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https://github.com/dolphin-emu/dolphin
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e10821a847
VideoBackends:Metal: Log file on failed pipeline compile
106 lines
3.3 KiB
C++
106 lines
3.3 KiB
C++
// Copyright 2022 Dolphin Emulator Project
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// SPDX-License-Identifier: GPL-2.0-or-later
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#pragma once
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#include <Metal/Metal.h>
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#include <memory>
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#include "VideoBackends/Metal/MRCHelpers.h"
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#include "VideoCommon/BPMemory.h"
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#include "VideoCommon/RenderState.h"
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struct AbstractPipelineConfig;
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class AbstractPipeline;
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namespace Metal
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{
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class Shader;
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extern MRCOwned<id<MTLDevice>> g_device;
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extern MRCOwned<id<MTLCommandQueue>> g_queue;
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struct DepthStencilSelector
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{
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u8 value;
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DepthStencilSelector() : value(0) {}
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DepthStencilSelector(bool update_enable, enum CompareMode cmp)
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: value(update_enable | (static_cast<u32>(cmp) << 1))
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{
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}
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DepthStencilSelector(DepthState state)
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: DepthStencilSelector(state.testenable ? state.updateenable : false,
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state.testenable ? state.func : CompareMode::Always)
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{
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}
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bool UpdateEnable() const { return value & 1; }
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enum CompareMode CompareMode() const { return static_cast<enum CompareMode>(value >> 1); }
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bool operator==(const DepthStencilSelector& other) const { return value == other.value; }
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static constexpr size_t N_VALUES = 1 << 4;
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};
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struct SamplerSelector
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{
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u8 value;
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SamplerSelector() : value(0) {}
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SamplerSelector(SamplerState state)
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{
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value = (static_cast<u32>(state.tm0.min_filter.Value()) << 0) |
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(static_cast<u32>(state.tm0.mag_filter.Value()) << 1) |
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(static_cast<u32>(state.tm0.mipmap_filter.Value()) << 2) |
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(static_cast<u32>(state.tm0.anisotropic_filtering) << 3);
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value |= (static_cast<u32>(state.tm0.wrap_u.Value()) +
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3 * static_cast<u32>(state.tm0.wrap_v.Value()))
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<< 4;
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}
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FilterMode MinFilter() const { return static_cast<FilterMode>(value & 1); }
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FilterMode MagFilter() const { return static_cast<FilterMode>((value >> 1) & 1); }
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FilterMode MipFilter() const { return static_cast<FilterMode>((value >> 2) & 1); }
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WrapMode WrapU() const { return static_cast<WrapMode>((value >> 4) % 3); }
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WrapMode WrapV() const { return static_cast<WrapMode>((value >> 4) / 3); }
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bool AnisotropicFiltering() const { return ((value >> 3) & 1); }
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bool operator==(const SamplerSelector& other) const { return value == other.value; }
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static constexpr size_t N_VALUES = (1 << 4) * 9;
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};
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class ObjectCache
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{
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ObjectCache();
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public:
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~ObjectCache();
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static void Initialize(MRCOwned<id<MTLDevice>> device);
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static void Shutdown();
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id<MTLDepthStencilState> GetDepthStencil(DepthStencilSelector sel) { return m_dss[sel.value]; }
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id<MTLSamplerState> GetSampler(SamplerSelector sel)
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{
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if (!m_samplers[sel.value]) [[unlikely]]
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m_samplers[sel.value] = CreateSampler(sel);
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return m_samplers[sel.value];
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}
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id<MTLSamplerState> GetSampler(SamplerState state) { return GetSampler(SamplerSelector(state)); }
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void ReloadSamplers();
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std::unique_ptr<AbstractPipeline> CreatePipeline(const AbstractPipelineConfig& config);
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void ShaderDestroyed(const Shader* shader);
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private:
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class Internal;
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std::unique_ptr<Internal> m_internal;
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MRCOwned<id<MTLSamplerState>> CreateSampler(SamplerSelector sel);
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MRCOwned<id<MTLDepthStencilState>> m_dss[DepthStencilSelector::N_VALUES];
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MRCOwned<id<MTLSamplerState>> m_samplers[SamplerSelector::N_VALUES];
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};
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extern std::unique_ptr<ObjectCache> g_object_cache;
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} // namespace Metal
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