mirror of https://github.com/webpack/webpack.git
				
				
				
			
		
			
				
	
	
		
			514 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			JavaScript
		
	
	
	
			
		
		
	
	
			514 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			JavaScript
		
	
	
	
| /*
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| 	MIT License http://www.opensource.org/licenses/mit-license.php
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| */
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| 
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| "use strict";
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| 
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| const memorize = require("../util/memorize");
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| const SerializerMiddleware = require("./SerializerMiddleware");
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| 
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| /** @typedef {import("./types").BufferSerializableType} BufferSerializableType */
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| /** @typedef {import("./types").PrimitiveSerializableType} PrimitiveSerializableType */
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| 
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| /*
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| Format:
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| 
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| File -> Section*
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| 
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| Section -> NullsSection |
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| 					 F64NumbersSection |
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| 					 I32NumbersSection |
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| 					 I8NumbersSection |
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| 					 ShortStringSection |
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| 					 StringSection |
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| 					 BufferSection |
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| 					 BooleanSection |
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| 					 NopSection
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| 
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| 
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| 
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| NullsSection -> NullsSectionHeaderByte
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| F64NumbersSection -> F64NumbersSectionHeaderByte f64*
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| I32NumbersSection -> I32NumbersSectionHeaderByte i32*
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| I8NumbersSection -> I8NumbersSectionHeaderByte i8*
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| ShortStringSection -> ShortStringSectionHeaderByte utf8-byte*
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| StringSection -> StringSectionHeaderByte i32:length utf8-byte*
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| BufferSection -> BufferSectionHeaderByte i32:length byte*
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| BooleanSection -> TrueHeaderByte | FalseHeaderByte
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| NopSection --> NopSectionHeaderByte
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| 
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| ShortStringSectionHeaderByte -> 0b1nnn_nnnn (n:length)
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| 
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| F64NumbersSectionHeaderByte -> 0b001n_nnnn (n:count - 1)
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| I32NumbersSectionHeaderByte -> 0b010n_nnnn (n:count - 1)
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| I8NumbersSectionHeaderByte -> 0b011n_nnnn (n:count - 1)
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| 
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| NullsSectionHeaderByte -> 0b0001_nnnn (n:count - 1)
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| 
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| StringSectionHeaderByte -> 0b0000_1110
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| BufferSectionHeaderByte -> 0b0000_1111
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| NopSectionHeaderByte -> 0b0000_1011
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| FalseHeaderByte -> 0b0000_1100
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| TrueHeaderByte -> 0b0000_1101
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| 
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| RawNumber -> n (n <= 10)
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| 
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| */
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| 
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| const LAZY_HEADER = 0x0b;
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| const TRUE_HEADER = 0x0c;
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| const FALSE_HEADER = 0x0d;
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| const STRING_HEADER = 0x0e;
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| const BUFFER_HEADER = 0x0f;
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| const NULLS_HEADER = 0x10;
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| const I8_HEADER = 0x60;
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| const I32_HEADER = 0x40;
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| const F64_HEADER = 0x20;
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| const SHORT_STRING_HEADER = 0x80;
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| 
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| /** Uplift high-order bits */
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| const NULLS_HEADER_MASK = 0xf0;
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| /** Uplift high-order bits */
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| const NUMBERS_HEADER_MASK = 0xe0;
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| const NUMBERS_COUNT_MASK = 0x1f; // 0b0001_1111
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| const NULLS_COUNT_MASK = 0x0f; // 0b0000_1111
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| const SHORT_STRING_LENGTH_MASK = 0x7f; // 0b0111_1111
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| 
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| const HEADER_SIZE = 1;
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| const I8_SIZE = 1;
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| const I32_SIZE = 4;
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| const F64_SIZE = 8;
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| 
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| const MEASURE_START_OPERATION = Symbol("MEASURE_START_OPERATION");
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| const MEASURE_END_OPERATION = Symbol("MEASURE_END_OPERATION");
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| 
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| const identifyNumber = n => {
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| 	if (n === (n | 0)) {
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| 		if (n <= 127 && n >= -128) return 0;
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| 		if (n <= 2147483647 && n >= -2147483648) return 1;
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| 	}
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| 	return 2;
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| };
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| 
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| /**
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|  * @typedef {PrimitiveSerializableType[]} DeserializedType
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|  * @typedef {BufferSerializableType[]} SerializedType
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|  * @extends {SerializerMiddleware<DeserializedType, SerializedType>}
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|  */
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| class BinaryMiddleware extends SerializerMiddleware {
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| 	/**
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| 	 * @param {DeserializedType} data data
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| 	 * @param {Object} context context object
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| 	 * @returns {SerializedType|Promise<SerializedType>} serialized data
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| 	 */
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| 	serialize(data, context) {
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| 		return this._serialize(data, context);
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| 	}
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| 
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| 	/**
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| 	 * @param {DeserializedType} data data
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| 	 * @param {Object} context context object
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| 	 * @returns {SerializedType} serialized data
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| 	 */
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| 	_serialize(data, context) {
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| 		/** @type {Buffer} */
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| 		let currentBuffer = null;
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| 		let currentPosition = 0;
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| 		/** @type {BufferSerializableType[]} */
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| 		const buffers = [];
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| 		const allocate = (bytesNeeded, exact = false) => {
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| 			if (currentBuffer !== null) {
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| 				if (currentBuffer.length - currentPosition >= bytesNeeded) return;
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| 				flush();
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| 			}
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| 			currentBuffer = Buffer.allocUnsafe(
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| 				exact ? bytesNeeded : Math.max(bytesNeeded, 1024)
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| 			);
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| 		};
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| 		const flush = () => {
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| 			if (currentBuffer !== null) {
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| 				buffers.push(currentBuffer.slice(0, currentPosition));
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| 				currentBuffer = null;
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| 				currentPosition = 0;
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| 			}
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| 		};
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| 		const writeU8 = byte => {
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| 			currentBuffer.writeUInt8(byte, currentPosition++);
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| 		};
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| 		const writeU32 = ui32 => {
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| 			currentBuffer.writeUInt32LE(ui32, currentPosition);
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| 			currentPosition += 4;
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| 		};
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| 		const measureStack = [];
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| 		const measureStart = () => {
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| 			measureStack.push(buffers.length, currentPosition);
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| 		};
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| 		const measureEnd = () => {
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| 			const oldPos = measureStack.pop();
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| 			const buffersIndex = measureStack.pop();
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| 			let size = currentPosition - oldPos;
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| 			for (let i = buffersIndex; i < buffers.length; i++) {
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| 				size += buffers[i].length;
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| 			}
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| 			return size;
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| 		};
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| 		const serializeData = data => {
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| 			for (let i = 0; i < data.length; i++) {
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| 				const thing = data[i];
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| 				switch (typeof thing) {
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| 					case "function": {
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| 						if (!SerializerMiddleware.isLazy(thing))
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| 							throw new Error("Unexpected function " + thing);
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| 						/** @type {SerializedType[0]} */
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| 						const serializedData = SerializerMiddleware.getLazySerializedValue(
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| 							thing
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| 						);
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| 						if (serializedData !== undefined) {
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| 							if (typeof serializedData === "function") {
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| 								flush();
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| 								buffers.push(serializedData);
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| 							} else {
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| 								serializeData(serializedData);
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| 								allocate(5);
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| 								writeU8(LAZY_HEADER);
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| 								writeU32(serializedData.length);
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| 							}
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| 						} else if (SerializerMiddleware.isLazy(thing, this)) {
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| 							/** @type {SerializedType} */
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| 							const data = this._serialize(thing(), context);
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| 							SerializerMiddleware.setLazySerializedValue(thing, data);
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| 							serializeData(data);
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| 							allocate(5);
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| 							writeU8(LAZY_HEADER);
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| 							writeU32(data.length);
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| 						} else {
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| 							flush();
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| 							buffers.push(
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| 								SerializerMiddleware.serializeLazy(thing, data =>
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| 									this._serialize(data, context)
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| 								)
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| 							);
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| 						}
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| 						break;
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| 					}
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| 					case "string": {
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| 						const len = Buffer.byteLength(thing);
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| 						if (len >= 128) {
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| 							allocate(len + HEADER_SIZE + I32_SIZE);
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| 							writeU8(STRING_HEADER);
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| 							writeU32(len);
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| 						} else {
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| 							allocate(len + HEADER_SIZE);
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| 							writeU8(SHORT_STRING_HEADER | len);
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| 						}
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| 						currentBuffer.write(thing, currentPosition);
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| 						currentPosition += len;
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| 						break;
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| 					}
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| 					case "number": {
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| 						const type = identifyNumber(thing);
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| 						if (type === 0 && thing >= 0 && thing <= 10) {
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| 							// shortcut for very small numbers
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| 							allocate(I8_SIZE);
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| 							writeU8(thing);
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| 							break;
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| 						}
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| 						/**
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| 						 * amount of numbers to write
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| 						 * @type {number}
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| 						 */
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| 						let n = 1;
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| 						for (; n < 32 && i + n < data.length; n++) {
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| 							const item = data[i + n];
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| 							if (typeof item !== "number") break;
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| 							if (identifyNumber(item) !== type) break;
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| 						}
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| 						switch (type) {
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| 							case 0:
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| 								allocate(HEADER_SIZE + I8_SIZE * n);
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| 								writeU8(I8_HEADER | (n - 1));
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| 								while (n > 0) {
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| 									currentBuffer.writeInt8(
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| 										/** @type {number} */ (data[i]),
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| 										currentPosition
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| 									);
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| 									currentPosition += I8_SIZE;
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| 									n--;
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| 									i++;
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| 								}
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| 								break;
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| 							case 1:
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| 								allocate(HEADER_SIZE + I32_SIZE * n);
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| 								writeU8(I32_HEADER | (n - 1));
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| 								while (n > 0) {
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| 									currentBuffer.writeInt32LE(
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| 										/** @type {number} */ (data[i]),
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| 										currentPosition
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| 									);
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| 									currentPosition += I32_SIZE;
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| 									n--;
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| 									i++;
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| 								}
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| 								break;
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| 							case 2:
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| 								allocate(HEADER_SIZE + F64_SIZE * n);
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| 								writeU8(F64_HEADER | (n - 1));
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| 								while (n > 0) {
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| 									currentBuffer.writeDoubleLE(
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| 										/** @type {number} */ (data[i]),
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| 										currentPosition
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| 									);
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| 									currentPosition += F64_SIZE;
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| 									n--;
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| 									i++;
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| 								}
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| 								break;
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| 						}
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| 
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| 						i--;
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| 						break;
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| 					}
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| 					case "boolean":
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| 						allocate(HEADER_SIZE);
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| 						writeU8(thing === true ? TRUE_HEADER : FALSE_HEADER);
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| 						break;
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| 					case "object": {
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| 						if (thing === null) {
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| 							let n;
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| 							for (n = 1; n < 16 && i + n < data.length; n++) {
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| 								const item = data[i + n];
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| 								if (item !== null) break;
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| 							}
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| 							allocate(HEADER_SIZE);
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| 							writeU8(NULLS_HEADER | (n - 1));
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| 							i += n - 1;
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| 						} else if (Buffer.isBuffer(thing)) {
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| 							allocate(HEADER_SIZE + I32_SIZE, true);
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| 							writeU8(BUFFER_HEADER);
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| 							writeU32(thing.length);
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| 							flush();
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| 							buffers.push(thing);
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| 						}
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| 						break;
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| 					}
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| 					case "symbol": {
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| 						if (thing === MEASURE_START_OPERATION) {
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| 							measureStart();
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| 						} else if (thing === MEASURE_END_OPERATION) {
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| 							const size = measureEnd();
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| 							allocate(HEADER_SIZE + I32_SIZE);
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| 							writeU8(I32_HEADER);
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| 							currentBuffer.writeInt32LE(size, currentPosition);
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| 							currentPosition += I32_SIZE;
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| 						}
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| 						break;
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| 					}
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| 				}
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| 			}
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| 		};
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| 		serializeData(data);
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| 		flush();
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| 		return buffers;
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| 	}
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| 
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| 	/**
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| 	 * @param {SerializedType} data data
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| 	 * @param {Object} context context object
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| 	 * @returns {DeserializedType|Promise<DeserializedType>} deserialized data
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| 	 */
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| 	deserialize(data, context) {
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| 		return this._deserialize(data, context);
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| 	}
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| 
 | |
| 	/**
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| 	 * @param {SerializedType} data data
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| 	 * @param {Object} context context object
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| 	 * @returns {DeserializedType} deserialized data
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| 	 */
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| 	_deserialize(data, context) {
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| 		let currentDataItem = 0;
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| 		let currentBuffer = data[0];
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| 		let currentIsBuffer = Buffer.isBuffer(currentBuffer);
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| 		let currentPosition = 0;
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| 
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| 		const checkOverflow = () => {
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| 			if (currentPosition >= currentBuffer.length) {
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| 				currentPosition = 0;
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| 				currentDataItem++;
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| 				currentBuffer =
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| 					currentDataItem < data.length ? data[currentDataItem] : null;
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| 				currentIsBuffer = Buffer.isBuffer(currentBuffer);
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| 			}
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| 		};
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| 		const isInCurrentBuffer = n => {
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| 			return currentIsBuffer && n + currentPosition <= currentBuffer.length;
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| 		};
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| 		/**
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| 		 * Reads n bytes
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| 		 * @param {number} n amount of bytes to read
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| 		 * @returns {Buffer} buffer with bytes
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| 		 */
 | |
| 		const read = n => {
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| 			if (!currentIsBuffer) {
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| 				throw new Error(
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| 					currentBuffer === null
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| 						? "Unexpected end of stream"
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| 						: "Unexpected lazy element in stream"
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| 				);
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| 			}
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| 			const rem = currentBuffer.length - currentPosition;
 | |
| 			if (rem < n) {
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| 				return Buffer.concat([read(rem), read(n - rem)]);
 | |
| 			}
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| 			const res = /** @type {Buffer} */ (currentBuffer).slice(
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| 				currentPosition,
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| 				currentPosition + n
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| 			);
 | |
| 			currentPosition += n;
 | |
| 			checkOverflow();
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| 			return res;
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| 		};
 | |
| 		const readU8 = () => {
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| 			if (!currentIsBuffer) {
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| 				throw new Error(
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| 					currentBuffer === null
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| 						? "Unexpected end of stream"
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| 						: "Unexpected lazy element in stream"
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| 				);
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| 			}
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| 			/**
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| 			 * There is no need to check remaining buffer size here
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| 			 * since {@link checkOverflow} guarantees at least one byte remaining
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| 			 */
 | |
| 			const byte = /** @type {Buffer} */ (currentBuffer).readUInt8(
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| 				currentPosition
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| 			);
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| 			currentPosition += I8_SIZE;
 | |
| 			checkOverflow();
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| 			return byte;
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| 		};
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| 		const readU32 = () => {
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| 			return read(I32_SIZE).readUInt32LE(0);
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| 		};
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| 
 | |
| 		/** @type {DeserializedType} */
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| 		const result = [];
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| 		while (currentBuffer !== null) {
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| 			if (typeof currentBuffer === "function") {
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| 				result.push(
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| 					SerializerMiddleware.deserializeLazy(currentBuffer, data =>
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| 						this._deserialize(data, context)
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| 					)
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| 				);
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| 				currentDataItem++;
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| 				currentBuffer =
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| 					currentDataItem < data.length ? data[currentDataItem] : null;
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| 				currentIsBuffer = Buffer.isBuffer(currentBuffer);
 | |
| 				continue;
 | |
| 			}
 | |
| 			const header = readU8();
 | |
| 			switch (header) {
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| 				case LAZY_HEADER: {
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| 					const count = readU32();
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| 					const start = result.length - count;
 | |
| 					const data = /** @type {SerializedType} */ (result.slice(start));
 | |
| 					result.length = start;
 | |
| 					result.push(
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| 						SerializerMiddleware.createLazy(
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| 							memorize(() => this._deserialize(data, context)),
 | |
| 							this,
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| 							undefined,
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| 							data
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| 						)
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| 					);
 | |
| 					break;
 | |
| 				}
 | |
| 				case BUFFER_HEADER: {
 | |
| 					const len = readU32();
 | |
| 					result.push(read(len));
 | |
| 					break;
 | |
| 				}
 | |
| 				case TRUE_HEADER:
 | |
| 					result.push(true);
 | |
| 					break;
 | |
| 				case FALSE_HEADER:
 | |
| 					result.push(false);
 | |
| 					break;
 | |
| 				case STRING_HEADER: {
 | |
| 					const len = readU32();
 | |
| 					const buf = read(len);
 | |
| 					result.push(buf.toString());
 | |
| 					break;
 | |
| 				}
 | |
| 				default:
 | |
| 					if (header <= 10) {
 | |
| 						result.push(header);
 | |
| 					} else if ((header & SHORT_STRING_HEADER) === SHORT_STRING_HEADER) {
 | |
| 						const len = header & SHORT_STRING_LENGTH_MASK;
 | |
| 						const buf = read(len);
 | |
| 						result.push(buf.toString());
 | |
| 					} else if ((header & NUMBERS_HEADER_MASK) === F64_HEADER) {
 | |
| 						const len = (header & NUMBERS_COUNT_MASK) + 1;
 | |
| 						const need = F64_SIZE * len;
 | |
| 						if (isInCurrentBuffer(need)) {
 | |
| 							for (let i = 0; i < len; i++) {
 | |
| 								result.push(currentBuffer.readDoubleLE(currentPosition));
 | |
| 								currentPosition += F64_SIZE;
 | |
| 							}
 | |
| 							checkOverflow();
 | |
| 						} else {
 | |
| 							const buf = read(need);
 | |
| 							for (let i = 0; i < len; i++) {
 | |
| 								result.push(buf.readDoubleLE(i * F64_SIZE));
 | |
| 							}
 | |
| 						}
 | |
| 					} else if ((header & NUMBERS_HEADER_MASK) === I32_HEADER) {
 | |
| 						const len = (header & NUMBERS_COUNT_MASK) + 1;
 | |
| 						const need = I32_SIZE * len;
 | |
| 						if (isInCurrentBuffer(need)) {
 | |
| 							for (let i = 0; i < len; i++) {
 | |
| 								result.push(currentBuffer.readInt32LE(currentPosition));
 | |
| 								currentPosition += I32_SIZE;
 | |
| 							}
 | |
| 							checkOverflow();
 | |
| 						} else {
 | |
| 							const buf = read(need);
 | |
| 							for (let i = 0; i < len; i++) {
 | |
| 								result.push(buf.readInt32LE(i * I32_SIZE));
 | |
| 							}
 | |
| 						}
 | |
| 					} else if ((header & NUMBERS_HEADER_MASK) === I8_HEADER) {
 | |
| 						const len = (header & NUMBERS_COUNT_MASK) + 1;
 | |
| 						const need = I8_SIZE * len;
 | |
| 						if (isInCurrentBuffer(need)) {
 | |
| 							for (let i = 0; i < len; i++) {
 | |
| 								result.push(currentBuffer.readInt8(currentPosition));
 | |
| 								currentPosition += I8_SIZE;
 | |
| 							}
 | |
| 							checkOverflow();
 | |
| 						} else {
 | |
| 							const buf = read(need);
 | |
| 							for (let i = 0; i < len; i++) {
 | |
| 								result.push(buf.readInt8(i * I8_SIZE));
 | |
| 							}
 | |
| 						}
 | |
| 					} else if ((header & NULLS_HEADER_MASK) === NULLS_HEADER) {
 | |
| 						const len = (header & NULLS_COUNT_MASK) + 1;
 | |
| 						for (let i = 0; i < len; i++) {
 | |
| 							result.push(null);
 | |
| 						}
 | |
| 					} else {
 | |
| 						throw new Error(`Unexpected header byte 0x${header.toString(16)}`);
 | |
| 					}
 | |
| 					break;
 | |
| 			}
 | |
| 		}
 | |
| 		return result;
 | |
| 	}
 | |
| }
 | |
| 
 | |
| module.exports = BinaryMiddleware;
 | |
| 
 | |
| module.exports.MEASURE_START_OPERATION = MEASURE_START_OPERATION;
 | |
| module.exports.MEASURE_END_OPERATION = MEASURE_END_OPERATION;
 |