void SseShuffleReg(int Dest, int Source, BYTE Immed) { BYTE x86Command = 0; CPU_Message(" shufps %s, %s, %02X", sse_Name(Dest), sse_Name(Source), Immed); switch (Dest) { case x86_XMM0: x86Command = 0x00; break; case x86_XMM1: x86Command = 0x08; break; case x86_XMM2: x86Command = 0x10; break; case x86_XMM3: x86Command = 0x18; break; case x86_XMM4: x86Command = 0x20; break; case x86_XMM5: x86Command = 0x28; break; case x86_XMM6: x86Command = 0x30; break; case x86_XMM7: x86Command = 0x38; break; } switch (Source) { case x86_XMM0: x86Command += 0x00; break; case x86_XMM1: x86Command += 0x01; break; case x86_XMM2: x86Command += 0x02; break; case x86_XMM3: x86Command += 0x03; break; case x86_XMM4: x86Command += 0x04; break; case x86_XMM5: x86Command += 0x05; break; case x86_XMM6: x86Command += 0x06; break; case x86_XMM7: x86Command += 0x07; break; } PUTDST16(RecompPos,0xC60f); PUTDST8(RecompPos, 0xC0 | x86Command); PUTDST8(RecompPos, Immed); }
void SseMoveAlignedN64MemToReg(int sseReg, int AddrReg) { BYTE x86Command = 0; CPU_Message(" movaps %s, xmmword ptr [Dmem+%s]",sse_Name(sseReg), x86_Name(AddrReg)); switch (sseReg) { case x86_XMM0: x86Command = 0x80; break; case x86_XMM1: x86Command = 0x88; break; case x86_XMM2: x86Command = 0x90; break; case x86_XMM3: x86Command = 0x98; break; case x86_XMM4: x86Command = 0xA0; break; case x86_XMM5: x86Command = 0xA8; break; case x86_XMM6: x86Command = 0xB0; break; case x86_XMM7: x86Command = 0xB8; break; } switch (AddrReg) { case x86_EAX: x86Command += 0x00; break; case x86_EBX: x86Command += 0x03; break; case x86_ECX: x86Command += 0x01; break; case x86_EDX: x86Command += 0x02; break; case x86_ESI: x86Command += 0x06; break; case x86_EDI: x86Command += 0x07; break; case x86_ESP: x86Command += 0x04; break; case x86_EBP: x86Command += 0x05; break; } PUTDST16(RecompPos,0x280f); PUTDST8(RecompPos, x86Command); PUTDSTPTR(RecompPos, RSPInfo.DMEM); }
void MmxCompareGreaterWordRegToReg(int Dest, int Source) { BYTE x86Command = 0; CPU_Message(" pcmpgtw %s, %s", mmx_Name(Dest), mmx_Name(Source)); switch (Dest) { case x86_MM0: x86Command = 0 << 3; break; case x86_MM1: x86Command = 1 << 3; break; case x86_MM2: x86Command = 2 << 3; break; case x86_MM3: x86Command = 3 << 3; break; case x86_MM4: x86Command = 4 << 3; break; case x86_MM5: x86Command = 5 << 3; break; case x86_MM6: x86Command = 6 << 3; break; case x86_MM7: x86Command = 7 << 3; break; } switch (Source) { case x86_MM0: x86Command |= 0; break; case x86_MM1: x86Command |= 1; break; case x86_MM2: x86Command |= 2; break; case x86_MM3: x86Command |= 3; break; case x86_MM4: x86Command |= 4; break; case x86_MM5: x86Command |= 5; break; case x86_MM6: x86Command |= 6; break; case x86_MM7: x86Command |= 7; break; } PUTDST16(RecompPos,0x650f); PUTDST8(RecompPos, 0xC0 | x86Command); }
void SseXorRegToReg(int Dest, int Source) { BYTE x86Command = 0; CPU_Message(" xorps %s, %s", sse_Name(Dest), sse_Name(Source)); switch (Dest) { case x86_XMM0: x86Command = 0x00; break; case x86_XMM1: x86Command = 0x08; break; case x86_XMM2: x86Command = 0x10; break; case x86_XMM3: x86Command = 0x18; break; case x86_XMM4: x86Command = 0x20; break; case x86_XMM5: x86Command = 0x28; break; case x86_XMM6: x86Command = 0x30; break; case x86_XMM7: x86Command = 0x38; break; } switch (Source) { case x86_XMM0: x86Command += 0x00; break; case x86_XMM1: x86Command += 0x01; break; case x86_XMM2: x86Command += 0x02; break; case x86_XMM3: x86Command += 0x03; break; case x86_XMM4: x86Command += 0x04; break; case x86_XMM5: x86Command += 0x05; break; case x86_XMM6: x86Command += 0x06; break; case x86_XMM7: x86Command += 0x07; break; } PUTDST16(RecompPos,0x570f); PUTDST8(RecompPos, 0xC0 | x86Command); }
void MmxUnpackHighWord(int Dest, int Source) { BYTE x86Command = 0; CPU_Message(" punpckhwd %s, %s", mmx_Name(Dest), mmx_Name(Source)); switch (Dest) { case x86_MM0: x86Command = 0 << 3; break; case x86_MM1: x86Command = 1 << 3; break; case x86_MM2: x86Command = 2 << 3; break; case x86_MM3: x86Command = 3 << 3; break; case x86_MM4: x86Command = 4 << 3; break; case x86_MM5: x86Command = 5 << 3; break; case x86_MM6: x86Command = 6 << 3; break; case x86_MM7: x86Command = 7 << 3; break; } switch (Source) { case x86_MM0: x86Command |= 0; break; case x86_MM1: x86Command |= 1; break; case x86_MM2: x86Command |= 2; break; case x86_MM3: x86Command |= 3; break; case x86_MM4: x86Command |= 4; break; case x86_MM5: x86Command |= 5; break; case x86_MM6: x86Command |= 6; break; case x86_MM7: x86Command |= 7; break; } PUTDST16(RecompPos,0x690f); PUTDST8(RecompPos, 0xC0 | x86Command); }
void MmxPsllwImmed(int Dest, BYTE Immed) { BYTE x86Command = 0; CPU_Message(" psllw %s, %i", mmx_Name(Dest), Immed); switch (Dest) { case x86_MM0: x86Command = 0xF0; break; case x86_MM1: x86Command = 0xF1; break; case x86_MM2: x86Command = 0xF2; break; case x86_MM3: x86Command = 0xF3; break; case x86_MM4: x86Command = 0xF4; break; case x86_MM5: x86Command = 0xF5; break; case x86_MM6: x86Command = 0xF6; break; case x86_MM7: x86Command = 0xF7; break; } PUTDST16(RecompPos,0x710f); PUTDST8(RecompPos, x86Command); PUTDST8(RecompPos, Immed); }
void MmxPsrawImmed(int Dest, BYTE Immed) { BYTE x86Command = 0; CPU_Message(" psraw %s, %i", mmx_Name(Dest), Immed); switch (Dest) { case x86_MM0: x86Command = 0xE0; break; case x86_MM1: x86Command = 0xE1; break; case x86_MM2: x86Command = 0xE2; break; case x86_MM3: x86Command = 0xE3; break; case x86_MM4: x86Command = 0xE4; break; case x86_MM5: x86Command = 0xE5; break; case x86_MM6: x86Command = 0xE6; break; case x86_MM7: x86Command = 0xE7; break; } PUTDST16(RecompPos,0x710f); PUTDST8(RecompPos, x86Command); PUTDST8(RecompPos, Immed); }
void fpuLoadControl(void *Variable) { #ifdef USEX64 PUTDST16(RecompPos, 0xB849); PUTDST64(RecompPos, Variable); PUTDST8(RecompPos, 0x41); PUTDST16(RecompPos, 0x28D9); #else PUTDST16(RecompPos, 0x2DD9); PUTDST32(RecompPos, Variable); #endif }
void MmxShuffleMemoryToReg(int Dest, void * Variable, char * VariableName, BYTE Immed) { BYTE x86Command = 0; CPU_Message(" pshufw %s, [%s], %02X", mmx_Name(Dest), VariableName, Immed); switch (Dest) { case x86_MM0: x86Command = 0x05; break; case x86_MM1: x86Command = 0x0D; break; case x86_MM2: x86Command = 0x15; break; case x86_MM3: x86Command = 0x1D; break; case x86_MM4: x86Command = 0x25; break; case x86_MM5: x86Command = 0x2D; break; case x86_MM6: x86Command = 0x35; break; case x86_MM7: x86Command = 0x3D; break; } PUTDST16(RecompPos,0x700f); PUTDST8(RecompPos, x86Command); PUTDSTPTR(RecompPos, Variable); PUTDST8(RecompPos, Immed); }
void MmxPmulhwRegToVariable(int Dest, void * Variable, char * VariableName) { BYTE x86Command = 0; CPU_Message(" pmulhw %s, [%s]", mmx_Name(Dest), VariableName); switch (Dest) { case x86_MM0: x86Command = 0x05; break; case x86_MM1: x86Command = 0x0D; break; case x86_MM2: x86Command = 0x15; break; case x86_MM3: x86Command = 0x1D; break; case x86_MM4: x86Command = 0x25; break; case x86_MM5: x86Command = 0x2D; break; case x86_MM6: x86Command = 0x35; break; case x86_MM7: x86Command = 0x3D; break; } PUTDST16(RecompPos,0xe50f); PUTDST8(RecompPos, x86Command); PUTDSTPTR(RecompPos, Variable); }
void SseMoveAlignedRegToVariable(int sseReg, void *Variable, char *VariableName) { BYTE x86Command = 0; CPU_Message(" movaps xmmword ptr [%s], %s",VariableName, sse_Name(sseReg)); switch (sseReg) { case x86_XMM0: x86Command = 0x05; break; case x86_XMM1: x86Command = 0x0D; break; case x86_XMM2: x86Command = 0x15; break; case x86_XMM3: x86Command = 0x1D; break; case x86_XMM4: x86Command = 0x25; break; case x86_XMM5: x86Command = 0x2D; break; case x86_XMM6: x86Command = 0x35; break; case x86_XMM7: x86Command = 0x3D; break; } PUTDST16(RecompPos,0x290f); PUTDST8(RecompPos, x86Command); PUTDSTPTR(RecompPos, Variable); }
void SseMoveUnalignedVariableToReg(void *Variable, char *VariableName, int sseReg) { BYTE x86Command = 0; CPU_Message(" movups %s, xmmword ptr [%s]",sse_Name(sseReg), VariableName); switch (sseReg) { case x86_XMM0: x86Command = 0x05; break; case x86_XMM1: x86Command = 0x0D; break; case x86_XMM2: x86Command = 0x15; break; case x86_XMM3: x86Command = 0x1D; break; case x86_XMM4: x86Command = 0x25; break; case x86_XMM5: x86Command = 0x2D; break; case x86_XMM6: x86Command = 0x35; break; case x86_XMM7: x86Command = 0x3D; break; } PUTDST16(RecompPos,0x100f); PUTDST8(RecompPos, x86Command); PUTDSTPTR(RecompPos, Variable); }
void MmxMoveQwordVariableToReg(int Dest, void *Variable, char *VariableName) { BYTE x86Command = 0; CPU_Message(" movq %s, qword ptr [%s]",mmx_Name(Dest), VariableName); switch (Dest) { case x86_MM0: x86Command = 0x05; break; case x86_MM1: x86Command = 0x0D; break; case x86_MM2: x86Command = 0x15; break; case x86_MM3: x86Command = 0x1D; break; case x86_MM4: x86Command = 0x25; break; case x86_MM5: x86Command = 0x2D; break; case x86_MM6: x86Command = 0x35; break; case x86_MM7: x86Command = 0x3D; break; } PUTDST16(RecompPos,0x6f0f); PUTDST8(RecompPos, x86Command); PUTDSTPTR(RecompPos, Variable); }