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PostProcessing: Fix for Metal renderer
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@ -699,8 +699,6 @@ bool PostProcessing::Apply(GPUFramebuffer* final_target, s32 final_left, s32 fin
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if (!CheckTargets(target_format, target_width, target_height))
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if (!CheckTargets(target_format, target_width, target_height))
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return false;
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return false;
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g_gpu_device->SetViewportAndScissor(final_left, final_top, final_width, final_height);
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GPUTexture* input = s_input_texture.get();
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GPUTexture* input = s_input_texture.get();
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GPUFramebuffer* input_fb = s_input_framebuffer.get();
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GPUFramebuffer* input_fb = s_input_framebuffer.get();
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GPUTexture* output = s_output_texture.get();
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GPUTexture* output = s_output_texture.get();
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@ -1281,10 +1281,23 @@ bool PostProcessing::ReShadeFXShader::Apply(GPUTexture* input, GPUFramebuffer* f
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for (const Pass& pass : m_passes)
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for (const Pass& pass : m_passes)
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{
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{
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GL_SCOPE_FMT("Draw pass {}", pass.name.c_str());
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GL_SCOPE_FMT("Draw pass {}", pass.name.c_str());
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GL_INS_FMT("Render Target: ID {} [{}]", pass.render_target, GetTextureNameForID(pass.render_target));
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GL_INS_FMT("Render Target: ID {} [{}]", pass.render_target, GetTextureNameForID(pass.render_target));
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GPUFramebuffer* output_fb = GetFramebufferByID(pass.render_target, input, final_target);
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GPUFramebuffer* output_fb = GetFramebufferByID(pass.render_target, input, final_target);
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if (!output_fb)
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{
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// Drawing to final buffer.
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if (!g_gpu_device->BeginPresent(false))
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{
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GL_POP();
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return false;
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}
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}
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else
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{
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g_gpu_device->SetFramebuffer(output_fb);
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g_gpu_device->SetFramebuffer(output_fb);
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}
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g_gpu_device->SetPipeline(pass.pipeline.get());
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g_gpu_device->SetPipeline(pass.pipeline.get());
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// Set all inputs first, before the render pass starts.
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// Set all inputs first, before the render pass starts.
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@ -1306,16 +1319,6 @@ bool PostProcessing::ReShadeFXShader::Apply(GPUTexture* input, GPUFramebuffer* f
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g_gpu_device->SetTextureSampler(i, nullptr, nullptr);
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g_gpu_device->SetTextureSampler(i, nullptr, nullptr);
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}
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}
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if (!output_fb)
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{
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// Drawing to final buffer.
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if (!g_gpu_device->BeginPresent(false))
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{
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GL_POP();
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return false;
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}
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}
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g_gpu_device->Draw(pass.num_vertices, 0);
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g_gpu_device->Draw(pass.num_vertices, 0);
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}
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}
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@ -176,6 +176,7 @@ bool PostProcessing::GLSLShader::Apply(GPUTexture* input, GPUFramebuffer* final_
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g_gpu_device->SetPipeline(m_pipeline.get());
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g_gpu_device->SetPipeline(m_pipeline.get());
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g_gpu_device->SetTextureSampler(0, input, m_sampler.get());
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g_gpu_device->SetTextureSampler(0, input, m_sampler.get());
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g_gpu_device->SetViewportAndScissor(final_left, final_top, final_width, final_height);
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const u32 uniforms_size = GetUniformsSize();
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const u32 uniforms_size = GetUniformsSize();
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void* uniforms = g_gpu_device->MapUniformBuffer(uniforms_size);
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void* uniforms = g_gpu_device->MapUniformBuffer(uniforms_size);
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@ -377,7 +378,7 @@ static float4 o_col0;
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{
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{
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if (m_use_glsl_interface_blocks)
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if (m_use_glsl_interface_blocks)
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{
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{
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if (IsVulkan())
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if (IsVulkan() || IsMetal())
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ss << "layout(location = 0) ";
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ss << "layout(location = 0) ";
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ss << "in VertexData {\n";
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ss << "in VertexData {\n";
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@ -19,7 +19,7 @@ ShaderGen::ShaderGen(RenderAPI render_api, bool supports_dual_source_blend)
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m_spirv(render_api == RenderAPI::Vulkan || render_api == RenderAPI::Metal),
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m_spirv(render_api == RenderAPI::Vulkan || render_api == RenderAPI::Metal),
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m_supports_dual_source_blend(supports_dual_source_blend), m_use_glsl_interface_blocks(false)
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m_supports_dual_source_blend(supports_dual_source_blend), m_use_glsl_interface_blocks(false)
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{
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{
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#if defined(ENABLE_OPENGL) || defined(ENABLE_VULKAN)
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#if defined(ENABLE_OPENGL) || defined(ENABLE_VULKAN) || defined(__APPLE__)
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if (m_glsl)
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if (m_glsl)
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{
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{
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#ifdef ENABLE_OPENGL
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#ifdef ENABLE_OPENGL
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