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https://git.suyu.dev/suyu/suyu.git
synced 2024-11-22 06:42:46 +01:00
metal: blit rendering result to drawable
This commit is contained in:
parent
c8a717651c
commit
a5e7672de5
5 changed files with 128 additions and 9 deletions
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@ -40,8 +40,22 @@ public:
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return command_buffer;
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}
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MTL::CommandEncoder* GetCommandEncoder() {
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return encoder;
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MTL::RenderCommandEncoder* GetRenderCommandEncoder() {
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CheckIfRenderPassIsActive();
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return static_cast<MTL::RenderCommandEncoder*>(encoder);
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}
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MTL::ComputeCommandEncoder* GetComputeCommandEncoder() {
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RequireComputeEncoder();
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return static_cast<MTL::ComputeCommandEncoder*>(encoder);
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}
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MTL::BlitCommandEncoder* GetBlitCommandEncoder() {
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RequireBlitEncoder();
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return static_cast<MTL::BlitCommandEncoder*>(encoder);
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}
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private:
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@ -89,6 +89,13 @@ void GraphicsPipeline::MakePipeline(MTL::RenderPassDescriptor* render_pass) {
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color_attachment->setPixelFormat(render_pass_attachment->texture()->pixelFormat());
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// TODO: provide blend information
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}
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NS::Error* error = nullptr;
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pipeline_state = device.GetDevice()->newRenderPipelineState(pipeline_descriptor, &error);
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if (error) {
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LOG_ERROR(Render_Metal, "failed to create pipeline state: {}",
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error->description()->cString(NS::ASCIIStringEncoding));
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}
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}
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void GraphicsPipeline::Validate() {
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@ -106,6 +106,9 @@ private:
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BufferCacheRuntime buffer_cache_runtime;
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BufferCache buffer_cache;
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TextureCacheRuntime texture_cache_runtime;
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// HACK: make the texture cache public so that renderer can access it
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public:
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TextureCache texture_cache;
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};
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@ -14,13 +14,18 @@ namespace Metal {
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RendererMetal::RendererMetal(Core::Frontend::EmuWindow& emu_window,
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Tegra::MaxwellDeviceMemoryManager& device_memory_, Tegra::GPU& gpu_,
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std::unique_ptr<Core::Frontend::GraphicsContext> context_)
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: RendererBase(emu_window, std::move(context_)),
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device_memory{device_memory_}, gpu{gpu_}, device{}, command_recorder(device),
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: RendererBase(emu_window, std::move(context_)), device_memory{device_memory_}, gpu{gpu_},
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device{}, command_recorder(device),
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swap_chain(device, command_recorder,
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static_cast<CA::MetalLayer*>(render_window.GetWindowInfo().render_surface)),
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rasterizer(gpu_, device_memory, device, command_recorder, swap_chain) {}
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rasterizer(gpu_, device_memory, device, command_recorder, swap_chain) {
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CreateBlitPipelineState();
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}
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RendererMetal::~RendererMetal() = default;
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RendererMetal::~RendererMetal() {
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blit_pipeline_state->release();
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blit_sampler_state->release();
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}
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void RendererMetal::Composite(std::span<const Tegra::FramebufferConfig> framebuffers) {
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if (framebuffers.empty()) {
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@ -32,15 +37,28 @@ void RendererMetal::Composite(std::span<const Tegra::FramebufferConfig> framebuf
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// TODO: copy the framebuffer to the drawable texture instead of this dummy render pass
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MTL::RenderPassDescriptor* render_pass_descriptor = MTL::RenderPassDescriptor::alloc()->init();
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render_pass_descriptor->colorAttachments()->object(0)->setClearColor(
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MTL::ClearColor::Make(1.0, 0.5, 0.0, 1.0));
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render_pass_descriptor->colorAttachments()->object(0)->setLoadAction(MTL::LoadActionClear);
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render_pass_descriptor->colorAttachments()->object(0)->setLoadAction(MTL::LoadActionDontCare);
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render_pass_descriptor->colorAttachments()->object(0)->setStoreAction(MTL::StoreActionStore);
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render_pass_descriptor->colorAttachments()->object(0)->setTexture(
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swap_chain.GetDrawableTexture());
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command_recorder.BeginRenderPass(render_pass_descriptor);
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// Blit the framebuffer to the drawable texture
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// TODO: acquire the texture from @ref framebuffers
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const Framebuffer* const framebuffer = rasterizer.texture_cache.GetFramebuffer();
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if (!framebuffer) {
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return;
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}
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MTL::Texture* src_texture = framebuffer->GetHandle()->colorAttachments()->object(0)->texture();
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command_recorder.GetRenderCommandEncoder()->setRenderPipelineState(blit_pipeline_state);
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command_recorder.GetRenderCommandEncoder()->setFragmentTexture(src_texture, 0);
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command_recorder.GetRenderCommandEncoder()->setFragmentSamplerState(blit_sampler_state, 0);
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// Draw a full screen triangle which will get clipped to a rectangle
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command_recorder.GetRenderCommandEncoder()->drawPrimitives(MTL::PrimitiveTypeTriangle,
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NS::UInteger(0), NS::UInteger(3));
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swap_chain.Present();
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command_recorder.Submit();
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@ -54,4 +72,76 @@ std::vector<u8> RendererMetal::GetAppletCaptureBuffer() {
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return std::vector<u8>(VideoCore::Capture::TiledSize);
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}
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void RendererMetal::CreateBlitPipelineState() {
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MTL::CompileOptions* compile_options = MTL::CompileOptions::alloc()->init();
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NS::Error* error = nullptr;
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MTL::Library* library = device.GetDevice()->newLibrary(NS::String::string(
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R"(
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#include <metal_stdlib>
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using namespace metal;
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constant float2 texCoords[] = {
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float2(0.0, -1.0),
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float2(0.0, 1.0),
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float2(2.0, 1.0),
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};
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struct VertexOut {
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float4 position [[position]];
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float2 texCoord;
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};
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vertex VertexOut vertexMain(uint vid [[vertex_id]]) {
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VertexOut out;
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out.position = float4(texCoords[vid] * 2.0 - 1.0, 0.0, 1.0);
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out.texCoord = texCoords[vid];
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return out;
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}
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fragment float4 fragmentMain(VertexOut in [[stage_in]],
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texture2d<float> texture [[texture(0)]],
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sampler sampler [[sampler(0)]]) {
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return texture.sample(sampler, in.texCoord);
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}
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)",
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NS::ASCIIStringEncoding),
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compile_options, &error);
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if (error) {
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LOG_ERROR(Render_Metal, "failed to create blit library: {}",
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error->description()->cString(NS::ASCIIStringEncoding));
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}
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MTL::Function* vertex_function =
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library->newFunction(NS::String::string("vertexMain", NS::ASCIIStringEncoding));
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MTL::Function* fragment_function =
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library->newFunction(NS::String::string("fragmentMain", NS::ASCIIStringEncoding));
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MTL::RenderPipelineDescriptor* pipeline_descriptor =
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MTL::RenderPipelineDescriptor::alloc()->init();
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pipeline_descriptor->setVertexFunction(vertex_function);
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pipeline_descriptor->setFragmentFunction(fragment_function);
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// TODO: get the pixel format from metal layer
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pipeline_descriptor->colorAttachments()->object(0)->setPixelFormat(MTL::PixelFormatRGBA8Unorm);
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error = nullptr;
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blit_pipeline_state = device.GetDevice()->newRenderPipelineState(pipeline_descriptor, &error);
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if (error) {
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LOG_ERROR(Render_Metal, "failed to create blit pipeline state: {}",
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error->description()->cString(NS::ASCIIStringEncoding));
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}
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// Create sampler state
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MTL::SamplerDescriptor* sampler_descriptor = MTL::SamplerDescriptor::alloc()->init();
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sampler_descriptor->setMinFilter(MTL::SamplerMinMagFilterLinear);
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sampler_descriptor->setMagFilter(MTL::SamplerMinMagFilterLinear);
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blit_sampler_state = device.GetDevice()->newSamplerState(sampler_descriptor);
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// Deallocate unnecessary objects
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fragment_function->release();
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vertex_function->release();
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library->release();
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}
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} // namespace Metal
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@ -47,6 +47,8 @@ public:
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}
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private:
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void CreateBlitPipelineState();
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Tegra::MaxwellDeviceMemoryManager& device_memory;
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Tegra::GPU& gpu;
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@ -54,6 +56,9 @@ private:
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CommandRecorder command_recorder;
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SwapChain swap_chain;
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MTL::RenderPipelineState* blit_pipeline_state{nullptr};
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MTL::SamplerState* blit_sampler_state{nullptr};
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RasterizerMetal rasterizer;
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};
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