187 lines
6.1 KiB
C++
187 lines
6.1 KiB
C++
// Copyright 2015 Dolphin Emulator Project
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// Licensed under GPLv2+
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// Refer to the license.txt file included.
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#include "VideoBackends/D3D12/D3DDescriptorHeapManager.h"
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#include "VideoBackends/D3D12/D3DBase.h"
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#include "VideoBackends/D3D12/D3DState.h"
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namespace DX12
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{
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bool operator==(const D3DDescriptorHeapManager::SamplerStateSet& lhs,
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const D3DDescriptorHeapManager::SamplerStateSet& rhs)
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{
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// D3D12TODO: Do something more efficient than this.
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return (!memcmp(&lhs, &rhs, sizeof(D3DDescriptorHeapManager::SamplerStateSet)));
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}
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D3DDescriptorHeapManager::D3DDescriptorHeapManager(D3D12_DESCRIPTOR_HEAP_DESC* desc,
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ID3D12Device* device,
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unsigned int temporarySlots)
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: m_device(device)
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{
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CheckHR(device->CreateDescriptorHeap(desc, IID_PPV_ARGS(&m_descriptor_heap)));
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m_descriptor_heap_size = desc->NumDescriptors;
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m_descriptor_increment_size = device->GetDescriptorHandleIncrementSize(desc->Type);
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m_gpu_visible = (desc->Flags == D3D12_DESCRIPTOR_HEAP_FLAG_SHADER_VISIBLE);
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if (m_gpu_visible)
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{
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D3D12_DESCRIPTOR_HEAP_DESC cpu_shadow_heap_desc = *desc;
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cpu_shadow_heap_desc.Flags = D3D12_DESCRIPTOR_HEAP_FLAG_NONE;
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CheckHR(device->CreateDescriptorHeap(&cpu_shadow_heap_desc,
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IID_PPV_ARGS(&m_descriptor_heap_cpu_shadow)));
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m_heap_base_gpu = m_descriptor_heap->GetGPUDescriptorHandleForHeapStart();
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m_heap_base_gpu_cpu_shadow = m_descriptor_heap_cpu_shadow->GetCPUDescriptorHandleForHeapStart();
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}
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m_heap_base_cpu = m_descriptor_heap->GetCPUDescriptorHandleForHeapStart();
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m_first_temporary_slot_in_heap = m_descriptor_heap_size - temporarySlots;
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m_current_temporary_offset_in_heap = m_first_temporary_slot_in_heap;
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}
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bool D3DDescriptorHeapManager::Allocate(D3D12_CPU_DESCRIPTOR_HANDLE* cpu_handle,
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D3D12_GPU_DESCRIPTOR_HANDLE* gpu_handle,
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D3D12_CPU_DESCRIPTOR_HANDLE* gpu_handle_cpu_shadow,
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bool temporary)
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{
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bool allocated_from_current_heap = true;
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if (m_current_permanent_offset_in_heap + 1 >= m_first_temporary_slot_in_heap)
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{
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// If out of room in the heap, start back at beginning.
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allocated_from_current_heap = false;
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m_current_permanent_offset_in_heap = 0;
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}
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CHECK(!gpu_handle || (gpu_handle && m_gpu_visible),
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"D3D12_GPU_DESCRIPTOR_HANDLE used on non-GPU-visible heap.");
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if (temporary && m_current_temporary_offset_in_heap + 1 >= m_descriptor_heap_size)
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{
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m_current_temporary_offset_in_heap = m_first_temporary_slot_in_heap;
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}
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unsigned int heapOffsetToUse =
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temporary ? m_current_temporary_offset_in_heap : m_current_permanent_offset_in_heap;
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if (m_gpu_visible)
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{
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gpu_handle->ptr = m_heap_base_gpu.ptr + heapOffsetToUse * m_descriptor_increment_size;
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if (gpu_handle_cpu_shadow)
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gpu_handle_cpu_shadow->ptr =
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m_heap_base_gpu_cpu_shadow.ptr + heapOffsetToUse * m_descriptor_increment_size;
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}
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cpu_handle->ptr = m_heap_base_cpu.ptr + heapOffsetToUse * m_descriptor_increment_size;
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if (!temporary)
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{
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m_current_permanent_offset_in_heap++;
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}
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return allocated_from_current_heap;
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}
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bool D3DDescriptorHeapManager::AllocateGroup(
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D3D12_CPU_DESCRIPTOR_HANDLE* base_cpu_handle, unsigned int num_handles,
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D3D12_GPU_DESCRIPTOR_HANDLE* base_gpu_handle,
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D3D12_CPU_DESCRIPTOR_HANDLE* base_gpu_handle_cpu_shadow, bool temporary)
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{
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bool allocated_from_current_heap = true;
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if (m_current_permanent_offset_in_heap + num_handles >= m_first_temporary_slot_in_heap)
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{
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// If out of room in the heap, start back at beginning.
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allocated_from_current_heap = false;
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m_current_permanent_offset_in_heap = 0;
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}
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CHECK(!base_gpu_handle || (base_gpu_handle && m_gpu_visible),
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"D3D12_GPU_DESCRIPTOR_HANDLE used on non-GPU-visible heap.");
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if (temporary && m_current_temporary_offset_in_heap + num_handles >= m_descriptor_heap_size)
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{
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m_current_temporary_offset_in_heap = m_first_temporary_slot_in_heap;
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}
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unsigned int heapOffsetToUse =
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temporary ? m_current_temporary_offset_in_heap : m_current_permanent_offset_in_heap;
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if (m_gpu_visible)
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{
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base_gpu_handle->ptr = m_heap_base_gpu.ptr + heapOffsetToUse * m_descriptor_increment_size;
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if (base_gpu_handle_cpu_shadow)
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base_gpu_handle_cpu_shadow->ptr =
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m_heap_base_gpu_cpu_shadow.ptr + heapOffsetToUse * m_descriptor_increment_size;
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}
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base_cpu_handle->ptr = m_heap_base_cpu.ptr + heapOffsetToUse * m_descriptor_increment_size;
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if (temporary)
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{
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m_current_temporary_offset_in_heap += num_handles;
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}
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else
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{
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m_current_permanent_offset_in_heap += num_handles;
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}
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return allocated_from_current_heap;
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}
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D3D12_GPU_DESCRIPTOR_HANDLE
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D3DDescriptorHeapManager::GetHandleForSamplerGroup(SamplerState* sampler_state,
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unsigned int num_sampler_samples)
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{
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auto it = m_sampler_map.find(*reinterpret_cast<SamplerStateSet*>(sampler_state));
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if (it == m_sampler_map.end())
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{
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D3D12_CPU_DESCRIPTOR_HANDLE base_sampler_cpu_handle;
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D3D12_GPU_DESCRIPTOR_HANDLE base_sampler_gpu_handle;
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bool allocatedFromExistingHeap =
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AllocateGroup(&base_sampler_cpu_handle, num_sampler_samples, &base_sampler_gpu_handle);
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if (!allocatedFromExistingHeap)
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{
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m_sampler_map.clear();
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}
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for (unsigned int i = 0; i < num_sampler_samples; i++)
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{
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D3D12_CPU_DESCRIPTOR_HANDLE destinationDescriptor;
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destinationDescriptor.ptr = base_sampler_cpu_handle.ptr + i * D3D::sampler_descriptor_size;
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D3D::device12->CreateSampler(&StateCache::GetDesc12(sampler_state[i]), destinationDescriptor);
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}
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m_sampler_map[*reinterpret_cast<SamplerStateSet*>(sampler_state)] = base_sampler_gpu_handle;
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return base_sampler_gpu_handle;
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}
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else
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{
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return it->second;
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}
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}
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ID3D12DescriptorHeap* D3DDescriptorHeapManager::GetDescriptorHeap() const
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{
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return m_descriptor_heap;
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}
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D3DDescriptorHeapManager::~D3DDescriptorHeapManager()
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{
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SAFE_RELEASE(m_descriptor_heap);
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SAFE_RELEASE(m_descriptor_heap_cpu_shadow);
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}
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} // namespace DX12
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