437 lines
15 KiB
JavaScript
437 lines
15 KiB
JavaScript
var __bare_os_bundle_exports__ = (() => {
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var __create = Object.create;
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var __defProp = Object.defineProperty;
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var __getOwnPropDesc = Object.getOwnPropertyDescriptor;
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var __getOwnPropNames = Object.getOwnPropertyNames;
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var __getProtoOf = Object.getPrototypeOf;
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var __hasOwnProp = Object.prototype.hasOwnProperty;
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var __commonJS = (cb, mod) => function __require() {
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return mod || (0, cb[__getOwnPropNames(cb)[0]])((mod = { exports: {} }).exports, mod), mod.exports;
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};
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var __export = (target, all) => {
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for (var name in all)
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__defProp(target, name, { get: all[name], enumerable: true });
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};
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var __copyProps = (to, from, except, desc) => {
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if (from && typeof from === "object" || typeof from === "function") {
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for (let key of __getOwnPropNames(from))
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if (!__hasOwnProp.call(to, key) && key !== except)
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__defProp(to, key, { get: () => from[key], enumerable: !(desc = __getOwnPropDesc(from, key)) || desc.enumerable });
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}
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return to;
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};
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var __toESM = (mod, isNodeMode, target) => (target = mod != null ? __create(__getProtoOf(mod)) : {}, __copyProps(
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// If the importer is in node compatibility mode or this is not an ESM
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// file that has been converted to a CommonJS file using a Babel-
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// compatible transform (i.e. "__esModule" has not been set), then set
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// "default" to the CommonJS "module.exports" for node compatibility.
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isNodeMode || !mod || !mod.__esModule ? __defProp(target, "default", { value: mod, enumerable: true }) : target,
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mod
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));
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var __toCommonJS = (mod) => __copyProps(__defProp({}, "__esModule", { value: true }), mod);
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// ../../node_modules/b4a/index.js
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var require_b4a = __commonJS({
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"../../node_modules/b4a/index.js"(exports, module) {
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function isBuffer(value) {
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return Buffer.isBuffer(value) || value instanceof Uint8Array;
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}
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function isEncoding(encoding) {
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return Buffer.isEncoding(encoding);
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}
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function alloc(size, fill2, encoding) {
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return Buffer.alloc(size, fill2, encoding);
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}
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function allocUnsafe(size) {
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return Buffer.allocUnsafe(size);
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}
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function allocUnsafeSlow(size) {
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return Buffer.allocUnsafeSlow(size);
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}
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function byteLength(string, encoding) {
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return Buffer.byteLength(string, encoding);
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}
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function compare(a, b) {
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return Buffer.compare(a, b);
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}
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function concat(buffers, totalLength) {
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return Buffer.concat(buffers, totalLength);
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}
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function copy(source, target, targetStart, start, end) {
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return toBuffer(source).copy(target, targetStart, start, end);
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}
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function equals(a, b) {
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return toBuffer(a).equals(b);
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}
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function fill(buffer, value, offset, end, encoding) {
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return toBuffer(buffer).fill(value, offset, end, encoding);
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}
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function from(value, encodingOrOffset, length) {
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return Buffer.from(value, encodingOrOffset, length);
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}
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function includes(buffer, value, byteOffset, encoding) {
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return toBuffer(buffer).includes(value, byteOffset, encoding);
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}
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function indexOf(buffer, value, byfeOffset, encoding) {
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return toBuffer(buffer).indexOf(value, byfeOffset, encoding);
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}
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function lastIndexOf(buffer, value, byteOffset, encoding) {
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return toBuffer(buffer).lastIndexOf(value, byteOffset, encoding);
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}
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function swap16(buffer) {
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return toBuffer(buffer).swap16();
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}
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function swap32(buffer) {
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return toBuffer(buffer).swap32();
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}
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function swap64(buffer) {
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return toBuffer(buffer).swap64();
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}
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function toBuffer(buffer) {
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if (Buffer.isBuffer(buffer)) return buffer;
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return Buffer.from(buffer.buffer, buffer.byteOffset, buffer.byteLength);
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}
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function toString(buffer, encoding, start, end) {
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return toBuffer(buffer).toString(encoding, start, end);
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}
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function write(buffer, string, offset, length, encoding) {
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return toBuffer(buffer).write(string, offset, length, encoding);
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}
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function readDoubleBE(buffer, offset) {
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return toBuffer(buffer).readDoubleBE(offset);
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}
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function readDoubleLE(buffer, offset) {
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return toBuffer(buffer).readDoubleLE(offset);
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}
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function readFloatBE(buffer, offset) {
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return toBuffer(buffer).readFloatBE(offset);
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}
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function readFloatLE(buffer, offset) {
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return toBuffer(buffer).readFloatLE(offset);
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}
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function readInt32BE(buffer, offset) {
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return toBuffer(buffer).readInt32BE(offset);
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}
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function readInt32LE(buffer, offset) {
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return toBuffer(buffer).readInt32LE(offset);
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}
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function readUInt32BE(buffer, offset) {
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return toBuffer(buffer).readUInt32BE(offset);
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}
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function readUInt32LE(buffer, offset) {
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return toBuffer(buffer).readUInt32LE(offset);
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}
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function writeDoubleBE(buffer, value, offset) {
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return toBuffer(buffer).writeDoubleBE(value, offset);
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}
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function writeDoubleLE(buffer, value, offset) {
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return toBuffer(buffer).writeDoubleLE(value, offset);
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}
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function writeFloatBE(buffer, value, offset) {
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return toBuffer(buffer).writeFloatBE(value, offset);
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}
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function writeFloatLE(buffer, value, offset) {
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return toBuffer(buffer).writeFloatLE(value, offset);
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}
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function writeInt32BE(buffer, value, offset) {
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return toBuffer(buffer).writeInt32BE(value, offset);
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}
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function writeInt32LE(buffer, value, offset) {
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return toBuffer(buffer).writeInt32LE(value, offset);
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}
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function writeUInt32BE(buffer, value, offset) {
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return toBuffer(buffer).writeUInt32BE(value, offset);
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}
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function writeUInt32LE(buffer, value, offset) {
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return toBuffer(buffer).writeUInt32LE(value, offset);
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}
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module.exports = {
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isBuffer,
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isEncoding,
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alloc,
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allocUnsafe,
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allocUnsafeSlow,
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byteLength,
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compare,
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concat,
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copy,
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equals,
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fill,
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from,
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includes,
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indexOf,
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lastIndexOf,
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swap16,
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swap32,
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swap64,
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toBuffer,
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toString,
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write,
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readDoubleBE,
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readDoubleLE,
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readFloatBE,
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readFloatLE,
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readInt32BE,
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readInt32LE,
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readUInt32BE,
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readUInt32LE,
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writeDoubleBE,
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writeDoubleLE,
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writeFloatBE,
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writeFloatLE,
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writeInt32BE,
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writeInt32LE,
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writeUInt32BE,
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writeUInt32LE
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};
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}
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});
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// ../../node_modules/text-decoder/lib/pass-through-decoder.js
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var require_pass_through_decoder = __commonJS({
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"../../node_modules/text-decoder/lib/pass-through-decoder.js"(exports, module) {
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var b4a = require_b4a();
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module.exports = class PassThroughDecoder {
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constructor(encoding) {
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this.encoding = encoding;
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}
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get remaining() {
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return 0;
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}
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decode(data) {
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return b4a.toString(data, this.encoding);
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}
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flush() {
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return "";
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}
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};
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}
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});
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// ../../node_modules/text-decoder/lib/utf8-decoder.js
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var require_utf8_decoder = __commonJS({
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"../../node_modules/text-decoder/lib/utf8-decoder.js"(exports, module) {
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var b4a = require_b4a();
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module.exports = class UTF8Decoder {
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constructor() {
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this._reset();
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}
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get remaining() {
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return this.bytesSeen;
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}
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decode(data) {
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if (data.byteLength === 0) return "";
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if (this.bytesNeeded === 0 && trailingIncomplete(data, 0) === 0) {
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this.bytesSeen = trailingBytesSeen(data);
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return b4a.toString(data, "utf8");
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}
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let result = "";
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let start = 0;
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if (this.bytesNeeded > 0) {
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while (start < data.byteLength) {
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const byte = data[start];
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if (byte < this.lowerBoundary || byte > this.upperBoundary) {
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result += "\uFFFD";
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this._reset();
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break;
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}
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this.lowerBoundary = 128;
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this.upperBoundary = 191;
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this.codePoint = this.codePoint << 6 | byte & 63;
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this.bytesSeen++;
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start++;
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if (this.bytesSeen === this.bytesNeeded) {
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result += String.fromCodePoint(this.codePoint);
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this._reset();
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break;
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}
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}
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if (this.bytesNeeded > 0) return result;
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}
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const trailing = trailingIncomplete(data, start);
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const end = data.byteLength - trailing;
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if (end > start) result += b4a.toString(data, "utf8", start, end);
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for (let i = end; i < data.byteLength; i++) {
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const byte = data[i];
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if (this.bytesNeeded === 0) {
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if (byte <= 127) {
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this.bytesSeen = 0;
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result += String.fromCharCode(byte);
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} else if (byte >= 194 && byte <= 223) {
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this.bytesNeeded = 2;
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this.bytesSeen = 1;
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this.codePoint = byte & 31;
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} else if (byte >= 224 && byte <= 239) {
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if (byte === 224) this.lowerBoundary = 160;
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else if (byte === 237) this.upperBoundary = 159;
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this.bytesNeeded = 3;
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this.bytesSeen = 1;
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this.codePoint = byte & 15;
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} else if (byte >= 240 && byte <= 244) {
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if (byte === 240) this.lowerBoundary = 144;
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else if (byte === 244) this.upperBoundary = 143;
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this.bytesNeeded = 4;
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this.bytesSeen = 1;
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this.codePoint = byte & 7;
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} else {
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this.bytesSeen = 1;
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result += "\uFFFD";
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}
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continue;
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}
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if (byte < this.lowerBoundary || byte > this.upperBoundary) {
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result += "\uFFFD";
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i--;
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this._reset();
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continue;
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}
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this.lowerBoundary = 128;
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this.upperBoundary = 191;
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this.codePoint = this.codePoint << 6 | byte & 63;
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this.bytesSeen++;
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if (this.bytesSeen === this.bytesNeeded) {
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result += String.fromCodePoint(this.codePoint);
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this._reset();
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}
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}
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return result;
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}
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flush() {
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const result = this.bytesNeeded > 0 ? "\uFFFD" : "";
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this._reset();
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return result;
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}
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_reset() {
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this.codePoint = 0;
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this.bytesNeeded = 0;
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this.bytesSeen = 0;
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this.lowerBoundary = 128;
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this.upperBoundary = 191;
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}
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};
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function trailingIncomplete(data, start) {
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const len = data.byteLength;
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if (len <= start) return 0;
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const limit = Math.max(start, len - 4);
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let i = len - 1;
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while (i > limit && (data[i] & 192) === 128) i--;
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if (i < start) return 0;
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const byte = data[i];
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let needed;
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if (byte <= 127) return 0;
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if (byte >= 194 && byte <= 223) needed = 2;
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else if (byte >= 224 && byte <= 239) needed = 3;
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else if (byte >= 240 && byte <= 244) needed = 4;
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else return 0;
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const available = len - i;
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return available < needed ? available : 0;
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}
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function trailingBytesSeen(data) {
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const len = data.byteLength;
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if (len === 0) return 0;
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const last = data[len - 1];
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if (last <= 127) return 0;
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if ((last & 192) !== 128) return 1;
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const limit = Math.max(0, len - 4);
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let i = len - 2;
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while (i >= limit && (data[i] & 192) === 128) i--;
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if (i < 0) return 1;
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const first = data[i];
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let needed;
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if (first >= 194 && first <= 223) needed = 2;
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else if (first >= 224 && first <= 239) needed = 3;
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else if (first >= 240 && first <= 244) needed = 4;
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else return 1;
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if (len - i !== needed) return 1;
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if (needed >= 3) {
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const second = data[i + 1];
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if (first === 224 && second < 160) return 1;
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if (first === 237 && second > 159) return 1;
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if (first === 240 && second < 144) return 1;
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if (first === 244 && second > 143) return 1;
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}
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return 0;
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}
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}
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});
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// ../../node_modules/text-decoder/index.js
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var require_text_decoder = __commonJS({
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"../../node_modules/text-decoder/index.js"(exports, module) {
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var PassThroughDecoder = require_pass_through_decoder();
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var UTF8Decoder = require_utf8_decoder();
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module.exports = class TextDecoder {
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constructor(encoding = "utf8") {
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this.encoding = normalizeEncoding(encoding);
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switch (this.encoding) {
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case "utf8":
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this.decoder = new UTF8Decoder();
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break;
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case "utf16le":
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case "base64":
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throw new Error("Unsupported encoding: " + this.encoding);
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default:
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this.decoder = new PassThroughDecoder(this.encoding);
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}
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}
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get remaining() {
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return this.decoder.remaining;
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}
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push(data) {
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if (typeof data === "string") return data;
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return this.decoder.decode(data);
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}
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// For Node.js compatibility
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write(data) {
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return this.push(data);
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}
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end(data) {
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let result = "";
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if (data) result = this.push(data);
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result += this.decoder.flush();
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return result;
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}
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};
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function normalizeEncoding(encoding) {
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encoding = encoding.toLowerCase();
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switch (encoding) {
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case "utf8":
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case "utf-8":
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return "utf8";
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case "ucs2":
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case "ucs-2":
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case "utf16le":
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case "utf-16le":
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return "utf16le";
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case "latin1":
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case "binary":
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return "latin1";
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case "base64":
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case "ascii":
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case "hex":
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return encoding;
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default:
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throw new Error("Unknown encoding: " + encoding);
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}
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}
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}
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});
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// ../../node_modules/bare-string-decoder/index.js
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var require_bare_string_decoder = __commonJS({
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"../../node_modules/bare-string-decoder/index.js"(exports) {
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exports.StringDecoder = require_text_decoder();
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}
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});
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// ../../bare-lib-entry-bareStringDecoder.js
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var bare_lib_entry_bareStringDecoder_exports = {};
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__export(bare_lib_entry_bareStringDecoder_exports, {
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default: () => bare_lib_entry_bareStringDecoder_default
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});
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var import_bare_string_decoder = __toESM(require_bare_string_decoder());
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var bare_lib_entry_bareStringDecoder_default = import_bare_string_decoder.default;
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return __toCommonJS(bare_lib_entry_bareStringDecoder_exports);
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})();
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;(function(){var g=globalThis;var s="__bare_os_stdlib__";g[s]=g[s]||{};g[s]["bareStringDecoder"]=typeof __bare_os_bundle_exports__!=="undefined"?__bare_os_bundle_exports__:void 0;})();
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