792 lines
		
	
	
		
			26 KiB
		
	
	
	
		
			JavaScript
		
	
	
	
	
	
			
		
		
	
	
			792 lines
		
	
	
		
			26 KiB
		
	
	
	
		
			JavaScript
		
	
	
	
	
	
(function (global, factory) {
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    typeof exports === 'object' && typeof module !== 'undefined' ? module.exports = factory() :
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    typeof define === 'function' && define.amd ? define(factory) :
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    (global = typeof globalThis !== 'undefined' ? globalThis : global || self, global.jsonExt = factory());
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})(this, (function () { 'use strict';
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    var version = "0.5.7";
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    const PrimitiveType = 1;
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    const ObjectType = 2;
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    const ArrayType = 3;
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    const PromiseType = 4;
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    const ReadableStringType = 5;
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    const ReadableObjectType = 6;
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    // https://tc39.es/ecma262/#table-json-single-character-escapes
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    const escapableCharCodeSubstitution$1 = { // JSON Single Character Escape Sequences
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        0x08: '\\b',
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        0x09: '\\t',
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        0x0a: '\\n',
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        0x0c: '\\f',
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        0x0d: '\\r',
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        0x22: '\\\"',
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        0x5c: '\\\\'
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    };
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    function isLeadingSurrogate$1(code) {
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        return code >= 0xD800 && code <= 0xDBFF;
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    }
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    function isTrailingSurrogate$1(code) {
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        return code >= 0xDC00 && code <= 0xDFFF;
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    }
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    function isReadableStream$1(value) {
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        return (
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            typeof value.pipe === 'function' &&
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            typeof value._read === 'function' &&
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            typeof value._readableState === 'object' && value._readableState !== null
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        );
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    }
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    function replaceValue$1(holder, key, value, replacer) {
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        if (value && typeof value.toJSON === 'function') {
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            value = value.toJSON();
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        }
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        if (replacer !== null) {
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            value = replacer.call(holder, String(key), value);
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        }
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        switch (typeof value) {
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            case 'function':
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            case 'symbol':
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                value = undefined;
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                break;
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            case 'object':
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                if (value !== null) {
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                    const cls = value.constructor;
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                    if (cls === String || cls === Number || cls === Boolean) {
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                        value = value.valueOf();
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                    }
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                }
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                break;
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        }
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        return value;
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    }
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    function getTypeNative$1(value) {
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        if (value === null || typeof value !== 'object') {
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            return PrimitiveType;
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        }
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        if (Array.isArray(value)) {
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            return ArrayType;
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        }
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        return ObjectType;
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    }
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    function getTypeAsync$1(value) {
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        if (value === null || typeof value !== 'object') {
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            return PrimitiveType;
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        }
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        if (typeof value.then === 'function') {
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            return PromiseType;
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        }
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        if (isReadableStream$1(value)) {
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            return value._readableState.objectMode ? ReadableObjectType : ReadableStringType;
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        }
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        if (Array.isArray(value)) {
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            return ArrayType;
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        }
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        return ObjectType;
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    }
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    function normalizeReplacer$1(replacer) {
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        if (typeof replacer === 'function') {
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            return replacer;
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        }
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        if (Array.isArray(replacer)) {
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            const allowlist = new Set(replacer
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                .map(item => {
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                    const cls = item && item.constructor;
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                    return cls === String || cls === Number ? String(item) : null;
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                })
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                .filter(item => typeof item === 'string')
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            );
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            return [...allowlist];
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        }
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        return null;
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    }
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    function normalizeSpace$1(space) {
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        if (typeof space === 'number') {
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            if (!Number.isFinite(space) || space < 1) {
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                return false;
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            }
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            return ' '.repeat(Math.min(space, 10));
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        }
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        if (typeof space === 'string') {
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            return space.slice(0, 10) || false;
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        }
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        return false;
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    }
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    var utils = {
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        escapableCharCodeSubstitution: escapableCharCodeSubstitution$1,
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        isLeadingSurrogate: isLeadingSurrogate$1,
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        isTrailingSurrogate: isTrailingSurrogate$1,
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        type: {
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            PRIMITIVE: PrimitiveType,
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            PROMISE: PromiseType,
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            ARRAY: ArrayType,
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            OBJECT: ObjectType,
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            STRING_STREAM: ReadableStringType,
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            OBJECT_STREAM: ReadableObjectType
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        },
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        isReadableStream: isReadableStream$1,
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        replaceValue: replaceValue$1,
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        getTypeNative: getTypeNative$1,
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        getTypeAsync: getTypeAsync$1,
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        normalizeReplacer: normalizeReplacer$1,
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        normalizeSpace: normalizeSpace$1
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    };
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    const {
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        normalizeReplacer,
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        normalizeSpace,
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        replaceValue,
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        getTypeNative,
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        getTypeAsync,
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        isLeadingSurrogate,
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        isTrailingSurrogate,
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        escapableCharCodeSubstitution,
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        type: {
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            PRIMITIVE,
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            OBJECT,
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            ARRAY,
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            PROMISE,
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            STRING_STREAM,
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            OBJECT_STREAM
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        }
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    } = utils;
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    const charLength2048 = Array.from({ length: 2048 }).map((_, code) => {
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        if (escapableCharCodeSubstitution.hasOwnProperty(code)) {
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            return 2; // \X
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        }
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        if (code < 0x20) {
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            return 6; // \uXXXX
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        }
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        return code < 128 ? 1 : 2; // UTF8 bytes
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    });
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    function stringLength(str) {
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        let len = 0;
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        let prevLeadingSurrogate = false;
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        for (let i = 0; i < str.length; i++) {
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            const code = str.charCodeAt(i);
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            if (code < 2048) {
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                len += charLength2048[code];
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            } else if (isLeadingSurrogate(code)) {
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                len += 6; // \uXXXX since no pair with trailing surrogate yet
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                prevLeadingSurrogate = true;
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                continue;
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            } else if (isTrailingSurrogate(code)) {
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                len = prevLeadingSurrogate
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                    ? len - 2  // surrogate pair (4 bytes), since we calculate prev leading surrogate as 6 bytes, substruct 2 bytes
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                    : len + 6; // \uXXXX
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            } else {
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                len += 3; // code >= 2048 is 3 bytes length for UTF8
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            }
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            prevLeadingSurrogate = false;
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        }
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        return len + 2; // +2 for quotes
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    }
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    function primitiveLength(value) {
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        switch (typeof value) {
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            case 'string':
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                return stringLength(value);
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            case 'number':
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                return Number.isFinite(value) ? String(value).length : 4 /* null */;
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            case 'boolean':
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                return value ? 4 /* true */ : 5 /* false */;
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            case 'undefined':
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            case 'object':
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                return 4; /* null */
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            default:
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                return 0;
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        }
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    }
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    function spaceLength(space) {
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        space = normalizeSpace(space);
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        return typeof space === 'string' ? space.length : 0;
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    }
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    var stringifyInfo = function jsonStringifyInfo(value, replacer, space, options) {
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        function walk(holder, key, value) {
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            if (stop) {
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                return;
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            }
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            value = replaceValue(holder, key, value, replacer);
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            let type = getType(value);
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            // check for circular structure
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            if (type !== PRIMITIVE && stack.has(value)) {
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                circular.add(value);
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                length += 4; // treat as null
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                if (!options.continueOnCircular) {
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                    stop = true;
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                }
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                return;
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            }
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            switch (type) {
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                case PRIMITIVE:
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                    if (value !== undefined || Array.isArray(holder)) {
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                        length += primitiveLength(value);
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                    } else if (holder === root) {
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                        length += 9; // FIXME: that's the length of undefined, should we normalize behaviour to convert it to null?
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                    }
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                    break;
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                case OBJECT: {
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                    if (visited.has(value)) {
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                        duplicate.add(value);
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                        length += visited.get(value);
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                        break;
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                    }
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                    const valueLength = length;
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                    let entries = 0;
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                    length += 2; // {}
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                    stack.add(value);
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                    for (const key in value) {
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                        if (hasOwnProperty.call(value, key) && (allowlist === null || allowlist.has(key))) {
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                            const prevLength = length;
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                            walk(value, key, value[key]);
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                            if (prevLength !== length) {
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                                // value is printed
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                                length += stringLength(key) + 1; // "key":
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                                entries++;
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                            }
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                        }
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                    }
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                    if (entries > 1) {
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                        length += entries - 1; // commas
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                    }
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                    stack.delete(value);
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                    if (space > 0 && entries > 0) {
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                        length += (1 + (stack.size + 1) * space + 1) * entries; // for each key-value: \n{space}
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                        length += 1 + stack.size * space; // for }
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                    }
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                    visited.set(value, length - valueLength);
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                    break;
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                }
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                case ARRAY: {
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                    if (visited.has(value)) {
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                        duplicate.add(value);
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                        length += visited.get(value);
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                        break;
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                    }
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                    const valueLength = length;
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                    length += 2; // []
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                    stack.add(value);
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                    for (let i = 0; i < value.length; i++) {
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                        walk(value, i, value[i]);
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                    }
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                    if (value.length > 1) {
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                        length += value.length - 1; // commas
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                    }
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                    stack.delete(value);
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                    if (space > 0 && value.length > 0) {
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                        length += (1 + (stack.size + 1) * space) * value.length; // for each element: \n{space}
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                        length += 1 + stack.size * space; // for ]
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                    }
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                    visited.set(value, length - valueLength);
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                    break;
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                }
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                case PROMISE:
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                case STRING_STREAM:
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                    async.add(value);
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                    break;
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                case OBJECT_STREAM:
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                    length += 2; // []
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                    async.add(value);
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                    break;
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            }
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        }
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        let allowlist = null;
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        replacer = normalizeReplacer(replacer);
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        if (Array.isArray(replacer)) {
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            allowlist = new Set(replacer);
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            replacer = null;
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        }
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        space = spaceLength(space);
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        options = options || {};
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        const visited = new Map();
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        const stack = new Set();
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        const duplicate = new Set();
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        const circular = new Set();
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        const async = new Set();
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        const getType = options.async ? getTypeAsync : getTypeNative;
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        const root = { '': value };
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        let stop = false;
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        let length = 0;
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        walk(root, '', value);
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        return {
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            minLength: isNaN(length) ? Infinity : length,
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            circular: [...circular],
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            duplicate: [...duplicate],
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            async: [...async]
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        };
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    };
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    var stringifyStreamBrowser = () => {
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        throw new Error('Method is not supported');
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    };
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 | 
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    var textDecoderBrowser = TextDecoder;
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    const { isReadableStream } = utils;
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    const STACK_OBJECT = 1;
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    const STACK_ARRAY = 2;
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    const decoder = new textDecoderBrowser();
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 | 
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    function isObject(value) {
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        return value !== null && typeof value === 'object';
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    }
 | 
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 | 
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    function adjustPosition(error, parser) {
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        if (error.name === 'SyntaxError' && parser.jsonParseOffset) {
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            error.message = error.message.replace(/at position (\d+)/, (_, pos) =>
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                'at position ' + (Number(pos) + parser.jsonParseOffset)
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            );
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        }
 | 
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 | 
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        return error;
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    }
 | 
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 | 
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    function append(array, elements) {
 | 
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        // Note: Avoid to use array.push(...elements) since it may lead to
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        // "RangeError: Maximum call stack size exceeded" for a long arrays
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        const initialLength = array.length;
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        array.length += elements.length;
 | 
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 | 
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        for (let i = 0; i < elements.length; i++) {
 | 
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            array[initialLength + i] = elements[i];
 | 
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        }
 | 
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    }
 | 
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 | 
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    var parseChunked = function(chunkEmitter) {
 | 
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        let parser = new ChunkParser();
 | 
						||
 | 
						||
        if (isObject(chunkEmitter) && isReadableStream(chunkEmitter)) {
 | 
						||
            return new Promise((resolve, reject) => {
 | 
						||
                chunkEmitter
 | 
						||
                    .on('data', chunk => {
 | 
						||
                        try {
 | 
						||
                            parser.push(chunk);
 | 
						||
                        } catch (e) {
 | 
						||
                            reject(adjustPosition(e, parser));
 | 
						||
                            parser = null;
 | 
						||
                        }
 | 
						||
                    })
 | 
						||
                    .on('error', (e) => {
 | 
						||
                        parser = null;
 | 
						||
                        reject(e);
 | 
						||
                    })
 | 
						||
                    .on('end', () => {
 | 
						||
                        try {
 | 
						||
                            resolve(parser.finish());
 | 
						||
                        } catch (e) {
 | 
						||
                            reject(adjustPosition(e, parser));
 | 
						||
                        } finally {
 | 
						||
                            parser = null;
 | 
						||
                        }
 | 
						||
                    });
 | 
						||
            });
 | 
						||
        }
 | 
						||
 | 
						||
        if (typeof chunkEmitter === 'function') {
 | 
						||
            const iterator = chunkEmitter();
 | 
						||
 | 
						||
            if (isObject(iterator) && (Symbol.iterator in iterator || Symbol.asyncIterator in iterator)) {
 | 
						||
                return new Promise(async (resolve, reject) => {
 | 
						||
                    try {
 | 
						||
                        for await (const chunk of iterator) {
 | 
						||
                            parser.push(chunk);
 | 
						||
                        }
 | 
						||
 | 
						||
                        resolve(parser.finish());
 | 
						||
                    } catch (e) {
 | 
						||
                        reject(adjustPosition(e, parser));
 | 
						||
                    } finally {
 | 
						||
                        parser = null;
 | 
						||
                    }
 | 
						||
                });
 | 
						||
            }
 | 
						||
        }
 | 
						||
 | 
						||
        throw new Error(
 | 
						||
            'Chunk emitter should be readable stream, generator, ' +
 | 
						||
            'async generator or function returning an iterable object'
 | 
						||
        );
 | 
						||
    };
 | 
						||
 | 
						||
    class ChunkParser {
 | 
						||
        constructor() {
 | 
						||
            this.value = undefined;
 | 
						||
            this.valueStack = null;
 | 
						||
 | 
						||
            this.stack = new Array(100);
 | 
						||
            this.lastFlushDepth = 0;
 | 
						||
            this.flushDepth = 0;
 | 
						||
            this.stateString = false;
 | 
						||
            this.stateStringEscape = false;
 | 
						||
            this.pendingByteSeq = null;
 | 
						||
            this.pendingChunk = null;
 | 
						||
            this.chunkOffset = 0;
 | 
						||
            this.jsonParseOffset = 0;
 | 
						||
        }
 | 
						||
 | 
						||
        parseAndAppend(fragment, wrap) {
 | 
						||
            // Append new entries or elements
 | 
						||
            if (this.stack[this.lastFlushDepth - 1] === STACK_OBJECT) {
 | 
						||
                if (wrap) {
 | 
						||
                    this.jsonParseOffset--;
 | 
						||
                    fragment = '{' + fragment + '}';
 | 
						||
                }
 | 
						||
 | 
						||
                Object.assign(this.valueStack.value, JSON.parse(fragment));
 | 
						||
            } else {
 | 
						||
                if (wrap) {
 | 
						||
                    this.jsonParseOffset--;
 | 
						||
                    fragment = '[' + fragment + ']';
 | 
						||
                }
 | 
						||
 | 
						||
                append(this.valueStack.value, JSON.parse(fragment));
 | 
						||
            }
 | 
						||
        }
 | 
						||
 | 
						||
        prepareAddition(fragment) {
 | 
						||
            const { value } = this.valueStack;
 | 
						||
            const expectComma = Array.isArray(value)
 | 
						||
                ? value.length !== 0
 | 
						||
                : Object.keys(value).length !== 0;
 | 
						||
 | 
						||
            if (expectComma) {
 | 
						||
                // Skip a comma at the beginning of fragment, otherwise it would
 | 
						||
                // fail to parse
 | 
						||
                if (fragment[0] === ',') {
 | 
						||
                    this.jsonParseOffset++;
 | 
						||
                    return fragment.slice(1);
 | 
						||
                }
 | 
						||
 | 
						||
                // When value (an object or array) is not empty and a fragment
 | 
						||
                // doesn't start with a comma, a single valid fragment starting
 | 
						||
                // is a closing bracket. If it's not, a prefix is adding to fail
 | 
						||
                // parsing. Otherwise, the sequence of chunks can be successfully
 | 
						||
                // parsed, although it should not, e.g. ["[{}", "{}]"]
 | 
						||
                if (fragment[0] !== '}' && fragment[0] !== ']') {
 | 
						||
                    this.jsonParseOffset -= 3;
 | 
						||
                    return '[[]' + fragment;
 | 
						||
                }
 | 
						||
            }
 | 
						||
 | 
						||
            return fragment;
 | 
						||
        }
 | 
						||
 | 
						||
        flush(chunk, start, end) {
 | 
						||
            let fragment = chunk.slice(start, end);
 | 
						||
 | 
						||
            // Save position correction an error in JSON.parse() if any
 | 
						||
            this.jsonParseOffset = this.chunkOffset + start;
 | 
						||
 | 
						||
            // Prepend pending chunk if any
 | 
						||
            if (this.pendingChunk !== null) {
 | 
						||
                fragment = this.pendingChunk + fragment;
 | 
						||
                this.jsonParseOffset -= this.pendingChunk.length;
 | 
						||
                this.pendingChunk = null;
 | 
						||
            }
 | 
						||
 | 
						||
            if (this.flushDepth === this.lastFlushDepth) {
 | 
						||
                // Depth didn't changed, so it's a root value or entry/element set
 | 
						||
                if (this.flushDepth > 0) {
 | 
						||
                    this.parseAndAppend(this.prepareAddition(fragment), true);
 | 
						||
                } else {
 | 
						||
                    // That's an entire value on a top level
 | 
						||
                    this.value = JSON.parse(fragment);
 | 
						||
                    this.valueStack = {
 | 
						||
                        value: this.value,
 | 
						||
                        prev: null
 | 
						||
                    };
 | 
						||
                }
 | 
						||
            } else if (this.flushDepth > this.lastFlushDepth) {
 | 
						||
                // Add missed closing brackets/parentheses
 | 
						||
                for (let i = this.flushDepth - 1; i >= this.lastFlushDepth; i--) {
 | 
						||
                    fragment += this.stack[i] === STACK_OBJECT ? '}' : ']';
 | 
						||
                }
 | 
						||
 | 
						||
                if (this.lastFlushDepth === 0) {
 | 
						||
                    // That's a root value
 | 
						||
                    this.value = JSON.parse(fragment);
 | 
						||
                    this.valueStack = {
 | 
						||
                        value: this.value,
 | 
						||
                        prev: null
 | 
						||
                    };
 | 
						||
                } else {
 | 
						||
                    this.parseAndAppend(this.prepareAddition(fragment), true);
 | 
						||
                }
 | 
						||
 | 
						||
                // Move down to the depths to the last object/array, which is current now
 | 
						||
                for (let i = this.lastFlushDepth || 1; i < this.flushDepth; i++) {
 | 
						||
                    let value = this.valueStack.value;
 | 
						||
 | 
						||
                    if (this.stack[i - 1] === STACK_OBJECT) {
 | 
						||
                        // find last entry
 | 
						||
                        let key;
 | 
						||
                        // eslint-disable-next-line curly
 | 
						||
                        for (key in value);
 | 
						||
                        value = value[key];
 | 
						||
                    } else {
 | 
						||
                        // last element
 | 
						||
                        value = value[value.length - 1];
 | 
						||
                    }
 | 
						||
 | 
						||
                    this.valueStack = {
 | 
						||
                        value,
 | 
						||
                        prev: this.valueStack
 | 
						||
                    };
 | 
						||
                }
 | 
						||
            } else /* this.flushDepth < this.lastFlushDepth */ {
 | 
						||
                fragment = this.prepareAddition(fragment);
 | 
						||
 | 
						||
                // Add missed opening brackets/parentheses
 | 
						||
                for (let i = this.lastFlushDepth - 1; i >= this.flushDepth; i--) {
 | 
						||
                    this.jsonParseOffset--;
 | 
						||
                    fragment = (this.stack[i] === STACK_OBJECT ? '{' : '[') + fragment;
 | 
						||
                }
 | 
						||
 | 
						||
                this.parseAndAppend(fragment, false);
 | 
						||
 | 
						||
                for (let i = this.lastFlushDepth - 1; i >= this.flushDepth; i--) {
 | 
						||
                    this.valueStack = this.valueStack.prev;
 | 
						||
                }
 | 
						||
            }
 | 
						||
 | 
						||
            this.lastFlushDepth = this.flushDepth;
 | 
						||
        }
 | 
						||
 | 
						||
        push(chunk) {
 | 
						||
            if (typeof chunk !== 'string') {
 | 
						||
                // Suppose chunk is Buffer or Uint8Array
 | 
						||
 | 
						||
                // Prepend uncompleted byte sequence if any
 | 
						||
                if (this.pendingByteSeq !== null) {
 | 
						||
                    const origRawChunk = chunk;
 | 
						||
                    chunk = new Uint8Array(this.pendingByteSeq.length + origRawChunk.length);
 | 
						||
                    chunk.set(this.pendingByteSeq);
 | 
						||
                    chunk.set(origRawChunk, this.pendingByteSeq.length);
 | 
						||
                    this.pendingByteSeq = null;
 | 
						||
                }
 | 
						||
 | 
						||
                // In case Buffer/Uint8Array, an input is encoded in UTF8
 | 
						||
                // Seek for parts of uncompleted UTF8 symbol on the ending
 | 
						||
                // This makes sense only if we expect more chunks and last char is not multi-bytes
 | 
						||
                if (chunk[chunk.length - 1] > 127) {
 | 
						||
                    for (let seqLength = 0; seqLength < chunk.length; seqLength++) {
 | 
						||
                        const byte = chunk[chunk.length - 1 - seqLength];
 | 
						||
 | 
						||
                        // 10xxxxxx - 2nd, 3rd or 4th byte
 | 
						||
                        // 110xxxxx – first byte of 2-byte sequence
 | 
						||
                        // 1110xxxx - first byte of 3-byte sequence
 | 
						||
                        // 11110xxx - first byte of 4-byte sequence
 | 
						||
                        if (byte >> 6 === 3) {
 | 
						||
                            seqLength++;
 | 
						||
 | 
						||
                            // If the sequence is really incomplete, then preserve it
 | 
						||
                            // for the future chunk and cut off it from the current chunk
 | 
						||
                            if ((seqLength !== 4 && byte >> 3 === 0b11110) ||
 | 
						||
                                (seqLength !== 3 && byte >> 4 === 0b1110) ||
 | 
						||
                                (seqLength !== 2 && byte >> 5 === 0b110)) {
 | 
						||
                                this.pendingByteSeq = chunk.slice(chunk.length - seqLength);
 | 
						||
                                chunk = chunk.slice(0, -seqLength);
 | 
						||
                            }
 | 
						||
 | 
						||
                            break;
 | 
						||
                        }
 | 
						||
                    }
 | 
						||
                }
 | 
						||
 | 
						||
                // Convert chunk to a string, since single decode per chunk
 | 
						||
                // is much effective than decode multiple small substrings
 | 
						||
                chunk = decoder.decode(chunk);
 | 
						||
            }
 | 
						||
 | 
						||
            const chunkLength = chunk.length;
 | 
						||
            let lastFlushPoint = 0;
 | 
						||
            let flushPoint = 0;
 | 
						||
 | 
						||
            // Main scan loop
 | 
						||
            scan: for (let i = 0; i < chunkLength; i++) {
 | 
						||
                if (this.stateString) {
 | 
						||
                    for (; i < chunkLength; i++) {
 | 
						||
                        if (this.stateStringEscape) {
 | 
						||
                            this.stateStringEscape = false;
 | 
						||
                        } else {
 | 
						||
                            switch (chunk.charCodeAt(i)) {
 | 
						||
                                case 0x22: /* " */
 | 
						||
                                    this.stateString = false;
 | 
						||
                                    continue scan;
 | 
						||
 | 
						||
                                case 0x5C: /* \ */
 | 
						||
                                    this.stateStringEscape = true;
 | 
						||
                            }
 | 
						||
                        }
 | 
						||
                    }
 | 
						||
 | 
						||
                    break;
 | 
						||
                }
 | 
						||
 | 
						||
                switch (chunk.charCodeAt(i)) {
 | 
						||
                    case 0x22: /* " */
 | 
						||
                        this.stateString = true;
 | 
						||
                        this.stateStringEscape = false;
 | 
						||
                        break;
 | 
						||
 | 
						||
                    case 0x2C: /* , */
 | 
						||
                        flushPoint = i;
 | 
						||
                        break;
 | 
						||
 | 
						||
                    case 0x7B: /* { */
 | 
						||
                        // Open an object
 | 
						||
                        flushPoint = i + 1;
 | 
						||
                        this.stack[this.flushDepth++] = STACK_OBJECT;
 | 
						||
                        break;
 | 
						||
 | 
						||
                    case 0x5B: /* [ */
 | 
						||
                        // Open an array
 | 
						||
                        flushPoint = i + 1;
 | 
						||
                        this.stack[this.flushDepth++] = STACK_ARRAY;
 | 
						||
                        break;
 | 
						||
 | 
						||
                    case 0x5D: /* ] */
 | 
						||
                    case 0x7D: /* } */
 | 
						||
                        // Close an object or array
 | 
						||
                        flushPoint = i + 1;
 | 
						||
                        this.flushDepth--;
 | 
						||
 | 
						||
                        if (this.flushDepth < this.lastFlushDepth) {
 | 
						||
                            this.flush(chunk, lastFlushPoint, flushPoint);
 | 
						||
                            lastFlushPoint = flushPoint;
 | 
						||
                        }
 | 
						||
 | 
						||
                        break;
 | 
						||
 | 
						||
                    case 0x09: /* \t */
 | 
						||
                    case 0x0A: /* \n */
 | 
						||
                    case 0x0D: /* \r */
 | 
						||
                    case 0x20: /* space */
 | 
						||
                        // Move points forward when they points on current position and it's a whitespace
 | 
						||
                        if (lastFlushPoint === i) {
 | 
						||
                            lastFlushPoint++;
 | 
						||
                        }
 | 
						||
 | 
						||
                        if (flushPoint === i) {
 | 
						||
                            flushPoint++;
 | 
						||
                        }
 | 
						||
 | 
						||
                        break;
 | 
						||
                }
 | 
						||
            }
 | 
						||
 | 
						||
            if (flushPoint > lastFlushPoint) {
 | 
						||
                this.flush(chunk, lastFlushPoint, flushPoint);
 | 
						||
            }
 | 
						||
 | 
						||
            // Produce pendingChunk if something left
 | 
						||
            if (flushPoint < chunkLength) {
 | 
						||
                if (this.pendingChunk !== null) {
 | 
						||
                    // When there is already a pending chunk then no flush happened,
 | 
						||
                    // appending entire chunk to pending one
 | 
						||
                    this.pendingChunk += chunk;
 | 
						||
                } else {
 | 
						||
                    // Create a pending chunk, it will start with non-whitespace since
 | 
						||
                    // flushPoint was moved forward away from whitespaces on scan
 | 
						||
                    this.pendingChunk = chunk.slice(flushPoint, chunkLength);
 | 
						||
                }
 | 
						||
            }
 | 
						||
 | 
						||
            this.chunkOffset += chunkLength;
 | 
						||
        }
 | 
						||
 | 
						||
        finish() {
 | 
						||
            if (this.pendingChunk !== null) {
 | 
						||
                this.flush('', 0, 0);
 | 
						||
                this.pendingChunk = null;
 | 
						||
            }
 | 
						||
 | 
						||
            return this.value;
 | 
						||
        }
 | 
						||
    }
 | 
						||
 | 
						||
    var src = {
 | 
						||
        version: version,
 | 
						||
        stringifyInfo: stringifyInfo,
 | 
						||
        stringifyStream: stringifyStreamBrowser,
 | 
						||
        parseChunked: parseChunked
 | 
						||
    };
 | 
						||
 | 
						||
    return src;
 | 
						||
 | 
						||
}));
 |