155 lines
6.9 KiB
Objective-C
155 lines
6.9 KiB
Objective-C
// Copyright 2018 The Dawn Authors
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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#ifndef DAWNNATIVE_METAL_DEVICEMTL_H_
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#define DAWNNATIVE_METAL_DEVICEMTL_H_
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#include "dawn_native/dawn_platform.h"
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#include "dawn_native/Commands.h"
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#include "dawn_native/Device.h"
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#include "dawn_native/metal/CommandRecordingContext.h"
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#include "dawn_native/metal/Forward.h"
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#import <IOSurface/IOSurfaceRef.h>
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#import <Metal/Metal.h>
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#import <QuartzCore/QuartzCore.h>
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#include <atomic>
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#include <memory>
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#include <mutex>
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namespace dawn::native::metal {
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namespace {
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struct KalmanInfo;
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}
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class Device final : public DeviceBase {
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public:
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static ResultOrError<Ref<Device>> Create(AdapterBase* adapter,
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NSPRef<id<MTLDevice>> mtlDevice,
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const DeviceDescriptor* descriptor);
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~Device() override;
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MaybeError Initialize();
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MaybeError TickImpl() override;
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id<MTLDevice> GetMTLDevice();
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id<MTLCommandQueue> GetMTLQueue();
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CommandRecordingContext* GetPendingCommandContext();
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MaybeError SubmitPendingCommandBuffer();
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Ref<Texture> CreateTextureWrappingIOSurface(const ExternalImageDescriptor* descriptor,
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IOSurfaceRef ioSurface,
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uint32_t plane);
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void WaitForCommandsToBeScheduled();
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ResultOrError<std::unique_ptr<StagingBufferBase>> CreateStagingBuffer(size_t size) override;
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MaybeError CopyFromStagingToBuffer(StagingBufferBase* source,
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uint64_t sourceOffset,
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BufferBase* destination,
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uint64_t destinationOffset,
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uint64_t size) override;
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MaybeError CopyFromStagingToTexture(const StagingBufferBase* source,
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const TextureDataLayout& dataLayout,
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TextureCopy* dst,
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const Extent3D& copySizePixels) override;
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uint32_t GetOptimalBytesPerRowAlignment() const override;
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uint64_t GetOptimalBufferToTextureCopyOffsetAlignment() const override;
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float GetTimestampPeriodInNS() const override;
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private:
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Device(AdapterBase* adapter,
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NSPRef<id<MTLDevice>> mtlDevice,
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const DeviceDescriptor* descriptor);
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ResultOrError<Ref<BindGroupBase>> CreateBindGroupImpl(
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const BindGroupDescriptor* descriptor) override;
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ResultOrError<Ref<BindGroupLayoutBase>> CreateBindGroupLayoutImpl(
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const BindGroupLayoutDescriptor* descriptor,
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PipelineCompatibilityToken pipelineCompatibilityToken) override;
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ResultOrError<Ref<BufferBase>> CreateBufferImpl(
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const BufferDescriptor* descriptor) override;
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ResultOrError<Ref<CommandBufferBase>> CreateCommandBuffer(
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CommandEncoder* encoder,
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const CommandBufferDescriptor* descriptor) override;
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ResultOrError<Ref<PipelineLayoutBase>> CreatePipelineLayoutImpl(
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const PipelineLayoutDescriptor* descriptor) override;
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ResultOrError<Ref<QuerySetBase>> CreateQuerySetImpl(
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const QuerySetDescriptor* descriptor) override;
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ResultOrError<Ref<SamplerBase>> CreateSamplerImpl(
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const SamplerDescriptor* descriptor) override;
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ResultOrError<Ref<ShaderModuleBase>> CreateShaderModuleImpl(
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const ShaderModuleDescriptor* descriptor,
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ShaderModuleParseResult* parseResult) override;
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ResultOrError<Ref<SwapChainBase>> CreateSwapChainImpl(
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const SwapChainDescriptor* descriptor) override;
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ResultOrError<Ref<NewSwapChainBase>> CreateSwapChainImpl(
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Surface* surface,
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NewSwapChainBase* previousSwapChain,
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const SwapChainDescriptor* descriptor) override;
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ResultOrError<Ref<TextureBase>> CreateTextureImpl(
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const TextureDescriptor* descriptor) override;
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ResultOrError<Ref<TextureViewBase>> CreateTextureViewImpl(
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TextureBase* texture,
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const TextureViewDescriptor* descriptor) override;
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Ref<ComputePipelineBase> CreateUninitializedComputePipelineImpl(
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const ComputePipelineDescriptor* descriptor) override;
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Ref<RenderPipelineBase> CreateUninitializedRenderPipelineImpl(
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const RenderPipelineDescriptor* descriptor) override;
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void InitializeComputePipelineAsyncImpl(Ref<ComputePipelineBase> computePipeline,
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WGPUCreateComputePipelineAsyncCallback callback,
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void* userdata) override;
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void InitializeRenderPipelineAsyncImpl(Ref<RenderPipelineBase> renderPipeline,
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WGPUCreateRenderPipelineAsyncCallback callback,
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void* userdata) override;
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void InitTogglesFromDriver();
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void DestroyImpl() override;
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MaybeError WaitForIdleForDestruction() override;
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ResultOrError<ExecutionSerial> CheckAndUpdateCompletedSerials() override;
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NSPRef<id<MTLDevice>> mMtlDevice;
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NSPRef<id<MTLCommandQueue>> mCommandQueue;
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CommandRecordingContext mCommandContext;
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// The completed serial is updated in a Metal completion handler that can be fired on a
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// different thread, so it needs to be atomic.
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std::atomic<uint64_t> mCompletedSerial;
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// mLastSubmittedCommands will be accessed in a Metal schedule handler that can be fired on
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// a different thread so we guard access to it with a mutex.
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std::mutex mLastSubmittedCommandsMutex;
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NSPRef<id<MTLCommandBuffer>> mLastSubmittedCommands;
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// The current estimation of timestamp period
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float mTimestampPeriod = 1.0f;
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// The base of CPU timestamp and GPU timestamp to measure the linear regression between GPU
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// and CPU timestamps.
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MTLTimestamp mCpuTimestamp API_AVAILABLE(macos(10.15), ios(14.0)) = 0;
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MTLTimestamp mGpuTimestamp API_AVAILABLE(macos(10.15), ios(14.0)) = 0;
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// The parameters for kalman filter
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std::unique_ptr<KalmanInfo> mKalmanInfo;
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};
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} // namespace dawn::native::metal
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#endif // DAWNNATIVE_METAL_DEVICEMTL_H_
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