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https://github.com/yuzu-emu/yuzu-android.git
synced 2024-11-23 14:25:38 +01:00
Pica: Unify ugly address translation hacks.
This commit is contained in:
parent
7e210e0229
commit
40f123b7c0
@ -47,7 +47,7 @@ public:
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};
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};
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TextureInfoDockWidget::TextureInfoDockWidget(const Pica::DebugUtils::TextureInfo& info, QWidget* parent)
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TextureInfoDockWidget::TextureInfoDockWidget(const Pica::DebugUtils::TextureInfo& info, QWidget* parent)
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: QDockWidget(tr("Texture 0x%1").arg(info.address, 8, 16, QLatin1Char('0'))),
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: QDockWidget(tr("Texture 0x%1").arg(info.physical_address, 8, 16, QLatin1Char('0'))),
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info(info) {
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info(info) {
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QWidget* main_widget = new QWidget;
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QWidget* main_widget = new QWidget;
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@ -60,7 +60,7 @@ TextureInfoDockWidget::TextureInfoDockWidget(const Pica::DebugUtils::TextureInfo
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phys_address_spinbox->SetBase(16);
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phys_address_spinbox->SetBase(16);
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phys_address_spinbox->SetRange(0, 0xFFFFFFFF);
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phys_address_spinbox->SetRange(0, 0xFFFFFFFF);
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phys_address_spinbox->SetPrefix("0x");
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phys_address_spinbox->SetPrefix("0x");
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phys_address_spinbox->SetValue(info.address);
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phys_address_spinbox->SetValue(info.physical_address);
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connect(phys_address_spinbox, SIGNAL(ValueChanged(qint64)), this, SLOT(OnAddressChanged(qint64)));
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connect(phys_address_spinbox, SIGNAL(ValueChanged(qint64)), this, SLOT(OnAddressChanged(qint64)));
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QComboBox* format_choice = new QComboBox;
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QComboBox* format_choice = new QComboBox;
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@ -125,7 +125,7 @@ TextureInfoDockWidget::TextureInfoDockWidget(const Pica::DebugUtils::TextureInfo
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}
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}
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void TextureInfoDockWidget::OnAddressChanged(qint64 value) {
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void TextureInfoDockWidget::OnAddressChanged(qint64 value) {
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info.address = value;
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info.physical_address = value;
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emit UpdatePixmap(ReloadPixmap());
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emit UpdatePixmap(ReloadPixmap());
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}
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}
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@ -150,7 +150,7 @@ void TextureInfoDockWidget::OnStrideChanged(int value) {
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}
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}
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QPixmap TextureInfoDockWidget::ReloadPixmap() const {
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QPixmap TextureInfoDockWidget::ReloadPixmap() const {
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u8* src = Memory::GetPointer(info.address);
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u8* src = Memory::GetPointer(Pica::PAddrToVAddr(info.physical_address));
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return QPixmap::fromImage(LoadTexture(src, info));
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return QPixmap::fromImage(LoadTexture(src, info));
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}
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}
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@ -199,7 +199,7 @@ void GraphicsFramebufferWidget::OnUpdate()
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auto framebuffer = Pica::registers.framebuffer;
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auto framebuffer = Pica::registers.framebuffer;
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using Framebuffer = decltype(framebuffer);
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using Framebuffer = decltype(framebuffer);
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framebuffer_address = framebuffer.GetColorBufferAddress();
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framebuffer_address = framebuffer.GetColorBufferPhysicalAddress();
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framebuffer_width = framebuffer.GetWidth();
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framebuffer_width = framebuffer.GetWidth();
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framebuffer_height = framebuffer.GetHeight();
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framebuffer_height = framebuffer.GetHeight();
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framebuffer_format = static_cast<Format>(framebuffer.color_format);
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framebuffer_format = static_cast<Format>(framebuffer.color_format);
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@ -224,7 +224,7 @@ void GraphicsFramebufferWidget::OnUpdate()
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case Format::RGBA8:
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case Format::RGBA8:
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{
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{
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QImage decoded_image(framebuffer_width, framebuffer_height, QImage::Format_ARGB32);
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QImage decoded_image(framebuffer_width, framebuffer_height, QImage::Format_ARGB32);
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u32* color_buffer = (u32*)Memory::GetPointer(framebuffer_address);
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u32* color_buffer = (u32*)Memory::GetPointer(Pica::PAddrToVAddr(framebuffer_address));
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for (unsigned y = 0; y < framebuffer_height; ++y) {
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for (unsigned y = 0; y < framebuffer_height; ++y) {
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for (unsigned x = 0; x < framebuffer_width; ++x) {
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for (unsigned x = 0; x < framebuffer_width; ++x) {
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u32 value = *(color_buffer + x + y * framebuffer_width);
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u32 value = *(color_buffer + x + y * framebuffer_width);
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@ -239,7 +239,7 @@ void GraphicsFramebufferWidget::OnUpdate()
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case Format::RGB8:
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case Format::RGB8:
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{
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{
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QImage decoded_image(framebuffer_width, framebuffer_height, QImage::Format_ARGB32);
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QImage decoded_image(framebuffer_width, framebuffer_height, QImage::Format_ARGB32);
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u8* color_buffer = Memory::GetPointer(framebuffer_address);
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u8* color_buffer = Memory::GetPointer(Pica::PAddrToVAddr(framebuffer_address));
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for (unsigned y = 0; y < framebuffer_height; ++y) {
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for (unsigned y = 0; y < framebuffer_height; ++y) {
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for (unsigned x = 0; x < framebuffer_width; ++x) {
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for (unsigned x = 0; x < framebuffer_width; ++x) {
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u8* pixel_pointer = color_buffer + x * 3 + y * 3 * framebuffer_width;
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u8* pixel_pointer = color_buffer + x * 3 + y * 3 * framebuffer_width;
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@ -254,7 +254,7 @@ void GraphicsFramebufferWidget::OnUpdate()
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case Format::RGBA5551:
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case Format::RGBA5551:
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{
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{
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QImage decoded_image(framebuffer_width, framebuffer_height, QImage::Format_ARGB32);
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QImage decoded_image(framebuffer_width, framebuffer_height, QImage::Format_ARGB32);
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u32* color_buffer = (u32*)Memory::GetPointer(framebuffer_address);
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u32* color_buffer = (u32*)Memory::GetPointer(Pica::PAddrToVAddr(framebuffer_address));
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for (unsigned y = 0; y < framebuffer_height; ++y) {
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for (unsigned y = 0; y < framebuffer_height; ++y) {
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for (unsigned x = 0; x < framebuffer_width; ++x) {
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for (unsigned x = 0; x < framebuffer_width; ++x) {
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u16 value = *(u16*)(((u8*)color_buffer) + x * 2 + y * framebuffer_width * 2);
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u16 value = *(u16*)(((u8*)color_buffer) + x * 2 + y * framebuffer_width * 2);
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@ -56,7 +56,7 @@ static inline void WritePicaReg(u32 id, u32 value, u32 mask) {
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g_debug_context->OnEvent(DebugContext::Event::IncomingPrimitiveBatch, nullptr);
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g_debug_context->OnEvent(DebugContext::Event::IncomingPrimitiveBatch, nullptr);
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const auto& attribute_config = registers.vertex_attributes;
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const auto& attribute_config = registers.vertex_attributes;
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const u8* const base_address = Memory::GetPointer(attribute_config.GetBaseAddress());
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const u8* const base_address = Memory::GetPointer(PAddrToVAddr(attribute_config.GetPhysicalBaseAddress()));
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// Information about internal vertex attributes
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// Information about internal vertex attributes
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const u8* vertex_attribute_sources[16];
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const u8* vertex_attribute_sources[16];
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@ -116,7 +116,7 @@ static inline void WritePicaReg(u32 id, u32 value, u32 mask) {
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input.attr[i][comp] = float24::FromFloat32(srcval);
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input.attr[i][comp] = float24::FromFloat32(srcval);
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LOG_TRACE(HW_GPU, "Loaded component %x of attribute %x for vertex %x (index %x) from 0x%08x + 0x%08lx + 0x%04lx: %f",
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LOG_TRACE(HW_GPU, "Loaded component %x of attribute %x for vertex %x (index %x) from 0x%08x + 0x%08lx + 0x%04lx: %f",
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comp, i, vertex, index,
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comp, i, vertex, index,
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attribute_config.GetBaseAddress(),
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PAddrToVAddr(attribute_config.GetPhysicalBaseAddress()),
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vertex_attribute_sources[i] - base_address,
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vertex_attribute_sources[i] - base_address,
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srcdata - vertex_attribute_sources[i],
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srcdata - vertex_attribute_sources[i],
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input.attr[i][comp].ToFloat32());
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input.attr[i][comp].ToFloat32());
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@ -455,7 +455,7 @@ TextureInfo TextureInfo::FromPicaRegister(const Regs::TextureConfig& config,
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const Regs::TextureFormat& format)
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const Regs::TextureFormat& format)
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{
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{
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TextureInfo info;
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TextureInfo info;
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info.address = config.GetPhysicalAddress();
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info.physical_address = config.GetPhysicalAddress();
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info.width = config.width;
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info.width = config.width;
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info.height = config.height;
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info.height = config.height;
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info.format = format;
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info.format = format;
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@ -192,7 +192,7 @@ void OnPicaRegWrite(u32 id, u32 value);
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std::unique_ptr<PicaTrace> FinishPicaTracing();
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std::unique_ptr<PicaTrace> FinishPicaTracing();
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struct TextureInfo {
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struct TextureInfo {
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unsigned int address;
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PAddr physical_address;
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int width;
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int width;
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int height;
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int height;
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int stride;
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int stride;
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@ -127,7 +127,7 @@ struct Regs {
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u32 address;
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u32 address;
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u32 GetPhysicalAddress() const {
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u32 GetPhysicalAddress() const {
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return DecodeAddressRegister(address) - Memory::FCRAM_PADDR + Memory::HEAP_LINEAR_VADDR;
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return DecodeAddressRegister(address);
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}
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}
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// texture1 and texture2 store the texture format directly after the address
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// texture1 and texture2 store the texture format directly after the address
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@ -317,11 +317,11 @@ struct Regs {
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INSERT_PADDING_WORDS(0x1);
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INSERT_PADDING_WORDS(0x1);
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inline u32 GetColorBufferAddress() const {
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inline u32 GetColorBufferPhysicalAddress() const {
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return Memory::PhysicalToVirtualAddress(DecodeAddressRegister(color_buffer_address));
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return DecodeAddressRegister(color_buffer_address);
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}
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}
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inline u32 GetDepthBufferAddress() const {
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inline u32 GetDepthBufferPhysicalAddress() const {
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return Memory::PhysicalToVirtualAddress(DecodeAddressRegister(depth_buffer_address));
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return DecodeAddressRegister(depth_buffer_address);
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}
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}
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inline u32 GetWidth() const {
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inline u32 GetWidth() const {
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@ -345,9 +345,8 @@ struct Regs {
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BitField<0, 29, u32> base_address;
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BitField<0, 29, u32> base_address;
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inline u32 GetBaseAddress() const {
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u32 GetPhysicalBaseAddress() const {
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// TODO: Ugly, should fix PhysicalToVirtualAddress instead
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return DecodeAddressRegister(base_address);
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return DecodeAddressRegister(base_address) - Memory::FCRAM_PADDR + Memory::HEAP_LINEAR_VADDR;
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}
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}
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// Descriptor for internal vertex attributes
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// Descriptor for internal vertex attributes
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@ -779,5 +778,15 @@ union CommandHeader {
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BitField<31, 1, u32> group_commands;
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BitField<31, 1, u32> group_commands;
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};
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};
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// TODO: Ugly, should fix PhysicalToVirtualAddress instead
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inline static u32 PAddrToVAddr(u32 addr) {
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if (addr >= Memory::VRAM_PADDR && addr < Memory::VRAM_PADDR + Memory::VRAM_SIZE) {
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return addr - Memory::VRAM_PADDR + Memory::VRAM_VADDR;
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} else if (addr >= Memory::FCRAM_PADDR && addr < Memory::FCRAM_PADDR + Memory::FCRAM_SIZE) {
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return addr - Memory::FCRAM_PADDR + Memory::HEAP_LINEAR_VADDR;
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} else {
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return 0;
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}
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}
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} // namespace
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} // namespace
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@ -18,7 +18,7 @@ namespace Pica {
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namespace Rasterizer {
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namespace Rasterizer {
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static void DrawPixel(int x, int y, const Math::Vec4<u8>& color) {
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static void DrawPixel(int x, int y, const Math::Vec4<u8>& color) {
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u32* color_buffer = (u32*)Memory::GetPointer(registers.framebuffer.GetColorBufferAddress());
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u32* color_buffer = (u32*)Memory::GetPointer(PAddrToVAddr(registers.framebuffer.GetColorBufferPhysicalAddress()));
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u32 value = (color.a() << 24) | (color.r() << 16) | (color.g() << 8) | color.b();
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u32 value = (color.a() << 24) | (color.r() << 16) | (color.g() << 8) | color.b();
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// Assuming RGBA8 format until actual framebuffer format handling is implemented
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// Assuming RGBA8 format until actual framebuffer format handling is implemented
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@ -26,14 +26,14 @@ static void DrawPixel(int x, int y, const Math::Vec4<u8>& color) {
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}
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}
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static u32 GetDepth(int x, int y) {
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static u32 GetDepth(int x, int y) {
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u16* depth_buffer = (u16*)Memory::GetPointer(registers.framebuffer.GetDepthBufferAddress());
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u16* depth_buffer = (u16*)Memory::GetPointer(PAddrToVAddr(registers.framebuffer.GetDepthBufferPhysicalAddress()));
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// Assuming 16-bit depth buffer format until actual format handling is implemented
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// Assuming 16-bit depth buffer format until actual format handling is implemented
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return *(depth_buffer + x + y * registers.framebuffer.GetWidth());
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return *(depth_buffer + x + y * registers.framebuffer.GetWidth());
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}
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}
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static void SetDepth(int x, int y, u16 value) {
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static void SetDepth(int x, int y, u16 value) {
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u16* depth_buffer = (u16*)Memory::GetPointer(registers.framebuffer.GetDepthBufferAddress());
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u16* depth_buffer = (u16*)Memory::GetPointer(PAddrToVAddr(registers.framebuffer.GetDepthBufferPhysicalAddress()));
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// Assuming 16-bit depth buffer format until actual format handling is implemented
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// Assuming 16-bit depth buffer format until actual format handling is implemented
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*(depth_buffer + x + y * registers.framebuffer.GetWidth()) = value;
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*(depth_buffer + x + y * registers.framebuffer.GetWidth()) = value;
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@ -204,7 +204,7 @@ void ProcessTriangle(const VertexShader::OutputVertex& v0,
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s = GetWrappedTexCoord(registers.texture0.wrap_s, s, registers.texture0.width);
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s = GetWrappedTexCoord(registers.texture0.wrap_s, s, registers.texture0.width);
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t = GetWrappedTexCoord(registers.texture0.wrap_t, t, registers.texture0.height);
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t = GetWrappedTexCoord(registers.texture0.wrap_t, t, registers.texture0.height);
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u8* texture_data = Memory::GetPointer(texture.config.GetPhysicalAddress());
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u8* texture_data = Memory::GetPointer(PAddrToVAddr(texture.config.GetPhysicalAddress()));
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auto info = DebugUtils::TextureInfo::FromPicaRegister(texture.config, texture.format);
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auto info = DebugUtils::TextureInfo::FromPicaRegister(texture.config, texture.format);
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texture_color[i] = DebugUtils::LookupTexture(texture_data, s, t, info);
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texture_color[i] = DebugUtils::LookupTexture(texture_data, s, t, info);
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