remove Clear and add pWidth and pHeight to AcquireSwapchainTexture
continuous-integration/drone/push Build is passing
Details
continuous-integration/drone/push Build is passing
Details
parent
7a0b0f5709
commit
3820d458fe
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@ -107,15 +107,6 @@ typedef enum Refresh_StoreOp
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REFRESH_STOREOP_DONT_CARE
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REFRESH_STOREOP_DONT_CARE
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} Refresh_StoreOp;
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} Refresh_StoreOp;
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typedef enum Refresh_ClearOptionsBits
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{
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REFRESH_CLEAROPTIONS_COLOR = 0x00000001,
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REFRESH_CLEAROPTIONS_DEPTH = 0x00000002,
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REFRESH_CLEAROPTIONS_STENCIL = 0x00000004,
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} Refresh_ClearOptionsBits;
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typedef uint32_t Refresh_ClearOptions;
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typedef enum Refresh_IndexElementSize
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typedef enum Refresh_IndexElementSize
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{
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{
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REFRESH_INDEXELEMENTSIZE_16BIT,
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REFRESH_INDEXELEMENTSIZE_16BIT,
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@ -607,30 +598,6 @@ REFRESHAPI void Refresh_DestroyDevice(Refresh_Device *device);
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/* Drawing */
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/* Drawing */
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/* Clears the targets of the currently bound framebuffer.
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* If fewer colors are passed than the number of color targets in the
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* framebuffer, this function will clear the first n color targets.
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*
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* NOTE:
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* It is generally recommended to clear in BeginRenderPass
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* rather than by calling this function unless necessary.
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*
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* clearRect: Area to clear.
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* options: Bitflags to specify color/depth/stencil buffers for clearing.
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* colors: An array of color values for the cleared color buffers.
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* colorCount: The number of colors in the above array.
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* depthStencil: Depth and stencil values for the cleared depth stencil buffer.
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*/
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REFRESHAPI void Refresh_Clear(
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Refresh_Device *device,
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Refresh_CommandBuffer *commandBuffer,
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Refresh_Rect *clearRect,
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Refresh_ClearOptions options,
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Refresh_Vec4 *colors,
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uint32_t colorCount,
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Refresh_DepthStencilValue depthStencil
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);
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/* Draws data from vertex/index buffers with instancing enabled.
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/* Draws data from vertex/index buffers with instancing enabled.
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*
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*
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* baseVertex: The starting offset to read from the vertex buffer.
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* baseVertex: The starting offset to read from the vertex buffer.
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@ -1136,17 +1103,22 @@ REFRESHAPI Refresh_CommandBuffer* Refresh_AcquireCommandBuffer(
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/* Acquires a texture to use for presentation.
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/* Acquires a texture to use for presentation.
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* May return NULL under certain conditions.
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* May return NULL under certain conditions.
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* If NULL, the user must ensure to not present.
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* If NULL, the user must ensure to not use the texture.
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* Once a swapchain texture is acquired,
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* Once a swapchain texture is acquired,
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* it will automatically be presented on command buffer submission.
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* it will automatically be presented on command buffer submission.
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*
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*
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* NOTE:
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* NOTE:
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* It is not recommended to hold a reference to this texture long term.
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* It is not recommended to hold a reference to this texture long term.
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*
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* pWidth: A pointer to a uint32 that will be filled with the texture width.
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* pHeight: A pointer to a uint32 that will be filled with the texture height.
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*/
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*/
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REFRESHAPI Refresh_Texture* Refresh_AcquireSwapchainTexture(
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REFRESHAPI Refresh_Texture* Refresh_AcquireSwapchainTexture(
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Refresh_Device *device,
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Refresh_Device *device,
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Refresh_CommandBuffer *commandBuffer,
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Refresh_CommandBuffer *commandBuffer,
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void *windowHandle
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void *windowHandle,
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uint32_t *pWidth,
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uint32_t *pHeight
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);
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);
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/* Returns the format of the swapchain for the given window. */
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/* Returns the format of the swapchain for the given window. */
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@ -147,27 +147,6 @@ void Refresh_DestroyDevice(Refresh_Device *device)
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device->DestroyDevice(device);
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device->DestroyDevice(device);
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}
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}
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void Refresh_Clear(
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Refresh_Device *device,
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Refresh_CommandBuffer *commandBuffer,
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Refresh_Rect *clearRect,
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Refresh_ClearOptions options,
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Refresh_Vec4 *colors,
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uint32_t colorCount,
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Refresh_DepthStencilValue depthStencil
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) {
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NULL_RETURN(device);
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device->Clear(
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device->driverData,
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commandBuffer,
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clearRect,
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options,
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colors,
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colorCount,
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depthStencil
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);
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}
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void Refresh_DrawIndexedPrimitives(
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void Refresh_DrawIndexedPrimitives(
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Refresh_Device *device,
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Refresh_Device *device,
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Refresh_CommandBuffer *commandBuffer,
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Refresh_CommandBuffer *commandBuffer,
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@ -729,13 +708,17 @@ Refresh_CommandBuffer* Refresh_AcquireCommandBuffer(
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Refresh_Texture* Refresh_AcquireSwapchainTexture(
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Refresh_Texture* Refresh_AcquireSwapchainTexture(
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Refresh_Device *device,
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Refresh_Device *device,
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Refresh_CommandBuffer *commandBuffer,
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Refresh_CommandBuffer *commandBuffer,
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void *windowHandle
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void *windowHandle,
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uint32_t *pWidth,
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uint32_t *pHeight
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) {
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) {
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NULL_RETURN_NULL(device);
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NULL_RETURN_NULL(device);
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return device->AcquireSwapchainTexture(
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return device->AcquireSwapchainTexture(
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device->driverData,
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device->driverData,
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commandBuffer,
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commandBuffer,
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windowHandle
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windowHandle,
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pWidth,
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pHeight
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);
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);
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}
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}
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@ -168,16 +168,6 @@ struct Refresh_Device
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/* Drawing */
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/* Drawing */
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void (*Clear)(
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Refresh_Renderer *driverData,
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Refresh_CommandBuffer *commandBuffer,
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Refresh_Rect *clearRect,
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Refresh_ClearOptions options,
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Refresh_Vec4 *colors,
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uint32_t colorCount,
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Refresh_DepthStencilValue depthStencil
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);
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void (*DrawInstancedPrimitives)(
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void (*DrawInstancedPrimitives)(
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Refresh_Renderer *driverData,
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Refresh_Renderer *driverData,
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Refresh_CommandBuffer *commandBuffer,
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Refresh_CommandBuffer *commandBuffer,
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@ -451,7 +441,9 @@ struct Refresh_Device
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Refresh_Texture* (*AcquireSwapchainTexture)(
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Refresh_Texture* (*AcquireSwapchainTexture)(
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Refresh_Renderer *driverData,
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Refresh_Renderer *driverData,
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Refresh_CommandBuffer *commandBuffer,
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Refresh_CommandBuffer *commandBuffer,
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void *windowHandle
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void *windowHandle,
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uint32_t *pWidth,
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uint32_t *pHeight
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);
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);
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Refresh_TextureFormat (*GetSwapchainFormat)(
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Refresh_TextureFormat (*GetSwapchainFormat)(
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@ -477,7 +469,6 @@ struct Refresh_Device
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result->func = name##_##func;
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result->func = name##_##func;
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#define ASSIGN_DRIVER(name) \
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#define ASSIGN_DRIVER(name) \
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ASSIGN_DRIVER_FUNC(DestroyDevice, name) \
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ASSIGN_DRIVER_FUNC(DestroyDevice, name) \
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ASSIGN_DRIVER_FUNC(Clear, name) \
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ASSIGN_DRIVER_FUNC(DrawIndexedPrimitives, name) \
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ASSIGN_DRIVER_FUNC(DrawIndexedPrimitives, name) \
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ASSIGN_DRIVER_FUNC(DrawInstancedPrimitives, name) \
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ASSIGN_DRIVER_FUNC(DrawInstancedPrimitives, name) \
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ASSIGN_DRIVER_FUNC(DrawPrimitives, name) \
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ASSIGN_DRIVER_FUNC(DrawPrimitives, name) \
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@ -236,18 +236,6 @@ static void TEMPLATE_DestroyDevice(
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/* Drawing */
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/* Drawing */
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static void TEMPLATE_Clear(
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Refresh_Renderer *driverData,
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Refresh_CommandBuffer *commandBuffer,
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Refresh_Rect *clearRect,
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Refresh_ClearOptions options,
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Refresh_Vec4 *colors,
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uint32_t colorCount,
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Refresh_DepthStencilValue depthStencil
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) {
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NOT_IMPLEMENTED
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}
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static void TEMPLATE_DrawInstancedPrimitives(
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static void TEMPLATE_DrawInstancedPrimitives(
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Refresh_Renderer *driverData,
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Refresh_Renderer *driverData,
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Refresh_CommandBuffer *commandBuffer,
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Refresh_CommandBuffer *commandBuffer,
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@ -598,7 +586,9 @@ static Refresh_CommandBuffer* TEMPLATE_AcquireCommandBuffer(
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Refresh_Texture* TEMPLATE_AcquireSwapchainTexture(
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Refresh_Texture* TEMPLATE_AcquireSwapchainTexture(
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Refresh_Renderer *driverData,
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Refresh_Renderer *driverData,
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Refresh_CommandBuffer *commandBuffer,
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Refresh_CommandBuffer *commandBuffer,
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void *windowHandle
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void *windowHandle,
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uint32_t *pWidth,
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uint32_t *pHeight
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) {
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) {
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NOT_IMPLEMENTED
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NOT_IMPLEMENTED
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}
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}
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@ -4798,117 +4798,6 @@ static void VULKAN_DestroyDevice(
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SDL_free(device);
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SDL_free(device);
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}
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}
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static void VULKAN_Clear(
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Refresh_Renderer *driverData,
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Refresh_CommandBuffer *commandBuffer,
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Refresh_Rect *clearRect,
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Refresh_ClearOptions options,
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Refresh_Vec4 *colors,
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uint32_t colorCount,
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Refresh_DepthStencilValue depthStencil
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) {
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VulkanRenderer* renderer = (VulkanRenderer*) driverData;
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VulkanCommandBuffer *vulkanCommandBuffer = (VulkanCommandBuffer*) commandBuffer;
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uint32_t attachmentCount, i;
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VkClearAttachment clearAttachments[MAX_COLOR_TARGET_BINDINGS + 1];
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VkClearRect vulkanClearRect;
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VkClearValue clearValues[4];
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uint8_t shouldClearColor = options & REFRESH_CLEAROPTIONS_COLOR;
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uint8_t shouldClearDepth = options & REFRESH_CLEAROPTIONS_DEPTH;
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uint8_t shouldClearStencil = options & REFRESH_CLEAROPTIONS_STENCIL;
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uint8_t shouldClearDepthStencil = (
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(shouldClearDepth || shouldClearStencil)
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);
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if (!shouldClearColor && !shouldClearDepthStencil)
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{
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return;
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}
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vulkanClearRect.baseArrayLayer = 0;
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vulkanClearRect.layerCount = 1;
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vulkanClearRect.rect.offset.x = clearRect->x;
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vulkanClearRect.rect.offset.y = clearRect->y;
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vulkanClearRect.rect.extent.width = clearRect->w;
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vulkanClearRect.rect.extent.height = clearRect->h;
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attachmentCount = 0;
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if (shouldClearColor)
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{
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for (i = 0; i < colorCount; i += 1)
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{
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clearValues[i].color.float32[0] = colors[i].x;
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clearValues[i].color.float32[1] = colors[i].y;
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clearValues[i].color.float32[2] = colors[i].z;
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clearValues[i].color.float32[3] = colors[i].w;
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}
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for (i = 0; i < colorCount; i += 1)
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{
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clearAttachments[attachmentCount].aspectMask =
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VK_IMAGE_ASPECT_COLOR_BIT;
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clearAttachments[attachmentCount].colorAttachment =
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attachmentCount;
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clearAttachments[attachmentCount].clearValue =
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clearValues[attachmentCount];
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attachmentCount += 1;
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/* Do NOT clear the multisample image here!
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* Vulkan treats them both as the same color attachment.
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* Vulkan is a very good and not confusing at all API.
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*/
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}
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}
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if (shouldClearDepthStencil)
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{
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clearAttachments[attachmentCount].aspectMask = 0;
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clearAttachments[attachmentCount].colorAttachment = 0;
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if (shouldClearDepth)
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{
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if (depthStencil.depth < 0.0f)
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{
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depthStencil.depth = 0.0f;
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}
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else if (depthStencil.depth > 1.0f)
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{
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depthStencil.depth = 1.0f;
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}
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clearAttachments[attachmentCount].aspectMask |= VK_IMAGE_ASPECT_DEPTH_BIT;
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clearAttachments[attachmentCount].clearValue.depthStencil.depth = depthStencil.depth;
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}
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else
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{
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clearAttachments[attachmentCount].clearValue.depthStencil.depth = 0.0f;
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}
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if (shouldClearStencil)
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{
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clearAttachments[attachmentCount].aspectMask |= VK_IMAGE_ASPECT_STENCIL_BIT;
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clearAttachments[attachmentCount].clearValue.depthStencil.stencil = depthStencil.stencil;
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}
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else
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{
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clearAttachments[attachmentCount].clearValue.depthStencil.stencil = 0;
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}
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attachmentCount += 1;
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}
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renderer->vkCmdClearAttachments(
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vulkanCommandBuffer->commandBuffer,
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attachmentCount,
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clearAttachments,
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1,
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&vulkanClearRect
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);
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}
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static void VULKAN_DrawInstancedPrimitives(
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static void VULKAN_DrawInstancedPrimitives(
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Refresh_Renderer *driverData,
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Refresh_Renderer *driverData,
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Refresh_CommandBuffer *commandBuffer,
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Refresh_CommandBuffer *commandBuffer,
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@ -8954,7 +8843,9 @@ static VulkanSwapchainData* VULKAN_INTERNAL_FetchSwapchainData(
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static Refresh_Texture* VULKAN_AcquireSwapchainTexture(
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static Refresh_Texture* VULKAN_AcquireSwapchainTexture(
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Refresh_Renderer *driverData,
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Refresh_Renderer *driverData,
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Refresh_CommandBuffer *commandBuffer,
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Refresh_CommandBuffer *commandBuffer,
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void *windowHandle
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void *windowHandle,
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uint32_t *pWidth,
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uint32_t *pHeight
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) {
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) {
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VulkanRenderer *renderer = (VulkanRenderer*) driverData;
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VulkanRenderer *renderer = (VulkanRenderer*) driverData;
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VulkanCommandBuffer *vulkanCommandBuffer = (VulkanCommandBuffer*) commandBuffer;
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VulkanCommandBuffer *vulkanCommandBuffer = (VulkanCommandBuffer*) commandBuffer;
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@ -9066,6 +8957,9 @@ static Refresh_Texture* VULKAN_AcquireSwapchainTexture(
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vulkanCommandBuffer->signalSemaphores[vulkanCommandBuffer->signalSemaphoreCount] = swapchainData->renderFinishedSemaphore;
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vulkanCommandBuffer->signalSemaphores[vulkanCommandBuffer->signalSemaphoreCount] = swapchainData->renderFinishedSemaphore;
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vulkanCommandBuffer->signalSemaphoreCount += 1;
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vulkanCommandBuffer->signalSemaphoreCount += 1;
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*pWidth = swapchainData->extent.width;
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*pHeight = swapchainData->extent.height;
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return (Refresh_Texture*) swapchainTexture;
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return (Refresh_Texture*) swapchainTexture;
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}
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}
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