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https://github.com/doitsujin/dxvk.git
synced 2024-12-03 22:24:13 +01:00
[d3d11] Refactor Render Target View Creation
Part 2 / 4 of the refactor.
This commit is contained in:
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0598982f35
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1038bf2ef5
@ -694,96 +694,12 @@ namespace dxvk {
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return E_INVALIDARG;
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return E_INVALIDARG;
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}
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}
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// Retrieve the image that we are going to create the view for
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const D3D11CommonTexture* textureInfo = GetCommonTexture(pResource);
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// Fill in Vulkan image view info
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DxvkImageViewCreateInfo viewInfo;
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viewInfo.format = m_dxgiAdapter->LookupFormat(desc.Format, DXGI_VK_FORMAT_MODE_COLOR).Format;
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viewInfo.aspect = imageFormatInfo(viewInfo.format)->aspectMask;
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viewInfo.usage = VK_IMAGE_USAGE_COLOR_ATTACHMENT_BIT;
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switch (desc.ViewDimension) {
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case D3D11_RTV_DIMENSION_TEXTURE1D:
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viewInfo.type = VK_IMAGE_VIEW_TYPE_1D;
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viewInfo.minLevel = desc.Texture1D.MipSlice;
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viewInfo.numLevels = 1;
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viewInfo.minLayer = 0;
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viewInfo.numLayers = 1;
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break;
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case D3D11_RTV_DIMENSION_TEXTURE1DARRAY:
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viewInfo.type = VK_IMAGE_VIEW_TYPE_1D_ARRAY;
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viewInfo.minLevel = desc.Texture1DArray.MipSlice;
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viewInfo.numLevels = 1;
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viewInfo.minLayer = desc.Texture1DArray.FirstArraySlice;
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viewInfo.numLayers = desc.Texture1DArray.ArraySize;
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break;
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case D3D11_RTV_DIMENSION_TEXTURE2D:
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viewInfo.type = VK_IMAGE_VIEW_TYPE_2D;
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viewInfo.minLevel = desc.Texture2D.MipSlice;
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viewInfo.numLevels = 1;
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viewInfo.minLayer = 0;
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viewInfo.numLayers = 1;
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break;
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case D3D11_RTV_DIMENSION_TEXTURE2DARRAY:
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viewInfo.type = VK_IMAGE_VIEW_TYPE_2D_ARRAY;
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viewInfo.minLevel = desc.Texture2DArray.MipSlice;
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viewInfo.numLevels = 1;
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viewInfo.minLayer = desc.Texture2DArray.FirstArraySlice;
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viewInfo.numLayers = desc.Texture2DArray.ArraySize;
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break;
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case D3D11_RTV_DIMENSION_TEXTURE2DMS:
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viewInfo.type = VK_IMAGE_VIEW_TYPE_2D;
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viewInfo.minLevel = 0;
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viewInfo.numLevels = 1;
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viewInfo.minLayer = 0;
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viewInfo.numLayers = 1;
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break;
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case D3D11_RTV_DIMENSION_TEXTURE2DMSARRAY:
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viewInfo.type = VK_IMAGE_VIEW_TYPE_2D_ARRAY;
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viewInfo.minLevel = 0;
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viewInfo.numLevels = 1;
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viewInfo.minLayer = desc.Texture2DMSArray.FirstArraySlice;
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viewInfo.numLayers = desc.Texture2DMSArray.ArraySize;
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break;
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case D3D11_RTV_DIMENSION_TEXTURE3D:
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viewInfo.type = VK_IMAGE_VIEW_TYPE_2D_ARRAY;
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viewInfo.minLevel = desc.Texture3D.MipSlice;
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viewInfo.numLevels = 1;
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viewInfo.minLayer = desc.Texture3D.FirstWSlice;
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viewInfo.numLayers = desc.Texture3D.WSize;
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break;
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default:
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Logger::err(str::format(
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"D3D11: pDesc->ViewDimension not supported for render target views: ",
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desc.ViewDimension));
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return E_INVALIDARG;
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}
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// Normalize view type so that we won't accidentally
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// bind 2D array views and 2D views at the same time
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if (viewInfo.numLayers == 1) {
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if (viewInfo.type == VK_IMAGE_VIEW_TYPE_1D_ARRAY) viewInfo.type = VK_IMAGE_VIEW_TYPE_1D;
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if (viewInfo.type == VK_IMAGE_VIEW_TYPE_2D_ARRAY) viewInfo.type = VK_IMAGE_VIEW_TYPE_2D;
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}
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// Create the actual image view if requested
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// Create the actual image view if requested
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if (ppRTView == nullptr)
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if (ppRTView == nullptr)
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return S_FALSE;
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return S_FALSE;
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try {
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try {
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*ppRTView = ref(new D3D11RenderTargetView(
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*ppRTView = ref(new D3D11RenderTargetView(this, pResource, &desc));
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this, pResource, desc,
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m_dxvkDevice->createImageView(
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textureInfo->GetImage(),
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viewInfo)));
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return S_OK;
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return S_OK;
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} catch (const DxvkError& e) {
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} catch (const DxvkError& e) {
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Logger::err(e.message());
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Logger::err(e.message());
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@ -6,12 +6,87 @@
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namespace dxvk {
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namespace dxvk {
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D3D11RenderTargetView::D3D11RenderTargetView(
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D3D11RenderTargetView::D3D11RenderTargetView(
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D3D11Device* device,
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D3D11Device* pDevice,
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ID3D11Resource* resource,
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ID3D11Resource* pResource,
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const D3D11_RENDER_TARGET_VIEW_DESC& desc,
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const D3D11_RENDER_TARGET_VIEW_DESC* pDesc)
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const Rc<DxvkImageView>& view)
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: m_device(pDevice), m_resource(pResource), m_desc(*pDesc) {
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: m_device(device), m_resource(resource),
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DxvkImageViewCreateInfo viewInfo;
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m_desc(desc), m_view(view) { }
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viewInfo.format = pDevice->LookupFormat(pDesc->Format, DXGI_VK_FORMAT_MODE_COLOR).Format;
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viewInfo.aspect = imageFormatInfo(viewInfo.format)->aspectMask;
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viewInfo.usage = VK_IMAGE_USAGE_COLOR_ATTACHMENT_BIT;
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switch (pDesc->ViewDimension) {
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case D3D11_RTV_DIMENSION_TEXTURE1D:
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viewInfo.type = VK_IMAGE_VIEW_TYPE_1D;
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viewInfo.minLevel = pDesc->Texture1D.MipSlice;
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viewInfo.numLevels = 1;
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viewInfo.minLayer = 0;
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viewInfo.numLayers = 1;
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break;
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case D3D11_RTV_DIMENSION_TEXTURE1DARRAY:
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viewInfo.type = VK_IMAGE_VIEW_TYPE_1D_ARRAY;
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viewInfo.minLevel = pDesc->Texture1DArray.MipSlice;
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viewInfo.numLevels = 1;
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viewInfo.minLayer = pDesc->Texture1DArray.FirstArraySlice;
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viewInfo.numLayers = pDesc->Texture1DArray.ArraySize;
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break;
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case D3D11_RTV_DIMENSION_TEXTURE2D:
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viewInfo.type = VK_IMAGE_VIEW_TYPE_2D;
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viewInfo.minLevel = pDesc->Texture2D.MipSlice;
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viewInfo.numLevels = 1;
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viewInfo.minLayer = 0;
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viewInfo.numLayers = 1;
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break;
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case D3D11_RTV_DIMENSION_TEXTURE2DARRAY:
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viewInfo.type = VK_IMAGE_VIEW_TYPE_2D_ARRAY;
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viewInfo.minLevel = pDesc->Texture2DArray.MipSlice;
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viewInfo.numLevels = 1;
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viewInfo.minLayer = pDesc->Texture2DArray.FirstArraySlice;
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viewInfo.numLayers = pDesc->Texture2DArray.ArraySize;
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break;
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case D3D11_RTV_DIMENSION_TEXTURE2DMS:
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viewInfo.type = VK_IMAGE_VIEW_TYPE_2D;
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viewInfo.minLevel = 0;
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viewInfo.numLevels = 1;
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viewInfo.minLayer = 0;
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viewInfo.numLayers = 1;
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break;
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case D3D11_RTV_DIMENSION_TEXTURE2DMSARRAY:
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viewInfo.type = VK_IMAGE_VIEW_TYPE_2D_ARRAY;
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viewInfo.minLevel = 0;
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viewInfo.numLevels = 1;
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viewInfo.minLayer = pDesc->Texture2DMSArray.FirstArraySlice;
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viewInfo.numLayers = pDesc->Texture2DMSArray.ArraySize;
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break;
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case D3D11_RTV_DIMENSION_TEXTURE3D:
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viewInfo.type = VK_IMAGE_VIEW_TYPE_2D_ARRAY;
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viewInfo.minLevel = pDesc->Texture3D.MipSlice;
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viewInfo.numLevels = 1;
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viewInfo.minLayer = pDesc->Texture3D.FirstWSlice;
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viewInfo.numLayers = pDesc->Texture3D.WSize;
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break;
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default:
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throw DxvkError("D3D11: Invalid view dimension for RTV");
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}
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// Normalize view type so that we won't accidentally
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// bind 2D array views and 2D views at the same time
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if (viewInfo.numLayers == 1) {
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if (viewInfo.type == VK_IMAGE_VIEW_TYPE_1D_ARRAY) viewInfo.type = VK_IMAGE_VIEW_TYPE_1D;
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if (viewInfo.type == VK_IMAGE_VIEW_TYPE_2D_ARRAY) viewInfo.type = VK_IMAGE_VIEW_TYPE_2D;
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}
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// Create the underlying image view object
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m_view = pDevice->GetDXVKDevice()->createImageView(
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GetCommonTexture(pResource)->GetImage(), viewInfo);
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}
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D3D11RenderTargetView::~D3D11RenderTargetView() {
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D3D11RenderTargetView::~D3D11RenderTargetView() {
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@ -16,10 +16,9 @@ namespace dxvk {
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public:
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public:
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D3D11RenderTargetView(
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D3D11RenderTargetView(
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D3D11Device* device,
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D3D11Device* pDevice,
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ID3D11Resource* resource,
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ID3D11Resource* pResource,
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const D3D11_RENDER_TARGET_VIEW_DESC& desc,
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const D3D11_RENDER_TARGET_VIEW_DESC* pDesc);
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const Rc<DxvkImageView>& view);
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~D3D11RenderTargetView();
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~D3D11RenderTargetView();
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