forked from MoonsideGames/Refresh
implement all texture data setters
parent
bd4bd74020
commit
deb2d6f7a7
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@ -2967,13 +2967,6 @@ static REFRESH_Buffer* VULKAN_GenIndexBuffer(
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return (REFRESH_Buffer*) buffer;
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return (REFRESH_Buffer*) buffer;
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}
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}
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static REFRESH_Buffer* VULKAN_GenShaderParamBuffer(
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REFRESH_Renderer *driverData,
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uint32_t sizeInBytes
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) {
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SDL_assert(0);
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}
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static void VULKAN_SetTextureData2D(
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static void VULKAN_SetTextureData2D(
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REFRESH_Renderer *driverData,
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REFRESH_Renderer *driverData,
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REFRESH_Texture *texture,
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REFRESH_Texture *texture,
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@ -3063,7 +3056,69 @@ static void VULKAN_SetTextureData3D(
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void* data,
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void* data,
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uint32_t dataLength
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uint32_t dataLength
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) {
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) {
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SDL_assert(0);
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VkResult vulkanResult;
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VulkanRenderer *renderer = (VulkanRenderer*) driverData;
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VulkanTexture *vulkanTexture = (VulkanTexture*) texture;
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VkBufferImageCopy imageCopy;
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uint8_t *mapPointer;
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vulkanResult = renderer->vkMapMemory(
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renderer->logicalDevice,
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renderer->textureStagingBuffer->allocation->memory,
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renderer->textureStagingBuffer->offset,
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renderer->textureStagingBuffer->size,
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0,
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(void**) &mapPointer
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);
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if (vulkanResult != VK_SUCCESS)
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{
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REFRESH_LogError("Failed to map buffer memory!");
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return;
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}
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SDL_memcpy(mapPointer, data, dataLength);
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renderer->vkUnmapMemory(
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renderer->logicalDevice,
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renderer->textureStagingBuffer->allocation->memory
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);
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VULKAN_INTERNAL_ImageMemoryBarrier(
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renderer,
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RESOURCE_ACCESS_TRANSFER_WRITE,
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VK_IMAGE_ASPECT_COLOR_BIT,
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0,
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vulkanTexture->layerCount,
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0,
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vulkanTexture->levelCount,
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0,
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vulkanTexture->image,
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&vulkanTexture->resourceAccessType
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);
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imageCopy.imageExtent.width = w;
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imageCopy.imageExtent.height = h;
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imageCopy.imageExtent.depth = d;
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imageCopy.imageOffset.x = x;
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imageCopy.imageOffset.y = y;
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imageCopy.imageOffset.z = z;
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imageCopy.imageSubresource.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
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imageCopy.imageSubresource.baseArrayLayer = 0;
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imageCopy.imageSubresource.layerCount = 1;
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imageCopy.imageSubresource.mipLevel = level;
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imageCopy.bufferOffset = 0;
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imageCopy.bufferRowLength = 0;
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imageCopy.bufferImageHeight = 0;
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RECORD_CMD(renderer->vkCmdCopyBufferToImage(
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renderer->currentCommandBuffer,
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renderer->textureStagingBuffer->buffer,
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vulkanTexture->image,
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AccessMap[vulkanTexture->resourceAccessType].imageLayout,
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1,
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&imageCopy
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));
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}
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}
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static void VULKAN_SetTextureDataCube(
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static void VULKAN_SetTextureDataCube(
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@ -3078,7 +3133,69 @@ static void VULKAN_SetTextureDataCube(
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void* data,
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void* data,
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uint32_t dataLength
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uint32_t dataLength
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) {
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) {
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SDL_assert(0);
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VkResult vulkanResult;
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VulkanRenderer *renderer = (VulkanRenderer*) driverData;
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VulkanTexture *vulkanTexture = (VulkanTexture*) texture;
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VkBufferImageCopy imageCopy;
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uint8_t *mapPointer;
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vulkanResult = renderer->vkMapMemory(
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renderer->logicalDevice,
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renderer->textureStagingBuffer->allocation->memory,
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renderer->textureStagingBuffer->offset,
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renderer->textureStagingBuffer->size,
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0,
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(void**) &mapPointer
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);
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if (vulkanResult != VK_SUCCESS)
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{
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REFRESH_LogError("Failed to map buffer memory!");
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return;
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}
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SDL_memcpy(mapPointer, data, dataLength);
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renderer->vkUnmapMemory(
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renderer->logicalDevice,
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renderer->textureStagingBuffer->allocation->memory
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);
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VULKAN_INTERNAL_ImageMemoryBarrier(
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renderer,
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RESOURCE_ACCESS_TRANSFER_WRITE,
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VK_IMAGE_ASPECT_COLOR_BIT,
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0,
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vulkanTexture->layerCount,
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0,
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vulkanTexture->levelCount,
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0,
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vulkanTexture->image,
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&vulkanTexture->resourceAccessType
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);
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imageCopy.imageExtent.width = w;
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imageCopy.imageExtent.height = h;
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imageCopy.imageExtent.depth = 1;
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imageCopy.imageOffset.x = x;
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imageCopy.imageOffset.y = y;
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imageCopy.imageOffset.z = 0;
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imageCopy.imageSubresource.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
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imageCopy.imageSubresource.baseArrayLayer = cubeMapFace;
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imageCopy.imageSubresource.layerCount = 1;
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imageCopy.imageSubresource.mipLevel = level;
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imageCopy.bufferOffset = 0;
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imageCopy.bufferRowLength = 0; /* assumes tightly packed data */
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imageCopy.bufferImageHeight = 0; /* assumes tightly packed data */
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RECORD_CMD(renderer->vkCmdCopyBufferToImage(
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renderer->currentCommandBuffer,
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renderer->textureStagingBuffer->buffer,
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vulkanTexture->image,
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AccessMap[vulkanTexture->resourceAccessType].imageLayout,
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1,
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&imageCopy
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));
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}
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}
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static void VULKAN_SetTextureDataYUV(
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static void VULKAN_SetTextureDataYUV(
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@ -3093,7 +3210,158 @@ static void VULKAN_SetTextureDataYUV(
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void* data,
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void* data,
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uint32_t dataLength
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uint32_t dataLength
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) {
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) {
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SDL_assert(0);
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VulkanRenderer *renderer = (VulkanRenderer*) driverData;
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VulkanTexture *tex;
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uint8_t *dataPtr = (uint8_t*) data;
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int32_t yDataLength = BytesPerImage(yWidth, yHeight, REFRESH_SURFACEFORMAT_R8);
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int32_t uvDataLength = BytesPerImage(uvWidth, uvHeight, REFRESH_SURFACEFORMAT_R8);
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VkBufferImageCopy imageCopy;
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uint8_t *mapPointer;
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VkResult vulkanResult;
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/* Initialize values that are the same for Y, U, and V */
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imageCopy.imageExtent.depth = 1;
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imageCopy.imageOffset.x = 0;
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imageCopy.imageOffset.y = 0;
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imageCopy.imageOffset.z = 0;
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imageCopy.imageSubresource.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
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imageCopy.imageSubresource.baseArrayLayer = 0;
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imageCopy.imageSubresource.layerCount = 1;
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imageCopy.imageSubresource.mipLevel = 0;
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imageCopy.bufferOffset = 0;
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/* Y */
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tex = (VulkanTexture*) y;
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vulkanResult = renderer->vkMapMemory(
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renderer->logicalDevice,
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renderer->textureStagingBuffer->allocation->memory,
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renderer->textureStagingBuffer->offset,
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renderer->textureStagingBuffer->size,
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0,
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(void**) &mapPointer
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);
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if (vulkanResult != VK_SUCCESS)
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{
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REFRESH_LogError("Failed to map buffer memory!");
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return;
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}
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SDL_memcpy(
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mapPointer,
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dataPtr,
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yDataLength
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);
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VULKAN_INTERNAL_ImageMemoryBarrier(
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renderer,
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RESOURCE_ACCESS_TRANSFER_WRITE,
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VK_IMAGE_ASPECT_COLOR_BIT,
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0,
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tex->layerCount,
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0,
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tex->levelCount,
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0,
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tex->image,
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&tex->resourceAccessType
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);
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imageCopy.imageExtent.width = yWidth;
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imageCopy.imageExtent.height = yHeight;
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imageCopy.bufferRowLength = yWidth;
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imageCopy.bufferImageHeight = yHeight;
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RECORD_CMD(renderer->vkCmdCopyBufferToImage(
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renderer->currentCommandBuffer,
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renderer->textureStagingBuffer->buffer,
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tex->image,
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AccessMap[tex->resourceAccessType].imageLayout,
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1,
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&imageCopy
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));
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/* These apply to both U and V */
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imageCopy.imageExtent.width = uvWidth;
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imageCopy.imageExtent.height = uvHeight;
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imageCopy.bufferRowLength = uvWidth;
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imageCopy.bufferImageHeight = uvHeight;
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/* U */
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imageCopy.bufferOffset = yDataLength;
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tex = (VulkanTexture*) u;
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SDL_memcpy(
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mapPointer + yDataLength,
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dataPtr + yDataLength,
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uvDataLength
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);
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VULKAN_INTERNAL_ImageMemoryBarrier(
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renderer,
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RESOURCE_ACCESS_TRANSFER_WRITE,
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VK_IMAGE_ASPECT_COLOR_BIT,
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0,
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tex->layerCount,
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0,
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tex->levelCount,
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0,
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tex->image,
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&tex->resourceAccessType
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);
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RECORD_CMD(renderer->vkCmdCopyBufferToImage(
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renderer->currentCommandBuffer,
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renderer->textureStagingBuffer->buffer,
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tex->image,
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AccessMap[tex->resourceAccessType].imageLayout,
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1,
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&imageCopy
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));
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/* V */
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imageCopy.bufferOffset = yDataLength + uvDataLength;
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tex = (VulkanTexture*) v;
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SDL_memcpy(
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mapPointer + yDataLength + uvDataLength,
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dataPtr + yDataLength + uvDataLength,
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uvDataLength
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);
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renderer->vkUnmapMemory(
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renderer->logicalDevice,
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renderer->textureStagingBuffer->allocation->memory
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);
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VULKAN_INTERNAL_ImageMemoryBarrier(
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renderer,
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RESOURCE_ACCESS_TRANSFER_WRITE,
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VK_IMAGE_ASPECT_COLOR_BIT,
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0,
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tex->layerCount,
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0,
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tex->levelCount,
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0,
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tex->image,
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&tex->resourceAccessType
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);
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RECORD_CMD(renderer->vkCmdCopyBufferToImage(
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renderer->currentCommandBuffer,
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renderer->textureStagingBuffer->buffer,
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tex->image,
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AccessMap[tex->resourceAccessType].imageLayout,
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1,
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&imageCopy
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));
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}
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}
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static void VULKAN_SetVertexBufferData(
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static void VULKAN_SetVertexBufferData(
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