332 lines
		
	
	
		
			8.3 KiB
		
	
	
	
		
			Haxe
		
	
	
	
	
	
		
		
			
		
	
	
			332 lines
		
	
	
		
			8.3 KiB
		
	
	
	
		
			Haxe
		
	
	
	
	
	
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								/*
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								 * Copyright (C)2005-2019 Haxe Foundation
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								 *
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								 * Permission is hereby granted, free of charge, to any person obtaining a
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								 * copy of this software and associated documentation files (the "Software"),
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								 * to deal in the Software without restriction, including without limitation
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								 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
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								 * and/or sell copies of the Software, and to permit persons to whom the
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								 * Software is furnished to do so, subject to the following conditions:
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								 *
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								 * The above copyright notice and this permission notice shall be included in
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								 * all copies or substantial portions of the Software.
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								 *
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								 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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								 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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								 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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								 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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								 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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								 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
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								 * DEALINGS IN THE SOFTWARE.
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								 */
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								package haxe.io;
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								/**
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									An Input is an abstract reader. See other classes in the `haxe.io` package
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									for several possible implementations.
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									All functions which read data throw `Eof` when the end of the stream
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									is reached.
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								**/
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								class Input {
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									/**
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										Endianness (word byte order) used when reading numbers.
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										If `true`, big-endian is used, otherwise `little-endian` is used.
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									**/
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									public var bigEndian(default, set):Bool;
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									#if cs
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									private var helper:BytesData;
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									#elseif java
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									private var helper:java.nio.ByteBuffer;
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									#end
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									/**
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										Read and return one byte.
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									**/
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									public function readByte():Int {
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										#if cpp
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										throw new haxe.exceptions.NotImplementedException();
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										#else
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										return throw new haxe.exceptions.NotImplementedException();
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										#end
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									}
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									/**
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										Read `len` bytes and write them into `s` to the position specified by `pos`.
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										Returns the actual length of read data that can be smaller than `len`.
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										See `readFullBytes` that tries to read the exact amount of specified bytes.
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									**/
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									public function readBytes(s:Bytes, pos:Int, len:Int):Int {
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										var k = len;
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										var b = #if (js || hl) @:privateAccess s.b #else s.getData() #end;
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										if (pos < 0 || len < 0 || pos + len > s.length)
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											throw Error.OutsideBounds;
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										try {
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											while (k > 0) {
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												#if neko
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												untyped __dollar__sset(b, pos, readByte());
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												#elseif php
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												b.set(pos, readByte());
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												#elseif cpp
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												b[pos] = untyped readByte();
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												#else
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												b[pos] = cast readByte();
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												#end
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												pos++;
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												k--;
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											}
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										} catch (eof:haxe.io.Eof) {}
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										return len - k;
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									}
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									/**
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										Close the input source.
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										Behaviour while reading after calling this method is unspecified.
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									**/
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									public function close():Void {}
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									function set_bigEndian(b:Bool):Bool {
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										bigEndian = b;
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										return b;
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									}
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									/* ------------------ API ------------------ */
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									/**
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										Read and return all available data.
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										The `bufsize` optional argument specifies the size of chunks by
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										which data is read. Its default value is target-specific.
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									**/
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									public function readAll(?bufsize:Int):Bytes {
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										if (bufsize == null)
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											#if php
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											bufsize = 8192; // default value for PHP and max under certain circumstances
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											#else
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											bufsize = (1 << 14); // 16 Ko
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											#end
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										var buf = Bytes.alloc(bufsize);
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										var total = new haxe.io.BytesBuffer();
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										try {
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											while (true) {
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												var len = readBytes(buf, 0, bufsize);
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												if (len == 0)
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													throw Error.Blocked;
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												total.addBytes(buf, 0, len);
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											}
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										} catch (e:Eof) {}
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										return total.getBytes();
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									}
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									/**
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										Read `len` bytes and write them into `s` to the position specified by `pos`.
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										Unlike `readBytes`, this method tries to read the exact `len` amount of bytes.
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									**/
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									public function readFullBytes(s:Bytes, pos:Int, len:Int):Void {
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										while (len > 0) {
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											var k = readBytes(s, pos, len);
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											if (k == 0)
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												throw Error.Blocked;
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											pos += k;
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											len -= k;
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										}
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									}
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									/**
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										Read and return `nbytes` bytes.
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									**/
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									public function read(nbytes:Int):Bytes {
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										var s = Bytes.alloc(nbytes);
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										var p = 0;
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										while (nbytes > 0) {
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											var k = readBytes(s, p, nbytes);
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											if (k == 0)
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												throw Error.Blocked;
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											p += k;
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											nbytes -= k;
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										}
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										return s;
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									}
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									/**
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										Read a string until a character code specified by `end` is occurred.
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										The final character is not included in the resulting string.
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									**/
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									public function readUntil(end:Int):String {
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										var buf = new BytesBuffer();
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										var last:Int;
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										while ((last = readByte()) != end)
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											buf.addByte(last);
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										return buf.getBytes().toString();
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									}
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									/**
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										Read a line of text separated by CR and/or LF bytes.
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										The CR/LF characters are not included in the resulting string.
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									**/
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									public function readLine():String {
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										var buf = new BytesBuffer();
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										var last:Int;
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										var s;
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										try {
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											while ((last = readByte()) != 10)
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												buf.addByte(last);
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											s = buf.getBytes().toString();
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											if (s.charCodeAt(s.length - 1) == 13)
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												s = s.substr(0, -1);
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										} catch (e:Eof) {
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											s = buf.getBytes().toString();
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											if (s.length == 0)
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												#if neko neko.Lib.rethrow #else throw #end (e);
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										}
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										return s;
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									}
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									/**
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										Read a 32-bit floating point number.
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										Endianness is specified by the `bigEndian` property.
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									**/
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									public function readFloat():Float {
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										return FPHelper.i32ToFloat(readInt32());
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									}
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									/**
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										Read a 64-bit double-precision floating point number.
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										Endianness is specified by the `bigEndian` property.
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									**/
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									public function readDouble():Float {
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										var i1 = readInt32();
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										var i2 = readInt32();
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										return bigEndian ? FPHelper.i64ToDouble(i2, i1) : FPHelper.i64ToDouble(i1, i2);
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									}
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									/**
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										Read a 8-bit signed integer.
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									**/
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									public function readInt8():Int {
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										var n = readByte();
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										if (n >= 128)
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											return n - 256;
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										return n;
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									}
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									/**
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										Read a 16-bit signed integer.
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										Endianness is specified by the `bigEndian` property.
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									**/
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									public function readInt16():Int {
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										var ch1 = readByte();
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										var ch2 = readByte();
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										var n = bigEndian ? ch2 | (ch1 << 8) : ch1 | (ch2 << 8);
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										if (n & 0x8000 != 0)
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											return n - 0x10000;
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										return n;
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									}
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									/**
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										Read a 16-bit unsigned integer.
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										Endianness is specified by the `bigEndian` property.
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									**/
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									public function readUInt16():Int {
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										var ch1 = readByte();
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										var ch2 = readByte();
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										return bigEndian ? ch2 | (ch1 << 8) : ch1 | (ch2 << 8);
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									}
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									/**
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										Read a 24-bit signed integer.
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										Endianness is specified by the `bigEndian` property.
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									**/
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									public function readInt24():Int {
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										var ch1 = readByte();
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										var ch2 = readByte();
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										var ch3 = readByte();
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										var n = bigEndian ? ch3 | (ch2 << 8) | (ch1 << 16) : ch1 | (ch2 << 8) | (ch3 << 16);
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										if (n & 0x800000 != 0)
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											return n - 0x1000000;
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										return n;
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									}
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									/**
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										Read a 24-bit unsigned integer.
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										Endianness is specified by the `bigEndian` property.
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									**/
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									public function readUInt24():Int {
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										var ch1 = readByte();
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										var ch2 = readByte();
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										var ch3 = readByte();
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| 
								 | 
							
										return bigEndian ? ch3 | (ch2 << 8) | (ch1 << 16) : ch1 | (ch2 << 8) | (ch3 << 16);
							 | 
						||
| 
								 | 
							
									}
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
									/**
							 | 
						||
| 
								 | 
							
										Read a 32-bit signed integer.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
										Endianness is specified by the `bigEndian` property.
							 | 
						||
| 
								 | 
							
									**/
							 | 
						||
| 
								 | 
							
									public function readInt32():Int {
							 | 
						||
| 
								 | 
							
										var ch1 = readByte();
							 | 
						||
| 
								 | 
							
										var ch2 = readByte();
							 | 
						||
| 
								 | 
							
										var ch3 = readByte();
							 | 
						||
| 
								 | 
							
										var ch4 = readByte();
							 | 
						||
| 
								 | 
							
										#if (php || python)
							 | 
						||
| 
								 | 
							
										// php will overflow integers.  Convert them back to signed 32-bit ints.
							 | 
						||
| 
								 | 
							
										var n = bigEndian ? ch4 | (ch3 << 8) | (ch2 << 16) | (ch1 << 24) : ch1 | (ch2 << 8) | (ch3 << 16) | (ch4 << 24);
							 | 
						||
| 
								 | 
							
										if (n & 0x80000000 != 0)
							 | 
						||
| 
								 | 
							
											return (n | 0x80000000);
							 | 
						||
| 
								 | 
							
										else
							 | 
						||
| 
								 | 
							
											return n;
							 | 
						||
| 
								 | 
							
										#elseif lua
							 | 
						||
| 
								 | 
							
										var n = bigEndian ? ch4 | (ch3 << 8) | (ch2 << 16) | (ch1 << 24) : ch1 | (ch2 << 8) | (ch3 << 16) | (ch4 << 24);
							 | 
						||
| 
								 | 
							
										return lua.Boot.clampInt32(n);
							 | 
						||
| 
								 | 
							
										#else
							 | 
						||
| 
								 | 
							
										return bigEndian ? ch4 | (ch3 << 8) | (ch2 << 16) | (ch1 << 24) : ch1 | (ch2 << 8) | (ch3 << 16) | (ch4 << 24);
							 | 
						||
| 
								 | 
							
										#end
							 | 
						||
| 
								 | 
							
									}
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
									/**
							 | 
						||
| 
								 | 
							
										Read and `len` bytes as a string.
							 | 
						||
| 
								 | 
							
									**/
							 | 
						||
| 
								 | 
							
									public function readString(len:Int, ?encoding:Encoding):String {
							 | 
						||
| 
								 | 
							
										var b = Bytes.alloc(len);
							 | 
						||
| 
								 | 
							
										readFullBytes(b, 0, len);
							 | 
						||
| 
								 | 
							
										#if neko
							 | 
						||
| 
								 | 
							
										return neko.Lib.stringReference(b);
							 | 
						||
| 
								 | 
							
										#else
							 | 
						||
| 
								 | 
							
										return b.getString(0, len, encoding);
							 | 
						||
| 
								 | 
							
										#end
							 | 
						||
| 
								 | 
							
									}
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
									#if neko
							 | 
						||
| 
								 | 
							
									static var _float_of_bytes = neko.Lib.load("std", "float_of_bytes", 2);
							 | 
						||
| 
								 | 
							
									static var _double_of_bytes = neko.Lib.load("std", "double_of_bytes", 2);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
									static function __init__()
							 | 
						||
| 
								 | 
							
										untyped {
							 | 
						||
| 
								 | 
							
											Input.prototype.bigEndian = false;
							 | 
						||
| 
								 | 
							
										}
							 | 
						||
| 
								 | 
							
									#end
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
									#if (flash || js || python)
							 | 
						||
| 
								 | 
							
									function getDoubleSig(bytes:Array<Int>) {
							 | 
						||
| 
								 | 
							
										return (((bytes[1] & 0xF) << 16) | (bytes[2] << 8) | bytes[3]) * 4294967296.
							 | 
						||
| 
								 | 
							
											+ (bytes[4] >> 7) * 2147483648
							 | 
						||
| 
								 | 
							
											+ (((bytes[4] & 0x7F) << 24) | (bytes[5] << 16) | (bytes[6] << 8) | bytes[7]);
							 | 
						||
| 
								 | 
							
									}
							 | 
						||
| 
								 | 
							
									#end
							 | 
						||
| 
								 | 
							
								}
							 |