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https://gitlab.winehq.org/wine/wine-gecko.git
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391 lines
10 KiB
C++
391 lines
10 KiB
C++
// Bcj2Coder.cpp
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#include "StdAfx.h"
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#include "../../../C/Alloc.h"
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#include "Bcj2Coder.h"
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namespace NCompress {
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namespace NBcj2 {
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inline bool IsJcc(Byte b0, Byte b1) { return (b0 == 0x0F && (b1 & 0xF0) == 0x80); }
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inline bool IsJ(Byte b0, Byte b1) { return ((b1 & 0xFE) == 0xE8 || IsJcc(b0, b1)); }
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inline unsigned GetIndex(Byte b0, Byte b1) { return ((b1 == 0xE8) ? b0 : ((b1 == 0xE9) ? 256 : 257)); }
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#ifndef EXTRACT_ONLY
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static const int kBufferSize = 1 << 17;
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static bool inline Test86MSByte(Byte b)
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{
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return (b == 0 || b == 0xFF);
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}
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bool CEncoder::Create()
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{
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if (!_mainStream.Create(1 << 18))
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return false;
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if (!_callStream.Create(1 << 18))
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return false;
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if (!_jumpStream.Create(1 << 18))
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return false;
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if (!_rangeEncoder.Create(1 << 20))
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return false;
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if (_buffer == 0)
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{
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_buffer = (Byte *)MidAlloc(kBufferSize);
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if (_buffer == 0)
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return false;
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}
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return true;
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}
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CEncoder::~CEncoder()
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{
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::MidFree(_buffer);
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}
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HRESULT CEncoder::Flush()
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{
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RINOK(_mainStream.Flush());
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RINOK(_callStream.Flush());
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RINOK(_jumpStream.Flush());
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_rangeEncoder.FlushData();
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return _rangeEncoder.FlushStream();
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}
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const UInt32 kDefaultLimit = (1 << 24);
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HRESULT CEncoder::CodeReal(ISequentialInStream **inStreams,
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const UInt64 **inSizes,
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UInt32 numInStreams,
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ISequentialOutStream **outStreams,
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const UInt64 ** /* outSizes */,
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UInt32 numOutStreams,
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ICompressProgressInfo *progress)
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{
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if (numInStreams != 1 || numOutStreams != 4)
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return E_INVALIDARG;
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if (!Create())
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return E_OUTOFMEMORY;
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bool sizeIsDefined = false;
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UInt64 inSize = 0;
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if (inSizes != NULL)
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if (inSizes[0] != NULL)
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{
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inSize = *inSizes[0];
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if (inSize <= kDefaultLimit)
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sizeIsDefined = true;
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}
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ISequentialInStream *inStream = inStreams[0];
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_mainStream.SetStream(outStreams[0]);
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_mainStream.Init();
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_callStream.SetStream(outStreams[1]);
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_callStream.Init();
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_jumpStream.SetStream(outStreams[2]);
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_jumpStream.Init();
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_rangeEncoder.SetStream(outStreams[3]);
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_rangeEncoder.Init();
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for (int i = 0; i < 256 + 2; i++)
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_statusEncoder[i].Init();
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CCoderReleaser releaser(this);
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CMyComPtr<ICompressGetSubStreamSize> getSubStreamSize;
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{
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inStream->QueryInterface(IID_ICompressGetSubStreamSize, (void **)&getSubStreamSize);
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}
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UInt32 nowPos = 0;
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UInt64 nowPos64 = 0;
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UInt32 bufferPos = 0;
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Byte prevByte = 0;
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UInt64 subStreamIndex = 0;
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UInt64 subStreamStartPos = 0;
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UInt64 subStreamEndPos = 0;
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for (;;)
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{
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UInt32 processedSize = 0;
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for (;;)
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{
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UInt32 size = kBufferSize - (bufferPos + processedSize);
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UInt32 processedSizeLoc;
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if (size == 0)
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break;
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RINOK(inStream->Read(_buffer + bufferPos + processedSize, size, &processedSizeLoc));
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if (processedSizeLoc == 0)
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break;
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processedSize += processedSizeLoc;
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}
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UInt32 endPos = bufferPos + processedSize;
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if (endPos < 5)
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{
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// change it
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for (bufferPos = 0; bufferPos < endPos; bufferPos++)
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{
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Byte b = _buffer[bufferPos];
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_mainStream.WriteByte(b);
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UInt32 index;
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if (b == 0xE8)
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index = prevByte;
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else if (b == 0xE9)
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index = 256;
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else if (IsJcc(prevByte, b))
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index = 257;
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else
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{
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prevByte = b;
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continue;
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}
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_statusEncoder[index].Encode(&_rangeEncoder, 0);
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prevByte = b;
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}
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return Flush();
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}
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bufferPos = 0;
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UInt32 limit = endPos - 5;
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while(bufferPos <= limit)
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{
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Byte b = _buffer[bufferPos];
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_mainStream.WriteByte(b);
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if (!IsJ(prevByte, b))
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{
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bufferPos++;
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prevByte = b;
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continue;
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}
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Byte nextByte = _buffer[bufferPos + 4];
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UInt32 src =
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(UInt32(nextByte) << 24) |
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(UInt32(_buffer[bufferPos + 3]) << 16) |
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(UInt32(_buffer[bufferPos + 2]) << 8) |
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(_buffer[bufferPos + 1]);
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UInt32 dest = (nowPos + bufferPos + 5) + src;
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// if (Test86MSByte(nextByte))
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bool convert;
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if (getSubStreamSize != NULL)
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{
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UInt64 currentPos = (nowPos64 + bufferPos);
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while (subStreamEndPos < currentPos)
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{
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UInt64 subStreamSize;
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HRESULT result = getSubStreamSize->GetSubStreamSize(subStreamIndex, &subStreamSize);
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if (result == S_OK)
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{
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subStreamStartPos = subStreamEndPos;
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subStreamEndPos += subStreamSize;
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subStreamIndex++;
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}
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else if (result == S_FALSE || result == E_NOTIMPL)
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{
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getSubStreamSize.Release();
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subStreamStartPos = 0;
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subStreamEndPos = subStreamStartPos - 1;
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}
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else
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return result;
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}
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if (getSubStreamSize == NULL)
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{
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if (sizeIsDefined)
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convert = (dest < inSize);
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else
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convert = Test86MSByte(nextByte);
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}
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else if (subStreamEndPos - subStreamStartPos > kDefaultLimit)
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convert = Test86MSByte(nextByte);
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else
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{
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UInt64 dest64 = (currentPos + 5) + Int64(Int32(src));
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convert = (dest64 >= subStreamStartPos && dest64 < subStreamEndPos);
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}
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}
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else if (sizeIsDefined)
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convert = (dest < inSize);
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else
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convert = Test86MSByte(nextByte);
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unsigned index = GetIndex(prevByte, b);
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if (convert)
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{
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_statusEncoder[index].Encode(&_rangeEncoder, 1);
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bufferPos += 5;
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COutBuffer &s = (b == 0xE8) ? _callStream : _jumpStream;
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for (int i = 24; i >= 0; i -= 8)
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s.WriteByte((Byte)(dest >> i));
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prevByte = nextByte;
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}
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else
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{
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_statusEncoder[index].Encode(&_rangeEncoder, 0);
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bufferPos++;
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prevByte = b;
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}
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}
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nowPos += bufferPos;
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nowPos64 += bufferPos;
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if (progress != NULL)
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{
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/*
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const UInt64 compressedSize =
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_mainStream.GetProcessedSize() +
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_callStream.GetProcessedSize() +
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_jumpStream.GetProcessedSize() +
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_rangeEncoder.GetProcessedSize();
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*/
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RINOK(progress->SetRatioInfo(&nowPos64, NULL));
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}
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UInt32 i = 0;
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while(bufferPos < endPos)
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_buffer[i++] = _buffer[bufferPos++];
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bufferPos = i;
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}
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}
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STDMETHODIMP CEncoder::Code(ISequentialInStream **inStreams,
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const UInt64 **inSizes,
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UInt32 numInStreams,
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ISequentialOutStream **outStreams,
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const UInt64 **outSizes,
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UInt32 numOutStreams,
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ICompressProgressInfo *progress)
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{
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try
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{
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return CodeReal(inStreams, inSizes, numInStreams,
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outStreams, outSizes,numOutStreams, progress);
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}
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catch(const COutBufferException &e) { return e.ErrorCode; }
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catch(...) { return S_FALSE; }
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}
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#endif
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HRESULT CDecoder::CodeReal(ISequentialInStream **inStreams,
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const UInt64 ** /* inSizes */,
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UInt32 numInStreams,
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ISequentialOutStream **outStreams,
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const UInt64 ** /* outSizes */,
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UInt32 numOutStreams,
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ICompressProgressInfo *progress)
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{
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if (numInStreams != 4 || numOutStreams != 1)
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return E_INVALIDARG;
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if (!_mainInStream.Create(1 << 16))
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return E_OUTOFMEMORY;
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if (!_callStream.Create(1 << 20))
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return E_OUTOFMEMORY;
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if (!_jumpStream.Create(1 << 16))
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return E_OUTOFMEMORY;
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if (!_rangeDecoder.Create(1 << 20))
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return E_OUTOFMEMORY;
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if (!_outStream.Create(1 << 16))
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return E_OUTOFMEMORY;
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_mainInStream.SetStream(inStreams[0]);
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_callStream.SetStream(inStreams[1]);
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_jumpStream.SetStream(inStreams[2]);
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_rangeDecoder.SetStream(inStreams[3]);
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_outStream.SetStream(outStreams[0]);
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_mainInStream.Init();
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_callStream.Init();
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_jumpStream.Init();
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_rangeDecoder.Init();
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_outStream.Init();
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for (int i = 0; i < 256 + 2; i++)
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_statusDecoder[i].Init();
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CCoderReleaser releaser(this);
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Byte prevByte = 0;
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UInt32 processedBytes = 0;
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for (;;)
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{
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if (processedBytes >= (1 << 20) && progress != NULL)
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{
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/*
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const UInt64 compressedSize =
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_mainInStream.GetProcessedSize() +
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_callStream.GetProcessedSize() +
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_jumpStream.GetProcessedSize() +
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_rangeDecoder.GetProcessedSize();
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*/
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const UInt64 nowPos64 = _outStream.GetProcessedSize();
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RINOK(progress->SetRatioInfo(NULL, &nowPos64));
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processedBytes = 0;
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}
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UInt32 i;
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Byte b = 0;
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const UInt32 kBurstSize = (1 << 18);
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for (i = 0; i < kBurstSize; i++)
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{
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if (!_mainInStream.ReadByte(b))
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return Flush();
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_outStream.WriteByte(b);
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if (IsJ(prevByte, b))
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break;
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prevByte = b;
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}
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processedBytes += i;
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if (i == kBurstSize)
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continue;
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unsigned index = GetIndex(prevByte, b);
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if (_statusDecoder[index].Decode(&_rangeDecoder) == 1)
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{
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UInt32 src = 0;
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CInBuffer &s = (b == 0xE8) ? _callStream : _jumpStream;
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for (int i = 0; i < 4; i++)
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{
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Byte b0;
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if(!s.ReadByte(b0))
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return S_FALSE;
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src <<= 8;
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src |= ((UInt32)b0);
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}
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UInt32 dest = src - (UInt32(_outStream.GetProcessedSize()) + 4) ;
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_outStream.WriteByte((Byte)(dest));
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_outStream.WriteByte((Byte)(dest >> 8));
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_outStream.WriteByte((Byte)(dest >> 16));
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_outStream.WriteByte((Byte)(dest >> 24));
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prevByte = (Byte)(dest >> 24);
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processedBytes += 4;
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}
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else
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prevByte = b;
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}
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}
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STDMETHODIMP CDecoder::Code(ISequentialInStream **inStreams,
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const UInt64 **inSizes,
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UInt32 numInStreams,
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ISequentialOutStream **outStreams,
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const UInt64 **outSizes,
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UInt32 numOutStreams,
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ICompressProgressInfo *progress)
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{
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try
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{
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return CodeReal(inStreams, inSizes, numInStreams,
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outStreams, outSizes,numOutStreams, progress);
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}
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catch(const CInBufferException &e) { return e.ErrorCode; }
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catch(const COutBufferException &e) { return e.ErrorCode; }
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catch(...) { return S_FALSE; }
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}
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}}
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