// 7zDecode.cpp #include "StdAfx.h" #include "../../Common/LimitedStreams.h" #include "../../Common/LockedStream.h" #include "../../Common/ProgressUtils.h" #include "../../Common/StreamObjects.h" #include "7zDecode.h" namespace NArchive { namespace N7z { static void ConvertFolderItemInfoToBindInfo(const CFolder &folder, CBindInfoEx &bindInfo) { bindInfo.Clear(); int i; for (i = 0; i < folder.BindPairs.Size(); i++) { NCoderMixer::CBindPair bindPair; bindPair.InIndex = (UInt32)folder.BindPairs[i].InIndex; bindPair.OutIndex = (UInt32)folder.BindPairs[i].OutIndex; bindInfo.BindPairs.Add(bindPair); } UInt32 outStreamIndex = 0; for (i = 0; i < folder.Coders.Size(); i++) { NCoderMixer::CCoderStreamsInfo coderStreamsInfo; const CCoderInfo &coderInfo = folder.Coders[i]; coderStreamsInfo.NumInStreams = (UInt32)coderInfo.NumInStreams; coderStreamsInfo.NumOutStreams = (UInt32)coderInfo.NumOutStreams; bindInfo.Coders.Add(coderStreamsInfo); bindInfo.CoderMethodIDs.Add(coderInfo.MethodID); for (UInt32 j = 0; j < coderStreamsInfo.NumOutStreams; j++, outStreamIndex++) if (folder.FindBindPairForOutStream(outStreamIndex) < 0) bindInfo.OutStreams.Add(outStreamIndex); } for (i = 0; i < folder.PackStreams.Size(); i++) bindInfo.InStreams.Add((UInt32)folder.PackStreams[i]); } static bool AreCodersEqual(const NCoderMixer::CCoderStreamsInfo &a1, const NCoderMixer::CCoderStreamsInfo &a2) { return (a1.NumInStreams == a2.NumInStreams) && (a1.NumOutStreams == a2.NumOutStreams); } static bool AreBindPairsEqual(const NCoderMixer::CBindPair &a1, const NCoderMixer::CBindPair &a2) { return (a1.InIndex == a2.InIndex) && (a1.OutIndex == a2.OutIndex); } static bool AreBindInfoExEqual(const CBindInfoEx &a1, const CBindInfoEx &a2) { if (a1.Coders.Size() != a2.Coders.Size()) return false; int i; for (i = 0; i < a1.Coders.Size(); i++) if (!AreCodersEqual(a1.Coders[i], a2.Coders[i])) return false; if (a1.BindPairs.Size() != a2.BindPairs.Size()) return false; for (i = 0; i < a1.BindPairs.Size(); i++) if (!AreBindPairsEqual(a1.BindPairs[i], a2.BindPairs[i])) return false; for (i = 0; i < a1.CoderMethodIDs.Size(); i++) if (a1.CoderMethodIDs[i] != a2.CoderMethodIDs[i]) return false; if (a1.InStreams.Size() != a2.InStreams.Size()) return false; if (a1.OutStreams.Size() != a2.OutStreams.Size()) return false; return true; } CDecoder::CDecoder(bool multiThread) { #ifndef _ST_MODE multiThread = true; #endif _multiThread = multiThread; _bindInfoExPrevIsDefined = false; } HRESULT CDecoder::Decode( DECL_EXTERNAL_CODECS_LOC_VARS IInStream *inStream, UInt64 startPos, const UInt64 *packSizes, const CFolder &folderInfo, ISequentialOutStream *outStream, ICompressProgressInfo *compressProgress #ifndef _NO_CRYPTO , ICryptoGetTextPassword *getTextPassword, bool &passwordIsDefined #endif #if !defined(_7ZIP_ST) && !defined(_SFX) , bool mtMode, UInt32 numThreads #endif ) { if (!folderInfo.CheckStructure()) return E_NOTIMPL; #ifndef _NO_CRYPTO passwordIsDefined = false; #endif CObjectVector< CMyComPtr > inStreams; CLockedInStream lockedInStream; lockedInStream.Init(inStream); for (int j = 0; j < folderInfo.PackStreams.Size(); j++) { CLockedSequentialInStreamImp *lockedStreamImpSpec = new CLockedSequentialInStreamImp; CMyComPtr lockedStreamImp = lockedStreamImpSpec; lockedStreamImpSpec->Init(&lockedInStream, startPos); startPos += packSizes[j]; CLimitedSequentialInStream *streamSpec = new CLimitedSequentialInStream; CMyComPtr inStream = streamSpec; streamSpec->SetStream(lockedStreamImp); streamSpec->Init(packSizes[j]); inStreams.Add(inStream); } int numCoders = folderInfo.Coders.Size(); CBindInfoEx bindInfo; ConvertFolderItemInfoToBindInfo(folderInfo, bindInfo); bool createNewCoders; if (!_bindInfoExPrevIsDefined) createNewCoders = true; else createNewCoders = !AreBindInfoExEqual(bindInfo, _bindInfoExPrev); if (createNewCoders) { int i; _decoders.Clear(); // _decoders2.Clear(); _mixerCoder.Release(); if (_multiThread) { _mixerCoderMTSpec = new NCoderMixer::CCoderMixer2MT; _mixerCoder = _mixerCoderMTSpec; _mixerCoderCommon = _mixerCoderMTSpec; } else { #ifdef _ST_MODE _mixerCoderSTSpec = new NCoderMixer::CCoderMixer2ST; _mixerCoder = _mixerCoderSTSpec; _mixerCoderCommon = _mixerCoderSTSpec; #endif } RINOK(_mixerCoderCommon->SetBindInfo(bindInfo)); for (i = 0; i < numCoders; i++) { const CCoderInfo &coderInfo = folderInfo.Coders[i]; CMyComPtr decoder; CMyComPtr decoder2; RINOK(CreateCoder( EXTERNAL_CODECS_LOC_VARS coderInfo.MethodID, decoder, decoder2, false)); CMyComPtr decoderUnknown; if (coderInfo.IsSimpleCoder()) { if (decoder == 0) return E_NOTIMPL; decoderUnknown = (IUnknown *)decoder; if (_multiThread) _mixerCoderMTSpec->AddCoder(decoder); #ifdef _ST_MODE else _mixerCoderSTSpec->AddCoder(decoder, false); #endif } else { if (decoder2 == 0) return E_NOTIMPL; decoderUnknown = (IUnknown *)decoder2; if (_multiThread) _mixerCoderMTSpec->AddCoder2(decoder2); #ifdef _ST_MODE else _mixerCoderSTSpec->AddCoder2(decoder2, false); #endif } _decoders.Add(decoderUnknown); #ifdef EXTERNAL_CODECS CMyComPtr setCompressCodecsInfo; decoderUnknown.QueryInterface(IID_ISetCompressCodecsInfo, (void **)&setCompressCodecsInfo); if (setCompressCodecsInfo) { RINOK(setCompressCodecsInfo->SetCompressCodecsInfo(codecsInfo)); } #endif } _bindInfoExPrev = bindInfo; _bindInfoExPrevIsDefined = true; } int i; _mixerCoderCommon->ReInit(); UInt32 packStreamIndex = 0, unpackStreamIndex = 0; UInt32 coderIndex = 0; // UInt32 coder2Index = 0; for (i = 0; i < numCoders; i++) { const CCoderInfo &coderInfo = folderInfo.Coders[i]; CMyComPtr &decoder = _decoders[coderIndex]; { CMyComPtr setDecoderProperties; decoder.QueryInterface(IID_ICompressSetDecoderProperties2, &setDecoderProperties); if (setDecoderProperties) { const CByteBuffer &props = coderInfo.Props; size_t size = props.GetCapacity(); if (size > 0xFFFFFFFF) return E_NOTIMPL; // if (size > 0) { RINOK(setDecoderProperties->SetDecoderProperties2((const Byte *)props, (UInt32)size)); } } } #if !defined(_7ZIP_ST) && !defined(_SFX) if (mtMode) { CMyComPtr setCoderMt; decoder.QueryInterface(IID_ICompressSetCoderMt, &setCoderMt); if (setCoderMt) { RINOK(setCoderMt->SetNumberOfThreads(numThreads)); } } #endif #ifndef _NO_CRYPTO { CMyComPtr cryptoSetPassword; decoder.QueryInterface(IID_ICryptoSetPassword, &cryptoSetPassword); if (cryptoSetPassword) { if (getTextPassword == 0) return E_FAIL; CMyComBSTR passwordBSTR; RINOK(getTextPassword->CryptoGetTextPassword(&passwordBSTR)); CByteBuffer buffer; passwordIsDefined = true; const UString password(passwordBSTR); const UInt32 sizeInBytes = password.Length() * 2; buffer.SetCapacity(sizeInBytes); for (int i = 0; i < password.Length(); i++) { wchar_t c = password[i]; ((Byte *)buffer)[i * 2] = (Byte)c; ((Byte *)buffer)[i * 2 + 1] = (Byte)(c >> 8); } RINOK(cryptoSetPassword->CryptoSetPassword((const Byte *)buffer, sizeInBytes)); } } #endif coderIndex++; UInt32 numInStreams = (UInt32)coderInfo.NumInStreams; UInt32 numOutStreams = (UInt32)coderInfo.NumOutStreams; CRecordVector packSizesPointers; CRecordVector unpackSizesPointers; packSizesPointers.Reserve(numInStreams); unpackSizesPointers.Reserve(numOutStreams); UInt32 j; for (j = 0; j < numOutStreams; j++, unpackStreamIndex++) unpackSizesPointers.Add(&folderInfo.UnpackSizes[unpackStreamIndex]); for (j = 0; j < numInStreams; j++, packStreamIndex++) { int bindPairIndex = folderInfo.FindBindPairForInStream(packStreamIndex); if (bindPairIndex >= 0) packSizesPointers.Add( &folderInfo.UnpackSizes[(UInt32)folderInfo.BindPairs[bindPairIndex].OutIndex]); else { int index = folderInfo.FindPackStreamArrayIndex(packStreamIndex); if (index < 0) return E_FAIL; packSizesPointers.Add(&packSizes[index]); } } _mixerCoderCommon->SetCoderInfo(i, &packSizesPointers.Front(), &unpackSizesPointers.Front()); } UInt32 mainCoder, temp; bindInfo.FindOutStream(bindInfo.OutStreams[0], mainCoder, temp); if (_multiThread) _mixerCoderMTSpec->SetProgressCoderIndex(mainCoder); /* else _mixerCoderSTSpec->SetProgressCoderIndex(mainCoder);; */ if (numCoders == 0) return 0; CRecordVector inStreamPointers; inStreamPointers.Reserve(inStreams.Size()); for (i = 0; i < inStreams.Size(); i++) inStreamPointers.Add(inStreams[i]); ISequentialOutStream *outStreamPointer = outStream; return _mixerCoder->Code(&inStreamPointers.Front(), NULL, inStreams.Size(), &outStreamPointer, NULL, 1, compressProgress); } }}