Files
bare-operating-system/kernel/lib/bare/bundles/bareUtils.js
T
Raven Scott 9bdecc4170
Release rolling / release (push) Successful in 11m16s
Sync Holepunch modules to current clone/npm latest
Bump published pins (compact-encoding 3, bare-fetch/tls/https/ws 3,
bare-subprocess 6, bare-signals 5, corestore 7.12, protomux 3.11,
hypercore-crypto 3.7, bare-runtime 1.31) and regenerate catalogs,
manifests, and kernel/seeder bundles.

Adapt call sites to the new APIs:
- Corestore: explicit session flush before suspend(); treeCache ctor opts
- bare-crypto: KeyObject.export() instead of removed ._key
- Protomux 3.11: wait for fullyOpened()/fullyClosed() on chat channels
- bare-fetch: surface response.type and Headers.getSetCookie
- host snapshots: bare-os 3.9 / bare-posix / bare-fs.statfs frsize
- bare-subprocess 6: optional IPC channel + json serialization

Keep catalog sync from wiping curated pearEntries. Teach the Node test
shim to stub bare-thread/bare-worker (ESM absolute paths) and chain
Bare.on so bare-timers can load. Booter 479, protocol 34, seeder 14.
2026-08-12 20:56:28 -04:00

9826 lines
332 KiB
JavaScript

var __bare_os_bundle_exports__ = (() => {
var __create = Object.create;
var __defProp = Object.defineProperty;
var __getOwnPropDesc = Object.getOwnPropertyDescriptor;
var __getOwnPropNames = Object.getOwnPropertyNames;
var __getProtoOf = Object.getPrototypeOf;
var __hasOwnProp = Object.prototype.hasOwnProperty;
var __require = /* @__PURE__ */ ((x) => typeof require !== "undefined" ? require : typeof Proxy !== "undefined" ? new Proxy(x, {
get: (a, b) => (typeof require !== "undefined" ? require : a)[b]
}) : x)(function(x) {
if (typeof require !== "undefined") return require.apply(this, arguments);
throw Error('Dynamic require of "' + x + '" is not supported');
});
var __commonJS = (cb, mod) => function __require2() {
return mod || (0, cb[__getOwnPropNames(cb)[0]])((mod = { exports: {} }).exports, mod), mod.exports;
};
var __export = (target, all) => {
for (var name in all)
__defProp(target, name, { get: all[name], enumerable: true });
};
var __copyProps = (to, from, except, desc) => {
if (from && typeof from === "object" || typeof from === "function") {
for (let key of __getOwnPropNames(from))
if (!__hasOwnProp.call(to, key) && key !== except)
__defProp(to, key, { get: () => from[key], enumerable: !(desc = __getOwnPropDesc(from, key)) || desc.enumerable });
}
return to;
};
var __toESM = (mod, isNodeMode, target) => (target = mod != null ? __create(__getProtoOf(mod)) : {}, __copyProps(
// If the importer is in node compatibility mode or this is not an ESM
// file that has been converted to a CommonJS file using a Babel-
// compatible transform (i.e. "__esModule" has not been set), then set
// "default" to the CommonJS "module.exports" for node compatibility.
isNodeMode || !mod || !mod.__esModule ? __defProp(target, "default", { value: mod, enumerable: true }) : target,
mod
));
var __toCommonJS = (mod) => __copyProps(__defProp({}, "__esModule", { value: true }), mod);
// ../../node_modules/bare-encoding/lib/utf8-decoder.js
var require_utf8_decoder = __commonJS({
"../../node_modules/bare-encoding/lib/utf8-decoder.js"(exports, module) {
module.exports = class UTF8Decoder {
constructor() {
this.codePoint = 0;
this.bytesSeen = 0;
this.bytesNeeded = 0;
this.lowerBoundary = 128;
this.upperBoundary = 191;
}
get remaining() {
return this.bytesSeen;
}
decode(data) {
if (ArrayBuffer.isView(data)) {
data = Buffer.from(data.buffer, data.byteOffset, data.byteLength);
} else {
data = Buffer.from(data);
}
if (this.bytesNeeded === 0) {
let isBoundary = true;
for (let i = Math.max(0, data.byteLength - 4), n = data.byteLength; i < n && isBoundary; i++) {
isBoundary = data[i] <= 127;
}
if (isBoundary) return data.toString("utf8");
}
let result = "";
for (let i = 0, n = data.byteLength; i < n; i++) {
const byte = data[i];
if (this.bytesNeeded === 0) {
if (byte <= 127) {
this.bytesSeen = 0;
result += String.fromCharCode(byte);
} else {
this.bytesSeen = 1;
if (byte >= 194 && byte <= 223) {
this.bytesNeeded = 2;
this.codePoint = byte & 31;
} else if (byte >= 224 && byte <= 239) {
if (byte === 224) this.lowerBoundary = 160;
else if (byte === 237) this.upperBoundary = 159;
this.bytesNeeded = 3;
this.codePoint = byte & 15;
} else if (byte >= 240 && byte <= 244) {
if (byte === 240) this.lowerBoundary = 144;
if (byte === 244) this.upperBoundary = 143;
this.bytesNeeded = 4;
this.codePoint = byte & 7;
} else {
result += "\uFFFD";
}
}
continue;
}
if (byte < this.lowerBoundary || byte > this.upperBoundary) {
this.codePoint = 0;
this.bytesNeeded = 0;
this.bytesSeen = 0;
this.lowerBoundary = 128;
this.upperBoundary = 191;
result += "\uFFFD";
i--;
continue;
}
this.lowerBoundary = 128;
this.upperBoundary = 191;
this.codePoint = this.codePoint << 6 | byte & 63;
this.bytesSeen++;
if (this.bytesSeen !== this.bytesNeeded) continue;
result += String.fromCodePoint(this.codePoint);
this.codePoint = 0;
this.bytesNeeded = 0;
this.bytesSeen = 0;
}
return result;
}
flush() {
const result = this.bytesNeeded > 0 ? "\uFFFD" : "";
this.codePoint = 0;
this.bytesNeeded = 0;
this.bytesSeen = 0;
this.lowerBoundary = 128;
this.upperBoundary = 191;
return result;
}
};
}
});
// ../../node_modules/bare-encoding/lib/pass-through-decoder.js
var require_pass_through_decoder = __commonJS({
"../../node_modules/bare-encoding/lib/pass-through-decoder.js"(exports, module) {
module.exports = class PassThroughDecoder {
constructor(encoding) {
this.encoding = encoding;
}
get remaining() {
return 0;
}
decode(data) {
if (ArrayBuffer.isView(data)) {
data = Buffer.from(data.buffer, data.byteOffset, data.byteLength);
} else {
data = Buffer.from(data);
}
return data.toString(this.encoding);
}
flush() {
return "";
}
};
}
});
// ../../node_modules/bare-encoding/lib/errors.js
var require_errors = __commonJS({
"../../node_modules/bare-encoding/lib/errors.js"(exports, module) {
module.exports = class EncodingError extends Error {
constructor(msg, code, fn = EncodingError) {
super(`${code}: ${msg}`);
this.code = code;
if (Error.captureStackTrace) {
Error.captureStackTrace(this, fn);
}
}
get name() {
return "EncodingError";
}
static INVALID_LABEL(msg) {
return new EncodingError(msg, "INVALID_LABEL", EncodingError.INVALID_LABEL);
}
};
}
});
// ../../node_modules/bare-encoding/index.js
var require_bare_encoding = __commonJS({
"../../node_modules/bare-encoding/index.js"(exports) {
var UTF8Decoder = require_utf8_decoder();
var PassThroughDecoder = require_pass_through_decoder();
var errors = require_errors();
exports.TextEncoder = class TextEncoder {
// https://encoding.spec.whatwg.org/#dom-textencoder-encoding
get encoding() {
return "utf-8";
}
// https://encoding.spec.whatwg.org/#dom-textencoder-encode
encode(input) {
return Buffer.from(input);
}
// https://encoding.spec.whatwg.org/#dom-textencoder-encodeinto
encodeInto(input, destination) {
if (ArrayBuffer.isView(destination)) {
destination = Buffer.from(
destination.buffer,
destination.byteOffset,
destination.byteLength
);
} else {
destination = Buffer.from(destination);
}
return {
read: input.length,
written: destination.write(input)
};
}
};
exports.TextDecoder = class TextDecoder {
// https://encoding.spec.whatwg.org/#dom-textdecoder
constructor(label = "utf-8") {
this.encoding = getEncoding(label);
switch (this.encoding) {
case "utf-8":
this.decoder = new UTF8Decoder();
break;
default:
this.decoder = new PassThroughDecoder(this.encoding);
break;
}
}
// https://encoding.spec.whatwg.org/#dom-textdecoder-decode
decode(input, options = {}) {
const result = this.decoder.decode(input);
if (options.stream) return result;
return result + this.decoder.flush();
}
};
function getEncoding(label) {
switch (label.trim().toLowerCase()) {
case "unicode-1-1-utf-8":
case "unicode11utf8":
case "unicode11utf8":
case "unicode20utf8":
case "utf-8":
case "utf8":
case "x-unicode20utf8":
return "utf-8";
default:
throw errors.INVALID_LABEL(`The label '${label}' is not a valid encoding`);
}
}
}
});
// ../../node_modules/bare-os/binding.js
var require_binding = __commonJS({
"../../node_modules/bare-os/binding.js"(exports, module) {
module.exports = __require.addon();
}
});
// ../../node_modules/bare-os/lib/errors.js
var require_errors2 = __commonJS({
"../../node_modules/bare-os/lib/errors.js"(exports, module) {
module.exports = class OSError extends Error {
constructor(msg, fn = OSError, code = fn.name) {
super(`${code}: ${msg}`);
this.code = code;
if (Error.captureStackTrace) {
Error.captureStackTrace(this, fn);
}
}
get name() {
return "OSError";
}
static UNKNOWN_SIGNAL(msg) {
return new OSError(msg, OSError.UNKNOWN_SIGNAL);
}
static TITLE_OVERFLOW(msg) {
return new OSError(msg, OSError.TITLE_OVERFLOW);
}
};
}
});
// ../../node_modules/bare-os/lib/constants.js
var require_constants = __commonJS({
"../../node_modules/bare-os/lib/constants.js"(exports, module) {
var binding = require_binding();
module.exports = {
signals: binding.signals,
errnos: binding.errnos,
priority: binding.priority
};
}
});
// ../../node_modules/bare-os/index.js
var require_bare_os = __commonJS({
"../../node_modules/bare-os/index.js"(exports) {
var binding = require_binding();
var errors = require_errors2();
var constants = require_constants();
exports.constants = constants;
exports.errors = errors;
exports.EOL = binding.platform === "win32" ? "\r\n" : "\n";
exports.devNull = binding.platform === "win32" ? "\\\\.\\nul" : "/dev/null";
exports.platform = function platform() {
return binding.platform;
};
exports.arch = function arch() {
return binding.arch;
};
exports.type = function type() {
return binding.type();
};
exports.version = function version() {
return binding.version();
};
exports.release = function release() {
return binding.release();
};
exports.machine = function machine() {
return binding.machine();
};
exports.execPath = function execPath() {
return binding.execPath();
};
exports.pid = function pid() {
return binding.pid();
};
exports.ppid = function ppid() {
return binding.ppid();
};
exports.cwd = function cwd() {
return binding.cwd();
};
exports.chdir = function chdir(dir) {
validateString(dir, "Directory");
binding.chdir(dir);
};
exports.tmpdir = function tmpdir() {
return binding.tmpdir();
};
exports.homedir = function homedir() {
return binding.homedir();
};
exports.hostname = function hostname() {
return binding.hostname();
};
exports.userInfo = function userInfo(uid) {
if (uid !== void 0) validateInteger(uid, "User ID");
return binding.userInfo(uid);
};
exports.groupInfo = function groupInfo(gid) {
if (gid !== void 0) validateInteger(gid, "Group ID");
return binding.groupInfo(gid);
};
exports.networkInterfaces = function networkInterfaces() {
const result = {};
for (const entry of binding.networkInterfaces()) {
const { name, ...properties } = entry;
if (result[name]) result[name].push(properties);
else result[name] = [properties];
}
return result;
};
exports.kill = function kill(pid, signal = constants.signals.SIGTERM) {
validateInteger(pid, "Process ID");
if (typeof signal === "string") {
if (signal in constants.signals === false) {
throw errors.UNKNOWN_SIGNAL("Unknown signal: " + signal);
}
signal = constants.signals[signal];
} else {
validateInteger(signal, "Signal");
}
binding.kill(pid, signal);
};
exports.endianness = function endianness() {
return binding.isLittleEndian ? "LE" : "BE";
};
exports.availableParallelism = function availableParallelism() {
return binding.availableParallelism();
};
exports.cpuUsage = function cpuUsage(previous) {
const current = binding.cpuUsage();
if (previous) {
return {
user: current.user - previous.user,
system: current.system - previous.system
};
}
return current;
};
exports.threadCpuUsage = function threadCpuUsage(previous) {
const current = binding.threadCpuUsage();
if (previous) {
return {
user: current.user - previous.user,
system: current.system - previous.system
};
}
return current;
};
exports.resourceUsage = function resourceUsage() {
return binding.resourceUsage();
};
exports.memoryUsage = function memoryUsage() {
return binding.memoryUsage();
};
exports.freemem = function freemem() {
return binding.freemem();
};
exports.totalmem = function totalmem() {
return binding.totalmem();
};
exports.availableMemory = function availableMemory() {
return binding.availableMemory();
};
exports.constrainedMemory = function constrainedMemory() {
return binding.constrainedMemory();
};
exports.uptime = function uptime() {
return binding.uptime();
};
exports.loadavg = function loadavg() {
return binding.loadavg();
};
exports.cpus = function cpus() {
return binding.cpus();
};
exports.getProcessTitle = function getProcessTitle() {
return binding.getProcessTitle();
};
exports.setProcessTitle = function setProcessTitle(title) {
if (typeof title !== "string") title = title.toString();
if (title.length >= 256) {
throw errors.TITLE_OVERFLOW("Process title is too long");
}
binding.setProcessTitle(title);
};
exports.getPriority = function getPriority(pid = 0) {
validateInteger(pid, "Process ID");
return binding.getPriority(pid);
};
exports.setPriority = function setPriority(pid, priority) {
if (priority === void 0) {
priority = pid;
pid = 0;
}
validateInteger(pid, "Process ID");
validateInteger(priority, "Priority");
binding.setPriority(pid, priority);
};
exports.getEnvKeys = function getEnvKeys() {
return binding.getEnvKeys();
};
exports.getEnv = function getEnv(name) {
validateString(name, "Name");
return binding.getEnv(name);
};
exports.hasEnv = function hasEnv(name) {
validateString(name, "Name");
return binding.hasEnv(name);
};
exports.setEnv = function setEnv(name, value) {
validateString(name, "Name");
validateString(value, "Value");
binding.setEnv(name, value);
};
exports.unsetEnv = function unsetEnv(name) {
validateString(name, "Name");
binding.unsetEnv(name);
};
function validateString(value, name) {
if (typeof value !== "string") {
throw new TypeError(`${name} must be a string. Received type ${typeof value} (${value})`);
}
}
function validateInteger(value, name) {
if (!Number.isInteger(value)) {
throw new TypeError(`${name} must be an integer. Received type ${typeof value} (${value})`);
}
}
}
});
// ../../node_modules/bare-debug-log/index.js
var require_bare_debug_log = __commonJS({
"../../node_modules/bare-debug-log/index.js"(exports, module) {
var os = require_bare_os();
var pid = os.pid();
var env = os.getEnv("BARE_DEBUG") || os.getEnv("NODE_DEBUG") || "";
var test = new RegExp(
`^${env.replace(/[|\\{}()[\]^$+?.]/g, "\\$&").replace(/\*/g, ".*").replace(/,/g, "$|^")}$`,
"i"
);
module.exports = function debug(section) {
section = section.toUpperCase();
const enabled = test.test(section);
function debug2(...args) {
if (enabled) console.error("%s %s:", section, pid, ...args);
}
debug2.enabled = enabled;
return debug2;
};
}
});
// ../../node_modules/bare-ansi-escapes/index.js
var require_bare_ansi_escapes = __commonJS({
"../../node_modules/bare-ansi-escapes/index.js"(exports) {
var ESC = "\x1B";
var CSI = ESC + "[";
var SGR = (n) => CSI + n + "m";
exports.constants = {
ESC,
CSI,
SGR
};
exports.cursorHide = CSI + "?25l";
exports.cursorShow = CSI + "?25h";
exports.cursorUp = function cursorUp(n = 1) {
return CSI + n + "A";
};
exports.cursorDown = function cursorDown(n = 1) {
return CSI + n + "B";
};
exports.cursorForward = function cursorForward(n = 1) {
return CSI + n + "C";
};
exports.cursorBack = function cursorBack(n = 1) {
return CSI + n + "D";
};
exports.cursorNextLine = function cursorNextLine(n = 1) {
return CSI + n + "E";
};
exports.cursorPreviousLine = function cursorPreviousLine(n = 1) {
return CSI + n + "F";
};
exports.cursorPosition = function cursorPosition(column, row = 0) {
if (row === 0) return CSI + (column + 1) + "G";
return CSI + (row + 1) + ";" + (column + 1) + "H";
};
exports.eraseDisplayEnd = CSI + "J";
exports.eraseDisplayStart = CSI + "1J";
exports.eraseDisplay = CSI + "2J";
exports.eraseLineEnd = CSI + "K";
exports.eraseLineStart = CSI + "1K";
exports.eraseLine = CSI + "2K";
exports.scrollUp = function scrollUp(n = 1) {
return CSI + n + "S";
};
exports.scrollDown = function scrollDown(n = 1) {
return CSI + n + "T";
};
exports.modifierReset = SGR(0);
exports.modifierBold = SGR(1);
exports.modifierDim = SGR(2);
exports.modifierItalic = SGR(3);
exports.modifierUnderline = SGR(4);
exports.modifierNormal = SGR(22);
exports.modifierNotItalic = SGR(23);
exports.modifierNotUnderline = SGR(24);
exports.colorBlack = SGR(30);
exports.colorRed = SGR(31);
exports.colorGreen = SGR(32);
exports.colorYellow = SGR(33);
exports.colorBlue = SGR(34);
exports.colorMagenta = SGR(35);
exports.colorCyan = SGR(36);
exports.colorWhite = SGR(37);
exports.colorDefault = SGR(39);
exports.colorBrightBlack = SGR(90);
exports.colorBrightRed = SGR(91);
exports.colorBrightGreen = SGR(92);
exports.colorBrightYellow = SGR(93);
exports.colorBrightBlue = SGR(94);
exports.colorBrightMagenta = SGR(95);
exports.colorBrightCyan = SGR(96);
exports.colorBrightWhite = SGR(97);
}
});
// ../../node_modules/bare-type/binding.js
var require_binding2 = __commonJS({
"../../node_modules/bare-type/binding.js"(exports, module) {
module.exports = __require.addon();
}
});
// ../../node_modules/bare-type/index.js
var require_bare_type = __commonJS({
"../../node_modules/bare-type/index.js"(exports, module) {
var binding = require_binding2();
var t = binding.constants;
var Type = class {
constructor(type) {
this._type = type;
}
isUndefined() {
return this._type === t.UNDEFINED;
}
isNull() {
return this._type === t.NULL;
}
isBoolean() {
return this._type === t.BOOLEAN;
}
isNumber() {
return (this._type & 255) === t.NUMBER;
}
isInt32() {
return (this._type & (255 | t.INT32)) === (t.NUMBER | t.INT32);
}
isUint32() {
return (this._type & (255 | t.UINT32)) === (t.NUMBER | t.UINT32);
}
isString() {
return this._type === t.STRING;
}
isSymbol() {
return this._type === t.SYMBOL;
}
isObject() {
return (this._type & 255) === t.OBJECT;
}
isArray() {
return this._type === (t.OBJECT | t.ARRAY);
}
isArguments() {
return this._type === (t.OBJECT | t.ARGUMENTS);
}
isDate() {
return this._type === (t.OBJECT | t.DATE);
}
isRegExp() {
return this._type === (t.OBJECT | t.REGEXP);
}
isError() {
return this._type === (t.OBJECT | t.ERROR);
}
isPromise() {
return this._type === (t.OBJECT | t.PROMISE);
}
isProxy() {
return this._type === (t.OBJECT | t.PROXY);
}
isGenerator() {
return this._type === (t.OBJECT | t.GENERATOR);
}
isMap() {
return this._type === (t.OBJECT | t.MAP);
}
isSet() {
return this._type === (t.OBJECT | t.SET);
}
isWeakMap() {
return this._type === (t.OBJECT | t.WEAK_MAP);
}
isWeakSet() {
return this._type === (t.OBJECT | t.WEAK_SET);
}
isWeakRef() {
return this._type === (t.OBJECT | t.WEAK_REF);
}
isArrayBuffer() {
return this._type === (t.OBJECT | t.ARRAYBUFFER);
}
isSharedArrayBuffer() {
return this._type === (t.OBJECT | t.SHAREDARRAYBUFFER);
}
isTypedArray() {
return (this._type & 65535) === (t.OBJECT | t.TYPEDARRAY);
}
isInt8Array() {
return this._type === (t.OBJECT | t.TYPEDARRAY | t.INT8ARRAY);
}
isUint8Array() {
return this._type === (t.OBJECT | t.TYPEDARRAY | t.UINT8ARRAY);
}
isUint8ClampedArray() {
return this._type === (t.OBJECT | t.TYPEDARRAY | t.UINT8CLAMPEDARRAY);
}
isInt16Array() {
return this._type === (t.OBJECT | t.TYPEDARRAY | t.INT16ARRAY);
}
isUint16Array() {
return this._type === (t.OBJECT | t.TYPEDARRAY | t.UINT16ARRAY);
}
isInt32Array() {
return this._type === (t.OBJECT | t.TYPEDARRAY | t.INT32ARRAY);
}
isUint32Array() {
return this._type === (t.OBJECT | t.TYPEDARRAY | t.UINT32ARRAY);
}
isFloat16Array() {
return this._type === (t.OBJECT | t.TYPEDARRAY | t.FLOAT16ARRAY);
}
isFloat32Array() {
return this._type === (t.OBJECT | t.TYPEDARRAY | t.FLOAT32ARRAY);
}
isFloat64Array() {
return this._type === (t.OBJECT | t.TYPEDARRAY | t.FLOAT64ARRAY);
}
isBigInt64Array() {
return this._type === (t.OBJECT | t.TYPEDARRAY | t.BIGINT64ARRAY);
}
isBigUint64Array() {
return this._type === (t.OBJECT | t.TYPEDARRAY | t.BIGUINT64ARRAY);
}
isDataView() {
return this._type === (t.OBJECT | t.DATAVIEW);
}
isModuleNamespace() {
return this._type === (t.OBJECT | t.MODULE_NAMESPACE);
}
isFunction() {
return (this._type & 255) === t.FUNCTION;
}
isAsyncFunction() {
return (this._type & (255 | t.ASYNC_FUNCTION)) === (t.FUNCTION | t.ASYNC_FUNCTION);
}
isGeneratorFunction() {
return (this._type & (255 | t.GENERATOR_FUNCTION)) === (t.FUNCTION | t.GENERATOR_FUNCTION);
}
isExternal() {
return this._type === t.EXTERNAL;
}
isBigInt() {
return this._type === t.BIGINT;
}
};
module.exports = exports = function type(value) {
switch (typeof value) {
case "undefined":
return new Type(t.UNDEFINED);
case "boolean":
return new Type(t.BOOLEAN);
case "number":
return new Type(
Number.isSafeInteger(value) ? binding.type(value) : t.NUMBER
);
case "string":
return new Type(t.STRING);
case "symbol":
return new Type(t.SYMBOL);
case "object":
return new Type(value === null ? t.NULL : binding.type(value));
case "function":
return new Type(binding.type(value));
case "bigint":
return new Type(t.BIGINT);
}
};
exports.createTag = function createTag(...components) {
const tag = new Uint32Array(4);
for (let i = 0; i < 4; i++) tag[i] = components[i] || 0;
return tag;
};
exports.addTag = function addTag(object, tag) {
binding.addTag(object, tag);
};
exports.checkTag = function checkTag(object, tag) {
return binding.checkTag(object, tag);
};
}
});
// ../../node_modules/bare-inspect/binding.js
var require_binding3 = __commonJS({
"../../node_modules/bare-inspect/binding.js"(exports, module) {
module.exports = __require.addon();
}
});
// ../../node_modules/bare-inspect/index.js
var require_bare_inspect = __commonJS({
"../../node_modules/bare-inspect/index.js"(exports, module) {
var ansiEscapes = require_bare_ansi_escapes();
var getType = require_bare_type();
var binding = require_binding3();
var defaultDepth = 2;
var defaultBreakLength = 80;
var defaultMaxArrayLength = 40;
module.exports = exports = function inspect(value, opts = {}) {
const {
colors = false,
depth = defaultDepth,
breakLength = defaultBreakLength,
stylize = defaultStylize(colors)
} = opts;
const references = new InspectRefMap();
const tree = inspectValue(value, 0, {
colors,
depth,
breakLength,
stylize,
references
});
return tree.toString();
};
exports.styles = {
bigint: ansiEscapes.colorYellow,
boolean: ansiEscapes.colorYellow,
date: ansiEscapes.colorMagenta,
module: ansiEscapes.modifierUnderline,
name: ansiEscapes.modifierReset,
null: ansiEscapes.modifierBold,
number: ansiEscapes.colorYellow,
regexp: ansiEscapes.colorRed,
special: ansiEscapes.colorCyan,
string: ansiEscapes.colorGreen,
symbol: ansiEscapes.colorGreen,
undefined: ansiEscapes.colorBrightBlack
};
var styles = exports.styles;
function defaultStylize(colors) {
return function stylize(value, style) {
const color = colors && styles[style];
if (color) return color + value + ansiEscapes.modifierReset;
return value;
};
}
var InspectRefMap = class {
constructor() {
this.refs = /* @__PURE__ */ new WeakMap();
this.ids = /* @__PURE__ */ new WeakMap();
this.nextId = 1;
}
has(object) {
return this.refs.has(object);
}
get(object) {
return this.refs.get(object) || null;
}
set(object, ref) {
this.refs.set(object, ref);
}
id(object) {
let id = this.ids.get(object);
if (id) return id;
id = this.nextId++;
this.ids.set(object, id);
return id;
}
};
var InspectNode = class {
constructor(depth, length, opts) {
const { breakLength = defaultBreakLength, breakAlways = false } = opts;
this.depth = depth;
this.length = length;
this.breakLength = breakLength;
this.breakAlways = breakAlways;
}
pad(n, string) {
return string.padStart(n, " ");
}
indent(n, string) {
return " ".repeat(n) + string;
}
};
var InspectRef = class extends InspectNode {
constructor(depth, opts) {
super(depth, "[circular *]".length, opts);
this.refs = opts.references;
this.count = 0;
this.circular = false;
this.color = opts.colors && styles.special;
}
get id() {
return this.refs.id(this);
}
increment() {
return ++this.count;
}
decrement() {
return --this.count;
}
toString(opts = {}) {
const { offset = 0, pad = 0, indent = 0 } = opts;
let value = this.pad(pad, "[circular *" + this.id + "]");
if (this.color) value = this.color + value + ansiEscapes.modifierReset;
return offset ? value : this.indent(indent, value);
}
};
var InspectLeaf = class extends InspectNode {
constructor(value, color, depth, opts) {
const length = value.length;
if (value.includes("\n")) {
value = value.replaceAll("\n", "\n" + " ".repeat(depth));
opts = { ...opts, breakAlways: true };
}
super(depth, length, opts);
this.value = value;
this.color = opts.colors && color;
}
toString(opts = {}) {
const { offset = 0, pad = 0, indent = 0 } = opts;
let value = this.pad(pad, this.value);
if (this.color) value = this.color + value + ansiEscapes.modifierReset;
return offset ? value : this.indent(indent, value);
}
};
var InspectPair = class extends InspectNode {
constructor(delim, left, right, depth, opts) {
const length = left.length + delim.length + right.length;
if (left.breakAlways || right.breakAlways) {
opts = { ...opts, breakAlways: true };
}
super(depth, length, opts);
this.delim = delim;
this.left = left;
this.right = right;
}
toString(opts = {}) {
const { indent = 0 } = opts;
return this.indent(
indent,
this.left + this.delim + this.right.toString({
indent,
offset: this.left.length + this.delim.length
})
);
}
};
var InspectSuspension = class extends InspectNode {
constructor(overflow, depth, opts) {
const label = `... ${overflow} more`;
super(depth, label.length, opts);
this.label = label;
}
toString(opts = {}) {
const { indent = 0 } = opts;
return this.indent(indent, this.label);
}
};
var InspectSequence = class extends InspectNode {
constructor(header, footer, delim, values, ref, depth, opts) {
const { tabulate = false } = opts;
const length = (ref.circular ? "<ref *>".length + 1 : 0) + header.length + values.reduce((length2, value, i) => length2 + value.length + (i === 0 ? 0 : delim.length), 0) + footer.length;
if (values.some((value) => value.breakAlways)) {
opts = { ...opts, breakAlways: true };
}
super(depth, length, opts);
this.header = header;
this.footer = footer;
this.delim = delim;
this.values = values;
this.ref = ref;
this.tabulate = tabulate;
}
toString(opts = {}) {
const { offset = 0, indent = 0 } = opts;
const split = this.breakAlways || this.values.length && (offset + this.length > this.breakLength || indent * 2 + this.length > this.breakLength);
let header = this.header;
if (this.ref.circular) {
header = "<ref *" + this.ref.id + "> " + header;
}
if (this.values.length === 0) {
header = header.trimEnd();
}
if (offset === 0) {
header = this.indent(indent, header);
}
if (split) {
header = header.trimEnd() + "\n";
}
let string = header;
let columns = 1;
let pad = 0;
if (this.tabulate) {
const widest = this.values.reduce(
(length, value) => value.breakAlways ? length : Math.max(length, value.length),
0
);
if (widest) {
columns = Math.max(
columns,
Math.floor((this.breakLength - indent * 2) / (widest + this.delim.length))
);
if (columns > 1) pad = widest;
}
}
for (let i = 0, n = this.values.length, offset2 = 0; i < n; i++) {
const value = this.values[i];
if (split) {
let part;
if (i % columns === 0 || value.breakAlways) {
part = value.toString({ indent: indent + 1, pad });
} else {
part = value.toString({ pad });
}
string += part;
if (i < n - 1) {
if (i % columns === columns - 1 || this.values[i + 1].breakAlways) {
string += this.delim.trimEnd() + "\n";
} else {
string += this.delim;
}
}
} else {
if (i > 0) string += this.delim;
string += value.toString({ offset: offset2 });
offset2 += value.length;
}
}
let footer = this.footer;
if (this.values.length === 0) {
footer = footer.trimStart();
}
if (split) {
string += "\n" + this.indent(indent, footer.trimStart());
} else {
string += footer;
}
return string;
}
};
function inspectValue(value, depth, opts) {
const type = getType(value);
if (type.isUndefined()) return inspectUndefined(depth, opts);
if (type.isNull()) return inspectNull(depth, opts);
if (type.isBoolean()) return inspectBoolean(value, depth, opts);
if (type.isNumber()) return inspectNumber(value, depth, opts);
if (type.isBigInt()) return inspectBigInt(value, depth, opts);
if (type.isString()) return inspectString(value, depth, opts);
if (type.isSymbol()) return inspectSymbol(value, depth, opts);
if (type.isObject()) return inspectObject(type, value, depth, opts);
if (type.isFunction()) return inspectFunction(type, value, depth, opts);
if (type.isExternal()) return inspectExternal(value, opts, opts);
}
function inspectUndefined(depth, opts) {
return new InspectLeaf("undefined", styles.undefined, depth, opts);
}
function inspectNull(depth, opts) {
return new InspectLeaf("null", styles.null, depth, opts);
}
function inspectBoolean(value, depth, opts) {
return new InspectLeaf(value.toString(), styles.boolean, depth, opts);
}
function inspectNumber(value, depth, opts) {
let string;
if (Object.is(value, -0)) {
string = "-0";
} else {
string = value.toString(10);
}
return new InspectLeaf(string, styles.number, depth, opts);
}
function inspectBigInt(value, depth, opts) {
return new InspectLeaf(value.toString(10) + "n", styles.bigint, depth, opts);
}
var STRING_ESCAPES = /[\ud800-\udbff][\udc00-\udfff]|[\u0000-\u001f'\\\ud800-\udfff]/g;
function inspectString(value, depth, opts) {
const string = value.replace(STRING_ESCAPES, (match) => {
if (match.length === 2) return match;
switch (match) {
case "'":
return "\\'";
case "\\":
return "\\\\";
case "\b":
return "\\b";
case " ":
return "\\t";
case "\n":
return "\\n";
case "\f":
return "\\f";
case "\r":
return "\\r";
default:
return "\\u" + match.charCodeAt(0).toString(16).padStart(4, "0");
}
});
return new InspectLeaf("'" + string + "'", styles.string, depth, opts);
}
function inspectSymbol(value, depth, opts) {
return new InspectLeaf(value.toString(), styles.symbol, depth, opts);
}
var PLAIN_KEY = /^[a-zA-Z_][a-zA-Z_0-9]*$/;
function inspectKey(value, depth, opts) {
if (typeof value === "symbol") {
return inspectValue(value, depth, opts);
} else if (PLAIN_KEY.test(value)) {
return new InspectLeaf(value, null, depth, opts);
} else {
return inspectValue(value, depth, opts);
}
}
function inspectObject(type, object, depth, opts) {
const refs = opts.references;
let ref = refs.get(object);
if (ref === null) {
ref = new InspectRef(depth, opts);
refs.set(object, ref);
} else if (ref.count) {
ref.circular = true;
return ref;
}
const maxDepth = typeof opts.depth === "number" ? opts.depth : Infinity;
if (maxDepth < depth) {
const constructor = object.constructor;
return new InspectLeaf(
"[" + (constructor && constructor.name ? constructor.name : "Object") + "]",
styles.special,
depth,
opts
);
}
const inspect = object[Symbol.for("bare.inspect")] || object[Symbol.for("nodejs.util.inspect.custom")];
if (typeof inspect === "function") {
const value = inspect.call(
object,
typeof opts.depth === "number" ? opts.depth - depth : null,
{
colors: opts.colors,
breakLength: opts.breakLength,
stylize: opts.stylize
},
exports
);
if (typeof value === "object" && value !== null) {
refs.set(value, ref);
}
if (typeof value !== "string") {
return inspectValue(value, depth, opts);
}
return new InspectLeaf(value, null, depth, opts);
}
if (type.isArray()) return inspectArray(object, ref, depth, opts);
if (type.isDate()) return inspectDate(object, ref, depth, opts);
if (type.isRegExp()) return inspectRegExp(object, ref, depth, opts);
if (type.isError()) return inspectError(object, ref, depth, opts);
if (type.isPromise()) return inspectPromise(object, ref, depth, opts);
if (type.isMap()) return inspectMap(object, ref, depth, opts);
if (type.isSet()) return inspectSet(object, ref, depth, opts);
if (type.isWeakMap()) return inspectWeakMap(object, ref, depth, opts);
if (type.isWeakSet()) return inspectWeakSet(object, ref, depth, opts);
if (type.isWeakRef()) return inspectWeakRef(object, ref, depth, opts);
if (type.isArrayBuffer()) return inspectArrayBuffer(object, ref, depth, opts);
if (type.isSharedArrayBuffer()) return inspectSharedArrayBuffer(object, ref, depth, opts);
if (type.isTypedArray()) return inspectTypedArray(object, ref, depth, opts);
if (type.isDataView()) return inspectDataView(object, ref, depth, opts);
ref.increment();
const values = [];
for (const key in object) {
if (key === "constructor") continue;
values.push(
new InspectPair(
": ",
inspectKey(key, depth + 1, opts),
inspectValue(object[key], depth + 1, opts),
depth + 1,
opts
)
);
}
for (const key of Object.getOwnPropertySymbols(object)) {
values.push(
new InspectPair(
": ",
inspectKey(key, depth + 1, opts),
inspectValue(object[key], depth + 1, opts),
depth + 1,
opts
)
);
}
ref.decrement();
let header = "{ ";
const tag = object[Symbol.toStringTag];
if (tag) header = "[" + tag + "] " + header;
if (object.constructor) {
const name = object.constructor.name;
if (name && name !== "Object") {
header = object.constructor.name + " " + header;
}
}
return new InspectSequence(header, " }", ", ", values, ref, depth, opts);
}
function inspectArray(array, ref, depth, opts) {
const { maxArrayLength = defaultMaxArrayLength } = opts;
ref.increment();
const values = [];
let remaining = Math.max(maxArrayLength, 0);
for (let i = 0, n = array.length; i < n; i++) {
if (remaining-- === 0) {
values.push(
new InspectSuspension(array.length - values.length, depth + 1, {
...opts,
breakAlways: true
})
);
break;
}
values.push(inspectValue(array[i], depth + 1, opts));
}
for (const key of binding.getOwnNonIndexPropertyNames(array)) {
values.push(
new InspectPair(
": ",
inspectKey(key, depth + 1, opts),
inspectValue(array[key], depth + 1, opts),
depth + 1,
{ ...opts, breakAlways: remaining < 0 }
)
);
}
ref.decrement();
let header = "[ ";
if (array.constructor.name !== "Array") {
header = array.constructor.name + "(" + array.length + ") " + header;
}
return new InspectSequence(header, " ]", ", ", values, ref, depth, {
...opts,
tabulate: true
});
}
function inspectDate(date, ref, depth, opts) {
return new InspectLeaf(date.toISOString(), styles.date, depth, opts);
}
function inspectRegExp(regExp, ref, depth, opts) {
return new InspectLeaf(regExp.toString(), styles.regexp, depth, opts);
}
function inspectError(error, ref, depth, opts) {
let header;
if ("stack" in error) {
header = error.stack;
if (depth > 0) {
header = header.replaceAll("\n", "\n" + " ".repeat(depth));
}
} else {
header = error.toString();
}
const builtins = ["cause"];
if (error.name === "AggregateError") {
builtins.push("errors");
} else if (error.name === "SuppressedError") {
builtins.push("error", "suppressed");
}
const values = [];
for (const key of builtins) {
if (key in error === false) continue;
values.push(
new InspectPair(
": ",
new InspectLeaf("[" + key + "]", null, depth + 1, opts),
inspectValue(error[key], depth + 1, opts),
depth + 1,
opts
)
);
}
for (const key in error) {
if (key === "constructor" || builtins.includes(key)) continue;
values.push(
new InspectPair(
": ",
inspectKey(key, depth + 1, opts),
inspectValue(error[key], depth + 1, opts),
depth + 1,
opts
)
);
}
if (values.length === 0) return new InspectLeaf(header, null, depth, opts);
return new InspectSequence(header + " {", " }", ", ", values, ref, depth, opts);
}
function inspectPromise(promise, ref, depth, opts) {
ref.increment();
const state = binding.getPromiseState(promise);
const values = [];
switch (state) {
case 0:
values.push(new InspectLeaf("<pending>", styles.special, depth, opts));
break;
case 1:
values.push(inspectValue(binding.getPromiseResult(promise), depth, opts));
break;
case 2:
values.push(
new InspectLeaf("<rejected>", styles.special, depth, opts),
inspectValue(binding.getPromiseResult(promise), depth, opts)
);
}
ref.decrement();
const header = promise.constructor.name + " { ";
return new InspectSequence(header, " }", " ", values, ref, depth, opts);
}
function inspectMap(map, ref, depth, opts) {
const { maxArrayLength = defaultMaxArrayLength, maxMapLength = maxArrayLength } = opts;
ref.increment();
const values = [];
let remaining = maxMapLength;
for (const entry of map) {
if (remaining-- === 0) {
values.push(
new InspectSuspension(map.size - values.length, depth + 1, {
...opts,
breakAlways: true
})
);
break;
}
values.push(
new InspectPair(
" => ",
inspectValue(entry[0], depth + 1, opts),
inspectValue(entry[1], depth + 1, opts),
depth + 1,
opts
)
);
}
for (const key in map) {
if (key === "constructor") continue;
const value = inspectValue(map[key], depth + 1, opts);
values.push(
new InspectPair(": ", inspectKey(key, depth + 1, opts), value, depth + 1, {
...opts,
breakAlways: remaining < 0
})
);
}
ref.decrement();
const header = map.constructor.name + "(" + map.size + ") { ";
return new InspectSequence(header, " }", ", ", values, ref, depth, {
...opts,
tabulate: true
});
}
function inspectSet(set, ref, depth, opts) {
const { maxArrayLength = defaultMaxArrayLength, maxSetLength = maxArrayLength } = opts;
ref.increment();
const values = [];
let remaining = maxSetLength;
for (const entry of set) {
if (remaining-- === 0) {
values.push(
new InspectSuspension(set.size - values.length, depth + 1, {
...opts,
breakAlways: true
})
);
break;
}
values.push(inspectValue(entry, depth + 1, opts));
}
for (const key in set) {
if (key === "constructor") continue;
const value = inspectValue(set[key], depth + 1, opts);
values.push(
new InspectPair(": ", inspectKey(key, depth + 1, opts), value, depth + 1, {
...opts,
breakAlways: remaining < 0
})
);
}
ref.decrement();
const header = set.constructor.name + "(" + set.size + ") { ";
return new InspectSequence(header, " }", ", ", values, ref, depth, {
...opts,
tabulate: true
});
}
function inspectWeakMap(weakMap, ref, depth, opts) {
const header = weakMap.constructor.name + " { ";
return new InspectSequence(
header,
" }",
" ",
[new InspectLeaf("<items unknown>", styles.special, depth + 1, opts)],
ref,
depth,
opts
);
}
function inspectWeakSet(weakSet, ref, depth, opts) {
const header = weakSet.constructor.name + " { ";
return new InspectSequence(
header,
" }",
" ",
[new InspectLeaf("<items unknown>", styles.special, depth + 1, opts)],
ref,
depth,
opts
);
}
function inspectWeakRef(weakRef, ref, depth, opts) {
const target = weakRef.deref();
let value;
if (target === void 0) {
value = new InspectLeaf("<cleared>", styles.special, depth + 1, opts);
} else {
value = inspectValue(target, depth + 1, opts);
}
const header = weakRef.constructor.name + " { ";
return new InspectSequence(header, " }", " ", [value], ref, depth, opts);
}
function inspectArrayBuffer(arrayBuffer, ref, depth, opts) {
ref.increment();
const values = [];
for (const key of ["byteLength"]) {
values.push(
new InspectPair(
": ",
inspectKey(key, depth + 1, opts),
inspectValue(arrayBuffer[key], depth + 1, opts),
depth + 1,
opts
)
);
}
ref.decrement();
const header = arrayBuffer.constructor.name + " { ";
return new InspectSequence(header, " }", ", ", values, ref, depth, opts);
}
function inspectSharedArrayBuffer(sharedArrayBuffer, ref, depth, opts) {
ref.increment();
const values = [];
for (const key of ["byteLength"]) {
values.push(
new InspectPair(
": ",
inspectKey(key, depth + 1, opts),
inspectValue(sharedArrayBuffer[key], depth + 1, opts),
depth + 1,
opts
)
);
}
ref.decrement();
const header = sharedArrayBuffer.constructor.name + " { ";
return new InspectSequence(header, " }", ", ", values, ref, depth, opts);
}
function inspectTypedArray(typedArray, ref, depth, opts) {
if (Buffer.isBuffer(typedArray)) {
return inspectBuffer(typedArray, ref, depth, opts);
}
const { maxArrayLength = defaultMaxArrayLength, maxTypedArrayLength = maxArrayLength } = opts;
ref.increment();
const values = [];
let remaining = Math.max(maxTypedArrayLength, 0);
for (let i = 0, n = typedArray.length; i < n; i++) {
if (remaining-- === 0) {
values.push(
new InspectSuspension(typedArray.length - values.length, depth + 1, {
...opts,
breakAlways: true
})
);
break;
}
values.push(inspectValue(typedArray[i], depth + 1, opts));
}
for (const key of binding.getOwnNonIndexPropertyNames(typedArray)) {
values.push(
new InspectPair(
": ",
inspectKey(key, depth + 1, opts),
inspectValue(typedArray[key], depth + 1, opts),
depth + 1,
{ ...opts, breakAlways: remaining < 0 }
)
);
}
ref.decrement();
const header = typedArray.constructor.name + "(" + typedArray.length + ") [ ";
return new InspectSequence(header, " ]", ", ", values, ref, depth, {
...opts,
tabulate: true
});
}
function inspectBuffer(buffer, ref, depth, opts) {
const { maxArrayLength = defaultMaxArrayLength, maxBufferLength = maxArrayLength } = opts;
ref.increment();
const values = [];
let remaining = Math.max(maxBufferLength, 0);
for (let i = 0, n = buffer.byteLength; i < n; i++) {
if (remaining-- === 0) {
values.push(
new InspectSuspension(buffer.length - values.length, depth + 1, {
...opts,
breakAlways: true
})
);
break;
}
values.push(new InspectLeaf(buffer[i].toString(16).padStart(2, "0"), null, depth + 1, opts));
}
for (const key of binding.getOwnNonIndexPropertyNames(buffer)) {
values.push(
new InspectPair(
": ",
inspectKey(key, depth + 1, opts),
inspectValue(buffer[key], depth + 1, opts),
depth + 1,
{ ...opts, breakAlways: remaining < 0 }
)
);
}
ref.decrement();
return new InspectSequence("<Buffer ", ">", " ", values, ref, depth, {
...opts,
tabulate: true
});
}
function inspectDataView(dataView, ref, depth, opts) {
ref.increment();
const values = [];
for (const key of ["byteLength", "byteOffset", "buffer"]) {
values.push(
new InspectPair(
": ",
inspectKey(key, depth + 1, opts),
inspectValue(dataView[key], depth + 1, opts),
depth + 1,
opts
)
);
}
for (const key of binding.getOwnNonIndexPropertyNames(dataView)) {
values.push(
new InspectPair(
": ",
inspectKey(key, depth + 1, opts),
inspectValue(dataView[key], depth + 1, opts),
depth + 1,
opts
)
);
}
ref.decrement();
const header = dataView.constructor.name + " { ";
return new InspectSequence(header, " }", ", ", values, ref, depth, opts);
}
function inspectFunction(type, fn, depth, opts) {
if (fn.toString().startsWith("class")) return inspectClass(fn, depth, opts);
let tag = "function";
if (type.isGeneratorFunction()) tag = "generator " + tag;
if (type.isAsyncFunction()) tag = "async " + tag;
return new InspectLeaf(
"[" + tag + " " + (fn.name ? fn.name : "(anonymous)") + "]",
styles.special,
depth,
opts
);
}
function inspectClass(ctor, depth, opts) {
return new InspectLeaf(
"[class " + (ctor.name ? ctor.name : "(anonymous)") + "]",
styles.special,
depth,
opts
);
}
function inspectExternal(external, depth, opts) {
return new InspectLeaf(
"[external 0x" + binding.getExternal(external).toString(16) + "]",
styles.special,
depth,
opts
);
}
}
});
// ../../node_modules/bare-format/index.js
var require_bare_format = __commonJS({
"../../node_modules/bare-format/index.js"(exports, module) {
var inspect = require_bare_inspect();
module.exports = exports = function format(...args) {
return exports.formatWithOptions({}, ...args);
};
exports.format = exports;
exports.formatWithOptions = function formatWithOptions(opts, ...args) {
const format = args[0];
let result = "";
let join = "";
let i = 0;
if (typeof format === "string") {
if (args.length === 1) return format;
let tmp;
let j = 0;
let c;
for (let k = 0, n = format.length; k < n; k++) {
c = format.charCodeAt(k);
if (c === 37) {
c = format.charCodeAt(++k);
if (i < args.length) {
switch (c) {
case 115: {
const value = args[++i];
switch (typeof value) {
case "string":
tmp = value;
break;
case "bigint":
tmp = inspect(value, { ...opts, colors: false });
break;
default:
tmp = String(value);
break;
}
break;
}
case 100: {
const value = args[++i];
switch (typeof value) {
case "symbol":
tmp = NaN;
break;
case "bigint":
tmp = inspect(value, { ...opts, colors: false });
break;
default:
tmp = inspect(Number(value), { ...opts, colors: false });
break;
}
break;
}
case 105: {
const value = args[++i];
switch (typeof value) {
case "symbol":
tmp = NaN;
break;
case "bigint":
tmp = inspect(value, { ...opts, colors: false });
break;
default:
tmp = inspect(parseInt(value, 10), { ...opts, colors: false });
break;
}
break;
}
case 102: {
const value = args[++i];
switch (typeof value) {
case "symbol":
tmp = NaN;
break;
default:
tmp = inspect(parseFloat(value), { ...opts, colors: false });
break;
}
break;
}
case 79:
case 111:
tmp = inspect(args[++i], opts);
break;
case 106:
tmp = JSON.stringify(args[++i]);
break;
case 99:
i++;
tmp = "";
break;
case 37:
result += format.substring(j, k);
j = k + 1;
continue;
default:
continue;
}
if (j !== k - 1) result += format.substring(j, k - 1);
result += tmp;
j = k + 1;
} else if (c === 37) {
result += format.substring(j, k);
j = k + 1;
}
}
}
if (j !== 0) {
i++;
join = " ";
if (j < format.length) {
result += format.substring(j);
}
}
}
while (i < args.length) {
const value = args[i++];
result += join;
result += typeof value === "string" ? value : inspect(value, opts);
join = " ";
}
return result;
};
}
});
// ../../node_modules/bare-abort/binding.js
var require_binding4 = __commonJS({
"../../node_modules/bare-abort/binding.js"(exports, module) {
module.exports = __require.addon();
}
});
// ../../node_modules/bare-abort/index.js
var require_bare_abort = __commonJS({
"../../node_modules/bare-abort/index.js"(exports, module) {
var binding = require_binding4();
module.exports = binding.abort;
}
});
// ../../node_modules/bare-events/lib/errors.js
var require_errors3 = __commonJS({
"../../node_modules/bare-events/lib/errors.js"(exports, module) {
module.exports = class EventEmitterError extends Error {
constructor(msg, code, fn = EventEmitterError, opts) {
super(`${code}: ${msg}`, opts);
this.code = code;
if (Error.captureStackTrace) {
Error.captureStackTrace(this, fn);
}
}
get name() {
return "EventEmitterError";
}
static OPERATION_ABORTED(cause, msg = "Operation aborted") {
return new EventEmitterError(msg, "OPERATION_ABORTED", EventEmitterError.OPERATION_ABORTED, {
cause
});
}
static UNHANDLED_ERROR(cause, msg = "Unhandled error") {
return new EventEmitterError(msg, "UNHANDLED_ERROR", EventEmitterError.UNHANDLED_ERROR, {
cause
});
}
};
}
});
// ../../node_modules/bare-events/index.js
var require_bare_events = __commonJS({
"../../node_modules/bare-events/index.js"(exports, module) {
var errors = require_errors3();
var EventListener = class {
constructor() {
this.list = [];
this.count = 0;
}
append(ctx, name, fn, once) {
this.count++;
ctx.emit("newListener", name, fn);
this.list.push([fn, once]);
}
prepend(ctx, name, fn, once) {
this.count++;
ctx.emit("newListener", name, fn);
this.list.unshift([fn, once]);
}
remove(ctx, name, fn) {
for (let i = 0, n = this.list.length; i < n; i++) {
const l = this.list[i];
if (l[0] === fn) {
this.list.splice(i, 1);
if (this.count === 1) delete ctx._events[name];
ctx.emit("removeListener", name, fn);
this.count--;
return;
}
}
}
removeAll(ctx, name) {
const list = [...this.list];
this.list = [];
if (this.count === list.length) delete ctx._events[name];
for (let i = list.length - 1; i >= 0; i--) {
ctx.emit("removeListener", name, list[i][0]);
}
this.count -= list.length;
}
emit(ctx, name, ...args) {
const list = [...this.list];
for (let i = 0, n = list.length; i < n; i++) {
const l = list[i];
if (l[1] === true) this.remove(ctx, name, l[0]);
Reflect.apply(l[0], ctx, args);
}
return list.length > 0;
}
};
function appendListener(ctx, name, fn, once) {
if (ctx._events === void 0) ctx._events = /* @__PURE__ */ Object.create(null);
const e = ctx._events[name] || (ctx._events[name] = new EventListener());
e.append(ctx, name, fn, once);
return ctx;
}
function prependListener(ctx, name, fn, once) {
if (ctx._events === void 0) ctx._events = /* @__PURE__ */ Object.create(null);
const e = ctx._events[name] || (ctx._events[name] = new EventListener());
e.prepend(ctx, name, fn, once);
return ctx;
}
function removeListener(ctx, name, fn) {
if (ctx._events === void 0) return ctx;
const e = ctx._events[name];
if (e !== void 0) e.remove(ctx, name, fn);
return ctx;
}
function throwUnhandledError(...args) {
let err;
if (args.length > 0) err = args[0];
if (err instanceof Error === false) err = errors.UNHANDLED_ERROR(err);
if (Error.captureStackTrace) {
Error.captureStackTrace(err, exports.prototype.emit);
}
queueMicrotask(() => {
throw err;
});
}
module.exports = exports = class EventEmitter {
constructor() {
this._events = /* @__PURE__ */ Object.create(null);
}
addListener(name, fn) {
return appendListener(this, name, fn, false);
}
addOnceListener(name, fn) {
return appendListener(this, name, fn, true);
}
prependListener(name, fn) {
return prependListener(this, name, fn, false);
}
prependOnceListener(name, fn) {
return prependListener(this, name, fn, true);
}
removeListener(name, fn) {
return removeListener(this, name, fn);
}
on(name, fn) {
return appendListener(this, name, fn, false);
}
once(name, fn) {
return appendListener(this, name, fn, true);
}
off(name, fn) {
return removeListener(this, name, fn);
}
emit(name, ...args) {
if (name === "error" && this._events !== void 0 && this._events.error === void 0) {
throwUnhandledError(...args);
}
if (this._events === void 0) return false;
const e = this._events[name];
return e === void 0 ? false : e.emit(this, name, ...args);
}
listeners(name) {
if (this._events === void 0) return [];
const e = this._events[name];
return e === void 0 ? [] : [...e.list];
}
rawListeners(name) {
if (this._events === void 0) return [];
const e = this._events[name];
return e === void 0 ? [] : e.list.map((l) => l[0]);
}
eventNames() {
if (this._events === void 0) return [];
return Reflect.ownKeys(this._events);
}
listenerCount(name) {
if (this._events === void 0) return 0;
const e = this._events[name];
return e === void 0 ? 0 : e.list.length;
}
getMaxListeners() {
return EventEmitter.defaultMaxListeners;
}
setMaxListeners(n) {
}
removeAllListeners(name) {
if (arguments.length === 0) {
for (const key of Reflect.ownKeys(this._events)) {
if (key === "removeListener") continue;
this.removeAllListeners(key);
}
this.removeAllListeners("removeListener");
} else {
const e = this._events[name];
if (e !== void 0) e.removeAll(this, name);
}
return this;
}
};
exports.EventEmitter = exports;
exports.errors = errors;
exports.defaultMaxListeners = 10;
exports.on = function on(emitter, name, opts = {}) {
const { signal } = opts;
if (signal && signal.aborted) {
throw errors.OPERATION_ABORTED(signal.reason);
}
let error = null;
let done = false;
const events = [];
const promises = [];
if (name !== "error") emitter.on("error", onerror);
if (signal) signal.addEventListener("abort", onabort);
emitter.on(name, onevent);
return {
next() {
if (events.length) {
return Promise.resolve({ value: events.shift(), done: false });
}
if (error) {
const err = error;
error = null;
return Promise.reject(err);
}
if (done) return onclose();
return new Promise((resolve, reject) => promises.push({ resolve, reject }));
},
return() {
return onclose();
},
throw(err) {
return onerror(err);
},
[Symbol.asyncIterator]() {
return this;
}
};
function onevent(...args) {
if (promises.length) {
promises.shift().resolve({ value: args, done: false });
} else {
events.push(args);
}
}
function onerror(err) {
emitter.off(name, onevent).off("error", onerror);
if (promises.length) {
promises.shift().reject(err);
} else {
error = err;
}
return Promise.resolve({ done: true });
}
function onabort() {
signal.removeEventListener("abort", onabort);
onerror(errors.OPERATION_ABORTED(signal.reason));
}
function onclose() {
emitter.off(name, onevent);
if (name !== "error") emitter.off("error", onerror);
if (signal) signal.removeEventListener("abort", onabort);
done = true;
if (promises.length) promises.shift().resolve({ done: true });
return Promise.resolve({ done: true });
}
};
exports.once = function once(emitter, name, opts = {}) {
const { signal } = opts;
if (signal && signal.aborted) {
return Promise.reject(errors.OPERATION_ABORTED(signal.reason));
}
return new Promise((resolve, reject) => {
if (name !== "error") emitter.on("error", onerror);
if (signal) signal.addEventListener("abort", onabort);
emitter.once(name, onevent);
function onevent(...args) {
if (name !== "error") emitter.off("error", onerror);
if (signal) signal.removeEventListener("abort", onabort);
resolve(args);
}
function onerror(err) {
emitter.off(name, onevent);
if (name !== "error") emitter.off("error", onerror);
reject(err);
}
function onabort() {
signal.removeEventListener("abort", onabort);
onerror(errors.OPERATION_ABORTED(signal.reason));
}
});
};
exports.forward = function forward(from, to, names, opts = {}) {
if (typeof names === "string") names = [names];
const { emit = to.emit.bind(to) } = opts;
const listeners = names.map(
(name) => function onevent(...args) {
emit(name, ...args);
}
);
to.on("newListener", (name) => {
const i = names.indexOf(name);
if (i !== -1 && to.listenerCount(name) === 0) {
from.on(name, listeners[i]);
}
}).on("removeListener", (name) => {
const i = names.indexOf(name);
if (i !== -1 && to.listenerCount(name) === 0) {
from.off(name, listeners[i]);
}
});
};
exports.listenerCount = function listenerCount(emitter, name) {
return emitter.listenerCount(name);
};
exports.getMaxListeners = function getMaxListeners(emitter) {
if (typeof emitter.getMaxListeners === "function") {
return emitter.getMaxListeners();
}
return exports.defaultMaxListeners;
};
exports.setMaxListeners = function setMaxListeners(n, ...emitters) {
if (emitters.length === 0) exports.defaultMaxListeners = n;
else {
for (const emitter of emitters) {
if (typeof emitter.setMaxListeners === "function") {
emitter.setMaxListeners(n);
}
}
}
};
}
});
// ../../node_modules/bare-process/node_modules/bare-signals/binding.js
var require_binding5 = __commonJS({
"../../node_modules/bare-process/node_modules/bare-signals/binding.js"(exports, module) {
module.exports = __require.addon();
}
});
// ../../node_modules/bare-process/node_modules/bare-signals/lib/errors.js
var require_errors4 = __commonJS({
"../../node_modules/bare-process/node_modules/bare-signals/lib/errors.js"(exports, module) {
module.exports = class SignalError extends Error {
constructor(msg, fn = SignalError, code = fn.name) {
super(`${code}: ${msg}`);
this.code = code;
if (Error.captureStackTrace) {
Error.captureStackTrace(this, fn);
}
}
get name() {
return "SignalError";
}
static UNKNOWN_SIGNAL(msg) {
return new SignalError(msg, SignalError.UNKNOWN_SIGNAL);
}
static SIGNAL_CLOSED(msg) {
return new SignalError(msg, SignalError.SIGNAL_CLOSED);
}
};
}
});
// ../../node_modules/bare-process/node_modules/bare-signals/lib/emitter.js
var require_emitter = __commonJS({
"../../node_modules/bare-process/node_modules/bare-signals/lib/emitter.js"(exports, module) {
var EventEmitter = require_bare_events();
var Signal = require_bare_signals();
module.exports = class SignalEmitter extends EventEmitter {
constructor() {
super();
this._signals = /* @__PURE__ */ new Map();
this._unrefed = false;
this.on("newListener", this._onnewlistener).on("removeListener", this._onremovelistener);
}
ref() {
this._unrefed = false;
for (const signal of this._signals.values()) signal.ref();
return this;
}
unref() {
this._unrefed = true;
for (const signal of this._signals.values()) signal.unref();
return this;
}
_onnewlistener(name) {
if (name === "newListener" || name === "removeListener") return;
if (this.listenerCount(name) === 0) {
const signal = new Signal(name);
signal.on("signal", this._onsignal.bind(this, name)).start();
if (this._unrefed) signal.unref();
this._signals.set(name, signal);
}
}
_onremovelistener(name) {
if (name === "newListener" || name === "removeListener") return;
if (this.listenerCount(name) === 0) {
const signal = this._signals.get(name);
if (this._unrefed) signal.ref();
signal.close();
this._signals.delete(name);
}
}
_onsignal(name) {
this.emit(name, name, Signal.constants[name]);
}
};
}
});
// ../../node_modules/bare-process/node_modules/bare-signals/index.js
var require_bare_signals = __commonJS({
"../../node_modules/bare-process/node_modules/bare-signals/index.js"(exports, module) {
var EventEmitter = require_bare_events();
var binding = require_binding5();
var errors = require_errors4();
var signals = binding.signals;
module.exports = exports = class Signal extends EventEmitter {
constructor(signum) {
super();
if (typeof signum === "string") {
if (signum in signals === false) {
throw errors.UNKNOWN_SIGNAL(`Unknown signal '${signum}'`);
}
signum = signals[signum];
}
this._signum = signum;
this._closing = null;
this._handle = binding.init(this, this._onsignal, this._onclose);
}
start() {
if (this._closing) throw errors.SIGNAL_CLOSED("Signal is closed");
binding.start(this._handle, this._signum);
return this;
}
stop() {
if (this._closing) return this;
binding.stop(this._handle);
return this;
}
ref() {
if (this._closing) return this;
binding.ref(this._handle);
return this;
}
unref() {
if (this._closing) return this;
binding.unref(this._handle);
return this;
}
close() {
if (this._closing) return this._closing;
this._closing = EventEmitter.once(this, "close");
binding.close(this._handle);
return this._closing;
}
_onsignal() {
this.emit("signal", this._signum);
}
_onclose() {
this._handle = null;
this.emit("close");
}
};
exports.Emitter = require_emitter();
exports.constants = signals;
exports.errors = errors;
}
});
// ../../node_modules/bare-env/index.js
var require_bare_env = __commonJS({
"../../node_modules/bare-env/index.js"(exports, module) {
var os = require_bare_os();
module.exports = new Proxy(/* @__PURE__ */ Object.create(null), {
ownKeys(target) {
return os.getEnvKeys();
},
get(target, property) {
if (typeof property !== "string") return;
return os.getEnv(property);
},
has(target, property) {
if (typeof property !== "string") return false;
return os.hasEnv(property);
},
set(target, property, value) {
if (typeof property !== "string") return;
const type = typeof value;
if (type !== "string" && type !== "number" && type !== "boolean") {
throw new Error("Environment variable must be of type string, number, or boolean");
}
value = String(value);
os.setEnv(property, value);
return true;
},
deleteProperty(target, property) {
if (typeof property !== "string") return;
os.unsetEnv(property);
},
getOwnPropertyDescriptor(target, property) {
return {
value: this.get(target, property),
enumerable: true,
configurable: true,
writable: true
};
}
});
}
});
// ../../node_modules/bare-hrtime/binding.js
var require_binding6 = __commonJS({
"../../node_modules/bare-hrtime/binding.js"(exports, module) {
module.exports = __require.addon();
}
});
// ../../node_modules/bare-hrtime/index.js
var require_bare_hrtime = __commonJS({
"../../node_modules/bare-hrtime/index.js"(exports, module) {
var binding = require_binding6();
module.exports = exports = function hrtime(past) {
let now = binding.hrtime();
if (past) now -= BigInt(past[0]) * 1000000000n + BigInt(past[1]);
return [Number(now / 1000000000n), Number(now % 1000000000n)];
};
exports.bigint = function hrtime() {
return binding.hrtime();
};
}
});
// ../../node_modules/fast-fifo/fixed-size.js
var require_fixed_size = __commonJS({
"../../node_modules/fast-fifo/fixed-size.js"(exports, module) {
module.exports = class FixedFIFO {
constructor(hwm) {
if (!(hwm > 0) || (hwm - 1 & hwm) !== 0) throw new Error("Max size for a FixedFIFO should be a power of two");
this.buffer = new Array(hwm);
this.mask = hwm - 1;
this.top = 0;
this.btm = 0;
this.next = null;
}
clear() {
this.top = this.btm = 0;
this.next = null;
this.buffer.fill(void 0);
}
push(data) {
if (this.buffer[this.top] !== void 0) return false;
this.buffer[this.top] = data;
this.top = this.top + 1 & this.mask;
return true;
}
shift() {
const last = this.buffer[this.btm];
if (last === void 0) return void 0;
this.buffer[this.btm] = void 0;
this.btm = this.btm + 1 & this.mask;
return last;
}
peek() {
return this.buffer[this.btm];
}
isEmpty() {
return this.buffer[this.btm] === void 0;
}
};
}
});
// ../../node_modules/fast-fifo/index.js
var require_fast_fifo = __commonJS({
"../../node_modules/fast-fifo/index.js"(exports, module) {
var FixedFIFO = require_fixed_size();
module.exports = class FastFIFO {
constructor(hwm) {
this.hwm = hwm || 16;
this.head = new FixedFIFO(this.hwm);
this.tail = this.head;
this.length = 0;
}
clear() {
this.head = this.tail;
this.head.clear();
this.length = 0;
}
push(val) {
this.length++;
if (!this.head.push(val)) {
const prev = this.head;
this.head = prev.next = new FixedFIFO(2 * this.head.buffer.length);
this.head.push(val);
}
}
shift() {
if (this.length !== 0) this.length--;
const val = this.tail.shift();
if (val === void 0 && this.tail.next) {
const next = this.tail.next;
this.tail.next = null;
this.tail = next;
return this.tail.shift();
}
return val;
}
peek() {
const val = this.tail.peek();
if (val === void 0 && this.tail.next) return this.tail.next.peek();
return val;
}
isEmpty() {
return this.length === 0;
}
};
}
});
// ../../node_modules/bare-path/binding.js
var require_binding7 = __commonJS({
"../../node_modules/bare-path/binding.js"(exports, module) {
module.exports = __require.addon();
}
});
// ../../node_modules/bare-path/lib/constants.js
var require_constants2 = __commonJS({
"../../node_modules/bare-path/lib/constants.js"(exports, module) {
module.exports = {
CHAR_UPPERCASE_A: 65,
CHAR_LOWERCASE_A: 97,
CHAR_UPPERCASE_Z: 90,
CHAR_LOWERCASE_Z: 122,
CHAR_DOT: 46,
CHAR_FORWARD_SLASH: 47,
CHAR_BACKWARD_SLASH: 92,
CHAR_COLON: 58,
CHAR_QUESTION_MARK: 63
};
}
});
// ../../node_modules/bare-path/lib/shared.js
var require_shared = __commonJS({
"../../node_modules/bare-path/lib/shared.js"(exports) {
var { CHAR_DOT, CHAR_FORWARD_SLASH } = require_constants2();
exports.validateString = function validateString(value, name) {
if (typeof value !== "string") {
throw new TypeError(
`The "${name}" argument must be of type string. Received type ${typeof value}`
);
}
};
exports.normalizeString = function normalizeString(path, allowAboveRoot, separator, isPathSeparator) {
let res = "";
let lastSegmentLength = 0;
let lastSlash = -1;
let dots = 0;
let code = 0;
for (let i = 0; i <= path.length; ++i) {
if (i < path.length) {
code = path.charCodeAt(i);
} else if (isPathSeparator(code)) {
break;
} else {
code = CHAR_FORWARD_SLASH;
}
if (isPathSeparator(code)) {
if (lastSlash === i - 1 || dots === 1) ;
else if (dots === 2) {
if (res.length < 2 || lastSegmentLength !== 2 || res.charCodeAt(res.length - 1) !== CHAR_DOT || res.charCodeAt(res.length - 2) !== CHAR_DOT) {
if (res.length > 2) {
const lastSlashIndex = res.lastIndexOf(separator);
if (lastSlashIndex === -1) {
res = "";
lastSegmentLength = 0;
} else {
res = res.substring(0, lastSlashIndex);
lastSegmentLength = res.length - 1 - res.lastIndexOf(separator);
}
lastSlash = i;
dots = 0;
continue;
} else if (res.length !== 0) {
res = "";
lastSegmentLength = 0;
lastSlash = i;
dots = 0;
continue;
}
}
if (allowAboveRoot) {
res += res.length > 0 ? `${separator}..` : "..";
lastSegmentLength = 2;
}
} else {
if (res.length > 0) {
res += `${separator}${path.substring(lastSlash + 1, i)}`;
} else {
res = path.substring(lastSlash + 1, i);
}
lastSegmentLength = i - lastSlash - 1;
}
lastSlash = i;
dots = 0;
} else if (code === CHAR_DOT && dots !== -1) {
++dots;
} else {
dots = -1;
}
}
return res;
};
}
});
// ../../node_modules/bare-path/lib/posix.js
var require_posix = __commonJS({
"../../node_modules/bare-path/lib/posix.js"(exports) {
var binding = require_binding7();
var { normalizeString, validateString } = require_shared();
var { CHAR_DOT, CHAR_FORWARD_SLASH } = require_constants2();
function isPosixPathSeparator(code) {
return code === CHAR_FORWARD_SLASH;
}
exports.win32 = require_win32();
exports.posix = exports;
exports.sep = "/";
exports.delimiter = ":";
exports.resolve = function resolve(...args) {
let resolvedPath = "";
let resolvedAbsolute = false;
for (let i = args.length - 1; i >= -1 && !resolvedAbsolute; i--) {
const path = i >= 0 ? args[i] : binding.cwd();
if (i >= 0) validateString(path, `paths[${i}]`);
if (path.length === 0) {
continue;
}
resolvedPath = `${path}/${resolvedPath}`;
resolvedAbsolute = path.charCodeAt(0) === CHAR_FORWARD_SLASH;
}
resolvedPath = normalizeString(resolvedPath, !resolvedAbsolute, "/", isPosixPathSeparator);
if (resolvedAbsolute) {
return `/${resolvedPath}`;
}
return resolvedPath.length > 0 ? resolvedPath : ".";
};
exports.normalize = function normalize(path) {
validateString(path, "path");
if (path.length === 0) return ".";
const isAbsolute = path.charCodeAt(0) === CHAR_FORWARD_SLASH;
const trailingSeparator = path.charCodeAt(path.length - 1) === CHAR_FORWARD_SLASH;
path = normalizeString(path, !isAbsolute, "/", isPosixPathSeparator);
if (path.length === 0) {
if (isAbsolute) return "/";
return trailingSeparator ? "./" : ".";
}
if (trailingSeparator) path += "/";
return isAbsolute ? `/${path}` : path;
};
exports.isAbsolute = function isAbsolute(path) {
validateString(path, "path");
return path.length > 0 && path.charCodeAt(0) === CHAR_FORWARD_SLASH;
};
exports.join = function join(...args) {
if (args.length === 0) return ".";
let joined;
for (let i = 0; i < args.length; ++i) {
const arg = args[i];
validateString(arg, "path");
if (arg.length > 0) {
if (joined === void 0) joined = arg;
else joined += `/${arg}`;
}
}
if (joined === void 0) return ".";
return exports.normalize(joined);
};
exports.relative = function relative(from, to) {
validateString(from, "from");
validateString(to, "to");
if (from === to) return "";
from = exports.resolve(from);
to = exports.resolve(to);
if (from === to) return "";
const fromStart = 1;
const fromEnd = from.length;
const fromLen = fromEnd - fromStart;
const toStart = 1;
const toLen = to.length - toStart;
const length = fromLen < toLen ? fromLen : toLen;
let lastCommonSep = -1;
let i = 0;
for (; i < length; i++) {
const fromCode = from.charCodeAt(fromStart + i);
if (fromCode !== to.charCodeAt(toStart + i)) {
break;
} else if (fromCode === CHAR_FORWARD_SLASH) {
lastCommonSep = i;
}
}
if (i === length) {
if (toLen > length) {
if (to.charCodeAt(toStart + i) === CHAR_FORWARD_SLASH) {
return to.substring(toStart + i + 1);
}
if (i === 0) {
return to.substring(toStart + i);
}
} else if (fromLen > length) {
if (from.charCodeAt(fromStart + i) === CHAR_FORWARD_SLASH) {
lastCommonSep = i;
} else if (i === 0) {
lastCommonSep = 0;
}
}
}
let out = "";
for (i = fromStart + lastCommonSep + 1; i <= fromEnd; ++i) {
if (i === fromEnd || from.charCodeAt(i) === CHAR_FORWARD_SLASH) {
out += out.length === 0 ? ".." : "/..";
}
}
return `${out}${to.substring(toStart + lastCommonSep)}`;
};
exports.toNamespacedPath = function toNamespacedPath(path) {
return path;
};
exports.dirname = function dirname(path) {
validateString(path, "path");
if (path.length === 0) return ".";
const hasRoot = path.charCodeAt(0) === CHAR_FORWARD_SLASH;
let end = -1;
let matchedSlash = true;
for (let i = path.length - 1; i >= 1; --i) {
if (path.charCodeAt(i) === CHAR_FORWARD_SLASH) {
if (!matchedSlash) {
end = i;
break;
}
} else {
matchedSlash = false;
}
}
if (end === -1) return hasRoot ? "/" : ".";
if (hasRoot && end === 1) return "//";
return path.substring(0, end);
};
exports.basename = function basename(path, suffix) {
if (suffix !== void 0) validateString(suffix, "suffix");
validateString(path, "path");
let start = 0;
let end = -1;
let matchedSlash = true;
if (suffix !== void 0 && suffix.length > 0 && suffix.length <= path.length) {
if (suffix === path) {
return "";
}
let extIdx = suffix.length - 1;
let firstNonSlashEnd = -1;
for (let i = path.length - 1; i >= 0; --i) {
const code = path.charCodeAt(i);
if (code === CHAR_FORWARD_SLASH) {
if (!matchedSlash) {
start = i + 1;
break;
}
} else {
if (firstNonSlashEnd === -1) {
matchedSlash = false;
firstNonSlashEnd = i + 1;
}
if (extIdx >= 0) {
if (code === suffix.charCodeAt(extIdx)) {
if (--extIdx === -1) {
end = i;
}
} else {
extIdx = -1;
end = firstNonSlashEnd;
}
}
}
}
if (start === end) end = firstNonSlashEnd;
else if (end === -1) end = path.length;
return path.substring(start, end);
}
for (let i = path.length - 1; i >= 0; --i) {
if (path.charCodeAt(i) === CHAR_FORWARD_SLASH) {
if (!matchedSlash) {
start = i + 1;
break;
}
} else if (end === -1) {
matchedSlash = false;
end = i + 1;
}
}
if (end === -1) return "";
return path.substring(start, end);
};
exports.extname = function extname(path) {
validateString(path, "path");
let startDot = -1;
let startPart = 0;
let end = -1;
let matchedSlash = true;
let preDotState = 0;
for (let i = path.length - 1; i >= 0; --i) {
const code = path.charCodeAt(i);
if (code === CHAR_FORWARD_SLASH) {
if (!matchedSlash) {
startPart = i + 1;
break;
}
continue;
}
if (end === -1) {
matchedSlash = false;
end = i + 1;
}
if (code === CHAR_DOT) {
if (startDot === -1) startDot = i;
else if (preDotState !== 1) preDotState = 1;
} else if (startDot !== -1) {
preDotState = -1;
}
}
if (startDot === -1 || end === -1 || preDotState === 0 || preDotState === 1 && startDot === end - 1 && startDot === startPart + 1) {
return "";
}
return path.substring(startDot, end);
};
}
});
// ../../node_modules/bare-path/lib/win32.js
var require_win32 = __commonJS({
"../../node_modules/bare-path/lib/win32.js"(exports) {
var binding = require_binding7();
var { normalizeString, validateString } = require_shared();
var {
CHAR_UPPERCASE_A,
CHAR_LOWERCASE_A,
CHAR_UPPERCASE_Z,
CHAR_LOWERCASE_Z,
CHAR_DOT,
CHAR_FORWARD_SLASH,
CHAR_BACKWARD_SLASH,
CHAR_COLON,
CHAR_QUESTION_MARK
} = require_constants2();
function isWindowsPathSeparator(code) {
return code === CHAR_FORWARD_SLASH || code === CHAR_BACKWARD_SLASH;
}
function isWindowsDeviceRoot(code) {
return code >= CHAR_UPPERCASE_A && code <= CHAR_UPPERCASE_Z || code >= CHAR_LOWERCASE_A && code <= CHAR_LOWERCASE_Z;
}
exports.posix = require_posix();
exports.win32 = exports;
exports.sep = "\\";
exports.delimiter = ";";
exports.resolve = function resolve(...args) {
let resolvedDevice = "";
let resolvedTail = "";
let resolvedAbsolute = false;
for (let i = args.length - 1; i >= -1; i--) {
let path;
if (i >= 0) {
path = args[i];
validateString(path, `paths[${i}]`);
if (path.length === 0) continue;
} else if (resolvedDevice.length === 0) {
path = binding.cwd();
} else {
path = binding.cwd(resolvedDevice);
if (path === void 0 || path.substring(0, 2).toLowerCase() !== resolvedDevice.toLowerCase() && path.charCodeAt(2) === CHAR_BACKWARD_SLASH) {
path = `${resolvedDevice}\\`;
}
}
const len = path.length;
let rootEnd = 0;
let device = "";
let isAbsolute = false;
const code = path.charCodeAt(0);
if (len === 1) {
if (isWindowsPathSeparator(code)) {
rootEnd = 1;
isAbsolute = true;
}
} else if (isWindowsPathSeparator(code)) {
isAbsolute = true;
if (isWindowsPathSeparator(path.charCodeAt(1))) {
let j = 2;
let last = j;
while (j < len && !isWindowsPathSeparator(path.charCodeAt(j))) {
j++;
}
if (j < len && j !== last) {
const firstPart = path.substring(last, j);
last = j;
while (j < len && isWindowsPathSeparator(path.charCodeAt(j))) {
j++;
}
if (j < len && j !== last) {
last = j;
while (j < len && !isWindowsPathSeparator(path.charCodeAt(j))) {
j++;
}
if (j === len || j !== last) {
device = `\\\\${firstPart}\\${path.substring(last, j)}`;
rootEnd = j;
}
}
}
} else {
rootEnd = 1;
}
} else if (isWindowsDeviceRoot(code) && path.charCodeAt(1) === CHAR_COLON) {
device = path.substring(0, 2);
rootEnd = 2;
if (len > 2 && isWindowsPathSeparator(path.charCodeAt(2))) {
isAbsolute = true;
rootEnd = 3;
}
}
if (device.length > 0) {
if (resolvedDevice.length > 0) {
if (device.toLowerCase() !== resolvedDevice.toLowerCase()) {
continue;
}
} else {
resolvedDevice = device;
}
}
if (resolvedAbsolute) {
if (resolvedDevice.length > 0) {
break;
}
} else {
resolvedTail = `${path.substring(rootEnd)}\\${resolvedTail}`;
resolvedAbsolute = isAbsolute;
if (isAbsolute && resolvedDevice.length > 0) {
break;
}
}
}
resolvedTail = normalizeString(resolvedTail, !resolvedAbsolute, "\\", isWindowsPathSeparator);
return resolvedAbsolute ? `${resolvedDevice}\\${resolvedTail}` : `${resolvedDevice}${resolvedTail}` || ".";
};
exports.normalize = function normalize(path) {
validateString(path, "path");
const len = path.length;
if (len === 0) return ".";
let rootEnd = 0;
let device;
let isAbsolute = false;
const code = path.charCodeAt(0);
if (len === 1) {
return code === CHAR_FORWARD_SLASH ? "\\" : path;
}
if (isWindowsPathSeparator(code)) {
isAbsolute = true;
if (isWindowsPathSeparator(path.charCodeAt(1))) {
let j = 2;
let last = j;
while (j < len && !isWindowsPathSeparator(path.charCodeAt(j))) {
j++;
}
if (j < len && j !== last) {
const firstPart = path.substring(last, j);
last = j;
while (j < len && isWindowsPathSeparator(path.charCodeAt(j))) {
j++;
}
if (j < len && j !== last) {
last = j;
while (j < len && !isWindowsPathSeparator(path.charCodeAt(j))) {
j++;
}
if (j === len) {
return `\\\\${firstPart}\\${path.substring(last)}\\`;
}
if (j !== last) {
device = `\\\\${firstPart}\\${path.substring(last, j)}`;
rootEnd = j;
}
}
}
} else {
rootEnd = 1;
}
} else if (isWindowsDeviceRoot(code) && path.charCodeAt(1) === CHAR_COLON) {
device = path.substring(0, 2);
rootEnd = 2;
if (len > 2 && isWindowsPathSeparator(path.charCodeAt(2))) {
isAbsolute = true;
rootEnd = 3;
}
}
let tail = rootEnd < len ? normalizeString(path.substring(rootEnd), !isAbsolute, "\\", isWindowsPathSeparator) : "";
if (tail.length === 0 && !isAbsolute) {
tail = ".";
}
if (tail.length > 0 && isWindowsPathSeparator(path.charCodeAt(len - 1))) {
tail += "\\";
}
if (device === void 0) {
return isAbsolute ? `\\${tail}` : tail;
}
return isAbsolute ? `${device}\\${tail}` : `${device}${tail}`;
};
exports.isAbsolute = function isAbsolute(path) {
validateString(path, "path");
const len = path.length;
if (len === 0) return false;
const code = path.charCodeAt(0);
return isWindowsPathSeparator(code) || len > 2 && isWindowsDeviceRoot(code) && path.charCodeAt(1) === CHAR_COLON && isWindowsPathSeparator(path.charCodeAt(2));
};
exports.join = function join(...args) {
if (args.length === 0) return ".";
let joined;
let firstPart;
for (let i = 0; i < args.length; ++i) {
const arg = args[i];
validateString(arg, "path");
if (arg.length > 0) {
if (joined === void 0) joined = firstPart = arg;
else joined += `\\${arg}`;
}
}
if (joined === void 0) return ".";
let needsReplace = true;
let slashCount = 0;
if (isWindowsPathSeparator(firstPart.charCodeAt(0))) {
++slashCount;
const firstLen = firstPart.length;
if (firstLen > 1 && isWindowsPathSeparator(firstPart.charCodeAt(1))) {
++slashCount;
if (firstLen > 2) {
if (isWindowsPathSeparator(firstPart.charCodeAt(2))) {
++slashCount;
} else {
needsReplace = false;
}
}
}
}
if (needsReplace) {
while (slashCount < joined.length && isWindowsPathSeparator(joined.charCodeAt(slashCount))) {
slashCount++;
}
if (slashCount >= 2) {
joined = `\\${joined.substring(slashCount)}`;
}
}
return exports.normalize(joined);
};
exports.relative = function relative(from, to) {
validateString(from, "from");
validateString(to, "to");
if (from === to) return "";
const fromOrig = exports.resolve(from);
const toOrig = exports.resolve(to);
if (fromOrig === toOrig) return "";
from = fromOrig.toLowerCase();
to = toOrig.toLowerCase();
if (from === to) return "";
let fromStart = 0;
while (fromStart < from.length && from.charCodeAt(fromStart) === CHAR_BACKWARD_SLASH) {
fromStart++;
}
let fromEnd = from.length;
while (fromEnd - 1 > fromStart && from.charCodeAt(fromEnd - 1) === CHAR_BACKWARD_SLASH) {
fromEnd--;
}
const fromLen = fromEnd - fromStart;
let toStart = 0;
while (toStart < to.length && to.charCodeAt(toStart) === CHAR_BACKWARD_SLASH) {
toStart++;
}
let toEnd = to.length;
while (toEnd - 1 > toStart && to.charCodeAt(toEnd - 1) === CHAR_BACKWARD_SLASH) {
toEnd--;
}
const toLen = toEnd - toStart;
const length = fromLen < toLen ? fromLen : toLen;
let lastCommonSep = -1;
let i = 0;
for (; i < length; i++) {
const fromCode = from.charCodeAt(fromStart + i);
if (fromCode !== to.charCodeAt(toStart + i)) {
break;
} else if (fromCode === CHAR_BACKWARD_SLASH) {
lastCommonSep = i;
}
}
if (i !== length) {
if (lastCommonSep === -1) return toOrig;
} else {
if (toLen > length) {
if (to.charCodeAt(toStart + i) === CHAR_BACKWARD_SLASH) {
return toOrig.substring(toStart + i + 1);
}
if (i === 2) {
return toOrig.substring(toStart + i);
}
}
if (fromLen > length) {
if (from.charCodeAt(fromStart + i) === CHAR_BACKWARD_SLASH) {
lastCommonSep = i;
} else if (i === 2) {
lastCommonSep = 3;
}
}
if (lastCommonSep === -1) lastCommonSep = 0;
}
let out = "";
for (i = fromStart + lastCommonSep + 1; i <= fromEnd; ++i) {
if (i === fromEnd || from.charCodeAt(i) === CHAR_BACKWARD_SLASH) {
out += out.length === 0 ? ".." : "\\..";
}
}
toStart += lastCommonSep;
if (out.length > 0) {
return `${out}${toOrig.substring(toStart, toEnd)}`;
}
if (toOrig.charCodeAt(toStart) === CHAR_BACKWARD_SLASH) {
++toStart;
}
return toOrig.substring(toStart, toEnd);
};
exports.toNamespacedPath = function toNamespacedPath(path) {
if (typeof path !== "string" || path.length === 0) return path;
const resolvedPath = exports.resolve(path);
if (resolvedPath.length <= 2) return path;
if (resolvedPath.charCodeAt(0) === CHAR_BACKWARD_SLASH) {
if (resolvedPath.charCodeAt(1) === CHAR_BACKWARD_SLASH) {
const code = resolvedPath.charCodeAt(2);
if (code !== CHAR_QUESTION_MARK && code !== CHAR_DOT) {
return `\\\\?\\UNC\\${resolvedPath.substring(2)}`;
}
}
} else if (isWindowsDeviceRoot(resolvedPath.charCodeAt(0)) && resolvedPath.charCodeAt(1) === CHAR_COLON && resolvedPath.charCodeAt(2) === CHAR_BACKWARD_SLASH) {
return `\\\\?\\${resolvedPath}`;
}
return path;
};
exports.dirname = function dirname(path) {
validateString(path, "path");
const len = path.length;
if (len === 0) return ".";
let rootEnd = -1;
let offset = 0;
const code = path.charCodeAt(0);
if (len === 1) {
return isWindowsPathSeparator(code) ? path : ".";
}
if (isWindowsPathSeparator(code)) {
rootEnd = offset = 1;
if (isWindowsPathSeparator(path.charCodeAt(1))) {
let j = 2;
let last = j;
while (j < len && !isWindowsPathSeparator(path.charCodeAt(j))) {
j++;
}
if (j < len && j !== last) {
last = j;
while (j < len && isWindowsPathSeparator(path.charCodeAt(j))) {
j++;
}
if (j < len && j !== last) {
last = j;
while (j < len && !isWindowsPathSeparator(path.charCodeAt(j))) {
j++;
}
if (j === len) {
return path;
}
if (j !== last) {
rootEnd = offset = j + 1;
}
}
}
}
} else if (isWindowsDeviceRoot(code) && path.charCodeAt(1) === CHAR_COLON) {
rootEnd = len > 2 && isWindowsPathSeparator(path.charCodeAt(2)) ? 3 : 2;
offset = rootEnd;
}
let end = -1;
let matchedSlash = true;
for (let i = len - 1; i >= offset; --i) {
if (isWindowsPathSeparator(path.charCodeAt(i))) {
if (!matchedSlash) {
end = i;
break;
}
} else {
matchedSlash = false;
}
}
if (end === -1) {
if (rootEnd === -1) return ".";
end = rootEnd;
}
return path.substring(0, end);
};
exports.basename = function basename(path, suffix) {
if (suffix !== void 0) validateString(suffix, "suffix");
validateString(path, "path");
let start = 0;
let end = -1;
let matchedSlash = true;
if (path.length >= 2 && isWindowsDeviceRoot(path.charCodeAt(0)) && path.charCodeAt(1) === CHAR_COLON) {
start = 2;
}
if (suffix !== void 0 && suffix.length > 0 && suffix.length <= path.length) {
if (suffix === path) return "";
let extIdx = suffix.length - 1;
let firstNonSlashEnd = -1;
for (let i = path.length - 1; i >= start; --i) {
const code = path.charCodeAt(i);
if (isWindowsPathSeparator(code)) {
if (!matchedSlash) {
start = i + 1;
break;
}
} else {
if (firstNonSlashEnd === -1) {
matchedSlash = false;
firstNonSlashEnd = i + 1;
}
if (extIdx >= 0) {
if (code === suffix.charCodeAt(extIdx)) {
if (--extIdx === -1) {
end = i;
}
} else {
extIdx = -1;
end = firstNonSlashEnd;
}
}
}
}
if (start === end) end = firstNonSlashEnd;
else if (end === -1) end = path.length;
return path.substring(start, end);
}
for (let i = path.length - 1; i >= start; --i) {
if (isWindowsPathSeparator(path.charCodeAt(i))) {
if (!matchedSlash) {
start = i + 1;
break;
}
} else if (end === -1) {
matchedSlash = false;
end = i + 1;
}
}
if (end === -1) return "";
return path.substring(start, end);
};
exports.extname = function extname(path) {
validateString(path, "path");
let start = 0;
let startDot = -1;
let startPart = 0;
let end = -1;
let matchedSlash = true;
let preDotState = 0;
if (path.length >= 2 && path.charCodeAt(1) === CHAR_COLON && isWindowsDeviceRoot(path.charCodeAt(0))) {
start = startPart = 2;
}
for (let i = path.length - 1; i >= start; --i) {
const code = path.charCodeAt(i);
if (isWindowsPathSeparator(code)) {
if (!matchedSlash) {
startPart = i + 1;
break;
}
continue;
}
if (end === -1) {
matchedSlash = false;
end = i + 1;
}
if (code === CHAR_DOT) {
if (startDot === -1) startDot = i;
else if (preDotState !== 1) preDotState = 1;
} else if (startDot !== -1) {
preDotState = -1;
}
}
if (startDot === -1 || end === -1 || preDotState === 0 || preDotState === 1 && startDot === end - 1 && startDot === startPart + 1) {
return "";
}
return path.substring(startDot, end);
};
}
});
// ../../node_modules/bare-path/index.js
var require_bare_path = __commonJS({
"../../node_modules/bare-path/index.js"(exports, module) {
if (Bare.platform === "win32") {
module.exports = require_win32();
} else {
module.exports = require_posix();
}
}
});
// ../../node_modules/bare-url/binding.js
var require_binding8 = __commonJS({
"../../node_modules/bare-url/binding.js"(exports, module) {
module.exports = __require.addon();
}
});
// ../../node_modules/bare-url/lib/errors.js
var require_errors5 = __commonJS({
"../../node_modules/bare-url/lib/errors.js"(exports, module) {
module.exports = class URLError extends Error {
constructor(msg, fn = URLError, code = fn.name) {
super(`${code}: ${msg}`);
this.code = code;
if (Error.captureStackTrace) Error.captureStackTrace(this, fn);
}
get name() {
return "URLError";
}
static INVALID_URL(msg, input) {
const err = new URLError(msg, URLError.INVALID_URL);
err.input = input;
return err;
}
static INVALID_URL_SCHEME(msg = "Invalid URL") {
return new URLError(msg, URLError.INVALID_URL_SCHEME);
}
static INVALID_FILE_URL_HOST(msg = "Invalid file: URL host") {
return new URLError(msg, URLError.INVALID_FILE_URL_HOST);
}
static INVALID_FILE_URL_PATH(msg = "Invalid file: URL path") {
return new URLError(msg, URLError.INVALID_FILE_URL_PATH);
}
};
}
});
// ../../node_modules/bare-url/lib/url-search-params.js
var require_url_search_params = __commonJS({
"../../node_modules/bare-url/lib/url-search-params.js"(exports, module) {
var kind = Symbol.for("bare.url.search-params.kind");
var URLSearchParams = class _URLSearchParams {
static _urls = /* @__PURE__ */ new WeakMap();
static get [kind]() {
return 0;
}
// https://url.spec.whatwg.org/#dom-urlsearchparams-urlsearchparams
constructor(init, url = null) {
this._params = null;
if (url) _URLSearchParams._urls.set(this, url);
if (typeof init === "string") {
this._parse(init);
} else {
this._params = /* @__PURE__ */ new Map();
if (init) {
for (const [name, value] of typeof init[Symbol.iterator] === "function" ? init : Object.entries(init)) {
this.append(name, value);
}
}
}
}
get [kind]() {
return _URLSearchParams[kind];
}
// https://url.spec.whatwg.org/#dom-urlsearchparams-size
get size() {
let size = 0;
for (const values of this._params.values()) size += values.length;
return size;
}
// https://url.spec.whatwg.org/#dom-urlsearchparams-append
append(name, value = null) {
if (value === null) return;
let list = this._params.get(name);
if (list === void 0) {
list = [];
this._params.set(name, list);
}
list.push(value);
this._update();
}
// https://url.spec.whatwg.org/#dom-urlsearchparams-delete
delete(name, value = null) {
if (value === null) this._params.delete(name);
else {
let list = this._params.get(name);
if (list === void 0) return;
list = list.filter((found) => found !== value);
if (list.length === 0) this._params.delete(name);
else this._params.set(name, list);
}
this._update();
}
// https://url.spec.whatwg.org/#dom-urlsearchparams-get
get(name) {
const list = this._params.get(name);
if (list === void 0) return null;
return list[0];
}
// https://url.spec.whatwg.org/#dom-urlsearchparams-getall
getAll(name) {
const list = this._params.get(name);
if (list === void 0) return [];
return Array.from(list);
}
// https://url.spec.whatwg.org/#dom-urlsearchparams-has
has(name, value = null) {
const list = this._params.get(name);
if (list === void 0) return false;
if (value === null) return true;
return list.includes(value);
}
// https://url.spec.whatwg.org/#dom-urlsearchparams-set
set(name, value = null) {
if (value === null) this._params.delete(name);
else this._params.set(name, [value]);
this._update();
}
toString() {
return this._serialize();
}
toJSON() {
return [...this];
}
*[Symbol.iterator]() {
for (const [name, values] of this._params) {
for (const value of values) yield [name, value];
}
}
[Symbol.for("bare.inspect")]() {
const object = {
__proto__: { constructor: _URLSearchParams }
};
for (const [name, values] of this._params) {
if (values.length === 1) object[name] = values[0];
else object[name] = values;
}
return object;
}
// https://url.spec.whatwg.org/#concept-urlsearchparams-update
_update() {
const url = _URLSearchParams._urls.get(this);
if (url === void 0) return;
url.search = this._serialize();
}
// https://url.spec.whatwg.org/#concept-urlencoded-parser
_parse(input) {
const params = /* @__PURE__ */ new Map();
this._params = params;
const len = input.length;
let start = input.charCodeAt(0) === 63 ? 1 : 0;
while (start < len) {
let end = input.indexOf("&", start);
if (end === -1) end = len;
if (end !== start) {
let split = input.indexOf("=", start);
if (split === -1 || split > end) split = end;
const name = decode(input.slice(start, split));
const value = split === end ? "" : decode(input.slice(split + 1, end));
const list = params.get(name);
if (list === void 0) params.set(name, [value]);
else list.push(value);
}
start = end + 1;
}
}
// https://url.spec.whatwg.org/#concept-urlencoded-serializer
_serialize() {
let result = "";
let separator = "";
for (const [name, values] of this._params) {
const encoded = encode(String(name));
for (const value of values) {
result += separator + encoded + "=" + encode(String(value));
separator = "&";
}
}
return result;
}
};
module.exports = exports = URLSearchParams;
exports.isURLSearchParams = function isURLSearchParams(value) {
if (value instanceof URLSearchParams) return true;
return typeof value === "object" && value !== null && value[kind] === URLSearchParams[kind];
};
var unencoded = /^[\w*.-]*$/;
var spaced = /^[\w*. -]*$/;
var extra = /[!'()~]/;
var extraAll = /[!'()~]/g;
var escapes = {
"!": "%21",
"'": "%27",
"(": "%28",
")": "%29",
"~": "%7E"
};
var lone = /[\ud800-\udbff](?![\udc00-\udfff])|(?<![\ud800-\udbff])[\udc00-\udfff]/g;
function encode(component) {
if (unencoded.test(component)) return component;
if (spaced.test(component)) return component.replaceAll(" ", "+");
let encoded;
try {
encoded = encodeURIComponent(component);
} catch {
encoded = encodeURIComponent(component.replace(lone, "\uFFFD"));
}
if (encoded.includes("%20")) encoded = encoded.replaceAll("%20", "+");
if (extra.test(encoded)) encoded = encoded.replace(extraAll, (match) => escapes[match]);
return encoded;
}
function decode(component) {
if (component.indexOf("+") !== -1) component = component.replaceAll("+", " ");
if (component.indexOf("%") === -1) return component;
return decodeURIComponent(component);
}
}
});
// ../../node_modules/bare-url/index.js
var require_bare_url = __commonJS({
"../../node_modules/bare-url/index.js"(exports, module) {
var path = require_bare_path();
var binding = require_binding8();
var errors = require_errors5();
var URLSearchParams = require_url_search_params();
var kind = Symbol.for("bare.url.kind");
var isWindows = Bare.platform === "win32";
var components = new Uint32Array(8);
var unset = 4294967295;
var reserved = isWindows ? /[%#?\n\r\t]/ : /[%#?\n\r\t\\]/;
var URL = class _URL {
static get [kind]() {
return 0;
}
constructor(input, base, opts = {}) {
if (arguments.length === 0) throw errors.INVALID_URL();
input = String(input);
if (base !== void 0) base = String(base);
this._href = void 0;
this._schemeEnd = 0;
this._usernameEnd = 0;
this._hostStart = 0;
this._hostEnd = 0;
this._pathStart = 0;
this._queryStart = 0;
this._fragmentStart = 0;
this._params = null;
this._parse(input, base, opts.throw !== false);
}
get [kind]() {
return _URL[kind];
}
// https://url.spec.whatwg.org/#dom-url-href
get href() {
return this._href;
}
set href(value) {
this._update(value);
if (this._params) this._params._parse(this.search);
}
// https://url.spec.whatwg.org/#dom-url-protocol
get protocol() {
return this._slice(0, this._schemeEnd) + ":";
}
set protocol(value) {
this._update(this._replace(value.replace(/:+$/, ""), 0, this._schemeEnd));
}
// https://url.spec.whatwg.org/#dom-url-username
get username() {
return this._slice(this._schemeEnd + 3, this._usernameEnd);
}
set username(value) {
if (cannotHaveCredentialsOrPort(this)) {
return;
}
if (this.username === "") value += "@";
this._update(this._replace(value, this._schemeEnd + 3, this._usernameEnd));
}
// https://url.spec.whatwg.org/#dom-url-password
get password() {
return this._href.slice(
this._usernameEnd + 1,
this._hostStart - 1
/* @ */
);
}
set password(value) {
if (cannotHaveCredentialsOrPort(this)) {
return;
}
let start = this._usernameEnd + 1;
let end = this._hostStart - 1;
if (this.password === "") {
value = ":" + value;
start--;
}
if (this.username === "") {
value += "@";
end++;
}
this._update(this._replace(value, start, end));
}
// https://url.spec.whatwg.org/#dom-url-host
get host() {
return this._slice(this._hostStart, this._pathStart);
}
set host(value) {
if (hasOpaquePath(this)) {
return;
}
this._update(
this._replace(value, this._hostStart, value.includes(":") ? this._pathStart : this._hostEnd)
);
}
// https://url.spec.whatwg.org/#dom-url-hostname
get hostname() {
return this._slice(this._hostStart, this._hostEnd);
}
set hostname(value) {
if (hasOpaquePath(this)) {
return;
}
this._update(this._replace(value, this._hostStart, this._hostEnd));
}
// https://url.spec.whatwg.org/#dom-url-port
get port() {
return this._slice(this._hostEnd + 1, this._pathStart);
}
set port(value) {
if (cannotHaveCredentialsOrPort(this)) {
return;
}
let start = this._hostEnd + 1;
if (this.port === "") {
value = ":" + value;
start--;
}
this._update(this._replace(value, start, this._pathStart));
}
// https://url.spec.whatwg.org/#dom-url-pathname
get pathname() {
return this._slice(
this._pathStart,
this._queryStart - 1
/* ? */
);
}
set pathname(value) {
if (hasOpaquePath(this)) {
return;
}
if (value[0] !== "/" && value[0] !== "\\") {
value = "/" + value;
}
this._update(this._replace(
value,
this._pathStart,
this._queryStart - 1
/* ? */
));
}
// https://url.spec.whatwg.org/#dom-url-search
get search() {
return this._slice(
this._queryStart - 1,
this._fragmentStart - 1
/* # */
);
}
set search(value) {
if (value && value[0] !== "?") value = "?" + value;
this._update(
this._replace(
value,
this._queryStart - 1,
this._fragmentStart - 1
/* # */
)
);
if (this._params) this._params._parse(this.search);
}
// https://url.spec.whatwg.org/#dom-url-searchparams
get searchParams() {
if (this._params === null) {
this._params = new URLSearchParams(this.search, this);
}
return this._params;
}
// https://url.spec.whatwg.org/#dom-url-hash
get hash() {
return this._slice(
this._fragmentStart - 1
/* # */
);
}
set hash(value) {
if (value && value[0] !== "#") value = "#" + value;
this._update(this._replace(
value,
this._fragmentStart - 1
/* # */
));
}
toString() {
return this._href;
}
toJSON() {
return this._href;
}
[Symbol.for("bare.inspect")]() {
return {
__proto__: { constructor: _URL },
href: this.href,
protocol: this.protocol,
username: this.username,
password: this.password,
host: this.host,
hostname: this.hostname,
port: this.port,
pathname: this.pathname,
search: this.search,
searchParams: this.searchParams,
hash: this.hash
};
}
_slice(start, end = this._href.length) {
return this._href.slice(start, end);
}
_replace(replacement, start, end = this._href.length) {
return this._slice(0, start) + replacement + this._slice(end);
}
_parse(input, base, shouldThrow) {
let href;
try {
href = binding.parse(input, base || null, components, shouldThrow);
} catch (err) {
if (err instanceof TypeError) throw err;
throw errors.INVALID_URL(`Invalid URL '${input}'`, input);
}
if (href === void 0) return;
this._href = href;
this._schemeEnd = components[0];
this._usernameEnd = components[1];
this._hostStart = components[2];
this._hostEnd = components[3];
this._pathStart = components[5];
const queryStart = components[6];
const fragmentStart = components[7];
const end = href.length + 1;
this._queryStart = queryStart === unset ? end : queryStart;
this._fragmentStart = fragmentStart === unset ? end : fragmentStart;
}
_update(input) {
try {
this._parse(input, null, true);
} catch (err) {
if (err instanceof TypeError) throw err;
}
}
};
module.exports = exports = URL;
function hasOpaquePath(url) {
return url.pathname[0] !== "/";
}
function cannotHaveCredentialsOrPort(url) {
return url.hostname === "" || url.protocol === "file:";
}
exports.URL = URL;
exports.URLSearchParams = URLSearchParams;
exports.errors = errors;
exports.isURL = function isURL(value) {
if (value instanceof URL) return true;
return typeof value === "object" && value !== null && value[kind] === URL[kind];
};
exports.isURLSearchParams = URLSearchParams.isURLSearchParams;
exports.parse = function parse(input, base) {
const url = new URL(input, base, { throw: false });
return url._href ? url : null;
};
exports.canParse = function canParse(input, base) {
return binding.canParse(String(input), base ? String(base) : null);
};
exports.fileURLToPath = function fileURLToPath(url) {
if (typeof url === "string") {
url = new URL(url);
}
if (url.protocol !== "file:") {
throw errors.INVALID_URL_SCHEME("The URL must use the file: protocol");
}
if (!isWindows && url.hostname) {
throw errors.INVALID_FILE_URL_HOST("The file: URL host must be 'localhost' or empty");
}
const encoded = url.pathname;
const hasEncoded = encoded.includes("%");
if (hasEncoded) {
if (isWindows) {
if (/%2f|%5c/i.test(encoded)) {
throw errors.INVALID_FILE_URL_PATH(
"The file: URL path must not include encoded \\ or / characters"
);
}
} else if (/%2f/i.test(encoded)) {
throw errors.INVALID_FILE_URL_PATH("The file: URL path must not include encoded / characters");
}
if (/%00/i.test(encoded)) {
throw errors.INVALID_FILE_URL_PATH(
"The file: URL path must not include encoded NUL characters"
);
}
}
const pathname = path.normalize(hasEncoded ? decodeURIComponent(encoded) : encoded);
if (isWindows) {
if (url.hostname) return "\\\\" + url.hostname + pathname;
const letter = pathname.charCodeAt(1) | 32;
if (letter < 97 || letter > 122 || pathname.charCodeAt(2) !== 58) {
throw errors.INVALID_FILE_URL_PATH("The file: URL path must be absolute");
}
return pathname.slice(1);
}
return pathname;
};
exports.pathToFileURL = function pathToFileURL(pathname) {
let resolved = path.resolve(pathname);
if (pathname[pathname.length - 1] === "/") {
resolved += "/";
} else if (isWindows && pathname[pathname.length - 1] === "\\") {
resolved += "\\";
}
if (reserved.test(resolved)) {
resolved = resolved.replaceAll("%", "%25").replaceAll("#", "%23").replaceAll("?", "%3f").replaceAll("\n", "%0a").replaceAll("\r", "%0d").replaceAll(" ", "%09");
if (!isWindows) {
resolved = resolved.replaceAll("\\", "%5c");
}
}
return new URL("file:" + resolved);
};
exports.format = function format(parts) {
const { protocol, auth, host, hostname, port, pathname, search, query, hash, slashes } = parts;
let result = "";
if (typeof protocol === "string") {
result += protocol;
if (protocol[protocol.length - 1] !== ":") {
result += ":";
}
if (slashes === true || /https?|ftp|gopher|file/.test(protocol)) {
result += "//";
}
}
if (typeof auth === "string") {
if (host || hostname) result += auth + "@";
}
if (typeof host === "string") result += host;
else {
result += hostname;
if (port) result += ":" + port;
}
if (typeof pathname === "string" && pathname !== "") {
if (pathname[0] !== "/") result += "/";
result += pathname;
}
if (typeof search === "string") {
if (search[0] !== "?") result += "?";
result += search;
} else if (typeof query === "object" && query !== null) {
result += "?" + new URLSearchParams(query);
}
if (typeof hash === "string") {
if (hash[0] !== "#") result += "#";
result += hash;
}
return result;
};
}
});
// ../../node_modules/b4a/index.js
var require_b4a = __commonJS({
"../../node_modules/b4a/index.js"(exports, module) {
function isBuffer(value) {
return Buffer.isBuffer(value) || value instanceof Uint8Array;
}
function isEncoding(encoding) {
return Buffer.isEncoding(encoding);
}
function alloc(size, fill2, encoding) {
return Buffer.alloc(size, fill2, encoding);
}
function allocUnsafe(size) {
return Buffer.allocUnsafe(size);
}
function allocUnsafeSlow(size) {
return Buffer.allocUnsafeSlow(size);
}
function byteLength(string, encoding) {
return Buffer.byteLength(string, encoding);
}
function compare(a, b) {
return Buffer.compare(a, b);
}
function concat(buffers, totalLength) {
return Buffer.concat(buffers, totalLength);
}
function copy(source, target, targetStart, start, end) {
return toBuffer(source).copy(target, targetStart, start, end);
}
function equals(a, b) {
return toBuffer(a).equals(b);
}
function fill(buffer, value, offset, end, encoding) {
return toBuffer(buffer).fill(value, offset, end, encoding);
}
function from(value, encodingOrOffset, length) {
return Buffer.from(value, encodingOrOffset, length);
}
function includes(buffer, value, byteOffset, encoding) {
return toBuffer(buffer).includes(value, byteOffset, encoding);
}
function indexOf(buffer, value, byfeOffset, encoding) {
return toBuffer(buffer).indexOf(value, byfeOffset, encoding);
}
function lastIndexOf(buffer, value, byteOffset, encoding) {
return toBuffer(buffer).lastIndexOf(value, byteOffset, encoding);
}
function swap16(buffer) {
return toBuffer(buffer).swap16();
}
function swap32(buffer) {
return toBuffer(buffer).swap32();
}
function swap64(buffer) {
return toBuffer(buffer).swap64();
}
function toBuffer(buffer) {
if (Buffer.isBuffer(buffer)) return buffer;
return Buffer.from(buffer.buffer, buffer.byteOffset, buffer.byteLength);
}
function toString(buffer, encoding, start, end) {
return toBuffer(buffer).toString(encoding, start, end);
}
function write(buffer, string, offset, length, encoding) {
return toBuffer(buffer).write(string, offset, length, encoding);
}
function readDoubleBE(buffer, offset) {
return toBuffer(buffer).readDoubleBE(offset);
}
function readDoubleLE(buffer, offset) {
return toBuffer(buffer).readDoubleLE(offset);
}
function readFloatBE(buffer, offset) {
return toBuffer(buffer).readFloatBE(offset);
}
function readFloatLE(buffer, offset) {
return toBuffer(buffer).readFloatLE(offset);
}
function readInt32BE(buffer, offset) {
return toBuffer(buffer).readInt32BE(offset);
}
function readInt32LE(buffer, offset) {
return toBuffer(buffer).readInt32LE(offset);
}
function readUInt32BE(buffer, offset) {
return toBuffer(buffer).readUInt32BE(offset);
}
function readUInt32LE(buffer, offset) {
return toBuffer(buffer).readUInt32LE(offset);
}
function writeDoubleBE(buffer, value, offset) {
return toBuffer(buffer).writeDoubleBE(value, offset);
}
function writeDoubleLE(buffer, value, offset) {
return toBuffer(buffer).writeDoubleLE(value, offset);
}
function writeFloatBE(buffer, value, offset) {
return toBuffer(buffer).writeFloatBE(value, offset);
}
function writeFloatLE(buffer, value, offset) {
return toBuffer(buffer).writeFloatLE(value, offset);
}
function writeInt32BE(buffer, value, offset) {
return toBuffer(buffer).writeInt32BE(value, offset);
}
function writeInt32LE(buffer, value, offset) {
return toBuffer(buffer).writeInt32LE(value, offset);
}
function writeUInt32BE(buffer, value, offset) {
return toBuffer(buffer).writeUInt32BE(value, offset);
}
function writeUInt32LE(buffer, value, offset) {
return toBuffer(buffer).writeUInt32LE(value, offset);
}
module.exports = {
isBuffer,
isEncoding,
alloc,
allocUnsafe,
allocUnsafeSlow,
byteLength,
compare,
concat,
copy,
equals,
fill,
from,
includes,
indexOf,
lastIndexOf,
swap16,
swap32,
swap64,
toBuffer,
toString,
write,
readDoubleBE,
readDoubleLE,
readFloatBE,
readFloatLE,
readInt32BE,
readInt32LE,
readUInt32BE,
readUInt32LE,
writeDoubleBE,
writeDoubleLE,
writeFloatBE,
writeFloatLE,
writeInt32BE,
writeInt32LE,
writeUInt32BE,
writeUInt32LE
};
}
});
// ../bare-os-openssh/vendor/bare-node-shims/bare-node-events/index.js
var require_bare_node_events = __commonJS({
"../bare-os-openssh/vendor/bare-node-shims/bare-node-events/index.js"(exports, module) {
module.exports = require_bare_events();
}
});
// ../../node_modules/events-universal/default.js
var require_default = __commonJS({
"../../node_modules/events-universal/default.js"(exports, module) {
module.exports = require_bare_node_events();
}
});
// ../../node_modules/text-decoder/lib/pass-through-decoder.js
var require_pass_through_decoder2 = __commonJS({
"../../node_modules/text-decoder/lib/pass-through-decoder.js"(exports, module) {
var b4a = require_b4a();
module.exports = class PassThroughDecoder {
constructor(encoding) {
this.encoding = encoding;
}
get remaining() {
return 0;
}
decode(data) {
return b4a.toString(data, this.encoding);
}
flush() {
return "";
}
};
}
});
// ../../node_modules/text-decoder/lib/utf8-decoder.js
var require_utf8_decoder2 = __commonJS({
"../../node_modules/text-decoder/lib/utf8-decoder.js"(exports, module) {
var b4a = require_b4a();
module.exports = class UTF8Decoder {
constructor() {
this._reset();
}
get remaining() {
return this.bytesSeen;
}
decode(data) {
if (data.byteLength === 0) return "";
if (this.bytesNeeded === 0 && trailingIncomplete(data, 0) === 0) {
this.bytesSeen = trailingBytesSeen(data);
return b4a.toString(data, "utf8");
}
let result = "";
let start = 0;
if (this.bytesNeeded > 0) {
while (start < data.byteLength) {
const byte = data[start];
if (byte < this.lowerBoundary || byte > this.upperBoundary) {
result += "\uFFFD";
this._reset();
break;
}
this.lowerBoundary = 128;
this.upperBoundary = 191;
this.codePoint = this.codePoint << 6 | byte & 63;
this.bytesSeen++;
start++;
if (this.bytesSeen === this.bytesNeeded) {
result += String.fromCodePoint(this.codePoint);
this._reset();
break;
}
}
if (this.bytesNeeded > 0) return result;
}
const trailing = trailingIncomplete(data, start);
const end = data.byteLength - trailing;
if (end > start) result += b4a.toString(data, "utf8", start, end);
for (let i = end; i < data.byteLength; i++) {
const byte = data[i];
if (this.bytesNeeded === 0) {
if (byte <= 127) {
this.bytesSeen = 0;
result += String.fromCharCode(byte);
} else if (byte >= 194 && byte <= 223) {
this.bytesNeeded = 2;
this.bytesSeen = 1;
this.codePoint = byte & 31;
} else if (byte >= 224 && byte <= 239) {
if (byte === 224) this.lowerBoundary = 160;
else if (byte === 237) this.upperBoundary = 159;
this.bytesNeeded = 3;
this.bytesSeen = 1;
this.codePoint = byte & 15;
} else if (byte >= 240 && byte <= 244) {
if (byte === 240) this.lowerBoundary = 144;
else if (byte === 244) this.upperBoundary = 143;
this.bytesNeeded = 4;
this.bytesSeen = 1;
this.codePoint = byte & 7;
} else {
this.bytesSeen = 1;
result += "\uFFFD";
}
continue;
}
if (byte < this.lowerBoundary || byte > this.upperBoundary) {
result += "\uFFFD";
i--;
this._reset();
continue;
}
this.lowerBoundary = 128;
this.upperBoundary = 191;
this.codePoint = this.codePoint << 6 | byte & 63;
this.bytesSeen++;
if (this.bytesSeen === this.bytesNeeded) {
result += String.fromCodePoint(this.codePoint);
this._reset();
}
}
return result;
}
flush() {
const result = this.bytesNeeded > 0 ? "\uFFFD" : "";
this._reset();
return result;
}
_reset() {
this.codePoint = 0;
this.bytesNeeded = 0;
this.bytesSeen = 0;
this.lowerBoundary = 128;
this.upperBoundary = 191;
}
};
function trailingIncomplete(data, start) {
const len = data.byteLength;
if (len <= start) return 0;
const limit = Math.max(start, len - 4);
let i = len - 1;
while (i > limit && (data[i] & 192) === 128) i--;
if (i < start) return 0;
const byte = data[i];
let needed;
if (byte <= 127) return 0;
if (byte >= 194 && byte <= 223) needed = 2;
else if (byte >= 224 && byte <= 239) needed = 3;
else if (byte >= 240 && byte <= 244) needed = 4;
else return 0;
const available = len - i;
return available < needed ? available : 0;
}
function trailingBytesSeen(data) {
const len = data.byteLength;
if (len === 0) return 0;
const last = data[len - 1];
if (last <= 127) return 0;
if ((last & 192) !== 128) return 1;
const limit = Math.max(0, len - 4);
let i = len - 2;
while (i >= limit && (data[i] & 192) === 128) i--;
if (i < 0) return 1;
const first = data[i];
let needed;
if (first >= 194 && first <= 223) needed = 2;
else if (first >= 224 && first <= 239) needed = 3;
else if (first >= 240 && first <= 244) needed = 4;
else return 1;
if (len - i !== needed) return 1;
if (needed >= 3) {
const second = data[i + 1];
if (first === 224 && second < 160) return 1;
if (first === 237 && second > 159) return 1;
if (first === 240 && second < 144) return 1;
if (first === 244 && second > 143) return 1;
}
return 0;
}
}
});
// ../../node_modules/text-decoder/index.js
var require_text_decoder = __commonJS({
"../../node_modules/text-decoder/index.js"(exports, module) {
var PassThroughDecoder = require_pass_through_decoder2();
var UTF8Decoder = require_utf8_decoder2();
module.exports = class TextDecoder {
constructor(encoding = "utf8") {
this.encoding = normalizeEncoding(encoding);
switch (this.encoding) {
case "utf8":
this.decoder = new UTF8Decoder();
break;
case "utf16le":
case "base64":
throw new Error("Unsupported encoding: " + this.encoding);
default:
this.decoder = new PassThroughDecoder(this.encoding);
}
}
get remaining() {
return this.decoder.remaining;
}
push(data) {
if (typeof data === "string") return data;
return this.decoder.decode(data);
}
// For Node.js compatibility
write(data) {
return this.push(data);
}
end(data) {
let result = "";
if (data) result = this.push(data);
result += this.decoder.flush();
return result;
}
};
function normalizeEncoding(encoding) {
encoding = encoding.toLowerCase();
switch (encoding) {
case "utf8":
case "utf-8":
return "utf8";
case "ucs2":
case "ucs-2":
case "utf16le":
case "utf-16le":
return "utf16le";
case "latin1":
case "binary":
return "latin1";
case "base64":
case "ascii":
case "hex":
return encoding;
default:
throw new Error("Unknown encoding: " + encoding);
}
}
}
});
// ../../node_modules/streamx/lib/errors.js
var require_errors6 = __commonJS({
"../../node_modules/streamx/lib/errors.js"(exports, module) {
module.exports = class StreamError extends Error {
constructor(msg, code, fn = StreamError) {
super(msg);
this.code = code;
if (Error.captureStackTrace) {
Error.captureStackTrace(this, fn);
}
}
static isStreamDestroyed(err) {
return err && err.code === "STREAM_DESTROYED";
}
static isPrematureClose(err) {
return err && err.code === "PREMATURE_CLOSE";
}
static isAborted(err) {
return err && err.code === "ABORTED";
}
static isBadArgument(err) {
return err && err.code === "BAD_ARGUMENT";
}
get name() {
return "StreamError";
}
static STREAM_DESTROYED() {
return new StreamError("Stream was destroyed", "STREAM_DESTROYED", StreamError.STREAM_DESTROYED);
}
static PREMATURE_CLOSE(msg = "Premature close") {
return new StreamError(msg, "PREMATURE_CLOSE", StreamError.PREMATURE_CLOSE);
}
static ABORTED() {
return new StreamError("Stream aborted", "ABORTED", StreamError.ABORTED);
}
static BAD_ARGUMENT(msg = "Bad argument") {
return new StreamError(msg, "BAD_ARGUMENT", StreamError.BAD_ARGUMENT);
}
};
}
});
// ../../node_modules/streamx/index.js
var require_streamx = __commonJS({
"../../node_modules/streamx/index.js"(exports, module) {
var { EventEmitter } = require_default();
var FIFO = require_fast_fifo();
var TextDecoder = require_text_decoder();
var StreamError = require_errors6();
var qmt = typeof queueMicrotask === "undefined" ? (fn) => global.process.nextTick(fn) : queueMicrotask;
var MAX = (1 << 29) - 1;
var OPENING = 1;
var PREDESTROYING = 2;
var DESTROYING = 4;
var DESTROYED = 8;
var NOT_OPENING = MAX ^ OPENING;
var NOT_PREDESTROYING = MAX ^ PREDESTROYING;
var READ_ACTIVE = 1 << 4;
var READ_UPDATING = 2 << 4;
var READ_PRIMARY = 4 << 4;
var READ_QUEUED = 8 << 4;
var READ_RESUMED = 16 << 4;
var READ_PIPE_DRAINED = 32 << 4;
var READ_ENDING = 64 << 4;
var READ_EMIT_DATA = 128 << 4;
var READ_EMIT_READABLE = 256 << 4;
var READ_EMITTED_READABLE = 512 << 4;
var READ_DONE = 1024 << 4;
var READ_NEXT_TICK = 2048 << 4;
var READ_NEEDS_PUSH = 4096 << 4;
var READ_READ_AHEAD = 8192 << 4;
var READ_FLOWING = READ_RESUMED | READ_PIPE_DRAINED;
var READ_ACTIVE_AND_NEEDS_PUSH = READ_ACTIVE | READ_NEEDS_PUSH;
var READ_PRIMARY_AND_ACTIVE = READ_PRIMARY | READ_ACTIVE;
var READ_EMIT_READABLE_AND_QUEUED = READ_EMIT_READABLE | READ_QUEUED;
var READ_RESUMED_READ_AHEAD = READ_RESUMED | READ_READ_AHEAD;
var READ_NOT_ACTIVE = MAX ^ READ_ACTIVE;
var READ_NON_PRIMARY = MAX ^ READ_PRIMARY;
var READ_NON_PRIMARY_AND_PUSHED = MAX ^ (READ_PRIMARY | READ_NEEDS_PUSH);
var READ_PUSHED = MAX ^ READ_NEEDS_PUSH;
var READ_PAUSED = MAX ^ READ_RESUMED;
var READ_NOT_QUEUED = MAX ^ (READ_QUEUED | READ_EMITTED_READABLE);
var READ_NOT_ENDING = MAX ^ READ_ENDING;
var READ_PIPE_NOT_DRAINED = MAX ^ READ_FLOWING;
var READ_NOT_NEXT_TICK = MAX ^ READ_NEXT_TICK;
var READ_NOT_UPDATING = MAX ^ READ_UPDATING;
var READ_NO_READ_AHEAD = MAX ^ READ_READ_AHEAD;
var READ_PAUSED_NO_READ_AHEAD = MAX ^ READ_RESUMED_READ_AHEAD;
var WRITE_ACTIVE = 1 << 18;
var WRITE_UPDATING = 2 << 18;
var WRITE_PRIMARY = 4 << 18;
var WRITE_QUEUED = 8 << 18;
var WRITE_UNDRAINED = 16 << 18;
var WRITE_DONE = 32 << 18;
var WRITE_EMIT_DRAIN = 64 << 18;
var WRITE_NEXT_TICK = 128 << 18;
var WRITE_WRITING = 256 << 18;
var WRITE_FINISHING = 512 << 18;
var WRITE_CORKED = 1024 << 18;
var WRITE_NOT_ACTIVE = MAX ^ (WRITE_ACTIVE | WRITE_WRITING);
var WRITE_NON_PRIMARY = MAX ^ WRITE_PRIMARY;
var WRITE_NOT_FINISHING = MAX ^ (WRITE_ACTIVE | WRITE_FINISHING);
var WRITE_DRAINED = MAX ^ WRITE_UNDRAINED;
var WRITE_NOT_QUEUED = MAX ^ WRITE_QUEUED;
var WRITE_NOT_NEXT_TICK = MAX ^ WRITE_NEXT_TICK;
var WRITE_NOT_UPDATING = MAX ^ WRITE_UPDATING;
var WRITE_NOT_CORKED = MAX ^ WRITE_CORKED;
var ACTIVE = READ_ACTIVE | WRITE_ACTIVE;
var NOT_ACTIVE = MAX ^ ACTIVE;
var DONE = READ_DONE | WRITE_DONE;
var DESTROY_STATUS = DESTROYING | DESTROYED | PREDESTROYING;
var OPEN_STATUS = DESTROY_STATUS | OPENING;
var AUTO_DESTROY = DESTROY_STATUS | DONE;
var NON_PRIMARY = WRITE_NON_PRIMARY & READ_NON_PRIMARY;
var ACTIVE_OR_TICKING = WRITE_NEXT_TICK | READ_NEXT_TICK;
var TICKING = ACTIVE_OR_TICKING & NOT_ACTIVE;
var IS_OPENING = OPEN_STATUS | TICKING;
var READ_PRIMARY_STATUS = OPEN_STATUS | READ_ENDING | READ_DONE;
var READ_STATUS = OPEN_STATUS | READ_DONE | READ_QUEUED;
var READ_ENDING_STATUS = OPEN_STATUS | READ_ENDING | READ_QUEUED;
var READ_READABLE_STATUS = OPEN_STATUS | READ_EMIT_READABLE | READ_QUEUED | READ_EMITTED_READABLE;
var SHOULD_NOT_READ = OPEN_STATUS | READ_ACTIVE | READ_ENDING | READ_DONE | READ_NEEDS_PUSH | READ_READ_AHEAD;
var READ_BACKPRESSURE_STATUS = DESTROY_STATUS | READ_ENDING | READ_DONE;
var READ_UPDATE_SYNC_STATUS = READ_UPDATING | OPEN_STATUS | READ_NEXT_TICK | READ_PRIMARY;
var READ_NEXT_TICK_OR_OPENING = READ_NEXT_TICK | OPENING;
var WRITE_PRIMARY_STATUS = OPEN_STATUS | WRITE_FINISHING | WRITE_DONE;
var WRITE_QUEUED_AND_UNDRAINED = WRITE_QUEUED | WRITE_UNDRAINED;
var WRITE_QUEUED_AND_ACTIVE = WRITE_QUEUED | WRITE_ACTIVE;
var WRITE_DRAIN_STATUS = WRITE_QUEUED | WRITE_UNDRAINED | OPEN_STATUS | WRITE_ACTIVE;
var WRITE_STATUS = OPEN_STATUS | WRITE_ACTIVE | WRITE_QUEUED | WRITE_CORKED;
var WRITE_PRIMARY_AND_ACTIVE = WRITE_PRIMARY | WRITE_ACTIVE;
var WRITE_ACTIVE_AND_WRITING = WRITE_ACTIVE | WRITE_WRITING;
var WRITE_FINISHING_STATUS = OPEN_STATUS | WRITE_FINISHING | WRITE_QUEUED_AND_ACTIVE | WRITE_DONE;
var WRITE_BACKPRESSURE_STATUS = WRITE_UNDRAINED | DESTROY_STATUS | WRITE_FINISHING | WRITE_DONE;
var WRITE_UPDATE_SYNC_STATUS = WRITE_UPDATING | OPEN_STATUS | WRITE_NEXT_TICK | WRITE_PRIMARY;
var WRITE_DROP_DATA = WRITE_FINISHING | WRITE_DONE | DESTROY_STATUS;
var asyncIterator = Symbol.asyncIterator || Symbol("asyncIterator");
var WritableState = class {
constructor(stream, { highWaterMark = 16384, map = null, mapWritable, byteLength, byteLengthWritable } = {}) {
this.stream = stream;
this.queue = new FIFO();
this.highWaterMark = highWaterMark;
this.buffered = 0;
this.error = null;
this.pipeline = null;
this.drains = null;
this.byteLength = byteLengthWritable || byteLength || defaultByteLength;
this.map = mapWritable || map;
this.afterWrite = afterWrite.bind(this);
this.afterUpdateNextTick = updateWriteNT.bind(this);
}
get ending() {
return (this.stream._duplexState & WRITE_FINISHING) !== 0;
}
get ended() {
return (this.stream._duplexState & WRITE_DONE) !== 0;
}
push(data) {
if ((this.stream._duplexState & WRITE_DROP_DATA) !== 0) return false;
if (this.map !== null) data = this.map(data);
this.buffered += this.byteLength(data);
this.queue.push(data);
if (this.buffered < this.highWaterMark) {
this.stream._duplexState |= WRITE_QUEUED;
return true;
}
this.stream._duplexState |= WRITE_QUEUED_AND_UNDRAINED;
return false;
}
shift() {
const data = this.queue.shift();
this.buffered -= this.byteLength(data);
if (this.buffered === 0) this.stream._duplexState &= WRITE_NOT_QUEUED;
return data;
}
end(data) {
if (typeof data === "function") {
this.stream.once("finish", data);
} else if (data !== void 0 && data !== null) {
this.push(data);
}
this.stream._duplexState = (this.stream._duplexState | WRITE_FINISHING) & WRITE_NON_PRIMARY;
}
autoBatch(data, cb) {
const buffer = [];
const stream = this.stream;
buffer.push(data);
while ((stream._duplexState & WRITE_STATUS) === WRITE_QUEUED_AND_ACTIVE) {
buffer.push(stream._writableState.shift());
}
if ((stream._duplexState & OPEN_STATUS) !== 0) return cb(null);
stream._writev(buffer, cb);
}
update() {
const stream = this.stream;
stream._duplexState |= WRITE_UPDATING;
do {
while ((stream._duplexState & WRITE_STATUS) === WRITE_QUEUED) {
const data = this.shift();
stream._duplexState |= WRITE_ACTIVE_AND_WRITING;
stream._write(data, this.afterWrite);
}
if ((stream._duplexState & WRITE_PRIMARY_AND_ACTIVE) === 0) this.updateNonPrimary();
} while (this.continueUpdate() === true);
stream._duplexState &= WRITE_NOT_UPDATING;
}
updateNonPrimary() {
const stream = this.stream;
if ((stream._duplexState & WRITE_FINISHING_STATUS) === WRITE_FINISHING) {
stream._duplexState = stream._duplexState | WRITE_ACTIVE;
stream._final(afterFinal.bind(this));
return;
}
if ((stream._duplexState & DESTROY_STATUS) === DESTROYING) {
if ((stream._duplexState & ACTIVE_OR_TICKING) === 0) {
stream._duplexState |= ACTIVE;
stream._destroy(afterDestroy.bind(this));
}
return;
}
if ((stream._duplexState & IS_OPENING) === OPENING) {
stream._duplexState = (stream._duplexState | ACTIVE) & NOT_OPENING;
stream._open(afterOpen.bind(this));
}
}
continueUpdate() {
if ((this.stream._duplexState & WRITE_NEXT_TICK) === 0) return false;
this.stream._duplexState &= WRITE_NOT_NEXT_TICK;
return true;
}
updateCallback() {
if ((this.stream._duplexState & WRITE_UPDATE_SYNC_STATUS) === WRITE_PRIMARY) {
this.update();
} else {
this.updateNextTick();
}
}
updateNextTick() {
if ((this.stream._duplexState & WRITE_NEXT_TICK) !== 0) return;
this.stream._duplexState |= WRITE_NEXT_TICK;
if ((this.stream._duplexState & WRITE_UPDATING) === 0) qmt(this.afterUpdateNextTick);
}
};
var ReadableState = class {
constructor(stream, { highWaterMark = 16384, map = null, mapReadable, byteLength, byteLengthReadable } = {}) {
this.stream = stream;
this.queue = new FIFO();
this.highWaterMark = highWaterMark === 0 ? 1 : highWaterMark;
this.buffered = 0;
this.readAhead = highWaterMark > 0;
this.error = null;
this.pipeline = null;
this.byteLength = byteLengthReadable || byteLength || defaultByteLength;
this.map = mapReadable || map;
this.pipeTo = null;
this.afterRead = afterRead.bind(this);
this.afterUpdateNextTick = updateReadNT.bind(this);
}
get ending() {
return (this.stream._duplexState & READ_ENDING) !== 0;
}
get ended() {
return (this.stream._duplexState & READ_DONE) !== 0;
}
pipe(pipeTo, cb) {
if (this.pipeTo !== null) throw StreamError.BAD_ARGUMENT("Can only pipe to one destination");
if (typeof cb !== "function") cb = null;
this.stream._duplexState |= READ_PIPE_DRAINED;
this.pipeTo = pipeTo;
this.pipeline = new Pipeline(this.stream, pipeTo, cb);
if (cb) this.stream.on("error", noop);
if (isStreamx(pipeTo)) {
pipeTo._writableState.pipeline = this.pipeline;
if (cb) pipeTo.on("error", noop);
pipeTo.on("finish", this.pipeline.finished.bind(this.pipeline));
} else {
const onerror = this.pipeline.done.bind(this.pipeline, pipeTo);
const onclose = this.pipeline.done.bind(this.pipeline, pipeTo, null);
pipeTo.on("error", onerror);
pipeTo.on("close", onclose);
pipeTo.on("finish", this.pipeline.finished.bind(this.pipeline));
}
pipeTo.on("drain", afterDrain.bind(this));
this.stream.emit("piping", pipeTo);
pipeTo.emit("pipe", this.stream);
}
push(data) {
const stream = this.stream;
if (data === null) {
this.highWaterMark = 0;
stream._duplexState = (stream._duplexState | READ_ENDING) & READ_NON_PRIMARY_AND_PUSHED;
return false;
}
if (this.map !== null) {
data = this.map(data);
if (data === null) {
stream._duplexState &= READ_PUSHED;
return this.buffered < this.highWaterMark;
}
}
this.buffered += this.byteLength(data);
this.queue.push(data);
stream._duplexState = (stream._duplexState | READ_QUEUED) & READ_PUSHED;
return this.buffered < this.highWaterMark;
}
shift() {
const data = this.queue.shift();
this.buffered -= this.byteLength(data);
if (this.buffered === 0) {
this.stream._duplexState &= READ_NOT_QUEUED;
}
return data;
}
unshift(data) {
const pending = [this.map !== null ? this.map(data) : data];
while (this.buffered > 0) pending.push(this.shift());
for (let i = 0; i < pending.length - 1; i++) {
const data2 = pending[i];
this.buffered += this.byteLength(data2);
this.queue.push(data2);
}
this.push(pending[pending.length - 1]);
}
read() {
const stream = this.stream;
if ((stream._duplexState & READ_STATUS) === READ_QUEUED) {
const data = this.shift();
if (this.pipeTo !== null && this.pipeTo.write(data) === false) {
stream._duplexState &= READ_PIPE_NOT_DRAINED;
}
if ((stream._duplexState & READ_EMIT_DATA) !== 0) {
stream.emit("data", data);
}
return data;
}
if (this.readAhead === false) {
stream._duplexState |= READ_READ_AHEAD;
this.updateNextTick();
}
return null;
}
drain() {
const stream = this.stream;
while ((stream._duplexState & READ_STATUS) === READ_QUEUED && (stream._duplexState & READ_FLOWING) !== 0) {
const data = this.shift();
if (this.pipeTo !== null && this.pipeTo.write(data) === false) {
stream._duplexState &= READ_PIPE_NOT_DRAINED;
}
if ((stream._duplexState & READ_EMIT_DATA) !== 0) {
stream.emit("data", data);
}
}
}
update() {
const stream = this.stream;
stream._duplexState |= READ_UPDATING;
do {
this.drain();
while (this.buffered < this.highWaterMark && (stream._duplexState & SHOULD_NOT_READ) === READ_READ_AHEAD) {
stream._duplexState |= READ_ACTIVE_AND_NEEDS_PUSH;
stream._read(this.afterRead);
this.drain();
}
if ((stream._duplexState & READ_READABLE_STATUS) === READ_EMIT_READABLE_AND_QUEUED) {
stream._duplexState |= READ_EMITTED_READABLE;
stream.emit("readable");
}
if ((stream._duplexState & READ_PRIMARY_AND_ACTIVE) === 0) {
this.updateNonPrimary();
}
} while (this.continueUpdate() === true);
stream._duplexState &= READ_NOT_UPDATING;
}
updateNonPrimary() {
const stream = this.stream;
if ((stream._duplexState & READ_ENDING_STATUS) === READ_ENDING) {
stream._duplexState = (stream._duplexState | READ_DONE) & READ_NOT_ENDING;
stream.emit("end");
if ((stream._duplexState & AUTO_DESTROY) === DONE) {
stream._duplexState |= DESTROYING;
}
if (this.pipeTo !== null) {
this.pipeTo.end();
}
}
if ((stream._duplexState & DESTROY_STATUS) === DESTROYING) {
if ((stream._duplexState & ACTIVE_OR_TICKING) === 0) {
stream._duplexState |= ACTIVE;
stream._destroy(afterDestroy.bind(this));
}
return;
}
if ((stream._duplexState & IS_OPENING) === OPENING) {
stream._duplexState = (stream._duplexState | ACTIVE) & NOT_OPENING;
stream._open(afterOpen.bind(this));
}
}
continueUpdate() {
if ((this.stream._duplexState & READ_NEXT_TICK) === 0) return false;
this.stream._duplexState &= READ_NOT_NEXT_TICK;
return true;
}
updateCallback() {
if ((this.stream._duplexState & READ_UPDATE_SYNC_STATUS) === READ_PRIMARY) {
this.update();
} else {
this.updateNextTick();
}
}
updateNextTickIfOpen() {
if ((this.stream._duplexState & READ_NEXT_TICK_OR_OPENING) !== 0) return;
this.stream._duplexState |= READ_NEXT_TICK;
if ((this.stream._duplexState & READ_UPDATING) === 0) qmt(this.afterUpdateNextTick);
}
updateNextTick() {
if ((this.stream._duplexState & READ_NEXT_TICK) !== 0) return;
this.stream._duplexState |= READ_NEXT_TICK;
if ((this.stream._duplexState & READ_UPDATING) === 0) qmt(this.afterUpdateNextTick);
}
};
var TransformState = class {
constructor(stream) {
this.data = null;
this.afterTransform = afterTransform.bind(stream);
this.afterFinal = null;
}
};
var Pipeline = class {
constructor(src, dst, cb) {
this.from = src;
this.to = dst;
this.afterPipe = cb;
this.error = null;
this.pipeToFinished = false;
}
finished() {
this.pipeToFinished = true;
}
done(stream, err) {
if (err) this.error = err;
if (stream === this.to) {
this.to = null;
if (this.from !== null) {
if ((this.from._duplexState & READ_DONE) === 0 || !this.pipeToFinished) {
this.from.destroy(this.error || StreamError.PREMATURE_CLOSE("Writable stream closed"));
}
return;
}
}
if (stream === this.from) {
this.from = null;
if (this.to !== null) {
if ((stream._duplexState & READ_DONE) === 0) {
this.to.destroy(this.error || StreamError.PREMATURE_CLOSE("Readable stream closed"));
}
return;
}
}
if (this.afterPipe !== null) this.afterPipe(this.error);
this.to = this.from = this.afterPipe = null;
}
};
function afterDrain() {
this.stream._duplexState |= READ_PIPE_DRAINED;
this.updateCallback();
}
function afterFinal(err) {
const stream = this.stream;
if (err) stream.destroy(err);
if ((stream._duplexState & DESTROY_STATUS) === 0) {
stream._duplexState |= WRITE_DONE;
stream.emit("finish");
}
if ((stream._duplexState & AUTO_DESTROY) === DONE) {
stream._duplexState |= DESTROYING;
}
stream._duplexState &= WRITE_NOT_FINISHING;
if ((stream._duplexState & WRITE_UPDATING) === 0) {
this.update();
} else {
this.updateNextTick();
}
}
function afterDestroy(err) {
const stream = this.stream;
if (!err && !StreamError.isStreamDestroyed(this.error)) err = this.error;
if (err) stream.emit("error", err);
stream._duplexState |= DESTROYED;
stream.emit("close");
const rs = stream._readableState;
const ws = stream._writableState;
if (rs !== null && rs.pipeline !== null) {
rs.pipeline.done(stream, err);
}
if (ws !== null) {
while (ws.drains !== null && ws.drains.length > 0) {
ws.drains.shift().resolve(false);
}
if (ws.pipeline !== null) {
ws.pipeline.done(stream, err);
}
}
}
function afterWrite(err) {
const stream = this.stream;
if (err) stream.destroy(err);
stream._duplexState &= WRITE_NOT_ACTIVE;
if (this.drains !== null) tickDrains(this.drains);
if ((stream._duplexState & WRITE_DRAIN_STATUS) === WRITE_UNDRAINED) {
stream._duplexState &= WRITE_DRAINED;
if ((stream._duplexState & WRITE_EMIT_DRAIN) === WRITE_EMIT_DRAIN) {
stream.emit("drain");
}
}
this.updateCallback();
}
function afterRead(err) {
if (err) this.stream.destroy(err);
this.stream._duplexState &= READ_NOT_ACTIVE;
if (this.readAhead === false && (this.stream._duplexState & READ_RESUMED) === 0) {
this.stream._duplexState &= READ_NO_READ_AHEAD;
}
this.updateCallback();
}
function updateReadNT() {
if ((this.stream._duplexState & READ_UPDATING) === 0) {
this.stream._duplexState &= READ_NOT_NEXT_TICK;
this.update();
}
}
function updateWriteNT() {
if ((this.stream._duplexState & WRITE_UPDATING) === 0) {
this.stream._duplexState &= WRITE_NOT_NEXT_TICK;
this.update();
}
}
function tickDrains(drains) {
for (let i = 0; i < drains.length; i++) {
if (--drains[i].writes === 0) {
drains.shift().resolve(true);
i--;
}
}
}
function afterOpen(err) {
const stream = this.stream;
if (err) stream.destroy(err);
if ((stream._duplexState & DESTROYING) === 0) {
if ((stream._duplexState & READ_PRIMARY_STATUS) === 0) {
stream._duplexState |= READ_PRIMARY;
}
if ((stream._duplexState & WRITE_PRIMARY_STATUS) === 0) {
stream._duplexState |= WRITE_PRIMARY;
}
stream.emit("open");
}
stream._duplexState &= NOT_ACTIVE;
if (stream._writableState !== null) {
stream._writableState.updateCallback();
}
if (stream._readableState !== null) {
stream._readableState.updateCallback();
}
}
function afterTransform(err, data) {
if (data !== void 0 && data !== null) this.push(data);
this._writableState.afterWrite(err);
}
function newListener(name) {
if (this._readableState !== null) {
if (name === "data") {
this._duplexState |= READ_EMIT_DATA | READ_RESUMED_READ_AHEAD;
this._readableState.updateNextTick();
}
if (name === "readable") {
this._duplexState |= READ_EMIT_READABLE;
this._readableState.updateNextTick();
}
}
if (this._writableState !== null) {
if (name === "drain") {
this._duplexState |= WRITE_EMIT_DRAIN;
this._writableState.updateNextTick();
}
}
}
var Stream = class extends EventEmitter {
constructor(opts) {
super();
this._duplexState = 0;
this._readableState = null;
this._writableState = null;
if (opts) {
if (opts.open) this._open = opts.open;
if (opts.destroy) this._destroy = opts.destroy;
if (opts.predestroy) this._predestroy = opts.predestroy;
if (opts.signal) opts.signal.addEventListener("abort", abort.bind(this));
}
this.on("newListener", newListener);
}
_open(cb) {
cb(null);
}
_destroy(cb) {
cb(null);
}
_predestroy() {
}
get readable() {
return this._readableState !== null ? true : void 0;
}
get writable() {
return this._writableState !== null ? true : void 0;
}
get destroyed() {
return (this._duplexState & DESTROYED) !== 0;
}
get destroying() {
return (this._duplexState & DESTROY_STATUS) !== 0;
}
destroy(err) {
if ((this._duplexState & DESTROY_STATUS) === 0) {
if (!err) err = StreamError.STREAM_DESTROYED();
this._duplexState = (this._duplexState | DESTROYING) & NON_PRIMARY;
if (this._readableState !== null) {
this._readableState.highWaterMark = 0;
this._readableState.error = err;
}
if (this._writableState !== null) {
this._writableState.highWaterMark = 0;
this._writableState.error = err;
}
this._duplexState |= PREDESTROYING;
this._predestroy();
this._duplexState &= NOT_PREDESTROYING;
if (this._readableState !== null) {
this._readableState.updateNextTick();
}
if (this._writableState !== null) {
this._writableState.updateNextTick();
}
}
}
};
var Readable = class _Readable extends Stream {
constructor(opts) {
super(opts);
this._duplexState |= OPENING | WRITE_DONE | READ_READ_AHEAD;
this._readableState = new ReadableState(this, opts);
if (opts) {
if (this._readableState.readAhead === false) this._duplexState &= READ_NO_READ_AHEAD;
if (opts.read) this._read = opts.read;
if (opts.eagerOpen) this._readableState.updateNextTick();
if (opts.encoding) this.setEncoding(opts.encoding);
}
}
static deferred(fn, opts) {
const out = new PassThrough(opts);
fn().then((src) => {
if (src === null) return out.end();
if (out.destroying) return;
pipeline(src, out, noop);
}).catch((err) => out.destroy(err));
return out;
}
setEncoding(encoding) {
const dec = new TextDecoder(encoding);
const map = this._readableState.map || echo;
this._readableState.map = mapOrSkip;
return this;
function mapOrSkip(data) {
const next = dec.push(data);
return next === "" && (data.byteLength !== 0 || dec.remaining > 0) ? null : map(next);
}
}
_read(cb) {
cb(null);
}
pipe(dest, cb) {
this._readableState.updateNextTick();
this._readableState.pipe(dest, cb);
return dest;
}
read() {
this._readableState.updateNextTick();
return this._readableState.read();
}
push(data) {
this._readableState.updateNextTickIfOpen();
return this._readableState.push(data);
}
unshift(data) {
this._readableState.updateNextTickIfOpen();
return this._readableState.unshift(data);
}
resume() {
this._duplexState |= READ_RESUMED_READ_AHEAD;
this._readableState.updateNextTick();
return this;
}
pause() {
this._duplexState &= this._readableState.readAhead === false ? READ_PAUSED_NO_READ_AHEAD : READ_PAUSED;
return this;
}
static _fromAsyncIterator(ite, opts) {
let destroy;
const rs = new _Readable({
...opts,
read(cb) {
ite.next().then(push).then(cb.bind(null, null)).catch(cb);
},
predestroy() {
destroy = ite.return();
},
destroy(cb) {
if (!destroy) return cb(null);
destroy.then(cb.bind(null, null)).catch(cb);
}
});
return rs;
function push(data) {
if (data.done) rs.push(null);
else rs.push(data.value);
}
}
static from(data, opts) {
if (isReadStreamx(data)) return data;
if (data[asyncIterator]) return this._fromAsyncIterator(data[asyncIterator](), opts);
if (!Array.isArray(data)) data = data === void 0 ? [] : [data];
let i = 0;
return new _Readable({
...opts,
read(cb) {
this.push(i === data.length ? null : data[i++]);
cb(null);
}
});
}
static isBackpressured(rs) {
return (rs._duplexState & READ_BACKPRESSURE_STATUS) !== 0 || rs._readableState.buffered >= rs._readableState.highWaterMark;
}
static isPaused(rs) {
return (rs._duplexState & READ_RESUMED) === 0;
}
[asyncIterator]() {
const stream = this;
let error = null;
let promiseResolve = null;
let promiseReject = null;
this.on("error", (err) => {
error = err;
});
this.on("readable", onreadable);
this.on("close", onclose);
return {
[asyncIterator]() {
return this;
},
next() {
return new Promise(function(resolve, reject) {
promiseResolve = resolve;
promiseReject = reject;
const data = stream.read();
if (data !== null) ondata(data);
else if ((stream._duplexState & DESTROYED) !== 0) ondata(null);
});
},
return() {
return destroy(null);
},
throw(err) {
return destroy(err);
}
};
function onreadable() {
if (promiseResolve !== null) ondata(stream.read());
}
function onclose() {
if (promiseResolve !== null) ondata(null);
}
function ondata(data) {
if (promiseReject === null) return;
if (error) {
promiseReject(error);
} else if (data === null && (stream._duplexState & READ_DONE) === 0) {
promiseReject(StreamError.STREAM_DESTROYED());
} else {
promiseResolve({ value: data, done: data === null });
}
promiseReject = promiseResolve = null;
}
function destroy(err) {
stream.destroy(err);
return new Promise((resolve, reject) => {
if (stream._duplexState & DESTROYED) return resolve({ value: void 0, done: true });
stream.once("close", function() {
if (err) reject(err);
else resolve({ value: void 0, done: true });
});
});
}
}
};
var Writable = class extends Stream {
constructor(opts) {
super(opts);
this._duplexState |= OPENING | READ_DONE;
this._writableState = new WritableState(this, opts);
if (opts) {
if (opts.writev) this._writev = opts.writev;
if (opts.write) this._write = opts.write;
if (opts.final) this._final = opts.final;
if (opts.eagerOpen) this._writableState.updateNextTick();
}
}
cork() {
this._duplexState |= WRITE_CORKED;
}
uncork() {
this._duplexState &= WRITE_NOT_CORKED;
this._writableState.updateNextTick();
}
_writev(batch, cb) {
cb(null);
}
_write(data, cb) {
this._writableState.autoBatch(data, cb);
}
_final(cb) {
cb(null);
}
static isBackpressured(ws) {
return (ws._duplexState & WRITE_BACKPRESSURE_STATUS) !== 0;
}
static drained(ws) {
if (ws.destroyed) return Promise.resolve(false);
const state = ws._writableState;
const pending = isWritev(ws) ? Math.min(1, state.queue.length) : state.queue.length;
const writes = pending + (ws._duplexState & WRITE_WRITING ? 1 : 0);
if (writes === 0) return Promise.resolve(true);
if (state.drains === null) state.drains = [];
return new Promise((resolve) => {
state.drains.push({ writes, resolve });
});
}
write(data) {
this._writableState.updateNextTick();
return this._writableState.push(data);
}
end(data) {
this._writableState.updateNextTick();
this._writableState.end(data);
return this;
}
};
var Duplex = class extends Readable {
// and Writable
constructor(opts) {
super(opts);
this._duplexState = OPENING | this._duplexState & READ_READ_AHEAD;
this._writableState = new WritableState(this, opts);
if (opts) {
if (opts.writev) this._writev = opts.writev;
if (opts.write) this._write = opts.write;
if (opts.final) this._final = opts.final;
}
}
cork() {
this._duplexState |= WRITE_CORKED;
}
uncork() {
this._duplexState &= WRITE_NOT_CORKED;
this._writableState.updateNextTick();
}
_writev(batch, cb) {
cb(null);
}
_write(data, cb) {
this._writableState.autoBatch(data, cb);
}
_final(cb) {
cb(null);
}
write(data) {
this._writableState.updateNextTick();
return this._writableState.push(data);
}
end(data) {
this._writableState.updateNextTick();
this._writableState.end(data);
return this;
}
};
var Transform = class extends Duplex {
constructor(opts) {
super(opts);
this._transformState = new TransformState(this);
if (opts) {
if (opts.transform) this._transform = opts.transform;
if (opts.flush) this._flush = opts.flush;
}
}
_write(data, cb) {
if (this._readableState.buffered >= this._readableState.highWaterMark) {
this._transformState.data = data;
} else {
this._transform(data, this._transformState.afterTransform);
}
}
_read(cb) {
if (this._transformState.data !== null) {
const data = this._transformState.data;
this._transformState.data = null;
cb(null);
this._transform(data, this._transformState.afterTransform);
} else {
cb(null);
}
}
destroy(err) {
super.destroy(err);
if (this._transformState.data !== null) {
this._transformState.data = null;
this._transformState.afterTransform();
}
}
_transform(data, cb) {
cb(null, data);
}
_flush(cb) {
cb(null);
}
_final(cb) {
this._transformState.afterFinal = cb;
this._flush(transformAfterFlush.bind(this));
}
};
var PassThrough = class extends Transform {
};
function transformAfterFlush(err, data) {
const cb = this._transformState.afterFinal;
if (err) return cb(err);
if (data !== null && data !== void 0) this.push(data);
this.push(null);
cb(null);
}
function pipelinePromise(...streams) {
return new Promise((resolve, reject) => {
return pipeline(...streams, (err) => {
if (err) return reject(err);
resolve();
});
});
}
function pipeline(stream, ...streams) {
const all = Array.isArray(stream) ? [...stream, ...streams] : [stream, ...streams];
const done = all.length && typeof all[all.length - 1] === "function" ? all.pop() : null;
if (all.length < 2) throw StreamError.BAD_ARGUMENT("Pipeline requires at least 2 streams");
let src = all[0];
let dest = null;
let error = null;
for (let i = 1; i < all.length; i++) {
dest = all[i];
if (isStreamx(src)) {
src.pipe(dest, onerror);
} else {
errorHandle(src, true, i > 1, onerror);
src.pipe(dest);
}
src = dest;
}
if (done) {
let fin = false;
const autoDestroy = isStreamx(dest) || !!(dest._writableState && dest._writableState.autoDestroy);
dest.on("error", (err) => {
if (error === null) error = err;
});
dest.on("finish", () => {
fin = true;
if (!autoDestroy) done(error);
});
if (autoDestroy) {
dest.on("close", () => done(error || (fin ? null : StreamError.PREMATURE_CLOSE())));
}
}
return dest;
function errorHandle(s, rd, wr, onerror2) {
s.on("error", onerror2);
s.on("close", onclose);
function onclose() {
if (rd && s._readableState && !s._readableState.ended) {
return onerror2(StreamError.PREMATURE_CLOSE());
}
if (wr && s._writableState && !s._writableState.ended) {
return onerror2(StreamError.PREMATURE_CLOSE());
}
}
}
function onerror(err) {
if (!err || error) return;
error = err;
for (const s of all) {
s.destroy(err);
}
}
}
function echo(s) {
return s;
}
function isStream(stream) {
return !!stream._readableState || !!stream._writableState;
}
function isStreamx(stream) {
return typeof stream._duplexState === "number" && isStream(stream);
}
function isEnding(stream) {
return !!stream._readableState && stream._readableState.ending;
}
function isEnded(stream) {
return !!stream._readableState && stream._readableState.ended;
}
function isFinishing(stream) {
return !!stream._writableState && stream._writableState.ending;
}
function isFinished(stream) {
return !!stream._writableState && stream._writableState.ended;
}
function getStreamError(stream, opts = {}) {
const err = stream._readableState && stream._readableState.error || stream._writableState && stream._writableState.error;
return !opts.all && StreamError.isStreamDestroyed(err) ? null : err;
}
function isReadStreamx(stream) {
return isStreamx(stream) && stream.readable;
}
function isDisturbed(stream) {
return (stream._duplexState & OPENING) !== OPENING || (stream._duplexState & DESTROYING) === DESTROYING || (stream._duplexState & ACTIVE_OR_TICKING) !== 0;
}
function isTypedArray(data) {
return typeof data === "object" && data !== null && typeof data.byteLength === "number";
}
function defaultByteLength(data) {
return isTypedArray(data) ? data.byteLength : 1024;
}
function noop() {
}
function abort() {
this.destroy(StreamError.ABORTED());
}
function isWritev(s) {
return s._writev !== Writable.prototype._writev && s._writev !== Duplex.prototype._writev;
}
module.exports = {
pipeline,
pipelinePromise,
isStream,
isStreamx,
isEnding,
isEnded,
isFinishing,
isFinished,
isDisturbed,
getStreamError,
Stream,
Writable,
Readable,
Duplex,
Transform,
// Export PassThrough for compatibility with Node.js core's stream module
PassThrough
};
}
});
// ../../node_modules/teex/index.js
var require_teex = __commonJS({
"../../node_modules/teex/index.js"(exports, module) {
var { Readable } = require_streamx();
module.exports = function(s, forks = 2) {
const streams = new Array(forks);
const status = new Array(forks).fill(true);
let ended = false;
for (let i = 0; i < forks; i++) {
streams[i] = new Readable({
read(cb) {
const check = !status[i];
status[i] = true;
if (check && allReadable()) s.resume();
cb(null);
}
});
}
s.on("end", function() {
ended = true;
for (const stream of streams) stream.push(null);
});
s.on("error", function(err) {
for (const stream of streams) stream.destroy(err);
});
s.on("close", function() {
if (ended) return;
for (const stream of streams) stream.destroy();
});
s.on("data", function(data) {
let needsPause = false;
for (let i = 0; i < streams.length; i++) {
if (!(status[i] = streams[i].push(data))) {
needsPause = true;
}
}
if (needsPause) s.pause();
});
return streams;
function allReadable() {
for (let j = 0; j < status.length; j++) {
if (!status[j]) return false;
}
return true;
}
};
}
});
// ../../node_modules/bare-stream/web.js
var require_web = __commonJS({
"../../node_modules/bare-stream/web.js"(exports) {
var { Readable, Writable, Transform, getStreamError, isStreamx, isDisturbed } = require_streamx();
var tee = require_teex();
var readableKind = Symbol.for("bare.stream.readable.kind");
var writableKind = Symbol.for("bare.stream.writable.kind");
var transformKind = Symbol.for("bare.stream.transform.kind");
exports.ReadableStreamDefaultReader = class ReadableStreamDefaultReader {
constructor(stream) {
this._stream = stream;
this._stream._stream.once("close", onclose).once("error", onerror);
const closed = Promise.withResolvers();
closed.promise.catch(noop);
this._closed = closed;
function onclose() {
closed.resolve();
}
function onerror(err) {
closed.reject(err);
}
}
get closed() {
return this._closed.promise;
}
read() {
const stream = this._stream._stream;
return new Promise((resolve, reject) => {
const err = getStreamError(stream);
if (err) return reject(err);
if (stream.destroyed) {
return resolve({ value: void 0, done: true });
}
const value = stream.read();
if (value !== null) {
return resolve({ value, done: false });
}
stream.once("readable", onreadable).once("close", onclose).once("error", onerror);
function onreadable() {
const value2 = stream.read();
ondone(null, value2 === null ? { value: void 0, done: true } : { value: value2, done: false });
}
function onclose() {
ondone(null, { value: void 0, done: true });
}
function onerror(err2) {
ondone(err2, null);
}
function ondone(err2, value2) {
stream.off("readable", onreadable).off("close", onclose).off("error", onerror);
if (err2) reject(err2);
else resolve(value2);
}
});
}
releaseLock() {
this._closed.reject(new TypeError("Reader was released"));
this._stream._releaseLock();
this._stream = null;
}
cancel(reason = new TypeError("Stream was cancelled")) {
const stream = this._stream._stream;
if (stream.destroyed) return Promise.resolve();
return new Promise(
(resolve) => stream.once("close", resolve).once("error", noop).destroy(reason)
);
}
};
exports.ReadableStreamDefaultController = class ReadableStreamDefaultController {
constructor(stream) {
this._stream = stream;
}
get desiredSize() {
const stream = this._stream._stream;
return stream._readableState.highWaterMark - stream._readableState.buffered;
}
enqueue(data) {
this._stream._stream.push(data);
}
close() {
this._stream._stream.push(null);
}
error(err) {
this._stream._stream.destroy(err);
}
};
var ReadableStream = class _ReadableStream {
static get [readableKind]() {
return 0;
}
static from(iterable) {
return new _ReadableStream(Readable.from(iterable));
}
constructor(underlyingSource = {}, queuingStrategy) {
if (isStreamx(underlyingSource)) {
this._stream = underlyingSource;
} else {
if (queuingStrategy === void 0) {
queuingStrategy = new exports.CountQueuingStrategy();
}
const { start, pull, cancel } = underlyingSource;
const { highWaterMark = 1, size = defaultSize } = queuingStrategy;
this._stream = new Readable({ highWaterMark, byteLength: size });
const controller = new exports.ReadableStreamDefaultController(this);
try {
let starting = Promise.resolve();
if (start) starting = forwardError(start.call(this, controller), controller);
if (pull) {
this._stream._read = this._read.bind(this, starting, pull.bind(this, controller));
}
if (cancel) {
this._stream.once("error", cancel.bind(this));
}
} catch (err) {
controller.error(err);
}
}
this._reader = null;
}
get [readableKind]() {
return _ReadableStream[readableKind];
}
get locked() {
return this._reader !== null;
}
getReader() {
if (this.locked) throw new TypeError("Stream is locked");
this._reader = new exports.ReadableStreamDefaultReader(this);
return this._reader;
}
cancel(reason = new TypeError("Stream was cancelled")) {
const stream = this._stream;
if (stream.destroyed) return Promise.resolve();
if (this.locked) return Promise.reject(new TypeError("Stream is locked"));
return new Promise(
(resolve) => stream.once("close", resolve).once("error", noop).destroy(reason)
);
}
tee() {
const [a, b] = tee(this._stream);
return [new _ReadableStream(a), new _ReadableStream(b)];
}
pipeTo(destination) {
return new Promise(
(resolve, reject) => this._stream.pipe(destination._stream, (err) => {
err ? reject(err) : resolve();
})
);
}
[Symbol.asyncIterator]() {
return this._stream[Symbol.asyncIterator]();
}
_releaseLock() {
this._reader = null;
}
async _read(starting, pull, cb) {
await starting;
let err = null;
try {
await pull();
} catch (e) {
err = e;
}
cb(err);
}
};
function defaultSize() {
return 1;
}
exports.ReadableStream = ReadableStream;
exports.CountQueuingStrategy = class CountQueuingStrategy {
constructor(opts = {}) {
const { highWaterMark = 1 } = opts;
this.highWaterMark = highWaterMark;
}
size(chunk) {
return 1;
}
};
exports.ByteLengthQueuingStrategy = class ByteLengthQueuingStrategy {
constructor(opts = {}) {
const { highWaterMark = 16384 } = opts;
this.highWaterMark = highWaterMark;
}
size(chunk) {
return chunk.byteLength;
}
};
exports.isReadableStream = function isReadableStream(value) {
if (value instanceof ReadableStream) return true;
return typeof value === "object" && value !== null && value[readableKind] === ReadableStream[readableKind];
};
exports.isReadableStreamErrored = function isReadableStreamErrored(stream) {
return getStreamError(stream._stream) !== null;
};
exports.isReadableStreamDisturbed = function isReadableStreamDisturbed(stream) {
return isDisturbed(stream._stream);
};
exports.WritableStreamDefaultWriter = class WritableStreamDefaultWriter {
constructor(stream) {
this._stream = stream;
this._stream._stream.once("close", onclose).once("error", onerror);
const closed = Promise.withResolvers();
closed.promise.catch(noop);
this._closed = closed;
function onclose() {
closed.resolve();
}
function onerror(err) {
closed.reject(err);
}
}
get desiredSize() {
const stream = this._stream._stream;
return stream._writableState.highWaterMark - stream._writableState.buffered;
}
get closed() {
return this._closed.promise;
}
get ready() {
const stream = this._stream._stream;
if (getStreamError(stream)) return Promise.reject();
return Writable.drained(stream).then();
}
async write(chunk) {
const stream = this._stream._stream;
let err = getStreamError(stream);
if (err) return Promise.reject(err);
stream.write(chunk);
await Writable.drained(stream);
err = getStreamError(stream);
if (err) return Promise.reject(err);
}
releaseLock() {
this._closed.reject(new TypeError("Writer was released"));
this._stream._releaseLock();
this._stream = null;
}
close() {
const stream = this._stream._stream;
if (stream.destroyed) return Promise.resolve();
return new Promise((resolve) => stream.once("close", resolve).end());
}
abort(reason = new TypeError("Stream was aborted")) {
const stream = this._stream._stream;
if (stream.destroyed) return Promise.resolve();
return new Promise((resolve) => stream.once("close", resolve).destroy(reason));
}
};
exports.WritableStreamDefaultController = class WritableStreamDefaultController {
constructor(stream) {
this._stream = stream;
}
error(err) {
this._stream._stream.destroy(err);
}
};
var WritableStream = class _WritableStream {
static get [writableKind]() {
return 0;
}
constructor(underlyingSink = {}, queuingStrategy = {}) {
if (isStreamx(underlyingSink)) {
this._stream = underlyingSink;
} else {
if (queuingStrategy === void 0) {
queuingStrategy = new exports.CountQueuingStrategy();
}
const { start, write, close, abort } = underlyingSink;
const { highWaterMark = 1, size = defaultSize } = queuingStrategy;
this._stream = new Writable({ highWaterMark, byteLength: size });
const controller = new exports.WritableStreamDefaultController(this);
this._controller = controller;
try {
let starting = Promise.resolve();
if (start) starting = forwardError(start.call(this, controller), controller);
if (write) {
this._stream._write = this._write.bind(this, starting, write.bind(this));
}
if (close) {
this._stream._destroy = this._destroy.bind(this, close.call(this));
}
if (abort) {
this._stream.once("error", abort.bind(this));
}
} catch (err) {
controller.error(err);
}
}
this._writer = null;
}
get [writableKind]() {
return _WritableStream[writableKind];
}
get locked() {
return this._writer !== null;
}
getWriter() {
if (this.locked) throw new TypeError("Stream is locked");
this._writer = new exports.WritableStreamDefaultWriter(this);
return this._writer;
}
abort(reason = new TypeError("Stream was aborted")) {
if (this._stream.destroyed) return Promise.resolve();
if (this.locked) return Promise.reject(new TypeError("Stream is locked"));
return new Promise((resolve) => this._stream.once("close", resolve).destroy(reason));
}
close() {
if (this._stream.destroyed) return Promise.resolve();
if (this.locked) return Promise.reject(new TypeError("Stream is locked"));
return new Promise((resolve) => this._stream.once("close", resolve).end());
}
_releaseLock() {
this._writer = null;
}
async _write(starting, write, data, cb) {
await starting;
let err = null;
try {
await write(data, this._controller);
} catch (e) {
err = e;
}
cb(err);
}
async _destroy(closing, cb) {
let err = null;
try {
await closing;
} catch (e) {
err = e;
}
cb(err);
}
};
exports.WritableStream = WritableStream;
exports.isWritableStream = function isWritableStream(value) {
if (value instanceof WritableStream) return true;
return typeof value === "object" && value !== null && value[writableKind] === WritableStream[writableKind];
};
exports.TransformStreamDefaultController = class TransformStreamDefaultController {
constructor(stream) {
this._stream = stream;
}
get desiredSize() {
const stream = this._stream._stream;
return stream._readableState.highWaterMark - stream._readableState.buffered;
}
enqueue(data) {
this._stream._stream.push(data);
}
error(err) {
this._stream._stream.destroy(err);
}
terminate() {
const stream = this._stream._stream;
stream.push(null);
stream.destroy(new TypeError("Stream has been terminated"));
}
};
var TransformStream = class _TransformStream {
static get [transformKind]() {
return 0;
}
constructor(transformer = {}, writableStrategy = {}, readableStrategy = {}) {
if (isStreamx(transformer)) {
this._stream = transformer;
} else {
const { start, transform, flush } = transformer;
this._stream = new Transform({ ...writableStrategy, ...readableStrategy });
const controller = new exports.TransformStreamDefaultController(this);
this._controller = controller;
try {
let starting = Promise.resolve();
if (start) starting = forwardError(start.call(this, controller), controller);
if (transform) {
this._stream._transform = this._transform.bind(this, starting, transform.bind(this));
}
if (flush) {
this._stream._flush = this._flush.bind(this, flush.call(this, this._controller));
}
} catch (err) {
controller.error(err);
}
}
this._writable = new WritableStream(this._stream);
this._readable = new ReadableStream(this._stream);
}
get [transformKind]() {
return _TransformStream[transformKind];
}
get writable() {
return this._writable;
}
get readable() {
return this._readable;
}
async _transform(starting, transform, data, cb) {
await starting;
let err = null;
try {
await transform(data, this._controller);
} catch (e) {
err = e;
}
cb(err);
}
async _flush(flush, cb) {
let err = null;
try {
await flush;
} catch (e) {
err = e;
}
cb(err);
}
};
exports.TransformStream = TransformStream;
exports.isTransformStream = function isTransformStream(value) {
if (value instanceof TransformStream) return true;
return typeof value === "object" && value !== null && value[transformKind] === TransformStream[transformKind];
};
async function forwardError(promise, controller) {
try {
await promise;
} catch (err) {
controller.error(err);
}
}
function noop() {
}
}
});
// ../../node_modules/bare-stream/index.js
var require_bare_stream = __commonJS({
"../../node_modules/bare-stream/index.js"(exports, module) {
var b4a = require_b4a();
var stream = require_streamx();
var { ReadableStream, WritableStream } = require_web();
var defaultEncoding = "utf8";
module.exports = exports = stream.Stream;
exports.pipeline = stream.pipeline;
exports.isStream = stream.isStream;
exports.isEnding = stream.isEnding;
exports.isEnded = stream.isEnded;
exports.isFinishing = stream.isFinishing;
exports.isFinished = stream.isFinished;
exports.isDisturbed = stream.isDisturbed;
exports.isErrored = function isErrored(stream2) {
return exports.getStreamError(stream2) !== null;
};
exports.isReadable = function isReadable(stream2) {
return stream2.readable && !stream2.destroying && !exports.isEnded(stream2);
};
exports.isWritable = function isWritable(stream2) {
return stream2.writable && !stream2.destroying && !exports.isFinishing(stream2);
};
exports.getStreamError = stream.getStreamError;
exports.addAbortSignal = function addAbortSignal(signal, stream2) {
function onAbort() {
stream2.destroy(signal.reason);
}
if (signal.aborted) onAbort();
else signal.addEventListener("abort", onAbort);
return stream2;
};
exports.Stream = exports;
exports.Readable = class Readable extends stream.Readable {
constructor(opts = {}) {
super({
...opts,
byteLength: null,
byteLengthReadable: null,
map: null,
mapReadable: null
});
if (this._construct) this._open = this._construct;
if (this._read !== stream.Readable.prototype._read) {
this._read = read.bind(this, this._read);
}
if (this._destroy !== stream.Stream.prototype._destroy) {
this._destroy = destroy.bind(this, this._destroy);
}
}
get closed() {
return !exports.isReadable(this);
}
get errored() {
return stream.getStreamError(this);
}
push(chunk, encoding) {
if (typeof chunk === "string") {
chunk = b4a.from(chunk, encoding || defaultEncoding);
}
return super.push(chunk);
}
unshift(chunk, encoding) {
if (typeof chunk === "string") {
chunk = b4a.from(chunk, encoding || defaultEncoding);
}
super.unshift(chunk);
}
static fromWeb(readableStream, opts = {}) {
const stream2 = readableStream._stream;
if (opts.encoding) stream2.setEncoding(opts.encoding);
if (opts.signal) exports.addAbortSignal(opts.signal, stream2);
return stream2;
}
static toWeb(readable, opts = {}) {
return new ReadableStream(readable, opts.strategy);
}
async [Symbol.asyncDispose]() {
if (!this.destroyed) this.destroy();
await new Promise((resolve) => exports.finished(this, resolve));
}
};
exports.Writable = class Writable extends stream.Writable {
constructor(opts = {}) {
super({
...opts,
byteLength: null,
byteLengthWritable,
map: null,
mapWritable: null
});
if (this._construct) this._open = this._construct;
if (this._write !== stream.Writable.prototype._write) {
this._write = write.bind(this, this._write);
}
if (this._destroy !== stream.Stream.prototype._destroy) {
this._destroy = destroy.bind(this, this._destroy);
}
}
get closed() {
return !exports.isWritable(this);
}
get errored() {
return stream.getStreamError(this);
}
write(chunk, encoding, cb) {
if (typeof encoding === "function") {
cb = encoding;
encoding = null;
}
if (typeof chunk === "string") {
encoding = encoding || defaultEncoding;
chunk = b4a.from(chunk, encoding);
} else {
encoding = "buffer";
}
const result = super.write({ chunk, encoding });
if (cb) stream.Writable.drained(this).then(() => cb(null), cb);
return result;
}
end(chunk, encoding, cb) {
if (typeof chunk === "function") {
cb = chunk;
chunk = null;
} else if (typeof encoding === "function") {
cb = encoding;
encoding = null;
}
if (typeof chunk === "string") {
encoding = encoding || defaultEncoding;
chunk = b4a.from(chunk, encoding || defaultEncoding);
} else {
encoding = "buffer";
}
const result = chunk !== void 0 && chunk !== null ? super.end({ chunk, encoding }) : super.end();
if (cb) this.once("finish", () => cb(null));
return result;
}
static fromWeb(writableStream, opts = {}) {
const stream2 = writableStream._stream;
if (opts.signal) exports.addAbortSignal(opts.signal, stream2);
return stream2;
}
static toWeb(writable) {
return new WritableStream(writable);
}
async [Symbol.asyncDispose]() {
if (!this.destroyed) this.destroy();
await new Promise((resolve) => exports.finished(this, resolve));
}
};
exports.Duplex = class Duplex extends stream.Duplex {
constructor(opts = {}) {
super({
...opts,
byteLength: null,
byteLengthReadable: null,
byteLengthWritable,
map: null,
mapReadable: null,
mapWritable: null
});
if (this._construct) this._open = this._construct;
if (this._read !== stream.Readable.prototype._read) {
this._read = read.bind(this, this._read);
}
if (this._write !== stream.Duplex.prototype._write) {
this._write = write.bind(this, this._write);
}
if (this._destroy !== stream.Stream.prototype._destroy) {
this._destroy = destroy.bind(this, this._destroy);
}
}
push(chunk, encoding) {
if (typeof chunk === "string") {
chunk = b4a.from(chunk, encoding || defaultEncoding);
}
return super.push(chunk);
}
unshift(chunk, encoding) {
if (typeof chunk === "string") {
chunk = b4a.from(chunk, encoding || defaultEncoding);
}
super.unshift(chunk);
}
write(chunk, encoding, cb) {
if (typeof encoding === "function") {
cb = encoding;
encoding = null;
}
if (typeof chunk === "string") {
encoding = encoding || defaultEncoding;
chunk = b4a.from(chunk, encoding);
} else {
encoding = "buffer";
}
const result = super.write({ chunk, encoding });
if (cb) stream.Writable.drained(this).then(() => cb(null), cb);
return result;
}
end(chunk, encoding, cb) {
if (typeof chunk === "function") {
cb = chunk;
chunk = null;
} else if (typeof encoding === "function") {
cb = encoding;
encoding = null;
}
if (typeof chunk === "string") {
encoding = encoding || defaultEncoding;
chunk = b4a.from(chunk, encoding);
} else {
encoding = "buffer";
}
const result = chunk !== void 0 && chunk !== null ? super.end({ chunk, encoding }) : super.end();
if (cb) this.once("finish", () => cb(null));
return result;
}
static fromWeb({ readable: readableStream, writable: writableStream }, opts) {
const readable = exports.Readable.fromWeb(readableStream, opts);
const writable = exports.Writable.fromWeb(writableStream, opts);
const duplex = new exports.Duplex({
write(data, encoding, cb) {
writable.write(data, encoding, cb);
}
});
readable.on("data", (data) => duplex.push(data)).on("end", () => duplex.push(null)).on("error", (err) => duplex.destroy(err));
writable.on("finish", () => duplex.end()).on("error", (err) => duplex.destroy(err));
return duplex;
}
static toWeb(duplex) {
const readableStream = exports.Readable.toWeb(duplex);
const writableStream = exports.Writable.toWeb(duplex);
return { readable: readableStream, writable: writableStream };
}
};
var DuplexSide = class extends exports.Duplex {
constructor(opts) {
super(opts);
this._otherSide = null;
this._cb = null;
}
_read() {
const cb = this._cb;
if (!cb) return;
this._cb = null;
cb();
}
_write(chunk, encoding, cb) {
this._otherSide.push(chunk, encoding);
this._otherSide._cb = cb;
}
_final(cb) {
this._otherSide.on("end", cb);
this._otherSide.push(null);
}
};
exports.duplexPair = function duplexPair(opts) {
const sideA = new DuplexSide(opts);
const sideB = new DuplexSide(opts);
sideA._otherSide = sideB;
sideB._otherSide = sideA;
return [sideA, sideB];
};
exports.Transform = class Transform extends stream.Transform {
constructor(opts = {}) {
super({
...opts,
byteLength: null,
byteLengthReadable: null,
byteLengthWritable,
map: null,
mapReadable: null,
mapWritable: null
});
if (this._transform !== stream.Transform.prototype._transform) {
this._transform = transform.bind(this, this._transform);
} else {
this._transform = passthrough;
}
}
push(chunk, encoding) {
if (typeof chunk === "string") {
chunk = b4a.from(chunk, encoding || defaultEncoding);
}
return super.push(chunk);
}
unshift(chunk, encoding) {
if (typeof chunk === "string") {
chunk = b4a.from(chunk, encoding || defaultEncoding);
}
super.unshift(chunk);
}
write(chunk, encoding, cb) {
if (typeof encoding === "function") {
cb = encoding;
encoding = null;
}
if (typeof chunk === "string") {
encoding = encoding || defaultEncoding;
chunk = b4a.from(chunk, encoding);
} else {
encoding = "buffer";
}
const result = super.write({ chunk, encoding });
if (cb) stream.Writable.drained(this).then(() => cb(null), cb);
return result;
}
end(chunk, encoding, cb) {
if (typeof chunk === "function") {
cb = chunk;
chunk = null;
} else if (typeof encoding === "function") {
cb = encoding;
encoding = null;
}
if (typeof chunk === "string") {
encoding = encoding || defaultEncoding;
chunk = b4a.from(chunk, encoding);
} else {
encoding = "buffer";
}
const result = chunk !== void 0 && chunk !== null ? super.end({ chunk, encoding }) : super.end();
if (cb) this.once("finish", () => cb(null));
return result;
}
};
exports.PassThrough = class PassThrough extends exports.Transform {
};
exports.finished = function finished(stream2, opts, cb) {
if (typeof opts === "function") {
cb = opts;
opts = {};
}
if (!opts) opts = {};
const { cleanup = false } = opts;
const done = () => {
cb(exports.getStreamError(stream2, { all: true }));
if (cleanup) detach();
};
const detach = () => {
stream2.off("close", done);
stream2.off("error", noop);
};
if (stream2.destroyed) {
done();
} else {
stream2.on("close", done);
stream2.on("error", noop);
}
return detach;
};
function read(read2, cb) {
read2.call(this, 65536);
cb(null);
}
function write(write2, data, cb) {
write2.call(this, data.chunk, data.encoding, cb);
}
function transform(transform2, data, cb) {
transform2.call(this, data.chunk, data.encoding, cb);
}
function destroy(destroy2, cb) {
destroy2.call(this, exports.getStreamError(this), cb);
}
function passthrough(data, cb) {
cb(null, data.chunk);
}
function byteLengthWritable(data) {
return data.chunk.byteLength;
}
function noop() {
}
}
});
// ../../node_modules/bare-fs/binding.js
var require_binding9 = __commonJS({
"../../node_modules/bare-fs/binding.js"(exports, module) {
module.exports = __require.addon();
}
});
// ../../node_modules/bare-fs/lib/constants.js
var require_constants3 = __commonJS({
"../../node_modules/bare-fs/lib/constants.js"(exports, module) {
var binding = require_binding9();
module.exports = {
O_RDWR: binding.O_RDWR,
O_RDONLY: binding.O_RDONLY,
O_WRONLY: binding.O_WRONLY,
O_CREAT: binding.O_CREAT,
O_TRUNC: binding.O_TRUNC,
O_APPEND: binding.O_APPEND,
F_OK: binding.F_OK || 0,
R_OK: binding.R_OK || 0,
W_OK: binding.W_OK || 0,
X_OK: binding.X_OK || 0,
S_IFMT: binding.S_IFMT,
S_IFREG: binding.S_IFREG,
S_IFDIR: binding.S_IFDIR,
S_IFCHR: binding.S_IFCHR,
S_IFLNK: binding.S_IFLNK,
S_IFBLK: binding.S_IFBLK || 0,
S_IFIFO: binding.S_IFIFO || 0,
S_IFSOCK: binding.S_IFSOCK || 0,
S_IRUSR: binding.S_IRUSR || 0,
S_IWUSR: binding.S_IWUSR || 0,
S_IXUSR: binding.S_IXUSR || 0,
S_IRGRP: binding.S_IRGRP || 0,
S_IWGRP: binding.S_IWGRP || 0,
S_IXGRP: binding.S_IXGRP || 0,
S_IROTH: binding.S_IROTH || 0,
S_IWOTH: binding.S_IWOTH || 0,
S_IXOTH: binding.S_IXOTH || 0,
UV_DIRENT_UNKNOWN: binding.UV_DIRENT_UNKNOWN,
UV_DIRENT_FILE: binding.UV_DIRENT_FILE,
UV_DIRENT_DIR: binding.UV_DIRENT_DIR,
UV_DIRENT_LINK: binding.UV_DIRENT_LINK,
UV_DIRENT_FIFO: binding.UV_DIRENT_FIFO,
UV_DIRENT_SOCKET: binding.UV_DIRENT_SOCKET,
UV_DIRENT_CHAR: binding.UV_DIRENT_CHAR,
UV_DIRENT_BLOCK: binding.UV_DIRENT_BLOCK,
COPYFILE_EXCL: binding.UV_FS_COPYFILE_EXCL,
COPYFILE_FICLONE: binding.UV_FS_COPYFILE_FICLONE,
COPYFILE_FICLONE_FORCE: binding.UV_FS_COPYFILE_FICLONE_FORCE,
UV_FS_SYMLINK_DIR: binding.UV_FS_SYMLINK_DIR,
UV_FS_SYMLINK_JUNCTION: binding.UV_FS_SYMLINK_JUNCTION
};
}
});
// ../../node_modules/bare-fs/lib/errors.js
var require_errors7 = __commonJS({
"../../node_modules/bare-fs/lib/errors.js"(exports, module) {
var binding = require_binding9();
module.exports = class FileError extends Error {
constructor(msg, opts = {}) {
const { code, operation = null, path = null, destination = null, fd = -1 } = opts;
if (operation !== null) msg += describe(operation, opts);
super(`${code}: ${msg}`);
this.code = code;
if (operation !== null) this.operation = operation;
if (path !== null) this.path = path;
if (destination !== null) this.destination = destination;
if (fd !== -1) this.fd = fd;
}
get name() {
return "FileError";
}
// For Node.js compatibility
get errno() {
return binding.errnos[this.code];
}
// For Node.js compatibility
get syscall() {
return this.operation;
}
// For Node.js compatibility
get dest() {
return this.destination;
}
};
function describe(operation, opts) {
const { path = null, destination = null, fd = -1 } = opts;
let result = `, ${operation}`;
if (path !== null) {
result += ` ${JSON.stringify(path)}`;
if (destination !== null) {
result += ` -> ${JSON.stringify(destination)}`;
}
} else if (fd !== -1) {
result += ` ${fd}`;
}
return result;
}
}
});
// ../../node_modules/bare-fs/promises.js
var require_promises = __commonJS({
"../../node_modules/bare-fs/promises.js"(exports) {
var EventEmitter = require_bare_events();
var fs = require_bare_fs();
var FileHandle = class extends EventEmitter {
constructor(fd) {
super();
this.fd = fd;
}
async close() {
await fs.close(this.fd);
this.fd = -1;
this.emit("close");
}
async read(buffer, ...args) {
return {
bytesRead: await fs.read(this.fd, buffer, ...args),
buffer
};
}
async readv(buffers, ...args) {
return {
bytesRead: await fs.readv(this.fd, buffers, ...args),
buffers
};
}
async write(buffer, ...args) {
return {
bytesWritten: await fs.write(this.fd, buffer, ...args),
buffer
};
}
async writev(buffers, ...args) {
return {
bytesWritten: await fs.writev(this.fd, buffers, ...args),
buffers
};
}
async stat() {
return fs.fstat(this.fd);
}
async chmod(mode) {
await fs.fchmod(this.fd, mode);
}
async chown(uid, gid) {
await fs.fchown(this.fd, uid, gid);
}
async datasync() {
return fs.fdatasync(this.fd);
}
async sync() {
return fs.fsync(this.fd);
}
async truncate(len) {
await fs.ftruncate(this.fd, len);
}
async utimes(atime, mtime) {
await fs.futimes(this.fd, atime, mtime);
}
createReadStream(opts) {
return fs.createReadStream(null, { ...opts, fd: this.fd });
}
createWriteStream(opts) {
return fs.createWriteStream(null, { ...opts, fd: this.fd });
}
async [Symbol.asyncDispose]() {
await this.close();
}
};
exports.open = async function open(filepath, flags, mode) {
return new FileHandle(await fs.open(filepath, flags, mode));
};
exports.access = fs.access;
exports.appendFile = fs.appendFile;
exports.chmod = fs.chmod;
exports.chown = fs.chown;
exports.constants = fs.constants;
exports.copyFile = fs.copyFile;
exports.cp = fs.cp;
exports.lchown = fs.lchown;
exports.lutimes = fs.lutimes;
exports.link = fs.link;
exports.lstat = fs.lstat;
exports.mkdir = fs.mkdir;
exports.mkdtemp = fs.mkdtemp;
exports.opendir = fs.opendir;
exports.readFile = fs.readFile;
exports.readdir = fs.readdir;
exports.readlink = fs.readlink;
exports.realpath = fs.realpath;
exports.rename = fs.rename;
exports.rm = fs.rm;
exports.rmdir = fs.rmdir;
exports.stat = fs.stat;
exports.statfs = fs.statfs;
exports.truncate = fs.truncate;
exports.symlink = fs.symlink;
exports.unlink = fs.unlink;
exports.utimes = fs.utimes;
exports.watch = fs.watch;
exports.writeFile = fs.writeFile;
}
});
// ../../node_modules/bare-fs/index.js
var require_bare_fs = __commonJS({
"../../node_modules/bare-fs/index.js"(exports) {
var FIFO = require_fast_fifo();
var EventEmitter = require_bare_events();
var path = require_bare_path();
var { isURL, fileURLToPath } = require_bare_url();
var { Readable, Writable } = require_bare_stream();
var binding = require_binding9();
var constants = require_constants3();
var FileError = require_errors7();
var isWindows = Bare.platform === "win32";
exports.constants = constants;
var FileRequest = class _FileRequest {
static borrow() {
if (this._free.length > 0) return this._free.pop();
return new _FileRequest();
}
static return(req) {
if (this._free.length < 32) this._free.push(req.reset());
else req.destroy();
}
constructor() {
this._reset();
this._handle = binding.requestInit(this, this._onresult);
}
get handle() {
return this._handle;
}
retain(value) {
this._retain = value;
}
reset() {
if (this._handle === null) return this;
binding.requestReset(this._handle);
this._reset();
return this;
}
destroy() {
if (this._handle === null) return this;
binding.requestDestroy(this._handle);
this._reset();
this._handle = null;
return this;
}
then(resolve, reject) {
return this._promise.then(resolve, reject);
}
return() {
if (this._handle === null) return this;
_FileRequest.return(this);
return this;
}
_reset() {
this._promise = new Promise((resolve, reject) => {
this._resolve = resolve;
this._reject = reject;
});
this._retain = null;
}
_onresult(err, status) {
if (err) this._reject(err);
else this._resolve(status);
}
};
FileRequest._free = [];
function ok(result, cb) {
if (typeof result === "function") {
cb = result;
result = void 0;
}
if (cb) cb(null, result);
else return result;
}
function fail(err, cb) {
if (cb) cb(err);
else throw err;
}
function done(err, result, cb) {
if (typeof result === "function") {
cb = result;
result = void 0;
}
if (err) fail(err, cb);
else return ok(result, cb);
}
async function open(filepath, flags = "r", mode = 438, cb) {
if (typeof flags === "function") {
cb = flags;
flags = "r";
mode = 438;
} else if (typeof mode === "function") {
cb = mode;
mode = 438;
}
if (typeof flags === "string") flags = toFlags(flags);
if (typeof mode === "string") mode = toMode(mode);
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
let fd;
let err = null;
try {
binding.open(req.handle, filepath, flags, mode);
fd = await req;
} catch (e) {
err = new FileError(e.message, {
operation: "open",
code: e.code,
path: filepath
});
} finally {
req.return();
}
return done(err, fd, cb);
}
function openSync(filepath, flags = "r", mode = 438) {
if (typeof flags === "string") flags = toFlags(flags);
if (typeof mode === "string") mode = toMode(mode);
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
try {
return binding.openSync(req.handle, filepath, flags, mode);
} catch (e) {
throw new FileError(e.message, {
operation: "open",
code: e.code,
path: filepath
});
} finally {
req.return();
}
}
async function close(fd, cb) {
const req = FileRequest.borrow();
let err = null;
try {
binding.close(req.handle, fd);
await req;
} catch (e) {
err = new FileError(e.message, { operation: "close", code: e.code, fd });
} finally {
req.return();
}
return done(err, cb);
}
function closeSync(fd) {
const req = FileRequest.borrow();
try {
binding.closeSync(req.handle, fd);
} catch (e) {
throw new FileError(e.message, { operation: "close", code: e.code, fd });
} finally {
req.return();
}
}
async function access(filepath, mode = constants.F_OK, cb) {
if (typeof mode === "function") {
cb = mode;
mode = constants.F_OK;
}
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
let err = null;
try {
binding.access(req.handle, filepath, mode);
await req;
} catch (e) {
err = new FileError(e.message, {
operation: "access",
code: e.code,
path: filepath
});
} finally {
req.return();
}
return done(err, cb);
}
function accessSync(filepath, mode = constants.F_OK) {
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
try {
binding.accessSync(req.handle, filepath, mode);
} catch (e) {
throw new FileError(e.message, {
operation: "access",
code: e.code,
path: filepath
});
} finally {
req.return();
}
}
async function exists(filepath, cb) {
let ok2 = true;
try {
await access(filepath);
} catch {
ok2 = false;
}
return done(null, ok2, cb);
}
function existsSync(filepath) {
try {
accessSync(filepath);
} catch {
return false;
}
return true;
}
async function read(fd, buffer, offset = 0, len = buffer.byteLength - offset, pos = -1, cb) {
if (typeof offset === "function") {
cb = offset;
offset = 0;
len = buffer.byteLength;
pos = -1;
} else if (typeof len === "function") {
cb = len;
len = buffer.byteLength - offset;
pos = -1;
} else if (typeof pos === "function") {
cb = pos;
pos = -1;
}
if (typeof pos !== "number") pos = -1;
const req = FileRequest.borrow();
let bytes;
let err = null;
try {
binding.read(req.handle, fd, buffer, offset, len, pos);
req.retain(buffer);
bytes = await req;
} catch (e) {
err = new FileError(e.message, { operation: "read", code: e.code, fd });
} finally {
req.return();
}
return done(err, bytes, cb);
}
function readSync(fd, buffer, offset = 0, len = buffer.byteLength - offset, pos = -1) {
const req = FileRequest.borrow();
try {
return binding.readSync(req.handle, fd, buffer, offset, len, pos);
} catch (e) {
throw new FileError(e.message, { operation: "read", code: e.code, fd });
} finally {
req.return();
}
}
async function readv(fd, buffers, pos = -1, cb) {
if (typeof pos === "function") {
cb = pos;
pos = -1;
}
if (typeof pos !== "number") pos = -1;
const req = FileRequest.borrow();
let bytes;
let err = null;
try {
binding.readv(req.handle, fd, buffers, pos);
req.retain(buffers);
bytes = await req;
} catch (e) {
err = new FileError(e.message, { operation: "readv", code: e.code, fd });
} finally {
req.return();
}
return done(err, bytes, cb);
}
function readvSync(fd, buffers, pos = -1) {
if (typeof pos !== "number") pos = -1;
const req = FileRequest.borrow();
try {
return binding.readvSync(req.handle, fd, buffers, pos);
} catch (e) {
throw new FileError(e.message, { operation: "readv", code: e.code, fd });
} finally {
req.return();
}
}
async function write(fd, data, offset, len, pos = -1, cb) {
if (typeof data === "string") {
let encoding = len;
cb = pos;
pos = offset;
if (typeof pos === "function") {
cb = pos;
pos = -1;
encoding = "utf8";
} else if (typeof encoding === "function") {
cb = encoding;
encoding = "utf8";
}
if (typeof pos === "string") {
encoding = pos;
pos = -1;
}
data = Buffer.from(data, encoding);
offset = 0;
len = data.byteLength;
} else if (typeof offset === "function") {
cb = offset;
offset = 0;
len = data.byteLength;
pos = -1;
} else if (typeof len === "function") {
cb = len;
len = data.byteLength - offset;
pos = -1;
} else if (typeof pos === "function") {
cb = pos;
pos = -1;
}
if (typeof offset !== "number") offset = 0;
if (typeof len !== "number") len = data.byteLength - offset;
if (typeof pos !== "number") pos = -1;
const req = FileRequest.borrow();
let bytes;
let err = null;
try {
binding.write(req.handle, fd, data, offset, len, pos);
req.retain(data);
bytes = await req;
} catch (e) {
err = new FileError(e.message, { operation: "write", code: e.code, fd });
} finally {
req.return();
}
return done(err, bytes, cb);
}
function writeSync(fd, data, offset, len, pos = -1) {
if (typeof data === "string") {
let encoding = len;
pos = offset;
if (typeof pos === "string") {
encoding = pos;
pos = -1;
}
data = Buffer.from(data, encoding);
offset = 0;
len = data.byteLength;
}
if (typeof offset !== "number") offset = 0;
if (typeof len !== "number") len = data.byteLength - offset;
if (typeof pos !== "number") pos = -1;
const req = FileRequest.borrow();
try {
return binding.writeSync(req.handle, fd, data, offset, len, pos);
} catch (e) {
throw new FileError(e.message, { operation: "write", code: e.code, fd });
} finally {
req.return();
}
}
async function writev(fd, buffers, pos = -1, cb) {
if (typeof pos === "function") {
cb = pos;
pos = -1;
}
if (typeof pos !== "number") pos = -1;
const req = FileRequest.borrow();
let bytes;
let err = null;
try {
binding.writev(req.handle, fd, buffers, pos);
req.retain(buffers);
bytes = await req;
} catch (e) {
err = new FileError(e.message, { operation: "writev", code: e.code, fd });
} finally {
req.return();
}
return done(err, bytes, cb);
}
function writevSync(fd, buffers, pos = -1) {
if (typeof pos !== "number") pos = -1;
const req = FileRequest.borrow();
try {
return binding.writevSync(req.handle, fd, buffers, pos);
} catch (e) {
throw new FileError(e.message, { operation: "writev", code: e.code, fd });
} finally {
req.return();
}
}
async function stat(filepath, cb) {
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
let st;
let err = null;
try {
binding.stat(req.handle, filepath);
await req;
st = new Stats(...binding.requestResultStat(req.handle));
} catch (e) {
err = new FileError(e.message, { operation: "stat", code: e.code, path: filepath });
} finally {
req.return();
}
return done(err, st, cb);
}
function statSync(filepath) {
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
try {
binding.statSync(req.handle, filepath);
return new Stats(...binding.requestResultStat(req.handle));
} catch (e) {
throw new FileError(e.message, { operation: "stat", code: e.code, path: filepath });
} finally {
req.return();
}
}
async function lstat(filepath, cb) {
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
let st;
let err = null;
try {
binding.lstat(req.handle, filepath);
await req;
st = new Stats(...binding.requestResultStat(req.handle));
} catch (e) {
err = new FileError(e.message, { operation: "lstat", code: e.code, path: filepath });
} finally {
req.return();
}
return done(err, st, cb);
}
function lstatSync(filepath) {
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
try {
binding.lstatSync(req.handle, filepath);
return new Stats(...binding.requestResultStat(req.handle));
} catch (e) {
throw new FileError(e.message, { operation: "lstat", code: e.code, path: filepath });
} finally {
req.return();
}
}
async function fstat(fd, cb) {
const req = FileRequest.borrow();
let st;
let err = null;
try {
binding.fstat(req.handle, fd);
await req;
st = new Stats(...binding.requestResultStat(req.handle));
} catch (e) {
err = new FileError(e.message, { operation: "fstat", code: e.code, fd });
} finally {
req.return();
}
return done(err, st, cb);
}
function fstatSync(fd) {
const req = FileRequest.borrow();
try {
binding.fstatSync(req.handle, fd);
return new Stats(...binding.requestResultStat(req.handle));
} catch (e) {
throw new FileError(e.message, { operation: "fstat", code: e.code, fd });
} finally {
req.return();
}
}
async function statfs(filepath, cb) {
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
let st;
let err = null;
try {
binding.statfs(req.handle, filepath);
await req;
st = new StatFs(...binding.requestResultStatfs(req.handle));
} catch (e) {
err = new FileError(e.message, { operation: "statfs", code: e.code, path: filepath });
} finally {
req.return();
}
return done(err, st, cb);
}
function statfsSync(filepath) {
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
try {
binding.statfsSync(req.handle, filepath);
return new StatFs(...binding.requestResultStatfs(req.handle));
} catch (e) {
throw new FileError(e.message, { operation: "statfs", code: e.code, path: filepath });
} finally {
req.return();
}
}
async function ftruncate(fd, len = 0, cb) {
if (typeof len === "function") {
cb = len;
len = 0;
}
if (typeof len !== "number") len = 0;
const req = FileRequest.borrow();
let err = null;
try {
binding.ftruncate(req.handle, fd, len);
await req;
} catch (e) {
err = new FileError(e.message, { operation: "ftruncate", code: e.code, fd });
} finally {
req.return();
}
return done(err, cb);
}
function ftruncateSync(fd, len = 0) {
if (typeof len !== "number") len = 0;
const req = FileRequest.borrow();
try {
binding.ftruncateSync(req.handle, fd, len);
} catch (e) {
throw new FileError(e.message, { operation: "ftruncate", code: e.code, fd });
} finally {
req.return();
}
}
async function truncate(filepath, len, cb) {
let fd = -1;
let err;
try {
fd = await open(filepath, "r+");
await ftruncate(fd, len);
} catch (e) {
err = e;
} finally {
if (fd !== -1) await close(fd);
}
return done(err, cb);
}
function truncateSync(filepath, len) {
let fd = -1;
let err;
try {
fd = openSync(filepath, "r+");
ftruncateSync(fd, len);
} catch (e) {
err = e;
} finally {
if (fd !== -1) closeSync(fd);
}
}
async function chmod(filepath, mode, cb) {
if (typeof mode === "string") mode = toMode(mode);
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
let err = null;
try {
binding.chmod(req.handle, filepath, mode);
await req;
} catch (e) {
err = new FileError(e.message, {
operation: "chmod",
code: e.code,
path: filepath
});
} finally {
req.return();
}
return done(err, cb);
}
function chmodSync(filepath, mode) {
if (typeof mode === "string") mode = toMode(mode);
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
try {
binding.chmodSync(req.handle, filepath, mode);
} catch (e) {
throw new FileError(e.message, {
operation: "chmod",
code: e.code,
path: filepath
});
} finally {
req.return();
}
}
async function fchmod(fd, mode, cb) {
if (typeof mode === "string") mode = toMode(mode);
const req = FileRequest.borrow();
let err = null;
try {
binding.fchmod(req.handle, fd, mode);
await req;
} catch (e) {
err = new FileError(e.message, { operation: "fchmod", code: e.code, fd });
} finally {
req.return();
}
return done(err, cb);
}
function fchmodSync(fd, mode) {
if (typeof mode === "string") mode = toMode(mode);
const req = FileRequest.borrow();
try {
binding.fchmodSync(req.handle, fd, mode);
} catch (e) {
throw new FileError(e.message, { operation: "fchmod", code: e.code, fd });
} finally {
req.return();
}
}
async function chown(filepath, uid, gid, cb) {
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
let err = null;
try {
binding.chown(req.handle, filepath, uid, gid);
await req;
} catch (e) {
err = new FileError(e.message, { operation: "chown", code: e.code, path: filepath });
} finally {
req.return();
}
return done(err, cb);
}
function chownSync(filepath, uid, gid) {
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
try {
binding.chownSync(req.handle, filepath, uid, gid);
} catch (e) {
throw new FileError(e.message, { operation: "chownSync", code: e.code, path: filepath });
} finally {
req.return();
}
}
async function lchown(filepath, uid, gid, cb) {
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
let err = null;
try {
binding.lchown(req.handle, filepath, uid, gid);
await req;
} catch (e) {
err = new FileError(e.message, { operation: "lchown", code: e.code, path: filepath });
} finally {
req.return();
}
return done(err, cb);
}
function lchownSync(filepath, uid, gid) {
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
try {
binding.lchownSync(req.handle, filepath, uid, gid);
} catch (e) {
throw new FileError(e.message, { operation: "lchownSync", code: e.code, path: filepath });
} finally {
req.return();
}
}
async function fchown(fd, uid, gid, cb) {
const req = FileRequest.borrow();
let err = null;
try {
binding.fchown(req.handle, fd, uid, gid);
await req;
} catch (e) {
err = new FileError(e.message, { operation: "fchown", code: e.code, fd });
} finally {
req.return();
}
return done(err, cb);
}
function fchownSync(fd, uid, gid) {
const req = FileRequest.borrow();
try {
binding.fchownSync(req.handle, fd, uid, gid);
} catch (e) {
throw new FileError(e.message, { operation: "fchownSync", code: e.code, fd });
} finally {
req.return();
}
}
async function utimes(filepath, atime, mtime, cb) {
if (typeof atime !== "number") atime = atime.getTime() / 1e3;
if (typeof mtime !== "number") mtime = mtime.getTime() / 1e3;
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
let err = null;
try {
binding.utimes(req.handle, filepath, atime, mtime);
await req;
} catch (e) {
err = new FileError(e.message, { operation: "utimes", code: e.code, path: filepath });
} finally {
req.return();
}
return done(err, cb);
}
function utimesSync(filepath, atime, mtime) {
if (typeof atime !== "number") atime = atime.getTime() / 1e3;
if (typeof mtime !== "number") mtime = mtime.getTime() / 1e3;
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
try {
binding.utimesSync(req.handle, filepath, atime, mtime);
} catch (e) {
throw new FileError(e.message, { operation: "utimes", code: e.code, path: filepath });
} finally {
req.return();
}
}
async function lutimes(filepath, atime, mtime, cb) {
if (typeof atime !== "number") atime = atime.getTime() / 1e3;
if (typeof mtime !== "number") mtime = mtime.getTime() / 1e3;
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
let err = null;
try {
binding.lutimes(req.handle, filepath, atime, mtime);
await req;
} catch (e) {
err = new FileError(e.message, { operation: "lutimes", code: e.code, path: filepath });
} finally {
req.return();
}
return done(err, cb);
}
function lutimesSync(filepath, atime, mtime) {
if (typeof atime !== "number") atime = atime.getTime() / 1e3;
if (typeof mtime !== "number") mtime = mtime.getTime() / 1e3;
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
try {
binding.lutimesSync(req.handle, filepath, atime, mtime);
} catch (e) {
throw new FileError(e.message, { operation: "lutimes", code: e.code, path: filepath });
} finally {
req.return();
}
}
async function futimes(fd, atime, mtime, cb) {
if (typeof atime !== "number") atime = atime.getTime() / 1e3;
if (typeof mtime !== "number") mtime = mtime.getTime() / 1e3;
const req = FileRequest.borrow();
let err = null;
try {
binding.futimes(req.handle, fd, atime, mtime);
await req;
} catch (e) {
err = new FileError(e.message, { operation: "futimes", code: e.code, fd });
} finally {
req.return();
}
return done(err, cb);
}
function futimesSync(fd, atime, mtime) {
if (typeof atime !== "number") atime = atime.getTime() / 1e3;
if (typeof mtime !== "number") mtime = mtime.getTime() / 1e3;
const req = FileRequest.borrow();
try {
binding.futimesSync(req.handle, fd, atime, mtime);
} catch (e) {
throw new FileError(e.message, { operation: "futimesSync", code: e.code, fd });
} finally {
req.return();
}
}
async function link(src, dst, cb) {
src = toNamespacedPath(src);
dst = toNamespacedPath(dst);
const req = FileRequest.borrow();
let err = null;
try {
binding.link(req.handle, src, dst);
await req;
} catch (e) {
err = new FileError(e.message, { operation: "link", code: e.code, path: src, destination: dst });
} finally {
req.return();
}
return done(err, cb);
}
function linkSync(src, dst) {
src = toNamespacedPath(src);
dst = toNamespacedPath(dst);
const req = FileRequest.borrow();
try {
binding.linkSync(req.handle, src, dst);
} catch (e) {
throw new FileError(e.message, {
operation: "linkSync",
code: e.code,
path: src,
destination: dst
});
} finally {
req.return();
}
}
async function mkdir(filepath, opts, cb) {
if (typeof opts === "function") {
cb = opts;
opts = { mode: 511 };
}
if (typeof opts === "number") opts = { mode: opts };
else if (!opts) opts = {};
const mode = typeof opts.mode === "number" ? opts.mode : 511;
filepath = toNamespacedPath(filepath);
if (opts.recursive) {
let err2 = null;
try {
try {
await mkdir(filepath, { mode });
} catch (err3) {
if (err3.code !== "ENOENT") {
if (!(await stat(filepath)).isDirectory()) throw err3;
} else {
while (filepath.endsWith(path.sep)) filepath = filepath.slice(0, -1);
const i = filepath.lastIndexOf(path.sep);
if (i <= 0) throw err3;
await mkdir(filepath.slice(0, i), { mode, recursive: true });
try {
await mkdir(filepath, { mode });
} catch (err4) {
if (!(await stat(filepath)).isDirectory()) throw err4;
}
}
}
} catch (e) {
err2 = e;
}
return done(err2, cb);
}
const req = FileRequest.borrow();
let err = null;
try {
binding.mkdir(req.handle, filepath, mode);
await req;
} catch (e) {
err = new FileError(e.message, {
operation: "mkdir",
code: e.code,
path: filepath
});
} finally {
req.return();
}
return done(err, cb);
}
function mkdirSync(filepath, opts) {
if (typeof opts === "number") opts = { mode: opts };
else if (!opts) opts = {};
const mode = typeof opts.mode === "number" ? opts.mode : 511;
filepath = toNamespacedPath(filepath);
if (opts.recursive) {
try {
mkdirSync(filepath, { mode });
} catch (err) {
if (err.code !== "ENOENT") {
if (!statSync(filepath).isDirectory()) throw err;
} else {
while (filepath.endsWith(path.sep)) filepath = filepath.slice(0, -1);
const i = filepath.lastIndexOf(path.sep);
if (i <= 0) throw err;
mkdirSync(filepath.slice(0, i), { mode, recursive: true });
try {
mkdirSync(filepath, { mode });
} catch (err2) {
if (!statSync(filepath).isDirectory()) throw err2;
}
}
}
return;
}
const req = FileRequest.borrow();
try {
binding.mkdirSync(req.handle, filepath, mode);
} catch (e) {
throw new FileError(e.message, {
operation: "mkdir",
code: e.code,
path: filepath
});
} finally {
req.return();
}
}
async function mkdtemp(prefix, cb) {
prefix = toNamespacedPath(prefix);
const req = FileRequest.borrow();
let res;
let err = null;
try {
binding.mkdtemp(req.handle, prefix + "XXXXXX");
await req;
res = binding.requestResultPath(req.handle);
} catch (e) {
err = new FileError(e.message, { operation: "mkdtemp", code: e.code, path: prefix });
} finally {
req.return();
}
return done(err, res, cb);
}
function mkdtempSync(prefix) {
prefix = toNamespacedPath(prefix);
const req = FileRequest.borrow();
try {
binding.mkdtempSync(req.handle, prefix + "XXXXXX");
return binding.requestResultPath(req.handle);
} catch (e) {
throw new FileError(e.message, { operation: "mkdtempSync", code: e.code, path: prefix });
} finally {
req.return();
}
}
async function rmdir(filepath, cb) {
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
let err = null;
try {
binding.rmdir(req.handle, filepath);
await req;
} catch (e) {
err = new FileError(e.message, {
operation: "rmdir",
code: e.code,
path: filepath
});
} finally {
req.return();
}
return done(err, cb);
}
function rmdirSync(filepath) {
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
try {
binding.rmdirSync(req.handle, filepath);
} catch (e) {
throw new FileError(e.message, {
operation: "rmdir",
code: e.code,
path: filepath
});
} finally {
req.return();
}
}
async function rm(filepath, opts, cb) {
if (typeof opts === "function") {
cb = opts;
opts = {};
}
if (!opts) opts = {};
filepath = toNamespacedPath(filepath);
let err = null;
try {
const st = await lstat(filepath);
if (st.isDirectory()) {
if (opts.recursive) {
try {
await rmdir(filepath);
} catch (err2) {
if (err2.code !== "ENOTEMPTY") throw err2;
const files = await readdir(filepath);
for (const file of files) {
await rm(filepath + path.sep + file, opts);
}
await rmdir(filepath);
}
} else {
throw new FileError("is a directory", {
operation: "rm",
code: "EISDIR",
path: filepath
});
}
} else {
await unlink(filepath);
}
} catch (e) {
if (e.code !== "ENOENT" || !opts.force) err = e;
}
return done(err, cb);
}
function rmSync(filepath, opts) {
if (!opts) opts = {};
filepath = toNamespacedPath(filepath);
try {
const st = lstatSync(filepath);
if (st.isDirectory()) {
if (opts.recursive) {
try {
rmdirSync(filepath);
} catch (err) {
if (err.code !== "ENOTEMPTY") throw err;
const files = readdirSync(filepath);
for (const file of files) {
rmSync(filepath + path.sep + file, opts);
}
rmdirSync(filepath);
}
} else {
throw new FileError("is a directory", {
operation: "rm",
code: "EISDIR",
path: filepath
});
}
} else {
unlinkSync(filepath);
}
} catch (err) {
if (err.code !== "ENOENT" || !opts.force) throw err;
}
}
async function unlink(filepath, cb) {
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
let err = null;
try {
binding.unlink(req.handle, filepath);
await req;
} catch (e) {
err = new FileError(e.message, {
operation: "unlink",
code: e.code,
path: filepath
});
} finally {
req.return();
}
return done(err, cb);
}
function unlinkSync(filepath) {
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
try {
binding.unlinkSync(req.handle, filepath);
} catch (e) {
throw new FileError(e.message, {
operation: "unlink",
code: e.code,
path: filepath
});
} finally {
req.return();
}
}
async function rename(src, dst, cb) {
src = toNamespacedPath(src);
dst = toNamespacedPath(dst);
const req = FileRequest.borrow();
let err = null;
try {
binding.rename(req.handle, src, dst);
await req;
} catch (e) {
err = new FileError(e.message, {
operation: "rename",
code: e.code,
path: src,
destination: dst
});
} finally {
req.return();
}
return done(err, cb);
}
function renameSync(src, dst) {
src = toNamespacedPath(src);
dst = toNamespacedPath(dst);
const req = FileRequest.borrow();
try {
binding.renameSync(req.handle, src, dst);
} catch (e) {
throw new FileError(e.message, {
operation: "rename",
code: e.code,
path: src,
destination: dst
});
} finally {
req.return();
}
}
async function copyFile(src, dst, mode = 0, cb) {
if (typeof mode === "function") {
cb = mode;
mode = 0;
}
src = toNamespacedPath(src);
dst = toNamespacedPath(dst);
const req = FileRequest.borrow();
let err = null;
try {
binding.copyfile(req.handle, src, dst, mode);
await req;
} catch (e) {
err = new FileError(e.message, {
operation: "copyfile",
code: e.code,
path: src,
destination: dst
});
} finally {
req.return();
}
return done(err, cb);
}
function copyFileSync(src, dst, mode = 0) {
src = toNamespacedPath(src);
dst = toNamespacedPath(dst);
const req = FileRequest.borrow();
try {
binding.copyfileSync(req.handle, src, dst, mode);
} catch (e) {
throw new FileError(e.message, {
operation: "copyfile",
code: e.code,
path: src,
destination: dst
});
} finally {
req.return();
}
}
async function cp(src, dst, opts, cb) {
if (typeof opts === "function") {
cb = opts;
opts = {};
}
if (!opts) opts = {};
src = toNamespacedPath(src);
dst = toNamespacedPath(dst);
let err = null;
try {
const st = await lstat(src);
if (st.isDirectory()) {
if (opts.recursive !== true) {
throw new FileError("is a directory", { operation: "cp", code: "EISDIR", path: src });
}
try {
await lstat(dst);
} catch (e) {
if (e.code !== "ENOENT") throw e;
await mkdir(dst, { mode: st.mode, recursive: true });
}
const dir = await opendir(src);
for await (const { name } of dir) {
await cp(path.join(src, name), path.join(dst, name), opts);
}
} else if (st.isFile()) {
await copyFile(src, dst);
await chmod(dst, st.mode);
}
} catch (e) {
err = e;
}
return done(err, cb);
}
function cpSync(src, dst, opts = {}) {
src = toNamespacedPath(src);
dst = toNamespacedPath(dst);
const st = lstatSync(src);
if (st.isDirectory()) {
if (opts.recursive !== true) {
throw new FileError("is a directory", { operation: "cp", code: "EISDIR", path: src });
}
try {
lstatSync(dst);
} catch (e) {
if (e.code !== "ENOENT") throw e;
mkdirSync(dst, { mode: st.mode, recursive: true });
}
const dir = opendirSync(src);
for (const { name } of dir) {
cpSync(path.join(src, name), path.join(dst, name), opts);
}
} else if (st.isFile()) {
copyFileSync(src, dst);
chmodSync(dst, st.mode);
}
}
async function realpath(filepath, opts, cb) {
if (typeof opts === "function") {
cb = opts;
opts = {};
}
if (typeof opts === "string") opts = { encoding: opts };
else if (!opts) opts = {};
const { encoding = "utf8" } = opts;
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
let res;
let err = null;
try {
binding.realpath(req.handle, filepath);
await req;
res = Buffer.from(binding.requestResultString(req.handle));
if (encoding !== "buffer") res = res.toString(encoding);
} catch (e) {
err = new FileError(e.message, {
operation: "realpath",
code: e.code,
path: filepath
});
} finally {
req.return();
}
return done(err, res, cb);
}
function realpathSync(filepath, opts) {
if (typeof opts === "string") opts = { encoding: opts };
else if (!opts) opts = {};
const { encoding = "utf8" } = opts;
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
try {
binding.realpathSync(req.handle, filepath);
let res = Buffer.from(binding.requestResultString(req.handle));
if (encoding !== "buffer") res = res.toString(encoding);
return res;
} catch (e) {
throw new FileError(e.message, {
operation: "realpath",
code: e.code,
path: filepath
});
} finally {
req.return();
}
}
async function readlink(filepath, opts, cb) {
if (typeof opts === "function") {
cb = opts;
opts = {};
}
if (typeof opts === "string") opts = { encoding: opts };
else if (!opts) opts = {};
const { encoding = "utf8" } = opts;
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
let res;
let err = null;
try {
binding.readlink(req.handle, filepath);
await req;
res = Buffer.from(binding.requestResultString(req.handle));
if (encoding !== "buffer") res = res.toString(encoding);
} catch (e) {
err = new FileError(e.message, {
operation: "readlink",
code: e.code,
path: filepath
});
} finally {
req.return();
}
return done(err, res, cb);
}
function readlinkSync(filepath, opts) {
if (typeof opts === "string") opts = { encoding: opts };
else if (!opts) opts = {};
const { encoding = "utf8" } = opts;
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
try {
binding.readlinkSync(req.handle, filepath);
let res = Buffer.from(binding.requestResultString(req.handle));
if (encoding !== "buffer") res = res.toString(encoding);
return res;
} catch (e) {
throw new FileError(e.message, {
operation: "readlink",
code: e.code,
path: filepath
});
} finally {
req.return();
}
}
async function fsync(fd, cb) {
const req = FileRequest.borrow();
let err = null;
try {
binding.fsync(req.handle, fd);
await req;
} catch (e) {
err = new FileError(e.message, { operation: "fsync", code: e.code, fd });
} finally {
req.return();
}
return done(err, cb);
}
function fsyncSync(fd) {
const req = FileRequest.borrow();
try {
binding.fsyncSync(req.handle, fd);
} catch (e) {
throw new FileError(e.message, { operation: "fsyncSync", code: e.code, fd });
} finally {
req.return();
}
}
async function fdatasync(fd, cb) {
const req = FileRequest.borrow();
let err = null;
try {
binding.fdatasync(req.handle, fd);
await req;
} catch (e) {
err = new FileError(e.message, { operation: "fdatasync", code: e.code, fd });
} finally {
req.return();
}
return done(err, cb);
}
function fdatasyncSync(fd) {
const req = FileRequest.borrow();
try {
binding.fdatasyncSync(req.handle, fd);
} catch (e) {
throw new FileError(e.message, { operation: "fdatasyncSync", code: e.code, fd });
} finally {
req.return();
}
}
function normalizeSymlinkTarget(target, type, filepath) {
if (isWindows) {
if (type === constants.UV_FS_SYMLINK_JUNCTION) target = path.resolve(filepath, "..", target);
if (path.isAbsolute(target)) return path.toNamespacedPath(target);
return target.replace(/\//g, path.sep);
}
return target;
}
async function symlink(target, filepath, type, cb) {
if (typeof type === "function") {
cb = type;
type = null;
}
filepath = toNamespacedPath(filepath);
if (typeof type === "string") {
switch (type) {
case "dir":
type = constants.UV_FS_SYMLINK_DIR;
break;
case "junction":
type = constants.UV_FS_SYMLINK_JUNCTION;
break;
case "file":
default:
type = 0;
break;
}
} else if (typeof type !== "number") {
if (isWindows) {
target = path.resolve(filepath, "..", target);
try {
type = (await stat(target)).isDirectory() ? constants.UV_FS_SYMLINK_DIR : constants.UV_FS_SYMLINK_JUNCTION;
} catch {
type = 0;
}
} else {
type = 0;
}
}
target = normalizeSymlinkTarget(target, type, filepath);
const req = FileRequest.borrow();
let err = null;
try {
binding.symlink(req.handle, target, filepath, type);
await req;
} catch (e) {
err = new FileError(e.message, {
operation: "symlink",
code: e.code,
path: target,
destination: filepath
});
} finally {
req.return();
}
return done(err, cb);
}
function symlinkSync(target, filepath, type) {
filepath = toNamespacedPath(filepath);
if (typeof type === "string") {
switch (type) {
case "dir":
type = constants.UV_FS_SYMLINK_DIR;
break;
case "junction":
type = constants.UV_FS_SYMLINK_JUNCTION;
break;
case "file":
default:
type = 0;
break;
}
} else if (typeof type !== "number") {
if (isWindows) {
target = path.resolve(filepath, "..", target);
try {
type = statSync(target).isDirectory() ? constants.UV_FS_SYMLINK_DIR : constants.UV_FS_SYMLINK_JUNCTION;
} catch {
type = 0;
}
} else {
type = 0;
}
}
target = normalizeSymlinkTarget(target, type, filepath);
const req = FileRequest.borrow();
try {
binding.symlinkSync(req.handle, target, filepath, type);
} catch (e) {
throw new FileError(e.message, {
operation: "symlink",
code: e.code,
path: target,
destination: filepath
});
} finally {
req.return();
}
}
async function opendir(filepath, opts, cb) {
if (typeof opts === "function") {
cb = opts;
opts = {};
}
if (typeof opts === "string") opts = { encoding: opts };
else if (!opts) opts = {};
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
let dir;
let err = null;
try {
binding.opendir(req.handle, filepath);
await req;
dir = new Dir(filepath, binding.requestResultDir(req.handle), opts);
} catch (e) {
err = new FileError(e.message, {
operation: "opendir",
code: e.code,
path: filepath
});
} finally {
req.return();
}
return done(err, dir, cb);
}
function opendirSync(filepath, opts) {
if (typeof opts === "string") opts = { encoding: opts };
else if (!opts) opts = {};
filepath = toNamespacedPath(filepath);
const req = FileRequest.borrow();
try {
binding.opendirSync(req.handle, filepath);
return new Dir(filepath, binding.requestResultDir(req.handle), opts);
} catch (e) {
throw new FileError(e.message, {
operation: "opendir",
code: e.code,
path: filepath
});
} finally {
req.return();
}
}
async function readdir(filepath, opts, cb) {
if (typeof opts === "function") {
cb = opts;
opts = {};
}
if (typeof opts === "string") opts = { encoding: opts };
else if (!opts) opts = {};
const { withFileTypes = false, recursive = false } = opts;
filepath = toNamespacedPath(filepath);
const queue = [filepath];
let result = [];
let err = null;
try {
while (queue.length !== 0) {
const dir = await opendir(queue.pop());
for await (const entry of dir) {
const entryPath = path.join(entry.parentPath, entry.name);
if (withFileTypes) {
result.push(entry);
} else {
result.push(path.relative(filepath, entryPath));
}
if (recursive && entry.isDirectory()) queue.push(entryPath);
}
}
} catch (e) {
result = [];
err = e;
}
return done(err, result, cb);
}
function readdirSync(filepath, opts) {
if (typeof opts === "string") opts = { encoding: opts };
else if (!opts) opts = {};
const { withFileTypes = false, recursive = false } = opts;
filepath = toNamespacedPath(filepath);
const queue = [filepath];
const result = [];
while (queue.length !== 0) {
const dir = opendirSync(queue.pop(), opts);
for (const entry of dir) {
const entryPath = path.join(entry.parentPath, entry.name);
if (withFileTypes) {
result.push(entry);
} else {
result.push(path.relative(filepath, entryPath));
}
if (recursive && entry.isDirectory()) queue.push(entryPath);
}
}
return result;
}
async function readFile(filepath, opts, cb) {
if (typeof opts === "function") {
cb = opts;
opts = {};
}
if (typeof opts === "string") opts = { encoding: opts };
else if (!opts) opts = {};
const { encoding = "buffer" } = opts;
let fd = -1;
let buffer = null;
let err = null;
try {
fd = await open(filepath, opts.flag || "r");
const st = await fstat(fd);
let len = 0;
if (st.size === 0) {
const buffers = [];
while (true) {
buffer = Buffer.allocUnsafe(8192);
const r = await read(fd, buffer);
len += r;
if (r === 0) break;
buffers.push(buffer.subarray(0, r));
}
buffer = Buffer.concat(buffers);
} else {
buffer = Buffer.allocUnsafe(st.size);
while (true) {
const r = await read(fd, len ? buffer.subarray(len) : buffer);
len += r;
if (r === 0 || len === buffer.byteLength) break;
}
if (len !== buffer.byteLength) buffer = buffer.subarray(0, len);
}
if (encoding !== "buffer") buffer = buffer.toString(encoding);
} catch (e) {
err = e;
} finally {
if (fd !== -1) await close(fd);
}
return done(err, buffer, cb);
}
function readFileSync(filepath, opts) {
if (typeof opts === "string") opts = { encoding: opts };
else if (!opts) opts = {};
const { encoding = "buffer" } = opts;
let fd = -1;
try {
fd = openSync(filepath, opts.flag || "r");
const st = fstatSync(fd);
let buffer;
let len = 0;
if (st.size === 0) {
const buffers = [];
while (true) {
buffer = Buffer.allocUnsafe(8192);
const r = readSync(fd, buffer);
len += r;
if (r === 0) break;
buffers.push(buffer.subarray(0, r));
}
buffer = Buffer.concat(buffers);
} else {
buffer = Buffer.allocUnsafe(st.size);
while (true) {
const r = readSync(fd, len ? buffer.subarray(len) : buffer);
len += r;
if (r === 0 || len === buffer.byteLength) break;
}
if (len !== buffer.byteLength) buffer = buffer.subarray(0, len);
}
if (encoding !== "buffer") buffer = buffer.toString(encoding);
return buffer;
} finally {
if (fd !== -1) closeSync(fd);
}
}
async function writeFile(filepath, data, opts, cb) {
if (typeof opts === "function") {
cb = opts;
opts = {};
}
if (typeof opts === "string") opts = { encoding: opts };
else if (!opts) opts = {};
if (typeof data === "string") data = Buffer.from(data, opts.encoding);
let fd = -1;
let len = 0;
let err = null;
try {
fd = await open(filepath, opts.flag || "w", opts.mode || 438);
while (true) {
len += await write(fd, len ? data.subarray(len) : data);
if (len === data.byteLength) break;
}
} catch (e) {
err = e;
} finally {
if (fd !== -1) await close(fd);
}
return done(err, len, cb);
}
function writeFileSync(filepath, data, opts) {
if (typeof opts === "string") opts = { encoding: opts };
else if (!opts) opts = {};
if (typeof data === "string") data = Buffer.from(data, opts.encoding);
let fd = -1;
try {
fd = openSync(filepath, opts.flag || "w", opts.mode || 438);
let len = 0;
while (true) {
len += writeSync(fd, len ? data.subarray(len) : data);
if (len === data.byteLength) break;
}
} finally {
if (fd !== -1) closeSync(fd);
}
}
function appendFile(filepath, data, opts, cb) {
if (typeof opts === "function") {
cb = opts;
opts = {};
}
if (typeof opts === "string") opts = { encoding: opts };
else if (!opts) opts = {};
if (!opts.flag) opts = { ...opts, flag: "a" };
return writeFile(filepath, data, opts, cb);
}
function appendFileSync(filepath, data, opts) {
if (typeof opts === "string") opts = { encoding: opts };
else if (!opts) opts = {};
if (!opts.flag) opts = { ...opts, flag: "a" };
return writeFileSync(filepath, data, opts);
}
function watch(filepath, opts, cb) {
if (typeof opts === "function") {
cb = opts;
opts = {};
}
if (typeof opts === "string") opts = { encoding: opts };
else if (!opts) opts = {};
filepath = toNamespacedPath(filepath);
return new Watcher(filepath, opts, cb);
}
var Stats = class {
constructor(dev, mode, nlink, uid, gid, rdev, blksize, ino, size, blocks, atimeMs, mtimeMs, ctimeMs, birthtimeMs) {
this.dev = dev;
this.mode = mode;
this.nlink = nlink;
this.uid = uid;
this.gid = gid;
this.rdev = rdev;
this.blksize = blksize;
this.ino = ino;
this.size = size;
this.blocks = blocks;
this.atimeMs = atimeMs;
this.mtimeMs = mtimeMs;
this.ctimeMs = ctimeMs;
this.birthtimeMs = birthtimeMs;
this.atime = new Date(atimeMs);
this.mtime = new Date(mtimeMs);
this.ctime = new Date(ctimeMs);
this.birthtime = new Date(birthtimeMs);
}
isDirectory() {
return (this.mode & constants.S_IFMT) === constants.S_IFDIR;
}
isFile() {
return (this.mode & constants.S_IFMT) === constants.S_IFREG;
}
isBlockDevice() {
return (this.mode & constants.S_IFMT) === constants.S_IFBLK;
}
isCharacterDevice() {
return (this.mode & constants.S_IFMT) === constants.S_IFCHR;
}
isFIFO() {
return (this.mode & constants.S_IFMT) === constants.S_IFIFO;
}
isSymbolicLink() {
return (this.mode & constants.S_IFMT) === constants.S_IFLNK;
}
isSocket() {
return (this.mode & constants.S_IFMT) === constants.S_IFSOCK;
}
};
var StatFs = class {
constructor(type, bsize, blocks, bfree, bavail, files, ffree, frsize) {
this.type = type;
this.bsize = bsize;
this.blocks = blocks;
this.bfree = bfree;
this.bavail = bavail;
this.files = files;
this.ffree = ffree;
this.frsize = frsize;
}
};
var Dir = class {
constructor(path2, handle, opts = {}) {
const { encoding = "utf8", bufferSize = 32 } = opts;
this.path = path2;
this._encoding = encoding;
this._capacity = bufferSize;
this._buffer = new FIFO();
this._ended = false;
this._handle = handle;
}
async read(cb) {
if (this._buffer.length) return ok(this._buffer.shift(), cb);
if (this._ended) return ok(null, cb);
const req = FileRequest.borrow();
let entries;
let err = null;
try {
req.retain(binding.readdir(req.handle, this._handle, this._capacity));
await req;
entries = binding.requestResultDirents(req.handle);
} catch (e) {
err = new FileError(e.message, {
operation: "readdir",
code: e.code,
path: this.path
});
} finally {
req.return();
}
if (err) return fail(err, cb);
if (entries.length === 0) {
this._ended = true;
return ok(null, cb);
}
for (const entry of entries) {
let name = Buffer.from(entry.name);
if (this._encoding !== "buffer") name = name.toString(this._encoding);
this._buffer.push(new Dirent(this.path, name, entry.type));
}
return ok(this._buffer.shift(), cb);
}
readSync() {
if (this._buffer.length) return this._buffer.shift();
if (this._ended) return null;
const req = FileRequest.borrow();
let entries;
try {
req.retain(binding.readdirSync(req.handle, this._handle, this._capacity));
entries = binding.requestResultDirents(req.handle);
} catch (e) {
throw new FileError(e.message, {
operation: "readdir",
code: e.code,
path: this.path
});
} finally {
req.return();
}
if (entries.length === 0) {
this._ended = true;
return null;
}
for (const entry of entries) {
let name = Buffer.from(entry.name);
if (this._encoding !== "buffer") name = name.toString(this._encoding);
this._buffer.push(new Dirent(this.path, name, entry.type));
}
return this._buffer.shift();
}
async close(cb) {
const req = FileRequest.borrow();
let err = null;
try {
binding.closedir(req.handle, this._handle);
await req;
} catch (e) {
err = new FileError(e.message, {
operation: "closedir",
code: e.code,
path: this.path
});
} finally {
req.return();
}
this._handle = null;
return done(err, cb);
}
closeSync() {
const req = FileRequest.borrow();
try {
binding.closedirSync(req.handle, this._handle);
} catch (e) {
throw new FileError(e.message, {
operation: "closedir",
code: e.code,
path: this.path
});
} finally {
req.return();
}
this._handle = null;
}
[Symbol.dispose]() {
this.closeSync();
}
async [Symbol.asyncDispose]() {
await this.close();
}
*[Symbol.iterator]() {
while (true) {
const entry = this.readSync();
if (entry === null) break;
yield entry;
}
this.closeSync();
}
async *[Symbol.asyncIterator]() {
while (true) {
const entry = await this.read();
if (entry === null) break;
yield entry;
}
await this.close();
}
};
var Dirent = class {
constructor(parentPath, name, type) {
this.parentPath = parentPath;
this.name = name;
this.type = type;
}
isFile() {
return this.type === constants.UV_DIRENT_FILE;
}
isDirectory() {
return this.type === constants.UV_DIRENT_DIR;
}
isSymbolicLink() {
return this.type === constants.UV_DIRENT_LINK;
}
isFIFO() {
return this.type === constants.UV_DIRENT_FIFO;
}
isSocket() {
return this.type === constants.UV_DIRENT_SOCKET;
}
isCharacterDevice() {
return this.type === constants.UV_DIRENT_CHAR;
}
isBlockDevice() {
return this.type === constants.UV_DIRENT_BLOCK;
}
};
var FileReadStream = class extends Readable {
constructor(path2, opts = {}) {
const { eagerOpen = true } = opts;
super({ eagerOpen, ...opts });
this.path = path2;
this.fd = typeof opts.fd === "number" ? opts.fd : -1;
this.flags = opts.flags || "r";
this.mode = opts.mode || 438;
this._offset = opts.start || 0;
this._missing = 0;
if (opts.length) {
this._missing = opts.length;
} else if (typeof opts.end === "number") {
this._missing = opts.end - this._offset + 1;
} else {
this._missing = -1;
}
}
async _open(cb) {
let err;
if (this.fd === -1) {
err = null;
try {
this.fd = await open(this.path, this.flags, this.mode);
} catch (e) {
err = e;
}
if (err) return cb(err);
}
let st;
err = null;
try {
st = await fstat(this.fd);
} catch (e) {
err = e;
}
if (err) return cb(err);
if (this._missing === -1) this._missing = st.size;
if (st.size < this._offset) {
this._offset = st.size;
this._missing = 0;
} else if (st.size < this._offset + this._missing) {
this._missing = st.size - this._offset;
}
cb(null);
}
async _read(size) {
if (this._missing <= 0) return this.push(null);
const data = Buffer.allocUnsafe(Math.min(this._missing, size));
let len;
let err = null;
try {
len = await read(this.fd, data, 0, data.byteLength, this._offset);
} catch (e) {
err = e;
}
if (err) return this.destroy(err);
if (len === 0) return this.push(null);
if (this._missing < len) len = this._missing;
this._missing -= len;
this._offset += len;
this.push(data.subarray(0, len));
}
async _destroy(err, cb) {
if (this.fd === -1) return cb(err);
try {
await close(this.fd);
} catch (e) {
err = err || e;
}
cb(err);
}
};
var FileWriteStream = class extends Writable {
constructor(path2, opts = {}) {
const { eagerOpen = true } = opts;
super({ eagerOpen, ...opts });
this.path = path2;
this.fd = typeof opts.fd === "number" ? opts.fd : -1;
this.flags = opts.flags || "w";
this.mode = opts.mode || 438;
}
async _open(cb) {
if (this.fd !== -1) return cb(null);
let err = null;
try {
this.fd = await open(this.path, this.flags, this.mode);
} catch (e) {
err = e;
}
cb(err);
}
async _writev(batch, cb) {
let err = null;
try {
await writev(
this.fd,
batch.map(({ chunk }) => chunk)
);
} catch (e) {
err = e;
}
cb(err);
}
async _destroy(err, cb) {
if (this.fd === -1) return cb(err);
try {
await close(this.fd);
} catch (e) {
err = err || e;
}
cb(err);
}
};
var Watcher = class extends EventEmitter {
constructor(path2, opts, onchange) {
if (typeof opts === "function") {
onchange = opts;
opts = {};
}
if (!opts) opts = {};
const { persistent = true, recursive = false, encoding = "utf8" } = opts;
super();
this._closed = false;
this._encoding = encoding;
this._handle = binding.watcherInit(path2, recursive, this, this._onevent, this._onclose);
if (!persistent) this.unref();
if (onchange) this.on("change", onchange);
}
close() {
if (this._closed) return;
this._closed = true;
binding.watcherClose(this._handle);
}
ref() {
if (this._handle) binding.watcherRef(this._handle);
return this;
}
unref() {
if (this._handle) binding.watcherUnref(this._handle);
return this;
}
[Symbol.asyncIterator]() {
const buffer = [];
let done2 = false;
let error = null;
let next = null;
this.on("change", (eventType, filename) => {
if (next) {
next.resolve({ done: false, value: { eventType, filename } });
next = null;
} else {
buffer.push({ eventType, filename });
}
}).on("error", (err) => {
done2 = true;
error = err;
if (next) {
next.reject(error);
next = null;
}
}).on("close", () => {
done2 = true;
if (next) {
next.resolve({ done: done2 });
next = null;
}
});
return {
next: () => new Promise((resolve, reject) => {
if (error) return reject(error);
if (buffer.length) return resolve({ done: false, value: buffer.shift() });
if (done2) return resolve({ done: done2 });
next = { resolve, reject };
})
};
}
_onevent(err, events, filename) {
if (err) {
this.close();
this.emit("error", err);
} else {
const path2 = this._encoding === "buffer" ? Buffer.from(filename) : Buffer.from(filename).toString(this._encoding);
if (events & binding.UV_RENAME) {
this.emit("change", "rename", path2);
}
if (events & binding.UV_CHANGE) {
this.emit("change", "change", path2);
}
}
}
_onclose() {
this._handle = null;
this.emit("close");
}
};
exports.access = access;
exports.appendFile = appendFile;
exports.chmod = chmod;
exports.chown = chown;
exports.close = close;
exports.copyFile = copyFile;
exports.cp = cp;
exports.exists = exists;
exports.fchmod = fchmod;
exports.fchown = fchown;
exports.fdatasync = fdatasync;
exports.fstat = fstat;
exports.fsync = fsync;
exports.ftruncate = ftruncate;
exports.futimes = futimes;
exports.lchown = lchown;
exports.lutimes = lutimes;
exports.link = link;
exports.lstat = lstat;
exports.mkdir = mkdir;
exports.mkdtemp = mkdtemp;
exports.open = open;
exports.opendir = opendir;
exports.read = read;
exports.readFile = readFile;
exports.readdir = readdir;
exports.readlink = readlink;
exports.readv = readv;
exports.realpath = realpath;
exports.rename = rename;
exports.rm = rm;
exports.rmdir = rmdir;
exports.stat = stat;
exports.statfs = statfs;
exports.symlink = symlink;
exports.truncate = truncate;
exports.unlink = unlink;
exports.utimes = utimes;
exports.watch = watch;
exports.write = write;
exports.writeFile = writeFile;
exports.writev = writev;
exports.accessSync = accessSync;
exports.appendFileSync = appendFileSync;
exports.chmodSync = chmodSync;
exports.chownSync = chownSync;
exports.closeSync = closeSync;
exports.copyFileSync = copyFileSync;
exports.cpSync = cpSync;
exports.existsSync = existsSync;
exports.fchmodSync = fchmodSync;
exports.fchownSync = fchownSync;
exports.fdatasyncSync = fdatasyncSync;
exports.fstatSync = fstatSync;
exports.fsyncSync = fsyncSync;
exports.ftruncateSync = ftruncateSync;
exports.futimesSync = futimesSync;
exports.lchownSync = lchownSync;
exports.lutimesSync = lutimesSync;
exports.linkSync = linkSync;
exports.lstatSync = lstatSync;
exports.mkdirSync = mkdirSync;
exports.mkdtempSync = mkdtempSync;
exports.openSync = openSync;
exports.opendirSync = opendirSync;
exports.readFileSync = readFileSync;
exports.readSync = readSync;
exports.readdirSync = readdirSync;
exports.readlinkSync = readlinkSync;
exports.readvSync = readvSync;
exports.realpathSync = realpathSync;
exports.renameSync = renameSync;
exports.rmSync = rmSync;
exports.rmdirSync = rmdirSync;
exports.statSync = statSync;
exports.statfsSync = statfsSync;
exports.symlinkSync = symlinkSync;
exports.truncateSync = truncateSync;
exports.unlinkSync = unlinkSync;
exports.utimesSync = utimesSync;
exports.writeFileSync = writeFileSync;
exports.writeSync = writeSync;
exports.writevSync = writevSync;
exports.promises = require_promises();
exports.Stats = Stats;
exports.StatFs = StatFs;
exports.Dir = Dir;
exports.Dirent = Dirent;
exports.Watcher = Watcher;
exports.ReadStream = FileReadStream;
exports.createReadStream = function createReadStream(path2, opts) {
return new FileReadStream(path2, opts);
};
exports.WriteStream = FileWriteStream;
exports.createWriteStream = function createWriteStream(path2, opts) {
return new FileWriteStream(path2, opts);
};
function toNamespacedPath(filepath) {
if (typeof filepath !== "string") {
if (isURL(filepath)) filepath = fileURLToPath(filepath);
else filepath = filepath.toString();
}
return path.toNamespacedPath(filepath);
}
function toFlags(flags) {
switch (flags) {
case "r":
return constants.O_RDONLY;
case "rs":
// Fall through.
case "sr":
return constants.O_RDONLY | constants.O_SYNC;
case "r+":
return constants.O_RDWR;
case "rs+":
// Fall through.
case "sr+":
return constants.O_RDWR | constants.O_SYNC;
case "w":
return constants.O_TRUNC | constants.O_CREAT | constants.O_WRONLY;
case "wx":
// Fall through.
case "xw":
return constants.O_TRUNC | constants.O_CREAT | constants.O_WRONLY | constants.O_EXCL;
case "w+":
return constants.O_TRUNC | constants.O_CREAT | constants.O_RDWR;
case "wx+":
// Fall through.
case "xw+":
return constants.O_TRUNC | constants.O_CREAT | constants.O_RDWR | constants.O_EXCL;
case "a":
return constants.O_APPEND | constants.O_CREAT | constants.O_WRONLY;
case "ax":
// Fall through.
case "xa":
return constants.O_APPEND | constants.O_CREAT | constants.O_WRONLY | constants.O_EXCL;
case "as":
// Fall through.
case "sa":
return constants.O_APPEND | constants.O_CREAT | constants.O_WRONLY | constants.O_SYNC;
case "a+":
return constants.O_APPEND | constants.O_CREAT | constants.O_RDWR;
case "ax+":
// Fall through.
case "xa+":
return constants.O_APPEND | constants.O_CREAT | constants.O_RDWR | constants.O_EXCL;
case "as+":
// Fall through.
case "sa+":
return constants.O_APPEND | constants.O_CREAT | constants.O_RDWR | constants.O_SYNC;
default:
return 0;
}
}
function toMode(mode) {
return parseInt(mode, 8);
}
}
});
// ../../node_modules/bare-tty/node_modules/bare-signals/binding.js
var require_binding10 = __commonJS({
"../../node_modules/bare-tty/node_modules/bare-signals/binding.js"(exports, module) {
module.exports = __require.addon();
}
});
// ../../node_modules/bare-tty/node_modules/bare-signals/lib/errors.js
var require_errors8 = __commonJS({
"../../node_modules/bare-tty/node_modules/bare-signals/lib/errors.js"(exports, module) {
module.exports = class SignalError extends Error {
constructor(msg, fn = SignalError, code = fn.name) {
super(`${code}: ${msg}`);
this.code = code;
if (Error.captureStackTrace) {
Error.captureStackTrace(this, fn);
}
}
get name() {
return "SignalError";
}
static UNKNOWN_SIGNAL(msg) {
return new SignalError(msg, SignalError.UNKNOWN_SIGNAL);
}
static SIGNAL_CLOSED(msg) {
return new SignalError(msg, SignalError.SIGNAL_CLOSED);
}
};
}
});
// ../../node_modules/bare-tty/node_modules/bare-signals/lib/emitter.js
var require_emitter2 = __commonJS({
"../../node_modules/bare-tty/node_modules/bare-signals/lib/emitter.js"(exports, module) {
var EventEmitter = require_bare_events();
var Signal = require_bare_signals2();
module.exports = class SignalEmitter extends EventEmitter {
constructor() {
super();
this._signals = /* @__PURE__ */ new Map();
this._unrefed = false;
this.on("newListener", this._onnewlistener).on("removeListener", this._onremovelistener);
}
ref() {
this._unrefed = false;
for (const signal of this._signals.values()) signal.ref();
return this;
}
unref() {
this._unrefed = true;
for (const signal of this._signals.values()) signal.unref();
return this;
}
_onnewlistener(name) {
if (name === "newListener" || name === "removeListener") return;
if (this.listenerCount(name) === 0) {
const signal = new Signal(name);
signal.on("signal", this._onsignal.bind(this, name)).start();
if (this._unrefed) signal.unref();
this._signals.set(name, signal);
}
}
_onremovelistener(name) {
if (name === "newListener" || name === "removeListener") return;
if (this.listenerCount(name) === 0) {
const signal = this._signals.get(name);
if (this._unrefed) signal.ref();
signal.close();
this._signals.delete(name);
}
}
_onsignal(name) {
this.emit(name, name, Signal.constants[name]);
}
};
}
});
// ../../node_modules/bare-tty/node_modules/bare-signals/index.js
var require_bare_signals2 = __commonJS({
"../../node_modules/bare-tty/node_modules/bare-signals/index.js"(exports, module) {
var EventEmitter = require_bare_events();
var binding = require_binding10();
var errors = require_errors8();
var signals = binding.signals;
module.exports = exports = class Signal extends EventEmitter {
constructor(signum) {
super();
if (typeof signum === "string") {
if (signum in signals === false) {
throw errors.UNKNOWN_SIGNAL(`Unknown signal '${signum}'`);
}
signum = signals[signum];
}
this._signum = signum;
this._closing = null;
this._handle = binding.init(this, this._onsignal, this._onclose);
}
start() {
if (this._closing) throw errors.SIGNAL_CLOSED("Signal is closed");
binding.start(this._handle, this._signum);
return this;
}
stop() {
if (this._closing) return this;
binding.stop(this._handle);
return this;
}
ref() {
if (this._closing) return this;
binding.ref(this._handle);
return this;
}
unref() {
if (this._closing) return this;
binding.unref(this._handle);
return this;
}
close() {
if (this._closing) return this._closing;
this._closing = EventEmitter.once(this, "close");
binding.close(this._handle);
return this._closing;
}
_onsignal() {
this.emit("signal", this._signum);
}
_onclose() {
this._handle = null;
this.emit("close");
}
};
exports.Emitter = require_emitter2();
exports.constants = signals;
exports.errors = errors;
}
});
// ../../node_modules/bare-tty/binding.js
var require_binding11 = __commonJS({
"../../node_modules/bare-tty/binding.js"(exports, module) {
module.exports = __require.addon();
}
});
// ../../node_modules/bare-tty/lib/constants.js
var require_constants4 = __commonJS({
"../../node_modules/bare-tty/lib/constants.js"(exports, module) {
var binding = require_binding11();
module.exports = exports = {
mode: {
NORMAL: binding.MODE_NORMAL,
RAW: binding.MODE_RAW,
IO: binding.MODE_IO || 0
},
state: {
READING: 1,
CLOSING: 2
}
};
exports.MODE_NORMAL = exports.mode.NORMAL;
exports.MODE_RAW = exports.mode.RAW;
exports.MODE_IO = exports.mode.IO;
}
});
// ../../node_modules/bare-tty/index.js
var require_bare_tty = __commonJS({
"../../node_modules/bare-tty/index.js"(exports) {
var { Readable, Writable } = require_bare_stream();
var Signal = require_bare_signals2();
var binding = require_binding11();
var constants = require_constants4();
var defaultReadBufferSize = 65536;
var empty = Buffer.alloc(0);
exports.ReadStream = class TTYReadStream extends Readable {
constructor(fd, opts = {}) {
super();
const { readBufferSize = defaultReadBufferSize, allowHalfOpen = true } = opts;
this._fd = fd;
this._state = 0;
this._allowHalfOpen = allowHalfOpen;
this._buffer = Buffer.alloc(readBufferSize);
this._pendingDestroy = null;
this._handle = binding.init(fd, this._buffer, this, noop, this._onread, this._onclose);
}
get fd() {
return this._fd;
}
get isTTY() {
return true;
}
setMode(mode) {
binding.setMode(this._handle, mode);
return this;
}
setRawMode(enabled) {
return this.setMode(enabled ? constants.mode.RAW : constants.mode.NORMAL);
}
_read() {
if ((this._state & constants.state.READING) === 0) {
this._state |= constants.state.READING;
binding.resume(this._handle);
}
}
_predestroy() {
if (this._state & constants.state.CLOSING) return;
this._state |= constants.state.CLOSING;
binding.close(this._handle);
}
_destroy(err, cb) {
if (this._state & constants.state.CLOSING) return cb(err);
this._state |= constants.state.CLOSING;
this._pendingDestroy = cb;
binding.close(this._handle);
}
_continueDestroy() {
if (this._pendingDestroy === null) return;
const cb = this._pendingDestroy;
this._pendingDestroy = null;
cb(null);
}
_onread(err, read) {
if (err) {
this.destroy(err);
return;
}
if (read === 0) {
this.push(null);
if (this._allowHalfOpen === false) this.end();
return;
}
const copy = Buffer.allocUnsafe(read);
copy.set(this._buffer.subarray(0, read));
if (this.push(copy) === false && this.destroying === false) {
this._state &= ~constants.state.READING;
binding.pause(this._handle);
}
}
_onclose() {
this._handle = null;
this._continueDestroy();
}
};
exports.WriteStream = class TTYWriteStream extends Writable {
constructor(fd, opts = {}) {
super();
this._fd = fd;
this._state = 0;
this._size = null;
this._pendingWrite = null;
this._pendingWriteBatch = null;
this._pendingDestroy = null;
this._handle = binding.init(fd, empty, this, this._onwrite, noop, this._onclose);
this._size = this.getWindowSize();
if (TTYWriteStream._streams.size === 0) TTYWriteStream._resize.start();
TTYWriteStream._streams.add(this);
}
get fd() {
return this._fd;
}
get isTTY() {
return true;
}
get columns() {
return this._size[0];
}
get rows() {
return this._size[1];
}
getWindowSize() {
return binding.getWindowSize(this._handle);
}
_writev(batch, cb) {
this._pendingWrite = cb;
this._pendingWriteBatch = batch;
try {
binding.writev(
this._handle,
batch.map(({ chunk }) => chunk)
);
} catch (err) {
this._continueWrite(err);
}
}
_predestroy() {
if (this._state & constants.state.CLOSING) return;
this._state |= constants.state.CLOSING;
binding.close(this._handle);
TTYWriteStream._streams.delete(this);
if (TTYWriteStream._streams.size === 0) TTYWriteStream._resize.stop();
}
_destroy(err, cb) {
if (this._state & constants.state.CLOSING) return cb(err);
this._state |= constants.state.CLOSING;
this._pendingDestroy = cb;
binding.close(this._handle);
TTYWriteStream._streams.delete(this);
if (TTYWriteStream._streams.size === 0) TTYWriteStream._resize.stop();
}
_continueWrite(err) {
if (this._pendingWrite === null) return;
const cb = this._pendingWrite;
this._pendingWrite = null;
this._pendingWriteBatch = null;
cb(err);
}
_continueDestroy() {
if (this._pendingDestroy === null) return;
const cb = this._pendingDestroy;
this._pendingDestroy = null;
cb(null);
}
_onwrite(err) {
this._continueWrite(err);
}
_onclose() {
this._handle = null;
this._continueDestroy();
}
_onresize() {
this._size = this.getWindowSize();
this.emit("resize");
}
static _streams = /* @__PURE__ */ new Set();
static _resize = new Signal("SIGWINCH");
};
exports.constants = constants;
exports.isTTY = binding.isTTY;
exports.isatty = exports.isTTY;
exports.WriteStream._resize.on("signal", () => {
for (const stream of exports.WriteStream._streams) {
stream._onresize();
}
}).unref();
function noop() {
}
}
});
// ../../node_modules/bare-pipe/binding.js
var require_binding12 = __commonJS({
"../../node_modules/bare-pipe/binding.js"(exports, module) {
module.exports = __require.addon();
}
});
// ../../node_modules/bare-pipe/lib/constants.js
var require_constants5 = __commonJS({
"../../node_modules/bare-pipe/lib/constants.js"(exports, module) {
var binding = require_binding12();
module.exports = {
state: {
CONNECTING: 1,
CONNECTED: 2,
BINDING: 4,
BOUND: 8,
READING: 16,
CLOSING: 32,
READABLE: 64,
WRITABLE: 128,
UNREFED: 256
},
handle: {
NAMED_PIPE: binding.UV_NAMED_PIPE,
TCP: binding.UV_TCP,
UDP: binding.UV_UDP
}
};
}
});
// ../../node_modules/bare-pipe/lib/errors.js
var require_errors9 = __commonJS({
"../../node_modules/bare-pipe/lib/errors.js"(exports, module) {
module.exports = class PipeError extends Error {
constructor(msg, fn = PipeError, code = fn.name) {
super(`${code}: ${msg}`);
this.code = code;
if (Error.captureStackTrace) {
Error.captureStackTrace(this, fn);
}
}
get name() {
return "PipeError";
}
static PIPE_ALREADY_CONNECTED(msg) {
return new PipeError(msg, PipeError.PIPE_ALREADY_CONNECTED);
}
static SERVER_ALREADY_LISTENING(msg) {
return new PipeError(msg, PipeError.SERVER_ALREADY_LISTENING);
}
static SERVER_IS_CLOSED(msg) {
return new PipeError(msg, PipeError.SERVER_IS_CLOSED);
}
static INVALID_IPC_TARGET(msg) {
return new PipeError(msg, PipeError.INVALID_IPC_TARGET);
}
};
}
});
// ../../node_modules/bare-pipe/index.js
var require_bare_pipe = __commonJS({
"../../node_modules/bare-pipe/index.js"(exports, module) {
var EventEmitter = require_bare_events();
var { Duplex } = require_bare_stream();
var binding = require_binding12();
var constants = require_constants5();
var errors = require_errors9();
var defaultReadBufferSize = 65536;
var empty = Buffer.alloc(0);
var ipcHandle = Symbol.for("bare.ipc.handle");
var ipcAccept = Symbol.for("bare.ipc.accept");
module.exports = exports = class Pipe extends Duplex {
constructor(path, opts = {}) {
if (typeof path === "object" && path !== null) {
opts = path;
path = null;
}
const {
readBufferSize = defaultReadBufferSize,
allowHalfOpen = true,
eagerOpen = true,
ipc = false
} = opts;
super({ eagerOpen });
this._state = 0;
this._allowHalfOpen = allowHalfOpen;
this._ipc = ipc;
this._fd = -1;
this._path = null;
this._pendingOpen = null;
this._pendingWrite = null;
this._pendingWriteBatch = null;
this._pendingWriteSegments = null;
this._pendingWriteIdx = 0;
this._pendingFinal = null;
this._pendingDestroy = null;
this._handleQueue = [];
this._handleQueueSize = 0;
this._buffer = Buffer.alloc(readBufferSize);
this._handle = binding.init(
this._buffer,
ipc,
this,
noop,
this._onconnect,
this._onwrite,
this._onfinal,
this._onread,
this._onhandle,
this._onclose
);
if (typeof path === "number") {
this.open(path);
} else if (typeof path === "string") {
this.connect(path);
}
}
get connecting() {
return (this._state & constants.state.CONNECTING) !== 0;
}
get pending() {
return (this._state & constants.state.CONNECTED) === 0;
}
get readyState() {
if (this._state & constants.state.READABLE && this._state & constants.state.WRITABLE) {
return "open";
}
if (this._state & constants.state.READABLE) {
return "readOnly";
}
if (this._state & constants.state.WRITABLE) {
return "writeOnly";
}
return "opening";
}
get [ipcHandle]() {
return this._handle;
}
open(fd, opts = {}, onconnect) {
if (typeof opts === "function") {
onconnect = opts;
opts = {};
}
if (typeof fd === "object" && fd !== null) {
opts = fd || {};
fd = opts.fd;
}
try {
const status = binding.open(this._handle, fd);
this._state |= constants.state.CONNECTED;
this._fd = fd;
if (status & binding.READABLE) {
this._state |= constants.state.READABLE;
} else {
this.push(null);
}
if (status & binding.WRITABLE) {
this._state |= constants.state.WRITABLE;
} else {
this.end();
}
if (onconnect) this.once("connect", onconnect);
queueMicrotask(() => this.emit("connect"));
} catch (err) {
queueMicrotask(() => {
if (this._pendingOpen) this._pendingOpen(err);
else this.destroy(err);
});
}
return this;
}
connect(path, opts = {}, onconnect) {
if (this._state & constants.state.CONNECTING || this._state & constants.state.CONNECTED) {
throw errors.PIPE_ALREADY_CONNECTED("Pipe is already connected");
}
this._state |= constants.state.CONNECTING;
if (typeof opts === "function") {
onconnect = opts;
opts = {};
}
if (typeof path === "object" && path !== null) {
opts = path || {};
path = opts.path;
}
try {
binding.connect(this._handle, path);
this._path = path;
if (onconnect) this.once("connect", onconnect);
} catch (err) {
this._state &= ~constants.state.CONNECTING;
queueMicrotask(() => {
if (this._pendingOpen) this._pendingOpen(err);
else this.destroy(err);
});
}
return this;
}
write(chunk, encoding, handle, cb) {
if (typeof encoding === "function") {
cb = encoding;
encoding = void 0;
handle = null;
} else if (typeof encoding === "object" && encoding !== null) {
if (typeof handle === "function") cb = handle;
handle = encoding;
encoding = void 0;
} else if (typeof handle === "function") {
cb = handle;
handle = null;
}
if (handle) this._handleQueueSize++;
this._handleQueue.push(handle || null);
if (encoding) return super.write(chunk, encoding, cb);
return super.write(chunk, cb);
}
accept(target) {
const handle = target[ipcHandle];
if (handle === void 0) {
throw errors.INVALID_IPC_TARGET("Target does not implement the IPC handle protocol");
}
binding.accept(this._handle, handle);
if (typeof target[ipcAccept] === "function") target[ipcAccept]();
return target;
}
ref() {
binding.ref(this._handle);
return this;
}
unref() {
binding.unref(this._handle);
return this;
}
[ipcAccept]() {
this._onaccept();
}
_open(cb) {
if (this._state & constants.state.CONNECTED) return cb(null);
this._pendingOpen = cb;
}
_read() {
if ((this._state & constants.state.READING) === 0) {
this._state |= constants.state.READING;
binding.resume(this._handle);
}
}
_writev(batch, cb) {
this._pendingWrite = cb;
this._pendingWriteBatch = batch;
if (this._handleQueueSize === 0) {
this._handleQueue = [];
this._pendingWriteSegments = null;
try {
binding.writev(
this._handle,
batch.map(({ chunk }) => chunk),
null
);
} catch (err) {
this._continueWrite(err);
}
return;
}
const handles = this._handleQueue.splice(0, batch.length);
for (let i2 = 0; i2 < batch.length; i2++) {
if (handles[i2] === void 0) handles[i2] = null;
else if (handles[i2] !== null) this._handleQueueSize--;
}
const segments = [];
let i = 0;
while (i < batch.length) {
if (handles[i] !== null) {
segments.push({ chunks: [batch[i]], handle: handles[i] });
i++;
} else {
const start = i;
while (i < batch.length && handles[i] === null) i++;
segments.push({ chunks: batch.slice(start, i), handle: null });
}
}
this._pendingWriteSegments = segments;
this._pendingWriteIdx = 0;
this._writeNextSegment();
}
_writeNextSegment() {
const segment = this._pendingWriteSegments[this._pendingWriteIdx];
const chunks = [];
for (let i = 0; i < segment.chunks.length; i++) {
chunks.push(segment.chunks[i].chunk);
}
let sendHandle = null;
if (segment.handle !== null) sendHandle = segment.handle[ipcHandle];
try {
binding.writev(this._handle, chunks, sendHandle);
} catch (err) {
this._continueWrite(err);
}
}
_final(cb) {
if (this._state & constants.state.READABLE && this._state & constants.state.WRITABLE) {
this._pendingFinal = cb;
binding.end(this._handle);
} else {
cb(null);
}
}
_predestroy() {
if (this._state & constants.state.CLOSING) return;
this._state |= constants.state.CLOSING;
binding.close(this._handle);
}
_destroy(err, cb) {
if (this._state & constants.state.CLOSING) return cb(err);
this._state |= constants.state.CLOSING;
this._pendingDestroy = cb;
binding.close(this._handle);
}
_continueOpen(err) {
if (this._pendingOpen === null) return;
const cb = this._pendingOpen;
this._pendingOpen = null;
cb(err);
}
_continueWrite(err) {
if (this._pendingWrite === null) return;
if (this._pendingWriteSegments === null) {
const cb2 = this._pendingWrite;
this._pendingWrite = null;
this._pendingWriteBatch = null;
cb2(err);
return;
}
this._pendingWriteIdx++;
if (err === null && this._pendingWriteIdx < this._pendingWriteSegments.length) {
this._writeNextSegment();
return;
}
const cb = this._pendingWrite;
this._pendingWrite = null;
this._pendingWriteBatch = null;
this._pendingWriteSegments = null;
this._pendingWriteIdx = 0;
cb(err);
}
_continueFinal(err) {
if (this._pendingFinal === null) return;
const cb = this._pendingFinal;
this._pendingFinal = null;
cb(err);
}
_continueDestroy() {
if (this._pendingDestroy === null) return;
const cb = this._pendingDestroy;
this._pendingDestroy = null;
cb(null);
}
_onconnect(err) {
if (err) {
this._state &= ~constants.state.CONNECTING;
if (this._pendingOpen) this._continueOpen(err);
else this.destroy(err);
return;
}
this._state |= constants.state.CONNECTED | constants.state.READABLE | constants.state.WRITABLE;
this._state &= ~constants.state.CONNECTING;
this._continueOpen();
this.emit("connect");
}
_onaccept() {
this._state |= constants.state.CONNECTED | constants.state.READABLE | constants.state.WRITABLE;
this._continueOpen();
}
_onread(err, read) {
if (err) {
this.destroy(err);
return;
}
if (read === 0) {
this.push(null);
if (this._allowHalfOpen === false) this.end();
return;
}
const copy = Buffer.allocUnsafe(read);
copy.set(this._buffer.subarray(0, read));
if (this.push(copy) === false && this.destroying === false) {
this._state &= ~constants.state.READING;
binding.pause(this._handle);
}
}
_onhandle(type) {
this.emit("handle", type);
}
_onwrite(err) {
this._continueWrite(err);
}
_onfinal(err) {
this._continueFinal(err === null || err.code === "ENOTCONN" ? null : err);
}
_onclose() {
this._continueDestroy();
}
_onspawn(readable, writable) {
this._state |= constants.state.CONNECTED;
if (readable) {
this._state |= constants.state.READABLE;
} else {
this.push(null);
}
if (writable) {
this._state |= constants.state.WRITABLE;
} else {
this.end();
}
this._continueOpen();
}
};
exports.Pipe = exports;
exports.pipe = function pipe() {
return binding.pipe();
};
exports.Server = class PipeServer extends EventEmitter {
constructor(opts = {}, onconnection) {
if (typeof opts === "function") {
onconnection = opts;
opts = {};
}
super();
const {
readBufferSize = defaultReadBufferSize,
allowHalfOpen = true,
pauseOnConnect = false,
ipc = false
} = opts;
this._state = 0;
this._readBufferSize = readBufferSize;
this._allowHalfOpen = allowHalfOpen;
this._pauseOnConnect = pauseOnConnect;
this._ipc = ipc;
this._path = null;
this._connections = /* @__PURE__ */ new Set();
this._error = null;
this._handle = null;
if (onconnection) this.on("connection", onconnection);
}
get listening() {
return (this._state & constants.state.BOUND) !== 0;
}
address() {
if ((this._state & constants.state.BOUND) === 0) {
return null;
}
return this._path;
}
listen(path, backlog = 511, opts = {}, onlistening) {
if (this._state & constants.state.BINDING || this._state & constants.state.BOUND) {
throw errors.SERVER_ALREADY_LISTENING("Server is already listening");
}
if (this._state & constants.state.CLOSING) {
throw errors.SERVER_IS_CLOSED("Server is closed");
}
this._state |= constants.state.BINDING;
if (typeof backlog === "function") {
onlistening = backlog;
backlog = 511;
} else if (typeof opts === "function") {
onlistening = opts;
opts = {};
}
if (typeof path === "object" && path !== null) {
opts = path || {};
path = opts.path;
backlog = opts.backlog || 511;
}
this._handle = binding.init(
empty,
this._ipc,
this,
this._onconnection,
noop,
noop,
noop,
noop,
noop,
this._onclose
);
if (this._state & constants.state.UNREFED) binding.unref(this._handle);
try {
binding.bind(this._handle, path, backlog);
this._path = path;
this._state |= constants.state.BOUND;
this._state &= ~constants.state.BINDING;
if (onlistening) this.once("listening", onlistening);
queueMicrotask(() => this.emit("listening"));
} catch (err) {
this._error = err;
binding.close(this._handle);
}
return this;
}
close(onclose) {
if (onclose) this.once("close", onclose);
if (this._state & constants.state.CLOSING) return;
this._state |= constants.state.CLOSING;
this._closeMaybe();
return this;
}
ref() {
this._state &= ~constants.state.UNREFED;
if (this._handle !== null) binding.ref(this._handle);
return this;
}
unref() {
this._state |= constants.state.UNREFED;
if (this._handle !== null) binding.unref(this._handle);
return this;
}
_closeMaybe() {
if (this._state & constants.state.CLOSING && this._connections.size === 0) {
if (this._handle !== null) binding.close(this._handle);
else queueMicrotask(() => this.emit("close"));
}
}
_onconnection(err) {
if (err) {
this.emit("error", err);
return;
}
if (this._state & constants.state.CLOSING) return;
const pipe = new exports.Pipe({
readBufferSize: this._readBufferSize,
allowHalfOpen: this._allowHalfOpen,
eagerOpen: !this._pauseOnConnect,
ipc: this._ipc
});
try {
binding.accept(this._handle, pipe._handle);
pipe._path = this._path;
pipe._onaccept();
this._connections.add(pipe);
pipe.on("close", () => {
this._connections.delete(pipe);
this._closeMaybe();
});
this.emit("connection", pipe);
} catch (err2) {
pipe.destroy();
throw err2;
}
}
_onclose() {
const err = this._error;
this._state &= ~constants.state.BINDING;
this._state &= ~constants.state.BOUND;
this._error = null;
this._handle = null;
if (err) this.emit("error", err);
else this.emit("close");
}
};
exports.constants = constants;
exports.errors = errors;
exports.createConnection = function createConnection(path, opts, onconnect) {
if (typeof opts === "function") {
onconnect = opts;
opts = {};
}
if (typeof path === "object" && path !== null) {
opts = path || {};
path = opts.path;
}
return new exports.Pipe(opts).connect(path, opts, onconnect);
};
exports.createServer = function createServer(opts, onconnection) {
return new exports.Server(opts, onconnection);
};
function noop() {
}
}
});
// ../../node_modules/bare-stdio/binding.js
var require_binding13 = __commonJS({
"../../node_modules/bare-stdio/binding.js"(exports, module) {
module.exports = __require.addon();
}
});
// ../../node_modules/bare-stdio/index.js
var require_bare_stdio = __commonJS({
"../../node_modules/bare-stdio/index.js"(exports, module) {
var fs = require_bare_fs();
var tty = require_bare_tty();
var Pipe = require_bare_pipe();
var binding = require_binding13();
var { TTY, NAMED_PIPE } = binding;
var IO = class {
constructor() {
this._in = null;
this._out = null;
this._err = null;
}
get in() {
if (this._in === null) {
switch (binding.guessType(0)) {
case TTY:
this._in = new tty.ReadStream(0);
break;
case NAMED_PIPE:
this._in = new Pipe(0, { eagerOpen: false });
break;
default:
this._in = fs.createReadStream(null, { fd: 0, eagerOpen: false });
}
}
return this._in;
}
get out() {
if (this._out === null) {
switch (binding.guessType(1)) {
case TTY:
this._out = new tty.WriteStream(1);
break;
case NAMED_PIPE:
this._out = new Pipe(1, { eagerOpen: false });
this._out.unref();
break;
default:
this._out = fs.createWriteStream(null, { fd: 1, eagerOpen: false });
}
}
return this._out;
}
get err() {
if (this._err === null) {
switch (binding.guessType(2)) {
case TTY:
this._err = new tty.WriteStream(2);
break;
case NAMED_PIPE:
this._err = new Pipe(2, { eagerOpen: false });
this._err.unref();
break;
default:
this._err = fs.createWriteStream(null, { fd: 2, eagerOpen: false });
}
}
return this._err;
}
};
module.exports = new IO();
}
});
// ../../node_modules/bare-posix/binding.js
var require_binding14 = __commonJS({
"../../node_modules/bare-posix/binding.js"(exports, module) {
module.exports = __require.addon();
}
});
// ../../node_modules/bare-posix/index.js
var require_bare_posix = __commonJS({
"../../node_modules/bare-posix/index.js"(exports) {
var binding = require_binding14();
exports.getgid = binding.getgid;
exports.setgid = function setgid(id) {
if (typeof id === "string") id = exports.getgrnam(id).gid;
binding.setgid(id);
};
exports.getegid = binding.getegid;
exports.setegid = function setegid(id) {
if (typeof id === "string") id = exports.getgrnam(id).gid;
binding.setegid(id);
};
exports.getuid = binding.getuid;
exports.setuid = function setuid(id) {
if (typeof id === "string") id = exports.getpwnam(id).uid;
binding.setuid(id);
};
exports.geteuid = binding.geteuid;
exports.seteuid = function seteuid(id) {
if (typeof id === "string") id = exports.getpwnam(id).uid;
binding.seteuid(id);
};
exports.getgroups = binding.getgroups;
exports.getgrnam = binding.getgrnam;
exports.getpwnam = binding.getpwnam;
}
});
// ../../node_modules/bare-process/index.js
var require_bare_process = __commonJS({
"../../node_modules/bare-process/index.js"(exports, module) {
var abort = require_bare_abort();
var EventEmitter = require_bare_events();
var Signal = require_bare_signals();
var os = require_bare_os();
var env = require_bare_env();
var hrtime = require_bare_hrtime();
var stdio = require_bare_stdio();
var posix = require_bare_posix();
var Process = class _Process extends EventEmitter {
constructor() {
super();
this._startTime = hrtime.bigint();
EventEmitter.forward(Bare, this, [
"uncaughtException",
"unhandledRejection",
"beforeExit",
"exit",
"suspend",
"wakeup",
"idle",
"resume"
]);
const signals = new Signal.Emitter();
signals.unref();
EventEmitter.forward(signals, this, Object.keys(os.constants.signals));
}
get stdin() {
return stdio.in;
}
get stdout() {
return stdio.out;
}
get stderr() {
return stdio.err;
}
get platform() {
return os.platform();
}
get arch() {
return os.arch();
}
get title() {
return os.getProcessTitle();
}
set title(title) {
os.setProcessTitle(title);
}
get pid() {
return os.pid();
}
get ppid() {
return os.ppid();
}
get argv() {
return Bare.argv;
}
get execArgv() {
return [];
}
get execPath() {
return os.execPath();
}
get exitCode() {
return Bare.exitCode;
}
set exitCode(code) {
Bare.exitCode = code;
}
get version() {
return Bare.version;
}
get versions() {
return Bare.versions;
}
get env() {
return env;
}
get hrtime() {
return hrtime;
}
abort() {
abort();
}
exit(code) {
Bare.exit(code);
}
suspend() {
Bare.suspend();
}
resume() {
Bare.resume();
}
cwd() {
return os.cwd();
}
chdir(directory) {
os.chdir(directory);
}
kill(pid, signal) {
os.kill(pid, signal);
}
uptime() {
return Number(hrtime.bigint() - this._startTime) / 1e9;
}
cpuUsage(previous) {
return os.cpuUsage(previous);
}
threadCpuUsage(previous) {
return os.threadCpuUsage(previous);
}
resourceUsage() {
return os.resourceUsage();
}
availableMemory() {
return os.availableMemory();
}
constrainedMemory() {
return os.constrainedMemory();
}
memoryUsage() {
return os.memoryUsage();
}
getgid() {
return posix.getgid();
}
setgid(id) {
return posix.setgid(id);
}
getegid() {
return posix.getegid();
}
setegid(id) {
return posix.setegid(id);
}
getuid() {
return posix.getuid();
}
setuid(id) {
return posix.setuid(id);
}
geteuid() {
return posix.geteuid();
}
seteuid(id) {
return posix.seteuid(id);
}
getgroups() {
return posix.getgroups();
}
nextTick(cb, ...args) {
queueMicrotask(cb.bind(null, ...args));
}
[Symbol.for("bare.inspect")]() {
return {
__proto__: { constructor: _Process },
platform: this.platform,
arch: this.arch,
title: this.title,
pid: this.pid,
ppid: this.ppid,
argv: this.argv,
execPath: this.execPath,
exitCode: this.exitCode,
version: this.version,
versions: this.versions,
env: this.env
};
}
};
module.exports = new Process();
}
});
// ../../node_modules/bare-stylize/index.js
var require_bare_stylize = __commonJS({
"../../node_modules/bare-stylize/index.js"(exports, module) {
var escapes = require_bare_ansi_escapes();
var process = require_bare_process();
function getStylesMap() {
const stylesMap2 = {};
let style;
for (const escape of Object.getOwnPropertyNames(escapes)) {
if (escape.startsWith("color")) {
style = escape[5].toLowerCase() + escape.slice(6);
} else if (escape.startsWith("modifier")) {
style = escape[8].toLowerCase() + escape.slice(9);
} else {
continue;
}
stylesMap2[style] = escapes[escape];
}
return stylesMap2;
}
var stylesMap = getStylesMap();
module.exports = function stylize(styles, text, opts = {}) {
const validateStream = opts.validateStream ?? true;
const stream = opts.stream ?? process.stdout;
if (!validateStream || !stream.isTTY) return text;
if (typeof styles === "string") styles = [styles];
const code = styles.map((style) => stylesMap[style]).join("");
return code + text + escapes.modifierReset;
};
}
});
// ../../node_modules/bare-utils/lib/deprecate.js
var require_deprecate = __commonJS({
"../../node_modules/bare-utils/lib/deprecate.js"(exports, module) {
module.exports = function deprecate(fn, msg, code) {
let warned = false;
return function(...args) {
if (!warned) {
warned = true;
if (code) {
console.warn(`[${code}]`, "DeprecationWarning:", msg);
} else {
console.warn("DeprecationWarning:", msg);
}
}
if (new.target) return Reflect.construct(fn, args, new.target);
return Reflect.apply(fn, this, args);
};
};
}
});
// ../../node_modules/bare-utils/lib/inherits.js
var require_inherits = __commonJS({
"../../node_modules/bare-utils/lib/inherits.js"(exports, module) {
module.exports = function inherits(ctor, superCtor) {
if (superCtor) Object.setPrototypeOf(ctor.prototype, superCtor.prototype);
};
}
});
// ../../node_modules/bare-utils/lib/promisify.js
var require_promisify = __commonJS({
"../../node_modules/bare-utils/lib/promisify.js"(exports, module) {
module.exports = function promisify(fn) {
return function(...args) {
return new Promise((resolve, reject) => {
args.push((err, ...result) => {
if (err) reject(err);
else resolve(...result);
});
Reflect.apply(fn, this, args);
});
};
};
}
});
// ../../node_modules/bare-utils/lib/types.js
var require_types = __commonJS({
"../../node_modules/bare-utils/lib/types.js"(exports) {
var type = require_bare_type();
exports.isAnyArrayBuffer = (value) => {
const t = type(value);
return t.isArrayBuffer() || t.isSharedArrayBuffer();
};
exports.isArrayBufferView = (value) => ArrayBuffer.isView(value);
exports.isArgumentsObject = (value) => type(value).isArguments();
exports.isArrayBuffer = (value) => type(value).isArrayBuffer();
exports.isAsyncFunction = (value) => type(value).isAsyncFunction();
exports.isBigInt64Array = (value) => type(value).isBigInt64Array();
exports.isBigIntObject = (value) => value instanceof BigInt;
exports.isBigUint64Array = (value) => type(value).isBigUint64Array();
exports.isBooleanObject = (value) => value instanceof Boolean;
exports.isBoxedPrimitive = (value) => exports.isBigIntObject(value) || exports.isBooleanObject(value) || exports.isNumberObject(value) || exports.isStringObject(value) || exports.isSymbolObject(value);
exports.isCryptoKey = () => {
return false;
};
exports.isDataView = (value) => type(value).isDataView();
exports.isDate = (value) => type(value).isDate();
exports.isExternal = (value) => type(value).isExternal();
exports.isFloat16Array = () => {
return false;
};
exports.isFloat32Array = (value) => type(value).isFloat32Array();
exports.isFloat64Array = (value) => type(value).isFloat64Array();
exports.isGeneratorFunction = (value) => type(value).isGeneratorFunction();
exports.isGeneratorObject = (value) => type(value).isGenerator();
exports.isInt8Array = (value) => type(value).isInt8Array();
exports.isInt16Array = (value) => type(value).isInt16Array();
exports.isInt32Array = (value) => type(value).isInt32Array();
exports.isKeyObject = () => {
return false;
};
exports.isMap = (value) => type(value).isMap();
exports.isMapIterator = () => {
return false;
};
exports.isModuleNamespaceObject = (value) => type(value).isModuleNamespace();
exports.isNativeError = (value) => {
return value instanceof Error;
};
exports.isNumberObject = (value) => value instanceof Number;
exports.isPromise = (value) => type(value).isPromise();
exports.isProxy = (value) => type(value).isProxy();
exports.isRegExp = (value) => type(value).isRegExp();
exports.isSet = (value) => type(value).isSet();
exports.isSetIterator = () => {
return false;
};
exports.isSharedArrayBuffer = (value) => type(value).isSharedArrayBuffer();
exports.isStringObject = (value) => value instanceof String;
exports.isSymbolObject = (value) => value instanceof Symbol;
exports.isTypedArray = (value) => type(value).isTypedArray();
exports.isUint8Array = (value) => type(value).isUint8Array();
exports.isUint8ClampedArray = (value) => type(value).isUint8ClampedArray();
exports.isUint16Array = (value) => type(value).isUint16Array();
exports.isUint32Array = (value) => type(value).isUint32Array();
}
});
// ../../node_modules/bare-utils/index.js
var require_bare_utils = __commonJS({
"../../node_modules/bare-utils/index.js"(exports) {
var { TextEncoder, TextDecoder } = require_bare_encoding();
exports.TextEncoder = TextEncoder;
exports.TextDecoder = TextDecoder;
exports.debuglog = require_bare_debug_log();
exports.format = require_bare_format();
exports.formatWithOptions = exports.format.formatWithOptions;
exports.inspect = require_bare_inspect();
exports.styleText = require_bare_stylize();
exports.deprecate = require_deprecate();
exports.inherits = require_inherits();
exports.promisify = require_promisify();
exports.types = require_types();
}
});
// ../../bare-lib-entry-bareUtils.js
var bare_lib_entry_bareUtils_exports = {};
__export(bare_lib_entry_bareUtils_exports, {
default: () => bare_lib_entry_bareUtils_default
});
var import_bare_utils = __toESM(require_bare_utils());
var bare_lib_entry_bareUtils_default = import_bare_utils.default;
return __toCommonJS(bare_lib_entry_bareUtils_exports);
})();
;(function(){var g=globalThis;var s="__bare_os_stdlib__";g[s]=g[s]||{};var e=typeof __bare_os_bundle_exports__!=="undefined"?__bare_os_bundle_exports__:void 0;var v=e!=null&&typeof e==="object"&&Object.prototype.hasOwnProperty.call(e,"default")?e.default:e;g[s]["bareUtils"]=v;})();