mirror of
https://github.com/emsesp/EMS-ESP32.git
synced 2025-12-06 15:59:52 +03:00
1132 lines
36 KiB
TypeScript
1132 lines
36 KiB
TypeScript
let decoder;
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try {
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decoder = new TextDecoder();
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} catch (error) {}
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let src;
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let srcEnd;
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let position = 0;
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const EMPTY_ARRAY = [];
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let strings = EMPTY_ARRAY;
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let stringPosition = 0;
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let currentUnpackr = {};
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let currentStructures;
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let srcString;
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let srcStringStart = 0;
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let srcStringEnd = 0;
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let bundledStrings;
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let referenceMap;
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const currentExtensions = [];
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let dataView;
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const defaultOptions = {
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useRecords: false,
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mapsAsObjects: true
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};
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export class C1Type {}
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export const C1 = new C1Type();
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C1.name = 'MessagePack 0xC1';
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let sequentialMode = false;
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let inlineObjectReadThreshold = 2;
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let readStruct, onLoadedStructures, onSaveState;
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// no-eval build
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try {
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new Function('');
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} catch (error) {
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// if eval variants are not supported, do not create inline object readers ever
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inlineObjectReadThreshold = Infinity;
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}
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export class Unpackr {
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constructor(options) {
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if (options) {
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if (options.useRecords === false && options.mapsAsObjects === undefined) options.mapsAsObjects = true;
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if (options.sequential && options.trusted !== false) {
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options.trusted = true;
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if (!options.structures && options.useRecords != false) {
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options.structures = [];
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if (!options.maxSharedStructures) options.maxSharedStructures = 0;
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}
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}
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if (options.structures) options.structures.sharedLength = options.structures.length;
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else if (options.getStructures) {
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(options.structures = []).uninitialized = true; // this is what we use to denote an uninitialized structures
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options.structures.sharedLength = 0;
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}
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if (options.int64AsNumber) {
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options.int64AsType = 'number';
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}
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}
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Object.assign(this, options);
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}
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unpack(source, options?: any) {
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if (src) {
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// re-entrant execution, save the state and restore it after we do this unpack
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return saveState(() => {
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clearSource();
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return this ? this.unpack(source, options) : Unpackr.prototype.unpack.call(defaultOptions, source, options);
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});
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}
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if (!source.buffer && source.constructor === ArrayBuffer)
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source = typeof Buffer !== 'undefined' ? Buffer.from(source) : new Uint8Array(source);
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if (typeof options === 'object') {
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srcEnd = options.end || source.length;
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position = options.start || 0;
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} else {
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position = 0;
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srcEnd = options > -1 ? options : source.length;
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}
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stringPosition = 0;
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srcStringEnd = 0;
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srcString = null;
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strings = EMPTY_ARRAY;
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bundledStrings = null;
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src = source;
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// this provides cached access to the data view for a buffer if it is getting reused, which is a recommend
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// technique for getting data from a database where it can be copied into an existing buffer instead of creating
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// new ones
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try {
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dataView =
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source.dataView || (source.dataView = new DataView(source.buffer, source.byteOffset, source.byteLength));
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} catch (error) {
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// if it doesn't have a buffer, maybe it is the wrong type of object
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src = null;
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if (source instanceof Uint8Array) throw error;
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throw new Error(
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'Source must be a Uint8Array or Buffer but was a ' +
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(source && typeof source == 'object' ? source.constructor.name : typeof source)
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);
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}
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if (this instanceof Unpackr) {
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currentUnpackr = this;
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if (this.structures) {
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currentStructures = this.structures;
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return checkedRead(options);
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} else if (!currentStructures || currentStructures.length > 0) {
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currentStructures = [];
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}
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} else {
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currentUnpackr = defaultOptions;
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if (!currentStructures || currentStructures.length > 0) currentStructures = [];
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}
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return checkedRead(options);
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}
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unpackMultiple(source, forEach) {
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let values,
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lastPosition = 0;
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try {
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sequentialMode = true;
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const size = source.length;
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const value = this ? this.unpack(source, size) : defaultUnpackr.unpack(source, size);
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if (forEach) {
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if (forEach(value) === false) return;
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while (position < size) {
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lastPosition = position;
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if (forEach(checkedRead()) === false) {
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return;
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}
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}
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} else {
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values = [value];
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while (position < size) {
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lastPosition = position;
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values.push(checkedRead());
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}
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return values;
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}
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} catch (error) {
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error.lastPosition = lastPosition;
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error.values = values;
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throw error;
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} finally {
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sequentialMode = false;
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clearSource();
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}
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}
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_mergeStructures(loadedStructures, existingStructures) {
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if (onLoadedStructures) loadedStructures = onLoadedStructures.call(this, loadedStructures);
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loadedStructures = loadedStructures || [];
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if (Object.isFrozen(loadedStructures)) loadedStructures = loadedStructures.map((structure) => structure.slice(0));
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for (let i = 0, l = loadedStructures.length; i < l; i++) {
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const structure = loadedStructures[i];
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if (structure) {
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structure.isShared = true;
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if (i >= 32) structure.highByte = (i - 32) >> 5;
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}
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}
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loadedStructures.sharedLength = loadedStructures.length;
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for (const id in existingStructures || []) {
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if (id >= 0) {
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const structure = loadedStructures[id];
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const existing = existingStructures[id];
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if (existing) {
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if (structure)
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(loadedStructures.restoreStructures || (loadedStructures.restoreStructures = []))[id] = structure;
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loadedStructures[id] = existing;
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}
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}
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}
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return (this.structures = loadedStructures);
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}
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decode(source, end) {
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return this.unpack(source, end);
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}
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}
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export function getPosition() {
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return position;
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}
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export function checkedRead(options: any) {
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try {
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if (!currentUnpackr.trusted && !sequentialMode) {
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const sharedLength = currentStructures.sharedLength || 0;
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if (sharedLength < currentStructures.length) currentStructures.length = sharedLength;
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}
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let result;
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if (currentUnpackr.randomAccessStructure && src[position] < 0x40 && src[position] >= 0x20 && readStruct) {
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result = readStruct(src, position, srcEnd, currentUnpackr);
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src = null; // dispose of this so that recursive unpack calls don't save state
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if (!(options && options.lazy) && result) result = result.toJSON();
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position = srcEnd;
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} else result = read();
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if (bundledStrings) {
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// bundled strings to skip past
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position = bundledStrings.postBundlePosition;
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bundledStrings = null;
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}
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if (position == srcEnd) {
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// finished reading this source, cleanup references
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if (currentStructures && currentStructures.restoreStructures) restoreStructures();
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currentStructures = null;
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src = null;
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if (referenceMap) referenceMap = null;
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} else if (position > srcEnd) {
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// over read
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throw new Error('Unexpected end of MessagePack data');
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} else if (!sequentialMode) {
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let jsonView;
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try {
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jsonView = JSON.stringify(result, (_, value) => (typeof value === 'bigint' ? `${value}n` : value)).slice(
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0,
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100
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);
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} catch (error) {
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jsonView = '(JSON view not available ' + error + ')';
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}
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throw new Error('Data read, but end of buffer not reached ' + jsonView);
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}
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// else more to read, but we are reading sequentially, so don't clear source yet
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return result;
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} catch (error) {
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if (currentStructures && currentStructures.restoreStructures) restoreStructures();
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clearSource();
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if (error instanceof RangeError || error.message.startsWith('Unexpected end of buffer') || position > srcEnd) {
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error.incomplete = true;
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}
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throw error;
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}
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}
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function restoreStructures() {
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for (const id in currentStructures.restoreStructures) {
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currentStructures[id] = currentStructures.restoreStructures[id];
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}
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currentStructures.restoreStructures = null;
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}
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export function read() {
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let token = src[position++];
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if (token < 0xa0) {
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if (token < 0x80) {
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if (token < 0x40) return token;
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else {
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const structure =
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currentStructures[token & 0x3f] || (currentUnpackr.getStructures && loadStructures()[token & 0x3f]);
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if (structure) {
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if (!structure.read) {
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structure.read = createStructureReader(structure, token & 0x3f);
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}
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return structure.read();
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} else return token;
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}
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} else if (token < 0x90) {
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// map
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token -= 0x80;
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if (currentUnpackr.mapsAsObjects) {
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const object = {};
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for (let i = 0; i < token; i++) {
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let key = readKey();
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if (key === '__proto__') key = '__proto_';
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object[key] = read();
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}
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return object;
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} else {
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const map = new Map();
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for (let i = 0; i < token; i++) {
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map.set(read(), read());
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}
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return map;
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}
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} else {
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token -= 0x90;
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const array = new Array(token);
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for (let i = 0; i < token; i++) {
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array[i] = read();
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}
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if (currentUnpackr.freezeData) return Object.freeze(array);
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return array;
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}
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} else if (token < 0xc0) {
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// fixstr
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const length = token - 0xa0;
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if (srcStringEnd >= position) {
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return srcString.slice(position - srcStringStart, (position += length) - srcStringStart);
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}
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if (srcStringEnd == 0 && srcEnd < 140) {
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// for small blocks, avoiding the overhead of the extract call is helpful
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const string = length < 16 ? shortStringInJS(length) : longStringInJS(length);
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if (string != null) return string;
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}
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return readFixedString(length);
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} else {
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let value;
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switch (token) {
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case 0xc0:
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return null;
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case 0xc1:
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if (bundledStrings) {
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value = read(); // followed by the length of the string in characters (not bytes!)
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if (value > 0) return bundledStrings[1].slice(bundledStrings.position1, (bundledStrings.position1 += value));
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else return bundledStrings[0].slice(bundledStrings.position0, (bundledStrings.position0 -= value));
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}
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return C1; // "never-used", return special object to denote that
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case 0xc2:
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return false;
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case 0xc3:
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return true;
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case 0xc4:
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// bin 8
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value = src[position++];
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if (value === undefined) throw new Error('Unexpected end of buffer');
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return readBin(value);
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case 0xc5:
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// bin 16
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value = dataView.getUint16(position);
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position += 2;
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return readBin(value);
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case 0xc6:
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// bin 32
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value = dataView.getUint32(position);
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position += 4;
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return readBin(value);
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case 0xc7:
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// ext 8
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return readExt(src[position++]);
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case 0xc8:
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// ext 16
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value = dataView.getUint16(position);
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position += 2;
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return readExt(value);
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case 0xc9:
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// ext 32
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value = dataView.getUint32(position);
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position += 4;
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return readExt(value);
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case 0xca:
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value = dataView.getFloat32(position);
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if (currentUnpackr.useFloat32 > 2) {
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// this does rounding of numbers that were encoded in 32-bit float to nearest significant decimal digit that could be preserved
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const multiplier = mult10[((src[position] & 0x7f) << 1) | (src[position + 1] >> 7)];
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position += 4;
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return ((multiplier * value + (value > 0 ? 0.5 : -0.5)) >> 0) / multiplier;
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}
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position += 4;
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return value;
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case 0xcb:
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value = dataView.getFloat64(position);
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position += 8;
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return value;
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// uint handlers
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case 0xcc:
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return src[position++];
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case 0xcd:
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value = dataView.getUint16(position);
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position += 2;
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return value;
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case 0xce:
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value = dataView.getUint32(position);
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position += 4;
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return value;
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case 0xcf:
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if (currentUnpackr.int64AsType === 'number') {
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value = dataView.getUint32(position) * 0x100000000;
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value += dataView.getUint32(position + 4);
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} else if (currentUnpackr.int64AsType === 'string') {
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value = dataView.getBigUint64(position).toString();
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} else if (currentUnpackr.int64AsType === 'auto') {
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value = dataView.getBigUint64(position);
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if (value <= BigInt(2) << BigInt(52)) value = Number(value);
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} else value = dataView.getBigUint64(position);
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position += 8;
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return value;
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// int handlers
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case 0xd0:
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return dataView.getInt8(position++);
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case 0xd1:
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value = dataView.getInt16(position);
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position += 2;
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return value;
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case 0xd2:
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value = dataView.getInt32(position);
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position += 4;
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return value;
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case 0xd3:
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if (currentUnpackr.int64AsType === 'number') {
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value = dataView.getInt32(position) * 0x100000000;
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value += dataView.getUint32(position + 4);
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|
} else if (currentUnpackr.int64AsType === 'string') {
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value = dataView.getBigInt64(position).toString();
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|
} else if (currentUnpackr.int64AsType === 'auto') {
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value = dataView.getBigInt64(position);
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|
if (value >= BigInt(-2) << BigInt(52) && value <= BigInt(2) << BigInt(52)) value = Number(value);
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|
} else value = dataView.getBigInt64(position);
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position += 8;
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|
return value;
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|
|
|
case 0xd4:
|
|
// fixext 1
|
|
value = src[position++];
|
|
if (value == 0x72) {
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|
return recordDefinition(src[position++] & 0x3f);
|
|
} else {
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|
const extension = currentExtensions[value];
|
|
if (extension) {
|
|
if (extension.read) {
|
|
position++; // skip filler byte
|
|
return extension.read(read());
|
|
} else if (extension.noBuffer) {
|
|
position++; // skip filler byte
|
|
return extension();
|
|
} else return extension(src.subarray(position, ++position));
|
|
} else throw new Error('Unknown extension ' + value);
|
|
}
|
|
case 0xd5:
|
|
// fixext 2
|
|
value = src[position];
|
|
if (value == 0x72) {
|
|
position++;
|
|
return recordDefinition(src[position++] & 0x3f, src[position++]);
|
|
} else return readExt(2);
|
|
case 0xd6:
|
|
// fixext 4
|
|
return readExt(4);
|
|
case 0xd7:
|
|
// fixext 8
|
|
return readExt(8);
|
|
case 0xd8:
|
|
// fixext 16
|
|
return readExt(16);
|
|
case 0xd9:
|
|
// str 8
|
|
value = src[position++];
|
|
if (srcStringEnd >= position) {
|
|
return srcString.slice(position - srcStringStart, (position += value) - srcStringStart);
|
|
}
|
|
return readString8(value);
|
|
case 0xda:
|
|
// str 16
|
|
value = dataView.getUint16(position);
|
|
position += 2;
|
|
if (srcStringEnd >= position) {
|
|
return srcString.slice(position - srcStringStart, (position += value) - srcStringStart);
|
|
}
|
|
return readString16(value);
|
|
case 0xdb:
|
|
// str 32
|
|
value = dataView.getUint32(position);
|
|
position += 4;
|
|
if (srcStringEnd >= position) {
|
|
return srcString.slice(position - srcStringStart, (position += value) - srcStringStart);
|
|
}
|
|
return readString32(value);
|
|
case 0xdc:
|
|
// array 16
|
|
value = dataView.getUint16(position);
|
|
position += 2;
|
|
return readArray(value);
|
|
case 0xdd:
|
|
// array 32
|
|
value = dataView.getUint32(position);
|
|
position += 4;
|
|
return readArray(value);
|
|
case 0xde:
|
|
// map 16
|
|
value = dataView.getUint16(position);
|
|
position += 2;
|
|
return readMap(value);
|
|
case 0xdf:
|
|
// map 32
|
|
value = dataView.getUint32(position);
|
|
position += 4;
|
|
return readMap(value);
|
|
default: // negative int
|
|
if (token >= 0xe0) return token - 0x100;
|
|
if (token === undefined) {
|
|
const error = new Error('Unexpected end of MessagePack data');
|
|
error.incomplete = true;
|
|
throw error;
|
|
}
|
|
throw new Error('Unknown MessagePack token ' + token);
|
|
}
|
|
}
|
|
}
|
|
const validName = /^[a-zA-Z_$][a-zA-Z\d_$]*$/;
|
|
function createStructureReader(structure, firstId) {
|
|
function readObject() {
|
|
// This initial function is quick to instantiate, but runs slower. After several iterations pay the cost to build the faster function
|
|
if (readObject.count++ > inlineObjectReadThreshold) {
|
|
const readObject = (structure.read = new Function(
|
|
'r',
|
|
'return function(){return ' +
|
|
(currentUnpackr.freezeData ? 'Object.freeze' : '') +
|
|
'({' +
|
|
structure
|
|
.map((key) =>
|
|
key === '__proto__'
|
|
? '__proto_:r()'
|
|
: validName.test(key)
|
|
? key + ':r()'
|
|
: '[' + JSON.stringify(key) + ']:r()'
|
|
)
|
|
.join(',') +
|
|
'})}'
|
|
)(read));
|
|
if (structure.highByte === 0) structure.read = createSecondByteReader(firstId, structure.read);
|
|
return readObject(); // second byte is already read, if there is one so immediately read object
|
|
}
|
|
const object = {};
|
|
for (let i = 0, l = structure.length; i < l; i++) {
|
|
let key = structure[i];
|
|
if (key === '__proto__') key = '__proto_';
|
|
object[key] = read();
|
|
}
|
|
if (currentUnpackr.freezeData) return Object.freeze(object);
|
|
return object;
|
|
}
|
|
readObject.count = 0;
|
|
if (structure.highByte === 0) {
|
|
return createSecondByteReader(firstId, readObject);
|
|
}
|
|
return readObject;
|
|
}
|
|
|
|
const createSecondByteReader = (firstId, read0) =>
|
|
function () {
|
|
const highByte = src[position++];
|
|
if (highByte === 0) return read0();
|
|
const id = firstId < 32 ? -(firstId + (highByte << 5)) : firstId + (highByte << 5);
|
|
const structure = currentStructures[id] || loadStructures()[id];
|
|
if (!structure) {
|
|
throw new Error('Record id is not defined for ' + id);
|
|
}
|
|
if (!structure.read) structure.read = createStructureReader(structure, firstId);
|
|
return structure.read();
|
|
};
|
|
|
|
export function loadStructures() {
|
|
const loadedStructures = saveState(() => {
|
|
// save the state in case getStructures modifies our buffer
|
|
src = null;
|
|
return currentUnpackr.getStructures();
|
|
});
|
|
return (currentStructures = currentUnpackr._mergeStructures(loadedStructures, currentStructures));
|
|
}
|
|
|
|
var readFixedString = readStringJS;
|
|
var readString8 = readStringJS;
|
|
var readString16 = readStringJS;
|
|
var readString32 = readStringJS;
|
|
export let isNativeAccelerationEnabled = false;
|
|
|
|
export function setExtractor(extractStrings) {
|
|
isNativeAccelerationEnabled = true;
|
|
readFixedString = readString(1);
|
|
readString8 = readString(2);
|
|
readString16 = readString(3);
|
|
readString32 = readString(5);
|
|
function readString(headerLength) {
|
|
return function readString(length) {
|
|
let string = strings[stringPosition++];
|
|
if (string == null) {
|
|
if (bundledStrings) return readStringJS(length);
|
|
const byteOffset = src.byteOffset;
|
|
const extraction = extractStrings(position - headerLength + byteOffset, srcEnd + byteOffset, src.buffer);
|
|
if (typeof extraction == 'string') {
|
|
string = extraction;
|
|
strings = EMPTY_ARRAY;
|
|
} else {
|
|
strings = extraction;
|
|
stringPosition = 1;
|
|
srcStringEnd = 1; // even if a utf-8 string was decoded, must indicate we are in the midst of extracted strings and can't skip strings
|
|
string = strings[0];
|
|
if (string === undefined) throw new Error('Unexpected end of buffer');
|
|
}
|
|
}
|
|
const srcStringLength = string.length;
|
|
if (srcStringLength <= length) {
|
|
position += length;
|
|
return string;
|
|
}
|
|
srcString = string;
|
|
srcStringStart = position;
|
|
srcStringEnd = position + srcStringLength;
|
|
position += length;
|
|
return string.slice(0, length); // we know we just want the beginning
|
|
};
|
|
}
|
|
}
|
|
function readStringJS(length) {
|
|
let result;
|
|
if (length < 16) {
|
|
if ((result = shortStringInJS(length))) return result;
|
|
}
|
|
if (length > 64 && decoder) return decoder.decode(src.subarray(position, (position += length)));
|
|
const end = position + length;
|
|
const units = [];
|
|
result = '';
|
|
while (position < end) {
|
|
const byte1 = src[position++];
|
|
if ((byte1 & 0x80) === 0) {
|
|
// 1 byte
|
|
units.push(byte1);
|
|
} else if ((byte1 & 0xe0) === 0xc0) {
|
|
// 2 bytes
|
|
const byte2 = src[position++] & 0x3f;
|
|
units.push(((byte1 & 0x1f) << 6) | byte2);
|
|
} else if ((byte1 & 0xf0) === 0xe0) {
|
|
// 3 bytes
|
|
const byte2 = src[position++] & 0x3f;
|
|
const byte3 = src[position++] & 0x3f;
|
|
units.push(((byte1 & 0x1f) << 12) | (byte2 << 6) | byte3);
|
|
} else if ((byte1 & 0xf8) === 0xf0) {
|
|
// 4 bytes
|
|
const byte2 = src[position++] & 0x3f;
|
|
const byte3 = src[position++] & 0x3f;
|
|
const byte4 = src[position++] & 0x3f;
|
|
let unit = ((byte1 & 0x07) << 0x12) | (byte2 << 0x0c) | (byte3 << 0x06) | byte4;
|
|
if (unit > 0xffff) {
|
|
unit -= 0x10000;
|
|
units.push(((unit >>> 10) & 0x3ff) | 0xd800);
|
|
unit = 0xdc00 | (unit & 0x3ff);
|
|
}
|
|
units.push(unit);
|
|
} else {
|
|
units.push(byte1);
|
|
}
|
|
|
|
if (units.length >= 0x1000) {
|
|
result += fromCharCode.apply(String, units);
|
|
units.length = 0;
|
|
}
|
|
}
|
|
|
|
if (units.length > 0) {
|
|
result += fromCharCode.apply(String, units);
|
|
}
|
|
|
|
return result;
|
|
}
|
|
export function readString(source, start, length) {
|
|
const existingSrc = src;
|
|
src = source;
|
|
position = start;
|
|
try {
|
|
return readStringJS(length);
|
|
} finally {
|
|
src = existingSrc;
|
|
}
|
|
}
|
|
|
|
function readArray(length) {
|
|
const array = new Array(length);
|
|
for (let i = 0; i < length; i++) {
|
|
array[i] = read();
|
|
}
|
|
if (currentUnpackr.freezeData) return Object.freeze(array);
|
|
return array;
|
|
}
|
|
|
|
function readMap(length) {
|
|
if (currentUnpackr.mapsAsObjects) {
|
|
const object = {};
|
|
for (let i = 0; i < length; i++) {
|
|
let key = readKey();
|
|
if (key === '__proto__') key = '__proto_';
|
|
object[key] = read();
|
|
}
|
|
return object;
|
|
} else {
|
|
const map = new Map();
|
|
for (let i = 0; i < length; i++) {
|
|
map.set(read(), read());
|
|
}
|
|
return map;
|
|
}
|
|
}
|
|
|
|
var fromCharCode = String.fromCharCode;
|
|
function longStringInJS(length) {
|
|
const start = position;
|
|
const bytes = new Array(length);
|
|
for (let i = 0; i < length; i++) {
|
|
const byte = src[position++];
|
|
if ((byte & 0x80) > 0) {
|
|
position = start;
|
|
return;
|
|
}
|
|
bytes[i] = byte;
|
|
}
|
|
return fromCharCode.apply(String, bytes);
|
|
}
|
|
function shortStringInJS(length) {
|
|
if (length < 4) {
|
|
if (length < 2) {
|
|
if (length === 0) return '';
|
|
else {
|
|
const a = src[position++];
|
|
if ((a & 0x80) > 1) {
|
|
position -= 1;
|
|
return;
|
|
}
|
|
return fromCharCode(a);
|
|
}
|
|
} else {
|
|
const a = src[position++];
|
|
const b = src[position++];
|
|
if ((a & 0x80) > 0 || (b & 0x80) > 0) {
|
|
position -= 2;
|
|
return;
|
|
}
|
|
if (length < 3) return fromCharCode(a, b);
|
|
const c = src[position++];
|
|
if ((c & 0x80) > 0) {
|
|
position -= 3;
|
|
return;
|
|
}
|
|
return fromCharCode(a, b, c);
|
|
}
|
|
} else {
|
|
const a = src[position++];
|
|
const b = src[position++];
|
|
const c = src[position++];
|
|
const d = src[position++];
|
|
if ((a & 0x80) > 0 || (b & 0x80) > 0 || (c & 0x80) > 0 || (d & 0x80) > 0) {
|
|
position -= 4;
|
|
return;
|
|
}
|
|
if (length < 6) {
|
|
if (length === 4) return fromCharCode(a, b, c, d);
|
|
else {
|
|
const e = src[position++];
|
|
if ((e & 0x80) > 0) {
|
|
position -= 5;
|
|
return;
|
|
}
|
|
return fromCharCode(a, b, c, d, e);
|
|
}
|
|
} else if (length < 8) {
|
|
const e = src[position++];
|
|
const f = src[position++];
|
|
if ((e & 0x80) > 0 || (f & 0x80) > 0) {
|
|
position -= 6;
|
|
return;
|
|
}
|
|
if (length < 7) return fromCharCode(a, b, c, d, e, f);
|
|
const g = src[position++];
|
|
if ((g & 0x80) > 0) {
|
|
position -= 7;
|
|
return;
|
|
}
|
|
return fromCharCode(a, b, c, d, e, f, g);
|
|
} else {
|
|
const e = src[position++];
|
|
const f = src[position++];
|
|
const g = src[position++];
|
|
const h = src[position++];
|
|
if ((e & 0x80) > 0 || (f & 0x80) > 0 || (g & 0x80) > 0 || (h & 0x80) > 0) {
|
|
position -= 8;
|
|
return;
|
|
}
|
|
if (length < 10) {
|
|
if (length === 8) return fromCharCode(a, b, c, d, e, f, g, h);
|
|
else {
|
|
const i = src[position++];
|
|
if ((i & 0x80) > 0) {
|
|
position -= 9;
|
|
return;
|
|
}
|
|
return fromCharCode(a, b, c, d, e, f, g, h, i);
|
|
}
|
|
} else if (length < 12) {
|
|
const i = src[position++];
|
|
const j = src[position++];
|
|
if ((i & 0x80) > 0 || (j & 0x80) > 0) {
|
|
position -= 10;
|
|
return;
|
|
}
|
|
if (length < 11) return fromCharCode(a, b, c, d, e, f, g, h, i, j);
|
|
const k = src[position++];
|
|
if ((k & 0x80) > 0) {
|
|
position -= 11;
|
|
return;
|
|
}
|
|
return fromCharCode(a, b, c, d, e, f, g, h, i, j, k);
|
|
} else {
|
|
const i = src[position++];
|
|
const j = src[position++];
|
|
const k = src[position++];
|
|
const l = src[position++];
|
|
if ((i & 0x80) > 0 || (j & 0x80) > 0 || (k & 0x80) > 0 || (l & 0x80) > 0) {
|
|
position -= 12;
|
|
return;
|
|
}
|
|
if (length < 14) {
|
|
if (length === 12) return fromCharCode(a, b, c, d, e, f, g, h, i, j, k, l);
|
|
else {
|
|
const m = src[position++];
|
|
if ((m & 0x80) > 0) {
|
|
position -= 13;
|
|
return;
|
|
}
|
|
return fromCharCode(a, b, c, d, e, f, g, h, i, j, k, l, m);
|
|
}
|
|
} else {
|
|
const m = src[position++];
|
|
const n = src[position++];
|
|
if ((m & 0x80) > 0 || (n & 0x80) > 0) {
|
|
position -= 14;
|
|
return;
|
|
}
|
|
if (length < 15) return fromCharCode(a, b, c, d, e, f, g, h, i, j, k, l, m, n);
|
|
const o = src[position++];
|
|
if ((o & 0x80) > 0) {
|
|
position -= 15;
|
|
return;
|
|
}
|
|
return fromCharCode(a, b, c, d, e, f, g, h, i, j, k, l, m, n, o);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
function readOnlyJSString() {
|
|
const token = src[position++];
|
|
let length;
|
|
if (token < 0xc0) {
|
|
// fixstr
|
|
length = token - 0xa0;
|
|
} else {
|
|
switch (token) {
|
|
case 0xd9:
|
|
// str 8
|
|
length = src[position++];
|
|
break;
|
|
case 0xda:
|
|
// str 16
|
|
length = dataView.getUint16(position);
|
|
position += 2;
|
|
break;
|
|
case 0xdb:
|
|
// str 32
|
|
length = dataView.getUint32(position);
|
|
position += 4;
|
|
break;
|
|
default:
|
|
throw new Error('Expected string');
|
|
}
|
|
}
|
|
return readStringJS(length);
|
|
}
|
|
|
|
function readBin(length) {
|
|
return currentUnpackr.copyBuffers
|
|
? // specifically use the copying slice (not the node one)
|
|
Uint8Array.prototype.slice.call(src, position, (position += length))
|
|
: src.subarray(position, (position += length));
|
|
}
|
|
function readExt(length) {
|
|
const type = src[position++];
|
|
if (currentExtensions[type]) {
|
|
let end;
|
|
return currentExtensions[type](src.subarray(position, (end = position += length)), (readPosition) => {
|
|
position = readPosition;
|
|
try {
|
|
return read();
|
|
} finally {
|
|
position = end;
|
|
}
|
|
});
|
|
} else throw new Error('Unknown extension type ' + type);
|
|
}
|
|
|
|
const keyCache = new Array(4096);
|
|
function readKey() {
|
|
let length = src[position++];
|
|
if (length >= 0xa0 && length < 0xc0) {
|
|
// fixstr, potentially use key cache
|
|
length = length - 0xa0;
|
|
if (srcStringEnd >= position)
|
|
// if it has been extracted, must use it (and faster anyway)
|
|
return srcString.slice(position - srcStringStart, (position += length) - srcStringStart);
|
|
else if (!(srcStringEnd == 0 && srcEnd < 180)) return readFixedString(length);
|
|
} else {
|
|
// not cacheable, go back and do a standard read
|
|
position--;
|
|
return read().toString();
|
|
}
|
|
const key = ((length << 5) ^ (length > 1 ? dataView.getUint16(position) : length > 0 ? src[position] : 0)) & 0xfff;
|
|
let entry = keyCache[key];
|
|
let checkPosition = position;
|
|
let end = position + length - 3;
|
|
let chunk;
|
|
let i = 0;
|
|
if (entry && entry.bytes == length) {
|
|
while (checkPosition < end) {
|
|
chunk = dataView.getUint32(checkPosition);
|
|
if (chunk != entry[i++]) {
|
|
checkPosition = 0x70000000;
|
|
break;
|
|
}
|
|
checkPosition += 4;
|
|
}
|
|
end += 3;
|
|
while (checkPosition < end) {
|
|
chunk = src[checkPosition++];
|
|
if (chunk != entry[i++]) {
|
|
checkPosition = 0x70000000;
|
|
break;
|
|
}
|
|
}
|
|
if (checkPosition === end) {
|
|
position = checkPosition;
|
|
return entry.string;
|
|
}
|
|
end -= 3;
|
|
checkPosition = position;
|
|
}
|
|
entry = [];
|
|
keyCache[key] = entry;
|
|
entry.bytes = length;
|
|
while (checkPosition < end) {
|
|
chunk = dataView.getUint32(checkPosition);
|
|
entry.push(chunk);
|
|
checkPosition += 4;
|
|
}
|
|
end += 3;
|
|
while (checkPosition < end) {
|
|
chunk = src[checkPosition++];
|
|
entry.push(chunk);
|
|
}
|
|
// for small blocks, avoiding the overhead of the extract call is helpful
|
|
const string = length < 16 ? shortStringInJS(length) : longStringInJS(length);
|
|
if (string != null) return (entry.string = string);
|
|
return (entry.string = readFixedString(length));
|
|
}
|
|
|
|
// the registration of the record definition extension (as "r")
|
|
const recordDefinition = (id, highByte) => {
|
|
const structure = read().map((property) => property.toString()); // ensure that all keys are strings and that the array is mutable
|
|
const firstByte = id;
|
|
if (highByte !== undefined) {
|
|
id = id < 32 ? -((highByte << 5) + id) : (highByte << 5) + id;
|
|
structure.highByte = highByte;
|
|
}
|
|
const existingStructure = currentStructures[id];
|
|
if (existingStructure && existingStructure.isShared) {
|
|
(currentStructures.restoreStructures || (currentStructures.restoreStructures = []))[id] = existingStructure;
|
|
}
|
|
currentStructures[id] = structure;
|
|
structure.read = createStructureReader(structure, firstByte);
|
|
return structure.read();
|
|
};
|
|
currentExtensions[0] = () => {}; // notepack defines extension 0 to mean undefined, so use that as the default here
|
|
currentExtensions[0].noBuffer = true;
|
|
|
|
const glbl = typeof globalThis === 'object' ? globalThis : window;
|
|
currentExtensions[0x65] = () => {
|
|
const data = read();
|
|
return (glbl[data[0]] || Error)(data[1]);
|
|
};
|
|
|
|
currentExtensions[0x69] = (data) => {
|
|
// id extension (for structured clones)
|
|
const id = dataView.getUint32(position - 4);
|
|
if (!referenceMap) referenceMap = new Map();
|
|
const token = src[position];
|
|
let target;
|
|
// ahead past references to record structure definitions
|
|
if ((token >= 0x90 && token < 0xa0) || token == 0xdc || token == 0xdd) target = [];
|
|
else target = {};
|
|
|
|
const refEntry = { target }; // a placeholder object
|
|
referenceMap.set(id, refEntry);
|
|
const targetProperties = read(); // read the next value as the target object to id
|
|
if (refEntry.used)
|
|
// there is a cycle, so we have to assign properties to original target
|
|
return Object.assign(target, targetProperties);
|
|
refEntry.target = targetProperties; // the placeholder wasn't used, replace with the deserialized one
|
|
return targetProperties; // no cycle, can just use the returned read object
|
|
};
|
|
|
|
currentExtensions[0x70] = (data) => {
|
|
// pointer extension (for structured clones)
|
|
const id = dataView.getUint32(position - 4);
|
|
const refEntry = referenceMap.get(id);
|
|
refEntry.used = true;
|
|
return refEntry.target;
|
|
};
|
|
|
|
currentExtensions[0x73] = () => new Set(read());
|
|
|
|
export const typedArrays = [
|
|
'Int8',
|
|
'Uint8',
|
|
'Uint8Clamped',
|
|
'Int16',
|
|
'Uint16',
|
|
'Int32',
|
|
'Uint32',
|
|
'Float32',
|
|
'Float64',
|
|
'BigInt64',
|
|
'BigUint64'
|
|
].map((type) => type + 'Array');
|
|
|
|
currentExtensions[0x74] = (data) => {
|
|
const typeCode = data[0];
|
|
const typedArrayName = typedArrays[typeCode];
|
|
if (!typedArrayName) throw new Error('Could not find typed array for code ' + typeCode);
|
|
// we have to always slice/copy here to get a new ArrayBuffer that is word/byte aligned
|
|
return new glbl[typedArrayName](Uint8Array.prototype.slice.call(data, 1).buffer);
|
|
};
|
|
currentExtensions[0x78] = () => {
|
|
const data = read();
|
|
return new RegExp(data[0], data[1]);
|
|
};
|
|
const TEMP_BUNDLE = [];
|
|
currentExtensions[0x62] = (data) => {
|
|
const dataSize = (data[0] << 24) + (data[1] << 16) + (data[2] << 8) + data[3];
|
|
const dataPosition = position;
|
|
position += dataSize - data.length;
|
|
bundledStrings = TEMP_BUNDLE;
|
|
bundledStrings = [readOnlyJSString(), readOnlyJSString()];
|
|
bundledStrings.position0 = 0;
|
|
bundledStrings.position1 = 0;
|
|
bundledStrings.postBundlePosition = position;
|
|
position = dataPosition;
|
|
return read();
|
|
};
|
|
|
|
currentExtensions[0xff] = (data) => {
|
|
// 32-bit date extension
|
|
if (data.length == 4) return new Date((data[0] * 0x1000000 + (data[1] << 16) + (data[2] << 8) + data[3]) * 1000);
|
|
else if (data.length == 8)
|
|
return new Date(
|
|
((data[0] << 22) + (data[1] << 14) + (data[2] << 6) + (data[3] >> 2)) / 1000000 +
|
|
((data[3] & 0x3) * 0x100000000 + data[4] * 0x1000000 + (data[5] << 16) + (data[6] << 8) + data[7]) * 1000
|
|
);
|
|
else if (data.length == 12)
|
|
return new Date(
|
|
((data[0] << 24) + (data[1] << 16) + (data[2] << 8) + data[3]) / 1000000 +
|
|
((data[4] & 0x80 ? -0x1000000000000 : 0) +
|
|
data[6] * 0x10000000000 +
|
|
data[7] * 0x100000000 +
|
|
data[8] * 0x1000000 +
|
|
(data[9] << 16) +
|
|
(data[10] << 8) +
|
|
data[11]) *
|
|
1000
|
|
);
|
|
else return new Date('invalid');
|
|
}; // notepack defines extension 0 to mean undefined, so use that as the default here
|
|
// registration of bulk record definition?
|
|
// currentExtensions[0x52] = () =>
|
|
|
|
function saveState(callback) {
|
|
if (onSaveState) onSaveState();
|
|
const savedSrcEnd = srcEnd;
|
|
const savedPosition = position;
|
|
const savedStringPosition = stringPosition;
|
|
const savedSrcStringStart = srcStringStart;
|
|
const savedSrcStringEnd = srcStringEnd;
|
|
const savedSrcString = srcString;
|
|
const savedStrings = strings;
|
|
const savedReferenceMap = referenceMap;
|
|
const savedBundledStrings = bundledStrings;
|
|
|
|
const savedSrc = new Uint8Array(src.slice(0, srcEnd)); // we copy the data in case it changes while external data is processed
|
|
const savedStructures = currentStructures;
|
|
const savedStructuresContents = currentStructures.slice(0, currentStructures.length);
|
|
const savedPackr = currentUnpackr;
|
|
const savedSequentialMode = sequentialMode;
|
|
const value = callback();
|
|
srcEnd = savedSrcEnd;
|
|
position = savedPosition;
|
|
stringPosition = savedStringPosition;
|
|
srcStringStart = savedSrcStringStart;
|
|
srcStringEnd = savedSrcStringEnd;
|
|
srcString = savedSrcString;
|
|
strings = savedStrings;
|
|
referenceMap = savedReferenceMap;
|
|
bundledStrings = savedBundledStrings;
|
|
src = savedSrc;
|
|
sequentialMode = savedSequentialMode;
|
|
currentStructures = savedStructures;
|
|
currentStructures.splice(0, currentStructures.length, ...savedStructuresContents);
|
|
currentUnpackr = savedPackr;
|
|
dataView = new DataView(src.buffer, src.byteOffset, src.byteLength);
|
|
return value;
|
|
}
|
|
export function clearSource() {
|
|
src = null;
|
|
referenceMap = null;
|
|
currentStructures = null;
|
|
}
|
|
|
|
export function addExtension(extension) {
|
|
if (extension.unpack) currentExtensions[extension.type] = extension.unpack;
|
|
else currentExtensions[extension.type] = extension;
|
|
}
|
|
|
|
export const mult10 = new Array(147); // this is a table matching binary exponents to the multiplier to determine significant digit rounding
|
|
for (let i = 0; i < 256; i++) {
|
|
mult10[i] = +('1e' + Math.floor(45.15 - i * 0.30103));
|
|
}
|
|
export const Decoder = Unpackr;
|
|
var defaultUnpackr = new Unpackr({ useRecords: false });
|
|
export const unpack = defaultUnpackr.unpack;
|
|
export const unpackMultiple = defaultUnpackr.unpackMultiple;
|
|
export const decode = defaultUnpackr.unpack;
|
|
export const FLOAT32_OPTIONS = {
|
|
NEVER: 0,
|
|
ALWAYS: 1,
|
|
DECIMAL_ROUND: 3,
|
|
DECIMAL_FIT: 4
|
|
};
|
|
const f32Array = new Float32Array(1);
|
|
const u8Array = new Uint8Array(f32Array.buffer, 0, 4);
|
|
export function roundFloat32(float32Number) {
|
|
f32Array[0] = float32Number;
|
|
const multiplier = mult10[((u8Array[3] & 0x7f) << 1) | (u8Array[2] >> 7)];
|
|
return ((multiplier * float32Number + (float32Number > 0 ? 0.5 : -0.5)) >> 0) / multiplier;
|
|
}
|
|
export function setReadStruct(updatedReadStruct, loadedStructs, saveState) {
|
|
readStruct = updatedReadStruct;
|
|
onLoadedStructures = loadedStructs;
|
|
onSaveState = saveState;
|
|
}
|