forked from KolibriOS/kolibrios
fc4d6ab4af
kfar: updated to 0.14 (warning when deleting) git-svn-id: svn://kolibrios.org@183 a494cfbc-eb01-0410-851d-a64ba20cac60
505 lines
9.8 KiB
PHP
Executable File
505 lines
9.8 KiB
PHP
Executable File
; void __stdcall unpack(void* packed_data, void* unpacked_data);
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unpack:
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pushad
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mov esi, [esp+32+4]
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mov edi, [esp+32+8]
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mov eax, [esi+8]
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and al, 0xC0
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cmp al, 0xC0
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jz .failed
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mov eax, [esi+8]
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push eax
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add esi, 12
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and al, not 0xC0
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dec eax
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jz .lzma
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.failed:
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pop eax
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popad
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ret 8
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.lzma:
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call .lzma_unpack
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.common:
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pop eax
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test al, 0x80
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jnz .ctr1
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test al, 0x40
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jz .ok
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lodsd
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mov ecx, eax
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jecxz .ok
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mov dl, [esi]
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mov esi, [esp+32+8]
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.c1:
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lodsb
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sub al, 0E8h
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cmp al, 1
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ja .c1
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cmp byte [esi], dl
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jnz .c1
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lodsd
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; "bswap eax" is not supported on i386
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shr ax, 8
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ror eax, 16
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xchg al, ah
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sub eax, esi
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add eax, [esp+32+8]
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mov [esi-4], eax
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loop .c1
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.ok:
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popad
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ret 8
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.ctr1:
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lodsd
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mov ecx, eax
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jecxz .ok
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mov dl, [esi]
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mov esi, [esp+32+8]
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.c2:
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lodsb
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@@:
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cmp al, 0xF
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jnz .f
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lodsb
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cmp al, 80h
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jb @b
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cmp al, 90h
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jb @f
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.f:
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sub al, 0E8h
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cmp al, 1
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ja .c2
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@@:
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cmp byte [esi], dl
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jnz .c2
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lodsd
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shr ax, 8
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ror eax, 16
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xchg al, ah
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sub eax, esi
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add eax, [esp+32+8]
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mov [esi-4], eax
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loop .c2
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jmp .ok
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.lzma_unpack:
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.pb = 2 ; pos state bits
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.lp = 0 ; literal pos state bits
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.lc = 3 ; literal context bits
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.posStateMask = ((1 shl .pb)-1)
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.literalPosMask = ((1 shl .lp)-1)
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.kNumPosBitsMax = 4
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.kNumPosStatesMax = (1 shl .kNumPosBitsMax)
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.kLenNumLowBits = 3
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.kLenNumLowSymbols = (1 shl .kLenNumLowBits)
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.kLenNumMidBits = 3
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.kLenNumMidSymbols = (1 shl .kLenNumMidBits)
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.kLenNumHighBits = 8
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.kLenNumHighSymbols = (1 shl .kLenNumHighBits)
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.LenChoice = 0
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.LenChoice2 = 1
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.LenLow = 2
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.LenMid = (.LenLow + (.kNumPosStatesMax shl .kLenNumLowBits))
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.LenHigh = (.LenMid + (.kNumPosStatesMax shl .kLenNumMidBits))
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.kNumLenProbs = (.LenHigh + .kLenNumHighSymbols)
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.kNumStates = 12
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.kNumLitStates = 7
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.kStartPosModelIndex = 4
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.kEndPosModelIndex = 14
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.kNumFullDistances = (1 shl (.kEndPosModelIndex/2))
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.kNumPosSlotBits = 6
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.kNumLenToPosStates = 4
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.kNumAlignBits = 4
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.kAlignTableSize = (1 shl .kNumAlignBits)
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.kMatchMinLen = 2
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.IsMatch = 0
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.IsRep = (.IsMatch + (.kNumStates shl .kNumPosBitsMax))
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.IsRepG0 = (.IsRep + .kNumStates)
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.IsRepG1 = (.IsRepG0 + .kNumStates)
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.IsRepG2 = (.IsRepG1 + .kNumStates)
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.IsRep0Long = (.IsRepG2 + .kNumStates)
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.PosSlot = (.IsRep0Long + (.kNumStates shl .kNumPosBitsMax))
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.SpecPos = (.PosSlot + (.kNumLenToPosStates shl .kNumPosSlotBits))
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.Align_ = (.SpecPos + .kNumFullDistances - .kEndPosModelIndex)
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.Lencoder = (.Align_ + .kAlignTableSize)
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.RepLencoder = (.Lencoder + .kNumLenProbs)
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.Literal = (.RepLencoder + .kNumLenProbs)
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.LZMA_BASE_SIZE = 1846 ; must be ==Literal
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.LZMA_LIT_SIZE = 768
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.kNumTopBits = 24
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.kTopValue = (1 shl .kNumTopBits)
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.kNumBitModelTotalBits = 11
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.kBitModelTotal = (1 shl .kNumBitModelTotalBits)
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.kNumMoveBits = 5
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push edi
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; int state=0;
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xor ebx, ebx
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mov [.previousByte], bl
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; unsigned rep0=1,rep1=1,rep2=1,rep3=1;
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mov eax, 1
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mov edi, .rep0
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stosd
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stosd
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stosd
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stosd
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; int len=0;
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; result=0;
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mov ecx, .Literal + (.LZMA_LIT_SIZE shl (.lc+.lp))
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mov eax, .kBitModelTotal/2
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mov edi, .p
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rep stosd
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; RangeDecoderInit
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; rd->ExtraBytes = 0
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; rd->Buffer = stream
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; rd->BufferLim = stream+bufferSize
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; rd->Range = 0xFFFFFFFF
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pop edi
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mov ebp, [esi-8] ; dest_length
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add ebp, edi ; ebp = destination limit
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lodsd
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; rd->code_ = eax
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mov [.code_], eax
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or [.range], -1
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.main_loop:
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cmp edi, ebp
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jae .main_loop_done
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mov edx, edi
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and edx, .posStateMask
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mov eax, ebx
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shl eax, .kNumPosBitsMax+2
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lea eax, [.p + .IsMatch*4 + eax + edx*4]
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call .RangeDecoderBitDecode
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jc .1
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movzx eax, [.previousByte]
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if .literalPosMask
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mov ah, dl
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and ah, .literalPosMask
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end if
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shr eax, 8-.lc
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imul eax, .LZMA_LIT_SIZE*4
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add eax, .p+.Literal*4
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cmp ebx, .kNumLitStates
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jb .literal
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xor edx, edx
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sub edx, [.rep0]
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mov dl, [edi + edx]
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call .LzmaLiteralDecodeMatch
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jmp @f
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.literal:
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call .LzmaLiteralDecode
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@@:
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mov [.previousByte], al
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stosb
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mov al, bl
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cmp bl, 4
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jb @f
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mov al, 3
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cmp bl, 10
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jb @f
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mov al, 6
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@@: sub bl, al
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jmp .main_loop
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.1:
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lea eax, [.p + .IsRep*4 + ebx*4]
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call .RangeDecoderBitDecode
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jnc .10
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lea eax, [.p + .IsRepG0*4 + ebx*4]
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call .RangeDecoderBitDecode
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jc .111
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mov eax, ebx
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shl eax, .kNumPosBitsMax+2
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lea eax, [.p + .IsRep0Long*4 + eax + edx*4]
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call .RangeDecoderBitDecode
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jc .1101
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cmp bl, 7
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setae bl
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lea ebx, [9 + ebx + ebx]
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xor edx, edx
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sub edx, [.rep0]
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mov al, [edi + edx]
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stosb
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mov [.previousByte], al
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jmp .main_loop
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.111:
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lea eax, [.p + .IsRepG1*4 + ebx*4]
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call .RangeDecoderBitDecode
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mov eax, [.rep1]
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jnc .l3
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.l1:
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lea eax, [.p + .IsRepG2*4 + ebx*4]
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call .RangeDecoderBitDecode
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mov eax, [.rep2]
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jnc .l2
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xchg [.rep3], eax
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.l2:
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push [.rep1]
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pop [.rep2]
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.l3:
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xchg eax, [.rep0]
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mov [.rep1], eax
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.1101:
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mov eax, .p + .RepLencoder*4
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call .LzmaLenDecode
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cmp bl, 7
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setc bl
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adc bl, bl
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xor bl, 3
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add bl, 8
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jmp .repmovsb
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.10:
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mov eax, [.rep0]
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xchg eax, [.rep1]
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xchg eax, [.rep2]
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xchg eax, [.rep3]
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cmp bl, 7
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setc bl
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adc bl, bl
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xor bl, 3
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add bl, 7
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mov eax, .p + .Lencoder*4
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call .LzmaLenDecode
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mov eax, .kNumLenToPosStates-1
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cmp eax, ecx
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jb @f
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mov eax, ecx
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@@:
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push ecx
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mov ecx, .kNumPosSlotBits
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shl eax, cl
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shl eax, 2
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add eax, .p+.PosSlot*4
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call .RangeDecoderBitTreeDecode
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mov [.rep0], ecx
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cmp ecx, .kStartPosModelIndex
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jb .l6
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push ecx
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mov eax, ecx
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and eax, 1
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shr ecx, 1
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or eax, 2
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dec ecx
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shl eax, cl
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mov [.rep0], eax
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pop edx
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cmp edx, .kEndPosModelIndex
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jae .l5
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sub eax, edx
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shl eax, 2
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add eax, .p + (.SpecPos - 1)*4
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call .RangeDecoderReverseBitTreeDecode
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add [.rep0], ecx
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jmp .l6
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.l5:
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sub ecx, .kNumAlignBits
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call .RangeDecoderDecodeDirectBits
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mov ecx, .kNumAlignBits
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shl eax, cl
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add [.rep0], eax
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mov eax, .p+.Align_*4
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call .RangeDecoderReverseBitTreeDecode
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add [.rep0], ecx
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.l6:
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pop ecx
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inc [.rep0]
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jz .main_loop_done
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.repmovsb:
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add ecx, .kMatchMinLen
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push esi
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mov esi, edi
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sub esi, [.rep0]
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rep movsb
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pop esi
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mov al, [edi-1]
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mov [.previousByte], al
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jmp .main_loop
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.main_loop_done:
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ret
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.RangeDecoderBitDecode:
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; in: eax->prob
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; out: CF=bit; destroys eax
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push edx
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mov edx, [.range]
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shr edx, .kNumBitModelTotalBits
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imul edx, [eax]
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cmp [.code_], edx
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jae .ae
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mov [.range], edx
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mov edx, .kBitModelTotal
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sub edx, [eax]
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shr edx, .kNumMoveBits
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add [eax], edx
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clc
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.n:
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lahf
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cmp [.range], .kTopValue
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jae @f
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shl [.range], 8
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shl [.code_], 8
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lodsb
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mov byte [.code_], al
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@@:
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sahf
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pop edx
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ret
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.ae:
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sub [.range], edx
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sub [.code_], edx
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mov edx, [eax]
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shr edx, .kNumMoveBits
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sub [eax], edx
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stc
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jmp .n
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.RangeDecoderDecodeDirectBits:
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; in: ecx=numTotalBits
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; out: eax=result; destroys edx
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xor eax, eax
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.l:
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shr [.range], 1
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shl eax, 1
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mov edx, [.code_]
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sub edx, [.range]
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jb @f
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mov [.code_], edx
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or eax, 1
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@@:
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cmp [.range], .kTopValue
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jae @f
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shl [.range], 8
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shl [.code_], 8
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push eax
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lodsb
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mov byte [.code_], al
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pop eax
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@@:
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loop .l
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ret
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.LzmaLiteralDecode:
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; in: eax->probs
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; out: al=byte; destroys edx
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push ecx
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mov ecx, 1
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@@:
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push eax
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lea eax, [eax+ecx*4]
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call .RangeDecoderBitDecode
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pop eax
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adc cl, cl
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jnc @b
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.LzmaLiteralDecode.ret:
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mov al, cl
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pop ecx
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ret
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.LzmaLiteralDecodeMatch:
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; in: eax->probs, dl=matchByte
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; out: al=byte; destroys edx
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push ecx
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mov ecx, 1
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.LzmaLiteralDecodeMatch.1:
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add dl, dl
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setc ch
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push eax
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lea eax, [eax+ecx*4+0x100*4]
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call .RangeDecoderBitDecode
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pop eax
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adc cl, cl
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jc .LzmaLiteralDecode.ret
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xor ch, cl
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test ch, 1
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mov ch, 0
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jnz @b
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jmp .LzmaLiteralDecodeMatch.1
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.LzmaLenDecode:
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; in: eax->prob, edx=posState
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; out: ecx=len
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push eax
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add eax, .LenChoice*4
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call .RangeDecoderBitDecode
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pop eax
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jnc .0
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push eax
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add eax, .LenChoice2*4
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call .RangeDecoderBitDecode
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pop eax
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jc @f
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mov ecx, .kLenNumMidBits
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shl edx, cl
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lea eax, [eax + .LenMid*4 + edx*4]
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call .RangeDecoderBitTreeDecode
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add ecx, .kLenNumLowSymbols
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ret
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@@:
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add eax, .LenHigh*4
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mov ecx, .kLenNumHighBits
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call .RangeDecoderBitTreeDecode
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add ecx, .kLenNumLowSymbols + .kLenNumMidSymbols
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ret
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.0:
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mov ecx, .kLenNumLowBits
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shl edx, cl
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lea eax, [eax + .LenLow*4 + edx*4]
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.RangeDecoderBitTreeDecode:
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; in: eax->probs,ecx=numLevels
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; out: ecx=length; destroys edx
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push ebx
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mov edx, 1
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mov ebx, edx
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@@:
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push eax
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lea eax, [eax+edx*4]
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call .RangeDecoderBitDecode
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pop eax
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adc dl, dl
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add bl, bl
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loop @b
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sub dl, bl
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pop ebx
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mov ecx, edx
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ret
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.RangeDecoderReverseBitTreeDecode:
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; in: eax->probs,ecx=numLevels
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; out: ecx=length; destroys edx
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push ebx ecx
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mov edx, 1
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xor ebx, ebx
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@@:
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push eax
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lea eax, [eax+edx*4]
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call .RangeDecoderBitDecode
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lahf
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adc edx, edx
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sahf
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rcr ebx, 1
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pop eax
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loop @b
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pop ecx
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rol ebx, cl
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mov ecx, ebx
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pop ebx
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ret
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uglobal
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align 4
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unpack.p rd unpack.LZMA_BASE_SIZE + (unpack.LZMA_LIT_SIZE shl (unpack.lc+unpack.lp))
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unpack.code_ dd ?
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unpack.range dd ?
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unpack.rep0 dd ?
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unpack.rep1 dd ?
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unpack.rep2 dd ?
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unpack.rep3 dd ?
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unpack.previousByte db ?
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endg
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