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glsl: Implement Images
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6577a63d36
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@ -91,11 +91,42 @@ std::string_view SamplerType(TextureType type, bool is_depth) {
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case TextureType::Buffer:
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return "samplerBuffer";
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default:
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fmt::print("Texture type: {}", type);
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throw NotImplementedException("Texture type: {}", type);
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}
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}
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std::string_view ImageType(TextureType type) {
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switch (type) {
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case TextureType::Color2D:
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return "uimage2D";
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default:
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throw NotImplementedException("Image type: {}", type);
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}
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}
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std::string_view ImageFormatString(ImageFormat format) {
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switch (format) {
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case ImageFormat::Typeless:
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return "";
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case ImageFormat::R8_UINT:
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return ",r8ui";
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case ImageFormat::R8_SINT:
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return ",r8i";
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case ImageFormat::R16_UINT:
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return ",r16ui";
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case ImageFormat::R16_SINT:
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return ",r16i";
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case ImageFormat::R32_UINT:
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return ",r32ui";
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case ImageFormat::R32G32_UINT:
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return ",rg32ui";
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case ImageFormat::R32G32B32A32_UINT:
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return ",rgba32ui";
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default:
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throw NotImplementedException("Image format: {}", format);
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}
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}
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std::string_view GetTessMode(TessPrimitive primitive) {
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switch (primitive) {
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case TessPrimitive::Triangles:
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@ -250,6 +281,7 @@ void EmitContext::SetupExtensions(std::string&) {
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// TODO: track this usage
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header += "#extension GL_ARB_sparse_texture2 : enable\n";
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header += "#extension GL_EXT_texture_shadow_lod : enable\n";
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header += "#extension GL_EXT_shader_image_load_formatted : enable\n";
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if (info.uses_int64) {
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header += "#extension GL_ARB_gpu_shader_int64 : enable\n";
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}
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@ -396,15 +428,25 @@ void EmitContext::DefineHelperFunctions() {
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void EmitContext::SetupImages(Bindings& bindings) {
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image_buffer_bindings.reserve(info.image_buffer_descriptors.size());
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for (const auto& desc : info.image_buffer_descriptors) {
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throw NotImplementedException("image_buffer_descriptors");
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const auto indices{bindings.image + desc.count};
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for (u32 index = bindings.image; index < indices; ++index) {
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header += fmt::format("layout(binding={}) uniform uimageBuffer img{};", bindings.image,
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index);
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}
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image_buffer_bindings.push_back(bindings.image);
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bindings.image += desc.count;
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}
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image_bindings.reserve(info.image_descriptors.size());
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for (const auto& desc : info.image_descriptors) {
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throw NotImplementedException("image_bindings");
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image_bindings.push_back(bindings.image);
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const auto format{ImageFormatString(desc.format)};
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const auto image_type{ImageType(desc.type)};
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const auto qualifier{desc.is_written ? "" : "readonly "};
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const auto indices{bindings.image + desc.count};
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for (u32 index = bindings.image; index < indices; ++index) {
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header += fmt::format("layout(binding={}{})uniform {}{} img{};", bindings.image, format,
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qualifier, image_type, index);
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}
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bindings.image += desc.count;
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}
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texture_buffer_bindings.reserve(info.texture_buffer_descriptors.size());
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@ -14,15 +14,25 @@ namespace {
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std::string Texture(EmitContext& ctx, const IR::TextureInstInfo& info,
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[[maybe_unused]] const IR::Value& index) {
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if (info.type == TextureType::Buffer) {
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throw NotImplementedException("TextureType::Buffer");
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return fmt::format("tex{}", ctx.texture_buffer_bindings.at(info.descriptor_index));
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} else {
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return fmt::format("tex{}", ctx.texture_bindings.at(info.descriptor_index));
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}
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}
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std::string Image(EmitContext& ctx, const IR::TextureInstInfo& info,
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[[maybe_unused]] const IR::Value& index) {
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if (info.type == TextureType::Buffer) {
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return fmt::format("img{}", ctx.image_buffer_bindings.at(info.descriptor_index));
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} else {
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return fmt::format("img{}", ctx.image_bindings.at(info.descriptor_index));
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}
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}
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std::string CastToIntVec(std::string_view value, const IR::TextureInstInfo& info) {
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switch (info.type) {
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case TextureType::Color1D:
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case TextureType::Buffer:
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return fmt::format("int({})", value);
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case TextureType::ColorArray1D:
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case TextureType::Color2D:
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@ -41,6 +51,7 @@ std::string CastToIntVec(std::string_view value, const IR::TextureInstInfo& info
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std::string TexelFetchCastToInt(std::string_view value, const IR::TextureInstInfo& info) {
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switch (info.type) {
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case TextureType::Color1D:
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case TextureType::Buffer:
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return fmt::format("int({})", value);
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case TextureType::ColorArray1D:
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case TextureType::Color2D:
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@ -349,8 +360,12 @@ void EmitImageFetch([[maybe_unused]] EmitContext& ctx, [[maybe_unused]] IR::Inst
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ctx.Add("{}=texelFetchOffset({},{},int({}),{});", texel, texture,
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TexelFetchCastToInt(coords, info), lod, TexelFetchCastToInt(offset, info));
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} else {
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ctx.Add("{}=texelFetch({},{},int({}));", texel, texture,
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TexelFetchCastToInt(coords, info), lod);
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if (info.type == TextureType::Buffer) {
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ctx.Add("{}=texelFetch({},int({}));", texel, texture, coords);
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} else {
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ctx.Add("{}=texelFetch({},{},int({}));", texel, texture,
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TexelFetchCastToInt(coords, info), lod);
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}
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}
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return;
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}
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@ -434,14 +449,22 @@ void EmitImageGradient([[maybe_unused]] EmitContext& ctx, [[maybe_unused]] IR::I
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void EmitImageRead([[maybe_unused]] EmitContext& ctx, [[maybe_unused]] IR::Inst& inst,
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[[maybe_unused]] const IR::Value& index,
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[[maybe_unused]] std::string_view coords) {
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NotImplemented();
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const auto info{inst.Flags<IR::TextureInstInfo>()};
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const auto sparse_inst{PrepareSparse(inst)};
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if (sparse_inst) {
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throw NotImplementedException("EmitImageRead Sparse");
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}
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const auto image{Image(ctx, info, index)};
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ctx.AddU32x4("{}=uvec4(imageLoad({},{}));", inst, image, TexelFetchCastToInt(coords, info));
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}
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void EmitImageWrite([[maybe_unused]] EmitContext& ctx, [[maybe_unused]] IR::Inst& inst,
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[[maybe_unused]] const IR::Value& index,
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[[maybe_unused]] std::string_view coords,
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[[maybe_unused]] std::string_view color) {
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NotImplemented();
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const auto info{inst.Flags<IR::TextureInstInfo>()};
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const auto image{Image(ctx, info, index)};
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ctx.Add("imageStore({},{},{});", image, TexelFetchCastToInt(coords, info), color);
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}
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void EmitBindlessImageSampleImplicitLod(EmitContext&) {
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