296 lines
6.2 KiB
C++
296 lines
6.2 KiB
C++
#include "rar.hpp"
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ComprDataIO::ComprDataIO()
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{
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Init();
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}
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void ComprDataIO::Init()
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{
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UnpackFromMemory=false;
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UnpackToMemory=false;
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UnpPackedSize=0;
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ShowProgress=true;
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TestMode=false;
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SkipUnpCRC=false;
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PackVolume=false;
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UnpVolume=false;
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NextVolumeMissing=false;
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SrcFile=NULL;
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DestFile=NULL;
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UnpWrSize=0;
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Command=NULL;
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Encryption=0;
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Decryption=0;
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TotalPackRead=0;
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CurPackRead=CurPackWrite=CurUnpRead=CurUnpWrite=0;
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PackFileCRC=UnpFileCRC=PackedCRC=0xffffffff;
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LastPercent=-1;
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SubHead=NULL;
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SubHeadPos=NULL;
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CurrentCommand=0;
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ProcessedArcSize=TotalArcSize=0;
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}
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int ComprDataIO::UnpRead(byte *Addr,size_t Count)
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{
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int RetCode=0,TotalRead=0;
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byte *ReadAddr;
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ReadAddr=Addr;
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while (Count > 0)
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{
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Archive *SrcArc=(Archive *)SrcFile;
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size_t ReadSize=((int64)Count>UnpPackedSize) ? (size_t)UnpPackedSize:Count;
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if (UnpackFromMemory)
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{
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memcpy(Addr,UnpackFromMemoryAddr,UnpackFromMemorySize);
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RetCode=(int)UnpackFromMemorySize;
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UnpackFromMemorySize=0;
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}
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else
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{
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if (!SrcFile->IsOpened())
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return(-1);
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RetCode=SrcFile->Read(ReadAddr,ReadSize);
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FileHeader *hd=SubHead!=NULL ? SubHead:&SrcArc->NewLhd;
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if (hd->Flags & LHD_SPLIT_AFTER)
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PackedCRC=CRC(PackedCRC,ReadAddr,RetCode);
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}
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CurUnpRead+=RetCode;
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TotalRead+=RetCode;
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#ifndef NOVOLUME
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// These variable are not used in NOVOLUME mode, so it is better
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// to exclude commands below to avoid compiler warnings.
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ReadAddr+=RetCode;
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Count-=RetCode;
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#endif
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UnpPackedSize-=RetCode;
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if (UnpPackedSize == 0 && UnpVolume)
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{
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#ifndef NOVOLUME
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if (!MergeArchive(*SrcArc,this,true,CurrentCommand))
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#endif
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{
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NextVolumeMissing=true;
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return(-1);
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}
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}
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else
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break;
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}
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Archive *SrcArc=(Archive *)SrcFile;
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if (SrcArc!=NULL)
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ShowUnpRead(SrcArc->CurBlockPos+CurUnpRead,UnpArcSize);
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if (RetCode!=-1)
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{
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RetCode=TotalRead;
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#ifndef NOCRYPT
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if (Decryption)
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#ifndef SFX_MODULE
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if (Decryption<20)
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Decrypt.Crypt(Addr,RetCode,(Decryption==15) ? NEW_CRYPT : OLD_DECODE);
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else
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if (Decryption==20)
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for (int I=0;I<RetCode;I+=16)
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Decrypt.DecryptBlock20(&Addr[I]);
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else
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#endif
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{
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int CryptSize=(RetCode & 0xf)==0 ? RetCode:((RetCode & ~0xf)+16);
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Decrypt.DecryptBlock(Addr,CryptSize);
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}
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#endif
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}
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Wait();
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return(RetCode);
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}
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#if defined(RARDLL) && defined(_MSC_VER) && !defined(_M_X64)
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// Disable the run time stack check for unrar.dll, so we can manipulate
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// with ProcessDataProc call type below. Run time check would intercept
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// a wrong ESP before we restore it.
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#pragma runtime_checks( "s", off )
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#endif
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void ComprDataIO::UnpWrite(byte *Addr,size_t Count)
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{
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#ifdef RARDLL
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RAROptions *Cmd=((Archive *)SrcFile)->GetRAROptions();
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if (Cmd->DllOpMode!=RAR_SKIP)
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{
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if (Cmd->Callback!=NULL &&
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Cmd->Callback(UCM_PROCESSDATA,Cmd->UserData,(LPARAM)Addr,Count)==-1)
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ErrHandler.Exit(USER_BREAK);
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if (Cmd->ProcessDataProc!=NULL)
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{
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// Here we preserve ESP value. It is necessary for those developers,
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// who still define ProcessDataProc callback as "C" type function,
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// even though in year 2001 we announced in unrar.dll whatsnew.txt
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// that it will be PASCAL type (for compatibility with Visual Basic).
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#if defined(_MSC_VER)
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#ifndef _M_X64
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__asm mov ebx,esp
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#endif
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#elif defined(_WIN_32) && defined(__BORLANDC__)
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_EBX=_ESP;
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#endif
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int RetCode=Cmd->ProcessDataProc(Addr,(int)Count);
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// Restore ESP after ProcessDataProc with wrongly defined calling
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// convention broken it.
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#if defined(_MSC_VER)
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#ifndef _M_X64
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__asm mov esp,ebx
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#endif
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#elif defined(_WIN_32) && defined(__BORLANDC__)
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_ESP=_EBX;
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#endif
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if (RetCode==0)
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ErrHandler.Exit(USER_BREAK);
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}
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}
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#endif // RARDLL
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UnpWrAddr=Addr;
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UnpWrSize=Count;
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if (UnpackToMemory)
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{
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if (Count <= UnpackToMemorySize)
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{
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memcpy(UnpackToMemoryAddr,Addr,Count);
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UnpackToMemoryAddr+=Count;
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UnpackToMemorySize-=Count;
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}
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}
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else
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if (!TestMode)
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DestFile->Write(Addr,Count);
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CurUnpWrite+=Count;
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if (!SkipUnpCRC)
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#ifndef SFX_MODULE
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if (((Archive *)SrcFile)->OldFormat)
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UnpFileCRC=OldCRC((ushort)UnpFileCRC,Addr,Count);
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else
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#endif
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UnpFileCRC=CRC(UnpFileCRC,Addr,Count);
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ShowUnpWrite();
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Wait();
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}
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#if defined(RARDLL) && defined(_MSC_VER) && !defined(_M_X64)
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// Restore the run time stack check for unrar.dll.
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#pragma runtime_checks( "s", restore )
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#endif
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void ComprDataIO::ShowUnpRead(int64 ArcPos,int64 ArcSize)
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{
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if (ShowProgress && SrcFile!=NULL)
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{
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if (TotalArcSize!=0)
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{
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// important when processing several archives or multivolume archive
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ArcSize=TotalArcSize;
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ArcPos+=ProcessedArcSize;
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}
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Archive *SrcArc=(Archive *)SrcFile;
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RAROptions *Cmd=SrcArc->GetRAROptions();
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int CurPercent=ToPercent(ArcPos,ArcSize);
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if (!Cmd->DisablePercentage && CurPercent!=LastPercent)
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{
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mprintf("\b\b\b\b%3d%%",CurPercent);
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LastPercent=CurPercent;
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}
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}
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}
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void ComprDataIO::ShowUnpWrite()
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{
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}
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void ComprDataIO::SetFiles(File *SrcFile,File *DestFile)
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{
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if (SrcFile!=NULL)
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ComprDataIO::SrcFile=SrcFile;
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if (DestFile!=NULL)
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ComprDataIO::DestFile=DestFile;
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LastPercent=-1;
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}
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void ComprDataIO::GetUnpackedData(byte **Data,size_t *Size)
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{
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*Data=UnpWrAddr;
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*Size=UnpWrSize;
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}
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void ComprDataIO::SetEncryption(int Method,const char *Password,const byte *Salt,bool Encrypt,bool HandsOffHash)
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{
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if (Encrypt)
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{
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Encryption=*Password ? Method:0;
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#ifndef NOCRYPT
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Crypt.SetCryptKeys(Password,Salt,Encrypt,false,HandsOffHash);
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#endif
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}
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else
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{
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Decryption=*Password ? Method:0;
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#ifndef NOCRYPT
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Decrypt.SetCryptKeys(Password,Salt,Encrypt,Method<29,HandsOffHash);
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#endif
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}
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}
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#if !defined(SFX_MODULE) && !defined(NOCRYPT)
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void ComprDataIO::SetAV15Encryption()
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{
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Decryption=15;
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Decrypt.SetAV15Encryption();
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}
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#endif
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#if !defined(SFX_MODULE) && !defined(NOCRYPT)
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void ComprDataIO::SetCmt13Encryption()
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{
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Decryption=13;
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Decrypt.SetCmt13Encryption();
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}
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#endif
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void ComprDataIO::SetUnpackToMemory(byte *Addr,uint Size)
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{
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UnpackToMemory=true;
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UnpackToMemoryAddr=Addr;
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UnpackToMemorySize=Size;
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}
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