forked from MoonsideGames/Refresh
734 lines
20 KiB
C
734 lines
20 KiB
C
/* Refresh - XNA-inspired 3D Graphics Library with modern capabilities
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*
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* Copyright (c) 2020 Evan Hemsley
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*
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* This software is provided 'as-is', without any express or implied warranty.
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* In no event will the authors be held liable for any damages arising from
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* the use of this software.
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*
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* Permission is granted to anyone to use this software for any purpose,
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* including commercial applications, and to alter it and redistribute it
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* freely, subject to the following restrictions:
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*
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* 1. The origin of this software must not be misrepresented; you must not
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* claim that you wrote the original software. If you use this software in a
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* product, an acknowledgment in the product documentation would be
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* appreciated but is not required.
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*
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* 2. Altered source versions must be plainly marked as such, and must not be
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* misrepresented as being the original software.
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*
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* 3. This notice may not be removed or altered from any source distribution.
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*
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* Evan "cosmonaut" Hemsley <evan@moonside.games>
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*
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*/
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#ifndef REFRESH_H
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#define REFRESH_H
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#ifdef _WIN32
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#define REFRESHAPI __declspec(dllexport)
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#define REFRESHCALL __cdecl
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#else
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#define REFRESHAPI
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#define REFRESHCALL
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#endif
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/* -Wpedantic nameless union/struct silencing */
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#ifndef REFRESHNAMELESS
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#ifdef __GNUC__
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#define REFRESHNAMELESS __extension__
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#else
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#define REFRESHNAMELESS
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#endif /* __GNUC__ */
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#endif /* REFRESHNAMELESS */
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#include <stdint.h>
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#ifdef __cplusplus
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extern "C" {
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#endif /* __cplusplus */
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/* Type Declarations */
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typedef struct REFRESH_Device REFRESH_Device;
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typedef struct REFRESH_Texture REFRESH_Texture;
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typedef struct REFRESH_Sampler REFRESH_Sampler;
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typedef struct REFRESH_ShaderParamBuffer REFRESH_ShaderParamBuffer;
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typedef struct REFRESH_Buffer REFRESH_Buffer;
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typedef struct REFRESH_ColorTarget REFRESH_ColorTarget;
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typedef struct REFRESH_DepthTarget REFRESH_DepthTarget;
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typedef struct REFRESH_Framebuffer REFRESH_Framebuffer;
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typedef struct REFRESH_RenderPass REFRESH_RenderPass;
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typedef struct REFRESH_Pipeline REFRESH_Pipeline;
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typedef enum REFRESH_PrimitiveType
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{
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REFRESH_PRIMITIVETYPE_POINTLIST,
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REFRESH_PRIMITIVETYPE_LINELIST,
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REFRESH_PRIMITIVETYPE_LINESTRIP,
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REFRESH_PRIMITIVETYPE_TRIANGLELIST,
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REFRESH_PRIMITIVETYPE_TRIANGLESTRIP,
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REFRESH_PRIMITIVETYPE_TRIANGLEFAN
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} REFRESH_PrimitiveType;
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typedef enum REFRESH_LoadOp
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{
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REFRESH_LOADOP_LOAD,
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REFRESH_LOADOP_CLEAR,
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REFRESH_LOADOP_DONT_CARE
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} REFRESH_LoadOp;
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typedef enum REFRESH_StoreOp
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{
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REFRESH_STOREOP_STORE,
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REFRESH_STOREOP_DONT_CARE
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} REFRESH_StoreOp;
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typedef enum REFRESH_ClearOptions
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{
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REFRESH_CLEAROPTIONS_TARGET = 1,
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REFRESH_CLEAROPTIONS_DEPTH = 2,
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REFRESH_CLEAROPTIONS_STENCIL = 4,
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} REFRESH_ClearOptions;
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typedef enum REFRESH_IndexElementSize
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{
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REFRESH_INDEXELEMENTSIZE_16BIT,
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REFRESH_INDEXELEMENTSIZE_32BIT
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} REFRESH_IndexElementSize;
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typedef enum REFRESH_SurfaceFormat
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{
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REFRESH_SURFACEFORMAT_R8G8B8A8,
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REFRESH_SURFACEFORMAT_R5G6B5,
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REFRESH_SURFACEFORMAT_A1R5G5B5,
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REFRESH_SURFACEFORMAT_B4G4R4A4,
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REFRESH_SURFACEFORMAT_BC1,
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REFRESH_SURFACEFORMAT_BC2,
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REFRESH_SURFACEFORMAT_BC3,
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REFRESH_SURFACEFORMAT_R8G8_SNORM,
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REFRESH_SURFACEFORMAT_R8G8B8A8_SNORM,
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REFRESH_SURFACEFORMAT_A2R10G10B10,
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REFRESH_SURFACEFORMAT_R16G16,
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REFRESH_SURFACEFORMAT_R16G16B16A16,
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REFRESH_SURFACEFORMAT_R8,
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REFRESH_SURFACEFORMAT_R32_SFLOAT,
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REFRESH_SURFACEFORMAT_R32G32_SFLOAT,
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REFRESH_SURFACEFORMAT_R32G32B32A32_SFLOAT,
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REFRESH_SURFACEFORMAT_R16_SFLOAT,
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REFRESH_SURFACEFORMAT_R16G16_SFLOAT,
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REFRESH_SURFACEFORMAT_R16G16B16A16_SFLOAT
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} REFRESH_SurfaceFormat;
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typedef enum REFRESH_DepthFormat
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{
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REFRESH_DEPTHFORMAT_D16_UNORM_S8_UINT,
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REFRESH_DEPTHFORMAT_D24_UNORM_S8_UINT,
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REFRESH_DEPTHFORMAT_D32_SFLOAT_S8_UINT
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} REFRESH_DepthFormat;
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typedef enum REFRESH_CubeMapFace
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{
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REFRESH_CUBEMAPFACE_POSITIVEX,
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REFRESH_CUBEMAPFACE_NEGATIVEX,
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REFRESH_CUBEMAPFACE_POSITIVEY,
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REFRESH_CUBEMAPFACE_NEGATIVEY,
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REFRESH_CUBEMAPFACE_POSITIVEZ,
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REFRESH_CUBEMAPFACE_NEGATIVEZ
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} REFRESH_CubeMapFace;
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typedef enum REFRESH_BufferUsage
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{
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REFRESH_BUFFERUSAGE_STATIC,
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REFRESH_BUFFERUSAGE_DYNAMIC
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} REFRESH_BufferUsage;
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typedef enum REFRESH_VertexElementFormat
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{
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REFRESH_VERTEXELEMENTFORMAT_SINGLE,
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REFRESH_VERTEXELEMENTFORMAT_VECTOR2,
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REFRESH_VERTEXELEMENTFORMAT_VECTOR3,
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REFRESH_VERTEXELEMENTFORMAT_VECTOR4,
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REFRESH_VERTEXELEMENTFORMAT_COLOR,
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REFRESH_VERTEXELEMENTFORMAT_BYTE4,
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REFRESH_VERTEXELEMENTFORMAT_SHORT2,
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REFRESH_VERTEXELEMENTFORMAT_SHORT4,
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REFRESH_VERTEXELEMENTFORMAT_NORMALIZEDSHORT2,
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REFRESH_VERTEXELEMENTFORMAT_NORMALIZEDSHORT4,
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REFRESH_VERTEXELEMENTFORMAT_HALFVECTOR2,
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REFRESH_VERTEXELEMENTFORMAT_HALFVECTOR4
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} REFRESH_VertexElementFormat;
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typedef enum REFRESH_VertexInputRate
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{
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REFRESH_VERTEXINPUTRATE_VERTEX = 0,
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REFRESH_VERTEXINPUTRATE_INSTANCE = 1
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} REFRESH_VertexInputRate;
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typedef enum REFRESH_FillMode
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{
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REFRESH_FILLMODE_FILL,
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REFRESH_FILLMODE_LINE,
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REFRESH_FILLMODE_POINT
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} REFRESH_FillMode;
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typedef enum REFRESH_CullMode
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{
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REFRESH_CULLMODE_NONE,
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REFRESH_CULLMODE_FRONT,
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REFRESH_CULLMODE_BACK,
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REFRESH_CULLMODE_FRONT_AND_BACK
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} REFRESH_CullMode;
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typedef enum REFRESH_FrontFace
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{
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REFRESH_FRONTFACE_COUNTER_CLOCKWISE,
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REFRESH_FRONTFACE_CLOCKWISE
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} REFRESH_FrontFace;
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typedef enum REFRESH_CompareOp
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{
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REFRESH_COMPAREOP_NEVER,
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REFRESH_COMPAREOP_LESS,
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REFRESH_COMPAREOP_EQUAL,
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REFRESH_COMPAREOP_LESS_OR_EQUAL,
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REFRESH_COMPAREOP_GREATER,
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REFRESH_COMPAREOP_NOT_EQUAL,
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REFRESH_COMPAREOP_GREATER_OR_EQUAL,
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REFRESH_COMPAREOP_ALWAYS
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} REFRESH_CompareOp;
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typedef enum REFRESH_StencilOp
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{
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REFRESH_STENCILOP_KEEP,
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REFRESH_STENCILOP_ZERO,
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REFRESH_STENCILOP_REPLACE,
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REFRESH_STENCILOP_INCREMENT_AND_CLAMP,
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REFRESH_STENCILOP_DECREMENT_AND_CLAMP,
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REFRESH_STENCILOP_INVERT,
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REFRESH_STENCILOP_INCREMENT_AND_WRAP,
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REFRESH_STENCILOP_DECREMENT_AND_WRAP
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} REFRESH_StencilOp;
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typedef enum REFRESH_BlendOp
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{
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REFRESH_BLENDOP_CLEAR = 0,
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REFRESH_BLENDOP_AND = 1,
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REFRESH_BLENDOP_AND_REVERSE = 2,
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REFRESH_BLENDOP_COPY = 3,
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REFRESH_BLENDOP_AND_INVERTED = 4,
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REFRESH_BLENDOP_NO_OP = 5,
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REFRESH_BLENDOP_XOR = 6,
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REFRESH_BLENDOP_OR = 7,
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REFRESH_BLENDOP_NOR = 8,
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REFRESH_BLENDOP_EQUIVALENT = 9,
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REFRESH_BLENDOP_INVERT = 10,
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REFRESH_BLENDOP_OR_REVERSE = 11,
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REFRESH_BLENDOP_COPY_INVERTED = 12,
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REFRESH_BLENDOP_OR_INVERTED = 13,
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REFRESH_BLENDOP_NAND = 14,
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REFRESH_BLENDOP_SET = 15
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} REFRESH_BlendOp;
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typedef enum REFRESH_BlendFactor
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{
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REFRESH_BLENDFACTOR_ZERO = 0,
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REFRESH_BLENDFACTOR_ONE = 1,
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REFRESH_BLENDFACTOR_SRC_COLOR = 2,
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REFRESH_BLENDFACTOR_ONE_MINUS_SRC_COLOR = 3,
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REFRESH_BLENDFACTOR_DST_COLOR = 4,
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REFRESH_BLENDFACTOR_ONE_MINUS_DST_COLOR = 5,
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REFRESH_BLENDFACTOR_SRC_ALPHA = 6,
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REFRESH_BLENDFACTOR_ONE_MINUS_SRC_ALPHA = 7,
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REFRESH_BLENDFACTOR_DST_ALPHA = 8,
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REFRESH_BLENDFACTOR_ONE_MINUS_DST_ALPHA = 9,
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REFRESH_BLENDFACTOR_CONSTANT_COLOR = 10,
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REFRESH_BLENDFACTOR_ONE_MINUS_CONSTANT_COLOR = 11,
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REFRESH_BLENDFACTOR_CONSTANT_ALPHA = 12,
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REFRESH_BLENDFACTOR_ONE_MINUS_CONSTANT_ALPHA = 13,
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REFRESH_BLENDFACTOR_SRC_ALPHA_SATURATE = 14,
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REFRESH_BLENDFACTOR_SRC1_COLOR = 15,
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REFRESH_BLENDFACTOR_ONE_MINUS_SRC1_COLOR = 16,
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REFRESH_BLENDFACTOR_SRC1_ALPHA = 17,
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REFRESH_BLENDFACTOR_ONE_MINUS_SRC1_ALPHA = 18
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} REFRESH_BlendFactor;
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typedef enum REFRESH_ColorComponentFlagBits
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{
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REFRESH_COLORCOMPONENT_R_BIT = 0x00000001,
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REFRESH_COLORCOMPONENT_G_BIT = 0x00000002,
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REFRESH_COLORCOMPONENT_B_BIT = 0x00000004,
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REFRESH_COLORCOMPONENT_A_BIT = 0x00000008,
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REFRESH_COLORCOMPONENT_FLAG_BITS_MAX_ENUM = 0x7FFFFFFF
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} REFRESH_ColorComponentFlagBits;
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typedef uint32_t REFRESH_ColorComponentFlags;
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typedef enum REFRESH_ShaderStage
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{
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REFRESH_SHADERSTAGE_VERTEX,
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REFRESH_SHADERSTAGE_FRAGMENT
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} REFRESH_ShaderStage;
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typedef enum REFRESH_SamplerFilter
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{
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REFRESH_SAMPLERFILTER_NEAREST,
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REFRESH_SAMPLERFILTER_LINEAR
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} REFRESH_SamplerFilter;
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typedef enum REFRESH_SamplerMipmapMode
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{
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REFRESH_SAMPLERMIPMAPMODE_NEAREST,
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REFRESH_SAMPLERMIPMAPMODE_LINEAR
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} REFRESH_SamplerMipmapMode;
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typedef enum REFRESH_SamplerAddressMode
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{
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REFRESH_SAMPLERADDRESSMODE_REPEAT,
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REFRESH_SAMPLERADDRESSMODE_MIRRORED_REPEAT,
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REFRESH_SAMPLERADDRESSMODE_CLAMP_TO_EDGE,
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REFRESH_SAMPLERADDRESSMODE_CLAMP_TO_BORDER
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} REFRESH_SamplerAddressMode;
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typedef enum REFRESH_BorderColor
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{
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REFRESH_BORDERCOLOR_FLOAT_TRANSPARENT_BLACK = 0,
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REFRESH_BORDERCOLOR_INT_TRANSPARENT_BLACK = 1,
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REFRESH_BORDERCOLOR_FLOAT_OPAQUE_BLACK = 2,
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REFRESH_BORDERCOLOR_INT_OPAQUE_BLACK = 3,
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REFRESH_BORDERCOLOR_FLOAT_OPAQUE_WHITE = 4,
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REFRESH_BORDERCOLOR_INT_OPAQUE_WHITE = 5
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} REFRESH_BorderColor;
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/* Structures */
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typedef struct REFRESH_Color
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{
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uint8_t r;
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uint8_t g;
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uint8_t b;
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uint8_t a;
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} REFRESH_Color;
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typedef struct REFRESH_DepthStencilValue
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{
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float depth;
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uint32_t stencil;
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} REFRESH_DepthStencilValue;
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typedef struct REFRESH_ClearValue
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{
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REFRESH_Color color;
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REFRESH_DepthStencilValue depthStencil;
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} REFRESH_ClearValue;
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typedef struct REFRESH_Rect
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{
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int32_t x;
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int32_t y;
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int32_t w;
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int32_t h;
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} REFRESH_Rect;
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typedef struct REFRESH_Vec4
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{
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float x;
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float y;
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float z;
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float w;
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} REFRESH_Vec4;
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typedef struct REFRESH_Viewport
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{
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int32_t x;
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int32_t y;
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int32_t w;
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int32_t h;
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float minDepth;
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float maxDepth;
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} REFRESH_Viewport;
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/* State structures */
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typedef struct REFRESH_SamplerStateCreateInfo
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{
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REFRESH_SamplerFilter minFilter;
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REFRESH_SamplerFilter magFilter;
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REFRESH_SamplerMipmapMode mipmapMode;
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REFRESH_SamplerAddressMode addressModeU;
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REFRESH_SamplerAddressMode addressModeV;
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REFRESH_SamplerAddressMode addressModeW;
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float mipLodBias;
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uint8_t anisotropyEnable;
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float maxAnisotropy;
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uint8_t compareEnable;
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REFRESH_CompareOp compareOp;
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float minLod;
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float maxLod;
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REFRESH_BorderColor borderColor;
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} REFRESH_SamplerStateCreateInfo;
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typedef struct REFRESH_VertexBinding
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{
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uint32_t binding;
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uint32_t stride;
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REFRESH_VertexInputRate inputRate;
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} REFRESH_VertexBinding;
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typedef struct REFRESH_VertexAttribute
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{
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uint32_t location;
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uint32_t binding;
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REFRESH_VertexElementFormat format;
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uint32_t offset;
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} REFRESH_VertexAttribute;
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typedef struct REFRESH_VertexInputState
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{
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const REFRESH_VertexBinding *vertexBindings;
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uint32_t vertexBindingCount;
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const REFRESH_VertexAttribute *vertexAttributes;
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uint32_t vertexAttributeCount;
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} REFRESH_VertexInputState;
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typedef struct REFRESH_StencilOpState
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{
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REFRESH_StencilOp failOp;
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REFRESH_StencilOp passOp;
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REFRESH_StencilOp depthFailOp;
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REFRESH_StencilOp compareOp;
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uint32_t compareMask;
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uint32_t writeMask;
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uint32_t reference;
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} REFRESH_StencilOpState;
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typedef struct REFRESH_RenderTargetBlendState
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{
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uint8_t blendEnable;
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REFRESH_BlendFactor srcColorBlendFactor;
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REFRESH_BlendFactor dstColorBlendFactor;
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REFRESH_BlendOp colorBlendOp;
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REFRESH_BlendFactor srcAlphaBlendFactor;
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REFRESH_BlendFactor dstAlphaBlendFactor;
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REFRESH_BlendOp alphaBlendOp;
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REFRESH_ColorComponentFlags colorWriteMask;
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} REFRESH_RenderTargetBlendState;
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typedef struct REFRESH_ShaderTextureSamplerLayoutBinding
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{
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uint32_t binding;
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REFRESH_ShaderStage shaderStage;
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} REFRESH_ShaderSampleLayoutBinding;
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typedef struct REFRESH_ShaderTextureSamplerLayout
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{
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uint32_t bindingCount;
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const REFRESH_ShaderSampleLayoutBinding *bindings;
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} REFRESH_ShaderTextureSamplerLayout;
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typedef struct REFRESH_ShaderParamLayoutBinding
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{
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uint32_t binding;
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REFRESH_ShaderStage shaderStage;
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} REFRESH_ShaderParamLayoutBinding;
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typedef struct REFRESH_ShaderParamLayout
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{
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uint32_t bindingCount;
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const REFRESH_ShaderParamLayoutBinding *bindings;
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} REFRESH_ShaderParamLayout;
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typedef struct REFRESH_PipelineLayoutCreateInfo
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{
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uint32_t shaderParamsLayoutCount;
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REFRESH_ShaderParamLayout *shaderParamLayouts;
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uint32_t shaderTextureSamplerLayoutCount;
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const REFRESH_ShaderTextureSamplerLayout *shaderTextureSamplerLayouts;
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} REFRESH_PipelineLayoutCreateInfo;
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typedef struct REFRESH_ColorTargetDescription
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{
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REFRESH_SurfaceFormat format;
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uint32_t multisampleCount;
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REFRESH_LoadOp loadOp;
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REFRESH_StoreOp storeOp;
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} REFRESH_ColorTargetDescription;
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typedef struct REFRESH_DepthTargetDescription
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{
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REFRESH_DepthFormat depthFormat;
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REFRESH_LoadOp loadOp;
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REFRESH_StoreOp storeOp;
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REFRESH_LoadOp stencilLoadOp;
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REFRESH_StoreOp stencilStoreOp;
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} REFRESH_DepthTargetDescription;
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typedef struct REFRESH_RenderPassCreateInfo
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{
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const REFRESH_ColorTargetDescription *colorTargetDescriptions;
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uint32_t colorTargetCount;
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const REFRESH_DepthTargetDescription *depthTargetDescription; /* can be NULL */
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} REFRESH_RenderPassCreateInfo;
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/* Pipeline state structures */
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typedef struct REFRESH_TopologyState
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{
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REFRESH_TopologyState topology;
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} REFRESH_TopologyState;
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typedef struct REFRESH_ViewportState
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{
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const REFRESH_Viewport *viewPorts;
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uint32_t viewportCount;
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const REFRESH_Rect *scissors;
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uint32_t scissorCount;
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} REFRESH_ViewportState;
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typedef struct REFRESH_RasterizerState
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{
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uint8_t depthClampEnable;
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REFRESH_FillMode fillMode;
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REFRESH_CullMode cullMode;
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REFRESH_FrontFace frontFace;
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uint8_t depthBiasEnable;
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float depthBiasConstantFactor;
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float depthBiasClamp;
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float depthBiasSlopeFactor;
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float lineWidth;
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} REFRESH_RasterizerState;
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typedef struct REFRESH_MultisampleState
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{
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uint8_t multisampleCount;
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const uint32_t *sampleMask;
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} REFRESH_MultisampleState;
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typedef struct REFRESH_DepthStencilState
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{
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uint8_t depthTestEnable;
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uint8_t depthWriteEnable;
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REFRESH_CompareOp compareOp;
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uint8_t depthBoundsTestEnable;
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uint8_t stencilTestEnable;
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REFRESH_StencilOpState frontStencilState;
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REFRESH_StencilOpState backStencilState;
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float minDepthBounds;
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float maxDepthBounds;
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} REFRESH_DepthStencilState;
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typedef struct REFRESH_ColorBlendState
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{
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uint8_t blendOpEnable;
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REFRESH_BlendOp blendOp;
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const REFRESH_RenderTargetBlendState *blendStates;
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uint32_t blendStateCount;
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float blendConstants[4];
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} REFRESH_ColorBlendState;
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typedef struct REFRESH_PipelineCreateInfo
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{
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const REFRESH_ShaderStage *shaderStages;
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const REFRESH_VertexInputState *vertexInputState;
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const REFRESH_TopologyState *topologyState;
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const REFRESH_ViewportState *viewportState;
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const REFRESH_RasterizerState *rasterizerState;
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const REFRESH_MultisampleState *multisampleState;
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const REFRESH_DepthStencilState *depthStencilState;
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const REFRESH_ColorBlendState *colorBlendState;
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REFRESH_PipelineLayoutCreateInfo *layoutCreateInfo;
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REFRESH_RenderPass *renderPass;
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} REFRESH_PipelineCreateInfo;
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typedef struct REFRESH_FramebufferCreateInfo
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{
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REFRESH_RenderPass *renderPass;
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const REFRESH_ColorTarget **pColorTargets;
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uint32_t colorTargetCount;
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const REFRESH_DepthTarget *pDepthTarget;
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uint32_t width;
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uint32_t height;
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uint32_t layers;
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} REFRESH_FramebufferCreateInfo;
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/* Version API */
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#define REFRESH_ABI_VERSION 0
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#define REFRESH_MAJOR_VERSION 0
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#define REFRESH_MINOR_VERSION 1
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#define REFRESH_PATCH_VERSION 0
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#define REFRESH_COMPILED_VERSION ( \
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(REFRESH_ABI_VERSION * 100 * 100 * 100) + \
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(REFRESH_MAJOR_VERSION * 100 * 100) + \
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(REFRESH_MINOR_VERSION * 100) + \
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(REFRESH_PATCH_VERSION) \
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)
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REFRESHAPI uint32_t REFRESH_LinkedVersion(void);
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/* Functions */
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/* Drawing */
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/* Clears the active draw buffers of any previous contents.
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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.
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*
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* options: Bitflags to specify color/depth/stencil buffers for clearing.
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* colors: The new values of the cleared color buffers.
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* colorCount: The amount of cleared color buffers.
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* depth: The new value of the cleared depth buffer.
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* stencil: The new value of the cleared 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_ClearOptions options,
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REFRESH_Vec4 **colors,
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uint32_t colorCount,
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float depth,
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int32_t stencil
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);
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/* Draws data from vertex/index buffers.
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*
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* primitiveType: The primitive topology of the vertex data.
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* baseVertex: The starting offset to read from the vertex buffer.
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* minVertexIndex: The lowest index value expected from the index buffer.
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* numVertices: The highest offset expected from the index buffer.
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* startIndex: The starting offset to read from the index buffer.
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* primitiveCount: The number of primitives to draw.
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* indices: The index buffer to bind for this draw call.
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* indexElementSize: The size of the index type for this index buffer.
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*/
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REFRESHAPI void REFRESH_DrawIndexedPrimitives(
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REFRESH_Device *device,
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REFRESH_PrimitiveType primitiveType,
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int32_t baseVertex,
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int32_t minVertexIndex,
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int32_t numVertices,
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int32_t startIndex,
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int32_t primitiveCount,
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REFRESH_Buffer *indices,
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REFRESH_IndexElementSize indexElementSize
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);
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/* Draws data from vertex/index buffers with instancing enabled.
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*
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* primitiveType: The primitive topology of the vertex data.
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* baseVertex: The starting offset to read from the vertex buffer.
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* minVertexIndex: The lowest index value expected from the index buffer.
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* numVertices: The highest offset expected from the index buffer.
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* startIndex: The starting offset to read from the index buffer.
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* primitiveCount: The number of primitives to draw.
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* instanceCount: The number of instances that will be drawn.
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* indices: The index buffer to bind for this draw call.
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* indexElementSize: The size of the index type for this index buffer.
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*/
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REFRESHAPI void REFRESH_DrawInstancedPrimitives(
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REFRESH_Device *device,
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REFRESH_PrimitiveType primitiveType,
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int32_t baseVertex,
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int32_t minVertexIndex,
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int32_t numVertices,
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int32_t startIndex,
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int32_t primitiveCount,
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int32_t instanceCount,
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REFRESH_Buffer *indices,
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REFRESH_IndexElementSize indexElementSize
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);
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/* Draws data from vertex buffers.
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* primitiveType: The primitive topology of the vertex data.
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* vertexStart: The starting offset to read from the vertex buffer.
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* primitiveCount: The number of primitives to draw.
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*/
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REFRESHAPI void REFRESH_DrawPrimitives(
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REFRESH_Device *device,
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REFRESH_PrimitiveType primitiveType,
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int32_t vertexStart,
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int32_t primitiveCount
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);
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/* State Creation */
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REFRESHAPI REFRESH_RenderPass REFRESH_CreateRenderPass(
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REFRESH_Device *device,
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REFRESH_RenderPassCreateInfo *renderPassCreateInfo
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);
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REFRESHAPI REFRESH_Pipeline REFRESH_CreatePipeline(
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REFRESH_Device *device,
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REFRESH_PipelineCreateInfo *pipelineCreateInfo
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);
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REFRESHAPI REFRESH_Sampler REFRESH_CreateSampler(
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REFRESH_Device *device,
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REFRESH_SamplerStateCreateInfo *samplerStateCreateInfo
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);
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REFRESHAPI REFRESH_Framebuffer REFRESH_CreateFramebuffer(
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REFRESH_Device *device,
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REFRESH_FramebufferCreateInfo *framebufferCreateInfo
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);
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/* Shader State */
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REFRESHAPI void REFRESH_SetSamplers(
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REFRESH_Device *device,
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uint32_t startIndex,
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REFRESH_Texture **textures,
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REFRESH_Sampler **samplers
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);
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/* TODO: Do we need to give the user this much control over UBOs? */
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REFRESHAPI void REFRESH_SetShaderParamData(
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REFRESH_Device *device,
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REFRESH_ShaderParamBuffer *shaderParamBuffer,
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uint32_t offsetInBytes,
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void *data,
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uint32_t elementCount,
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uint32_t elementSizeInBytes
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);
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/* Render Pass */
|
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/* Begins a render pass.
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*
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* renderPass: The renderpass to begin.
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* framebuffer: The framebuffer to bind for the render pass.
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* renderArea:
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* The area affected by the render pass.
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* All load, store and resolve operations are restricted
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* to the given rectangle.
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* clearValues:
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* A pointer to an array of REFRESH_ClearValue structures
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* that contains clear values for each render target in the
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* framebuffer.
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* clearCount: The amount of clearValue structs in the above array.
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*/
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REFRESHAPI void REFRESH_BeginRenderPass(
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REFRESH_Device *device,
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REFRESH_RenderPass *renderPass,
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REFRESH_Framebuffer *framebuffer,
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REFRESH_Rect renderArea,
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REFRESH_ClearValue *pClearValues,
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uint32_t clearCount
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);
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/* Ends the current render pass. */
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REFRESHAPI void REFRESH_EndRenderPass(
|
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REFRESH_Device *device
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);
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#ifdef __cplusplus
|
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}
|
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#endif /* __cplusplus */
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#endif /* REFRESH_H */
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/* vim: set noexpandtab shiftwidth=8 tabstop=8: */
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