Files
LookingGlass/idd/LGIdd/CFrameBufferResource.cpp
Geoffrey McRae 6109501eed [idd] select linear RGB24 packing automatically
Replace the texture-shaped RGB24 output with a linear raw buffer and
keep its packing, damage translation, and buffer copies inside the
RGB24 effect.

Benchmark full-frame native and packed processing and retain the faster
path for each source format. Preserve logical damage rectangles for
client updates and alternating framebuffer repair.

Return compute outputs to COMMON for COPY queue handoff and refresh
cached framebuffer sizes when switching packed and native layouts.
2026-08-03 23:53:33 +10:00

135 lines
3.7 KiB
C++

/**
* Looking Glass
* Copyright © 2017-2026 The Looking Glass Authors
* https://looking-glass.io
*
* This program is free software; you can redistribute it and/or modify it
* under the terms of the GNU General Public License as published by the Free
* Software Foundation; either version 2 of the License, or (at your option)
* any later version.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
* more details.
*
* You should have received a copy of the GNU General Public License along
* with this program; if not, write to the Free Software Foundation, Inc., 59
* Temple Place, Suite 330, Boston, MA 02111-1307 USA
*/
#include "CFrameBufferResource.h"
#include "CSwapChainProcessor.h"
#include "CDebug.h"
bool CFrameBufferResource::Init(CSwapChainProcessor * swapChain, unsigned frameIndex, uint8_t * base, size_t size)
{
m_frameIndex = frameIndex;
if (size > swapChain->GetDevice()->GetMaxFrameSize())
{
DEBUG_ERROR("Frame size of %llu is too large to fit in shared ram",
(unsigned long long)size);
return false;
}
// nothing to do if the resource already exists and is large enough
if (m_base == base && m_size >= size)
{
m_frameSize = size;
return true;
}
Reset();
D3D12_RESOURCE_DESC desc = {};
desc.Dimension = D3D12_RESOURCE_DIMENSION_BUFFER;
desc.Width = size;
desc.Height = 1;
desc.DepthOrArraySize = 1;
desc.MipLevels = 1;
desc.Format = DXGI_FORMAT_UNKNOWN;
desc.SampleDesc.Count = 1;
desc.SampleDesc.Quality = 0;
desc.Layout = D3D12_TEXTURE_LAYOUT_ROW_MAJOR;
desc.Flags = D3D12_RESOURCE_FLAG_NONE;
HRESULT hr;
const WCHAR * resName;
if (swapChain->GetD3D12Device()->IsIndirectCopy())
{
DEBUG_TRACE("Creating standard resource for %p", base);
D3D12_HEAP_PROPERTIES heapProps = {};
heapProps.Type = D3D12_HEAP_TYPE_READBACK;
heapProps.CPUPageProperty = D3D12_CPU_PAGE_PROPERTY_UNKNOWN;
heapProps.MemoryPoolPreference = D3D12_MEMORY_POOL_UNKNOWN;
heapProps.CreationNodeMask = 1;
heapProps.VisibleNodeMask = 1;
hr = swapChain->GetD3D12Device()->GetDevice()->CreateCommittedResource(
&heapProps,
D3D12_HEAP_FLAG_NONE,
&desc,
D3D12_RESOURCE_STATE_COPY_DEST,
NULL,
IID_PPV_ARGS(&m_res)
);
resName = L"STAGING";
if (SUCCEEDED(hr))
{
D3D12_RANGE range = {0, 0};
hr = m_res->Map(0, &range, &m_map);
if (FAILED(hr))
{
DEBUG_ERROR_HR(hr, "Failed to map the resource");
return false;
}
}
}
else
{
DEBUG_TRACE("Creating ivshmem resource for %p", base);
desc.Alignment = D3D12_DEFAULT_RESOURCE_PLACEMENT_ALIGNMENT;
desc.Flags = D3D12_RESOURCE_FLAG_ALLOW_CROSS_ADAPTER;
hr = swapChain->GetD3D12Device()->GetDevice()->CreatePlacedResource(
swapChain->GetD3D12Device()->GetHeap().Get(),
(uintptr_t)base - (uintptr_t)swapChain->GetDevice()->GetIVSHMEM().GetMem(),
&desc,
D3D12_RESOURCE_STATE_COMMON,
NULL,
IID_PPV_ARGS(&m_res)
);
resName = L"IVSHMEM";
}
if (FAILED(hr))
{
DEBUG_ERROR_HR(hr, "Failed to create the FrameBuffer ID3D12Resource");
return false;
}
m_res->SetName(resName);
m_base = base;
m_size = size;
m_frameSize = size;
return true;
}
void CFrameBufferResource::Reset()
{
if (m_map)
{
m_res->Unmap(0, NULL);
m_map = NULL;
}
m_base = nullptr;
m_size = 0;
m_frameSize = 0;
m_res.Reset();
}