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"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 __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; Object.defineProperty(exports, "__esModule", { value: true }); exports.toFileUrl = exports.fromFileUrl = exports.parse = exports.format = exports.extname = exports.basename = exports.dirname = exports.toNamespacedPath = exports.relative = exports.join = exports.isAbsolute = exports.normalize = exports.resolve = exports.delimiter = exports.sep = void 0; // Copyright 2018-2023 the Deno authors. All rights reserved. MIT license. // Copyright the Browserify authors. MIT License. // Ported from https://github.com/browserify/path-browserify/ // This module is browser compatible. const dntShim = __importStar(require("../../../../_dnt.shims.js")); const _constants_js_1 = require("./_constants.js"); const _util_js_1 = require("./_util.js"); exports.sep = "/"; exports.delimiter = ":"; // path.resolve([from ...], to) /** * Resolves `pathSegments` into an absolute path. * @param pathSegments an array of path segments */ function resolve(...pathSegments) { let resolvedPath = ""; let resolvedAbsolute = false; for (let i = pathSegments.length - 1; i >= -1 && !resolvedAbsolute; i--) { let path; if (i >= 0) path = pathSegments[i]; else { // deno-lint-ignore no-explicit-any const { Deno } = dntShim.dntGlobalThis; if (typeof Deno?.cwd !== "function") { throw new TypeError("Resolved a relative path without a CWD."); } path = Deno.cwd(); } (0, _util_js_1.assertPath)(path); // Skip empty entries if (path.length === 0) { continue; } resolvedPath = `${path}/${resolvedPath}`; resolvedAbsolute = (0, _util_js_1.isPosixPathSeparator)(path.charCodeAt(0)); } // At this point the path should be resolved to a full absolute path, but // handle relative paths to be safe (might happen when process.cwd() fails) // Normalize the path resolvedPath = (0, _util_js_1.normalizeString)(resolvedPath, !resolvedAbsolute, "/", _util_js_1.isPosixPathSeparator); if (resolvedAbsolute) { if (resolvedPath.length > 0) return `/${resolvedPath}`; else return "/"; } else if (resolvedPath.length > 0) return resolvedPath; else return "."; } exports.resolve = resolve; /** * Normalize the `path`, resolving `'..'` and `'.'` segments. * Note that resolving these segments does not necessarily mean that all will be eliminated. * A `'..'` at the top-level will be preserved, and an empty path is canonically `'.'`. * @param path to be normalized */ function normalize(path) { (0, _util_js_1.assertPath)(path); if (path.length === 0) return "."; const isAbsolute = (0, _util_js_1.isPosixPathSeparator)(path.charCodeAt(0)); const trailingSeparator = (0, _util_js_1.isPosixPathSeparator)(path.charCodeAt(path.length - 1)); // Normalize the path path = (0, _util_js_1.normalizeString)(path, !isAbsolute, "/", _util_js_1.isPosixPathSeparator); if (path.length === 0 && !isAbsolute) path = "."; if (path.length > 0 && trailingSeparator) path += "/"; if (isAbsolute) return `/${path}`; return path; } exports.normalize = normalize; /** * Verifies whether provided path is absolute * @param path to be verified as absolute */ function isAbsolute(path) { (0, _util_js_1.assertPath)(path); return path.length > 0 && (0, _util_js_1.isPosixPathSeparator)(path.charCodeAt(0)); } exports.isAbsolute = isAbsolute; /** * Join all given a sequence of `paths`,then normalizes the resulting path. * @param paths to be joined and normalized */ function join(...paths) { if (paths.length === 0) return "."; let joined; for (let i = 0, len = paths.length; i < len; ++i) { const path = paths[i]; (0, _util_js_1.assertPath)(path); if (path.length > 0) { if (!joined) joined = path; else joined += `/${path}`; } } if (!joined) return "."; return normalize(joined); } exports.join = join; /** * Return the relative path from `from` to `to` based on current working directory. * @param from path in current working directory * @param to path in current working directory */ function relative(from, to) { (0, _util_js_1.assertPath)(from); (0, _util_js_1.assertPath)(to); if (from === to) return ""; from = resolve(from); to = resolve(to); if (from === to) return ""; // Trim any leading backslashes let fromStart = 1; const fromEnd = from.length; for (; fromStart < fromEnd; ++fromStart) { if (!(0, _util_js_1.isPosixPathSeparator)(from.charCodeAt(fromStart))) break; } const fromLen = fromEnd - fromStart; // Trim any leading backslashes let toStart = 1; const toEnd = to.length; for (; toStart < toEnd; ++toStart) { if (!(0, _util_js_1.isPosixPathSeparator)(to.charCodeAt(toStart))) break; } const toLen = toEnd - toStart; // Compare paths to find the longest common path from root const length = fromLen < toLen ? fromLen : toLen; let lastCommonSep = -1; let i = 0; for (; i <= length; ++i) { if (i === length) { if (toLen > length) { if ((0, _util_js_1.isPosixPathSeparator)(to.charCodeAt(toStart + i))) { // We get here if `from` is the exact base path for `to`. // For example: from='/foo/bar'; to='/foo/bar/baz' return to.slice(toStart + i + 1); } else if (i === 0) { // We get here if `from` is the root // For example: from='/'; to='/foo' return to.slice(toStart + i); } } else if (fromLen > length) { if ((0, _util_js_1.isPosixPathSeparator)(from.charCodeAt(fromStart + i))) { // We get here if `to` is the exact base path for `from`. // For example: from='/foo/bar/baz'; to='/foo/bar' lastCommonSep = i; } else if (i === 0) { // We get here if `to` is the root. // For example: from='/foo'; to='/' lastCommonSep = 0; } } break; } const fromCode = from.charCodeAt(fromStart + i); const toCode = to.charCodeAt(toStart + i); if (fromCode !== toCode) break; else if ((0, _util_js_1.isPosixPathSeparator)(fromCode)) lastCommonSep = i; } let out = ""; // Generate the relative path based on the path difference between `to` // and `from` for (i = fromStart + lastCommonSep + 1; i <= fromEnd; ++i) { if (i === fromEnd || (0, _util_js_1.isPosixPathSeparator)(from.charCodeAt(i))) { if (out.length === 0) out += ".."; else out += "/.."; } } // Lastly, append the rest of the destination (`to`) path that comes after // the common path parts if (out.length > 0) return out + to.slice(toStart + lastCommonSep); else { toStart += lastCommonSep; if ((0, _util_js_1.isPosixPathSeparator)(to.charCodeAt(toStart))) ++toStart; return to.slice(toStart); } } exports.relative = relative; /** * Resolves path to a namespace path * @param path to resolve to namespace */ function toNamespacedPath(path) { // Non-op on posix systems return path; } exports.toNamespacedPath = toNamespacedPath; /** * Return the directory path of a `path`. * @param path - path to extract the directory from. */ function dirname(path) { if (path.length === 0) return "."; let end = -1; let matchedNonSeparator = false; for (let i = path.length - 1; i >= 1; --i) { if ((0, _util_js_1.isPosixPathSeparator)(path.charCodeAt(i))) { if (matchedNonSeparator) { end = i; break; } } else { matchedNonSeparator = true; } } // No matches. Fallback based on provided path: // // - leading slashes paths // "/foo" => "/" // "///foo" => "/" // - no slash path // "foo" => "." if (end === -1) { return (0, _util_js_1.isPosixPathSeparator)(path.charCodeAt(0)) ? "/" : "."; } return (0, _util_js_1.stripTrailingSeparators)(path.slice(0, end), _util_js_1.isPosixPathSeparator); } exports.dirname = dirname; /** * Return the last portion of a `path`. * Trailing directory separators are ignored, and optional suffix is removed. * * @param path - path to extract the name from. * @param [suffix] - suffix to remove from extracted name. */ function basename(path, suffix = "") { (0, _util_js_1.assertPath)(path); if (path.length === 0) return path; if (typeof suffix !== "string") { throw new TypeError(`Suffix must be a string. Received ${JSON.stringify(suffix)}`); } const lastSegment = (0, _util_js_1.lastPathSegment)(path, _util_js_1.isPosixPathSeparator); const strippedSegment = (0, _util_js_1.stripTrailingSeparators)(lastSegment, _util_js_1.isPosixPathSeparator); return suffix ? (0, _util_js_1.stripSuffix)(strippedSegment, suffix) : strippedSegment; } exports.basename = basename; /** * Return the extension of the `path` with leading period. * @param path with extension * @returns extension (ex. for `file.ts` returns `.ts`) */ function extname(path) { (0, _util_js_1.assertPath)(path); let startDot = -1; let startPart = 0; let end = -1; let matchedSlash = true; // Track the state of characters (if any) we see before our first dot and // after any path separator we find let preDotState = 0; for (let i = path.length - 1; i >= 0; --i) { const code = path.charCodeAt(i); if ((0, _util_js_1.isPosixPathSeparator)(code)) { // If we reached a path separator that was not part of a set of path // separators at the end of the string, stop now if (!matchedSlash) { startPart = i + 1; break; } continue; } if (end === -1) { // We saw the first non-path separator, mark this as the end of our // extension matchedSlash = false; end = i + 1; } if (code === _constants_js_1.CHAR_DOT) { // If this is our first dot, mark it as the start of our extension if (startDot === -1) startDot = i; else if (preDotState !== 1) preDotState = 1; } else if (startDot !== -1) { // We saw a non-dot and non-path separator before our dot, so we should // have a good chance at having a non-empty extension preDotState = -1; } } if (startDot === -1 || end === -1 || // We saw a non-dot character immediately before the dot preDotState === 0 || // The (right-most) trimmed path component is exactly '..' (preDotState === 1 && startDot === end - 1 && startDot === startPart + 1)) { return ""; } return path.slice(startDot, end); } exports.extname = extname; /** * Generate a path from `FormatInputPathObject` object. * @param pathObject with path */ function format(pathObject) { if (pathObject === null || typeof pathObject !== "object") { throw new TypeError(`The "pathObject" argument must be of type Object. Received type ${typeof pathObject}`); } return (0, _util_js_1._format)("/", pathObject); } exports.format = format; /** * Return a `ParsedPath` object of the `path`. * @param path to process */ function parse(path) { (0, _util_js_1.assertPath)(path); const ret = { root: "", dir: "", base: "", ext: "", name: "" }; if (path.length === 0) return ret; const isAbsolute = (0, _util_js_1.isPosixPathSeparator)(path.charCodeAt(0)); let start; if (isAbsolute) { ret.root = "/"; start = 1; } else { start = 0; } let startDot = -1; let startPart = 0; let end = -1; let matchedSlash = true; let i = path.length - 1; // Track the state of characters (if any) we see before our first dot and // after any path separator we find let preDotState = 0; // Get non-dir info for (; i >= start; --i) { const code = path.charCodeAt(i); if ((0, _util_js_1.isPosixPathSeparator)(code)) { // If we reached a path separator that was not part of a set of path // separators at the end of the string, stop now if (!matchedSlash) { startPart = i + 1; break; } continue; } if (end === -1) { // We saw the first non-path separator, mark this as the end of our // extension matchedSlash = false; end = i + 1; } if (code === _constants_js_1.CHAR_DOT) { // If this is our first dot, mark it as the start of our extension if (startDot === -1) startDot = i; else if (preDotState !== 1) preDotState = 1; } else if (startDot !== -1) { // We saw a non-dot and non-path separator before our dot, so we should // have a good chance at having a non-empty extension preDotState = -1; } } if (startDot === -1 || end === -1 || // We saw a non-dot character immediately before the dot preDotState === 0 || // The (right-most) trimmed path component is exactly '..' (preDotState === 1 && startDot === end - 1 && startDot === startPart + 1)) { if (end !== -1) { if (startPart === 0 && isAbsolute) { ret.base = ret.name = path.slice(1, end); } else { ret.base = ret.name = path.slice(startPart, end); } } // Fallback to '/' in case there is no basename ret.base = ret.base || "/"; } else { if (startPart === 0 && isAbsolute) { ret.name = path.slice(1, startDot); ret.base = path.slice(1, end); } else { ret.name = path.slice(startPart, startDot); ret.base = path.slice(startPart, end); } ret.ext = path.slice(startDot, end); } if (startPart > 0) { ret.dir = (0, _util_js_1.stripTrailingSeparators)(path.slice(0, startPart - 1), _util_js_1.isPosixPathSeparator); } else if (isAbsolute) ret.dir = "/"; return ret; } exports.parse = parse; /** * Converts a file URL to a path string. * * ```ts * import { fromFileUrl } from "https://deno.land/std@$STD_VERSION/path/posix.ts"; * fromFileUrl("file:///home/foo"); // "/home/foo" * ``` * @param url of a file URL */ function fromFileUrl(url) { url = url instanceof URL ? url : new URL(url); if (url.protocol != "file:") { throw new TypeError("Must be a file URL."); } return decodeURIComponent(url.pathname.replace(/%(?![0-9A-Fa-f]{2})/g, "%25")); } exports.fromFileUrl = fromFileUrl; /** * Converts a path string to a file URL. * * ```ts * import { toFileUrl } from "https://deno.land/std@$STD_VERSION/path/posix.ts"; * toFileUrl("/home/foo"); // new URL("file:///home/foo") * ``` * @param path to convert to file URL */ function toFileUrl(path) { if (!isAbsolute(path)) { throw new TypeError("Must be an absolute path."); } const url = new URL("file:///"); url.pathname = (0, _util_js_1.encodeWhitespace)(path.replace(/%/g, "%25").replace(/\\/g, "%5C")); return url; } exports.toFileUrl = toFileUrl;