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MIT License http://www.opensource.org/licenses/mit-license.php
Author Tobias Koppers @sokra
*/
"use strict";
const path = require("path");
const { fileURLToPath } = require("url");
const CHAR_HASH = "#".charCodeAt(0);
const CHAR_SLASH = "/".charCodeAt(0);
const CHAR_BACKSLASH = "\\".charCodeAt(0);
const CHAR_A = "A".charCodeAt(0);
const CHAR_Z = "Z".charCodeAt(0);
const CHAR_LOWER_A = "a".charCodeAt(0);
const CHAR_LOWER_Z = "z".charCodeAt(0);
const CHAR_DOT = ".".charCodeAt(0);
const CHAR_COLON = ":".charCodeAt(0);
const posixNormalize = path.posix.normalize;
const winNormalize = path.win32.normalize;
/**
* @enum {number}
*/
const PathType = Object.freeze({
Empty: 0,
Normal: 1,
Relative: 2,
AbsoluteWin: 3,
AbsolutePosix: 4,
Internal: 5,
});
const deprecatedInvalidSegmentRegEx =
/(^|\\|\/)((\.|%2e)(\.|%2e)?|(n|%6e|%4e)(o|%6f|%4f)(d|%64|%44)(e|%65|%45)(_|%5f)(m|%6d|%4d)(o|%6f|%4f)(d|%64|%44)(u|%75|%55)(l|%6c|%4c)(e|%65|%45)(s|%73|%53))(\\|\/|$)/i;
const invalidSegmentRegEx =
/(^|\\|\/)((\.|%2e)(\.|%2e)?|(n|%6e|%4e)(o|%6f|%4f)(d|%64|%44)(e|%65|%45)(_|%5f)(m|%6d|%4d)(o|%6f|%4f)(d|%64|%44)(u|%75|%55)(l|%6c|%4c)(e|%65|%45)(s|%73|%53))?(\\|\/|$)/i;
/**
* @param {string} maybePath a path
* @returns {PathType} type of path
*/
const getType = (maybePath) => {
switch (maybePath.length) {
case 0:
return PathType.Empty;
case 1: {
const c0 = maybePath.charCodeAt(0);
switch (c0) {
case CHAR_DOT:
return PathType.Relative;
case CHAR_SLASH:
return PathType.AbsolutePosix;
case CHAR_HASH:
return PathType.Internal;
}
return PathType.Normal;
}
case 2: {
const c0 = maybePath.charCodeAt(0);
switch (c0) {
case CHAR_DOT: {
const c1 = maybePath.charCodeAt(1);
switch (c1) {
case CHAR_DOT:
case CHAR_SLASH:
return PathType.Relative;
}
return PathType.Normal;
}
case CHAR_SLASH:
return PathType.AbsolutePosix;
case CHAR_HASH:
return PathType.Internal;
}
const c1 = maybePath.charCodeAt(1);
if (
c1 === CHAR_COLON &&
((c0 >= CHAR_A && c0 <= CHAR_Z) ||
(c0 >= CHAR_LOWER_A && c0 <= CHAR_LOWER_Z))
) {
return PathType.AbsoluteWin;
}
if (c0 === CHAR_BACKSLASH && c1 === CHAR_BACKSLASH) {
return PathType.AbsoluteWin;
}
return PathType.Normal;
}
}
const c0 = maybePath.charCodeAt(0);
switch (c0) {
case CHAR_DOT: {
const c1 = maybePath.charCodeAt(1);
switch (c1) {
case CHAR_SLASH:
return PathType.Relative;
case CHAR_DOT: {
const c2 = maybePath.charCodeAt(2);
if (c2 === CHAR_SLASH) return PathType.Relative;
return PathType.Normal;
}
}
return PathType.Normal;
}
case CHAR_SLASH:
return PathType.AbsolutePosix;
case CHAR_HASH:
return PathType.Internal;
}
const c1 = maybePath.charCodeAt(1);
if (c1 === CHAR_COLON) {
const c2 = maybePath.charCodeAt(2);
if (
(c2 === CHAR_BACKSLASH || c2 === CHAR_SLASH) &&
((c0 >= CHAR_A && c0 <= CHAR_Z) ||
(c0 >= CHAR_LOWER_A && c0 <= CHAR_LOWER_Z))
) {
return PathType.AbsoluteWin;
}
}
// Two leading backslashes root a UNC share (`\\server\share`) or a DOS
// device path (`\\?\…`, `\\.\…`); `path.win32` reads either as absolute,
// so both belong on `path.win32` and not on posix.
if (c0 === CHAR_BACKSLASH && c1 === CHAR_BACKSLASH) {
return PathType.AbsoluteWin;
}
return PathType.Normal;
};
/**
* @param {string} maybePath a path
* @returns {string} the normalized path
*/
const normalize = (maybePath) => {
switch (getType(maybePath)) {
case PathType.Empty:
return maybePath;
case PathType.AbsoluteWin:
return winNormalize(maybePath);
case PathType.Relative: {
const r = posixNormalize(maybePath);
return getType(r) === PathType.Relative ? r : `./${r}`;
}
}
return posixNormalize(maybePath);
};
/**
* @param {string} rootPath the root path
* @param {string | undefined} request the request path
* @returns {string} the joined path
*/
const join = (rootPath, request) => {
if (!request) return normalize(rootPath);
const requestType = getType(request);
switch (requestType) {
case PathType.AbsolutePosix:
return posixNormalize(request);
case PathType.AbsoluteWin:
return winNormalize(request);
}
switch (getType(rootPath)) {
case PathType.Normal:
case PathType.Relative:
case PathType.AbsolutePosix:
return posixNormalize(`${rootPath}/${request}`);
case PathType.AbsoluteWin:
return winNormalize(`${rootPath}\\${request}`);
}
switch (requestType) {
case PathType.Empty:
return rootPath;
case PathType.Relative: {
const r = posixNormalize(rootPath);
return getType(r) === PathType.Relative ? r : `./${r}`;
}
}
return posixNormalize(rootPath);
};
/**
* @param {string} maybePath a path
* @returns {string} the directory name
*/
const dirname = (maybePath) => {
switch (getType(maybePath)) {
case PathType.AbsoluteWin:
return path.win32.dirname(maybePath);
}
return path.posix.dirname(maybePath);
};
/** @typedef {{ fn: (rootPath: string, request: string) => string, cache: Map<string, Map<string, string | undefined>> }} CachedJoin */
/**
* @returns {CachedJoin} cached join
*/
const createCachedJoin = () => {
/** @type {CachedJoin["cache"]} */
const cache = new Map();
/** @type {CachedJoin["fn"]} */
const fn = (rootPath, request) => {
/** @type {string | undefined} */
let cacheEntry;
let inner = cache.get(rootPath);
if (inner === undefined) {
cache.set(rootPath, (inner = new Map()));
} else {
cacheEntry = inner.get(request);
if (cacheEntry !== undefined) return cacheEntry;
}
cacheEntry = join(rootPath, request);
inner.set(request, cacheEntry);
return cacheEntry;
};
return { fn, cache };
};
/** @typedef {{ fn: (maybePath: string) => string, cache: Map<string, string> }} CachedDirname */
/**
* @returns {CachedDirname} cached dirname
*/
const createCachedDirname = () => {
/** @type {CachedDirname["cache"]} */
const cache = new Map();
/** @type {CachedDirname["fn"]} */
const fn = (maybePath) => {
const cacheEntry = cache.get(maybePath);
if (cacheEntry !== undefined) return cacheEntry;
const result = dirname(maybePath);
cache.set(maybePath, result);
return result;
};
return { fn, cache };
};
/** @typedef {{ fn: (maybePath: string, suffix?: string) => string, cache: Map<string, Map<string | undefined, string | undefined>> }} CachedBasename */
/**
* @returns {CachedBasename} cached basename
*/
const createCachedBasename = () => {
/** @type {CachedBasename["cache"]} */
const cache = new Map();
/** @type {CachedBasename["fn"]} */
const fn = (maybePath, suffix) => {
/** @type {string | undefined} */
let cacheEntry;
let inner = cache.get(maybePath);
if (inner === undefined) {
cache.set(maybePath, (inner = new Map()));
} else {
cacheEntry = inner.get(suffix);
if (cacheEntry !== undefined) return cacheEntry;
}
cacheEntry = path.basename(maybePath, suffix);
inner.set(suffix, cacheEntry);
return cacheEntry;
};
return { fn, cache };
};
/**
* Whether `request` is a relative request — i.e. matches `^\.\.?(?:\/|$)`.
*
* This is called on every `doResolve` via `UnsafeCachePlugin` and
* `getInnerRequest`, so the char-code form is meaningfully faster than the
* equivalent regex test: no regex state machine, no string object churn.
* @param {string} request request string
* @returns {boolean} true if request is relative
*/
const isRelativeRequest = (request) => {
const len = request.length;
if (len === 0 || request.charCodeAt(0) !== CHAR_DOT) return false;
if (len === 1) return true; // "."
const c1 = request.charCodeAt(1);
if (c1 === CHAR_SLASH) return true; // "./..."
if (c1 !== CHAR_DOT) return false; // ".x..."
if (len === 2) return true; // ".."
return request.charCodeAt(2) === CHAR_SLASH; // "../..."
};
/**
* Whether this is a Windows path, in which `/` and `\` are interchangeable and
* paths compare case-insensitively, as opposed to a posix path, in which `\` is
* an ordinary filename character. Decided by the root — a drive letter or a
* leading `\` — which is where `path.win32` and `path.posix` disagree about
* `parse(maybePath).root`, and never by the host platform, since Windows paths
* are resolved on posix hosts and in browsers too. A path starting with `//`
* stays posix: `path.win32` reads it as a UNC root, but here it cannot be told
* apart from a posix path, where `\` has to keep being a filename character.
* @param {string} maybePath a path
* @returns {boolean} true, when the path is a Windows path
*/
const isWindowsPath = (maybePath) => {
const c0 = maybePath.charCodeAt(0);
if (c0 === CHAR_BACKSLASH) return true;
if (maybePath.charCodeAt(1) !== CHAR_COLON) return false;
return (
(c0 >= CHAR_A && c0 <= CHAR_Z) || (c0 >= CHAR_LOWER_A && c0 <= CHAR_LOWER_Z)
);
};
/**
* @param {number} charCode a char code
* @param {boolean} windowsPath whether `\` separates segments
* @returns {boolean} true, when the char code separates path segments
*/
const isSeparator = (charCode, windowsPath) =>
charCode === CHAR_SLASH || (windowsPath && charCode === CHAR_BACKSLASH);
/**
* @param {string} parentPath parent directory path
* @param {boolean} windowsPath whether `parentPath` is a Windows path
* @returns {number} length of `parentPath` without its trailing separators
*/
const parentPathLength = (parentPath, windowsPath) => {
let end = parentPath.length;
while (end > 0 && isSeparator(parentPath.charCodeAt(end - 1), windowsPath)) {
end--;
}
return end;
};
/**
* Cold path of `startsWithPath`: Node lowercases whole paths rather than single
* characters, which only makes a difference outside of ASCII.
* @param {string} parentPath parent directory path
* @param {number} length number of characters to compare
* @param {string} childPath child path to check
* @returns {boolean} true, when both prefixes name the same Windows path
*/
const equalsWindowsPrefix = (parentPath, length, childPath) =>
childPath.slice(0, length).replace(/\//g, "\\").toLowerCase() ===
parentPath.slice(0, length).replace(/\//g, "\\").toLowerCase();
/**
* @param {string} parentPath parent directory path
* @param {number} length number of characters of `parentPath` to compare
* @param {string} childPath child path to check
* @param {boolean} windowsPath whether `parentPath` is a Windows path
* @returns {boolean} true, when `childPath` starts with that prefix
*/
const startsWithPath = (parentPath, length, childPath, windowsPath) => {
if (childPath.length < length) return false;
// The common case is an exact prefix of a parent without trailing
// separators, which `startsWith` answers natively and without a slice. For
// a posix parent that is the whole answer, only a Windows one has more
// spellings of the same path to try.
if (length === parentPath.length) {
if (childPath.startsWith(parentPath)) return true;
if (!windowsPath) return false;
}
for (let i = 0; i < length; i++) {
const childCharCode = childPath.charCodeAt(i);
const parentCharCode = parentPath.charCodeAt(i);
if (childCharCode === parentCharCode) continue;
if (!windowsPath) return false;
// Windows mixes `/` and `\` freely and compares case-insensitively.
if (isSeparator(childCharCode, true) && isSeparator(parentCharCode, true)) {
continue;
}
if (childCharCode > 127 || parentCharCode > 127) {
return equalsWindowsPrefix(parentPath, length, childPath);
}
const childLower =
childCharCode >= CHAR_A && childCharCode <= CHAR_Z
? childCharCode + 32
: childCharCode;
const parentLower =
parentCharCode >= CHAR_A && parentCharCode <= CHAR_Z
? parentCharCode + 32
: parentCharCode;
if (childLower !== parentLower) return false;
}
return true;
};
/**
* Whether childPath is parentPath itself or a path under it, the answer node's
* `relative(parentPath, childPath)` gives: not escaping upward and not
* absolute. A trailing separator on the parent is not part of the boundary, so
* `/a/b/` contains exactly what `/a/b` contains.
* @param {string} parentPath parent directory path
* @param {string} childPath child path to check
* @returns {boolean} true if childPath is parentPath or is under it
*/
const isInside = (parentPath, childPath) => {
const windowsPath = isWindowsPath(parentPath);
const length = parentPathLength(parentPath, windowsPath);
if (!startsWithPath(parentPath, length, childPath, windowsPath)) return false;
// The parent itself, or a segment boundary right after it so that `/a/b`
// does not contain the sibling `/a/b-other`.
return (
childPath.length === length ||
isSeparator(childPath.charCodeAt(length), windowsPath)
);
};
/**
* Check if childPath is a subdirectory of parentPath. Compares like `isInside`,
* except that a path is not a subpath of itself.
*
* Called from `TsconfigPathsPlugin._selectPathsDataForContext` inside a loop
* over every tsconfig-paths context on every resolve, so it's worth keeping
* cheap: a native `startsWith` plus a separator char check answers it, and the
* character loop only runs for a Windows path that the prefix test missed.
* @param {string} parentPath parent directory path
* @param {string} childPath child path to check
* @returns {boolean} true if childPath is under parentPath
*/
const isSubPath = (parentPath, childPath) => {
const windowsPath = isWindowsPath(parentPath);
const length = parentPathLength(parentPath, windowsPath);
if (childPath.length <= length) return false;
if (!startsWithPath(parentPath, length, childPath, windowsPath)) return false;
return isSeparator(childPath.charCodeAt(length), windowsPath);
};
/**
* Convert a `file:` `URL` instance to a filesystem path; any other input
* (including plain strings) is returned unchanged. Mirrors Node's `fs`, which
* treats strings as literal paths and only `URL` objects as URLs (see
* nodejs/node#17658) — so a directory literally named `file:` is never
* mistaken for a URL.
* @param {string | URL} maybeURL a path string or a `file:` `URL` instance
* @returns {string} a filesystem path
*/
const toPath = (maybeURL) =>
maybeURL instanceof URL ? fileURLToPath(maybeURL) : maybeURL;
module.exports.PathType = PathType;
module.exports.createCachedBasename = createCachedBasename;
module.exports.createCachedDirname = createCachedDirname;
module.exports.createCachedJoin = createCachedJoin;
module.exports.deprecatedInvalidSegmentRegEx = deprecatedInvalidSegmentRegEx;
module.exports.dirname = dirname;
module.exports.getType = getType;
module.exports.invalidSegmentRegEx = invalidSegmentRegEx;
module.exports.isInside = isInside;
module.exports.isRelativeRequest = isRelativeRequest;
module.exports.isSubPath = isSubPath;
module.exports.isWindowsPath = isWindowsPath;
module.exports.join = join;
module.exports.normalize = normalize;
module.exports.toPath = toPath;
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