vk/vulkan.h: Remove some peer opening structs and STRUCTURE_TYPE enums
[mesa.git] / include / vulkan / vulkan-90.h
1 #ifndef __vulkan_h_
2 #define __vulkan_h_ 1
3
4 #ifdef __cplusplus
5 extern "C" {
6 #endif
7
8 /*
9 ** Copyright (c) 2015 The Khronos Group Inc.
10 **
11 ** Permission is hereby granted, free of charge, to any person obtaining a
12 ** copy of this software and/or associated documentation files (the
13 ** "Materials"), to deal in the Materials without restriction, including
14 ** without limitation the rights to use, copy, modify, merge, publish,
15 ** distribute, sublicense, and/or sell copies of the Materials, and to
16 ** permit persons to whom the Materials are furnished to do so, subject to
17 ** the following conditions:
18 **
19 ** The above copyright notice and this permission notice shall be included
20 ** in all copies or substantial portions of the Materials.
21 **
22 ** THE MATERIALS ARE PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
23 ** EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
24 ** MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
25 ** IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
26 ** CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
27 ** TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
28 ** MATERIALS OR THE USE OR OTHER DEALINGS IN THE MATERIALS.
29 */
30
31
32 #include "vk_platform.h"
33
34 #define VK_MAKE_VERSION(major, minor, patch) \
35 ((major << 22) | (minor << 12) | patch)
36
37 // Vulkan API version supported by this file
38 #define VK_API_VERSION VK_MAKE_VERSION(0, 90, 0)
39
40 #if defined (__cplusplus) && (VK_UINTPTRLEAST64_MAX == UINTPTR_MAX)
41 #define VK_TYPE_SAFE_COMPATIBLE_HANDLES 1
42 #endif
43
44 #if defined(VK_TYPE_SAFE_COMPATIBLE_HANDLES) && !defined(VK_DISABLE_TYPE_SAFE_HANDLES)
45 #define VK_DEFINE_PTR_HANDLE(_obj) struct _obj##_T { char _dummy; }; typedef _obj##_T* _obj;
46 #define VK_DEFINE_PTR_SUBCLASS_HANDLE(_obj, _base) struct _obj##_T : public _base##_T {}; typedef _obj##_T* _obj;
47
48 #define VK_DEFINE_BASE_HANDLE(_obj) VK_DEFINE_PTR_HANDLE(_obj)
49 #define VK_DEFINE_DISP_SUBCLASS_HANDLE(_obj, _base) VK_DEFINE_PTR_SUBCLASS_HANDLE(_obj, _base)
50 #define VK_DEFINE_NONDISP_SUBCLASS_HANDLE(_obj, _base) VK_DEFINE_PTR_SUBCLASS_HANDLE(_obj, _base)
51 #else
52 #define VK_DEFINE_BASE_HANDLE(_obj) typedef VkUintPtrLeast64 _obj;
53 #define VK_DEFINE_DISP_SUBCLASS_HANDLE(_obj, _base) typedef uintptr_t _obj;
54 #define VK_DEFINE_NONDISP_SUBCLASS_HANDLE(_obj, _base) typedef VkUintPtrLeast64 _obj;
55 #endif
56
57
58 #define VK_MAX_PHYSICAL_DEVICE_NAME 256
59 #define VK_MAX_EXTENSION_NAME 256
60 #define VK_LOD_CLAMP_NONE MAX_FLOAT
61 #define VK_WHOLE_SIZE UINT64_MAX
62 #define VK_TRUE 1
63 #define VK_FALSE 0
64 #define VK_NULL_HANDLE 0
65
66 VK_DEFINE_BASE_HANDLE(VkObject)
67 VK_DEFINE_DISP_SUBCLASS_HANDLE(VkInstance, VkObject)
68 VK_DEFINE_DISP_SUBCLASS_HANDLE(VkPhysicalDevice, VkObject)
69 VK_DEFINE_DISP_SUBCLASS_HANDLE(VkDevice, VkObject)
70 VK_DEFINE_DISP_SUBCLASS_HANDLE(VkQueue, VkObject)
71 VK_DEFINE_DISP_SUBCLASS_HANDLE(VkCmdBuffer, VkObject)
72 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkNonDispatchable, VkObject)
73 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkDeviceMemory, VkNonDispatchable)
74 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkBuffer, VkNonDispatchable)
75 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkBufferView, VkNonDispatchable)
76 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkImage, VkNonDispatchable)
77 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkImageView, VkNonDispatchable)
78 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkColorAttachmentView, VkNonDispatchable)
79 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkDepthStencilView, VkNonDispatchable)
80 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkShader, VkNonDispatchable)
81 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkPipeline, VkNonDispatchable)
82 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkPipelineLayout, VkNonDispatchable)
83 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkSampler, VkNonDispatchable)
84 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkDescriptorSet, VkNonDispatchable)
85 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkDescriptorSetLayout, VkNonDispatchable)
86 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkDescriptorPool, VkNonDispatchable)
87 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkDynamicStateObject, VkNonDispatchable)
88 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkDynamicVpState, VkDynamicStateObject)
89 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkDynamicRsState, VkDynamicStateObject)
90 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkDynamicCbState, VkDynamicStateObject)
91 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkDynamicDsState, VkDynamicStateObject)
92 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkFence, VkNonDispatchable)
93 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkSemaphore, VkNonDispatchable)
94 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkEvent, VkNonDispatchable)
95 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkQueryPool, VkNonDispatchable)
96 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkFramebuffer, VkNonDispatchable)
97 VK_DEFINE_NONDISP_SUBCLASS_HANDLE(VkRenderPass, VkNonDispatchable)
98
99 // This macro defines INT_MAX in enumerations to force compilers to use 32 bits
100 // to represent them. This may or may not be necessary on some compilers. The
101 // option to compile it out may allow compilers that warn about missing enumerants
102 // in switch statements to be silenced.
103 // Using this macro is not needed for flag bit enums because those aren't used
104 // as storage type anywhere.
105 #define VK_MAX_ENUM(Prefix) VK_##Prefix##_MAX_ENUM = 0x7FFFFFFF
106
107 // This macro defines the BEGIN_RANGE, END_RANGE, NUM, and MAX_ENUM constants for
108 // the enumerations.
109 #define VK_ENUM_RANGE(Prefix, First, Last) \
110 VK_##Prefix##_BEGIN_RANGE = VK_##Prefix##_##First, \
111 VK_##Prefix##_END_RANGE = VK_##Prefix##_##Last, \
112 VK_NUM_##Prefix = (VK_##Prefix##_END_RANGE - VK_##Prefix##_BEGIN_RANGE + 1), \
113 VK_MAX_ENUM(Prefix)
114
115 // This is a helper macro to define the value of flag bit enum values.
116 #define VK_BIT(bit) (1 << (bit))
117
118 // ------------------------------------------------------------------------------------------------
119 // Enumerations
120
121 typedef enum VkMemoryPriority_
122 {
123 VK_MEMORY_PRIORITY_UNUSED = 0x00000000,
124 VK_MEMORY_PRIORITY_VERY_LOW = 0x00000001,
125 VK_MEMORY_PRIORITY_LOW = 0x00000002,
126 VK_MEMORY_PRIORITY_NORMAL = 0x00000003,
127 VK_MEMORY_PRIORITY_HIGH = 0x00000004,
128 VK_MEMORY_PRIORITY_VERY_HIGH = 0x00000005,
129
130 VK_ENUM_RANGE(MEMORY_PRIORITY, UNUSED, VERY_HIGH)
131 } VkMemoryPriority;
132
133 typedef enum VkImageLayout_
134 {
135 VK_IMAGE_LAYOUT_UNDEFINED = 0x00000000, // Implicit layout an image is when its contents are undefined due to various reasons (e.g. right after creation)
136 VK_IMAGE_LAYOUT_GENERAL = 0x00000001, // General layout when image can be used for any kind of access
137 VK_IMAGE_LAYOUT_COLOR_ATTACHMENT_OPTIMAL = 0x00000002, // Optimal layout when image is only used for color attachment read/write
138 VK_IMAGE_LAYOUT_DEPTH_STENCIL_ATTACHMENT_OPTIMAL = 0x00000003, // Optimal layout when image is only used for depth/stencil attachment read/write
139 VK_IMAGE_LAYOUT_DEPTH_STENCIL_READ_ONLY_OPTIMAL = 0x00000004, // Optimal layout when image is used for read only depth/stencil attachment and shader access
140 VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL = 0x00000005, // Optimal layout when image is used for read only shader access
141 VK_IMAGE_LAYOUT_CLEAR_OPTIMAL = 0x00000006, // Optimal layout when image is used only for clear operations
142 VK_IMAGE_LAYOUT_TRANSFER_SOURCE_OPTIMAL = 0x00000007, // Optimal layout when image is used only as source of transfer operations
143 VK_IMAGE_LAYOUT_TRANSFER_DESTINATION_OPTIMAL = 0x00000008, // Optimal layout when image is used only as destination of transfer operations
144
145 VK_ENUM_RANGE(IMAGE_LAYOUT, UNDEFINED, TRANSFER_DESTINATION_OPTIMAL)
146 } VkImageLayout;
147
148 typedef enum VkPipeEvent_
149 {
150 VK_PIPE_EVENT_TOP_OF_PIPE = 0x00000001, // Set event before the device starts processing subsequent command
151 VK_PIPE_EVENT_VERTEX_PROCESSING_COMPLETE = 0x00000002, // Set event when all pending vertex processing is complete
152 VK_PIPE_EVENT_LOCAL_FRAGMENT_PROCESSING_COMPLETE = 0x00000003, // Set event when all pending fragment shader executions are complete, within each fragment location
153 VK_PIPE_EVENT_FRAGMENT_PROCESSING_COMPLETE = 0x00000004, // Set event when all pending fragment shader executions are complete
154 VK_PIPE_EVENT_GRAPHICS_PIPELINE_COMPLETE = 0x00000005, // Set event when all pending graphics operations are complete
155 VK_PIPE_EVENT_COMPUTE_PIPELINE_COMPLETE = 0x00000006, // Set event when all pending compute operations are complete
156 VK_PIPE_EVENT_TRANSFER_COMPLETE = 0x00000007, // Set event when all pending transfer operations are complete
157 VK_PIPE_EVENT_COMMANDS_COMPLETE = 0x00000008, // Set event when all pending work is complete
158
159 VK_ENUM_RANGE(PIPE_EVENT, TOP_OF_PIPE, COMMANDS_COMPLETE)
160 } VkPipeEvent;
161
162 typedef enum VkWaitEvent_
163 {
164 VK_WAIT_EVENT_TOP_OF_PIPE = 0x00000001, // Wait event before the device starts processing subsequent commands
165 VK_WAIT_EVENT_BEFORE_RASTERIZATION = 0x00000002, // Wait event before rasterizing subsequent primitives
166
167 VK_ENUM_RANGE(WAIT_EVENT, TOP_OF_PIPE, BEFORE_RASTERIZATION)
168 } VkWaitEvent;
169
170 typedef enum VkAttachmentLoadOp_
171 {
172 VK_ATTACHMENT_LOAD_OP_LOAD = 0x00000000,
173 VK_ATTACHMENT_LOAD_OP_CLEAR = 0x00000001,
174 VK_ATTACHMENT_LOAD_OP_DONT_CARE = 0x00000002,
175
176 VK_ENUM_RANGE(ATTACHMENT_LOAD_OP, LOAD, DONT_CARE)
177 } VkAttachmentLoadOp;
178
179 typedef enum VkAttachmentStoreOp_
180 {
181 VK_ATTACHMENT_STORE_OP_STORE = 0x00000000,
182 VK_ATTACHMENT_STORE_OP_RESOLVE_MSAA = 0x00000001,
183 VK_ATTACHMENT_STORE_OP_DONT_CARE = 0x00000002,
184
185 VK_ENUM_RANGE(ATTACHMENT_STORE_OP, STORE, DONT_CARE)
186 } VkAttachmentStoreOp;
187
188 typedef enum VkImageType_
189 {
190 VK_IMAGE_TYPE_1D = 0x00000000,
191 VK_IMAGE_TYPE_2D = 0x00000001,
192 VK_IMAGE_TYPE_3D = 0x00000002,
193
194 VK_ENUM_RANGE(IMAGE_TYPE, 1D, 3D)
195 } VkImageType;
196
197 typedef enum VkImageTiling_
198 {
199 VK_IMAGE_TILING_LINEAR = 0x00000000,
200 VK_IMAGE_TILING_OPTIMAL = 0x00000001,
201
202 VK_ENUM_RANGE(IMAGE_TILING, LINEAR, OPTIMAL)
203 } VkImageTiling;
204
205 typedef enum VkImageViewType_
206 {
207 VK_IMAGE_VIEW_TYPE_1D = 0x00000000,
208 VK_IMAGE_VIEW_TYPE_2D = 0x00000001,
209 VK_IMAGE_VIEW_TYPE_3D = 0x00000002,
210 VK_IMAGE_VIEW_TYPE_CUBE = 0x00000003,
211
212 VK_ENUM_RANGE(IMAGE_VIEW_TYPE, 1D, CUBE)
213 } VkImageViewType;
214
215 typedef enum VkImageAspect_
216 {
217 VK_IMAGE_ASPECT_COLOR = 0x00000000,
218 VK_IMAGE_ASPECT_DEPTH = 0x00000001,
219 VK_IMAGE_ASPECT_STENCIL = 0x00000002,
220
221 VK_ENUM_RANGE(IMAGE_ASPECT, COLOR, STENCIL)
222 } VkImageAspect;
223
224 typedef enum VkBufferViewType_
225 {
226 VK_BUFFER_VIEW_TYPE_RAW = 0x00000000, // Raw buffer without special structure (UBO, SSBO)
227 VK_BUFFER_VIEW_TYPE_FORMATTED = 0x00000001, // Buffer with format (TBO, IBO)
228
229 VK_ENUM_RANGE(BUFFER_VIEW_TYPE, RAW, FORMATTED)
230 } VkBufferViewType;
231
232 typedef enum VkChannelSwizzle_
233 {
234 VK_CHANNEL_SWIZZLE_ZERO = 0x00000000,
235 VK_CHANNEL_SWIZZLE_ONE = 0x00000001,
236 VK_CHANNEL_SWIZZLE_R = 0x00000002,
237 VK_CHANNEL_SWIZZLE_G = 0x00000003,
238 VK_CHANNEL_SWIZZLE_B = 0x00000004,
239 VK_CHANNEL_SWIZZLE_A = 0x00000005,
240
241 VK_ENUM_RANGE(CHANNEL_SWIZZLE, ZERO, A)
242 } VkChannelSwizzle;
243
244 typedef enum VkDescriptorType_
245 {
246 VK_DESCRIPTOR_TYPE_SAMPLER = 0x00000000,
247 VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER = 0x00000001,
248 VK_DESCRIPTOR_TYPE_SAMPLED_IMAGE = 0x00000002,
249 VK_DESCRIPTOR_TYPE_STORAGE_IMAGE = 0x00000003,
250 VK_DESCRIPTOR_TYPE_UNIFORM_TEXEL_BUFFER = 0x00000004,
251 VK_DESCRIPTOR_TYPE_STORAGE_TEXEL_BUFFER = 0x00000005,
252 VK_DESCRIPTOR_TYPE_UNIFORM_BUFFER = 0x00000006,
253 VK_DESCRIPTOR_TYPE_STORAGE_BUFFER = 0x00000007,
254 VK_DESCRIPTOR_TYPE_UNIFORM_BUFFER_DYNAMIC = 0x00000008,
255 VK_DESCRIPTOR_TYPE_STORAGE_BUFFER_DYNAMIC = 0x00000009,
256
257 VK_ENUM_RANGE(DESCRIPTOR_TYPE, SAMPLER, STORAGE_BUFFER_DYNAMIC)
258 } VkDescriptorType;
259
260 typedef enum VkDescriptorPoolUsage_
261 {
262 VK_DESCRIPTOR_POOL_USAGE_ONE_SHOT = 0x00000000,
263 VK_DESCRIPTOR_POOL_USAGE_DYNAMIC = 0x00000001,
264
265 VK_ENUM_RANGE(DESCRIPTOR_POOL_USAGE, ONE_SHOT, DYNAMIC)
266 } VkDescriptorPoolUsage;
267
268 typedef enum VkDescriptorUpdateMode_
269 {
270 VK_DESCRIPTOR_UPDATE_MODE_COPY = 0x00000000,
271 VK_DESCRIPTOR_UPDATE_MODE_FASTEST = 0x00000001,
272
273 VK_ENUM_RANGE(DESCRIPTOR_UPDATE_MODE, COPY, FASTEST)
274 } VkDescriptorUpdateMode;
275
276 typedef enum VkDescriptorSetUsage_
277 {
278 VK_DESCRIPTOR_SET_USAGE_ONE_SHOT = 0x00000000,
279 VK_DESCRIPTOR_SET_USAGE_STATIC = 0x00000001,
280
281 VK_ENUM_RANGE(DESCRIPTOR_SET_USAGE, ONE_SHOT, STATIC)
282 } VkDescriptorSetUsage;
283
284 typedef enum VkQueryType_
285 {
286 VK_QUERY_TYPE_OCCLUSION = 0x00000000,
287 VK_QUERY_TYPE_PIPELINE_STATISTICS = 0x00000001, // Optional
288
289 VK_ENUM_RANGE(QUERY_TYPE, OCCLUSION, PIPELINE_STATISTICS)
290 } VkQueryType;
291
292 typedef enum VkTimestampType_
293 {
294 VK_TIMESTAMP_TYPE_TOP = 0x00000000,
295 VK_TIMESTAMP_TYPE_BOTTOM = 0x00000001,
296
297 VK_ENUM_RANGE(TIMESTAMP_TYPE, TOP, BOTTOM)
298 } VkTimestampType;
299
300 typedef enum VkBorderColor_
301 {
302 VK_BORDER_COLOR_OPAQUE_WHITE = 0x00000000,
303 VK_BORDER_COLOR_TRANSPARENT_BLACK = 0x00000001,
304 VK_BORDER_COLOR_OPAQUE_BLACK = 0x00000002,
305
306 VK_ENUM_RANGE(BORDER_COLOR, OPAQUE_WHITE, OPAQUE_BLACK)
307 } VkBorderColor;
308
309 typedef enum VkPipelineBindPoint_
310 {
311 VK_PIPELINE_BIND_POINT_COMPUTE = 0x00000000,
312 VK_PIPELINE_BIND_POINT_GRAPHICS = 0x00000001,
313
314 VK_ENUM_RANGE(PIPELINE_BIND_POINT, COMPUTE, GRAPHICS)
315 } VkPipelineBindPoint;
316
317 typedef enum VkStateBindPoint_
318 {
319 VK_STATE_BIND_POINT_VIEWPORT = 0x00000000,
320 VK_STATE_BIND_POINT_RASTER = 0x00000001,
321 VK_STATE_BIND_POINT_COLOR_BLEND = 0x00000002,
322 VK_STATE_BIND_POINT_DEPTH_STENCIL = 0x00000003,
323
324 VK_ENUM_RANGE(STATE_BIND_POINT, VIEWPORT, DEPTH_STENCIL)
325 } VkStateBindPoint;
326
327 typedef enum VkPrimitiveTopology_
328 {
329 VK_PRIMITIVE_TOPOLOGY_POINT_LIST = 0x00000000,
330 VK_PRIMITIVE_TOPOLOGY_LINE_LIST = 0x00000001,
331 VK_PRIMITIVE_TOPOLOGY_LINE_STRIP = 0x00000002,
332 VK_PRIMITIVE_TOPOLOGY_TRIANGLE_LIST = 0x00000003,
333 VK_PRIMITIVE_TOPOLOGY_TRIANGLE_STRIP = 0x00000004,
334 VK_PRIMITIVE_TOPOLOGY_TRIANGLE_FAN = 0x00000005,
335 VK_PRIMITIVE_TOPOLOGY_LINE_LIST_ADJ = 0x00000006,
336 VK_PRIMITIVE_TOPOLOGY_LINE_STRIP_ADJ = 0x00000007,
337 VK_PRIMITIVE_TOPOLOGY_TRIANGLE_LIST_ADJ = 0x00000008,
338 VK_PRIMITIVE_TOPOLOGY_TRIANGLE_STRIP_ADJ = 0x00000009,
339 VK_PRIMITIVE_TOPOLOGY_PATCH = 0x0000000a,
340
341 VK_ENUM_RANGE(PRIMITIVE_TOPOLOGY, POINT_LIST, PATCH)
342 } VkPrimitiveTopology;
343
344 typedef enum VkIndexType_
345 {
346 VK_INDEX_TYPE_UINT8 = 0x00000000,
347 VK_INDEX_TYPE_UINT16 = 0x00000001,
348 VK_INDEX_TYPE_UINT32 = 0x00000002,
349
350 VK_ENUM_RANGE(INDEX_TYPE, UINT8, UINT32)
351 } VkIndexType;
352
353 typedef enum VkTexFilter_
354 {
355 VK_TEX_FILTER_NEAREST = 0x00000000,
356 VK_TEX_FILTER_LINEAR = 0x00000001,
357
358 VK_ENUM_RANGE(TEX_FILTER, NEAREST, LINEAR)
359 } VkTexFilter;
360
361 typedef enum VkTexMipmapMode_
362 {
363 VK_TEX_MIPMAP_MODE_BASE = 0x00000000, // Always choose base level
364 VK_TEX_MIPMAP_MODE_NEAREST = 0x00000001, // Choose nearest mip level
365 VK_TEX_MIPMAP_MODE_LINEAR = 0x00000002, // Linear filter between mip levels
366
367 VK_ENUM_RANGE(TEX_MIPMAP_MODE, BASE, LINEAR)
368 } VkTexMipmapMode;
369
370 typedef enum VkTexAddress_
371 {
372 VK_TEX_ADDRESS_WRAP = 0x00000000,
373 VK_TEX_ADDRESS_MIRROR = 0x00000001,
374 VK_TEX_ADDRESS_CLAMP = 0x00000002,
375 VK_TEX_ADDRESS_MIRROR_ONCE = 0x00000003,
376 VK_TEX_ADDRESS_CLAMP_BORDER = 0x00000004,
377
378 VK_ENUM_RANGE(TEX_ADDRESS, WRAP, CLAMP_BORDER)
379 } VkTexAddress;
380
381 typedef enum VkCompareOp_
382 {
383 VK_COMPARE_OP_NEVER = 0x00000000,
384 VK_COMPARE_OP_LESS = 0x00000001,
385 VK_COMPARE_OP_EQUAL = 0x00000002,
386 VK_COMPARE_OP_LESS_EQUAL = 0x00000003,
387 VK_COMPARE_OP_GREATER = 0x00000004,
388 VK_COMPARE_OP_NOT_EQUAL = 0x00000005,
389 VK_COMPARE_OP_GREATER_EQUAL = 0x00000006,
390 VK_COMPARE_OP_ALWAYS = 0x00000007,
391
392 VK_ENUM_RANGE(COMPARE_OP, NEVER, ALWAYS)
393 } VkCompareOp;
394
395 typedef enum VkFillMode_
396 {
397 VK_FILL_MODE_POINTS = 0x00000000,
398 VK_FILL_MODE_WIREFRAME = 0x00000001,
399 VK_FILL_MODE_SOLID = 0x00000002,
400
401 VK_ENUM_RANGE(FILL_MODE, POINTS, SOLID)
402 } VkFillMode;
403
404 typedef enum VkCullMode_
405 {
406 VK_CULL_MODE_NONE = 0x00000000,
407 VK_CULL_MODE_FRONT = 0x00000001,
408 VK_CULL_MODE_BACK = 0x00000002,
409 VK_CULL_MODE_FRONT_AND_BACK = 0x00000003,
410
411 VK_ENUM_RANGE(CULL_MODE, NONE, FRONT_AND_BACK)
412 } VkCullMode;
413
414 typedef enum VkFrontFace_
415 {
416 VK_FRONT_FACE_CCW = 0x00000000,
417 VK_FRONT_FACE_CW = 0x00000001,
418
419 VK_ENUM_RANGE(FRONT_FACE, CCW, CW)
420 } VkFrontFace;
421
422 typedef enum VkProvokingVertex_
423 {
424 VK_PROVOKING_VERTEX_FIRST = 0x00000000,
425 VK_PROVOKING_VERTEX_LAST = 0x00000001,
426
427 VK_ENUM_RANGE(PROVOKING_VERTEX, FIRST, LAST)
428 } VkProvokingVertex;
429
430 typedef enum VkCoordinateOrigin_
431 {
432 VK_COORDINATE_ORIGIN_UPPER_LEFT = 0x00000000,
433 VK_COORDINATE_ORIGIN_LOWER_LEFT = 0x00000001,
434
435 VK_ENUM_RANGE(COORDINATE_ORIGIN, UPPER_LEFT, LOWER_LEFT)
436 } VkCoordinateOrigin;
437
438 typedef enum VkDepthMode_
439 {
440 VK_DEPTH_MODE_ZERO_TO_ONE = 0x00000000,
441 VK_DEPTH_MODE_NEGATIVE_ONE_TO_ONE = 0x00000001,
442
443 VK_ENUM_RANGE(DEPTH_MODE, ZERO_TO_ONE, NEGATIVE_ONE_TO_ONE)
444 } VkDepthMode;
445
446 typedef enum VkBlend_
447 {
448 VK_BLEND_ZERO = 0x00000000,
449 VK_BLEND_ONE = 0x00000001,
450 VK_BLEND_SRC_COLOR = 0x00000002,
451 VK_BLEND_ONE_MINUS_SRC_COLOR = 0x00000003,
452 VK_BLEND_DEST_COLOR = 0x00000004,
453 VK_BLEND_ONE_MINUS_DEST_COLOR = 0x00000005,
454 VK_BLEND_SRC_ALPHA = 0x00000006,
455 VK_BLEND_ONE_MINUS_SRC_ALPHA = 0x00000007,
456 VK_BLEND_DEST_ALPHA = 0x00000008,
457 VK_BLEND_ONE_MINUS_DEST_ALPHA = 0x00000009,
458 VK_BLEND_CONSTANT_COLOR = 0x0000000a,
459 VK_BLEND_ONE_MINUS_CONSTANT_COLOR = 0x0000000b,
460 VK_BLEND_CONSTANT_ALPHA = 0x0000000c,
461 VK_BLEND_ONE_MINUS_CONSTANT_ALPHA = 0x0000000d,
462 VK_BLEND_SRC_ALPHA_SATURATE = 0x0000000e,
463 VK_BLEND_SRC1_COLOR = 0x0000000f,
464 VK_BLEND_ONE_MINUS_SRC1_COLOR = 0x00000010,
465 VK_BLEND_SRC1_ALPHA = 0x00000011,
466 VK_BLEND_ONE_MINUS_SRC1_ALPHA = 0x00000012,
467
468 VK_ENUM_RANGE(BLEND, ZERO, ONE_MINUS_SRC1_ALPHA)
469 } VkBlend;
470
471 typedef enum VkBlendOp_
472 {
473 VK_BLEND_OP_ADD = 0x00000000,
474 VK_BLEND_OP_SUBTRACT = 0x00000001,
475 VK_BLEND_OP_REVERSE_SUBTRACT = 0x00000002,
476 VK_BLEND_OP_MIN = 0x00000003,
477 VK_BLEND_OP_MAX = 0x00000004,
478
479 VK_ENUM_RANGE(BLEND_OP, ADD, MAX)
480 } VkBlendOp;
481
482 typedef enum VkStencilOp_
483 {
484 VK_STENCIL_OP_KEEP = 0x00000000,
485 VK_STENCIL_OP_ZERO = 0x00000001,
486 VK_STENCIL_OP_REPLACE = 0x00000002,
487 VK_STENCIL_OP_INC_CLAMP = 0x00000003,
488 VK_STENCIL_OP_DEC_CLAMP = 0x00000004,
489 VK_STENCIL_OP_INVERT = 0x00000005,
490 VK_STENCIL_OP_INC_WRAP = 0x00000006,
491 VK_STENCIL_OP_DEC_WRAP = 0x00000007,
492
493 VK_ENUM_RANGE(STENCIL_OP, KEEP, DEC_WRAP)
494 } VkStencilOp;
495
496 typedef enum VkLogicOp_
497 {
498 VK_LOGIC_OP_COPY = 0x00000000,
499 VK_LOGIC_OP_CLEAR = 0x00000001,
500 VK_LOGIC_OP_AND = 0x00000002,
501 VK_LOGIC_OP_AND_REVERSE = 0x00000003,
502 VK_LOGIC_OP_AND_INVERTED = 0x00000004,
503 VK_LOGIC_OP_NOOP = 0x00000005,
504 VK_LOGIC_OP_XOR = 0x00000006,
505 VK_LOGIC_OP_OR = 0x00000007,
506 VK_LOGIC_OP_NOR = 0x00000008,
507 VK_LOGIC_OP_EQUIV = 0x00000009,
508 VK_LOGIC_OP_INVERT = 0x0000000a,
509 VK_LOGIC_OP_OR_REVERSE = 0x0000000b,
510 VK_LOGIC_OP_COPY_INVERTED = 0x0000000c,
511 VK_LOGIC_OP_OR_INVERTED = 0x0000000d,
512 VK_LOGIC_OP_NAND = 0x0000000e,
513 VK_LOGIC_OP_SET = 0x0000000f,
514
515 VK_ENUM_RANGE(LOGIC_OP, COPY, SET)
516 } VkLogicOp;
517
518 typedef enum VkSystemAllocType_
519 {
520 VK_SYSTEM_ALLOC_TYPE_API_OBJECT = 0x00000000,
521 VK_SYSTEM_ALLOC_TYPE_INTERNAL = 0x00000001,
522 VK_SYSTEM_ALLOC_TYPE_INTERNAL_TEMP = 0x00000002,
523 VK_SYSTEM_ALLOC_TYPE_INTERNAL_SHADER = 0x00000003,
524 VK_SYSTEM_ALLOC_TYPE_DEBUG = 0x00000004,
525
526 VK_ENUM_RANGE(SYSTEM_ALLOC_TYPE, API_OBJECT, DEBUG)
527 } VkSystemAllocType;
528
529 typedef enum VkPhysicalDeviceType_
530 {
531 VK_PHYSICAL_DEVICE_TYPE_OTHER = 0x00000000,
532 VK_PHYSICAL_DEVICE_TYPE_INTEGRATED_GPU = 0x00000001,
533 VK_PHYSICAL_DEVICE_TYPE_DISCRETE_GPU = 0x00000002,
534 VK_PHYSICAL_DEVICE_TYPE_VIRTUAL_GPU = 0x00000003,
535 VK_PHYSICAL_DEVICE_TYPE_CPU = 0x00000004,
536
537 VK_ENUM_RANGE(PHYSICAL_DEVICE_TYPE, OTHER, CPU)
538 } VkPhysicalDeviceType;
539
540 typedef enum VkPhysicalDeviceInfoType_
541 {
542 // Info type for vkGetPhysicalDeviceInfo()
543 VK_PHYSICAL_DEVICE_INFO_TYPE_PROPERTIES = 0x00000000,
544 VK_PHYSICAL_DEVICE_INFO_TYPE_PERFORMANCE = 0x00000001,
545 VK_PHYSICAL_DEVICE_INFO_TYPE_QUEUE_PROPERTIES = 0x00000002,
546 VK_PHYSICAL_DEVICE_INFO_TYPE_MEMORY_PROPERTIES = 0x00000003,
547
548 VK_ENUM_RANGE(PHYSICAL_DEVICE_INFO_TYPE, PROPERTIES, MEMORY_PROPERTIES)
549 } VkPhysicalDeviceInfoType;
550
551 typedef enum VkExtensionInfoType_
552 {
553 // Info type for vkGetGlobalExtensionInfo() and vkGetPhysicalDeviceExtensionInfo()
554 VK_EXTENSION_INFO_TYPE_COUNT = 0x00000000,
555 VK_EXTENSION_INFO_TYPE_PROPERTIES = 0x00000001,
556
557 VK_ENUM_RANGE(EXTENSION_INFO_TYPE, COUNT, PROPERTIES)
558 } VkExtensionInfoType;
559
560 typedef enum VkFormatInfoType_
561 {
562 // Info type for vkGetFormatInfo()
563 VK_FORMAT_INFO_TYPE_PROPERTIES = 0x00000000,
564
565 VK_ENUM_RANGE(FORMAT_INFO_TYPE, PROPERTIES, PROPERTIES)
566 } VkFormatInfoType;
567
568 typedef enum VkSubresourceInfoType_
569 {
570 // Info type for vkGetImageSubresourceInfo()
571 VK_SUBRESOURCE_INFO_TYPE_LAYOUT = 0x00000000,
572
573 VK_ENUM_RANGE(SUBRESOURCE_INFO_TYPE, LAYOUT, LAYOUT)
574 } VkSubresourceInfoType;
575
576 typedef enum VkObjectInfoType_
577 {
578 // Info type for vkGetObjectInfo()
579 VK_OBJECT_INFO_TYPE_MEMORY_ALLOCATION_COUNT = 0x00000000,
580 VK_OBJECT_INFO_TYPE_MEMORY_REQUIREMENTS = 0x00000001,
581
582 VK_ENUM_RANGE(OBJECT_INFO_TYPE, MEMORY_ALLOCATION_COUNT, MEMORY_REQUIREMENTS)
583 } VkObjectInfoType;
584
585 typedef enum VkVertexInputStepRate_
586 {
587 VK_VERTEX_INPUT_STEP_RATE_VERTEX = 0x0,
588 VK_VERTEX_INPUT_STEP_RATE_INSTANCE = 0x1,
589 VK_VERTEX_INPUT_STEP_RATE_DRAW = 0x2, //Optional
590
591 VK_ENUM_RANGE(VERTEX_INPUT_STEP_RATE, VERTEX, DRAW)
592 } VkVertexInputStepRate;
593
594 // Vulkan format definitions
595 typedef enum VkFormat_
596 {
597 VK_FORMAT_UNDEFINED = 0x00000000,
598 VK_FORMAT_R4G4_UNORM = 0x00000001,
599 VK_FORMAT_R4G4_USCALED = 0x00000002,
600 VK_FORMAT_R4G4B4A4_UNORM = 0x00000003,
601 VK_FORMAT_R4G4B4A4_USCALED = 0x00000004,
602 VK_FORMAT_R5G6B5_UNORM = 0x00000005,
603 VK_FORMAT_R5G6B5_USCALED = 0x00000006,
604 VK_FORMAT_R5G5B5A1_UNORM = 0x00000007,
605 VK_FORMAT_R5G5B5A1_USCALED = 0x00000008,
606 VK_FORMAT_R8_UNORM = 0x00000009,
607 VK_FORMAT_R8_SNORM = 0x0000000A,
608 VK_FORMAT_R8_USCALED = 0x0000000B,
609 VK_FORMAT_R8_SSCALED = 0x0000000C,
610 VK_FORMAT_R8_UINT = 0x0000000D,
611 VK_FORMAT_R8_SINT = 0x0000000E,
612 VK_FORMAT_R8_SRGB = 0x0000000F,
613 VK_FORMAT_R8G8_UNORM = 0x00000010,
614 VK_FORMAT_R8G8_SNORM = 0x00000011,
615 VK_FORMAT_R8G8_USCALED = 0x00000012,
616 VK_FORMAT_R8G8_SSCALED = 0x00000013,
617 VK_FORMAT_R8G8_UINT = 0x00000014,
618 VK_FORMAT_R8G8_SINT = 0x00000015,
619 VK_FORMAT_R8G8_SRGB = 0x00000016,
620 VK_FORMAT_R8G8B8_UNORM = 0x00000017,
621 VK_FORMAT_R8G8B8_SNORM = 0x00000018,
622 VK_FORMAT_R8G8B8_USCALED = 0x00000019,
623 VK_FORMAT_R8G8B8_SSCALED = 0x0000001A,
624 VK_FORMAT_R8G8B8_UINT = 0x0000001B,
625 VK_FORMAT_R8G8B8_SINT = 0x0000001C,
626 VK_FORMAT_R8G8B8_SRGB = 0x0000001D,
627 VK_FORMAT_R8G8B8A8_UNORM = 0x0000001E,
628 VK_FORMAT_R8G8B8A8_SNORM = 0x0000001F,
629 VK_FORMAT_R8G8B8A8_USCALED = 0x00000020,
630 VK_FORMAT_R8G8B8A8_SSCALED = 0x00000021,
631 VK_FORMAT_R8G8B8A8_UINT = 0x00000022,
632 VK_FORMAT_R8G8B8A8_SINT = 0x00000023,
633 VK_FORMAT_R8G8B8A8_SRGB = 0x00000024,
634 VK_FORMAT_R10G10B10A2_UNORM = 0x00000025,
635 VK_FORMAT_R10G10B10A2_SNORM = 0x00000026,
636 VK_FORMAT_R10G10B10A2_USCALED = 0x00000027,
637 VK_FORMAT_R10G10B10A2_SSCALED = 0x00000028,
638 VK_FORMAT_R10G10B10A2_UINT = 0x00000029,
639 VK_FORMAT_R10G10B10A2_SINT = 0x0000002A,
640 VK_FORMAT_R16_UNORM = 0x0000002B,
641 VK_FORMAT_R16_SNORM = 0x0000002C,
642 VK_FORMAT_R16_USCALED = 0x0000002D,
643 VK_FORMAT_R16_SSCALED = 0x0000002E,
644 VK_FORMAT_R16_UINT = 0x0000002F,
645 VK_FORMAT_R16_SINT = 0x00000030,
646 VK_FORMAT_R16_SFLOAT = 0x00000031,
647 VK_FORMAT_R16G16_UNORM = 0x00000032,
648 VK_FORMAT_R16G16_SNORM = 0x00000033,
649 VK_FORMAT_R16G16_USCALED = 0x00000034,
650 VK_FORMAT_R16G16_SSCALED = 0x00000035,
651 VK_FORMAT_R16G16_UINT = 0x00000036,
652 VK_FORMAT_R16G16_SINT = 0x00000037,
653 VK_FORMAT_R16G16_SFLOAT = 0x00000038,
654 VK_FORMAT_R16G16B16_UNORM = 0x00000039,
655 VK_FORMAT_R16G16B16_SNORM = 0x0000003A,
656 VK_FORMAT_R16G16B16_USCALED = 0x0000003B,
657 VK_FORMAT_R16G16B16_SSCALED = 0x0000003C,
658 VK_FORMAT_R16G16B16_UINT = 0x0000003D,
659 VK_FORMAT_R16G16B16_SINT = 0x0000003E,
660 VK_FORMAT_R16G16B16_SFLOAT = 0x0000003F,
661 VK_FORMAT_R16G16B16A16_UNORM = 0x00000040,
662 VK_FORMAT_R16G16B16A16_SNORM = 0x00000041,
663 VK_FORMAT_R16G16B16A16_USCALED = 0x00000042,
664 VK_FORMAT_R16G16B16A16_SSCALED = 0x00000043,
665 VK_FORMAT_R16G16B16A16_UINT = 0x00000044,
666 VK_FORMAT_R16G16B16A16_SINT = 0x00000045,
667 VK_FORMAT_R16G16B16A16_SFLOAT = 0x00000046,
668 VK_FORMAT_R32_UINT = 0x00000047,
669 VK_FORMAT_R32_SINT = 0x00000048,
670 VK_FORMAT_R32_SFLOAT = 0x00000049,
671 VK_FORMAT_R32G32_UINT = 0x0000004A,
672 VK_FORMAT_R32G32_SINT = 0x0000004B,
673 VK_FORMAT_R32G32_SFLOAT = 0x0000004C,
674 VK_FORMAT_R32G32B32_UINT = 0x0000004D,
675 VK_FORMAT_R32G32B32_SINT = 0x0000004E,
676 VK_FORMAT_R32G32B32_SFLOAT = 0x0000004F,
677 VK_FORMAT_R32G32B32A32_UINT = 0x00000050,
678 VK_FORMAT_R32G32B32A32_SINT = 0x00000051,
679 VK_FORMAT_R32G32B32A32_SFLOAT = 0x00000052,
680 VK_FORMAT_R64_SFLOAT = 0x00000053,
681 VK_FORMAT_R64G64_SFLOAT = 0x00000054,
682 VK_FORMAT_R64G64B64_SFLOAT = 0x00000055,
683 VK_FORMAT_R64G64B64A64_SFLOAT = 0x00000056,
684 VK_FORMAT_R11G11B10_UFLOAT = 0x00000057,
685 VK_FORMAT_R9G9B9E5_UFLOAT = 0x00000058,
686 VK_FORMAT_D16_UNORM = 0x00000059,
687 VK_FORMAT_D24_UNORM = 0x0000005A,
688 VK_FORMAT_D32_SFLOAT = 0x0000005B,
689 VK_FORMAT_S8_UINT = 0x0000005C,
690 VK_FORMAT_D16_UNORM_S8_UINT = 0x0000005D,
691 VK_FORMAT_D24_UNORM_S8_UINT = 0x0000005E,
692 VK_FORMAT_D32_SFLOAT_S8_UINT = 0x0000005F,
693 VK_FORMAT_BC1_RGB_UNORM = 0x00000060,
694 VK_FORMAT_BC1_RGB_SRGB = 0x00000061,
695 VK_FORMAT_BC1_RGBA_UNORM = 0x00000062,
696 VK_FORMAT_BC1_RGBA_SRGB = 0x00000063,
697 VK_FORMAT_BC2_UNORM = 0x00000064,
698 VK_FORMAT_BC2_SRGB = 0x00000065,
699 VK_FORMAT_BC3_UNORM = 0x00000066,
700 VK_FORMAT_BC3_SRGB = 0x00000067,
701 VK_FORMAT_BC4_UNORM = 0x00000068,
702 VK_FORMAT_BC4_SNORM = 0x00000069,
703 VK_FORMAT_BC5_UNORM = 0x0000006A,
704 VK_FORMAT_BC5_SNORM = 0x0000006B,
705 VK_FORMAT_BC6H_UFLOAT = 0x0000006C,
706 VK_FORMAT_BC6H_SFLOAT = 0x0000006D,
707 VK_FORMAT_BC7_UNORM = 0x0000006E,
708 VK_FORMAT_BC7_SRGB = 0x0000006F,
709 VK_FORMAT_ETC2_R8G8B8_UNORM = 0x00000070,
710 VK_FORMAT_ETC2_R8G8B8_SRGB = 0x00000071,
711 VK_FORMAT_ETC2_R8G8B8A1_UNORM = 0x00000072,
712 VK_FORMAT_ETC2_R8G8B8A1_SRGB = 0x00000073,
713 VK_FORMAT_ETC2_R8G8B8A8_UNORM = 0x00000074,
714 VK_FORMAT_ETC2_R8G8B8A8_SRGB = 0x00000075,
715 VK_FORMAT_EAC_R11_UNORM = 0x00000076,
716 VK_FORMAT_EAC_R11_SNORM = 0x00000077,
717 VK_FORMAT_EAC_R11G11_UNORM = 0x00000078,
718 VK_FORMAT_EAC_R11G11_SNORM = 0x00000079,
719 VK_FORMAT_ASTC_4x4_UNORM = 0x0000007A,
720 VK_FORMAT_ASTC_4x4_SRGB = 0x0000007B,
721 VK_FORMAT_ASTC_5x4_UNORM = 0x0000007C,
722 VK_FORMAT_ASTC_5x4_SRGB = 0x0000007D,
723 VK_FORMAT_ASTC_5x5_UNORM = 0x0000007E,
724 VK_FORMAT_ASTC_5x5_SRGB = 0x0000007F,
725 VK_FORMAT_ASTC_6x5_UNORM = 0x00000080,
726 VK_FORMAT_ASTC_6x5_SRGB = 0x00000081,
727 VK_FORMAT_ASTC_6x6_UNORM = 0x00000082,
728 VK_FORMAT_ASTC_6x6_SRGB = 0x00000083,
729 VK_FORMAT_ASTC_8x5_UNORM = 0x00000084,
730 VK_FORMAT_ASTC_8x5_SRGB = 0x00000085,
731 VK_FORMAT_ASTC_8x6_UNORM = 0x00000086,
732 VK_FORMAT_ASTC_8x6_SRGB = 0x00000087,
733 VK_FORMAT_ASTC_8x8_UNORM = 0x00000088,
734 VK_FORMAT_ASTC_8x8_SRGB = 0x00000089,
735 VK_FORMAT_ASTC_10x5_UNORM = 0x0000008A,
736 VK_FORMAT_ASTC_10x5_SRGB = 0x0000008B,
737 VK_FORMAT_ASTC_10x6_UNORM = 0x0000008C,
738 VK_FORMAT_ASTC_10x6_SRGB = 0x0000008D,
739 VK_FORMAT_ASTC_10x8_UNORM = 0x0000008E,
740 VK_FORMAT_ASTC_10x8_SRGB = 0x0000008F,
741 VK_FORMAT_ASTC_10x10_UNORM = 0x00000090,
742 VK_FORMAT_ASTC_10x10_SRGB = 0x00000091,
743 VK_FORMAT_ASTC_12x10_UNORM = 0x00000092,
744 VK_FORMAT_ASTC_12x10_SRGB = 0x00000093,
745 VK_FORMAT_ASTC_12x12_UNORM = 0x00000094,
746 VK_FORMAT_ASTC_12x12_SRGB = 0x00000095,
747 VK_FORMAT_B4G4R4A4_UNORM = 0x00000096,
748 VK_FORMAT_B5G5R5A1_UNORM = 0x00000097,
749 VK_FORMAT_B5G6R5_UNORM = 0x00000098,
750 VK_FORMAT_B5G6R5_USCALED = 0x00000099,
751 VK_FORMAT_B8G8R8_UNORM = 0x0000009A,
752 VK_FORMAT_B8G8R8_SNORM = 0x0000009B,
753 VK_FORMAT_B8G8R8_USCALED = 0x0000009C,
754 VK_FORMAT_B8G8R8_SSCALED = 0x0000009D,
755 VK_FORMAT_B8G8R8_UINT = 0x0000009E,
756 VK_FORMAT_B8G8R8_SINT = 0x0000009F,
757 VK_FORMAT_B8G8R8_SRGB = 0x000000A0,
758 VK_FORMAT_B8G8R8A8_UNORM = 0x000000A1,
759 VK_FORMAT_B8G8R8A8_SNORM = 0x000000A2,
760 VK_FORMAT_B8G8R8A8_USCALED = 0x000000A3,
761 VK_FORMAT_B8G8R8A8_SSCALED = 0x000000A4,
762 VK_FORMAT_B8G8R8A8_UINT = 0x000000A5,
763 VK_FORMAT_B8G8R8A8_SINT = 0x000000A6,
764 VK_FORMAT_B8G8R8A8_SRGB = 0x000000A7,
765 VK_FORMAT_B10G10R10A2_UNORM = 0x000000A8,
766 VK_FORMAT_B10G10R10A2_SNORM = 0x000000A9,
767 VK_FORMAT_B10G10R10A2_USCALED = 0x000000AA,
768 VK_FORMAT_B10G10R10A2_SSCALED = 0x000000AB,
769 VK_FORMAT_B10G10R10A2_UINT = 0x000000AC,
770 VK_FORMAT_B10G10R10A2_SINT = 0x000000AD,
771
772 VK_ENUM_RANGE(FORMAT, UNDEFINED, B10G10R10A2_SINT)
773 } VkFormat;
774
775 // Shader stage enumerant
776 typedef enum VkShaderStage_
777 {
778 VK_SHADER_STAGE_VERTEX = 0,
779 VK_SHADER_STAGE_TESS_CONTROL = 1,
780 VK_SHADER_STAGE_TESS_EVALUATION = 2,
781 VK_SHADER_STAGE_GEOMETRY = 3,
782 VK_SHADER_STAGE_FRAGMENT = 4,
783 VK_SHADER_STAGE_COMPUTE = 5,
784
785 VK_ENUM_RANGE(SHADER_STAGE, VERTEX, COMPUTE)
786 } VkShaderStage;
787
788 // Structure type enumerant
789 typedef enum VkStructureType_
790 {
791 VK_STRUCTURE_TYPE_APPLICATION_INFO = 0,
792 VK_STRUCTURE_TYPE_DEVICE_CREATE_INFO = 1,
793 VK_STRUCTURE_TYPE_MEMORY_ALLOC_INFO = 2,
794 VK_STRUCTURE_TYPE_MEMORY_OPEN_INFO = 3,
795 VK_STRUCTURE_TYPE_PEER_MEMORY_OPEN_INFO = 4,
796 VK_STRUCTURE_TYPE_BUFFER_VIEW_ATTACH_INFO = 5,
797 VK_STRUCTURE_TYPE_IMAGE_VIEW_ATTACH_INFO = 6,
798 VK_STRUCTURE_TYPE_IMAGE_VIEW_CREATE_INFO = 7,
799 VK_STRUCTURE_TYPE_COLOR_ATTACHMENT_VIEW_CREATE_INFO = 8,
800 VK_STRUCTURE_TYPE_DEPTH_STENCIL_VIEW_CREATE_INFO = 9,
801 VK_STRUCTURE_TYPE_SHADER_CREATE_INFO = 10,
802 VK_STRUCTURE_TYPE_COMPUTE_PIPELINE_CREATE_INFO = 11,
803 VK_STRUCTURE_TYPE_SAMPLER_CREATE_INFO = 12,
804 VK_STRUCTURE_TYPE_DESCRIPTOR_SET_LAYOUT_CREATE_INFO = 13,
805 VK_STRUCTURE_TYPE_DYNAMIC_VP_STATE_CREATE_INFO = 14,
806 VK_STRUCTURE_TYPE_DYNAMIC_RS_STATE_CREATE_INFO = 15,
807 VK_STRUCTURE_TYPE_DYNAMIC_CB_STATE_CREATE_INFO = 16,
808 VK_STRUCTURE_TYPE_DYNAMIC_DS_STATE_CREATE_INFO = 17,
809 VK_STRUCTURE_TYPE_CMD_BUFFER_CREATE_INFO = 18,
810 VK_STRUCTURE_TYPE_EVENT_CREATE_INFO = 19,
811 VK_STRUCTURE_TYPE_FENCE_CREATE_INFO = 20,
812 VK_STRUCTURE_TYPE_SEMAPHORE_CREATE_INFO = 21,
813 VK_STRUCTURE_TYPE_SEMAPHORE_OPEN_INFO = 22,
814 VK_STRUCTURE_TYPE_QUERY_POOL_CREATE_INFO = 23,
815 VK_STRUCTURE_TYPE_PIPELINE_SHADER_STAGE_CREATE_INFO = 24,
816 VK_STRUCTURE_TYPE_GRAPHICS_PIPELINE_CREATE_INFO = 25,
817 VK_STRUCTURE_TYPE_PIPELINE_VERTEX_INPUT_CREATE_INFO = 26,
818 VK_STRUCTURE_TYPE_PIPELINE_IA_STATE_CREATE_INFO = 27,
819 VK_STRUCTURE_TYPE_PIPELINE_TESS_STATE_CREATE_INFO = 28,
820 VK_STRUCTURE_TYPE_PIPELINE_VP_STATE_CREATE_INFO = 29,
821 VK_STRUCTURE_TYPE_PIPELINE_RS_STATE_CREATE_INFO = 30,
822 VK_STRUCTURE_TYPE_PIPELINE_MS_STATE_CREATE_INFO = 31,
823 VK_STRUCTURE_TYPE_PIPELINE_CB_STATE_CREATE_INFO = 32,
824 VK_STRUCTURE_TYPE_PIPELINE_DS_STATE_CREATE_INFO = 33,
825 VK_STRUCTURE_TYPE_IMAGE_CREATE_INFO = 34,
826 VK_STRUCTURE_TYPE_BUFFER_CREATE_INFO = 35,
827 VK_STRUCTURE_TYPE_BUFFER_VIEW_CREATE_INFO = 36,
828 VK_STRUCTURE_TYPE_FRAMEBUFFER_CREATE_INFO = 37,
829 VK_STRUCTURE_TYPE_CMD_BUFFER_BEGIN_INFO = 38,
830 VK_STRUCTURE_TYPE_CMD_BUFFER_GRAPHICS_BEGIN_INFO = 39,
831 VK_STRUCTURE_TYPE_RENDER_PASS_CREATE_INFO = 40,
832 VK_STRUCTURE_TYPE_LAYER_CREATE_INFO = 41,
833 VK_STRUCTURE_TYPE_MEMORY_BARRIER = 42,
834 VK_STRUCTURE_TYPE_BUFFER_MEMORY_BARRIER = 43,
835 VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER = 44,
836 VK_STRUCTURE_TYPE_DESCRIPTOR_POOL_CREATE_INFO = 45,
837 VK_STRUCTURE_TYPE_UPDATE_SAMPLERS = 46,
838 VK_STRUCTURE_TYPE_UPDATE_SAMPLER_TEXTURES = 47,
839 VK_STRUCTURE_TYPE_UPDATE_IMAGES = 48,
840 VK_STRUCTURE_TYPE_UPDATE_BUFFERS = 49,
841 VK_STRUCTURE_TYPE_UPDATE_AS_COPY = 50,
842 VK_STRUCTURE_TYPE_INSTANCE_CREATE_INFO = 51,
843 VK_STRUCTURE_TYPE_PIPELINE_LAYOUT_CREATE_INFO = 52,
844
845 VK_ENUM_RANGE(STRUCTURE_TYPE, APPLICATION_INFO, PIPELINE_LAYOUT_CREATE_INFO)
846 } VkStructureType;
847
848 // Object type enumerant
849 typedef enum VkObjectType_
850 {
851 VK_OBJECT_TYPE_INSTANCE = 0,
852 VK_OBJECT_TYPE_PHYSICAL_DEVICE = 1,
853 VK_OBJECT_TYPE_DEVICE = 2,
854 VK_OBJECT_TYPE_QUEUE = 3,
855 VK_OBJECT_TYPE_COMMAND_BUFFER = 4,
856 VK_OBJECT_TYPE_DEVICE_MEMORY = 5,
857 VK_OBJECT_TYPE_BUFFER = 6,
858 VK_OBJECT_TYPE_BUFFER_VIEW = 7,
859 VK_OBJECT_TYPE_IMAGE = 8,
860 VK_OBJECT_TYPE_IMAGE_VIEW = 9,
861 VK_OBJECT_TYPE_COLOR_ATTACHMENT_VIEW = 10,
862 VK_OBJECT_TYPE_DEPTH_STENCIL_VIEW = 11,
863 VK_OBJECT_TYPE_SHADER = 12,
864 VK_OBJECT_TYPE_PIPELINE = 13,
865 VK_OBJECT_TYPE_PIPELINE_LAYOUT = 14,
866 VK_OBJECT_TYPE_SAMPLER = 15,
867 VK_OBJECT_TYPE_DESCRIPTOR_SET = 16,
868 VK_OBJECT_TYPE_DESCRIPTOR_SET_LAYOUT = 17,
869 VK_OBJECT_TYPE_DESCRIPTOR_POOL = 18,
870 VK_OBJECT_TYPE_DYNAMIC_VP_STATE = 19,
871 VK_OBJECT_TYPE_DYNAMIC_RS_STATE = 20,
872 VK_OBJECT_TYPE_DYNAMIC_CB_STATE = 21,
873 VK_OBJECT_TYPE_DYNAMIC_DS_STATE = 22,
874 VK_OBJECT_TYPE_FENCE = 23,
875 VK_OBJECT_TYPE_SEMAPHORE = 24,
876 VK_OBJECT_TYPE_EVENT = 25,
877 VK_OBJECT_TYPE_QUERY_POOL = 26,
878 VK_OBJECT_TYPE_FRAMEBUFFER = 27,
879 VK_OBJECT_TYPE_RENDER_PASS = 28,
880
881 // Valid ranges for core Vulkan:
882 VK_OBJECT_TYPE_BEGIN_RANGE = VK_OBJECT_TYPE_INSTANCE,
883 VK_OBJECT_TYPE_END_RANGE = VK_OBJECT_TYPE_RENDER_PASS,
884 VK_NUM_OBJECT_TYPE = (VK_OBJECT_TYPE_END_RANGE - VK_OBJECT_TYPE_BEGIN_RANGE + 1),
885 VK_MAX_ENUM(VkObjectType)
886 } VkObjectType;
887
888 // ------------------------------------------------------------------------------------------------
889 // Error and return codes
890
891 typedef enum VkResult_
892 {
893 // Return codes for successful operation execution (> = 0)
894 VK_SUCCESS = 0x0000000,
895 VK_UNSUPPORTED = 0x0000001,
896 VK_NOT_READY = 0x0000002,
897 VK_TIMEOUT = 0x0000003,
898 VK_EVENT_SET = 0x0000004,
899 VK_EVENT_RESET = 0x0000005,
900
901 // Error codes (negative values)
902 VK_ERROR_UNKNOWN = -(0x00000001),
903 VK_ERROR_UNAVAILABLE = -(0x00000002),
904 VK_ERROR_INITIALIZATION_FAILED = -(0x00000003),
905 VK_ERROR_OUT_OF_HOST_MEMORY = -(0x00000004),
906 VK_ERROR_OUT_OF_DEVICE_MEMORY = -(0x00000005),
907 VK_ERROR_DEVICE_ALREADY_CREATED = -(0x00000006),
908 VK_ERROR_DEVICE_LOST = -(0x00000007),
909 VK_ERROR_INVALID_POINTER = -(0x00000008),
910 VK_ERROR_INVALID_VALUE = -(0x00000009),
911 VK_ERROR_INVALID_HANDLE = -(0x0000000A),
912 VK_ERROR_INVALID_ORDINAL = -(0x0000000B),
913 VK_ERROR_INVALID_MEMORY_SIZE = -(0x0000000C),
914 VK_ERROR_INVALID_EXTENSION = -(0x0000000D),
915 VK_ERROR_INVALID_FLAGS = -(0x0000000E),
916 VK_ERROR_INVALID_ALIGNMENT = -(0x0000000F),
917 VK_ERROR_INVALID_FORMAT = -(0x00000010),
918 VK_ERROR_INVALID_IMAGE = -(0x00000011),
919 VK_ERROR_INVALID_DESCRIPTOR_SET_DATA = -(0x00000012),
920 VK_ERROR_INVALID_QUEUE_TYPE = -(0x00000013),
921 VK_ERROR_INVALID_OBJECT_TYPE = -(0x00000014),
922 VK_ERROR_UNSUPPORTED_SHADER_IL_VERSION = -(0x00000015),
923 VK_ERROR_BAD_SHADER_CODE = -(0x00000016),
924 VK_ERROR_BAD_PIPELINE_DATA = -(0x00000017),
925 VK_ERROR_TOO_MANY_MEMORY_REFERENCES = -(0x00000018),
926 VK_ERROR_NOT_MAPPABLE = -(0x00000019),
927 VK_ERROR_MEMORY_MAP_FAILED = -(0x0000001A),
928 VK_ERROR_MEMORY_UNMAP_FAILED = -(0x0000001B),
929 VK_ERROR_INCOMPATIBLE_DEVICE = -(0x0000001C),
930 VK_ERROR_INCOMPATIBLE_DRIVER = -(0x0000001D),
931 VK_ERROR_INCOMPLETE_COMMAND_BUFFER = -(0x0000001E),
932 VK_ERROR_BUILDING_COMMAND_BUFFER = -(0x0000001F),
933 VK_ERROR_MEMORY_NOT_BOUND = -(0x00000020),
934 VK_ERROR_INCOMPATIBLE_QUEUE = -(0x00000021),
935 VK_ERROR_NOT_SHAREABLE = -(0x00000022),
936
937 VK_MAX_ENUM(RESULT)
938 } VkResult;
939
940 // ------------------------------------------------------------------------------------------------
941 // Flags
942
943 // Device creation flags
944 typedef VkFlags VkDeviceCreateFlags;
945 typedef enum VkDeviceCreateFlagBits_
946 {
947 VK_DEVICE_CREATE_VALIDATION_BIT = VK_BIT(0),
948 VK_DEVICE_CREATE_MULTI_DEVICE_IQ_MATCH_BIT = VK_BIT(1),
949 } VkDeviceCreateFlagBits;
950
951 // Queue capabilities
952 typedef VkFlags VkQueueFlags;
953 typedef enum VkQueueFlagBits_
954 {
955 VK_QUEUE_GRAPHICS_BIT = VK_BIT(0), // Queue supports graphics operations
956 VK_QUEUE_COMPUTE_BIT = VK_BIT(1), // Queue supports compute operations
957 VK_QUEUE_DMA_BIT = VK_BIT(2), // Queue supports DMA operations
958 VK_QUEUE_MEMMGR_BIT = VK_BIT(3), // Queue supports memory management operations
959 VK_QUEUE_EXTENDED_BIT = VK_BIT(30), // Extended queue
960 } VkQueueFlagBits;
961
962 // Memory properties passed into vkAllocMemory().
963 typedef VkFlags VkMemoryPropertyFlags;
964 typedef enum VkMemoryPropertyFlagBits_
965 {
966 VK_MEMORY_PROPERTY_DEVICE_ONLY = 0, // If otherwise stated, then allocate memory on device
967 VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT = VK_BIT(0), // Memory should be mappable by host
968 VK_MEMORY_PROPERTY_HOST_DEVICE_COHERENT_BIT = VK_BIT(1), // Memory should be coherent between host and device accesses
969 VK_MEMORY_PROPERTY_HOST_UNCACHED_BIT = VK_BIT(2), // Memory should not be cached by the host
970 VK_MEMORY_PROPERTY_HOST_WRITE_COMBINED_BIT = VK_BIT(3), // Memory should support host write combining
971 VK_MEMORY_PROPERTY_PREFER_HOST_LOCAL = VK_BIT(4), // If set, prefer host access
972 VK_MEMORY_PROPERTY_SHAREABLE_BIT = VK_BIT(5),
973 } VkMemoryPropertyFlagBits;
974
975 // Memory output flags passed to resource transition commands
976 typedef VkFlags VkMemoryOutputFlags;
977 typedef enum VkMemoryOutputFlagBits_
978 {
979 VK_MEMORY_OUTPUT_CPU_WRITE_BIT = VK_BIT(0), // Controls output coherency of CPU writes
980 VK_MEMORY_OUTPUT_SHADER_WRITE_BIT = VK_BIT(1), // Controls output coherency of generic shader writes
981 VK_MEMORY_OUTPUT_COLOR_ATTACHMENT_BIT = VK_BIT(2), // Controls output coherency of color attachment writes
982 VK_MEMORY_OUTPUT_DEPTH_STENCIL_ATTACHMENT_BIT = VK_BIT(3), // Controls output coherency of depth/stencil attachment writes
983 VK_MEMORY_OUTPUT_TRANSFER_BIT = VK_BIT(4), // Controls output coherency of transfer operations
984 } VkMemoryOutputFlagBits;
985
986 // Memory input flags passed to resource transition commands
987 typedef VkFlags VkMemoryInputFlags;
988 typedef enum VkMemoryInputFlagBits_
989 {
990 VK_MEMORY_INPUT_CPU_READ_BIT = VK_BIT(0), // Controls input coherency of CPU reads
991 VK_MEMORY_INPUT_INDIRECT_COMMAND_BIT = VK_BIT(1), // Controls input coherency of indirect command reads
992 VK_MEMORY_INPUT_INDEX_FETCH_BIT = VK_BIT(2), // Controls input coherency of index fetches
993 VK_MEMORY_INPUT_VERTEX_ATTRIBUTE_FETCH_BIT = VK_BIT(3), // Controls input coherency of vertex attribute fetches
994 VK_MEMORY_INPUT_UNIFORM_READ_BIT = VK_BIT(4), // Controls input coherency of uniform buffer reads
995 VK_MEMORY_INPUT_SHADER_READ_BIT = VK_BIT(5), // Controls input coherency of generic shader reads
996 VK_MEMORY_INPUT_COLOR_ATTACHMENT_BIT = VK_BIT(6), // Controls input coherency of color attachment reads
997 VK_MEMORY_INPUT_DEPTH_STENCIL_ATTACHMENT_BIT = VK_BIT(7), // Controls input coherency of depth/stencil attachment reads
998 VK_MEMORY_INPUT_TRANSFER_BIT = VK_BIT(8), // Controls input coherency of transfer operations
999 } VkMemoryInputFlagBits;
1000
1001 // Buffer usage flags
1002 typedef VkFlags VkBufferUsageFlags;
1003 typedef enum VkBufferUsageFlagBits_
1004 {
1005 VK_BUFFER_USAGE_GENERAL = 0, // No special usage
1006 VK_BUFFER_USAGE_TRANSFER_SOURCE_BIT = VK_BIT(0), // Can be used as a source of transfer operations
1007 VK_BUFFER_USAGE_TRANSFER_DESTINATION_BIT = VK_BIT(1), // Can be used as a destination of transfer operations
1008 VK_BUFFER_USAGE_UNIFORM_TEXEL_BUFFER_BIT = VK_BIT(2), // Can be used as TBO
1009 VK_BUFFER_USAGE_STORAGE_TEXEL_BUFFER_BIT = VK_BIT(3), // Can be used as IBO
1010 VK_BUFFER_USAGE_UNIFORM_BUFFER_BIT = VK_BIT(4), // Can be used as UBO
1011 VK_BUFFER_USAGE_STORAGE_BUFFER_BIT = VK_BIT(5), // Can be used as SSBO
1012 VK_BUFFER_USAGE_INDEX_BUFFER_BIT = VK_BIT(6), // Can be used as source of fixed function index fetch (index buffer)
1013 VK_BUFFER_USAGE_VERTEX_BUFFER_BIT = VK_BIT(7), // Can be used as source of fixed function vertex fetch (VBO)
1014 VK_BUFFER_USAGE_INDIRECT_BUFFER_BIT = VK_BIT(8), // Can be the source of indirect parameters (e.g. indirect buffer, parameter buffer)
1015 } VkBufferUsageFlagBits;
1016
1017 // Buffer creation flags
1018 typedef VkFlags VkBufferCreateFlags;
1019 typedef enum VkBufferCreateFlagBits_
1020 {
1021 VK_BUFFER_CREATE_SHAREABLE_BIT = VK_BIT(0), // Buffer should be shareable
1022 VK_BUFFER_CREATE_SPARSE_BIT = VK_BIT(1), // Buffer should support sparse backing
1023 } VkBufferCreateFlagBits;
1024
1025 // Shader stage flags
1026 typedef VkFlags VkShaderStageFlags;
1027 typedef enum VkShaderStageFlagBits_
1028 {
1029 VK_SHADER_STAGE_VERTEX_BIT = VK_BIT(0),
1030 VK_SHADER_STAGE_TESS_CONTROL_BIT = VK_BIT(1),
1031 VK_SHADER_STAGE_TESS_EVALUATION_BIT = VK_BIT(2),
1032 VK_SHADER_STAGE_GEOMETRY_BIT = VK_BIT(3),
1033 VK_SHADER_STAGE_FRAGMENT_BIT = VK_BIT(4),
1034 VK_SHADER_STAGE_COMPUTE_BIT = VK_BIT(5),
1035
1036 VK_SHADER_STAGE_ALL = 0x7FFFFFFF,
1037 } VkShaderStageFlagBits;
1038
1039 // Image usage flags
1040 typedef VkFlags VkImageUsageFlags;
1041 typedef enum VkImageUsageFlagBits_
1042 {
1043 VK_IMAGE_USAGE_GENERAL = 0, // No special usage
1044 VK_IMAGE_USAGE_TRANSFER_SOURCE_BIT = VK_BIT(0), // Can be used as a source of transfer operations
1045 VK_IMAGE_USAGE_TRANSFER_DESTINATION_BIT = VK_BIT(1), // Can be used as a destination of transfer operations
1046 VK_IMAGE_USAGE_SAMPLED_BIT = VK_BIT(2), // Can be sampled from (SAMPLED_IMAGE and COMBINED_IMAGE_SAMPLER descriptor types)
1047 VK_IMAGE_USAGE_STORAGE_BIT = VK_BIT(3), // Can be used as storage image (STORAGE_IMAGE descriptor type)
1048 VK_IMAGE_USAGE_COLOR_ATTACHMENT_BIT = VK_BIT(4), // Can be used as framebuffer color attachment
1049 VK_IMAGE_USAGE_DEPTH_STENCIL_BIT = VK_BIT(5), // Can be used as framebuffer depth/stencil attachment
1050 VK_IMAGE_USAGE_TRANSIENT_ATTACHMENT_BIT = VK_BIT(6), // Image data not needed outside of rendering
1051 } VkImageUsageFlagBits;
1052
1053 // Image creation flags
1054 typedef VkFlags VkImageCreateFlags;
1055 typedef enum VkImageCreateFlagBits_
1056 {
1057 VK_IMAGE_CREATE_INVARIANT_DATA_BIT = VK_BIT(0),
1058 VK_IMAGE_CREATE_CLONEABLE_BIT = VK_BIT(1),
1059 VK_IMAGE_CREATE_SHAREABLE_BIT = VK_BIT(2), // Image should be shareable
1060 VK_IMAGE_CREATE_SPARSE_BIT = VK_BIT(3), // Image should support sparse backing
1061 VK_IMAGE_CREATE_MUTABLE_FORMAT_BIT = VK_BIT(4), // Allows image views to have different format than the base image
1062 VK_IMAGE_CREATE_CUBE_COMPATIBLE_BIT = VK_BIT(5), // Allows creating image views with cube type from the created image
1063 } VkImageCreateFlagBits;
1064
1065 // Depth-stencil view creation flags
1066 typedef VkFlags VkDepthStencilViewCreateFlags;
1067 typedef enum VkDepthStencilViewCreateFlagBits_
1068 {
1069 VK_DEPTH_STENCIL_VIEW_CREATE_READ_ONLY_DEPTH_BIT = VK_BIT(0),
1070 VK_DEPTH_STENCIL_VIEW_CREATE_READ_ONLY_STENCIL_BIT = VK_BIT(1),
1071 } VkDepthStencilViewCreateFlagBits;
1072
1073 // Pipeline creation flags
1074 typedef VkFlags VkPipelineCreateFlags;
1075 typedef enum VkPipelineCreateFlagBits_
1076 {
1077 VK_PIPELINE_CREATE_DISABLE_OPTIMIZATION_BIT = VK_BIT(0),
1078 VK_PIPELINE_CREATE_ALLOW_DERIVATIVES_BIT = VK_BIT(1),
1079 } VkPipelineCreateFlagBits;
1080
1081 // Channel flags
1082 typedef VkFlags VkChannelFlags;
1083 typedef enum VkChannelFlagBits_
1084 {
1085 VK_CHANNEL_R_BIT = VK_BIT(0),
1086 VK_CHANNEL_G_BIT = VK_BIT(1),
1087 VK_CHANNEL_B_BIT = VK_BIT(2),
1088 VK_CHANNEL_A_BIT = VK_BIT(3),
1089 } VkChannelFlagBits;
1090
1091 // Fence creation flags
1092 typedef VkFlags VkFenceCreateFlags;
1093 typedef enum VkFenceCreateFlagBits_
1094 {
1095 VK_FENCE_CREATE_SIGNALED_BIT = VK_BIT(0),
1096 } VkFenceCreateFlagBits;
1097
1098 // Semaphore creation flags
1099 typedef VkFlags VkSemaphoreCreateFlags;
1100 typedef enum VkSemaphoreCreateFlagBits_
1101 {
1102 VK_SEMAPHORE_CREATE_SHAREABLE_BIT = VK_BIT(0),
1103 } VkSemaphoreCreateFlagBits;
1104
1105 // Format capability flags
1106 typedef VkFlags VkFormatFeatureFlags;
1107 typedef enum VkFormatFeatureFlagBits_
1108 {
1109 VK_FORMAT_FEATURE_SAMPLED_IMAGE_BIT = VK_BIT(0), // Format can be used for sampled images (SAMPLED_IMAGE and COMBINED_IMAGE_SAMPLER descriptor types)
1110 VK_FORMAT_FEATURE_STORAGE_IMAGE_BIT = VK_BIT(1), // Format can be used for storage images (STORAGE_IMAGE descriptor type)
1111 VK_FORMAT_FEATURE_STORAGE_IMAGE_ATOMIC_BIT = VK_BIT(2), // Format supports atomic operations in case it's used for storage images
1112 VK_FORMAT_FEATURE_UNIFORM_TEXEL_BUFFER_BIT = VK_BIT(3), // Format can be used for uniform texel buffers (TBOs)
1113 VK_FORMAT_FEATURE_STORAGE_TEXEL_BUFFER_BIT = VK_BIT(4), // Format can be used for storage texel buffers (IBOs)
1114 VK_FORMAT_FEATURE_STORAGE_TEXEL_BUFFER_ATOMIC_BIT = VK_BIT(5), // Format supports atomic operations in case it's used for storage texel buffers
1115 VK_FORMAT_FEATURE_VERTEX_BUFFER_BIT = VK_BIT(6), // Format can be used for vertex buffers (VBOs)
1116 VK_FORMAT_FEATURE_COLOR_ATTACHMENT_BIT = VK_BIT(7), // Format can be used for color attachment images
1117 VK_FORMAT_FEATURE_COLOR_ATTACHMENT_BLEND_BIT = VK_BIT(8), // Format supports blending in case it's used for color attachment images
1118 VK_FORMAT_FEATURE_DEPTH_STENCIL_ATTACHMENT_BIT = VK_BIT(9), // Format can be used for depth/stencil attachment images
1119 VK_FORMAT_FEATURE_CONVERSION_BIT = VK_BIT(10), // Format can be used as the source or destination of format converting blits
1120 } VkFormatFeatureFlagBits;
1121
1122 // Query control flags
1123 typedef VkFlags VkQueryControlFlags;
1124 typedef enum VkQueryControlFlagBits_
1125 {
1126 VK_QUERY_CONTROL_CONSERVATIVE_BIT = VK_BIT(0), // Allow conservative results to be collected by the query
1127 } VkQueryControlFlagBits;
1128
1129 // Query result flags
1130 typedef VkFlags VkQueryResultFlags;
1131 typedef enum VkQueryResultFlagBits_
1132 {
1133 VK_QUERY_RESULT_32_BIT = 0, // Results of the queries are written to the destination buffer as 32-bit values
1134 VK_QUERY_RESULT_64_BIT = VK_BIT(0), // Results of the queries are written to the destination buffer as 64-bit values
1135 VK_QUERY_RESULT_NO_WAIT_BIT = 0, // Results of the queries aren't waited on before proceeding with the result copy
1136 VK_QUERY_RESULT_WAIT_BIT = VK_BIT(1), // Results of the queries are waited on before proceeding with the result copy
1137 VK_QUERY_RESULT_WITH_AVAILABILITY_BIT = VK_BIT(2), // Besides the results of the query, the availability of the results is also written
1138 VK_QUERY_RESULT_PARTIAL_BIT = VK_BIT(3), // Copy the partial results of the query even if the final results aren't available
1139 } VkQueryResultFlagBits;
1140
1141 // Physical device compatibility flags
1142 typedef VkFlags VkPhysicalDeviceCompatibilityFlags;
1143 typedef enum VkPhysicalDeviceCompatibilityFlagBits_
1144 {
1145 VK_PHYSICAL_DEVICE_COMPATIBILITY_FEATURES_BIT = VK_BIT(0),
1146 VK_PHYSICAL_DEVICE_COMPATIBILITY_IQ_MATCH_BIT = VK_BIT(1),
1147 VK_PHYSICAL_DEVICE_COMPATIBILITY_PEER_TRANSFER_BIT = VK_BIT(2),
1148 VK_PHYSICAL_DEVICE_COMPATIBILITY_SHARED_MEMORY_BIT = VK_BIT(3),
1149 VK_PHYSICAL_DEVICE_COMPATIBILITY_SHARED_SYNC_BIT = VK_BIT(4),
1150 VK_PHYSICAL_DEVICE_COMPATIBILITY_SHARED_DEVICE0_DISPLAY_BIT = VK_BIT(5),
1151 VK_PHYSICAL_DEVICE_COMPATIBILITY_SHARED_DEVICE1_DISPLAY_BIT = VK_BIT(6),
1152 } VkPhysicalDeviceCompatibilityFlagBits;
1153
1154 // Shader creation flags
1155 typedef VkFlags VkShaderCreateFlags;
1156
1157 // Event creation flags
1158 typedef VkFlags VkEventCreateFlags;
1159
1160 // Command buffer creation flags
1161 typedef VkFlags VkCmdBufferCreateFlags;
1162
1163 // Command buffer optimization flags
1164 typedef VkFlags VkCmdBufferOptimizeFlags;
1165 typedef enum VkCmdBufferOptimizeFlagBits_
1166 {
1167 VK_CMD_BUFFER_OPTIMIZE_SMALL_BATCH_BIT = VK_BIT(0),
1168 VK_CMD_BUFFER_OPTIMIZE_PIPELINE_SWITCH_BIT = VK_BIT(1),
1169 VK_CMD_BUFFER_OPTIMIZE_ONE_TIME_SUBMIT_BIT = VK_BIT(2),
1170 VK_CMD_BUFFER_OPTIMIZE_DESCRIPTOR_SET_SWITCH_BIT = VK_BIT(3),
1171 } VkCmdBufferOptimizeFlagBits;
1172
1173 // Pipeline statistics flags
1174 typedef VkFlags VkQueryPipelineStatisticFlags;
1175 typedef enum VkQueryPipelineStatisticFlagBits_ {
1176 VK_QUERY_PIPELINE_STATISTIC_IA_VERTICES_BIT = VK_BIT(0), // Optional
1177 VK_QUERY_PIPELINE_STATISTIC_IA_PRIMITIVES_BIT = VK_BIT(1), // Optional
1178 VK_QUERY_PIPELINE_STATISTIC_VS_INVOCATIONS_BIT = VK_BIT(2), // Optional
1179 VK_QUERY_PIPELINE_STATISTIC_GS_INVOCATIONS_BIT = VK_BIT(3), // Optional
1180 VK_QUERY_PIPELINE_STATISTIC_GS_PRIMITIVES_BIT = VK_BIT(4), // Optional
1181 VK_QUERY_PIPELINE_STATISTIC_C_INVOCATIONS_BIT = VK_BIT(5), // Optional
1182 VK_QUERY_PIPELINE_STATISTIC_C_PRIMITIVES_BIT = VK_BIT(6), // Optional
1183 VK_QUERY_PIPELINE_STATISTIC_FS_INVOCATIONS_BIT = VK_BIT(7), // Optional
1184 VK_QUERY_PIPELINE_STATISTIC_TCS_PATCHES_BIT = VK_BIT(8), // Optional
1185 VK_QUERY_PIPELINE_STATISTIC_TES_INVOCATIONS_BIT = VK_BIT(9), // Optional
1186 VK_QUERY_PIPELINE_STATISTIC_CS_INVOCATIONS_BIT = VK_BIT(10), // Optional
1187 } VkQueryPipelineStatisticFlagBits;
1188
1189 // Memory mapping flags
1190 typedef VkFlags VkMemoryMapFlags;
1191
1192 // ------------------------------------------------------------------------------------------------
1193 // Vulkan structures
1194
1195 typedef struct VkOffset2D_
1196 {
1197 int32_t x;
1198 int32_t y;
1199 } VkOffset2D;
1200
1201 typedef struct VkOffset3D_
1202 {
1203 int32_t x;
1204 int32_t y;
1205 int32_t z;
1206 } VkOffset3D;
1207
1208 typedef struct VkExtent2D_
1209 {
1210 int32_t width;
1211 int32_t height;
1212 } VkExtent2D;
1213
1214 typedef struct VkExtent3D_
1215 {
1216 int32_t width;
1217 int32_t height;
1218 int32_t depth;
1219 } VkExtent3D;
1220
1221 typedef struct VkViewport_
1222 {
1223 float originX;
1224 float originY;
1225 float width;
1226 float height;
1227 float minDepth;
1228 float maxDepth;
1229 } VkViewport;
1230
1231 typedef struct VkRect_
1232 {
1233 VkOffset2D offset;
1234 VkExtent2D extent;
1235 } VkRect;
1236
1237 typedef struct VkChannelMapping_
1238 {
1239 VkChannelSwizzle r;
1240 VkChannelSwizzle g;
1241 VkChannelSwizzle b;
1242 VkChannelSwizzle a;
1243 } VkChannelMapping;
1244
1245 typedef struct VkPhysicalDeviceProperties_
1246 {
1247 uint32_t apiVersion;
1248 uint32_t driverVersion;
1249 uint32_t vendorId;
1250 uint32_t deviceId;
1251 VkPhysicalDeviceType deviceType;
1252 char deviceName[VK_MAX_PHYSICAL_DEVICE_NAME];
1253 VkDeviceSize maxInlineMemoryUpdateSize;
1254 uint32_t maxBoundDescriptorSets;
1255 uint32_t maxThreadGroupSize;
1256 uint64_t timestampFrequency;
1257 bool32_t multiColorAttachmentClears;
1258 uint32_t maxDescriptorSets; // at least 2?
1259 uint32_t maxViewports; // at least 16?
1260 uint32_t maxColorAttachments; // at least 8?
1261 } VkPhysicalDeviceProperties;
1262
1263 typedef struct VkPhysicalDevicePerformance_
1264 {
1265 float maxDeviceClock;
1266 float aluPerClock;
1267 float texPerClock;
1268 float primsPerClock;
1269 float pixelsPerClock;
1270 } VkPhysicalDevicePerformance;
1271
1272 typedef struct VkPhysicalDeviceCompatibilityInfo_
1273 {
1274 VkPhysicalDeviceCompatibilityFlags compatibilityFlags;
1275 } VkPhysicalDeviceCompatibilityInfo;
1276
1277 typedef struct VkExtensionProperties_
1278 {
1279 char extName[VK_MAX_EXTENSION_NAME]; // extension name
1280 uint32_t version; // version of the extension specification
1281 } VkExtensionProperties;
1282
1283 typedef struct VkApplicationInfo_
1284 {
1285 VkStructureType sType; // Type of structure. Should be VK_STRUCTURE_TYPE_APPLICATION_INFO
1286 const void* pNext; // Next structure in chain
1287 const char* pAppName;
1288 uint32_t appVersion;
1289 const char* pEngineName;
1290 uint32_t engineVersion;
1291 uint32_t apiVersion;
1292 } VkApplicationInfo;
1293
1294 typedef void* (VKAPI *PFN_vkAllocFunction)(
1295 void* pUserData,
1296 size_t size,
1297 size_t alignment,
1298 VkSystemAllocType allocType);
1299
1300 typedef void (VKAPI *PFN_vkFreeFunction)(
1301 void* pUserData,
1302 void* pMem);
1303
1304 typedef struct VkAllocCallbacks_
1305 {
1306 void* pUserData;
1307 PFN_vkAllocFunction pfnAlloc;
1308 PFN_vkFreeFunction pfnFree;
1309 } VkAllocCallbacks;
1310
1311 typedef struct VkDeviceQueueCreateInfo_
1312 {
1313 uint32_t queueNodeIndex;
1314 uint32_t queueCount;
1315 } VkDeviceQueueCreateInfo;
1316
1317 typedef struct VkDeviceCreateInfo_
1318 {
1319 VkStructureType sType; // Should be VK_STRUCTURE_TYPE_DEVICE_CREATE_INFO
1320 const void* pNext; // Pointer to next structure
1321 uint32_t queueRecordCount;
1322 const VkDeviceQueueCreateInfo* pRequestedQueues;
1323 uint32_t extensionCount;
1324 const char*const* ppEnabledExtensionNames;
1325 VkDeviceCreateFlags flags; // Device creation flags
1326 } VkDeviceCreateInfo;
1327
1328 typedef struct VkInstanceCreateInfo_
1329 {
1330 VkStructureType sType; // Should be VK_STRUCTURE_TYPE_INSTANCE_CREATE_INFO
1331 const void* pNext; // Pointer to next structure
1332 const VkApplicationInfo* pAppInfo;
1333 const VkAllocCallbacks* pAllocCb;
1334 uint32_t extensionCount;
1335 const char*const* ppEnabledExtensionNames; // layer or extension name to be enabled
1336 } VkInstanceCreateInfo;
1337
1338 // can be added to VkDeviceCreateInfo via pNext
1339 typedef struct VkLayerCreateInfo_
1340 {
1341 VkStructureType sType; // Should be VK_STRUCTURE_TYPE_LAYER_CREATE_INFO
1342 const void* pNext; // Pointer to next structure
1343 uint32_t layerCount;
1344 const char *const* ppActiveLayerNames; // layer name from the layer's vkEnumerateLayers())
1345 } VkLayerCreateInfo;
1346
1347 typedef struct VkPhysicalDeviceQueueProperties_
1348 {
1349 VkQueueFlags queueFlags; // Queue flags
1350 uint32_t queueCount;
1351 bool32_t supportsTimestamps;
1352 uint32_t maxMemReferences; // Tells how many memory references can be active for the given queue
1353 } VkPhysicalDeviceQueueProperties;
1354
1355 typedef struct VkPhysicalDeviceMemoryProperties_
1356 {
1357 bool32_t supportsMigration;
1358 bool32_t supportsPinning;
1359 } VkPhysicalDeviceMemoryProperties;
1360
1361 typedef struct VkMemoryAllocInfo_
1362 {
1363 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_MEMORY_ALLOC_INFO
1364 const void* pNext; // Pointer to next structure
1365 VkDeviceSize allocationSize; // Size of memory allocation
1366 VkMemoryPropertyFlags memProps; // Memory property flags
1367 VkMemoryPriority memPriority;
1368 } VkMemoryAllocInfo;
1369
1370 typedef struct VkMemoryOpenInfo_
1371 {
1372 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_MEMORY_OPEN_INFO
1373 const void* pNext; // Pointer to next structure
1374 VkDeviceMemory sharedMem;
1375 } VkMemoryOpenInfo;
1376
1377 typedef struct VkPeerMemoryOpenInfo_
1378 {
1379 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_PEER_MEMORY_OPEN_INFO
1380 const void* pNext; // Pointer to next structure
1381 VkDeviceMemory originalMem;
1382 } VkPeerMemoryOpenInfo;
1383
1384 typedef struct VkMemoryRequirements_
1385 {
1386 VkDeviceSize size; // Specified in bytes
1387 VkDeviceSize alignment; // Specified in bytes
1388 VkDeviceSize granularity; // Granularity on which vkQueueBindObjectMemoryRange can bind sub-ranges of memory specified in bytes (usually the page size)
1389 VkMemoryPropertyFlags memPropsAllowed; // Allowed memory property flags
1390 VkMemoryPropertyFlags memPropsRequired; // Required memory property flags
1391
1392 } VkMemoryRequirements;
1393
1394 typedef struct VkFormatProperties_
1395 {
1396 VkFormatFeatureFlags linearTilingFeatures; // Format features in case of linear tiling
1397 VkFormatFeatureFlags optimalTilingFeatures; // Format features in case of optimal tiling
1398 } VkFormatProperties;
1399
1400 typedef struct VkBufferViewAttachInfo_
1401 {
1402 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_BUFFER_VIEW_ATTACH_INFO
1403 const void* pNext; // Pointer to next structure
1404 VkBufferView view;
1405 } VkBufferViewAttachInfo;
1406
1407 typedef struct VkImageViewAttachInfo_
1408 {
1409 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_IMAGE_VIEW_ATTACH_INFO
1410 const void* pNext; // Pointer to next structure
1411 VkImageView view;
1412 VkImageLayout layout;
1413 } VkImageViewAttachInfo;
1414
1415 typedef struct VkUpdateSamplers_
1416 {
1417 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_UPDATE_SAMPLERS
1418 const void* pNext; // Pointer to next structure
1419 uint32_t binding; // Binding of the sampler (array)
1420 uint32_t arrayIndex; // First element of the array to update or zero otherwise
1421 uint32_t count; // Number of elements to update
1422 const VkSampler* pSamplers;
1423 } VkUpdateSamplers;
1424
1425 typedef struct VkSamplerImageViewInfo_
1426 {
1427 VkSampler sampler;
1428 const VkImageViewAttachInfo* pImageView;
1429 } VkSamplerImageViewInfo;
1430
1431 typedef struct VkUpdateSamplerTextures_
1432 {
1433 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_UPDATE_SAMPLER_TEXTURES
1434 const void* pNext; // Pointer to next structure
1435 uint32_t binding; // Binding of the combined texture sampler (array)
1436 uint32_t arrayIndex; // First element of the array to update or zero otherwise
1437 uint32_t count; // Number of elements to update
1438 const VkSamplerImageViewInfo* pSamplerImageViews;
1439 } VkUpdateSamplerTextures;
1440
1441 typedef struct VkUpdateImages_
1442 {
1443 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_UPDATE_IMAGES
1444 const void* pNext; // Pointer to next structure
1445 VkDescriptorType descriptorType;
1446 uint32_t binding; // Binding of the image (array)
1447 uint32_t arrayIndex; // First element of the array to update or zero otherwise
1448 uint32_t count; // Number of elements to update
1449 const VkImageViewAttachInfo* pImageViews;
1450 } VkUpdateImages;
1451
1452 typedef struct VkUpdateBuffers_
1453 {
1454 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_UPDATE_BUFFERS
1455 const void* pNext; // Pointer to next structure
1456 VkDescriptorType descriptorType;
1457 uint32_t binding; // Binding of the buffer (array)
1458 uint32_t arrayIndex; // First element of the array to update or zero otherwise
1459 uint32_t count; // Number of elements to update
1460 const VkBufferViewAttachInfo* pBufferViews;
1461 } VkUpdateBuffers;
1462
1463 typedef struct VkUpdateAsCopy_
1464 {
1465 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_UPDATE_AS_COPY
1466 const void* pNext; // Pointer to next structure
1467 VkDescriptorType descriptorType;
1468 VkDescriptorSet descriptorSet;
1469 uint32_t binding;
1470 uint32_t arrayElement;
1471 uint32_t count;
1472 } VkUpdateAsCopy;
1473
1474 typedef struct VkBufferCreateInfo_
1475 {
1476 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_BUFFER_CREATE_INFO
1477 const void* pNext; // Pointer to next structure.
1478 VkDeviceSize size; // Specified in bytes
1479 VkBufferUsageFlags usage; // Buffer usage flags
1480 VkBufferCreateFlags flags; // Buffer creation flags
1481 } VkBufferCreateInfo;
1482
1483 typedef struct VkBufferViewCreateInfo_
1484 {
1485 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_BUFFER_VIEW_CREATE_INFO
1486 const void* pNext; // Pointer to next structure.
1487 VkBuffer buffer;
1488 VkBufferViewType viewType;
1489 VkFormat format; // Optionally specifies format of elements
1490 VkDeviceSize offset; // Specified in bytes
1491 VkDeviceSize range; // View size specified in bytes
1492 } VkBufferViewCreateInfo;
1493
1494 typedef struct VkImageSubresource_
1495 {
1496 VkImageAspect aspect;
1497 uint32_t mipLevel;
1498 uint32_t arraySlice;
1499 } VkImageSubresource;
1500
1501 typedef struct VkImageSubresourceRange_
1502 {
1503 VkImageAspect aspect;
1504 uint32_t baseMipLevel;
1505 uint32_t mipLevels;
1506 uint32_t baseArraySlice;
1507 uint32_t arraySize;
1508 } VkImageSubresourceRange;
1509
1510 typedef struct VkMemoryBarrier_
1511 {
1512 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_MEMORY_BARRIER
1513 const void* pNext; // Pointer to next structure.
1514
1515 VkMemoryOutputFlags outputMask; // Outputs the barrier should sync
1516 VkMemoryInputFlags inputMask; // Inputs the barrier should sync to
1517 } VkMemoryBarrier;
1518
1519 typedef struct VkBufferMemoryBarrier_
1520 {
1521 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_BUFFER_MEMORY_BARRIER
1522 const void* pNext; // Pointer to next structure.
1523
1524 VkMemoryOutputFlags outputMask; // Outputs the barrier should sync
1525 VkMemoryInputFlags inputMask; // Inputs the barrier should sync to
1526
1527 VkBuffer buffer; // Buffer to sync
1528
1529 VkDeviceSize offset; // Offset within the buffer to sync
1530 VkDeviceSize size; // Amount of bytes to sync
1531 } VkBufferMemoryBarrier;
1532
1533 typedef struct VkImageMemoryBarrier_
1534 {
1535 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER
1536 const void* pNext; // Pointer to next structure.
1537
1538 VkMemoryOutputFlags outputMask; // Outputs the barrier should sync
1539 VkMemoryInputFlags inputMask; // Inputs the barrier should sync to
1540
1541 VkImageLayout oldLayout; // Current layout of the image
1542 VkImageLayout newLayout; // New layout to transition the image to
1543
1544 VkImage image; // Image to sync
1545
1546 VkImageSubresourceRange subresourceRange; // Subresource range to sync
1547 } VkImageMemoryBarrier;
1548
1549 typedef struct VkImageCreateInfo_
1550 {
1551 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_IMAGE_CREATE_INFO
1552 const void* pNext; // Pointer to next structure.
1553 VkImageType imageType;
1554 VkFormat format;
1555 VkExtent3D extent;
1556 uint32_t mipLevels;
1557 uint32_t arraySize;
1558 uint32_t samples;
1559 VkImageTiling tiling;
1560 VkImageUsageFlags usage; // Image usage flags
1561 VkImageCreateFlags flags; // Image creation flags
1562 } VkImageCreateInfo;
1563
1564 typedef struct VkPeerImageOpenInfo_
1565 {
1566 VkImage originalImage;
1567 } VkPeerImageOpenInfo;
1568
1569 typedef struct VkSubresourceLayout_
1570 {
1571 VkDeviceSize offset; // Specified in bytes
1572 VkDeviceSize size; // Specified in bytes
1573 VkDeviceSize rowPitch; // Specified in bytes
1574 VkDeviceSize depthPitch; // Specified in bytes
1575 } VkSubresourceLayout;
1576
1577 typedef struct VkImageViewCreateInfo_
1578 {
1579 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_IMAGE_VIEW_CREATE_INFO
1580 const void* pNext; // Pointer to next structure
1581 VkImage image;
1582 VkImageViewType viewType;
1583 VkFormat format;
1584 VkChannelMapping channels;
1585 VkImageSubresourceRange subresourceRange;
1586 float minLod;
1587 } VkImageViewCreateInfo;
1588
1589 typedef struct VkColorAttachmentViewCreateInfo_
1590 {
1591 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_COLOR_ATTACHMENT_VIEW_CREATE_INFO
1592 const void* pNext; // Pointer to next structure
1593 VkImage image;
1594 VkFormat format;
1595 uint32_t mipLevel;
1596 uint32_t baseArraySlice;
1597 uint32_t arraySize;
1598 VkImage msaaResolveImage;
1599 VkImageSubresourceRange msaaResolveSubResource;
1600 } VkColorAttachmentViewCreateInfo;
1601
1602 typedef struct VkDepthStencilViewCreateInfo_
1603 {
1604 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_DEPTH_STENCIL_VIEW_CREATE_INFO
1605 const void* pNext; // Pointer to next structure
1606 VkImage image;
1607 uint32_t mipLevel;
1608 uint32_t baseArraySlice;
1609 uint32_t arraySize;
1610 VkImage msaaResolveImage;
1611 VkImageSubresourceRange msaaResolveSubResource;
1612 VkDepthStencilViewCreateFlags flags; // Depth stencil attachment view flags
1613 } VkDepthStencilViewCreateInfo;
1614
1615 typedef struct VkColorAttachmentBindInfo_
1616 {
1617 VkColorAttachmentView view;
1618 VkImageLayout layout;
1619 } VkColorAttachmentBindInfo;
1620
1621 typedef struct VkDepthStencilBindInfo_
1622 {
1623 VkDepthStencilView view;
1624 VkImageLayout layout;
1625 } VkDepthStencilBindInfo;
1626
1627 typedef struct VkBufferCopy_
1628 {
1629 VkDeviceSize srcOffset; // Specified in bytes
1630 VkDeviceSize destOffset; // Specified in bytes
1631 VkDeviceSize copySize; // Specified in bytes
1632 } VkBufferCopy;
1633
1634 typedef struct VkImageMemoryBindInfo_
1635 {
1636 VkImageSubresource subresource;
1637 VkOffset3D offset;
1638 VkExtent3D extent;
1639 } VkImageMemoryBindInfo;
1640
1641 typedef struct VkImageCopy_
1642 {
1643 VkImageSubresource srcSubresource;
1644 VkOffset3D srcOffset; // Specified in pixels for both compressed and uncompressed images
1645 VkImageSubresource destSubresource;
1646 VkOffset3D destOffset; // Specified in pixels for both compressed and uncompressed images
1647 VkExtent3D extent; // Specified in pixels for both compressed and uncompressed images
1648 } VkImageCopy;
1649
1650 typedef struct VkImageBlit_
1651 {
1652 VkImageSubresource srcSubresource;
1653 VkOffset3D srcOffset; // Specified in pixels for both compressed and uncompressed images
1654 VkExtent3D srcExtent; // Specified in pixels for both compressed and uncompressed images
1655 VkImageSubresource destSubresource;
1656 VkOffset3D destOffset; // Specified in pixels for both compressed and uncompressed images
1657 VkExtent3D destExtent; // Specified in pixels for both compressed and uncompressed images
1658 } VkImageBlit;
1659
1660 typedef struct VkBufferImageCopy_
1661 {
1662 VkDeviceSize bufferOffset; // Specified in bytes
1663 VkImageSubresource imageSubresource;
1664 VkOffset3D imageOffset; // Specified in pixels for both compressed and uncompressed images
1665 VkExtent3D imageExtent; // Specified in pixels for both compressed and uncompressed images
1666 } VkBufferImageCopy;
1667
1668 typedef struct VkImageResolve_
1669 {
1670 VkImageSubresource srcSubresource;
1671 VkOffset3D srcOffset;
1672 VkImageSubresource destSubresource;
1673 VkOffset3D destOffset;
1674 VkExtent3D extent;
1675 } VkImageResolve;
1676
1677 typedef struct VkShaderCreateInfo_
1678 {
1679 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_SHADER_CREATE_INFO
1680 const void* pNext; // Pointer to next structure
1681 size_t codeSize; // Specified in bytes
1682 const void* pCode;
1683 VkShaderCreateFlags flags; // Reserved
1684 } VkShaderCreateInfo;
1685
1686 typedef struct VkDescriptorSetLayoutBinding_
1687 {
1688 VkDescriptorType descriptorType; // Type of the descriptors in this binding
1689 uint32_t count; // Number of descriptors in this binding
1690 VkShaderStageFlags stageFlags; // Shader stages this binding is visible to
1691 const VkSampler* pImmutableSamplers; // Immutable samplers (used if descriptor type is SAMPLER or COMBINED_IMAGE_SAMPLER, is either NULL or contains <count> number of elements)
1692 } VkDescriptorSetLayoutBinding;
1693
1694 typedef struct VkDescriptorSetLayoutCreateInfo_
1695 {
1696 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_DESCRIPTOR_SET_LAYOUT_CREATE_INFO
1697 const void* pNext; // Pointer to next structure
1698 uint32_t count; // Number of bindings in the descriptor set layout
1699 const VkDescriptorSetLayoutBinding* pBinding; // Array of descriptor set layout bindings
1700 } VkDescriptorSetLayoutCreateInfo;
1701
1702 typedef struct VkDescriptorTypeCount_
1703 {
1704 VkDescriptorType type;
1705 uint32_t count;
1706 } VkDescriptorTypeCount;
1707
1708 typedef struct VkDescriptorPoolCreateInfo_
1709 {
1710 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_DESCRIPTOR_POOL_CREATE_INFO
1711 const void* pNext; // Pointer to next structure
1712 uint32_t count;
1713 const VkDescriptorTypeCount* pTypeCount;
1714 } VkDescriptorPoolCreateInfo;
1715
1716 typedef struct VkLinkConstBuffer_
1717 {
1718 uint32_t bufferId;
1719 size_t bufferSize;
1720 const void* pBufferData;
1721 } VkLinkConstBuffer;
1722
1723 typedef struct VkSpecializationMapEntry_
1724 {
1725 uint32_t constantId; // The SpecConstant ID specified in the BIL
1726 uint32_t offset; // Offset of the value in the data block
1727 } VkSpecializationMapEntry;
1728
1729 typedef struct VkSpecializationInfo_
1730 {
1731 uint32_t mapEntryCount;
1732 const VkSpecializationMapEntry* pMap; // mapEntryCount entries
1733 const void* pData;
1734 } VkSpecializationInfo;
1735
1736 typedef struct VkPipelineShader_
1737 {
1738 VkShaderStage stage;
1739 VkShader shader;
1740 uint32_t linkConstBufferCount;
1741 const VkLinkConstBuffer* pLinkConstBufferInfo;
1742 const VkSpecializationInfo* pSpecializationInfo;
1743 } VkPipelineShader;
1744
1745 typedef struct VkComputePipelineCreateInfo_
1746 {
1747 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_COMPUTE_PIPELINE_CREATE_INFO
1748 const void* pNext; // Pointer to next structure
1749 VkPipelineShader cs;
1750 VkPipelineCreateFlags flags; // Pipeline creation flags
1751 VkPipelineLayout layout; // Interface layout of the pipeline
1752 } VkComputePipelineCreateInfo;
1753
1754 typedef struct VkVertexInputBindingDescription_
1755 {
1756 uint32_t binding; // Vertex buffer binding id
1757 uint32_t strideInBytes; // Distance between vertices in bytes (0 = no advancement)
1758
1759 VkVertexInputStepRate stepRate; // Rate at which binding is incremented
1760 } VkVertexInputBindingDescription;
1761
1762 typedef struct VkVertexInputAttributeDescription_
1763 {
1764 uint32_t location; // location of the shader vertex attrib
1765 uint32_t binding; // Vertex buffer binding id
1766
1767 VkFormat format; // format of source data
1768
1769 uint32_t offsetInBytes; // Offset of first element in bytes from base of vertex
1770 } VkVertexInputAttributeDescription;
1771
1772 typedef struct VkPipelineVertexInputCreateInfo_
1773 {
1774 VkStructureType sType; // Should be VK_STRUCTURE_TYPE_PIPELINE_VERTEX_INPUT_CREATE_INFO
1775 const void* pNext; // Pointer to next structure
1776
1777 uint32_t bindingCount; // number of bindings
1778 const VkVertexInputBindingDescription* pVertexBindingDescriptions;
1779
1780 uint32_t attributeCount; // number of attributes
1781 const VkVertexInputAttributeDescription* pVertexAttributeDescriptions;
1782 } VkPipelineVertexInputCreateInfo;
1783
1784 typedef struct VkPipelineIaStateCreateInfo_
1785 {
1786 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_PIPELINE_IA_STATE_CREATE_INFO
1787 const void* pNext; // Pointer to next structure
1788 VkPrimitiveTopology topology;
1789 bool32_t disableVertexReuse; // optional
1790 bool32_t primitiveRestartEnable;
1791 uint32_t primitiveRestartIndex; // optional (GL45)
1792 } VkPipelineIaStateCreateInfo;
1793
1794 typedef struct VkPipelineTessStateCreateInfo_
1795 {
1796 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_PIPELINE_TESS_STATE_CREATE_INFO
1797 const void* pNext; // Pointer to next structure
1798 uint32_t patchControlPoints;
1799 } VkPipelineTessStateCreateInfo;
1800
1801 typedef struct VkPipelineVpStateCreateInfo_
1802 {
1803 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_PIPELINE_VP_STATE_CREATE_INFO
1804 const void* pNext; // Pointer to next structure
1805 uint32_t viewportCount;
1806 VkCoordinateOrigin clipOrigin; // optional (GL45)
1807 VkDepthMode depthMode; // optional (GL45)
1808 } VkPipelineVpStateCreateInfo;
1809
1810 typedef struct VkPipelineRsStateCreateInfo_
1811 {
1812 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_PIPELINE_RS_STATE_CREATE_INFO
1813 const void* pNext; // Pointer to next structure
1814 bool32_t depthClipEnable;
1815 bool32_t rasterizerDiscardEnable;
1816 bool32_t programPointSize; // optional (GL45)
1817 VkCoordinateOrigin pointOrigin; // optional (GL45)
1818 VkProvokingVertex provokingVertex; // optional (GL45)
1819 VkFillMode fillMode; // optional (GL45)
1820 VkCullMode cullMode;
1821 VkFrontFace frontFace;
1822 } VkPipelineRsStateCreateInfo;
1823
1824 typedef struct VkPipelineMsStateCreateInfo_
1825 {
1826 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_PIPELINE_MS_STATE_CREATE_INFO
1827 const void* pNext; // Pointer to next structure
1828 uint32_t samples;
1829 bool32_t multisampleEnable; // optional (GL45)
1830 bool32_t sampleShadingEnable; // optional (GL45)
1831 float minSampleShading; // optional (GL45)
1832 VkSampleMask sampleMask;
1833 } VkPipelineMsStateCreateInfo;
1834
1835 typedef struct VkPipelineCbAttachmentState_
1836 {
1837 bool32_t blendEnable;
1838 VkFormat format;
1839 VkBlend srcBlendColor;
1840 VkBlend destBlendColor;
1841 VkBlendOp blendOpColor;
1842 VkBlend srcBlendAlpha;
1843 VkBlend destBlendAlpha;
1844 VkBlendOp blendOpAlpha;
1845 VkChannelFlags channelWriteMask;
1846 } VkPipelineCbAttachmentState;
1847
1848 typedef struct VkPipelineCbStateCreateInfo_
1849 {
1850 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_PIPELINE_CB_STATE_CREATE_INFO
1851 const void* pNext; // Pointer to next structure
1852 bool32_t alphaToCoverageEnable;
1853 bool32_t logicOpEnable;
1854 VkLogicOp logicOp;
1855 uint32_t attachmentCount; // # of pAttachments
1856 const VkPipelineCbAttachmentState* pAttachments;
1857 } VkPipelineCbStateCreateInfo;
1858
1859 typedef struct VkStencilOpState_
1860 {
1861 VkStencilOp stencilFailOp;
1862 VkStencilOp stencilPassOp;
1863 VkStencilOp stencilDepthFailOp;
1864 VkCompareOp stencilCompareOp;
1865 } VkStencilOpState;
1866
1867 typedef struct VkPipelineDsStateCreateInfo_
1868 {
1869 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_PIPELINE_DS_STATE_CREATE_INFO
1870 const void* pNext; // Pointer to next structure
1871 VkFormat format;
1872 bool32_t depthTestEnable;
1873 bool32_t depthWriteEnable;
1874 VkCompareOp depthCompareOp;
1875 bool32_t depthBoundsEnable; // optional (depth_bounds_test)
1876 bool32_t stencilTestEnable;
1877 VkStencilOpState front;
1878 VkStencilOpState back;
1879 } VkPipelineDsStateCreateInfo;
1880
1881 typedef struct VkPipelineShaderStageCreateInfo_
1882 {
1883 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_PIPELINE_SHADER_STAGE_CREATE_INFO
1884 const void* pNext; // Pointer to next structure
1885 VkPipelineShader shader;
1886 } VkPipelineShaderStageCreateInfo;
1887
1888 typedef struct VkGraphicsPipelineCreateInfo_
1889 {
1890 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_GRAPHICS_PIPELINE_CREATE_INFO
1891 const void* pNext; // Pointer to next structure
1892 VkPipelineCreateFlags flags; // Pipeline creation flags
1893 VkPipelineLayout layout; // Interface layout of the pipeline
1894 } VkGraphicsPipelineCreateInfo;
1895
1896 typedef struct VkPipelineLayoutCreateInfo_
1897 {
1898 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_PIPELINE_LAYOUT_CREATE_INFO
1899 const void* pNext; // Pointer to next structure
1900
1901 uint32_t descriptorSetCount; // Number of descriptor sets interfaced by the pipeline
1902 const VkDescriptorSetLayout* pSetLayouts; // Array of <setCount> number of descriptor set layout objects defining the layout of the
1903 } VkPipelineLayoutCreateInfo;
1904
1905 typedef struct VkSamplerCreateInfo_
1906 {
1907 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_SAMPLER_CREATE_INFO
1908 const void* pNext; // Pointer to next structure
1909 VkTexFilter magFilter; // Filter mode for magnification
1910 VkTexFilter minFilter; // Filter mode for minifiation
1911 VkTexMipmapMode mipMode; // Mipmap selection mode
1912 VkTexAddress addressU;
1913 VkTexAddress addressV;
1914 VkTexAddress addressW;
1915 float mipLodBias;
1916 uint32_t maxAnisotropy;
1917 VkCompareOp compareOp;
1918 float minLod;
1919 float maxLod;
1920 VkBorderColor borderColor;
1921 } VkSamplerCreateInfo;
1922
1923 typedef struct VkDynamicVpStateCreateInfo_
1924 {
1925 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_DYNAMIC_VP_STATE_CREATE_INFO
1926 const void* pNext; // Pointer to next structure
1927 uint32_t viewportAndScissorCount; // number of entries in pViewports and pScissors
1928 const VkViewport* pViewports;
1929 const VkRect* pScissors;
1930 } VkDynamicVpStateCreateInfo;
1931
1932 typedef struct VkDynamicRsStateCreateInfo_
1933 {
1934 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_DYNAMIC_RS_STATE_CREATE_INFO
1935 const void* pNext; // Pointer to next structure
1936 float depthBias;
1937 float depthBiasClamp;
1938 float slopeScaledDepthBias;
1939 float pointSize; // optional (GL45) - Size of points
1940 float pointFadeThreshold; // optional (GL45) - Size of point fade threshold
1941 float lineWidth; // optional (GL45) - Width of lines
1942 } VkDynamicRsStateCreateInfo;
1943
1944 typedef struct VkDynamicCbStateCreateInfo_
1945 {
1946 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_DYNAMIC_CB_STATE_CREATE_INFO
1947 const void* pNext; // Pointer to next structure
1948 float blendConst[4];
1949 } VkDynamicCbStateCreateInfo;
1950
1951 typedef struct VkDynamicDsStateCreateInfo_
1952 {
1953 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_DYNAMIC_DS_STATE_CREATE_INFO
1954 const void* pNext; // Pointer to next structure
1955 float minDepth; // optional (depth_bounds_test)
1956 float maxDepth; // optional (depth_bounds_test)
1957 uint32_t stencilReadMask;
1958 uint32_t stencilWriteMask;
1959 uint32_t stencilFrontRef;
1960 uint32_t stencilBackRef;
1961 } VkDynamicDsStateCreateInfo;
1962
1963 typedef struct VkCmdBufferCreateInfo_
1964 {
1965 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_CMD_BUFFER_CREATE_INFO
1966 const void* pNext; // Pointer to next structure
1967 uint32_t queueNodeIndex;
1968 VkCmdBufferCreateFlags flags; // Command buffer creation flags
1969 } VkCmdBufferCreateInfo;
1970
1971 typedef struct VkCmdBufferBeginInfo_
1972 {
1973 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_CMD_BUFFER_BEGIN_INFO
1974 const void* pNext; // Pointer to next structure
1975
1976 VkCmdBufferOptimizeFlags flags; // Command buffer optimization flags
1977 } VkCmdBufferBeginInfo;
1978
1979 typedef struct VkRenderPassBegin_
1980 {
1981 VkRenderPass renderPass;
1982 VkFramebuffer framebuffer;
1983 } VkRenderPassBegin;
1984
1985 typedef struct VkCmdBufferGraphicsBeginInfo_
1986 {
1987 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_CMD_BUFFER_GRAPHICS_BEGIN_INFO
1988 const void* pNext; // Pointer to next structure
1989
1990 VkRenderPassBegin renderPassContinue; // Only needed when a render pass is split across two command buffers
1991 } VkCmdBufferGraphicsBeginInfo;
1992
1993 // Union allowing specification of floating point or raw color data. Actual value selected is based on image being cleared.
1994 typedef union VkClearColorValue_
1995 {
1996 float floatColor[4];
1997 uint32_t rawColor[4];
1998 } VkClearColorValue;
1999
2000 typedef struct VkClearColor_
2001 {
2002 VkClearColorValue color;
2003 bool32_t useRawValue;
2004 } VkClearColor;
2005
2006 typedef struct VkRenderPassCreateInfo_
2007 {
2008 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_RENDER_PASS_CREATE_INFO
2009 const void* pNext; // Pointer to next structure
2010
2011 VkRect renderArea;
2012 uint32_t colorAttachmentCount;
2013 VkExtent2D extent;
2014 uint32_t sampleCount;
2015 uint32_t layers;
2016 const VkFormat* pColorFormats;
2017 const VkImageLayout* pColorLayouts;
2018 const VkAttachmentLoadOp* pColorLoadOps;
2019 const VkAttachmentStoreOp* pColorStoreOps;
2020 const VkClearColor* pColorLoadClearValues;
2021 VkFormat depthStencilFormat;
2022 VkImageLayout depthStencilLayout;
2023 VkAttachmentLoadOp depthLoadOp;
2024 float depthLoadClearValue;
2025 VkAttachmentStoreOp depthStoreOp;
2026 VkAttachmentLoadOp stencilLoadOp;
2027 uint32_t stencilLoadClearValue;
2028 VkAttachmentStoreOp stencilStoreOp;
2029 } VkRenderPassCreateInfo;
2030
2031 typedef struct VkEventCreateInfo_
2032 {
2033 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_EVENT_CREATE_INFO
2034 const void* pNext; // Pointer to next structure
2035 VkEventCreateFlags flags; // Event creation flags
2036 } VkEventCreateInfo;
2037
2038 typedef struct VkFenceCreateInfo_
2039 {
2040 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_FENCE_CREATE_INFO
2041 const void* pNext; // Pointer to next structure
2042 VkFenceCreateFlags flags; // Fence creation flags
2043 } VkFenceCreateInfo;
2044
2045 typedef struct VkSemaphoreCreateInfo_
2046 {
2047 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_SEMAPHORE_CREATE_INFO
2048 const void* pNext; // Pointer to next structure
2049 uint32_t initialCount;
2050 VkSemaphoreCreateFlags flags; // Semaphore creation flags
2051 } VkSemaphoreCreateInfo;
2052
2053 typedef struct VkSemaphoreOpenInfo_
2054 {
2055 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_SEMAPHORE_OPEN_INFO
2056 const void* pNext; // Pointer to next structure
2057 VkSemaphore sharedSemaphore;
2058 } VkSemaphoreOpenInfo;
2059
2060 typedef struct VkQueryPoolCreateInfo_
2061 {
2062 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_QUERY_POOL_CREATE_INFO
2063 const void* pNext; // Pointer to next structure
2064 VkQueryType queryType;
2065 uint32_t slots;
2066 VkQueryPipelineStatisticFlags pipelineStatistics; // Optional
2067 } VkQueryPoolCreateInfo;
2068
2069 typedef struct VkFramebufferCreateInfo_
2070 {
2071 VkStructureType sType; // Must be VK_STRUCTURE_TYPE_FRAMEBUFFER_CREATE_INFO
2072 const void* pNext; // Pointer to next structure
2073
2074 uint32_t colorAttachmentCount;
2075 const VkColorAttachmentBindInfo* pColorAttachments;
2076 const VkDepthStencilBindInfo* pDepthStencilAttachment;
2077
2078 uint32_t sampleCount;
2079 uint32_t width;
2080 uint32_t height;
2081 uint32_t layers;
2082 } VkFramebufferCreateInfo;
2083
2084 typedef struct VkDrawIndirectCmd_
2085 {
2086 uint32_t vertexCount;
2087 uint32_t instanceCount;
2088 uint32_t firstVertex;
2089 uint32_t firstInstance;
2090 } VkDrawIndirectCmd;
2091
2092 typedef struct VkDrawIndexedIndirectCmd_
2093 {
2094 uint32_t indexCount;
2095 uint32_t instanceCount;
2096 uint32_t firstIndex;
2097 int32_t vertexOffset;
2098 uint32_t firstInstance;
2099 } VkDrawIndexedIndirectCmd;
2100
2101 typedef struct VkDispatchIndirectCmd_
2102 {
2103 uint32_t x;
2104 uint32_t y;
2105 uint32_t z;
2106 } VkDispatchIndirectCmd;
2107
2108 // ------------------------------------------------------------------------------------------------
2109 // API functions
2110 typedef VkResult (VKAPI *PFN_vkCreateInstance)(const VkInstanceCreateInfo* pCreateInfo, VkInstance* pInstance);
2111 typedef VkResult (VKAPI *PFN_vkDestroyInstance)(VkInstance instance);
2112 typedef VkResult (VKAPI *PFN_vkEnumeratePhysicalDevices)(VkInstance instance, uint32_t* pPhysicalDeviceCount, VkPhysicalDevice* pPhysicalDevices);
2113 typedef VkResult (VKAPI *PFN_vkGetPhysicalDeviceInfo)(VkPhysicalDevice physicalDevice, VkPhysicalDeviceInfoType infoType, size_t* pDataSize, void* pData);
2114 typedef void * (VKAPI *PFN_vkGetProcAddr)(VkPhysicalDevice physicalDevice, const char * pName);
2115 typedef VkResult (VKAPI *PFN_vkCreateDevice)(VkPhysicalDevice physicalDevice, const VkDeviceCreateInfo* pCreateInfo, VkDevice* pDevice);
2116 typedef VkResult (VKAPI *PFN_vkDestroyDevice)(VkDevice device);
2117 typedef VkResult (VKAPI *PFN_vkGetGlobalExtensionInfo)(VkExtensionInfoType infoType, uint32_t extensionIndex, size_t* pDataSize, void* pData);
2118 typedef VkResult (VKAPI *PFN_vkGetPhysicalDeviceExtensionInfo)(VkPhysicalDevice physicalDevice, VkExtensionInfoType infoType, uint32_t extensionIndex, size_t* pDataSize, void* pData);
2119 typedef VkResult (VKAPI *PFN_vkEnumerateLayers)(VkPhysicalDevice physicalDevice, size_t maxStringSize, size_t* pLayerCount, char* const* pOutLayers, void* pReserved);
2120 typedef VkResult (VKAPI *PFN_vkGetDeviceQueue)(VkDevice device, uint32_t queueNodeIndex, uint32_t queueIndex, VkQueue* pQueue);
2121 typedef VkResult (VKAPI *PFN_vkQueueSubmit)(VkQueue queue, uint32_t cmdBufferCount, const VkCmdBuffer* pCmdBuffers, VkFence fence);
2122 typedef VkResult (VKAPI *PFN_vkQueueAddMemReferences)(VkQueue queue, uint32_t count, const VkDeviceMemory* pMems);
2123 typedef VkResult (VKAPI *PFN_vkQueueRemoveMemReferences)(VkQueue queue, uint32_t count, const VkDeviceMemory* pMems);
2124 typedef VkResult (VKAPI *PFN_vkQueueWaitIdle)(VkQueue queue);
2125 typedef VkResult (VKAPI *PFN_vkDeviceWaitIdle)(VkDevice device);
2126 typedef VkResult (VKAPI *PFN_vkAllocMemory)(VkDevice device, const VkMemoryAllocInfo* pAllocInfo, VkDeviceMemory* pMem);
2127 typedef VkResult (VKAPI *PFN_vkFreeMemory)(VkDevice device, VkDeviceMemory mem);
2128 typedef VkResult (VKAPI *PFN_vkSetMemoryPriority)(VkDevice device, VkDeviceMemory mem, VkMemoryPriority priority);
2129 typedef VkResult (VKAPI *PFN_vkMapMemory)(VkDevice device, VkDeviceMemory mem, VkDeviceSize offset, VkDeviceSize size, VkMemoryMapFlags flags, void** ppData);
2130 typedef VkResult (VKAPI *PFN_vkUnmapMemory)(VkDevice device, VkDeviceMemory mem);
2131 typedef VkResult (VKAPI *PFN_vkFlushMappedMemory)(VkDevice device, VkDeviceMemory mem, VkDeviceSize offset, VkDeviceSize size);
2132 typedef VkResult (VKAPI *PFN_vkPinSystemMemory)(VkDevice device, const void* pSysMem, size_t memSize, VkDeviceMemory* pMem);
2133 typedef VkResult (VKAPI *PFN_vkGetMultiDeviceCompatibility)(VkPhysicalDevice physicalDevice0, VkPhysicalDevice physicalDevice1, VkPhysicalDeviceCompatibilityInfo* pInfo);
2134 typedef VkResult (VKAPI *PFN_vkOpenSharedMemory)(VkDevice device, const VkMemoryOpenInfo* pOpenInfo, VkDeviceMemory* pMem);
2135 typedef VkResult (VKAPI *PFN_vkOpenSharedSemaphore)(VkDevice device, const VkSemaphoreOpenInfo* pOpenInfo, VkSemaphore* pSemaphore);
2136 typedef VkResult (VKAPI *PFN_vkOpenPeerMemory)(VkDevice device, const VkPeerMemoryOpenInfo* pOpenInfo, VkDeviceMemory* pMem);
2137 typedef VkResult (VKAPI *PFN_vkOpenPeerImage)(VkDevice device, const VkPeerImageOpenInfo* pOpenInfo, VkImage* pImage, VkDeviceMemory* pMem);
2138 typedef VkResult (VKAPI *PFN_vkDestroyObject)(VkDevice device, VkObjectType objType, VkObject object);
2139 typedef VkResult (VKAPI *PFN_vkGetObjectInfo)(VkDevice device, VkObjectType objType, VkObject object, VkObjectInfoType infoType, size_t* pDataSize, void* pData);
2140 typedef VkResult (VKAPI *PFN_vkQueueBindObjectMemory)(VkQueue queue, VkObjectType objType, VkObject object, uint32_t allocationIdx, VkDeviceMemory mem, VkDeviceSize offset);
2141 typedef VkResult (VKAPI *PFN_vkQueueBindObjectMemoryRange)(VkQueue queue, VkObjectType objType, VkObject object, uint32_t allocationIdx, VkDeviceSize rangeOffset, VkDeviceSize rangeSize, VkDeviceMemory mem, VkDeviceSize memOffset);
2142 typedef VkResult (VKAPI *PFN_vkQueueBindImageMemoryRange)(VkQueue queue, VkImage image, uint32_t allocationIdx, const VkImageMemoryBindInfo* pBindInfo, VkDeviceMemory mem, VkDeviceSize memOffset);
2143 typedef VkResult (VKAPI *PFN_vkCreateFence)(VkDevice device, const VkFenceCreateInfo* pCreateInfo, VkFence* pFence);
2144 typedef VkResult (VKAPI *PFN_vkResetFences)(VkDevice device, uint32_t fenceCount, VkFence* pFences);
2145 typedef VkResult (VKAPI *PFN_vkGetFenceStatus)(VkDevice device, VkFence fence);
2146 typedef VkResult (VKAPI *PFN_vkWaitForFences)(VkDevice device, uint32_t fenceCount, const VkFence* pFences, bool32_t waitAll, uint64_t timeout);
2147 typedef VkResult (VKAPI *PFN_vkCreateSemaphore)(VkDevice device, const VkSemaphoreCreateInfo* pCreateInfo, VkSemaphore* pSemaphore);
2148 typedef VkResult (VKAPI *PFN_vkQueueSignalSemaphore)(VkQueue queue, VkSemaphore semaphore);
2149 typedef VkResult (VKAPI *PFN_vkQueueWaitSemaphore)(VkQueue queue, VkSemaphore semaphore);
2150 typedef VkResult (VKAPI *PFN_vkCreateEvent)(VkDevice device, const VkEventCreateInfo* pCreateInfo, VkEvent* pEvent);
2151 typedef VkResult (VKAPI *PFN_vkGetEventStatus)(VkDevice device, VkEvent event);
2152 typedef VkResult (VKAPI *PFN_vkSetEvent)(VkDevice device, VkEvent event);
2153 typedef VkResult (VKAPI *PFN_vkResetEvent)(VkDevice device, VkEvent event);
2154 typedef VkResult (VKAPI *PFN_vkCreateQueryPool)(VkDevice device, const VkQueryPoolCreateInfo* pCreateInfo, VkQueryPool* pQueryPool);
2155 typedef VkResult (VKAPI *PFN_vkGetQueryPoolResults)(VkDevice device, VkQueryPool queryPool, uint32_t startQuery, uint32_t queryCount, size_t* pDataSize, void* pData, VkQueryResultFlags flags);
2156 typedef VkResult (VKAPI *PFN_vkGetFormatInfo)(VkDevice device, VkFormat format, VkFormatInfoType infoType, size_t* pDataSize, void* pData);
2157 typedef VkResult (VKAPI *PFN_vkCreateBuffer)(VkDevice device, const VkBufferCreateInfo* pCreateInfo, VkBuffer* pBuffer);
2158 typedef VkResult (VKAPI *PFN_vkCreateBufferView)(VkDevice device, const VkBufferViewCreateInfo* pCreateInfo, VkBufferView* pView);
2159 typedef VkResult (VKAPI *PFN_vkCreateImage)(VkDevice device, const VkImageCreateInfo* pCreateInfo, VkImage* pImage);
2160 typedef VkResult (VKAPI *PFN_vkGetImageSubresourceInfo)(VkDevice device, VkImage image, const VkImageSubresource* pSubresource, VkSubresourceInfoType infoType, size_t* pDataSize, void* pData);
2161 typedef VkResult (VKAPI *PFN_vkCreateImageView)(VkDevice device, const VkImageViewCreateInfo* pCreateInfo, VkImageView* pView);
2162 typedef VkResult (VKAPI *PFN_vkCreateColorAttachmentView)(VkDevice device, const VkColorAttachmentViewCreateInfo* pCreateInfo, VkColorAttachmentView* pView);
2163 typedef VkResult (VKAPI *PFN_vkCreateDepthStencilView)(VkDevice device, const VkDepthStencilViewCreateInfo* pCreateInfo, VkDepthStencilView* pView);
2164 typedef VkResult (VKAPI *PFN_vkCreateShader)(VkDevice device, const VkShaderCreateInfo* pCreateInfo, VkShader* pShader);
2165 typedef VkResult (VKAPI *PFN_vkCreateGraphicsPipeline)(VkDevice device, const VkGraphicsPipelineCreateInfo* pCreateInfo, VkPipeline* pPipeline);
2166 typedef VkResult (VKAPI *PFN_vkCreateGraphicsPipelineDerivative)(VkDevice device, const VkGraphicsPipelineCreateInfo* pCreateInfo, VkPipeline basePipeline, VkPipeline* pPipeline);
2167 typedef VkResult (VKAPI *PFN_vkCreateComputePipeline)(VkDevice device, const VkComputePipelineCreateInfo* pCreateInfo, VkPipeline* pPipeline);
2168 typedef VkResult (VKAPI *PFN_vkStorePipeline)(VkDevice device, VkPipeline pipeline, size_t* pDataSize, void* pData);
2169 typedef VkResult (VKAPI *PFN_vkLoadPipeline)(VkDevice device, size_t dataSize, const void* pData, VkPipeline* pPipeline);
2170 typedef VkResult (VKAPI *PFN_vkLoadPipelineDerivative)(VkDevice device, size_t dataSize, const void* pData, VkPipeline basePipeline, VkPipeline* pPipeline);
2171 typedef VkResult (VKAPI *PFN_vkCreatePipelineLayout)(VkDevice device, const VkPipelineLayoutCreateInfo* pCreateInfo, VkPipelineLayout* pPipelineLayout);
2172 typedef VkResult (VKAPI *PFN_vkCreateSampler)(VkDevice device, const VkSamplerCreateInfo* pCreateInfo, VkSampler* pSampler);
2173 typedef VkResult (VKAPI *PFN_vkCreateDescriptorSetLayout)(VkDevice device, const VkDescriptorSetLayoutCreateInfo* pCreateInfo, VkDescriptorSetLayout* pSetLayout);
2174 typedef VkResult (VKAPI *PFN_vkBeginDescriptorPoolUpdate)(VkDevice device, VkDescriptorUpdateMode updateMode);
2175 typedef VkResult (VKAPI *PFN_vkEndDescriptorPoolUpdate)(VkDevice device, VkCmdBuffer cmd);
2176 typedef VkResult (VKAPI *PFN_vkCreateDescriptorPool)(VkDevice device, VkDescriptorPoolUsage poolUsage, uint32_t maxSets, const VkDescriptorPoolCreateInfo* pCreateInfo, VkDescriptorPool* pDescriptorPool);
2177 typedef VkResult (VKAPI *PFN_vkResetDescriptorPool)(VkDevice device, VkDescriptorPool descriptorPool);
2178 typedef VkResult (VKAPI *PFN_vkAllocDescriptorSets)(VkDevice device, VkDescriptorPool descriptorPool, VkDescriptorSetUsage setUsage, uint32_t count, const VkDescriptorSetLayout* pSetLayouts, VkDescriptorSet* pDescriptorSets, uint32_t* pCount);
2179 typedef void (VKAPI *PFN_vkClearDescriptorSets)(VkDevice device, VkDescriptorPool descriptorPool, uint32_t count, const VkDescriptorSet* pDescriptorSets);
2180 typedef void (VKAPI *PFN_vkUpdateDescriptors)(VkDevice device, VkDescriptorSet descriptorSet, uint32_t updateCount, const void** ppUpdateArray);
2181 typedef VkResult (VKAPI *PFN_vkCreateDynamicViewportState)(VkDevice device, const VkDynamicVpStateCreateInfo* pCreateInfo, VkDynamicVpState* pState);
2182 typedef VkResult (VKAPI *PFN_vkCreateDynamicRasterState)(VkDevice device, const VkDynamicRsStateCreateInfo* pCreateInfo, VkDynamicRsState* pState);
2183 typedef VkResult (VKAPI *PFN_vkCreateDynamicColorBlendState)(VkDevice device, const VkDynamicCbStateCreateInfo* pCreateInfo, VkDynamicCbState* pState);
2184 typedef VkResult (VKAPI *PFN_vkCreateDynamicDepthStencilState)(VkDevice device, const VkDynamicDsStateCreateInfo* pCreateInfo, VkDynamicDsState* pState);
2185 typedef VkResult (VKAPI *PFN_vkCreateCommandBuffer)(VkDevice device, const VkCmdBufferCreateInfo* pCreateInfo, VkCmdBuffer* pCmdBuffer);
2186 typedef VkResult (VKAPI *PFN_vkBeginCommandBuffer)(VkCmdBuffer cmdBuffer, const VkCmdBufferBeginInfo* pBeginInfo);
2187 typedef VkResult (VKAPI *PFN_vkEndCommandBuffer)(VkCmdBuffer cmdBuffer);
2188 typedef VkResult (VKAPI *PFN_vkResetCommandBuffer)(VkCmdBuffer cmdBuffer);
2189 typedef void (VKAPI *PFN_vkCmdBindPipeline)(VkCmdBuffer cmdBuffer, VkPipelineBindPoint pipelineBindPoint, VkPipeline pipeline);
2190 typedef void (VKAPI *PFN_vkCmdBindDynamicStateObject)(VkCmdBuffer cmdBuffer, VkStateBindPoint stateBindPoint, VkDynamicStateObject state);
2191 typedef void (VKAPI *PFN_vkCmdBindDescriptorSets)(VkCmdBuffer cmdBuffer, VkPipelineBindPoint pipelineBindPoint, uint32_t firstSet, uint32_t setCount, const VkDescriptorSet* pDescriptorSets, uint32_t dynamicOffsetCount, const uint32_t* pDynamicOffsets);
2192 typedef void (VKAPI *PFN_vkCmdBindIndexBuffer)(VkCmdBuffer cmdBuffer, VkBuffer buffer, VkDeviceSize offset, VkIndexType indexType);
2193 typedef void (VKAPI *PFN_vkCmdBindVertexBuffers)(VkCmdBuffer cmdBuffer, uint32_t startBinding, uint32_t bindingCount, const VkBuffer* pBuffers, const VkDeviceSize* pOffsets);
2194 typedef void (VKAPI *PFN_vkCmdDraw)(VkCmdBuffer cmdBuffer, uint32_t firstVertex, uint32_t vertexCount, uint32_t firstInstance, uint32_t instanceCount);
2195 typedef void (VKAPI *PFN_vkCmdDrawIndexed)(VkCmdBuffer cmdBuffer, uint32_t firstIndex, uint32_t indexCount, int32_t vertexOffset, uint32_t firstInstance, uint32_t instanceCount);
2196 typedef void (VKAPI *PFN_vkCmdDrawIndirect)(VkCmdBuffer cmdBuffer, VkBuffer buffer, VkDeviceSize offset, uint32_t count, uint32_t stride);
2197 typedef void (VKAPI *PFN_vkCmdDrawIndexedIndirect)(VkCmdBuffer cmdBuffer, VkBuffer buffer, VkDeviceSize offset, uint32_t count, uint32_t stride);
2198 typedef void (VKAPI *PFN_vkCmdDispatch)(VkCmdBuffer cmdBuffer, uint32_t x, uint32_t y, uint32_t z);
2199 typedef void (VKAPI *PFN_vkCmdDispatchIndirect)(VkCmdBuffer cmdBuffer, VkBuffer buffer, VkDeviceSize offset);
2200 typedef void (VKAPI *PFN_vkCmdCopyBuffer)(VkCmdBuffer cmdBuffer, VkBuffer srcBuffer, VkBuffer destBuffer, uint32_t regionCount, const VkBufferCopy* pRegions);
2201 typedef void (VKAPI *PFN_vkCmdCopyImage)(VkCmdBuffer cmdBuffer, VkImage srcImage, VkImageLayout srcImageLayout, VkImage destImage, VkImageLayout destImageLayout, uint32_t regionCount, const VkImageCopy* pRegions);
2202 typedef void (VKAPI *PFN_vkCmdBlitImage)(VkCmdBuffer cmdBuffer, VkImage srcImage, VkImageLayout srcImageLayout, VkImage destImage, VkImageLayout destImageLayout, uint32_t regionCount, const VkImageBlit* pRegions);
2203 typedef void (VKAPI *PFN_vkCmdCopyBufferToImage)(VkCmdBuffer cmdBuffer, VkBuffer srcBuffer, VkImage destImage, VkImageLayout destImageLayout, uint32_t regionCount, const VkBufferImageCopy* pRegions);
2204 typedef void (VKAPI *PFN_vkCmdCopyImageToBuffer)(VkCmdBuffer cmdBuffer, VkImage srcImage, VkImageLayout srcImageLayout, VkBuffer destBuffer, uint32_t regionCount, const VkBufferImageCopy* pRegions);
2205 typedef void (VKAPI *PFN_vkCmdCloneImageData)(VkCmdBuffer cmdBuffer, VkImage srcImage, VkImageLayout srcImageLayout, VkImage destImage, VkImageLayout destImageLayout);
2206 typedef void (VKAPI *PFN_vkCmdUpdateBuffer)(VkCmdBuffer cmdBuffer, VkBuffer destBuffer, VkDeviceSize destOffset, VkDeviceSize dataSize, const uint32_t* pData);
2207 typedef void (VKAPI *PFN_vkCmdFillBuffer)(VkCmdBuffer cmdBuffer, VkBuffer destBuffer, VkDeviceSize destOffset, VkDeviceSize fillSize, uint32_t data);
2208 typedef void (VKAPI *PFN_vkCmdClearColorImage)(VkCmdBuffer cmdBuffer, VkImage image, VkImageLayout imageLayout, VkClearColor color, uint32_t rangeCount, const VkImageSubresourceRange* pRanges);
2209 typedef void (VKAPI *PFN_vkCmdClearDepthStencil)(VkCmdBuffer cmdBuffer, VkImage image, VkImageLayout imageLayout, float depth, uint32_t stencil, uint32_t rangeCount, const VkImageSubresourceRange* pRanges);
2210 typedef void (VKAPI *PFN_vkCmdResolveImage)(VkCmdBuffer cmdBuffer, VkImage srcImage, VkImageLayout srcImageLayout, VkImage destImage, VkImageLayout destImageLayout, uint32_t regionCount, const VkImageResolve* pRegions);
2211 typedef void (VKAPI *PFN_vkCmdSetEvent)(VkCmdBuffer cmdBuffer, VkEvent event, VkPipeEvent pipeEvent);
2212 typedef void (VKAPI *PFN_vkCmdResetEvent)(VkCmdBuffer cmdBuffer, VkEvent event, VkPipeEvent pipeEvent);
2213 typedef void (VKAPI *PFN_vkCmdWaitEvents)(VkCmdBuffer cmdBuffer, VkWaitEvent waitEvent, uint32_t eventCount, const VkEvent* pEvents, uint32_t memBarrierCount, const void** ppMemBarriers);
2214 typedef void (VKAPI *PFN_vkCmdPipelineBarrier)(VkCmdBuffer cmdBuffer, VkWaitEvent waitEvent, uint32_t pipeEventCount, const VkPipeEvent* pPipeEvents, uint32_t memBarrierCount, const void** ppMemBarriers);
2215 typedef void (VKAPI *PFN_vkCmdBeginQuery)(VkCmdBuffer cmdBuffer, VkQueryPool queryPool, uint32_t slot, VkQueryControlFlags flags);
2216 typedef void (VKAPI *PFN_vkCmdEndQuery)(VkCmdBuffer cmdBuffer, VkQueryPool queryPool, uint32_t slot);
2217 typedef void (VKAPI *PFN_vkCmdResetQueryPool)(VkCmdBuffer cmdBuffer, VkQueryPool queryPool, uint32_t startQuery, uint32_t queryCount);
2218 typedef void (VKAPI *PFN_vkCmdWriteTimestamp)(VkCmdBuffer cmdBuffer, VkTimestampType timestampType, VkBuffer destBuffer, VkDeviceSize destOffset);
2219 typedef void (VKAPI *PFN_vkCmdCopyQueryPoolResults)(VkCmdBuffer cmdBuffer, VkQueryPool queryPool, uint32_t startQuery, uint32_t queryCount, VkBuffer destBuffer, VkDeviceSize destOffset, VkDeviceSize destStride, VkQueryResultFlags flags);
2220 typedef VkResult (VKAPI *PFN_vkCreateFramebuffer)(VkDevice device, const VkFramebufferCreateInfo* pCreateInfo, VkFramebuffer* pFramebuffer);
2221 typedef VkResult (VKAPI *PFN_vkCreateRenderPass)(VkDevice device, const VkRenderPassCreateInfo* pCreateInfo, VkRenderPass* pRenderPass);
2222 typedef void (VKAPI *PFN_vkCmdBeginRenderPass)(VkCmdBuffer cmdBuffer, const VkRenderPassBegin* pRenderPassBegin);
2223 typedef void (VKAPI *PFN_vkCmdEndRenderPass)(VkCmdBuffer cmdBuffer, VkRenderPass renderPass);
2224
2225 #ifdef VK_PROTOTYPES
2226 VkResult VKAPI vkCreateInstance(
2227 const VkInstanceCreateInfo* pCreateInfo,
2228 VkInstance* pInstance);
2229
2230 VkResult VKAPI vkDestroyInstance(
2231 VkInstance instance);
2232
2233 VkResult VKAPI vkEnumeratePhysicalDevices(
2234 VkInstance instance,
2235 uint32_t* pPhysicalDeviceCount,
2236 VkPhysicalDevice* pPhysicalDevices);
2237
2238 VkResult VKAPI vkGetPhysicalDeviceInfo(
2239 VkPhysicalDevice physicalDevice,
2240 VkPhysicalDeviceInfoType infoType,
2241 size_t* pDataSize,
2242 void* pData);
2243
2244 void * VKAPI vkGetProcAddr(
2245 VkPhysicalDevice physicalDevice,
2246 const char* pName);
2247
2248 // Device functions
2249
2250 VkResult VKAPI vkCreateDevice(
2251 VkPhysicalDevice physicalDevice,
2252 const VkDeviceCreateInfo* pCreateInfo,
2253 VkDevice* pDevice);
2254
2255 VkResult VKAPI vkDestroyDevice(
2256 VkDevice device);
2257
2258 VkResult VKAPI vkGetGlobalExtensionInfo(
2259 VkExtensionInfoType infoType,
2260 uint32_t extensionIndex,
2261 size_t* pDataSize,
2262 void* pData);
2263
2264 VkResult VKAPI vkGetPhysicalDeviceExtensionInfo(
2265 VkPhysicalDevice physicalDevice,
2266 VkExtensionInfoType infoType,
2267 uint32_t extensionIndex,
2268 size_t* pDataSize,
2269 void* pData);
2270
2271 VkResult VKAPI vkEnumerateLayers(
2272 VkPhysicalDevice physicalDevice,
2273 size_t maxStringSize,
2274 size_t* pLayerCount,
2275 char* const* pOutLayers,
2276 void* pReserved);
2277
2278 VkResult VKAPI vkGetDeviceQueue(
2279 VkDevice device,
2280 uint32_t queueNodeIndex,
2281 uint32_t queueIndex,
2282 VkQueue* pQueue);
2283
2284 VkResult VKAPI vkQueueSubmit(
2285 VkQueue queue,
2286 uint32_t cmdBufferCount,
2287 const VkCmdBuffer* pCmdBuffers,
2288 VkFence fence);
2289
2290 VkResult VKAPI vkQueueAddMemReferences(
2291 VkQueue queue,
2292 uint32_t count,
2293 const VkDeviceMemory* pMems);
2294
2295 VkResult VKAPI vkQueueRemoveMemReferences(
2296 VkQueue queue,
2297 uint32_t count,
2298 const VkDeviceMemory* pMems);
2299
2300 VkResult VKAPI vkQueueWaitIdle(
2301 VkQueue queue);
2302
2303 VkResult VKAPI vkDeviceWaitIdle(
2304 VkDevice device);
2305
2306 VkResult VKAPI vkAllocMemory(
2307 VkDevice device,
2308 const VkMemoryAllocInfo* pAllocInfo,
2309 VkDeviceMemory* pMem);
2310
2311 VkResult VKAPI vkFreeMemory(
2312 VkDevice device,
2313 VkDeviceMemory mem);
2314
2315 VkResult VKAPI vkSetMemoryPriority(
2316 VkDevice device,
2317 VkDeviceMemory mem,
2318 VkMemoryPriority priority);
2319
2320 VkResult VKAPI vkMapMemory(
2321 VkDevice device,
2322 VkDeviceMemory mem,
2323 VkDeviceSize offset,
2324 VkDeviceSize size,
2325 VkMemoryMapFlags flags,
2326 void** ppData);
2327
2328 VkResult VKAPI vkUnmapMemory(
2329 VkDevice device,
2330 VkDeviceMemory mem);
2331
2332 VkResult VKAPI vkFlushMappedMemory(
2333 VkDevice device,
2334 VkDeviceMemory mem,
2335 VkDeviceSize offset,
2336 VkDeviceSize size);
2337
2338 VkResult VKAPI vkPinSystemMemory(
2339 VkDevice device,
2340 const void* pSysMem,
2341 size_t memSize,
2342 VkDeviceMemory* pMem);
2343
2344 VkResult VKAPI vkGetMultiDeviceCompatibility(
2345 VkPhysicalDevice physicalDevice0,
2346 VkPhysicalDevice physicalDevice1,
2347 VkPhysicalDeviceCompatibilityInfo* pInfo);
2348
2349 VkResult VKAPI vkOpenSharedMemory(
2350 VkDevice device,
2351 const VkMemoryOpenInfo* pOpenInfo,
2352 VkDeviceMemory* pMem);
2353
2354 VkResult VKAPI vkOpenSharedSemaphore(
2355 VkDevice device,
2356 const VkSemaphoreOpenInfo* pOpenInfo,
2357 VkSemaphore* pSemaphore);
2358
2359 VkResult VKAPI vkOpenPeerMemory(
2360 VkDevice device,
2361 const VkPeerMemoryOpenInfo* pOpenInfo,
2362 VkDeviceMemory* pMem);
2363
2364 VkResult VKAPI vkOpenPeerImage(
2365 VkDevice device,
2366 const VkPeerImageOpenInfo* pOpenInfo,
2367 VkImage* pImage,
2368 VkDeviceMemory* pMem);
2369
2370 VkResult VKAPI vkDestroyObject(
2371 VkDevice device,
2372 VkObjectType objType,
2373 VkObject object);
2374
2375 VkResult VKAPI vkGetObjectInfo(
2376 VkDevice device,
2377 VkObjectType objType,
2378 VkObject object,
2379 VkObjectInfoType infoType,
2380 size_t* pDataSize,
2381 void* pData);
2382
2383 VkResult VKAPI vkQueueBindObjectMemory(
2384 VkQueue queue,
2385 VkObjectType objType,
2386 VkObject object,
2387 uint32_t allocationIdx,
2388 VkDeviceMemory mem,
2389 VkDeviceSize memOffset);
2390
2391 VkResult VKAPI vkQueueBindObjectMemoryRange(
2392 VkQueue queue,
2393 VkObjectType objType,
2394 VkObject object,
2395 uint32_t allocationIdx,
2396 VkDeviceSize rangeOffset,
2397 VkDeviceSize rangeSize,
2398 VkDeviceMemory mem,
2399 VkDeviceSize memOffset);
2400
2401 VkResult VKAPI vkQueueBindImageMemoryRange(
2402 VkQueue queue,
2403 VkImage image,
2404 uint32_t allocationIdx,
2405 const VkImageMemoryBindInfo* pBindInfo,
2406 VkDeviceMemory mem,
2407 VkDeviceSize memOffset);
2408
2409 VkResult VKAPI vkCreateFence(
2410 VkDevice device,
2411 const VkFenceCreateInfo* pCreateInfo,
2412 VkFence* pFence);
2413
2414 VkResult VKAPI vkResetFences(
2415 VkDevice device,
2416 uint32_t fenceCount,
2417 VkFence* pFences);
2418
2419 VkResult VKAPI vkGetFenceStatus(
2420 VkDevice device,
2421 VkFence fence);
2422
2423 VkResult VKAPI vkWaitForFences(
2424 VkDevice device,
2425 uint32_t fenceCount,
2426 const VkFence* pFences,
2427 bool32_t waitAll,
2428 uint64_t timeout); // timeout in nanoseconds
2429
2430 VkResult VKAPI vkCreateSemaphore(
2431 VkDevice device,
2432 const VkSemaphoreCreateInfo* pCreateInfo,
2433 VkSemaphore* pSemaphore);
2434
2435 VkResult VKAPI vkQueueSignalSemaphore(
2436 VkQueue queue,
2437 VkSemaphore semaphore);
2438
2439 VkResult VKAPI vkQueueWaitSemaphore(
2440 VkQueue queue,
2441 VkSemaphore semaphore);
2442
2443 VkResult VKAPI vkCreateEvent(
2444 VkDevice device,
2445 const VkEventCreateInfo* pCreateInfo,
2446 VkEvent* pEvent);
2447
2448 VkResult VKAPI vkGetEventStatus(
2449 VkDevice device,
2450 VkEvent event);
2451
2452 VkResult VKAPI vkSetEvent(
2453 VkDevice device,
2454 VkEvent event);
2455
2456 VkResult VKAPI vkResetEvent(
2457 VkDevice device,
2458 VkEvent event);
2459
2460 VkResult VKAPI vkCreateQueryPool(
2461 VkDevice device,
2462 const VkQueryPoolCreateInfo* pCreateInfo,
2463 VkQueryPool* pQueryPool);
2464
2465 VkResult VKAPI vkGetQueryPoolResults(
2466 VkDevice device,
2467 VkQueryPool queryPool,
2468 uint32_t startQuery,
2469 uint32_t queryCount,
2470 size_t* pDataSize,
2471 void* pData,
2472 VkQueryResultFlags flags);
2473
2474 VkResult VKAPI vkGetFormatInfo(
2475 VkDevice device,
2476 VkFormat format,
2477 VkFormatInfoType infoType,
2478 size_t* pDataSize,
2479 void* pData);
2480
2481 VkResult VKAPI vkCreateBuffer(
2482 VkDevice device,
2483 const VkBufferCreateInfo* pCreateInfo,
2484 VkBuffer* pBuffer);
2485
2486 VkResult VKAPI vkCreateBufferView(
2487 VkDevice device,
2488 const VkBufferViewCreateInfo* pCreateInfo,
2489 VkBufferView* pView);
2490
2491 VkResult VKAPI vkCreateImage(
2492 VkDevice device,
2493 const VkImageCreateInfo* pCreateInfo,
2494 VkImage* pImage);
2495
2496 VkResult VKAPI vkGetImageSubresourceInfo(
2497 VkDevice device,
2498 VkImage image,
2499 const VkImageSubresource* pSubresource,
2500 VkSubresourceInfoType infoType,
2501 size_t* pDataSize,
2502 void* pData);
2503
2504 // Image view functions
2505
2506 VkResult VKAPI vkCreateImageView(
2507 VkDevice device,
2508 const VkImageViewCreateInfo* pCreateInfo,
2509 VkImageView* pView);
2510
2511 VkResult VKAPI vkCreateColorAttachmentView(
2512 VkDevice device,
2513 const VkColorAttachmentViewCreateInfo* pCreateInfo,
2514 VkColorAttachmentView* pView);
2515
2516 VkResult VKAPI vkCreateDepthStencilView(
2517 VkDevice device,
2518 const VkDepthStencilViewCreateInfo* pCreateInfo,
2519 VkDepthStencilView* pView);
2520
2521 VkResult VKAPI vkCreateShader(
2522 VkDevice device,
2523 const VkShaderCreateInfo* pCreateInfo,
2524 VkShader* pShader);
2525
2526 VkResult VKAPI vkCreateGraphicsPipeline(
2527 VkDevice device,
2528 const VkGraphicsPipelineCreateInfo* pCreateInfo,
2529 VkPipeline* pPipeline);
2530
2531 VkResult VKAPI vkCreateGraphicsPipelineDerivative(
2532 VkDevice device,
2533 const VkGraphicsPipelineCreateInfo* pCreateInfo,
2534 VkPipeline basePipeline,
2535 VkPipeline* pPipeline);
2536
2537 VkResult VKAPI vkCreateComputePipeline(
2538 VkDevice device,
2539 const VkComputePipelineCreateInfo* pCreateInfo,
2540 VkPipeline* pPipeline);
2541
2542 VkResult VKAPI vkStorePipeline(
2543 VkDevice device,
2544 VkPipeline pipeline,
2545 size_t* pDataSize,
2546 void* pData);
2547
2548 VkResult VKAPI vkLoadPipeline(
2549 VkDevice device,
2550 size_t dataSize,
2551 const void* pData,
2552 VkPipeline* pPipeline);
2553
2554 VkResult VKAPI vkLoadPipelineDerivative(
2555 VkDevice device,
2556 size_t dataSize,
2557 const void* pData,
2558 VkPipeline basePipeline,
2559 VkPipeline* pPipeline);
2560
2561 VkResult VKAPI vkCreatePipelineLayout(
2562 VkDevice device,
2563 const VkPipelineLayoutCreateInfo* pCreateInfo,
2564 VkPipelineLayout* pPipelineLayout);
2565
2566 VkResult VKAPI vkCreateSampler(
2567 VkDevice device,
2568 const VkSamplerCreateInfo* pCreateInfo,
2569 VkSampler* pSampler);
2570
2571 VkResult VKAPI vkCreateDescriptorSetLayout(
2572 VkDevice device,
2573 const VkDescriptorSetLayoutCreateInfo* pCreateInfo,
2574 VkDescriptorSetLayout* pSetLayout);
2575
2576 VkResult VKAPI vkBeginDescriptorPoolUpdate(
2577 VkDevice device,
2578 VkDescriptorUpdateMode updateMode);
2579
2580 VkResult VKAPI vkEndDescriptorPoolUpdate(
2581 VkDevice device,
2582 VkCmdBuffer cmd);
2583
2584 VkResult VKAPI vkCreateDescriptorPool(
2585 VkDevice device,
2586 VkDescriptorPoolUsage poolUsage,
2587 uint32_t maxSets,
2588 const VkDescriptorPoolCreateInfo* pCreateInfo,
2589 VkDescriptorPool* pDescriptorPool);
2590
2591 VkResult VKAPI vkResetDescriptorPool(
2592 VkDevice device,
2593 VkDescriptorPool descriptorPool);
2594
2595 VkResult VKAPI vkAllocDescriptorSets(
2596 VkDevice device,
2597 VkDescriptorPool descriptorPool,
2598 VkDescriptorSetUsage setUsage,
2599 uint32_t count,
2600 const VkDescriptorSetLayout* pSetLayouts,
2601 VkDescriptorSet* pDescriptorSets,
2602 uint32_t* pCount);
2603
2604 void VKAPI vkClearDescriptorSets(
2605 VkDevice device,
2606 VkDescriptorPool descriptorPool,
2607 uint32_t count,
2608 const VkDescriptorSet* pDescriptorSets);
2609
2610 void VKAPI vkUpdateDescriptors(
2611 VkDevice device,
2612 VkDescriptorSet descriptorSet,
2613 uint32_t updateCount,
2614 const void** ppUpdateArray);
2615
2616 VkResult VKAPI vkCreateDynamicViewportState(
2617 VkDevice device,
2618 const VkDynamicVpStateCreateInfo* pCreateInfo,
2619 VkDynamicVpState* pState);
2620
2621 VkResult VKAPI vkCreateDynamicRasterState(
2622 VkDevice device,
2623 const VkDynamicRsStateCreateInfo* pCreateInfo,
2624 VkDynamicRsState* pState);
2625
2626 VkResult VKAPI vkCreateDynamicColorBlendState(
2627 VkDevice device,
2628 const VkDynamicCbStateCreateInfo* pCreateInfo,
2629 VkDynamicCbState* pState);
2630
2631 VkResult VKAPI vkCreateDynamicDepthStencilState(
2632 VkDevice device,
2633 const VkDynamicDsStateCreateInfo* pCreateInfo,
2634 VkDynamicDsState* pState);
2635
2636 VkResult VKAPI vkCreateFramebuffer(
2637 VkDevice device,
2638 const VkFramebufferCreateInfo* pCreateInfo,
2639 VkFramebuffer* pFramebuffer);
2640
2641 VkResult VKAPI vkCreateRenderPass(
2642 VkDevice device,
2643 const VkRenderPassCreateInfo* pCreateInfo,
2644 VkRenderPass* pRenderPass);
2645
2646 VkResult VKAPI vkCreateCommandBuffer(
2647 VkDevice device,
2648 const VkCmdBufferCreateInfo* pCreateInfo,
2649 VkCmdBuffer* pCmdBuffer);
2650
2651 VkResult VKAPI vkBeginCommandBuffer(
2652 VkCmdBuffer cmdBuffer,
2653 const VkCmdBufferBeginInfo* pBeginInfo);
2654
2655 VkResult VKAPI vkEndCommandBuffer(
2656 VkCmdBuffer cmdBuffer);
2657
2658 VkResult VKAPI vkResetCommandBuffer(
2659 VkCmdBuffer cmdBuffer);
2660
2661 void VKAPI vkCmdBindPipeline(
2662 VkCmdBuffer cmdBuffer,
2663 VkPipelineBindPoint pipelineBindPoint,
2664 VkPipeline pipeline);
2665
2666 void VKAPI vkCmdBindDynamicStateObject(
2667 VkCmdBuffer cmdBuffer,
2668 VkStateBindPoint stateBindPoint,
2669 VkDynamicStateObject dynamicState);
2670
2671 void VKAPI vkCmdBindDescriptorSets(
2672 VkCmdBuffer cmdBuffer,
2673 VkPipelineBindPoint pipelineBindPoint,
2674 uint32_t firstSet,
2675 uint32_t setCount,
2676 const VkDescriptorSet* pDescriptorSets,
2677 uint32_t dynamicOffsetCount,
2678 const uint32_t* pDynamicOffsets);
2679
2680 void VKAPI vkCmdBindIndexBuffer(
2681 VkCmdBuffer cmdBuffer,
2682 VkBuffer buffer,
2683 VkDeviceSize offset,
2684 VkIndexType indexType);
2685
2686 void VKAPI vkCmdBindVertexBuffers(
2687 VkCmdBuffer cmdBuffer,
2688 uint32_t startBinding,
2689 uint32_t bindingCount,
2690 const VkBuffer* pBuffers,
2691 const VkDeviceSize* pOffsets);
2692
2693 void VKAPI vkCmdDraw(
2694 VkCmdBuffer cmdBuffer,
2695 uint32_t firstVertex,
2696 uint32_t vertexCount,
2697 uint32_t firstInstance,
2698 uint32_t instanceCount);
2699
2700 void VKAPI vkCmdDrawIndexed(
2701 VkCmdBuffer cmdBuffer,
2702 uint32_t firstIndex,
2703 uint32_t indexCount,
2704 int32_t vertexOffset,
2705 uint32_t firstInstance,
2706 uint32_t instanceCount);
2707
2708 void VKAPI vkCmdDrawIndirect(
2709 VkCmdBuffer cmdBuffer,
2710 VkBuffer buffer,
2711 VkDeviceSize offset,
2712 uint32_t count,
2713 uint32_t stride);
2714
2715 void VKAPI vkCmdDrawIndexedIndirect(
2716 VkCmdBuffer cmdBuffer,
2717 VkBuffer buffer,
2718 VkDeviceSize offset,
2719 uint32_t count,
2720 uint32_t stride);
2721
2722 void VKAPI vkCmdDispatch(
2723 VkCmdBuffer cmdBuffer,
2724 uint32_t x,
2725 uint32_t y,
2726 uint32_t z);
2727
2728 void VKAPI vkCmdDispatchIndirect(
2729 VkCmdBuffer cmdBuffer,
2730 VkBuffer buffer,
2731 VkDeviceSize offset);
2732
2733 void VKAPI vkCmdCopyBuffer(
2734 VkCmdBuffer cmdBuffer,
2735 VkBuffer srcBuffer,
2736 VkBuffer destBuffer,
2737 uint32_t regionCount,
2738 const VkBufferCopy* pRegions);
2739
2740 void VKAPI vkCmdCopyImage(
2741 VkCmdBuffer cmdBuffer,
2742 VkImage srcImage,
2743 VkImageLayout srcImageLayout,
2744 VkImage destImage,
2745 VkImageLayout destImageLayout,
2746 uint32_t regionCount,
2747 const VkImageCopy* pRegions);
2748
2749 void VKAPI vkCmdBlitImage(
2750 VkCmdBuffer cmdBuffer,
2751 VkImage srcImage,
2752 VkImageLayout srcImageLayout,
2753 VkImage destImage,
2754 VkImageLayout destImageLayout,
2755 uint32_t regionCount,
2756 const VkImageBlit* pRegions);
2757
2758 void VKAPI vkCmdCopyBufferToImage(
2759 VkCmdBuffer cmdBuffer,
2760 VkBuffer srcBuffer,
2761 VkImage destImage,
2762 VkImageLayout destImageLayout,
2763 uint32_t regionCount,
2764 const VkBufferImageCopy* pRegions);
2765
2766 void VKAPI vkCmdCopyImageToBuffer(
2767 VkCmdBuffer cmdBuffer,
2768 VkImage srcImage,
2769 VkImageLayout srcImageLayout,
2770 VkBuffer destBuffer,
2771 uint32_t regionCount,
2772 const VkBufferImageCopy* pRegions);
2773
2774 void VKAPI vkCmdCloneImageData(
2775 VkCmdBuffer cmdBuffer,
2776 VkImage srcImage,
2777 VkImageLayout srcImageLayout,
2778 VkImage destImage,
2779 VkImageLayout destImageLayout);
2780
2781 void VKAPI vkCmdUpdateBuffer(
2782 VkCmdBuffer cmdBuffer,
2783 VkBuffer destBuffer,
2784 VkDeviceSize destOffset,
2785 VkDeviceSize dataSize,
2786 const uint32_t* pData);
2787
2788 void VKAPI vkCmdFillBuffer(
2789 VkCmdBuffer cmdBuffer,
2790 VkBuffer destBuffer,
2791 VkDeviceSize destOffset,
2792 VkDeviceSize fillSize,
2793 uint32_t data);
2794
2795 void VKAPI vkCmdClearColorImage(
2796 VkCmdBuffer cmdBuffer,
2797 VkImage image,
2798 VkImageLayout imageLayout,
2799 VkClearColor color,
2800 uint32_t rangeCount,
2801 const VkImageSubresourceRange* pRanges);
2802
2803 void VKAPI vkCmdClearDepthStencil(
2804 VkCmdBuffer cmdBuffer,
2805 VkImage image,
2806 VkImageLayout imageLayout,
2807 float depth,
2808 uint32_t stencil,
2809 uint32_t rangeCount,
2810 const VkImageSubresourceRange* pRanges);
2811
2812 void VKAPI vkCmdResolveImage(
2813 VkCmdBuffer cmdBuffer,
2814 VkImage srcImage,
2815 VkImageLayout srcImageLayout,
2816 VkImage destImage,
2817 VkImageLayout destImageLayout,
2818 uint32_t regionCount,
2819 const VkImageResolve* pRegions);
2820
2821 void VKAPI vkCmdSetEvent(
2822 VkCmdBuffer cmdBuffer,
2823 VkEvent event,
2824 VkPipeEvent pipeEvent);
2825
2826 void VKAPI vkCmdResetEvent(
2827 VkCmdBuffer cmdBuffer,
2828 VkEvent event,
2829 VkPipeEvent pipeEvent);
2830
2831 void VKAPI vkCmdWaitEvents(
2832 VkCmdBuffer cmdBuffer,
2833 VkWaitEvent waitEvent,
2834 uint32_t eventCount,
2835 const VkEvent* pEvents,
2836 uint32_t memBarrierCount,
2837 const void** ppMemBarriers);
2838
2839 void VKAPI vkCmdPipelineBarrier(
2840 VkCmdBuffer cmdBuffer,
2841 VkWaitEvent waitEvent,
2842 uint32_t pipeEventCount,
2843 const VkPipeEvent* pPipeEvents,
2844 uint32_t memBarrierCount,
2845 const void** ppMemBarriers);
2846
2847 void VKAPI vkCmdBeginQuery(
2848 VkCmdBuffer cmdBuffer,
2849 VkQueryPool queryPool,
2850 uint32_t slot,
2851 VkQueryControlFlags flags);
2852
2853 void VKAPI vkCmdEndQuery(
2854 VkCmdBuffer cmdBuffer,
2855 VkQueryPool queryPool,
2856 uint32_t slot);
2857
2858 void VKAPI vkCmdResetQueryPool(
2859 VkCmdBuffer cmdBuffer,
2860 VkQueryPool queryPool,
2861 uint32_t startQuery,
2862 uint32_t queryCount);
2863
2864 void VKAPI vkCmdWriteTimestamp(
2865 VkCmdBuffer cmdBuffer,
2866 VkTimestampType timestampType,
2867 VkBuffer destBuffer,
2868 VkDeviceSize destOffset);
2869
2870 void VKAPI vkCmdCopyQueryPoolResults(
2871 VkCmdBuffer cmdBuffer,
2872 VkQueryPool queryPool,
2873 uint32_t startQuery,
2874 uint32_t queryCount,
2875 VkBuffer destBuffer,
2876 VkDeviceSize destOffset,
2877 VkDeviceSize destStride,
2878 VkQueryResultFlags flags);
2879
2880 void VKAPI vkCmdBeginRenderPass(
2881 VkCmdBuffer cmdBuffer,
2882 const VkRenderPassBegin* pRenderPassBegin);
2883
2884 void VKAPI vkCmdEndRenderPass(
2885 VkCmdBuffer cmdBuffer,
2886 VkRenderPass renderPass);
2887
2888 #endif
2889
2890 #ifdef __cplusplus
2891 }
2892 #endif
2893
2894 #endif