178 lines
5.2 KiB
C++
178 lines
5.2 KiB
C++
// SPDX-FileCopyrightText: 2022 yuzu Emulator Project
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// SPDX-License-Identifier: GPL-3.0-or-later
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#pragma once
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#include <array>
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#include <cstddef>
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#include <vector>
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#include "common/bit_field.h"
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#include "common/common_funcs.h"
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#include "common/common_types.h"
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#include "video_core/engines/engine_interface.h"
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namespace Core {
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class System;
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}
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namespace Tegra {
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class MemoryManager;
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class DmaPusher;
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enum class EngineID {
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FERMI_TWOD_A = 0x902D, // 2D Engine
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MAXWELL_B = 0xB197, // 3D Engine
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KEPLER_COMPUTE_B = 0xB1C0,
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KEPLER_INLINE_TO_MEMORY_B = 0xA140,
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MAXWELL_DMA_COPY_A = 0xB0B5,
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};
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namespace Control {
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struct ChannelState;
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}
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} // namespace Tegra
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namespace VideoCore {
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class RasterizerInterface;
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}
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namespace Tegra::Engines {
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class Puller final {
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public:
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struct MethodCall {
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u32 method{};
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u32 argument{};
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u32 subchannel{};
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u32 method_count{};
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explicit MethodCall(u32 method_, u32 argument_, u32 subchannel_ = 0, u32 method_count_ = 0)
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: method(method_), argument(argument_), subchannel(subchannel_),
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method_count(method_count_) {}
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[[nodiscard]] bool IsLastCall() const {
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return method_count <= 1;
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}
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};
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enum class FenceOperation : u32 {
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Acquire = 0,
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Increment = 1,
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};
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union FenceAction {
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u32 raw;
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BitField<0, 1, FenceOperation> op;
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BitField<8, 24, u32> syncpoint_id;
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};
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explicit Puller(GPU& gpu_, MemoryManager& memory_manager_, DmaPusher& dma_pusher,
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Control::ChannelState& channel_state);
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~Puller();
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void CallMethod(const MethodCall& method_call);
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void CallMultiMethod(u32 method, u32 subchannel, const u32* base_start, u32 amount,
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u32 methods_pending);
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void BindRasterizer(VideoCore::RasterizerInterface* rasterizer);
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void CallPullerMethod(const MethodCall& method_call);
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void CallEngineMethod(const MethodCall& method_call);
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void CallEngineMultiMethod(u32 method, u32 subchannel, const u32* base_start, u32 amount,
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u32 methods_pending);
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private:
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Tegra::GPU& gpu;
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MemoryManager& memory_manager;
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DmaPusher& dma_pusher;
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Control::ChannelState& channel_state;
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VideoCore::RasterizerInterface* rasterizer = nullptr;
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static constexpr std::size_t NUM_REGS = 0x800;
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struct Regs {
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static constexpr size_t NUM_REGS = 0x40;
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union {
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struct {
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INSERT_PADDING_WORDS_NOINIT(0x4);
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struct {
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u32 address_high;
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u32 address_low;
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[[nodiscard]] GPUVAddr SemaphoreAddress() const {
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return static_cast<GPUVAddr>((static_cast<GPUVAddr>(address_high) << 32) |
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address_low);
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}
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} semaphore_address;
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u32 semaphore_sequence;
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u32 semaphore_trigger;
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INSERT_PADDING_WORDS_NOINIT(0xC);
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// The pusher and the puller share the reference counter, the pusher only has read
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// access
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u32 reference_count;
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INSERT_PADDING_WORDS_NOINIT(0x5);
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u32 semaphore_acquire;
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u32 semaphore_release;
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u32 fence_value;
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FenceAction fence_action;
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INSERT_PADDING_WORDS_NOINIT(0xE2);
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// Puller state
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u32 acquire_mode;
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u32 acquire_source;
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u32 acquire_active;
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u32 acquire_timeout;
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u32 acquire_value;
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};
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std::array<u32, NUM_REGS> reg_array;
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};
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} regs{};
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void ProcessBindMethod(const MethodCall& method_call);
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void ProcessFenceActionMethod();
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void ProcessSemaphoreAcquire();
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void ProcessSemaphoreRelease();
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void ProcessSemaphoreTriggerMethod();
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[[nodiscard]] bool ExecuteMethodOnEngine(u32 method);
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/// Mapping of command subchannels to their bound engine ids
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std::array<EngineID, 8> bound_engines{};
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enum class GpuSemaphoreOperation {
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AcquireEqual = 0x1,
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WriteLong = 0x2,
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AcquireGequal = 0x4,
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AcquireMask = 0x8,
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};
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#define ASSERT_REG_POSITION(field_name, position) \
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static_assert(offsetof(Regs, field_name) == position * 4, \
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"Field " #field_name " has invalid position")
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ASSERT_REG_POSITION(semaphore_address, 0x4);
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ASSERT_REG_POSITION(semaphore_sequence, 0x6);
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ASSERT_REG_POSITION(semaphore_trigger, 0x7);
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ASSERT_REG_POSITION(reference_count, 0x14);
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ASSERT_REG_POSITION(semaphore_acquire, 0x1A);
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ASSERT_REG_POSITION(semaphore_release, 0x1B);
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ASSERT_REG_POSITION(fence_value, 0x1C);
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ASSERT_REG_POSITION(fence_action, 0x1D);
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ASSERT_REG_POSITION(acquire_mode, 0x100);
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ASSERT_REG_POSITION(acquire_source, 0x101);
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ASSERT_REG_POSITION(acquire_active, 0x102);
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ASSERT_REG_POSITION(acquire_timeout, 0x103);
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ASSERT_REG_POSITION(acquire_value, 0x104);
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#undef ASSERT_REG_POSITION
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};
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} // namespace Tegra::Engines
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