RSP: Remove flag to swap vector register endian

This commit is contained in:
zilmar 2023-08-24 07:04:35 +09:30
parent b8fff5d116
commit 0cb43e0c33
9 changed files with 63 additions and 168 deletions

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@ -6,7 +6,7 @@
uint16_t Set_AudioHle = 0, Set_GraphicsHle = 0;
bool GraphicsHle = true, AudioHle, ConditionalMove;
bool DebuggingEnabled = false, Profiling, IndvidualBlock, ShowErrors, AccurateEmulation = false, BreakOnStart = false, LogRDP = false, LogX86Code = false;
bool DebuggingEnabled = false, Profiling, IndvidualBlock, ShowErrors, BreakOnStart = false, LogRDP = false, LogX86Code = false;
void InitializeRspSetting(void)
{
@ -15,7 +15,6 @@ void InitializeRspSetting(void)
Set_AudioHle = FindSystemSettingId("HLE Audio");
RegisterSetting(Set_BreakOnStart, Data_DWORD_General, "Break on Start", NULL, BreakOnStart, NULL);
RegisterSetting(Set_AccurateEmulation, Data_DWORD_General, "Accurate Emulation", NULL, AccurateEmulation, NULL);
RegisterSetting(Set_CPUCore, Data_DWORD_General, "CPU Method", NULL, g_CPUCore, NULL);
RegisterSetting(Set_LogRDP, Data_DWORD_General, "Log RDP", NULL, LogRDP, NULL);
RegisterSetting(Set_LogX86Code, Data_DWORD_General, "Log X86 Code", NULL, LogX86Code, NULL);

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@ -5,4 +5,4 @@ void InitializeRspSetting(void);
extern uint16_t Set_AudioHle, Set_GraphicsHle;
extern bool GraphicsHle, AudioHle, ConditionalMove;
extern bool DebuggingEnabled, Profiling, IndvidualBlock, ShowErrors, AccurateEmulation, BreakOnStart, LogRDP, LogX86Code;
extern bool DebuggingEnabled, Profiling, IndvidualBlock, ShowErrors, BreakOnStart, LogRDP, LogX86Code;

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@ -3,7 +3,6 @@
enum
{
Set_BreakOnStart,
Set_AccurateEmulation,
Set_CPUCore,
Set_LogRDP,
Set_LogX86Code,

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@ -52,44 +52,23 @@ void Build_RSP(void)
SetCPU(g_CPUCore);
g_RSPDebugger->ResetTimerList();
if (AccurateEmulation)
{
EleSpec[0].DW = 0x0706050403020100; // None
EleSpec[1].DW = 0x0706050403020100; // None
EleSpec[2].DW = 0x0606040402020000; // 0q
EleSpec[3].DW = 0x0707050503030101; // 1q
EleSpec[4].DW = 0x0404040400000000; // 0h
EleSpec[5].DW = 0x0505050501010101; // 1h
EleSpec[6].DW = 0x0606060602020202; // 2h
EleSpec[7].DW = 0x0707070703030303; // 3h
EleSpec[8].DW = 0x0000000000000000; // 0
EleSpec[9].DW = 0x0101010101010101; // 1
EleSpec[10].DW = 0x0202020202020202; // 2
EleSpec[11].DW = 0x0303030303030303; // 3
EleSpec[12].DW = 0x0404040404040404; // 4
EleSpec[13].DW = 0x0505050505050505; // 5
EleSpec[14].DW = 0x0606060606060606; // 6
EleSpec[15].DW = 0x0707070707070707; // 7
}
else
{
EleSpec[0].DW = 0x0001020304050607; // None
EleSpec[1].DW = 0x0001020304050607; // None
EleSpec[2].DW = 0x0000020204040606; // 0q
EleSpec[3].DW = 0x0101030305050707; // 1q
EleSpec[4].DW = 0x0000000004040404; // 0h
EleSpec[5].DW = 0x0101010105050505; // 1h
EleSpec[6].DW = 0x0202020206060606; // 2h
EleSpec[7].DW = 0x0303030307070707; // 3h
EleSpec[8].DW = 0x0000000000000000; // 0
EleSpec[9].DW = 0x0101010101010101; // 1
EleSpec[10].DW = 0x0202020202020202; // 2
EleSpec[11].DW = 0x0303030303030303; // 3
EleSpec[12].DW = 0x0404040404040404; // 4
EleSpec[13].DW = 0x0505050505050505; // 5
EleSpec[14].DW = 0x0606060606060606; // 6
EleSpec[15].DW = 0x0707070707070707; // 7
}
EleSpec[0].DW = 0x0001020304050607; // None
EleSpec[1].DW = 0x0001020304050607; // None
EleSpec[2].DW = 0x0000020204040606; // 0q
EleSpec[3].DW = 0x0101030305050707; // 1q
EleSpec[4].DW = 0x0000000004040404; // 0h
EleSpec[5].DW = 0x0101010105050505; // 1h
EleSpec[6].DW = 0x0202020206060606; // 2h
EleSpec[7].DW = 0x0303030307070707; // 3h
EleSpec[8].DW = 0x0000000000000000; // 0
EleSpec[9].DW = 0x0101010101010101; // 1
EleSpec[10].DW = 0x0202020202020202; // 2
EleSpec[11].DW = 0x0303030303030303; // 3
EleSpec[12].DW = 0x0404040404040404; // 4
EleSpec[13].DW = 0x0505050505050505; // 5
EleSpec[14].DW = 0x0606060606060606; // 6
EleSpec[15].DW = 0x0707070707070707; // 7
Indx[0].DW = 0x0001020304050607; // None
Indx[1].DW = 0x0001020304050607; // None
Indx[2].DW = 0x0103050700020406; // 0q
@ -112,10 +91,7 @@ void Build_RSP(void)
for (uint8_t z = 0; z < 8; z++)
{
Indx[i].B[z] = 7 - Indx[i].B[z];
if (!AccurateEmulation)
{
EleSpec[i].B[z] = 7 - EleSpec[i].B[z];
}
EleSpec[i].B[z] = 7 - EleSpec[i].B[z];
}
for (uint8_t z = 0; z < 4; z++)
{

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@ -1959,16 +1959,8 @@ void RSP_Vector_VMOV(void)
{
RSP_ACCUM[i].HW[1] = RSP_Vect[RSPOpC.vt].ue(i, RSPOpC.e);
}
uint8_t Index = (RSPOpC.de & 0x7);
if (AccurateEmulation)
{
RSP_Vect[RSPOpC.vd].u16(Index) = RSP_Vect[RSPOpC.vt].ue(Index, RSPOpC.e);
}
else
{
uint8_t del = EleSpec[RSPOpC.e].B[7 - Index];
RSP_Vect[RSPOpC.vd].u16(7 - Index) = RSP_Vect[RSPOpC.vt].s16(del);
}
uint8_t Index = 7 - (RSPOpC.de & 0x7);
RSP_Vect[RSPOpC.vd].u16(Index) = RSP_Vect[RSPOpC.vt].se(Index, RSPOpC.e);
}
void RSP_Vector_VRSQ(void)
@ -2116,14 +2108,7 @@ void RSP_Vector_VNOOP(void)
void RSP_Opcode_LBV(void)
{
uint32_t Address = (uint32_t)(RSP_GPR[RSPOpC.base].W + (RSPOpC.voffset << 0)) & 0xFFF;
if (AccurateEmulation)
{
RSP_Vect[RSPOpC.rt].s8(RSPOpC.del) = *(RSPInfo.DMEM + (Address ^ 3));
}
else
{
RSP_Vect[RSPOpC.rt].s8(15 - RSPOpC.del) = *(RSPInfo.DMEM + (Address ^ 3));
}
RSP_Vect[RSPOpC.rt].u8((uint8_t)(15 - RSPOpC.del)) = *(RSPInfo.DMEM + (Address ^ 3));
}
void RSP_Opcode_LSV(void)
@ -2132,14 +2117,7 @@ void RSP_Opcode_LSV(void)
uint8_t Length = std::min((uint8_t)2, (uint8_t)(16 - RSPOpC.del));
for (uint8_t i = RSPOpC.del, n = (uint8_t)(Length + RSPOpC.del); i < n; i++, Address++)
{
if (AccurateEmulation)
{
RSP_Vect[RSPOpC.rt].s8(i) = *(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF));
}
else
{
RSP_Vect[RSPOpC.rt].s8(15 - i) = *(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF));
}
RSP_Vect[RSPOpC.rt].u8(15 - i) = *(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF));
}
}
@ -2149,14 +2127,7 @@ void RSP_Opcode_LLV(void)
uint8_t Length = std::min((uint8_t)4, (uint8_t)(16 - RSPOpC.del));
for (uint8_t i = RSPOpC.del, n = (uint8_t)(Length + RSPOpC.del); i < n; i++, Address++)
{
if (AccurateEmulation)
{
RSP_Vect[RSPOpC.rt].s8(i) = *(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF));
}
else
{
RSP_Vect[RSPOpC.rt].s8(15 - i) = *(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF));
}
RSP_Vect[RSPOpC.rt].u8(15 - i) = *(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF));
}
}
@ -2166,14 +2137,7 @@ void RSP_Opcode_LDV(void)
uint8_t Length = std::min((uint8_t)8, (uint8_t)(16 - RSPOpC.del));
for (uint8_t i = RSPOpC.del, n = (uint8_t)(Length + RSPOpC.del); i < n; i++, Address++)
{
if (AccurateEmulation)
{
RSP_Vect[RSPOpC.rt].s8(i) = *(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF));
}
else
{
RSP_Vect[RSPOpC.rt].s8(15 - i) = *(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF));
}
RSP_Vect[RSPOpC.rt].u8(15 - i) = *(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF));
}
}
@ -2183,14 +2147,7 @@ void RSP_Opcode_LQV(void)
uint8_t Length = std::min((uint8_t)(((Address + 0x10) & ~0xF) - Address), (uint8_t)(16 - RSPOpC.del));
for (uint8_t i = RSPOpC.del, n = (uint8_t)(Length + RSPOpC.del); i < n; i++, Address++)
{
if (AccurateEmulation)
{
RSP_Vect[RSPOpC.rt].s8(i) = *(RSPInfo.DMEM + (Address ^ 3));
}
else
{
RSP_Vect[RSPOpC.rt].s8(15 - i) = *(RSPInfo.DMEM + (Address ^ 3));
}
RSP_Vect[RSPOpC.rt].u8(15 - i) = *(RSPInfo.DMEM + (Address ^ 3));
}
}
@ -2201,14 +2158,7 @@ void RSP_Opcode_LRV(void)
Address &= 0xFF0;
for (uint8_t i = Offset; i < 16; i++, Address++)
{
if (AccurateEmulation)
{
RSP_Vect[RSPOpC.rt].s8(i) = *(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF));
}
else
{
RSP_Vect[RSPOpC.rt].s8(15 - i) = *(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF));
}
RSP_Vect[RSPOpC.rt].u8(15 - i) = *(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF));
}
}
@ -2220,41 +2170,34 @@ void RSP_Opcode_LPV(void)
for (uint8_t i = 0; i < 8; i++)
{
if (AccurateEmulation)
{
RSP_Vect[RSPOpC.rt].s16(i) = *(RSPInfo.DMEM + ((Address + ((Offset + i) & 0xF) ^ 3) & 0xFFF)) << 8;
}
else
{
RSP_Vect[RSPOpC.rt].s16(7 - i) = *(RSPInfo.DMEM + ((Address + ((Offset + i) & 0xF) ^ 3) & 0xFFF)) << 8;
}
RSP_Vect[RSPOpC.rt].u16(7 - i) = *(RSPInfo.DMEM + ((Address + ((Offset + i) & 0xF) ^ 3) & 0xFFF)) << 8;
}
}
void RSP_Opcode_LUV(void)
{
uint32_t Address = (uint32_t)(RSP_GPR[RSPOpC.base].W + (RSPOpC.voffset << 3)) & 0xFFF;
RSP_Vect[RSPOpC.rt].s16(7) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].s16(6) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 1) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].s16(5) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 2) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].s16(4) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 3) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].s16(3) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 4) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].s16(2) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 5) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].s16(1) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 6) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].s16(0) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 7) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].u16(7) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].u16(6) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 1) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].u16(5) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 2) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].u16(4) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 3) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].u16(3) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 4) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].u16(2) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 5) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].u16(1) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 6) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].u16(0) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 7) & 0xF) ^ 3) & 0xFFF)) << 7;
}
void RSP_Opcode_LHV(void)
{
uint32_t Address = (uint32_t)(RSP_GPR[RSPOpC.base].W + (RSPOpC.voffset << 4)) & 0xFFF;
RSP_Vect[RSPOpC.rt].s16(7) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].s16(6) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 2) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].s16(5) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 4) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].s16(4) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 6) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].s16(3) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 8) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].s16(2) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 10) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].s16(1) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 12) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].s16(0) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 14) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].u16(7) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].u16(6) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 2) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].u16(5) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 4) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].u16(4) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 6) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].u16(3) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 8) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].u16(2) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 10) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].u16(1) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 12) & 0xF) ^ 3) & 0xFFF)) << 7;
RSP_Vect[RSPOpC.rt].u16(0) = *(RSPInfo.DMEM + ((Address + ((0x10 - RSPOpC.del + 14) & 0xF) ^ 3) & 0xFFF)) << 7;
}
void RSP_Opcode_LFV(void)
@ -2274,7 +2217,7 @@ void RSP_Opcode_LFV(void)
for (uint8_t i = RSPOpC.del, n = (uint8_t)(Length + RSPOpC.del); i < n; i++)
{
RSP_Vect[RSPOpC.rt].s8(15 - i) = Temp.s8(15 - i);
RSP_Vect[RSPOpC.rt].u8(15 - i) = Temp.s8(15 - i);
}
}
@ -2289,8 +2232,8 @@ void RSP_Opcode_LTV(void)
for (uint8_t i = 0; i < Length; i++)
{
uint8_t del = ((8 - (RSPOpC.del >> 1) + i) << 1) & 0xF;
RSP_Vect[RSPOpC.rt + i].s8(15 - del) = *(RSPInfo.DMEM + (Address ^ 3));
RSP_Vect[RSPOpC.rt + i].s8(14 - del) = *(RSPInfo.DMEM + ((Address + 1) ^ 3));
RSP_Vect[RSPOpC.rt + i].u8(15 - del) = *(RSPInfo.DMEM + (Address ^ 3));
RSP_Vect[RSPOpC.rt + i].u8(14 - del) = *(RSPInfo.DMEM + ((Address + 1) ^ 3));
Address += 2;
}
}
@ -2300,7 +2243,7 @@ void RSP_Opcode_LTV(void)
void RSP_Opcode_SBV(void)
{
uint32_t Address = (uint32_t)(RSP_GPR[RSPOpC.base].W + (RSPOpC.voffset << 0)) & 0xFFF;
*(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF)) = RSP_Vect[RSPOpC.rt].s8((uint8_t)(15 - RSPOpC.del));
*(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF)) = RSP_Vect[RSPOpC.rt].u8((uint8_t)(15 - RSPOpC.del));
}
void RSP_Opcode_SSV(void)
@ -2308,7 +2251,7 @@ void RSP_Opcode_SSV(void)
uint32_t Address = (uint32_t)(RSP_GPR[RSPOpC.base].W + (RSPOpC.voffset << 1)) & 0xFFF;
for (uint8_t i = RSPOpC.del, n = (uint8_t)(2 + RSPOpC.del); i < n; i++)
{
*(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF)) = RSP_Vect[RSPOpC.rt].s8(15 - (i & 0xF));
*(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF)) = RSP_Vect[RSPOpC.rt].u8(15 - (i & 0xF));
Address += 1;
}
}
@ -2318,7 +2261,7 @@ void RSP_Opcode_SLV(void)
uint32_t Address = (uint32_t)(RSP_GPR[RSPOpC.base].W + (RSPOpC.voffset << 2)) & 0xFFF;
for (uint8_t i = RSPOpC.del, n = (uint8_t)(4 + RSPOpC.del); i < n; i++)
{
*(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF)) = RSP_Vect[RSPOpC.rt].s8(15 - (i & 0xF));
*(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF)) = RSP_Vect[RSPOpC.rt].u8(15 - (i & 0xF));
Address += 1;
}
}
@ -2328,7 +2271,7 @@ void RSP_Opcode_SDV(void)
uint32_t Address = (uint32_t)(RSP_GPR[RSPOpC.base].W + (RSPOpC.voffset << 3)) & 0xFFF;
for (uint8_t i = RSPOpC.del; i < (8 + RSPOpC.del); i++)
{
*(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF)) = RSP_Vect[RSPOpC.rt].s8(15 - (i & 0xF));
*(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF)) = RSP_Vect[RSPOpC.rt].u8(15 - (i & 0xF));
Address += 1;
}
}
@ -2339,14 +2282,7 @@ void RSP_Opcode_SQV(void)
uint8_t Length = (uint8_t)(((Address + 0x10) & ~0xF) - Address);
for (uint8_t i = RSPOpC.del; i < (Length + RSPOpC.del); i++)
{
if (AccurateEmulation)
{
*(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF)) = RSP_Vect[RSPOpC.rt].s8(i & 0xF);
}
else
{
*(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF)) = RSP_Vect[RSPOpC.rt].s8(15 - (i & 0xF));
}
*(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF)) = RSP_Vect[RSPOpC.rt].u8(15 - (i & 0xF));
Address += 1;
}
}
@ -2359,7 +2295,7 @@ void RSP_Opcode_SRV(void)
Address &= 0xFF0;
for (uint8_t i = RSPOpC.del, n = (uint8_t)(Length + RSPOpC.del); i < n; i++)
{
*(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF)) = RSP_Vect[RSPOpC.rt].s8(15 - ((i + Offset) & 0xF));
*(RSPInfo.DMEM + ((Address ^ 3) & 0xFFF)) = RSP_Vect[RSPOpC.rt].u8(15 - ((i + Offset) & 0xF));
Address += 1;
}
}

View File

@ -12,41 +12,41 @@ RSPVector::RSPVector()
uint16_t & RSPVector::ue(uint8_t Index, uint8_t Element)
{
Index = EleSpec[Element].B[Index];
return ((uint16_t *)&m_Reg)[AccurateEmulation ? 7 - Index : Index];
return ((uint16_t *)&m_Reg)[Index];
}
int16_t & RSPVector::se(uint8_t Index, uint8_t Element)
{
Index = EleSpec[Element].B[Index];
return ((int16_t *)&m_Reg)[AccurateEmulation ? 7 - Index : Index];
return ((int16_t *)&m_Reg)[Index];
}
int8_t & RSPVector::s8(uint8_t Index)
{
return ((int8_t *)&m_Reg)[AccurateEmulation ? 15 - Index : Index];
return ((int8_t *)&m_Reg)[Index];
}
uint8_t & RSPVector::u8(uint8_t Index)
{
return ((uint8_t *)&m_Reg)[AccurateEmulation ? 15 - Index : Index];
return ((uint8_t *)&m_Reg)[Index];
}
int16_t & RSPVector::s16(uint8_t Index)
{
return ((int16_t *)&m_Reg)[AccurateEmulation ? 7 - Index : Index];
return ((int16_t *)&m_Reg)[Index];
}
uint16_t & RSPVector::u16(uint8_t Index)
{
return ((uint16_t *)&m_Reg)[AccurateEmulation ? 7 - Index : Index];
return ((uint16_t *)&m_Reg)[Index];
}
int32_t & RSPVector::s32(uint8_t Index)
{
return ((int32_t *)&m_Reg)[AccurateEmulation ? 3 - Index : Index];
return ((int32_t *)&m_Reg)[Index];
}
uint64_t & RSPVector::u64(uint8_t Index)
{
return m_Reg[AccurateEmulation ? 1 - Index : Index];
return m_Reg[Index];
}

View File

@ -169,7 +169,6 @@ void FixMenuState(void)
CheckMenuItem(hRSPMenu, ID_CPUMETHOD_RECOMPILER, MF_BYCOMMAND | (g_CPUCore == RecompilerCPU ? MFS_CHECKED : MF_UNCHECKED));
CheckMenuItem(hRSPMenu, ID_CPUMETHOD_INTERPT, MF_BYCOMMAND | (g_CPUCore == InterpreterCPU ? MFS_CHECKED : MF_UNCHECKED));
CheckMenuItem(hRSPMenu, ID_BREAKONSTARTOFTASK, MF_BYCOMMAND | (BreakOnStart ? MFS_CHECKED : MF_UNCHECKED));
CheckMenuItem(hRSPMenu, ID_ACCURATEEMULATION, MF_BYCOMMAND | (AccurateEmulation ? MFS_CHECKED : MF_UNCHECKED));
CheckMenuItem(hRSPMenu, ID_LOGRDPCOMMANDS, MF_BYCOMMAND | (LogRDP ? MFS_CHECKED : MF_UNCHECKED));
CheckMenuItem(hRSPMenu, ID_SETTINGS_LOGX86CODE, MF_BYCOMMAND | (LogX86Code ? MFS_CHECKED : MF_UNCHECKED));
CheckMenuItem(hRSPMenu, ID_PROFILING_ON, MF_BYCOMMAND | (Profiling ? MFS_CHECKED : MF_UNCHECKED));
@ -409,17 +408,6 @@ void ProcessMenuItem(int ID)
}
break;
}
case ID_ACCURATEEMULATION:
{
bool Checked = (GetMenuState(hRSPMenu, ID_ACCURATEEMULATION, MF_BYCOMMAND) & MFS_CHECKED) != 0;
CheckMenuItem(hRSPMenu, ID_ACCURATEEMULATION, MF_BYCOMMAND | (Checked ? MFS_UNCHECKED : MFS_CHECKED));
SetSetting(Set_AccurateEmulation, !Checked);
if (DebuggingEnabled)
{
AccurateEmulation = !Checked;
}
break;
}
case ID_LOGRDPCOMMANDS:
{
bool Checked = (GetMenuState(hRSPMenu, ID_LOGRDPCOMMANDS, MF_BYCOMMAND) & MFS_CHECKED) != 0;
@ -659,7 +647,6 @@ EXPORT void EnableDebugging(int Enabled)
if (DebuggingEnabled)
{
BreakOnStart = GetSetting(Set_BreakOnStart) != 0;
AccurateEmulation = GetSetting(Set_AccurateEmulation) != 0;
g_CPUCore = (RSPCpuType)GetSetting(Set_CPUCore);
LogRDP = GetSetting(Set_LogRDP) != 0;
LogX86Code = GetSetting(Set_LogX86Code) != 0;

View File

@ -192,7 +192,6 @@ BEGIN
BEGIN
MENUITEM "Show Compiler Errors", ID_SHOWCOMPILERERRORS
MENUITEM "Break on start of task", ID_BREAKONSTARTOFTASK
MENUITEM "Accurate Emulation", ID_ACCURATEEMULATION
MENUITEM "Log RDP Commands", ID_LOGRDPCOMMANDS
MENUITEM "Log X86 code", ID_SETTINGS_LOGX86CODE
END

View File

@ -37,14 +37,13 @@
#define ID_CPUMETHOD_RECOMPILER 5016
#define ID_CPUMETHOD_INTERPT 5017
#define ID_SETTINGS_LOGX86CODE 5019
#define ID_ACCURATEEMULATION 5020
// Next default values for new objects
//
#ifdef APSTUDIO_INVOKED
#ifndef APSTUDIO_READONLY_SYMBOLS
#define _APS_NEXT_RESOURCE_VALUE 108
#define _APS_NEXT_COMMAND_VALUE 5021
#define _APS_NEXT_COMMAND_VALUE 5020
#define _APS_NEXT_CONTROL_VALUE 1032
#define _APS_NEXT_SYMED_VALUE 101
#endif