mirror of
https://github.com/italicsjenga/portability.git
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460 lines
23 KiB
C
460 lines
23 KiB
C
#ifndef VULKAN_BETA_H_
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#define VULKAN_BETA_H_ 1
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/*
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** Copyright (c) 2015-2020 The Khronos Group Inc.
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**
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** SPDX-License-Identifier: Apache-2.0
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*/
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/*
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** This header is generated from the Khronos Vulkan XML API Registry.
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**
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*/
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#ifdef __cplusplus
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extern "C" {
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#endif
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#define VK_KHR_portability_subset 1
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#define VK_KHR_PORTABILITY_SUBSET_SPEC_VERSION 1
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#define VK_KHR_PORTABILITY_SUBSET_EXTENSION_NAME "VK_KHR_portability_subset"
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typedef struct VkPhysicalDevicePortabilitySubsetFeaturesKHR {
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VkStructureType sType;
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void* pNext;
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VkBool32 constantAlphaColorBlendFactors;
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VkBool32 events;
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VkBool32 imageViewFormatReinterpretation;
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VkBool32 imageViewFormatSwizzle;
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VkBool32 imageView2DOn3DImage;
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VkBool32 multisampleArrayImage;
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VkBool32 mutableComparisonSamplers;
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VkBool32 pointPolygons;
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VkBool32 samplerMipLodBias;
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VkBool32 separateStencilMaskRef;
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VkBool32 shaderSampleRateInterpolationFunctions;
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VkBool32 tessellationIsolines;
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VkBool32 tessellationPointMode;
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VkBool32 triangleFans;
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VkBool32 vertexAttributeAccessBeyondStride;
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} VkPhysicalDevicePortabilitySubsetFeaturesKHR;
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typedef struct VkPhysicalDevicePortabilitySubsetPropertiesKHR {
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VkStructureType sType;
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void* pNext;
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uint32_t minVertexInputBindingStrideAlignment;
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} VkPhysicalDevicePortabilitySubsetPropertiesKHR;
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#define VK_KHR_deferred_host_operations 1
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VK_DEFINE_NON_DISPATCHABLE_HANDLE(VkDeferredOperationKHR)
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#define VK_KHR_DEFERRED_HOST_OPERATIONS_SPEC_VERSION 3
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#define VK_KHR_DEFERRED_HOST_OPERATIONS_EXTENSION_NAME "VK_KHR_deferred_host_operations"
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typedef struct VkDeferredOperationInfoKHR {
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VkStructureType sType;
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const void* pNext;
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VkDeferredOperationKHR operationHandle;
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} VkDeferredOperationInfoKHR;
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typedef VkResult (VKAPI_PTR *PFN_vkCreateDeferredOperationKHR)(VkDevice device, const VkAllocationCallbacks* pAllocator, VkDeferredOperationKHR* pDeferredOperation);
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typedef void (VKAPI_PTR *PFN_vkDestroyDeferredOperationKHR)(VkDevice device, VkDeferredOperationKHR operation, const VkAllocationCallbacks* pAllocator);
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typedef uint32_t (VKAPI_PTR *PFN_vkGetDeferredOperationMaxConcurrencyKHR)(VkDevice device, VkDeferredOperationKHR operation);
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typedef VkResult (VKAPI_PTR *PFN_vkGetDeferredOperationResultKHR)(VkDevice device, VkDeferredOperationKHR operation);
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typedef VkResult (VKAPI_PTR *PFN_vkDeferredOperationJoinKHR)(VkDevice device, VkDeferredOperationKHR operation);
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#ifndef VK_NO_PROTOTYPES
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VKAPI_ATTR VkResult VKAPI_CALL vkCreateDeferredOperationKHR(
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VkDevice device,
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const VkAllocationCallbacks* pAllocator,
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VkDeferredOperationKHR* pDeferredOperation);
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VKAPI_ATTR void VKAPI_CALL vkDestroyDeferredOperationKHR(
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VkDevice device,
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VkDeferredOperationKHR operation,
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const VkAllocationCallbacks* pAllocator);
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VKAPI_ATTR uint32_t VKAPI_CALL vkGetDeferredOperationMaxConcurrencyKHR(
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VkDevice device,
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VkDeferredOperationKHR operation);
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VKAPI_ATTR VkResult VKAPI_CALL vkGetDeferredOperationResultKHR(
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VkDevice device,
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VkDeferredOperationKHR operation);
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VKAPI_ATTR VkResult VKAPI_CALL vkDeferredOperationJoinKHR(
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VkDevice device,
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VkDeferredOperationKHR operation);
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#endif
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#define VK_KHR_pipeline_library 1
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#define VK_KHR_PIPELINE_LIBRARY_SPEC_VERSION 1
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#define VK_KHR_PIPELINE_LIBRARY_EXTENSION_NAME "VK_KHR_pipeline_library"
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typedef struct VkPipelineLibraryCreateInfoKHR {
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VkStructureType sType;
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const void* pNext;
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uint32_t libraryCount;
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const VkPipeline* pLibraries;
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} VkPipelineLibraryCreateInfoKHR;
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#define VK_KHR_ray_tracing 1
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#define VK_KHR_RAY_TRACING_SPEC_VERSION 8
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#define VK_KHR_RAY_TRACING_EXTENSION_NAME "VK_KHR_ray_tracing"
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typedef enum VkAccelerationStructureBuildTypeKHR {
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VK_ACCELERATION_STRUCTURE_BUILD_TYPE_HOST_KHR = 0,
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VK_ACCELERATION_STRUCTURE_BUILD_TYPE_DEVICE_KHR = 1,
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VK_ACCELERATION_STRUCTURE_BUILD_TYPE_HOST_OR_DEVICE_KHR = 2,
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VK_ACCELERATION_STRUCTURE_BUILD_TYPE_MAX_ENUM_KHR = 0x7FFFFFFF
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} VkAccelerationStructureBuildTypeKHR;
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typedef union VkDeviceOrHostAddressKHR {
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VkDeviceAddress deviceAddress;
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void* hostAddress;
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} VkDeviceOrHostAddressKHR;
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typedef union VkDeviceOrHostAddressConstKHR {
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VkDeviceAddress deviceAddress;
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const void* hostAddress;
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} VkDeviceOrHostAddressConstKHR;
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typedef struct VkAccelerationStructureBuildOffsetInfoKHR {
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uint32_t primitiveCount;
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uint32_t primitiveOffset;
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uint32_t firstVertex;
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uint32_t transformOffset;
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} VkAccelerationStructureBuildOffsetInfoKHR;
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typedef struct VkRayTracingShaderGroupCreateInfoKHR {
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VkStructureType sType;
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const void* pNext;
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VkRayTracingShaderGroupTypeKHR type;
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uint32_t generalShader;
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uint32_t closestHitShader;
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uint32_t anyHitShader;
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uint32_t intersectionShader;
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const void* pShaderGroupCaptureReplayHandle;
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} VkRayTracingShaderGroupCreateInfoKHR;
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typedef struct VkRayTracingPipelineInterfaceCreateInfoKHR {
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VkStructureType sType;
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const void* pNext;
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uint32_t maxPayloadSize;
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uint32_t maxAttributeSize;
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uint32_t maxCallableSize;
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} VkRayTracingPipelineInterfaceCreateInfoKHR;
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typedef struct VkRayTracingPipelineCreateInfoKHR {
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VkStructureType sType;
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const void* pNext;
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VkPipelineCreateFlags flags;
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uint32_t stageCount;
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const VkPipelineShaderStageCreateInfo* pStages;
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uint32_t groupCount;
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const VkRayTracingShaderGroupCreateInfoKHR* pGroups;
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uint32_t maxRecursionDepth;
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VkPipelineLibraryCreateInfoKHR libraries;
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const VkRayTracingPipelineInterfaceCreateInfoKHR* pLibraryInterface;
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VkPipelineLayout layout;
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VkPipeline basePipelineHandle;
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int32_t basePipelineIndex;
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} VkRayTracingPipelineCreateInfoKHR;
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typedef struct VkAccelerationStructureGeometryTrianglesDataKHR {
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VkStructureType sType;
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const void* pNext;
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VkFormat vertexFormat;
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VkDeviceOrHostAddressConstKHR vertexData;
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VkDeviceSize vertexStride;
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VkIndexType indexType;
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VkDeviceOrHostAddressConstKHR indexData;
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VkDeviceOrHostAddressConstKHR transformData;
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} VkAccelerationStructureGeometryTrianglesDataKHR;
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typedef struct VkAccelerationStructureGeometryAabbsDataKHR {
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VkStructureType sType;
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const void* pNext;
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VkDeviceOrHostAddressConstKHR data;
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VkDeviceSize stride;
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} VkAccelerationStructureGeometryAabbsDataKHR;
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typedef struct VkAccelerationStructureGeometryInstancesDataKHR {
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VkStructureType sType;
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const void* pNext;
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VkBool32 arrayOfPointers;
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VkDeviceOrHostAddressConstKHR data;
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} VkAccelerationStructureGeometryInstancesDataKHR;
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typedef union VkAccelerationStructureGeometryDataKHR {
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VkAccelerationStructureGeometryTrianglesDataKHR triangles;
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VkAccelerationStructureGeometryAabbsDataKHR aabbs;
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VkAccelerationStructureGeometryInstancesDataKHR instances;
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} VkAccelerationStructureGeometryDataKHR;
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typedef struct VkAccelerationStructureGeometryKHR {
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VkStructureType sType;
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const void* pNext;
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VkGeometryTypeKHR geometryType;
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VkAccelerationStructureGeometryDataKHR geometry;
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VkGeometryFlagsKHR flags;
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} VkAccelerationStructureGeometryKHR;
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typedef struct VkAccelerationStructureBuildGeometryInfoKHR {
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VkStructureType sType;
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const void* pNext;
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VkAccelerationStructureTypeKHR type;
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VkBuildAccelerationStructureFlagsKHR flags;
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VkBool32 update;
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VkAccelerationStructureKHR srcAccelerationStructure;
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VkAccelerationStructureKHR dstAccelerationStructure;
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VkBool32 geometryArrayOfPointers;
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uint32_t geometryCount;
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const VkAccelerationStructureGeometryKHR* const* ppGeometries;
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VkDeviceOrHostAddressKHR scratchData;
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} VkAccelerationStructureBuildGeometryInfoKHR;
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typedef struct VkAccelerationStructureCreateGeometryTypeInfoKHR {
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VkStructureType sType;
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const void* pNext;
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VkGeometryTypeKHR geometryType;
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uint32_t maxPrimitiveCount;
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VkIndexType indexType;
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uint32_t maxVertexCount;
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VkFormat vertexFormat;
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VkBool32 allowsTransforms;
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} VkAccelerationStructureCreateGeometryTypeInfoKHR;
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typedef struct VkAccelerationStructureCreateInfoKHR {
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VkStructureType sType;
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const void* pNext;
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VkDeviceSize compactedSize;
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VkAccelerationStructureTypeKHR type;
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VkBuildAccelerationStructureFlagsKHR flags;
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uint32_t maxGeometryCount;
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const VkAccelerationStructureCreateGeometryTypeInfoKHR* pGeometryInfos;
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VkDeviceAddress deviceAddress;
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} VkAccelerationStructureCreateInfoKHR;
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typedef struct VkAccelerationStructureMemoryRequirementsInfoKHR {
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VkStructureType sType;
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const void* pNext;
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VkAccelerationStructureMemoryRequirementsTypeKHR type;
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VkAccelerationStructureBuildTypeKHR buildType;
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VkAccelerationStructureKHR accelerationStructure;
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} VkAccelerationStructureMemoryRequirementsInfoKHR;
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typedef struct VkPhysicalDeviceRayTracingFeaturesKHR {
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VkStructureType sType;
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void* pNext;
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VkBool32 rayTracing;
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VkBool32 rayTracingShaderGroupHandleCaptureReplay;
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VkBool32 rayTracingShaderGroupHandleCaptureReplayMixed;
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VkBool32 rayTracingAccelerationStructureCaptureReplay;
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VkBool32 rayTracingIndirectTraceRays;
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VkBool32 rayTracingIndirectAccelerationStructureBuild;
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VkBool32 rayTracingHostAccelerationStructureCommands;
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VkBool32 rayQuery;
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VkBool32 rayTracingPrimitiveCulling;
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} VkPhysicalDeviceRayTracingFeaturesKHR;
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typedef struct VkPhysicalDeviceRayTracingPropertiesKHR {
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VkStructureType sType;
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void* pNext;
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uint32_t shaderGroupHandleSize;
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uint32_t maxRecursionDepth;
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uint32_t maxShaderGroupStride;
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uint32_t shaderGroupBaseAlignment;
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uint64_t maxGeometryCount;
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uint64_t maxInstanceCount;
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uint64_t maxPrimitiveCount;
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uint32_t maxDescriptorSetAccelerationStructures;
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uint32_t shaderGroupHandleCaptureReplaySize;
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} VkPhysicalDeviceRayTracingPropertiesKHR;
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typedef struct VkAccelerationStructureDeviceAddressInfoKHR {
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VkStructureType sType;
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const void* pNext;
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VkAccelerationStructureKHR accelerationStructure;
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} VkAccelerationStructureDeviceAddressInfoKHR;
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typedef struct VkAccelerationStructureVersionKHR {
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VkStructureType sType;
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const void* pNext;
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const uint8_t* versionData;
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} VkAccelerationStructureVersionKHR;
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typedef struct VkStridedBufferRegionKHR {
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VkBuffer buffer;
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VkDeviceSize offset;
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VkDeviceSize stride;
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VkDeviceSize size;
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} VkStridedBufferRegionKHR;
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typedef struct VkTraceRaysIndirectCommandKHR {
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uint32_t width;
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uint32_t height;
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uint32_t depth;
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} VkTraceRaysIndirectCommandKHR;
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typedef struct VkCopyAccelerationStructureToMemoryInfoKHR {
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VkStructureType sType;
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const void* pNext;
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VkAccelerationStructureKHR src;
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VkDeviceOrHostAddressKHR dst;
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VkCopyAccelerationStructureModeKHR mode;
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} VkCopyAccelerationStructureToMemoryInfoKHR;
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typedef struct VkCopyMemoryToAccelerationStructureInfoKHR {
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VkStructureType sType;
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const void* pNext;
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VkDeviceOrHostAddressConstKHR src;
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VkAccelerationStructureKHR dst;
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VkCopyAccelerationStructureModeKHR mode;
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} VkCopyMemoryToAccelerationStructureInfoKHR;
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typedef struct VkCopyAccelerationStructureInfoKHR {
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VkStructureType sType;
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const void* pNext;
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VkAccelerationStructureKHR src;
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VkAccelerationStructureKHR dst;
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VkCopyAccelerationStructureModeKHR mode;
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} VkCopyAccelerationStructureInfoKHR;
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typedef VkResult (VKAPI_PTR *PFN_vkCreateAccelerationStructureKHR)(VkDevice device, const VkAccelerationStructureCreateInfoKHR* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkAccelerationStructureKHR* pAccelerationStructure);
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typedef void (VKAPI_PTR *PFN_vkGetAccelerationStructureMemoryRequirementsKHR)(VkDevice device, const VkAccelerationStructureMemoryRequirementsInfoKHR* pInfo, VkMemoryRequirements2* pMemoryRequirements);
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typedef void (VKAPI_PTR *PFN_vkCmdBuildAccelerationStructureKHR)(VkCommandBuffer commandBuffer, uint32_t infoCount, const VkAccelerationStructureBuildGeometryInfoKHR* pInfos, const VkAccelerationStructureBuildOffsetInfoKHR* const* ppOffsetInfos);
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typedef void (VKAPI_PTR *PFN_vkCmdBuildAccelerationStructureIndirectKHR)(VkCommandBuffer commandBuffer, const VkAccelerationStructureBuildGeometryInfoKHR* pInfo, VkBuffer indirectBuffer, VkDeviceSize indirectOffset, uint32_t indirectStride);
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typedef VkResult (VKAPI_PTR *PFN_vkBuildAccelerationStructureKHR)(VkDevice device, uint32_t infoCount, const VkAccelerationStructureBuildGeometryInfoKHR* pInfos, const VkAccelerationStructureBuildOffsetInfoKHR* const* ppOffsetInfos);
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typedef VkResult (VKAPI_PTR *PFN_vkCopyAccelerationStructureKHR)(VkDevice device, const VkCopyAccelerationStructureInfoKHR* pInfo);
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typedef VkResult (VKAPI_PTR *PFN_vkCopyAccelerationStructureToMemoryKHR)(VkDevice device, const VkCopyAccelerationStructureToMemoryInfoKHR* pInfo);
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typedef VkResult (VKAPI_PTR *PFN_vkCopyMemoryToAccelerationStructureKHR)(VkDevice device, const VkCopyMemoryToAccelerationStructureInfoKHR* pInfo);
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typedef VkResult (VKAPI_PTR *PFN_vkWriteAccelerationStructuresPropertiesKHR)(VkDevice device, uint32_t accelerationStructureCount, const VkAccelerationStructureKHR* pAccelerationStructures, VkQueryType queryType, size_t dataSize, void* pData, size_t stride);
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typedef void (VKAPI_PTR *PFN_vkCmdCopyAccelerationStructureKHR)(VkCommandBuffer commandBuffer, const VkCopyAccelerationStructureInfoKHR* pInfo);
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typedef void (VKAPI_PTR *PFN_vkCmdCopyAccelerationStructureToMemoryKHR)(VkCommandBuffer commandBuffer, const VkCopyAccelerationStructureToMemoryInfoKHR* pInfo);
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typedef void (VKAPI_PTR *PFN_vkCmdCopyMemoryToAccelerationStructureKHR)(VkCommandBuffer commandBuffer, const VkCopyMemoryToAccelerationStructureInfoKHR* pInfo);
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typedef void (VKAPI_PTR *PFN_vkCmdTraceRaysKHR)(VkCommandBuffer commandBuffer, const VkStridedBufferRegionKHR* pRaygenShaderBindingTable, const VkStridedBufferRegionKHR* pMissShaderBindingTable, const VkStridedBufferRegionKHR* pHitShaderBindingTable, const VkStridedBufferRegionKHR* pCallableShaderBindingTable, uint32_t width, uint32_t height, uint32_t depth);
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typedef VkResult (VKAPI_PTR *PFN_vkCreateRayTracingPipelinesKHR)(VkDevice device, VkPipelineCache pipelineCache, uint32_t createInfoCount, const VkRayTracingPipelineCreateInfoKHR* pCreateInfos, const VkAllocationCallbacks* pAllocator, VkPipeline* pPipelines);
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typedef VkDeviceAddress (VKAPI_PTR *PFN_vkGetAccelerationStructureDeviceAddressKHR)(VkDevice device, const VkAccelerationStructureDeviceAddressInfoKHR* pInfo);
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typedef VkResult (VKAPI_PTR *PFN_vkGetRayTracingCaptureReplayShaderGroupHandlesKHR)(VkDevice device, VkPipeline pipeline, uint32_t firstGroup, uint32_t groupCount, size_t dataSize, void* pData);
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typedef void (VKAPI_PTR *PFN_vkCmdTraceRaysIndirectKHR)(VkCommandBuffer commandBuffer, const VkStridedBufferRegionKHR* pRaygenShaderBindingTable, const VkStridedBufferRegionKHR* pMissShaderBindingTable, const VkStridedBufferRegionKHR* pHitShaderBindingTable, const VkStridedBufferRegionKHR* pCallableShaderBindingTable, VkBuffer buffer, VkDeviceSize offset);
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typedef VkResult (VKAPI_PTR *PFN_vkGetDeviceAccelerationStructureCompatibilityKHR)(VkDevice device, const VkAccelerationStructureVersionKHR* version);
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#ifndef VK_NO_PROTOTYPES
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VKAPI_ATTR VkResult VKAPI_CALL vkCreateAccelerationStructureKHR(
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VkDevice device,
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const VkAccelerationStructureCreateInfoKHR* pCreateInfo,
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const VkAllocationCallbacks* pAllocator,
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VkAccelerationStructureKHR* pAccelerationStructure);
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VKAPI_ATTR void VKAPI_CALL vkGetAccelerationStructureMemoryRequirementsKHR(
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VkDevice device,
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const VkAccelerationStructureMemoryRequirementsInfoKHR* pInfo,
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VkMemoryRequirements2* pMemoryRequirements);
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VKAPI_ATTR void VKAPI_CALL vkCmdBuildAccelerationStructureKHR(
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VkCommandBuffer commandBuffer,
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uint32_t infoCount,
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const VkAccelerationStructureBuildGeometryInfoKHR* pInfos,
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const VkAccelerationStructureBuildOffsetInfoKHR* const* ppOffsetInfos);
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VKAPI_ATTR void VKAPI_CALL vkCmdBuildAccelerationStructureIndirectKHR(
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VkCommandBuffer commandBuffer,
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const VkAccelerationStructureBuildGeometryInfoKHR* pInfo,
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VkBuffer indirectBuffer,
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VkDeviceSize indirectOffset,
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uint32_t indirectStride);
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VKAPI_ATTR VkResult VKAPI_CALL vkBuildAccelerationStructureKHR(
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VkDevice device,
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uint32_t infoCount,
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const VkAccelerationStructureBuildGeometryInfoKHR* pInfos,
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const VkAccelerationStructureBuildOffsetInfoKHR* const* ppOffsetInfos);
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VKAPI_ATTR VkResult VKAPI_CALL vkCopyAccelerationStructureKHR(
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VkDevice device,
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const VkCopyAccelerationStructureInfoKHR* pInfo);
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VKAPI_ATTR VkResult VKAPI_CALL vkCopyAccelerationStructureToMemoryKHR(
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VkDevice device,
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const VkCopyAccelerationStructureToMemoryInfoKHR* pInfo);
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VKAPI_ATTR VkResult VKAPI_CALL vkCopyMemoryToAccelerationStructureKHR(
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VkDevice device,
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const VkCopyMemoryToAccelerationStructureInfoKHR* pInfo);
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VKAPI_ATTR VkResult VKAPI_CALL vkWriteAccelerationStructuresPropertiesKHR(
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VkDevice device,
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uint32_t accelerationStructureCount,
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const VkAccelerationStructureKHR* pAccelerationStructures,
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VkQueryType queryType,
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size_t dataSize,
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void* pData,
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size_t stride);
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VKAPI_ATTR void VKAPI_CALL vkCmdCopyAccelerationStructureKHR(
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VkCommandBuffer commandBuffer,
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const VkCopyAccelerationStructureInfoKHR* pInfo);
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VKAPI_ATTR void VKAPI_CALL vkCmdCopyAccelerationStructureToMemoryKHR(
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VkCommandBuffer commandBuffer,
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const VkCopyAccelerationStructureToMemoryInfoKHR* pInfo);
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VKAPI_ATTR void VKAPI_CALL vkCmdCopyMemoryToAccelerationStructureKHR(
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VkCommandBuffer commandBuffer,
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const VkCopyMemoryToAccelerationStructureInfoKHR* pInfo);
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VKAPI_ATTR void VKAPI_CALL vkCmdTraceRaysKHR(
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VkCommandBuffer commandBuffer,
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const VkStridedBufferRegionKHR* pRaygenShaderBindingTable,
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const VkStridedBufferRegionKHR* pMissShaderBindingTable,
|
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const VkStridedBufferRegionKHR* pHitShaderBindingTable,
|
|
const VkStridedBufferRegionKHR* pCallableShaderBindingTable,
|
|
uint32_t width,
|
|
uint32_t height,
|
|
uint32_t depth);
|
|
|
|
VKAPI_ATTR VkResult VKAPI_CALL vkCreateRayTracingPipelinesKHR(
|
|
VkDevice device,
|
|
VkPipelineCache pipelineCache,
|
|
uint32_t createInfoCount,
|
|
const VkRayTracingPipelineCreateInfoKHR* pCreateInfos,
|
|
const VkAllocationCallbacks* pAllocator,
|
|
VkPipeline* pPipelines);
|
|
|
|
VKAPI_ATTR VkDeviceAddress VKAPI_CALL vkGetAccelerationStructureDeviceAddressKHR(
|
|
VkDevice device,
|
|
const VkAccelerationStructureDeviceAddressInfoKHR* pInfo);
|
|
|
|
VKAPI_ATTR VkResult VKAPI_CALL vkGetRayTracingCaptureReplayShaderGroupHandlesKHR(
|
|
VkDevice device,
|
|
VkPipeline pipeline,
|
|
uint32_t firstGroup,
|
|
uint32_t groupCount,
|
|
size_t dataSize,
|
|
void* pData);
|
|
|
|
VKAPI_ATTR void VKAPI_CALL vkCmdTraceRaysIndirectKHR(
|
|
VkCommandBuffer commandBuffer,
|
|
const VkStridedBufferRegionKHR* pRaygenShaderBindingTable,
|
|
const VkStridedBufferRegionKHR* pMissShaderBindingTable,
|
|
const VkStridedBufferRegionKHR* pHitShaderBindingTable,
|
|
const VkStridedBufferRegionKHR* pCallableShaderBindingTable,
|
|
VkBuffer buffer,
|
|
VkDeviceSize offset);
|
|
|
|
VKAPI_ATTR VkResult VKAPI_CALL vkGetDeviceAccelerationStructureCompatibilityKHR(
|
|
VkDevice device,
|
|
const VkAccelerationStructureVersionKHR* version);
|
|
#endif
|
|
|
|
#ifdef __cplusplus
|
|
}
|
|
#endif
|
|
|
|
#endif
|