mirror of
https://github.com/hashcat/hashcat.git
synced 2024-12-23 07:08:19 +00:00
380 lines
8.4 KiB
C++
380 lines
8.4 KiB
C++
#include "rar.hpp"
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void Unpack::CopyString20(uint Length,uint Distance)
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{
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LastDist=OldDist[OldDistPtr++]=Distance;
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OldDistPtr = OldDistPtr & 3; // Needed if RAR 1.5 file is called after RAR 2.0.
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LastLength=Length;
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DestUnpSize-=Length;
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CopyString(Length,Distance);
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}
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void Unpack::Unpack20(bool Solid)
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{
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static unsigned char LDecode[]={0,1,2,3,4,5,6,7,8,10,12,14,16,20,24,28,32,40,48,56,64,80,96,112,128,160,192,224};
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static unsigned char LBits[]= {0,0,0,0,0,0,0,0,1, 1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3, 4, 4, 4, 4, 5, 5, 5, 5};
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static uint DDecode[]={0,1,2,3,4,6,8,12,16,24,32,48,64,96,128,192,256,384,512,768,1024,1536,2048,3072,4096,6144,8192,12288,16384,24576,32768U,49152U,65536,98304,131072,196608,262144,327680,393216,458752,524288,589824,655360,720896,786432,851968,917504,983040};
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static unsigned char DBits[]= {0,0,0,0,1,1,2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8, 8, 9, 9, 10, 10, 11, 11, 12, 12, 13, 13, 14, 14, 15, 15, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16};
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static unsigned char SDDecode[]={0,4,8,16,32,64,128,192};
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static unsigned char SDBits[]= {2,2,3, 4, 5, 6, 6, 6};
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uint Bits;
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if (Suspended)
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UnpPtr=WrPtr;
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else
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{
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UnpInitData(Solid);
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if (!UnpReadBuf())
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return;
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if ((!Solid || !TablesRead2) && !ReadTables20())
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return;
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--DestUnpSize;
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}
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while (DestUnpSize>=0)
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{
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UnpPtr&=MaxWinMask;
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if (Inp.InAddr>ReadTop-30)
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if (!UnpReadBuf())
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break;
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if (((WrPtr-UnpPtr) & MaxWinMask)<270 && WrPtr!=UnpPtr)
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{
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UnpWriteBuf20();
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if (Suspended)
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return;
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}
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if (UnpAudioBlock)
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{
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uint AudioNumber=DecodeNumber(Inp,&MD[UnpCurChannel]);
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if (AudioNumber==256)
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{
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if (!ReadTables20())
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break;
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continue;
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}
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Window[UnpPtr++]=DecodeAudio((int)AudioNumber);
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if (++UnpCurChannel==UnpChannels)
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UnpCurChannel=0;
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--DestUnpSize;
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continue;
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}
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uint Number=DecodeNumber(Inp,&BlockTables.LD);
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if (Number<256)
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{
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Window[UnpPtr++]=(byte)Number;
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--DestUnpSize;
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continue;
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}
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if (Number>269)
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{
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uint Length=LDecode[Number-=270]+3;
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if ((Bits=LBits[Number])>0)
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{
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Length+=Inp.getbits()>>(16-Bits);
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Inp.addbits(Bits);
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}
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uint DistNumber=DecodeNumber(Inp,&BlockTables.DD);
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uint Distance=DDecode[DistNumber]+1;
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if ((Bits=DBits[DistNumber])>0)
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{
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Distance+=Inp.getbits()>>(16-Bits);
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Inp.addbits(Bits);
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}
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if (Distance>=0x2000)
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{
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Length++;
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if (Distance>=0x40000L)
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Length++;
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}
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CopyString20(Length,Distance);
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continue;
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}
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if (Number==269)
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{
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if (!ReadTables20())
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break;
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continue;
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}
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if (Number==256)
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{
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CopyString20(LastLength,LastDist);
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continue;
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}
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if (Number<261)
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{
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uint Distance=OldDist[(OldDistPtr-(Number-256)) & 3];
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uint LengthNumber=DecodeNumber(Inp,&BlockTables.RD);
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uint Length=LDecode[LengthNumber]+2;
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if ((Bits=LBits[LengthNumber])>0)
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{
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Length+=Inp.getbits()>>(16-Bits);
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Inp.addbits(Bits);
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}
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if (Distance>=0x101)
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{
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Length++;
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if (Distance>=0x2000)
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{
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Length++;
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if (Distance>=0x40000)
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Length++;
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}
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}
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CopyString20(Length,Distance);
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continue;
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}
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if (Number<270)
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{
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uint Distance=SDDecode[Number-=261]+1;
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if ((Bits=SDBits[Number])>0)
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{
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Distance+=Inp.getbits()>>(16-Bits);
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Inp.addbits(Bits);
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}
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CopyString20(2,Distance);
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continue;
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}
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}
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ReadLastTables();
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UnpWriteBuf20();
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}
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void Unpack::UnpWriteBuf20()
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{
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if (UnpPtr!=WrPtr)
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UnpSomeRead=true;
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if (UnpPtr<WrPtr)
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{
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UnpIO->UnpWrite(&Window[WrPtr],-(int)WrPtr & MaxWinMask);
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UnpIO->UnpWrite(Window,UnpPtr);
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UnpAllBuf=true;
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}
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else
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UnpIO->UnpWrite(&Window[WrPtr],UnpPtr-WrPtr);
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WrPtr=UnpPtr;
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}
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bool Unpack::ReadTables20()
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{
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byte BitLength[BC20];
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byte Table[MC20*4];
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if (Inp.InAddr>ReadTop-25)
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if (!UnpReadBuf())
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return false;
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uint BitField=Inp.getbits();
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UnpAudioBlock=(BitField & 0x8000)!=0;
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if (!(BitField & 0x4000))
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memset(UnpOldTable20,0,sizeof(UnpOldTable20));
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Inp.addbits(2);
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uint TableSize;
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if (UnpAudioBlock)
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{
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UnpChannels=((BitField>>12) & 3)+1;
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if (UnpCurChannel>=UnpChannels)
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UnpCurChannel=0;
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Inp.addbits(2);
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TableSize=MC20*UnpChannels;
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}
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else
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TableSize=NC20+DC20+RC20;
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for (uint I=0;I<BC20;I++)
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{
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BitLength[I]=(byte)(Inp.getbits() >> 12);
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Inp.addbits(4);
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}
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MakeDecodeTables(BitLength,&BlockTables.BD,BC20);
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for (uint I=0;I<TableSize;)
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{
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if (Inp.InAddr>ReadTop-5)
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if (!UnpReadBuf())
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return false;
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uint Number=DecodeNumber(Inp,&BlockTables.BD);
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if (Number<16)
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{
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Table[I]=(Number+UnpOldTable20[I]) & 0xf;
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I++;
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}
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else
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if (Number==16)
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{
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uint N=(Inp.getbits() >> 14)+3;
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Inp.addbits(2);
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if (I==0)
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return false; // We cannot have "repeat previous" code at the first position.
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else
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while (N-- > 0 && I<TableSize)
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{
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Table[I]=Table[I-1];
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I++;
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}
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}
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else
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{
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uint N;
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if (Number==17)
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{
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N=(Inp.getbits() >> 13)+3;
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Inp.addbits(3);
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}
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else
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{
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N=(Inp.getbits() >> 9)+11;
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Inp.addbits(7);
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}
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while (N-- > 0 && I<TableSize)
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Table[I++]=0;
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}
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}
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TablesRead2=true;
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if (Inp.InAddr>ReadTop)
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return true;
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if (UnpAudioBlock)
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for (uint I=0;I<UnpChannels;I++)
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MakeDecodeTables(&Table[I*MC20],&MD[I],MC20);
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else
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{
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MakeDecodeTables(&Table[0],&BlockTables.LD,NC20);
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MakeDecodeTables(&Table[NC20],&BlockTables.DD,DC20);
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MakeDecodeTables(&Table[NC20+DC20],&BlockTables.RD,RC20);
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}
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memcpy(UnpOldTable20,Table,TableSize);
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return true;
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}
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void Unpack::ReadLastTables()
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{
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if (ReadTop>=Inp.InAddr+5)
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if (UnpAudioBlock)
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{
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if (DecodeNumber(Inp,&MD[UnpCurChannel])==256)
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ReadTables20();
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}
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else
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if (DecodeNumber(Inp,&BlockTables.LD)==269)
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ReadTables20();
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}
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void Unpack::UnpInitData20(int Solid)
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{
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if (!Solid)
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{
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TablesRead2=false;
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UnpAudioBlock=false;
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UnpChannelDelta=0;
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UnpCurChannel=0;
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UnpChannels=1;
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memset(AudV,0,sizeof(AudV));
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memset(UnpOldTable20,0,sizeof(UnpOldTable20));
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memset(MD,0,sizeof(MD));
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}
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}
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byte Unpack::DecodeAudio(int Delta)
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{
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struct AudioVariables *V=&AudV[UnpCurChannel];
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V->ByteCount++;
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V->D4=V->D3;
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V->D3=V->D2;
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V->D2=V->LastDelta-V->D1;
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V->D1=V->LastDelta;
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int PCh=8*V->LastChar+V->K1*V->D1+V->K2*V->D2+V->K3*V->D3+V->K4*V->D4+V->K5*UnpChannelDelta;
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PCh=(PCh>>3) & 0xFF;
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uint Ch=PCh-Delta;
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int D=(signed char)Delta;
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// Left shift of negative value is undefined behavior in C++,
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// so we cast it to unsigned to follow the standard.
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D=(uint)D<<3;
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V->Dif[0]+=abs(D);
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V->Dif[1]+=abs(D-V->D1);
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V->Dif[2]+=abs(D+V->D1);
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V->Dif[3]+=abs(D-V->D2);
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V->Dif[4]+=abs(D+V->D2);
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V->Dif[5]+=abs(D-V->D3);
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V->Dif[6]+=abs(D+V->D3);
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V->Dif[7]+=abs(D-V->D4);
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V->Dif[8]+=abs(D+V->D4);
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V->Dif[9]+=abs(D-UnpChannelDelta);
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V->Dif[10]+=abs(D+UnpChannelDelta);
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UnpChannelDelta=V->LastDelta=(signed char)(Ch-V->LastChar);
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V->LastChar=Ch;
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if ((V->ByteCount & 0x1F)==0)
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{
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uint MinDif=V->Dif[0],NumMinDif=0;
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V->Dif[0]=0;
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for (uint I=1;I<ASIZE(V->Dif);I++)
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{
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if (V->Dif[I]<MinDif)
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{
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MinDif=V->Dif[I];
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NumMinDif=I;
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}
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V->Dif[I]=0;
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}
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switch(NumMinDif)
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{
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case 1:
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if (V->K1>=-16)
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V->K1--;
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break;
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case 2:
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if (V->K1<16)
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V->K1++;
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break;
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case 3:
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if (V->K2>=-16)
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V->K2--;
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break;
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case 4:
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if (V->K2<16)
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V->K2++;
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break;
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case 5:
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if (V->K3>=-16)
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V->K3--;
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break;
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case 6:
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if (V->K3<16)
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V->K3++;
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break;
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case 7:
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if (V->K4>=-16)
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V->K4--;
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break;
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case 8:
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if (V->K4<16)
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V->K4++;
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break;
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case 9:
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if (V->K5>=-16)
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V->K5--;
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break;
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case 10:
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if (V->K5<16)
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V->K5++;
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break;
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}
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}
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return (byte)Ch;
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}
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