283 lines
6.3 KiB
C++
283 lines
6.3 KiB
C++
// Rar3Decoder.h
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// According to unRAR license, this code may not be used to develop
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// a program that creates RAR archives
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/* This code uses Carryless rangecoder (1999): Dmitry Subbotin : Public domain */
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#ifndef __COMPRESS_RAR3_DECODER_H
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#define __COMPRESS_RAR3_DECODER_H
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#include "../../../C/Ppmd7.h"
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#include "../../Common/MyCom.h"
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#include "../ICoder.h"
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#include "../Common/InBuffer.h"
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#include "BitmDecoder.h"
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#include "HuffmanDecoder.h"
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#include "Rar3Vm.h"
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namespace NCompress {
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namespace NRar3 {
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const UInt32 kWindowSize = 1 << 22;
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const UInt32 kWindowMask = (kWindowSize - 1);
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const UInt32 kNumReps = 4;
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const UInt32 kNumLen2Symbols = 8;
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const UInt32 kLenTableSize = 28;
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const UInt32 kMainTableSize = 256 + 1 + 1 + 1 + kNumReps + kNumLen2Symbols + kLenTableSize;
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const UInt32 kDistTableSize = 60;
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const int kNumAlignBits = 4;
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const UInt32 kAlignTableSize = (1 << kNumAlignBits) + 1;
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const UInt32 kLevelTableSize = 20;
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const UInt32 kTablesSizesSum = kMainTableSize + kDistTableSize + kAlignTableSize + kLenTableSize;
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class CBitDecoder
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{
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UInt32 _value;
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unsigned _bitPos;
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public:
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CInBuffer Stream;
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bool Create(UInt32 bufSize) { return Stream.Create(bufSize); }
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void SetStream(ISequentialInStream *inStream) { Stream.SetStream(inStream);}
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void Init()
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{
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Stream.Init();
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_bitPos = 0;
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_value = 0;
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}
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bool ExtraBitsWereRead() const
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{
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return (Stream.NumExtraBytes > 4 || _bitPos < (Stream.NumExtraBytes << 3));
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}
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UInt64 GetProcessedSize() const { return Stream.GetProcessedSize() - (_bitPos >> 3); }
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void AlignToByte()
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{
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_bitPos &= ~(unsigned)7;
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_value = _value & ((1 << _bitPos) - 1);
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}
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UInt32 GetValue(unsigned numBits)
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{
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if (_bitPos < numBits)
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{
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_bitPos += 8;
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_value = (_value << 8) | Stream.ReadByte();
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if (_bitPos < numBits)
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{
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_bitPos += 8;
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_value = (_value << 8) | Stream.ReadByte();
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}
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}
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return _value >> (_bitPos - numBits);
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}
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void MovePos(unsigned numBits)
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{
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_bitPos -= numBits;
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_value = _value & ((1 << _bitPos) - 1);
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}
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UInt32 ReadBits(unsigned numBits)
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{
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UInt32 res = GetValue(numBits);
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MovePos(numBits);
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return res;
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}
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};
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const UInt32 kTopValue = (1 << 24);
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const UInt32 kBot = (1 << 15);
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struct CRangeDecoder
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{
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IPpmd7_RangeDec s;
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UInt32 Range;
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UInt32 Code;
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UInt32 Low;
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CBitDecoder BitDecoder;
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SRes Res;
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public:
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void InitRangeCoder()
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{
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Code = 0;
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Low = 0;
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Range = 0xFFFFFFFF;
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for (int i = 0; i < 4; i++)
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Code = (Code << 8) | BitDecoder.ReadBits(8);
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}
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void Normalize()
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{
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while ((Low ^ (Low + Range)) < kTopValue ||
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Range < kBot && ((Range = (0 - Low) & (kBot - 1)), 1))
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{
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Code = (Code << 8) | BitDecoder.Stream.ReadByte();
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Range <<= 8;
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Low <<= 8;
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}
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}
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CRangeDecoder();
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};
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struct CFilter: public NVm::CProgram
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{
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CRecordVector<Byte> GlobalData;
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UInt32 BlockStart;
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UInt32 BlockSize;
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UInt32 ExecCount;
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CFilter(): BlockStart(0), BlockSize(0), ExecCount(0) {}
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};
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struct CTempFilter: public NVm::CProgramInitState
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{
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UInt32 BlockStart;
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UInt32 BlockSize;
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bool NextWindow;
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UInt32 FilterIndex;
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CTempFilter()
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{
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// all filters must contain at least FixedGlobal block
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AllocateEmptyFixedGlobal();
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}
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};
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const int kNumHuffmanBits = 15;
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class CDecoder:
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public ICompressCoder,
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public ICompressSetDecoderProperties2,
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public CMyUnknownImp
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{
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CRangeDecoder m_InBitStream;
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Byte *_window;
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UInt32 _winPos;
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UInt32 _wrPtr;
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UInt64 _lzSize;
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UInt64 _unpackSize;
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UInt64 _writtenFileSize; // if it's > _unpackSize, then _unpackSize only written
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ISequentialOutStream *_outStream;
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NHuffman::CDecoder<kNumHuffmanBits, kMainTableSize> m_MainDecoder;
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NHuffman::CDecoder<kNumHuffmanBits, kDistTableSize> m_DistDecoder;
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NHuffman::CDecoder<kNumHuffmanBits, kAlignTableSize> m_AlignDecoder;
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NHuffman::CDecoder<kNumHuffmanBits, kLenTableSize> m_LenDecoder;
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NHuffman::CDecoder<kNumHuffmanBits, kLevelTableSize> m_LevelDecoder;
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UInt32 _reps[kNumReps];
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UInt32 _lastLength;
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Byte m_LastLevels[kTablesSizesSum];
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Byte *_vmData;
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Byte *_vmCode;
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NVm::CVm _vm;
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CRecordVector<CFilter *> _filters;
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CRecordVector<CTempFilter *> _tempFilters;
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UInt32 _lastFilter;
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bool m_IsSolid;
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bool _lzMode;
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bool _unsupportedFilter;
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UInt32 PrevAlignBits;
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UInt32 PrevAlignCount;
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bool TablesRead;
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CPpmd7 _ppmd;
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int PpmEscChar;
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bool PpmError;
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HRESULT WriteDataToStream(const Byte *data, UInt32 size);
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HRESULT WriteData(const Byte *data, UInt32 size);
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HRESULT WriteArea(UInt32 startPtr, UInt32 endPtr);
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void ExecuteFilter(int tempFilterIndex, NVm::CBlockRef &outBlockRef);
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HRESULT WriteBuf();
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void InitFilters();
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bool AddVmCode(UInt32 firstByte, UInt32 codeSize);
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bool ReadVmCodeLZ();
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bool ReadVmCodePPM();
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UInt32 ReadBits(int numBits);
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HRESULT InitPPM();
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int DecodePpmSymbol();
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HRESULT DecodePPM(Int32 num, bool &keepDecompressing);
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HRESULT ReadTables(bool &keepDecompressing);
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HRESULT ReadEndOfBlock(bool &keepDecompressing);
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HRESULT DecodeLZ(bool &keepDecompressing);
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HRESULT CodeReal(ICompressProgressInfo *progress);
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bool InputEofError() const { return m_InBitStream.BitDecoder.ExtraBitsWereRead(); }
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bool InputEofError_Fast() const { return (m_InBitStream.BitDecoder.Stream.NumExtraBytes > 2); }
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public:
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CDecoder();
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~CDecoder();
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MY_UNKNOWN_IMP1(ICompressSetDecoderProperties2)
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STDMETHOD(Code)(ISequentialInStream *inStream, ISequentialOutStream *outStream,
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const UInt64 *inSize, const UInt64 *outSize, ICompressProgressInfo *progress);
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STDMETHOD(SetDecoderProperties2)(const Byte *data, UInt32 size);
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void CopyBlock(UInt32 distance, UInt32 len)
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{
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_lzSize += len;
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UInt32 pos = (_winPos - distance - 1) & kWindowMask;
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Byte *window = _window;
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UInt32 winPos = _winPos;
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if (kWindowSize - winPos > len && kWindowSize - pos > len)
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{
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const Byte *src = window + pos;
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Byte *dest = window + winPos;
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_winPos += len;
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do
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*dest++ = *src++;
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while (--len != 0);
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return;
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}
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do
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{
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window[winPos] = window[pos];
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winPos = (winPos + 1) & kWindowMask;
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pos = (pos + 1) & kWindowMask;
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}
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while (--len != 0);
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_winPos = winPos;
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}
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void PutByte(Byte b)
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{
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_window[_winPos] = b;
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_winPos = (_winPos + 1) & kWindowMask;
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_lzSize++;
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}
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};
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}}
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#endif
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