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6 Commits

7 changed files with 88 additions and 14 deletions

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@ -246,6 +246,12 @@ void GSVertexTraceFMM::FindMinMax(GSVertexTrace& vt, const void* vertex, const u
vt.m_min.t = tmin * s;
vt.m_max.t = tmax * s;
// Clamp the min/max values to the min/max valid UV values
// This is needed in certain cases where buggy GS input results
// in huge floating points values for ST.
vt.m_min.t = vt.m_min.t.min(GSVector4(2047.0f)).max(GSVector4(-2047.0f)).xyxy(vt.m_min.t);
vt.m_max.t = vt.m_max.t.min(GSVector4(2047.0f)).max(GSVector4(-2047.0f)).xyxy(vt.m_max.t);
}
else
{

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@ -10,6 +10,7 @@
#include <ctime>
#include <functional>
#include <memory>
#include <mutex>
#include <optional>
#include <string>

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@ -93,19 +93,19 @@ namespace usb_pad
u8 right_turntable = 0x80;
if (data.left_turntable_ccw > 0)
{
left_turntable -= static_cast<u8>(std::min<int>(data.left_turntable_ccw * turntable_multiplier, 0x7F));
left_turntable -= static_cast<u8>(std::min<int>(data.left_turntable_ccw, 0x7F));
}
else
{
left_turntable += static_cast<u8>(std::min<int>(data.left_turntable_cw * turntable_multiplier, 0x7F));
left_turntable += static_cast<u8>(std::min<int>(data.left_turntable_cw, 0x7F));
}
if (data.right_turntable_ccw > 0)
{
right_turntable -= static_cast<u8>(std::min<int>(data.right_turntable_ccw * turntable_multiplier, 0x7F));
right_turntable -= static_cast<u8>(std::min<int>(data.right_turntable_ccw, 0x7F));
}
else
{
right_turntable += static_cast<u8>(std::min<int>(data.right_turntable_cw * turntable_multiplier, 0x7F));
right_turntable += static_cast<u8>(std::min<int>(data.right_turntable_cw, 0x7F));
}
buf[3] = 0x80;
buf[4] = 0x80;
@ -369,19 +369,19 @@ namespace usb_pad
break;
case CID_DJ_LEFT_TURNTABLE_CW:
s->data.left_turntable_cw = static_cast<u32>(std::clamp<long>(std::lroundf(value * 128.0f), 0, 128));
s->data.left_turntable_cw = static_cast<u32>(std::clamp<long>(std::lroundf(value * s->turntable_multiplier * 128.0f), 0, 128));
break;
case CID_DJ_LEFT_TURNTABLE_CCW:
s->data.left_turntable_ccw = static_cast<u32>(std::clamp<long>(std::lroundf(value * 128.0f), 0, 128));
s->data.left_turntable_ccw = static_cast<u32>(std::clamp<long>(std::lroundf(value * s->turntable_multiplier * 128.0f), 0, 128));
break;
case CID_DJ_RIGHT_TURNTABLE_CW:
s->data.right_turntable_cw = static_cast<u32>(std::clamp<long>(std::lroundf(value * 128.0f), 0, 128));
s->data.right_turntable_cw = static_cast<u32>(std::clamp<long>(std::lroundf(value * s->turntable_multiplier * 128.0f), 0, 128));
break;
case CID_DJ_RIGHT_TURNTABLE_CCW:
s->data.right_turntable_ccw = static_cast<u32>(std::clamp<long>(std::lroundf(value * 128.0f), 0, 128));
s->data.right_turntable_ccw = static_cast<u32>(std::clamp<long>(std::lroundf(value * s->turntable_multiplier * 128.0f), 0, 128));
break;
case CID_DJ_DPAD_UP:
@ -446,8 +446,8 @@ namespace usb_pad
{"EffectsKnobRight", TRANSLATE_NOOP("USB", "Effects Knob Right"), nullptr, InputBindingInfo::Type::HalfAxis, CID_DJ_EFFECTSKNOB_RIGHT, GenericInputBinding::RightStickRight},
{"LeftTurntableCW", TRANSLATE_NOOP("USB", "Left Turntable Clockwise"), nullptr, InputBindingInfo::Type::HalfAxis, CID_DJ_LEFT_TURNTABLE_CW, GenericInputBinding::LeftStickRight},
{"LeftTurntableCCW", TRANSLATE_NOOP("USB", "Left Turntable Counterclockwise"), nullptr, InputBindingInfo::Type::HalfAxis, CID_DJ_LEFT_TURNTABLE_CCW, GenericInputBinding::LeftStickLeft},
{"RightTurntableCW", TRANSLATE_NOOP("USB", "Right Turntable Clockwise"), nullptr, InputBindingInfo::Type::HalfAxis, CID_DJ_RIGHT_TURNTABLE_CW, GenericInputBinding::LeftStickDown},
{"RightTurntableCCW", TRANSLATE_NOOP("USB", "Right Turntable Counterclockwise"), nullptr, InputBindingInfo::Type::HalfAxis, CID_DJ_RIGHT_TURNTABLE_CCW, GenericInputBinding::LeftStickUp},
{"RightTurntableCW", TRANSLATE_NOOP("USB", "Right Turntable Clockwise"), nullptr, InputBindingInfo::Type::HalfAxis, CID_DJ_RIGHT_TURNTABLE_CW, GenericInputBinding::LeftStickUp},
{"RightTurntableCCW", TRANSLATE_NOOP("USB", "Right Turntable Counterclockwise"), nullptr, InputBindingInfo::Type::HalfAxis, CID_DJ_RIGHT_TURNTABLE_CCW, GenericInputBinding::LeftStickDown},
{"LeftTurntableGreen", TRANSLATE_NOOP("USB", "Left Turntable Green"), nullptr, InputBindingInfo::Type::Button, CID_DJ_LEFT_GREEN, GenericInputBinding::Unknown},
{"LeftTurntableRed", TRANSLATE_NOOP("USB", "Left Turntable Red"), nullptr, InputBindingInfo::Type::Button, CID_DJ_LEFT_RED, GenericInputBinding::Unknown},
{"LeftTurntableBlue", TRANSLATE_NOOP("USB", "Left Turntable Blue"), nullptr, InputBindingInfo::Type::Button, CID_DJ_LEFT_BLUE, GenericInputBinding::Unknown},
@ -464,8 +464,8 @@ namespace usb_pad
{
static constexpr const SettingInfo info[] = {
{SettingInfo::Type::Float, "TurntableMultiplier", TRANSLATE_NOOP("USB", "Turntable Multiplier"),
TRANSLATE_NOOP("USB", "Apply a multiplier to the turntable"),
"1.00", "0.00", "100.0", "1.0", "%.0fx", nullptr, nullptr, 1.0f}};
TRANSLATE_NOOP("USB", "Apply a sensitivity multiplier to turntable rotation.\nXbox 360 turntables require a 256x multiplier, most other turntables can use the default 1x multiplier."),
"1.00", "0.00", "512.0", "1.0", "%.0fx", nullptr, nullptr, 1.0f}};
return info;
}

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@ -2561,6 +2561,11 @@ void VMManager::InitializeCPUProviders()
CpuMicroVU0.Reserve();
CpuMicroVU1.Reserve();
#else
// Despite not having any VU recompilers on ARM64, therefore no MTVU,
// we still need the thread alive. Otherwise the read and write positions
// of the ring buffer wont match, and various systems in the emulator end up deadlocked.
vu1Thread.Open();
#endif
VifUnpackSSE_Init();
@ -2580,6 +2585,11 @@ void VMManager::ShutdownCPUProviders()
psxRec.Shutdown();
recCpu.Shutdown();
#else
// See the comment in the InitializeCPUProviders for an explaination why we
// still need to manage the MTVU thread.
if(vu1Thread.IsOpen())
vu1Thread.WaitVU();
#endif
}

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@ -1,6 +1,8 @@
// SPDX-FileCopyrightText: 2002-2024 PCSX2 Dev Team
// SPDX-License-Identifier: GPL-3.0
#include "common/Console.h"
#include "MTVU.h"
#include "SaveState.h"
#include "vtlb.h"
@ -13,6 +15,16 @@ void vtlb_DynBackpatchLoadStore(uptr code_address, u32 code_size, u32 guest_pc,
bool SaveStateBase::vuJITFreeze()
{
pxFailRel("Not implemented.");
return false;
if(IsSaving())
vu1Thread.WaitVU();
Console.Warning("recompiler state is stubbed in arm64!");
// HACK!!
// size of microRegInfo structure
std::array<u8,96> empty_data{};
Freeze(empty_data);
Freeze(empty_data);
return true;
}

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@ -1595,6 +1595,14 @@ static void iopRecRecompile(const u32 startpc)
while (1)
{
BASEBLOCK* pblock = PSX_GETBLOCK(i);
if (i != startpc && pblock->GetFnptr() != (uptr)iopJITCompile)
{
// branch = 3
willbranch3 = 1;
s_nEndBlock = i;
break;
}
psxRegs.code = iopMemRead32(i);

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@ -2294,6 +2294,8 @@ static void recRecompile(const u32 startpc)
while (1)
{
BASEBLOCK* pblock = PC_GETBLOCK(i);
// stop before breakpoints
if (isBreakpointNeeded(i) != 0 || isMemcheckNeeded(i) != 0)
{
@ -2311,6 +2313,13 @@ static void recRecompile(const u32 startpc)
eeRecPerfLog.Write("Pagesplit @ %08X : size=%d insts", startpc, (i - startpc) / 4);
break;
}
if (pblock->GetFnptr() != (uptr)JITCompile)
{
willbranch3 = 1;
s_nEndBlock = i;
break;
}
}
//HUH ? PSM ? whut ? THIS IS VIRTUAL ACCESS GOD DAMMIT
@ -2614,6 +2623,34 @@ StartRecomp:
pxAssert((pc - startpc) >> 2 <= 0xffff);
s_pCurBlockEx->size = (pc - startpc) >> 2;
if (HWADDR(pc) <= Ps2MemSize::ExposedRam)
{
BASEBLOCKEX* oldBlock;
int i;
i = recBlocks.LastIndex(HWADDR(pc) - 4);
while ((oldBlock = recBlocks[i--]))
{
if (oldBlock == s_pCurBlockEx)
continue;
if (oldBlock->startpc >= HWADDR(pc))
continue;
if ((oldBlock->startpc + oldBlock->size * 4) <= HWADDR(startpc))
break;
if (memcmp(&recRAMCopy[oldBlock->startpc / 4], PSM(oldBlock->startpc),
oldBlock->size * 4))
{
recClear(startpc, (pc - startpc) / 4);
s_pCurBlockEx = recBlocks.Get(HWADDR(startpc));
pxAssert(s_pCurBlockEx->startpc == HWADDR(startpc));
break;
}
}
memcpy(&recRAMCopy[HWADDR(startpc) / 4], PSM(startpc), pc - startpc);
}
s_pCurBlock->SetFnptr((uptr)recPtr);
if (!(pc & 0x10000000))