stdio": "pipe" });
}
unixUser.remove = remove;
})(unixUser = exports.unixUser || (exports.unixUser = {}));
var get_caller_file_path_1 = __nccwpck_require__(1199);
exports.get_caller_file_path = get_caller_file_path_1.get_caller_file_path;
var get_caller_file_path_2 = __nccwpck_require__(1199);
/**
*
* DO NOT USE TEST PURPOSE ONLY
*
* return __filename
*
*/
function get__filename() {
return get_caller_file_path_2.get_caller_file_path();
}
exports.get__filename = get__filename;
/**
*
* Equivalent to the pattern $() in bash.
* Strip final LF if present.
* If cmd fail no error is thrown, an empty string is returned.
* Does not print to stdout.
*
* Typical usage: uname -r or which pkill
*
*/
function sh_eval(cmd) {
var res;
try {
res = execSyncNoCmdTrace(cmd, { "stdio": "pipe" });
}
catch (_a) {
return "";
}
return res.replace(/\n$/, "");
}
exports.sh_eval = sh_eval;
/**
* Run a command and return true if the return code was 0.
* Does not print to stdout.
*/
function sh_if(cmd) {
try {
execSyncNoCmdTrace(cmd, { "stdio": "pipe" });
}
catch (_a) {
return false;
}
return true;
}
exports.sh_if = sh_if;
/**
* Return a promise that resolve as the source promise when fulfilled
* or resolve with the error when reject.
* If a timeout is specified the returned promise resolve with an error after [timeout]ms
* if the source promise did not completed before.
* The message of the timeout error is safePr.timeoutErrorMessage
*/
function safePr(pr, timeout) {
var prSafe = pr.then(function (val) { return val; }, function (error) { return error; });
if (timeout !== undefined) {
var timer_1;
return Promise.race([
new Promise(function (resolve) { return timer_1 = setTimeout(function () { return resolve(new Error(safePr.timeoutErrorMessage)); }, timeout); }),
prSafe.then(function (val) {
clearTimeout(timer_1);
return val;
})
]);
}
else {
return prSafe;
}
}
exports.safePr = safePr;
;
(function (safePr) {
safePr.timeoutErrorMessage = "safePr timeout";
})(safePr = exports.safePr || (exports.safePr = {}));
/**
*
* Allow to schedule action function to perform before exiting.
*
* The task function will always be called before the process stop
* unless process.exit is explicitly called somewhere or
* if the process receive any signal other than the ones specified
* in the ExitCause.Signal["signal"] type.
*
* The process may stop for tree reasons:
* 1) If there is no more work scheduled ( natural termination ).
* 2) If an uncaught exception it thrown ( or a unhandled promise rejection )
* 3) If a signal ( one of the handled ) is sent to the process.
*
* To manually exit the process there is two option:
* - Call process.exit(X) but the task function will not be called.
* - Emit "beforeExit" on process object ( process.emit("beforeExit, process.exitCode= X) );
* Doing so you simulate 1st stop condition ( natural termination ).
*
* To define the return code set process.exitCode. The exit code can be set
* before emitting "beforeExit" or in the task function.
* If exitCode has not be defined the process will exit with 0 if
* there was nothing else to do and 1 otherwise.
*
* The task function can be synchronous or asynchronous.
* The task function has [timeout] ms to complete.
* If it has not completed within this delay the process will
* be terminated anyway. (Default 4000 ms )
* Setting [timeout] to a negative value will disable the timer.
* WARNING: It is important not to perform sync operation that can
* hang for a long time in the task function ( e.g. execSync("sleep 1000"); )
* because while the sync operation are performed the timeout can't be triggered.
*
* As soon as the task function is called all the other exitCause that
* may auccur will be ignored so that the task function have time to complete.
* Anyway the task function is called only once.
*
* Whether the task function complete by successfully or throw
* an exception the process will terminate with exit code set
* in process.exitCode at the time of the completion.
*
* Provide shouldExitIf function to filter what should be
* considered a case to terminate the process.
* Only exception and supported signals can be bypassed,
* Nothing else to do will always terminate the process.
* By default exiting on any signal or uncaught errors.
*
* Before exiting all subprocess will be killed.
*
*
*/
function setProcessExitHandler(task, timeout, shouldExitIf) {
var e_2, _a, e_3, _b;
var _this = this;
if (timeout === void 0) { timeout = 4000; }
if (shouldExitIf === void 0) { shouldExitIf = function () { return true; }; }
var log = function () {
var args = [];
for (var _i = 0; _i < arguments.length; _i++) {
args[_i] = arguments[_i];
}
return setProcessExitHandler.log("[ exit handler ] " + util.format.apply(util, args));
};
var handler = function (exitCause) { return __awaiter(_this, void 0, void 0, function () {
var process_exit, actionOut, error_4;
return __generator(this, function (_a) {
switch (_a.label) {
case 0:
if (exitCause.type !== "NOTHING ELSE TO DO" && !shouldExitIf(exitCause)) {
log("Choosing ( c.f shouldExitIf ) not to terminate the process despite: ", exitCause);
return [2 /*return*/];
}
handler = function (exitCause) { return log("Ignored extra exit cause", exitCause); };
process_exit = function () {
if (typeof process.exitCode !== "number" || isNaN(process.exitCode)) {
if (exitCause.type === "NOTHING ELSE TO DO") {
process.exitCode = 0;
}
else {
log("Exit cause " + exitCause.type + " and not exitCode have been set, using exit code 1");
process.exitCode = 1;
}
}
else {
log("Exit code have been set to " + process.exitCode);
}
log("Stopping subprocess asap if any...");
stopProcessSync.stopSubProcessesAsapSync();
log("exiting now with code " + process.exitCode);
process.exit();
};
log("Cause of process termination: ", exitCause);
if (timeout >= 0) {
setTimeout(function () {
log("Exit task timeout");
process.exitCode = 1;
process_exit();
}, timeout);
}
try {
actionOut = task(exitCause);
}
catch (error) {
log("Exit task thrown error", error);
process_exit();
return [2 /*return*/];
}
if (!(actionOut instanceof Promise)) return [3 /*break*/, 4];
_a.label = 1;
case 1:
_a.trys.push([1, 3, , 4]);
return [4 /*yield*/, actionOut];
case 2:
_a.sent();
return [3 /*break*/, 4];
case 3:
error_4 = _a.sent();
log("Exit task returned a promise that rejected", error_4);
process_exit();
return [2 /*return*/];
case 4:
log("Exit task complete successfully.");
process_exit();
return [2 /*return*/];
}
});
}); };
var _loop_1 = function (signal) {
process.on(signal, function () { return handler({ "type": "SIGNAL", signal: signal }); });
};
try {
for (var _c = __values(setProcessExitHandler.ExitCause.Signal.list), _d = _c.next(); !_d.done; _d = _c.next()) {
var signal = _d.value;
_loop_1(signal);
}
}
catch (e_2_1) { e_2 = { error: e_2_1 }; }
finally {
try {
if (_d && !_d.done && (_a = _c.return)) _a.call(_c);
}
finally { if (e_2) throw e_2.error; }
}
try {
for (var _e = __values(["uncaughtException", "unhandledRejection"]), _f = _e.next(); !_f.done; _f = _e.next()) {
var eventName = _f.value;
process.on(eventName, function (error) { return handler({ "type": "EXCEPTION", error: error }); });
}
}
catch (e_3_1) { e_3 = { error: e_3_1 }; }
finally {
try {
if (_f && !_f.done && (_b = _e.return)) _b.call(_e);
}
finally { if (e_3) throw e_3.error; }
}
process.on("beforeExit", function () { return handler({ "type": "NOTHING ELSE TO DO" }); });
}
exports.setProcessExitHandler = setProcessExitHandler;
(function (setProcessExitHandler) {
var ExitCause;
(function (ExitCause) {
var Signal;
(function (Signal) {
Signal._obj = { "SIGINT": null, "SIGUSR2": null, "SIGHUP": null };
Signal.list = Object.keys(Signal._obj);
})(Signal = ExitCause.Signal || (ExitCause.Signal = {}));
})(ExitCause = setProcessExitHandler.ExitCause || (setProcessExitHandler.ExitCause = {}));
setProcessExitHandler.log = function () { };
})(setProcessExitHandler = exports.setProcessExitHandler || (exports.setProcessExitHandler = {}));
/**
*
* Stop a process by sending a specific signal to a target process.
* When the function return the main process and all it's descendent processes are terminated.
*
* The default signal is SIGUSR2 which is the signal used to gracefully terminate
* Process created by the createService function.
*
* Optionally runfiles_path can be provided to define a set of files
* that should be suppressed before returning.
*
* If pid is provided under the form of a pidfile path it will
* be added to the runfiles set.
*
* If all the processes does not terminate within [delay_before_sigkill]ms
* (default 50000) then KILL signal will be sent to all processes still alive.
*
* If the PID provided is the same that the PID of the process running the function
* PidMatchCurrentProcessError will be thrown.
*
*/
function stopProcessSync(pidfile_path_or_pid, signal, delay_before_sigkill, runfiles_path) {
if (signal === void 0) { signal = "SIGUSR2"; }
if (delay_before_sigkill === void 0) { delay_before_sigkill = 5000; }
if (runfiles_path === void 0) { runfiles_path = []; }
var log = function () {
var args = [];
for (var _i = 0; _i < arguments.length; _i++) {
args[_i] = arguments[_i];
}
return stopProcessSync.log("[ stop process sync ] " + util.format.apply(util, args));
};
var cleanupRunfiles = function () {
var e_4, _a;
try {
for (var runfiles_path_1 = __values(runfiles_path), runfiles_path_1_1 = runfiles_path_1.next(); !runfiles_path_1_1.done; runfiles_path_1_1 = runfiles_path_1.next()) {
var runfile_path = runfiles_path_1_1.value;
if (fs.existsSync(runfile_path)) {
try {
fs.unlinkSync(runfile_path);
log(path.basename(runfile_path) + " runfile manually cleaned up.");
}
catch (_b) {
log(colorize("Could not remove runfile " + runfile_path, "RED"));
}
}
}
}
catch (e_4_1) { e_4 = { error: e_4_1 }; }
finally {
try {
if (runfiles_path_1_1 && !runfiles_path_1_1.done && (_a = runfiles_path_1.return)) _a.call(runfiles_path_1);
}
finally { if (e_4) throw e_4.error; }
}
};
var pid;
if (typeof pidfile_path_or_pid === "number") {
pid = pidfile_path_or_pid;
}
else {
var pidfile_path = pidfile_path_or_pid;
runfiles_path = __spread([pidfile_path], runfiles_path);
if (!fs.existsSync(pidfile_path)) {
log("Pidfile does not exist, assuming process not running");
cleanupRunfiles();
return;
}
try {
pid = parseInt(fs.readFileSync(pidfile_path).toString("utf8").replace(/\n$/, ""));
if (isNaN(pid)) {
throw new Error("pid is NaN");
}
}
catch (_a) {
log("Pidfile does does not contain pid");
cleanupRunfiles();
return;
}
}
if (pid === process.pid) {
throw new stopProcessSync.PidMatchCurrentProcessError(cleanupRunfiles);
}
var pids = __spread(stopProcessSync.getSubProcesses(pid, "FULL PROCESS TREE"), [
pid
]);
var startTime = Date.now();
if (stopProcessSync.isProcessRunning(pid)) {
log("Sending " + signal + " to target process (" + pid + ")");
stopProcessSync.kill(pid, signal);
}
else {
log("Target process (" + pid + ") is not running");
}
var _loop_2 = function () {
var e_5, _a;
var runningPids = pids.filter(function (pid) { return stopProcessSync.isProcessRunning(pid); });
if (runningPids.length === 0) {
log("Target process (" + pid + ") and all it's sub processes are now terminated");
return "break";
}
else if (Date.now() >= startTime + delay_before_sigkill) {
log((function () {
if (delay_before_sigkill === 0) {
return "Immediately sending SIGKILL to " + runningPids.length + " remaining sub processes of target process (" + pid + ")";
}
else {
return [
!!runningPids.find(function (_pid) { return _pid === pid; }) ?
"Target process (" + pid + ") and " + (runningPids.length - 1) + " of it's sub processes" :
runningPids.length + " sub processes of the target process (" + pid + ")",
"did not terminate in time, sending KILL signals."
].join(" ");
}
})());
try {
for (var runningPids_1 = (e_5 = void 0, __values(runningPids)), runningPids_1_1 = runningPids_1.next(); !runningPids_1_1.done; runningPids_1_1 = runningPids_1.next()) {
var pid_1 = runningPids_1_1.value;
stopProcessSync.kill(pid_1, "SIGKILL");
}
}
catch (e_5_1) { e_5 = { error: e_5_1 }; }
finally {
try {
if (runningPids_1_1 && !runningPids_1_1.done && (_a = runningPids_1.return)) _a.call(runningPids_1);
}
finally { if (e_5) throw e_5.error; }
}
return "continue";
}
execSyncNoCmdTrace("sleep 0.1");
};
while (true) {
var state_1 = _loop_2();
if (state_1 === "break")
break;
}
cleanupRunfiles();
}
exports.stopProcessSync = stopProcessSync;
(function (stopProcessSync) {
var PidMatchCurrentProcessError = /** @class */ (function (_super) {
__extends(PidMatchCurrentProcessError, _super);
function PidMatchCurrentProcessError(cleanupRunfiles) {
var _newTarget = this.constructor;
var _this = _super.call(this, "StopProcessSync error, provided PID is the PID of the current process") || this;
_this.cleanupRunfiles = cleanupRunfiles;
Object.setPrototypeOf(_this, _newTarget.prototype);
return _this;
}
return PidMatchCurrentProcessError;
}(Error));
stopProcessSync.PidMatchCurrentProcessError = PidMatchCurrentProcessError;
/**
* Stopping process As Soon As Possible,
* stopProcessSync with signal SIGKILL and timeout 0
* */
function stopProcessAsapSync(pidfile_path_or_pid, runfiles_path) {
if (runfiles_path === void 0) { runfiles_path = []; }
stopProcessSync(pidfile_path_or_pid, "SIGKILL", 0, runfiles_path);
}
stopProcessSync.stopProcessAsapSync = stopProcessAsapSync;
/**
* Terminate all child process of current process ASAP.
*
* NOTE: Directly after this function ( in the current tick )
* direct parents process that had sub processes will be Zombies.
* However they will be reaped by the current process on next tick.
*
*/
function stopSubProcessesAsapSync() {
var e_6, _a;
try {
for (var _b = __values(getSubProcesses(process.pid, "DIRECT SUB PROCESSES ONLY")), _c = _b.next(); !_c.done; _c = _b.next()) {
var pid = _c.value;
if (stopSubProcessesAsapSync.ignorePids.has(pid)) {
continue;
}
stopProcessSync(pid, "SIGKILL", 0);
}
}
catch (e_6_1) { e_6 = { error: e_6_1 }; }
finally {
try {
if (_c && !_c.done && (_a = _b.return)) _a.call(_b);
}
finally { if (e_6) throw e_6.error; }
}
}
stopProcessSync.stopSubProcessesAsapSync = stopSubProcessesAsapSync;
(function (stopSubProcessesAsapSync) {
stopSubProcessesAsapSync.ignorePids = new Set();
})(stopSubProcessesAsapSync = stopProcessSync.stopSubProcessesAsapSync || (stopProcessSync.stopSubProcessesAsapSync = {}));
/** Invoke kill, can't throw */
function kill(pid, signal) {
try {
execSyncNoCmdTrace("kill -" + signal + " " + pid, { "stdio": "pipe", "shell": "/bin/bash" });
}
catch (_a) {
}
}
stopProcessSync.kill = kill;
/**
* Get the list of subprocess of a process ( return a list of pid )
*/
function getSubProcesses(pid, depth) {
var _a = child_process.spawnSync("/bin/ps", ["--ppid", "" + pid, "-o", "pid,state"], { "shell": false }), stdout = _a.stdout, ps_pid = _a.pid, ps_exitCode = _a.status;
if (ps_exitCode !== 0) {
return [];
}
var pids = stdout
.toString("utf8")
.split("\n")
.filter(function (v) { return !v.match(/Z/); })
.map(function (v) { return v.replace(/[^0-9]/g, ""); })
.filter(function (v) { return !!v; })
.map(function (v) { return parseInt(v); })
.filter(function (pid) { return pid !== ps_pid; });
switch (depth) {
case "DIRECT SUB PROCESSES ONLY": return pids;
case "FULL PROCESS TREE": return (function () {
var e_7, _a;
var out = [];
try {
for (var pids_1 = __values(pids), pids_1_1 = pids_1.next(); !pids_1_1.done; pids_1_1 = pids_1.next()) {
var pid_2 = pids_1_1.value;
out = __spread(out, getSubProcesses(pid_2, "FULL PROCESS TREE"), [pid_2]);
}
}
catch (e_7_1) { e_7 = { error: e_7_1 }; }
finally {
try {
if (pids_1_1 && !pids_1_1.done && (_a = pids_1.return)) _a.call(pids_1);
}
finally { if (e_7) throw e_7.error; }
}
return out;
})();
}
}
stopProcessSync.getSubProcesses = getSubProcesses;
/** Return true only if exist and is not a daemon */
function isProcessRunning(pid) {
var psCmdOut;
try {
psCmdOut = execSyncNoCmdTrace("ps --pid " + pid + " -o state");
}
catch (_a) {
return false;
}
return !psCmdOut.match(/Z/);
}
stopProcessSync.isProcessRunning = isProcessRunning;
/** Debug function to print the process tree of the current process. */
function _printProcessTree(log) {
if (log === void 0) { log = console.log.bind(console); }
var rec = function (node) {
var e_8, _a;
var pids = getSubProcesses(node.pid, "DIRECT SUB PROCESSES ONLY");
if (pids.length === 0) {
return;
}
node.sub = [];
try {
for (var pids_2 = __values(pids), pids_2_1 = pids_2.next(); !pids_2_1.done; pids_2_1 = pids_2.next()) {
var pid = pids_2_1.value;
var sub_node = { pid: pid };
node.sub.push(sub_node);
rec(sub_node);
}
}
catch (e_8_1) { e_8 = { error: e_8_1 }; }
finally {
try {
if (pids_2_1 && !pids_2_1.done && (_a = pids_2.return)) _a.call(pids_2);
}
finally { if (e_8) throw e_8.error; }
}
};
var tree = { "pid": process.pid };
rec(tree);
log(JSON.stringify(tree, null, 3));
}
stopProcessSync._printProcessTree = _printProcessTree;
stopProcessSync.log = function () { };
})(stopProcessSync = exports.stopProcessSync || (exports.stopProcessSync = {}));
/**
*
* Function to create the entry point (main.js) of a node service that can:
* -Restart on crash (without relying on systemd to do so).
* -Execute as specific unix user but can perform tasks as root before start.
* -Be stopped gracefully by sending USR2 signal on the root process ( identified by pidfile ).
* -Be started via a shell and gracefully stopped with CTRL-C (INT signal).
* -Ensure only one instance of the service run at the same time.
* ( if at the time the main is called there is an other instance of the service
* running it is gracefully terminated )
* -Ensure that the process will terminate in at most [ stop_timeout ] ms after
* receiving INT or USR2 signal. (default 5second)
* -Forward daemon processes stdout to root process stdout.
* -Can fork multiple daemon process.
*
* The root process forward command line arguments and environnement variable to
* the daemon processes.
*
* => rootProcess function should return ( when not default ):
* -pidfile_path: where to store the pid of the root process.
* take to terminate after requested to exit gracefully.
* -srv_name: Name of the service to overwrite the process names. (Default: not overwriting)
* -stop_timeout: The maximum amount of time ( in ms ) the
* that beforeExitTask can take to complete before being killed by force by root process.
* After receiving USR2 signal or CTRL, the root process will be closed within [trop_timeout]+1000ms
* -assert_unix_user: enforce that the main be called by a specific user.
* -isQuiet?: set to true to disable process debug info logging on stdout. Prefixed by [ service ]. ( default false )
* -doForwardDaemonStdout?: set to true to forward everything the daemon
* process write to stdout to the root process stdout. ( default true )
* -daemon_unix_user?: User who should own the daemon process.
* -daemon_node_path?: Node.js executable that should be used to by the daemon process.
* -daemon_cwd?: working directory of the daemon process.
* -daemon_restart_after_crash_delay?: ( Default to 500ms. )Delay in ms before restarting the daemon
* after it terminate without being requested to. If set to a negative number the daemons
* will not be restarted after it terminate for the first time and :
* If all daemons process exited with 0 and there is no other daemon process the root process
* will end with a clean exit code.
* If any of the daemon exit with an unclean code the root process will be terminated with an error code
* even if there is some other daemon running.
* -daemon_count: Number of instance of daemon process that should be forked, default 1.
* -max_consecutive_restart: Number of time a daemon should be restarted after crashing right after start.
* (Default ~Infinity).
* -preForkTask: Task to perform before forking a daemon process.
* It is called just before forking the daemon process. ( called again on every restart. )
* If the function is async the daemon will not be forked until the returned promise resolve.
* If the function throw exception root process will exit with code 1.
* (pidfile will be deleted)
* If the function is async and if it need to spawn child processes then
* an implementation for terminateSubProcess ( passed as reference ) should be provided so that
* if when called it kill all the child processes then resolve once they are terminated.
* The to which the promise resolve will be used as exit code for the root process.
* Note that terminateSubProcess should never be called, it is a OUT parameter.
* However if the implementation provided is just to send a SIGKILL to the forked processes
* then there is no need to provide an implementation as all the root process's sub processes tree
* will be killed before exiting anyway.
*
* => daemonProcess
* It should return:
* -launch: the function that the daemon process need to call to start the actual job that the service is meant to perform.
* -beforeExitTask: function that should be called before the daemon process exit. ( e.g. creating crash report ).
* If the daemon process is terminating due to an error the error will be passed as argument.
* There is two scenario that will led to this function NOT being called:
* 1)The daemon process receive KILL or other deadly signal that can't be overridden.
* 2)The root process terminate.
* daemon_number represent the instance index of the daemon among the total of [damon_count] process forked.
* It can be user to use a different logfile for each daemon process instance.
*
* NOTE: If the root process receive a deadly signal other than INT, USR2 or HUP
* ( e.g. KILL or STOP ) the root and daemon processes will immediately terminate without
* executing beforeExit tasks or removing pidfile.
*
* NOTE: because setting listener on "message" and "disconnect" process event prevent the
* thread from terminating naturally where is nothing more to do if you wish to manually
* terminate the daemon process without termination being requested from the parent you can:
* 1) emit "beforeExit" on process setting the desired exit code ( process.emit("beforeExit", process.exitCode= X);
* 2) throw an exception.
*
*/
function createService(params) {
var _this = this;
var log = (function () { });
var getLog = function (prefix) {
return (function () {
var args = [];
for (var _i = 0; _i < arguments.length; _i++) {
args[_i] = arguments[_i];
}
return process.stdout.write(Buffer.from("[service] ( " + prefix + " ) " + util.format.apply(util, args) + "\n", "utf8"));
});
};
var rootProcess = params.rootProcess, daemonProcess = params.daemonProcess;
var main_root = function (main_js_path) { return __awaiter(_this, void 0, void 0, function () {
var _a, pidfile_path, srv_name, _stop_timeout, assert_unix_user, isQuiet, _doForwardDaemonStdout, daemon_unix_user, daemon_node_path, daemon_cwd, _daemon_restart_after_crash_delay, max_consecutive_restart, preForkTask, _daemon_count, stop_timeout, doForwardDaemonStdout, daemon_restart_after_crash_delay, daemon_count, daemonContexts, isTerminating, args, _b, daemon_uid, daemon_gid, makeForkOptions, forkDaemon, daemon_number;
var _this = this;
return __generator(this, function (_c) {
switch (_c.label) {
case 0: return [4 /*yield*/, rootProcess()];
case 1:
_a = _c.sent(), pidfile_path = _a.pidfile_path, srv_name = _a.srv_name, _stop_timeout = _a.stop_timeout, assert_unix_user = _a.assert_unix_user, isQuiet = _a.isQuiet, _doForwardDaemonStdout = _a.doForwardDaemonStdout, daemon_unix_user = _a.daemon_unix_user, daemon_node_path = _a.daemon_node_path, daemon_cwd = _a.daemon_cwd, _daemon_restart_after_crash_delay = _a.daemon_restart_after_crash_delay, max_consecutive_restart = _a.max_consecutive_restart, preForkTask = _a.preForkTask, _daemon_count = _a.daemon_count;
if (srv_name !== undefined) {
process.title = srv_name + " root process";
}
stop_timeout = _stop_timeout !== undefined ?
_stop_timeout : 5000;
doForwardDaemonStdout = _doForwardDaemonStdout !== undefined ?
_doForwardDaemonStdout : true;
daemon_restart_after_crash_delay = _daemon_restart_after_crash_delay !== undefined ?
_daemon_restart_after_crash_delay : 500;
daemon_count = _daemon_count !== undefined ?
_daemon_count : 1;
if (assert_unix_user !== undefined && os.userInfo().username !== assert_unix_user) {
console.log(colorize("Must be run as " + assert_unix_user, "RED"));
process.exit(1);
return [2 /*return*/];
}
if (!isQuiet) {
log = getLog("root process");
}
stopProcessSync.log = log;
try {
stopProcessSync(pidfile_path);
}
catch (error) {
if (!(error instanceof stopProcessSync.PidMatchCurrentProcessError)) {
throw error;
}
error.cleanupRunfiles();
}
if (fs.existsSync(pidfile_path)) {
throw Error("Other instance launched simultaneously");
}
(function createPidfile() {
var pidfile_dir_path = path.dirname(pidfile_path);
if (!fs.existsSync(pidfile_dir_path)) {
execSyncNoCmdTrace("mkdir -p " + pidfile_dir_path);
}
fs.writeFileSync(pidfile_path, process.pid.toString());
})();
log("PID: " + process.pid);
daemonContexts = new Map((new Array(daemon_count))
.fill(null)
.map(function (_, index) {
var context = [
index + 1,
{
"daemonProcess": undefined,
"terminatePreForkChildProcesses": { "impl": function () { return Promise.resolve(); } },
"restart_attempt_remaining": max_consecutive_restart || NaN,
"reset_restart_attempt_timer": setTimeout(function () { }, 0)
}
];
return context;
}));
isTerminating = false;
setProcessExitHandler(function (exitCause) { return __awaiter(_this, void 0, void 0, function () {
var childProcessExitCode;
return __generator(this, function (_a) {
switch (_a.label) {
case 0:
isTerminating = true;
return [4 /*yield*/, (function terminateAllChildProcesses() {
return __awaiter(this, void 0, void 0, function () {
var terminateDaemonProcess, terminatePreForkChildProcessesSafeCall, tasks, _loop_3, _a, _b, _c, daemonProcess_1, terminatePreForkChildProcesses;
var e_9, _d;
var _this = this;
return __generator(this, function (_e) {
switch (_e.label) {
case 0:
terminateDaemonProcess = function (daemonProcess) { return __awaiter(_this, void 0, void 0, function () {
return __generator(this, function (_a) {
return [2 /*return*/, new Promise(function (resolve) {
log("Attempt to gracefully terminate daemon process PID: " + daemonProcess.pid + "...");
daemonProcess.send(null);
var timer = setTimeout(function () { return doStopAsap(); }, stop_timeout + 500);
daemonProcess.once("error", function () { return doStopAsap(); });
daemonProcess.once("close", function (childProcessExitCode) {
clearTimeout(timer);
log("Daemon process PID: " + daemonProcess.pid + " exited with code " + childProcessExitCode);
if (typeof childProcessExitCode !== "number" || isNaN(childProcessExitCode)) {
childProcessExitCode = 1;
}
resolve(childProcessExitCode);
});
var doStopAsap = function () {
log("Daemon process PID:" + daemonProcess.pid + " not responding, force kill...");
clearTimeout(timer);
daemonProcess.removeAllListeners("error");
daemonProcess.removeAllListeners("close");
stopProcessSync.stopProcessAsapSync(daemonProcess.pid);
resolve(1);
};
})];
});
}); };
terminatePreForkChildProcessesSafeCall = function (impl) {
var timer;
return Promise.race([
new Promise(function (resolve) { return timer = setTimeout(function () { return resolve("TIMEOUT"); }, stop_timeout + 500); }),
(function () { return __awaiter(_this, void 0, void 0, function () {
var result, _a;
return __generator(this, function (_b) {
switch (_b.label) {
case 0:
_b.trys.push([0, 2, , 3]);
return [4 /*yield*/, impl()];
case 1:
_b.sent();
result = "SUCCESS";
return [3 /*break*/, 3];
case 2:
_a = _b.sent();
result = "ERROR";
return [3 /*break*/, 3];
case 3:
clearTimeout(timer);
return [2 /*return*/, result];
}
});
}); })()
]);
};
tasks = [];
_loop_3 = function (daemonProcess_1, terminatePreForkChildProcesses) {
tasks[tasks.length] = !daemonProcess_1 ? (new Promise(function (resolve) { return terminatePreForkChildProcessesSafeCall(terminatePreForkChildProcesses.impl)
.then(function (result) { return result === "SUCCESS" ? resolve(0) : resolve(1); }); })) : terminateDaemonProcess(daemonProcess_1);
};
try {
for (_a = __values(daemonContexts.values()), _b = _a.next(); !_b.done; _b = _a.next()) {
_c = _b.value, daemonProcess_1 = _c.daemonProcess, terminatePreForkChildProcesses = _c.terminatePreForkChildProcesses;
_loop_3(daemonProcess_1, terminatePreForkChildProcesses);
}
}
catch (e_9_1) { e_9 = { error: e_9_1 }; }
finally {
try {
if (_b && !_b.done && (_d = _a.return)) _d.call(_a);
}
finally { if (e_9) throw e_9.error; }
}
return [4 /*yield*/, Promise.all(tasks)];
case 1: return [2 /*return*/, (_e.sent()).reduce(function (accumulator, currentValue) { return accumulator === 0 ? currentValue : accumulator; }, 0)];
}
});
});
})()];
case 1:
childProcessExitCode = _a.sent();
if (exitCause.type === "EXCEPTION") {
/*
preForkTask throw or daemonProcess emit error or
one of the daemon exited with a non 0 code and
restart_delay was set <0
*/
log("Root process exception message: " + exitCause.error.message);
process.exitCode = 1;
}
else {
process.exitCode = childProcessExitCode;
}
fs.unlinkSync(pidfile_path);
log("pidfile deleted");
return [2 /*return*/];
}
});
}); }, stop_timeout + 1000);
setProcessExitHandler.log = log;
args = (function () {
var out = __spread(process.argv);
out.shift();
out.shift();
return out;
})();
_b = __read((function () {
if (!!daemon_unix_user) {
return [get_uid(daemon_unix_user), get_gid(daemon_unix_user)];
}
else {
return [undefined, undefined];
}
})(), 2), daemon_uid = _b[0], daemon_gid = _b[1];
makeForkOptions = function (daemon_number) { return ({
"uid": daemon_uid,
"gid": daemon_gid,
"silent": true,
"cwd": daemon_cwd,
"execPath": daemon_node_path,
"env": __assign({}, process.env, { daemon_number: daemon_number,
daemon_count: daemon_count,
srv_name: srv_name,
stop_timeout: stop_timeout, "isQuiet": isQuiet ? "1" : "0" })
}); };
forkDaemon = function (daemon_number) { return __awaiter(_this, void 0, void 0, function () {
var context, error_5, daemonProcess;
return __generator(this, function (_a) {
switch (_a.label) {
case 0:
context = daemonContexts.get(daemon_number);
clearTimeout(context.reset_restart_attempt_timer);
if (!!!preForkTask) return [3 /*break*/, 5];
log("performing pre fork tasks for daemon number " + daemon_number + "...");
_a.label = 1;
case 1:
_a.trys.push([1, 3, , 4]);
return [4 /*yield*/, preForkTask(context.terminatePreForkChildProcesses, daemon_number)];
case 2:
_a.sent();
return [3 /*break*/, 4];
case 3:
error_5 = _a.sent();
log("PreFork tasks for daemon number " + daemon_number + " raised an exception");
throw error_5;
case 4:
context.terminatePreForkChildProcesses.impl = function () { return Promise.resolve(); };
_a.label = 5;
case 5:
if (isTerminating) {
log("Not forking daemon because root process is terminating");
return [2 /*return*/];
}
if (max_consecutive_restart !== undefined) {
context.reset_restart_attempt_timer = setTimeout(function () { return context.restart_attempt_remaining = max_consecutive_restart; }, 10000);
}
log("Forking daemon process number " + daemon_number + " now.");
daemonProcess = child_process.fork(main_js_path, args, makeForkOptions(daemon_number));
context.daemonProcess = daemonProcess;
if (doForwardDaemonStdout) {
daemonProcess.stdout.on("data", function (data) {
return process.stdout.write(data);
});
}
daemonProcess.once("error", function (error) {
if (isTerminating) {
return;
}
context.daemonProcess = undefined;
log([
"Error evt emitted by daemon process number " + daemon_number,
"Meaning that: ",
"The process could not be spawned, or",
"The process could not be killed, or",
"Sending a message to the child process failed."
].join("\n"));
throw error;
});
daemonProcess.once("close", function (childProcessExitCode) {
if (isTerminating) {
return;
}
context.daemonProcess = undefined;
log("Daemon process " + daemon_number + " exited without being requested to.");
if (daemon_restart_after_crash_delay < 0) {
if (childProcessExitCode === null) {
childProcessExitCode = 1;
}
log("Daemon number " + daemon_number + " will not be restarted.");
clearTimeout(context.reset_restart_attempt_timer);
if (childProcessExitCode !== 0) {
throw new Error("Daemon number " + daemon_number + ", crashed");
}
else if (!Array.from(daemonContexts.values()).find(function (_a) {
var daemonProcess = _a.daemonProcess;
return !!daemonProcess;
})) {
log("As last remaining daemon process terminated cleanly we stop end root process");
process.emit("beforeExit", NaN);
}
return;
}
if (max_consecutive_restart !== undefined) {
if (context.restart_attempt_remaining-- === 0) {
throw new Error("Daemon process " + daemon_number + " is crashing over and over");
}
else {
log("Restart remaining: " + context.restart_attempt_remaining);
}
}
log("Daemon process " + daemon_number + " will be restarted");
setTimeout(function () { return forkDaemon(daemon_number); }, daemon_restart_after_crash_delay);
});
return [2 /*return*/];
}
});
}); };
for (daemon_number = 1; daemon_number <= daemon_count; daemon_number++) {
forkDaemon(daemon_number);
}
return [2 /*return*/];
}
});
}); };
var main_daemon = function () { return __awaiter(_this, void 0, void 0, function () {
var _a, daemon_number, daemon_count, stop_timeout, isQuiet, srv_name, _b, launch, beforeExitTask;
var _this = this;
return __generator(this, function (_c) {
switch (_c.label) {
case 0:
_a = __read(["daemon_number", "daemon_count", "stop_timeout", "isQuiet"].map(function (key) {
var value = parseInt(process.env[key]);
delete process.env[key];
return value;
}), 4), daemon_number = _a[0], daemon_count = _a[1], stop_timeout = _a[2], isQuiet = _a[3];
srv_name = (function () {
var key = "srv_name";
var value = process.env[key];
delete process.env[key];
if (value === "" + undefined) {
return undefined;
}
else {
return value;
}
})();
if (!isQuiet) {
log = getLog("daemon process " + daemon_number + "/" + daemon_count + ", PID: " + process.pid);
}
if (srv_name !== undefined) {
process.title = srv_name + " daemon " + (daemon_count === 1 ? "" : daemon_number);
}
return [4 /*yield*/, daemonProcess(daemon_number, daemon_count)];
case 1:
_b = _c.sent(), launch = _b.launch, beforeExitTask = _b.beforeExitTask;
process.once("message", function () { return process.emit("beforeExit", process.exitCode = 0); });
process.once("disconnect", function () { return process.exit(1); });
setProcessExitHandler(function (exitCause) { return __awaiter(_this, void 0, void 0, function () {
var error, prBeforeExitTask;
return __generator(this, function (_a) {
switch (_a.label) {
case 0:
error = exitCause.type === "EXCEPTION" ? exitCause.error : undefined;
if (!!!beforeExitTask) return [3 /*break*/, 2];
prBeforeExitTask = beforeExitTask(error);
if (!(prBeforeExitTask instanceof Promise)) return [3 /*break*/, 2];
return [4 /*yield*/, safePr(prBeforeExitTask, stop_timeout + 2000).then(function (error) {
if (error instanceof Error) {
//NOTE: Throwing does not overwrite the exit code.
if (error.message === safePr.timeoutErrorMessage) {
//NOTE: Throwing string to not have the log of setProcessExitHandler
//display the stack trace.
throw "beforeExitTask took too much time to complete.";
}
else {
throw error;
}
}
})];
case 1:
_a.sent();
_a.label = 2;
case 2: return [2 /*return*/];
}
});
}); }, -1, function (exitCause) { return exitCause.type !== "SIGNAL"; });
setProcessExitHandler.log = log;
launch();
return [2 /*return*/];
}
});
}); };
if (!process.send) {
main_root(get_caller_file_path_2.get_caller_file_path());
}
else {
main_daemon();
}
}
exports.createService = createService;
var systemd;
(function (systemd) {
var mkPath = function (srv_name) { return "/etc/systemd/system/" + srv_name + ".service"; };
/**
* Generate a systemd config file for a service created via "createService" function
* enable by default, start by default.
*/
function createConfigFile(srv_name, main_js_path, node_path, enable, start) {
if (node_path === void 0) { node_path = process.argv[0]; }
if (enable === void 0) { enable = "ENABLE"; }
if (start === void 0) { start = "START"; }
fs.writeFileSync(mkPath(srv_name), Buffer.from([
"[Unit]",
"After=network.target",
"",
"[Service]",
"ExecStart=" + node_path + " " + main_js_path,
"StandardOutput=inherit",
"KillMode=process",
"KillSignal=SIGUSR2",
"SendSIGKILL=no",
"Environment=NODE_ENV=production",
"",
"[Install]",
"WantedBy=multi-user.target",
""
].join("\n"), "utf8"));
execSyncNoCmdTrace("systemctl daemon-reload");
if (!!enable) {
execSyncNoCmdTrace("systemctl enable " + srv_name, { "stdio": "pipe" });
}
if (!!start) {
execSyncNoCmdTrace("systemctl start " + srv_name);
}
}
systemd.createConfigFile = createConfigFile;
/** Remove config file disable and reload daemon, never throw, stop is false by default */
function deleteConfigFile(srv_name, stop) {
if (stop === void 0) { stop = false; }
if (!!stop) {
execSyncNoCmdTrace("systemctl stop " + srv_name + " || true", { "stdio": "pipe" });
}
execSyncNoCmdTrace("systemctl disable " + srv_name + " || true", { "stdio": "pipe" });
try {
fs.unlinkSync(mkPath(srv_name));
}
catch (_a) { }
execSyncNoCmdTrace("systemctl daemon-reload || true", { "stdio": "pipe" });
}
systemd.deleteConfigFile = deleteConfigFile;
})(systemd = exports.systemd || (exports.systemd = {}));
/***/ }),
/***/ 1552:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
"use strict";
var punycode = __nccwpck_require__(8328);
var mappingTable = __nccwpck_require__(2472);
var PROCESSING_OPTIONS = {
TRANSITIONAL: 0,
NONTRANSITIONAL: 1
};
function normalize(str) { // fix bug in v8
return str.split('\u0000').map(function (s) { return s.normalize('NFC'); }).join('\u0000');
}
function findStatus(val) {
var start = 0;
var end = mappingTable.length - 1;
while (start <= end) {
var mid = Math.floor((start + end) / 2);
var target = mappingTable[mid];
if (target[0][0] <= val && target[0][1] >= val) {
return target;
} else if (target[0][0] > val) {
end = mid - 1;
} else {
start = mid + 1;
}
}
return null;
}
var regexAstralSymbols = /[\uD800-\uDBFF][\uDC00-\uDFFF]/g;
function countSymbols(string) {
return string
// replace every surrogate pair with a BMP symbol
.replace(regexAstralSymbols, '_')
// then get the length
.length;
}
function mapChars(domain_name, useSTD3, processing_option) {
var hasError = false;
var processed = "";
var len = countSymbols(domain_name);
for (var i = 0; i < len; ++i) {
var codePoint = domain_name.codePointAt(i);
var status = findStatus(codePoint);
switch (status[1]) {
case "disallowed":
hasError = true;
processed += String.fromCodePoint(codePoint);
break;
case "ignored":
break;
case "mapped":
processed += String.fromCodePoint.apply(String, status[2]);
break;
case "deviation":
if (processing_option === PROCESSING_OPTIONS.TRANSITIONAL) {
processed += String.fromCodePoint.apply(String, status[2]);
} else {
processed += String.fromCodePoint(codePoint);
}
break;
case "valid":
processed += String.fromCodePoint(codePoint);
break;
case "disallowed_STD3_mapped":
if (useSTD3) {
hasError = true;
processed += String.fromCodePoint(codePoint);
} else {
processed += String.fromCodePoint.apply(String, status[2]);
}
break;
case "disallowed_STD3_valid":
if (useSTD3) {
hasError = true;
}
processed += String.fromCodePoint(codePoint);
break;
}
}
return {
string: processed,
error: hasError
};
}
var combiningMarksRegex = /[\u0300-\u036F\u0483-\u0489\u0591-\u05BD\u05BF\u05C1\u05C2\u05C4\u05C5\u05C7\u0610-\u061A\u064B-\u065F\u0670\u06D6-\u06DC\u06DF-\u06E4\u06E7\u06E8\u06EA-\u06ED\u0711\u0730-\u074A\u07A6-\u07B0\u07EB-\u07F3\u0816-\u0819\u081B-\u0823\u0825-\u0827\u0829-\u082D\u0859-\u085B\u08E4-\u0903\u093A-\u093C\u093E-\u094F\u0951-\u0957\u0962\u0963\u0981-\u0983\u09BC\u09BE-\u09C4\u09C7\u09C8\u09CB-\u09CD\u09D7\u09E2\u09E3\u0A01-\u0A03\u0A3C\u0A3E-\u0A42\u0A47\u0A48\u0A4B-\u0A4D\u0A51\u0A70\u0A71\u0A75\u0A81-\u0A83\u0ABC\u0ABE-\u0AC5\u0AC7-\u0AC9\u0ACB-\u0ACD\u0AE2\u0AE3\u0B01-\u0B03\u0B3C\u0B3E-\u0B44\u0B47\u0B48\u0B4B-\u0B4D\u0B56\u0B57\u0B62\u0B63\u0B82\u0BBE-\u0BC2\u0BC6-\u0BC8\u0BCA-\u0BCD\u0BD7\u0C00-\u0C03\u0C3E-\u0C44\u0C46-\u0C48\u0C4A-\u0C4D\u0C55\u0C56\u0C62\u0C63\u0C81-\u0C83\u0CBC\u0CBE-\u0CC4\u0CC6-\u0CC8\u0CCA-\u0CCD\u0CD5\u0CD6\u0CE2\u0CE3\u0D01-\u0D03\u0D3E-\u0D44\u0D46-\u0D48\u0D4A-\u0D4D\u0D57\u0D62\u0D63\u0D82\u0D83\u0DCA\u0DCF-\u0DD4\u0DD6\u0DD8-\u0DDF\u0DF2\u0DF3\u0E31\u0E34-\u0E3A\u0E47-\u0E4E\u0EB1\u0EB4-\u0EB9\u0EBB\u0EBC\u0EC8-\u0ECD\u0F18\u0F19\u0F35\u0F37\u0F39\u0F3E\u0F3F\u0F71-\u0F84\u0F86\u0F87\u0F8D-\u0F97\u0F99-\u0FBC\u0FC6\u102B-\u103E\u1056-\u1059\u105E-\u1060\u1062-\u1064\u1067-\u106D\u1071-\u1074\u1082-\u108D\u108F\u109A-\u109D\u135D-\u135F\u1712-\u1714\u1732-\u1734\u1752\u1753\u1772\u1773\u17B4-\u17D3\u17DD\u180B-\u180D\u18A9\u1920-\u192B\u1930-\u193B\u19B0-\u19C0\u19C8\u19C9\u1A17-\u1A1B\u1A55-\u1A5E\u1A60-\u1A7C\u1A7F\u1AB0-\u1ABE\u1B00-\u1B04\u1B34-\u1B44\u1B6B-\u1B73\u1B80-\u1B82\u1BA1-\u1BAD\u1BE6-\u1BF3\u1C24-\u1C37\u1CD0-\u1CD2\u1CD4-\u1CE8\u1CED\u1CF2-\u1CF4\u1CF8\u1CF9\u1DC0-\u1DF5\u1DFC-\u1DFF\u20D0-\u20F0\u2CEF-\u2CF1\u2D7F\u2DE0-\u2DFF\u302A-\u302F\u3099\u309A\uA66F-\uA672\uA674-\uA67D\uA69F\uA6F0\uA6F1\uA802\uA806\uA80B\uA823-\uA827\uA880\uA881\uA8B4-\uA8C4\uA8E0-\uA8F1\uA926-\uA92D\uA947-\uA953\uA980-\uA983\uA9B3-\uA9C0\uA9E5\uAA29-\uAA36\uAA43\uAA4C\uAA4D\uAA7B-\uAA7D\uAAB0\uAAB2-\uAAB4\uAAB7\uAAB8\uAABE\uAABF\uAAC1\uAAEB-\uAAEF\uAAF5\uAAF6\uABE3-\uABEA\uABEC\uABED\uFB1E\uFE00-\uFE0F\uFE20-\uFE2D]|\uD800[\uDDFD\uDEE0\uDF76-\uDF7A]|\uD802[\uDE01-\uDE03\uDE05\uDE06\uDE0C-\uDE0F\uDE38-\uDE3A\uDE3F\uDEE5\uDEE6]|\uD804[\uDC00-\uDC02\uDC38-\uDC46\uDC7F-\uDC82\uDCB0-\uDCBA\uDD00-\uDD02\uDD27-\uDD34\uDD73\uDD80-\uDD82\uDDB3-\uDDC0\uDE2C-\uDE37\uDEDF-\uDEEA\uDF01-\uDF03\uDF3C\uDF3E-\uDF44\uDF47\uDF48\uDF4B-\uDF4D\uDF57\uDF62\uDF63\uDF66-\uDF6C\uDF70-\uDF74]|\uD805[\uDCB0-\uDCC3\uDDAF-\uDDB5\uDDB8-\uDDC0\uDE30-\uDE40\uDEAB-\uDEB7]|\uD81A[\uDEF0-\uDEF4\uDF30-\uDF36]|\uD81B[\uDF51-\uDF7E\uDF8F-\uDF92]|\uD82F[\uDC9D\uDC9E]|\uD834[\uDD65-\uDD69\uDD6D-\uDD72\uDD7B-\uDD82\uDD85-\uDD8B\uDDAA-\uDDAD\uDE42-\uDE44]|\uD83A[\uDCD0-\uDCD6]|\uDB40[\uDD00-\uDDEF]/;
function validateLabel(label, processing_option) {
if (label.substr(0, 4) === "xn--") {
label = punycode.toUnicode(label);
processing_option = PROCESSING_OPTIONS.NONTRANSITIONAL;
}
var error = false;
if (normalize(label) !== label ||
(label[3] === "-" && label[4] === "-") ||
label[0] === "-" || label[label.length - 1] === "-" ||
label.indexOf(".") !== -1 ||
label.search(combiningMarksRegex) === 0) {
error = true;
}
var len = countSymbols(label);
for (var i = 0; i < len; ++i) {
var status = findStatus(label.codePointAt(i));
if ((processing === PROCESSING_OPTIONS.TRANSITIONAL && status[1] !== "valid") ||
(processing === PROCESSING_OPTIONS.NONTRANSITIONAL &&
status[1] !== "valid" && status[1] !== "deviation")) {
error = true;
break;
}
}
return {
label: label,
error: error
};
}
function processing(domain_name, useSTD3, processing_option) {
var result = mapChars(domain_name, useSTD3, processing_option);
result.string = normalize(result.string);
var labels = result.string.split(".");
for (var i = 0; i < labels.length; ++i) {
try {
var validation = validateLabel(labels[i]);
labels[i] = validation.label;
result.error = result.error || validation.error;
} catch(e) {
result.error = true;
}
}
return {
string: labels.join("."),
error: result.error
};
}
module.exports.toASCII = function(domain_name, useSTD3, processing_option, verifyDnsLength) {
var result = processing(domain_name, useSTD3, processing_option);
var labels = result.string.split(".");
labels = labels.map(function(l) {
try {
return punycode.toASCII(l);
} catch(e) {
result.error = true;
return l;
}
});
if (verifyDnsLength) {
var total = labels.slice(0, labels.length - 1).join(".").length;
if (total.length > 253 || total.length === 0) {
result.error = true;
}
for (var i=0; i < labels.length; ++i) {
if (labels.length > 63 || labels.length === 0) {
result.error = true;
break;
}
}
}
if (result.error) return null;
return labels.join(".");
};
module.exports.toUnicode = function(domain_name, useSTD3) {
var result = processing(domain_name, useSTD3, PROCESSING_OPTIONS.NONTRANSITIONAL);
return {
domain: result.string,
error: result.error
};
};
module.exports.PROCESSING_OPTIONS = PROCESSING_OPTIONS;
/***/ }),
/***/ 6160:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.Reflect = void 0;
/** Always return null but pretends it returns an object of type T */
function Reflect() {
// eslint-disable-next-line @typescript-eslint/no-explicit-any
return null;
}
exports.Reflect = Reflect;
//# sourceMappingURL=Reflect.js.map
/***/ }),
/***/ 2419:
/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) {
"use strict";
var __extends = (this && this.__extends) || (function () {
var extendStatics = function (d, b) {
extendStatics = Object.setPrototypeOf ||
({ __proto__: [] } instanceof Array && function (d, b) { d.__proto__ = b; }) ||
function (d, b) { for (var p in b) if (Object.prototype.hasOwnProperty.call(b, p)) d[p] = b[p]; };
return extendStatics(d, b);
};
return function (d, b) {
if (typeof b !== "function" && b !== null)
throw new TypeError("Class extends value " + String(b) + " is not a constructor or null");
extendStatics(d, b);
function __() { this.constructor = d; }
d.prototype = b === null ? Object.create(b) : (__.prototype = b.prototype, new __());
};
})();
var __read = (this && this.__read) || function (o, n) {
var m = typeof Symbol === "function" && o[Symbol.iterator];
if (!m) return o;
var i = m.call(o), r, ar = [], e;
try {
while ((n === void 0 || n-- > 0) && !(r = i.next()).done) ar.push(r.value);
}
catch (error) { e = { error: error }; }
finally {
try {
if (r && !r.done && (m = i["return"])) m.call(i);
}
finally { if (e) throw e.error; }
}
return ar;
};
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.assert = exports.AssertionError = void 0;
/* eslint-disable @typescript-eslint/no-unused-vars */
var overwriteReadonlyProp_1 = __nccwpck_require__(43);
var assertIsRefWrapper_1 = __nccwpck_require__(2918);
/** @see <https://docs.tsafe.dev/assert#error-thrown> */
var AssertionError = /** @class */ (function (_super) {
__extends(AssertionError, _super);
function AssertionError(msg) {
var _newTarget = this.constructor;
var _this = _super.call(this, "Wrong assertion encountered" + (!msg ? "" : ": \"".concat(msg, "\""))) || this;
Object.setPrototypeOf(_this, _newTarget.prototype);
if (!_this.stack) {
return _this;
}
try {
(0, overwriteReadonlyProp_1.overwriteReadonlyProp)(_this, "stack", _this.stack
.split("\n")
.filter(function () {
var _a = [];
for (var _i = 0; _i < arguments.length; _i++) {
_a[_i] = arguments[_i];
}
var _b = __read(_a, 2), i = _b[1];
return i !== 1 && i !== 2;
})
.join("\n"));
// eslint-disable-next-line no-empty
}
catch (_a) { }
return _this;
}
return AssertionError;
}(Error));
exports.AssertionError = AssertionError;
/** https://docs.tsafe.dev/assert */
// eslint-disable-next-line @typescript-eslint/no-explicit-any
function assert(condition, msg) {
if (arguments.length === 0) {
condition = true;
}
if (assertIsRefWrapper_1.assertIsRefWrapper.ref !== undefined) {
assertIsRefWrapper_1.assertIsRefWrapper.ref = undefined;
return;
}
if (!condition) {
throw new AssertionError(msg);
}
}
exports.assert = assert;
//# sourceMappingURL=assert.js.map
/***/ }),
/***/ 2655:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.capitalize = void 0;
/** @see <https://docs.tsafe.dev/capitalize> */
function capitalize(str) {
// eslint-disable-next-line @typescript-eslint/no-explicit-any
return (str.charAt(0).toUpperCase() + str.slice(1));
}
exports.capitalize = capitalize;
//# sourceMappingURL=capitalize.js.map
/***/ }),
/***/ 5567:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
/* eslint-disable @typescript-eslint/no-explicit-any */
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.exclude = void 0;
/** Return a function to use as Array.prototype.filter argument
* to exclude one or many primitive value element from the array.
* Ex: ([ "a", "b", "c" ] as const).filter(exclude("a")) return ("b" | "c")[]
* Ex: ([ "a", "b", "c", "d"] as const).filter(exclude(["a", "b"]) gives ("c" | "d")[]
*/
function exclude(target) {
var test = target instanceof Object
? function (element) { return target.indexOf(element) < 0; }
: function (element) { return element !== target; };
return function (elemnt) {
return test(elemnt);
};
}
exports.exclude = exclude;
//# sourceMappingURL=exclude.js.map
/***/ }),
/***/ 8534:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
/* eslint-disable @typescript-eslint/no-explicit-any */
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.flip = void 0;
/**
* Flip the value of a boolean without having to reference it twice
* after running flip(x.y, "z") x.y.z !== x.y.z,
* https://docs.tsafe.dev/flip
*/
function flip(object, prop) {
if (object[prop] === undefined) {
return;
}
return (object[prop] = !object[prop]);
}
exports.flip = flip;
//# sourceMappingURL=flip.js.map
/***/ }),
/***/ 2632:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.id = void 0;
/** https://docs.tsafe.dev/id */
var id = function (x) { return x; };
exports.id = id;
//# sourceMappingURL=id.js.map
/***/ }),
/***/ 4653:
/***/ (function(__unused_webpack_module, exports, __nccwpck_require__) {
"use strict";
var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) {
if (k2 === undefined) k2 = k;
var desc = Object.getOwnPropertyDescriptor(m, k);
if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) {
desc = { enumerable: true, get: function() { return m[k]; } };
}
Object.defineProperty(o, k2, desc);
}) : (function(o, m, k, k2) {
if (k2 === undefined) k2 = k;
o[k2] = m[k];
}));
var __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 }));
__exportStar(__nccwpck_require__(2419), exports);
__exportStar(__nccwpck_require__(5567), exports);
__exportStar(__nccwpck_require__(8534), exports);
__exportStar(__nccwpck_require__(2632), exports);
__exportStar(__nccwpck_require__(5639), exports);
__exportStar(__nccwpck_require__(6958), exports);
__exportStar(__nccwpck_require__(9980), exports);
__exportStar(__nccwpck_require__(3069), exports);
__exportStar(__nccwpck_require__(7937), exports);
__exportStar(__nccwpck_require__(5656), exports);
__exportStar(__nccwpck_require__(6640), exports);
__exportStar(__nccwpck_require__(1184), exports);
__exportStar(__nccwpck_require__(6160), exports);
__exportStar(__nccwpck_require__(2655), exports);
__exportStar(__nccwpck_require__(1392), exports);
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 3069:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
/* eslint-disable @typescript-eslint/no-namespace */
/* eslint-disable @typescript-eslint/no-explicit-any */
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.is = void 0;
var assertIsRefWrapper_1 = __nccwpck_require__(2918);
var errorMessage = [
"Wrong usage of the ".concat(is.name, " function refer to"),
"https://docs.tsafe.dev/".concat(is.name.toLowerCase()),
].join(" ");
function is(_value) {
var ref = {};
if (assertIsRefWrapper_1.assertIsRefWrapper.ref !== undefined) {
assertIsRefWrapper_1.assertIsRefWrapper.ref = undefined;
throw new Error(errorMessage);
}
assertIsRefWrapper_1.assertIsRefWrapper.ref = ref;
Promise.resolve().then(function () {
if (assertIsRefWrapper_1.assertIsRefWrapper.ref === ref) {
throw new Error(errorMessage);
}
});
return null;
}
exports.is = is;
//# sourceMappingURL=is.js.map
/***/ }),
/***/ 7937:
/***/ (function(__unused_webpack_module, exports) {
"use strict";
var __values = (this && this.__values) || function(o) {
var s = typeof Symbol === "function" && Symbol.iterator, m = s && o[s], i = 0;
if (m) return m.call(o);
if (o && typeof o.length === "number") return {
next: function () {
if (o && i >= o.length) o = void 0;
return { value: o && o[i++], done: !o };
}
};
throw new TypeError(s ? "Object is not iterable." : "Symbol.iterator is not defined.");
};
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.isAmong = void 0;
/** https://docs.tsafe.dev/isamong */
function isAmong(names, value) {
var e_1, _a;
try {
for (var names_1 = __values(names), names_1_1 = names_1.next(); !names_1_1.done; names_1_1 = names_1.next()) {
var name_1 = names_1_1.value;
if (name_1 === value) {
return true;
}
}
}
catch (e_1_1) { e_1 = { error: e_1_1 }; }
finally {
try {
if (names_1_1 && !names_1_1.done && (_a = names_1.return)) _a.call(names_1);
}
finally { if (e_1) throw e_1.error; }
}
return false;
}
exports.isAmong = isAmong;
//# sourceMappingURL=isAmong.js.map
/***/ }),
/***/ 5639:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.isPromiseLike = void 0;
// eslint-disable-next-line @typescript-eslint/no-explicit-any
function isPromiseLike(o) {
return typeof o === "object" && o !== null && "then" in o && typeof o.then === "function";
}
exports.isPromiseLike = isPromiseLike;
//# sourceMappingURL=isPromiseLike.js.map
/***/ }),
/***/ 43:
/***/ (function(__unused_webpack_module, exports) {
"use strict";
/* eslint-disable no-empty */
/* eslint-disable @typescript-eslint/no-explicit-any */
var __assign = (this && this.__assign) || function () {
__assign = Object.assign || function(t) {
for (var s, i = 1, n = arguments.length; i < n; i++) {
s = arguments[i];
for (var p in s) if (Object.prototype.hasOwnProperty.call(s, p))
t[p] = s[p];
}
return t;
};
return __assign.apply(this, arguments);
};
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.overwriteReadonlyProp = void 0;
/**
* Assign a value to a property even if the object is freezed or if the property is not writable
* Throw if the assignation fail ( for example if the property is non configurable write: false )
* */
var overwriteReadonlyProp = function (obj, propertyName, value) {
try {
obj[propertyName] = value;
}
catch (_a) { }
if (obj[propertyName] === value) {
return value;
}
var errorDefineProperty = undefined;
var propertyDescriptor = Object.getOwnPropertyDescriptor(obj, propertyName) || {
"enumerable": true,
"configurable": true,
};
if (!!propertyDescriptor.get) {
throw new Error("Probably a wrong ides to overwrite ".concat(String(propertyName), " getter"));
}
try {
Object.defineProperty(obj, propertyName, __assign(__assign({}, propertyDescriptor), { value: value }));
}
catch (error) {
errorDefineProperty = error;
}
if (obj[propertyName] !== value) {
throw errorDefineProperty || new Error("Can't assign");
}
return value;
};
exports.overwriteReadonlyProp = overwriteReadonlyProp;
//# sourceMappingURL=overwriteReadonlyProp.js.map
/***/ }),
/***/ 1184:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
/* eslint-disable @typescript-eslint/no-explicit-any */
/* eslint-disable @typescript-eslint/ban-types */
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.noUndefined = void 0;
/**
* Removes the enumerable properties whose values are
* undefined.
*
* Example:
* noUndefined({ "foo": undefined, "bar": 3 }) returns
* a new object { "bar": 3 }
*/
function noUndefined(obj) {
var out = {};
for (var key in obj) {
if (obj[key] === undefined) {
continue;
}
out[key] = obj[key];
}
return out;
}
exports.noUndefined = noUndefined;
//# sourceMappingURL=noUndefined.js.map
/***/ }),
/***/ 5656:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
/* eslint-disable @typescript-eslint/no-explicit-any */
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.objectEntries = void 0;
/** https://docs.tsafe.dev/objectentries */
function objectEntries(o) {
return Object.entries(o);
}
exports.objectEntries = objectEntries;
//# sourceMappingURL=objectEntries.js.map
/***/ }),
/***/ 6640:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
/* eslint-disable @typescript-eslint/no-explicit-any */
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.objectFromEntries = void 0;
/** https://docs.tsafe.dev/objectFromEntries */
function objectFromEntries(entries) {
return Object.fromEntries(entries);
}
exports.objectFromEntries = objectFromEntries;
//# sourceMappingURL=objectFromEntries.js.map
/***/ }),
/***/ 6958:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
/* eslint-disable @typescript-eslint/no-explicit-any */
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.objectKeys = void 0;
/** https://docs.tsafe.dev/objectKeys */
function objectKeys(o) {
return Object.keys(o);
}
exports.objectKeys = objectKeys;
//# sourceMappingURL=objectKeys.js.map
/***/ }),
/***/ 9980:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
/* eslint-disable @typescript-eslint/no-namespace */
/* eslint-disable @typescript-eslint/no-explicit-any */
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.typeGuard = void 0;
/** https://docs.tsafe.dev/typeguard */
function typeGuard(_value, isMatched) {
return isMatched;
}
exports.typeGuard = typeGuard;
//# sourceMappingURL=typeGuard.js.map
/***/ }),
/***/ 1392:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.uncapitalize = void 0;
/** @see <https://docs.tsafe.dev/capitalize#uncapitalize> */
function uncapitalize(str) {
// eslint-disable-next-line @typescript-eslint/no-explicit-any
return (str.charAt(0).toLowerCase() + str.slice(1));
}
exports.uncapitalize = uncapitalize;
//# sourceMappingURL=uncapitalize.js.map
/***/ }),
/***/ 2918:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
exports.assertIsRefWrapper = void 0;
var id_1 = __nccwpck_require__(2632);
exports.assertIsRefWrapper = {
"ref": (0, id_1.id)(undefined),
};
//# sourceMappingURL=assertIsRefWrapper.js.map
/***/ }),
/***/ 3843:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({ value: true }));
function getUserAgent() {
if (typeof navigator === "object" && "userAgent" in navigator) {
return navigator.userAgent;
}
if (typeof process === "object" && "version" in process) {
return `Node.js/${process.version.substr(1)} (${process.platform}; ${process.arch})`;
}
return "<environment undetectable>";
}
exports.getUserAgent = getUserAgent;
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 4106:
/***/ (function(module) {
(function (name, context, definition) {
if ( true && module.exports) module.exports = definition();
else if (typeof define === 'function' && define.amd) define(definition);
else context[name] = definition();
})('urljoin', this, function () {
function normalize (strArray) {
var resultArray = [];
if (strArray.length === 0) { return ''; }
if (typeof strArray[0] !== 'string') {
throw new TypeError('Url must be a string. Received ' + strArray[0]);
}
// If the first part is a plain protocol, we combine it with the next part.
if (strArray[0].match(/^[^/:]+:\/*$/) && strArray.length > 1) {
var first = strArray.shift();
strArray[0] = first + strArray[0];
}
// There must be two or three slashes in the file protocol, two slashes in anything else.
if (strArray[0].match(/^file:\/\/\//)) {
strArray[0] = strArray[0].replace(/^([^/:]+):\/*/, '$1:///');
} else {
strArray[0] = strArray[0].replace(/^([^/:]+):\/*/, '$1://');
}
for (var i = 0; i < strArray.length; i++) {
var component = strArray[i];
if (typeof component !== 'string') {
throw new TypeError('Url must be a string. Received ' + component);
}
if (component === '') { continue; }
if (i > 0) {
// Removing the starting slashes for each component but the first.
component = component.replace(/^[\/]+/, '');
}
if (i < strArray.length - 1) {
// Removing the ending slashes for each component but the last.
component = component.replace(/[\/]+$/, '');
} else {
// For the last component we will combine multiple slashes to a single one.
component = component.replace(/[\/]+$/, '/');
}
resultArray.push(component);
}
var str = resultArray.join('/');
// Each input component is now separated by a single slash except the possible first plain protocol part.
// remove trailing slash before parameters or hash
str = str.replace(/\/(\?|&|#[^!])/g, '$1');
// replace ? in parameters with &
var parts = str.split('?');
str = parts.shift() + (parts.length > 0 ? '?': '') + parts.join('&');
return str;
}
return function () {
var input;
if (typeof arguments[0] === 'object') {
input = arguments[0];
} else {
input = [].slice.call(arguments);
}
return normalize(input);
};
});
/***/ }),
/***/ 3585:
/***/ (function(__unused_webpack_module, exports) {
/**
* @license
* web-streams-polyfill v3.3.3
* Copyright 2024 Mattias Buelens, Diwank Singh Tomer and other contributors.
* This code is released under the MIT license.
* SPDX-License-Identifier: MIT
*/
(function (global, factory) {
true ? factory(exports) :
0;
})(this, (function (exports) { 'use strict';
function noop() {
return undefined;
}
function typeIsObject(x) {
return (typeof x === 'object' && x !== null) || typeof x === 'function';
}
const rethrowAssertionErrorRejection = noop;
function setFunctionName(fn, name) {
try {
Object.defineProperty(fn, 'name', {
value: name,
configurable: true
});
}
catch (_a) {
// This property is non-configurable in older browsers, so ignore if this throws.
// https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/Function/name#browser_compatibility
}
}
const originalPromise = Promise;
const originalPromiseThen = Promise.prototype.then;
const originalPromiseReject = Promise.reject.bind(originalPromise);
// https://webidl.spec.whatwg.org/#a-new-promise
function newPromise(executor) {
return new originalPromise(executor);
}
// https://webidl.spec.whatwg.org/#a-promise-resolved-with
function promiseResolvedWith(value) {
return newPromise(resolve => resolve(value));
}
// https://webidl.spec.whatwg.org/#a-promise-rejected-with
function promiseRejectedWith(reason) {
return originalPromiseReject(reason);
}
function PerformPromiseThen(promise, onFulfilled, onRejected) {
// There doesn't appear to be any way to correctly emulate the behaviour from JavaScript, so this is just an
// approximation.
return originalPromiseThen.call(promise, onFulfilled, onRejected);
}
// Bluebird logs a warning when a promise is created within a fulfillment handler, but then isn't returned
// from that handler. To prevent this, return null instead of void from all handlers.
// http://bluebirdjs.com/docs/warning-explanations.html#warning-a-promise-was-created-in-a-handler-but-was-not-returned-from-it
function uponPromise(promise, onFulfilled, onRejected) {
PerformPromiseThen(PerformPromiseThen(promise, onFulfilled, onRejected), undefined, rethrowAssertionErrorRejection);
}
function uponFulfillment(promise, onFulfilled) {
uponPromise(promise, onFulfilled);
}
function uponRejection(promise, onRejected) {
uponPromise(promise, undefined, onRejected);
}
function transformPromiseWith(promise, fulfillmentHandler, rejectionHandler) {
return PerformPromiseThen(promise, fulfillmentHandler, rejectionHandler);
}
function setPromiseIsHandledToTrue(promise) {
PerformPromiseThen(promise, undefined, rethrowAssertionErrorRejection);
}
let _queueMicrotask = callback => {
if (typeof queueMicrotask === 'function') {
_queueMicrotask = queueMicrotask;
}
else {
const resolvedPromise = promiseResolvedWith(undefined);
_queueMicrotask = cb => PerformPromiseThen(resolvedPromise, cb);
}
return _queueMicrotask(callback);
};
function reflectCall(F, V, args) {
if (typeof F !== 'function') {
throw new TypeError('Argument is not a function');
}
return Function.prototype.apply.call(F, V, args);
}
function promiseCall(F, V, args) {
try {
return promiseResolvedWith(reflectCall(F, V, args));
}
catch (value) {
return promiseRejectedWith(value);
}
}
// Original from Chromium
// https://chromium.googlesource.com/chromium/src/+/0aee4434a4dba42a42abaea9bfbc0cd196a63bc1/third_party/blink/renderer/core/streams/SimpleQueue.js
const QUEUE_MAX_ARRAY_SIZE = 16384;
/**
* Simple queue structure.
*
* Avoids scalability issues with using a packed array directly by using
* multiple arrays in a linked list and keeping the array size bounded.
*/
class SimpleQueue {
constructor() {
this._cursor = 0;
this._size = 0;
// _front and _back are always defined.
this._front = {
_elements: [],
_next: undefined
};
this._back = this._front;
// The cursor is used to avoid calling Array.shift().
// It contains the index of the front element of the array inside the
// front-most node. It is always in the range [0, QUEUE_MAX_ARRAY_SIZE).
this._cursor = 0;
// When there is only one node, size === elements.length - cursor.
this._size = 0;
}
get length() {
return this._size;
}
// For exception safety, this method is structured in order:
// 1. Read state
// 2. Calculate required state mutations
// 3. Perform state mutations
push(element) {
const oldBack = this._back;
let newBack = oldBack;
if (oldBack._elements.length === QUEUE_MAX_ARRAY_SIZE - 1) {
newBack = {
_elements: [],
_next: undefined
};
}
// push() is the mutation most likely to throw an exception, so it
// goes first.
oldBack._elements.push(element);
if (newBack !== oldBack) {
this._back = newBack;
oldBack._next = newBack;
}
++this._size;
}
// Like push(), shift() follows the read -> calculate -> mutate pattern for
// exception safety.
shift() { // must not be called on an empty queue
const oldFront = this._front;
let newFront = oldFront;
const oldCursor = this._cursor;
let newCursor = oldCursor + 1;
const elements = oldFront._elements;
const element = elements[oldCursor];
if (newCursor === QUEUE_MAX_ARRAY_SIZE) {
newFront = oldFront._next;
newCursor = 0;
}
// No mutations before this point.
--this._size;
this._cursor = newCursor;
if (oldFront !== newFront) {
this._front = newFront;
}
// Permit shifted element to be garbage collected.
elements[oldCursor] = undefined;
return element;
}
// The tricky thing about forEach() is that it can be called
// re-entrantly. The queue may be mutated inside the callback. It is easy to
// see that push() within the callback has no negative effects since the end
// of the queue is checked for on every iteration. If shift() is called
// repeatedly within the callback then the next iteration may return an
// element that has been removed. In this case the callback will be called
// with undefined values until we either "catch up" with elements that still
// exist or reach the back of the queue.
forEach(callback) {
let i = this._cursor;
let node = this._front;
let elements = node._elements;
while (i !== elements.length || node._next !== undefined) {
if (i === elements.length) {
node = node._next;
elements = node._elements;
i = 0;
if (elements.length === 0) {
break;
}
}
callback(elements[i]);
++i;
}
}
// Return the element that would be returned if shift() was called now,
// without modifying the queue.
peek() { // must not be called on an empty queue
const front = this._front;
const cursor = this._cursor;
return front._elements[cursor];
}
}
const AbortSteps = Symbol('[[AbortSteps]]');
const ErrorSteps = Symbol('[[ErrorSteps]]');
const CancelSteps = Symbol('[[CancelSteps]]');
const PullSteps = Symbol('[[PullSteps]]');
const ReleaseSteps = Symbol('[[ReleaseSteps]]');
function ReadableStreamReaderGenericInitialize(reader, stream) {
reader._ownerReadableStream = stream;
stream._reader = reader;
if (stream._state === 'readable') {
defaultReaderClosedPromiseInitialize(reader);
}
else if (stream._state === 'closed') {
defaultReaderClosedPromiseInitializeAsResolved(reader);
}
else {
defaultReaderClosedPromiseInitializeAsRejected(reader, stream._storedError);
}
}
// A client of ReadableStreamDefaultReader and ReadableStreamBYOBReader may use these functions directly to bypass state
// check.
function ReadableStreamReaderGenericCancel(reader, reason) {
const stream = reader._ownerReadableStream;
return ReadableStreamCancel(stream, reason);
}
function ReadableStreamReaderGenericRelease(reader) {
const stream = reader._ownerReadableStream;
if (stream._state === 'readable') {
defaultReaderClosedPromiseReject(reader, new TypeError(`Reader was released and can no longer be used to monitor the stream's closedness`));
}
else {
defaultReaderClosedPromiseResetToRejected(reader, new TypeError(`Reader was released and can no longer be used to monitor the stream's closedness`));
}
stream._readableStreamController[ReleaseSteps]();
stream._reader = undefined;
reader._ownerReadableStream = undefined;
}
// Helper functions for the readers.
function readerLockException(name) {
return new TypeError('Cannot ' + name + ' a stream using a released reader');
}
// Helper functions for the ReadableStreamDefaultReader.
function defaultReaderClosedPromiseInitialize(reader) {
reader._closedPromise = newPromise((resolve, reject) => {
reader._closedPromise_resolve = resolve;
reader._closedPromise_reject = reject;
});
}
function defaultReaderClosedPromiseInitializeAsRejected(reader, reason) {
defaultReaderClosedPromiseInitialize(reader);
defaultReaderClosedPromiseReject(reader, reason);
}
function defaultReaderClosedPromiseInitializeAsResolved(reader) {
defaultReaderClosedPromiseInitialize(reader);
defaultReaderClosedPromiseResolve(reader);
}
function defaultReaderClosedPromiseReject(reader, reason) {
if (reader._closedPromise_reject === undefined) {
return;
}
setPromiseIsHandledToTrue(reader._closedPromise);
reader._closedPromise_reject(reason);
reader._closedPromise_resolve = undefined;
reader._closedPromise_reject = undefined;
}
function defaultReaderClosedPromiseResetToRejected(reader, reason) {
defaultReaderClosedPromiseInitializeAsRejected(reader, reason);
}
function defaultReaderClosedPromiseResolve(reader) {
if (reader._closedPromise_resolve === undefined) {
return;
}
reader._closedPromise_resolve(undefined);
reader._closedPromise_resolve = undefined;
reader._closedPromise_reject = undefined;
}
/// <reference lib="es2015.core" />
// https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/Number/isFinite#Polyfill
const NumberIsFinite = Number.isFinite || function (x) {
return typeof x === 'number' && isFinite(x);
};
/// <reference lib="es2015.core" />
// https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/Math/trunc#Polyfill
const MathTrunc = Math.trunc || function (v) {
return v < 0 ? Math.ceil(v) : Math.floor(v);
};
// https://heycam.github.io/webidl/#idl-dictionaries
function isDictionary(x) {
return typeof x === 'object' || typeof x === 'function';
}
function assertDictionary(obj, context) {
if (obj !== undefined && !isDictionary(obj)) {
throw new TypeError(`${context} is not an object.`);
}
}
// https://heycam.github.io/webidl/#idl-callback-functions
function assertFunction(x, context) {
if (typeof x !== 'function') {
throw new TypeError(`${context} is not a function.`);
}
}
// https://heycam.github.io/webidl/#idl-object
function isObject(x) {
return (typeof x === 'object' && x !== null) || typeof x === 'function';
}
function assertObject(x, context) {
if (!isObject(x)) {
throw new TypeError(`${context} is not an object.`);
}
}
function assertRequiredArgument(x, position, context) {
if (x === undefined) {
throw new TypeError(`Parameter ${position} is required in '${context}'.`);
}
}
function assertRequiredField(x, field, context) {
if (x === undefined) {
throw new TypeError(`${field} is required in '${context}'.`);
}
}
// https://heycam.github.io/webidl/#idl-unrestricted-double
function convertUnrestrictedDouble(value) {
return Number(value);
}
function censorNegativeZero(x) {
return x === 0 ? 0 : x;
}
function integerPart(x) {
return censorNegativeZero(MathTrunc(x));
}
// https://heycam.github.io/webidl/#idl-unsigned-long-long
function convertUnsignedLongLongWithEnforceRange(value, context) {
const lowerBound = 0;
const upperBound = Number.MAX_SAFE_INTEGER;
let x = Number(value);
x = censorNegativeZero(x);
if (!NumberIsFinite(x)) {
throw new TypeError(`${context} is not a finite number`);
}
x = integerPart(x);
if (x < lowerBound || x > upperBound) {
throw new TypeError(`${context} is outside the accepted range of ${lowerBound} to ${upperBound}, inclusive`);
}
if (!NumberIsFinite(x) || x === 0) {
return 0;
}
// TODO Use BigInt if supported?
// let xBigInt = BigInt(integerPart(x));
// xBigInt = BigInt.asUintN(64, xBigInt);
// return Number(xBigInt);
return x;
}
function assertReadableStream(x, context) {
if (!IsReadableStream(x)) {
throw new TypeError(`${context} is not a ReadableStream.`);
}
}
// Abstract operations for the ReadableStream.
function AcquireReadableStreamDefaultReader(stream) {
return new ReadableStreamDefaultReader(stream);
}
// ReadableStream API exposed for controllers.
function ReadableStreamAddReadRequest(stream, readRequest) {
stream._reader._readRequests.push(readRequest);
}
function ReadableStreamFulfillReadRequest(stream, chunk, done) {
const reader = stream._reader;
const readRequest = reader._readRequests.shift();
if (done) {
readRequest._closeSteps();
}
else {
readRequest._chunkSteps(chunk);
}
}
function ReadableStreamGetNumReadRequests(stream) {
return stream._reader._readRequests.length;
}
function ReadableStreamHasDefaultReader(stream) {
const reader = stream._reader;
if (reader === undefined) {
return false;
}
if (!IsReadableStreamDefaultReader(reader)) {
return false;
}
return true;
}
/**
* A default reader vended by a {@link ReadableStream}.
*
* @public
*/
class ReadableStreamDefaultReader {
constructor(stream) {
assertRequiredArgument(stream, 1, 'ReadableStreamDefaultReader');
assertReadableStream(stream, 'First parameter');
if (IsReadableStreamLocked(stream)) {
throw new TypeError('This stream has already been locked for exclusive reading by another reader');
}
ReadableStreamReaderGenericInitialize(this, stream);
this._readRequests = new SimpleQueue();
}
/**
* Returns a promise that will be fulfilled when the stream becomes closed,
* or rejected if the stream ever errors or the reader's lock is released before the stream finishes closing.
*/
get closed() {
if (!IsReadableStreamDefaultReader(this)) {
return promiseRejectedWith(defaultReaderBrandCheckException('closed'));
}
return this._closedPromise;
}
/**
* If the reader is active, behaves the same as {@link ReadableStream.cancel | stream.cancel(reason)}.
*/
cancel(reason = undefined) {
if (!IsReadableStreamDefaultReader(this)) {
return promiseRejectedWith(defaultReaderBrandCheckException('cancel'));
}
if (this._ownerReadableStream === undefined) {
return promiseRejectedWith(readerLockException('cancel'));
}
return ReadableStreamReaderGenericCancel(this, reason);
}
/**
* Returns a promise that allows access to the next chunk from the stream's internal queue, if available.
*
* If reading a chunk causes the queue to become empty, more data will be pulled from the underlying source.
*/
read() {
if (!IsReadableStreamDefaultReader(this)) {
return promiseRejectedWith(defaultReaderBrandCheckException('read'));
}
if (this._ownerReadableStream === undefined) {
return promiseRejectedWith(readerLockException('read from'));
}
let resolvePromise;
let rejectPromise;
const promise = newPromise((resolve, reject) => {
resolvePromise = resolve;
rejectPromise = reject;
});
const readRequest = {
_chunkSteps: chunk => resolvePromise({ value: chunk, done: false }),
_closeSteps: () => resolvePromise({ value: undefined, done: true }),
_errorSteps: e => rejectPromise(e)
};
ReadableStreamDefaultReaderRead(this, readRequest);
return promise;
}
/**
* Releases the reader's lock on the corresponding stream. After the lock is released, the reader is no longer active.
* If the associated stream is errored when the lock is released, the reader will appear errored in the same way
* from now on; otherwise, the reader will appear closed.
*
* A reader's lock cannot be released while it still has a pending read request, i.e., if a promise returned by
* the reader's {@link ReadableStreamDefaultReader.read | read()} method has not yet been settled. Attempting to
* do so will throw a `TypeError` and leave the reader locked to the stream.
*/
releaseLock() {
if (!IsReadableStreamDefaultReader(this)) {
throw defaultReaderBrandCheckException('releaseLock');
}
if (this._ownerReadableStream === undefined) {
return;
}
ReadableStreamDefaultReaderRelease(this);
}
}
Object.defineProperties(ReadableStreamDefaultReader.prototype, {
cancel: { enumerable: true },
read: { enumerable: true },
releaseLock: { enumerable: true },
closed: { enumerable: true }
});
setFunctionName(ReadableStreamDefaultReader.prototype.cancel, 'cancel');
setFunctionName(ReadableStreamDefaultReader.prototype.read, 'read');
setFunctionName(ReadableStreamDefaultReader.prototype.releaseLock, 'releaseLock');
if (typeof Symbol.toStringTag === 'symbol') {
Object.defineProperty(ReadableStreamDefaultReader.prototype, Symbol.toStringTag, {
value: 'ReadableStreamDefaultReader',
configurable: true
});
}
// Abstract operations for the readers.
function IsReadableStreamDefaultReader(x) {
if (!typeIsObject(x)) {
return false;
}
if (!Object.prototype.hasOwnProperty.call(x, '_readRequests')) {
return false;
}
return x instanceof ReadableStreamDefaultReader;
}
function ReadableStreamDefaultReaderRead(reader, readRequest) {
const stream = reader._ownerReadableStream;
stream._disturbed = true;
if (stream._state === 'closed') {
readRequest._closeSteps();
}
else if (stream._state === 'errored') {
readRequest._errorSteps(stream._storedError);
}
else {
stream._readableStreamController[PullSteps](readRequest);
}
}
function ReadableStreamDefaultReaderRelease(reader) {
ReadableStreamReaderGenericRelease(reader);
const e = new TypeError('Reader was released');
ReadableStreamDefaultReaderErrorReadRequests(reader, e);
}
function ReadableStreamDefaultReaderErrorReadRequests(reader, e) {
const readRequests = reader._readRequests;
reader._readRequests = new SimpleQueue();
readRequests.forEach(readRequest => {
readRequest._errorSteps(e);
});
}
// Helper functions for the ReadableStreamDefaultReader.
function defaultReaderBrandCheckException(name) {
return new TypeError(`ReadableStreamDefaultReader.prototype.${name} can only be used on a ReadableStreamDefaultReader`);
}
/// <reference lib="es2018.asynciterable" />
/* eslint-disable @typescript-eslint/no-empty-function */
const AsyncIteratorPrototype = Object.getPrototypeOf(Object.getPrototypeOf(async function* () { }).prototype);
/// <reference lib="es2018.asynciterable" />
class ReadableStreamAsyncIteratorImpl {
constructor(reader, preventCancel) {
this._ongoingPromise = undefined;
this._isFinished = false;
this._reader = reader;
this._preventCancel = preventCancel;
}
next() {
const nextSteps = () => this._nextSteps();
this._ongoingPromise = this._ongoingPromise ?
transformPromiseWith(this._ongoingPromise, nextSteps, nextSteps) :
nextSteps();
return this._ongoingPromise;
}
return(value) {
const returnSteps = () => this._returnSteps(value);
return this._ongoingPromise ?
transformPromiseWith(this._ongoingPromise, returnSteps, returnSteps) :
returnSteps();
}
_nextSteps() {
if (this._isFinished) {
return Promise.resolve({ value: undefined, done: true });
}
const reader = this._reader;
let resolvePromise;
let rejectPromise;
const promise = newPromise((resolve, reject) => {
resolvePromise = resolve;
rejectPromise = reject;
});
const readRequest = {
_chunkSteps: chunk => {
this._ongoingPromise = undefined;
// This needs to be delayed by one microtask, otherwise we stop pulling too early which breaks a test.
// FIXME Is this a bug in the specification, or in the test?
_queueMicrotask(() => resolvePromise({ value: chunk, done: false }));
},
_closeSteps: () => {
this._ongoingPromise = undefined;
this._isFinished = true;
ReadableStreamReaderGenericRelease(reader);
resolvePromise({ value: undefined, done: true });
},
_errorSteps: reason => {
this._ongoingPromise = undefined;
this._isFinished = true;
ReadableStreamReaderGenericRelease(reader);
rejectPromise(reason);
}
};
ReadableStreamDefaultReaderRead(reader, readRequest);
return promise;
}
_returnSteps(value) {
if (this._isFinished) {
return Promise.resolve({ value, done: true });
}
this._isFinished = true;
const reader = this._reader;
if (!this._preventCancel) {
const result = ReadableStreamReaderGenericCancel(reader, value);
ReadableStreamReaderGenericRelease(reader);
return transformPromiseWith(result, () => ({ value, done: true }));
}
ReadableStreamReaderGenericRelease(reader);
return promiseResolvedWith({ value, done: true });
}
}
const ReadableStreamAsyncIteratorPrototype = {
next() {
if (!IsReadableStreamAsyncIterator(this)) {
return promiseRejectedWith(streamAsyncIteratorBrandCheckException('next'));
}
return this._asyncIteratorImpl.next();
},
return(value) {
if (!IsReadableStreamAsyncIterator(this)) {
return promiseRejectedWith(streamAsyncIteratorBrandCheckException('return'));
}
return this._asyncIteratorImpl.return(value);
}
};
Object.setPrototypeOf(ReadableStreamAsyncIteratorPrototype, AsyncIteratorPrototype);
// Abstract operations for the ReadableStream.
function AcquireReadableStreamAsyncIterator(stream, preventCancel) {
const reader = AcquireReadableStreamDefaultReader(stream);
const impl = new ReadableStreamAsyncIteratorImpl(reader, preventCancel);
const iterator = Object.create(ReadableStreamAsyncIteratorPrototype);
iterator._asyncIteratorImpl = impl;
return iterator;
}
function IsReadableStreamAsyncIterator(x) {
if (!typeIsObject(x)) {
return false;
}
if (!Object.prototype.hasOwnProperty.call(x, '_asyncIteratorImpl')) {
return false;
}
try {
// noinspection SuspiciousTypeOfGuard
return x._asyncIteratorImpl instanceof
ReadableStreamAsyncIteratorImpl;
}
catch (_a) {
return false;
}
}
// Helper functions for the ReadableStream.
function streamAsyncIteratorBrandCheckException(name) {
return new TypeError(`ReadableStreamAsyncIterator.${name} can only be used on a ReadableSteamAsyncIterator`);
}
/// <reference lib="es2015.core" />
// https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/Number/isNaN#Polyfill
const NumberIsNaN = Number.isNaN || function (x) {
// eslint-disable-next-line no-self-compare
return x !== x;
};
var _a, _b, _c;
function CreateArrayFromList(elements) {
// We use arrays to represent lists, so this is basically a no-op.
// Do a slice though just in case we happen to depend on the unique-ness.
return elements.slice();
}
function CopyDataBlockBytes(dest, destOffset, src, srcOffset, n) {
new Uint8Array(dest).set(new Uint8Array(src, srcOffset, n), destOffset);
}
let TransferArrayBuffer = (O) => {
if (typeof O.transfer === 'function') {
TransferArrayBuffer = buffer => buffer.transfer();
}
else if (typeof structuredClone === 'function') {
TransferArrayBuffer = buffer => structuredClone(buffer, { transfer: [buffer] });
}
else {
// Not implemented correctly
TransferArrayBuffer = buffer => buffer;
}
return TransferArrayBuffer(O);
};
let IsDetachedBuffer = (O) => {
if (typeof O.detached === 'boolean') {
IsDetachedBuffer = buffer => buffer.detached;
}
else {
// Not implemented correctly
IsDetachedBuffer = buffer => buffer.byteLength === 0;
}
return IsDetachedBuffer(O);
};
function ArrayBufferSlice(buffer, begin, end) {
// ArrayBuffer.prototype.slice is not available on IE10
// https://www.caniuse.com/mdn-javascript_builtins_arraybuffer_slice
if (buffer.slice) {
return buffer.slice(begin, end);
}
const length = end - begin;
const slice = new ArrayBuffer(length);
CopyDataBlockBytes(slice, 0, buffer, begin, length);
return slice;
}
function GetMethod(receiver, prop) {
const func = receiver[prop];
if (func === undefined || func === null) {
return undefined;
}
if (typeof func !== 'function') {
throw new TypeError(`${String(prop)} is not a function`);
}
return func;
}
function CreateAsyncFromSyncIterator(syncIteratorRecord) {
// Instead of re-implementing CreateAsyncFromSyncIterator and %AsyncFromSyncIteratorPrototype%,
// we use yield* inside an async generator function to achieve the same result.
// Wrap the sync iterator inside a sync iterable, so we can use it with yield*.
const syncIterable = {
[Symbol.iterator]: () => syncIteratorRecord.iterator
};
// Create an async generator function and immediately invoke it.
const asyncIterator = (async function* () {
return yield* syncIterable;
}());
// Return as an async iterator record.
const nextMethod = asyncIterator.next;
return { iterator: asyncIterator, nextMethod, done: false };
}
// Aligns with core-js/modules/es.symbol.async-iterator.js
const SymbolAsyncIterator = (_c = (_a = Symbol.asyncIterator) !== null && _a !== void 0 ? _a : (_b = Symbol.for) === null || _b === void 0 ? void 0 : _b.call(Symbol, 'Symbol.asyncIterator')) !== null && _c !== void 0 ? _c : '@@asyncIterator';
function GetIterator(obj, hint = 'sync', method) {
if (method === undefined) {
if (hint === 'async') {
method = GetMethod(obj, SymbolAsyncIterator);
if (method === undefined) {
const syncMethod = GetMethod(obj, Symbol.iterator);
const syncIteratorRecord = GetIterator(obj, 'sync', syncMethod);
return CreateAsyncFromSyncIterator(syncIteratorRecord);
}
}
else {
method = GetMethod(obj, Symbol.iterator);
}
}
if (method === undefined) {
throw new TypeError('The object is not iterable');
}
const iterator = reflectCall(method, obj, []);
if (!typeIsObject(iterator)) {
throw new TypeError('The iterator method must return an object');
}
const nextMethod = iterator.next;
return { iterator, nextMethod, done: false };
}
function IteratorNext(iteratorRecord) {
const result = reflectCall(iteratorRecord.nextMethod, iteratorRecord.iterator, []);
if (!typeIsObject(result)) {
throw new TypeError('The iterator.next() method must return an object');
}
return result;
}
function IteratorComplete(iterResult) {
return Boolean(iterResult.done);
}
function IteratorValue(iterResult) {
return iterResult.value;
}
function IsNonNegativeNumber(v) {
if (typeof v !== 'number') {
return false;
}
if (NumberIsNaN(v)) {
return false;
}
if (v < 0) {
return false;
}
return true;
}
function CloneAsUint8Array(O) {
const buffer = ArrayBufferSlice(O.buffer, O.byteOffset, O.byteOffset + O.byteLength);
return new Uint8Array(buffer);
}
function DequeueValue(container) {
const pair = container._queue.shift();
container._queueTotalSize -= pair.size;
if (container._queueTotalSize < 0) {
container._queueTotalSize = 0;
}
return pair.value;
}
function EnqueueValueWithSize(container, value, size) {
if (!IsNonNegativeNumber(size) || size === Infinity) {
throw new RangeError('Size must be a finite, non-NaN, non-negative number.');
}
container._queue.push({ value, size });
container._queueTotalSize += size;
}
function PeekQueueValue(container) {
const pair = container._queue.peek();
return pair.value;
}
function ResetQueue(container) {
container._queue = new SimpleQueue();
container._queueTotalSize = 0;
}
function isDataViewConstructor(ctor) {
return ctor === DataView;
}
function isDataView(view) {
return isDataViewConstructor(view.constructor);
}
function arrayBufferViewElementSize(ctor) {
if (isDataViewConstructor(ctor)) {
return 1;
}
return ctor.BYTES_PER_ELEMENT;
}
/**
* A pull-into request in a {@link ReadableByteStreamController}.
*
* @public
*/
class ReadableStreamBYOBRequest {
constructor() {
throw new TypeError('Illegal constructor');
}
/**
* Returns the view for writing in to, or `null` if the BYOB request has already been responded to.
*/
get view() {
if (!IsReadableStreamBYOBRequest(this)) {
throw byobRequestBrandCheckException('view');
}
return this._view;
}
respond(bytesWritten) {
if (!IsReadableStreamBYOBRequest(this)) {
throw byobRequestBrandCheckException('respond');
}
assertRequiredArgument(bytesWritten, 1, 'respond');
bytesWritten = convertUnsignedLongLongWithEnforceRange(bytesWritten, 'First parameter');
if (this._associatedReadableByteStreamController === undefined) {
throw new TypeError('This BYOB request has been invalidated');
}
if (IsDetachedBuffer(this._view.buffer)) {
throw new TypeError(`The BYOB request's buffer has been detached and so cannot be used as a response`);
}
ReadableByteStreamControllerRespond(this._associatedReadableByteStreamController, bytesWritten);
}
respondWithNewView(view) {
if (!IsReadableStreamBYOBRequest(this)) {
throw byobRequestBrandCheckException('respondWithNewView');
}
assertRequiredArgument(view, 1, 'respondWithNewView');
if (!ArrayBuffer.isView(view)) {
throw new TypeError('You can only respond with array buffer views');
}
if (this._associatedReadableByteStreamController === undefined) {
throw new TypeError('This BYOB request has been invalidated');
}
if (IsDetachedBuffer(view.buffer)) {
throw new TypeError('The given view\'s buffer has been detached and so cannot be used as a response');
}
ReadableByteStreamControllerRespondWithNewView(this._associatedReadableByteStreamController, view);
}
}
Object.defineProperties(ReadableStreamBYOBRequest.prototype, {
respond: { enumerable: true },
respondWithNewView: { enumerable: true },
view: { enumerable: true }
});
setFunctionName(ReadableStreamBYOBRequest.prototype.respond, 'respond');
setFunctionName(ReadableStreamBYOBRequest.prototype.respondWithNewView, 'respondWithNewView');
if (typeof Symbol.toStringTag === 'symbol') {
Object.defineProperty(ReadableStreamBYOBRequest.prototype, Symbol.toStringTag, {
value: 'ReadableStreamBYOBRequest',
configurable: true
});
}
/**
* Allows control of a {@link ReadableStream | readable byte stream}'s state and internal queue.
*
* @public
*/
class ReadableByteStreamController {
constructor() {
throw new TypeError('Illegal constructor');
}
/**
* Returns the current BYOB pull request, or `null` if there isn't one.
*/
get byobRequest() {
if (!IsReadableByteStreamController(this)) {
throw byteStreamControllerBrandCheckException('byobRequest');
}
return ReadableByteStreamControllerGetBYOBRequest(this);
}
/**
* Returns the desired size to fill the controlled stream's internal queue. It can be negative, if the queue is
* over-full. An underlying byte source ought to use this information to determine when and how to apply backpressure.
*/
get desiredSize() {
if (!IsReadableByteStreamController(this)) {
throw byteStreamControllerBrandCheckException('desiredSize');
}
return ReadableByteStreamControllerGetDesiredSize(this);
}
/**
* Closes the controlled readable stream. Consumers will still be able to read any previously-enqueued chunks from
* the stream, but once those are read, the stream will become closed.
*/
close() {
if (!IsReadableByteStreamController(this)) {
throw byteStreamControllerBrandCheckException('close');
}
if (this._closeRequested) {
throw new TypeError('The stream has already been closed; do not close it again!');
}
const state = this._controlledReadableByteStream._state;
if (state !== 'readable') {
throw new TypeError(`The stream (in ${state} state) is not in the readable state and cannot be closed`);
}
ReadableByteStreamControllerClose(this);
}
enqueue(chunk) {
if (!IsReadableByteStreamController(this)) {
throw byteStreamControllerBrandCheckException('enqueue');
}
assertRequiredArgument(chunk, 1, 'enqueue');
if (!ArrayBuffer.isView(chunk)) {
throw new TypeError('chunk must be an array buffer view');
}
if (chunk.byteLength === 0) {
throw new TypeError('chunk must have non-zero byteLength');
}
if (chunk.buffer.byteLength === 0) {
throw new TypeError(`chunk's buffer must have non-zero byteLength`);
}
if (this._closeRequested) {
throw new TypeError('stream is closed or draining');
}
const state = this._controlledReadableByteStream._state;
if (state !== 'readable') {
throw new TypeError(`The stream (in ${state} state) is not in the readable state and cannot be enqueued to`);
}
ReadableByteStreamControllerEnqueue(this, chunk);
}
/**
* Errors the controlled readable stream, making all future interactions with it fail with the given error `e`.
*/
error(e = undefined) {
if (!IsReadableByteStreamController(this)) {
throw byteStreamControllerBrandCheckException('error');
}
ReadableByteStreamControllerError(this, e);
}
/** @internal */
[CancelSteps](reason) {
ReadableByteStreamControllerClearPendingPullIntos(this);
ResetQueue(this);
const result = this._cancelAlgorithm(reason);
ReadableByteStreamControllerClearAlgorithms(this);
return result;
}
/** @internal */
[PullSteps](readRequest) {
const stream = this._controlledReadableByteStream;
if (this._queueTotalSize > 0) {
ReadableByteStreamControllerFillReadRequestFromQueue(this, readRequest);
return;
}
const autoAllocateChunkSize = this._autoAllocateChunkSize;
if (autoAllocateChunkSize !== undefined) {
let buffer;
try {
buffer = new ArrayBuffer(autoAllocateChunkSize);
}
catch (bufferE) {
readRequest._errorSteps(bufferE);
return;
}
const pullIntoDescriptor = {
buffer,
bufferByteLength: autoAllocateChunkSize,
byteOffset: 0,
byteLength: autoAllocateChunkSize,
bytesFilled: 0,
minimumFill: 1,
elementSize: 1,
viewConstructor: Uint8Array,
readerType: 'default'
};
this._pendingPullIntos.push(pullIntoDescriptor);
}
ReadableStreamAddReadRequest(stream, readRequest);
ReadableByteStreamControllerCallPullIfNeeded(this);
}
/** @internal */
[ReleaseSteps]() {
if (this._pendingPullIntos.length > 0) {
const firstPullInto = this._pendingPullIntos.peek();
firstPullInto.readerType = 'none';
this._pendingPullIntos = new SimpleQueue();
this._pendingPullIntos.push(firstPullInto);
}
}
}
Object.defineProperties(ReadableByteStreamController.prototype, {
close: { enumerable: true },
enqueue: { enumerable: true },
error: { enumerable: true },
byobRequest: { enumerable: true },
desiredSize: { enumerable: true }
});
setFunctionName(ReadableByteStreamController.prototype.close, 'close');
setFunctionName(ReadableByteStreamController.prototype.enqueue, 'enqueue');
setFunctionName(ReadableByteStreamController.prototype.error, 'error');
if (typeof Symbol.toStringTag === 'symbol') {
Object.defineProperty(ReadableByteStreamController.prototype, Symbol.toStringTag, {
value: 'ReadableByteStreamController',
configurable: true
});
}
// Abstract operations for the ReadableByteStreamController.
function IsReadableByteStreamController(x) {
if (!typeIsObject(x)) {
return false;
}
if (!Object.prototype.hasOwnProperty.call(x, '_controlledReadableByteStream')) {
return false;
}
return x instanceof ReadableByteStreamController;
}
function IsReadableStreamBYOBRequest(x) {
if (!typeIsObject(x)) {
return false;
}
if (!Object.prototype.hasOwnProperty.call(x, '_associatedReadableByteStreamController')) {
return false;
}
return x instanceof ReadableStreamBYOBRequest;
}
function ReadableByteStreamControllerCallPullIfNeeded(controller) {
const shouldPull = ReadableByteStreamControllerShouldCallPull(controller);
if (!shouldPull) {
return;
}
if (controller._pulling) {
controller._pullAgain = true;
return;
}
controller._pulling = true;
// TODO: Test controller argument
const pullPromise = controller._pullAlgorithm();
uponPromise(pullPromise, () => {
controller._pulling = false;
if (controller._pullAgain) {
controller._pullAgain = false;
ReadableByteStreamControllerCallPullIfNeeded(controller);
}
return null;
}, e => {
ReadableByteStreamControllerError(controller, e);
return null;
});
}
function ReadableByteStreamControllerClearPendingPullIntos(controller) {
ReadableByteStreamControllerInvalidateBYOBRequest(controller);
controller._pendingPullIntos = new SimpleQueue();
}
function ReadableByteStreamControllerCommitPullIntoDescriptor(stream, pullIntoDescriptor) {
let done = false;
if (stream._state === 'closed') {
done = true;
}
const filledView = ReadableByteStreamControllerConvertPullIntoDescriptor(pullIntoDescriptor);
if (pullIntoDescriptor.readerType === 'default') {
ReadableStreamFulfillReadRequest(stream, filledView, done);
}
else {
ReadableStreamFulfillReadIntoRequest(stream, filledView, done);
}
}
function ReadableByteStreamControllerConvertPullIntoDescriptor(pullIntoDescriptor) {
const bytesFilled = pullIntoDescriptor.bytesFilled;
const elementSize = pullIntoDescriptor.elementSize;
return new pullIntoDescriptor.viewConstructor(pullIntoDescriptor.buffer, pullIntoDescriptor.byteOffset, bytesFilled / elementSize);
}
function ReadableByteStreamControllerEnqueueChunkToQueue(controller, buffer, byteOffset, byteLength) {
controller._queue.push({ buffer, byteOffset, byteLength });
controller._queueTotalSize += byteLength;
}
function ReadableByteStreamControllerEnqueueClonedChunkToQueue(controller, buffer, byteOffset, byteLength) {
let clonedChunk;
try {
clonedChunk = ArrayBufferSlice(buffer, byteOffset, byteOffset + byteLength);
}
catch (cloneE) {
ReadableByteStreamControllerError(controller, cloneE);
throw cloneE;
}
ReadableByteStreamControllerEnqueueChunkToQueue(controller, clonedChunk, 0, byteLength);
}
function ReadableByteStreamControllerEnqueueDetachedPullIntoToQueue(controller, firstDescriptor) {
if (firstDescriptor.bytesFilled > 0) {
ReadableByteStreamControllerEnqueueClonedChunkToQueue(controller, firstDescriptor.buffer, firstDescriptor.byteOffset, firstDescriptor.bytesFilled);
}
ReadableByteStreamControllerShiftPendingPullInto(controller);
}
function ReadableByteStreamControllerFillPullIntoDescriptorFromQueue(controller, pullIntoDescriptor) {
const maxBytesToCopy = Math.min(controller._queueTotalSize, pullIntoDescriptor.byteLength - pullIntoDescriptor.bytesFilled);
const maxBytesFilled = pullIntoDescriptor.bytesFilled + maxBytesToCopy;
let totalBytesToCopyRemaining = maxBytesToCopy;
let ready = false;
const remainderBytes = maxBytesFilled % pullIntoDescriptor.elementSize;
const maxAlignedBytes = maxBytesFilled - remainderBytes;
// A descriptor for a read() request that is not yet filled up to its minimum length will stay at the head
// of the queue, so the underlying source can keep filling it.
if (maxAlignedBytes >= pullIntoDescriptor.minimumFill) {
totalBytesToCopyRemaining = maxAlignedBytes - pullIntoDescriptor.bytesFilled;
ready = true;
}
const queue = controller._queue;
while (totalBytesToCopyRemaining > 0) {
const headOfQueue = queue.peek();
const bytesToCopy = Math.min(totalBytesToCopyRemaining, headOfQueue.byteLength);
const destStart = pullIntoDescriptor.byteOffset + pullIntoDescriptor.bytesFilled;
CopyDataBlockBytes(pullIntoDescriptor.buffer, destStart, headOfQueue.buffer, headOfQueue.byteOffset, bytesToCopy);
if (headOfQueue.byteLength === bytesToCopy) {
queue.shift();
}
else {
headOfQueue.byteOffset += bytesToCopy;
headOfQueue.byteLength -= bytesToCopy;
}
controller._queueTotalSize -= bytesToCopy;
ReadableByteStreamControllerFillHeadPullIntoDescriptor(controller, bytesToCopy, pullIntoDescriptor);
totalBytesToCopyRemaining -= bytesToCopy;
}
return ready;
}
function ReadableByteStreamControllerFillHeadPullIntoDescriptor(controller, size, pullIntoDescriptor) {
pullIntoDescriptor.bytesFilled += size;
}
function ReadableByteStreamControllerHandleQueueDrain(controller) {
if (controller._queueTotalSize === 0 && controller._closeRequested) {
ReadableByteStreamControllerClearAlgorithms(controller);
ReadableStreamClose(controller._controlledReadableByteStream);
}
else {
ReadableByteStreamControllerCallPullIfNeeded(controller);
}
}
function ReadableByteStreamControllerInvalidateBYOBRequest(controller) {
if (controller._byobRequest === null) {
return;
}
controller._byobRequest._associatedReadableByteStreamController = undefined;
controller._byobRequest._view = null;
controller._byobRequest = null;
}
function ReadableByteStreamControllerProcessPullIntoDescriptorsUsingQueue(controller) {
while (controller._pendingPullIntos.length > 0) {
if (controller._queueTotalSize === 0) {
return;
}
const pullIntoDescriptor = controller._pendingPullIntos.peek();
if (ReadableByteStreamControllerFillPullIntoDescriptorFromQueue(controller, pullIntoDescriptor)) {
ReadableByteStreamControllerShiftPendingPullInto(controller);
ReadableByteStreamControllerCommitPullIntoDescriptor(controller._controlledReadableByteStream, pullIntoDescriptor);
}
}
}
function ReadableByteStreamControllerProcessReadRequestsUsingQueue(controller) {
const reader = controller._controlledReadableByteStream._reader;
while (reader._readRequests.length > 0) {
if (controller._queueTotalSize === 0) {
return;
}
const readRequest = reader._readRequests.shift();
ReadableByteStreamControllerFillReadRequestFromQueue(controller, readRequest);
}
}
function ReadableByteStreamControllerPullInto(controller, view, min, readIntoRequest) {
const stream = controller._controlledReadableByteStream;
const ctor = view.constructor;
const elementSize = arrayBufferViewElementSize(ctor);
const { byteOffset, byteLength } = view;
const minimumFill = min * elementSize;
let buffer;
try {
buffer = TransferArrayBuffer(view.buffer);
}
catch (e) {
readIntoRequest._errorSteps(e);
return;
}
const pullIntoDescriptor = {
buffer,
bufferByteLength: buffer.byteLength,
byteOffset,
byteLength,
bytesFilled: 0,
minimumFill,
elementSize,
viewConstructor: ctor,
readerType: 'byob'
};
if (controller._pendingPullIntos.length > 0) {
controller._pendingPullIntos.push(pullIntoDescriptor);
// No ReadableByteStreamControllerCallPullIfNeeded() call since:
// - No change happens on desiredSize
// - The source has already been notified of that there's at least 1 pending read(view)
ReadableStreamAddReadIntoRequest(stream, readIntoRequest);
return;
}
if (stream._state === 'closed') {
const emptyView = new ctor(pullIntoDescriptor.buffer, pullIntoDescriptor.byteOffset, 0);
readIntoRequest._closeSteps(emptyView);
return;
}
if (controller._queueTotalSize > 0) {
if (ReadableByteStreamControllerFillPullIntoDescriptorFromQueue(controller, pullIntoDescriptor)) {
const filledView = ReadableByteStreamControllerConvertPullIntoDescriptor(pullIntoDescriptor);
ReadableByteStreamControllerHandleQueueDrain(controller);
readIntoRequest._chunkSteps(filledView);
return;
}
if (controller._closeRequested) {
const e = new TypeError('Insufficient bytes to fill elements in the given buffer');
ReadableByteStreamControllerError(controller, e);
readIntoRequest._errorSteps(e);
return;
}
}
controller._pendingPullIntos.push(pullIntoDescriptor);
ReadableStreamAddReadIntoRequest(stream, readIntoRequest);
ReadableByteStreamControllerCallPullIfNeeded(controller);
}
function ReadableByteStreamControllerRespondInClosedState(controller, firstDescriptor) {
if (firstDescriptor.readerType === 'none') {
ReadableByteStreamControllerShiftPendingPullInto(controller);
}
const stream = controller._controlledReadableByteStream;
if (ReadableStreamHasBYOBReader(stream)) {
while (ReadableStreamGetNumReadIntoRequests(stream) > 0) {
const pullIntoDescriptor = ReadableByteStreamControllerShiftPendingPullInto(controller);
ReadableByteStreamControllerCommitPullIntoDescriptor(stream, pullIntoDescriptor);
}
}
}
function ReadableByteStreamControllerRespondInReadableState(controller, bytesWritten, pullIntoDescriptor) {
ReadableByteStreamControllerFillHeadPullIntoDescriptor(controller, bytesWritten, pullIntoDescriptor);
if (pullIntoDescriptor.readerType === 'none') {
ReadableByteStreamControllerEnqueueDetachedPullIntoToQueue(controller, pullIntoDescriptor);
ReadableByteStreamControllerProcessPullIntoDescriptorsUsingQueue(controller);
return;
}
if (pullIntoDescriptor.bytesFilled < pullIntoDescriptor.minimumFill) {
// A descriptor for a read() request that is not yet filled up to its minimum length will stay at the head
// of the queue, so the underlying source can keep filling it.
return;
}
ReadableByteStreamControllerShiftPendingPullInto(controller);
const remainderSize = pullIntoDescriptor.bytesFilled % pullIntoDescriptor.elementSize;
if (remainderSize > 0) {
const end = pullIntoDescriptor.byteOffset + pullIntoDescriptor.bytesFilled;
ReadableByteStreamControllerEnqueueClonedChunkToQueue(controller, pullIntoDescriptor.buffer, end - remainderSize, remainderSize);
}
pullIntoDescriptor.bytesFilled -= remainderSize;
ReadableByteStreamControllerCommitPullIntoDescriptor(controller._controlledReadableByteStream, pullIntoDescriptor);
ReadableByteStreamControllerProcessPullIntoDescriptorsUsingQueue(controller);
}
function ReadableByteStreamControllerRespondInternal(controller, bytesWritten) {
const firstDescriptor = controller._pendingPullIntos.peek();
ReadableByteStreamControllerInvalidateBYOBRequest(controller);
const state = controller._controlledReadableByteStream._state;
if (state === 'closed') {
ReadableByteStreamControllerRespondInClosedState(controller, firstDescriptor);
}
else {
ReadableByteStreamControllerRespondInReadableState(controller, bytesWritten, firstDescriptor);
}
ReadableByteStreamControllerCallPullIfNeeded(controller);
}
function ReadableByteStreamControllerShiftPendingPullInto(controller) {
const descriptor = controller._pendingPullIntos.shift();
return descriptor;
}
function ReadableByteStreamControllerShouldCallPull(controller) {
const stream = controller._controlledReadableByteStream;
if (stream._state !== 'readable') {
return false;
}
if (controller._closeRequested) {
return false;
}
if (!controller._started) {
return false;
}
if (ReadableStreamHasDefaultReader(stream) && ReadableStreamGetNumReadRequests(stream) > 0) {
return true;
}
if (ReadableStreamHasBYOBReader(stream) && ReadableStreamGetNumReadIntoRequests(stream) > 0) {
return true;
}
const desiredSize = ReadableByteStreamControllerGetDesiredSize(controller);
if (desiredSize > 0) {
return true;
}
return false;
}
function ReadableByteStreamControllerClearAlgorithms(controller) {
controller._pullAlgorithm = undefined;
controller._cancelAlgorithm = undefined;
}
// A client of ReadableByteStreamController may use these functions directly to bypass state check.
function ReadableByteStreamControllerClose(controller) {
const stream = controller._controlledReadableByteStream;
if (controller._closeRequested || stream._state !== 'readable') {
return;
}
if (controller._queueTotalSize > 0) {
controller._closeRequested = true;
return;
}
if (controller._pendingPullIntos.length > 0) {
const firstPendingPullInto = controller._pendingPullIntos.peek();
if (firstPendingPullInto.bytesFilled % firstPendingPullInto.elementSize !== 0) {
const e = new TypeError('Insufficient bytes to fill elements in the given buffer');
ReadableByteStreamControllerError(controller, e);
throw e;
}
}
ReadableByteStreamControllerClearAlgorithms(controller);
ReadableStreamClose(stream);
}
function ReadableByteStreamControllerEnqueue(controller, chunk) {
const stream = controller._controlledReadableByteStream;
if (controller._closeRequested || stream._state !== 'readable') {
return;
}
const { buffer, byteOffset, byteLength } = chunk;
if (IsDetachedBuffer(buffer)) {
throw new TypeError('chunk\'s buffer is detached and so cannot be enqueued');
}
const transferredBuffer = TransferArrayBuffer(buffer);
if (controller._pendingPullIntos.length > 0) {
const firstPendingPullInto = controller._pendingPullIntos.peek();
if (IsDetachedBuffer(firstPendingPullInto.buffer)) {
throw new TypeError('The BYOB request\'s buffer has been detached and so cannot be filled with an enqueued chunk');
}
ReadableByteStreamControllerInvalidateBYOBRequest(controller);
firstPendingPullInto.buffer = TransferArrayBuffer(firstPendingPullInto.buffer);
if (firstPendingPullInto.readerType === 'none') {
ReadableByteStreamControllerEnqueueDetachedPullIntoToQueue(controller, firstPendingPullInto);
}
}
if (ReadableStreamHasDefaultReader(stream)) {
ReadableByteStreamControllerProcessReadRequestsUsingQueue(controller);
if (ReadableStreamGetNumReadRequests(stream) === 0) {
ReadableByteStreamControllerEnqueueChunkToQueue(controller, transferredBuffer, byteOffset, byteLength);
}
else {
if (controller._pendingPullIntos.length > 0) {
ReadableByteStreamControllerShiftPendingPullInto(controller);
}
const transferredView = new Uint8Array(transferredBuffer, byteOffset, byteLength);
ReadableStreamFulfillReadRequest(stream, transferredView, false);
}
}
else if (ReadableStreamHasBYOBReader(stream)) {
// TODO: Ideally in this branch detaching should happen only if the buffer is not consumed fully.
ReadableByteStreamControllerEnqueueChunkToQueue(controller, transferredBuffer, byteOffset, byteLength);
ReadableByteStreamControllerProcessPullIntoDescriptorsUsingQueue(controller);
}
else {
ReadableByteStreamControllerEnqueueChunkToQueue(controller, transferredBuffer, byteOffset, byteLength);
}
ReadableByteStreamControllerCallPullIfNeeded(controller);
}
function ReadableByteStreamControllerError(controller, e) {
const stream = controller._controlledReadableByteStream;
if (stream._state !== 'readable') {
return;
}
ReadableByteStreamControllerClearPendingPullIntos(controller);
ResetQueue(controller);
ReadableByteStreamControllerClearAlgorithms(controller);
ReadableStreamError(stream, e);
}
function ReadableByteStreamControllerFillReadRequestFromQueue(controller, readRequest) {
const entry = controller._queue.shift();
controller._queueTotalSize -= entry.byteLength;
ReadableByteStreamControllerHandleQueueDrain(controller);
const view = new Uint8Array(entry.buffer, entry.byteOffset, entry.byteLength);
readRequest._chunkSteps(view);
}
function ReadableByteStreamControllerGetBYOBRequest(controller) {
if (controller._byobRequest === null && controller._pendingPullIntos.length > 0) {
const firstDescriptor = controller._pendingPullIntos.peek();
const view = new Uint8Array(firstDescriptor.buffer, firstDescriptor.byteOffset + firstDescriptor.bytesFilled, firstDescriptor.byteLength - firstDescriptor.bytesFilled);
const byobRequest = Object.create(ReadableStreamBYOBRequest.prototype);
SetUpReadableStreamBYOBRequest(byobRequest, controller, view);
controller._byobRequest = byobRequest;
}
return controller._byobRequest;
}
function ReadableByteStreamControllerGetDesiredSize(controller) {
const state = controller._controlledReadableByteStream._state;
if (state === 'errored') {
return null;
}
if (state === 'closed') {
return 0;
}
return controller._strategyHWM - controller._queueTotalSize;
}
function ReadableByteStreamControllerRespond(controller, bytesWritten) {
const firstDescriptor = controller._pendingPullIntos.peek();
const state = controller._controlledReadableByteStream._state;
if (state === 'closed') {
if (bytesWritten !== 0) {
throw new TypeError('bytesWritten must be 0 when calling respond() on a closed stream');
}
}
else {
if (bytesWritten === 0) {
throw new TypeError('bytesWritten must be greater than 0 when calling respond() on a readable stream');
}
if (firstDescriptor.bytesFilled + bytesWritten > firstDescriptor.byteLength) {
throw new RangeError('bytesWritten out of range');
}
}
firstDescriptor.buffer = TransferArrayBuffer(firstDescriptor.buffer);
ReadableByteStreamControllerRespondInternal(controller, bytesWritten);
}
function ReadableByteStreamControllerRespondWithNewView(controller, view) {
const firstDescriptor = controller._pendingPullIntos.peek();
const state = controller._controlledReadableByteStream._state;
if (state === 'closed') {
if (view.byteLength !== 0) {
throw new TypeError('The view\'s length must be 0 when calling respondWithNewView() on a closed stream');
}
}
else {
if (view.byteLength === 0) {
throw new TypeError('The view\'s length must be greater than 0 when calling respondWithNewView() on a readable stream');
}
}
if (firstDescriptor.byteOffset + firstDescriptor.bytesFilled !== view.byteOffset) {
throw new RangeError('The region specified by view does not match byobRequest');
}
if (firstDescriptor.bufferByteLength !== view.buffer.byteLength) {
throw new RangeError('The buffer of view has different capacity than byobRequest');
}
if (firstDescriptor.bytesFilled + view.byteLength > firstDescriptor.byteLength) {
throw new RangeError('The region specified by view is larger than byobRequest');
}
const viewByteLength = view.byteLength;
firstDescriptor.buffer = TransferArrayBuffer(view.buffer);
ReadableByteStreamControllerRespondInternal(controller, viewByteLength);
}
function SetUpReadableByteStreamController(stream, controller, startAlgorithm, pullAlgorithm, cancelAlgorithm, highWaterMark, autoAllocateChunkSize) {
controller._controlledReadableByteStream = stream;
controller._pullAgain = false;
controller._pulling = false;
controller._byobRequest = null;
// Need to set the slots so that the assert doesn't fire. In the spec the slots already exist implicitly.
controller._queue = controller._queueTotalSize = undefined;
ResetQueue(controller);
controller._closeRequested = false;
controller._started = false;
controller._strategyHWM = highWaterMark;
controller._pullAlgorithm = pullAlgorithm;
controller._cancelAlgorithm = cancelAlgorithm;
controller._autoAllocateChunkSize = autoAllocateChunkSize;
controller._pendingPullIntos = new SimpleQueue();
stream._readableStreamController = controller;
const startResult = startAlgorithm();
uponPromise(promiseResolvedWith(startResult), () => {
controller._started = true;
ReadableByteStreamControllerCallPullIfNeeded(controller);
return null;
}, r => {
ReadableByteStreamControllerError(controller, r);
return null;
});
}
function SetUpReadableByteStreamControllerFromUnderlyingSource(stream, underlyingByteSource, highWaterMark) {
const controller = Object.create(ReadableByteStreamController.prototype);
let startAlgorithm;
let pullAlgorithm;
let cancelAlgorithm;
if (underlyingByteSource.start !== undefined) {
startAlgorithm = () => underlyingByteSource.start(controller);
}
else {
startAlgorithm = () => undefined;
}
if (underlyingByteSource.pull !== undefined) {
pullAlgorithm = () => underlyingByteSource.pull(controller);
}
else {
pullAlgorithm = () => promiseResolvedWith(undefined);
}
if (underlyingByteSource.cancel !== undefined) {
cancelAlgorithm = reason => underlyingByteSource.cancel(reason);
}
else {
cancelAlgorithm = () => promiseResolvedWith(undefined);
}
const autoAllocateChunkSize = underlyingByteSource.autoAllocateChunkSize;
if (autoAllocateChunkSize === 0) {
throw new TypeError('autoAllocateChunkSize must be greater than 0');
}
SetUpReadableByteStreamController(stream, controller, startAlgorithm, pullAlgorithm, cancelAlgorithm, highWaterMark, autoAllocateChunkSize);
}
function SetUpReadableStreamBYOBRequest(request, controller, view) {
request._associatedReadableByteStreamController = controller;
request._view = view;
}
// Helper functions for the ReadableStreamBYOBRequest.
function byobRequestBrandCheckException(name) {
return new TypeError(`ReadableStreamBYOBRequest.prototype.${name} can only be used on a ReadableStreamBYOBRequest`);
}
// Helper functions for the ReadableByteStreamController.
function byteStreamControllerBrandCheckException(name) {
return new TypeError(`ReadableByteStreamController.prototype.${name} can only be used on a ReadableByteStreamController`);
}
function convertReaderOptions(options, context) {
assertDictionary(options, context);
const mode = options === null || options === void 0 ? void 0 : options.mode;
return {
mode: mode === undefined ? undefined : convertReadableStreamReaderMode(mode, `${context} has member 'mode' that`)
};
}
function convertReadableStreamReaderMode(mode, context) {
mode = `${mode}`;
if (mode !== 'byob') {
throw new TypeError(`${context} '${mode}' is not a valid enumeration value for ReadableStreamReaderMode`);
}
return mode;
}
function convertByobReadOptions(options, context) {
var _a;
assertDictionary(options, context);
const min = (_a = options === null || options === void 0 ? void 0 : options.min) !== null && _a !== void 0 ? _a : 1;
return {
min: convertUnsignedLongLongWithEnforceRange(min, `${context} has member 'min' that`)
};
}
// Abstract operations for the ReadableStream.
function AcquireReadableStreamBYOBReader(stream) {
return new ReadableStreamBYOBReader(stream);
}
// ReadableStream API exposed for controllers.
function ReadableStreamAddReadIntoRequest(stream, readIntoRequest) {
stream._reader._readIntoRequests.push(readIntoRequest);
}
function ReadableStreamFulfillReadIntoRequest(stream, chunk, done) {
const reader = stream._reader;
const readIntoRequest = reader._readIntoRequests.shift();
if (done) {
readIntoRequest._closeSteps(chunk);
}
else {
readIntoRequest._chunkSteps(chunk);
}
}
function ReadableStreamGetNumReadIntoRequests(stream) {
return stream._reader._readIntoRequests.length;
}
function ReadableStreamHasBYOBReader(stream) {
const reader = stream._reader;
if (reader === undefined) {
return false;
}
if (!IsReadableStreamBYOBReader(reader)) {
return false;
}
return true;
}
/**
* A BYOB reader vended by a {@link ReadableStream}.
*
* @public
*/
class ReadableStreamBYOBReader {
constructor(stream) {
assertRequiredArgument(stream, 1, 'ReadableStreamBYOBReader');
assertReadableStream(stream, 'First parameter');
if (IsReadableStreamLocked(stream)) {
throw new TypeError('This stream has already been locked for exclusive reading by another reader');
}
if (!IsReadableByteStreamController(stream._readableStreamController)) {
throw new TypeError('Cannot construct a ReadableStreamBYOBReader for a stream not constructed with a byte ' +
'source');
}
ReadableStreamReaderGenericInitialize(this, stream);
this._readIntoRequests = new SimpleQueue();
}
/**
* Returns a promise that will be fulfilled when the stream becomes closed, or rejected if the stream ever errors or
* the reader's lock is released before the stream finishes closing.
*/
get closed() {
if (!IsReadableStreamBYOBReader(this)) {
return promiseRejectedWith(byobReaderBrandCheckException('closed'));
}
return this._closedPromise;
}
/**
* If the reader is active, behaves the same as {@link ReadableStream.cancel | stream.cancel(reason)}.
*/
cancel(reason = undefined) {
if (!IsReadableStreamBYOBReader(this)) {
return promiseRejectedWith(byobReaderBrandCheckException('cancel'));
}
if (this._ownerReadableStream === undefined) {
return promiseRejectedWith(readerLockException('cancel'));
}
return ReadableStreamReaderGenericCancel(this, reason);
}
read(view, rawOptions = {}) {
if (!IsReadableStreamBYOBReader(this)) {
return promiseRejectedWith(byobReaderBrandCheckException('read'));
}
if (!ArrayBuffer.isView(view)) {
return promiseRejectedWith(new TypeError('view must be an array buffer view'));
}
if (view.byteLength === 0) {
return promiseRejectedWith(new TypeError('view must have non-zero byteLength'));
}
if (view.buffer.byteLength === 0) {
return promiseRejectedWith(new TypeError(`view's buffer must have non-zero byteLength`));
}
if (IsDetachedBuffer(view.buffer)) {
return promiseRejectedWith(new TypeError('view\'s buffer has been detached'));
}
let options;
try {
options = convertByobReadOptions(rawOptions, 'options');
}
catch (e) {
return promiseRejectedWith(e);
}
const min = options.min;
if (min === 0) {
return promiseRejectedWith(new TypeError('options.min must be greater than 0'));
}
if (!isDataView(view)) {
if (min > view.length) {
return promiseRejectedWith(new RangeError('options.min must be less than or equal to view\'s length'));
}
}
else if (min > view.byteLength) {
return promiseRejectedWith(new RangeError('options.min must be less than or equal to view\'s byteLength'));
}
if (this._ownerReadableStream === undefined) {
return promiseRejectedWith(readerLockException('read from'));
}
let resolvePromise;
let rejectPromise;
const promise = newPromise((resolve, reject) => {
resolvePromise = resolve;
rejectPromise = reject;
});
const readIntoRequest = {
_chunkSteps: chunk => resolvePromise({ value: chunk, done: false }),
_closeSteps: chunk => resolvePromise({ value: chunk, done: true }),
_errorSteps: e => rejectPromise(e)
};
ReadableStreamBYOBReaderRead(this, view, min, readIntoRequest);
return promise;
}
/**
* Releases the reader's lock on the corresponding stream. After the lock is released, the reader is no longer active.
* If the associated stream is errored when the lock is released, the reader will appear errored in the same way
* from now on; otherwise, the reader will appear closed.
*
* A reader's lock cannot be released while it still has a pending read request, i.e., if a promise returned by
* the reader's {@link ReadableStreamBYOBReader.read | read()} method has not yet been settled. Attempting to
* do so will throw a `TypeError` and leave the reader locked to the stream.
*/
releaseLock() {
if (!IsReadableStreamBYOBReader(this)) {
throw byobReaderBrandCheckException('releaseLock');
}
if (this._ownerReadableStream === undefined) {
return;
}
ReadableStreamBYOBReaderRelease(this);
}
}
Object.defineProperties(ReadableStreamBYOBReader.prototype, {
cancel: { enumerable: true },
read: { enumerable: true },
releaseLock: { enumerable: true },
closed: { enumerable: true }
});
setFunctionName(ReadableStreamBYOBReader.prototype.cancel, 'cancel');
setFunctionName(ReadableStreamBYOBReader.prototype.read, 'read');
setFunctionName(ReadableStreamBYOBReader.prototype.releaseLock, 'releaseLock');
if (typeof Symbol.toStringTag === 'symbol') {
Object.defineProperty(ReadableStreamBYOBReader.prototype, Symbol.toStringTag, {
value: 'ReadableStreamBYOBReader',
configurable: true
});
}
// Abstract operations for the readers.
function IsReadableStreamBYOBReader(x) {
if (!typeIsObject(x)) {
return false;
}
if (!Object.prototype.hasOwnProperty.call(x, '_readIntoRequests')) {
return false;
}
return x instanceof ReadableStreamBYOBReader;
}
function ReadableStreamBYOBReaderRead(reader, view, min, readIntoRequest) {
const stream = reader._ownerReadableStream;
stream._disturbed = true;
if (stream._state === 'errored') {
readIntoRequest._errorSteps(stream._storedError);
}
else {
ReadableByteStreamControllerPullInto(stream._readableStreamController, view, min, readIntoRequest);
}
}
function ReadableStreamBYOBReaderRelease(reader) {
ReadableStreamReaderGenericRelease(reader);
const e = new TypeError('Reader was released');
ReadableStreamBYOBReaderErrorReadIntoRequests(reader, e);
}
function ReadableStreamBYOBReaderErrorReadIntoRequests(reader, e) {
const readIntoRequests = reader._readIntoRequests;
reader._readIntoRequests = new SimpleQueue();
readIntoRequests.forEach(readIntoRequest => {
readIntoRequest._errorSteps(e);
});
}
// Helper functions for the ReadableStreamBYOBReader.
function byobReaderBrandCheckException(name) {
return new TypeError(`ReadableStreamBYOBReader.prototype.${name} can only be used on a ReadableStreamBYOBReader`);
}
function ExtractHighWaterMark(strategy, defaultHWM) {
const { highWaterMark } = strategy;
if (highWaterMark === undefined) {
return defaultHWM;
}
if (NumberIsNaN(highWaterMark) || highWaterMark < 0) {
throw new RangeError('Invalid highWaterMark');
}
return highWaterMark;
}
function ExtractSizeAlgorithm(strategy) {
const { size } = strategy;
if (!size) {
return () => 1;
}
return size;
}
function convertQueuingStrategy(init, context) {
assertDictionary(init, context);
const highWaterMark = init === null || init === void 0 ? void 0 : init.highWaterMark;
const size = init === null || init === void 0 ? void 0 : init.size;
return {
highWaterMark: highWaterMark === undefined ? undefined : convertUnrestrictedDouble(highWaterMark),
size: size === undefined ? undefined : convertQueuingStrategySize(size, `${context} has member 'size' that`)
};
}
function convertQueuingStrategySize(fn, context) {
assertFunction(fn, context);
return chunk => convertUnrestrictedDouble(fn(chunk));
}
function convertUnderlyingSink(original, context) {
assertDictionary(original, context);
const abort = original === null || original === void 0 ? void 0 : original.abort;
const close = original === null || original === void 0 ? void 0 : original.close;
const start = original === null || original === void 0 ? void 0 : original.start;
const type = original === null || original === void 0 ? void 0 : original.type;
const write = original === null || original === void 0 ? void 0 : original.write;
return {
abort: abort === undefined ?
undefined :
convertUnderlyingSinkAbortCallback(abort, original, `${context} has member 'abort' that`),
close: close === undefined ?
undefined :
convertUnderlyingSinkCloseCallback(close, original, `${context} has member 'close' that`),
start: start === undefined ?
undefined :
convertUnderlyingSinkStartCallback(start, original, `${context} has member 'start' that`),
write: write === undefined ?
undefined :
convertUnderlyingSinkWriteCallback(write, original, `${context} has member 'write' that`),
type
};
}
function convertUnderlyingSinkAbortCallback(fn, original, context) {
assertFunction(fn, context);
return (reason) => promiseCall(fn, original, [reason]);
}
function convertUnderlyingSinkCloseCallback(fn, original, context) {
assertFunction(fn, context);
return () => promiseCall(fn, original, []);
}
function convertUnderlyingSinkStartCallback(fn, original, context) {
assertFunction(fn, context);
return (controller) => reflectCall(fn, original, [controller]);
}
function convertUnderlyingSinkWriteCallback(fn, original, context) {
assertFunction(fn, context);
return (chunk, controller) => promiseCall(fn, original, [chunk, controller]);
}
function assertWritableStream(x, context) {
if (!IsWritableStream(x)) {
throw new TypeError(`${context} is not a WritableStream.`);
}
}
function isAbortSignal(value) {
if (typeof value !== 'object' || value === null) {
return false;
}
try {
return typeof value.aborted === 'boolean';
}
catch (_a) {
// AbortSignal.prototype.aborted throws if its brand check fails
return false;
}
}
const supportsAbortController = typeof AbortController === 'function';
/**
* Construct a new AbortController, if supported by the platform.
*
* @internal
*/
function createAbortController() {
if (supportsAbortController) {
return new AbortController();
}
return undefined;
}
/**
* A writable stream represents a destination for data, into which you can write.
*
* @public
*/
class WritableStream {
constructor(rawUnderlyingSink = {}, rawStrategy = {}) {
if (rawUnderlyingSink === undefined) {
rawUnderlyingSink = null;
}
else {
assertObject(rawUnderlyingSink, 'First parameter');
}
const strategy = convertQueuingStrategy(rawStrategy, 'Second parameter');
const underlyingSink = convertUnderlyingSink(rawUnderlyingSink, 'First parameter');
InitializeWritableStream(this);
const type = underlyingSink.type;
if (type !== undefined) {
throw new RangeError('Invalid type is specified');
}
const sizeAlgorithm = ExtractSizeAlgorithm(strategy);
const highWaterMark = ExtractHighWaterMark(strategy, 1);
SetUpWritableStreamDefaultControllerFromUnderlyingSink(this, underlyingSink, highWaterMark, sizeAlgorithm);
}
/**
* Returns whether or not the writable stream is locked to a writer.
*/
get locked() {
if (!IsWritableStream(this)) {
throw streamBrandCheckException$2('locked');
}
return IsWritableStreamLocked(this);
}
/**
* Aborts the stream, signaling that the producer can no longer successfully write to the stream and it is to be
* immediately moved to an errored state, with any queued-up writes discarded. This will also execute any abort
* mechanism of the underlying sink.
*
* The returned promise will fulfill if the stream shuts down successfully, or reject if the underlying sink signaled
* that there was an error doing so. Additionally, it will reject with a `TypeError` (without attempting to cancel
* the stream) if the stream is currently locked.
*/
abort(reason = undefined) {
if (!IsWritableStream(this)) {
return promiseRejectedWith(streamBrandCheckException$2('abort'));
}
if (IsWritableStreamLocked(this)) {
return promiseRejectedWith(new TypeError('Cannot abort a stream that already has a writer'));
}
return WritableStreamAbort(this, reason);
}
/**
* Closes the stream. The underlying sink will finish processing any previously-written chunks, before invoking its
* close behavior. During this time any further attempts to write will fail (without erroring the stream).
*
* The method returns a promise that will fulfill if all remaining chunks are successfully written and the stream
* successfully closes, or rejects if an error is encountered during this process. Additionally, it will reject with
* a `TypeError` (without attempting to cancel the stream) if the stream is currently locked.
*/
close() {
if (!IsWritableStream(this)) {
return promiseRejectedWith(streamBrandCheckException$2('close'));
}
if (IsWritableStreamLocked(this)) {
return promiseRejectedWith(new TypeError('Cannot close a stream that already has a writer'));
}
if (WritableStreamCloseQueuedOrInFlight(this)) {
return promiseRejectedWith(new TypeError('Cannot close an already-closing stream'));
}
return WritableStreamClose(this);
}
/**
* Creates a {@link WritableStreamDefaultWriter | writer} and locks the stream to the new writer. While the stream
* is locked, no other writer can be acquired until this one is released.
*
* This functionality is especially useful for creating abstractions that desire the ability to write to a stream
* without interruption or interleaving. By getting a writer for the stream, you can ensure nobody else can write at
* the same time, which would cause the resulting written data to be unpredictable and probably useless.
*/
getWriter() {
if (!IsWritableStream(this)) {
throw streamBrandCheckException$2('getWriter');
}
return AcquireWritableStreamDefaultWriter(this);
}
}
Object.defineProperties(WritableStream.prototype, {
abort: { enumerable: true },
close: { enumerable: true },
getWriter: { enumerable: true },
locked: { enumerable: true }
});
setFunctionName(WritableStream.prototype.abort, 'abort');
setFunctionName(WritableStream.prototype.close, 'close');
setFunctionName(WritableStream.prototype.getWriter, 'getWriter');
if (typeof Symbol.toStringTag === 'symbol') {
Object.defineProperty(WritableStream.prototype, Symbol.toStringTag, {
value: 'WritableStream',
configurable: true
});
}
// Abstract operations for the WritableStream.
function AcquireWritableStreamDefaultWriter(stream) {
return new WritableStreamDefaultWriter(stream);
}
// Throws if and only if startAlgorithm throws.
function CreateWritableStream(startAlgorithm, writeAlgorithm, closeAlgorithm, abortAlgorithm, highWaterMark = 1, sizeAlgorithm = () => 1) {
const stream = Object.create(WritableStream.prototype);
InitializeWritableStream(stream);
const controller = Object.create(WritableStreamDefaultController.prototype);
SetUpWritableStreamDefaultController(stream, controller, startAlgorithm, writeAlgorithm, closeAlgorithm, abortAlgorithm, highWaterMark, sizeAlgorithm);
return stream;
}
function InitializeWritableStream(stream) {
stream._state = 'writable';
// The error that will be reported by new method calls once the state becomes errored. Only set when [[state]] is
// 'erroring' or 'errored'. May be set to an undefined value.
stream._storedError = undefined;
stream._writer = undefined;
// Initialize to undefined first because the constructor of the controller checks this
// variable to validate the caller.
stream._writableStreamController = undefined;
// This queue is placed here instead of the writer class in order to allow for passing a writer to the next data
// producer without waiting for the queued writes to finish.
stream._writeRequests = new SimpleQueue();
// Write requests are removed from _writeRequests when write() is called on the underlying sink. This prevents
// them from being erroneously rejected on error. If a write() call is in-flight, the request is stored here.
stream._inFlightWriteRequest = undefined;
// The promise that was returned from writer.close(). Stored here because it may be fulfilled after the writer
// has been detached.
stream._closeRequest = undefined;
// Close request is removed from _closeRequest when close() is called on the underlying sink. This prevents it
// from being erroneously rejected on error. If a close() call is in-flight, the request is stored here.
stream._inFlightCloseRequest = undefined;
// The promise that was returned from writer.abort(). This may also be fulfilled after the writer has detached.
stream._pendingAbortRequest = undefined;
// The backpressure signal set by the controller.
stream._backpressure = false;
}
function IsWritableStream(x) {
if (!typeIsObject(x)) {
return false;
}
if (!Object.prototype.hasOwnProperty.call(x, '_writableStreamController')) {
return false;
}
return x instanceof WritableStream;
}
function IsWritableStreamLocked(stream) {
if (stream._writer === undefined) {
return false;
}
return true;
}
function WritableStreamAbort(stream, reason) {
var _a;
if (stream._state === 'closed' || stream._state === 'errored') {
return promiseResolvedWith(undefined);
}
stream._writableStreamController._abortReason = reason;
(_a = stream._writableStreamController._abortController) === null || _a === void 0 ? void 0 : _a.abort(reason);
// TypeScript narrows the type of `stream._state` down to 'writable' | 'erroring',
// but it doesn't know that signaling abort runs author code that might have changed the state.
// Widen the type again by casting to WritableStreamState.
const state = stream._state;
if (state === 'closed' || state === 'errored') {
return promiseResolvedWith(undefined);
}
if (stream._pendingAbortRequest !== undefined) {
return stream._pendingAbortRequest._promise;
}
let wasAlreadyErroring = false;
if (state === 'erroring') {
wasAlreadyErroring = true;
// reason will not be used, so don't keep a reference to it.
reason = undefined;
}
const promise = newPromise((resolve, reject) => {
stream._pendingAbortRequest = {
_promise: undefined,
_resolve: resolve,
_reject: reject,
_reason: reason,
_wasAlreadyErroring: wasAlreadyErroring
};
});
stream._pendingAbortRequest._promise = promise;
if (!wasAlreadyErroring) {
WritableStreamStartErroring(stream, reason);
}
return promise;
}
function WritableStreamClose(stream) {
const state = stream._state;
if (state === 'closed' || state === 'errored') {
return promiseRejectedWith(new TypeError(`The stream (in ${state} state) is not in the writable state and cannot be closed`));
}
const promise = newPromise((resolve, reject) => {
const closeRequest = {
_resolve: resolve,
_reject: reject
};
stream._closeRequest = closeRequest;
});
const writer = stream._writer;
if (writer !== undefined && stream._backpressure && state === 'writable') {
defaultWriterReadyPromiseResolve(writer);
}
WritableStreamDefaultControllerClose(stream._writableStreamController);
return promise;
}
// WritableStream API exposed for controllers.
function WritableStreamAddWriteRequest(stream) {
const promise = newPromise((resolve, reject) => {
const writeRequest = {
_resolve: resolve,
_reject: reject
};
stream._writeRequests.push(writeRequest);
});
return promise;
}
function WritableStreamDealWithRejection(stream, error) {
const state = stream._state;
if (state === 'writable') {
WritableStreamStartErroring(stream, error);
return;
}
WritableStreamFinishErroring(stream);
}
function WritableStreamStartErroring(stream, reason) {
const controller = stream._writableStreamController;
stream._state = 'erroring';
stream._storedError = reason;
const writer = stream._writer;
if (writer !== undefined) {
WritableStreamDefaultWriterEnsureReadyPromiseRejected(writer, reason);
}
if (!WritableStreamHasOperationMarkedInFlight(stream) && controller._started) {
WritableStreamFinishErroring(stream);
}
}
function WritableStreamFinishErroring(stream) {
stream._state = 'errored';
stream._writableStreamController[ErrorSteps]();
const storedError = stream._storedError;
stream._writeRequests.forEach(writeRequest => {
writeRequest._reject(storedError);
});
stream._writeRequests = new SimpleQueue();
if (stream._pendingAbortRequest === undefined) {
WritableStreamRejectCloseAndClosedPromiseIfNeeded(stream);
return;
}
const abortRequest = stream._pendingAbortRequest;
stream._pendingAbortRequest = undefined;
if (abortRequest._wasAlreadyErroring) {
abortRequest._reject(storedError);
WritableStreamRejectCloseAndClosedPromiseIfNeeded(stream);
return;
}
const promise = stream._writableStreamController[AbortSteps](abortRequest._reason);
uponPromise(promise, () => {
abortRequest._resolve();
WritableStreamRejectCloseAndClosedPromiseIfNeeded(stream);
return null;
}, (reason) => {
abortRequest._reject(reason);
WritableStreamRejectCloseAndClosedPromiseIfNeeded(stream);
return null;
});
}
function WritableStreamFinishInFlightWrite(stream) {
stream._inFlightWriteRequest._resolve(undefined);
stream._inFlightWriteRequest = undefined;
}
function WritableStreamFinishInFlightWriteWithError(stream, error) {
stream._inFlightWriteRequest._reject(error);
stream._inFlightWriteRequest = undefined;
WritableStreamDealWithRejection(stream, error);
}
function WritableStreamFinishInFlightClose(stream) {
stream._inFlightCloseRequest._resolve(undefined);
stream._inFlightCloseRequest = undefined;
const state = stream._state;
if (state === 'erroring') {
// The error was too late to do anything, so it is ignored.
stream._storedError = undefined;
if (stream._pendingAbortRequest !== undefined) {
stream._pendingAbortRequest._resolve();
stream._pendingAbortRequest = undefined;
}
}
stream._state = 'closed';
const writer = stream._writer;
if (writer !== undefined) {
defaultWriterClosedPromiseResolve(writer);
}
}
function WritableStreamFinishInFlightCloseWithError(stream, error) {
stream._inFlightCloseRequest._reject(error);
stream._inFlightCloseRequest = undefined;
// Never execute sink abort() after sink close().
if (stream._pendingAbortRequest !== undefined) {
stream._pendingAbortRequest._reject(error);
stream._pendingAbortRequest = undefined;
}
WritableStreamDealWithRejection(stream, error);
}
// TODO(ricea): Fix alphabetical order.
function WritableStreamCloseQueuedOrInFlight(stream) {
if (stream._closeRequest === undefined && stream._inFlightCloseRequest === undefined) {
return false;
}
return true;
}
function WritableStreamHasOperationMarkedInFlight(stream) {
if (stream._inFlightWriteRequest === undefined && stream._inFlightCloseRequest === undefined) {
return false;
}
return true;
}
function WritableStreamMarkCloseRequestInFlight(stream) {
stream._inFlightCloseRequest = stream._closeRequest;
stream._closeRequest = undefined;
}
function WritableStreamMarkFirstWriteRequestInFlight(stream) {
stream._inFlightWriteRequest = stream._writeRequests.shift();
}
function WritableStreamRejectCloseAndClosedPromiseIfNeeded(stream) {
if (stream._closeRequest !== undefined) {
stream._closeRequest._reject(stream._storedError);
stream._closeRequest = undefined;
}
const writer = stream._writer;
if (writer !== undefined) {
defaultWriterClosedPromiseReject(writer, stream._storedError);
}
}
function WritableStreamUpdateBackpressure(stream, backpressure) {
const writer = stream._writer;
if (writer !== undefined && backpressure !== stream._backpressure) {
if (backpressure) {
defaultWriterReadyPromiseReset(writer);
}
else {
defaultWriterReadyPromiseResolve(writer);
}
}
stream._backpressure = backpressure;
}
/**
* A default writer vended by a {@link WritableStream}.
*
* @public
*/
class WritableStreamDefaultWriter {
constructor(stream) {
assertRequiredArgument(stream, 1, 'WritableStreamDefaultWriter');
assertWritableStream(stream, 'First parameter');
if (IsWritableStreamLocked(stream)) {
throw new TypeError('This stream has already been locked for exclusive writing by another writer');
}
this._ownerWritableStream = stream;
stream._writer = this;
const state = stream._state;
if (state === 'writable') {
if (!WritableStreamCloseQueuedOrInFlight(stream) && stream._backpressure) {
defaultWriterReadyPromiseInitialize(this);
}
else {
defaultWriterReadyPromiseInitializeAsResolved(this);
}
defaultWriterClosedPromiseInitialize(this);
}
else if (state === 'erroring') {
defaultWriterReadyPromiseInitializeAsRejected(this, stream._storedError);
defaultWriterClosedPromiseInitialize(this);
}
else if (state === 'closed') {
defaultWriterReadyPromiseInitializeAsResolved(this);
defaultWriterClosedPromiseInitializeAsResolved(this);
}
else {
const storedError = stream._storedError;
defaultWriterReadyPromiseInitializeAsRejected(this, storedError);
defaultWriterClosedPromiseInitializeAsRejected(this, storedError);
}
}
/**
* Returns a promise that will be fulfilled when the stream becomes closed, or rejected if the stream ever errors or
* the writer’s lock is released before the stream finishes closing.
*/
get closed() {
if (!IsWritableStreamDefaultWriter(this)) {
return promiseRejectedWith(defaultWriterBrandCheckException('closed'));
}
return this._closedPromise;
}
/**
* Returns the desired size to fill the stream’s internal queue. It can be negative, if the queue is over-full.
* A producer can use this information to determine the right amount of data to write.
*
* It will be `null` if the stream cannot be successfully written to (due to either being errored, or having an abort
* queued up). It will return zero if the stream is closed. And the getter will throw an exception if invoked when
* the writer’s lock is released.
*/
get desiredSize() {
if (!IsWritableStreamDefaultWriter(this)) {
throw defaultWriterBrandCheckException('desiredSize');
}
if (this._ownerWritableStream === undefined) {
throw defaultWriterLockException('desiredSize');
}
return WritableStreamDefaultWriterGetDesiredSize(this);
}
/**
* Returns a promise that will be fulfilled when the desired size to fill the stream’s internal queue transitions
* from non-positive to positive, signaling that it is no longer applying backpressure. Once the desired size dips
* back to zero or below, the getter will return a new promise that stays pending until the next transition.
*
* If the stream becomes errored or aborted, or the writer’s lock is released, the returned promise will become
* rejected.
*/
get ready() {
if (!IsWritableStreamDefaultWriter(this)) {
return promiseRejectedWith(defaultWriterBrandCheckException('ready'));
}
return this._readyPromise;
}
/**
* If the reader is active, behaves the same as {@link WritableStream.abort | stream.abort(reason)}.
*/
abort(reason = undefined) {
if (!IsWritableStreamDefaultWriter(this)) {
return promiseRejectedWith(defaultWriterBrandCheckException('abort'));
}
if (this._ownerWritableStream === undefined) {
return promiseRejectedWith(defaultWriterLockException('abort'));
}
return WritableStreamDefaultWriterAbort(this, reason);
}
/**
* If the reader is active, behaves the same as {@link WritableStream.close | stream.close()}.
*/
close() {
if (!IsWritableStreamDefaultWriter(this)) {
return promiseRejectedWith(defaultWriterBrandCheckException('close'));
}
const stream = this._ownerWritableStream;
if (stream === undefined) {
return promiseRejectedWith(defaultWriterLockException('close'));
}
if (WritableStreamCloseQueuedOrInFlight(stream)) {
return promiseRejectedWith(new TypeError('Cannot close an already-closing stream'));
}
return WritableStreamDefaultWriterClose(this);
}
/**
* Releases the writer’s lock on the corresponding stream. After the lock is released, the writer is no longer active.
* If the associated stream is errored when the lock is released, the writer will appear errored in the same way from
* now on; otherwise, the writer will appear closed.
*
* Note that the lock can still be released even if some ongoing writes have not yet finished (i.e. even if the
* promises returned from previous calls to {@link WritableStreamDefaultWriter.write | write()} have not yet settled).
* It’s not necessary to hold the lock on the writer for the duration of the write; the lock instead simply prevents
* other producers from writing in an interleaved manner.
*/
releaseLock() {
if (!IsWritableStreamDefaultWriter(this)) {
throw defaultWriterBrandCheckException('releaseLock');
}
const stream = this._ownerWritableStream;
if (stream === undefined) {
return;
}
WritableStreamDefaultWriterRelease(this);
}
write(chunk = undefined) {
if (!IsWritableStreamDefaultWriter(this)) {
return promiseRejectedWith(defaultWriterBrandCheckException('write'));
}
if (this._ownerWritableStream === undefined) {
return promiseRejectedWith(defaultWriterLockException('write to'));
}
return WritableStreamDefaultWriterWrite(this, chunk);
}
}
Object.defineProperties(WritableStreamDefaultWriter.prototype, {
abort: { enumerable: true },
close: { enumerable: true },
releaseLock: { enumerable: true },
write: { enumerable: true },
closed: { enumerable: true },
desiredSize: { enumerable: true },
ready: { enumerable: true }
});
setFunctionName(WritableStreamDefaultWriter.prototype.abort, 'abort');
setFunctionName(WritableStreamDefaultWriter.prototype.close, 'close');
setFunctionName(WritableStreamDefaultWriter.prototype.releaseLock, 'releaseLock');
setFunctionName(WritableStreamDefaultWriter.prototype.write, 'write');
if (typeof Symbol.toStringTag === 'symbol') {
Object.defineProperty(WritableStreamDefaultWriter.prototype, Symbol.toStringTag, {
value: 'WritableStreamDefaultWriter',
configurable: true
});
}
// Abstract operations for the WritableStreamDefaultWriter.
function IsWritableStreamDefaultWriter(x) {
if (!typeIsObject(x)) {
return false;
}
if (!Object.prototype.hasOwnProperty.call(x, '_ownerWritableStream')) {
return false;
}
return x instanceof WritableStreamDefaultWriter;
}
// A client of WritableStreamDefaultWriter may use these functions directly to bypass state check.
function WritableStreamDefaultWriterAbort(writer, reason) {
const stream = writer._ownerWritableStream;
return WritableStreamAbort(stream, reason);
}
function WritableStreamDefaultWriterClose(writer) {
const stream = writer._ownerWritableStream;
return WritableStreamClose(stream);
}
function WritableStreamDefaultWriterCloseWithErrorPropagation(writer) {
const stream = writer._ownerWritableStream;
const state = stream._state;
if (WritableStreamCloseQueuedOrInFlight(stream) || state === 'closed') {
return promiseResolvedWith(undefined);
}
if (state === 'errored') {
return promiseRejectedWith(stream._storedError);
}
return WritableStreamDefaultWriterClose(writer);
}
function WritableStreamDefaultWriterEnsureClosedPromiseRejected(writer, error) {
if (writer._closedPromiseState === 'pending') {
defaultWriterClosedPromiseReject(writer, error);
}
else {
defaultWriterClosedPromiseResetToRejected(writer, error);
}
}
function WritableStreamDefaultWriterEnsureReadyPromiseRejected(writer, error) {
if (writer._readyPromiseState === 'pending') {
defaultWriterReadyPromiseReject(writer, error);
}
else {
defaultWriterReadyPromiseResetToRejected(writer, error);
}
}
function WritableStreamDefaultWriterGetDesiredSize(writer) {
const stream = writer._ownerWritableStream;
const state = stream._state;
if (state === 'errored' || state === 'erroring') {
return null;
}
if (state === 'closed') {
return 0;
}
return WritableStreamDefaultControllerGetDesiredSize(stream._writableStreamController);
}
function WritableStreamDefaultWriterRelease(writer) {
const stream = writer._ownerWritableStream;
const releasedError = new TypeError(`Writer was released and can no longer be used to monitor the stream's closedness`);
WritableStreamDefaultWriterEnsureReadyPromiseRejected(writer, releasedError);
// The state transitions to "errored" before the sink abort() method runs, but the writer.closed promise is not
// rejected until afterwards. This means that simply testing state will not work.
WritableStreamDefaultWriterEnsureClosedPromiseRejected(writer, releasedError);
stream._writer = undefined;
writer._ownerWritableStream = undefined;
}
function WritableStreamDefaultWriterWrite(writer, chunk) {
const stream = writer._ownerWritableStream;
const controller = stream._writableStreamController;
const chunkSize = WritableStreamDefaultControllerGetChunkSize(controller, chunk);
if (stream !== writer._ownerWritableStream) {
return promiseRejectedWith(defaultWriterLockException('write to'));
}
const state = stream._state;
if (state === 'errored') {
return promiseRejectedWith(stream._storedError);
}
if (WritableStreamCloseQueuedOrInFlight(stream) || state === 'closed') {
return promiseRejectedWith(new TypeError('The stream is closing or closed and cannot be written to'));
}
if (state === 'erroring') {
return promiseRejectedWith(stream._storedError);
}
const promise = WritableStreamAddWriteRequest(stream);
WritableStreamDefaultControllerWrite(controller, chunk, chunkSize);
return promise;
}
const closeSentinel = {};
/**
* Allows control of a {@link WritableStream | writable stream}'s state and internal queue.
*
* @public
*/
class WritableStreamDefaultController {
constructor() {
throw new TypeError('Illegal constructor');
}
/**
* The reason which was passed to `WritableStream.abort(reason)` when the stream was aborted.
*
* @deprecated
* This property has been removed from the specification, see https://github.com/whatwg/streams/pull/1177.
* Use {@link WritableStreamDefaultController.signal}'s `reason` instead.
*/
get abortReason() {
if (!IsWritableStreamDefaultController(this)) {
throw defaultControllerBrandCheckException$2('abortReason');
}
return this._abortReason;
}
/**
* An `AbortSignal` that can be used to abort the pending write or close operation when the stream is aborted.
*/
get signal() {
if (!IsWritableStreamDefaultController(this)) {
throw defaultControllerBrandCheckException$2('signal');
}
if (this._abortController === undefined) {
// Older browsers or older Node versions may not support `AbortController` or `AbortSignal`.
// We don't want to bundle and ship an `AbortController` polyfill together with our polyfill,
// so instead we only implement support for `signal` if we find a global `AbortController` constructor.
throw new TypeError('WritableStreamDefaultController.prototype.signal is not supported');
}
return this._abortController.signal;
}
/**
* Closes the controlled writable stream, making all future interactions with it fail with the given error `e`.
*
* This method is rarely used, since usually it suffices to return a rejected promise from one of the underlying
* sink's methods. However, it can be useful for suddenly shutting down a stream in response to an event outside the
* normal lifecycle of interactions with the underlying sink.
*/
error(e = undefined) {
if (!IsWritableStreamDefaultController(this)) {
throw defaultControllerBrandCheckException$2('error');
}
const state = this._controlledWritableStream._state;
if (state !== 'writable') {
// The stream is closed, errored or will be soon. The sink can't do anything useful if it gets an error here, so
// just treat it as a no-op.
return;
}
WritableStreamDefaultControllerError(this, e);
}
/** @internal */
[AbortSteps](reason) {
const result = this._abortAlgorithm(reason);
WritableStreamDefaultControllerClearAlgorithms(this);
return result;
}
/** @internal */
[ErrorSteps]() {
ResetQueue(this);
}
}
Object.defineProperties(WritableStreamDefaultController.prototype, {
abortReason: { enumerable: true },
signal: { enumerable: true },
error: { enumerable: true }
});
if (typeof Symbol.toStringTag === 'symbol') {
Object.defineProperty(WritableStreamDefaultController.prototype, Symbol.toStringTag, {
value: 'WritableStreamDefaultController',
configurable: true
});
}
// Abstract operations implementing interface required by the WritableStream.
function IsWritableStreamDefaultController(x) {
if (!typeIsObject(x)) {
return false;
}
if (!Object.prototype.hasOwnProperty.call(x, '_controlledWritableStream')) {
return false;
}
return x instanceof WritableStreamDefaultController;
}
function SetUpWritableStreamDefaultController(stream, controller, startAlgorithm, writeAlgorithm, closeAlgorithm, abortAlgorithm, highWaterMark, sizeAlgorithm) {
controller._controlledWritableStream = stream;
stream._writableStreamController = controller;
// Need to set the slots so that the assert doesn't fire. In the spec the slots already exist implicitly.
controller._queue = undefined;
controller._queueTotalSize = undefined;
ResetQueue(controller);
controller._abortReason = undefined;
controller._abortController = createAbortController();
controller._started = false;
controller._strategySizeAlgorithm = sizeAlgorithm;
controller._strategyHWM = highWaterMark;
controller._writeAlgorithm = writeAlgorithm;
controller._closeAlgorithm = closeAlgorithm;
controller._abortAlgorithm = abortAlgorithm;
const backpressure = WritableStreamDefaultControllerGetBackpressure(controller);
WritableStreamUpdateBackpressure(stream, backpressure);
const startResult = startAlgorithm();
const startPromise = promiseResolvedWith(startResult);
uponPromise(startPromise, () => {
controller._started = true;
WritableStreamDefaultControllerAdvanceQueueIfNeeded(controller);
return null;
}, r => {
controller._started = true;
WritableStreamDealWithRejection(stream, r);
return null;
});
}
function SetUpWritableStreamDefaultControllerFromUnderlyingSink(stream, underlyingSink, highWaterMark, sizeAlgorithm) {
const controller = Object.create(WritableStreamDefaultController.prototype);
let startAlgorithm;
let writeAlgorithm;
let closeAlgorithm;
let abortAlgorithm;
if (underlyingSink.start !== undefined) {
startAlgorithm = () => underlyingSink.start(controller);
}
else {
startAlgorithm = () => undefined;
}
if (underlyingSink.write !== undefined) {
writeAlgorithm = chunk => underlyingSink.write(chunk, controller);
}
else {
writeAlgorithm = () => promiseResolvedWith(undefined);
}
if (underlyingSink.close !== undefined) {
closeAlgorithm = () => underlyingSink.close();
}
else {
closeAlgorithm = () => promiseResolvedWith(undefined);
}
if (underlyingSink.abort !== undefined) {
abortAlgorithm = reason => underlyingSink.abort(reason);
}
else {
abortAlgorithm = () => promiseResolvedWith(undefined);
}
SetUpWritableStreamDefaultController(stream, controller, startAlgorithm, writeAlgorithm, closeAlgorithm, abortAlgorithm, highWaterMark, sizeAlgorithm);
}
// ClearAlgorithms may be called twice. Erroring the same stream in multiple ways will often result in redundant calls.
function WritableStreamDefaultControllerClearAlgorithms(controller) {
controller._writeAlgorithm = undefined;
controller._closeAlgorithm = undefined;
controller._abortAlgorithm = undefined;
controller._strategySizeAlgorithm = undefined;
}
function WritableStreamDefaultControllerClose(controller) {
EnqueueValueWithSize(controller, closeSentinel, 0);
WritableStreamDefaultControllerAdvanceQueueIfNeeded(controller);
}
function WritableStreamDefaultControllerGetChunkSize(controller, chunk) {
try {
return controller._strategySizeAlgorithm(chunk);
}
catch (chunkSizeE) {
WritableStreamDefaultControllerErrorIfNeeded(controller, chunkSizeE);
return 1;
}
}
function WritableStreamDefaultControllerGetDesiredSize(controller) {
return controller._strategyHWM - controller._queueTotalSize;
}
function WritableStreamDefaultControllerWrite(controller, chunk, chunkSize) {
try {
EnqueueValueWithSize(controller, chunk, chunkSize);
}
catch (enqueueE) {
WritableStreamDefaultControllerErrorIfNeeded(controller, enqueueE);
return;
}
const stream = controller._controlledWritableStream;
if (!WritableStreamCloseQueuedOrInFlight(stream) && stream._state === 'writable') {
const backpressure = WritableStreamDefaultControllerGetBackpressure(controller);
WritableStreamUpdateBackpressure(stream, backpressure);
}
WritableStreamDefaultControllerAdvanceQueueIfNeeded(controller);
}
// Abstract operations for the WritableStreamDefaultController.
function WritableStreamDefaultControllerAdvanceQueueIfNeeded(controller) {
const stream = controller._controlledWritableStream;
if (!controller._started) {
return;
}
if (stream._inFlightWriteRequest !== undefined) {
return;
}
const state = stream._state;
if (state === 'erroring') {
WritableStreamFinishErroring(stream);
return;
}
if (controller._queue.length === 0) {
return;
}
const value = PeekQueueValue(controller);
if (value === closeSentinel) {
WritableStreamDefaultControllerProcessClose(controller);
}
else {
WritableStreamDefaultControllerProcessWrite(controller, value);
}
}
function WritableStreamDefaultControllerErrorIfNeeded(controller, error) {
if (controller._controlledWritableStream._state === 'writable') {
WritableStreamDefaultControllerError(controller, error);
}
}
function WritableStreamDefaultControllerProcessClose(controller) {
const stream = controller._controlledWritableStream;
WritableStreamMarkCloseRequestInFlight(stream);
DequeueValue(controller);
const sinkClosePromise = controller._closeAlgorithm();
WritableStreamDefaultControllerClearAlgorithms(controller);
uponPromise(sinkClosePromise, () => {
WritableStreamFinishInFlightClose(stream);
return null;
}, reason => {
WritableStreamFinishInFlightCloseWithError(stream, reason);
return null;
});
}
function WritableStreamDefaultControllerProcessWrite(controller, chunk) {
const stream = controller._controlledWritableStream;
WritableStreamMarkFirstWriteRequestInFlight(stream);
const sinkWritePromise = controller._writeAlgorithm(chunk);
uponPromise(sinkWritePromise, () => {
WritableStreamFinishInFlightWrite(stream);
const state = stream._state;
DequeueValue(controller);
if (!WritableStreamCloseQueuedOrInFlight(stream) && state === 'writable') {
const backpressure = WritableStreamDefaultControllerGetBackpressure(controller);
WritableStreamUpdateBackpressure(stream, backpressure);
}
WritableStreamDefaultControllerAdvanceQueueIfNeeded(controller);
return null;
}, reason => {
if (stream._state === 'writable') {
WritableStreamDefaultControllerClearAlgorithms(controller);
}
WritableStreamFinishInFlightWriteWithError(stream, reason);
return null;
});
}
function WritableStreamDefaultControllerGetBackpressure(controller) {
const desiredSize = WritableStreamDefaultControllerGetDesiredSize(controller);
return desiredSize <= 0;
}
// A client of WritableStreamDefaultController may use these functions directly to bypass state check.
function WritableStreamDefaultControllerError(controller, error) {
const stream = controller._controlledWritableStream;
WritableStreamDefaultControllerClearAlgorithms(controller);
WritableStreamStartErroring(stream, error);
}
// Helper functions for the WritableStream.
function streamBrandCheckException$2(name) {
return new TypeError(`WritableStream.prototype.${name} can only be used on a WritableStream`);
}
// Helper functions for the WritableStreamDefaultController.
function defaultControllerBrandCheckException$2(name) {
return new TypeError(`WritableStreamDefaultController.prototype.${name} can only be used on a WritableStreamDefaultController`);
}
// Helper functions for the WritableStreamDefaultWriter.
function defaultWriterBrandCheckException(name) {
return new TypeError(`WritableStreamDefaultWriter.prototype.${name} can only be used on a WritableStreamDefaultWriter`);
}
function defaultWriterLockException(name) {
return new TypeError('Cannot ' + name + ' a stream using a released writer');
}
function defaultWriterClosedPromiseInitialize(writer) {
writer._closedPromise = newPromise((resolve, reject) => {
writer._closedPromise_resolve = resolve;
writer._closedPromise_reject = reject;
writer._closedPromiseState = 'pending';
});
}
function defaultWriterClosedPromiseInitializeAsRejected(writer, reason) {
defaultWriterClosedPromiseInitialize(writer);
defaultWriterClosedPromiseReject(writer, reason);
}
function defaultWriterClosedPromiseInitializeAsResolved(writer) {
defaultWriterClosedPromiseInitialize(writer);
defaultWriterClosedPromiseResolve(writer);
}
function defaultWriterClosedPromiseReject(writer, reason) {
if (writer._closedPromise_reject === undefined) {
return;
}
setPromiseIsHandledToTrue(writer._closedPromise);
writer._closedPromise_reject(reason);
writer._closedPromise_resolve = undefined;
writer._closedPromise_reject = undefined;
writer._closedPromiseState = 'rejected';
}
function defaultWriterClosedPromiseResetToRejected(writer, reason) {
defaultWriterClosedPromiseInitializeAsRejected(writer, reason);
}
function defaultWriterClosedPromiseResolve(writer) {
if (writer._closedPromise_resolve === undefined) {
return;
}
writer._closedPromise_resolve(undefined);
writer._closedPromise_resolve = undefined;
writer._closedPromise_reject = undefined;
writer._closedPromiseState = 'resolved';
}
function defaultWriterReadyPromiseInitialize(writer) {
writer._readyPromise = newPromise((resolve, reject) => {
writer._readyPromise_resolve = resolve;
writer._readyPromise_reject = reject;
});
writer._readyPromiseState = 'pending';
}
function defaultWriterReadyPromiseInitializeAsRejected(writer, reason) {
defaultWriterReadyPromiseInitialize(writer);
defaultWriterReadyPromiseReject(writer, reason);
}
function defaultWriterReadyPromiseInitializeAsResolved(writer) {
defaultWriterReadyPromiseInitialize(writer);
defaultWriterReadyPromiseResolve(writer);
}
function defaultWriterReadyPromiseReject(writer, reason) {
if (writer._readyPromise_reject === undefined) {
return;
}
setPromiseIsHandledToTrue(writer._readyPromise);
writer._readyPromise_reject(reason);
writer._readyPromise_resolve = undefined;
writer._readyPromise_reject = undefined;
writer._readyPromiseState = 'rejected';
}
function defaultWriterReadyPromiseReset(writer) {
defaultWriterReadyPromiseInitialize(writer);
}
function defaultWriterReadyPromiseResetToRejected(writer, reason) {
defaultWriterReadyPromiseInitializeAsRejected(writer, reason);
}
function defaultWriterReadyPromiseResolve(writer) {
if (writer._readyPromise_resolve === undefined) {
return;
}
writer._readyPromise_resolve(undefined);
writer._readyPromise_resolve = undefined;
writer._readyPromise_reject = undefined;
writer._readyPromiseState = 'fulfilled';
}
/// <reference lib="dom" />
function getGlobals() {
if (typeof globalThis !== 'undefined') {
return globalThis;
}
else if (typeof self !== 'undefined') {
return self;
}
else if (typeof global !== 'undefined') {
return global;
}
return undefined;
}
const globals = getGlobals();
/// <reference types="node" />
function isDOMExceptionConstructor(ctor) {
if (!(typeof ctor === 'function' || typeof ctor === 'object')) {
return false;
}
if (ctor.name !== 'DOMException') {
return false;
}
try {
new ctor();
return true;
}
catch (_a) {
return false;
}
}
/**
* Support:
* - Web browsers
* - Node 18 and higher (https://github.com/nodejs/node/commit/e4b1fb5e6422c1ff151234bb9de792d45dd88d87)
*/
function getFromGlobal() {
const ctor = globals === null || globals === void 0 ? void 0 : globals.DOMException;
return isDOMExceptionConstructor(ctor) ? ctor : undefined;
}
/**
* Support:
* - All platforms
*/
function createPolyfill() {
// eslint-disable-next-line @typescript-eslint/no-shadow
const ctor = function DOMException(message, name) {
this.message = message || '';
this.name = name || 'Error';
if (Error.captureStackTrace) {
Error.captureStackTrace(this, this.constructor);
}
};
setFunctionName(ctor, 'DOMException');
ctor.prototype = Object.create(Error.prototype);
Object.defineProperty(ctor.prototype, 'constructor', { value: ctor, writable: true, configurable: true });
return ctor;
}
// eslint-disable-next-line @typescript-eslint/no-redeclare
const DOMException = getFromGlobal() || createPolyfill();
function ReadableStreamPipeTo(source, dest, preventClose, preventAbort, preventCancel, signal) {
const reader = AcquireReadableStreamDefaultReader(source);
const writer = AcquireWritableStreamDefaultWriter(dest);
source._disturbed = true;
let shuttingDown = false;
// This is used to keep track of the spec's requirement that we wait for ongoing writes during shutdown.
let currentWrite = promiseResolvedWith(undefined);
return newPromise((resolve, reject) => {
let abortAlgorithm;
if (signal !== undefined) {
abortAlgorithm = () => {
const error = signal.reason !== undefined ? signal.reason : new DOMException('Aborted', 'AbortError');
const actions = [];
if (!preventAbort) {
actions.push(() => {
if (dest._state === 'writable') {
return WritableStreamAbort(dest, error);
}
return promiseResolvedWith(undefined);
});
}
if (!preventCancel) {
actions.push(() => {
if (source._state === 'readable') {
return ReadableStreamCancel(source, error);
}
return promiseResolvedWith(undefined);
});
}
shutdownWithAction(() => Promise.all(actions.map(action => action())), true, error);
};
if (signal.aborted) {
abortAlgorithm();
return;
}
signal.addEventListener('abort', abortAlgorithm);
}
// Using reader and writer, read all chunks from this and write them to dest
// - Backpressure must be enforced
// - Shutdown must stop all activity
function pipeLoop() {
return newPromise((resolveLoop, rejectLoop) => {
function next(done) {
if (done) {
resolveLoop();
}
else {
// Use `PerformPromiseThen` instead of `uponPromise` to avoid
// adding unnecessary `.catch(rethrowAssertionErrorRejection)` handlers
PerformPromiseThen(pipeStep(), next, rejectLoop);
}
}
next(false);
});
}
function pipeStep() {
if (shuttingDown) {
return promiseResolvedWith(true);
}
return PerformPromiseThen(writer._readyPromise, () => {
return newPromise((resolveRead, rejectRead) => {
ReadableStreamDefaultReaderRead(reader, {
_chunkSteps: chunk => {
currentWrite = PerformPromiseThen(WritableStreamDefaultWriterWrite(writer, chunk), undefined, noop);
resolveRead(false);
},
_closeSteps: () => resolveRead(true),
_errorSteps: rejectRead
});
});
});
}
// Errors must be propagated forward
isOrBecomesErrored(source, reader._closedPromise, storedError => {
if (!preventAbort) {
shutdownWithAction(() => WritableStreamAbort(dest, storedError), true, storedError);
}
else {
shutdown(true, storedError);
}
return null;
});
// Errors must be propagated backward
isOrBecomesErrored(dest, writer._closedPromise, storedError => {
if (!preventCancel) {
shutdownWithAction(() => ReadableStreamCancel(source, storedError), true, storedError);
}
else {
shutdown(true, storedError);
}
return null;
});
// Closing must be propagated forward
isOrBecomesClosed(source, reader._closedPromise, () => {
if (!preventClose) {
shutdownWithAction(() => WritableStreamDefaultWriterCloseWithErrorPropagation(writer));
}
else {
shutdown();
}
return null;
});
// Closing must be propagated backward
if (WritableStreamCloseQueuedOrInFlight(dest) || dest._state === 'closed') {
const destClosed = new TypeError('the destination writable stream closed before all data could be piped to it');
if (!preventCancel) {
shutdownWithAction(() => ReadableStreamCancel(source, destClosed), true, destClosed);
}
else {
shutdown(true, destClosed);
}
}
setPromiseIsHandledToTrue(pipeLoop());
function waitForWritesToFinish() {
// Another write may have started while we were waiting on this currentWrite, so we have to be sure to wait
// for that too.
const oldCurrentWrite = currentWrite;
return PerformPromiseThen(currentWrite, () => oldCurrentWrite !== currentWrite ? waitForWritesToFinish() : undefined);
}
function isOrBecomesErrored(stream, promise, action) {
if (stream._state === 'errored') {
action(stream._storedError);
}
else {
uponRejection(promise, action);
}
}
function isOrBecomesClosed(stream, promise, action) {
if (stream._state === 'closed') {
action();
}
else {
uponFulfillment(promise, action);
}
}
function shutdownWithAction(action, originalIsError, originalError) {
if (shuttingDown) {
return;
}
shuttingDown = true;
if (dest._state === 'writable' && !WritableStreamCloseQueuedOrInFlight(dest)) {
uponFulfillment(waitForWritesToFinish(), doTheRest);
}
else {
doTheRest();
}
function doTheRest() {
uponPromise(action(), () => finalize(originalIsError, originalError), newError => finalize(true, newError));
return null;
}
}
function shutdown(isError, error) {
if (shuttingDown) {
return;
}
shuttingDown = true;
if (dest._state === 'writable' && !WritableStreamCloseQueuedOrInFlight(dest)) {
uponFulfillment(waitForWritesToFinish(), () => finalize(isError, error));
}
else {
finalize(isError, error);
}
}
function finalize(isError, error) {
WritableStreamDefaultWriterRelease(writer);
ReadableStreamReaderGenericRelease(reader);
if (signal !== undefined) {
signal.removeEventListener('abort', abortAlgorithm);
}
if (isError) {
reject(error);
}
else {
resolve(undefined);
}
return null;
}
});
}
/**
* Allows control of a {@link ReadableStream | readable stream}'s state and internal queue.
*
* @public
*/
class ReadableStreamDefaultController {
constructor() {
throw new TypeError('Illegal constructor');
}
/**
* Returns the desired size to fill the controlled stream's internal queue. It can be negative, if the queue is
* over-full. An underlying source ought to use this information to determine when and how to apply backpressure.
*/
get desiredSize() {
if (!IsReadableStreamDefaultController(this)) {
throw defaultControllerBrandCheckException$1('desiredSize');
}
return ReadableStreamDefaultControllerGetDesiredSize(this);
}
/**
* Closes the controlled readable stream. Consumers will still be able to read any previously-enqueued chunks from
* the stream, but once those are read, the stream will become closed.
*/
close() {
if (!IsReadableStreamDefaultController(this)) {
throw defaultControllerBrandCheckException$1('close');
}
if (!ReadableStreamDefaultControllerCanCloseOrEnqueue(this)) {
throw new TypeError('The stream is not in a state that permits close');
}
ReadableStreamDefaultControllerClose(this);
}
enqueue(chunk = undefined) {
if (!IsReadableStreamDefaultController(this)) {
throw defaultControllerBrandCheckException$1('enqueue');
}
if (!ReadableStreamDefaultControllerCanCloseOrEnqueue(this)) {
throw new TypeError('The stream is not in a state that permits enqueue');
}
return ReadableStreamDefaultControllerEnqueue(this, chunk);
}
/**
* Errors the controlled readable stream, making all future interactions with it fail with the given error `e`.
*/
error(e = undefined) {
if (!IsReadableStreamDefaultController(this)) {
throw defaultControllerBrandCheckException$1('error');
}
ReadableStreamDefaultControllerError(this, e);
}
/** @internal */
[CancelSteps](reason) {
ResetQueue(this);
const result = this._cancelAlgorithm(reason);
ReadableStreamDefaultControllerClearAlgorithms(this);
return result;
}
/** @internal */
[PullSteps](readRequest) {
const stream = this._controlledReadableStream;
if (this._queue.length > 0) {
const chunk = DequeueValue(this);
if (this._closeRequested && this._queue.length === 0) {
ReadableStreamDefaultControllerClearAlgorithms(this);
ReadableStreamClose(stream);
}
else {
ReadableStreamDefaultControllerCallPullIfNeeded(this);
}
readRequest._chunkSteps(chunk);
}
else {
ReadableStreamAddReadRequest(stream, readRequest);
ReadableStreamDefaultControllerCallPullIfNeeded(this);
}
}
/** @internal */
[ReleaseSteps]() {
// Do nothing.
}
}
Object.defineProperties(ReadableStreamDefaultController.prototype, {
close: { enumerable: true },
enqueue: { enumerable: true },
error: { enumerable: true },
desiredSize: { enumerable: true }
});
setFunctionName(ReadableStreamDefaultController.prototype.close, 'close');
setFunctionName(ReadableStreamDefaultController.prototype.enqueue, 'enqueue');
setFunctionName(ReadableStreamDefaultController.prototype.error, 'error');
if (typeof Symbol.toStringTag === 'symbol') {
Object.defineProperty(ReadableStreamDefaultController.prototype, Symbol.toStringTag, {
value: 'ReadableStreamDefaultController',
configurable: true
});
}
// Abstract operations for the ReadableStreamDefaultController.
function IsReadableStreamDefaultController(x) {
if (!typeIsObject(x)) {
return false;
}
if (!Object.prototype.hasOwnProperty.call(x, '_controlledReadableStream')) {
return false;
}
return x instanceof ReadableStreamDefaultController;
}
function ReadableStreamDefaultControllerCallPullIfNeeded(controller) {
const shouldPull = ReadableStreamDefaultControllerShouldCallPull(controller);
if (!shouldPull) {
return;
}
if (controller._pulling) {
controller._pullAgain = true;
return;
}
controller._pulling = true;
const pullPromise = controller._pullAlgorithm();
uponPromise(pullPromise, () => {
controller._pulling = false;
if (controller._pullAgain) {
controller._pullAgain = false;
ReadableStreamDefaultControllerCallPullIfNeeded(controller);
}
return null;
}, e => {
ReadableStreamDefaultControllerError(controller, e);
return null;
});
}
function ReadableStreamDefaultControllerShouldCallPull(controller) {
const stream = controller._controlledReadableStream;
if (!ReadableStreamDefaultControllerCanCloseOrEnqueue(controller)) {
return false;
}
if (!controller._started) {
return false;
}
if (IsReadableStreamLocked(stream) && ReadableStreamGetNumReadRequests(stream) > 0) {
return true;
}
const desiredSize = ReadableStreamDefaultControllerGetDesiredSize(controller);
if (desiredSize > 0) {
return true;
}
return false;
}
function ReadableStreamDefaultControllerClearAlgorithms(controller) {
controller._pullAlgorithm = undefined;
controller._cancelAlgorithm = undefined;
controller._strategySizeAlgorithm = undefined;
}
// A client of ReadableStreamDefaultController may use these functions directly to bypass state check.
function ReadableStreamDefaultControllerClose(controller) {
if (!ReadableStreamDefaultControllerCanCloseOrEnqueue(controller)) {
return;
}
const stream = controller._controlledReadableStream;
controller._closeRequested = true;
if (controller._queue.length === 0) {
ReadableStreamDefaultControllerClearAlgorithms(controller);
ReadableStreamClose(stream);
}
}
function ReadableStreamDefaultControllerEnqueue(controller, chunk) {
if (!ReadableStreamDefaultControllerCanCloseOrEnqueue(controller)) {
return;
}
const stream = controller._controlledReadableStream;
if (IsReadableStreamLocked(stream) && ReadableStreamGetNumReadRequests(stream) > 0) {
ReadableStreamFulfillReadRequest(stream, chunk, false);
}
else {
let chunkSize;
try {
chunkSize = controller._strategySizeAlgorithm(chunk);
}
catch (chunkSizeE) {
ReadableStreamDefaultControllerError(controller, chunkSizeE);
throw chunkSizeE;
}
try {
EnqueueValueWithSize(controller, chunk, chunkSize);
}
catch (enqueueE) {
ReadableStreamDefaultControllerError(controller, enqueueE);
throw enqueueE;
}
}
ReadableStreamDefaultControllerCallPullIfNeeded(controller);
}
function ReadableStreamDefaultControllerError(controller, e) {
const stream = controller._controlledReadableStream;
if (stream._state !== 'readable') {
return;
}
ResetQueue(controller);
ReadableStreamDefaultControllerClearAlgorithms(controller);
ReadableStreamError(stream, e);
}
function ReadableStreamDefaultControllerGetDesiredSize(controller) {
const state = controller._controlledReadableStream._state;
if (state === 'errored') {
return null;
}
if (state === 'closed') {
return 0;
}
return controller._strategyHWM - controller._queueTotalSize;
}
// This is used in the implementation of TransformStream.
function ReadableStreamDefaultControllerHasBackpressure(controller) {
if (ReadableStreamDefaultControllerShouldCallPull(controller)) {
return false;
}
return true;
}
function ReadableStreamDefaultControllerCanCloseOrEnqueue(controller) {
const state = controller._controlledReadableStream._state;
if (!controller._closeRequested && state === 'readable') {
return true;
}
return false;
}
function SetUpReadableStreamDefaultController(stream, controller, startAlgorithm, pullAlgorithm, cancelAlgorithm, highWaterMark, sizeAlgorithm) {
controller._controlledReadableStream = stream;
controller._queue = undefined;
controller._queueTotalSize = undefined;
ResetQueue(controller);
controller._started = false;
controller._closeRequested = false;
controller._pullAgain = false;
controller._pulling = false;
controller._strategySizeAlgorithm = sizeAlgorithm;
controller._strategyHWM = highWaterMark;
controller._pullAlgorithm = pullAlgorithm;
controller._cancelAlgorithm = cancelAlgorithm;
stream._readableStreamController = controller;
const startResult = startAlgorithm();
uponPromise(promiseResolvedWith(startResult), () => {
controller._started = true;
ReadableStreamDefaultControllerCallPullIfNeeded(controller);
return null;
}, r => {
ReadableStreamDefaultControllerError(controller, r);
return null;
});
}
function SetUpReadableStreamDefaultControllerFromUnderlyingSource(stream, underlyingSource, highWaterMark, sizeAlgorithm) {
const controller = Object.create(ReadableStreamDefaultController.prototype);
let startAlgorithm;
let pullAlgorithm;
let cancelAlgorithm;
if (underlyingSource.start !== undefined) {
startAlgorithm = () => underlyingSource.start(controller);
}
else {
startAlgorithm = () => undefined;
}
if (underlyingSource.pull !== undefined) {
pullAlgorithm = () => underlyingSource.pull(controller);
}
else {
pullAlgorithm = () => promiseResolvedWith(undefined);
}
if (underlyingSource.cancel !== undefined) {
cancelAlgorithm = reason => underlyingSource.cancel(reason);
}
else {
cancelAlgorithm = () => promiseResolvedWith(undefined);
}
SetUpReadableStreamDefaultController(stream, controller, startAlgorithm, pullAlgorithm, cancelAlgorithm, highWaterMark, sizeAlgorithm);
}
// Helper functions for the ReadableStreamDefaultController.
function defaultControllerBrandCheckException$1(name) {
return new TypeError(`ReadableStreamDefaultController.prototype.${name} can only be used on a ReadableStreamDefaultController`);
}
function ReadableStreamTee(stream, cloneForBranch2) {
if (IsReadableByteStreamController(stream._readableStreamController)) {
return ReadableByteStreamTee(stream);
}
return ReadableStreamDefaultTee(stream);
}
function ReadableStreamDefaultTee(stream, cloneForBranch2) {
const reader = AcquireReadableStreamDefaultReader(stream);
let reading = false;
let readAgain = false;
let canceled1 = false;
let canceled2 = false;
let reason1;
let reason2;
let branch1;
let branch2;
let resolveCancelPromise;
const cancelPromise = newPromise(resolve => {
resolveCancelPromise = resolve;
});
function pullAlgorithm() {
if (reading) {
readAgain = true;
return promiseResolvedWith(undefined);
}
reading = true;
const readRequest = {
_chunkSteps: chunk => {
// This needs to be delayed a microtask because it takes at least a microtask to detect errors (using
// reader._closedPromise below), and we want errors in stream to error both branches immediately. We cannot let
// successful synchronously-available reads get ahead of asynchronously-available errors.
_queueMicrotask(() => {
readAgain = false;
const chunk1 = chunk;
const chunk2 = chunk;
// There is no way to access the cloning code right now in the reference implementation.
// If we add one then we'll need an implementation for serializable objects.
// if (!canceled2 && cloneForBranch2) {
// chunk2 = StructuredDeserialize(StructuredSerialize(chunk2));
// }
if (!canceled1) {
ReadableStreamDefaultControllerEnqueue(branch1._readableStreamController, chunk1);
}
if (!canceled2) {
ReadableStreamDefaultControllerEnqueue(branch2._readableStreamController, chunk2);
}
reading = false;
if (readAgain) {
pullAlgorithm();
}
});
},
_closeSteps: () => {
reading = false;
if (!canceled1) {
ReadableStreamDefaultControllerClose(branch1._readableStreamController);
}
if (!canceled2) {
ReadableStreamDefaultControllerClose(branch2._readableStreamController);
}
if (!canceled1 || !canceled2) {
resolveCancelPromise(undefined);
}
},
_errorSteps: () => {
reading = false;
}
};
ReadableStreamDefaultReaderRead(reader, readRequest);
return promiseResolvedWith(undefined);
}
function cancel1Algorithm(reason) {
canceled1 = true;
reason1 = reason;
if (canceled2) {
const compositeReason = CreateArrayFromList([reason1, reason2]);
const cancelResult = ReadableStreamCancel(stream, compositeReason);
resolveCancelPromise(cancelResult);
}
return cancelPromise;
}
function cancel2Algorithm(reason) {
canceled2 = true;
reason2 = reason;
if (canceled1) {
const compositeReason = CreateArrayFromList([reason1, reason2]);
const cancelResult = ReadableStreamCancel(stream, compositeReason);
resolveCancelPromise(cancelResult);
}
return cancelPromise;
}
function startAlgorithm() {
// do nothing
}
branch1 = CreateReadableStream(startAlgorithm, pullAlgorithm, cancel1Algorithm);
branch2 = CreateReadableStream(startAlgorithm, pullAlgorithm, cancel2Algorithm);
uponRejection(reader._closedPromise, (r) => {
ReadableStreamDefaultControllerError(branch1._readableStreamController, r);
ReadableStreamDefaultControllerError(branch2._readableStreamController, r);
if (!canceled1 || !canceled2) {
resolveCancelPromise(undefined);
}
return null;
});
return [branch1, branch2];
}
function ReadableByteStreamTee(stream) {
let reader = AcquireReadableStreamDefaultReader(stream);
let reading = false;
let readAgainForBranch1 = false;
let readAgainForBranch2 = false;
let canceled1 = false;
let canceled2 = false;
let reason1;
let reason2;
let branch1;
let branch2;
let resolveCancelPromise;
const cancelPromise = newPromise(resolve => {
resolveCancelPromise = resolve;
});
function forwardReaderError(thisReader) {
uponRejection(thisReader._closedPromise, r => {
if (thisReader !== reader) {
return null;
}
ReadableByteStreamControllerError(branch1._readableStreamController, r);
ReadableByteStreamControllerError(branch2._readableStreamController, r);
if (!canceled1 || !canceled2) {
resolveCancelPromise(undefined);
}
return null;
});
}
function pullWithDefaultReader() {
if (IsReadableStreamBYOBReader(reader)) {
ReadableStreamReaderGenericRelease(reader);
reader = AcquireReadableStreamDefaultReader(stream);
forwardReaderError(reader);
}
const readRequest = {
_chunkSteps: chunk => {
// This needs to be delayed a microtask because it takes at least a microtask to detect errors (using
// reader._closedPromise below), and we want errors in stream to error both branches immediately. We cannot let
// successful synchronously-available reads get ahead of asynchronously-available errors.
_queueMicrotask(() => {
readAgainForBranch1 = false;
readAgainForBranch2 = false;
const chunk1 = chunk;
let chunk2 = chunk;
if (!canceled1 && !canceled2) {
try {
chunk2 = CloneAsUint8Array(chunk);
}
catch (cloneE) {
ReadableByteStreamControllerError(branch1._readableStreamController, cloneE);
ReadableByteStreamControllerError(branch2._readableStreamController, cloneE);
resolveCancelPromise(ReadableStreamCancel(stream, cloneE));
return;
}
}
if (!canceled1) {
ReadableByteStreamControllerEnqueue(branch1._readableStreamController, chunk1);
}
if (!canceled2) {
ReadableByteStreamControllerEnqueue(branch2._readableStreamController, chunk2);
}
reading = false;
if (readAgainForBranch1) {
pull1Algorithm();
}
else if (readAgainForBranch2) {
pull2Algorithm();
}
});
},
_closeSteps: () => {
reading = false;
if (!canceled1) {
ReadableByteStreamControllerClose(branch1._readableStreamController);
}
if (!canceled2) {
ReadableByteStreamControllerClose(branch2._readableStreamController);
}
if (branch1._readableStreamController._pendingPullIntos.length > 0) {
ReadableByteStreamControllerRespond(branch1._readableStreamController, 0);
}
if (branch2._readableStreamController._pendingPullIntos.length > 0) {
ReadableByteStreamControllerRespond(branch2._readableStreamController, 0);
}
if (!canceled1 || !canceled2) {
resolveCancelPromise(undefined);
}
},
_errorSteps: () => {
reading = false;
}
};
ReadableStreamDefaultReaderRead(reader, readRequest);
}
function pullWithBYOBReader(view, forBranch2) {
if (IsReadableStreamDefaultReader(reader)) {
ReadableStreamReaderGenericRelease(reader);
reader = AcquireReadableStreamBYOBReader(stream);
forwardReaderError(reader);
}
const byobBranch = forBranch2 ? branch2 : branch1;
const otherBranch = forBranch2 ? branch1 : branch2;
const readIntoRequest = {
_chunkSteps: chunk => {
// This needs to be delayed a microtask because it takes at least a microtask to detect errors (using
// reader._closedPromise below), and we want errors in stream to error both branches immediately. We cannot let
// successful synchronously-available reads get ahead of asynchronously-available errors.
_queueMicrotask(() => {
readAgainForBranch1 = false;
readAgainForBranch2 = false;
const byobCanceled = forBranch2 ? canceled2 : canceled1;
const otherCanceled = forBranch2 ? canceled1 : canceled2;
if (!otherCanceled) {
let clonedChunk;
try {
clonedChunk = CloneAsUint8Array(chunk);
}
catch (cloneE) {
ReadableByteStreamControllerError(byobBranch._readableStreamController, cloneE);
ReadableByteStreamControllerError(otherBranch._readableStreamController, cloneE);
resolveCancelPromise(ReadableStreamCancel(stream, cloneE));
return;
}
if (!byobCanceled) {
ReadableByteStreamControllerRespondWithNewView(byobBranch._readableStreamController, chunk);
}
ReadableByteStreamControllerEnqueue(otherBranch._readableStreamController, clonedChunk);
}
else if (!byobCanceled) {
ReadableByteStreamControllerRespondWithNewView(byobBranch._readableStreamController, chunk);
}
reading = false;
if (readAgainForBranch1) {
pull1Algorithm();
}
else if (readAgainForBranch2) {
pull2Algorithm();
}
});
},
_closeSteps: chunk => {
reading = false;
const byobCanceled = forBranch2 ? canceled2 : canceled1;
const otherCanceled = forBranch2 ? canceled1 : canceled2;
if (!byobCanceled) {
ReadableByteStreamControllerClose(byobBranch._readableStreamController);
}
if (!otherCanceled) {
ReadableByteStreamControllerClose(otherBranch._readableStreamController);
}
if (chunk !== undefined) {
if (!byobCanceled) {
ReadableByteStreamControllerRespondWithNewView(byobBranch._readableStreamController, chunk);
}
if (!otherCanceled && otherBranch._readableStreamController._pendingPullIntos.length > 0) {
ReadableByteStreamControllerRespond(otherBranch._readableStreamController, 0);
}
}
if (!byobCanceled || !otherCanceled) {
resolveCancelPromise(undefined);
}
},
_errorSteps: () => {
reading = false;
}
};
ReadableStreamBYOBReaderRead(reader, view, 1, readIntoRequest);
}
function pull1Algorithm() {
if (reading) {
readAgainForBranch1 = true;
return promiseResolvedWith(undefined);
}
reading = true;
const byobRequest = ReadableByteStreamControllerGetBYOBRequest(branch1._readableStreamController);
if (byobRequest === null) {
pullWithDefaultReader();
}
else {
pullWithBYOBReader(byobRequest._view, false);
}
return promiseResolvedWith(undefined);
}
function pull2Algorithm() {
if (reading) {
readAgainForBranch2 = true;
return promiseResolvedWith(undefined);
}
reading = true;
const byobRequest = ReadableByteStreamControllerGetBYOBRequest(branch2._readableStreamController);
if (byobRequest === null) {
pullWithDefaultReader();
}
else {
pullWithBYOBReader(byobRequest._view, true);
}
return promiseResolvedWith(undefined);
}
function cancel1Algorithm(reason) {
canceled1 = true;
reason1 = reason;
if (canceled2) {
const compositeReason = CreateArrayFromList([reason1, reason2]);
const cancelResult = ReadableStreamCancel(stream, compositeReason);
resolveCancelPromise(cancelResult);
}
return cancelPromise;
}
function cancel2Algorithm(reason) {
canceled2 = true;
reason2 = reason;
if (canceled1) {
const compositeReason = CreateArrayFromList([reason1, reason2]);
const cancelResult = ReadableStreamCancel(stream, compositeReason);
resolveCancelPromise(cancelResult);
}
return cancelPromise;
}
function startAlgorithm() {
return;
}
branch1 = CreateReadableByteStream(startAlgorithm, pull1Algorithm, cancel1Algorithm);
branch2 = CreateReadableByteStream(startAlgorithm, pull2Algorithm, cancel2Algorithm);
forwardReaderError(reader);
return [branch1, branch2];
}
function isReadableStreamLike(stream) {
return typeIsObject(stream) && typeof stream.getReader !== 'undefined';
}
function ReadableStreamFrom(source) {
if (isReadableStreamLike(source)) {
return ReadableStreamFromDefaultReader(source.getReader());
}
return ReadableStreamFromIterable(source);
}
function ReadableStreamFromIterable(asyncIterable) {
let stream;
const iteratorRecord = GetIterator(asyncIterable, 'async');
const startAlgorithm = noop;
function pullAlgorithm() {
let nextResult;
try {
nextResult = IteratorNext(iteratorRecord);
}
catch (e) {
return promiseRejectedWith(e);
}
const nextPromise = promiseResolvedWith(nextResult);
return transformPromiseWith(nextPromise, iterResult => {
if (!typeIsObject(iterResult)) {
throw new TypeError('The promise returned by the iterator.next() method must fulfill with an object');
}
const done = IteratorComplete(iterResult);
if (done) {
ReadableStreamDefaultControllerClose(stream._readableStreamController);
}
else {
const value = IteratorValue(iterResult);
ReadableStreamDefaultControllerEnqueue(stream._readableStreamController, value);
}
});
}
function cancelAlgorithm(reason) {
const iterator = iteratorRecord.iterator;
let returnMethod;
try {
returnMethod = GetMethod(iterator, 'return');
}
catch (e) {
return promiseRejectedWith(e);
}
if (returnMethod === undefined) {
return promiseResolvedWith(undefined);
}
let returnResult;
try {
returnResult = reflectCall(returnMethod, iterator, [reason]);
}
catch (e) {
return promiseRejectedWith(e);
}
const returnPromise = promiseResolvedWith(returnResult);
return transformPromiseWith(returnPromise, iterResult => {
if (!typeIsObject(iterResult)) {
throw new TypeError('The promise returned by the iterator.return() method must fulfill with an object');
}
return undefined;
});
}
stream = CreateReadableStream(startAlgorithm, pullAlgorithm, cancelAlgorithm, 0);
return stream;
}
function ReadableStreamFromDefaultReader(reader) {
let stream;
const startAlgorithm = noop;
function pullAlgorithm() {
let readPromise;
try {
readPromise = reader.read();
}
catch (e) {
return promiseRejectedWith(e);
}
return transformPromiseWith(readPromise, readResult => {
if (!typeIsObject(readResult)) {
throw new TypeError('The promise returned by the reader.read() method must fulfill with an object');
}
if (readResult.done) {
ReadableStreamDefaultControllerClose(stream._readableStreamController);
}
else {
const value = readResult.value;
ReadableStreamDefaultControllerEnqueue(stream._readableStreamController, value);
}
});
}
function cancelAlgorithm(reason) {
try {
return promiseResolvedWith(reader.cancel(reason));
}
catch (e) {
return promiseRejectedWith(e);
}
}
stream = CreateReadableStream(startAlgorithm, pullAlgorithm, cancelAlgorithm, 0);
return stream;
}
function convertUnderlyingDefaultOrByteSource(source, context) {
assertDictionary(source, context);
const original = source;
const autoAllocateChunkSize = original === null || original === void 0 ? void 0 : original.autoAllocateChunkSize;
const cancel = original === null || original === void 0 ? void 0 : original.cancel;
const pull = original === null || original === void 0 ? void 0 : original.pull;
const start = original === null || original === void 0 ? void 0 : original.start;
const type = original === null || original === void 0 ? void 0 : original.type;
return {
autoAllocateChunkSize: autoAllocateChunkSize === undefined ?
undefined :
convertUnsignedLongLongWithEnforceRange(autoAllocateChunkSize, `${context} has member 'autoAllocateChunkSize' that`),
cancel: cancel === undefined ?
undefined :
convertUnderlyingSourceCancelCallback(cancel, original, `${context} has member 'cancel' that`),
pull: pull === undefined ?
undefined :
convertUnderlyingSourcePullCallback(pull, original, `${context} has member 'pull' that`),
start: start === undefined ?
undefined :
convertUnderlyingSourceStartCallback(start, original, `${context} has member 'start' that`),
type: type === undefined ? undefined : convertReadableStreamType(type, `${context} has member 'type' that`)
};
}
function convertUnderlyingSourceCancelCallback(fn, original, context) {
assertFunction(fn, context);
return (reason) => promiseCall(fn, original, [reason]);
}
function convertUnderlyingSourcePullCallback(fn, original, context) {
assertFunction(fn, context);
return (controller) => promiseCall(fn, original, [controller]);
}
function convertUnderlyingSourceStartCallback(fn, original, context) {
assertFunction(fn, context);
return (controller) => reflectCall(fn, original, [controller]);
}
function convertReadableStreamType(type, context) {
type = `${type}`;
if (type !== 'bytes') {
throw new TypeError(`${context} '${type}' is not a valid enumeration value for ReadableStreamType`);
}
return type;
}
function convertIteratorOptions(options, context) {
assertDictionary(options, context);
const preventCancel = options === null || options === void 0 ? void 0 : options.preventCancel;
return { preventCancel: Boolean(preventCancel) };
}
function convertPipeOptions(options, context) {
assertDictionary(options, context);
const preventAbort = options === null || options === void 0 ? void 0 : options.preventAbort;
const preventCancel = options === null || options === void 0 ? void 0 : options.preventCancel;
const preventClose = options === null || options === void 0 ? void 0 : options.preventClose;
const signal = options === null || options === void 0 ? void 0 : options.signal;
if (signal !== undefined) {
assertAbortSignal(signal, `${context} has member 'signal' that`);
}
return {
preventAbort: Boolean(preventAbort),
preventCancel: Boolean(preventCancel),
preventClose: Boolean(preventClose),
signal
};
}
function assertAbortSignal(signal, context) {
if (!isAbortSignal(signal)) {
throw new TypeError(`${context} is not an AbortSignal.`);
}
}
function convertReadableWritablePair(pair, context) {
assertDictionary(pair, context);
const readable = pair === null || pair === void 0 ? void 0 : pair.readable;
assertRequiredField(readable, 'readable', 'ReadableWritablePair');
assertReadableStream(readable, `${context} has member 'readable' that`);
const writable = pair === null || pair === void 0 ? void 0 : pair.writable;
assertRequiredField(writable, 'writable', 'ReadableWritablePair');
assertWritableStream(writable, `${context} has member 'writable' that`);
return { readable, writable };
}
/**
* A readable stream represents a source of data, from which you can read.
*
* @public
*/
class ReadableStream {
constructor(rawUnderlyingSource = {}, rawStrategy = {}) {
if (rawUnderlyingSource === undefined) {
rawUnderlyingSource = null;
}
else {
assertObject(rawUnderlyingSource, 'First parameter');
}
const strategy = convertQueuingStrategy(rawStrategy, 'Second parameter');
const underlyingSource = convertUnderlyingDefaultOrByteSource(rawUnderlyingSource, 'First parameter');
InitializeReadableStream(this);
if (underlyingSource.type === 'bytes') {
if (strategy.size !== undefined) {
throw new RangeError('The strategy for a byte stream cannot have a size function');
}
const highWaterMark = ExtractHighWaterMark(strategy, 0);
SetUpReadableByteStreamControllerFromUnderlyingSource(this, underlyingSource, highWaterMark);
}
else {
const sizeAlgorithm = ExtractSizeAlgorithm(strategy);
const highWaterMark = ExtractHighWaterMark(strategy, 1);
SetUpReadableStreamDefaultControllerFromUnderlyingSource(this, underlyingSource, highWaterMark, sizeAlgorithm);
}
}
/**
* Whether or not the readable stream is locked to a {@link ReadableStreamDefaultReader | reader}.
*/
get locked() {
if (!IsReadableStream(this)) {
throw streamBrandCheckException$1('locked');
}
return IsReadableStreamLocked(this);
}
/**
* Cancels the stream, signaling a loss of interest in the stream by a consumer.
*
* The supplied `reason` argument will be given to the underlying source's {@link UnderlyingSource.cancel | cancel()}
* method, which might or might not use it.
*/
cancel(reason = undefined) {
if (!IsReadableStream(this)) {
return promiseRejectedWith(streamBrandCheckException$1('cancel'));
}
if (IsReadableStreamLocked(this)) {
return promiseRejectedWith(new TypeError('Cannot cancel a stream that already has a reader'));
}
return ReadableStreamCancel(this, reason);
}
getReader(rawOptions = undefined) {
if (!IsReadableStream(this)) {
throw streamBrandCheckException$1('getReader');
}
const options = convertReaderOptions(rawOptions, 'First parameter');
if (options.mode === undefined) {
return AcquireReadableStreamDefaultReader(this);
}
return AcquireReadableStreamBYOBReader(this);
}
pipeThrough(rawTransform, rawOptions = {}) {
if (!IsReadableStream(this)) {
throw streamBrandCheckException$1('pipeThrough');
}
assertRequiredArgument(rawTransform, 1, 'pipeThrough');
const transform = convertReadableWritablePair(rawTransform, 'First parameter');
const options = convertPipeOptions(rawOptions, 'Second parameter');
if (IsReadableStreamLocked(this)) {
throw new TypeError('ReadableStream.prototype.pipeThrough cannot be used on a locked ReadableStream');
}
if (IsWritableStreamLocked(transform.writable)) {
throw new TypeError('ReadableStream.prototype.pipeThrough cannot be used on a locked WritableStream');
}
const promise = ReadableStreamPipeTo(this, transform.writable, options.preventClose, options.preventAbort, options.preventCancel, options.signal);
setPromiseIsHandledToTrue(promise);
return transform.readable;
}
pipeTo(destination, rawOptions = {}) {
if (!IsReadableStream(this)) {
return promiseRejectedWith(streamBrandCheckException$1('pipeTo'));
}
if (destination === undefined) {
return promiseRejectedWith(`Parameter 1 is required in 'pipeTo'.`);
}
if (!IsWritableStream(destination)) {
return promiseRejectedWith(new TypeError(`ReadableStream.prototype.pipeTo's first argument must be a WritableStream`));
}
let options;
try {
options = convertPipeOptions(rawOptions, 'Second parameter');
}
catch (e) {
return promiseRejectedWith(e);
}
if (IsReadableStreamLocked(this)) {
return promiseRejectedWith(new TypeError('ReadableStream.prototype.pipeTo cannot be used on a locked ReadableStream'));
}
if (IsWritableStreamLocked(destination)) {
return promiseRejectedWith(new TypeError('ReadableStream.prototype.pipeTo cannot be used on a locked WritableStream'));
}
return ReadableStreamPipeTo(this, destination, options.preventClose, options.preventAbort, options.preventCancel, options.signal);
}
/**
* Tees this readable stream, returning a two-element array containing the two resulting branches as
* new {@link ReadableStream} instances.
*
* Teeing a stream will lock it, preventing any other consumer from acquiring a reader.
* To cancel the stream, cancel both of the resulting branches; a composite cancellation reason will then be
* propagated to the stream's underlying source.
*
* Note that the chunks seen in each branch will be the same object. If the chunks are not immutable,
* this could allow interference between the two branches.
*/
tee() {
if (!IsReadableStream(this)) {
throw streamBrandCheckException$1('tee');
}
const branches = ReadableStreamTee(this);
return CreateArrayFromList(branches);
}
values(rawOptions = undefined) {
if (!IsReadableStream(this)) {
throw streamBrandCheckException$1('values');
}
const options = convertIteratorOptions(rawOptions, 'First parameter');
return AcquireReadableStreamAsyncIterator(this, options.preventCancel);
}
[SymbolAsyncIterator](options) {
// Stub implementation, overridden below
return this.values(options);
}
/**
* Creates a new ReadableStream wrapping the provided iterable or async iterable.
*
* This can be used to adapt various kinds of objects into a readable stream,
* such as an array, an async generator, or a Node.js readable stream.
*/
static from(asyncIterable) {
return ReadableStreamFrom(asyncIterable);
}
}
Object.defineProperties(ReadableStream, {
from: { enumerable: true }
});
Object.defineProperties(ReadableStream.prototype, {
cancel: { enumerable: true },
getReader: { enumerable: true },
pipeThrough: { enumerable: true },
pipeTo: { enumerable: true },
tee: { enumerable: true },
values: { enumerable: true },
locked: { enumerable: true }
});
setFunctionName(ReadableStream.from, 'from');
setFunctionName(ReadableStream.prototype.cancel, 'cancel');
setFunctionName(ReadableStream.prototype.getReader, 'getReader');
setFunctionName(ReadableStream.prototype.pipeThrough, 'pipeThrough');
setFunctionName(ReadableStream.prototype.pipeTo, 'pipeTo');
setFunctionName(ReadableStream.prototype.tee, 'tee');
setFunctionName(ReadableStream.prototype.values, 'values');
if (typeof Symbol.toStringTag === 'symbol') {
Object.defineProperty(ReadableStream.prototype, Symbol.toStringTag, {
value: 'ReadableStream',
configurable: true
});
}
Object.defineProperty(ReadableStream.prototype, SymbolAsyncIterator, {
value: ReadableStream.prototype.values,
writable: true,
configurable: true
});
// Abstract operations for the ReadableStream.
// Throws if and only if startAlgorithm throws.
function CreateReadableStream(startAlgorithm, pullAlgorithm, cancelAlgorithm, highWaterMark = 1, sizeAlgorithm = () => 1) {
const stream = Object.create(ReadableStream.prototype);
InitializeReadableStream(stream);
const controller = Object.create(ReadableStreamDefaultController.prototype);
SetUpReadableStreamDefaultController(stream, controller, startAlgorithm, pullAlgorithm, cancelAlgorithm, highWaterMark, sizeAlgorithm);
return stream;
}
// Throws if and only if startAlgorithm throws.
function CreateReadableByteStream(startAlgorithm, pullAlgorithm, cancelAlgorithm) {
const stream = Object.create(ReadableStream.prototype);
InitializeReadableStream(stream);
const controller = Object.create(ReadableByteStreamController.prototype);
SetUpReadableByteStreamController(stream, controller, startAlgorithm, pullAlgorithm, cancelAlgorithm, 0, undefined);
return stream;
}
function InitializeReadableStream(stream) {
stream._state = 'readable';
stream._reader = undefined;
stream._storedError = undefined;
stream._disturbed = false;
}
function IsReadableStream(x) {
if (!typeIsObject(x)) {
return false;
}
if (!Object.prototype.hasOwnProperty.call(x, '_readableStreamController')) {
return false;
}
return x instanceof ReadableStream;
}
function IsReadableStreamLocked(stream) {
if (stream._reader === undefined) {
return false;
}
return true;
}
// ReadableStream API exposed for controllers.
function ReadableStreamCancel(stream, reason) {
stream._disturbed = true;
if (stream._state === 'closed') {
return promiseResolvedWith(undefined);
}
if (stream._state === 'errored') {
return promiseRejectedWith(stream._storedError);
}
ReadableStreamClose(stream);
const reader = stream._reader;
if (reader !== undefined && IsReadableStreamBYOBReader(reader)) {
const readIntoRequests = reader._readIntoRequests;
reader._readIntoRequests = new SimpleQueue();
readIntoRequests.forEach(readIntoRequest => {
readIntoRequest._closeSteps(undefined);
});
}
const sourceCancelPromise = stream._readableStreamController[CancelSteps](reason);
return transformPromiseWith(sourceCancelPromise, noop);
}
function ReadableStreamClose(stream) {
stream._state = 'closed';
const reader = stream._reader;
if (reader === undefined) {
return;
}
defaultReaderClosedPromiseResolve(reader);
if (IsReadableStreamDefaultReader(reader)) {
const readRequests = reader._readRequests;
reader._readRequests = new SimpleQueue();
readRequests.forEach(readRequest => {
readRequest._closeSteps();
});
}
}
function ReadableStreamError(stream, e) {
stream._state = 'errored';
stream._storedError = e;
const reader = stream._reader;
if (reader === undefined) {
return;
}
defaultReaderClosedPromiseReject(reader, e);
if (IsReadableStreamDefaultReader(reader)) {
ReadableStreamDefaultReaderErrorReadRequests(reader, e);
}
else {
ReadableStreamBYOBReaderErrorReadIntoRequests(reader, e);
}
}
// Helper functions for the ReadableStream.
function streamBrandCheckException$1(name) {
return new TypeError(`ReadableStream.prototype.${name} can only be used on a ReadableStream`);
}
function convertQueuingStrategyInit(init, context) {
assertDictionary(init, context);
const highWaterMark = init === null || init === void 0 ? void 0 : init.highWaterMark;
assertRequiredField(highWaterMark, 'highWaterMark', 'QueuingStrategyInit');
return {
highWaterMark: convertUnrestrictedDouble(highWaterMark)
};
}
// The size function must not have a prototype property nor be a constructor
const byteLengthSizeFunction = (chunk) => {
return chunk.byteLength;
};
setFunctionName(byteLengthSizeFunction, 'size');
/**
* A queuing strategy that counts the number of bytes in each chunk.
*
* @public
*/
class ByteLengthQueuingStrategy {
constructor(options) {
assertRequiredArgument(options, 1, 'ByteLengthQueuingStrategy');
options = convertQueuingStrategyInit(options, 'First parameter');
this._byteLengthQueuingStrategyHighWaterMark = options.highWaterMark;
}
/**
* Returns the high water mark provided to the constructor.
*/
get highWaterMark() {
if (!IsByteLengthQueuingStrategy(this)) {
throw byteLengthBrandCheckException('highWaterMark');
}
return this._byteLengthQueuingStrategyHighWaterMark;
}
/**
* Measures the size of `chunk` by returning the value of its `byteLength` property.
*/
get size() {
if (!IsByteLengthQueuingStrategy(this)) {
throw byteLengthBrandCheckException('size');
}
return byteLengthSizeFunction;
}
}
Object.defineProperties(ByteLengthQueuingStrategy.prototype, {
highWaterMark: { enumerable: true },
size: { enumerable: true }
});
if (typeof Symbol.toStringTag === 'symbol') {
Object.defineProperty(ByteLengthQueuingStrategy.prototype, Symbol.toStringTag, {
value: 'ByteLengthQueuingStrategy',
configurable: true
});
}
// Helper functions for the ByteLengthQueuingStrategy.
function byteLengthBrandCheckException(name) {
return new TypeError(`ByteLengthQueuingStrategy.prototype.${name} can only be used on a ByteLengthQueuingStrategy`);
}
function IsByteLengthQueuingStrategy(x) {
if (!typeIsObject(x)) {
return false;
}
if (!Object.prototype.hasOwnProperty.call(x, '_byteLengthQueuingStrategyHighWaterMark')) {
return false;
}
return x instanceof ByteLengthQueuingStrategy;
}
// The size function must not have a prototype property nor be a constructor
const countSizeFunction = () => {
return 1;
};
setFunctionName(countSizeFunction, 'size');
/**
* A queuing strategy that counts the number of chunks.
*
* @public
*/
class CountQueuingStrategy {
constructor(options) {
assertRequiredArgument(options, 1, 'CountQueuingStrategy');
options = convertQueuingStrategyInit(options, 'First parameter');
this._countQueuingStrategyHighWaterMark = options.highWaterMark;
}
/**
* Returns the high water mark provided to the constructor.
*/
get highWaterMark() {
if (!IsCountQueuingStrategy(this)) {
throw countBrandCheckException('highWaterMark');
}
return this._countQueuingStrategyHighWaterMark;
}
/**
* Measures the size of `chunk` by always returning 1.
* This ensures that the total queue size is a count of the number of chunks in the queue.
*/
get size() {
if (!IsCountQueuingStrategy(this)) {
throw countBrandCheckException('size');
}
return countSizeFunction;
}
}
Object.defineProperties(CountQueuingStrategy.prototype, {
highWaterMark: { enumerable: true },
size: { enumerable: true }
});
if (typeof Symbol.toStringTag === 'symbol') {
Object.defineProperty(CountQueuingStrategy.prototype, Symbol.toStringTag, {
value: 'CountQueuingStrategy',
configurable: true
});
}
// Helper functions for the CountQueuingStrategy.
function countBrandCheckException(name) {
return new TypeError(`CountQueuingStrategy.prototype.${name} can only be used on a CountQueuingStrategy`);
}
function IsCountQueuingStrategy(x) {
if (!typeIsObject(x)) {
return false;
}
if (!Object.prototype.hasOwnProperty.call(x, '_countQueuingStrategyHighWaterMark')) {
return false;
}
return x instanceof CountQueuingStrategy;
}
function convertTransformer(original, context) {
assertDictionary(original, context);
const cancel = original === null || original === void 0 ? void 0 : original.cancel;
const flush = original === null || original === void 0 ? void 0 : original.flush;
const readableType = original === null || original === void 0 ? void 0 : original.readableType;
const start = original === null || original === void 0 ? void 0 : original.start;
const transform = original === null || original === void 0 ? void 0 : original.transform;
const writableType = original === null || original === void 0 ? void 0 : original.writableType;
return {
cancel: cancel === undefined ?
undefined :
convertTransformerCancelCallback(cancel, original, `${context} has member 'cancel' that`),
flush: flush === undefined ?
undefined :
convertTransformerFlushCallback(flush, original, `${context} has member 'flush' that`),
readableType,
start: start === undefined ?
undefined :
convertTransformerStartCallback(start, original, `${context} has member 'start' that`),
transform: transform === undefined ?
undefined :
convertTransformerTransformCallback(transform, original, `${context} has member 'transform' that`),
writableType
};
}
function convertTransformerFlushCallback(fn, original, context) {
assertFunction(fn, context);
return (controller) => promiseCall(fn, original, [controller]);
}
function convertTransformerStartCallback(fn, original, context) {
assertFunction(fn, context);
return (controller) => reflectCall(fn, original, [controller]);
}
function convertTransformerTransformCallback(fn, original, context) {
assertFunction(fn, context);
return (chunk, controller) => promiseCall(fn, original, [chunk, controller]);
}
function convertTransformerCancelCallback(fn, original, context) {
assertFunction(fn, context);
return (reason) => promiseCall(fn, original, [reason]);
}
// Class TransformStream
/**
* A transform stream consists of a pair of streams: a {@link WritableStream | writable stream},
* known as its writable side, and a {@link ReadableStream | readable stream}, known as its readable side.
* In a manner specific to the transform stream in question, writes to the writable side result in new data being
* made available for reading from the readable side.
*
* @public
*/
class TransformStream {
constructor(rawTransformer = {}, rawWritableStrategy = {}, rawReadableStrategy = {}) {
if (rawTransformer === undefined) {
rawTransformer = null;
}
const writableStrategy = convertQueuingStrategy(rawWritableStrategy, 'Second parameter');
const readableStrategy = convertQueuingStrategy(rawReadableStrategy, 'Third parameter');
const transformer = convertTransformer(rawTransformer, 'First parameter');
if (transformer.readableType !== undefined) {
throw new RangeError('Invalid readableType specified');
}
if (transformer.writableType !== undefined) {
throw new RangeError('Invalid writableType specified');
}
const readableHighWaterMark = ExtractHighWaterMark(readableStrategy, 0);
const readableSizeAlgorithm = ExtractSizeAlgorithm(readableStrategy);
const writableHighWaterMark = ExtractHighWaterMark(writableStrategy, 1);
const writableSizeAlgorithm = ExtractSizeAlgorithm(writableStrategy);
let startPromise_resolve;
const startPromise = newPromise(resolve => {
startPromise_resolve = resolve;
});
InitializeTransformStream(this, startPromise, writableHighWaterMark, writableSizeAlgorithm, readableHighWaterMark, readableSizeAlgorithm);
SetUpTransformStreamDefaultControllerFromTransformer(this, transformer);
if (transformer.start !== undefined) {
startPromise_resolve(transformer.start(this._transformStreamController));
}
else {
startPromise_resolve(undefined);
}
}
/**
* The readable side of the transform stream.
*/
get readable() {
if (!IsTransformStream(this)) {
throw streamBrandCheckException('readable');
}
return this._readable;
}
/**
* The writable side of the transform stream.
*/
get writable() {
if (!IsTransformStream(this)) {
throw streamBrandCheckException('writable');
}
return this._writable;
}
}
Object.defineProperties(TransformStream.prototype, {
readable: { enumerable: true },
writable: { enumerable: true }
});
if (typeof Symbol.toStringTag === 'symbol') {
Object.defineProperty(TransformStream.prototype, Symbol.toStringTag, {
value: 'TransformStream',
configurable: true
});
}
function InitializeTransformStream(stream, startPromise, writableHighWaterMark, writableSizeAlgorithm, readableHighWaterMark, readableSizeAlgorithm) {
function startAlgorithm() {
return startPromise;
}
function writeAlgorithm(chunk) {
return TransformStreamDefaultSinkWriteAlgorithm(stream, chunk);
}
function abortAlgorithm(reason) {
return TransformStreamDefaultSinkAbortAlgorithm(stream, reason);
}
function closeAlgorithm() {
return TransformStreamDefaultSinkCloseAlgorithm(stream);
}
stream._writable = CreateWritableStream(startAlgorithm, writeAlgorithm, closeAlgorithm, abortAlgorithm, writableHighWaterMark, writableSizeAlgorithm);
function pullAlgorithm() {
return TransformStreamDefaultSourcePullAlgorithm(stream);
}
function cancelAlgorithm(reason) {
return TransformStreamDefaultSourceCancelAlgorithm(stream, reason);
}
stream._readable = CreateReadableStream(startAlgorithm, pullAlgorithm, cancelAlgorithm, readableHighWaterMark, readableSizeAlgorithm);
// The [[backpressure]] slot is set to undefined so that it can be initialised by TransformStreamSetBackpressure.
stream._backpressure = undefined;
stream._backpressureChangePromise = undefined;
stream._backpressureChangePromise_resolve = undefined;
TransformStreamSetBackpressure(stream, true);
stream._transformStreamController = undefined;
}
function IsTransformStream(x) {
if (!typeIsObject(x)) {
return false;
}
if (!Object.prototype.hasOwnProperty.call(x, '_transformStreamController')) {
return false;
}
return x instanceof TransformStream;
}
// This is a no-op if both sides are already errored.
function TransformStreamError(stream, e) {
ReadableStreamDefaultControllerError(stream._readable._readableStreamController, e);
TransformStreamErrorWritableAndUnblockWrite(stream, e);
}
function TransformStreamErrorWritableAndUnblockWrite(stream, e) {
TransformStreamDefaultControllerClearAlgorithms(stream._transformStreamController);
WritableStreamDefaultControllerErrorIfNeeded(stream._writable._writableStreamController, e);
TransformStreamUnblockWrite(stream);
}
function TransformStreamUnblockWrite(stream) {
if (stream._backpressure) {
// Pretend that pull() was called to permit any pending write() calls to complete. TransformStreamSetBackpressure()
// cannot be called from enqueue() or pull() once the ReadableStream is errored, so this will will be the final time
// _backpressure is set.
TransformStreamSetBackpressure(stream, false);
}
}
function TransformStreamSetBackpressure(stream, backpressure) {
// Passes also when called during construction.
if (stream._backpressureChangePromise !== undefined) {
stream._backpressureChangePromise_resolve();
}
stream._backpressureChangePromise = newPromise(resolve => {
stream._backpressureChangePromise_resolve = resolve;
});
stream._backpressure = backpressure;
}
// Class TransformStreamDefaultController
/**
* Allows control of the {@link ReadableStream} and {@link WritableStream} of the associated {@link TransformStream}.
*
* @public
*/
class TransformStreamDefaultController {
constructor() {
throw new TypeError('Illegal constructor');
}
/**
* Returns the desired size to fill the readable side’s internal queue. It can be negative, if the queue is over-full.
*/
get desiredSize() {
if (!IsTransformStreamDefaultController(this)) {
throw defaultControllerBrandCheckException('desiredSize');
}
const readableController = this._controlledTransformStream._readable._readableStreamController;
return ReadableStreamDefaultControllerGetDesiredSize(readableController);
}
enqueue(chunk = undefined) {
if (!IsTransformStreamDefaultController(this)) {
throw defaultControllerBrandCheckException('enqueue');
}
TransformStreamDefaultControllerEnqueue(this, chunk);
}
/**
* Errors both the readable side and the writable side of the controlled transform stream, making all future
* interactions with it fail with the given error `e`. Any chunks queued for transformation will be discarded.
*/
error(reason = undefined) {
if (!IsTransformStreamDefaultController(this)) {
throw defaultControllerBrandCheckException('error');
}
TransformStreamDefaultControllerError(this, reason);
}
/**
* Closes the readable side and errors the writable side of the controlled transform stream. This is useful when the
* transformer only needs to consume a portion of the chunks written to the writable side.
*/
terminate() {
if (!IsTransformStreamDefaultController(this)) {
throw defaultControllerBrandCheckException('terminate');
}
TransformStreamDefaultControllerTerminate(this);
}
}
Object.defineProperties(TransformStreamDefaultController.prototype, {
enqueue: { enumerable: true },
error: { enumerable: true },
terminate: { enumerable: true },
desiredSize: { enumerable: true }
});
setFunctionName(TransformStreamDefaultController.prototype.enqueue, 'enqueue');
setFunctionName(TransformStreamDefaultController.prototype.error, 'error');
setFunctionName(TransformStreamDefaultController.prototype.terminate, 'terminate');
if (typeof Symbol.toStringTag === 'symbol') {
Object.defineProperty(TransformStreamDefaultController.prototype, Symbol.toStringTag, {
value: 'TransformStreamDefaultController',
configurable: true
});
}
// Transform Stream Default Controller Abstract Operations
function IsTransformStreamDefaultController(x) {
if (!typeIsObject(x)) {
return false;
}
if (!Object.prototype.hasOwnProperty.call(x, '_controlledTransformStream')) {
return false;
}
return x instanceof TransformStreamDefaultController;
}
function SetUpTransformStreamDefaultController(stream, controller, transformAlgorithm, flushAlgorithm, cancelAlgorithm) {
controller._controlledTransformStream = stream;
stream._transformStreamController = controller;
controller._transformAlgorithm = transformAlgorithm;
controller._flushAlgorithm = flushAlgorithm;
controller._cancelAlgorithm = cancelAlgorithm;
controller._finishPromise = undefined;
controller._finishPromise_resolve = undefined;
controller._finishPromise_reject = undefined;
}
function SetUpTransformStreamDefaultControllerFromTransformer(stream, transformer) {
const controller = Object.create(TransformStreamDefaultController.prototype);
let transformAlgorithm;
let flushAlgorithm;
let cancelAlgorithm;
if (transformer.transform !== undefined) {
transformAlgorithm = chunk => transformer.transform(chunk, controller);
}
else {
transformAlgorithm = chunk => {
try {
TransformStreamDefaultControllerEnqueue(controller, chunk);
return promiseResolvedWith(undefined);
}
catch (transformResultE) {
return promiseRejectedWith(transformResultE);
}
};
}
if (transformer.flush !== undefined) {
flushAlgorithm = () => transformer.flush(controller);
}
else {
flushAlgorithm = () => promiseResolvedWith(undefined);
}
if (transformer.cancel !== undefined) {
cancelAlgorithm = reason => transformer.cancel(reason);
}
else {
cancelAlgorithm = () => promiseResolvedWith(undefined);
}
SetUpTransformStreamDefaultController(stream, controller, transformAlgorithm, flushAlgorithm, cancelAlgorithm);
}
function TransformStreamDefaultControllerClearAlgorithms(controller) {
controller._transformAlgorithm = undefined;
controller._flushAlgorithm = undefined;
controller._cancelAlgorithm = undefined;
}
function TransformStreamDefaultControllerEnqueue(controller, chunk) {
const stream = controller._controlledTransformStream;
const readableController = stream._readable._readableStreamController;
if (!ReadableStreamDefaultControllerCanCloseOrEnqueue(readableController)) {
throw new TypeError('Readable side is not in a state that permits enqueue');
}
// We throttle transform invocations based on the backpressure of the ReadableStream, but we still
// accept TransformStreamDefaultControllerEnqueue() calls.
try {
ReadableStreamDefaultControllerEnqueue(readableController, chunk);
}
catch (e) {
// This happens when readableStrategy.size() throws.
TransformStreamErrorWritableAndUnblockWrite(stream, e);
throw stream._readable._storedError;
}
const backpressure = ReadableStreamDefaultControllerHasBackpressure(readableController);
if (backpressure !== stream._backpressure) {
TransformStreamSetBackpressure(stream, true);
}
}
function TransformStreamDefaultControllerError(controller, e) {
TransformStreamError(controller._controlledTransformStream, e);
}
function TransformStreamDefaultControllerPerformTransform(controller, chunk) {
const transformPromise = controller._transformAlgorithm(chunk);
return transformPromiseWith(transformPromise, undefined, r => {
TransformStreamError(controller._controlledTransformStream, r);
throw r;
});
}
function TransformStreamDefaultControllerTerminate(controller) {
const stream = controller._controlledTransformStream;
const readableController = stream._readable._readableStreamController;
ReadableStreamDefaultControllerClose(readableController);
const error = new TypeError('TransformStream terminated');
TransformStreamErrorWritableAndUnblockWrite(stream, error);
}
// TransformStreamDefaultSink Algorithms
function TransformStreamDefaultSinkWriteAlgorithm(stream, chunk) {
const controller = stream._transformStreamController;
if (stream._backpressure) {
const backpressureChangePromise = stream._backpressureChangePromise;
return transformPromiseWith(backpressureChangePromise, () => {
const writable = stream._writable;
const state = writable._state;
if (state === 'erroring') {
throw writable._storedError;
}
return TransformStreamDefaultControllerPerformTransform(controller, chunk);
});
}
return TransformStreamDefaultControllerPerformTransform(controller, chunk);
}
function TransformStreamDefaultSinkAbortAlgorithm(stream, reason) {
const controller = stream._transformStreamController;
if (controller._finishPromise !== undefined) {
return controller._finishPromise;
}
// stream._readable cannot change after construction, so caching it across a call to user code is safe.
const readable = stream._readable;
// Assign the _finishPromise now so that if _cancelAlgorithm calls readable.cancel() internally,
// we don't run the _cancelAlgorithm again.
controller._finishPromise = newPromise((resolve, reject) => {
controller._finishPromise_resolve = resolve;
controller._finishPromise_reject = reject;
});
const cancelPromise = controller._cancelAlgorithm(reason);
TransformStreamDefaultControllerClearAlgorithms(controller);
uponPromise(cancelPromise, () => {
if (readable._state === 'errored') {
defaultControllerFinishPromiseReject(controller, readable._storedError);
}
else {
ReadableStreamDefaultControllerError(readable._readableStreamController, reason);
defaultControllerFinishPromiseResolve(controller);
}
return null;
}, r => {
ReadableStreamDefaultControllerError(readable._readableStreamController, r);
defaultControllerFinishPromiseReject(controller, r);
return null;
});
return controller._finishPromise;
}
function TransformStreamDefaultSinkCloseAlgorithm(stream) {
const controller = stream._transformStreamController;
if (controller._finishPromise !== undefined) {
return controller._finishPromise;
}
// stream._readable cannot change after construction, so caching it across a call to user code is safe.
const readable = stream._readable;
// Assign the _finishPromise now so that if _flushAlgorithm calls readable.cancel() internally,
// we don't also run the _cancelAlgorithm.
controller._finishPromise = newPromise((resolve, reject) => {
controller._finishPromise_resolve = resolve;
controller._finishPromise_reject = reject;
});
const flushPromise = controller._flushAlgorithm();
TransformStreamDefaultControllerClearAlgorithms(controller);
uponPromise(flushPromise, () => {
if (readable._state === 'errored') {
defaultControllerFinishPromiseReject(controller, readable._storedError);
}
else {
ReadableStreamDefaultControllerClose(readable._readableStreamController);
defaultControllerFinishPromiseResolve(controller);
}
return null;
}, r => {
ReadableStreamDefaultControllerError(readable._readableStreamController, r);
defaultControllerFinishPromiseReject(controller, r);
return null;
});
return controller._finishPromise;
}
// TransformStreamDefaultSource Algorithms
function TransformStreamDefaultSourcePullAlgorithm(stream) {
// Invariant. Enforced by the promises returned by start() and pull().
TransformStreamSetBackpressure(stream, false);
// Prevent the next pull() call until there is backpressure.
return stream._backpressureChangePromise;
}
function TransformStreamDefaultSourceCancelAlgorithm(stream, reason) {
const controller = stream._transformStreamController;
if (controller._finishPromise !== undefined) {
return controller._finishPromise;
}
// stream._writable cannot change after construction, so caching it across a call to user code is safe.
const writable = stream._writable;
// Assign the _finishPromise now so that if _flushAlgorithm calls writable.abort() or
// writable.cancel() internally, we don't run the _cancelAlgorithm again, or also run the
// _flushAlgorithm.
controller._finishPromise = newPromise((resolve, reject) => {
controller._finishPromise_resolve = resolve;
controller._finishPromise_reject = reject;
});
const cancelPromise = controller._cancelAlgorithm(reason);
TransformStreamDefaultControllerClearAlgorithms(controller);
uponPromise(cancelPromise, () => {
if (writable._state === 'errored') {
defaultControllerFinishPromiseReject(controller, writable._storedError);
}
else {
WritableStreamDefaultControllerErrorIfNeeded(writable._writableStreamController, reason);
TransformStreamUnblockWrite(stream);
defaultControllerFinishPromiseResolve(controller);
}
return null;
}, r => {
WritableStreamDefaultControllerErrorIfNeeded(writable._writableStreamController, r);
TransformStreamUnblockWrite(stream);
defaultControllerFinishPromiseReject(controller, r);
return null;
});
return controller._finishPromise;
}
// Helper functions for the TransformStreamDefaultController.
function defaultControllerBrandCheckException(name) {
return new TypeError(`TransformStreamDefaultController.prototype.${name} can only be used on a TransformStreamDefaultController`);
}
function defaultControllerFinishPromiseResolve(controller) {
if (controller._finishPromise_resolve === undefined) {
return;
}
controller._finishPromise_resolve();
controller._finishPromise_resolve = undefined;
controller._finishPromise_reject = undefined;
}
function defaultControllerFinishPromiseReject(controller, reason) {
if (controller._finishPromise_reject === undefined) {
return;
}
setPromiseIsHandledToTrue(controller._finishPromise);
controller._finishPromise_reject(reason);
controller._finishPromise_resolve = undefined;
controller._finishPromise_reject = undefined;
}
// Helper functions for the TransformStream.
function streamBrandCheckException(name) {
return new TypeError(`TransformStream.prototype.${name} can only be used on a TransformStream`);
}
exports.ByteLengthQueuingStrategy = ByteLengthQueuingStrategy;
exports.CountQueuingStrategy = CountQueuingStrategy;
exports.ReadableByteStreamController = ReadableByteStreamController;
exports.ReadableStream = ReadableStream;
exports.ReadableStreamBYOBReader = ReadableStreamBYOBReader;
exports.ReadableStreamBYOBRequest = ReadableStreamBYOBRequest;
exports.ReadableStreamDefaultController = ReadableStreamDefaultController;
exports.ReadableStreamDefaultReader = ReadableStreamDefaultReader;
exports.TransformStream = TransformStream;
exports.TransformStreamDefaultController = TransformStreamDefaultController;
exports.WritableStream = WritableStream;
exports.WritableStreamDefaultController = WritableStreamDefaultController;
exports.WritableStreamDefaultWriter = WritableStreamDefaultWriter;
}));
//# sourceMappingURL=ponyfill.es2018.js.map
/***/ }),
/***/ 7125:
/***/ ((module) => {
"use strict";
var conversions = {};
module.exports = conversions;
function sign(x) {
return x < 0 ? -1 : 1;
}
function evenRound(x) {
// Round x to the nearest integer, choosing the even integer if it lies halfway between two.
if ((x % 1) === 0.5 && (x & 1) === 0) { // [even number].5; round down (i.e. floor)
return Math.floor(x);
} else {
return Math.round(x);
}
}
function createNumberConversion(bitLength, typeOpts) {
if (!typeOpts.unsigned) {
--bitLength;
}
const lowerBound = typeOpts.unsigned ? 0 : -Math.pow(2, bitLength);
const upperBound = Math.pow(2, bitLength) - 1;
const moduloVal = typeOpts.moduloBitLength ? Math.pow(2, typeOpts.moduloBitLength) : Math.pow(2, bitLength);
const moduloBound = typeOpts.moduloBitLength ? Math.pow(2, typeOpts.moduloBitLength - 1) : Math.pow(2, bitLength - 1);
return function(V, opts) {
if (!opts) opts = {};
let x = +V;
if (opts.enforceRange) {
if (!Number.isFinite(x)) {
throw new TypeError("Argument is not a finite number");
}
x = sign(x) * Math.floor(Math.abs(x));
if (x < lowerBound || x > upperBound) {
throw new TypeError("Argument is not in byte range");
}
return x;
}
if (!isNaN(x) && opts.clamp) {
x = evenRound(x);
if (x < lowerBound) x = lowerBound;
if (x > upperBound) x = upperBound;
return x;
}
if (!Number.isFinite(x) || x === 0) {
return 0;
}
x = sign(x) * Math.floor(Math.abs(x));
x = x % moduloVal;
if (!typeOpts.unsigned && x >= moduloBound) {
return x - moduloVal;
} else if (typeOpts.unsigned) {
if (x < 0) {
x += moduloVal;
} else if (x === -0) { // don't return negative zero
return 0;
}
}
return x;
}
}
conversions["void"] = function () {
return undefined;
};
conversions["boolean"] = function (val) {
return !!val;
};
conversions["byte"] = createNumberConversion(8, { unsigned: false });
conversions["octet"] = createNumberConversion(8, { unsigned: true });
conversions["short"] = createNumberConversion(16, { unsigned: false });
conversions["unsigned short"] = createNumberConversion(16, { unsigned: true });
conversions["long"] = createNumberConversion(32, { unsigned: false });
conversions["unsigned long"] = createNumberConversion(32, { unsigned: true });
conversions["long long"] = createNumberConversion(32, { unsigned: false, moduloBitLength: 64 });
conversions["unsigned long long"] = createNumberConversion(32, { unsigned: true, moduloBitLength: 64 });
conversions["double"] = function (V) {
const x = +V;
if (!Number.isFinite(x)) {
throw new TypeError("Argument is not a finite floating-point value");
}
return x;
};
conversions["unrestricted double"] = function (V) {
const x = +V;
if (isNaN(x)) {
throw new TypeError("Argument is NaN");
}
return x;
};
// not quite valid, but good enough for JS
conversions["float"] = conversions["double"];
conversions["unrestricted float"] = conversions["unrestricted double"];
conversions["DOMString"] = function (V, opts) {
if (!opts) opts = {};
if (opts.treatNullAsEmptyString && V === null) {
return "";
}
return String(V);
};
conversions["ByteString"] = function (V, opts) {
const x = String(V);
let c = undefined;
for (let i = 0; (c = x.codePointAt(i)) !== undefined; ++i) {
if (c > 255) {
throw new TypeError("Argument is not a valid bytestring");
}
}
return x;
};
conversions["USVString"] = function (V) {
const S = String(V);
const n = S.length;
const U = [];
for (let i = 0; i < n; ++i) {
const c = S.charCodeAt(i);
if (c < 0xD800 || c > 0xDFFF) {
U.push(String.fromCodePoint(c));
} else if (0xDC00 <= c && c <= 0xDFFF) {
U.push(String.fromCodePoint(0xFFFD));
} else {
if (i === n - 1) {
U.push(String.fromCodePoint(0xFFFD));
} else {
const d = S.charCodeAt(i + 1);
if (0xDC00 <= d && d <= 0xDFFF) {
const a = c & 0x3FF;
const b = d & 0x3FF;
U.push(String.fromCodePoint((2 << 15) + (2 << 9) * a + b));
++i;
} else {
U.push(String.fromCodePoint(0xFFFD));
}
}
}
}
return U.join('');
};
conversions["Date"] = function (V, opts) {
if (!(V instanceof Date)) {
throw new TypeError("Argument is not a Date object");
}
if (isNaN(V)) {
return undefined;
}
return V;
};
conversions["RegExp"] = function (V, opts) {
if (!(V instanceof RegExp)) {
V = new RegExp(V);
}
return V;
};
/***/ }),
/***/ 3184:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
const usm = __nccwpck_require__(905);
exports.implementation = class URLImpl {
constructor(constructorArgs) {
const url = constructorArgs[0];
const base = constructorArgs[1];
let parsedBase = null;
if (base !== undefined) {
parsedBase = usm.basicURLParse(base);
if (parsedBase === "failure") {
throw new TypeError("Invalid base URL");
}
}
const parsedURL = usm.basicURLParse(url, { baseURL: parsedBase });
if (parsedURL === "failure") {
throw new TypeError("Invalid URL");
}
this._url = parsedURL;
// TODO: query stuff
}
get href() {
return usm.serializeURL(this._url);
}
set href(v) {
const parsedURL = usm.basicURLParse(v);
if (parsedURL === "failure") {
throw new TypeError("Invalid URL");
}
this._url = parsedURL;
}
get origin() {
return usm.serializeURLOrigin(this._url);
}
get protocol() {
return this._url.scheme + ":";
}
set protocol(v) {
usm.basicURLParse(v + ":", { url: this._url, stateOverride: "scheme start" });
}
get username() {
return this._url.username;
}
set username(v) {
if (usm.cannotHaveAUsernamePasswordPort(this._url)) {
return;
}
usm.setTheUsername(this._url, v);
}
get password() {
return this._url.password;
}
set password(v) {
if (usm.cannotHaveAUsernamePasswordPort(this._url)) {
return;
}
usm.setThePassword(this._url, v);
}
get host() {
const url = this._url;
if (url.host === null) {
return "";
}
if (url.port === null) {
return usm.serializeHost(url.host);
}
return usm.serializeHost(url.host) + ":" + usm.serializeInteger(url.port);
}
set host(v) {
if (this._url.cannotBeABaseURL) {
return;
}
usm.basicURLParse(v, { url: this._url, stateOverride: "host" });
}
get hostname() {
if (this._url.host === null) {
return "";
}
return usm.serializeHost(this._url.host);
}
set hostname(v) {
if (this._url.cannotBeABaseURL) {
return;
}
usm.basicURLParse(v, { url: this._url, stateOverride: "hostname" });
}
get port() {
if (this._url.port === null) {
return "";
}
return usm.serializeInteger(this._url.port);
}
set port(v) {
if (usm.cannotHaveAUsernamePasswordPort(this._url)) {
return;
}
if (v === "") {
this._url.port = null;
} else {
usm.basicURLParse(v, { url: this._url, stateOverride: "port" });
}
}
get pathname() {
if (this._url.cannotBeABaseURL) {
return this._url.path[0];
}
if (this._url.path.length === 0) {
return "";
}
return "/" + this._url.path.join("/");
}
set pathname(v) {
if (this._url.cannotBeABaseURL) {
return;
}
this._url.path = [];
usm.basicURLParse(v, { url: this._url, stateOverride: "path start" });
}
get search() {
if (this._url.query === null || this._url.query === "") {
return "";
}
return "?" + this._url.query;
}
set search(v) {
// TODO: query stuff
const url = this._url;
if (v === "") {
url.query = null;
return;
}
const input = v[0] === "?" ? v.substring(1) : v;
url.query = "";
usm.basicURLParse(input, { url, stateOverride: "query" });
}
get hash() {
if (this._url.fragment === null || this._url.fragment === "") {
return "";
}
return "#" + this._url.fragment;
}
set hash(v) {
if (v === "") {
this._url.fragment = null;
return;
}
const input = v[0] === "#" ? v.substring(1) : v;
this._url.fragment = "";
usm.basicURLParse(input, { url: this._url, stateOverride: "fragment" });
}
toJSON() {
return this.href;
}
};
/***/ }),
/***/ 6633:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
"use strict";
const conversions = __nccwpck_require__(7125);
const utils = __nccwpck_require__(9857);
const Impl = __nccwpck_require__(3184);
const impl = utils.implSymbol;
function URL(url) {
if (!this || this[impl] || !(this instanceof URL)) {
throw new TypeError("Failed to construct 'URL': Please use the 'new' operator, this DOM object constructor cannot be called as a function.");
}
if (arguments.length < 1) {
throw new TypeError("Failed to construct 'URL': 1 argument required, but only " + arguments.length + " present.");
}
const args = [];
for (let i = 0; i < arguments.length && i < 2; ++i) {
args[i] = arguments[i];
}
args[0] = conversions["USVString"](args[0]);
if (args[1] !== undefined) {
args[1] = conversions["USVString"](args[1]);
}
module.exports.setup(this, args);
}
URL.prototype.toJSON = function toJSON() {
if (!this || !module.exports.is(this)) {
throw new TypeError("Illegal invocation");
}
const args = [];
for (let i = 0; i < arguments.length && i < 0; ++i) {
args[i] = arguments[i];
}
return this[impl].toJSON.apply(this[impl], args);
};
Object.defineProperty(URL.prototype, "href", {
get() {
return this[impl].href;
},
set(V) {
V = conversions["USVString"](V);
this[impl].href = V;
},
enumerable: true,
configurable: true
});
URL.prototype.toString = function () {
if (!this || !module.exports.is(this)) {
throw new TypeError("Illegal invocation");
}
return this.href;
};
Object.defineProperty(URL.prototype, "origin", {
get() {
return this[impl].origin;
},
enumerable: true,
configurable: true
});
Object.defineProperty(URL.prototype, "protocol", {
get() {
return this[impl].protocol;
},
set(V) {
V = conversions["USVString"](V);
this[impl].protocol = V;
},
enumerable: true,
configurable: true
});
Object.defineProperty(URL.prototype, "username", {
get() {
return this[impl].username;
},
set(V) {
V = conversions["USVString"](V);
this[impl].username = V;
},
enumerable: true,
configurable: true
});
Object.defineProperty(URL.prototype, "password", {
get() {
return this[impl].password;
},
set(V) {
V = conversions["USVString"](V);
this[impl].password = V;
},
enumerable: true,
configurable: true
});
Object.defineProperty(URL.prototype, "host", {
get() {
return this[impl].host;
},
set(V) {
V = conversions["USVString"](V);
this[impl].host = V;
},
enumerable: true,
configurable: true
});
Object.defineProperty(URL.prototype, "hostname", {
get() {
return this[impl].hostname;
},
set(V) {
V = conversions["USVString"](V);
this[impl].hostname = V;
},
enumerable: true,
configurable: true
});
Object.defineProperty(URL.prototype, "port", {
get() {
return this[impl].port;
},
set(V) {
V = conversions["USVString"](V);
this[impl].port = V;
},
enumerable: true,
configurable: true
});
Object.defineProperty(URL.prototype, "pathname", {
get() {
return this[impl].pathname;
},
set(V) {
V = conversions["USVString"](V);
this[impl].pathname = V;
},
enumerable: true,
configurable: true
});
Object.defineProperty(URL.prototype, "search", {
get() {
return this[impl].search;
},
set(V) {
V = conversions["USVString"](V);
this[impl].search = V;
},
enumerable: true,
configurable: true
});
Object.defineProperty(URL.prototype, "hash", {
get() {
return this[impl].hash;
},
set(V) {
V = conversions["USVString"](V);
this[impl].hash = V;
},
enumerable: true,
configurable: true
});
module.exports = {
is(obj) {
return !!obj && obj[impl] instanceof Impl.implementation;
},
create(constructorArgs, privateData) {
let obj = Object.create(URL.prototype);
this.setup(obj, constructorArgs, privateData);
return obj;
},
setup(obj, constructorArgs, privateData) {
if (!privateData) privateData = {};
privateData.wrapper = obj;
obj[impl] = new Impl.implementation(constructorArgs, privateData);
obj[impl][utils.wrapperSymbol] = obj;
},
interface: URL,
expose: {
Window: { URL: URL },
Worker: { URL: URL }
}
};
/***/ }),
/***/ 2686:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
exports.URL = __nccwpck_require__(6633)["interface"];
exports.serializeURL = __nccwpck_require__(905).serializeURL;
exports.serializeURLOrigin = __nccwpck_require__(905).serializeURLOrigin;
exports.basicURLParse = __nccwpck_require__(905).basicURLParse;
exports.setTheUsername = __nccwpck_require__(905).setTheUsername;
exports.setThePassword = __nccwpck_require__(905).setThePassword;
exports.serializeHost = __nccwpck_require__(905).serializeHost;
exports.serializeInteger = __nccwpck_require__(905).serializeInteger;
exports.parseURL = __nccwpck_require__(905).parseURL;
/***/ }),
/***/ 905:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
"use strict";
const punycode = __nccwpck_require__(8328);
const tr46 = __nccwpck_require__(1552);
const specialSchemes = {
ftp: 21,
file: null,
gopher: 70,
http: 80,
https: 443,
ws: 80,
wss: 443
};
const failure = Symbol("failure");
function countSymbols(str) {
return punycode.ucs2.decode(str).length;
}
function at(input, idx) {
const c = input[idx];
return isNaN(c) ? undefined : String.fromCodePoint(c);
}
function isASCIIDigit(c) {
return c >= 0x30 && c <= 0x39;
}
function isASCIIAlpha(c) {
return (c >= 0x41 && c <= 0x5A) || (c >= 0x61 && c <= 0x7A);
}
function isASCIIAlphanumeric(c) {
return isASCIIAlpha(c) || isASCIIDigit(c);
}
function isASCIIHex(c) {
return isASCIIDigit(c) || (c >= 0x41 && c <= 0x46) || (c >= 0x61 && c <= 0x66);
}
function isSingleDot(buffer) {
return buffer === "." || buffer.toLowerCase() === "%2e";
}
function isDoubleDot(buffer) {
buffer = buffer.toLowerCase();
return buffer === ".." || buffer === "%2e." || buffer === ".%2e" || buffer === "%2e%2e";
}
function isWindowsDriveLetterCodePoints(cp1, cp2) {
return isASCIIAlpha(cp1) && (cp2 === 58 || cp2 === 124);
}
function isWindowsDriveLetterString(string) {
return string.length === 2 && isASCIIAlpha(string.codePointAt(0)) && (string[1] === ":" || string[1] === "|");
}
function isNormalizedWindowsDriveLetterString(string) {
return string.length === 2 && isASCIIAlpha(string.codePointAt(0)) && string[1] === ":";
}
function containsForbiddenHostCodePoint(string) {
return string.search(/\u0000|\u0009|\u000A|\u000D|\u0020|#|%|\/|:|\?|@|\[|\\|\]/) !== -1;
}
function containsForbiddenHostCodePointExcludingPercent(string) {
return string.search(/\u0000|\u0009|\u000A|\u000D|\u0020|#|\/|:|\?|@|\[|\\|\]/) !== -1;
}
function isSpecialScheme(scheme) {
return specialSchemes[scheme] !== undefined;
}
function isSpecial(url) {
return isSpecialScheme(url.scheme);
}
function defaultPort(scheme) {
return specialSchemes[scheme];
}
function percentEncode(c) {
let hex = c.toString(16).toUpperCase();
if (hex.length === 1) {
hex = "0" + hex;
}
return "%" + hex;
}
function utf8PercentEncode(c) {
const buf = new Buffer(c);
let str = "";
for (let i = 0; i < buf.length; ++i) {
str += percentEncode(buf[i]);
}
return str;
}
function utf8PercentDecode(str) {
const input = new Buffer(str);
const output = [];
for (let i = 0; i < input.length; ++i) {
if (input[i] !== 37) {
output.push(input[i]);
} else if (input[i] === 37 && isASCIIHex(input[i + 1]) && isASCIIHex(input[i + 2])) {
output.push(parseInt(input.slice(i + 1, i + 3).toString(), 16));
i += 2;
} else {
output.push(input[i]);
}
}
return new Buffer(output).toString();
}
function isC0ControlPercentEncode(c) {
return c <= 0x1F || c > 0x7E;
}
const extraPathPercentEncodeSet = new Set([32, 34, 35, 60, 62, 63, 96, 123, 125]);
function isPathPercentEncode(c) {
return isC0ControlPercentEncode(c) || extraPathPercentEncodeSet.has(c);
}
const extraUserinfoPercentEncodeSet =
new Set([47, 58, 59, 61, 64, 91, 92, 93, 94, 124]);
function isUserinfoPercentEncode(c) {
return isPathPercentEncode(c) || extraUserinfoPercentEncodeSet.has(c);
}
function percentEncodeChar(c, encodeSetPredicate) {
const cStr = String.fromCodePoint(c);
if (encodeSetPredicate(c)) {
return utf8PercentEncode(cStr);
}
return cStr;
}
function parseIPv4Number(input) {
let R = 10;
if (input.length >= 2 && input.charAt(0) === "0" && input.charAt(1).toLowerCase() === "x") {
input = input.substring(2);
R = 16;
} else if (input.length >= 2 && input.charAt(0) === "0") {
input = input.substring(1);
R = 8;
}
if (input === "") {
return 0;
}
const regex = R === 10 ? /[^0-9]/ : (R === 16 ? /[^0-9A-Fa-f]/ : /[^0-7]/);
if (regex.test(input)) {
return failure;
}
return parseInt(input, R);
}
function parseIPv4(input) {
const parts = input.split(".");
if (parts[parts.length - 1] === "") {
if (parts.length > 1) {
parts.pop();
}
}
if (parts.length > 4) {
return input;
}
const numbers = [];
for (const part of parts) {
if (part === "") {
return input;
}
const n = parseIPv4Number(part);
if (n === failure) {
return input;
}
numbers.push(n);
}
for (let i = 0; i < numbers.length - 1; ++i) {
if (numbers[i] > 255) {
return failure;
}
}
if (numbers[numbers.length - 1] >= Math.pow(256, 5 - numbers.length)) {
return failure;
}
let ipv4 = numbers.pop();
let counter = 0;
for (const n of numbers) {
ipv4 += n * Math.pow(256, 3 - counter);
++counter;
}
return ipv4;
}
function serializeIPv4(address) {
let output = "";
let n = address;
for (let i = 1; i <= 4; ++i) {
output = String(n % 256) + output;
if (i !== 4) {
output = "." + output;
}
n = Math.floor(n / 256);
}
return output;
}
function parseIPv6(input) {
const address = [0, 0, 0, 0, 0, 0, 0, 0];
let pieceIndex = 0;
let compress = null;
let pointer = 0;
input = punycode.ucs2.decode(input);
if (input[pointer] === 58) {
if (input[pointer + 1] !== 58) {
return failure;
}
pointer += 2;
++pieceIndex;
compress = pieceIndex;
}
while (pointer < input.length) {
if (pieceIndex === 8) {
return failure;
}
if (input[pointer] === 58) {
if (compress !== null) {
return failure;
}
++pointer;
++pieceIndex;
compress = pieceIndex;
continue;
}
let value = 0;
let length = 0;
while (length < 4 && isASCIIHex(input[pointer])) {
value = value * 0x10 + parseInt(at(input, pointer), 16);
++pointer;
++length;
}
if (input[pointer] === 46) {
if (length === 0) {
return failure;
}
pointer -= length;
if (pieceIndex > 6) {
return failure;
}
let numbersSeen = 0;
while (input[pointer] !== undefined) {
let ipv4Piece = null;
if (numbersSeen > 0) {
if (input[pointer] === 46 && numbersSeen < 4) {
++pointer;
} else {
return failure;
}
}
if (!isASCIIDigit(input[pointer])) {
return failure;
}
while (isASCIIDigit(input[pointer])) {
const number = parseInt(at(input, pointer));
if (ipv4Piece === null) {
ipv4Piece = number;
} else if (ipv4Piece === 0) {
return failure;
} else {
ipv4Piece = ipv4Piece * 10 + number;
}
if (ipv4Piece > 255) {
return failure;
}
++pointer;
}
address[pieceIndex] = address[pieceIndex] * 0x100 + ipv4Piece;
++numbersSeen;
if (numbersSeen === 2 || numbersSeen === 4) {
++pieceIndex;
}
}
if (numbersSeen !== 4) {
return failure;
}
break;
} else if (input[pointer] === 58) {
++pointer;
if (input[pointer] === undefined) {
return failure;
}
} else if (input[pointer] !== undefined) {
return failure;
}
address[pieceIndex] = value;
++pieceIndex;
}
if (compress !== null) {
let swaps = pieceIndex - compress;
pieceIndex = 7;
while (pieceIndex !== 0 && swaps > 0) {
const temp = address[compress + swaps - 1];
address[compress + swaps - 1] = address[pieceIndex];
address[pieceIndex] = temp;
--pieceIndex;
--swaps;
}
} else if (compress === null && pieceIndex !== 8) {
return failure;
}
return address;
}
function serializeIPv6(address) {
let output = "";
const seqResult = findLongestZeroSequence(address);
const compress = seqResult.idx;
let ignore0 = false;
for (let pieceIndex = 0; pieceIndex <= 7; ++pieceIndex) {
if (ignore0 && address[pieceIndex] === 0) {
continue;
} else if (ignore0) {
ignore0 = false;
}
if (compress === pieceIndex) {
const separator = pieceIndex === 0 ? "::" : ":";
output += separator;
ignore0 = true;
continue;
}
output += address[pieceIndex].toString(16);
if (pieceIndex !== 7) {
output += ":";
}
}
return output;
}
function parseHost(input, isSpecialArg) {
if (input[0] === "[") {
if (input[input.length - 1] !== "]") {
return failure;
}
return parseIPv6(input.substring(1, input.length - 1));
}
if (!isSpecialArg) {
return parseOpaqueHost(input);
}
const domain = utf8PercentDecode(input);
const asciiDomain = tr46.toASCII(domain, false, tr46.PROCESSING_OPTIONS.NONTRANSITIONAL, false);
if (asciiDomain === null) {
return failure;
}
if (containsForbiddenHostCodePoint(asciiDomain)) {
return failure;
}
const ipv4Host = parseIPv4(asciiDomain);
if (typeof ipv4Host === "number" || ipv4Host === failure) {
return ipv4Host;
}
return asciiDomain;
}
function parseOpaqueHost(input) {
if (containsForbiddenHostCodePointExcludingPercent(input)) {
return failure;
}
let output = "";
const decoded = punycode.ucs2.decode(input);
for (let i = 0; i < decoded.length; ++i) {
output += percentEncodeChar(decoded[i], isC0ControlPercentEncode);
}
return output;
}
function findLongestZeroSequence(arr) {
let maxIdx = null;
let maxLen = 1; // only find elements > 1
let currStart = null;
let currLen = 0;
for (let i = 0; i < arr.length; ++i) {
if (arr[i] !== 0) {
if (currLen > maxLen) {
maxIdx = currStart;
maxLen = currLen;
}
currStart = null;
currLen = 0;
} else {
if (currStart === null) {
currStart = i;
}
++currLen;
}
}
// if trailing zeros
if (currLen > maxLen) {
maxIdx = currStart;
maxLen = currLen;
}
return {
idx: maxIdx,
len: maxLen
};
}
function serializeHost(host) {
if (typeof host === "number") {
return serializeIPv4(host);
}
// IPv6 serializer
if (host instanceof Array) {
return "[" + serializeIPv6(host) + "]";
}
return host;
}
function trimControlChars(url) {
return url.replace(/^[\u0000-\u001F\u0020]+|[\u0000-\u001F\u0020]+$/g, "");
}
function trimTabAndNewline(url) {
return url.replace(/\u0009|\u000A|\u000D/g, "");
}
function shortenPath(url) {
const path = url.path;
if (path.length === 0) {
return;
}
if (url.scheme === "file" && path.length === 1 && isNormalizedWindowsDriveLetter(path[0])) {
return;
}
path.pop();
}
function includesCredentials(url) {
return url.username !== "" || url.password !== "";
}
function cannotHaveAUsernamePasswordPort(url) {
return url.host === null || url.host === "" || url.cannotBeABaseURL || url.scheme === "file";
}
function isNormalizedWindowsDriveLetter(string) {
return /^[A-Za-z]:$/.test(string);
}
function URLStateMachine(input, base, encodingOverride, url, stateOverride) {
this.pointer = 0;
this.input = input;
this.base = base || null;
this.encodingOverride = encodingOverride || "utf-8";
this.stateOverride = stateOverride;
this.url = url;
this.failure = false;
this.parseError = false;
if (!this.url) {
this.url = {
scheme: "",
username: "",
password: "",
host: null,
port: null,
path: [],
query: null,
fragment: null,
cannotBeABaseURL: false
};
const res = trimControlChars(this.input);
if (res !== this.input) {
this.parseError = true;
}
this.input = res;
}
const res = trimTabAndNewline(this.input);
if (res !== this.input) {
this.parseError = true;
}
this.input = res;
this.state = stateOverride || "scheme start";
this.buffer = "";
this.atFlag = false;
this.arrFlag = false;
this.passwordTokenSeenFlag = false;
this.input = punycode.ucs2.decode(this.input);
for (; this.pointer <= this.input.length; ++this.pointer) {
const c = this.input[this.pointer];
const cStr = isNaN(c) ? undefined : String.fromCodePoint(c);
// exec state machine
const ret = this["parse " + this.state](c, cStr);
if (!ret) {
break; // terminate algorithm
} else if (ret === failure) {
this.failure = true;
break;
}
}
}
URLStateMachine.prototype["parse scheme start"] = function parseSchemeStart(c, cStr) {
if (isASCIIAlpha(c)) {
this.buffer += cStr.toLowerCase();
this.state = "scheme";
} else if (!this.stateOverride) {
this.state = "no scheme";
--this.pointer;
} else {
this.parseError = true;
return failure;
}
return true;
};
URLStateMachine.prototype["parse scheme"] = function parseScheme(c, cStr) {
if (isASCIIAlphanumeric(c) || c === 43 || c === 45 || c === 46) {
this.buffer += cStr.toLowerCase();
} else if (c === 58) {
if (this.stateOverride) {
if (isSpecial(this.url) && !isSpecialScheme(this.buffer)) {
return false;
}
if (!isSpecial(this.url) && isSpecialScheme(this.buffer)) {
return false;
}
if ((includesCredentials(this.url) || this.url.port !== null) && this.buffer === "file") {
return false;
}
if (this.url.scheme === "file" && (this.url.host === "" || this.url.host === null)) {
return false;
}
}
this.url.scheme = this.buffer;
this.buffer = "";
if (this.stateOverride) {
return false;
}
if (this.url.scheme === "file") {
if (this.input[this.pointer + 1] !== 47 || this.input[this.pointer + 2] !== 47) {
this.parseError = true;
}
this.state = "file";
} else if (isSpecial(this.url) && this.base !== null && this.base.scheme === this.url.scheme) {
this.state = "special relative or authority";
} else if (isSpecial(this.url)) {
this.state = "special authority slashes";
} else if (this.input[this.pointer + 1] === 47) {
this.state = "path or authority";
++this.pointer;
} else {
this.url.cannotBeABaseURL = true;
this.url.path.push("");
this.state = "cannot-be-a-base-URL path";
}
} else if (!this.stateOverride) {
this.buffer = "";
this.state = "no scheme";
this.pointer = -1;
} else {
this.parseError = true;
return failure;
}
return true;
};
URLStateMachine.prototype["parse no scheme"] = function parseNoScheme(c) {
if (this.base === null || (this.base.cannotBeABaseURL && c !== 35)) {
return failure;
} else if (this.base.cannotBeABaseURL && c === 35) {
this.url.scheme = this.base.scheme;
this.url.path = this.base.path.slice();
this.url.query = this.base.query;
this.url.fragment = "";
this.url.cannotBeABaseURL = true;
this.state = "fragment";
} else if (this.base.scheme === "file") {
this.state = "file";
--this.pointer;
} else {
this.state = "relative";
--this.pointer;
}
return true;
};
URLStateMachine.prototype["parse special relative or authority"] = function parseSpecialRelativeOrAuthority(c) {
if (c === 47 && this.input[this.pointer + 1] === 47) {
this.state = "special authority ignore slashes";
++this.pointer;
} else {
this.parseError = true;
this.state = "relative";
--this.pointer;
}
return true;
};
URLStateMachine.prototype["parse path or authority"] = function parsePathOrAuthority(c) {
if (c === 47) {
this.state = "authority";
} else {
this.state = "path";
--this.pointer;
}
return true;
};
URLStateMachine.prototype["parse relative"] = function parseRelative(c) {
this.url.scheme = this.base.scheme;
if (isNaN(c)) {
this.url.username = this.base.username;
this.url.password = this.base.password;
this.url.host = this.base.host;
this.url.port = this.base.port;
this.url.path = this.base.path.slice();
this.url.query = this.base.query;
} else if (c === 47) {
this.state = "relative slash";
} else if (c === 63) {
this.url.username = this.base.username;
this.url.password = this.base.password;
this.url.host = this.base.host;
this.url.port = this.base.port;
this.url.path = this.base.path.slice();
this.url.query = "";
this.state = "query";
} else if (c === 35) {
this.url.username = this.base.username;
this.url.password = this.base.password;
this.url.host = this.base.host;
this.url.port = this.base.port;
this.url.path = this.base.path.slice();
this.url.query = this.base.query;
this.url.fragment = "";
this.state = "fragment";
} else if (isSpecial(this.url) && c === 92) {
this.parseError = true;
this.state = "relative slash";
} else {
this.url.username = this.base.username;
this.url.password = this.base.password;
this.url.host = this.base.host;
this.url.port = this.base.port;
this.url.path = this.base.path.slice(0, this.base.path.length - 1);
this.state = "path";
--this.pointer;
}
return true;
};
URLStateMachine.prototype["parse relative slash"] = function parseRelativeSlash(c) {
if (isSpecial(this.url) && (c === 47 || c === 92)) {
if (c === 92) {
this.parseError = true;
}
this.state = "special authority ignore slashes";
} else if (c === 47) {
this.state = "authority";
} else {
this.url.username = this.base.username;
this.url.password = this.base.password;
this.url.host = this.base.host;
this.url.port = this.base.port;
this.state = "path";
--this.pointer;
}
return true;
};
URLStateMachine.prototype["parse special authority slashes"] = function parseSpecialAuthoritySlashes(c) {
if (c === 47 && this.input[this.pointer + 1] === 47) {
this.state = "special authority ignore slashes";
++this.pointer;
} else {
this.parseError = true;
this.state = "special authority ignore slashes";
--this.pointer;
}
return true;
};
URLStateMachine.prototype["parse special authority ignore slashes"] = function parseSpecialAuthorityIgnoreSlashes(c) {
if (c !== 47 && c !== 92) {
this.state = "authority";
--this.pointer;
} else {
this.parseError = true;
}
return true;
};
URLStateMachine.prototype["parse authority"] = function parseAuthority(c, cStr) {
if (c === 64) {
this.parseError = true;
if (this.atFlag) {
this.buffer = "%40" + this.buffer;
}
this.atFlag = true;
// careful, this is based on buffer and has its own pointer (this.pointer != pointer) and inner chars
const len = countSymbols(this.buffer);
for (let pointer = 0; pointer < len; ++pointer) {
const codePoint = this.buffer.codePointAt(pointer);
if (codePoint === 58 && !this.passwordTokenSeenFlag) {
this.passwordTokenSeenFlag = true;
continue;
}
const encodedCodePoints = percentEncodeChar(codePoint, isUserinfoPercentEncode);
if (this.passwordTokenSeenFlag) {
this.url.password += encodedCodePoints;
} else {
this.url.username += encodedCodePoints;
}
}
this.buffer = "";
} else if (isNaN(c) || c === 47 || c === 63 || c === 35 ||
(isSpecial(this.url) && c === 92)) {
if (this.atFlag && this.buffer === "") {
this.parseError = true;
return failure;
}
this.pointer -= countSymbols(this.buffer) + 1;
this.buffer = "";
this.state = "host";
} else {
this.buffer += cStr;
}
return true;
};
URLStateMachine.prototype["parse hostname"] =
URLStateMachine.prototype["parse host"] = function parseHostName(c, cStr) {
if (this.stateOverride && this.url.scheme === "file") {
--this.pointer;
this.state = "file host";
} else if (c === 58 && !this.arrFlag) {
if (this.buffer === "") {
this.parseError = true;
return failure;
}
const host = parseHost(this.buffer, isSpecial(this.url));
if (host === failure) {
return failure;
}
this.url.host = host;
this.buffer = "";
this.state = "port";
if (this.stateOverride === "hostname") {
return false;
}
} else if (isNaN(c) || c === 47 || c === 63 || c === 35 ||
(isSpecial(this.url) && c === 92)) {
--this.pointer;
if (isSpecial(this.url) && this.buffer === "") {
this.parseError = true;
return failure;
} else if (this.stateOverride && this.buffer === "" &&
(includesCredentials(this.url) || this.url.port !== null)) {
this.parseError = true;
return false;
}
const host = parseHost(this.buffer, isSpecial(this.url));
if (host === failure) {
return failure;
}
this.url.host = host;
this.buffer = "";
this.state = "path start";
if (this.stateOverride) {
return false;
}
} else {
if (c === 91) {
this.arrFlag = true;
} else if (c === 93) {
this.arrFlag = false;
}
this.buffer += cStr;
}
return true;
};
URLStateMachine.prototype["parse port"] = function parsePort(c, cStr) {
if (isASCIIDigit(c)) {
this.buffer += cStr;
} else if (isNaN(c) || c === 47 || c === 63 || c === 35 ||
(isSpecial(this.url) && c === 92) ||
this.stateOverride) {
if (this.buffer !== "") {
const port = parseInt(this.buffer);
if (port > Math.pow(2, 16) - 1) {
this.parseError = true;
return failure;
}
this.url.port = port === defaultPort(this.url.scheme) ? null : port;
this.buffer = "";
}
if (this.stateOverride) {
return false;
}
this.state = "path start";
--this.pointer;
} else {
this.parseError = true;
return failure;
}
return true;
};
const fileOtherwiseCodePoints = new Set([47, 92, 63, 35]);
URLStateMachine.prototype["parse file"] = function parseFile(c) {
this.url.scheme = "file";
if (c === 47 || c === 92) {
if (c === 92) {
this.parseError = true;
}
this.state = "file slash";
} else if (this.base !== null && this.base.scheme === "file") {
if (isNaN(c)) {
this.url.host = this.base.host;
this.url.path = this.base.path.slice();
this.url.query = this.base.query;
} else if (c === 63) {
this.url.host = this.base.host;
this.url.path = this.base.path.slice();
this.url.query = "";
this.state = "query";
} else if (c === 35) {
this.url.host = this.base.host;
this.url.path = this.base.path.slice();
this.url.query = this.base.query;
this.url.fragment = "";
this.state = "fragment";
} else {
if (this.input.length - this.pointer - 1 === 0 || // remaining consists of 0 code points
!isWindowsDriveLetterCodePoints(c, this.input[this.pointer + 1]) ||
(this.input.length - this.pointer - 1 >= 2 && // remaining has at least 2 code points
!fileOtherwiseCodePoints.has(this.input[this.pointer + 2]))) {
this.url.host = this.base.host;
this.url.path = this.base.path.slice();
shortenPath(this.url);
} else {
this.parseError = true;
}
this.state = "path";
--this.pointer;
}
} else {
this.state = "path";
--this.pointer;
}
return true;
};
URLStateMachine.prototype["parse file slash"] = function parseFileSlash(c) {
if (c === 47 || c === 92) {
if (c === 92) {
this.parseError = true;
}
this.state = "file host";
} else {
if (this.base !== null && this.base.scheme === "file") {
if (isNormalizedWindowsDriveLetterString(this.base.path[0])) {
this.url.path.push(this.base.path[0]);
} else {
this.url.host = this.base.host;
}
}
this.state = "path";
--this.pointer;
}
return true;
};
URLStateMachine.prototype["parse file host"] = function parseFileHost(c, cStr) {
if (isNaN(c) || c === 47 || c === 92 || c === 63 || c === 35) {
--this.pointer;
if (!this.stateOverride && isWindowsDriveLetterString(this.buffer)) {
this.parseError = true;
this.state = "path";
} else if (this.buffer === "") {
this.url.host = "";
if (this.stateOverride) {
return false;
}
this.state = "path start";
} else {
let host = parseHost(this.buffer, isSpecial(this.url));
if (host === failure) {
return failure;
}
if (host === "localhost") {
host = "";
}
this.url.host = host;
if (this.stateOverride) {
return false;
}
this.buffer = "";
this.state = "path start";
}
} else {
this.buffer += cStr;
}
return true;
};
URLStateMachine.prototype["parse path start"] = function parsePathStart(c) {
if (isSpecial(this.url)) {
if (c === 92) {
this.parseError = true;
}
this.state = "path";
if (c !== 47 && c !== 92) {
--this.pointer;
}
} else if (!this.stateOverride && c === 63) {
this.url.query = "";
this.state = "query";
} else if (!this.stateOverride && c === 35) {
this.url.fragment = "";
this.state = "fragment";
} else if (c !== undefined) {
this.state = "path";
if (c !== 47) {
--this.pointer;
}
}
return true;
};
URLStateMachine.prototype["parse path"] = function parsePath(c) {
if (isNaN(c) || c === 47 || (isSpecial(this.url) && c === 92) ||
(!this.stateOverride && (c === 63 || c === 35))) {
if (isSpecial(this.url) && c === 92) {
this.parseError = true;
}
if (isDoubleDot(this.buffer)) {
shortenPath(this.url);
if (c !== 47 && !(isSpecial(this.url) && c === 92)) {
this.url.path.push("");
}
} else if (isSingleDot(this.buffer) && c !== 47 &&
!(isSpecial(this.url) && c === 92)) {
this.url.path.push("");
} else if (!isSingleDot(this.buffer)) {
if (this.url.scheme === "file" && this.url.path.length === 0 && isWindowsDriveLetterString(this.buffer)) {
if (this.url.host !== "" && this.url.host !== null) {
this.parseError = true;
this.url.host = "";
}
this.buffer = this.buffer[0] + ":";
}
this.url.path.push(this.buffer);
}
this.buffer = "";
if (this.url.scheme === "file" && (c === undefined || c === 63 || c === 35)) {
while (this.url.path.length > 1 && this.url.path[0] === "") {
this.parseError = true;
this.url.path.shift();
}
}
if (c === 63) {
this.url.query = "";
this.state = "query";
}
if (c === 35) {
this.url.fragment = "";
this.state = "fragment";
}
} else {
// TODO: If c is not a URL code point and not "%", parse error.
if (c === 37 &&
(!isASCIIHex(this.input[this.pointer + 1]) ||
!isASCIIHex(this.input[this.pointer + 2]))) {
this.parseError = true;
}
this.buffer += percentEncodeChar(c, isPathPercentEncode);
}
return true;
};
URLStateMachine.prototype["parse cannot-be-a-base-URL path"] = function parseCannotBeABaseURLPath(c) {
if (c === 63) {
this.url.query = "";
this.state = "query";
} else if (c === 35) {
this.url.fragment = "";
this.state = "fragment";
} else {
// TODO: Add: not a URL code point
if (!isNaN(c) && c !== 37) {
this.parseError = true;
}
if (c === 37 &&
(!isASCIIHex(this.input[this.pointer + 1]) ||
!isASCIIHex(this.input[this.pointer + 2]))) {
this.parseError = true;
}
if (!isNaN(c)) {
this.url.path[0] = this.url.path[0] + percentEncodeChar(c, isC0ControlPercentEncode);
}
}
return true;
};
URLStateMachine.prototype["parse query"] = function parseQuery(c, cStr) {
if (isNaN(c) || (!this.stateOverride && c === 35)) {
if (!isSpecial(this.url) || this.url.scheme === "ws" || this.url.scheme === "wss") {
this.encodingOverride = "utf-8";
}
const buffer = new Buffer(this.buffer); // TODO: Use encoding override instead
for (let i = 0; i < buffer.length; ++i) {
if (buffer[i] < 0x21 || buffer[i] > 0x7E || buffer[i] === 0x22 || buffer[i] === 0x23 ||
buffer[i] === 0x3C || buffer[i] === 0x3E) {
this.url.query += percentEncode(buffer[i]);
} else {
this.url.query += String.fromCodePoint(buffer[i]);
}
}
this.buffer = "";
if (c === 35) {
this.url.fragment = "";
this.state = "fragment";
}
} else {
// TODO: If c is not a URL code point and not "%", parse error.
if (c === 37 &&
(!isASCIIHex(this.input[this.pointer + 1]) ||
!isASCIIHex(this.input[this.pointer + 2]))) {
this.parseError = true;
}
this.buffer += cStr;
}
return true;
};
URLStateMachine.prototype["parse fragment"] = function parseFragment(c) {
if (isNaN(c)) { // do nothing
} else if (c === 0x0) {
this.parseError = true;
} else {
// TODO: If c is not a URL code point and not "%", parse error.
if (c === 37 &&
(!isASCIIHex(this.input[this.pointer + 1]) ||
!isASCIIHex(this.input[this.pointer + 2]))) {
this.parseError = true;
}
this.url.fragment += percentEncodeChar(c, isC0ControlPercentEncode);
}
return true;
};
function serializeURL(url, excludeFragment) {
let output = url.scheme + ":";
if (url.host !== null) {
output += "//";
if (url.username !== "" || url.password !== "") {
output += url.username;
if (url.password !== "") {
output += ":" + url.password;
}
output += "@";
}
output += serializeHost(url.host);
if (url.port !== null) {
output += ":" + url.port;
}
} else if (url.host === null && url.scheme === "file") {
output += "//";
}
if (url.cannotBeABaseURL) {
output += url.path[0];
} else {
for (const string of url.path) {
output += "/" + string;
}
}
if (url.query !== null) {
output += "?" + url.query;
}
if (!excludeFragment && url.fragment !== null) {
output += "#" + url.fragment;
}
return output;
}
function serializeOrigin(tuple) {
let result = tuple.scheme + "://";
result += serializeHost(tuple.host);
if (tuple.port !== null) {
result += ":" + tuple.port;
}
return result;
}
module.exports.serializeURL = serializeURL;
module.exports.serializeURLOrigin = function (url) {
// https://url.spec.whatwg.org/#concept-url-origin
switch (url.scheme) {
case "blob":
try {
return module.exports.serializeURLOrigin(module.exports.parseURL(url.path[0]));
} catch (e) {
// serializing an opaque origin returns "null"
return "null";
}
case "ftp":
case "gopher":
case "http":
case "https":
case "ws":
case "wss":
return serializeOrigin({
scheme: url.scheme,
host: url.host,
port: url.port
});
case "file":
// spec says "exercise to the reader", chrome says "file://"
return "file://";
default:
// serializing an opaque origin returns "null"
return "null";
}
};
module.exports.basicURLParse = function (input, options) {
if (options === undefined) {
options = {};
}
const usm = new URLStateMachine(input, options.baseURL, options.encodingOverride, options.url, options.stateOverride);
if (usm.failure) {
return "failure";
}
return usm.url;
};
module.exports.setTheUsername = function (url, username) {
url.username = "";
const decoded = punycode.ucs2.decode(username);
for (let i = 0; i < decoded.length; ++i) {
url.username += percentEncodeChar(decoded[i], isUserinfoPercentEncode);
}
};
module.exports.setThePassword = function (url, password) {
url.password = "";
const decoded = punycode.ucs2.decode(password);
for (let i = 0; i < decoded.length; ++i) {
url.password += percentEncodeChar(decoded[i], isUserinfoPercentEncode);
}
};
module.exports.serializeHost = serializeHost;
module.exports.cannotHaveAUsernamePasswordPort = cannotHaveAUsernamePasswordPort;
module.exports.serializeInteger = function (integer) {
return String(integer);
};
module.exports.parseURL = function (input, options) {
if (options === undefined) {
options = {};
}
// We don't handle blobs, so this just delegates:
return module.exports.basicURLParse(input, { baseURL: options.baseURL, encodingOverride: options.encodingOverride });
};
/***/ }),
/***/ 9857:
/***/ ((module) => {
"use strict";
module.exports.mixin = function mixin(target, source) {
const keys = Object.getOwnPropertyNames(source);
for (let i = 0; i < keys.length; ++i) {
Object.defineProperty(target, keys[i], Object.getOwnPropertyDescriptor(source, keys[i]));
}
};
module.exports.wrapperSymbol = Symbol("wrapper");
module.exports.implSymbol = Symbol("impl");
module.exports.wrapperForImpl = function (impl) {
return impl[module.exports.wrapperSymbol];
};
module.exports.implForWrapper = function (wrapper) {
return wrapper[module.exports.implSymbol];
};
/***/ }),
/***/ 8264:
/***/ ((module) => {
// Returns a wrapper function that returns a wrapped callback
// The wrapper function should do some stuff, and return a
// presumably different callback function.
// This makes sure that own properties are retained, so that
// decorations and such are not lost along the way.
module.exports = wrappy
function wrappy (fn, cb) {
if (fn && cb) return wrappy(fn)(cb)
if (typeof fn !== 'function')
throw new TypeError('need wrapper function')
Object.keys(fn).forEach(function (k) {
wrapper[k] = fn[k]
})
return wrapper
function wrapper() {
var args = new Array(arguments.length)
for (var i = 0; i < args.length; i++) {
args[i] = arguments[i]
}
var ret = fn.apply(this, args)
var cb = args[args.length-1]
if (typeof ret === 'function' && ret !== cb) {
Object.keys(cb).forEach(function (k) {
ret[k] = cb[k]
})
}
return ret
}
}
/***/ }),
/***/ 2078:
/***/ ((module) => {
module.exports = eval("require")("encoding");
/***/ }),
/***/ 2613:
/***/ ((module) => {
"use strict";
module.exports = require("assert");
/***/ }),
/***/ 181:
/***/ ((module) => {
"use strict";
module.exports = require("buffer");
/***/ }),
/***/ 5317:
/***/ ((module) => {
"use strict";
module.exports = require("child_process");
/***/ }),
/***/ 6982:
/***/ ((module) => {
"use strict";
module.exports = require("crypto");
/***/ }),
/***/ 4434:
/***/ ((module) => {
"use strict";
module.exports = require("events");
/***/ }),
/***/ 9896:
/***/ ((module) => {
"use strict";
module.exports = require("fs");
/***/ }),
/***/ 8611:
/***/ ((module) => {
"use strict";
module.exports = require("http");
/***/ }),
/***/ 5692:
/***/ ((module) => {
"use strict";
module.exports = require("https");
/***/ }),
/***/ 3339:
/***/ ((module) => {
"use strict";
module.exports = require("module");
/***/ }),
/***/ 1708:
/***/ ((module) => {
"use strict";
module.exports = require("node:process");
/***/ }),
/***/ 7830:
/***/ ((module) => {
"use strict";
module.exports = require("node:stream/web");
/***/ }),
/***/ 857:
/***/ ((module) => {
"use strict";
module.exports = require("os");
/***/ }),
/***/ 6928:
/***/ ((module) => {
"use strict";
module.exports = require("path");
/***/ }),
/***/ 3785:
/***/ ((module) => {
"use strict";
module.exports = require("readline");
/***/ }),
/***/ 2203:
/***/ ((module) => {
"use strict";
module.exports = require("stream");
/***/ }),
/***/ 7016:
/***/ ((module) => {
"use strict";
module.exports = require("url");
/***/ }),
/***/ 9023:
/***/ ((module) => {
"use strict";
module.exports = require("util");
/***/ }),
/***/ 8167:
/***/ ((module) => {
"use strict";
module.exports = require("worker_threads");
/***/ }),
/***/ 3106:
/***/ ((module) => {
"use strict";
module.exports = require("zlib");
/***/ }),
/***/ 147:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({
value: true
}));
exports.codeFrameColumns = codeFrameColumns;
exports["default"] = _default;
var _highlight = __nccwpck_require__(6270);
let deprecationWarningShown = false;
function getDefs(chalk) {
return {
gutter: chalk.grey,
marker: chalk.red.bold,
message: chalk.red.bold
};
}
const NEWLINE = /\r\n|[\n\r\u2028\u2029]/;
function getMarkerLines(loc, source, opts) {
const startLoc = Object.assign({
column: 0,
line: -1
}, loc.start);
const endLoc = Object.assign({}, startLoc, loc.end);
const {
linesAbove = 2,
linesBelow = 3
} = opts || {};
const startLine = startLoc.line;
const startColumn = startLoc.column;
const endLine = endLoc.line;
const endColumn = endLoc.column;
let start = Math.max(startLine - (linesAbove + 1), 0);
let end = Math.min(source.length, endLine + linesBelow);
if (startLine === -1) {
start = 0;
}
if (endLine === -1) {
end = source.length;
}
const lineDiff = endLine - startLine;
const markerLines = {};
if (lineDiff) {
for (let i = 0; i <= lineDiff; i++) {
const lineNumber = i + startLine;
if (!startColumn) {
markerLines[lineNumber] = true;
} else if (i === 0) {
const sourceLength = source[lineNumber - 1].length;
markerLines[lineNumber] = [startColumn, sourceLength - startColumn + 1];
} else if (i === lineDiff) {
markerLines[lineNumber] = [0, endColumn];
} else {
const sourceLength = source[lineNumber - i].length;
markerLines[lineNumber] = [0, sourceLength];
}
}
} else {
if (startColumn === endColumn) {
if (startColumn) {
markerLines[startLine] = [startColumn, 0];
} else {
markerLines[startLine] = true;
}
} else {
markerLines[startLine] = [startColumn, endColumn - startColumn];
}
}
return {
start,
end,
markerLines
};
}
function codeFrameColumns(rawLines, loc, opts = {}) {
const highlighted = (opts.highlightCode || opts.forceColor) && (0, _highlight.shouldHighlight)(opts);
const chalk = (0, _highlight.getChalk)(opts);
const defs = getDefs(chalk);
const maybeHighlight = (chalkFn, string) => {
return highlighted ? chalkFn(string) : string;
};
const lines = rawLines.split(NEWLINE);
const {
start,
end,
markerLines
} = getMarkerLines(loc, lines, opts);
const hasColumns = loc.start && typeof loc.start.column === "number";
const numberMaxWidth = String(end).length;
const highlightedLines = highlighted ? (0, _highlight.default)(rawLines, opts) : rawLines;
let frame = highlightedLines.split(NEWLINE, end).slice(start, end).map((line, index) => {
const number = start + 1 + index;
const paddedNumber = ` ${number}`.slice(-numberMaxWidth);
const gutter = ` ${paddedNumber} |`;
const hasMarker = markerLines[number];
const lastMarkerLine = !markerLines[number + 1];
if (hasMarker) {
let markerLine = "";
if (Array.isArray(hasMarker)) {
const markerSpacing = line.slice(0, Math.max(hasMarker[0] - 1, 0)).replace(/[^\t]/g, " ");
const numberOfMarkers = hasMarker[1] || 1;
markerLine = ["\n ", maybeHighlight(defs.gutter, gutter.replace(/\d/g, " ")), " ", markerSpacing, maybeHighlight(defs.marker, "^").repeat(numberOfMarkers)].join("");
if (lastMarkerLine && opts.message) {
markerLine += " " + maybeHighlight(defs.message, opts.message);
}
}
return [maybeHighlight(defs.marker, ">"), maybeHighlight(defs.gutter, gutter), line.length > 0 ? ` ${line}` : "", markerLine].join("");
} else {
return ` ${maybeHighlight(defs.gutter, gutter)}${line.length > 0 ? ` ${line}` : ""}`;
}
}).join("\n");
if (opts.message && !hasColumns) {
frame = `${" ".repeat(numberMaxWidth + 1)}${opts.message}\n${frame}`;
}
if (highlighted) {
return chalk.reset(frame);
} else {
return frame;
}
}
function _default(rawLines, lineNumber, colNumber, opts = {}) {
if (!deprecationWarningShown) {
deprecationWarningShown = true;
const message = "Passing lineNumber and colNumber is deprecated to @babel/code-frame. Please use `codeFrameColumns`.";
if (process.emitWarning) {
process.emitWarning(message, "DeprecationWarning");
} else {
const deprecationError = new Error(message);
deprecationError.name = "DeprecationWarning";
console.warn(new Error(message));
}
}
colNumber = Math.max(colNumber, 0);
const location = {
start: {
column: colNumber,
line: lineNumber
}
};
return codeFrameColumns(rawLines, location, opts);
}
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 2924:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({
value: true
}));
exports.isIdentifierChar = isIdentifierChar;
exports.isIdentifierName = isIdentifierName;
exports.isIdentifierStart = isIdentifierStart;
let nonASCIIidentifierStartChars = "\xaa\xb5\xba\xc0-\xd6\xd8-\xf6\xf8-\u02c1\u02c6-\u02d1\u02e0-\u02e4\u02ec\u02ee\u0370-\u0374\u0376\u0377\u037a-\u037d\u037f\u0386\u0388-\u038a\u038c\u038e-\u03a1\u03a3-\u03f5\u03f7-\u0481\u048a-\u052f\u0531-\u0556\u0559\u0560-\u0588\u05d0-\u05ea\u05ef-\u05f2\u0620-\u064a\u066e\u066f\u0671-\u06d3\u06d5\u06e5\u06e6\u06ee\u06ef\u06fa-\u06fc\u06ff\u0710\u0712-\u072f\u074d-\u07a5\u07b1\u07ca-\u07ea\u07f4\u07f5\u07fa\u0800-\u0815\u081a\u0824\u0828\u0840-\u0858\u0860-\u086a\u0870-\u0887\u0889-\u088e\u08a0-\u08c9\u0904-\u0939\u093d\u0950\u0958-\u0961\u0971-\u0980\u0985-\u098c\u098f\u0990\u0993-\u09a8\u09aa-\u09b0\u09b2\u09b6-\u09b9\u09bd\u09ce\u09dc\u09dd\u09df-\u09e1\u09f0\u09f1\u09fc\u0a05-\u0a0a\u0a0f\u0a10\u0a13-\u0a28\u0a2a-\u0a30\u0a32\u0a33\u0a35\u0a36\u0a38\u0a39\u0a59-\u0a5c\u0a5e\u0a72-\u0a74\u0a85-\u0a8d\u0a8f-\u0a91\u0a93-\u0aa8\u0aaa-\u0ab0\u0ab2\u0ab3\u0ab5-\u0ab9\u0abd\u0ad0\u0ae0\u0ae1\u0af9\u0b05-\u0b0c\u0b0f\u0b10\u0b13-\u0b28\u0b2a-\u0b30\u0b32\u0b33\u0b35-\u0b39\u0b3d\u0b5c\u0b5d\u0b5f-\u0b61\u0b71\u0b83\u0b85-\u0b8a\u0b8e-\u0b90\u0b92-\u0b95\u0b99\u0b9a\u0b9c\u0b9e\u0b9f\u0ba3\u0ba4\u0ba8-\u0baa\u0bae-\u0bb9\u0bd0\u0c05-\u0c0c\u0c0e-\u0c10\u0c12-\u0c28\u0c2a-\u0c39\u0c3d\u0c58-\u0c5a\u0c5d\u0c60\u0c61\u0c80\u0c85-\u0c8c\u0c8e-\u0c90\u0c92-\u0ca8\u0caa-\u0cb3\u0cb5-\u0cb9\u0cbd\u0cdd\u0cde\u0ce0\u0ce1\u0cf1\u0cf2\u0d04-\u0d0c\u0d0e-\u0d10\u0d12-\u0d3a\u0d3d\u0d4e\u0d54-\u0d56\u0d5f-\u0d61\u0d7a-\u0d7f\u0d85-\u0d96\u0d9a-\u0db1\u0db3-\u0dbb\u0dbd\u0dc0-\u0dc6\u0e01-\u0e30\u0e32\u0e33\u0e40-\u0e46\u0e81\u0e82\u0e84\u0e86-\u0e8a\u0e8c-\u0ea3\u0ea5\u0ea7-\u0eb0\u0eb2\u0eb3\u0ebd\u0ec0-\u0ec4\u0ec6\u0edc-\u0edf\u0f00\u0f40-\u0f47\u0f49-\u0f6c\u0f88-\u0f8c\u1000-\u102a\u103f\u1050-\u1055\u105a-\u105d\u1061\u1065\u1066\u106e-\u1070\u1075-\u1081\u108e\u10a0-\u10c5\u10c7\u10cd\u10d0-\u10fa\u10fc-\u1248\u124a-\u124d\u1250-\u1256\u1258\u125a-\u125d\u1260-\u1288\u128a-\u128d\u1290-\u12b0\u12b2-\u12b5\u12b8-\u12be\u12c0\u12c2-\u12c5\u12c8-\u12d6\u12d8-\u1310\u1312-\u1315\u1318-\u135a\u1380-\u138f\u13a0-\u13f5\u13f8-\u13fd\u1401-\u166c\u166f-\u167f\u1681-\u169a\u16a0-\u16ea\u16ee-\u16f8\u1700-\u1711\u171f-\u1731\u1740-\u1751\u1760-\u176c\u176e-\u1770\u1780-\u17b3\u17d7\u17dc\u1820-\u1878\u1880-\u18a8\u18aa\u18b0-\u18f5\u1900-\u191e\u1950-\u196d\u1970-\u1974\u1980-\u19ab\u19b0-\u19c9\u1a00-\u1a16\u1a20-\u1a54\u1aa7\u1b05-\u1b33\u1b45-\u1b4c\u1b83-\u1ba0\u1bae\u1baf\u1bba-\u1be5\u1c00-\u1c23\u1c4d-\u1c4f\u1c5a-\u1c7d\u1c80-\u1c88\u1c90-\u1cba\u1cbd-\u1cbf\u1ce9-\u1cec\u1cee-\u1cf3\u1cf5\u1cf6\u1cfa\u1d00-\u1dbf\u1e00-\u1f15\u1f18-\u1f1d\u1f20-\u1f45\u1f48-\u1f4d\u1f50-\u1f57\u1f59\u1f5b\u1f5d\u1f5f-\u1f7d\u1f80-\u1fb4\u1fb6-\u1fbc\u1fbe\u1fc2-\u1fc4\u1fc6-\u1fcc\u1fd0-\u1fd3\u1fd6-\u1fdb\u1fe0-\u1fec\u1ff2-\u1ff4\u1ff6-\u1ffc\u2071\u207f\u2090-\u209c\u2102\u2107\u210a-\u2113\u2115\u2118-\u211d\u2124\u2126\u2128\u212a-\u2139\u213c-\u213f\u2145-\u2149\u214e\u2160-\u2188\u2c00-\u2ce4\u2ceb-\u2cee\u2cf2\u2cf3\u2d00-\u2d25\u2d27\u2d2d\u2d30-\u2d67\u2d6f\u2d80-\u2d96\u2da0-\u2da6\u2da8-\u2dae\u2db0-\u2db6\u2db8-\u2dbe\u2dc0-\u2dc6\u2dc8-\u2dce\u2dd0-\u2dd6\u2dd8-\u2dde\u3005-\u3007\u3021-\u3029\u3031-\u3035\u3038-\u303c\u3041-\u3096\u309b-\u309f\u30a1-\u30fa\u30fc-\u30ff\u3105-\u312f\u3131-\u318e\u31a0-\u31bf\u31f0-\u31ff\u3400-\u4dbf\u4e00-\ua48c\ua4d0-\ua4fd\ua500-\ua60c\ua610-\ua61f\ua62a\ua62b\ua640-\ua66e\ua67f-\ua69d\ua6a0-\ua6ef\ua717-\ua71f\ua722-\ua788\ua78b-\ua7ca\ua7d0\ua7d1\ua7d3\ua7d5-\ua7d9\ua7f2-\ua801\ua803-\ua805\ua807-\ua80a\ua80c-\ua822\ua840-\ua873\ua882-\ua8b3\ua8f2-\ua8f7\ua8fb\ua8fd\ua8fe\ua90a-\ua925\ua930-\ua946\ua960-\ua97c\ua984-\ua9b2\ua9cf\ua9e0-\ua9e4\ua9e6-\ua9ef\ua9fa-\ua9fe\uaa00-\uaa28\uaa40-\uaa42\uaa44-\uaa4b\uaa60-\uaa76\uaa7a\uaa7e-\uaaaf\uaab1\uaab5\uaab6\uaab9-\uaabd\uaac0\uaac2\uaadb-\uaadd\uaae0-\uaaea\uaaf2-\uaaf4\uab01-\uab06\uab09-\uab0e\uab11-\uab16\uab20-\uab26\uab28-\uab2e\uab30-\uab5a\uab5c-\uab69\uab70-\uabe2\uac00-\ud7a3\ud7b0-\ud7c6\ud7cb-\ud7fb\uf900-\ufa6d\ufa70-\ufad9\ufb00-\ufb06\ufb13-\ufb17\ufb1d\ufb1f-\ufb28\ufb2a-\ufb36\ufb38-\ufb3c\ufb3e\ufb40\ufb41\ufb43\ufb44\ufb46-\ufbb1\ufbd3-\ufd3d\ufd50-\ufd8f\ufd92-\ufdc7\ufdf0-\ufdfb\ufe70-\ufe74\ufe76-\ufefc\uff21-\uff3a\uff41-\uff5a\uff66-\uffbe\uffc2-\uffc7\uffca-\uffcf\uffd2-\uffd7\uffda-\uffdc";
let nonASCIIidentifierChars = "\u200c\u200d\xb7\u0300-\u036f\u0387\u0483-\u0487\u0591-\u05bd\u05bf\u05c1\u05c2\u05c4\u05c5\u05c7\u0610-\u061a\u064b-\u0669\u0670\u06d6-\u06dc\u06df-\u06e4\u06e7\u06e8\u06ea-\u06ed\u06f0-\u06f9\u0711\u0730-\u074a\u07a6-\u07b0\u07c0-\u07c9\u07eb-\u07f3\u07fd\u0816-\u0819\u081b-\u0823\u0825-\u0827\u0829-\u082d\u0859-\u085b\u0898-\u089f\u08ca-\u08e1\u08e3-\u0903\u093a-\u093c\u093e-\u094f\u0951-\u0957\u0962\u0963\u0966-\u096f\u0981-\u0983\u09bc\u09be-\u09c4\u09c7\u09c8\u09cb-\u09cd\u09d7\u09e2\u09e3\u09e6-\u09ef\u09fe\u0a01-\u0a03\u0a3c\u0a3e-\u0a42\u0a47\u0a48\u0a4b-\u0a4d\u0a51\u0a66-\u0a71\u0a75\u0a81-\u0a83\u0abc\u0abe-\u0ac5\u0ac7-\u0ac9\u0acb-\u0acd\u0ae2\u0ae3\u0ae6-\u0aef\u0afa-\u0aff\u0b01-\u0b03\u0b3c\u0b3e-\u0b44\u0b47\u0b48\u0b4b-\u0b4d\u0b55-\u0b57\u0b62\u0b63\u0b66-\u0b6f\u0b82\u0bbe-\u0bc2\u0bc6-\u0bc8\u0bca-\u0bcd\u0bd7\u0be6-\u0bef\u0c00-\u0c04\u0c3c\u0c3e-\u0c44\u0c46-\u0c48\u0c4a-\u0c4d\u0c55\u0c56\u0c62\u0c63\u0c66-\u0c6f\u0c81-\u0c83\u0cbc\u0cbe-\u0cc4\u0cc6-\u0cc8\u0cca-\u0ccd\u0cd5\u0cd6\u0ce2\u0ce3\u0ce6-\u0cef\u0cf3\u0d00-\u0d03\u0d3b\u0d3c\u0d3e-\u0d44\u0d46-\u0d48\u0d4a-\u0d4d\u0d57\u0d62\u0d63\u0d66-\u0d6f\u0d81-\u0d83\u0dca\u0dcf-\u0dd4\u0dd6\u0dd8-\u0ddf\u0de6-\u0def\u0df2\u0df3\u0e31\u0e34-\u0e3a\u0e47-\u0e4e\u0e50-\u0e59\u0eb1\u0eb4-\u0ebc\u0ec8-\u0ece\u0ed0-\u0ed9\u0f18\u0f19\u0f20-\u0f29\u0f35\u0f37\u0f39\u0f3e\u0f3f\u0f71-\u0f84\u0f86\u0f87\u0f8d-\u0f97\u0f99-\u0fbc\u0fc6\u102b-\u103e\u1040-\u1049\u1056-\u1059\u105e-\u1060\u1062-\u1064\u1067-\u106d\u1071-\u1074\u1082-\u108d\u108f-\u109d\u135d-\u135f\u1369-\u1371\u1712-\u1715\u1732-\u1734\u1752\u1753\u1772\u1773\u17b4-\u17d3\u17dd\u17e0-\u17e9\u180b-\u180d\u180f-\u1819\u18a9\u1920-\u192b\u1930-\u193b\u1946-\u194f\u19d0-\u19da\u1a17-\u1a1b\u1a55-\u1a5e\u1a60-\u1a7c\u1a7f-\u1a89\u1a90-\u1a99\u1ab0-\u1abd\u1abf-\u1ace\u1b00-\u1b04\u1b34-\u1b44\u1b50-\u1b59\u1b6b-\u1b73\u1b80-\u1b82\u1ba1-\u1bad\u1bb0-\u1bb9\u1be6-\u1bf3\u1c24-\u1c37\u1c40-\u1c49\u1c50-\u1c59\u1cd0-\u1cd2\u1cd4-\u1ce8\u1ced\u1cf4\u1cf7-\u1cf9\u1dc0-\u1dff\u203f\u2040\u2054\u20d0-\u20dc\u20e1\u20e5-\u20f0\u2cef-\u2cf1\u2d7f\u2de0-\u2dff\u302a-\u302f\u3099\u309a\ua620-\ua629\ua66f\ua674-\ua67d\ua69e\ua69f\ua6f0\ua6f1\ua802\ua806\ua80b\ua823-\ua827\ua82c\ua880\ua881\ua8b4-\ua8c5\ua8d0-\ua8d9\ua8e0-\ua8f1\ua8ff-\ua909\ua926-\ua92d\ua947-\ua953\ua980-\ua983\ua9b3-\ua9c0\ua9d0-\ua9d9\ua9e5\ua9f0-\ua9f9\uaa29-\uaa36\uaa43\uaa4c\uaa4d\uaa50-\uaa59\uaa7b-\uaa7d\uaab0\uaab2-\uaab4\uaab7\uaab8\uaabe\uaabf\uaac1\uaaeb-\uaaef\uaaf5\uaaf6\uabe3-\uabea\uabec\uabed\uabf0-\uabf9\ufb1e\ufe00-\ufe0f\ufe20-\ufe2f\ufe33\ufe34\ufe4d-\ufe4f\uff10-\uff19\uff3f";
const nonASCIIidentifierStart = new RegExp("[" + nonASCIIidentifierStartChars + "]");
const nonASCIIidentifier = new RegExp("[" + nonASCIIidentifierStartChars + nonASCIIidentifierChars + "]");
nonASCIIidentifierStartChars = nonASCIIidentifierChars = null;
const astralIdentifierStartCodes = [0, 11, 2, 25, 2, 18, 2, 1, 2, 14, 3, 13, 35, 122, 70, 52, 268, 28, 4, 48, 48, 31, 14, 29, 6, 37, 11, 29, 3, 35, 5, 7, 2, 4, 43, 157, 19, 35, 5, 35, 5, 39, 9, 51, 13, 10, 2, 14, 2, 6, 2, 1, 2, 10, 2, 14, 2, 6, 2, 1, 68, 310, 10, 21, 11, 7, 25, 5, 2, 41, 2, 8, 70, 5, 3, 0, 2, 43, 2, 1, 4, 0, 3, 22, 11, 22, 10, 30, 66, 18, 2, 1, 11, 21, 11, 25, 71, 55, 7, 1, 65, 0, 16, 3, 2, 2, 2, 28, 43, 28, 4, 28, 36, 7, 2, 27, 28, 53, 11, 21, 11, 18, 14, 17, 111, 72, 56, 50, 14, 50, 14, 35, 349, 41, 7, 1, 79, 28, 11, 0, 9, 21, 43, 17, 47, 20, 28, 22, 13, 52, 58, 1, 3, 0, 14, 44, 33, 24, 27, 35, 30, 0, 3, 0, 9, 34, 4, 0, 13, 47, 15, 3, 22, 0, 2, 0, 36, 17, 2, 24, 20, 1, 64, 6, 2, 0, 2, 3, 2, 14, 2, 9, 8, 46, 39, 7, 3, 1, 3, 21, 2, 6, 2, 1, 2, 4, 4, 0, 19, 0, 13, 4, 159, 52, 19, 3, 21, 2, 31, 47, 21, 1, 2, 0, 185, 46, 42, 3, 37, 47, 21, 0, 60, 42, 14, 0, 72, 26, 38, 6, 186, 43, 117, 63, 32, 7, 3, 0, 3, 7, 2, 1, 2, 23, 16, 0, 2, 0, 95, 7, 3, 38, 17, 0, 2, 0, 29, 0, 11, 39, 8, 0, 22, 0, 12, 45, 20, 0, 19, 72, 264, 8, 2, 36, 18, 0, 50, 29, 113, 6, 2, 1, 2, 37, 22, 0, 26, 5, 2, 1, 2, 31, 15, 0, 328, 18, 16, 0, 2, 12, 2, 33, 125, 0, 80, 921, 103, 110, 18, 195, 2637, 96, 16, 1071, 18, 5, 4026, 582, 8634, 568, 8, 30, 18, 78, 18, 29, 19, 47, 17, 3, 32, 20, 6, 18, 689, 63, 129, 74, 6, 0, 67, 12, 65, 1, 2, 0, 29, 6135, 9, 1237, 43, 8, 8936, 3, 2, 6, 2, 1, 2, 290, 16, 0, 30, 2, 3, 0, 15, 3, 9, 395, 2309, 106, 6, 12, 4, 8, 8, 9, 5991, 84, 2, 70, 2, 1, 3, 0, 3, 1, 3, 3, 2, 11, 2, 0, 2, 6, 2, 64, 2, 3, 3, 7, 2, 6, 2, 27, 2, 3, 2, 4, 2, 0, 4, 6, 2, 339, 3, 24, 2, 24, 2, 30, 2, 24, 2, 30, 2, 24, 2, 30, 2, 24, 2, 30, 2, 24, 2, 7, 1845, 30, 7, 5, 262, 61, 147, 44, 11, 6, 17, 0, 322, 29, 19, 43, 485, 27, 757, 6, 2, 3, 2, 1, 2, 14, 2, 196, 60, 67, 8, 0, 1205, 3, 2, 26, 2, 1, 2, 0, 3, 0, 2, 9, 2, 3, 2, 0, 2, 0, 7, 0, 5, 0, 2, 0, 2, 0, 2, 2, 2, 1, 2, 0, 3, 0, 2, 0, 2, 0, 2, 0, 2, 0, 2, 1, 2, 0, 3, 3, 2, 6, 2, 3, 2, 3, 2, 0, 2, 9, 2, 16, 6, 2, 2, 4, 2, 16, 4421, 42719, 33, 4153, 7, 221, 3, 5761, 15, 7472, 3104, 541, 1507, 4938, 6, 4191];
const astralIdentifierCodes = [509, 0, 227, 0, 150, 4, 294, 9, 1368, 2, 2, 1, 6, 3, 41, 2, 5, 0, 166, 1, 574, 3, 9, 9, 370, 1, 81, 2, 71, 10, 50, 3, 123, 2, 54, 14, 32, 10, 3, 1, 11, 3, 46, 10, 8, 0, 46, 9, 7, 2, 37, 13, 2, 9, 6, 1, 45, 0, 13, 2, 49, 13, 9, 3, 2, 11, 83, 11, 7, 0, 3, 0, 158, 11, 6, 9, 7, 3, 56, 1, 2, 6, 3, 1, 3, 2, 10, 0, 11, 1, 3, 6, 4, 4, 193, 17, 10, 9, 5, 0, 82, 19, 13, 9, 214, 6, 3, 8, 28, 1, 83, 16, 16, 9, 82, 12, 9, 9, 84, 14, 5, 9, 243, 14, 166, 9, 71, 5, 2, 1, 3, 3, 2, 0, 2, 1, 13, 9, 120, 6, 3, 6, 4, 0, 29, 9, 41, 6, 2, 3, 9, 0, 10, 10, 47, 15, 406, 7, 2, 7, 17, 9, 57, 21, 2, 13, 123, 5, 4, 0, 2, 1, 2, 6, 2, 0, 9, 9, 49, 4, 2, 1, 2, 4, 9, 9, 330, 3, 10, 1, 2, 0, 49, 6, 4, 4, 14, 9, 5351, 0, 7, 14, 13835, 9, 87, 9, 39, 4, 60, 6, 26, 9, 1014, 0, 2, 54, 8, 3, 82, 0, 12, 1, 19628, 1, 4706, 45, 3, 22, 543, 4, 4, 5, 9, 7, 3, 6, 31, 3, 149, 2, 1418, 49, 513, 54, 5, 49, 9, 0, 15, 0, 23, 4, 2, 14, 1361, 6, 2, 16, 3, 6, 2, 1, 2, 4, 101, 0, 161, 6, 10, 9, 357, 0, 62, 13, 499, 13, 983, 6, 110, 6, 6, 9, 4759, 9, 787719, 239];
function isInAstralSet(code, set) {
let pos = 0x10000;
for (let i = 0, length = set.length; i < length; i += 2) {
pos += set[i];
if (pos > code) return false;
pos += set[i + 1];
if (pos >= code) return true;
}
return false;
}
function isIdentifierStart(code) {
if (code < 65) return code === 36;
if (code <= 90) return true;
if (code < 97) return code === 95;
if (code <= 122) return true;
if (code <= 0xffff) {
return code >= 0xaa && nonASCIIidentifierStart.test(String.fromCharCode(code));
}
return isInAstralSet(code, astralIdentifierStartCodes);
}
function isIdentifierChar(code) {
if (code < 48) return code === 36;
if (code < 58) return true;
if (code < 65) return false;
if (code <= 90) return true;
if (code < 97) return code === 95;
if (code <= 122) return true;
if (code <= 0xffff) {
return code >= 0xaa && nonASCIIidentifier.test(String.fromCharCode(code));
}
return isInAstralSet(code, astralIdentifierStartCodes) || isInAstralSet(code, astralIdentifierCodes);
}
function isIdentifierName(name) {
let isFirst = true;
for (let i = 0; i < name.length; i++) {
let cp = name.charCodeAt(i);
if ((cp & 0xfc00) === 0xd800 && i + 1 < name.length) {
const trail = name.charCodeAt(++i);
if ((trail & 0xfc00) === 0xdc00) {
cp = 0x10000 + ((cp & 0x3ff) << 10) + (trail & 0x3ff);
}
}
if (isFirst) {
isFirst = false;
if (!isIdentifierStart(cp)) {
return false;
}
} else if (!isIdentifierChar(cp)) {
return false;
}
}
return !isFirst;
}
//# sourceMappingURL=identifier.js.map
/***/ }),
/***/ 6599:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({
value: true
}));
Object.defineProperty(exports, "isIdentifierChar", ({
enumerable: true,
get: function () {
return _identifier.isIdentifierChar;
}
}));
Object.defineProperty(exports, "isIdentifierName", ({
enumerable: true,
get: function () {
return _identifier.isIdentifierName;
}
}));
Object.defineProperty(exports, "isIdentifierStart", ({
enumerable: true,
get: function () {
return _identifier.isIdentifierStart;
}
}));
Object.defineProperty(exports, "isKeyword", ({
enumerable: true,
get: function () {
return _keyword.isKeyword;
}
}));
Object.defineProperty(exports, "isReservedWord", ({
enumerable: true,
get: function () {
return _keyword.isReservedWord;
}
}));
Object.defineProperty(exports, "isStrictBindOnlyReservedWord", ({
enumerable: true,
get: function () {
return _keyword.isStrictBindOnlyReservedWord;
}
}));
Object.defineProperty(exports, "isStrictBindReservedWord", ({
enumerable: true,
get: function () {
return _keyword.isStrictBindReservedWord;
}
}));
Object.defineProperty(exports, "isStrictReservedWord", ({
enumerable: true,
get: function () {
return _keyword.isStrictReservedWord;
}
}));
var _identifier = __nccwpck_require__(2924);
var _keyword = __nccwpck_require__(9884);
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 9884:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({
value: true
}));
exports.isKeyword = isKeyword;
exports.isReservedWord = isReservedWord;
exports.isStrictBindOnlyReservedWord = isStrictBindOnlyReservedWord;
exports.isStrictBindReservedWord = isStrictBindReservedWord;
exports.isStrictReservedWord = isStrictReservedWord;
const reservedWords = {
keyword: ["break", "case", "catch", "continue", "debugger", "default", "do", "else", "finally", "for", "function", "if", "return", "switch", "throw", "try", "var", "const", "while", "with", "new", "this", "super", "class", "extends", "export", "import", "null", "true", "false", "in", "instanceof", "typeof", "void", "delete"],
strict: ["implements", "interface", "let", "package", "private", "protected", "public", "static", "yield"],
strictBind: ["eval", "arguments"]
};
const keywords = new Set(reservedWords.keyword);
const reservedWordsStrictSet = new Set(reservedWords.strict);
const reservedWordsStrictBindSet = new Set(reservedWords.strictBind);
function isReservedWord(word, inModule) {
return inModule && word === "await" || word === "enum";
}
function isStrictReservedWord(word, inModule) {
return isReservedWord(word, inModule) || reservedWordsStrictSet.has(word);
}
function isStrictBindOnlyReservedWord(word) {
return reservedWordsStrictBindSet.has(word);
}
function isStrictBindReservedWord(word, inModule) {
return isStrictReservedWord(word, inModule) || isStrictBindOnlyReservedWord(word);
}
function isKeyword(word) {
return keywords.has(word);
}
//# sourceMappingURL=keyword.js.map
/***/ }),
/***/ 6270:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
Object.defineProperty(exports, "__esModule", ({
value: true
}));
exports["default"] = highlight;
exports.getChalk = getChalk;
exports.shouldHighlight = shouldHighlight;
var _jsTokens = __nccwpck_require__(5756);
var _helperValidatorIdentifier = __nccwpck_require__(6599);
var _chalk = __nccwpck_require__(1318);
const sometimesKeywords = new Set(["as", "async", "from", "get", "of", "set"]);
function getDefs(chalk) {
return {
keyword: chalk.cyan,
capitalized: chalk.yellow,
jsxIdentifier: chalk.yellow,
punctuator: chalk.yellow,
number: chalk.magenta,
string: chalk.green,
regex: chalk.magenta,
comment: chalk.grey,
invalid: chalk.white.bgRed.bold
};
}
const NEWLINE = /\r\n|[\n\r\u2028\u2029]/;
const BRACKET = /^[()[\]{}]$/;
let tokenize;
{
const JSX_TAG = /^[a-z][\w-]*$/i;
const getTokenType = function (token, offset, text) {
if (token.type === "name") {
if ((0, _helperValidatorIdentifier.isKeyword)(token.value) || (0, _helperValidatorIdentifier.isStrictReservedWord)(token.value, true) || sometimesKeywords.has(token.value)) {
return "keyword";
}
if (JSX_TAG.test(token.value) && (text[offset - 1] === "<" || text.slice(offset - 2, offset) == "</")) {
return "jsxIdentifier";
}
if (token.value[0] !== token.value[0].toLowerCase()) {
return "capitalized";
}
}
if (token.type === "punctuator" && BRACKET.test(token.value)) {
return "bracket";
}
if (token.type === "invalid" && (token.value === "@" || token.value === "#")) {
return "punctuator";
}
return token.type;
};
tokenize = function* (text) {
let match;
while (match = _jsTokens.default.exec(text)) {
const token = _jsTokens.matchToToken(match);
yield {
type: getTokenType(token, match.index, text),
value: token.value
};
}
};
}
function highlightTokens(defs, text) {
let highlighted = "";
for (const {
type,
value
} of tokenize(text)) {
const colorize = defs[type];
if (colorize) {
highlighted += value.split(NEWLINE).map(str => colorize(str)).join("\n");
} else {
highlighted += value;
}
}
return highlighted;
}
function shouldHighlight(options) {
return !!_chalk.supportsColor || options.forceColor;
}
function getChalk(options) {
return options.forceColor ? new _chalk.constructor({
enabled: true,
level: 1
}) : _chalk;
}
function highlight(code, options = {}) {
if (code !== "" && shouldHighlight(options)) {
const chalk = getChalk(options);
const defs = getDefs(chalk);
return highlightTokens(defs, code);
} else {
return code;
}
}
//# sourceMappingURL=index.js.map
/***/ }),
/***/ 8909:
/***/ ((module, exports, __nccwpck_require__) => {
/**
* Module dependencies.
*/
const EventEmitter = (__nccwpck_require__(4434).EventEmitter);
const childProcess = __nccwpck_require__(5317);
const path = __nccwpck_require__(6928);
const fs = __nccwpck_require__(9896);
// @ts-check
// Although this is a class, methods are static in style to allow override using subclass or just functions.
class Help {
constructor() {
this.helpWidth = undefined;
this.sortSubcommands = false;
this.sortOptions = false;
}
/**
* Get an array of the visible subcommands. Includes a placeholder for the implicit help command, if there is one.
*
* @param {Command} cmd
* @returns {Command[]}
*/
visibleCommands(cmd) {
const visibleCommands = cmd.commands.filter(cmd => !cmd._hidden);
if (cmd._hasImplicitHelpCommand()) {
// Create a command matching the implicit help command.
const args = cmd._helpCommandnameAndArgs.split(/ +/);
const helpCommand = cmd.createCommand(args.shift())
.helpOption(false);
helpCommand.description(cmd._helpCommandDescription);
helpCommand._parseExpectedArgs(args);
visibleCommands.push(helpCommand);
}
if (this.sortSubcommands) {
visibleCommands.sort((a, b) => {
return a.name().localeCompare(b.name());
});
}
return visibleCommands;
}
/**
* Get an array of the visible options. Includes a placeholder for the implicit help option, if there is one.
*
* @param {Command} cmd
* @returns {Option[]}
*/
visibleOptions(cmd) {
const visibleOptions = cmd.options.filter((option) => !option.hidden);
// Implicit help
const showShortHelpFlag = cmd._hasHelpOption && cmd._helpShortFlag && !cmd._findOption(cmd._helpShortFlag);
const showLongHelpFlag = cmd._hasHelpOption && !cmd._findOption(cmd._helpLongFlag);
if (showShortHelpFlag || showLongHelpFlag) {
let helpOption;
if (!showShortHelpFlag) {
helpOption = cmd.createOption(cmd._helpLongFlag, cmd._helpDescription);
} else if (!showLongHelpFlag) {
helpOption = cmd.createOption(cmd._helpShortFlag, cmd._helpDescription);
} else {
helpOption = cmd.createOption(cmd._helpFlags, cmd._helpDescription);
}
visibleOptions.push(helpOption);
}
if (this.sortOptions) {
const getSortKey = (option) => {
// WYSIWYG for order displayed in help with short before long, no special handling for negated.
return option.short ? option.short.replace(/^-/, '') : option.long.replace(/^--/, '');
};
visibleOptions.sort((a, b) => {
return getSortKey(a).localeCompare(getSortKey(b));
});
}
return visibleOptions;
}
/**
* Get an array of the arguments which have descriptions.
*
* @param {Command} cmd
* @returns {{ term: string, description:string }[]}
*/
visibleArguments(cmd) {
if (cmd._argsDescription && cmd._args.length) {
return cmd._args.map((argument) => {
return { term: argument.name, description: cmd._argsDescription[argument.name] || '' };
}, 0);
}
return [];
}
/**
* Get the command term to show in the list of subcommands.
*
* @param {Command} cmd
* @returns {string}
*/
subcommandTerm(cmd) {
// Legacy. Ignores custom usage string, and nested commands.
const args = cmd._args.map(arg => humanReadableArgName(arg)).join(' ');
return cmd._name +
(cmd._aliases[0] ? '|' + cmd._aliases[0] : '') +
(cmd.options.length ? ' [options]' : '') + // simplistic check for non-help option
(args ? ' ' + args : '');
}
/**
* Get the option term to show in the list of options.
*
* @param {Option} option
* @returns {string}
*/
optionTerm(option) {
return option.flags;
}
/**
* Get the longest command term length.
*
* @param {Command} cmd
* @param {Help} helper
* @returns {number}
*/
longestSubcommandTermLength(cmd, helper) {
return helper.visibleCommands(cmd).reduce((max, command) => {
return Math.max(max, helper.subcommandTerm(command).length);
}, 0);
};
/**
* Get the longest option term length.
*
* @param {Command} cmd
* @param {Help} helper
* @returns {number}
*/
longestOptionTermLength(cmd, helper) {
return helper.visibleOptions(cmd).reduce((max, option) => {
return Math.max(max, helper.optionTerm(option).length);
}, 0);
};
/**
* Get the longest argument term length.
*
* @param {Command} cmd
* @param {Help} helper
* @returns {number}
*/
longestArgumentTermLength(cmd, helper) {
return helper.visibleArguments(cmd).reduce((max, argument) => {
return Math.max(max, argument.term.length);
}, 0);
};
/**
* Get the command usage to be displayed at the top of the built-in help.
*
* @param {Command} cmd
* @returns {string}
*/
commandUsage(cmd) {
// Usage
let cmdName = cmd._name;
if (cmd._aliases[0]) {
cmdName = cmdName + '|' + cmd._aliases[0];
}
let parentCmdNames = '';
for (let parentCmd = cmd.parent; parentCmd; parentCmd = parentCmd.parent) {
parentCmdNames = parentCmd.name() + ' ' + parentCmdNames;
}
return parentCmdNames + cmdName + ' ' + cmd.usage();
}
/**
* Get the description for the command.
*
* @param {Command} cmd
* @returns {string}
*/
commandDescription(cmd) {
// @ts-ignore: overloaded return type
return cmd.description();
}
/**
* Get the command description to show in the list of subcommands.
*
* @param {Command} cmd
* @returns {string}
*/
subcommandDescription(cmd) {
// @ts-ignore: overloaded return type
return cmd.description();
}
/**
* Get the option description to show in the list of options.
*
* @param {Option} option
* @return {string}
*/
optionDescription(option) {
if (option.negate) {
return option.description;
}
const extraInfo = [];
if (option.argChoices) {
extraInfo.push(
// use stringify to match the display of the default value
`choices: ${option.argChoices.map((choice) => JSON.stringify(choice)).join(', ')}`);
}
if (option.defaultValue !== undefined) {
extraInfo.push(`default: ${option.defaultValueDescription || JSON.stringify(option.defaultValue)}`);
}
if (extraInfo.length > 0) {
return `${option.description} (${extraInfo.join(', ')})`;
}
return option.description;
};
/**
* Generate the built-in help text.
*
* @param {Command} cmd
* @param {Help} helper
* @returns {string}
*/
formatHelp(cmd, helper) {
const termWidth = helper.padWidth(cmd, helper);
const helpWidth = helper.helpWidth || 80;
const itemIndentWidth = 2;
const itemSeparatorWidth = 2; // between term and description
function formatItem(term, description) {
if (description) {
const fullText = `${term.padEnd(termWidth + itemSeparatorWidth)}${description}`;
return helper.wrap(fullText, helpWidth - itemIndentWidth, termWidth + itemSeparatorWidth);
}
return term;
};
function formatList(textArray) {
return textArray.join('\n').replace(/^/gm, ' '.repeat(itemIndentWidth));
}
// Usage
let output = [`Usage: ${helper.commandUsage(cmd)}`, ''];
// Description
const commandDescription = helper.commandDescription(cmd);
if (commandDescription.length > 0) {
output = output.concat([commandDescription, '']);
}
// Arguments
const argumentList = helper.visibleArguments(cmd).map((argument) => {
return formatItem(argument.term, argument.description);
});
if (argumentList.length > 0) {
output = output.concat(['Arguments:', formatList(argumentList), '']);
}
// Options
const optionList = helper.visibleOptions(cmd).map((option) => {
return formatItem(helper.optionTerm(option), helper.optionDescription(option));
});
if (optionList.length > 0) {
output = output.concat(['Options:', formatList(optionList), '']);
}
// Commands
const commandList = helper.visibleCommands(cmd).map((cmd) => {
return formatItem(helper.subcommandTerm(cmd), helper.subcommandDescription(cmd));
});
if (commandList.length > 0) {
output = output.concat(['Commands:', formatList(commandList), '']);
}
return output.join('\n');
}
/**
* Calculate the pad width from the maximum term length.
*
* @param {Command} cmd
* @param {Help} helper
* @returns {number}
*/
padWidth(cmd, helper) {
return Math.max(
helper.longestOptionTermLength(cmd, helper),
helper.longestSubcommandTermLength(cmd, helper),
helper.longestArgumentTermLength(cmd, helper)
);
};
/**
* Wrap the given string to width characters per line, with lines after the first indented.
* Do not wrap if insufficient room for wrapping (minColumnWidth), or string is manually formatted.
*
* @param {string} str
* @param {number} width
* @param {number} indent
* @param {number} [minColumnWidth=40]
* @return {string}
*
*/
wrap(str, width, indent, minColumnWidth = 40) {
// Detect manually wrapped and indented strings by searching for line breaks
// followed by multiple spaces/tabs.
if (str.match(/[\n]\s+/)) return str;
// Do not wrap if not enough room for a wrapped column of text (as could end up with a word per line).
const columnWidth = width - indent;
if (columnWidth < minColumnWidth) return str;
const leadingStr = str.substr(0, indent);
const columnText = str.substr(indent);
const indentString = ' '.repeat(indent);
const regex = new RegExp('.{1,' + (columnWidth - 1) + '}([\\s\u200B]|$)|[^\\s\u200B]+?([\\s\u200B]|$)', 'g');
const lines = columnText.match(regex) || [];
return leadingStr + lines.map((line, i) => {
if (line.slice(-1) === '\n') {
line = line.slice(0, line.length - 1);
}
return ((i > 0) ? indentString : '') + line.trimRight();
}).join('\n');
}
}
class Option {
/**
* Initialize a new `Option` with the given `flags` and `description`.
*
* @param {string} flags
* @param {string} [description]
*/
constructor(flags, description) {
this.flags = flags;
this.description = description || '';
this.required = flags.includes('<'); // A value must be supplied when the option is specified.
this.optional = flags.includes('['); // A value is optional when the option is specified.
// variadic test ignores <value,...> et al which might be used to describe custom splitting of single argument
this.variadic = /\w\.\.\.[>\]]$/.test(flags); // The option can take multiple values.
this.mandatory = false; // The option must have a value after parsing, which usually means it must be specified on command line.
const optionFlags = _parseOptionFlags(flags);
this.short = optionFlags.shortFlag;
this.long = optionFlags.longFlag;
this.negate = false;
if (this.long) {
this.negate = this.long.startsWith('--no-');
}
this.defaultValue = undefined;
this.defaultValueDescription = undefined;
this.parseArg = undefined;
this.hidden = false;
this.argChoices = undefined;
}
/**
* Set the default value, and optionally supply the description to be displayed in the help.
*
* @param {any} value
* @param {string} [description]
* @return {Option}
*/
default(value, description) {
this.defaultValue = value;
this.defaultValueDescription = description;
return this;
};
/**
* Set the custom handler for processing CLI option arguments into option values.
*
* @param {Function} [fn]
* @return {Option}
*/
argParser(fn) {
this.parseArg = fn;
return this;
};
/**
* Whether the option is mandatory and must have a value after parsing.
*
* @param {boolean} [mandatory=true]
* @return {Option}
*/
makeOptionMandatory(mandatory = true) {
this.mandatory = !!mandatory;
return this;
};
/**
* Hide option in help.
*
* @param {boolean} [hide=true]
* @return {Option}
*/
hideHelp(hide = true) {
this.hidden = !!hide;
return this;
};
/**
* @api private
*/
_concatValue(value, previous) {
if (previous === this.defaultValue || !Array.isArray(previous)) {
return [value];
}
return previous.concat(value);
}
/**
* Only allow option value to be one of choices.
*
* @param {string[]} values
* @return {Option}
*/
choices(values) {
this.argChoices = values;
this.parseArg = (arg, previous) => {
if (!values.includes(arg)) {
throw new InvalidOptionArgumentError(`Allowed choices are ${values.join(', ')}.`);
}
if (this.variadic) {
return this._concatValue(arg, previous);
}
return arg;
};
return this;
};
/**
* Return option name.
*
* @return {string}
*/
name() {
if (this.long) {
return this.long.replace(/^--/, '');
}
return this.short.replace(/^-/, '');
};
/**
* Return option name, in a camelcase format that can be used
* as a object attribute key.
*
* @return {string}
* @api private
*/
attributeName() {
return camelcase(this.name().replace(/^no-/, ''));
};
/**
* Check if `arg` matches the short or long flag.
*
* @param {string} arg
* @return {boolean}
* @api private
*/
is(arg) {
return this.short === arg || this.long === arg;
};
}
/**
* CommanderError class
* @class
*/
class CommanderError extends Error {
/**
* Constructs the CommanderError class
* @param {number} exitCode suggested exit code which could be used with process.exit
* @param {string} code an id string representing the error
* @param {string} message human-readable description of the error
* @constructor
*/
constructor(exitCode, code, message) {
super(message);
// properly capture stack trace in Node.js
Error.captureStackTrace(this, this.constructor);
this.name = this.constructor.name;
this.code = code;
this.exitCode = exitCode;
this.nestedError = undefined;
}
}
/**
* InvalidOptionArgumentError class
* @class
*/
class InvalidOptionArgumentError extends CommanderError {
/**
* Constructs the InvalidOptionArgumentError class
* @param {string} [message] explanation of why argument is invalid
* @constructor
*/
constructor(message) {
super(1, 'commander.invalidOptionArgument', message);
// properly capture stack trace in Node.js
Error.captureStackTrace(this, this.constructor);
this.name = this.constructor.name;
}
}
class Command extends EventEmitter {
/**
* Initialize a new `Command`.
*
* @param {string} [name]
*/
constructor(name) {
super();
this.commands = [];
this.options = [];
this.parent = null;
this._allowUnknownOption = false;
this._allowExcessArguments = true;
this._args = [];
this.rawArgs = null;
this._scriptPath = null;
this._name = name || '';
this._optionValues = {};
this._storeOptionsAsProperties = false;
this._actionResults = [];
this._actionHandler = null;
this._executableHandler = false;
this._executableFile = null; // custom name for executable
this._defaultCommandName = null;
this._exitCallback = null;
this._aliases = [];
this._combineFlagAndOptionalValue = true;
this._description = '';
this._argsDescription = undefined;
this._enablePositionalOptions = false;
this._passThroughOptions = false;
// see .configureOutput() for docs
this._outputConfiguration = {
writeOut: (str) => process.stdout.write(str),
writeErr: (str) => process.stderr.write(str),
getOutHelpWidth: () => process.stdout.isTTY ? process.stdout.columns : undefined,
getErrHelpWidth: () => process.stderr.isTTY ? process.stderr.columns : undefined,
outputError: (str, write) => write(str)
};
this._hidden = false;
this._hasHelpOption = true;
this._helpFlags = '-h, --help';
this._helpDescription = 'display help for command';
this._helpShortFlag = '-h';
this._helpLongFlag = '--help';
this._addImplicitHelpCommand = undefined; // Deliberately undefined, not decided whether true or false
this._helpCommandName = 'help';
this._helpCommandnameAndArgs = 'help [command]';
this._helpCommandDescription = 'display help for command';
this._helpConfiguration = {};
}
/**
* Define a command.
*
* There are two styles of command: pay attention to where to put the description.
*
* Examples:
*
* // Command implemented using action handler (description is supplied separately to `.command`)
* program
* .command('clone <source> [destination]')
* .description('clone a repository into a newly created directory')
* .action((source, destination) => {
* console.log('clone command called');
* });
*
* // Command implemented using separate executable file (description is second parameter to `.command`)
* program
* .command('start <service>', 'start named service')
* .command('stop [service]', 'stop named service, or all if no name supplied');
*
* @param {string} nameAndArgs - command name and arguments, args are `<required>` or `[optional]` and last may also be `variadic...`
* @param {Object|string} [actionOptsOrExecDesc] - configuration options (for action), or description (for executable)
* @param {Object} [execOpts] - configuration options (for executable)
* @return {Command} returns new command for action handler, or `this` for executable command
*/
command(nameAndArgs, actionOptsOrExecDesc, execOpts) {
let desc = actionOptsOrExecDesc;
let opts = execOpts;
if (typeof desc === 'object' && desc !== null) {
opts = desc;
desc = null;
}
opts = opts || {};
const args = nameAndArgs.split(/ +/);
const cmd = this.createCommand(args.shift());
if (desc) {
cmd.description(desc);
cmd._executableHandler = true;
}
if (opts.isDefault) this._defaultCommandName = cmd._name;
cmd._outputConfiguration = this._outputConfiguration;
cmd._hidden = !!(opts.noHelp || opts.hidden); // noHelp is deprecated old name for hidden
cmd._hasHelpOption = this._hasHelpOption;
cmd._helpFlags = this._helpFlags;
cmd._helpDescription = this._helpDescription;
cmd._helpShortFlag = this._helpShortFlag;
cmd._helpLongFlag = this._helpLongFlag;
cmd._helpCommandName = this._helpCommandName;
cmd._helpCommandnameAndArgs = this._helpCommandnameAndArgs;
cmd._helpCommandDescription = this._helpCommandDescription;
cmd._helpConfiguration = this._helpConfiguration;
cmd._exitCallback = this._exitCallback;
cmd._storeOptionsAsProperties = this._storeOptionsAsProperties;
cmd._combineFlagAndOptionalValue = this._combineFlagAndOptionalValue;
cmd._allowExcessArguments = this._allowExcessArguments;
cmd._enablePositionalOptions = this._enablePositionalOptions;
cmd._executableFile = opts.executableFile || null; // Custom name for executable file, set missing to null to match constructor
this.commands.push(cmd);
cmd._parseExpectedArgs(args);
cmd.parent = this;
if (desc) return this;
return cmd;
};
/**
* Factory routine to create a new unattached command.
*
* See .command() for creating an attached subcommand, which uses this routine to
* create the command. You can override createCommand to customise subcommands.
*
* @param {string} [name]
* @return {Command} new command
*/
createCommand(name) {
return new Command(name);
};
/**
* You can customise the help with a subclass of Help by overriding createHelp,
* or by overriding Help properties using configureHelp().
*
* @return {Help}
*/
createHelp() {
return Object.assign(new Help(), this.configureHelp());
};
/**
* You can customise the help by overriding Help properties using configureHelp(),
* or with a subclass of Help by overriding createHelp().
*
* @param {Object} [configuration] - configuration options
* @return {Command|Object} `this` command for chaining, or stored configuration
*/
configureHelp(configuration) {
if (configuration === undefined) return this._helpConfiguration;
this._helpConfiguration = configuration;
return this;
}
/**
* The default output goes to stdout and stderr. You can customise this for special
* applications. You can also customise the display of errors by overriding outputError.
*
* The configuration properties are all functions:
*
* // functions to change where being written, stdout and stderr
* writeOut(str)
* writeErr(str)
* // matching functions to specify width for wrapping help
* getOutHelpWidth()
* getErrHelpWidth()
* // functions based on what is being written out
* outputError(str, write) // used for displaying errors, and not used for displaying help
*
* @param {Object} [configuration] - configuration options
* @return {Command|Object} `this` command for chaining, or stored configuration
*/
configureOutput(configuration) {
if (configuration === undefined) return this._outputConfiguration;
Object.assign(this._outputConfiguration, configuration);
return this;
}
/**
* Add a prepared subcommand.
*
* See .command() for creating an attached subcommand which inherits settings from its parent.
*
* @param {Command} cmd - new subcommand
* @param {Object} [opts] - configuration options
* @return {Command} `this` command for chaining
*/
addCommand(cmd, opts) {
if (!cmd._name) throw new Error('Command passed to .addCommand() must have a name');
// To keep things simple, block automatic name generation for deeply nested executables.
// Fail fast and detect when adding rather than later when parsing.
function checkExplicitNames(commandArray) {
commandArray.forEach((cmd) => {
if (cmd._executableHandler && !cmd._executableFile) {
throw new Error(`Must specify executableFile for deeply nested executable: ${cmd.name()}`);
}
checkExplicitNames(cmd.commands);
});
}
checkExplicitNames(cmd.commands);
opts = opts || {};
if (opts.isDefault) this._defaultCommandName = cmd._name;
if (opts.noHelp || opts.hidden) cmd._hidden = true; // modifying passed command due to existing implementation
this.commands.push(cmd);
cmd.parent = this;
return this;
};
/**
* Define argument syntax for the command.
*/
arguments(desc) {
return this._parseExpectedArgs(desc.split(/ +/));
};
/**
* Override default decision whether to add implicit help command.
*
* addHelpCommand() // force on
* addHelpCommand(false); // force off
* addHelpCommand('help [cmd]', 'display help for [cmd]'); // force on with custom details
*
* @return {Command} `this` command for chaining
*/
addHelpCommand(enableOrNameAndArgs, description) {
if (enableOrNameAndArgs === false) {
this._addImplicitHelpCommand = false;
} else {
this._addImplicitHelpCommand = true;
if (typeof enableOrNameAndArgs === 'string') {
this._helpCommandName = enableOrNameAndArgs.split(' ')[0];
this._helpCommandnameAndArgs = enableOrNameAndArgs;
}
this._helpCommandDescription = description || this._helpCommandDescription;
}
return this;
};
/**
* @return {boolean}
* @api private
*/
_hasImplicitHelpCommand() {
if (this._addImplicitHelpCommand === undefined) {
return this.commands.length && !this._actionHandler && !this._findCommand('help');
}
return this._addImplicitHelpCommand;
};
/**
* Parse expected `args`.
*
* For example `["[type]"]` becomes `[{ required: false, name: 'type' }]`.
*
* @param {Array} args
* @return {Command} `this` command for chaining
* @api private
*/
_parseExpectedArgs(args) {
if (!args.length) return;
args.forEach((arg) => {
const argDetails = {
required: false,
name: '',
variadic: false
};
switch (arg[0]) {
case '<':
argDetails.required = true;
argDetails.name = arg.slice(1, -1);
break;
case '[':
argDetails.name = arg.slice(1, -1);
break;
}
if (argDetails.name.length > 3 && argDetails.name.slice(-3) === '...') {
argDetails.variadic = true;
argDetails.name = argDetails.name.slice(0, -3);
}
if (argDetails.name) {
this._args.push(argDetails);
}
});
this._args.forEach((arg, i) => {
if (arg.variadic && i < this._args.length - 1) {
throw new Error(`only the last argument can be variadic '${arg.name}'`);
}
});
return this;
};
/**
* Register callback to use as replacement for calling process.exit.
*
* @param {Function} [fn] optional callback which will be passed a CommanderError, defaults to throwing
* @return {Command} `this` command for chaining
*/
exitOverride(fn) {
if (fn) {
this._exitCallback = fn;
} else {
this._exitCallback = (err) => {
if (err.code !== 'commander.executeSubCommandAsync') {
throw err;
} else {
// Async callback from spawn events, not useful to throw.
}
};
}
return this;
};
/**
* Call process.exit, and _exitCallback if defined.
*
* @param {number} exitCode exit code for using with process.exit
* @param {string} code an id string representing the error
* @param {string} message human-readable description of the error
* @return never
* @api private
*/
_exit(exitCode, code, message) {
if (this._exitCallback) {
this._exitCallback(new CommanderError(exitCode, code, message));
// Expecting this line is not reached.
}
process.exit(exitCode);
};
/**
* Register callback `fn` for the command.
*
* Examples:
*
* program
* .command('help')
* .description('display verbose help')
* .action(function() {
* // output help here
* });
*
* @param {Function} fn
* @return {Command} `this` command for chaining
*/
action(fn) {
const listener = (args) => {
// The .action callback takes an extra parameter which is the command or options.
const expectedArgsCount = this._args.length;
const actionArgs = args.slice(0, expectedArgsCount);
if (this._storeOptionsAsProperties) {
actionArgs[expectedArgsCount] = this; // backwards compatible "options"
} else {
actionArgs[expectedArgsCount] = this.opts();
}
actionArgs.push(this);
const actionResult = fn.apply(this, actionArgs);
// Remember result in case it is async. Assume parseAsync getting called on root.
let rootCommand = this;
while (rootCommand.parent) {
rootCommand = rootCommand.parent;
}
rootCommand._actionResults.push(actionResult);
};
this._actionHandler = listener;
return this;
};
/**
* Factory routine to create a new unattached option.
*
* See .option() for creating an attached option, which uses this routine to
* create the option. You can override createOption to return a custom option.
*
* @param {string} flags
* @param {string} [description]
* @return {Option} new option
*/
createOption(flags, description) {
return new Option(flags, description);
};
/**
* Add an option.
*
* @param {Option} option
* @return {Command} `this` command for chaining
*/
addOption(option) {
const oname = option.name();
const name = option.attributeName();
let defaultValue = option.defaultValue;
// preassign default value for --no-*, [optional], <required>, or plain flag if boolean value
if (option.negate || option.optional || option.required || typeof defaultValue === 'boolean') {
// when --no-foo we make sure default is true, unless a --foo option is already defined
if (option.negate) {
const positiveLongFlag = option.long.replace(/^--no-/, '--');
defaultValue = this._findOption(positiveLongFlag) ? this._getOptionValue(name) : true;
}
// preassign only if we have a default
if (defaultValue !== undefined) {
this._setOptionValue(name, defaultValue);
}
}
// register the option
this.options.push(option);
// when it's passed assign the value
// and conditionally invoke the callback
this.on('option:' + oname, (val) => {
const oldValue = this._getOptionValue(name);
// custom processing
if (val !== null && option.parseArg) {
try {
val = option.parseArg(val, oldValue === undefined ? defaultValue : oldValue);
} catch (err) {
if (err.code === 'commander.invalidOptionArgument') {
const message = `error: option '${option.flags}' argument '${val}' is invalid. ${err.message}`;
this._displayError(err.exitCode, err.code, message);
}
throw err;
}
} else if (val !== null && option.variadic) {
val = option._concatValue(val, oldValue);
}
// unassigned or boolean value
if (typeof oldValue === 'boolean' || typeof oldValue === 'undefined') {
// if no value, negate false, and we have a default, then use it!
if (val == null) {
this._setOptionValue(name, option.negate
? false
: defaultValue || true);
} else {
this._setOptionValue(name, val);
}
} else if (val !== null) {
// reassign
this._setOptionValue(name, option.negate ? false : val);
}
});
return this;
}
/**
* Internal implementation shared by .option() and .requiredOption()
*
* @api private
*/
_optionEx(config, flags, description, fn, defaultValue) {
const option = this.createOption(flags, description);
option.makeOptionMandatory(!!config.mandatory);
if (typeof fn === 'function') {
option.default(defaultValue).argParser(fn);
} else if (fn instanceof RegExp) {
// deprecated
const regex = fn;
fn = (val, def) => {
const m = regex.exec(val);
return m ? m[0] : def;
};
option.default(defaultValue).argParser(fn);
} else {
option.default(fn);
}
return this.addOption(option);
}
/**
* Define option with `flags`, `description` and optional
* coercion `fn`.
*
* The `flags` string contains the short and/or long flags,
* separated by comma, a pipe or space. The following are all valid
* all will output this way when `--help` is used.
*
* "-p, --pepper"
* "-p|--pepper"
* "-p --pepper"
*
* Examples:
*
* // simple boolean defaulting to undefined
* program.option('-p, --pepper', 'add pepper');
*
* program.pepper
* // => undefined
*
* --pepper
* program.pepper
* // => true
*
* // simple boolean defaulting to true (unless non-negated option is also defined)
* program.option('-C, --no-cheese', 'remove cheese');
*
* program.cheese
* // => true
*
* --no-cheese
* program.cheese
* // => false
*
* // required argument
* program.option('-C, --chdir <path>', 'change the working directory');
*
* --chdir /tmp
* program.chdir
* // => "/tmp"
*
* // optional argument
* program.option('-c, --cheese [type]', 'add cheese [marble]');
*
* @param {string} flags
* @param {string} [description]
* @param {Function|*} [fn] - custom option processing function or default value
* @param {*} [defaultValue]
* @return {Command} `this` command for chaining
*/
option(flags, description, fn, defaultValue) {
return this._optionEx({}, flags, description, fn, defaultValue);
};
/**
* Add a required option which must have a value after parsing. This usually means
* the option must be specified on the command line. (Otherwise the same as .option().)
*
* The `flags` string contains the short and/or long flags, separated by comma, a pipe or space.
*
* @param {string} flags
* @param {string} [description]
* @param {Function|*} [fn] - custom option processing function or default value
* @param {*} [defaultValue]
* @return {Command} `this` command for chaining
*/
requiredOption(flags, description, fn, defaultValue) {
return this._optionEx({ mandatory: true }, flags, description, fn, defaultValue);
};
/**
* Alter parsing of short flags with optional values.
*
* Examples:
*
* // for `.option('-f,--flag [value]'):
* .combineFlagAndOptionalValue(true) // `-f80` is treated like `--flag=80`, this is the default behaviour
* .combineFlagAndOptionalValue(false) // `-fb` is treated like `-f -b`
*
* @param {Boolean} [combine=true] - if `true` or omitted, an optional value can be specified directly after the flag.
*/
combineFlagAndOptionalValue(combine = true) {
this._combineFlagAndOptionalValue = !!combine;
return this;
};
/**
* Allow unknown options on the command line.
*
* @param {Boolean} [allowUnknown=true] - if `true` or omitted, no error will be thrown
* for unknown options.
*/
allowUnknownOption(allowUnknown = true) {
this._allowUnknownOption = !!allowUnknown;
return this;
};
/**
* Allow excess command-arguments on the command line. Pass false to make excess arguments an error.
*
* @param {Boolean} [allowExcess=true] - if `true` or omitted, no error will be thrown
* for excess arguments.
*/
allowExcessArguments(allowExcess = true) {
this._allowExcessArguments = !!allowExcess;
return this;
};
/**
* Enable positional options. Positional means global options are specified before subcommands which lets
* subcommands reuse the same option names, and also enables subcommands to turn on passThroughOptions.
* The default behaviour is non-positional and global options may appear anywhere on the command line.
*
* @param {Boolean} [positional=true]
*/
enablePositionalOptions(positional = true) {
this._enablePositionalOptions = !!positional;
return this;
};
/**
* Pass through options that come after command-arguments rather than treat them as command-options,
* so actual command-options come before command-arguments. Turning this on for a subcommand requires
* positional options to have been enabled on the program (parent commands).
* The default behaviour is non-positional and options may appear before or after command-arguments.
*
* @param {Boolean} [passThrough=true]
* for unknown options.
*/
passThroughOptions(passThrough = true) {
this._passThroughOptions = !!passThrough;
if (!!this.parent && passThrough && !this.parent._enablePositionalOptions) {
throw new Error('passThroughOptions can not be used without turning on enablePositionalOptions for parent command(s)');
}
return this;
};
/**
* Whether to store option values as properties on command object,
* or store separately (specify false). In both cases the option values can be accessed using .opts().
*
* @param {boolean} [storeAsProperties=true]
* @return {Command} `this` command for chaining
*/
storeOptionsAsProperties(storeAsProperties = true) {
this._storeOptionsAsProperties = !!storeAsProperties;
if (this.options.length) {
throw new Error('call .storeOptionsAsProperties() before adding options');
}
return this;
};
/**
* Store option value
*
* @param {string} key
* @param {Object} value
* @api private
*/
_setOptionValue(key, value) {
if (this._storeOptionsAsProperties) {
this[key] = value;
} else {
this._optionValues[key] = value;
}
};
/**
* Retrieve option value
*
* @param {string} key
* @return {Object} value
* @api private
*/
_getOptionValue(key) {
if (this._storeOptionsAsProperties) {
return this[key];
}
return this._optionValues[key];
};
/**
* Parse `argv`, setting options and invoking commands when defined.
*
* The default expectation is that the arguments are from node and have the application as argv[0]
* and the script being run in argv[1], with user parameters after that.
*
* Examples:
*
* program.parse(process.argv);
* program.parse(); // implicitly use process.argv and auto-detect node vs electron conventions
* program.parse(my-args, { from: 'user' }); // just user supplied arguments, nothing special about argv[0]
*
* @param {string[]} [argv] - optional, defaults to process.argv
* @param {Object} [parseOptions] - optionally specify style of options with from: node/user/electron
* @param {string} [parseOptions.from] - where the args are from: 'node', 'user', 'electron'
* @return {Command} `this` command for chaining
*/
parse(argv, parseOptions) {
if (argv !== undefined && !Array.isArray(argv)) {
throw new Error('first parameter to parse must be array or undefined');
}
parseOptions = parseOptions || {};
// Default to using process.argv
if (argv === undefined) {
argv = process.argv;
// @ts-ignore: unknown property
if (process.versions && process.versions.electron) {
parseOptions.from = 'electron';
}
}
this.rawArgs = argv.slice();
// make it a little easier for callers by supporting various argv conventions
let userArgs;
switch (parseOptions.from) {
case undefined:
case 'node':
this._scriptPath = argv[1];
userArgs = argv.slice(2);
break;
case 'electron':
// @ts-ignore: unknown property
if (process.defaultApp) {
this._scriptPath = argv[1];
userArgs = argv.slice(2);
} else {
userArgs = argv.slice(1);
}
break;
case 'user':
userArgs = argv.slice(0);
break;
default:
throw new Error(`unexpected parse option { from: '${parseOptions.from}' }`);
}
if (!this._scriptPath && require.main) {
this._scriptPath = require.main.filename;
}
// Guess name, used in usage in help.
this._name = this._name || (this._scriptPath && path.basename(this._scriptPath, path.extname(this._scriptPath)));
// Let's go!
this._parseCommand([], userArgs);
return this;
};
/**
* Parse `argv`, setting options and invoking commands when defined.
*
* Use parseAsync instead of parse if any of your action handlers are async. Returns a Promise.
*
* The default expectation is that the arguments are from node and have the application as argv[0]
* and the script being run in argv[1], with user parameters after that.
*
* Examples:
*
* program.parseAsync(process.argv);
* program.parseAsync(); // implicitly use process.argv and auto-detect node vs electron conventions
* program.parseAsync(my-args, { from: 'user' }); // just user supplied arguments, nothing special about argv[0]
*
* @param {string[]} [argv]
* @param {Object} [parseOptions]
* @param {string} parseOptions.from - where the args are from: 'node', 'user', 'electron'
* @return {Promise}
*/
parseAsync(argv, parseOptions) {
this.parse(argv, parseOptions);
return Promise.all(this._actionResults).then(() => this);
};
/**
* Execute a sub-command executable.
*
* @api private
*/
_executeSubCommand(subcommand, args) {
args = args.slice();
let launchWithNode = false; // Use node for source targets so do not need to get permissions correct, and on Windows.
const sourceExt = ['.js', '.ts', '.tsx', '.mjs', '.cjs'];
// Not checking for help first. Unlikely to have mandatory and executable, and can't robustly test for help flags in external command.
this._checkForMissingMandatoryOptions();
// Want the entry script as the reference for command name and directory for searching for other files.
let scriptPath = this._scriptPath;
// Fallback in case not set, due to how Command created or called.
if (!scriptPath && require.main) {
scriptPath = require.main.filename;
}
let baseDir;
try {
const resolvedLink = fs.realpathSync(scriptPath);
baseDir = path.dirname(resolvedLink);
} catch (e) {
baseDir = '.'; // dummy, probably not going to find executable!
}
// name of the subcommand, like `pm-install`
let bin = path.basename(scriptPath, path.extname(scriptPath)) + '-' + subcommand._name;
if (subcommand._executableFile) {
bin = subcommand._executableFile;
}
const localBin = path.join(baseDir, bin);
if (fs.existsSync(localBin)) {
// prefer local `./<bin>` to bin in the $PATH
bin = localBin;
} else {
// Look for source files.
sourceExt.forEach((ext) => {
if (fs.existsSync(`${localBin}${ext}`)) {
bin = `${localBin}${ext}`;
}
});
}
launchWithNode = sourceExt.includes(path.extname(bin));
let proc;
if (process.platform !== 'win32') {
if (launchWithNode) {
args.unshift(bin);
// add executable arguments to spawn
args = incrementNodeInspectorPort(process.execArgv).concat(args);
proc = childProcess.spawn(process.argv[0], args, { stdio: 'inherit' });
} else {
proc = childProcess.spawn(bin, args, { stdio: 'inherit' });
}
} else {
args.unshift(bin);
// add executable arguments to spawn
args = incrementNodeInspectorPort(process.execArgv).concat(args);
proc = childProcess.spawn(process.execPath, args, { stdio: 'inherit' });
}
const signals = ['SIGUSR1', 'SIGUSR2', 'SIGTERM', 'SIGINT', 'SIGHUP'];
signals.forEach((signal) => {
// @ts-ignore
process.on(signal, () => {
if (proc.killed === false && proc.exitCode === null) {
proc.kill(signal);
}
});
});
// By default terminate process when spawned process terminates.
// Suppressing the exit if exitCallback defined is a bit messy and of limited use, but does allow process to stay running!
const exitCallback = this._exitCallback;
if (!exitCallback) {
proc.on('close', process.exit.bind(process));
} else {
proc.on('close', () => {
exitCallback(new CommanderError(process.exitCode || 0, 'commander.executeSubCommandAsync', '(close)'));
});
}
proc.on('error', (err) => {
// @ts-ignore
if (err.code === 'ENOENT') {
const executableMissing = `'${bin}' does not exist
- if '${subcommand._name}' is not meant to be an executable command, remove description parameter from '.command()' and use '.description()' instead
- if the default executable name is not suitable, use the executableFile option to supply a custom name`;
throw new Error(executableMissing);
// @ts-ignore
} else if (err.code === 'EACCES') {
throw new Error(`'${bin}' not executable`);
}
if (!exitCallback) {
process.exit(1);
} else {
const wrappedError = new CommanderError(1, 'commander.executeSubCommandAsync', '(error)');
wrappedError.nestedError = err;
exitCallback(wrappedError);
}
});
// Store the reference to the child process
this.runningCommand = proc;
};
/**
* @api private
*/
_dispatchSubcommand(commandName, operands, unknown) {
const subCommand = this._findCommand(commandName);
if (!subCommand) this.help({ error: true });
if (subCommand._executableHandler) {
this._executeSubCommand(subCommand, operands.concat(unknown));
} else {
subCommand._parseCommand(operands, unknown);
}
};
/**
* Process arguments in context of this command.
*
* @api private
*/
_parseCommand(operands, unknown) {
const parsed = this.parseOptions(unknown);
operands = operands.concat(parsed.operands);
unknown = parsed.unknown;
this.args = operands.concat(unknown);
if (operands && this._findCommand(operands[0])) {
this._dispatchSubcommand(operands[0], operands.slice(1), unknown);
} else if (this._hasImplicitHelpCommand() && operands[0] === this._helpCommandName) {
if (operands.length === 1) {
this.help();
} else {
this._dispatchSubcommand(operands[1], [], [this._helpLongFlag]);
}
} else if (this._defaultCommandName) {
outputHelpIfRequested(this, unknown); // Run the help for default command from parent rather than passing to default command
this._dispatchSubcommand(this._defaultCommandName, operands, unknown);
} else {
if (this.commands.length && this.args.length === 0 && !this._actionHandler && !this._defaultCommandName) {
// probably missing subcommand and no handler, user needs help
this.help({ error: true });
}
outputHelpIfRequested(this, parsed.unknown);
this._checkForMissingMandatoryOptions();
// We do not always call this check to avoid masking a "better" error, like unknown command.
const checkForUnknownOptions = () => {
if (parsed.unknown.length > 0) {
this.unknownOption(parsed.unknown[0]);
}
};
const commandEvent = `command:${this.name()}`;
if (this._actionHandler) {
checkForUnknownOptions();
// Check expected arguments and collect variadic together.
const args = this.args.slice();
this._args.forEach((arg, i) => {
if (arg.required && args[i] == null) {
this.missingArgument(arg.name);
} else if (arg.variadic) {
args[i] = args.splice(i);
args.length = Math.min(i + 1, args.length);
}
});
if (args.length > this._args.length) {
this._excessArguments(args);
}
this._actionHandler(args);
if (this.parent) this.parent.emit(commandEvent, operands, unknown); // legacy
} else if (this.parent && this.parent.listenerCount(commandEvent)) {
checkForUnknownOptions();
this.parent.emit(commandEvent, operands, unknown); // legacy
} else if (operands.length) {
if (this._findCommand('*')) { // legacy default command
this._dispatchSubcommand('*', operands, unknown);
} else if (this.listenerCount('command:*')) {
// skip option check, emit event for possible misspelling suggestion
this.emit('command:*', operands, unknown);
} else if (this.commands.length) {
this.unknownCommand();
} else {
checkForUnknownOptions();
}
} else if (this.commands.length) {
// This command has subcommands and nothing hooked up at this level, so display help.
this.help({ error: true });
} else {
checkForUnknownOptions();
// fall through for caller to handle after calling .parse()
}
}
};
/**
* Find matching command.
*
* @api private
*/
_findCommand(name) {
if (!name) return undefined;
return this.commands.find(cmd => cmd._name === name || cmd._aliases.includes(name));
};
/**
* Return an option matching `arg` if any.
*
* @param {string} arg
* @return {Option}
* @api private
*/
_findOption(arg) {
return this.options.find(option => option.is(arg));
};
/**
* Display an error message if a mandatory option does not have a value.
* Lazy calling after checking for help flags from leaf subcommand.
*
* @api private
*/
_checkForMissingMandatoryOptions() {
// Walk up hierarchy so can call in subcommand after checking for displaying help.
for (let cmd = this; cmd; cmd = cmd.parent) {
cmd.options.forEach((anOption) => {
if (anOption.mandatory && (cmd._getOptionValue(anOption.attributeName()) === undefined)) {
cmd.missingMandatoryOptionValue(anOption);
}
});
}
};
/**
* Parse options from `argv` removing known options,
* and return argv split into operands and unknown arguments.
*
* Examples:
*
* argv => operands, unknown
* --known kkk op => [op], []
* op --known kkk => [op], []
* sub --unknown uuu op => [sub], [--unknown uuu op]
* sub -- --unknown uuu op => [sub --unknown uuu op], []
*
* @param {String[]} argv
* @return {{operands: String[], unknown: String[]}}
*/
parseOptions(argv) {
const operands = []; // operands, not options or values
const unknown = []; // first unknown option and remaining unknown args
let dest = operands;
const args = argv.slice();
function maybeOption(arg) {
return arg.length > 1 && arg[0] === '-';
}
// parse options
let activeVariadicOption = null;
while (args.length) {
const arg = args.shift();
// literal
if (arg === '--') {
if (dest === unknown) dest.push(arg);
dest.push(...args);
break;
}
if (activeVariadicOption && !maybeOption(arg)) {
this.emit(`option:${activeVariadicOption.name()}`, arg);
continue;
}
activeVariadicOption = null;
if (maybeOption(arg)) {
const option = this._findOption(arg);
// recognised option, call listener to assign value with possible custom processing
if (option) {
if (option.required) {
const value = args.shift();
if (value === undefined) this.optionMissingArgument(option);
this.emit(`option:${option.name()}`, value);
} else if (option.optional) {
let value = null;
// historical behaviour is optional value is following arg unless an option
if (args.length > 0 && !maybeOption(args[0])) {
value = args.shift();
}
this.emit(`option:${option.name()}`, value);
} else { // boolean flag
this.emit(`option:${option.name()}`);
}
activeVariadicOption = option.variadic ? option : null;
continue;
}
}
// Look for combo options following single dash, eat first one if known.
if (arg.length > 2 && arg[0] === '-' && arg[1] !== '-') {
const option = this._findOption(`-${arg[1]}`);
if (option) {
if (option.required || (option.optional && this._combineFlagAndOptionalValue)) {
// option with value following in same argument
this.emit(`option:${option.name()}`, arg.slice(2));
} else {
// boolean option, emit and put back remainder of arg for further processing
this.emit(`option:${option.name()}`);
args.unshift(`-${arg.slice(2)}`);
}
continue;
}
}
// Look for known long flag with value, like --foo=bar
if (/^--[^=]+=/.test(arg)) {
const index = arg.indexOf('=');
const option = this._findOption(arg.slice(0, index));
if (option && (option.required || option.optional)) {
this.emit(`option:${option.name()}`, arg.slice(index + 1));
continue;
}
}
// Not a recognised option by this command.
// Might be a command-argument, or subcommand option, or unknown option, or help command or option.
// An unknown option means further arguments also classified as unknown so can be reprocessed by subcommands.
if (maybeOption(arg)) {
dest = unknown;
}
// If using positionalOptions, stop processing our options at subcommand.
if ((this._enablePositionalOptions || this._passThroughOptions) && operands.length === 0 && unknown.length === 0) {
if (this._findCommand(arg)) {
operands.push(arg);
if (args.length > 0) unknown.push(...args);
break;
} else if (arg === this._helpCommandName && this._hasImplicitHelpCommand()) {
operands.push(arg);
if (args.length > 0) operands.push(...args);
break;
} else if (this._defaultCommandName) {
unknown.push(arg);
if (args.length > 0) unknown.push(...args);
break;
}
}
// If using passThroughOptions, stop processing options at first command-argument.
if (this._passThroughOptions) {
dest.push(arg);
if (args.length > 0) dest.push(...args);
break;
}
// add arg
dest.push(arg);
}
return { operands, unknown };
};
/**
* Return an object containing options as key-value pairs
*
* @return {Object}
*/
opts() {
if (this._storeOptionsAsProperties) {
// Preserve original behaviour so backwards compatible when still using properties
const result = {};
const len = this.options.length;
for (let i = 0; i < len; i++) {
const key = this.options[i].attributeName();
result[key] = key === this._versionOptionName ? this._version : this[key];
}
return result;
}
return this._optionValues;
};
/**
* Internal bottleneck for handling of parsing errors.
*
* @api private
*/
_displayError(exitCode, code, message) {
this._outputConfiguration.outputError(`${message}\n`, this._outputConfiguration.writeErr);
this._exit(exitCode, code, message);
}
/**
* Argument `name` is missing.
*
* @param {string} name
* @api private
*/
missingArgument(name) {
const message = `error: missing required argument '${name}'`;
this._displayError(1, 'commander.missingArgument', message);
};
/**
* `Option` is missing an argument.
*
* @param {Option} option
* @api private
*/
optionMissingArgument(option) {
const message = `error: option '${option.flags}' argument missing`;
this._displayError(1, 'commander.optionMissingArgument', message);
};
/**
* `Option` does not have a value, and is a mandatory option.
*
* @param {Option} option
* @api private
*/
missingMandatoryOptionValue(option) {
const message = `error: required option '${option.flags}' not specified`;
this._displayError(1, 'commander.missingMandatoryOptionValue', message);
};
/**
* Unknown option `flag`.
*
* @param {string} flag
* @api private
*/
unknownOption(flag) {
if (this._allowUnknownOption) return;
const message = `error: unknown option '${flag}'`;
this._displayError(1, 'commander.unknownOption', message);
};
/**
* Excess arguments, more than expected.
*
* @param {string[]} receivedArgs
* @api private
*/
_excessArguments(receivedArgs) {
if (this._allowExcessArguments) return;
const expected = this._args.length;
const s = (expected === 1) ? '' : 's';
const forSubcommand = this.parent ? ` for '${this.name()}'` : '';
const message = `error: too many arguments${forSubcommand}. Expected ${expected} argument${s} but got ${receivedArgs.length}.`;
this._displayError(1, 'commander.excessArguments', message);
};
/**
* Unknown command.
*
* @api private
*/
unknownCommand() {
const partCommands = [this.name()];
for (let parentCmd = this.parent; parentCmd; parentCmd = parentCmd.parent) {
partCommands.unshift(parentCmd.name());
}
const fullCommand = partCommands.join(' ');
const message = `error: unknown command '${this.args[0]}'.` +
(this._hasHelpOption ? ` See '${fullCommand} ${this._helpLongFlag}'.` : '');
this._displayError(1, 'commander.unknownCommand', message);
};
/**
* Set the program version to `str`.
*
* This method auto-registers the "-V, --version" flag
* which will print the version number when passed.
*
* You can optionally supply the flags and description to override the defaults.
*
* @param {string} str
* @param {string} [flags]
* @param {string} [description]
* @return {this | string} `this` command for chaining, or version string if no arguments
*/
version(str, flags, description) {
if (str === undefined) return this._version;
this._version = str;
flags = flags || '-V, --version';
description = description || 'output the version number';
const versionOption = this.createOption(flags, description);
this._versionOptionName = versionOption.attributeName();
this.options.push(versionOption);
this.on('option:' + versionOption.name(), () => {
this._outputConfiguration.writeOut(`${str}\n`);
this._exit(0, 'commander.version', str);
});
return this;
};
/**
* Set the description to `str`.
*
* @param {string} [str]
* @param {Object} [argsDescription]
* @return {string|Command}
*/
description(str, argsDescription) {
if (str === undefined && argsDescription === undefined) return this._description;
this._description = str;
this._argsDescription = argsDescription;
return this;
};
/**
* Set an alias for the command.
*
* You may call more than once to add multiple aliases. Only the first alias is shown in the auto-generated help.
*
* @param {string} [alias]
* @return {string|Command}
*/
alias(alias) {
if (alias === undefined) return this._aliases[0]; // just return first, for backwards compatibility
let command = this;
if (this.commands.length !== 0 && this.commands[this.commands.length - 1]._executableHandler) {
// assume adding alias for last added executable subcommand, rather than this
command = this.commands[this.commands.length - 1];
}
if (alias === command._name) throw new Error('Command alias can\'t be the same as its name');
command._aliases.push(alias);
return this;
};
/**
* Set aliases for the command.
*
* Only the first alias is shown in the auto-generated help.
*
* @param {string[]} [aliases]
* @return {string[]|Command}
*/
aliases(aliases) {
// Getter for the array of aliases is the main reason for having aliases() in addition to alias().
if (aliases === undefined) return this._aliases;
aliases.forEach((alias) => this.alias(alias));
return this;
};
/**
* Set / get the command usage `str`.
*
* @param {string} [str]
* @return {String|Command}
*/
usage(str) {
if (str === undefined) {
if (this._usage) return this._usage;
const args = this._args.map((arg) => {
return humanReadableArgName(arg);
});
return [].concat(
(this.options.length || this._hasHelpOption ? '[options]' : []),
(this.commands.length ? '[command]' : []),
(this._args.length ? args : [])
).join(' ');
}
this._usage = str;
return this;
};
/**
* Get or set the name of the command
*
* @param {string} [str]
* @return {string|Command}
*/
name(str) {
if (str === undefined) return this._name;
this._name = str;
return this;
};
/**
* Return program help documentation.
*
* @param {{ error: boolean }} [contextOptions] - pass {error:true} to wrap for stderr instead of stdout
* @return {string}
*/
helpInformation(contextOptions) {
const helper = this.createHelp();
if (helper.helpWidth === undefined) {
helper.helpWidth = (contextOptions && contextOptions.error) ? this._outputConfiguration.getErrHelpWidth() : this._outputConfiguration.getOutHelpWidth();
}
return helper.formatHelp(this, helper);
};
/**
* @api private
*/
_getHelpContext(contextOptions) {
contextOptions = contextOptions || {};
const context = { error: !!contextOptions.error };
let write;
if (context.error) {
write = (arg) => this._outputConfiguration.writeErr(arg);
} else {
write = (arg) => this._outputConfiguration.writeOut(arg);
}
context.write = contextOptions.write || write;
context.command = this;
return context;
}
/**
* Output help information for this command.
*
* Outputs built-in help, and custom text added using `.addHelpText()`.
*
* @param {{ error: boolean } | Function} [contextOptions] - pass {error:true} to write to stderr instead of stdout
*/
outputHelp(contextOptions) {
let deprecatedCallback;
if (typeof contextOptions === 'function') {
deprecatedCallback = contextOptions;
contextOptions = undefined;
}
const context = this._getHelpContext(contextOptions);
const groupListeners = [];
let command = this;
while (command) {
groupListeners.push(command); // ordered from current command to root
command = command.parent;
}
groupListeners.slice().reverse().forEach(command => command.emit('beforeAllHelp', context));
this.emit('beforeHelp', context);
let helpInformation = this.helpInformation(context);
if (deprecatedCallback) {
helpInformation = deprecatedCallback(helpInformation);
if (typeof helpInformation !== 'string' && !Buffer.isBuffer(helpInformation)) {
throw new Error('outputHelp callback must return a string or a Buffer');
}
}
context.write(helpInformation);
this.emit(this._helpLongFlag); // deprecated
this.emit('afterHelp', context);
groupListeners.forEach(command => command.emit('afterAllHelp', context));
};
/**
* You can pass in flags and a description to override the help
* flags and help description for your command. Pass in false to
* disable the built-in help option.
*
* @param {string | boolean} [flags]
* @param {string} [description]
* @return {Command} `this` command for chaining
*/
helpOption(flags, description) {
if (typeof flags === 'boolean') {
this._hasHelpOption = flags;
return this;
}
this._helpFlags = flags || this._helpFlags;
this._helpDescription = description || this._helpDescription;
const helpFlags = _parseOptionFlags(this._helpFlags);
this._helpShortFlag = helpFlags.shortFlag;
this._helpLongFlag = helpFlags.longFlag;
return this;
};
/**
* Output help information and exit.
*
* Outputs built-in help, and custom text added using `.addHelpText()`.
*
* @param {{ error: boolean }} [contextOptions] - pass {error:true} to write to stderr instead of stdout
*/
help(contextOptions) {
this.outputHelp(contextOptions);
let exitCode = process.exitCode || 0;
if (exitCode === 0 && contextOptions && typeof contextOptions !== 'function' && contextOptions.error) {
exitCode = 1;
}
// message: do not have all displayed text available so only passing placeholder.
this._exit(exitCode, 'commander.help', '(outputHelp)');
};
/**
* Add additional text to be displayed with the built-in help.
*
* Position is 'before' or 'after' to affect just this command,
* and 'beforeAll' or 'afterAll' to affect this command and all its subcommands.
*
* @param {string} position - before or after built-in help
* @param {string | Function} text - string to add, or a function returning a string
* @return {Command} `this` command for chaining
*/
addHelpText(position, text) {
const allowedValues = ['beforeAll', 'before', 'after', 'afterAll'];
if (!allowedValues.includes(position)) {
throw new Error(`Unexpected value for position to addHelpText.
Expecting one of '${allowedValues.join("', '")}'`);
}
const helpEvent = `${position}Help`;
this.on(helpEvent, (context) => {
let helpStr;
if (typeof text === 'function') {
helpStr = text({ error: context.error, command: context.command });
} else {
helpStr = text;
}
// Ignore falsy value when nothing to output.
if (helpStr) {
context.write(`${helpStr}\n`);
}
});
return this;
}
};
/**
* Expose the root command.
*/
exports = module.exports = new Command();
exports.program = exports; // More explicit access to global command.
/**
* Expose classes
*/
exports.Command = Command;
exports.Option = Option;
exports.CommanderError = CommanderError;
exports.InvalidOptionArgumentError = InvalidOptionArgumentError;
exports.Help = Help;
/**
* Camel-case the given `flag`
*
* @param {string} flag
* @return {string}
* @api private
*/
function camelcase(flag) {
return flag.split('-').reduce((str, word) => {
return str + word[0].toUpperCase() + word.slice(1);
});
}
/**
* Output help information if help flags specified
*
* @param {Command} cmd - command to output help for
* @param {Array} args - array of options to search for help flags
* @api private
*/
function outputHelpIfRequested(cmd, args) {
const helpOption = cmd._hasHelpOption && args.find(arg => arg === cmd._helpLongFlag || arg === cmd._helpShortFlag);
if (helpOption) {
cmd.outputHelp();
// (Do not have all displayed text available so only passing placeholder.)
cmd._exit(0, 'commander.helpDisplayed', '(outputHelp)');
}
}
/**
* Takes an argument and returns its human readable equivalent for help usage.
*
* @param {Object} arg
* @return {string}
* @api private
*/
function humanReadableArgName(arg) {
const nameOutput = arg.name + (arg.variadic === true ? '...' : '');
return arg.required
? '<' + nameOutput + '>'
: '[' + nameOutput + ']';
}
/**
* Parse the short and long flag out of something like '-m,--mixed <value>'
*
* @api private
*/
function _parseOptionFlags(flags) {
let shortFlag;
let longFlag;
// Use original very loose parsing to maintain backwards compatibility for now,
// which allowed for example unintended `-sw, --short-word` [sic].
const flagParts = flags.split(/[ |,]+/);
if (flagParts.length > 1 && !/^[[<]/.test(flagParts[1])) shortFlag = flagParts.shift();
longFlag = flagParts.shift();
// Add support for lone short flag without significantly changing parsing!
if (!shortFlag && /^-[^-]$/.test(longFlag)) {
shortFlag = longFlag;
longFlag = undefined;
}
return { shortFlag, longFlag };
}
/**
* Scan arguments and increment port number for inspect calls (to avoid conflicts when spawning new command).
*
* @param {string[]} args - array of arguments from node.execArgv
* @returns {string[]}
* @api private
*/
function incrementNodeInspectorPort(args) {
// Testing for these options:
// --inspect[=[host:]port]
// --inspect-brk[=[host:]port]
// --inspect-port=[host:]port
return args.map((arg) => {
if (!arg.startsWith('--inspect')) {
return arg;
}
let debugOption;
let debugHost = '127.0.0.1';
let debugPort = '9229';
let match;
if ((match = arg.match(/^(--inspect(-brk)?)$/)) !== null) {
// e.g. --inspect
debugOption = match[1];
} else if ((match = arg.match(/^(--inspect(-brk|-port)?)=([^:]+)$/)) !== null) {
debugOption = match[1];
if (/^\d+$/.test(match[3])) {
// e.g. --inspect=1234
debugPort = match[3];
} else {
// e.g. --inspect=localhost
debugHost = match[3];
}
} else if ((match = arg.match(/^(--inspect(-brk|-port)?)=([^:]+):(\d+)$/)) !== null) {
// e.g. --inspect=localhost:1234
debugOption = match[1];
debugHost = match[3];
debugPort = match[4];
}
if (debugOption && debugPort !== '0') {
return `${debugOption}=${debugHost}:${parseInt(debugPort) + 1}`;
}
return arg;
});
}
/***/ }),
/***/ 5955:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
var PlainValue = __nccwpck_require__(1346);
var resolveSeq = __nccwpck_require__(1011);
var Schema = __nccwpck_require__(3818);
const defaultOptions = {
anchorPrefix: 'a',
customTags: null,
indent: 2,
indentSeq: true,
keepCstNodes: false,
keepNodeTypes: true,
keepBlobsInJSON: true,
mapAsMap: false,
maxAliasCount: 100,
prettyErrors: false,
// TODO Set true in v2
simpleKeys: false,
version: '1.2'
};
const scalarOptions = {
get binary() {
return resolveSeq.binaryOptions;
},
set binary(opt) {
Object.assign(resolveSeq.binaryOptions, opt);
},
get bool() {
return resolveSeq.boolOptions;
},
set bool(opt) {
Object.assign(resolveSeq.boolOptions, opt);
},
get int() {
return resolveSeq.intOptions;
},
set int(opt) {
Object.assign(resolveSeq.intOptions, opt);
},
get null() {
return resolveSeq.nullOptions;
},
set null(opt) {
Object.assign(resolveSeq.nullOptions, opt);
},
get str() {
return resolveSeq.strOptions;
},
set str(opt) {
Object.assign(resolveSeq.strOptions, opt);
}
};
const documentOptions = {
'1.0': {
schema: 'yaml-1.1',
merge: true,
tagPrefixes: [{
handle: '!',
prefix: PlainValue.defaultTagPrefix
}, {
handle: '!!',
prefix: 'tag:private.yaml.org,2002:'
}]
},
1.1: {
schema: 'yaml-1.1',
merge: true,
tagPrefixes: [{
handle: '!',
prefix: '!'
}, {
handle: '!!',
prefix: PlainValue.defaultTagPrefix
}]
},
1.2: {
schema: 'core',
merge: false,
tagPrefixes: [{
handle: '!',
prefix: '!'
}, {
handle: '!!',
prefix: PlainValue.defaultTagPrefix
}]
}
};
function stringifyTag(doc, tag) {
if ((doc.version || doc.options.version) === '1.0') {
const priv = tag.match(/^tag:private\.yaml\.org,2002:([^:/]+)$/);
if (priv) return '!' + priv[1];
const vocab = tag.match(/^tag:([a-zA-Z0-9-]+)\.yaml\.org,2002:(.*)/);
return vocab ? `!${vocab[1]}/${vocab[2]}` : `!${tag.replace(/^tag:/, '')}`;
}
let p = doc.tagPrefixes.find(p => tag.indexOf(p.prefix) === 0);
if (!p) {
const dtp = doc.getDefaults().tagPrefixes;
p = dtp && dtp.find(p => tag.indexOf(p.prefix) === 0);
}
if (!p) return tag[0] === '!' ? tag : `!<${tag}>`;
const suffix = tag.substr(p.prefix.length).replace(/[!,[\]{}]/g, ch => ({
'!': '%21',
',': '%2C',
'[': '%5B',
']': '%5D',
'{': '%7B',
'}': '%7D'
})[ch]);
return p.handle + suffix;
}
function getTagObject(tags, item) {
if (item instanceof resolveSeq.Alias) return resolveSeq.Alias;
if (item.tag) {
const match = tags.filter(t => t.tag === item.tag);
if (match.length > 0) return match.find(t => t.format === item.format) || match[0];
}
let tagObj, obj;
if (item instanceof resolveSeq.Scalar) {
obj = item.value; // TODO: deprecate/remove class check
const match = tags.filter(t => t.identify && t.identify(obj) || t.class && obj instanceof t.class);
tagObj = match.find(t => t.format === item.format) || match.find(t => !t.format);
} else {
obj = item;
tagObj = tags.find(t => t.nodeClass && obj instanceof t.nodeClass);
}
if (!tagObj) {
const name = obj && obj.constructor ? obj.constructor.name : typeof obj;
throw new Error(`Tag not resolved for ${name} value`);
}
return tagObj;
} // needs to be called before value stringifier to allow for circular anchor refs
function stringifyProps(node, tagObj, {
anchors,
doc
}) {
const props = [];
const anchor = doc.anchors.getName(node);
if (anchor) {
anchors[anchor] = node;
props.push(`&${anchor}`);
}
if (node.tag) {
props.push(stringifyTag(doc, node.tag));
} else if (!tagObj.default) {
props.push(stringifyTag(doc, tagObj.tag));
}
return props.join(' ');
}
function stringify(item, ctx, onComment, onChompKeep) {
const {
anchors,
schema
} = ctx.doc;
let tagObj;
if (!(item instanceof resolveSeq.Node)) {
const createCtx = {
aliasNodes: [],
onTagObj: o => tagObj = o,
prevObjects: new Map()
};
item = schema.createNode(item, true, null, createCtx);
for (const alias of createCtx.aliasNodes) {
alias.source = alias.source.node;
let name = anchors.getName(alias.source);
if (!name) {
name = anchors.newName();
anchors.map[name] = alias.source;
}
}
}
if (item instanceof resolveSeq.Pair) return item.toString(ctx, onComment, onChompKeep);
if (!tagObj) tagObj = getTagObject(schema.tags, item);
const props = stringifyProps(item, tagObj, ctx);
if (props.length > 0) ctx.indentAtStart = (ctx.indentAtStart || 0) + props.length + 1;
const str = typeof tagObj.stringify === 'function' ? tagObj.stringify(item, ctx, onComment, onChompKeep) : item instanceof resolveSeq.Scalar ? resolveSeq.stringifyString(item, ctx, onComment, onChompKeep) : item.toString(ctx, onComment, onChompKeep);
if (!props) return str;
return item instanceof resolveSeq.Scalar || str[0] === '{' || str[0] === '[' ? `${props} ${str}` : `${props}\n${ctx.indent}${str}`;
}
class Anchors {
static validAnchorNode(node) {
return node instanceof resolveSeq.Scalar || node instanceof resolveSeq.YAMLSeq || node instanceof resolveSeq.YAMLMap;
}
constructor(prefix) {
PlainValue._defineProperty(this, "map", Object.create(null));
this.prefix = prefix;
}
createAlias(node, name) {
this.setAnchor(node, name);
return new resolveSeq.Alias(node);
}
createMergePair(...sources) {
const merge = new resolveSeq.Merge();
merge.value.items = sources.map(s => {
if (s instanceof resolveSeq.Alias) {
if (s.source instanceof resolveSeq.YAMLMap) return s;
} else if (s instanceof resolveSeq.YAMLMap) {
return this.createAlias(s);
}
throw new Error('Merge sources must be Map nodes or their Aliases');
});
return merge;
}
getName(node) {
const {
map
} = this;
return Object.keys(map).find(a => map[a] === node);
}
getNames() {
return Object.keys(this.map);
}
getNode(name) {
return this.map[name];
}
newName(prefix) {
if (!prefix) prefix = this.prefix;
const names = Object.keys(this.map);
for (let i = 1; true; ++i) {
const name = `${prefix}${i}`;
if (!names.includes(name)) return name;
}
} // During parsing, map & aliases contain CST nodes
resolveNodes() {
const {
map,
_cstAliases
} = this;
Object.keys(map).forEach(a => {
map[a] = map[a].resolved;
});
_cstAliases.forEach(a => {
a.source = a.source.resolved;
});
delete this._cstAliases;
}
setAnchor(node, name) {
if (node != null && !Anchors.validAnchorNode(node)) {
throw new Error('Anchors may only be set for Scalar, Seq and Map nodes');
}
if (name && /[\x00-\x19\s,[\]{}]/.test(name)) {
throw new Error('Anchor names must not contain whitespace or control characters');
}
const {
map
} = this;
const prev = node && Object.keys(map).find(a => map[a] === node);
if (prev) {
if (!name) {
return prev;
} else if (prev !== name) {
delete map[prev];
map[name] = node;
}
} else {
if (!name) {
if (!node) return null;
name = this.newName();
}
map[name] = node;
}
return name;
}
}
const visit = (node, tags) => {
if (node && typeof node === 'object') {
const {
tag
} = node;
if (node instanceof resolveSeq.Collection) {
if (tag) tags[tag] = true;
node.items.forEach(n => visit(n, tags));
} else if (node instanceof resolveSeq.Pair) {
visit(node.key, tags);
visit(node.value, tags);
} else if (node instanceof resolveSeq.Scalar) {
if (tag) tags[tag] = true;
}
}
return tags;
};
const listTagNames = node => Object.keys(visit(node, {}));
function parseContents(doc, contents) {
const comments = {
before: [],
after: []
};
let body = undefined;
let spaceBefore = false;
for (const node of contents) {
if (node.valueRange) {
if (body !== undefined) {
const msg = 'Document contains trailing content not separated by a ... or --- line';
doc.errors.push(new PlainValue.YAMLSyntaxError(node, msg));
break;
}
const res = resolveSeq.resolveNode(doc, node);
if (spaceBefore) {
res.spaceBefore = true;
spaceBefore = false;
}
body = res;
} else if (node.comment !== null) {
const cc = body === undefined ? comments.before : comments.after;
cc.push(node.comment);
} else if (node.type === PlainValue.Type.BLANK_LINE) {
spaceBefore = true;
if (body === undefined && comments.before.length > 0 && !doc.commentBefore) {
// space-separated comments at start are parsed as document comments
doc.commentBefore = comments.before.join('\n');
comments.before = [];
}
}
}
doc.contents = body || null;
if (!body) {
doc.comment = comments.before.concat(comments.after).join('\n') || null;
} else {
const cb = comments.before.join('\n');
if (cb) {
const cbNode = body instanceof resolveSeq.Collection && body.items[0] ? body.items[0] : body;
cbNode.commentBefore = cbNode.commentBefore ? `${cb}\n${cbNode.commentBefore}` : cb;
}
doc.comment = comments.after.join('\n') || null;
}
}
function resolveTagDirective({
tagPrefixes
}, directive) {
const [handle, prefix] = directive.parameters;
if (!handle || !prefix) {
const msg = 'Insufficient parameters given for %TAG directive';
throw new PlainValue.YAMLSemanticError(directive, msg);
}
if (tagPrefixes.some(p => p.handle === handle)) {
const msg = 'The %TAG directive must only be given at most once per handle in the same document.';
throw new PlainValue.YAMLSemanticError(directive, msg);
}
return {
handle,
prefix
};
}
function resolveYamlDirective(doc, directive) {
let [version] = directive.parameters;
if (directive.name === 'YAML:1.0') version = '1.0';
if (!version) {
const msg = 'Insufficient parameters given for %YAML directive';
throw new PlainValue.YAMLSemanticError(directive, msg);
}
if (!documentOptions[version]) {
const v0 = doc.version || doc.options.version;
const msg = `Document will be parsed as YAML ${v0} rather than YAML ${version}`;
doc.warnings.push(new PlainValue.YAMLWarning(directive, msg));
}
return version;
}
function parseDirectives(doc, directives, prevDoc) {
const directiveComments = [];
let hasDirectives = false;
for (const directive of directives) {
const {
comment,
name
} = directive;
switch (name) {
case 'TAG':
try {
doc.tagPrefixes.push(resolveTagDirective(doc, directive));
} catch (error) {
doc.errors.push(error);
}
hasDirectives = true;
break;
case 'YAML':
case 'YAML:1.0':
if (doc.version) {
const msg = 'The %YAML directive must only be given at most once per document.';
doc.errors.push(new PlainValue.YAMLSemanticError(directive, msg));
}
try {
doc.version = resolveYamlDirective(doc, directive);
} catch (error) {
doc.errors.push(error);
}
hasDirectives = true;
break;
default:
if (name) {
const msg = `YAML only supports %TAG and %YAML directives, and not %${name}`;
doc.warnings.push(new PlainValue.YAMLWarning(directive, msg));
}
}
if (comment) directiveComments.push(comment);
}
if (prevDoc && !hasDirectives && '1.1' === (doc.version || prevDoc.version || doc.options.version)) {
const copyTagPrefix = ({
handle,
prefix
}) => ({
handle,
prefix
});
doc.tagPrefixes = prevDoc.tagPrefixes.map(copyTagPrefix);
doc.version = prevDoc.version;
}
doc.commentBefore = directiveComments.join('\n') || null;
}
function assertCollection(contents) {
if (contents instanceof resolveSeq.Collection) return true;
throw new Error('Expected a YAML collection as document contents');
}
class Document {
constructor(options) {
this.anchors = new Anchors(options.anchorPrefix);
this.commentBefore = null;
this.comment = null;
this.contents = null;
this.directivesEndMarker = null;
this.errors = [];
this.options = options;
this.schema = null;
this.tagPrefixes = [];
this.version = null;
this.warnings = [];
}
add(value) {
assertCollection(this.contents);
return this.contents.add(value);
}
addIn(path, value) {
assertCollection(this.contents);
this.contents.addIn(path, value);
}
delete(key) {
assertCollection(this.contents);
return this.contents.delete(key);
}
deleteIn(path) {
if (resolveSeq.isEmptyPath(path)) {
if (this.contents == null) return false;
this.contents = null;
return true;
}
assertCollection(this.contents);
return this.contents.deleteIn(path);
}
getDefaults() {
return Document.defaults[this.version] || Document.defaults[this.options.version] || {};
}
get(key, keepScalar) {
return this.contents instanceof resolveSeq.Collection ? this.contents.get(key, keepScalar) : undefined;
}
getIn(path, keepScalar) {
if (resolveSeq.isEmptyPath(path)) return !keepScalar && this.contents instanceof resolveSeq.Scalar ? this.contents.value : this.contents;
return this.contents instanceof resolveSeq.Collection ? this.contents.getIn(path, keepScalar) : undefined;
}
has(key) {
return this.contents instanceof resolveSeq.Collection ? this.contents.has(key) : false;
}
hasIn(path) {
if (resolveSeq.isEmptyPath(path)) return this.contents !== undefined;
return this.contents instanceof resolveSeq.Collection ? this.contents.hasIn(path) : false;
}
set(key, value) {
assertCollection(this.contents);
this.contents.set(key, value);
}
setIn(path, value) {
if (resolveSeq.isEmptyPath(path)) this.contents = value;else {
assertCollection(this.contents);
this.contents.setIn(path, value);
}
}
setSchema(id, customTags) {
if (!id && !customTags && this.schema) return;
if (typeof id === 'number') id = id.toFixed(1);
if (id === '1.0' || id === '1.1' || id === '1.2') {
if (this.version) this.version = id;else this.options.version = id;
delete this.options.schema;
} else if (id && typeof id === 'string') {
this.options.schema = id;
}
if (Array.isArray(customTags)) this.options.customTags = customTags;
const opt = Object.assign({}, this.getDefaults(), this.options);
this.schema = new Schema.Schema(opt);
}
parse(node, prevDoc) {
if (this.options.keepCstNodes) this.cstNode = node;
if (this.options.keepNodeTypes) this.type = 'DOCUMENT';
const {
directives = [],
contents = [],
directivesEndMarker,
error,
valueRange
} = node;
if (error) {
if (!error.source) error.source = this;
this.errors.push(error);
}
parseDirectives(this, directives, prevDoc);
if (directivesEndMarker) this.directivesEndMarker = true;
this.range = valueRange ? [valueRange.start, valueRange.end] : null;
this.setSchema();
this.anchors._cstAliases = [];
parseContents(this, contents);
this.anchors.resolveNodes();
if (this.options.prettyErrors) {
for (const error of this.errors) if (error instanceof PlainValue.YAMLError) error.makePretty();
for (const warn of this.warnings) if (warn instanceof PlainValue.YAMLError) warn.makePretty();
}
return this;
}
listNonDefaultTags() {
return listTagNames(this.contents).filter(t => t.indexOf(Schema.Schema.defaultPrefix) !== 0);
}
setTagPrefix(handle, prefix) {
if (handle[0] !== '!' || handle[handle.length - 1] !== '!') throw new Error('Handle must start and end with !');
if (prefix) {
const prev = this.tagPrefixes.find(p => p.handle === handle);
if (prev) prev.prefix = prefix;else this.tagPrefixes.push({
handle,
prefix
});
} else {
this.tagPrefixes = this.tagPrefixes.filter(p => p.handle !== handle);
}
}
toJSON(arg, onAnchor) {
const {
keepBlobsInJSON,
mapAsMap,
maxAliasCount
} = this.options;
const keep = keepBlobsInJSON && (typeof arg !== 'string' || !(this.contents instanceof resolveSeq.Scalar));
const ctx = {
doc: this,
indentStep: ' ',
keep,
mapAsMap: keep && !!mapAsMap,
maxAliasCount,
stringify // Requiring directly in Pair would create circular dependencies
};
const anchorNames = Object.keys(this.anchors.map);
if (anchorNames.length > 0) ctx.anchors = new Map(anchorNames.map(name => [this.anchors.map[name], {
alias: [],
aliasCount: 0,
count: 1
}]));
const res = resolveSeq.toJSON(this.contents, arg, ctx);
if (typeof onAnchor === 'function' && ctx.anchors) for (const {
count,
res
} of ctx.anchors.values()) onAnchor(res, count);
return res;
}
toString() {
if (this.errors.length > 0) throw new Error('Document with errors cannot be stringified');
const indentSize = this.options.indent;
if (!Number.isInteger(indentSize) || indentSize <= 0) {
const s = JSON.stringify(indentSize);
throw new Error(`"indent" option must be a positive integer, not ${s}`);
}
this.setSchema();
const lines = [];
let hasDirectives = false;
if (this.version) {
let vd = '%YAML 1.2';
if (this.schema.name === 'yaml-1.1') {
if (this.version === '1.0') vd = '%YAML:1.0';else if (this.version === '1.1') vd = '%YAML 1.1';
}
lines.push(vd);
hasDirectives = true;
}
const tagNames = this.listNonDefaultTags();
this.tagPrefixes.forEach(({
handle,
prefix
}) => {
if (tagNames.some(t => t.indexOf(prefix) === 0)) {
lines.push(`%TAG ${handle} ${prefix}`);
hasDirectives = true;
}
});
if (hasDirectives || this.directivesEndMarker) lines.push('---');
if (this.commentBefore) {
if (hasDirectives || !this.directivesEndMarker) lines.unshift('');
lines.unshift(this.commentBefore.replace(/^/gm, '#'));
}
const ctx = {
anchors: Object.create(null),
doc: this,
indent: '',
indentStep: ' '.repeat(indentSize),
stringify // Requiring directly in nodes would create circular dependencies
};
let chompKeep = false;
let contentComment = null;
if (this.contents) {
if (this.contents instanceof resolveSeq.Node) {
if (this.contents.spaceBefore && (hasDirectives || this.directivesEndMarker)) lines.push('');
if (this.contents.commentBefore) lines.push(this.contents.commentBefore.replace(/^/gm, '#')); // top-level block scalars need to be indented if followed by a comment
ctx.forceBlockIndent = !!this.comment;
contentComment = this.contents.comment;
}
const onChompKeep = contentComment ? null : () => chompKeep = true;
const body = stringify(this.contents, ctx, () => contentComment = null, onChompKeep);
lines.push(resolveSeq.addComment(body, '', contentComment));
} else if (this.contents !== undefined) {
lines.push(stringify(this.contents, ctx));
}
if (this.comment) {
if ((!chompKeep || contentComment) && lines[lines.length - 1] !== '') lines.push('');
lines.push(this.comment.replace(/^/gm, '#'));
}
return lines.join('\n') + '\n';
}
}
PlainValue._defineProperty(Document, "defaults", documentOptions);
exports.Document = Document;
exports.defaultOptions = defaultOptions;
exports.scalarOptions = scalarOptions;
/***/ }),
/***/ 1346:
/***/ ((__unused_webpack_module, exports) => {
"use strict";
const Char = {
ANCHOR: '&',
COMMENT: '#',
TAG: '!',
DIRECTIVES_END: '-',
DOCUMENT_END: '.'
};
const Type = {
ALIAS: 'ALIAS',
BLANK_LINE: 'BLANK_LINE',
BLOCK_FOLDED: 'BLOCK_FOLDED',
BLOCK_LITERAL: 'BLOCK_LITERAL',
COMMENT: 'COMMENT',
DIRECTIVE: 'DIRECTIVE',
DOCUMENT: 'DOCUMENT',
FLOW_MAP: 'FLOW_MAP',
FLOW_SEQ: 'FLOW_SEQ',
MAP: 'MAP',
MAP_KEY: 'MAP_KEY',
MAP_VALUE: 'MAP_VALUE',
PLAIN: 'PLAIN',
QUOTE_DOUBLE: 'QUOTE_DOUBLE',
QUOTE_SINGLE: 'QUOTE_SINGLE',
SEQ: 'SEQ',
SEQ_ITEM: 'SEQ_ITEM'
};
const defaultTagPrefix = 'tag:yaml.org,2002:';
const defaultTags = {
MAP: 'tag:yaml.org,2002:map',
SEQ: 'tag:yaml.org,2002:seq',
STR: 'tag:yaml.org,2002:str'
};
function findLineStarts(src) {
const ls = [0];
let offset = src.indexOf('\n');
while (offset !== -1) {
offset += 1;
ls.push(offset);
offset = src.indexOf('\n', offset);
}
return ls;
}
function getSrcInfo(cst) {
let lineStarts, src;
if (typeof cst === 'string') {
lineStarts = findLineStarts(cst);
src = cst;
} else {
if (Array.isArray(cst)) cst = cst[0];
if (cst && cst.context) {
if (!cst.lineStarts) cst.lineStarts = findLineStarts(cst.context.src);
lineStarts = cst.lineStarts;
src = cst.context.src;
}
}
return {
lineStarts,
src
};
}
/**
* @typedef {Object} LinePos - One-indexed position in the source
* @property {number} line
* @property {number} col
*/
/**
* Determine the line/col position matching a character offset.
*
* Accepts a source string or a CST document as the second parameter. With
* the latter, starting indices for lines are cached in the document as
* `lineStarts: number[]`.
*
* Returns a one-indexed `{ line, col }` location if found, or
* `undefined` otherwise.
*
* @param {number} offset
* @param {string|Document|Document[]} cst
* @returns {?LinePos}
*/
function getLinePos(offset, cst) {
if (typeof offset !== 'number' || offset < 0) return null;
const {
lineStarts,
src
} = getSrcInfo(cst);
if (!lineStarts || !src || offset > src.length) return null;
for (let i = 0; i < lineStarts.length; ++i) {
const start = lineStarts[i];
if (offset < start) {
return {
line: i,
col: offset - lineStarts[i - 1] + 1
};
}
if (offset === start) return {
line: i + 1,
col: 1
};
}
const line = lineStarts.length;
return {
line,
col: offset - lineStarts[line - 1] + 1
};
}
/**
* Get a specified line from the source.
*
* Accepts a source string or a CST document as the second parameter. With
* the latter, starting indices for lines are cached in the document as
* `lineStarts: number[]`.
*
* Returns the line as a string if found, or `null` otherwise.
*
* @param {number} line One-indexed line number
* @param {string|Document|Document[]} cst
* @returns {?string}
*/
function getLine(line, cst) {
const {
lineStarts,
src
} = getSrcInfo(cst);
if (!lineStarts || !(line >= 1) || line > lineStarts.length) return null;
const start = lineStarts[line - 1];
let end = lineStarts[line]; // undefined for last line; that's ok for slice()
while (end && end > start && src[end - 1] === '\n') --end;
return src.slice(start, end);
}
/**
* Pretty-print the starting line from the source indicated by the range `pos`
*
* Trims output to `maxWidth` chars while keeping the starting column visible,
* using `…` at either end to indicate dropped characters.
*
* Returns a two-line string (or `null`) with `\n` as separator; the second line
* will hold appropriately indented `^` marks indicating the column range.
*
* @param {Object} pos
* @param {LinePos} pos.start
* @param {LinePos} [pos.end]
* @param {string|Document|Document[]*} cst
* @param {number} [maxWidth=80]
* @returns {?string}
*/
function getPrettyContext({
start,
end
}, cst, maxWidth = 80) {
let src = getLine(start.line, cst);
if (!src) return null;
let {
col
} = start;
if (src.length > maxWidth) {
if (col <= maxWidth - 10) {
src = src.substr(0, maxWidth - 1) + '…';
} else {
const halfWidth = Math.round(maxWidth / 2);
if (src.length > col + halfWidth) src = src.substr(0, col + halfWidth - 1) + '…';
col -= src.length - maxWidth;
src = '…' + src.substr(1 - maxWidth);
}
}
let errLen = 1;
let errEnd = '';
if (end) {
if (end.line === start.line && col + (end.col - start.col) <= maxWidth + 1) {
errLen = end.col - start.col;
} else {
errLen = Math.min(src.length + 1, maxWidth) - col;
errEnd = '…';
}
}
const offset = col > 1 ? ' '.repeat(col - 1) : '';
const err = '^'.repeat(errLen);
return `${src}\n${offset}${err}${errEnd}`;
}
class Range {
static copy(orig) {
return new Range(orig.start, orig.end);
}
constructor(start, end) {
this.start = start;
this.end = end || start;
}
isEmpty() {
return typeof this.start !== 'number' || !this.end || this.end <= this.start;
}
/**
* Set `origStart` and `origEnd` to point to the original source range for
* this node, which may differ due to dropped CR characters.
*
* @param {number[]} cr - Positions of dropped CR characters
* @param {number} offset - Starting index of `cr` from the last call
* @returns {number} - The next offset, matching the one found for `origStart`
*/
setOrigRange(cr, offset) {
const {
start,
end
} = this;
if (cr.length === 0 || end <= cr[0]) {
this.origStart = start;
this.origEnd = end;
return offset;
}
let i = offset;
while (i < cr.length) {
if (cr[i] > start) break;else ++i;
}
this.origStart = start + i;
const nextOffset = i;
while (i < cr.length) {
// if end was at \n, it should now be at \r
if (cr[i] >= end) break;else ++i;
}
this.origEnd = end + i;
return nextOffset;
}
}
/** Root class of all nodes */
class Node {
static addStringTerminator(src, offset, str) {
if (str[str.length - 1] === '\n') return str;
const next = Node.endOfWhiteSpace(src, offset);
return next >= src.length || src[next] === '\n' ? str + '\n' : str;
} // ^(---|...)
static atDocumentBoundary(src, offset, sep) {
const ch0 = src[offset];
if (!ch0) return true;
const prev = src[offset - 1];
if (prev && prev !== '\n') return false;
if (sep) {
if (ch0 !== sep) return false;
} else {
if (ch0 !== Char.DIRECTIVES_END && ch0 !== Char.DOCUMENT_END) return false;
}
const ch1 = src[offset + 1];
const ch2 = src[offset + 2];
if (ch1 !== ch0 || ch2 !== ch0) return false;
const ch3 = src[offset + 3];
return !ch3 || ch3 === '\n' || ch3 === '\t' || ch3 === ' ';
}
static endOfIdentifier(src, offset) {
let ch = src[offset];
const isVerbatim = ch === '<';
const notOk = isVerbatim ? ['\n', '\t', ' ', '>'] : ['\n', '\t', ' ', '[', ']', '{', '}', ','];
while (ch && notOk.indexOf(ch) === -1) ch = src[offset += 1];
if (isVerbatim && ch === '>') offset += 1;
return offset;
}
static endOfIndent(src, offset) {
let ch = src[offset];
while (ch === ' ') ch = src[offset += 1];
return offset;
}
static endOfLine(src, offset) {
let ch = src[offset];
while (ch && ch !== '\n') ch = src[offset += 1];
return offset;
}
static endOfWhiteSpace(src, offset) {
let ch = src[offset];
while (ch === '\t' || ch === ' ') ch = src[offset += 1];
return offset;
}
static startOfLine(src, offset) {
let ch = src[offset - 1];
if (ch === '\n') return offset;
while (ch && ch !== '\n') ch = src[offset -= 1];
return offset + 1;
}
/**
* End of indentation, or null if the line's indent level is not more
* than `indent`
*
* @param {string} src
* @param {number} indent
* @param {number} lineStart
* @returns {?number}
*/
static endOfBlockIndent(src, indent, lineStart) {
const inEnd = Node.endOfIndent(src, lineStart);
if (inEnd > lineStart + indent) {
return inEnd;
} else {
const wsEnd = Node.endOfWhiteSpace(src, inEnd);
const ch = src[wsEnd];
if (!ch || ch === '\n') return wsEnd;
}
return null;
}
static atBlank(src, offset, endAsBlank) {
const ch = src[offset];
return ch === '\n' || ch === '\t' || ch === ' ' || endAsBlank && !ch;
}
static nextNodeIsIndented(ch, indentDiff, indicatorAsIndent) {
if (!ch || indentDiff < 0) return false;
if (indentDiff > 0) return true;
return indicatorAsIndent && ch === '-';
} // should be at line or string end, or at next non-whitespace char
static normalizeOffset(src, offset) {
const ch = src[offset];
return !ch ? offset : ch !== '\n' && src[offset - 1] === '\n' ? offset - 1 : Node.endOfWhiteSpace(src, offset);
} // fold single newline into space, multiple newlines to N - 1 newlines
// presumes src[offset] === '\n'
static foldNewline(src, offset, indent) {
let inCount = 0;
let error = false;
let fold = '';
let ch = src[offset + 1];
while (ch === ' ' || ch === '\t' || ch === '\n') {
switch (ch) {
case '\n':
inCount = 0;
offset += 1;
fold += '\n';
break;
case '\t':
if (inCount <= indent) error = true;
offset = Node.endOfWhiteSpace(src, offset + 2) - 1;
break;
case ' ':
inCount += 1;
offset += 1;
break;
}
ch = src[offset + 1];
}
if (!fold) fold = ' ';
if (ch && inCount <= indent) error = true;
return {
fold,
offset,
error
};
}
constructor(type, props, context) {
Object.defineProperty(this, 'context', {
value: context || null,
writable: true
});
this.error = null;
this.range = null;
this.valueRange = null;
this.props = props || [];
this.type = type;
this.value = null;
}
getPropValue(idx, key, skipKey) {
if (!this.context) return null;
const {
src
} = this.context;
const prop = this.props[idx];
return prop && src[prop.start] === key ? src.slice(prop.start + (skipKey ? 1 : 0), prop.end) : null;
}
get anchor() {
for (let i = 0; i < this.props.length; ++i) {
const anchor = this.getPropValue(i, Char.ANCHOR, true);
if (anchor != null) return anchor;
}
return null;
}
get comment() {
const comments = [];
for (let i = 0; i < this.props.length; ++i) {
const comment = this.getPropValue(i, Char.COMMENT, true);
if (comment != null) comments.push(comment);
}
return comments.length > 0 ? comments.join('\n') : null;
}
commentHasRequiredWhitespace(start) {
const {
src
} = this.context;
if (this.header && start === this.header.end) return false;
if (!this.valueRange) return false;
const {
end
} = this.valueRange;
return start !== end || Node.atBlank(src, end - 1);
}
get hasComment() {
if (this.context) {
const {
src
} = this.context;
for (let i = 0; i < this.props.length; ++i) {
if (src[this.props[i].start] === Char.COMMENT) return true;
}
}
return false;
}
get hasProps() {
if (this.context) {
const {
src
} = this.context;
for (let i = 0; i < this.props.length; ++i) {
if (src[this.props[i].start] !== Char.COMMENT) return true;
}
}
return false;
}
get includesTrailingLines() {
return false;
}
get jsonLike() {
const jsonLikeTypes = [Type.FLOW_MAP, Type.FLOW_SEQ, Type.QUOTE_DOUBLE, Type.QUOTE_SINGLE];
return jsonLikeTypes.indexOf(this.type) !== -1;
}
get rangeAsLinePos() {
if (!this.range || !this.context) return undefined;
const start = getLinePos(this.range.start, this.context.root);
if (!start) return undefined;
const end = getLinePos(this.range.end, this.context.root);
return {
start,
end
};
}
get rawValue() {
if (!this.valueRange || !this.context) return null;
const {
start,
end
} = this.valueRange;
return this.context.src.slice(start, end);
}
get tag() {
for (let i = 0; i < this.props.length; ++i) {
const tag = this.getPropValue(i, Char.TAG, false);
if (tag != null) {
if (tag[1] === '<') {
return {
verbatim: tag.slice(2, -1)
};
} else {
// eslint-disable-next-line no-unused-vars
const [_, handle, suffix] = tag.match(/^(.*!)([^!]*)$/);
return {
handle,
suffix
};
}
}
}
return null;
}
get valueRangeContainsNewline() {
if (!this.valueRange || !this.context) return false;
const {
start,
end
} = this.valueRange;
const {
src
} = this.context;
for (let i = start; i < end; ++i) {
if (src[i] === '\n') return true;
}
return false;
}
parseComment(start) {
const {
src
} = this.context;
if (src[start] === Char.COMMENT) {
const end = Node.endOfLine(src, start + 1);
const commentRange = new Range(start, end);
this.props.push(commentRange);
return end;
}
return start;
}
/**
* Populates the `origStart` and `origEnd` values of all ranges for this
* node. Extended by child classes to handle descendant nodes.
*
* @param {number[]} cr - Positions of dropped CR characters
* @param {number} offset - Starting index of `cr` from the last call
* @returns {number} - The next offset, matching the one found for `origStart`
*/
setOrigRanges(cr, offset) {
if (this.range) offset = this.range.setOrigRange(cr, offset);
if (this.valueRange) this.valueRange.setOrigRange(cr, offset);
this.props.forEach(prop => prop.setOrigRange(cr, offset));
return offset;
}
toString() {
const {
context: {
src
},
range,
value
} = this;
if (value != null) return value;
const str = src.slice(range.start, range.end);
return Node.addStringTerminator(src, range.end, str);
}
}
class YAMLError extends Error {
constructor(name, source, message) {
if (!message || !(source instanceof Node)) throw new Error(`Invalid arguments for new ${name}`);
super();
this.name = name;
this.message = message;
this.source = source;
}
makePretty() {
if (!this.source) return;
this.nodeType = this.source.type;
const cst = this.source.context && this.source.context.root;
if (typeof this.offset === 'number') {
this.range = new Range(this.offset, this.offset + 1);
const start = cst && getLinePos(this.offset, cst);
if (start) {
const end = {
line: start.line,
col: start.col + 1
};
this.linePos = {
start,
end
};
}
delete this.offset;
} else {
this.range = this.source.range;
this.linePos = this.source.rangeAsLinePos;
}
if (this.linePos) {
const {
line,
col
} = this.linePos.start;
this.message += ` at line ${line}, column ${col}`;
const ctx = cst && getPrettyContext(this.linePos, cst);
if (ctx) this.message += `:\n\n${ctx}\n`;
}
delete this.source;
}
}
class YAMLReferenceError extends YAMLError {
constructor(source, message) {
super('YAMLReferenceError', source, message);
}
}
class YAMLSemanticError extends YAMLError {
constructor(source, message) {
super('YAMLSemanticError', source, message);
}
}
class YAMLSyntaxError extends YAMLError {
constructor(source, message) {
super('YAMLSyntaxError', source, message);
}
}
class YAMLWarning extends YAMLError {
constructor(source, message) {
super('YAMLWarning', source, message);
}
}
function _defineProperty(obj, key, value) {
if (key in obj) {
Object.defineProperty(obj, key, {
value: value,
enumerable: true,
configurable: true,
writable: true
});
} else {
obj[key] = value;
}
return obj;
}
class PlainValue extends Node {
static endOfLine(src, start, inFlow) {
let ch = src[start];
let offset = start;
while (ch && ch !== '\n') {
if (inFlow && (ch === '[' || ch === ']' || ch === '{' || ch === '}' || ch === ',')) break;
const next = src[offset + 1];
if (ch === ':' && (!next || next === '\n' || next === '\t' || next === ' ' || inFlow && next === ',')) break;
if ((ch === ' ' || ch === '\t') && next === '#') break;
offset += 1;
ch = next;
}
return offset;
}
get strValue() {
if (!this.valueRange || !this.context) return null;
let {
start,
end
} = this.valueRange;
const {
src
} = this.context;
let ch = src[end - 1];
while (start < end && (ch === '\n' || ch === '\t' || ch === ' ')) ch = src[--end - 1];
let str = '';
for (let i = start; i < end; ++i) {
const ch = src[i];
if (ch === '\n') {
const {
fold,
offset
} = Node.foldNewline(src, i, -1);
str += fold;
i = offset;
} else if (ch === ' ' || ch === '\t') {
// trim trailing whitespace
const wsStart = i;
let next = src[i + 1];
while (i < end && (next === ' ' || next === '\t')) {
i += 1;
next = src[i + 1];
}
if (next !== '\n') str += i > wsStart ? src.slice(wsStart, i + 1) : ch;
} else {
str += ch;
}
}
const ch0 = src[start];
switch (ch0) {
case '\t':
{
const msg = 'Plain value cannot start with a tab character';
const errors = [new YAMLSemanticError(this, msg)];
return {
errors,
str
};
}
case '@':
case '`':
{
const msg = `Plain value cannot start with reserved character ${ch0}`;
const errors = [new YAMLSemanticError(this, msg)];
return {
errors,
str
};
}
default:
return str;
}
}
parseBlockValue(start) {
const {
indent,
inFlow,
src
} = this.context;
let offset = start;
let valueEnd = start;
for (let ch = src[offset]; ch === '\n'; ch = src[offset]) {
if (Node.atDocumentBoundary(src, offset + 1)) break;
const end = Node.endOfBlockIndent(src, indent, offset + 1);
if (end === null || src[end] === '#') break;
if (src[end] === '\n') {
offset = end;
} else {
valueEnd = PlainValue.endOfLine(src, end, inFlow);
offset = valueEnd;
}
}
if (this.valueRange.isEmpty()) this.valueRange.start = start;
this.valueRange.end = valueEnd;
return valueEnd;
}
/**
* Parses a plain value from the source
*
* Accepted forms are:
* ```
* #comment
*
* first line
*
* first line #comment
*
* first line
* block
* lines
*
* #comment
* block
* lines
* ```
* where block lines are empty or have an indent level greater than `indent`.
*
* @param {ParseContext} context
* @param {number} start - Index of first character
* @returns {number} - Index of the character after this scalar, may be `\n`
*/
parse(context, start) {
this.context = context;
const {
inFlow,
src
} = context;
let offset = start;
const ch = src[offset];
if (ch && ch !== '#' && ch !== '\n') {
offset = PlainValue.endOfLine(src, start, inFlow);
}
this.valueRange = new Range(start, offset);
offset = Node.endOfWhiteSpace(src, offset);
offset = this.parseComment(offset);
if (!this.hasComment || this.valueRange.isEmpty()) {
offset = this.parseBlockValue(offset);
}
return offset;
}
}
exports.Char = Char;
exports.Node = Node;
exports.PlainValue = PlainValue;
exports.Range = Range;
exports.Type = Type;
exports.YAMLError = YAMLError;
exports.YAMLReferenceError = YAMLReferenceError;
exports.YAMLSemanticError = YAMLSemanticError;
exports.YAMLSyntaxError = YAMLSyntaxError;
exports.YAMLWarning = YAMLWarning;
exports._defineProperty = _defineProperty;
exports.defaultTagPrefix = defaultTagPrefix;
exports.defaultTags = defaultTags;
/***/ }),
/***/ 3818:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
var PlainValue = __nccwpck_require__(1346);
var resolveSeq = __nccwpck_require__(1011);
var warnings = __nccwpck_require__(1747);
function createMap(schema, obj, ctx) {
const map = new resolveSeq.YAMLMap(schema);
if (obj instanceof Map) {
for (const [key, value] of obj) map.items.push(schema.createPair(key, value, ctx));
} else if (obj && typeof obj === 'object') {
for (const key of Object.keys(obj)) map.items.push(schema.createPair(key, obj[key], ctx));
}
if (typeof schema.sortMapEntries === 'function') {
map.items.sort(schema.sortMapEntries);
}
return map;
}
const map = {
createNode: createMap,
default: true,
nodeClass: resolveSeq.YAMLMap,
tag: 'tag:yaml.org,2002:map',
resolve: resolveSeq.resolveMap
};
function createSeq(schema, obj, ctx) {
const seq = new resolveSeq.YAMLSeq(schema);
if (obj && obj[Symbol.iterator]) {
for (const it of obj) {
const v = schema.createNode(it, ctx.wrapScalars, null, ctx);
seq.items.push(v);
}
}
return seq;
}
const seq = {
createNode: createSeq,
default: true,
nodeClass: resolveSeq.YAMLSeq,
tag: 'tag:yaml.org,2002:seq',
resolve: resolveSeq.resolveSeq
};
const string = {
identify: value => typeof value === 'string',
default: true,
tag: 'tag:yaml.org,2002:str',
resolve: resolveSeq.resolveString,
stringify(item, ctx, onComment, onChompKeep) {
ctx = Object.assign({
actualString: true
}, ctx);
return resolveSeq.stringifyString(item, ctx, onComment, onChompKeep);
},
options: resolveSeq.strOptions
};
const failsafe = [map, seq, string];
/* global BigInt */
const intIdentify$2 = value => typeof value === 'bigint' || Number.isInteger(value);
const intResolve$1 = (src, part, radix) => resolveSeq.intOptions.asBigInt ? BigInt(src) : parseInt(part, radix);
function intStringify$1(node, radix, prefix) {
const {
value
} = node;
if (intIdentify$2(value) && value >= 0) return prefix + value.toString(radix);
return resolveSeq.stringifyNumber(node);
}
const nullObj = {
identify: value => value == null,
createNode: (schema, value, ctx) => ctx.wrapScalars ? new resolveSeq.Scalar(null) : null,
default: true,
tag: 'tag:yaml.org,2002:null',
test: /^(?:~|[Nn]ull|NULL)?$/,
resolve: () => null,
options: resolveSeq.nullOptions,
stringify: () => resolveSeq.nullOptions.nullStr
};
const boolObj = {
identify: value => typeof value === 'boolean',
default: true,
tag: 'tag:yaml.org,2002:bool',
test: /^(?:[Tt]rue|TRUE|[Ff]alse|FALSE)$/,
resolve: str => str[0] === 't' || str[0] === 'T',
options: resolveSeq.boolOptions,
stringify: ({
value
}) => value ? resolveSeq.boolOptions.trueStr : resolveSeq.boolOptions.falseStr
};
const octObj = {
identify: value => intIdentify$2(value) && value >= 0,
default: true,
tag: 'tag:yaml.org,2002:int',
format: 'OCT',
test: /^0o([0-7]+)$/,
resolve: (str, oct) => intResolve$1(str, oct, 8),
options: resolveSeq.intOptions,
stringify: node => intStringify$1(node, 8, '0o')
};
const intObj = {
identify: intIdentify$2,
default: true,
tag: 'tag:yaml.org,2002:int',
test: /^[-+]?[0-9]+$/,
resolve: str => intResolve$1(str, str, 10),
options: resolveSeq.intOptions,
stringify: resolveSeq.stringifyNumber
};
const hexObj = {
identify: value => intIdentify$2(value) && value >= 0,
default: true,
tag: 'tag:yaml.org,2002:int',
format: 'HEX',
test: /^0x([0-9a-fA-F]+)$/,
resolve: (str, hex) => intResolve$1(str, hex, 16),
options: resolveSeq.intOptions,
stringify: node => intStringify$1(node, 16, '0x')
};
const nanObj = {
identify: value => typeof value === 'number',
default: true,
tag: 'tag:yaml.org,2002:float',
test: /^(?:[-+]?\.inf|(\.nan))$/i,
resolve: (str, nan) => nan ? NaN : str[0] === '-' ? Number.NEGATIVE_INFINITY : Number.POSITIVE_INFINITY,
stringify: resolveSeq.stringifyNumber
};
const expObj = {
identify: value => typeof value === 'number',
default: true,
tag: 'tag:yaml.org,2002:float',
format: 'EXP',
test: /^[-+]?(?:\.[0-9]+|[0-9]+(?:\.[0-9]*)?)[eE][-+]?[0-9]+$/,
resolve: str => parseFloat(str),
stringify: ({
value
}) => Number(value).toExponential()
};
const floatObj = {
identify: value => typeof value === 'number',
default: true,
tag: 'tag:yaml.org,2002:float',
test: /^[-+]?(?:\.([0-9]+)|[0-9]+\.([0-9]*))$/,
resolve(str, frac1, frac2) {
const frac = frac1 || frac2;
const node = new resolveSeq.Scalar(parseFloat(str));
if (frac && frac[frac.length - 1] === '0') node.minFractionDigits = frac.length;
return node;
},
stringify: resolveSeq.stringifyNumber
};
const core = failsafe.concat([nullObj, boolObj, octObj, intObj, hexObj, nanObj, expObj, floatObj]);
/* global BigInt */
const intIdentify$1 = value => typeof value === 'bigint' || Number.isInteger(value);
const stringifyJSON = ({
value
}) => JSON.stringify(value);
const json = [map, seq, {
identify: value => typeof value === 'string',
default: true,
tag: 'tag:yaml.org,2002:str',
resolve: resolveSeq.resolveString,
stringify: stringifyJSON
}, {
identify: value => value == null,
createNode: (schema, value, ctx) => ctx.wrapScalars ? new resolveSeq.Scalar(null) : null,
default: true,
tag: 'tag:yaml.org,2002:null',
test: /^null$/,
resolve: () => null,
stringify: stringifyJSON
}, {
identify: value => typeof value === 'boolean',
default: true,
tag: 'tag:yaml.org,2002:bool',
test: /^true|false$/,
resolve: str => str === 'true',
stringify: stringifyJSON
}, {
identify: intIdentify$1,
default: true,
tag: 'tag:yaml.org,2002:int',
test: /^-?(?:0|[1-9][0-9]*)$/,
resolve: str => resolveSeq.intOptions.asBigInt ? BigInt(str) : parseInt(str, 10),
stringify: ({
value
}) => intIdentify$1(value) ? value.toString() : JSON.stringify(value)
}, {
identify: value => typeof value === 'number',
default: true,
tag: 'tag:yaml.org,2002:float',
test: /^-?(?:0|[1-9][0-9]*)(?:\.[0-9]*)?(?:[eE][-+]?[0-9]+)?$/,
resolve: str => parseFloat(str),
stringify: stringifyJSON
}];
json.scalarFallback = str => {
throw new SyntaxError(`Unresolved plain scalar ${JSON.stringify(str)}`);
};
/* global BigInt */
const boolStringify = ({
value
}) => value ? resolveSeq.boolOptions.trueStr : resolveSeq.boolOptions.falseStr;
const intIdentify = value => typeof value === 'bigint' || Number.isInteger(value);
function intResolve(sign, src, radix) {
let str = src.replace(/_/g, '');
if (resolveSeq.intOptions.asBigInt) {
switch (radix) {
case 2:
str = `0b${str}`;
break;
case 8:
str = `0o${str}`;
break;
case 16:
str = `0x${str}`;
break;
}
const n = BigInt(str);
return sign === '-' ? BigInt(-1) * n : n;
}
const n = parseInt(str, radix);
return sign === '-' ? -1 * n : n;
}
function intStringify(node, radix, prefix) {
const {
value
} = node;
if (intIdentify(value)) {
const str = value.toString(radix);
return value < 0 ? '-' + prefix + str.substr(1) : prefix + str;
}
return resolveSeq.stringifyNumber(node);
}
const yaml11 = failsafe.concat([{
identify: value => value == null,
createNode: (schema, value, ctx) => ctx.wrapScalars ? new resolveSeq.Scalar(null) : null,
default: true,
tag: 'tag:yaml.org,2002:null',
test: /^(?:~|[Nn]ull|NULL)?$/,
resolve: () => null,
options: resolveSeq.nullOptions,
stringify: () => resolveSeq.nullOptions.nullStr
}, {
identify: value => typeof value === 'boolean',
default: true,
tag: 'tag:yaml.org,2002:bool',
test: /^(?:Y|y|[Yy]es|YES|[Tt]rue|TRUE|[Oo]n|ON)$/,
resolve: () => true,
options: resolveSeq.boolOptions,
stringify: boolStringify
}, {
identify: value => typeof value === 'boolean',
default: true,
tag: 'tag:yaml.org,2002:bool',
test: /^(?:N|n|[Nn]o|NO|[Ff]alse|FALSE|[Oo]ff|OFF)$/i,
resolve: () => false,
options: resolveSeq.boolOptions,
stringify: boolStringify
}, {
identify: intIdentify,
default: true,
tag: 'tag:yaml.org,2002:int',
format: 'BIN',
test: /^([-+]?)0b([0-1_]+)$/,
resolve: (str, sign, bin) => intResolve(sign, bin, 2),
stringify: node => intStringify(node, 2, '0b')
}, {
identify: intIdentify,
default: true,
tag: 'tag:yaml.org,2002:int',
format: 'OCT',
test: /^([-+]?)0([0-7_]+)$/,
resolve: (str, sign, oct) => intResolve(sign, oct, 8),
stringify: node => intStringify(node, 8, '0')
}, {
identify: intIdentify,
default: true,
tag: 'tag:yaml.org,2002:int',
test: /^([-+]?)([0-9][0-9_]*)$/,
resolve: (str, sign, abs) => intResolve(sign, abs, 10),
stringify: resolveSeq.stringifyNumber
}, {
identify: intIdentify,
default: true,
tag: 'tag:yaml.org,2002:int',
format: 'HEX',
test: /^([-+]?)0x([0-9a-fA-F_]+)$/,
resolve: (str, sign, hex) => intResolve(sign, hex, 16),
stringify: node => intStringify(node, 16, '0x')
}, {
identify: value => typeof value === 'number',
default: true,
tag: 'tag:yaml.org,2002:float',
test: /^(?:[-+]?\.inf|(\.nan))$/i,
resolve: (str, nan) => nan ? NaN : str[0] === '-' ? Number.NEGATIVE_INFINITY : Number.POSITIVE_INFINITY,
stringify: resolveSeq.stringifyNumber
}, {
identify: value => typeof value === 'number',
default: true,
tag: 'tag:yaml.org,2002:float',
format: 'EXP',
test: /^[-+]?([0-9][0-9_]*)?(\.[0-9_]*)?[eE][-+]?[0-9]+$/,
resolve: str => parseFloat(str.replace(/_/g, '')),
stringify: ({
value
}) => Number(value).toExponential()
}, {
identify: value => typeof value === 'number',
default: true,
tag: 'tag:yaml.org,2002:float',
test: /^[-+]?(?:[0-9][0-9_]*)?\.([0-9_]*)$/,
resolve(str, frac) {
const node = new resolveSeq.Scalar(parseFloat(str.replace(/_/g, '')));
if (frac) {
const f = frac.replace(/_/g, '');
if (f[f.length - 1] === '0') node.minFractionDigits = f.length;
}
return node;
},
stringify: resolveSeq.stringifyNumber
}], warnings.binary, warnings.omap, warnings.pairs, warnings.set, warnings.intTime, warnings.floatTime, warnings.timestamp);
const schemas = {
core,
failsafe,
json,
yaml11
};
const tags = {
binary: warnings.binary,
bool: boolObj,
float: floatObj,
floatExp: expObj,
floatNaN: nanObj,
floatTime: warnings.floatTime,
int: intObj,
intHex: hexObj,
intOct: octObj,
intTime: warnings.intTime,
map,
null: nullObj,
omap: warnings.omap,
pairs: warnings.pairs,
seq,
set: warnings.set,
timestamp: warnings.timestamp
};
function findTagObject(value, tagName, tags) {
if (tagName) {
const match = tags.filter(t => t.tag === tagName);
const tagObj = match.find(t => !t.format) || match[0];
if (!tagObj) throw new Error(`Tag ${tagName} not found`);
return tagObj;
} // TODO: deprecate/remove class check
return tags.find(t => (t.identify && t.identify(value) || t.class && value instanceof t.class) && !t.format);
}
function createNode(value, tagName, ctx) {
if (value instanceof resolveSeq.Node) return value;
const {
defaultPrefix,
onTagObj,
prevObjects,
schema,
wrapScalars
} = ctx;
if (tagName && tagName.startsWith('!!')) tagName = defaultPrefix + tagName.slice(2);
let tagObj = findTagObject(value, tagName, schema.tags);
if (!tagObj) {
if (typeof value.toJSON === 'function') value = value.toJSON();
if (!value || typeof value !== 'object') return wrapScalars ? new resolveSeq.Scalar(value) : value;
tagObj = value instanceof Map ? map : value[Symbol.iterator] ? seq : map;
}
if (onTagObj) {
onTagObj(tagObj);
delete ctx.onTagObj;
} // Detect duplicate references to the same object & use Alias nodes for all
// after first. The `obj` wrapper allows for circular references to resolve.
const obj = {
value: undefined,
node: undefined
};
if (value && typeof value === 'object' && prevObjects) {
const prev = prevObjects.get(value);
if (prev) {
const alias = new resolveSeq.Alias(prev); // leaves source dirty; must be cleaned by caller
ctx.aliasNodes.push(alias); // defined along with prevObjects
return alias;
}
obj.value = value;
prevObjects.set(value, obj);
}
obj.node = tagObj.createNode ? tagObj.createNode(ctx.schema, value, ctx) : wrapScalars ? new resolveSeq.Scalar(value) : value;
if (tagName && obj.node instanceof resolveSeq.Node) obj.node.tag = tagName;
return obj.node;
}
function getSchemaTags(schemas, knownTags, customTags, schemaId) {
let tags = schemas[schemaId.replace(/\W/g, '')]; // 'yaml-1.1' -> 'yaml11'
if (!tags) {
const keys = Object.keys(schemas).map(key => JSON.stringify(key)).join(', ');
throw new Error(`Unknown schema "${schemaId}"; use one of ${keys}`);
}
if (Array.isArray(customTags)) {
for (const tag of customTags) tags = tags.concat(tag);
} else if (typeof customTags === 'function') {
tags = customTags(tags.slice());
}
for (let i = 0; i < tags.length; ++i) {
const tag = tags[i];
if (typeof tag === 'string') {
const tagObj = knownTags[tag];
if (!tagObj) {
const keys = Object.keys(knownTags).map(key => JSON.stringify(key)).join(', ');
throw new Error(`Unknown custom tag "${tag}"; use one of ${keys}`);
}
tags[i] = tagObj;
}
}
return tags;
}
const sortMapEntriesByKey = (a, b) => a.key < b.key ? -1 : a.key > b.key ? 1 : 0;
class Schema {
// TODO: remove in v2
// TODO: remove in v2
constructor({
customTags,
merge,
schema,
sortMapEntries,
tags: deprecatedCustomTags
}) {
this.merge = !!merge;
this.name = schema;
this.sortMapEntries = sortMapEntries === true ? sortMapEntriesByKey : sortMapEntries || null;
if (!customTags && deprecatedCustomTags) warnings.warnOptionDeprecation('tags', 'customTags');
this.tags = getSchemaTags(schemas, tags, customTags || deprecatedCustomTags, schema);
}
createNode(value, wrapScalars, tagName, ctx) {
const baseCtx = {
defaultPrefix: Schema.defaultPrefix,
schema: this,
wrapScalars
};
const createCtx = ctx ? Object.assign(ctx, baseCtx) : baseCtx;
return createNode(value, tagName, createCtx);
}
createPair(key, value, ctx) {
if (!ctx) ctx = {
wrapScalars: true
};
const k = this.createNode(key, ctx.wrapScalars, null, ctx);
const v = this.createNode(value, ctx.wrapScalars, null, ctx);
return new resolveSeq.Pair(k, v);
}
}
PlainValue._defineProperty(Schema, "defaultPrefix", PlainValue.defaultTagPrefix);
PlainValue._defineProperty(Schema, "defaultTags", PlainValue.defaultTags);
exports.Schema = Schema;
/***/ }),
/***/ 8815:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
var parseCst = __nccwpck_require__(4587);
var Document$1 = __nccwpck_require__(5955);
var Schema = __nccwpck_require__(3818);
var PlainValue = __nccwpck_require__(1346);
var warnings = __nccwpck_require__(1747);
__nccwpck_require__(1011);
function createNode(value, wrapScalars = true, tag) {
if (tag === undefined && typeof wrapScalars === 'string') {
tag = wrapScalars;
wrapScalars = true;
}
const options = Object.assign({}, Document$1.Document.defaults[Document$1.defaultOptions.version], Document$1.defaultOptions);
const schema = new Schema.Schema(options);
return schema.createNode(value, wrapScalars, tag);
}
class Document extends Document$1.Document {
constructor(options) {
super(Object.assign({}, Document$1.defaultOptions, options));
}
}
function parseAllDocuments(src, options) {
const stream = [];
let prev;
for (const cstDoc of parseCst.parse(src)) {
const doc = new Document(options);
doc.parse(cstDoc, prev);
stream.push(doc);
prev = doc;
}
return stream;
}
function parseDocument(src, options) {
const cst = parseCst.parse(src);
const doc = new Document(options).parse(cst[0]);
if (cst.length > 1) {
const errMsg = 'Source contains multiple documents; please use YAML.parseAllDocuments()';
doc.errors.unshift(new PlainValue.YAMLSemanticError(cst[1], errMsg));
}
return doc;
}
function parse(src, options) {
const doc = parseDocument(src, options);
doc.warnings.forEach(warning => warnings.warn(warning));
if (doc.errors.length > 0) throw doc.errors[0];
return doc.toJSON();
}
function stringify(value, options) {
const doc = new Document(options);
doc.contents = value;
return String(doc);
}
const YAML = {
createNode,
defaultOptions: Document$1.defaultOptions,
Document,
parse,
parseAllDocuments,
parseCST: parseCst.parse,
parseDocument,
scalarOptions: Document$1.scalarOptions,
stringify
};
exports.YAML = YAML;
/***/ }),
/***/ 4587:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
var PlainValue = __nccwpck_require__(1346);
class BlankLine extends PlainValue.Node {
constructor() {
super(PlainValue.Type.BLANK_LINE);
}
/* istanbul ignore next */
get includesTrailingLines() {
// This is never called from anywhere, but if it were,
// this is the value it should return.
return true;
}
/**
* Parses a blank line from the source
*
* @param {ParseContext} context
* @param {number} start - Index of first \n character
* @returns {number} - Index of the character after this
*/
parse(context, start) {
this.context = context;
this.range = new PlainValue.Range(start, start + 1);
return start + 1;
}
}
class CollectionItem extends PlainValue.Node {
constructor(type, props) {
super(type, props);
this.node = null;
}
get includesTrailingLines() {
return !!this.node && this.node.includesTrailingLines;
}
/**
* @param {ParseContext} context
* @param {number} start - Index of first character
* @returns {number} - Index of the character after this
*/
parse(context, start) {
this.context = context;
const {
parseNode,
src
} = context;
let {
atLineStart,
lineStart
} = context;
if (!atLineStart && this.type === PlainValue.Type.SEQ_ITEM) this.error = new PlainValue.YAMLSemanticError(this, 'Sequence items must not have preceding content on the same line');
const indent = atLineStart ? start - lineStart : context.indent;
let offset = PlainValue.Node.endOfWhiteSpace(src, start + 1);
let ch = src[offset];
const inlineComment = ch === '#';
const comments = [];
let blankLine = null;
while (ch === '\n' || ch === '#') {
if (ch === '#') {
const end = PlainValue.Node.endOfLine(src, offset + 1);
comments.push(new PlainValue.Range(offset, end));
offset = end;
} else {
atLineStart = true;
lineStart = offset + 1;
const wsEnd = PlainValue.Node.endOfWhiteSpace(src, lineStart);
if (src[wsEnd] === '\n' && comments.length === 0) {
blankLine = new BlankLine();
lineStart = blankLine.parse({
src
}, lineStart);
}
offset = PlainValue.Node.endOfIndent(src, lineStart);
}
ch = src[offset];
}
if (PlainValue.Node.nextNodeIsIndented(ch, offset - (lineStart + indent), this.type !== PlainValue.Type.SEQ_ITEM)) {
this.node = parseNode({
atLineStart,
inCollection: false,
indent,
lineStart,
parent: this
}, offset);
} else if (ch && lineStart > start + 1) {
offset = lineStart - 1;
}
if (this.node) {
if (blankLine) {
// Only blank lines preceding non-empty nodes are captured. Note that
// this means that collection item range start indices do not always
// increase monotonically. -- eemeli/yaml#126
const items = context.parent.items || context.parent.contents;
if (items) items.push(blankLine);
}
if (comments.length) Array.prototype.push.apply(this.props, comments);
offset = this.node.range.end;
} else {
if (inlineComment) {
const c = comments[0];
this.props.push(c);
offset = c.end;
} else {
offset = PlainValue.Node.endOfLine(src, start + 1);
}
}
const end = this.node ? this.node.valueRange.end : offset;
this.valueRange = new PlainValue.Range(start, end);
return offset;
}
setOrigRanges(cr, offset) {
offset = super.setOrigRanges(cr, offset);
return this.node ? this.node.setOrigRanges(cr, offset) : offset;
}
toString() {
const {
context: {
src
},
node,
range,
value
} = this;
if (value != null) return value;
const str = node ? src.slice(range.start, node.range.start) + String(node) : src.slice(range.start, range.end);
return PlainValue.Node.addStringTerminator(src, range.end, str);
}
}
class Comment extends PlainValue.Node {
constructor() {
super(PlainValue.Type.COMMENT);
}
/**
* Parses a comment line from the source
*
* @param {ParseContext} context
* @param {number} start - Index of first character
* @returns {number} - Index of the character after this scalar
*/
parse(context, start) {
this.context = context;
const offset = this.parseComment(start);
this.range = new PlainValue.Range(start, offset);
return offset;
}
}
function grabCollectionEndComments(node) {
let cnode = node;
while (cnode instanceof CollectionItem) cnode = cnode.node;
if (!(cnode instanceof Collection)) return null;
const len = cnode.items.length;
let ci = -1;
for (let i = len - 1; i >= 0; --i) {
const n = cnode.items[i];
if (n.type === PlainValue.Type.COMMENT) {
// Keep sufficiently indented comments with preceding node
const {
indent,
lineStart
} = n.context;
if (indent > 0 && n.range.start >= lineStart + indent) break;
ci = i;
} else if (n.type === PlainValue.Type.BLANK_LINE) ci = i;else break;
}
if (ci === -1) return null;
const ca = cnode.items.splice(ci, len - ci);
const prevEnd = ca[0].range.start;
while (true) {
cnode.range.end = prevEnd;
if (cnode.valueRange && cnode.valueRange.end > prevEnd) cnode.valueRange.end = prevEnd;
if (cnode === node) break;
cnode = cnode.context.parent;
}
return ca;
}
class Collection extends PlainValue.Node {
static nextContentHasIndent(src, offset, indent) {
const lineStart = PlainValue.Node.endOfLine(src, offset) + 1;
offset = PlainValue.Node.endOfWhiteSpace(src, lineStart);
const ch = src[offset];
if (!ch) return false;
if (offset >= lineStart + indent) return true;
if (ch !== '#' && ch !== '\n') return false;
return Collection.nextContentHasIndent(src, offset, indent);
}
constructor(firstItem) {
super(firstItem.type === PlainValue.Type.SEQ_ITEM ? PlainValue.Type.SEQ : PlainValue.Type.MAP);
for (let i = firstItem.props.length - 1; i >= 0; --i) {
if (firstItem.props[i].start < firstItem.context.lineStart) {
// props on previous line are assumed by the collection
this.props = firstItem.props.slice(0, i + 1);
firstItem.props = firstItem.props.slice(i + 1);
const itemRange = firstItem.props[0] || firstItem.valueRange;
firstItem.range.start = itemRange.start;
break;
}
}
this.items = [firstItem];
const ec = grabCollectionEndComments(firstItem);
if (ec) Array.prototype.push.apply(this.items, ec);
}
get includesTrailingLines() {
return this.items.length > 0;
}
/**
* @param {ParseContext} context
* @param {number} start - Index of first character
* @returns {number} - Index of the character after this
*/
parse(context, start) {
this.context = context;
const {
parseNode,
src
} = context; // It's easier to recalculate lineStart here rather than tracking down the
// last context from which to read it -- eemeli/yaml#2
let lineStart = PlainValue.Node.startOfLine(src, start);
const firstItem = this.items[0]; // First-item context needs to be correct for later comment handling
// -- eemeli/yaml#17
firstItem.context.parent = this;
this.valueRange = PlainValue.Range.copy(firstItem.valueRange);
const indent = firstItem.range.start - firstItem.context.lineStart;
let offset = start;
offset = PlainValue.Node.normalizeOffset(src, offset);
let ch = src[offset];
let atLineStart = PlainValue.Node.endOfWhiteSpace(src, lineStart) === offset;
let prevIncludesTrailingLines = false;
while (ch) {
while (ch === '\n' || ch === '#') {
if (atLineStart && ch === '\n' && !prevIncludesTrailingLines) {
const blankLine = new BlankLine();
offset = blankLine.parse({
src
}, offset);
this.valueRange.end = offset;
if (offset >= src.length) {
ch = null;
break;
}
this.items.push(blankLine);
offset -= 1; // blankLine.parse() consumes terminal newline
} else if (ch === '#') {
if (offset < lineStart + indent && !Collection.nextContentHasIndent(src, offset, indent)) {
return offset;
}
const comment = new Comment();
offset = comment.parse({
indent,
lineStart,
src
}, offset);
this.items.push(comment);
this.valueRange.end = offset;
if (offset >= src.length) {
ch = null;
break;
}
}
lineStart = offset + 1;
offset = PlainValue.Node.endOfIndent(src, lineStart);
if (PlainValue.Node.atBlank(src, offset)) {
const wsEnd = PlainValue.Node.endOfWhiteSpace(src, offset);
const next = src[wsEnd];
if (!next || next === '\n' || next === '#') {
offset = wsEnd;
}
}
ch = src[offset];
atLineStart = true;
}
if (!ch) {
break;
}
if (offset !== lineStart + indent && (atLineStart || ch !== ':')) {
if (offset < lineStart + indent) {
if (lineStart > start) offset = lineStart;
break;
} else if (!this.error) {
const msg = 'All collection items must start at the same column';
this.error = new PlainValue.YAMLSyntaxError(this, msg);
}
}
if (firstItem.type === PlainValue.Type.SEQ_ITEM) {
if (ch !== '-') {
if (lineStart > start) offset = lineStart;
break;
}
} else if (ch === '-' && !this.error) {
// map key may start with -, as long as it's followed by a non-whitespace char
const next = src[offset + 1];
if (!next || next === '\n' || next === '\t' || next === ' ') {
const msg = 'A collection cannot be both a mapping and a sequence';
this.error = new PlainValue.YAMLSyntaxError(this, msg);
}
}
const node = parseNode({
atLineStart,
inCollection: true,
indent,
lineStart,
parent: this
}, offset);
if (!node) return offset; // at next document start
this.items.push(node);
this.valueRange.end = node.valueRange.end;
offset = PlainValue.Node.normalizeOffset(src, node.range.end);
ch = src[offset];
atLineStart = false;
prevIncludesTrailingLines = node.includesTrailingLines; // Need to reset lineStart and atLineStart here if preceding node's range
// has advanced to check the current line's indentation level
// -- eemeli/yaml#10 & eemeli/yaml#38
if (ch) {
let ls = offset - 1;
let prev = src[ls];
while (prev === ' ' || prev === '\t') prev = src[--ls];
if (prev === '\n') {
lineStart = ls + 1;
atLineStart = true;
}
}
const ec = grabCollectionEndComments(node);
if (ec) Array.prototype.push.apply(this.items, ec);
}
return offset;
}
setOrigRanges(cr, offset) {
offset = super.setOrigRanges(cr, offset);
this.items.forEach(node => {
offset = node.setOrigRanges(cr, offset);
});
return offset;
}
toString() {
const {
context: {
src
},
items,
range,
value
} = this;
if (value != null) return value;
let str = src.slice(range.start, items[0].range.start) + String(items[0]);
for (let i = 1; i < items.length; ++i) {
const item = items[i];
const {
atLineStart,
indent
} = item.context;
if (atLineStart) for (let i = 0; i < indent; ++i) str += ' ';
str += String(item);
}
return PlainValue.Node.addStringTerminator(src, range.end, str);
}
}
class Directive extends PlainValue.Node {
constructor() {
super(PlainValue.Type.DIRECTIVE);
this.name = null;
}
get parameters() {
const raw = this.rawValue;
return raw ? raw.trim().split(/[ \t]+/) : [];
}
parseName(start) {
const {
src
} = this.context;
let offset = start;
let ch = src[offset];
while (ch && ch !== '\n' && ch !== '\t' && ch !== ' ') ch = src[offset += 1];
this.name = src.slice(start, offset);
return offset;
}
parseParameters(start) {
const {
src
} = this.context;
let offset = start;
let ch = src[offset];
while (ch && ch !== '\n' && ch !== '#') ch = src[offset += 1];
this.valueRange = new PlainValue.Range(start, offset);
return offset;
}
parse(context, start) {
this.context = context;
let offset = this.parseName(start + 1);
offset = this.parseParameters(offset);
offset = this.parseComment(offset);
this.range = new PlainValue.Range(start, offset);
return offset;
}
}
class Document extends PlainValue.Node {
static startCommentOrEndBlankLine(src, start) {
const offset = PlainValue.Node.endOfWhiteSpace(src, start);
const ch = src[offset];
return ch === '#' || ch === '\n' ? offset : start;
}
constructor() {
super(PlainValue.Type.DOCUMENT);
this.directives = null;
this.contents = null;
this.directivesEndMarker = null;
this.documentEndMarker = null;
}
parseDirectives(start) {
const {
src
} = this.context;
this.directives = [];
let atLineStart = true;
let hasDirectives = false;
let offset = start;
while (!PlainValue.Node.atDocumentBoundary(src, offset, PlainValue.Char.DIRECTIVES_END)) {
offset = Document.startCommentOrEndBlankLine(src, offset);
switch (src[offset]) {
case '\n':
if (atLineStart) {
const blankLine = new BlankLine();
offset = blankLine.parse({
src
}, offset);
if (offset < src.length) {
this.directives.push(blankLine);
}
} else {
offset += 1;
atLineStart = true;
}
break;
case '#':
{
const comment = new Comment();
offset = comment.parse({
src
}, offset);
this.directives.push(comment);
atLineStart = false;
}
break;
case '%':
{
const directive = new Directive();
offset = directive.parse({
parent: this,
src
}, offset);
this.directives.push(directive);
hasDirectives = true;
atLineStart = false;
}
break;
default:
if (hasDirectives) {
this.error = new PlainValue.YAMLSemanticError(this, 'Missing directives-end indicator line');
} else if (this.directives.length > 0) {
this.contents = this.directives;
this.directives = [];
}
return offset;
}
}
if (src[offset]) {
this.directivesEndMarker = new PlainValue.Range(offset, offset + 3);
return offset + 3;
}
if (hasDirectives) {
this.error = new PlainValue.YAMLSemanticError(this, 'Missing directives-end indicator line');
} else if (this.directives.length > 0) {
this.contents = this.directives;
this.directives = [];
}
return offset;
}
parseContents(start) {
const {
parseNode,
src
} = this.context;
if (!this.contents) this.contents = [];
let lineStart = start;
while (src[lineStart - 1] === '-') lineStart -= 1;
let offset = PlainValue.Node.endOfWhiteSpace(src, start);
let atLineStart = lineStart === start;
this.valueRange = new PlainValue.Range(offset);
while (!PlainValue.Node.atDocumentBoundary(src, offset, PlainValue.Char.DOCUMENT_END)) {
switch (src[offset]) {
case '\n':
if (atLineStart) {
const blankLine = new BlankLine();
offset = blankLine.parse({
src
}, offset);
if (offset < src.length) {
this.contents.push(blankLine);
}
} else {
offset += 1;
atLineStart = true;
}
lineStart = offset;
break;
case '#':
{
const comment = new Comment();
offset = comment.parse({
src
}, offset);
this.contents.push(comment);
atLineStart = false;
}
break;
default:
{
const iEnd = PlainValue.Node.endOfIndent(src, offset);
const context = {
atLineStart,
indent: -1,
inFlow: false,
inCollection: false,
lineStart,
parent: this
};
const node = parseNode(context, iEnd);
if (!node) return this.valueRange.end = iEnd; // at next document start
this.contents.push(node);
offset = node.range.end;
atLineStart = false;
const ec = grabCollectionEndComments(node);
if (ec) Array.prototype.push.apply(this.contents, ec);
}
}
offset = Document.startCommentOrEndBlankLine(src, offset);
}
this.valueRange.end = offset;
if (src[offset]) {
this.documentEndMarker = new PlainValue.Range(offset, offset + 3);
offset += 3;
if (src[offset]) {
offset = PlainValue.Node.endOfWhiteSpace(src, offset);
if (src[offset] === '#') {
const comment = new Comment();
offset = comment.parse({
src
}, offset);
this.contents.push(comment);
}
switch (src[offset]) {
case '\n':
offset += 1;
break;
case undefined:
break;
default:
this.error = new PlainValue.YAMLSyntaxError(this, 'Document end marker line cannot have a non-comment suffix');
}
}
}
return offset;
}
/**
* @param {ParseContext} context
* @param {number} start - Index of first character
* @returns {number} - Index of the character after this
*/
parse(context, start) {
context.root = this;
this.context = context;
const {
src
} = context;
let offset = src.charCodeAt(start) === 0xfeff ? start + 1 : start; // skip BOM
offset = this.parseDirectives(offset);
offset = this.parseContents(offset);
return offset;
}
setOrigRanges(cr, offset) {
offset = super.setOrigRanges(cr, offset);
this.directives.forEach(node => {
offset = node.setOrigRanges(cr, offset);
});
if (this.directivesEndMarker) offset = this.directivesEndMarker.setOrigRange(cr, offset);
this.contents.forEach(node => {
offset = node.setOrigRanges(cr, offset);
});
if (this.documentEndMarker) offset = this.documentEndMarker.setOrigRange(cr, offset);
return offset;
}
toString() {
const {
contents,
directives,
value
} = this;
if (value != null) return value;
let str = directives.join('');
if (contents.length > 0) {
if (directives.length > 0 || contents[0].type === PlainValue.Type.COMMENT) str += '---\n';
str += contents.join('');
}
if (str[str.length - 1] !== '\n') str += '\n';
return str;
}
}
class Alias extends PlainValue.Node {
/**
* Parses an *alias from the source
*
* @param {ParseContext} context
* @param {number} start - Index of first character
* @returns {number} - Index of the character after this scalar
*/
parse(context, start) {
this.context = context;
const {
src
} = context;
let offset = PlainValue.Node.endOfIdentifier(src, start + 1);
this.valueRange = new PlainValue.Range(start + 1, offset);
offset = PlainValue.Node.endOfWhiteSpace(src, offset);
offset = this.parseComment(offset);
return offset;
}
}
const Chomp = {
CLIP: 'CLIP',
KEEP: 'KEEP',
STRIP: 'STRIP'
};
class BlockValue extends PlainValue.Node {
constructor(type, props) {
super(type, props);
this.blockIndent = null;
this.chomping = Chomp.CLIP;
this.header = null;
}
get includesTrailingLines() {
return this.chomping === Chomp.KEEP;
}
get strValue() {
if (!this.valueRange || !this.context) return null;
let {
start,
end
} = this.valueRange;
const {
indent,
src
} = this.context;
if (this.valueRange.isEmpty()) return '';
let lastNewLine = null;
let ch = src[end - 1];
while (ch === '\n' || ch === '\t' || ch === ' ') {
end -= 1;
if (end <= start) {
if (this.chomping === Chomp.KEEP) break;else return ''; // probably never happens
}
if (ch === '\n') lastNewLine = end;
ch = src[end - 1];
}
let keepStart = end + 1;
if (lastNewLine) {
if (this.chomping === Chomp.KEEP) {
keepStart = lastNewLine;
end = this.valueRange.end;
} else {
end = lastNewLine;
}
}
const bi = indent + this.blockIndent;
const folded = this.type === PlainValue.Type.BLOCK_FOLDED;
let atStart = true;
let str = '';
let sep = '';
let prevMoreIndented = false;
for (let i = start; i < end; ++i) {
for (let j = 0; j < bi; ++j) {
if (src[i] !== ' ') break;
i += 1;
}
const ch = src[i];
if (ch === '\n') {
if (sep === '\n') str += '\n';else sep = '\n';
} else {
const lineEnd = PlainValue.Node.endOfLine(src, i);
const line = src.slice(i, lineEnd);
i = lineEnd;
if (folded && (ch === ' ' || ch === '\t') && i < keepStart) {
if (sep === ' ') sep = '\n';else if (!prevMoreIndented && !atStart && sep === '\n') sep = '\n\n';
str += sep + line; //+ ((lineEnd < end && src[lineEnd]) || '')
sep = lineEnd < end && src[lineEnd] || '';
prevMoreIndented = true;
} else {
str += sep + line;
sep = folded && i < keepStart ? ' ' : '\n';
prevMoreIndented = false;
}
if (atStart && line !== '') atStart = false;
}
}
return this.chomping === Chomp.STRIP ? str : str + '\n';
}
parseBlockHeader(start) {
const {
src
} = this.context;
let offset = start + 1;
let bi = '';
while (true) {
const ch = src[offset];
switch (ch) {
case '-':
this.chomping = Chomp.STRIP;
break;
case '+':
this.chomping = Chomp.KEEP;
break;
case '0':
case '1':
case '2':
case '3':
case '4':
case '5':
case '6':
case '7':
case '8':
case '9':
bi += ch;
break;
default:
this.blockIndent = Number(bi) || null;
this.header = new PlainValue.Range(start, offset);
return offset;
}
offset += 1;
}
}
parseBlockValue(start) {
const {
indent,
src
} = this.context;
const explicit = !!this.blockIndent;
let offset = start;
let valueEnd = start;
let minBlockIndent = 1;
for (let ch = src[offset]; ch === '\n'; ch = src[offset]) {
offset += 1;
if (PlainValue.Node.atDocumentBoundary(src, offset)) break;
const end = PlainValue.Node.endOfBlockIndent(src, indent, offset); // should not include tab?
if (end === null) break;
const ch = src[end];
const lineIndent = end - (offset + indent);
if (!this.blockIndent) {
// no explicit block indent, none yet detected
if (src[end] !== '\n') {
// first line with non-whitespace content
if (lineIndent < minBlockIndent) {
const msg = 'Block scalars with more-indented leading empty lines must use an explicit indentation indicator';
this.error = new PlainValue.YAMLSemanticError(this, msg);
}
this.blockIndent = lineIndent;
} else if (lineIndent > minBlockIndent) {
// empty line with more whitespace
minBlockIndent = lineIndent;
}
} else if (ch && ch !== '\n' && lineIndent < this.blockIndent) {
if (src[end] === '#') break;
if (!this.error) {
const src = explicit ? 'explicit indentation indicator' : 'first line';
const msg = `Block scalars must not be less indented than their ${src}`;
this.error = new PlainValue.YAMLSemanticError(this, msg);
}
}
if (src[end] === '\n') {
offset = end;
} else {
offset = valueEnd = PlainValue.Node.endOfLine(src, end);
}
}
if (this.chomping !== Chomp.KEEP) {
offset = src[valueEnd] ? valueEnd + 1 : valueEnd;
}
this.valueRange = new PlainValue.Range(start + 1, offset);
return offset;
}
/**
* Parses a block value from the source
*
* Accepted forms are:
* ```
* BS
* block
* lines
*
* BS #comment
* block
* lines
* ```
* where the block style BS matches the regexp `[|>][-+1-9]*` and block lines
* are empty or have an indent level greater than `indent`.
*
* @param {ParseContext} context
* @param {number} start - Index of first character
* @returns {number} - Index of the character after this block
*/
parse(context, start) {
this.context = context;
const {
src
} = context;
let offset = this.parseBlockHeader(start);
offset = PlainValue.Node.endOfWhiteSpace(src, offset);
offset = this.parseComment(offset);
offset = this.parseBlockValue(offset);
return offset;
}
setOrigRanges(cr, offset) {
offset = super.setOrigRanges(cr, offset);
return this.header ? this.header.setOrigRange(cr, offset) : offset;
}
}
class FlowCollection extends PlainValue.Node {
constructor(type, props) {
super(type, props);
this.items = null;
}
prevNodeIsJsonLike(idx = this.items.length) {
const node = this.items[idx - 1];
return !!node && (node.jsonLike || node.type === PlainValue.Type.COMMENT && this.prevNodeIsJsonLike(idx - 1));
}
/**
* @param {ParseContext} context
* @param {number} start - Index of first character
* @returns {number} - Index of the character after this
*/
parse(context, start) {
this.context = context;
const {
parseNode,
src
} = context;
let {
indent,
lineStart
} = context;
let char = src[start]; // { or [
this.items = [{
char,
offset: start
}];
let offset = PlainValue.Node.endOfWhiteSpace(src, start + 1);
char = src[offset];
while (char && char !== ']' && char !== '}') {
switch (char) {
case '\n':
{
lineStart = offset + 1;
const wsEnd = PlainValue.Node.endOfWhiteSpace(src, lineStart);
if (src[wsEnd] === '\n') {
const blankLine = new BlankLine();
lineStart = blankLine.parse({
src
}, lineStart);
this.items.push(blankLine);
}
offset = PlainValue.Node.endOfIndent(src, lineStart);
if (offset <= lineStart + indent) {
char = src[offset];
if (offset < lineStart + indent || char !== ']' && char !== '}') {
const msg = 'Insufficient indentation in flow collection';
this.error = new PlainValue.YAMLSemanticError(this, msg);
}
}
}
break;
case ',':
{
this.items.push({
char,
offset
});
offset += 1;
}
break;
case '#':
{
const comment = new Comment();
offset = comment.parse({
src
}, offset);
this.items.push(comment);
}
break;
case '?':
case ':':
{
const next = src[offset + 1];
if (next === '\n' || next === '\t' || next === ' ' || next === ',' || // in-flow : after JSON-like key does not need to be followed by whitespace
char === ':' && this.prevNodeIsJsonLike()) {
this.items.push({
char,
offset
});
offset += 1;
break;
}
}
// fallthrough
default:
{
const node = parseNode({
atLineStart: false,
inCollection: false,
inFlow: true,
indent: -1,
lineStart,
parent: this
}, offset);
if (!node) {
// at next document start
this.valueRange = new PlainValue.Range(start, offset);
return offset;
}
this.items.push(node);
offset = PlainValue.Node.normalizeOffset(src, node.range.end);
}
}
offset = PlainValue.Node.endOfWhiteSpace(src, offset);
char = src[offset];
}
this.valueRange = new PlainValue.Range(start, offset + 1);
if (char) {
this.items.push({
char,
offset
});
offset = PlainValue.Node.endOfWhiteSpace(src, offset + 1);
offset = this.parseComment(offset);
}
return offset;
}
setOrigRanges(cr, offset) {
offset = super.setOrigRanges(cr, offset);
this.items.forEach(node => {
if (node instanceof PlainValue.Node) {
offset = node.setOrigRanges(cr, offset);
} else if (cr.length === 0) {
node.origOffset = node.offset;
} else {
let i = offset;
while (i < cr.length) {
if (cr[i] > node.offset) break;else ++i;
}
node.origOffset = node.offset + i;
offset = i;
}
});
return offset;
}
toString() {
const {
context: {
src
},
items,
range,
value
} = this;
if (value != null) return value;
const nodes = items.filter(item => item instanceof PlainValue.Node);
let str = '';
let prevEnd = range.start;
nodes.forEach(node => {
const prefix = src.slice(prevEnd, node.range.start);
prevEnd = node.range.end;
str += prefix + String(node);
if (str[str.length - 1] === '\n' && src[prevEnd - 1] !== '\n' && src[prevEnd] === '\n') {
// Comment range does not include the terminal newline, but its
// stringified value does. Without this fix, newlines at comment ends
// get duplicated.
prevEnd += 1;
}
});
str += src.slice(prevEnd, range.end);
return PlainValue.Node.addStringTerminator(src, range.end, str);
}
}
class QuoteDouble extends PlainValue.Node {
static endOfQuote(src, offset) {
let ch = src[offset];
while (ch && ch !== '"') {
offset += ch === '\\' ? 2 : 1;
ch = src[offset];
}
return offset + 1;
}
/**
* @returns {string | { str: string, errors: YAMLSyntaxError[] }}
*/
get strValue() {
if (!this.valueRange || !this.context) return null;
const errors = [];
const {
start,
end
} = this.valueRange;
const {
indent,
src
} = this.context;
if (src[end - 1] !== '"') errors.push(new PlainValue.YAMLSyntaxError(this, 'Missing closing "quote')); // Using String#replace is too painful with escaped newlines preceded by
// escaped backslashes; also, this should be faster.
let str = '';
for (let i = start + 1; i < end - 1; ++i) {
const ch = src[i];
if (ch === '\n') {
if (PlainValue.Node.atDocumentBoundary(src, i + 1)) errors.push(new PlainValue.YAMLSemanticError(this, 'Document boundary indicators are not allowed within string values'));
const {
fold,
offset,
error
} = PlainValue.Node.foldNewline(src, i, indent);
str += fold;
i = offset;
if (error) errors.push(new PlainValue.YAMLSemanticError(this, 'Multi-line double-quoted string needs to be sufficiently indented'));
} else if (ch === '\\') {
i += 1;
switch (src[i]) {
case '0':
str += '\0';
break;
// null character
case 'a':
str += '\x07';
break;
// bell character
case 'b':
str += '\b';
break;
// backspace
case 'e':
str += '\x1b';
break;
// escape character
case 'f':
str += '\f';
break;
// form feed
case 'n':
str += '\n';
break;
// line feed
case 'r':
str += '\r';
break;
// carriage return
case 't':
str += '\t';
break;
// horizontal tab
case 'v':
str += '\v';
break;
// vertical tab
case 'N':
str += '\u0085';
break;
// Unicode next line
case '_':
str += '\u00a0';
break;
// Unicode non-breaking space
case 'L':
str += '\u2028';
break;
// Unicode line separator
case 'P':
str += '\u2029';
break;
// Unicode paragraph separator
case ' ':
str += ' ';
break;
case '"':
str += '"';
break;
case '/':
str += '/';
break;
case '\\':
str += '\\';
break;
case '\t':
str += '\t';
break;
case 'x':
str += this.parseCharCode(i + 1, 2, errors);
i += 2;
break;
case 'u':
str += this.parseCharCode(i + 1, 4, errors);
i += 4;
break;
case 'U':
str += this.parseCharCode(i + 1, 8, errors);
i += 8;
break;
case '\n':
// skip escaped newlines, but still trim the following line
while (src[i + 1] === ' ' || src[i + 1] === '\t') i += 1;
break;
default:
errors.push(new PlainValue.YAMLSyntaxError(this, `Invalid escape sequence ${src.substr(i - 1, 2)}`));
str += '\\' + src[i];
}
} else if (ch === ' ' || ch === '\t') {
// trim trailing whitespace
const wsStart = i;
let next = src[i + 1];
while (next === ' ' || next === '\t') {
i += 1;
next = src[i + 1];
}
if (next !== '\n') str += i > wsStart ? src.slice(wsStart, i + 1) : ch;
} else {
str += ch;
}
}
return errors.length > 0 ? {
errors,
str
} : str;
}
parseCharCode(offset, length, errors) {
const {
src
} = this.context;
const cc = src.substr(offset, length);
const ok = cc.length === length && /^[0-9a-fA-F]+$/.test(cc);
const code = ok ? parseInt(cc, 16) : NaN;
if (isNaN(code)) {
errors.push(new PlainValue.YAMLSyntaxError(this, `Invalid escape sequence ${src.substr(offset - 2, length + 2)}`));
return src.substr(offset - 2, length + 2);
}
return String.fromCodePoint(code);
}
/**
* Parses a "double quoted" value from the source
*
* @param {ParseContext} context
* @param {number} start - Index of first character
* @returns {number} - Index of the character after this scalar
*/
parse(context, start) {
this.context = context;
const {
src
} = context;
let offset = QuoteDouble.endOfQuote(src, start + 1);
this.valueRange = new PlainValue.Range(start, offset);
offset = PlainValue.Node.endOfWhiteSpace(src, offset);
offset = this.parseComment(offset);
return offset;
}
}
class QuoteSingle extends PlainValue.Node {
static endOfQuote(src, offset) {
let ch = src[offset];
while (ch) {
if (ch === "'") {
if (src[offset + 1] !== "'") break;
ch = src[offset += 2];
} else {
ch = src[offset += 1];
}
}
return offset + 1;
}
/**
* @returns {string | { str: string, errors: YAMLSyntaxError[] }}
*/
get strValue() {
if (!this.valueRange || !this.context) return null;
const errors = [];
const {
start,
end
} = this.valueRange;
const {
indent,
src
} = this.context;
if (src[end - 1] !== "'") errors.push(new PlainValue.YAMLSyntaxError(this, "Missing closing 'quote"));
let str = '';
for (let i = start + 1; i < end - 1; ++i) {
const ch = src[i];
if (ch === '\n') {
if (PlainValue.Node.atDocumentBoundary(src, i + 1)) errors.push(new PlainValue.YAMLSemanticError(this, 'Document boundary indicators are not allowed within string values'));
const {
fold,
offset,
error
} = PlainValue.Node.foldNewline(src, i, indent);
str += fold;
i = offset;
if (error) errors.push(new PlainValue.YAMLSemanticError(this, 'Multi-line single-quoted string needs to be sufficiently indented'));
} else if (ch === "'") {
str += ch;
i += 1;
if (src[i] !== "'") errors.push(new PlainValue.YAMLSyntaxError(this, 'Unescaped single quote? This should not happen.'));
} else if (ch === ' ' || ch === '\t') {
// trim trailing whitespace
const wsStart = i;
let next = src[i + 1];
while (next === ' ' || next === '\t') {
i += 1;
next = src[i + 1];
}
if (next !== '\n') str += i > wsStart ? src.slice(wsStart, i + 1) : ch;
} else {
str += ch;
}
}
return errors.length > 0 ? {
errors,
str
} : str;
}
/**
* Parses a 'single quoted' value from the source
*
* @param {ParseContext} context
* @param {number} start - Index of first character
* @returns {number} - Index of the character after this scalar
*/
parse(context, start) {
this.context = context;
const {
src
} = context;
let offset = QuoteSingle.endOfQuote(src, start + 1);
this.valueRange = new PlainValue.Range(start, offset);
offset = PlainValue.Node.endOfWhiteSpace(src, offset);
offset = this.parseComment(offset);
return offset;
}
}
function createNewNode(type, props) {
switch (type) {
case PlainValue.Type.ALIAS:
return new Alias(type, props);
case PlainValue.Type.BLOCK_FOLDED:
case PlainValue.Type.BLOCK_LITERAL:
return new BlockValue(type, props);
case PlainValue.Type.FLOW_MAP:
case PlainValue.Type.FLOW_SEQ:
return new FlowCollection(type, props);
case PlainValue.Type.MAP_KEY:
case PlainValue.Type.MAP_VALUE:
case PlainValue.Type.SEQ_ITEM:
return new CollectionItem(type, props);
case PlainValue.Type.COMMENT:
case PlainValue.Type.PLAIN:
return new PlainValue.PlainValue(type, props);
case PlainValue.Type.QUOTE_DOUBLE:
return new QuoteDouble(type, props);
case PlainValue.Type.QUOTE_SINGLE:
return new QuoteSingle(type, props);
/* istanbul ignore next */
default:
return null;
// should never happen
}
}
/**
* @param {boolean} atLineStart - Node starts at beginning of line
* @param {boolean} inFlow - true if currently in a flow context
* @param {boolean} inCollection - true if currently in a collection context
* @param {number} indent - Current level of indentation
* @param {number} lineStart - Start of the current line
* @param {Node} parent - The parent of the node
* @param {string} src - Source of the YAML document
*/
class ParseContext {
static parseType(src, offset, inFlow) {
switch (src[offset]) {
case '*':
return PlainValue.Type.ALIAS;
case '>':
return PlainValue.Type.BLOCK_FOLDED;
case '|':
return PlainValue.Type.BLOCK_LITERAL;
case '{':
return PlainValue.Type.FLOW_MAP;
case '[':
return PlainValue.Type.FLOW_SEQ;
case '?':
return !inFlow && PlainValue.Node.atBlank(src, offset + 1, true) ? PlainValue.Type.MAP_KEY : PlainValue.Type.PLAIN;
case ':':
return !inFlow && PlainValue.Node.atBlank(src, offset + 1, true) ? PlainValue.Type.MAP_VALUE : PlainValue.Type.PLAIN;
case '-':
return !inFlow && PlainValue.Node.atBlank(src, offset + 1, true) ? PlainValue.Type.SEQ_ITEM : PlainValue.Type.PLAIN;
case '"':
return PlainValue.Type.QUOTE_DOUBLE;
case "'":
return PlainValue.Type.QUOTE_SINGLE;
default:
return PlainValue.Type.PLAIN;
}
}
constructor(orig = {}, {
atLineStart,
inCollection,
inFlow,
indent,
lineStart,
parent
} = {}) {
PlainValue._defineProperty(this, "parseNode", (overlay, start) => {
if (PlainValue.Node.atDocumentBoundary(this.src, start)) return null;
const context = new ParseContext(this, overlay);
const {
props,
type,
valueStart
} = context.parseProps(start);
const node = createNewNode(type, props);
let offset = node.parse(context, valueStart);
node.range = new PlainValue.Range(start, offset);
/* istanbul ignore if */
if (offset <= start) {
// This should never happen, but if it does, let's make sure to at least
// step one character forward to avoid a busy loop.
node.error = new Error(`Node#parse consumed no characters`);
node.error.parseEnd = offset;
node.error.source = node;
node.range.end = start + 1;
}
if (context.nodeStartsCollection(node)) {
if (!node.error && !context.atLineStart && context.parent.type === PlainValue.Type.DOCUMENT) {
node.error = new PlainValue.YAMLSyntaxError(node, 'Block collection must not have preceding content here (e.g. directives-end indicator)');
}
const collection = new Collection(node);
offset = collection.parse(new ParseContext(context), offset);
collection.range = new PlainValue.Range(start, offset);
return collection;
}
return node;
});
this.atLineStart = atLineStart != null ? atLineStart : orig.atLineStart || false;
this.inCollection = inCollection != null ? inCollection : orig.inCollection || false;
this.inFlow = inFlow != null ? inFlow : orig.inFlow || false;
this.indent = indent != null ? indent : orig.indent;
this.lineStart = lineStart != null ? lineStart : orig.lineStart;
this.parent = parent != null ? parent : orig.parent || {};
this.root = orig.root;
this.src = orig.src;
}
nodeStartsCollection(node) {
const {
inCollection,
inFlow,
src
} = this;
if (inCollection || inFlow) return false;
if (node instanceof CollectionItem) return true; // check for implicit key
let offset = node.range.end;
if (src[offset] === '\n' || src[offset - 1] === '\n') return false;
offset = PlainValue.Node.endOfWhiteSpace(src, offset);
return src[offset] === ':';
} // Anchor and tag are before type, which determines the node implementation
// class; hence this intermediate step.
parseProps(offset) {
const {
inFlow,
parent,
src
} = this;
const props = [];
let lineHasProps = false;
offset = this.atLineStart ? PlainValue.Node.endOfIndent(src, offset) : PlainValue.Node.endOfWhiteSpace(src, offset);
let ch = src[offset];
while (ch === PlainValue.Char.ANCHOR || ch === PlainValue.Char.COMMENT || ch === PlainValue.Char.TAG || ch === '\n') {
if (ch === '\n') {
let inEnd = offset;
let lineStart;
do {
lineStart = inEnd + 1;
inEnd = PlainValue.Node.endOfIndent(src, lineStart);
} while (src[inEnd] === '\n');
const indentDiff = inEnd - (lineStart + this.indent);
const noIndicatorAsIndent = parent.type === PlainValue.Type.SEQ_ITEM && parent.context.atLineStart;
if (src[inEnd] !== '#' && !PlainValue.Node.nextNodeIsIndented(src[inEnd], indentDiff, !noIndicatorAsIndent)) break;
this.atLineStart = true;
this.lineStart = lineStart;
lineHasProps = false;
offset = inEnd;
} else if (ch === PlainValue.Char.COMMENT) {
const end = PlainValue.Node.endOfLine(src, offset + 1);
props.push(new PlainValue.Range(offset, end));
offset = end;
} else {
let end = PlainValue.Node.endOfIdentifier(src, offset + 1);
if (ch === PlainValue.Char.TAG && src[end] === ',' && /^[a-zA-Z0-9-]+\.[a-zA-Z0-9-]+,\d\d\d\d(-\d\d){0,2}\/\S/.test(src.slice(offset + 1, end + 13))) {
// Let's presume we're dealing with a YAML 1.0 domain tag here, rather
// than an empty but 'foo.bar' private-tagged node in a flow collection
// followed without whitespace by a plain string starting with a year
// or date divided by something.
end = PlainValue.Node.endOfIdentifier(src, end + 5);
}
props.push(new PlainValue.Range(offset, end));
lineHasProps = true;
offset = PlainValue.Node.endOfWhiteSpace(src, end);
}
ch = src[offset];
} // '- &a : b' has an anchor on an empty node
if (lineHasProps && ch === ':' && PlainValue.Node.atBlank(src, offset + 1, true)) offset -= 1;
const type = ParseContext.parseType(src, offset, inFlow);
return {
props,
type,
valueStart: offset
};
}
/**
* Parses a node from the source
* @param {ParseContext} overlay
* @param {number} start - Index of first non-whitespace character for the node
* @returns {?Node} - null if at a document boundary
*/
}
// Published as 'yaml/parse-cst'
function parse(src) {
const cr = [];
if (src.indexOf('\r') !== -1) {
src = src.replace(/\r\n?/g, (match, offset) => {
if (match.length > 1) cr.push(offset);
return '\n';
});
}
const documents = [];
let offset = 0;
do {
const doc = new Document();
const context = new ParseContext({
src
});
offset = doc.parse(context, offset);
documents.push(doc);
} while (offset < src.length);
documents.setOrigRanges = () => {
if (cr.length === 0) return false;
for (let i = 1; i < cr.length; ++i) cr[i] -= i;
let crOffset = 0;
for (let i = 0; i < documents.length; ++i) {
crOffset = documents[i].setOrigRanges(cr, crOffset);
}
cr.splice(0, cr.length);
return true;
};
documents.toString = () => documents.join('...\n');
return documents;
}
exports.parse = parse;
/***/ }),
/***/ 1011:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
var PlainValue = __nccwpck_require__(1346);
function addCommentBefore(str, indent, comment) {
if (!comment) return str;
const cc = comment.replace(/[\s\S]^/gm, `$&${indent}#`);
return `#${cc}\n${indent}${str}`;
}
function addComment(str, indent, comment) {
return !comment ? str : comment.indexOf('\n') === -1 ? `${str} #${comment}` : `${str}\n` + comment.replace(/^/gm, `${indent || ''}#`);
}
class Node {}
function toJSON(value, arg, ctx) {
if (Array.isArray(value)) return value.map((v, i) => toJSON(v, String(i), ctx));
if (value && typeof value.toJSON === 'function') {
const anchor = ctx && ctx.anchors && ctx.anchors.get(value);
if (anchor) ctx.onCreate = res => {
anchor.res = res;
delete ctx.onCreate;
};
const res = value.toJSON(arg, ctx);
if (anchor && ctx.onCreate) ctx.onCreate(res);
return res;
}
if ((!ctx || !ctx.keep) && typeof value === 'bigint') return Number(value);
return value;
}
class Scalar extends Node {
constructor(value) {
super();
this.value = value;
}
toJSON(arg, ctx) {
return ctx && ctx.keep ? this.value : toJSON(this.value, arg, ctx);
}
toString() {
return String(this.value);
}
}
function collectionFromPath(schema, path, value) {
let v = value;
for (let i = path.length - 1; i >= 0; --i) {
const k = path[i];
if (Number.isInteger(k) && k >= 0) {
const a = [];
a[k] = v;
v = a;
} else {
const o = {};
Object.defineProperty(o, k, {
value: v,
writable: true,
enumerable: true,
configurable: true
});
v = o;
}
}
return schema.createNode(v, false);
} // null, undefined, or an empty non-string iterable (e.g. [])
const isEmptyPath = path => path == null || typeof path === 'object' && path[Symbol.iterator]().next().done;
class Collection extends Node {
constructor(schema) {
super();
PlainValue._defineProperty(this, "items", []);
this.schema = schema;
}
addIn(path, value) {
if (isEmptyPath(path)) this.add(value);else {
const [key, ...rest] = path;
const node = this.get(key, true);
if (node instanceof Collection) node.addIn(rest, value);else if (node === undefined && this.schema) this.set(key, collectionFromPath(this.schema, rest, value));else throw new Error(`Expected YAML collection at ${key}. Remaining path: ${rest}`);
}
}
deleteIn([key, ...rest]) {
if (rest.length === 0) return this.delete(key);
const node = this.get(key, true);
if (node instanceof Collection) return node.deleteIn(rest);else throw new Error(`Expected YAML collection at ${key}. Remaining path: ${rest}`);
}
getIn([key, ...rest], keepScalar) {
const node = this.get(key, true);
if (rest.length === 0) return !keepScalar && node instanceof Scalar ? node.value : node;else return node instanceof Collection ? node.getIn(rest, keepScalar) : undefined;
}
hasAllNullValues() {
return this.items.every(node => {
if (!node || node.type !== 'PAIR') return false;
const n = node.value;
return n == null || n instanceof Scalar && n.value == null && !n.commentBefore && !n.comment && !n.tag;
});
}
hasIn([key, ...rest]) {
if (rest.length === 0) return this.has(key);
const node = this.get(key, true);
return node instanceof Collection ? node.hasIn(rest) : false;
}
setIn([key, ...rest], value) {
if (rest.length === 0) {
this.set(key, value);
} else {
const node = this.get(key, true);
if (node instanceof Collection) node.setIn(rest, value);else if (node === undefined && this.schema) this.set(key, collectionFromPath(this.schema, rest, value));else throw new Error(`Expected YAML collection at ${key}. Remaining path: ${rest}`);
}
} // overridden in implementations
/* istanbul ignore next */
toJSON() {
return null;
}
toString(ctx, {
blockItem,
flowChars,
isMap,
itemIndent
}, onComment, onChompKeep) {
const {
indent,
indentStep,
stringify
} = ctx;
const inFlow = this.type === PlainValue.Type.FLOW_MAP || this.type === PlainValue.Type.FLOW_SEQ || ctx.inFlow;
if (inFlow) itemIndent += indentStep;
const allNullValues = isMap && this.hasAllNullValues();
ctx = Object.assign({}, ctx, {
allNullValues,
indent: itemIndent,
inFlow,
type: null
});
let chompKeep = false;
let hasItemWithNewLine = false;
const nodes = this.items.reduce((nodes, item, i) => {
let comment;
if (item) {
if (!chompKeep && item.spaceBefore) nodes.push({
type: 'comment',
str: ''
});
if (item.commentBefore) item.commentBefore.match(/^.*$/gm).forEach(line => {
nodes.push({
type: 'comment',
str: `#${line}`
});
});
if (item.comment) comment = item.comment;
if (inFlow && (!chompKeep && item.spaceBefore || item.commentBefore || item.comment || item.key && (item.key.commentBefore || item.key.comment) || item.value && (item.value.commentBefore || item.value.comment))) hasItemWithNewLine = true;
}
chompKeep = false;
let str = stringify(item, ctx, () => comment = null, () => chompKeep = true);
if (inFlow && !hasItemWithNewLine && str.includes('\n')) hasItemWithNewLine = true;
if (inFlow && i < this.items.length - 1) str += ',';
str = addComment(str, itemIndent, comment);
if (chompKeep && (comment || inFlow)) chompKeep = false;
nodes.push({
type: 'item',
str
});
return nodes;
}, []);
let str;
if (nodes.length === 0) {
str = flowChars.start + flowChars.end;
} else if (inFlow) {
const {
start,
end
} = flowChars;
const strings = nodes.map(n => n.str);
if (hasItemWithNewLine || strings.reduce((sum, str) => sum + str.length + 2, 2) > Collection.maxFlowStringSingleLineLength) {
str = start;
for (const s of strings) {
str += s ? `\n${indentStep}${indent}${s}` : '\n';
}
str += `\n${indent}${end}`;
} else {
str = `${start} ${strings.join(' ')} ${end}`;
}
} else {
const strings = nodes.map(blockItem);
str = strings.shift();
for (const s of strings) str += s ? `\n${indent}${s}` : '\n';
}
if (this.comment) {
str += '\n' + this.comment.replace(/^/gm, `${indent}#`);
if (onComment) onComment();
} else if (chompKeep && onChompKeep) onChompKeep();
return str;
}
}
PlainValue._defineProperty(Collection, "maxFlowStringSingleLineLength", 60);
function asItemIndex(key) {
let idx = key instanceof Scalar ? key.value : key;
if (idx && typeof idx === 'string') idx = Number(idx);
return Number.isInteger(idx) && idx >= 0 ? idx : null;
}
class YAMLSeq extends Collection {
add(value) {
this.items.push(value);
}
delete(key) {
const idx = asItemIndex(key);
if (typeof idx !== 'number') return false;
const del = this.items.splice(idx, 1);
return del.length > 0;
}
get(key, keepScalar) {
const idx = asItemIndex(key);
if (typeof idx !== 'number') return undefined;
const it = this.items[idx];
return !keepScalar && it instanceof Scalar ? it.value : it;
}
has(key) {
const idx = asItemIndex(key);
return typeof idx === 'number' && idx < this.items.length;
}
set(key, value) {
const idx = asItemIndex(key);
if (typeof idx !== 'number') throw new Error(`Expected a valid index, not ${key}.`);
this.items[idx] = value;
}
toJSON(_, ctx) {
const seq = [];
if (ctx && ctx.onCreate) ctx.onCreate(seq);
let i = 0;
for (const item of this.items) seq.push(toJSON(item, String(i++), ctx));
return seq;
}
toString(ctx, onComment, onChompKeep) {
if (!ctx) return JSON.stringify(this);
return super.toString(ctx, {
blockItem: n => n.type === 'comment' ? n.str : `- ${n.str}`,
flowChars: {
start: '[',
end: ']'
},
isMap: false,
itemIndent: (ctx.indent || '') + ' '
}, onComment, onChompKeep);
}
}
const stringifyKey = (key, jsKey, ctx) => {
if (jsKey === null) return '';
if (typeof jsKey !== 'object') return String(jsKey);
if (key instanceof Node && ctx && ctx.doc) return key.toString({
anchors: Object.create(null),
doc: ctx.doc,
indent: '',
indentStep: ctx.indentStep,
inFlow: true,
inStringifyKey: true,
stringify: ctx.stringify
});
return JSON.stringify(jsKey);
};
class Pair extends Node {
constructor(key, value = null) {
super();
this.key = key;
this.value = value;
this.type = Pair.Type.PAIR;
}
get commentBefore() {
return this.key instanceof Node ? this.key.commentBefore : undefined;
}
set commentBefore(cb) {
if (this.key == null) this.key = new Scalar(null);
if (this.key instanceof Node) this.key.commentBefore = cb;else {
const msg = 'Pair.commentBefore is an alias for Pair.key.commentBefore. To set it, the key must be a Node.';
throw new Error(msg);
}
}
addToJSMap(ctx, map) {
const key = toJSON(this.key, '', ctx);
if (map instanceof Map) {
const value = toJSON(this.value, key, ctx);
map.set(key, value);
} else if (map instanceof Set) {
map.add(key);
} else {
const stringKey = stringifyKey(this.key, key, ctx);
const value = toJSON(this.value, stringKey, ctx);
if (stringKey in map) Object.defineProperty(map, stringKey, {
value,
writable: true,
enumerable: true,
configurable: true
});else map[stringKey] = value;
}
return map;
}
toJSON(_, ctx) {
const pair = ctx && ctx.mapAsMap ? new Map() : {};
return this.addToJSMap(ctx, pair);
}
toString(ctx, onComment, onChompKeep) {
if (!ctx || !ctx.doc) return JSON.stringify(this);
const {
indent: indentSize,
indentSeq,
simpleKeys
} = ctx.doc.options;
let {
key,
value
} = this;
let keyComment = key instanceof Node && key.comment;
if (simpleKeys) {
if (keyComment) {
throw new Error('With simple keys, key nodes cannot have comments');
}
if (key instanceof Collection) {
const msg = 'With simple keys, collection cannot be used as a key value';
throw new Error(msg);
}
}
let explicitKey = !simpleKeys && (!key || keyComment || (key instanceof Node ? key instanceof Collection || key.type === PlainValue.Type.BLOCK_FOLDED || key.type === PlainValue.Type.BLOCK_LITERAL : typeof key === 'object'));
const {
doc,
indent,
indentStep,
stringify
} = ctx;
ctx = Object.assign({}, ctx, {
implicitKey: !explicitKey,
indent: indent + indentStep
});
let chompKeep = false;
let str = stringify(key, ctx, () => keyComment = null, () => chompKeep = true);
str = addComment(str, ctx.indent, keyComment);
if (!explicitKey && str.length > 1024) {
if (simpleKeys) throw new Error('With simple keys, single line scalar must not span more than 1024 characters');
explicitKey = true;
}
if (ctx.allNullValues && !simpleKeys) {
if (this.comment) {
str = addComment(str, ctx.indent, this.comment);
if (onComment) onComment();
} else if (chompKeep && !keyComment && onChompKeep) onChompKeep();
return ctx.inFlow && !explicitKey ? str : `? ${str}`;
}
str = explicitKey ? `? ${str}\n${indent}:` : `${str}:`;
if (this.comment) {
// expected (but not strictly required) to be a single-line comment
str = addComment(str, ctx.indent, this.comment);
if (onComment) onComment();
}
let vcb = '';
let valueComment = null;
if (value instanceof Node) {
if (value.spaceBefore) vcb = '\n';
if (value.commentBefore) {
const cs = value.commentBefore.replace(/^/gm, `${ctx.indent}#`);
vcb += `\n${cs}`;
}
valueComment = value.comment;
} else if (value && typeof value === 'object') {
value = doc.schema.createNode(value, true);
}
ctx.implicitKey = false;
if (!explicitKey && !this.comment && value instanceof Scalar) ctx.indentAtStart = str.length + 1;
chompKeep = false;
if (!indentSeq && indentSize >= 2 && !ctx.inFlow && !explicitKey && value instanceof YAMLSeq && value.type !== PlainValue.Type.FLOW_SEQ && !value.tag && !doc.anchors.getName(value)) {
// If indentSeq === false, consider '- ' as part of indentation where possible
ctx.indent = ctx.indent.substr(2);
}
const valueStr = stringify(value, ctx, () => valueComment = null, () => chompKeep = true);
let ws = ' ';
if (vcb || this.comment) {
ws = `${vcb}\n${ctx.indent}`;
} else if (!explicitKey && value instanceof Collection) {
const flow = valueStr[0] === '[' || valueStr[0] === '{';
if (!flow || valueStr.includes('\n')) ws = `\n${ctx.indent}`;
} else if (valueStr[0] === '\n') ws = '';
if (chompKeep && !valueComment && onChompKeep) onChompKeep();
return addComment(str + ws + valueStr, ctx.indent, valueComment);
}
}
PlainValue._defineProperty(Pair, "Type", {
PAIR: 'PAIR',
MERGE_PAIR: 'MERGE_PAIR'
});
const getAliasCount = (node, anchors) => {
if (node instanceof Alias) {
const anchor = anchors.get(node.source);
return anchor.count * anchor.aliasCount;
} else if (node instanceof Collection) {
let count = 0;
for (const item of node.items) {
const c = getAliasCount(item, anchors);
if (c > count) count = c;
}
return count;
} else if (node instanceof Pair) {
const kc = getAliasCount(node.key, anchors);
const vc = getAliasCount(node.value, anchors);
return Math.max(kc, vc);
}
return 1;
};
class Alias extends Node {
static stringify({
range,
source
}, {
anchors,
doc,
implicitKey,
inStringifyKey
}) {
let anchor = Object.keys(anchors).find(a => anchors[a] === source);
if (!anchor && inStringifyKey) anchor = doc.anchors.getName(source) || doc.anchors.newName();
if (anchor) return `*${anchor}${implicitKey ? ' ' : ''}`;
const msg = doc.anchors.getName(source) ? 'Alias node must be after source node' : 'Source node not found for alias node';
throw new Error(`${msg} [${range}]`);
}
constructor(source) {
super();
this.source = source;
this.type = PlainValue.Type.ALIAS;
}
set tag(t) {
throw new Error('Alias nodes cannot have tags');
}
toJSON(arg, ctx) {
if (!ctx) return toJSON(this.source, arg, ctx);
const {
anchors,
maxAliasCount
} = ctx;
const anchor = anchors.get(this.source);
/* istanbul ignore if */
if (!anchor || anchor.res === undefined) {
const msg = 'This should not happen: Alias anchor was not resolved?';
if (this.cstNode) throw new PlainValue.YAMLReferenceError(this.cstNode, msg);else throw new ReferenceError(msg);
}
if (maxAliasCount >= 0) {
anchor.count += 1;
if (anchor.aliasCount === 0) anchor.aliasCount = getAliasCount(this.source, anchors);
if (anchor.count * anchor.aliasCount > maxAliasCount) {
const msg = 'Excessive alias count indicates a resource exhaustion attack';
if (this.cstNode) throw new PlainValue.YAMLReferenceError(this.cstNode, msg);else throw new ReferenceError(msg);
}
}
return anchor.res;
} // Only called when stringifying an alias mapping key while constructing
// Object output.
toString(ctx) {
return Alias.stringify(this, ctx);
}
}
PlainValue._defineProperty(Alias, "default", true);
function findPair(items, key) {
const k = key instanceof Scalar ? key.value : key;
for (const it of items) {
if (it instanceof Pair) {
if (it.key === key || it.key === k) return it;
if (it.key && it.key.value === k) return it;
}
}
return undefined;
}
class YAMLMap extends Collection {
add(pair, overwrite) {
if (!pair) pair = new Pair(pair);else if (!(pair instanceof Pair)) pair = new Pair(pair.key || pair, pair.value);
const prev = findPair(this.items, pair.key);
const sortEntries = this.schema && this.schema.sortMapEntries;
if (prev) {
if (overwrite) prev.value = pair.value;else throw new Error(`Key ${pair.key} already set`);
} else if (sortEntries) {
const i = this.items.findIndex(item => sortEntries(pair, item) < 0);
if (i === -1) this.items.push(pair);else this.items.splice(i, 0, pair);
} else {
this.items.push(pair);
}
}
delete(key) {
const it = findPair(this.items, key);
if (!it) return false;
const del = this.items.splice(this.items.indexOf(it), 1);
return del.length > 0;
}
get(key, keepScalar) {
const it = findPair(this.items, key);
const node = it && it.value;
return !keepScalar && node instanceof Scalar ? node.value : node;
}
has(key) {
return !!findPair(this.items, key);
}
set(key, value) {
this.add(new Pair(key, value), true);
}
/**
* @param {*} arg ignored
* @param {*} ctx Conversion context, originally set in Document#toJSON()
* @param {Class} Type If set, forces the returned collection type
* @returns {*} Instance of Type, Map, or Object
*/
toJSON(_, ctx, Type) {
const map = Type ? new Type() : ctx && ctx.mapAsMap ? new Map() : {};
if (ctx && ctx.onCreate) ctx.onCreate(map);
for (const item of this.items) item.addToJSMap(ctx, map);
return map;
}
toString(ctx, onComment, onChompKeep) {
if (!ctx) return JSON.stringify(this);
for (const item of this.items) {
if (!(item instanceof Pair)) throw new Error(`Map items must all be pairs; found ${JSON.stringify(item)} instead`);
}
return super.toString(ctx, {
blockItem: n => n.str,
flowChars: {
start: '{',
end: '}'
},
isMap: true,
itemIndent: ctx.indent || ''
}, onComment, onChompKeep);
}
}
const MERGE_KEY = '<<';
class Merge extends Pair {
constructor(pair) {
if (pair instanceof Pair) {
let seq = pair.value;
if (!(seq instanceof YAMLSeq)) {
seq = new YAMLSeq();
seq.items.push(pair.value);
seq.range = pair.value.range;
}
super(pair.key, seq);
this.range = pair.range;
} else {
super(new Scalar(MERGE_KEY), new YAMLSeq());
}
this.type = Pair.Type.MERGE_PAIR;
} // If the value associated with a merge key is a single mapping node, each of
// its key/value pairs is inserted into the current mapping, unless the key
// already exists in it. If the value associated with the merge key is a
// sequence, then this sequence is expected to contain mapping nodes and each
// of these nodes is merged in turn according to its order in the sequence.
// Keys in mapping nodes earlier in the sequence override keys specified in
// later mapping nodes. -- http://yaml.org/type/merge.html
addToJSMap(ctx, map) {
for (const {
source
} of this.value.items) {
if (!(source instanceof YAMLMap)) throw new Error('Merge sources must be maps');
const srcMap = source.toJSON(null, ctx, Map);
for (const [key, value] of srcMap) {
if (map instanceof Map) {
if (!map.has(key)) map.set(key, value);
} else if (map instanceof Set) {
map.add(key);
} else if (!Object.prototype.hasOwnProperty.call(map, key)) {
Object.defineProperty(map, key, {
value,
writable: true,
enumerable: true,
configurable: true
});
}
}
}
return map;
}
toString(ctx, onComment) {
const seq = this.value;
if (seq.items.length > 1) return super.toString(ctx, onComment);
this.value = seq.items[0];
const str = super.toString(ctx, onComment);
this.value = seq;
return str;
}
}
const binaryOptions = {
defaultType: PlainValue.Type.BLOCK_LITERAL,
lineWidth: 76
};
const boolOptions = {
trueStr: 'true',
falseStr: 'false'
};
const intOptions = {
asBigInt: false
};
const nullOptions = {
nullStr: 'null'
};
const strOptions = {
defaultType: PlainValue.Type.PLAIN,
doubleQuoted: {
jsonEncoding: false,
minMultiLineLength: 40
},
fold: {
lineWidth: 80,
minContentWidth: 20
}
};
function resolveScalar(str, tags, scalarFallback) {
for (const {
format,
test,
resolve
} of tags) {
if (test) {
const match = str.match(test);
if (match) {
let res = resolve.apply(null, match);
if (!(res instanceof Scalar)) res = new Scalar(res);
if (format) res.format = format;
return res;
}
}
}
if (scalarFallback) str = scalarFallback(str);
return new Scalar(str);
}
const FOLD_FLOW = 'flow';
const FOLD_BLOCK = 'block';
const FOLD_QUOTED = 'quoted'; // presumes i+1 is at the start of a line
// returns index of last newline in more-indented block
const consumeMoreIndentedLines = (text, i) => {
let ch = text[i + 1];
while (ch === ' ' || ch === '\t') {
do {
ch = text[i += 1];
} while (ch && ch !== '\n');
ch = text[i + 1];
}
return i;
};
/**
* Tries to keep input at up to `lineWidth` characters, splitting only on spaces
* not followed by newlines or spaces unless `mode` is `'quoted'`. Lines are
* terminated with `\n` and started with `indent`.
*
* @param {string} text
* @param {string} indent
* @param {string} [mode='flow'] `'block'` prevents more-indented lines
* from being folded; `'quoted'` allows for `\` escapes, including escaped
* newlines
* @param {Object} options
* @param {number} [options.indentAtStart] Accounts for leading contents on
* the first line, defaulting to `indent.length`
* @param {number} [options.lineWidth=80]
* @param {number} [options.minContentWidth=20] Allow highly indented lines to
* stretch the line width or indent content from the start
* @param {function} options.onFold Called once if the text is folded
* @param {function} options.onFold Called once if any line of text exceeds
* lineWidth characters
*/
function foldFlowLines(text, indent, mode, {
indentAtStart,
lineWidth = 80,
minContentWidth = 20,
onFold,
onOverflow
}) {
if (!lineWidth || lineWidth < 0) return text;
const endStep = Math.max(1 + minContentWidth, 1 + lineWidth - indent.length);
if (text.length <= endStep) return text;
const folds = [];
const escapedFolds = {};
let end = lineWidth - indent.length;
if (typeof indentAtStart === 'number') {
if (indentAtStart > lineWidth - Math.max(2, minContentWidth)) folds.push(0);else end = lineWidth - indentAtStart;
}
let split = undefined;
let prev = undefined;
let overflow = false;
let i = -1;
let escStart = -1;
let escEnd = -1;
if (mode === FOLD_BLOCK) {
i = consumeMoreIndentedLines(text, i);
if (i !== -1) end = i + endStep;
}
for (let ch; ch = text[i += 1];) {
if (mode === FOLD_QUOTED && ch === '\\') {
escStart = i;
switch (text[i + 1]) {
case 'x':
i += 3;
break;
case 'u':
i += 5;
break;
case 'U':
i += 9;
break;
default:
i += 1;
}
escEnd = i;
}
if (ch === '\n') {
if (mode === FOLD_BLOCK) i = consumeMoreIndentedLines(text, i);
end = i + endStep;
split = undefined;
} else {
if (ch === ' ' && prev && prev !== ' ' && prev !== '\n' && prev !== '\t') {
// space surrounded by non-space can be replaced with newline + indent
const next = text[i + 1];
if (next && next !== ' ' && next !== '\n' && next !== '\t') split = i;
}
if (i >= end) {
if (split) {
folds.push(split);
end = split + endStep;
split = undefined;
} else if (mode === FOLD_QUOTED) {
// white-space collected at end may stretch past lineWidth
while (prev === ' ' || prev === '\t') {
prev = ch;
ch = text[i += 1];
overflow = true;
} // Account for newline escape, but don't break preceding escape
const j = i > escEnd + 1 ? i - 2 : escStart - 1; // Bail out if lineWidth & minContentWidth are shorter than an escape string
if (escapedFolds[j]) return text;
folds.push(j);
escapedFolds[j] = true;
end = j + endStep;
split = undefined;
} else {
overflow = true;
}
}
}
prev = ch;
}
if (overflow && onOverflow) onOverflow();
if (folds.length === 0) return text;
if (onFold) onFold();
let res = text.slice(0, folds[0]);
for (let i = 0; i < folds.length; ++i) {
const fold = folds[i];
const end = folds[i + 1] || text.length;
if (fold === 0) res = `\n${indent}${text.slice(0, end)}`;else {
if (mode === FOLD_QUOTED && escapedFolds[fold]) res += `${text[fold]}\\`;
res += `\n${indent}${text.slice(fold + 1, end)}`;
}
}
return res;
}
const getFoldOptions = ({
indentAtStart
}) => indentAtStart ? Object.assign({
indentAtStart
}, strOptions.fold) : strOptions.fold; // Also checks for lines starting with %, as parsing the output as YAML 1.1 will
// presume that's starting a new document.
const containsDocumentMarker = str => /^(%|---|\.\.\.)/m.test(str);
function lineLengthOverLimit(str, lineWidth, indentLength) {
if (!lineWidth || lineWidth < 0) return false;
const limit = lineWidth - indentLength;
const strLen = str.length;
if (strLen <= limit) return false;
for (let i = 0, start = 0; i < strLen; ++i) {
if (str[i] === '\n') {
if (i - start > limit) return true;
start = i + 1;
if (strLen - start <= limit) return false;
}
}
return true;
}
function doubleQuotedString(value, ctx) {
const {
implicitKey
} = ctx;
const {
jsonEncoding,
minMultiLineLength
} = strOptions.doubleQuoted;
const json = JSON.stringify(value);
if (jsonEncoding) return json;
const indent = ctx.indent || (containsDocumentMarker(value) ? ' ' : '');
let str = '';
let start = 0;
for (let i = 0, ch = json[i]; ch; ch = json[++i]) {
if (ch === ' ' && json[i + 1] === '\\' && json[i + 2] === 'n') {
// space before newline needs to be escaped to not be folded
str += json.slice(start, i) + '\\ ';
i += 1;
start = i;
ch = '\\';
}
if (ch === '\\') switch (json[i + 1]) {
case 'u':
{
str += json.slice(start, i);
const code = json.substr(i + 2, 4);
switch (code) {
case '0000':
str += '\\0';
break;
case '0007':
str += '\\a';
break;
case '000b':
str += '\\v';
break;
case '001b':
str += '\\e';
break;
case '0085':
str += '\\N';
break;
case '00a0':
str += '\\_';
break;
case '2028':
str += '\\L';
break;
case '2029':
str += '\\P';
break;
default:
if (code.substr(0, 2) === '00') str += '\\x' + code.substr(2);else str += json.substr(i, 6);
}
i += 5;
start = i + 1;
}
break;
case 'n':
if (implicitKey || json[i + 2] === '"' || json.length < minMultiLineLength) {
i += 1;
} else {
// folding will eat first newline
str += json.slice(start, i) + '\n\n';
while (json[i + 2] === '\\' && json[i + 3] === 'n' && json[i + 4] !== '"') {
str += '\n';
i += 2;
}
str += indent; // space after newline needs to be escaped to not be folded
if (json[i + 2] === ' ') str += '\\';
i += 1;
start = i + 1;
}
break;
default:
i += 1;
}
}
str = start ? str + json.slice(start) : json;
return implicitKey ? str : foldFlowLines(str, indent, FOLD_QUOTED, getFoldOptions(ctx));
}
function singleQuotedString(value, ctx) {
if (ctx.implicitKey) {
if (/\n/.test(value)) return doubleQuotedString(value, ctx);
} else {
// single quoted string can't have leading or trailing whitespace around newline
if (/[ \t]\n|\n[ \t]/.test(value)) return doubleQuotedString(value, ctx);
}
const indent = ctx.indent || (containsDocumentMarker(value) ? ' ' : '');
const res = "'" + value.replace(/'/g, "''").replace(/\n+/g, `$&\n${indent}`) + "'";
return ctx.implicitKey ? res : foldFlowLines(res, indent, FOLD_FLOW, getFoldOptions(ctx));
}
function blockString({
comment,
type,
value
}, ctx, onComment, onChompKeep) {
// 1. Block can't end in whitespace unless the last line is non-empty.
// 2. Strings consisting of only whitespace are best rendered explicitly.
if (/\n[\t ]+$/.test(value) || /^\s*$/.test(value)) {
return doubleQuotedString(value, ctx);
}
const indent = ctx.indent || (ctx.forceBlockIndent || containsDocumentMarker(value) ? ' ' : '');
const indentSize = indent ? '2' : '1'; // root is at -1
const literal = type === PlainValue.Type.BLOCK_FOLDED ? false : type === PlainValue.Type.BLOCK_LITERAL ? true : !lineLengthOverLimit(value, strOptions.fold.lineWidth, indent.length);
let header = literal ? '|' : '>';
if (!value) return header + '\n';
let wsStart = '';
let wsEnd = '';
value = value.replace(/[\n\t ]*$/, ws => {
const n = ws.indexOf('\n');
if (n === -1) {
header += '-'; // strip
} else if (value === ws || n !== ws.length - 1) {
header += '+'; // keep
if (onChompKeep) onChompKeep();
}
wsEnd = ws.replace(/\n$/, '');
return '';
}).replace(/^[\n ]*/, ws => {
if (ws.indexOf(' ') !== -1) header += indentSize;
const m = ws.match(/ +$/);
if (m) {
wsStart = ws.slice(0, -m[0].length);
return m[0];
} else {
wsStart = ws;
return '';
}
});
if (wsEnd) wsEnd = wsEnd.replace(/\n+(?!\n|$)/g, `$&${indent}`);
if (wsStart) wsStart = wsStart.replace(/\n+/g, `$&${indent}`);
if (comment) {
header += ' #' + comment.replace(/ ?[\r\n]+/g, ' ');
if (onComment) onComment();
}
if (!value) return `${header}${indentSize}\n${indent}${wsEnd}`;
if (literal) {
value = value.replace(/\n+/g, `$&${indent}`);
return `${header}\n${indent}${wsStart}${value}${wsEnd}`;
}
value = value.replace(/\n+/g, '\n$&').replace(/(?:^|\n)([\t ].*)(?:([\n\t ]*)\n(?![\n\t ]))?/g, '$1$2') // more-indented lines aren't folded
// ^ ind.line ^ empty ^ capture next empty lines only at end of indent
.replace(/\n+/g, `$&${indent}`);
const body = foldFlowLines(`${wsStart}${value}${wsEnd}`, indent, FOLD_BLOCK, strOptions.fold);
return `${header}\n${indent}${body}`;
}
function plainString(item, ctx, onComment, onChompKeep) {
const {
comment,
type,
value
} = item;
const {
actualString,
implicitKey,
indent,
inFlow
} = ctx;
if (implicitKey && /[\n[\]{},]/.test(value) || inFlow && /[[\]{},]/.test(value)) {
return doubleQuotedString(value, ctx);
}
if (!value || /^[\n\t ,[\]{}#&*!|>'"%@`]|^[?-]$|^[?-][ \t]|[\n:][ \t]|[ \t]\n|[\n\t ]#|[\n\t :]$/.test(value)) {
// not allowed:
// - empty string, '-' or '?'
// - start with an indicator character (except [?:-]) or /[?-] /
// - '\n ', ': ' or ' \n' anywhere
// - '#' not preceded by a non-space char
// - end with ' ' or ':'
return implicitKey || inFlow || value.indexOf('\n') === -1 ? value.indexOf('"') !== -1 && value.indexOf("'") === -1 ? singleQuotedString(value, ctx) : doubleQuotedString(value, ctx) : blockString(item, ctx, onComment, onChompKeep);
}
if (!implicitKey && !inFlow && type !== PlainValue.Type.PLAIN && value.indexOf('\n') !== -1) {
// Where allowed & type not set explicitly, prefer block style for multiline strings
return blockString(item, ctx, onComment, onChompKeep);
}
if (indent === '' && containsDocumentMarker(value)) {
ctx.forceBlockIndent = true;
return blockString(item, ctx, onComment, onChompKeep);
}
const str = value.replace(/\n+/g, `$&\n${indent}`); // Verify that output will be parsed as a string, as e.g. plain numbers and
// booleans get parsed with those types in v1.2 (e.g. '42', 'true' & '0.9e-3'),
// and others in v1.1.
if (actualString) {
const {
tags
} = ctx.doc.schema;
const resolved = resolveScalar(str, tags, tags.scalarFallback).value;
if (typeof resolved !== 'string') return doubleQuotedString(value, ctx);
}
const body = implicitKey ? str : foldFlowLines(str, indent, FOLD_FLOW, getFoldOptions(ctx));
if (comment && !inFlow && (body.indexOf('\n') !== -1 || comment.indexOf('\n') !== -1)) {
if (onComment) onComment();
return addCommentBefore(body, indent, comment);
}
return body;
}
function stringifyString(item, ctx, onComment, onChompKeep) {
const {
defaultType
} = strOptions;
const {
implicitKey,
inFlow
} = ctx;
let {
type,
value
} = item;
if (typeof value !== 'string') {
value = String(value);
item = Object.assign({}, item, {
value
});
}
const _stringify = _type => {
switch (_type) {
case PlainValue.Type.BLOCK_FOLDED:
case PlainValue.Type.BLOCK_LITERAL:
return blockString(item, ctx, onComment, onChompKeep);
case PlainValue.Type.QUOTE_DOUBLE:
return doubleQuotedString(value, ctx);
case PlainValue.Type.QUOTE_SINGLE:
return singleQuotedString(value, ctx);
case PlainValue.Type.PLAIN:
return plainString(item, ctx, onComment, onChompKeep);
default:
return null;
}
};
if (type !== PlainValue.Type.QUOTE_DOUBLE && /[\x00-\x08\x0b-\x1f\x7f-\x9f]/.test(value)) {
// force double quotes on control characters
type = PlainValue.Type.QUOTE_DOUBLE;
} else if ((implicitKey || inFlow) && (type === PlainValue.Type.BLOCK_FOLDED || type === PlainValue.Type.BLOCK_LITERAL)) {
// should not happen; blocks are not valid inside flow containers
type = PlainValue.Type.QUOTE_DOUBLE;
}
let res = _stringify(type);
if (res === null) {
res = _stringify(defaultType);
if (res === null) throw new Error(`Unsupported default string type ${defaultType}`);
}
return res;
}
function stringifyNumber({
format,
minFractionDigits,
tag,
value
}) {
if (typeof value === 'bigint') return String(value);
if (!isFinite(value)) return isNaN(value) ? '.nan' : value < 0 ? '-.inf' : '.inf';
let n = JSON.stringify(value);
if (!format && minFractionDigits && (!tag || tag === 'tag:yaml.org,2002:float') && /^\d/.test(n)) {
let i = n.indexOf('.');
if (i < 0) {
i = n.length;
n += '.';
}
let d = minFractionDigits - (n.length - i - 1);
while (d-- > 0) n += '0';
}
return n;
}
function checkFlowCollectionEnd(errors, cst) {
let char, name;
switch (cst.type) {
case PlainValue.Type.FLOW_MAP:
char = '}';
name = 'flow map';
break;
case PlainValue.Type.FLOW_SEQ:
char = ']';
name = 'flow sequence';
break;
default:
errors.push(new PlainValue.YAMLSemanticError(cst, 'Not a flow collection!?'));
return;
}
let lastItem;
for (let i = cst.items.length - 1; i >= 0; --i) {
const item = cst.items[i];
if (!item || item.type !== PlainValue.Type.COMMENT) {
lastItem = item;
break;
}
}
if (lastItem && lastItem.char !== char) {
const msg = `Expected ${name} to end with ${char}`;
let err;
if (typeof lastItem.offset === 'number') {
err = new PlainValue.YAMLSemanticError(cst, msg);
err.offset = lastItem.offset + 1;
} else {
err = new PlainValue.YAMLSemanticError(lastItem, msg);
if (lastItem.range && lastItem.range.end) err.offset = lastItem.range.end - lastItem.range.start;
}
errors.push(err);
}
}
function checkFlowCommentSpace(errors, comment) {
const prev = comment.context.src[comment.range.start - 1];
if (prev !== '\n' && prev !== '\t' && prev !== ' ') {
const msg = 'Comments must be separated from other tokens by white space characters';
errors.push(new PlainValue.YAMLSemanticError(comment, msg));
}
}
function getLongKeyError(source, key) {
const sk = String(key);
const k = sk.substr(0, 8) + '...' + sk.substr(-8);
return new PlainValue.YAMLSemanticError(source, `The "${k}" key is too long`);
}
function resolveComments(collection, comments) {
for (const {
afterKey,
before,
comment
} of comments) {
let item = collection.items[before];
if (!item) {
if (comment !== undefined) {
if (collection.comment) collection.comment += '\n' + comment;else collection.comment = comment;
}
} else {
if (afterKey && item.value) item = item.value;
if (comment === undefined) {
if (afterKey || !item.commentBefore) item.spaceBefore = true;
} else {
if (item.commentBefore) item.commentBefore += '\n' + comment;else item.commentBefore = comment;
}
}
}
}
// on error, will return { str: string, errors: Error[] }
function resolveString(doc, node) {
const res = node.strValue;
if (!res) return '';
if (typeof res === 'string') return res;
res.errors.forEach(error => {
if (!error.source) error.source = node;
doc.errors.push(error);
});
return res.str;
}
function resolveTagHandle(doc, node) {
const {
handle,
suffix
} = node.tag;
let prefix = doc.tagPrefixes.find(p => p.handle === handle);
if (!prefix) {
const dtp = doc.getDefaults().tagPrefixes;
if (dtp) prefix = dtp.find(p => p.handle === handle);
if (!prefix) throw new PlainValue.YAMLSemanticError(node, `The ${handle} tag handle is non-default and was not declared.`);
}
if (!suffix) throw new PlainValue.YAMLSemanticError(node, `The ${handle} tag has no suffix.`);
if (handle === '!' && (doc.version || doc.options.version) === '1.0') {
if (suffix[0] === '^') {
doc.warnings.push(new PlainValue.YAMLWarning(node, 'YAML 1.0 ^ tag expansion is not supported'));
return suffix;
}
if (/[:/]/.test(suffix)) {
// word/foo -> tag:word.yaml.org,2002:foo
const vocab = suffix.match(/^([a-z0-9-]+)\/(.*)/i);
return vocab ? `tag:${vocab[1]}.yaml.org,2002:${vocab[2]}` : `tag:${suffix}`;
}
}
return prefix.prefix + decodeURIComponent(suffix);
}
function resolveTagName(doc, node) {
const {
tag,
type
} = node;
let nonSpecific = false;
if (tag) {
const {
handle,
suffix,
verbatim
} = tag;
if (verbatim) {
if (verbatim !== '!' && verbatim !== '!!') return verbatim;
const msg = `Verbatim tags aren't resolved, so ${verbatim} is invalid.`;
doc.errors.push(new PlainValue.YAMLSemanticError(node, msg));
} else if (handle === '!' && !suffix) {
nonSpecific = true;
} else {
try {
return resolveTagHandle(doc, node);
} catch (error) {
doc.errors.push(error);
}
}
}
switch (type) {
case PlainValue.Type.BLOCK_FOLDED:
case PlainValue.Type.BLOCK_LITERAL:
case PlainValue.Type.QUOTE_DOUBLE:
case PlainValue.Type.QUOTE_SINGLE:
return PlainValue.defaultTags.STR;
case PlainValue.Type.FLOW_MAP:
case PlainValue.Type.MAP:
return PlainValue.defaultTags.MAP;
case PlainValue.Type.FLOW_SEQ:
case PlainValue.Type.SEQ:
return PlainValue.defaultTags.SEQ;
case PlainValue.Type.PLAIN:
return nonSpecific ? PlainValue.defaultTags.STR : null;
default:
return null;
}
}
function resolveByTagName(doc, node, tagName) {
const {
tags
} = doc.schema;
const matchWithTest = [];
for (const tag of tags) {
if (tag.tag === tagName) {
if (tag.test) matchWithTest.push(tag);else {
const res = tag.resolve(doc, node);
return res instanceof Collection ? res : new Scalar(res);
}
}
}
const str = resolveString(doc, node);
if (typeof str === 'string' && matchWithTest.length > 0) return resolveScalar(str, matchWithTest, tags.scalarFallback);
return null;
}
function getFallbackTagName({
type
}) {
switch (type) {
case PlainValue.Type.FLOW_MAP:
case PlainValue.Type.MAP:
return PlainValue.defaultTags.MAP;
case PlainValue.Type.FLOW_SEQ:
case PlainValue.Type.SEQ:
return PlainValue.defaultTags.SEQ;
default:
return PlainValue.defaultTags.STR;
}
}
function resolveTag(doc, node, tagName) {
try {
const res = resolveByTagName(doc, node, tagName);
if (res) {
if (tagName && node.tag) res.tag = tagName;
return res;
}
} catch (error) {
/* istanbul ignore if */
if (!error.source) error.source = node;
doc.errors.push(error);
return null;
}
try {
const fallback = getFallbackTagName(node);
if (!fallback) throw new Error(`The tag ${tagName} is unavailable`);
const msg = `The tag ${tagName} is unavailable, falling back to ${fallback}`;
doc.warnings.push(new PlainValue.YAMLWarning(node, msg));
const res = resolveByTagName(doc, node, fallback);
res.tag = tagName;
return res;
} catch (error) {
const refError = new PlainValue.YAMLReferenceError(node, error.message);
refError.stack = error.stack;
doc.errors.push(refError);
return null;
}
}
const isCollectionItem = node => {
if (!node) return false;
const {
type
} = node;
return type === PlainValue.Type.MAP_KEY || type === PlainValue.Type.MAP_VALUE || type === PlainValue.Type.SEQ_ITEM;
};
function resolveNodeProps(errors, node) {
const comments = {
before: [],
after: []
};
let hasAnchor = false;
let hasTag = false;
const props = isCollectionItem(node.context.parent) ? node.context.parent.props.concat(node.props) : node.props;
for (const {
start,
end
} of props) {
switch (node.context.src[start]) {
case PlainValue.Char.COMMENT:
{
if (!node.commentHasRequiredWhitespace(start)) {
const msg = 'Comments must be separated from other tokens by white space characters';
errors.push(new PlainValue.YAMLSemanticError(node, msg));
}
const {
header,
valueRange
} = node;
const cc = valueRange && (start > valueRange.start || header && start > header.start) ? comments.after : comments.before;
cc.push(node.context.src.slice(start + 1, end));
break;
}
// Actual anchor & tag resolution is handled by schema, here we just complain
case PlainValue.Char.ANCHOR:
if (hasAnchor) {
const msg = 'A node can have at most one anchor';
errors.push(new PlainValue.YAMLSemanticError(node, msg));
}
hasAnchor = true;
break;
case PlainValue.Char.TAG:
if (hasTag) {
const msg = 'A node can have at most one tag';
errors.push(new PlainValue.YAMLSemanticError(node, msg));
}
hasTag = true;
break;
}
}
return {
comments,
hasAnchor,
hasTag
};
}
function resolveNodeValue(doc, node) {
const {
anchors,
errors,
schema
} = doc;
if (node.type === PlainValue.Type.ALIAS) {
const name = node.rawValue;
const src = anchors.getNode(name);
if (!src) {
const msg = `Aliased anchor not found: ${name}`;
errors.push(new PlainValue.YAMLReferenceError(node, msg));
return null;
} // Lazy resolution for circular references
const res = new Alias(src);
anchors._cstAliases.push(res);
return res;
}
const tagName = resolveTagName(doc, node);
if (tagName) return resolveTag(doc, node, tagName);
if (node.type !== PlainValue.Type.PLAIN) {
const msg = `Failed to resolve ${node.type} node here`;
errors.push(new PlainValue.YAMLSyntaxError(node, msg));
return null;
}
try {
const str = resolveString(doc, node);
return resolveScalar(str, schema.tags, schema.tags.scalarFallback);
} catch (error) {
if (!error.source) error.source = node;
errors.push(error);
return null;
}
} // sets node.resolved on success
function resolveNode(doc, node) {
if (!node) return null;
if (node.error) doc.errors.push(node.error);
const {
comments,
hasAnchor,
hasTag
} = resolveNodeProps(doc.errors, node);
if (hasAnchor) {
const {
anchors
} = doc;
const name = node.anchor;
const prev = anchors.getNode(name); // At this point, aliases for any preceding node with the same anchor
// name have already been resolved, so it may safely be renamed.
if (prev) anchors.map[anchors.newName(name)] = prev; // During parsing, we need to store the CST node in anchors.map as
// anchors need to be available during resolution to allow for
// circular references.
anchors.map[name] = node;
}
if (node.type === PlainValue.Type.ALIAS && (hasAnchor || hasTag)) {
const msg = 'An alias node must not specify any properties';
doc.errors.push(new PlainValue.YAMLSemanticError(node, msg));
}
const res = resolveNodeValue(doc, node);
if (res) {
res.range = [node.range.start, node.range.end];
if (doc.options.keepCstNodes) res.cstNode = node;
if (doc.options.keepNodeTypes) res.type = node.type;
const cb = comments.before.join('\n');
if (cb) {
res.commentBefore = res.commentBefore ? `${res.commentBefore}\n${cb}` : cb;
}
const ca = comments.after.join('\n');
if (ca) res.comment = res.comment ? `${res.comment}\n${ca}` : ca;
}
return node.resolved = res;
}
function resolveMap(doc, cst) {
if (cst.type !== PlainValue.Type.MAP && cst.type !== PlainValue.Type.FLOW_MAP) {
const msg = `A ${cst.type} node cannot be resolved as a mapping`;
doc.errors.push(new PlainValue.YAMLSyntaxError(cst, msg));
return null;
}
const {
comments,
items
} = cst.type === PlainValue.Type.FLOW_MAP ? resolveFlowMapItems(doc, cst) : resolveBlockMapItems(doc, cst);
const map = new YAMLMap();
map.items = items;
resolveComments(map, comments);
let hasCollectionKey = false;
for (let i = 0; i < items.length; ++i) {
const {
key: iKey
} = items[i];
if (iKey instanceof Collection) hasCollectionKey = true;
if (doc.schema.merge && iKey && iKey.value === MERGE_KEY) {
items[i] = new Merge(items[i]);
const sources = items[i].value.items;
let error = null;
sources.some(node => {
if (node instanceof Alias) {
// During parsing, alias sources are CST nodes; to account for
// circular references their resolved values can't be used here.
const {
type
} = node.source;
if (type === PlainValue.Type.MAP || type === PlainValue.Type.FLOW_MAP) return false;
return error = 'Merge nodes aliases can only point to maps';
}
return error = 'Merge nodes can only have Alias nodes as values';
});
if (error) doc.errors.push(new PlainValue.YAMLSemanticError(cst, error));
} else {
for (let j = i + 1; j < items.length; ++j) {
const {
key: jKey
} = items[j];
if (iKey === jKey || iKey && jKey && Object.prototype.hasOwnProperty.call(iKey, 'value') && iKey.value === jKey.value) {
const msg = `Map keys must be unique; "${iKey}" is repeated`;
doc.errors.push(new PlainValue.YAMLSemanticError(cst, msg));
break;
}
}
}
}
if (hasCollectionKey && !doc.options.mapAsMap) {
const warn = 'Keys with collection values will be stringified as YAML due to JS Object restrictions. Use mapAsMap: true to avoid this.';
doc.warnings.push(new PlainValue.YAMLWarning(cst, warn));
}
cst.resolved = map;
return map;
}
const valueHasPairComment = ({
context: {
lineStart,
node,
src
},
props
}) => {
if (props.length === 0) return false;
const {
start
} = props[0];
if (node && start > node.valueRange.start) return false;
if (src[start] !== PlainValue.Char.COMMENT) return false;
for (let i = lineStart; i < start; ++i) if (src[i] === '\n') return false;
return true;
};
function resolvePairComment(item, pair) {
if (!valueHasPairComment(item)) return;
const comment = item.getPropValue(0, PlainValue.Char.COMMENT, true);
let found = false;
const cb = pair.value.commentBefore;
if (cb && cb.startsWith(comment)) {
pair.value.commentBefore = cb.substr(comment.length + 1);
found = true;
} else {
const cc = pair.value.comment;
if (!item.node && cc && cc.startsWith(comment)) {
pair.value.comment = cc.substr(comment.length + 1);
found = true;
}
}
if (found) pair.comment = comment;
}
function resolveBlockMapItems(doc, cst) {
const comments = [];
const items = [];
let key = undefined;
let keyStart = null;
for (let i = 0; i < cst.items.length; ++i) {
const item = cst.items[i];
switch (item.type) {
case PlainValue.Type.BLANK_LINE:
comments.push({
afterKey: !!key,
before: items.length
});
break;
case PlainValue.Type.COMMENT:
comments.push({
afterKey: !!key,
before: items.length,
comment: item.comment
});
break;
case PlainValue.Type.MAP_KEY:
if (key !== undefined) items.push(new Pair(key));
if (item.error) doc.errors.push(item.error);
key = resolveNode(doc, item.node);
keyStart = null;
break;
case PlainValue.Type.MAP_VALUE:
{
if (key === undefined) key = null;
if (item.error) doc.errors.push(item.error);
if (!item.context.atLineStart && item.node && item.node.type === PlainValue.Type.MAP && !item.node.context.atLineStart) {
const msg = 'Nested mappings are not allowed in compact mappings';
doc.errors.push(new PlainValue.YAMLSemanticError(item.node, msg));
}
let valueNode = item.node;
if (!valueNode && item.props.length > 0) {
// Comments on an empty mapping value need to be preserved, so we
// need to construct a minimal empty node here to use instead of the
// missing `item.node`. -- eemeli/yaml#19
valueNode = new PlainValue.PlainValue(PlainValue.Type.PLAIN, []);
valueNode.context = {
parent: item,
src: item.context.src
};
const pos = item.range.start + 1;
valueNode.range = {
start: pos,
end: pos
};
valueNode.valueRange = {
start: pos,
end: pos
};
if (typeof item.range.origStart === 'number') {
const origPos = item.range.origStart + 1;
valueNode.range.origStart = valueNode.range.origEnd = origPos;
valueNode.valueRange.origStart = valueNode.valueRange.origEnd = origPos;
}
}
const pair = new Pair(key, resolveNode(doc, valueNode));
resolvePairComment(item, pair);
items.push(pair);
if (key && typeof keyStart === 'number') {
if (item.range.start > keyStart + 1024) doc.errors.push(getLongKeyError(cst, key));
}
key = undefined;
keyStart = null;
}
break;
default:
if (key !== undefined) items.push(new Pair(key));
key = resolveNode(doc, item);
keyStart = item.range.start;
if (item.error) doc.errors.push(item.error);
next: for (let j = i + 1;; ++j) {
const nextItem = cst.items[j];
switch (nextItem && nextItem.type) {
case PlainValue.Type.BLANK_LINE:
case PlainValue.Type.COMMENT:
continue next;
case PlainValue.Type.MAP_VALUE:
break next;
default:
{
const msg = 'Implicit map keys need to be followed by map values';
doc.errors.push(new PlainValue.YAMLSemanticError(item, msg));
break next;
}
}
}
if (item.valueRangeContainsNewline) {
const msg = 'Implicit map keys need to be on a single line';
doc.errors.push(new PlainValue.YAMLSemanticError(item, msg));
}
}
}
if (key !== undefined) items.push(new Pair(key));
return {
comments,
items
};
}
function resolveFlowMapItems(doc, cst) {
const comments = [];
const items = [];
let key = undefined;
let explicitKey = false;
let next = '{';
for (let i = 0; i < cst.items.length; ++i) {
const item = cst.items[i];
if (typeof item.char === 'string') {
const {
char,
offset
} = item;
if (char === '?' && key === undefined && !explicitKey) {
explicitKey = true;
next = ':';
continue;
}
if (char === ':') {
if (key === undefined) key = null;
if (next === ':') {
next = ',';
continue;
}
} else {
if (explicitKey) {
if (key === undefined && char !== ',') key = null;
explicitKey = false;
}
if (key !== undefined) {
items.push(new Pair(key));
key = undefined;
if (char === ',') {
next = ':';
continue;
}
}
}
if (char === '}') {
if (i === cst.items.length - 1) continue;
} else if (char === next) {
next = ':';
continue;
}
const msg = `Flow map contains an unexpected ${char}`;
const err = new PlainValue.YAMLSyntaxError(cst, msg);
err.offset = offset;
doc.errors.push(err);
} else if (item.type === PlainValue.Type.BLANK_LINE) {
comments.push({
afterKey: !!key,
before: items.length
});
} else if (item.type === PlainValue.Type.COMMENT) {
checkFlowCommentSpace(doc.errors, item);
comments.push({
afterKey: !!key,
before: items.length,
comment: item.comment
});
} else if (key === undefined) {
if (next === ',') doc.errors.push(new PlainValue.YAMLSemanticError(item, 'Separator , missing in flow map'));
key = resolveNode(doc, item);
} else {
if (next !== ',') doc.errors.push(new PlainValue.YAMLSemanticError(item, 'Indicator : missing in flow map entry'));
items.push(new Pair(key, resolveNode(doc, item)));
key = undefined;
explicitKey = false;
}
}
checkFlowCollectionEnd(doc.errors, cst);
if (key !== undefined) items.push(new Pair(key));
return {
comments,
items
};
}
function resolveSeq(doc, cst) {
if (cst.type !== PlainValue.Type.SEQ && cst.type !== PlainValue.Type.FLOW_SEQ) {
const msg = `A ${cst.type} node cannot be resolved as a sequence`;
doc.errors.push(new PlainValue.YAMLSyntaxError(cst, msg));
return null;
}
const {
comments,
items
} = cst.type === PlainValue.Type.FLOW_SEQ ? resolveFlowSeqItems(doc, cst) : resolveBlockSeqItems(doc, cst);
const seq = new YAMLSeq();
seq.items = items;
resolveComments(seq, comments);
if (!doc.options.mapAsMap && items.some(it => it instanceof Pair && it.key instanceof Collection)) {
const warn = 'Keys with collection values will be stringified as YAML due to JS Object restrictions. Use mapAsMap: true to avoid this.';
doc.warnings.push(new PlainValue.YAMLWarning(cst, warn));
}
cst.resolved = seq;
return seq;
}
function resolveBlockSeqItems(doc, cst) {
const comments = [];
const items = [];
for (let i = 0; i < cst.items.length; ++i) {
const item = cst.items[i];
switch (item.type) {
case PlainValue.Type.BLANK_LINE:
comments.push({
before: items.length
});
break;
case PlainValue.Type.COMMENT:
comments.push({
comment: item.comment,
before: items.length
});
break;
case PlainValue.Type.SEQ_ITEM:
if (item.error) doc.errors.push(item.error);
items.push(resolveNode(doc, item.node));
if (item.hasProps) {
const msg = 'Sequence items cannot have tags or anchors before the - indicator';
doc.errors.push(new PlainValue.YAMLSemanticError(item, msg));
}
break;
default:
if (item.error) doc.errors.push(item.error);
doc.errors.push(new PlainValue.YAMLSyntaxError(item, `Unexpected ${item.type} node in sequence`));
}
}
return {
comments,
items
};
}
function resolveFlowSeqItems(doc, cst) {
const comments = [];
const items = [];
let explicitKey = false;
let key = undefined;
let keyStart = null;
let next = '[';
let prevItem = null;
for (let i = 0; i < cst.items.length; ++i) {
const item = cst.items[i];
if (typeof item.char === 'string') {
const {
char,
offset
} = item;
if (char !== ':' && (explicitKey || key !== undefined)) {
if (explicitKey && key === undefined) key = next ? items.pop() : null;
items.push(new Pair(key));
explicitKey = false;
key = undefined;
keyStart = null;
}
if (char === next) {
next = null;
} else if (!next && char === '?') {
explicitKey = true;
} else if (next !== '[' && char === ':' && key === undefined) {
if (next === ',') {
key = items.pop();
if (key instanceof Pair) {
const msg = 'Chaining flow sequence pairs is invalid';
const err = new PlainValue.YAMLSemanticError(cst, msg);
err.offset = offset;
doc.errors.push(err);
}
if (!explicitKey && typeof keyStart === 'number') {
const keyEnd = item.range ? item.range.start : item.offset;
if (keyEnd > keyStart + 1024) doc.errors.push(getLongKeyError(cst, key));
const {
src
} = prevItem.context;
for (let i = keyStart; i < keyEnd; ++i) if (src[i] === '\n') {
const msg = 'Implicit keys of flow sequence pairs need to be on a single line';
doc.errors.push(new PlainValue.YAMLSemanticError(prevItem, msg));
break;
}
}
} else {
key = null;
}
keyStart = null;
explicitKey = false;
next = null;
} else if (next === '[' || char !== ']' || i < cst.items.length - 1) {
const msg = `Flow sequence contains an unexpected ${char}`;
const err = new PlainValue.YAMLSyntaxError(cst, msg);
err.offset = offset;
doc.errors.push(err);
}
} else if (item.type === PlainValue.Type.BLANK_LINE) {
comments.push({
before: items.length
});
} else if (item.type === PlainValue.Type.COMMENT) {
checkFlowCommentSpace(doc.errors, item);
comments.push({
comment: item.comment,
before: items.length
});
} else {
if (next) {
const msg = `Expected a ${next} in flow sequence`;
doc.errors.push(new PlainValue.YAMLSemanticError(item, msg));
}
const value = resolveNode(doc, item);
if (key === undefined) {
items.push(value);
prevItem = item;
} else {
items.push(new Pair(key, value));
key = undefined;
}
keyStart = item.range.start;
next = ',';
}
}
checkFlowCollectionEnd(doc.errors, cst);
if (key !== undefined) items.push(new Pair(key));
return {
comments,
items
};
}
exports.Alias = Alias;
exports.Collection = Collection;
exports.Merge = Merge;
exports.Node = Node;
exports.Pair = Pair;
exports.Scalar = Scalar;
exports.YAMLMap = YAMLMap;
exports.YAMLSeq = YAMLSeq;
exports.addComment = addComment;
exports.binaryOptions = binaryOptions;
exports.boolOptions = boolOptions;
exports.findPair = findPair;
exports.intOptions = intOptions;
exports.isEmptyPath = isEmptyPath;
exports.nullOptions = nullOptions;
exports.resolveMap = resolveMap;
exports.resolveNode = resolveNode;
exports.resolveSeq = resolveSeq;
exports.resolveString = resolveString;
exports.strOptions = strOptions;
exports.stringifyNumber = stringifyNumber;
exports.stringifyString = stringifyString;
exports.toJSON = toJSON;
/***/ }),
/***/ 1747:
/***/ ((__unused_webpack_module, exports, __nccwpck_require__) => {
"use strict";
var PlainValue = __nccwpck_require__(1346);
var resolveSeq = __nccwpck_require__(1011);
/* global atob, btoa, Buffer */
const binary = {
identify: value => value instanceof Uint8Array,
// Buffer inherits from Uint8Array
default: false,
tag: 'tag:yaml.org,2002:binary',
/**
* Returns a Buffer in node and an Uint8Array in browsers
*
* To use the resulting buffer as an image, you'll want to do something like:
*
* const blob = new Blob([buffer], { type: 'image/jpeg' })
* document.querySelector('#photo').src = URL.createObjectURL(blob)
*/
resolve: (doc, node) => {
const src = resolveSeq.resolveString(doc, node);
if (typeof Buffer === 'function') {
return Buffer.from(src, 'base64');
} else if (typeof atob === 'function') {
// On IE 11, atob() can't handle newlines
const str = atob(src.replace(/[\n\r]/g, ''));
const buffer = new Uint8Array(str.length);
for (let i = 0; i < str.length; ++i) buffer[i] = str.charCodeAt(i);
return buffer;
} else {
const msg = 'This environment does not support reading binary tags; either Buffer or atob is required';
doc.errors.push(new PlainValue.YAMLReferenceError(node, msg));
return null;
}
},
options: resolveSeq.binaryOptions,
stringify: ({
comment,
type,
value
}, ctx, onComment, onChompKeep) => {
let src;
if (typeof Buffer === 'function') {
src = value instanceof Buffer ? value.toString('base64') : Buffer.from(value.buffer).toString('base64');
} else if (typeof btoa === 'function') {
let s = '';
for (let i = 0; i < value.length; ++i) s += String.fromCharCode(value[i]);
src = btoa(s);
} else {
throw new Error('This environment does not support writing binary tags; either Buffer or btoa is required');
}
if (!type) type = resolveSeq.binaryOptions.defaultType;
if (type === PlainValue.Type.QUOTE_DOUBLE) {
value = src;
} else {
const {
lineWidth
} = resolveSeq.binaryOptions;
const n = Math.ceil(src.length / lineWidth);
const lines = new Array(n);
for (let i = 0, o = 0; i < n; ++i, o += lineWidth) {
lines[i] = src.substr(o, lineWidth);
}
value = lines.join(type === PlainValue.Type.BLOCK_LITERAL ? '\n' : ' ');
}
return resolveSeq.stringifyString({
comment,
type,
value
}, ctx, onComment, onChompKeep);
}
};
function parsePairs(doc, cst) {
const seq = resolveSeq.resolveSeq(doc, cst);
for (let i = 0; i < seq.items.length; ++i) {
let item = seq.items[i];
if (item instanceof resolveSeq.Pair) continue;else if (item instanceof resolveSeq.YAMLMap) {
if (item.items.length > 1) {
const msg = 'Each pair must have its own sequence indicator';
throw new PlainValue.YAMLSemanticError(cst, msg);
}
const pair = item.items[0] || new resolveSeq.Pair();
if (item.commentBefore) pair.commentBefore = pair.commentBefore ? `${item.commentBefore}\n${pair.commentBefore}` : item.commentBefore;
if (item.comment) pair.comment = pair.comment ? `${item.comment}\n${pair.comment}` : item.comment;
item = pair;
}
seq.items[i] = item instanceof resolveSeq.Pair ? item : new resolveSeq.Pair(item);
}
return seq;
}
function createPairs(schema, iterable, ctx) {
const pairs = new resolveSeq.YAMLSeq(schema);
pairs.tag = 'tag:yaml.org,2002:pairs';
for (const it of iterable) {
let key, value;
if (Array.isArray(it)) {
if (it.length === 2) {
key = it[0];
value = it[1];
} else throw new TypeError(`Expected [key, value] tuple: ${it}`);
} else if (it && it instanceof Object) {
const keys = Object.keys(it);
if (keys.length === 1) {
key = keys[0];
value = it[key];
} else throw new TypeError(`Expected { key: value } tuple: ${it}`);
} else {
key = it;
}
const pair = schema.createPair(key, value, ctx);
pairs.items.push(pair);
}
return pairs;
}
const pairs = {
default: false,
tag: 'tag:yaml.org,2002:pairs',
resolve: parsePairs,
createNode: createPairs
};
class YAMLOMap extends resolveSeq.YAMLSeq {
constructor() {
super();
PlainValue._defineProperty(this, "add", resolveSeq.YAMLMap.prototype.add.bind(this));
PlainValue._defineProperty(this, "delete", resolveSeq.YAMLMap.prototype.delete.bind(this));
PlainValue._defineProperty(this, "get", resolveSeq.YAMLMap.prototype.get.bind(this));
PlainValue._defineProperty(this, "has", resolveSeq.YAMLMap.prototype.has.bind(this));
PlainValue._defineProperty(this, "set", resolveSeq.YAMLMap.prototype.set.bind(this));
this.tag = YAMLOMap.tag;
}
toJSON(_, ctx) {
const map = new Map();
if (ctx && ctx.onCreate) ctx.onCreate(map);
for (const pair of this.items) {
let key, value;
if (pair instanceof resolveSeq.Pair) {
key = resolveSeq.toJSON(pair.key, '', ctx);
value = resolveSeq.toJSON(pair.value, key, ctx);
} else {
key = resolveSeq.toJSON(pair, '', ctx);
}
if (map.has(key)) throw new Error('Ordered maps must not include duplicate keys');
map.set(key, value);
}
return map;
}
}
PlainValue._defineProperty(YAMLOMap, "tag", 'tag:yaml.org,2002:omap');
function parseOMap(doc, cst) {
const pairs = parsePairs(doc, cst);
const seenKeys = [];
for (const {
key
} of pairs.items) {
if (key instanceof resolveSeq.Scalar) {
if (seenKeys.includes(key.value)) {
const msg = 'Ordered maps must not include duplicate keys';
throw new PlainValue.YAMLSemanticError(cst, msg);
} else {
seenKeys.push(key.value);
}
}
}
return Object.assign(new YAMLOMap(), pairs);
}
function createOMap(schema, iterable, ctx) {
const pairs = createPairs(schema, iterable, ctx);
const omap = new YAMLOMap();
omap.items = pairs.items;
return omap;
}
const omap = {
identify: value => value instanceof Map,
nodeClass: YAMLOMap,
default: false,
tag: 'tag:yaml.org,2002:omap',
resolve: parseOMap,
createNode: createOMap
};
class YAMLSet extends resolveSeq.YAMLMap {
constructor() {
super();
this.tag = YAMLSet.tag;
}
add(key) {
const pair = key instanceof resolveSeq.Pair ? key : new resolveSeq.Pair(key);
const prev = resolveSeq.findPair(this.items, pair.key);
if (!prev) this.items.push(pair);
}
get(key, keepPair) {
const pair = resolveSeq.findPair(this.items, key);
return !keepPair && pair instanceof resolveSeq.Pair ? pair.key instanceof resolveSeq.Scalar ? pair.key.value : pair.key : pair;
}
set(key, value) {
if (typeof value !== 'boolean') throw new Error(`Expected boolean value for set(key, value) in a YAML set, not ${typeof value}`);
const prev = resolveSeq.findPair(this.items, key);
if (prev && !value) {
this.items.splice(this.items.indexOf(prev), 1);
} else if (!prev && value) {
this.items.push(new resolveSeq.Pair(key));
}
}
toJSON(_, ctx) {
return super.toJSON(_, ctx, Set);
}
toString(ctx, onComment, onChompKeep) {
if (!ctx) return JSON.stringify(this);
if (this.hasAllNullValues()) return super.toString(ctx, onComment, onChompKeep);else throw new Error('Set items must all have null values');
}
}
PlainValue._defineProperty(YAMLSet, "tag", 'tag:yaml.org,2002:set');
function parseSet(doc, cst) {
const map = resolveSeq.resolveMap(doc, cst);
if (!map.hasAllNullValues()) throw new PlainValue.YAMLSemanticError(cst, 'Set items must all have null values');
return Object.assign(new YAMLSet(), map);
}
function createSet(schema, iterable, ctx) {
const set = new YAMLSet();
for (const value of iterable) set.items.push(schema.createPair(value, null, ctx));
return set;
}
const set = {
identify: value => value instanceof Set,
nodeClass: YAMLSet,
default: false,
tag: 'tag:yaml.org,2002:set',
resolve: parseSet,
createNode: createSet
};
const parseSexagesimal = (sign, parts) => {
const n = parts.split(':').reduce((n, p) => n * 60 + Number(p), 0);
return sign === '-' ? -n : n;
}; // hhhh:mm:ss.sss
const stringifySexagesimal = ({
value
}) => {
if (isNaN(value) || !isFinite(value)) return resolveSeq.stringifyNumber(value);
let sign = '';
if (value < 0) {
sign = '-';
value = Math.abs(value);
}
const parts = [value % 60]; // seconds, including ms
if (value < 60) {
parts.unshift(0); // at least one : is required
} else {
value = Math.round((value - parts[0]) / 60);
parts.unshift(value % 60); // minutes
if (value >= 60) {
value = Math.round((value - parts[0]) / 60);
parts.unshift(value); // hours
}
}
return sign + parts.map(n => n < 10 ? '0' + String(n) : String(n)).join(':').replace(/000000\d*$/, '') // % 60 may introduce error
;
};
const intTime = {
identify: value => typeof value === 'number',
default: true,
tag: 'tag:yaml.org,2002:int',
format: 'TIME',
test: /^([-+]?)([0-9][0-9_]*(?::[0-5]?[0-9])+)$/,
resolve: (str, sign, parts) => parseSexagesimal(sign, parts.replace(/_/g, '')),
stringify: stringifySexagesimal
};
const floatTime = {
identify: value => typeof value === 'number',
default: true,
tag: 'tag:yaml.org,2002:float',
format: 'TIME',
test: /^([-+]?)([0-9][0-9_]*(?::[0-5]?[0-9])+\.[0-9_]*)$/,
resolve: (str, sign, parts) => parseSexagesimal(sign, parts.replace(/_/g, '')),
stringify: stringifySexagesimal
};
const timestamp = {
identify: value => value instanceof Date,
default: true,
tag: 'tag:yaml.org,2002:timestamp',
// If the time zone is omitted, the timestamp is assumed to be specified in UTC. The time part
// may be omitted altogether, resulting in a date format. In such a case, the time part is
// assumed to be 00:00:00Z (start of day, UTC).
test: RegExp('^(?:' + '([0-9]{4})-([0-9]{1,2})-([0-9]{1,2})' + // YYYY-Mm-Dd
'(?:(?:t|T|[ \\t]+)' + // t | T | whitespace
'([0-9]{1,2}):([0-9]{1,2}):([0-9]{1,2}(\\.[0-9]+)?)' + // Hh:Mm:Ss(.ss)?
'(?:[ \\t]*(Z|[-+][012]?[0-9](?::[0-9]{2})?))?' + // Z | +5 | -03:30
')?' + ')$'),
resolve: (str, year, month, day, hour, minute, second, millisec, tz) => {
if (millisec) millisec = (millisec + '00').substr(1, 3);
let date = Date.UTC(year, month - 1, day, hour || 0, minute || 0, second || 0, millisec || 0);
if (tz && tz !== 'Z') {
let d = parseSexagesimal(tz[0], tz.slice(1));
if (Math.abs(d) < 30) d *= 60;
date -= 60000 * d;
}
return new Date(date);
},
stringify: ({
value
}) => value.toISOString().replace(/((T00:00)?:00)?\.000Z$/, '')
};
/* global console, process, YAML_SILENCE_DEPRECATION_WARNINGS, YAML_SILENCE_WARNINGS */
function shouldWarn(deprecation) {
const env = typeof process !== 'undefined' && process.env || {};
if (deprecation) {
if (typeof YAML_SILENCE_DEPRECATION_WARNINGS !== 'undefined') return !YAML_SILENCE_DEPRECATION_WARNINGS;
return !env.YAML_SILENCE_DEPRECATION_WARNINGS;
}
if (typeof YAML_SILENCE_WARNINGS !== 'undefined') return !YAML_SILENCE_WARNINGS;
return !env.YAML_SILENCE_WARNINGS;
}
function warn(warning, type) {
if (shouldWarn(false)) {
const emit = typeof process !== 'undefined' && process.emitWarning; // This will throw in Jest if `warning` is an Error instance due to
// https://github.com/facebook/jest/issues/2549
if (emit) emit(warning, type);else {
// eslint-disable-next-line no-console
console.warn(type ? `${type}: ${warning}` : warning);
}
}
}
function warnFileDeprecation(filename) {
if (shouldWarn(true)) {
const path = filename.replace(/.*yaml[/\\]/i, '').replace(/\.js$/, '').replace(/\\/g, '/');
warn(`The endpoint 'yaml/${path}' will be removed in a future release.`, 'DeprecationWarning');
}
}
const warned = {};
function warnOptionDeprecation(name, alternative) {
if (!warned[name] && shouldWarn(true)) {
warned[name] = true;
let msg = `The option '${name}' will be removed in a future release`;
msg += alternative ? `, use '${alternative}' instead.` : '.';
warn(msg, 'DeprecationWarning');
}
}
exports.binary = binary;
exports.floatTime = floatTime;
exports.intTime = intTime;
exports.omap = omap;
exports.pairs = pairs;
exports.set = set;
exports.timestamp = timestamp;
exports.warn = warn;
exports.warnFileDeprecation = warnFileDeprecation;
exports.warnOptionDeprecation = warnOptionDeprecation;
/***/ }),
/***/ 434:
/***/ ((module, __unused_webpack_exports, __nccwpck_require__) => {
module.exports = __nccwpck_require__(8815).YAML
/***/ }),
/***/ 1204:
/***/ ((__unused_webpack_module, __unused_webpack_exports, __nccwpck_require__) => {
/* c8 ignore start */
// 64 KiB (same size chrome slice theirs blob into Uint8array's)
const POOL_SIZE = 65536
if (!globalThis.ReadableStream) {
// `node:stream/web` got introduced in v16.5.0 as experimental
// and it's preferred over the polyfilled version. So we also
// suppress the warning that gets emitted by NodeJS for using it.
try {
const process = __nccwpck_require__(1708)
const { emitWarning } = process
try {
process.emitWarning = () => {}
Object.assign(globalThis, __nccwpck_require__(7830))
process.emitWarning = emitWarning
} catch (error) {
process.emitWarning = emitWarning
throw error
}
} catch (error) {
// fallback to polyfill implementation
Object.assign(globalThis, __nccwpck_require__(3585))
}
}
try {
// Don't use node: prefix for this, require+node: is not supported until node v14.14
// Only `import()` can use prefix in 12.20 and later
const { Blob } = __nccwpck_require__(181)
if (Blob && !Blob.prototype.stream) {
Blob.prototype.stream = function name (params) {
let position = 0
const blob = this
return new ReadableStream({
type: 'bytes',
async pull (ctrl) {
const chunk = blob.slice(position, Math.min(blob.size, position + POOL_SIZE))
const buffer = await chunk.arrayBuffer()
position += buffer.byteLength
ctrl.enqueue(new Uint8Array(buffer))
if (position === blob.size) {
ctrl.close()
}
}
})
}
}
} catch (error) {}
/* c8 ignore end */
/***/ }),
/***/ 4645:
/***/ ((__unused_webpack___webpack_module__, __webpack_exports__, __nccwpck_require__) => {
"use strict";
/* harmony export */ __nccwpck_require__.d(__webpack_exports__, {
/* harmony export */ A: () => (__WEBPACK_DEFAULT_EXPORT__)
/* harmony export */ });
/* unused harmony export File */
/* harmony import */ var _index_js__WEBPACK_IMPORTED_MODULE_0__ = __nccwpck_require__(6327);
const _File = class File extends _index_js__WEBPACK_IMPORTED_MODULE_0__/* ["default"] */ .A {
#lastModified = 0
#name = ''
/**
* @param {*[]} fileBits
* @param {string} fileName
* @param {{lastModified?: number, type?: string}} options
*/// @ts-ignore
constructor (fileBits, fileName, options = {}) {
if (arguments.length < 2) {
throw new TypeError(`Failed to construct 'File': 2 arguments required, but only ${arguments.length} present.`)
}
super(fileBits, options)
if (options === null) options = {}
// Simulate WebIDL type casting for NaN value in lastModified option.
const lastModified = options.lastModified === undefined ? Date.now() : Number(options.lastModified)
if (!Number.isNaN(lastModified)) {
this.#lastModified = lastModified
}
this.#name = String(fileName)
}
get name () {
return this.#name
}
get lastModified () {
return this.#lastModified
}
get [Symbol.toStringTag] () {
return 'File'
}
static [Symbol.hasInstance] (object) {
return !!object && object instanceof _index_js__WEBPACK_IMPORTED_MODULE_0__/* ["default"] */ .A &&
/^(File)$/.test(object[Symbol.toStringTag])
}
}
/** @type {typeof globalThis.File} */// @ts-ignore
const File = _File
/* harmony default export */ const __WEBPACK_DEFAULT_EXPORT__ = (File);
/***/ }),
/***/ 9802:
/***/ ((__unused_webpack___webpack_module__, __webpack_exports__, __nccwpck_require__) => {
"use strict";
// EXPORTS
__nccwpck_require__.d(__webpack_exports__, {
YQ: () => (/* reexport */ fetch_blob/* default */.A),
ZH: () => (/* reexport */ file/* default */.A),
k4: () => (/* binding */ blobFrom),
F8: () => (/* binding */ blobFromSync),
NX: () => (/* binding */ fileFrom),
_M: () => (/* binding */ fileFromSync)
});
// UNUSED EXPORTS: default
;// CONCATENATED MODULE: external "node:fs"
const external_node_fs_namespaceObject = require("node:fs");
;// CONCATENATED MODULE: external "node:path"
const external_node_path_namespaceObject = require("node:path");
// EXTERNAL MODULE: ./node_modules/node-domexception/index.js
var node_domexception = __nccwpck_require__(7666);
// EXTERNAL MODULE: ./node_modules/fetch-blob/file.js
var file = __nccwpck_require__(4645);
// EXTERNAL MODULE: ./node_modules/fetch-blob/index.js
var fetch_blob = __nccwpck_require__(6327);
;// CONCATENATED MODULE: ./node_modules/fetch-blob/from.js
const { stat } = external_node_fs_namespaceObject.promises
/**
* @param {string} path filepath on the disk
* @param {string} [type] mimetype to use
*/
const blobFromSync = (path, type) => fromBlob((0,external_node_fs_namespaceObject.statSync)(path), path, type)
/**
* @param {string} path filepath on the disk
* @param {string} [type] mimetype to use
* @returns {Promise<Blob>}
*/
const blobFrom = (path, type) => stat(path).then(stat => fromBlob(stat, path, type))
/**
* @param {string} path filepath on the disk
* @param {string} [type] mimetype to use
* @returns {Promise<File>}
*/
const fileFrom = (path, type) => stat(path).then(stat => fromFile(stat, path, type))
/**
* @param {string} path filepath on the disk
* @param {string} [type] mimetype to use
*/
const fileFromSync = (path, type) => fromFile((0,external_node_fs_namespaceObject.statSync)(path), path, type)
// @ts-ignore
const fromBlob = (stat, path, type = '') => new fetch_blob/* default */.A([new BlobDataItem({
path,
size: stat.size,
lastModified: stat.mtimeMs,
start: 0
})], { type })
// @ts-ignore
const fromFile = (stat, path, type = '') => new file/* default */.A([new BlobDataItem({
path,
size: stat.size,
lastModified: stat.mtimeMs,
start: 0
})], (0,external_node_path_namespaceObject.basename)(path), { type, lastModified: stat.mtimeMs })
/**
* This is a blob backed up by a file on the disk
* with minium requirement. Its wrapped around a Blob as a blobPart
* so you have no direct access to this.
*
* @private
*/
class BlobDataItem {
#path
#start
constructor (options) {
this.#path = options.path
this.#start = options.start
this.size = options.size
this.lastModified = options.lastModified
}
/**
* Slicing arguments is first validated and formatted
* to not be out of range by Blob.prototype.slice
*/
slice (start, end) {
return new BlobDataItem({
path: this.#path,
lastModified: this.lastModified,
size: end - start,
start: this.#start + start
})
}
async * stream () {
const { mtimeMs } = await stat(this.#path)
if (mtimeMs > this.lastModified) {
throw new node_domexception('The requested file could not be read, typically due to permission problems that have occurred after a reference to a file was acquired.', 'NotReadableError')
}
yield * (0,external_node_fs_namespaceObject.createReadStream)(this.#path, {
start: this.#start,
end: this.#start + this.size - 1
})
}
get [Symbol.toStringTag] () {
return 'Blob'
}
}
/* harmony default export */ const from = ((/* unused pure expression or super */ null && (blobFromSync)));
/***/ }),
/***/ 6327:
/***/ ((__unused_webpack___webpack_module__, __webpack_exports__, __nccwpck_require__) => {
"use strict";
/* harmony export */ __nccwpck_require__.d(__webpack_exports__, {
/* harmony export */ A: () => (__WEBPACK_DEFAULT_EXPORT__)
/* harmony export */ });
/* unused harmony export Blob */
/* harmony import */ var _streams_cjs__WEBPACK_IMPORTED_MODULE_0__ = __nccwpck_require__(1204);
/*! fetch-blob. MIT License. Jimmy Wärting <https://jimmy.warting.se/opensource> */
// TODO (jimmywarting): in the feature use conditional loading with top level await (requires 14.x)
// Node has recently added whatwg stream into core
// 64 KiB (same size chrome slice theirs blob into Uint8array's)
const POOL_SIZE = 65536
/** @param {(Blob | Uint8Array)[]} parts */
async function * toIterator (parts, clone = true) {
for (const part of parts) {
if ('stream' in part) {
yield * (/** @type {AsyncIterableIterator<Uint8Array>} */ (part.stream()))
} else if (ArrayBuffer.isView(part)) {
if (clone) {
let position = part.byteOffset
const end = part.byteOffset + part.byteLength
while (position !== end) {
const size = Math.min(end - position, POOL_SIZE)
const chunk = part.buffer.slice(position, position + size)
position += chunk.byteLength
yield new Uint8Array(chunk)
}
} else {
yield part
}
/* c8 ignore next 10 */
} else {
// For blobs that have arrayBuffer but no stream method (nodes buffer.Blob)
let position = 0, b = (/** @type {Blob} */ (part))
while (position !== b.size) {
const chunk = b.slice(position, Math.min(b.size, position + POOL_SIZE))
const buffer = await chunk.arrayBuffer()
position += buffer.byteLength
yield new Uint8Array(buffer)
}
}
}
}
const _Blob = class Blob {
/** @type {Array.<(Blob|Uint8Array)>} */
#parts = []
#type = ''
#size = 0
#endings = 'transparent'
/**
* The Blob() constructor returns a new Blob object. The content
* of the blob consists of the concatenation of the values given
* in the parameter array.
*
* @param {*} blobParts
* @param {{ type?: string, endings?: string }} [options]
*/
constructor (blobParts = [], options = {}) {
if (typeof blobParts !== 'object' || blobParts === null) {
throw new TypeError('Failed to construct \'Blob\': The provided value cannot be converted to a sequence.')
}
if (typeof blobParts[Symbol.iterator] !== 'function') {
throw new TypeError('Failed to construct \'Blob\': The object must have a callable @@iterator property.')
}
if (typeof options !== 'object' && typeof options !== 'function') {
throw new TypeError('Failed to construct \'Blob\': parameter 2 cannot convert to dictionary.')
}
if (options === null) options = {}
const encoder = new TextEncoder()
for (const element of blobParts) {
let part
if (ArrayBuffer.isView(element)) {
part = new Uint8Array(element.buffer.slice(element.byteOffset, element.byteOffset + element.byteLength))
} else if (element instanceof ArrayBuffer) {
part = new Uint8Array(element.slice(0))
} else if (element instanceof Blob) {
part = element
} else {
part = encoder.encode(`${element}`)
}
this.#size += ArrayBuffer.isView(part) ? part.byteLength : part.size
this.#parts.push(part)
}
this.#endings = `${options.endings === undefined ? 'transparent' : options.endings}`
const type = options.type === undefined ? '' : String(options.type)
this.#type = /^[\x20-\x7E]*$/.test(type) ? type : ''
}
/**
* The Blob interface's size property returns the
* size of the Blob in bytes.
*/
get size () {
return this.#size
}
/**
* The type property of a Blob object returns the MIME type of the file.
*/
get type () {
return this.#type
}
/**
* The text() method in the Blob interface returns a Promise
* that resolves with a string containing the contents of
* the blob, interpreted as UTF-8.
*
* @return {Promise<string>}
*/
async text () {
// More optimized than using this.arrayBuffer()
// that requires twice as much ram
const decoder = new TextDecoder()
let str = ''
for await (const part of toIterator(this.#parts, false)) {
str += decoder.decode(part, { stream: true })
}
// Remaining
str += decoder.decode()
return str
}
/**
* The arrayBuffer() method in the Blob interface returns a
* Promise that resolves with the contents of the blob as
* binary data contained in an ArrayBuffer.
*
* @return {Promise<ArrayBuffer>}
*/
async arrayBuffer () {
// Easier way... Just a unnecessary overhead
// const view = new Uint8Array(this.size);
// await this.stream().getReader({mode: 'byob'}).read(view);
// return view.buffer;
const data = new Uint8Array(this.size)
let offset = 0
for await (const chunk of toIterator(this.#parts, false)) {
data.set(chunk, offset)
offset += chunk.length
}
return data.buffer
}
stream () {
const it = toIterator(this.#parts, true)
return new globalThis.ReadableStream({
// @ts-ignore
type: 'bytes',
async pull (ctrl) {
const chunk = await it.next()
chunk.done ? ctrl.close() : ctrl.enqueue(chunk.value)
},
async cancel () {
await it.return()
}
})
}
/**
* The Blob interface's slice() method creates and returns a
* new Blob object which contains data from a subset of the
* blob on which it's called.
*
* @param {number} [start]
* @param {number} [end]
* @param {string} [type]
*/
slice (start = 0, end = this.size, type = '') {
const { size } = this
let relativeStart = start < 0 ? Math.max(size + start, 0) : Math.min(start, size)
let relativeEnd = end < 0 ? Math.max(size + end, 0) : Math.min(end, size)
const span = Math.max(relativeEnd - relativeStart, 0)
const parts = this.#parts
const blobParts = []
let added = 0
for (const part of parts) {
// don't add the overflow to new blobParts
if (added >= span) {
break
}
const size = ArrayBuffer.isView(part) ? part.byteLength : part.size
if (relativeStart && size <= relativeStart) {
// Skip the beginning and change the relative
// start & end position as we skip the unwanted parts
relativeStart -= size
relativeEnd -= size
} else {
let chunk
if (ArrayBuffer.isView(part)) {
chunk = part.subarray(relativeStart, Math.min(size, relativeEnd))
added += chunk.byteLength
} else {
chunk = part.slice(relativeStart, Math.min(size, relativeEnd))
added += chunk.size
}
relativeEnd -= size
blobParts.push(chunk)
relativeStart = 0 // All next sequential parts should start at 0
}
}
const blob = new Blob([], { type: String(type).toLowerCase() })
blob.#size = span
blob.#parts = blobParts
return blob
}
get [Symbol.toStringTag] () {
return 'Blob'
}
static [Symbol.hasInstance] (object) {
return (
object &&
typeof object === 'object' &&
typeof object.constructor === 'function' &&
(
typeof object.stream === 'function' ||
typeof object.arrayBuffer === 'function'
) &&
/^(Blob|File)$/.test(object[Symbol.toStringTag])
)
}
}
Object.defineProperties(_Blob.prototype, {
size: { enumerable: true },
type: { enumerable: true },
slice: { enumerable: true }
})
/** @type {typeof globalThis.Blob} */
const Blob = _Blob
/* harmony default export */ const __WEBPACK_DEFAULT_EXPORT__ = (Blob);
/***/ }),
/***/ 3018:
/***/ ((__unused_webpack___webpack_module__, __webpack_exports__, __nccwpck_require__) => {
"use strict";
/* harmony export */ __nccwpck_require__.d(__webpack_exports__, {
/* harmony export */ $n: () => (/* binding */ formDataToBlob),
/* harmony export */ fS: () => (/* binding */ FormData)
/* harmony export */ });
/* unused harmony export File */
/* harmony import */ var fetch_blob__WEBPACK_IMPORTED_MODULE_0__ = __nccwpck_require__(6327);
/* harmony import */ var fetch_blob_file_js__WEBPACK_IMPORTED_MODULE_1__ = __nccwpck_require__(4645);
/*! formdata-polyfill. MIT License. Jimmy Wärting <https://jimmy.warting.se/opensource> */
var {toStringTag:t,iterator:i,hasInstance:h}=Symbol,
r=Math.random,
m='append,set,get,getAll,delete,keys,values,entries,forEach,constructor'.split(','),
f=(a,b,c)=>(a+='',/^(Blob|File)$/.test(b && b[t])?[(c=c!==void 0?c+'':b[t]=='File'?b.name:'blob',a),b.name!==c||b[t]=='blob'?new fetch_blob_file_js__WEBPACK_IMPORTED_MODULE_1__/* ["default"] */ .A([b],c,b):b]:[a,b+'']),
e=(c,f)=>(f?c:c.replace(/\r?\n|\r/g,'\r\n')).replace(/\n/g,'%0A').replace(/\r/g,'%0D').replace(/"/g,'%22'),
x=(n, a, e)=>{if(a.length<e){throw new TypeError(`Failed to execute '${n}' on 'FormData': ${e} arguments required, but only ${a.length} present.`)}}
const File = (/* unused pure expression or super */ null && (F))
/** @type {typeof globalThis.FormData} */
const FormData = class FormData {
#d=[];
constructor(...a){if(a.length)throw new TypeError(`Failed to construct 'FormData': parameter 1 is not of type 'HTMLFormElement'.`)}
get [t]() {return 'FormData'}
[i](){return this.entries()}
static [h](o) {return o&&typeof o==='object'&&o[t]==='FormData'&&!m.some(m=>typeof o[m]!='function')}
append(...a){x('append',arguments,2);this.#d.push(f(...a))}
delete(a){x('delete',arguments,1);a+='';this.#d=this.#d.filter(([b])=>b!==a)}
get(a){x('get',arguments,1);a+='';for(var b=this.#d,l=b.length,c=0;c<l;c++)if(b[c][0]===a)return b[c][1];return null}
getAll(a,b){x('getAll',arguments,1);b=[];a+='';this.#d.forEach(c=>c[0]===a&&b.push(c[1]));return b}
has(a){x('has',arguments,1);a+='';return this.#d.some(b=>b[0]===a)}
forEach(a,b){x('forEach',arguments,1);for(var [c,d]of this)a.call(b,d,c,this)}
set(...a){x('set',arguments,2);var b=[],c=!0;a=f(...a);this.#d.forEach(d=>{d[0]===a[0]?c&&(c=!b.push(a)):b.push(d)});c&&b.push(a);this.#d=b}
*entries(){yield*this.#d}
*keys(){for(var[a]of this)yield a}
*values(){for(var[,a]of this)yield a}}
/** @param {FormData} F */
function formDataToBlob (F,B=fetch_blob__WEBPACK_IMPORTED_MODULE_0__/* ["default"] */ .A){
var b=`${r()}${r()}`.replace(/\./g, '').slice(-28).padStart(32, '-'),c=[],p=`--${b}\r\nContent-Disposition: form-data; name="`
F.forEach((v,n)=>typeof v=='string'
?c.push(p+e(n)+`"\r\n\r\n${v.replace(/\r(?!\n)|(?<!\r)\n/g, '\r\n')}\r\n`)
:c.push(p+e(n)+`"; filename="${e(v.name, 1)}"\r\nContent-Type: ${v.type||"application/octet-stream"}\r\n\r\n`, v, '\r\n'))
c.push(`--${b}--`)
return new B(c,{type:"multipart/form-data; boundary="+b})}
/***/ }),
/***/ 1485:
/***/ ((__unused_webpack___webpack_module__, __webpack_exports__, __nccwpck_require__) => {
"use strict";
// ESM COMPAT FLAG
__nccwpck_require__.r(__webpack_exports__);
// EXPORTS
__nccwpck_require__.d(__webpack_exports__, {
AbortError: () => (/* reexport */ AbortError),
Blob: () => (/* reexport */ from/* Blob */.YQ),
FetchError: () => (/* reexport */ FetchError),
File: () => (/* reexport */ from/* File */.ZH),
FormData: () => (/* reexport */ esm_min/* FormData */.fS),
Headers: () => (/* reexport */ Headers),
Request: () => (/* reexport */ Request),
Response: () => (/* reexport */ Response),
blobFrom: () => (/* reexport */ from/* blobFrom */.k4),
blobFromSync: () => (/* reexport */ from/* blobFromSync */.F8),
"default": () => (/* binding */ fetch),
fileFrom: () => (/* reexport */ from/* fileFrom */.NX),
fileFromSync: () => (/* reexport */ from/* fileFromSync */._M),
isRedirect: () => (/* reexport */ isRedirect)
});
;// CONCATENATED MODULE: external "node:http"
const external_node_http_namespaceObject = require("node:http");
;// CONCATENATED MODULE: external "node:https"
const external_node_https_namespaceObject = require("node:https");
;// CONCATENATED MODULE: external "node:zlib"
const external_node_zlib_namespaceObject = require("node:zlib");
;// CONCATENATED MODULE: external "node:stream"
const external_node_stream_namespaceObject = require("node:stream");
;// CONCATENATED MODULE: external "node:buffer"
const external_node_buffer_namespaceObject = require("node:buffer");
;// CONCATENATED MODULE: ./node_modules/data-uri-to-buffer/dist/index.js
/**
* Returns a `Buffer` instance from the given data URI `uri`.
*
* @param {String} uri Data URI to turn into a Buffer instance
* @returns {Buffer} Buffer instance from Data URI
* @api public
*/
function dataUriToBuffer(uri) {
if (!/^data:/i.test(uri)) {
throw new TypeError('`uri` does not appear to be a Data URI (must begin with "data:")');
}
// strip newlines
uri = uri.replace(/\r?\n/g, '');
// split the URI up into the "metadata" and the "data" portions
const firstComma = uri.indexOf(',');
if (firstComma === -1 || firstComma <= 4) {
throw new TypeError('malformed data: URI');
}
// remove the "data:" scheme and parse the metadata
const meta = uri.substring(5, firstComma).split(';');
let charset = '';
let base64 = false;
const type = meta[0] || 'text/plain';
let typeFull = type;
for (let i = 1; i < meta.length; i++) {
if (meta[i] === 'base64') {
base64 = true;
}
else if (meta[i]) {
typeFull += `;${meta[i]}`;
if (meta[i].indexOf('charset=') === 0) {
charset = meta[i].substring(8);
}
}
}
// defaults to US-ASCII only if type is not provided
if (!meta[0] && !charset.length) {
typeFull += ';charset=US-ASCII';
charset = 'US-ASCII';
}
// get the encoded data portion and decode URI-encoded chars
const encoding = base64 ? 'base64' : 'ascii';
const data = unescape(uri.substring(firstComma + 1));
const buffer = Buffer.from(data, encoding);
// set `.type` and `.typeFull` properties to MIME type
buffer.type = type;
buffer.typeFull = typeFull;
// set the `.charset` property
buffer.charset = charset;
return buffer;
}
/* harmony default export */ const dist = (dataUriToBuffer);
//# sourceMappingURL=index.js.map
;// CONCATENATED MODULE: external "node:util"
const external_node_util_namespaceObject = require("node:util");
// EXTERNAL MODULE: ./node_modules/fetch-blob/index.js
var fetch_blob = __nccwpck_require__(6327);
// EXTERNAL MODULE: ./node_modules/formdata-polyfill/esm.min.js
var esm_min = __nccwpck_require__(3018);
;// CONCATENATED MODULE: ./node_modules/node-fetch/src/errors/base.js
class FetchBaseError extends Error {
constructor(message, type) {
super(message);
// Hide custom error implementation details from end-users
Error.captureStackTrace(this, this.constructor);
this.type = type;
}
get name() {
return this.constructor.name;
}
get [Symbol.toStringTag]() {
return this.constructor.name;
}
}
;// CONCATENATED MODULE: ./node_modules/node-fetch/src/errors/fetch-error.js
/**
* @typedef {{ address?: string, code: string, dest?: string, errno: number, info?: object, message: string, path?: string, port?: number, syscall: string}} SystemError
*/
/**
* FetchError interface for operational errors
*/
class FetchError extends FetchBaseError {
/**
* @param {string} message - Error message for human
* @param {string} [type] - Error type for machine
* @param {SystemError} [systemError] - For Node.js system error
*/
constructor(message, type, systemError) {
super(message, type);
// When err.type is `system`, err.erroredSysCall contains system error and err.code contains system error code
if (systemError) {
// eslint-disable-next-line no-multi-assign
this.code = this.errno = systemError.code;
this.erroredSysCall = systemError.syscall;
}
}
}
;// CONCATENATED MODULE: ./node_modules/node-fetch/src/utils/is.js
/**
* Is.js
*
* Object type checks.
*/
const NAME = Symbol.toStringTag;
/**
* Check if `obj` is a URLSearchParams object
* ref: https://github.com/node-fetch/node-fetch/issues/296#issuecomment-307598143
* @param {*} object - Object to check for
* @return {boolean}
*/
const isURLSearchParameters = object => {
return (
typeof object === 'object' &&
typeof object.append === 'function' &&
typeof object.delete === 'function' &&
typeof object.get === 'function' &&
typeof object.getAll === 'function' &&
typeof object.has === 'function' &&
typeof object.set === 'function' &&
typeof object.sort === 'function' &&
object[NAME] === 'URLSearchParams'
);
};
/**
* Check if `object` is a W3C `Blob` object (which `File` inherits from)
* @param {*} object - Object to check for
* @return {boolean}
*/
const isBlob = object => {
return (
object &&
typeof object === 'object' &&
typeof object.arrayBuffer === 'function' &&
typeof object.type === 'string' &&
typeof object.stream === 'function' &&
typeof object.constructor === 'function' &&
/^(Blob|File)$/.test(object[NAME])
);
};
/**
* Check if `obj` is an instance of AbortSignal.
* @param {*} object - Object to check for
* @return {boolean}
*/
const isAbortSignal = object => {
return (
typeof object === 'object' && (
object[NAME] === 'AbortSignal' ||
object[NAME] === 'EventTarget'
)
);
};
/**
* isDomainOrSubdomain reports whether sub is a subdomain (or exact match) of
* the parent domain.
*
* Both domains must already be in canonical form.
* @param {string|URL} original
* @param {string|URL} destination
*/
const isDomainOrSubdomain = (destination, original) => {
const orig = new URL(original).hostname;
const dest = new URL(destination).hostname;
return orig === dest || orig.endsWith(`.${dest}`);
};
/**
* isSameProtocol reports whether the two provided URLs use the same protocol.
*
* Both domains must already be in canonical form.
* @param {string|URL} original
* @param {string|URL} destination
*/
const isSameProtocol = (destination, original) => {
const orig = new URL(original).protocol;
const dest = new URL(destination).protocol;
return orig === dest;
};
;// CONCATENATED MODULE: ./node_modules/node-fetch/src/body.js
/**
* Body.js
*
* Body interface provides common methods for Request and Response
*/
const pipeline = (0,external_node_util_namespaceObject.promisify)(external_node_stream_namespaceObject.pipeline);
const INTERNALS = Symbol('Body internals');
/**
* Body mixin
*
* Ref: https://fetch.spec.whatwg.org/#body
*
* @param Stream body Readable stream
* @param Object opts Response options
* @return Void
*/
class Body {
constructor(body, {
size = 0
} = {}) {
let boundary = null;
if (body === null) {
// Body is undefined or null
body = null;
} else if (isURLSearchParameters(body)) {
// Body is a URLSearchParams
body = external_node_buffer_namespaceObject.Buffer.from(body.toString());
} else if (isBlob(body)) {
// Body is blob
} else if (external_node_buffer_namespaceObject.Buffer.isBuffer(body)) {
// Body is Buffer
} else if (external_node_util_namespaceObject.types.isAnyArrayBuffer(body)) {
// Body is ArrayBuffer
body = external_node_buffer_namespaceObject.Buffer.from(body);
} else if (ArrayBuffer.isView(body)) {
// Body is ArrayBufferView
body = external_node_buffer_namespaceObject.Buffer.from(body.buffer, body.byteOffset, body.byteLength);
} else if (body instanceof external_node_stream_namespaceObject) {
// Body is stream
} else if (body instanceof esm_min/* FormData */.fS) {
// Body is FormData
body = (0,esm_min/* formDataToBlob */.$n)(body);
boundary = body.type.split('=')[1];
} else {
// None of the above
// coerce to string then buffer
body = external_node_buffer_namespaceObject.Buffer.from(String(body));
}
let stream = body;
if (external_node_buffer_namespaceObject.Buffer.isBuffer(body)) {
stream = external_node_stream_namespaceObject.Readable.from(body);
} else if (isBlob(body)) {
stream = external_node_stream_namespaceObject.Readable.from(body.stream());
}
this[INTERNALS] = {
body,
stream,
boundary,
disturbed: false,
error: null
};
this.size = size;
if (body instanceof external_node_stream_namespaceObject) {
body.on('error', error_ => {
const error = error_ instanceof FetchBaseError ?
error_ :
new FetchError(`Invalid response body while trying to fetch ${this.url}: ${error_.message}`, 'system', error_);
this[INTERNALS].error = error;
});
}
}
get body() {
return this[INTERNALS].stream;
}
get bodyUsed() {
return this[INTERNALS].disturbed;
}
/**
* Decode response as ArrayBuffer
*
* @return Promise
*/
async arrayBuffer() {
const {buffer, byteOffset, byteLength} = await consumeBody(this);
return buffer.slice(byteOffset, byteOffset + byteLength);
}
async formData() {
const ct = this.headers.get('content-type');
if (ct.startsWith('application/x-www-form-urlencoded')) {
const formData = new esm_min/* FormData */.fS();
const parameters = new URLSearchParams(await this.text());
for (const [name, value] of parameters) {
formData.append(name, value);
}
return formData;
}
const {toFormData} = await __nccwpck_require__.e(/* import() */ 101).then(__nccwpck_require__.bind(__nccwpck_require__, 9101));
return toFormData(this.body, ct);
}
/**
* Return raw response as Blob
*
* @return Promise
*/
async blob() {
const ct = (this.headers && this.headers.get('content-type')) || (this[INTERNALS].body && this[INTERNALS].body.type) || '';
const buf = await this.arrayBuffer();
return new fetch_blob/* default */.A([buf], {
type: ct
});
}
/**
* Decode response as json
*
* @return Promise
*/
async json() {
const text = await this.text();
return JSON.parse(text);
}
/**
* Decode response as text
*
* @return Promise
*/
async text() {
const buffer = await consumeBody(this);
return new TextDecoder().decode(buffer);
}
/**
* Decode response as buffer (non-spec api)
*
* @return Promise
*/
buffer() {
return consumeBody(this);
}
}
Body.prototype.buffer = (0,external_node_util_namespaceObject.deprecate)(Body.prototype.buffer, 'Please use \'response.arrayBuffer()\' instead of \'response.buffer()\'', 'node-fetch#buffer');
// In browsers, all properties are enumerable.
Object.defineProperties(Body.prototype, {
body: {enumerable: true},
bodyUsed: {enumerable: true},
arrayBuffer: {enumerable: true},
blob: {enumerable: true},
json: {enumerable: true},
text: {enumerable: true},
data: {get: (0,external_node_util_namespaceObject.deprecate)(() => {},
'data doesn\'t exist, use json(), text(), arrayBuffer(), or body instead',
'https://github.com/node-fetch/node-fetch/issues/1000 (response)')}
});
/**
* Consume and convert an entire Body to a Buffer.
*
* Ref: https://fetch.spec.whatwg.org/#concept-body-consume-body
*
* @return Promise
*/
async function consumeBody(data) {
if (data[INTERNALS].disturbed) {
throw new TypeError(`body used already for: ${data.url}`);
}
data[INTERNALS].disturbed = true;
if (data[INTERNALS].error) {
throw data[INTERNALS].error;
}
const {body} = data;
// Body is null
if (body === null) {
return external_node_buffer_namespaceObject.Buffer.alloc(0);
}
/* c8 ignore next 3 */
if (!(body instanceof external_node_stream_namespaceObject)) {
return external_node_buffer_namespaceObject.Buffer.alloc(0);
}
// Body is stream
// get ready to actually consume the body
const accum = [];
let accumBytes = 0;
try {
for await (const chunk of body) {
if (data.size > 0 && accumBytes + chunk.length > data.size) {
const error = new FetchError(`content size at ${data.url} over limit: ${data.size}`, 'max-size');
body.destroy(error);
throw error;
}
accumBytes += chunk.length;
accum.push(chunk);
}
} catch (error) {
const error_ = error instanceof FetchBaseError ? error : new FetchError(`Invalid response body while trying to fetch ${data.url}: ${error.message}`, 'system', error);
throw error_;
}
if (body.readableEnded === true || body._readableState.ended === true) {
try {
if (accum.every(c => typeof c === 'string')) {
return external_node_buffer_namespaceObject.Buffer.from(accum.join(''));
}
return external_node_buffer_namespaceObject.Buffer.concat(accum, accumBytes);
} catch (error) {
throw new FetchError(`Could not create Buffer from response body for ${data.url}: ${error.message}`, 'system', error);
}
} else {
throw new FetchError(`Premature close of server response while trying to fetch ${data.url}`);
}
}
/**
* Clone body given Res/Req instance
*
* @param Mixed instance Response or Request instance
* @param String highWaterMark highWaterMark for both PassThrough body streams
* @return Mixed
*/
const clone = (instance, highWaterMark) => {
let p1;
let p2;
let {body} = instance[INTERNALS];
// Don't allow cloning a used body
if (instance.bodyUsed) {
throw new Error('cannot clone body after it is used');
}
// Check that body is a stream and not form-data object
// note: we can't clone the form-data object without having it as a dependency
if ((body instanceof external_node_stream_namespaceObject) && (typeof body.getBoundary !== 'function')) {
// Tee instance body
p1 = new external_node_stream_namespaceObject.PassThrough({highWaterMark});
p2 = new external_node_stream_namespaceObject.PassThrough({highWaterMark});
body.pipe(p1);
body.pipe(p2);
// Set instance body to teed body and return the other teed body
instance[INTERNALS].stream = p1;
body = p2;
}
return body;
};
const getNonSpecFormDataBoundary = (0,external_node_util_namespaceObject.deprecate)(
body => body.getBoundary(),
'form-data doesn\'t follow the spec and requires special treatment. Use alternative package',
'https://github.com/node-fetch/node-fetch/issues/1167'
);
/**
* Performs the operation "extract a `Content-Type` value from |object|" as
* specified in the specification:
* https://fetch.spec.whatwg.org/#concept-bodyinit-extract
*
* This function assumes that instance.body is present.
*
* @param {any} body Any options.body input
* @returns {string | null}
*/
const extractContentType = (body, request) => {
// Body is null or undefined
if (body === null) {
return null;
}
// Body is string
if (typeof body === 'string') {
return 'text/plain;charset=UTF-8';
}
// Body is a URLSearchParams
if (isURLSearchParameters(body)) {
return 'application/x-www-form-urlencoded;charset=UTF-8';
}
// Body is blob
if (isBlob(body)) {
return body.type || null;
}
// Body is a Buffer (Buffer, ArrayBuffer or ArrayBufferView)
if (external_node_buffer_namespaceObject.Buffer.isBuffer(body) || external_node_util_namespaceObject.types.isAnyArrayBuffer(body) || ArrayBuffer.isView(body)) {
return null;
}
if (body instanceof esm_min/* FormData */.fS) {
return `multipart/form-data; boundary=${request[INTERNALS].boundary}`;
}
// Detect form data input from form-data module
if (body && typeof body.getBoundary === 'function') {
return `multipart/form-data;boundary=${getNonSpecFormDataBoundary(body)}`;
}
// Body is stream - can't really do much about this
if (body instanceof external_node_stream_namespaceObject) {
return null;
}
// Body constructor defaults other things to string
return 'text/plain;charset=UTF-8';
};
/**
* The Fetch Standard treats this as if "total bytes" is a property on the body.
* For us, we have to explicitly get it with a function.
*
* ref: https://fetch.spec.whatwg.org/#concept-body-total-bytes
*
* @param {any} obj.body Body object from the Body instance.
* @returns {number | null}
*/
const getTotalBytes = request => {
const {body} = request[INTERNALS];
// Body is null or undefined
if (body === null) {
return 0;
}
// Body is Blob
if (isBlob(body)) {
return body.size;
}
// Body is Buffer
if (external_node_buffer_namespaceObject.Buffer.isBuffer(body)) {
return body.length;
}
// Detect form data input from form-data module
if (body && typeof body.getLengthSync === 'function') {
return body.hasKnownLength && body.hasKnownLength() ? body.getLengthSync() : null;
}
// Body is stream
return null;
};
/**
* Write a Body to a Node.js WritableStream (e.g. http.Request) object.
*
* @param {Stream.Writable} dest The stream to write to.
* @param obj.body Body object from the Body instance.
* @returns {Promise<void>}
*/
const writeToStream = async (dest, {body}) => {
if (body === null) {
// Body is null
dest.end();
} else {
// Body is stream
await pipeline(body, dest);
}
};
;// CONCATENATED MODULE: ./node_modules/node-fetch/src/headers.js
/**
* Headers.js
*
* Headers class offers convenient helpers
*/
/* c8 ignore next 9 */
const validateHeaderName = typeof external_node_http_namespaceObject.validateHeaderName === 'function' ?
external_node_http_namespaceObject.validateHeaderName :
name => {
if (!/^[\^`\-\w!#$%&'*+.|~]+$/.test(name)) {
const error = new TypeError(`Header name must be a valid HTTP token [${name}]`);
Object.defineProperty(error, 'code', {value: 'ERR_INVALID_HTTP_TOKEN'});
throw error;
}
};
/* c8 ignore next 9 */
const validateHeaderValue = typeof external_node_http_namespaceObject.validateHeaderValue === 'function' ?
external_node_http_namespaceObject.validateHeaderValue :
(name, value) => {
if (/[^\t\u0020-\u007E\u0080-\u00FF]/.test(value)) {
const error = new TypeError(`Invalid character in header content ["${name}"]`);
Object.defineProperty(error, 'code', {value: 'ERR_INVALID_CHAR'});
throw error;
}
};
/**
* @typedef {Headers | Record<string, string> | Iterable<readonly [string, string]> | Iterable<Iterable<string>>} HeadersInit
*/
/**
* This Fetch API interface allows you to perform various actions on HTTP request and response headers.
* These actions include retrieving, setting, adding to, and removing.
* A Headers object has an associated header list, which is initially empty and consists of zero or more name and value pairs.
* You can add to this using methods like append() (see Examples.)
* In all methods of this interface, header names are matched by case-insensitive byte sequence.
*
*/
class Headers extends URLSearchParams {
/**
* Headers class
*
* @constructor
* @param {HeadersInit} [init] - Response headers
*/
constructor(init) {
// Validate and normalize init object in [name, value(s)][]
/** @type {string[][]} */
let result = [];
if (init instanceof Headers) {
const raw = init.raw();
for (const [name, values] of Object.entries(raw)) {
result.push(...values.map(value => [name, value]));
}
} else if (init == null) { // eslint-disable-line no-eq-null, eqeqeq
// No op
} else if (typeof init === 'object' && !external_node_util_namespaceObject.types.isBoxedPrimitive(init)) {
const method = init[Symbol.iterator];
// eslint-disable-next-line no-eq-null, eqeqeq
if (method == null) {
// Record<ByteString, ByteString>
result.push(...Object.entries(init));
} else {
if (typeof method !== 'function') {
throw new TypeError('Header pairs must be iterable');
}
// Sequence<sequence<ByteString>>
// Note: per spec we have to first exhaust the lists then process them
result = [...init]
.map(pair => {
if (
typeof pair !== 'object' || external_node_util_namespaceObject.types.isBoxedPrimitive(pair)
) {
throw new TypeError('Each header pair must be an iterable object');
}
return [...pair];
}).map(pair => {
if (pair.length !== 2) {
throw new TypeError('Each header pair must be a name/value tuple');
}
return [...pair];
});
}
} else {
throw new TypeError('Failed to construct \'Headers\': The provided value is not of type \'(sequence<sequence<ByteString>> or record<ByteString, ByteString>)');
}
// Validate and lowercase
result =
result.length > 0 ?
result.map(([name, value]) => {
validateHeaderName(name);
validateHeaderValue(name, String(value));
return [String(name).toLowerCase(), String(value)];
}) :
undefined;
super(result);
// Returning a Proxy that will lowercase key names, validate parameters and sort keys
// eslint-disable-next-line no-constructor-return
return new Proxy(this, {
get(target, p, receiver) {
switch (p) {
case 'append':
case 'set':
return (name, value) => {
validateHeaderName(name);
validateHeaderValue(name, String(value));
return URLSearchParams.prototype[p].call(
target,
String(name).toLowerCase(),
String(value)
);
};
case 'delete':
case 'has':
case 'getAll':
return name => {
validateHeaderName(name);
return URLSearchParams.prototype[p].call(
target,
String(name).toLowerCase()
);
};
case 'keys':
return () => {
target.sort();
return new Set(URLSearchParams.prototype.keys.call(target)).keys();
};
default:
return Reflect.get(target, p, receiver);
}
}
});
/* c8 ignore next */
}
get [Symbol.toStringTag]() {
return this.constructor.name;
}
toString() {
return Object.prototype.toString.call(this);
}
get(name) {
const values = this.getAll(name);
if (values.length === 0) {
return null;
}
let value = values.join(', ');
if (/^content-encoding$/i.test(name)) {
value = value.toLowerCase();
}
return value;
}
forEach(callback, thisArg = undefined) {
for (const name of this.keys()) {
Reflect.apply(callback, thisArg, [this.get(name), name, this]);
}
}
* values() {
for (const name of this.keys()) {
yield this.get(name);
}
}
/**
* @type {() => IterableIterator<[string, string]>}
*/
* entries() {
for (const name of this.keys()) {
yield [name, this.get(name)];
}
}
[Symbol.iterator]() {
return this.entries();
}
/**
* Node-fetch non-spec method
* returning all headers and their values as array
* @returns {Record<string, string[]>}
*/
raw() {
return [...this.keys()].reduce((result, key) => {
result[key] = this.getAll(key);
return result;
}, {});
}
/**
* For better console.log(headers) and also to convert Headers into Node.js Request compatible format
*/
[Symbol.for('nodejs.util.inspect.custom')]() {
return [...this.keys()].reduce((result, key) => {
const values = this.getAll(key);
// Http.request() only supports string as Host header.
// This hack makes specifying custom Host header possible.
if (key === 'host') {
result[key] = values[0];
} else {
result[key] = values.length > 1 ? values : values[0];
}
return result;
}, {});
}
}
/**
* Re-shaping object for Web IDL tests
* Only need to do it for overridden methods
*/
Object.defineProperties(
Headers.prototype,
['get', 'entries', 'forEach', 'values'].reduce((result, property) => {
result[property] = {enumerable: true};
return result;
}, {})
);
/**
* Create a Headers object from an http.IncomingMessage.rawHeaders, ignoring those that do
* not conform to HTTP grammar productions.
* @param {import('http').IncomingMessage['rawHeaders']} headers
*/
function fromRawHeaders(headers = []) {
return new Headers(
headers
// Split into pairs
.reduce((result, value, index, array) => {
if (index % 2 === 0) {
result.push(array.slice(index, index + 2));
}
return result;
}, [])
.filter(([name, value]) => {
try {
validateHeaderName(name);
validateHeaderValue(name, String(value));
return true;
} catch {
return false;
}
})
);
}
;// CONCATENATED MODULE: ./node_modules/node-fetch/src/utils/is-redirect.js
const redirectStatus = new Set([301, 302, 303, 307, 308]);
/**
* Redirect code matching
*
* @param {number} code - Status code
* @return {boolean}
*/
const isRedirect = code => {
return redirectStatus.has(code);
};
;// CONCATENATED MODULE: ./node_modules/node-fetch/src/response.js
/**
* Response.js
*
* Response class provides content decoding
*/
const response_INTERNALS = Symbol('Response internals');
/**
* Response class
*
* Ref: https://fetch.spec.whatwg.org/#response-class
*
* @param Stream body Readable stream
* @param Object opts Response options
* @return Void
*/
class Response extends Body {
constructor(body = null, options = {}) {
super(body, options);
// eslint-disable-next-line no-eq-null, eqeqeq, no-negated-condition
const status = options.status != null ? options.status : 200;
const headers = new Headers(options.headers);
if (body !== null && !headers.has('Content-Type')) {
const contentType = extractContentType(body, this);
if (contentType) {
headers.append('Content-Type', contentType);
}
}
this[response_INTERNALS] = {
type: 'default',
url: options.url,
status,
statusText: options.statusText || '',
headers,
counter: options.counter,
highWaterMark: options.highWaterMark
};
}
get type() {
return this[response_INTERNALS].type;
}
get url() {
return this[response_INTERNALS].url || '';
}
get status() {
return this[response_INTERNALS].status;
}
/**
* Convenience property representing if the request ended normally
*/
get ok() {
return this[response_INTERNALS].status >= 200 && this[response_INTERNALS].status < 300;
}
get redirected() {
return this[response_INTERNALS].counter > 0;
}
get statusText() {
return this[response_INTERNALS].statusText;
}
get headers() {
return this[response_INTERNALS].headers;
}
get highWaterMark() {
return this[response_INTERNALS].highWaterMark;
}
/**
* Clone this response
*
* @return Response
*/
clone() {
return new Response(clone(this, this.highWaterMark), {
type: this.type,
url: this.url,
status: this.status,
statusText: this.statusText,
headers: this.headers,
ok: this.ok,
redirected: this.redirected,
size: this.size,
highWaterMark: this.highWaterMark
});
}
/**
* @param {string} url The URL that the new response is to originate from.
* @param {number} status An optional status code for the response (e.g., 302.)
* @returns {Response} A Response object.
*/
static redirect(url, status = 302) {
if (!isRedirect(status)) {
throw new RangeError('Failed to execute "redirect" on "response": Invalid status code');
}
return new Response(null, {
headers: {
location: new URL(url).toString()
},
status
});
}
static error() {
const response = new Response(null, {status: 0, statusText: ''});
response[response_INTERNALS].type = 'error';
return response;
}
static json(data = undefined, init = {}) {
const body = JSON.stringify(data);
if (body === undefined) {
throw new TypeError('data is not JSON serializable');
}
const headers = new Headers(init && init.headers);
if (!headers.has('content-type')) {
headers.set('content-type', 'application/json');
}
return new Response(body, {
...init,
headers
});
}
get [Symbol.toStringTag]() {
return 'Response';
}
}
Object.defineProperties(Response.prototype, {
type: {enumerable: true},
url: {enumerable: true},
status: {enumerable: true},
ok: {enumerable: true},
redirected: {enumerable: true},
statusText: {enumerable: true},
headers: {enumerable: true},
clone: {enumerable: true}
});
;// CONCATENATED MODULE: external "node:url"
const external_node_url_namespaceObject = require("node:url");
;// CONCATENATED MODULE: ./node_modules/node-fetch/src/utils/get-search.js
const getSearch = parsedURL => {
if (parsedURL.search) {
return parsedURL.search;
}
const lastOffset = parsedURL.href.length - 1;
const hash = parsedURL.hash || (parsedURL.href[lastOffset] === '#' ? '#' : '');
return parsedURL.href[lastOffset - hash.length] === '?' ? '?' : '';
};
;// CONCATENATED MODULE: external "node:net"
const external_node_net_namespaceObject = require("node:net");
;// CONCATENATED MODULE: ./node_modules/node-fetch/src/utils/referrer.js
/**
* @external URL
* @see {@link https://developer.mozilla.org/en-US/docs/Web/API/URL|URL}
*/
/**
* @module utils/referrer
* @private
*/
/**
* @see {@link https://w3c.github.io/webappsec-referrer-policy/#strip-url|Referrer Policy §8.4. Strip url for use as a referrer}
* @param {string} URL
* @param {boolean} [originOnly=false]
*/
function stripURLForUseAsAReferrer(url, originOnly = false) {
// 1. If url is null, return no referrer.
if (url == null) { // eslint-disable-line no-eq-null, eqeqeq
return 'no-referrer';
}
url = new URL(url);
// 2. If url's scheme is a local scheme, then return no referrer.
if (/^(about|blob|data):$/.test(url.protocol)) {
return 'no-referrer';
}
// 3. Set url's username to the empty string.
url.username = '';
// 4. Set url's password to null.
// Note: `null` appears to be a mistake as this actually results in the password being `"null"`.
url.password = '';
// 5. Set url's fragment to null.
// Note: `null` appears to be a mistake as this actually results in the fragment being `"#null"`.
url.hash = '';
// 6. If the origin-only flag is true, then:
if (originOnly) {
// 6.1. Set url's path to null.
// Note: `null` appears to be a mistake as this actually results in the path being `"/null"`.
url.pathname = '';
// 6.2. Set url's query to null.
// Note: `null` appears to be a mistake as this actually results in the query being `"?null"`.
url.search = '';
}
// 7. Return url.
return url;
}
/**
* @see {@link https://w3c.github.io/webappsec-referrer-policy/#enumdef-referrerpolicy|enum ReferrerPolicy}
*/
const ReferrerPolicy = new Set([
'',
'no-referrer',
'no-referrer-when-downgrade',
'same-origin',
'origin',
'strict-origin',
'origin-when-cross-origin',
'strict-origin-when-cross-origin',
'unsafe-url'
]);
/**
* @see {@link https://w3c.github.io/webappsec-referrer-policy/#default-referrer-policy|default referrer policy}
*/
const DEFAULT_REFERRER_POLICY = 'strict-origin-when-cross-origin';
/**
* @see {@link https://w3c.github.io/webappsec-referrer-policy/#referrer-policies|Referrer Policy §3. Referrer Policies}
* @param {string} referrerPolicy
* @returns {string} referrerPolicy
*/
function validateReferrerPolicy(referrerPolicy) {
if (!ReferrerPolicy.has(referrerPolicy)) {
throw new TypeError(`Invalid referrerPolicy: ${referrerPolicy}`);
}
return referrerPolicy;
}
/**
* @see {@link https://w3c.github.io/webappsec-secure-contexts/#is-origin-trustworthy|Referrer Policy §3.2. Is origin potentially trustworthy?}
* @param {external:URL} url
* @returns `true`: "Potentially Trustworthy", `false`: "Not Trustworthy"
*/
function isOriginPotentiallyTrustworthy(url) {
// 1. If origin is an opaque origin, return "Not Trustworthy".
// Not applicable
// 2. Assert: origin is a tuple origin.
// Not for implementations
// 3. If origin's scheme is either "https" or "wss", return "Potentially Trustworthy".
if (/^(http|ws)s:$/.test(url.protocol)) {
return true;
}
// 4. If origin's host component matches one of the CIDR notations 127.0.0.0/8 or ::1/128 [RFC4632], return "Potentially Trustworthy".
const hostIp = url.host.replace(/(^\[)|(]$)/g, '');
const hostIPVersion = (0,external_node_net_namespaceObject.isIP)(hostIp);
if (hostIPVersion === 4 && /^127\./.test(hostIp)) {
return true;
}
if (hostIPVersion === 6 && /^(((0+:){7})|(::(0+:){0,6}))0*1$/.test(hostIp)) {
return true;
}
// 5. If origin's host component is "localhost" or falls within ".localhost", and the user agent conforms to the name resolution rules in [let-localhost-be-localhost], return "Potentially Trustworthy".
// We are returning FALSE here because we cannot ensure conformance to
// let-localhost-be-loalhost (https://tools.ietf.org/html/draft-west-let-localhost-be-localhost)
if (url.host === 'localhost' || url.host.endsWith('.localhost')) {
return false;
}
// 6. If origin's scheme component is file, return "Potentially Trustworthy".
if (url.protocol === 'file:') {
return true;
}
// 7. If origin's scheme component is one which the user agent considers to be authenticated, return "Potentially Trustworthy".
// Not supported
// 8. If origin has been configured as a trustworthy origin, return "Potentially Trustworthy".
// Not supported
// 9. Return "Not Trustworthy".
return false;
}
/**
* @see {@link https://w3c.github.io/webappsec-secure-contexts/#is-url-trustworthy|Referrer Policy §3.3. Is url potentially trustworthy?}
* @param {external:URL} url
* @returns `true`: "Potentially Trustworthy", `false`: "Not Trustworthy"
*/
function isUrlPotentiallyTrustworthy(url) {
// 1. If url is "about:blank" or "about:srcdoc", return "Potentially Trustworthy".
if (/^about:(blank|srcdoc)$/.test(url)) {
return true;
}
// 2. If url's scheme is "data", return "Potentially Trustworthy".
if (url.protocol === 'data:') {
return true;
}
// Note: The origin of blob: and filesystem: URLs is the origin of the context in which they were
// created. Therefore, blobs created in a trustworthy origin will themselves be potentially
// trustworthy.
if (/^(blob|filesystem):$/.test(url.protocol)) {
return true;
}
// 3. Return the result of executing §3.2 Is origin potentially trustworthy? on url's origin.
return isOriginPotentiallyTrustworthy(url);
}
/**
* Modifies the referrerURL to enforce any extra security policy considerations.
* @see {@link https://w3c.github.io/webappsec-referrer-policy/#determine-requests-referrer|Referrer Policy §8.3. Determine request's Referrer}, step 7
* @callback module:utils/referrer~referrerURLCallback
* @param {external:URL} referrerURL
* @returns {external:URL} modified referrerURL
*/
/**
* Modifies the referrerOrigin to enforce any extra security policy considerations.
* @see {@link https://w3c.github.io/webappsec-referrer-policy/#determine-requests-referrer|Referrer Policy §8.3. Determine request's Referrer}, step 7
* @callback module:utils/referrer~referrerOriginCallback
* @param {external:URL} referrerOrigin
* @returns {external:URL} modified referrerOrigin
*/
/**
* @see {@link https://w3c.github.io/webappsec-referrer-policy/#determine-requests-referrer|Referrer Policy §8.3. Determine request's Referrer}
* @param {Request} request
* @param {object} o
* @param {module:utils/referrer~referrerURLCallback} o.referrerURLCallback
* @param {module:utils/referrer~referrerOriginCallback} o.referrerOriginCallback
* @returns {external:URL} Request's referrer
*/
function determineRequestsReferrer(request, {referrerURLCallback, referrerOriginCallback} = {}) {
// There are 2 notes in the specification about invalid pre-conditions. We return null, here, for
// these cases:
// > Note: If request's referrer is "no-referrer", Fetch will not call into this algorithm.
// > Note: If request's referrer policy is the empty string, Fetch will not call into this
// > algorithm.
if (request.referrer === 'no-referrer' || request.referrerPolicy === '') {
return null;
}
// 1. Let policy be request's associated referrer policy.
const policy = request.referrerPolicy;
// 2. Let environment be request's client.
// not applicable to node.js
// 3. Switch on request's referrer:
if (request.referrer === 'about:client') {
return 'no-referrer';
}
// "a URL": Let referrerSource be request's referrer.
const referrerSource = request.referrer;
// 4. Let request's referrerURL be the result of stripping referrerSource for use as a referrer.
let referrerURL = stripURLForUseAsAReferrer(referrerSource);
// 5. Let referrerOrigin be the result of stripping referrerSource for use as a referrer, with the
// origin-only flag set to true.
let referrerOrigin = stripURLForUseAsAReferrer(referrerSource, true);
// 6. If the result of serializing referrerURL is a string whose length is greater than 4096, set
// referrerURL to referrerOrigin.
if (referrerURL.toString().length > 4096) {
referrerURL = referrerOrigin;
}
// 7. The user agent MAY alter referrerURL or referrerOrigin at this point to enforce arbitrary
// policy considerations in the interests of minimizing data leakage. For example, the user
// agent could strip the URL down to an origin, modify its host, replace it with an empty
// string, etc.
if (referrerURLCallback) {
referrerURL = referrerURLCallback(referrerURL);
}
if (referrerOriginCallback) {
referrerOrigin = referrerOriginCallback(referrerOrigin);
}
// 8.Execute the statements corresponding to the value of policy:
const currentURL = new URL(request.url);
switch (policy) {
case 'no-referrer':
return 'no-referrer';
case 'origin':
return referrerOrigin;
case 'unsafe-url':
return referrerURL;
case 'strict-origin':
// 1. If referrerURL is a potentially trustworthy URL and request's current URL is not a
// potentially trustworthy URL, then return no referrer.
if (isUrlPotentiallyTrustworthy(referrerURL) && !isUrlPotentiallyTrustworthy(currentURL)) {
return 'no-referrer';
}
// 2. Return referrerOrigin.
return referrerOrigin.toString();
case 'strict-origin-when-cross-origin':
// 1. If the origin of referrerURL and the origin of request's current URL are the same, then
// return referrerURL.
if (referrerURL.origin === currentURL.origin) {
return referrerURL;
}
// 2. If referrerURL is a potentially trustworthy URL and request's current URL is not a
// potentially trustworthy URL, then return no referrer.
if (isUrlPotentiallyTrustworthy(referrerURL) && !isUrlPotentiallyTrustworthy(currentURL)) {
return 'no-referrer';
}
// 3. Return referrerOrigin.
return referrerOrigin;
case 'same-origin':
// 1. If the origin of referrerURL and the origin of request's current URL are the same, then
// return referrerURL.
if (referrerURL.origin === currentURL.origin) {
return referrerURL;
}
// 2. Return no referrer.
return 'no-referrer';
case 'origin-when-cross-origin':
// 1. If the origin of referrerURL and the origin of request's current URL are the same, then
// return referrerURL.
if (referrerURL.origin === currentURL.origin) {
return referrerURL;
}
// Return referrerOrigin.
return referrerOrigin;
case 'no-referrer-when-downgrade':
// 1. If referrerURL is a potentially trustworthy URL and request's current URL is not a
// potentially trustworthy URL, then return no referrer.
if (isUrlPotentiallyTrustworthy(referrerURL) && !isUrlPotentiallyTrustworthy(currentURL)) {
return 'no-referrer';
}
// 2. Return referrerURL.
return referrerURL;
default:
throw new TypeError(`Invalid referrerPolicy: ${policy}`);
}
}
/**
* @see {@link https://w3c.github.io/webappsec-referrer-policy/#parse-referrer-policy-from-header|Referrer Policy §8.1. Parse a referrer policy from a Referrer-Policy header}
* @param {Headers} headers Response headers
* @returns {string} policy
*/
function parseReferrerPolicyFromHeader(headers) {
// 1. Let policy-tokens be the result of extracting header list values given `Referrer-Policy`
// and response’s header list.
const policyTokens = (headers.get('referrer-policy') || '').split(/[,\s]+/);
// 2. Let policy be the empty string.
let policy = '';
// 3. For each token in policy-tokens, if token is a referrer policy and token is not the empty
// string, then set policy to token.
// Note: This algorithm loops over multiple policy values to allow deployment of new policy
// values with fallbacks for older user agents, as described in § 11.1 Unknown Policy Values.
for (const token of policyTokens) {
if (token && ReferrerPolicy.has(token)) {
policy = token;
}
}
// 4. Return policy.
return policy;
}
;// CONCATENATED MODULE: ./node_modules/node-fetch/src/request.js
/**
* Request.js
*
* Request class contains server only options
*
* All spec algorithm step numbers are based on https://fetch.spec.whatwg.org/commit-snapshots/ae716822cb3a61843226cd090eefc6589446c1d2/.
*/
const request_INTERNALS = Symbol('Request internals');
/**
* Check if `obj` is an instance of Request.
*
* @param {*} object
* @return {boolean}
*/
const isRequest = object => {
return (
typeof object === 'object' &&
typeof object[request_INTERNALS] === 'object'
);
};
const doBadDataWarn = (0,external_node_util_namespaceObject.deprecate)(() => {},
'.data is not a valid RequestInit property, use .body instead',
'https://github.com/node-fetch/node-fetch/issues/1000 (request)');
/**
* Request class
*
* Ref: https://fetch.spec.whatwg.org/#request-class
*
* @param Mixed input Url or Request instance
* @param Object init Custom options
* @return Void
*/
class Request extends Body {
constructor(input, init = {}) {
let parsedURL;
// Normalize input and force URL to be encoded as UTF-8 (https://github.com/node-fetch/node-fetch/issues/245)
if (isRequest(input)) {
parsedURL = new URL(input.url);
} else {
parsedURL = new URL(input);
input = {};
}
if (parsedURL.username !== '' || parsedURL.password !== '') {
throw new TypeError(`${parsedURL} is an url with embedded credentials.`);
}
let method = init.method || input.method || 'GET';
if (/^(delete|get|head|options|post|put)$/i.test(method)) {
method = method.toUpperCase();
}
if (!isRequest(init) && 'data' in init) {
doBadDataWarn();
}
// eslint-disable-next-line no-eq-null, eqeqeq
if ((init.body != null || (isRequest(input) && input.body !== null)) &&
(method === 'GET' || method === 'HEAD')) {
throw new TypeError('Request with GET/HEAD method cannot have body');
}
const inputBody = init.body ?
init.body :
(isRequest(input) && input.body !== null ?
clone(input) :
null);
super(inputBody, {
size: init.size || input.size || 0
});
const headers = new Headers(init.headers || input.headers || {});
if (inputBody !== null && !headers.has('Content-Type')) {
const contentType = extractContentType(inputBody, this);
if (contentType) {
headers.set('Content-Type', contentType);
}
}
let signal = isRequest(input) ?
input.signal :
null;
if ('signal' in init) {
signal = init.signal;
}
// eslint-disable-next-line no-eq-null, eqeqeq
if (signal != null && !isAbortSignal(signal)) {
throw new TypeError('Expected signal to be an instanceof AbortSignal or EventTarget');
}
// §5.4, Request constructor steps, step 15.1
// eslint-disable-next-line no-eq-null, eqeqeq
let referrer = init.referrer == null ? input.referrer : init.referrer;
if (referrer === '') {
// §5.4, Request constructor steps, step 15.2
referrer = 'no-referrer';
} else if (referrer) {
// §5.4, Request constructor steps, step 15.3.1, 15.3.2
const parsedReferrer = new URL(referrer);
// §5.4, Request constructor steps, step 15.3.3, 15.3.4
referrer = /^about:(\/\/)?client$/.test(parsedReferrer) ? 'client' : parsedReferrer;
} else {
referrer = undefined;
}
this[request_INTERNALS] = {
method,
redirect: init.redirect || input.redirect || 'follow',
headers,
parsedURL,
signal,
referrer
};
// Node-fetch-only options
this.follow = init.follow === undefined ? (input.follow === undefined ? 20 : input.follow) : init.follow;
this.compress = init.compress === undefined ? (input.compress === undefined ? true : input.compress) : init.compress;
this.counter = init.counter || input.counter || 0;
this.agent = init.agent || input.agent;
this.highWaterMark = init.highWaterMark || input.highWaterMark || 16384;
this.insecureHTTPParser = init.insecureHTTPParser || input.insecureHTTPParser || false;
// §5.4, Request constructor steps, step 16.
// Default is empty string per https://fetch.spec.whatwg.org/#concept-request-referrer-policy
this.referrerPolicy = init.referrerPolicy || input.referrerPolicy || '';
}
/** @returns {string} */
get method() {
return this[request_INTERNALS].method;
}
/** @returns {string} */
get url() {
return (0,external_node_url_namespaceObject.format)(this[request_INTERNALS].parsedURL);
}
/** @returns {Headers} */
get headers() {
return this[request_INTERNALS].headers;
}
get redirect() {
return this[request_INTERNALS].redirect;
}
/** @returns {AbortSignal} */
get signal() {
return this[request_INTERNALS].signal;
}
// https://fetch.spec.whatwg.org/#dom-request-referrer
get referrer() {
if (this[request_INTERNALS].referrer === 'no-referrer') {
return '';
}
if (this[request_INTERNALS].referrer === 'client') {
return 'about:client';
}
if (this[request_INTERNALS].referrer) {
return this[request_INTERNALS].referrer.toString();
}
return undefined;
}
get referrerPolicy() {
return this[request_INTERNALS].referrerPolicy;
}
set referrerPolicy(referrerPolicy) {
this[request_INTERNALS].referrerPolicy = validateReferrerPolicy(referrerPolicy);
}
/**
* Clone this request
*
* @return Request
*/
clone() {
return new Request(this);
}
get [Symbol.toStringTag]() {
return 'Request';
}
}
Object.defineProperties(Request.prototype, {
method: {enumerable: true},
url: {enumerable: true},
headers: {enumerable: true},
redirect: {enumerable: true},
clone: {enumerable: true},
signal: {enumerable: true},
referrer: {enumerable: true},
referrerPolicy: {enumerable: true}
});
/**
* Convert a Request to Node.js http request options.
*
* @param {Request} request - A Request instance
* @return The options object to be passed to http.request
*/
const getNodeRequestOptions = request => {
const {parsedURL} = request[request_INTERNALS];
const headers = new Headers(request[request_INTERNALS].headers);
// Fetch step 1.3
if (!headers.has('Accept')) {
headers.set('Accept', '*/*');
}
// HTTP-network-or-cache fetch steps 2.4-2.7
let contentLengthValue = null;
if (request.body === null && /^(post|put)$/i.test(request.method)) {
contentLengthValue = '0';
}
if (request.body !== null) {
const totalBytes = getTotalBytes(request);
// Set Content-Length if totalBytes is a number (that is not NaN)
if (typeof totalBytes === 'number' && !Number.isNaN(totalBytes)) {
contentLengthValue = String(totalBytes);
}
}
if (contentLengthValue) {
headers.set('Content-Length', contentLengthValue);
}
// 4.1. Main fetch, step 2.6
// > If request's referrer policy is the empty string, then set request's referrer policy to the
// > default referrer policy.
if (request.referrerPolicy === '') {
request.referrerPolicy = DEFAULT_REFERRER_POLICY;
}
// 4.1. Main fetch, step 2.7
// > If request's referrer is not "no-referrer", set request's referrer to the result of invoking
// > determine request's referrer.
if (request.referrer && request.referrer !== 'no-referrer') {
request[request_INTERNALS].referrer = determineRequestsReferrer(request);
} else {
request[request_INTERNALS].referrer = 'no-referrer';
}
// 4.5. HTTP-network-or-cache fetch, step 6.9
// > If httpRequest's referrer is a URL, then append `Referer`/httpRequest's referrer, serialized
// > and isomorphic encoded, to httpRequest's header list.
if (request[request_INTERNALS].referrer instanceof URL) {
headers.set('Referer', request.referrer);
}
// HTTP-network-or-cache fetch step 2.11
if (!headers.has('User-Agent')) {
headers.set('User-Agent', 'node-fetch');
}
// HTTP-network-or-cache fetch step 2.15
if (request.compress && !headers.has('Accept-Encoding')) {
headers.set('Accept-Encoding', 'gzip, deflate, br');
}
let {agent} = request;
if (typeof agent === 'function') {
agent = agent(parsedURL);
}
// HTTP-network fetch step 4.2
// chunked encoding is handled by Node.js
const search = getSearch(parsedURL);
// Pass the full URL directly to request(), but overwrite the following
// options:
const options = {
// Overwrite search to retain trailing ? (issue #776)
path: parsedURL.pathname + search,
// The following options are not expressed in the URL
method: request.method,
headers: headers[Symbol.for('nodejs.util.inspect.custom')](),
insecureHTTPParser: request.insecureHTTPParser,
agent
};
return {
/** @type {URL} */
parsedURL,
options
};
};
;// CONCATENATED MODULE: ./node_modules/node-fetch/src/errors/abort-error.js
/**
* AbortError interface for cancelled requests
*/
class AbortError extends FetchBaseError {
constructor(message, type = 'aborted') {
super(message, type);
}
}
// EXTERNAL MODULE: ./node_modules/fetch-blob/from.js + 2 modules
var from = __nccwpck_require__(9802);
;// CONCATENATED MODULE: ./node_modules/node-fetch/src/index.js
/**
* Index.js
*
* a request API compatible with window.fetch
*
* All spec algorithm step numbers are based on https://fetch.spec.whatwg.org/commit-snapshots/ae716822cb3a61843226cd090eefc6589446c1d2/.
*/
const supportedSchemas = new Set(['data:', 'http:', 'https:']);
/**
* Fetch function
*
* @param {string | URL | import('./request').default} url - Absolute url or Request instance
* @param {*} [options_] - Fetch options
* @return {Promise<import('./response').default>}
*/
async function fetch(url, options_) {
return new Promise((resolve, reject) => {
// Build request object
const request = new Request(url, options_);
const {parsedURL, options} = getNodeRequestOptions(request);
if (!supportedSchemas.has(parsedURL.protocol)) {
throw new TypeError(`node-fetch cannot load ${url}. URL scheme "${parsedURL.protocol.replace(/:$/, '')}" is not supported.`);
}
if (parsedURL.protocol === 'data:') {
const data = dist(request.url);
const response = new Response(data, {headers: {'Content-Type': data.typeFull}});
resolve(response);
return;
}
// Wrap http.request into fetch
const send = (parsedURL.protocol === 'https:' ? external_node_https_namespaceObject : external_node_http_namespaceObject).request;
const {signal} = request;
let response = null;
const abort = () => {
const error = new AbortError('The operation was aborted.');
reject(error);
if (request.body && request.body instanceof external_node_stream_namespaceObject.Readable) {
request.body.destroy(error);
}
if (!response || !response.body) {
return;
}
response.body.emit('error', error);
};
if (signal && signal.aborted) {
abort();
return;
}
const abortAndFinalize = () => {
abort();
finalize();
};
// Send request
const request_ = send(parsedURL.toString(), options);
if (signal) {
signal.addEventListener('abort', abortAndFinalize);
}
const finalize = () => {
request_.abort();
if (signal) {
signal.removeEventListener('abort', abortAndFinalize);
}
};
request_.on('error', error => {
reject(new FetchError(`request to ${request.url} failed, reason: ${error.message}`, 'system', error));
finalize();
});
fixResponseChunkedTransferBadEnding(request_, error => {
if (response && response.body) {
response.body.destroy(error);
}
});
/* c8 ignore next 18 */
if (process.version < 'v14') {
// Before Node.js 14, pipeline() does not fully support async iterators and does not always
// properly handle when the socket close/end events are out of order.
request_.on('socket', s => {
let endedWithEventsCount;
s.prependListener('end', () => {
endedWithEventsCount = s._eventsCount;
});
s.prependListener('close', hadError => {
// if end happened before close but the socket didn't emit an error, do it now
if (response && endedWithEventsCount < s._eventsCount && !hadError) {
const error = new Error('Premature close');
error.code = 'ERR_STREAM_PREMATURE_CLOSE';
response.body.emit('error', error);
}
});
});
}
request_.on('response', response_ => {
request_.setTimeout(0);
const headers = fromRawHeaders(response_.rawHeaders);
// HTTP fetch step 5
if (isRedirect(response_.statusCode)) {
// HTTP fetch step 5.2
const location = headers.get('Location');
// HTTP fetch step 5.3
let locationURL = null;
try {
locationURL = location === null ? null : new URL(location, request.url);
} catch {
// error here can only be invalid URL in Location: header
// do not throw when options.redirect == manual
// let the user extract the errorneous redirect URL
if (request.redirect !== 'manual') {
reject(new FetchError(`uri requested responds with an invalid redirect URL: ${location}`, 'invalid-redirect'));
finalize();
return;
}
}
// HTTP fetch step 5.5
switch (request.redirect) {
case 'error':
reject(new FetchError(`uri requested responds with a redirect, redirect mode is set to error: ${request.url}`, 'no-redirect'));
finalize();
return;
case 'manual':
// Nothing to do
break;
case 'follow': {
// HTTP-redirect fetch step 2
if (locationURL === null) {
break;
}
// HTTP-redirect fetch step 5
if (request.counter >= request.follow) {
reject(new FetchError(`maximum redirect reached at: ${request.url}`, 'max-redirect'));
finalize();
return;
}
// HTTP-redirect fetch step 6 (counter increment)
// Create a new Request object.
const requestOptions = {
headers: new Headers(request.headers),
follow: request.follow,
counter: request.counter + 1,
agent: request.agent,
compress: request.compress,
method: request.method,
body: clone(request),
signal: request.signal,
size: request.size,
referrer: request.referrer,
referrerPolicy: request.referrerPolicy
};
// when forwarding sensitive headers like "Authorization",
// "WWW-Authenticate", and "Cookie" to untrusted targets,
// headers will be ignored when following a redirect to a domain
// that is not a subdomain match or exact match of the initial domain.
// For example, a redirect from "foo.com" to either "foo.com" or "sub.foo.com"
// will forward the sensitive headers, but a redirect to "bar.com" will not.
// headers will also be ignored when following a redirect to a domain using
// a different protocol. For example, a redirect from "https://foo.com" to "http://foo.com"
// will not forward the sensitive headers
if (!isDomainOrSubdomain(request.url, locationURL) || !isSameProtocol(request.url, locationURL)) {
for (const name of ['authorization', 'www-authenticate', 'cookie', 'cookie2']) {
requestOptions.headers.delete(name);
}
}
// HTTP-redirect fetch step 9
if (response_.statusCode !== 303 && request.body && options_.body instanceof external_node_stream_namespaceObject.Readable) {
reject(new FetchError('Cannot follow redirect with body being a readable stream', 'unsupported-redirect'));
finalize();
return;
}
// HTTP-redirect fetch step 11
if (response_.statusCode === 303 || ((response_.statusCode === 301 || response_.statusCode === 302) && request.method === 'POST')) {
requestOptions.method = 'GET';
requestOptions.body = undefined;
requestOptions.headers.delete('content-length');
}
// HTTP-redirect fetch step 14
const responseReferrerPolicy = parseReferrerPolicyFromHeader(headers);
if (responseReferrerPolicy) {
requestOptions.referrerPolicy = responseReferrerPolicy;
}
// HTTP-redirect fetch step 15
resolve(fetch(new Request(locationURL, requestOptions)));
finalize();
return;
}
default:
return reject(new TypeError(`Redirect option '${request.redirect}' is not a valid value of RequestRedirect`));
}
}
// Prepare response
if (signal) {
response_.once('end', () => {
signal.removeEventListener('abort', abortAndFinalize);
});
}
let body = (0,external_node_stream_namespaceObject.pipeline)(response_, new external_node_stream_namespaceObject.PassThrough(), error => {
if (error) {
reject(error);
}
});
// see https://github.com/nodejs/node/pull/29376
/* c8 ignore next 3 */
if (process.version < 'v12.10') {
response_.on('aborted', abortAndFinalize);
}
const responseOptions = {
url: request.url,
status: response_.statusCode,
statusText: response_.statusMessage,
headers,
size: request.size,
counter: request.counter,
highWaterMark: request.highWaterMark
};
// HTTP-network fetch step 12.1.1.3
const codings = headers.get('Content-Encoding');
// HTTP-network fetch step 12.1.1.4: handle content codings
// in following scenarios we ignore compression support
// 1. compression support is disabled
// 2. HEAD request
// 3. no Content-Encoding header
// 4. no content response (204)
// 5. content not modified response (304)
if (!request.compress || request.method === 'HEAD' || codings === null || response_.statusCode === 204 || response_.statusCode === 304) {
response = new Response(body, responseOptions);
resolve(response);
return;
}
// For Node v6+
// Be less strict when decoding compressed responses, since sometimes
// servers send slightly invalid responses that are still accepted
// by common browsers.
// Always using Z_SYNC_FLUSH is what cURL does.
const zlibOptions = {
flush: external_node_zlib_namespaceObject.Z_SYNC_FLUSH,
finishFlush: external_node_zlib_namespaceObject.Z_SYNC_FLUSH
};
// For gzip
if (codings === 'gzip' || codings === 'x-gzip') {
body = (0,external_node_stream_namespaceObject.pipeline)(body, external_node_zlib_namespaceObject.createGunzip(zlibOptions), error => {
if (error) {
reject(error);
}
});
response = new Response(body, responseOptions);
resolve(response);
return;
}
// For deflate
if (codings === 'deflate' || codings === 'x-deflate') {
// Handle the infamous raw deflate response from old servers
// a hack for old IIS and Apache servers
const raw = (0,external_node_stream_namespaceObject.pipeline)(response_, new external_node_stream_namespaceObject.PassThrough(), error => {
if (error) {
reject(error);
}
});
raw.once('data', chunk => {
// See http://stackoverflow.com/questions/37519828
if ((chunk[0] & 0x0F) === 0x08) {
body = (0,external_node_stream_namespaceObject.pipeline)(body, external_node_zlib_namespaceObject.createInflate(), error => {
if (error) {
reject(error);
}
});
} else {
body = (0,external_node_stream_namespaceObject.pipeline)(body, external_node_zlib_namespaceObject.createInflateRaw(), error => {
if (error) {
reject(error);
}
});
}
response = new Response(body, responseOptions);
resolve(response);
});
raw.once('end', () => {
// Some old IIS servers return zero-length OK deflate responses, so
// 'data' is never emitted. See https://github.com/node-fetch/node-fetch/pull/903
if (!response) {
response = new Response(body, responseOptions);
resolve(response);
}
});
return;
}
// For br
if (codings === 'br') {
body = (0,external_node_stream_namespaceObject.pipeline)(body, external_node_zlib_namespaceObject.createBrotliDecompress(), error => {
if (error) {
reject(error);
}
});
response = new Response(body, responseOptions);
resolve(response);
return;
}
// Otherwise, use response as-is
response = new Response(body, responseOptions);
resolve(response);
});
// eslint-disable-next-line promise/prefer-await-to-then
writeToStream(request_, request).catch(reject);
});
}
function fixResponseChunkedTransferBadEnding(request, errorCallback) {
const LAST_CHUNK = external_node_buffer_namespaceObject.Buffer.from('0\r\n\r\n');
let isChunkedTransfer = false;
let properLastChunkReceived = false;
let previousChunk;
request.on('response', response => {
const {headers} = response;
isChunkedTransfer = headers['transfer-encoding'] === 'chunked' && !headers['content-length'];
});
request.on('socket', socket => {
const onSocketClose = () => {
if (isChunkedTransfer && !properLastChunkReceived) {
const error = new Error('Premature close');
error.code = 'ERR_STREAM_PREMATURE_CLOSE';
errorCallback(error);
}
};
const onData = buf => {
properLastChunkReceived = external_node_buffer_namespaceObject.Buffer.compare(buf.slice(-5), LAST_CHUNK) === 0;
// Sometimes final 0-length chunk and end of message code are in separate packets
if (!properLastChunkReceived && previousChunk) {
properLastChunkReceived = (
external_node_buffer_namespaceObject.Buffer.compare(previousChunk.slice(-3), LAST_CHUNK.slice(0, 3)) === 0 &&
external_node_buffer_namespaceObject.Buffer.compare(buf.slice(-2), LAST_CHUNK.slice(3)) === 0
);
}
previousChunk = buf;
};
socket.prependListener('close', onSocketClose);
socket.on('data', onData);
request.on('close', () => {
socket.removeListener('close', onSocketClose);
socket.removeListener('data', onData);
});
});
}
/***/ }),
/***/ 2472:
/***/ ((module) => {
"use strict";
module.exports = 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/******/ // no HMR
/******/
/******/ // no HMR manifest
/******/ })();
/******/
/************************************************************************/
var __webpack_exports__ = {};
// This entry need to be wrapped in an IIFE because it need to be in strict mode.
(() => {
"use strict";
var exports = __webpack_exports__;
Object.defineProperty(exports, "__esModule", ({ value: true }));
const commanderStatic = __nccwpck_require__(8909);
const denoify_1 = __nccwpck_require__(5491);
process.once("unhandledRejection", error => {
throw error;
});
commanderStatic
.description(`
For NPM module authors that would like to support Deno but do not want to write and maintain a port.
See https://github.com/garronej/denoify for instructions.
`)
.option("-p, --project [projectPath]", `Default: './' -- Root path of the project to denoify, target directory is supposed to contain a 'package.json' and 'tsconfig.json'.`)
.option("--src [srcDirPath]", `Default: '[projectPath]/src' | '[projectPath]/lib' -- Path to the directory containing the source .ts files. If the provided path is not absolute it is assumed relative to [projectPath]`)
.option("-o --out [outputDirPath]", `Default: '$(dirname <tsconfig.outDir>)/deno_lib' -- Path to the output directory`)
.option("-i --index [indexFilePath]", `Default: 'Read from package.json' -- Path to the index.ts file typically: "src/lib/index.ts"`);
commanderStatic.parse(process.argv);
const options = commanderStatic.opts();
(0, denoify_1.denoify)({
"projectPath": options.project,
"srcDirPath": options.src,
"denoDistPath": options.out,
"indexFilePath": options.index
});
})();
module.exports = __webpack_exports__;
/******/ })()
;