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/events-universal/default.js var require_default = __commonJS({ "../../node_modules/events-universal/default.js"(exports, module) { module.exports = __require("events"); } }); // ../../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/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 }; } }); // ../../node_modules/text-decoder/lib/pass-through-decoder.js var require_pass_through_decoder = __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_decoder = __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_decoder(); var UTF8Decoder = require_utf8_decoder(); 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/index.js var require_streamx = __commonJS({ "../../node_modules/streamx/index.js"(exports, module) { var { EventEmitter } = require_default(); var STREAM_DESTROYED = new Error("Stream was destroyed"); var PREMATURE_CLOSE = new Error("Premature close"); var FIFO = require_fast_fifo(); var TextDecoder = require_text_decoder(); 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 new Error("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 || new Error("Writable stream closed prematurely")); } return; } } if (stream === this.from) { this.from = null; if (this.to !== null) { if ((stream._duplexState & READ_DONE) === 0) { this.to.destroy(this.error || new Error("Readable stream closed before ending")); } 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 && this.error !== STREAM_DESTROYED) 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 = 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); } } 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(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 new Error("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 : 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(PREMATURE_CLOSE); if (wr && s._writableState && !s._writableState.ended) return onerror2(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 && err === STREAM_DESTROYED ? 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(new Error("Stream 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); if (start) { this._stream._open = this._open.bind(this, start.call(this, controller)); } if (pull) { this._stream._read = this._read.bind(this, pull.bind(this, controller)); } if (cancel) { this._stream.once("error", cancel); } } 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 _open(starting, cb) { let err = null; try { await starting; } catch (e) { err = e; } cb(err); } async _read(pull, cb) { 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 }); this._controller = new exports.WritableStreamDefaultController(this); if (start) { this._stream._open = this._open.bind(this, start.call(this, this._controller)); } if (write) { this._stream._write = this._write.bind(this, write); } if (close) { this._stream._destroy = this._destroy.bind(this, close.call(this)); } if (abort) { this._stream.once("error", abort); } } 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 _open(starting, cb) { let err = null; try { await starting; } catch (e) { err = e; } cb(err); } async _write(write, data, cb) { 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 = {}) { const { start, transform, flush } = transformer; this._stream = new Transform({ ...writableStrategy, ...readableStrategy }); this._writable = new WritableStream(this._stream); this._readable = new ReadableStream(this._stream); this._controller = new exports.TransformStreamDefaultController(this); if (start) { this._stream._open = this._open.bind(this, start.call(this, this._controller)); } if (transform) { this._stream._write = this._transform.bind(this, transform); } if (flush) { this._stream._flush = this._flush.bind(this, flush.call(this, this._controller)); } } get [transformKind]() { return _TransformStream[transformKind]; } get writable() { return this._writable; } get readable() { return this._readable; } async _open(starting, cb) { let err = null; try { await starting; } catch (e) { err = e; } cb(err); } async _transform(transform, data, cb) { 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]; }; function noop() { } } }); // ../../node_modules/bare-stream/index.js var require_bare_stream = __commonJS({ "../../node_modules/bare-stream/index.js"(exports, module) { 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 = Buffer.from(chunk, encoding || defaultEncoding); } return super.push(chunk); } unshift(chunk, encoding) { if (typeof chunk === "string") { chunk = Buffer.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 = Buffer.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 = Buffer.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 = Buffer.from(chunk, encoding || defaultEncoding); } return super.push(chunk); } unshift(chunk, encoding) { if (typeof chunk === "string") { chunk = Buffer.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 = Buffer.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 = Buffer.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.Readable.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 = Buffer.from(chunk, encoding || defaultEncoding); } return super.push(chunk); } unshift(chunk, encoding) { if (typeof chunk === "string") { chunk = Buffer.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 = Buffer.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 = Buffer.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-tls/binding.js var require_binding = __commonJS({ "../../node_modules/bare-tls/binding.js"(exports, module) { module.exports = __require.addon(); } }); // ../../node_modules/bare-tls/lib/constants.js var require_constants = __commonJS({ "../../node_modules/bare-tls/lib/constants.js"(exports, module) { module.exports = { state: { CONNECTED: 1, ATTACHED: 2 } }; } }); // ../../node_modules/bare-tls/lib/errors.js var require_errors = __commonJS({ "../../node_modules/bare-tls/lib/errors.js"(exports, module) { module.exports = class TLSError extends Error { constructor(msg, code, fn = TLSError) { super(`${code}: ${msg}`); this.code = code; if (Error.captureStackTrace) { Error.captureStackTrace(this, fn); } } get name() { return "TLSError"; } static from(err) { return new TLSError(err.message, err.code, TLSError.from); } }; } }); // ../../node_modules/bare-events/lib/errors.js var require_errors2 = __commonJS({ "../../node_modules/bare-events/lib/errors.js"(exports, module) { module.exports = class EventEmitterError extends Error { constructor(msg, code, fn = EventEmitterError, opts) { super(`${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_errors2(); 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]; } 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-dns/binding.js var require_binding2 = __commonJS({ "../../node_modules/bare-dns/binding.js"(exports, module) { module.exports = __require.addon(); } }); // ../../node_modules/bare-dns/index.js var require_bare_dns = __commonJS({ "../../node_modules/bare-dns/index.js"(exports) { var binding = require_binding2(); exports.Resolver = class DNSResolver { constructor() { this._handle = binding.initResolver(); } resolveTxt(hostname, cb = noop) { binding.resolveTxt(this._handle, hostname, cb, this); } destroy() { binding.destroyResolver(this._handle); this._handle = null; } static global = new this(); }; function onlookup(err, addresses) { const req = this; if (err) return req.cb(err, null, 0); const { address, family } = addresses[0]; return req.cb(null, address, family); } function onlookupall(err, addresses) { const req = this; if (err) return req.cb(err, null); return req.cb(null, addresses); } exports.lookup = function lookup(hostname, opts = {}, cb) { if (typeof opts === "function") { cb = opts; opts = {}; } let { family = 0, all = false } = opts; if (typeof family === "string") { switch (family) { case "IPv4": family = 4; break; case "IPv6": family = 6; break; default: family = 0; } } const req = { cb, handle: null }; req.handle = binding.lookup( hostname, family || 0, all, req, all ? onlookupall : onlookup ); }; exports.resolveTxt = function resolveTxt(hostname, cb) { exports.Resolver.global.resolveTxt(hostname, cb); }; function noop() { } } }); // ../../node_modules/bare-tcp/binding.js var require_binding3 = __commonJS({ "../../node_modules/bare-tcp/binding.js"(exports, module) { module.exports = __require.addon(); } }); // ../../node_modules/bare-tcp/lib/constants.js var require_constants2 = __commonJS({ "../../node_modules/bare-tcp/lib/constants.js"(exports, module) { module.exports = { state: { CONNECTING: 1, CONNECTED: 2, BINDING: 4, BOUND: 8, READING: 16, CLOSING: 32, UNREFED: 64 } }; } }); // ../../node_modules/bare-tcp/lib/errors.js var require_errors3 = __commonJS({ "../../node_modules/bare-tcp/lib/errors.js"(exports, module) { module.exports = class TCPError extends Error { constructor(msg, fn = TCPError, code = fn.name) { super(`${code}: ${msg}`); this.code = code; if (Error.captureStackTrace) { Error.captureStackTrace(this, fn); } } get name() { return "TCPError"; } static SOCKET_ALREADY_CONNECTED(msg) { return new TCPError(msg, TCPError.SOCKET_ALREADY_CONNECTED); } static SERVER_ALREADY_LISTENING(msg) { return new TCPError(msg, TCPError.SERVER_ALREADY_LISTENING); } static SERVER_IS_CLOSED(msg) { return new TCPError(msg, TCPError.SERVER_IS_CLOSED); } static INVALID_HOST(msg = "Unrecognizable host format") { return new TCPError(msg, TCPError.INVALID_HOST); } }; } }); // ../../node_modules/bare-tcp/lib/ip.js var require_ip = __commonJS({ "../../node_modules/bare-tcp/lib/ip.js"(exports) { var v4Seg = "(?:[0-9]|[1-9][0-9]|1[0-9][0-9]|2[0-4][0-9]|25[0-5])"; var v4Str = `(${v4Seg}[.]){3}${v4Seg}`; var IPv4Pattern = new RegExp(`^${v4Str}$`); var v6Seg = "(?:[0-9a-fA-F]{1,4})"; var IPv6Pattern = new RegExp( `^((?:${v6Seg}:){7}(?:${v6Seg}|:)|(?:${v6Seg}:){6}(?:${v4Str}|:${v6Seg}|:)|(?:${v6Seg}:){5}(?::${v4Str}|(:${v6Seg}){1,2}|:)|(?:${v6Seg}:){4}(?:(:${v6Seg}){0,1}:${v4Str}|(:${v6Seg}){1,3}|:)|(?:${v6Seg}:){3}(?:(:${v6Seg}){0,2}:${v4Str}|(:${v6Seg}){1,4}|:)|(?:${v6Seg}:){2}(?:(:${v6Seg}){0,3}:${v4Str}|(:${v6Seg}){1,5}|:)|(?:${v6Seg}:){1}(?:(:${v6Seg}){0,4}:${v4Str}|(:${v6Seg}){1,6}|:)|(?::((?::${v6Seg}){0,5}:${v4Str}|(?::${v6Seg}){1,7}|:)))(%[0-9a-zA-Z-.:]{1,})?$` ); var isIPv4 = exports.isIPv4 = function isIPv42(host) { return IPv4Pattern.test(host); }; var isIPv6 = exports.isIPv6 = function isIPv62(host) { return IPv6Pattern.test(host); }; exports.isIP = function isIP(host) { if (isIPv4(host)) return 4; if (isIPv6(host)) return 6; return 0; }; } }); // ../../node_modules/bare-tcp/index.js var require_bare_tcp = __commonJS({ "../../node_modules/bare-tcp/index.js"(exports) { var EventEmitter = require_bare_events(); var { Duplex } = require_bare_stream(); var dns = require_bare_dns(); var binding = require_binding3(); var constants = require_constants2(); var errors = require_errors3(); var ip = require_ip(); var defaultReadBufferSize = 65536; var empty = Buffer.alloc(0); exports.Socket = class TCPSocket extends Duplex { constructor(opts = {}) { const { readBufferSize = defaultReadBufferSize, allowHalfOpen = true, eagerOpen = true } = opts; super({ eagerOpen }); this._state = 0; this._allowHalfOpen = allowHalfOpen; this._keepAlive = 0; this._keepAliveInitialDelay = 0; this._noDelay = 0; this._localAddress = null; this._remoteAddress = null; this._pendingOpen = null; this._pendingWrite = null; this._pendingFinal = null; this._pendingDestroy = null; this._timer = null; this._timeout = 0; this._buffer = Buffer.alloc(readBufferSize); this._addresses = null; this._errors = null; this._handle = binding.init( this._buffer, this, noop, this._onconnect, this._onreset, this._onread, this._onwrite, this._onfinal, this._onclose ); } get connecting() { return (this._state & constants.state.CONNECTING) !== 0; } get pending() { return (this._state & constants.state.CONNECTED) === 0; } get timeout() { return this._timeout || void 0; } get readyState() { if (this._state & constants.state.CONNECTED) { return "open"; } return "opening"; } get localAddress() { if (this._localAddress) return this._localAddress.address; } get localFamily() { if (this._localAddress) return `IPv${this._localAddress.family}`; } get localPort() { if (this._localAddress) return this._localAddress.port; } get remoteAddress() { if (this._remoteAddress) return this._remoteAddress.address; } get remoteFamily() { if (this._remoteAddress) return `IPv${this._remoteAddress.family}`; } get remotePort() { if (this._remoteAddress) return this._remoteAddress.port; } connect(port, host = "localhost", opts = {}, onconnect) { if (this._state & constants.state.CONNECTING || this._state & constants.state.CONNECTED) { throw errors.SOCKET_ALREADY_CONNECTED("Socket is already connected"); } this._state |= constants.state.CONNECTING; if (typeof host === "function") { onconnect = host; host = "localhost"; } else if (typeof opts === "function") { onconnect = opts; opts = {}; } let family = 0; if (typeof port === "object" && port !== null) { opts = port || {}; port = opts.port || 0; host = opts.host || "localhost"; family = opts.family || 0; } if (!host) host = "localhost"; const { lookup = dns.lookup, hints, keepAlive = false, keepAliveInitialDelay = 0, noDelay = false, timeout } = opts; const type = ip.isIP(host); if (type === 0) { lookup(host, { all: true, family, hints }, (err, addresses) => { if (this._state & constants.state.CLOSING) return; this._state &= ~constants.state.CONNECTING; if (err || addresses.length === 0) { if (!err) { err = new Error(`No address found for host "${host}"`); err.code = "ENOTFOUND"; } this.emit("lookup", err, null, 0, host); if (this._pendingOpen) this._continueOpen(err); else this.destroy(err); return; } for (const { address: address2, family: family3 } of addresses) { this.emit("lookup", null, address2, family3, host); } const [{ address, family: family2 }, ...rest] = addresses; if (rest.length > 0) { this._addresses = rest.map(({ address: address2, family: family3 }) => [ port, address2, { ...opts, family: family3 }, onconnect ]); this._errors = []; } this.connect(port, address, { ...opts, family: family2 }, onconnect); }); return this; } family = type; try { binding.connect(this._handle, port, host, family); if (keepAlive) { this._keepAlive = keepAlive; this._keepAliveInitialDelay = keepAliveInitialDelay; } if (noDelay) this._noDelay = noDelay; if (timeout) this.setTimeout(timeout); if (onconnect) this.once("connect", onconnect); } catch (err) { queueMicrotask(() => { if (this._pendingOpen) this._pendingOpen(err); else this.destroy(err); }); } return this; } setKeepAlive(enable = false, delay = 0) { if (typeof enable === "number") { delay = enable; enable = false; } delay = Math.floor(delay / 1e3); if (delay === 0) enable = false; binding.keepalive(this._handle, enable, delay); return this; } setNoDelay(enable = true) { binding.nodelay(this._handle, enable); return this; } setTimeout(ms, ontimeout) { if (ms === 0) { clearTimeout(this._timer); this._timer = null; } else { if (ontimeout) this.once("timeout", ontimeout); this._timer = setTimeout(() => this.emit("timeout"), ms); this._timer.unref(); } this._timeout = ms; return this; } ref() { binding.ref(this._handle); return this; } unref() { binding.unref(this._handle); return this; } _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, batch]; binding.writev( this._handle, batch.map(({ chunk }) => chunk) ); } _final(cb) { this._pendingFinal = cb; binding.end(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); } _continueOpen(err) { if (this._pendingOpen === null) return; const cb = this._pendingOpen; this._pendingOpen = null; cb(err); } _continueWrite(err) { if (this._pendingWrite === null) return; const cb = this._pendingWrite[0]; this._pendingWrite = null; 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); } _reset() { this._state = 0; this._localAddress = null; this._remoteAddress = null; binding.reset(this._handle); } _onconnect(err) { if (err) { if (this._addresses !== null) { this._errors.push(err); if (this._addresses.length > 0) return this._reset(); err = this._errors.length === 1 ? this._errors[0] : new AggregateError(this._errors); } if (this._pendingOpen) this._continueOpen(err); else this.destroy(err); return; } if (this._keepAlive) this.setKeepAlive(this._keepAlive, this._keepAliveInitialDelay); if (this._noDelay) this.setNoDelay(); this._localAddress = binding.address(this._handle, true); this._remoteAddress = binding.address(this._handle, false); this._state |= constants.state.CONNECTED; this._state &= ~constants.state.CONNECTING; this._continueOpen(); this.emit("connect"); } _onreset(err) { if (err) { this._errors.push(err); this.destroy(this._errors.length === 1 ? this._errors[0] : new AggregateError(this._errors)); return; } this.connect(...this._addresses.shift()); } _onread(err, read) { if (this._timer) this._timer.refresh(); 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); } } _onwrite(err) { if (this._timer) this._timer.refresh(); this._continueWrite(err); } _onfinal(err) { this._continueFinal(err); } _onclose() { clearTimeout(this._timer); this._continueDestroy(); } }; exports.Server = class TCPServer extends EventEmitter { constructor(opts = {}, onconnection) { if (typeof opts === "function") { onconnection = opts; opts = {}; } super(); const { readBufferSize = defaultReadBufferSize, allowHalfOpen = true, keepAlive = false, keepAliveInitialDelay = 0, noDelay = false, pauseOnConnect = false } = opts; this._state = 0; this._readBufferSize = readBufferSize; this._allowHalfOpen = allowHalfOpen; this._keepAlive = keepAlive; this._keepAliveInitialDelay = keepAliveInitialDelay; this._noDelay = noDelay; this._pauseOnConnect = pauseOnConnect; this._address = 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; } get closing() { return (this._state & constants.state.CLOSING) !== 0; } get connections() { return this._connections; } address() { if ((this._state & constants.state.BOUND) === 0) return null; const { address, family, port } = this._address; return { address, family: `IPv${family}`, port }; } listen(port = 0, host = "localhost", 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 port === "function") { onlistening = port; port = 0; } else if (typeof host === "function") { onlistening = host; host = "localhost"; } else if (typeof backlog === "function") { onlistening = backlog; backlog = 511; } else if (typeof opts === "function") { onlistening = opts; opts = {}; } let family = 0; if (typeof port === "object" && port !== null) { opts = port || {}; port = opts.port || 0; host = opts.host || "localhost"; family = opts.family || 0; backlog = opts.backlog || 511; } if (!host) host = "localhost"; if (!backlog) backlog = 511; const { lookup = dns.lookup, hints } = opts; const type = ip.isIP(host); if (type === 0) { lookup(host, { family, hints }, (err, address, family2) => { if (this._state & constants.state.CLOSING) return; this.emit("lookup", err, address, family2, host); this._state &= ~constants.state.BINDING; if (err) return this.emit("error", err); this.listen(port, address, backlog, { ...opts, family: family2 }, onlistening); }); return this; } family = type; this._handle = binding.init( empty, 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, port, host, backlog, family); this._address = binding.address(this._handle, true); 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; 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 socket = new exports.Socket({ readBufferSize: this._readBufferSize, allowHalfOpen: this._allowHalfOpen, eagerOpen: !this._pauseOnConnect }); try { binding.accept(this._handle, socket._handle); socket._localAddress = binding.address(socket._handle, true); socket._remoteAddress = binding.address(socket._handle, false); socket._state |= constants.state.CONNECTED; this._connections.add(socket); if (this._keepAlive) socket.setKeepAlive(this._keepAlive, this._keepAliveInitialDelay); if (this._noDelay) socket.setNoDelay(); socket.on("close", () => { this._connections.delete(socket); this._closeMaybe(); }); this.emit("connection", socket); } catch (err2) { socket.destroy(); this.emit("error", err2); } } _onclose() { const err = this._error; this._state &= ~constants.state.BINDING; this._error = null; this._handle = null; this._address = null; if (err) this.emit("error", err); else this.emit("close"); } }; exports.constants = constants; exports.errors = errors; exports.isIP = ip.isIP; exports.isIPv4 = ip.isIPv4; exports.isIPv6 = ip.isIPv6; exports.createConnection = function createConnection(port, host, opts, onconnect) { if (typeof host === "function") { onconnect = host; host = "localhost"; } else if (typeof opts === "function") { onconnect = opts; opts = {}; } if (typeof port === "object" && port !== null) { opts = port || {}; port = opts.port || 0; host = opts.host || "localhost"; } return new exports.Socket(opts).connect(port, host, opts, onconnect); }; exports.connect = exports.createConnection; exports.createServer = function createServer(opts, onconnection) { return new exports.Server(opts, onconnection); }; function noop() { } } }); // ../../node_modules/bare-pipe/binding.js var require_binding4 = __commonJS({ "../../node_modules/bare-pipe/binding.js"(exports, module) { module.exports = __require.addon(); } }); // ../../node_modules/bare-pipe/lib/constants.js var require_constants3 = __commonJS({ "../../node_modules/bare-pipe/lib/constants.js"(exports, module) { module.exports = { state: { CONNECTING: 1, CONNECTED: 2, BINDING: 4, BOUND: 8, READING: 16, CLOSING: 32, READABLE: 64, WRITABLE: 128, UNREFED: 256 } }; } }); // ../../node_modules/bare-pipe/lib/errors.js var require_errors4 = __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); } }; } }); // ../../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_binding4(); var constants = require_constants3(); var errors = require_errors4(); var defaultReadBufferSize = 65536; var empty = Buffer.alloc(0); 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 } = opts; super({ eagerOpen }); this._state = 0; this._allowHalfOpen = allowHalfOpen; this._fd = -1; this._path = null; this._pendingOpen = null; this._pendingWrite = null; this._pendingFinal = null; this._pendingDestroy = null; this._buffer = Buffer.alloc(readBufferSize); this._handle = binding.init( this._buffer, this, noop, this._onconnect, this._onwrite, this._onfinal, this._onread, 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"; } 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) { queueMicrotask(() => { if (this._pendingOpen) this._pendingOpen(err); else this.destroy(err); }); } return this; } ref() { binding.ref(this._handle); return this; } unref() { binding.unref(this._handle); return this; } _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, batch]; binding.writev( this._handle, batch.map(({ chunk }) => chunk) ); } _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; const cb = this._pendingWrite[0]; this._pendingWrite = null; 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) { 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"); } _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); } } _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 } = opts; this._state = 0; this._readBufferSize = readBufferSize; this._allowHalfOpen = allowHalfOpen; this._pauseOnConnect = pauseOnConnect; 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, this._onconnection, 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 }); try { binding.accept(this._handle, pipe._handle); pipe._path = this._path; pipe._state |= constants.state.CONNECTED | constants.state.READABLE | constants.state.WRITABLE; 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._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-net/lib/constants.js var require_constants4 = __commonJS({ "../../node_modules/bare-net/lib/constants.js"(exports, module) { module.exports = { type: { TCP: 1, IPC: 2 }, state: { UNREFED: 1 } }; } }); // ../../node_modules/bare-net/index.js var require_bare_net = __commonJS({ "../../node_modules/bare-net/index.js"(exports) { var EventEmitter = require_bare_events(); var { Duplex } = require_bare_stream(); var tcp = require_bare_tcp(); var pipe = require_bare_pipe(); var constants = require_constants4(); var defaultReadBufferSize = 65536; exports.Socket = class NetSocket extends Duplex { constructor(opts = {}) { const { readBufferSize = defaultReadBufferSize, allowHalfOpen = false, eagerOpen = false } = opts; super({ eagerOpen, allowHalfOpen }); this._type = 0; this._state = 0; this._socket = null; this._opts = { readBufferSize, allowHalfOpen, eagerOpen }; this._pendingOpen = null; this._pendingWrite = null; this._pendingFinal = null; this._pendingDestroy = null; } get connecting() { return this._socket !== null && this._socket.connecting; } get pending() { return this._socket === null || this._socket.pending; } get timeout() { return this._socket === null ? void 0 : this._socket.timeout; } get readyState() { return this._socket === null ? "opening" : this._socket.readyState; } get localAddress() { return this._socket === null ? void 0 : this._socket.localAddress; } get localPort() { return this._socket === null ? void 0 : this._socket.localPort; } get localFamily() { return this._socket === null ? void 0 : this._socket.localFamily; } get remoteAddress() { return this._socket === null ? void 0 : this._socket.remoteAddress; } get remotePort() { return this._socket === null ? void 0 : this._socket.remotePort; } get remoteFamily() { return this._socket === null ? void 0 : this._socket.remoteFamily; } connect(...args) { let opts = {}; let onconnect; if (typeof args[0] === "string") { opts.path = args[0]; onconnect = args[1]; } else if (typeof args[0] === "number") { opts.port = args[0]; if (typeof args[1] === "function") { onconnect = args[1]; } else { opts.host = args[1]; onconnect = args[2]; } } else { opts = args[0] || {}; onconnect = args[1]; } opts = { ...opts, ...this._opts }; if (opts.path) { this._attach(constants.type.IPC, pipe.createConnection(opts)); } else { this._attach(constants.type.TCP, tcp.createConnection(opts)); } if (onconnect) this.once("connect", onconnect); return this; } setKeepAlive(...args) { if (this._socket !== null) this._socket.setKeepAlive(...args); return this; } setNoDelay(...args) { if (this._socket !== null) this._socket.setNoDelay(...args); return this; } setTimeout(...args) { if (this._socket !== null) this._socket.setTimeout(...args); return this; } ref() { this._state &= ~constants.state.UNREFED; if (this._socket !== null) this._socket.ref(); return this; } unref() { this._state |= constants.state.UNREFED; if (this._socket !== null) this._socket.unref(); return this; } _attach(type, socket) { this._type = type; this._socket = socket; this._socket.on("connect", this._onconnect.bind(this)).on("timeout", this._ontimeout.bind(this)).on("error", this._onerror.bind(this)).on("data", this._ondata.bind(this)).on("end", this._onend.bind(this)).on("finish", this._onfinish.bind(this)).on("drain", this._ondrain.bind(this)).on("close", this._onclose.bind(this)); if (this._state & constants.state.UNREFED) this._socket.unref(); this._continueOpen(); return this; } _open(cb) { if (this._socket !== null) return cb(null); this._pendingOpen = cb; } _write(data, encoding, cb) { if (this._socket.write(data)) return cb(null); this._pendingWrite = cb; } _final(cb) { this._socket.end(); this._pendingFinal = cb; } _destroy(err, cb) { if (this._socket === null || this._socket.destroyed) return cb(null); this._socket.destroy(err); this._pendingDestroy = cb; } _onconnect() { this.emit("connect"); } _ontimeout() { this.emit("timeout"); } _onerror(err) { this.destroy(err); } _ondata(data) { this.push(data); } _onend() { this.push(null); } _onfinish() { this._continueFinal(); } _ondrain() { this._continueWrite(); } _onclose() { this._continueWrite(); this._continueFinal(); if (this._pendingDestroy) this._continueDestroy(); else this.destroy(); } _continueOpen() { if (this._pendingOpen === null) return; const cb = this._pendingOpen; this._pendingOpen = null; cb(null); } _continueWrite() { if (this._pendingWrite === null) return; const cb = this._pendingWrite; this._pendingWrite = null; cb(null); } _continueFinal() { if (this._pendingFinal === null) return; const cb = this._pendingFinal; this._pendingFinal = null; cb(null); } _continueDestroy() { if (this._pendingDestroy === null) return; const cb = this._pendingDestroy; this._pendingDestroy = null; cb(null); } }; exports.Server = class NetServer extends EventEmitter { constructor(opts = {}, onconnection) { if (typeof opts === "function") { onconnection = opts; opts = {}; } super(); const { readBufferSize = defaultReadBufferSize, allowHalfOpen = false, pauseOnConnect = false } = opts; this._type = 0; this._state = 0; this._server = null; this._opts = { readBufferSize, allowHalfOpen, pauseOnConnect }; if (onconnection) this.on("connection", onconnection); } get listening() { return this._server !== null && this._server.listening; } address() { return this._server === null ? null : this._server.address(); } listen(...args) { let opts = {}; let onlistening; if (typeof args[0] === "string") { opts.path = args[0]; if (typeof args[1] === "function") { onlistening = args[1]; } else { opts.backlog = args[1]; onlistening = args[2]; } } else { if (typeof args[0] === "function") { onlistening = args[0]; } else { opts.port = args[0]; if (typeof args[1] === "function") { onlistening = args[1]; } else { opts.host = args[1]; if (typeof args[2] === "function") { onlistening = args[2]; } else { opts.backlog = args[2]; onlistening = args[3]; } } } } opts = { ...opts, ...this._opts }; if (opts.path) { this._attach(constants.type.IPC, pipe.createServer(opts)); } else { this._attach(constants.type.TCP, tcp.createServer(opts)); } this._server.listen(opts); if (onlistening) this.once("listening", onlistening); return this; } close(onclose) { if (onclose) this.once("close", onclose); this._server.close(); return this; } ref() { this._state &= ~constants.state.UNREFED; if (this._server !== null) this._server.ref(); return this; } unref() { this._state |= constants.state.UNREFED; if (this._server !== null) this._server.unref(); return this; } _attach(type, server) { this._type = type; this._server = server; this._server.on("listening", this._onlistening.bind(this)).on("connection", this._onconnection.bind(this)).on("error", this._onerror.bind(this)).on("close", this._onclose.bind(this)); if (this._state & constants.state.UNREFED) this._server.unref(); return this; } _onlistening() { this.emit("listening"); } _onconnection(socket) { this.emit("connection", new exports.Socket(this._opts)._attach(this._type, socket)); } _onerror(err) { this.emit("error", err); } _onclose() { this.emit("close"); } }; exports.constants = constants; exports.isIP = tcp.isIP; exports.isIPv4 = tcp.isIPv4; exports.isIPv6 = tcp.isIPv6; exports.createConnection = function createConnection(...args) { let opts = {}; let onconnect; if (typeof args[0] === "string") { opts.path = args[0]; onconnect = args[1]; } else if (typeof args[0] === "number") { opts.port = args[0]; if (typeof args[1] === "function") { onconnect = args[1]; } else { opts.host = args[1]; onconnect = args[2]; } } else { opts = args[0] || {}; onconnect = args[1]; } return new exports.Socket(opts).connect(opts, onconnect); }; exports.connect = exports.createConnection; exports.createServer = function createServer(opts, onconnection) { return new exports.Server(opts, onconnection); }; } }); // ../../node_modules/bare-tls/net.js var require_net = __commonJS({ "../../node_modules/bare-tls/net.js"(exports) { var EventEmitter = require_bare_events(); var net = require_bare_net(); var tls = require_bare_tls(); var TLSNetSocket = class extends tls.Socket { ref() { this.socket.ref(); } unref() { this.socket.unref(); } }; var TLSNetServer = class extends EventEmitter { constructor(opts = {}, onconnection) { if (typeof opts === "function") { onconnection = opts; opts = {}; } const { cert = null, key = null, host = null, alpnProtocols = null, eagerOpen = true, allowHalfOpen = true } = opts; super(); this._opts = { cert, key, host, alpnProtocols, eagerOpen, allowHalfOpen }; this._server = net.createServer(opts); this._server.on("listening", this._onlistening.bind(this)).on("connection", this._onconnection.bind(this)).on("error", this._onerror.bind(this)).on("close", this._onclose.bind(this)); if (onconnection) this.on("connection", onconnection); } get listening() { return this._server.listening; } address() { return this._server.address(); } listen(...args) { this._server.listen(...args); return this; } close(onclose) { if (onclose) this.once("close", onclose); this._server.close(); } ref() { this._server.ref(); } unref() { this._server.unref(); } _onlistening() { this.emit("listening"); } _onconnection(socket) { this.emit( "connection", new TLSNetSocket(socket, { ...this._opts, isServer: true }) ); } _onerror(err) { this.emit("error", err); } _onclose() { this.emit("close"); } }; exports.createConnection = function createConnection(...args) { let opts = {}; let onconnect; if (typeof args[0] === "string") { opts.path = args[0]; onconnect = args[1]; } else if (typeof args[0] === "number") { opts.port = args[0]; if (typeof args[1] === "function") { onconnect = args[1]; } else { opts.host = args[1]; onconnect = args[2]; } } else { opts = args[0] || {}; onconnect = args[1]; } return new TLSNetSocket(net.createConnection(opts, onconnect), opts); }; exports.createServer = function createServer(opts, onconnection) { return new TLSNetServer(opts, onconnection); }; } }); // ../../node_modules/bare-tls/index.js var require_bare_tls = __commonJS({ "../../node_modules/bare-tls/index.js"(exports) { var { Duplex, Writable } = require_bare_stream(); var binding = require_binding(); var constants = require_constants(); var errors = require_errors(); var defaultReadBufferSize = 65536; var context = binding.context(); exports.Socket = class TLSSocket extends Duplex { constructor(socket, opts = {}) { const { isServer = false, cert = null, key = null, host = null, alpnProtocols = null, eagerOpen = true, allowHalfOpen = true, readBufferSize = defaultReadBufferSize } = opts; super({ eagerOpen }); this._state = 0; this._socket = socket; this._key = key; this._cert = cert; this._allowHalfOpen = allowHalfOpen; this._pendingOpen = null; this._pendingWrite = null; this._reading = Buffer.alloc(readBufferSize); this._buffer = []; this._buffered = 0; let alpn = null; if (alpnProtocols && alpnProtocols.length > 0) { const parts = []; for (const protocol of alpnProtocols) { const encoded = Buffer.from(protocol); if (encoded.byteLength === 0 || encoded.byteLength > 255) { throw new RangeError("ALPN protocol name must be 1-255 bytes"); } parts.push(Buffer.of(encoded.byteLength), encoded); } alpn = Buffer.concat(parts); } try { this._handle = binding.init( context, isServer, cert, key, host, alpn, this, this._onread, this._onwrite ); } catch (err) { this._handle = null; this.destroy(err); } } get socket() { return this._socket; } get encrypted() { return true; } get alpnProtocol() { return binding.alpnProtocol(this._handle); } _onconnect() { this._state |= constants.state.CONNECTED; this.emit("connect"); const cb = this._pendingOpen; this._pendingOpen = null; cb(null); } _ondata(data) { this._buffer.push(data); this._buffered += data.byteLength; while (this._buffered > 0) { if (this._state & constants.state.CONNECTED) { let read; try { read = binding.read(this._handle, this._reading); } catch (err) { return this.destroy(errors.from(err)); } if (read < 0) break; if (read === 0) { this.push(null); if (this._allowHalfOpen === false) this.end(); return; } const copy = Buffer.allocUnsafe(read); copy.set(this._reading.subarray(0, read)); this.push(copy); } else { try { if (binding.handshake(this._handle)) this._onconnect(); else break; } catch (err) { if (this._pendingOpen) { const cb = this._pendingOpen; this._pendingOpen = null; cb(errors.from(err)); } else { this.destroy(errors.from(err)); } return; } } } } _ondrain() { if (this._pendingWrite === null) return; const cb = this._pendingWrite; this._pendingWrite = null; cb(null); } _onend() { this.push(null); } _onerror(err) { if (this._pendingOpen) { const cb = this._pendingOpen; this._pendingOpen = null; cb(err); } else { this.destroy(err); } } _onread(data) { if (this._buffered < data.byteLength) return 0; let offset = 0; let remaining = data.byteLength; while (remaining > 0) { const chunk = this._buffer[0]; if (chunk.byteLength <= remaining) { data.set(chunk, offset); offset += chunk.byteLength; remaining -= chunk.byteLength; this._buffer.shift(); } else { data.set(chunk.subarray(0, remaining), offset); this._buffer[0] = chunk.subarray(remaining); remaining = 0; } } this._buffered -= data.byteLength; return data.byteLength; } _onwrite(data) { this._socket.write(Buffer.from(data.slice())); return data.byteLength; } _attach() { if (this._state & constants.state.ATTACHED) return; this._state |= constants.state.ATTACHED; this._ondata = this._ondata.bind(this); this._ondrain = this._ondrain.bind(this); this._onend = this._onend.bind(this); this._onerror = this._onerror.bind(this); this._socket.on("data", this._ondata).on("drain", this._ondrain).on("end", this._onend).on("error", this._onerror); } _detach() { if (!(this._state & constants.state.ATTACHED)) return; this._state &= ~constants.state.ATTACHED; this._socket.off("data", this._ondata).off("drain", this._ondrain).off("end", this._onend).off("error", this._onerror); } _open(cb) { this._pendingOpen = cb; this._attach(); try { if (binding.handshake(this._handle)) this._onconnect(); } catch (err) { this._pendingOpen = null; cb(errors.from(err)); } } _write(data, encoding, cb) { try { binding.write(this._handle, data); if (Writable.isBackpressured(this._socket)) { this._pendingWrite = cb; } else { cb(null); } } catch (err) { this._pendingWrite = null; cb(errors.from(err)); } } _final(cb) { try { binding.shutdown(this._handle); cb(null); } catch (err) { cb(err); } this._socket.end(); } _predestroy() { if (!this._handle) return; this._detach(); binding.destroy(this._handle); this._handle = null; } _destroy(err, cb) { if (!this._handle) return cb(err); this._detach(); binding.destroy(this._handle); this._handle = null; cb(err); } }; exports.TLSSocket = exports.Socket; exports.constants = constants; exports.errors = errors; var net = require_net(); exports.createConnection = net.createConnection; exports.createServer = net.createServer; exports.connect = exports.createConnection; } }); // ../../bare-lib-entry-bareTls.js var bare_lib_entry_bareTls_exports = {}; __export(bare_lib_entry_bareTls_exports, { default: () => bare_lib_entry_bareTls_default }); var import_bare_tls = __toESM(require_bare_tls()); var bare_lib_entry_bareTls_default = import_bare_tls.default; return __toCommonJS(bare_lib_entry_bareTls_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]["bareTls"]=v;})();