mirror of
https://github.com/yuzu-emu/yuzu-android.git
synced 2025-06-12 21:37:57 -05:00
video_core: Fix SNORM texture buffer emulating error (#9001)
This commit is contained in:
@ -29,17 +29,17 @@ constexpr std::array PROGRAM_LUT{
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[[nodiscard]] GLenum GetTextureBufferFormat(GLenum gl_format) {
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switch (gl_format) {
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case GL_RGBA8_SNORM:
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return GL_RGBA8;
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return GL_RGBA8I;
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case GL_R8_SNORM:
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return GL_R8;
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return GL_R8I;
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case GL_RGBA16_SNORM:
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return GL_RGBA16;
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return GL_RGBA16I;
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case GL_R16_SNORM:
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return GL_R16;
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return GL_R16I;
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case GL_RG16_SNORM:
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return GL_RG16;
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return GL_RG16I;
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case GL_RG8_SNORM:
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return GL_RG8;
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return GL_RG8I;
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default:
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return gl_format;
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}
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@ -96,9 +96,6 @@ GLuint Buffer::View(u32 offset, u32 size, PixelFormat format) {
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texture.Create(GL_TEXTURE_BUFFER);
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const GLenum gl_format{MaxwellToGL::GetFormatTuple(format).internal_format};
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const GLenum texture_format{GetTextureBufferFormat(gl_format)};
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if (texture_format != gl_format) {
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LOG_WARNING(Render_OpenGL, "Emulating SNORM texture buffer with UNORM.");
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}
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glTextureBufferRange(texture.handle, texture_format, buffer.handle, offset, size);
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views.push_back({
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.offset = offset,
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@ -504,8 +504,8 @@ void GraphicsPipeline::ConfigureImpl(bool is_indexed) {
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}
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}
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if (info.uses_render_area) {
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const auto render_area_width(static_cast<GLfloat>(regs.render_area.width));
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const auto render_area_height(static_cast<GLfloat>(regs.render_area.height));
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const auto render_area_width(static_cast<GLfloat>(regs.surface_clip.width));
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const auto render_area_height(static_cast<GLfloat>(regs.surface_clip.height));
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if (use_assembly) {
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glProgramLocalParameter4fARB(AssemblyStage(stage), 1, render_area_width,
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render_area_height, 0.0f, 0.0f);
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@ -618,11 +618,11 @@ void RasterizerOpenGL::SyncViewport() {
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}
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flags[Dirty::Viewport0 + index] = false;
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if (!regs.viewport_transform_enabled) {
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const auto x = static_cast<GLfloat>(regs.render_area.x);
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const auto y = static_cast<GLfloat>(regs.render_area.y);
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const auto width = static_cast<GLfloat>(regs.render_area.width);
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const auto height = static_cast<GLfloat>(regs.render_area.height);
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if (!regs.viewport_scale_offset_enbled) {
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const auto x = static_cast<GLfloat>(regs.surface_clip.x);
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const auto y = static_cast<GLfloat>(regs.surface_clip.y);
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const auto width = static_cast<GLfloat>(regs.surface_clip.width);
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const auto height = static_cast<GLfloat>(regs.surface_clip.height);
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glViewportIndexedf(static_cast<GLuint>(index), x, y, width != 0.0f ? width : 1.0f,
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height != 0.0f ? height : 1.0f);
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continue;
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@ -444,8 +444,8 @@ void GraphicsPipeline::ConfigureImpl(bool is_indexed) {
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const auto& info{stage_infos[0]};
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if (info.uses_render_area) {
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render_area.uses_render_area = true;
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render_area.words = {static_cast<float>(regs.render_area.width),
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static_cast<float>(regs.render_area.height)};
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render_area.words = {static_cast<float>(regs.surface_clip.width),
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static_cast<float>(regs.surface_clip.height)};
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}
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}};
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if constexpr (Spec::enabled_stages[0]) {
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@ -683,11 +683,11 @@ void RasterizerVulkan::UpdateViewportsState(Tegra::Engines::Maxwell3D::Regs& reg
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if (!state_tracker.TouchViewports()) {
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return;
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}
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if (!regs.viewport_transform_enabled) {
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const auto x = static_cast<float>(regs.render_area.x);
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const auto y = static_cast<float>(regs.render_area.y);
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const auto width = static_cast<float>(regs.render_area.width);
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const auto height = static_cast<float>(regs.render_area.height);
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if (!regs.viewport_scale_offset_enbled) {
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const auto x = static_cast<float>(regs.surface_clip.x);
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const auto y = static_cast<float>(regs.surface_clip.y);
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const auto width = static_cast<float>(regs.surface_clip.width);
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const auto height = static_cast<float>(regs.surface_clip.height);
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VkViewport viewport{
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.x = x,
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.y = y,
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@ -19,6 +19,7 @@
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#include "video_core/engines/kepler_compute.h"
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#include "video_core/memory_manager.h"
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#include "video_core/shader_environment.h"
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#include "video_core/texture_cache/format_lookup_table.h"
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#include "video_core/textures/texture.h"
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namespace VideoCommon {
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@ -33,7 +34,7 @@ static u64 MakeCbufKey(u32 index, u32 offset) {
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return (static_cast<u64>(index) << 32) | offset;
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}
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static Shader::TextureType ConvertType(const Tegra::Texture::TICEntry& entry) {
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static Shader::TextureType ConvertTextureType(const Tegra::Texture::TICEntry& entry) {
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switch (entry.texture_type) {
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case Tegra::Texture::TextureType::Texture1D:
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return Shader::TextureType::Color1D;
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@ -59,6 +60,26 @@ static Shader::TextureType ConvertType(const Tegra::Texture::TICEntry& entry) {
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}
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}
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static Shader::TexturePixelFormat ConvertTexturePixelFormat(const Tegra::Texture::TICEntry& entry) {
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switch (PixelFormatFromTextureInfo(entry.format, entry.r_type, entry.g_type, entry.b_type,
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entry.a_type, entry.srgb_conversion)) {
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case VideoCore::Surface::PixelFormat::A8B8G8R8_SNORM:
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return Shader::TexturePixelFormat::A8B8G8R8_SNORM;
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case VideoCore::Surface::PixelFormat::R8_SNORM:
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return Shader::TexturePixelFormat::R8_SNORM;
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case VideoCore::Surface::PixelFormat::R8G8_SNORM:
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return Shader::TexturePixelFormat::R8G8_SNORM;
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case VideoCore::Surface::PixelFormat::R16G16B16A16_SNORM:
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return Shader::TexturePixelFormat::R16G16B16A16_SNORM;
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case VideoCore::Surface::PixelFormat::R16G16_SNORM:
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return Shader::TexturePixelFormat::R16G16_SNORM;
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case VideoCore::Surface::PixelFormat::R16_SNORM:
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return Shader::TexturePixelFormat::R16_SNORM;
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default:
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return Shader::TexturePixelFormat::OTHER;
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}
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}
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static std::string_view StageToPrefix(Shader::Stage stage) {
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switch (stage) {
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case Shader::Stage::VertexB:
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@ -178,10 +199,13 @@ void GenericEnvironment::Dump(u64 hash) {
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void GenericEnvironment::Serialize(std::ofstream& file) const {
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const u64 code_size{static_cast<u64>(CachedSize())};
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const u64 num_texture_types{static_cast<u64>(texture_types.size())};
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const u64 num_texture_pixel_formats{static_cast<u64>(texture_pixel_formats.size())};
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const u64 num_cbuf_values{static_cast<u64>(cbuf_values.size())};
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file.write(reinterpret_cast<const char*>(&code_size), sizeof(code_size))
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.write(reinterpret_cast<const char*>(&num_texture_types), sizeof(num_texture_types))
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.write(reinterpret_cast<const char*>(&num_texture_pixel_formats),
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sizeof(num_texture_pixel_formats))
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.write(reinterpret_cast<const char*>(&num_cbuf_values), sizeof(num_cbuf_values))
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.write(reinterpret_cast<const char*>(&local_memory_size), sizeof(local_memory_size))
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.write(reinterpret_cast<const char*>(&texture_bound), sizeof(texture_bound))
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@ -196,6 +220,10 @@ void GenericEnvironment::Serialize(std::ofstream& file) const {
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file.write(reinterpret_cast<const char*>(&key), sizeof(key))
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.write(reinterpret_cast<const char*>(&type), sizeof(type));
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}
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for (const auto& [key, format] : texture_pixel_formats) {
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file.write(reinterpret_cast<const char*>(&key), sizeof(key))
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.write(reinterpret_cast<const char*>(&format), sizeof(format));
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}
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for (const auto& [key, type] : cbuf_values) {
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file.write(reinterpret_cast<const char*>(&key), sizeof(key))
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.write(reinterpret_cast<const char*>(&type), sizeof(type));
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@ -239,15 +267,13 @@ std::optional<u64> GenericEnvironment::TryFindSize() {
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return std::nullopt;
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}
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Shader::TextureType GenericEnvironment::ReadTextureTypeImpl(GPUVAddr tic_addr, u32 tic_limit,
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bool via_header_index, u32 raw) {
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Tegra::Texture::TICEntry GenericEnvironment::ReadTextureInfo(GPUVAddr tic_addr, u32 tic_limit,
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bool via_header_index, u32 raw) {
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const auto handle{Tegra::Texture::TexturePair(raw, via_header_index)};
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const GPUVAddr descriptor_addr{tic_addr + handle.first * sizeof(Tegra::Texture::TICEntry)};
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Tegra::Texture::TICEntry entry;
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gpu_memory->ReadBlock(descriptor_addr, &entry, sizeof(entry));
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const Shader::TextureType result{ConvertType(entry)};
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texture_types.emplace(raw, result);
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return result;
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return entry;
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}
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GraphicsEnvironment::GraphicsEnvironment(Tegra::Engines::Maxwell3D& maxwell3d_,
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@ -307,13 +333,26 @@ u32 GraphicsEnvironment::ReadCbufValue(u32 cbuf_index, u32 cbuf_offset) {
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Shader::TextureType GraphicsEnvironment::ReadTextureType(u32 handle) {
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const auto& regs{maxwell3d->regs};
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const bool via_header_index{regs.sampler_binding == Maxwell::SamplerBinding::ViaHeaderBinding};
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return ReadTextureTypeImpl(regs.tex_header.Address(), regs.tex_header.limit, via_header_index,
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handle);
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auto entry =
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ReadTextureInfo(regs.tex_header.Address(), regs.tex_header.limit, via_header_index, handle);
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const Shader::TextureType result{ConvertTextureType(entry)};
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texture_types.emplace(handle, result);
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return result;
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}
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Shader::TexturePixelFormat GraphicsEnvironment::ReadTexturePixelFormat(u32 handle) {
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const auto& regs{maxwell3d->regs};
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const bool via_header_index{regs.sampler_binding == Maxwell::SamplerBinding::ViaHeaderBinding};
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auto entry =
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ReadTextureInfo(regs.tex_header.Address(), regs.tex_header.limit, via_header_index, handle);
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const Shader::TexturePixelFormat result(ConvertTexturePixelFormat(entry));
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texture_pixel_formats.emplace(handle, result);
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return result;
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}
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u32 GraphicsEnvironment::ReadViewportTransformState() {
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const auto& regs{maxwell3d->regs};
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viewport_transform_state = regs.viewport_transform_enabled;
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viewport_transform_state = regs.viewport_scale_offset_enbled;
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return viewport_transform_state;
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}
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@ -345,7 +384,19 @@ u32 ComputeEnvironment::ReadCbufValue(u32 cbuf_index, u32 cbuf_offset) {
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Shader::TextureType ComputeEnvironment::ReadTextureType(u32 handle) {
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const auto& regs{kepler_compute->regs};
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const auto& qmd{kepler_compute->launch_description};
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return ReadTextureTypeImpl(regs.tic.Address(), regs.tic.limit, qmd.linked_tsc != 0, handle);
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auto entry = ReadTextureInfo(regs.tic.Address(), regs.tic.limit, qmd.linked_tsc != 0, handle);
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const Shader::TextureType result{ConvertTextureType(entry)};
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texture_types.emplace(handle, result);
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return result;
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}
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Shader::TexturePixelFormat ComputeEnvironment::ReadTexturePixelFormat(u32 handle) {
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const auto& regs{kepler_compute->regs};
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const auto& qmd{kepler_compute->launch_description};
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auto entry = ReadTextureInfo(regs.tic.Address(), regs.tic.limit, qmd.linked_tsc != 0, handle);
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const Shader::TexturePixelFormat result(ConvertTexturePixelFormat(entry));
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texture_pixel_formats.emplace(handle, result);
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return result;
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}
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u32 ComputeEnvironment::ReadViewportTransformState() {
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@ -355,9 +406,12 @@ u32 ComputeEnvironment::ReadViewportTransformState() {
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void FileEnvironment::Deserialize(std::ifstream& file) {
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u64 code_size{};
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u64 num_texture_types{};
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u64 num_texture_pixel_formats{};
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u64 num_cbuf_values{};
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file.read(reinterpret_cast<char*>(&code_size), sizeof(code_size))
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.read(reinterpret_cast<char*>(&num_texture_types), sizeof(num_texture_types))
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.read(reinterpret_cast<char*>(&num_texture_pixel_formats),
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sizeof(num_texture_pixel_formats))
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.read(reinterpret_cast<char*>(&num_cbuf_values), sizeof(num_cbuf_values))
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.read(reinterpret_cast<char*>(&local_memory_size), sizeof(local_memory_size))
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.read(reinterpret_cast<char*>(&texture_bound), sizeof(texture_bound))
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@ -375,6 +429,13 @@ void FileEnvironment::Deserialize(std::ifstream& file) {
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.read(reinterpret_cast<char*>(&type), sizeof(type));
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texture_types.emplace(key, type);
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}
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for (size_t i = 0; i < num_texture_pixel_formats; ++i) {
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u32 key;
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Shader::TexturePixelFormat format;
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file.read(reinterpret_cast<char*>(&key), sizeof(key))
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.read(reinterpret_cast<char*>(&format), sizeof(format));
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texture_pixel_formats.emplace(key, format);
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}
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for (size_t i = 0; i < num_cbuf_values; ++i) {
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u64 key;
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u32 value;
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@ -422,6 +483,14 @@ Shader::TextureType FileEnvironment::ReadTextureType(u32 handle) {
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return it->second;
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}
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Shader::TexturePixelFormat FileEnvironment::ReadTexturePixelFormat(u32 handle) {
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const auto it{texture_pixel_formats.find(handle)};
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if (it == texture_pixel_formats.end()) {
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throw Shader::LogicError("Uncached read texture pixel format");
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}
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return it->second;
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}
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u32 FileEnvironment::ReadViewportTransformState() {
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return viewport_transform_state;
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}
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@ -63,14 +63,15 @@ public:
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protected:
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std::optional<u64> TryFindSize();
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Shader::TextureType ReadTextureTypeImpl(GPUVAddr tic_addr, u32 tic_limit, bool via_header_index,
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u32 raw);
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Tegra::Texture::TICEntry ReadTextureInfo(GPUVAddr tic_addr, u32 tic_limit,
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bool via_header_index, u32 raw);
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Tegra::MemoryManager* gpu_memory{};
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GPUVAddr program_base{};
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std::vector<u64> code;
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std::unordered_map<u32, Shader::TextureType> texture_types;
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std::unordered_map<u32, Shader::TexturePixelFormat> texture_pixel_formats;
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std::unordered_map<u64, u32> cbuf_values;
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u32 local_memory_size{};
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@ -104,6 +105,8 @@ public:
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Shader::TextureType ReadTextureType(u32 handle) override;
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Shader::TexturePixelFormat ReadTexturePixelFormat(u32 handle) override;
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u32 ReadViewportTransformState() override;
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private:
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@ -124,6 +127,8 @@ public:
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Shader::TextureType ReadTextureType(u32 handle) override;
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Shader::TexturePixelFormat ReadTexturePixelFormat(u32 handle) override;
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u32 ReadViewportTransformState() override;
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private:
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@ -149,6 +154,8 @@ public:
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[[nodiscard]] Shader::TextureType ReadTextureType(u32 handle) override;
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[[nodiscard]] Shader::TexturePixelFormat ReadTexturePixelFormat(u32 handle) override;
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[[nodiscard]] u32 ReadViewportTransformState() override;
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[[nodiscard]] u32 LocalMemorySize() const override;
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@ -164,6 +171,7 @@ public:
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private:
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std::unique_ptr<u64[]> code;
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std::unordered_map<u32, Shader::TextureType> texture_types;
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std::unordered_map<u32, Shader::TexturePixelFormat> texture_pixel_formats;
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std::unordered_map<u64, u32> cbuf_values;
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std::array<u32, 3> workgroup_size{};
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u32 local_memory_size{};
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@ -516,7 +516,6 @@ void SwizzleBlockLinearImage(Tegra::MemoryManager& gpu_memory, GPUVAddr gpu_addr
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const u32 num_blocks_per_layer = NumBlocks(level_size, tile_size);
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const u32 host_bytes_per_layer = num_blocks_per_layer * bytes_per_block;
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UNIMPLEMENTED_IF(info.tile_width_spacing > 0);
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UNIMPLEMENTED_IF(copy.image_offset.x != 0);
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UNIMPLEMENTED_IF(copy.image_offset.y != 0);
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UNIMPLEMENTED_IF(copy.image_offset.z != 0);
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