26 .r = VK_COMPONENT_SWIZZLE_IDENTITY,
27 .g = VK_COMPONENT_SWIZZLE_IDENTITY,
28 .b = VK_COMPONENT_SWIZZLE_IDENTITY,
29 .a = VK_COMPONENT_SWIZZLE_IDENTITY,
35 #define CASE(VAL) case VAL: return #VAL
43 CASE(VK_ERROR_OUT_OF_HOST_MEMORY);
44 CASE(VK_ERROR_OUT_OF_DEVICE_MEMORY);
45 CASE(VK_ERROR_INITIALIZATION_FAILED);
46 CASE(VK_ERROR_DEVICE_LOST);
47 CASE(VK_ERROR_MEMORY_MAP_FAILED);
48 CASE(VK_ERROR_LAYER_NOT_PRESENT);
49 CASE(VK_ERROR_EXTENSION_NOT_PRESENT);
50 CASE(VK_ERROR_FEATURE_NOT_PRESENT);
51 CASE(VK_ERROR_INCOMPATIBLE_DRIVER);
52 CASE(VK_ERROR_TOO_MANY_OBJECTS);
53 CASE(VK_ERROR_FORMAT_NOT_SUPPORTED);
54 CASE(VK_ERROR_FRAGMENTED_POOL);
55 CASE(VK_ERROR_UNKNOWN);
56 CASE(VK_ERROR_OUT_OF_POOL_MEMORY);
57 CASE(VK_ERROR_INVALID_EXTERNAL_HANDLE);
58 CASE(VK_ERROR_FRAGMENTATION);
59 CASE(VK_ERROR_INVALID_OPAQUE_CAPTURE_ADDRESS);
60 CASE(VK_PIPELINE_COMPILE_REQUIRED);
61 CASE(VK_ERROR_SURFACE_LOST_KHR);
62 CASE(VK_ERROR_NATIVE_WINDOW_IN_USE_KHR);
63 CASE(VK_SUBOPTIMAL_KHR);
64 CASE(VK_ERROR_OUT_OF_DATE_KHR);
65 CASE(VK_ERROR_INCOMPATIBLE_DISPLAY_KHR);
66 CASE(VK_ERROR_VALIDATION_FAILED_EXT);
67 CASE(VK_ERROR_INVALID_SHADER_NV);
68 CASE(VK_ERROR_VIDEO_PICTURE_LAYOUT_NOT_SUPPORTED_KHR);
69 CASE(VK_ERROR_VIDEO_PROFILE_OPERATION_NOT_SUPPORTED_KHR);
70 CASE(VK_ERROR_VIDEO_PROFILE_FORMAT_NOT_SUPPORTED_KHR);
71 CASE(VK_ERROR_VIDEO_PROFILE_CODEC_NOT_SUPPORTED_KHR);
72 CASE(VK_ERROR_VIDEO_STD_VERSION_NOT_SUPPORTED_KHR);
73 CASE(VK_ERROR_INVALID_DRM_FORMAT_MODIFIER_PLANE_LAYOUT_EXT);
74 CASE(VK_ERROR_NOT_PERMITTED_KHR);
75 CASE(VK_ERROR_FULL_SCREEN_EXCLUSIVE_MODE_LOST_EXT);
76 CASE(VK_THREAD_IDLE_KHR);
77 CASE(VK_THREAD_DONE_KHR);
78 CASE(VK_OPERATION_DEFERRED_KHR);
79 CASE(VK_OPERATION_NOT_DEFERRED_KHR);
80 default:
return "Unknown error";
89 s->hprops = (VkPhysicalDeviceExternalMemoryHostPropertiesEXT) {
90 .sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_EXTERNAL_MEMORY_HOST_PROPERTIES_EXT,
92 s->coop_matrix_props = (VkPhysicalDeviceCooperativeMatrixPropertiesKHR) {
93 .sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_COOPERATIVE_MATRIX_PROPERTIES_KHR,
96 s->subgroup_props = (VkPhysicalDeviceSubgroupSizeControlProperties) {
97 .sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_SUBGROUP_SIZE_CONTROL_PROPERTIES,
98 .pNext = &
s->coop_matrix_props,
100 s->desc_buf_props = (VkPhysicalDeviceDescriptorBufferPropertiesEXT) {
101 .sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_DESCRIPTOR_BUFFER_PROPERTIES_EXT,
102 .pNext = &
s->subgroup_props,
104 s->driver_props = (VkPhysicalDeviceDriverProperties) {
105 .sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_DRIVER_PROPERTIES,
106 .pNext = &
s->desc_buf_props,
108 s->props = (VkPhysicalDeviceProperties2) {
109 .sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_PROPERTIES_2,
110 .pNext = &
s->driver_props,
113 s->atomic_float_feats = (VkPhysicalDeviceShaderAtomicFloatFeaturesEXT) {
114 .sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_SHADER_ATOMIC_FLOAT_FEATURES_EXT,
116 s->feats_12 = (VkPhysicalDeviceVulkan12Features) {
117 .sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_VULKAN_1_2_FEATURES,
118 .pNext = &
s->atomic_float_feats,
120 s->feats = (VkPhysicalDeviceFeatures2) {
121 .sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_FEATURES_2,
122 .pNext = &
s->feats_12,
125 vk->GetPhysicalDeviceProperties2(
s->hwctx->phys_dev, &
s->props);
126 vk->GetPhysicalDeviceMemoryProperties(
s->hwctx->phys_dev, &
s->mprops);
127 vk->GetPhysicalDeviceFeatures2(
s->hwctx->phys_dev, &
s->feats);
132 vk->GetPhysicalDeviceQueueFamilyProperties2(
s->hwctx->phys_dev, &
s->tot_nb_qfs,
NULL);
134 s->qf_props =
av_calloc(
s->tot_nb_qfs,
sizeof(*
s->qf_props));
138 s->query_props =
av_calloc(
s->tot_nb_qfs,
sizeof(*
s->query_props));
144 s->video_props =
av_calloc(
s->tot_nb_qfs,
sizeof(*
s->video_props));
145 if (!
s->video_props) {
151 for (uint32_t
i = 0;
i <
s->tot_nb_qfs;
i++) {
152 s->query_props[
i] = (VkQueueFamilyQueryResultStatusPropertiesKHR) {
153 .sType = VK_STRUCTURE_TYPE_QUEUE_FAMILY_QUERY_RESULT_STATUS_PROPERTIES_KHR,
155 s->video_props[
i] = (VkQueueFamilyVideoPropertiesKHR) {
156 .sType = VK_STRUCTURE_TYPE_QUEUE_FAMILY_VIDEO_PROPERTIES_KHR,
157 .pNext = &
s->query_props[
i],
159 s->qf_props[
i] = (VkQueueFamilyProperties2) {
160 .sType = VK_STRUCTURE_TYPE_QUEUE_FAMILY_PROPERTIES_2,
161 .pNext = &
s->video_props[
i],
165 vk->GetPhysicalDeviceQueueFamilyProperties2(
s->hwctx->phys_dev, &
s->tot_nb_qfs,
s->qf_props);
168 vk->GetPhysicalDeviceCooperativeMatrixPropertiesKHR(
s->hwctx->phys_dev,
169 &
s->coop_mat_props_nb,
NULL);
171 if (
s->coop_mat_props_nb) {
173 sizeof(VkCooperativeMatrixPropertiesKHR));
174 for (
int i = 0;
i <
s->coop_mat_props_nb;
i++) {
175 s->coop_mat_props[
i] = (VkCooperativeMatrixPropertiesKHR) {
176 .sType = VK_STRUCTURE_TYPE_COOPERATIVE_MATRIX_PROPERTIES_KHR,
180 vk->GetPhysicalDeviceCooperativeMatrixPropertiesKHR(
s->hwctx->phys_dev,
181 &
s->coop_mat_props_nb,
193 switch (dev_family) {
194 case VK_QUEUE_GRAPHICS_BIT:
195 ret =
s->hwctx->queue_family_index;
196 num =
s->hwctx->nb_graphics_queues;
198 case VK_QUEUE_COMPUTE_BIT:
199 ret =
s->hwctx->queue_family_comp_index;
200 num =
s->hwctx->nb_comp_queues;
202 case VK_QUEUE_TRANSFER_BIT:
203 ret =
s->hwctx->queue_family_tx_index;
204 num =
s->hwctx->nb_tx_queues;
206 case VK_QUEUE_VIDEO_ENCODE_BIT_KHR:
207 ret =
s->hwctx->queue_family_encode_index;
208 num =
s->hwctx->nb_encode_queues;
210 case VK_QUEUE_VIDEO_DECODE_BIT_KHR:
211 ret =
s->hwctx->queue_family_decode_index;
212 num =
s->hwctx->nb_decode_queues;
225 VkQueueFlagBits dev_family)
232 if (
s->hwctx->queue_family_index >= 0)
233 s->qfs[
s->nb_qfs++] =
s->hwctx->queue_family_index;
234 if (!
s->nb_qfs ||
s->qfs[0] !=
s->hwctx->queue_family_tx_index)
235 s->qfs[
s->nb_qfs++] =
s->hwctx->queue_family_tx_index;
236 if (!
s->nb_qfs || (
s->qfs[0] !=
s->hwctx->queue_family_comp_index &&
237 s->qfs[1] !=
s->hwctx->queue_family_comp_index))
238 s->qfs[
s->nb_qfs++] =
s->hwctx->queue_family_comp_index;
239 if (
s->hwctx->queue_family_decode_index >= 0 &&
240 (
s->qfs[0] !=
s->hwctx->queue_family_decode_index &&
241 s->qfs[1] !=
s->hwctx->queue_family_decode_index &&
242 s->qfs[2] !=
s->hwctx->queue_family_decode_index))
243 s->qfs[
s->nb_qfs++] =
s->hwctx->queue_family_decode_index;
244 if (
s->hwctx->queue_family_encode_index >= 0 &&
245 (
s->qfs[0] !=
s->hwctx->queue_family_encode_index &&
246 s->qfs[1] !=
s->hwctx->queue_family_encode_index &&
247 s->qfs[2] !=
s->hwctx->queue_family_encode_index &&
248 s->qfs[3] !=
s->hwctx->queue_family_encode_index))
249 s->qfs[
s->nb_qfs++] =
s->hwctx->queue_family_encode_index;
263 vk->WaitForFences(
s->hwctx->act_dev, 1, &e->
fence, VK_TRUE, UINT64_MAX);
264 vk->DestroyFence(
s->hwctx->act_dev, e->
fence,
s->hwctx->alloc);
283 vk->FreeCommandBuffers(
s->hwctx->act_dev, pool->
cmd_buf_pool,
286 vk->DestroyCommandPool(
s->hwctx->act_dev, pool->
cmd_buf_pool,
s->hwctx->alloc);
288 vk->DestroyQueryPool(
s->hwctx->act_dev, pool->
query_pool,
s->hwctx->alloc);
297 int nb_queries, VkQueryType query_type,
int query_64bit,
298 const void *query_create_pnext)
305 VkCommandBufferAllocateInfo cbuf_create;
309 .sType = VK_STRUCTURE_TYPE_COMMAND_POOL_CREATE_INFO,
310 .flags = VK_COMMAND_POOL_CREATE_TRANSIENT_BIT |
311 VK_COMMAND_POOL_CREATE_RESET_COMMAND_BUFFER_BIT,
316 if (
ret != VK_SUCCESS) {
331 cbuf_create = (VkCommandBufferAllocateInfo) {
332 .sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_ALLOCATE_INFO,
333 .level = VK_COMMAND_BUFFER_LEVEL_PRIMARY,
335 .commandBufferCount = nb_contexts,
337 ret = vk->AllocateCommandBuffers(
s->hwctx->act_dev, &cbuf_create,
339 if (
ret != VK_SUCCESS) {
348 VkQueryPoolCreateInfo query_pool_info = {
349 .sType = VK_STRUCTURE_TYPE_QUERY_POOL_CREATE_INFO,
350 .pNext = query_create_pnext,
351 .queryType = query_type,
352 .queryCount = nb_queries*nb_contexts,
354 ret = vk->CreateQueryPool(
s->hwctx->act_dev, &query_pool_info,
356 if (
ret != VK_SUCCESS) {
370 if (query_type == VK_QUERY_TYPE_VIDEO_ENCODE_FEEDBACK_KHR) {
375 if (query_type == VK_QUERY_TYPE_RESULT_STATUS_ONLY_KHR) {
403 VkFenceCreateInfo fence_create = {
404 .sType = VK_STRUCTURE_TYPE_FENCE_CREATE_INFO,
405 .flags = VK_FENCE_CREATE_SIGNALED_BIT,
414 ret = vk->CreateFence(
s->hwctx->act_dev, &fence_create,
s->hwctx->alloc,
416 if (
ret != VK_SUCCESS) {
456 VkQueryResultFlags qf = 0;
462 VK_QUERY_RESULT_64_BIT : 0x0;
464 VK_QUERY_RESULT_WITH_STATUS_BIT_KHR : 0x0;
466 ret = vk->GetQueryPoolResults(
s->hwctx->act_dev, pool->
query_pool,
471 if (
ret != VK_SUCCESS)
476 res = (res64[
i] < res) || (res >= 0 && res64[
i] > res) ?
482 res = (res32[
i] < res) || (res >= 0 && res32[
i] > res) ?
498 uint32_t idx = pool->
idx++;
507 vk->WaitForFences(
s->hwctx->act_dev, 1, &e->
fence, VK_TRUE, UINT64_MAX);
518 VkCommandBufferBeginInfo cmd_start = {
519 .sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_BEGIN_INFO,
520 .flags = VK_COMMAND_BUFFER_USAGE_ONE_TIME_SUBMIT_BIT,
524 vk->WaitForFences(
s->hwctx->act_dev, 1, &e->
fence, VK_TRUE, UINT64_MAX);
528 vk->ResetFences(
s->hwctx->act_dev, 1, &e->
fence);
534 ret = vk->BeginCommandBuffer(e->
buf, &cmd_start);
535 if (
ret != VK_SUCCESS) {
560 vkfc->unlock_frame(hwfc, vkf);
586 for (
int i = 0;
i < nb_deps;
i++) {
599 VkPipelineStageFlagBits2 wait_stage,
600 VkPipelineStageFlagBits2 signal_stage)
602 uint8_t *frame_locked;
603 uint8_t *frame_update;
605 VkImageLayout *layout_dst;
606 uint32_t *queue_family_dst;
607 VkAccessFlagBits *access_dst;
619 #define ARR_REALLOC(str, arr, alloc_s, cnt) \
621 arr = av_fast_realloc(str->arr, alloc_s, (cnt + 1)*sizeof(*arr)); \
623 ff_vk_exec_discard_deps(s, e); \
624 return AVERROR(ENOMEM); \
643 vkfc->lock_frame(hwfc, vkf);
648 for (
int i = 0;
i < nb_images;
i++) {
650 VkSemaphoreSubmitInfo *sem_sig;
651 uint64_t **sem_sig_val_dst;
658 .sType = VK_STRUCTURE_TYPE_SEMAPHORE_SUBMIT_INFO,
659 .semaphore = vkf->sem[
i],
660 .value = vkf->sem_value[
i],
661 .stageMask = wait_stage,
665 .sType = VK_STRUCTURE_TYPE_SEMAPHORE_SUBMIT_INFO,
666 .semaphore = vkf->sem[
i],
667 .value = vkf->sem_value[
i] + 1,
668 .stageMask = signal_stage,
679 VkImageMemoryBarrier2 *bar, uint32_t *nb_img_bar)
698 VkSemaphore *dst, uint64_t *dst_val,
701 uint64_t **sem_sig_val_dst;
727 VkCommandBufferSubmitInfo cmd_buf_info = (VkCommandBufferSubmitInfo) {
728 .sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_SUBMIT_INFO,
729 .commandBuffer = e->
buf,
731 VkSubmitInfo2 submit_info = (VkSubmitInfo2) {
732 .sType = VK_STRUCTURE_TYPE_SUBMIT_INFO_2,
733 .pCommandBufferInfos = &cmd_buf_info,
734 .commandBufferInfoCount = 1,
737 .pSignalSemaphoreInfos = e->
sem_sig,
741 ret = vk->EndCommandBuffer(e->
buf);
742 if (
ret != VK_SUCCESS) {
749 s->hwctx->lock_queue(
s->device, e->
qf, e->
qi);
751 s->hwctx->unlock_queue(
s->device, e->
qf, e->
qi);
753 if (
ret != VK_SUCCESS) {
773 for (
int i = 0;
i < nb_images;
i++) {
779 vkfc->unlock_frame(hwfc, vkf);
790 VkMemoryPropertyFlagBits req_flags,
void *alloc_extension,
791 VkMemoryPropertyFlagBits *mem_flags, VkDeviceMemory *mem)
797 VkMemoryAllocateInfo alloc_info = {
798 .sType = VK_STRUCTURE_TYPE_MEMORY_ALLOCATE_INFO,
799 .pNext = alloc_extension,
803 if ((req_flags != UINT32_MAX) && req_flags & VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT)
804 req->size =
FFALIGN(req->size,
s->props.properties.limits.minMemoryMapAlignment);
806 alloc_info.allocationSize = req->size;
810 for (
int i = 0;
i <
s->mprops.memoryTypeCount;
i++) {
812 if (!(req->memoryTypeBits & (1 <<
i)))
816 if ((req_flags != UINT32_MAX) &&
817 ((
s->mprops.memoryTypes[
i].propertyFlags & req_flags) != req_flags))
831 alloc_info.memoryTypeIndex =
index;
833 ret = vk->AllocateMemory(
s->hwctx->act_dev, &alloc_info,
834 s->hwctx->alloc, mem);
835 if (
ret != VK_SUCCESS) {
842 *mem_flags |=
s->mprops.memoryTypes[
index].propertyFlags;
848 void *pNext,
void *alloc_pNext,
849 VkBufferUsageFlags
usage, VkMemoryPropertyFlagBits
flags)
856 VkBufferCreateInfo buf_spawn = {
857 .sType = VK_STRUCTURE_TYPE_BUFFER_CREATE_INFO,
860 .sharingMode = VK_SHARING_MODE_EXCLUSIVE,
865 VkMemoryAllocateFlagsInfo alloc_flags = {
866 .sType = VK_STRUCTURE_TYPE_MEMORY_ALLOCATE_FLAGS_INFO,
867 .flags = VK_MEMORY_ALLOCATE_DEVICE_ADDRESS_BIT,
869 VkBufferMemoryRequirementsInfo2 req_desc = {
870 .sType = VK_STRUCTURE_TYPE_BUFFER_MEMORY_REQUIREMENTS_INFO_2,
872 VkMemoryDedicatedAllocateInfo ded_alloc = {
873 .sType = VK_STRUCTURE_TYPE_MEMORY_DEDICATED_ALLOCATE_INFO,
874 .pNext = alloc_pNext,
876 VkMemoryDedicatedRequirements ded_req = {
877 .sType = VK_STRUCTURE_TYPE_MEMORY_DEDICATED_REQUIREMENTS,
879 VkMemoryRequirements2 req = {
880 .sType = VK_STRUCTURE_TYPE_MEMORY_REQUIREMENTS_2,
884 ret = vk->CreateBuffer(
s->hwctx->act_dev, &buf_spawn,
NULL, &buf->
buf);
885 if (
ret != VK_SUCCESS) {
891 req_desc.buffer = buf->
buf;
893 vk->GetBufferMemoryRequirements2(
s->hwctx->act_dev, &req_desc, &req);
896 use_ded_mem = ded_req.prefersDedicatedAllocation |
897 ded_req.requiresDedicatedAllocation;
899 ded_alloc.buffer = buf->
buf;
900 ded_alloc.pNext = alloc_pNext;
901 alloc_pNext = &ded_alloc;
904 if (
usage & VK_BUFFER_USAGE_SHADER_DEVICE_ADDRESS_BIT) {
905 alloc_flags.pNext = alloc_pNext;
906 alloc_pNext = &alloc_flags;
914 ret = vk->BindBufferMemory(
s->hwctx->act_dev, buf->
buf, buf->
mem, 0);
915 if (
ret != VK_SUCCESS) {
921 if (
usage & VK_BUFFER_USAGE_SHADER_DEVICE_ADDRESS_BIT) {
922 VkBufferDeviceAddressInfo address_info = {
923 .sType = VK_STRUCTURE_TYPE_BUFFER_DEVICE_ADDRESS_INFO,
926 buf->
address = vk->GetBufferDeviceAddress(
s->hwctx->act_dev, &address_info);
943 void *pNext,
void *alloc_pNext,
944 VkBufferUsageFlags
usage, VkMemoryPropertyFlagBits
flags)
970 int nb_buffers,
int invalidate)
974 VkMappedMemoryRange inval_list[64];
977 for (
int i = 0;
i < nb_buffers;
i++) {
979 ret = vk->MapMemory(
s->hwctx->act_dev, buf[
i]->
mem, 0,
980 VK_WHOLE_SIZE, 0, &dst);
981 if (
ret != VK_SUCCESS) {
992 for (
int i = 0;
i < nb_buffers;
i++) {
993 const VkMappedMemoryRange ival_buf = {
994 .sType = VK_STRUCTURE_TYPE_MAPPED_MEMORY_RANGE,
995 .memory = buf[
i]->
mem,
996 .size = VK_WHOLE_SIZE,
998 if (buf[
i]->
flags & VK_MEMORY_PROPERTY_HOST_COHERENT_BIT)
1000 inval_list[inval_count++] = ival_buf;
1004 ret = vk->InvalidateMappedMemoryRanges(
s->hwctx->act_dev, inval_count,
1006 if (
ret != VK_SUCCESS) {
1022 VkMappedMemoryRange flush_list[64];
1023 int flush_count = 0;
1026 for (
int i = 0;
i < nb_buffers;
i++) {
1027 const VkMappedMemoryRange flush_buf = {
1028 .sType = VK_STRUCTURE_TYPE_MAPPED_MEMORY_RANGE,
1029 .memory = buf[
i]->
mem,
1030 .size = VK_WHOLE_SIZE,
1032 if (buf[
i]->
flags & VK_MEMORY_PROPERTY_HOST_COHERENT_BIT)
1034 flush_list[flush_count++] = flush_buf;
1039 ret = vk->FlushMappedMemoryRanges(
s->hwctx->act_dev, flush_count,
1041 if (
ret != VK_SUCCESS) {
1048 for (
int i = 0;
i < nb_buffers;
i++)
1049 vk->UnmapMemory(
s->hwctx->act_dev, buf[
i]->
mem);
1058 if (!buf || !
s->hwctx)
1063 if (buf->
buf != VK_NULL_HANDLE)
1064 vk->DestroyBuffer(
s->hwctx->act_dev, buf->
buf,
s->hwctx->alloc);
1065 if (buf->
mem != VK_NULL_HANDLE)
1066 vk->FreeMemory(
s->hwctx->act_dev, buf->
mem,
s->hwctx->alloc);
1092 void *create_pNext,
size_t size,
1093 VkMemoryPropertyFlagBits mem_props)
1111 data->stage = VK_PIPELINE_STAGE_2_ALL_COMMANDS_BIT;
1112 data->access = VK_ACCESS_2_NONE;
1131 if (mem_props & VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT) {
1143 VkShaderStageFlagBits stage)
1145 VkPushConstantRange *pc;
1153 memset(pc, 0,
sizeof(*pc));
1155 pc->stageFlags = stage;
1163 int unnorm_coords, VkFilter
filt)
1168 VkSamplerCreateInfo sampler_info = {
1169 .sType = VK_STRUCTURE_TYPE_SAMPLER_CREATE_INFO,
1171 .minFilter = sampler_info.magFilter,
1172 .mipmapMode = unnorm_coords ? VK_SAMPLER_MIPMAP_MODE_NEAREST :
1173 VK_SAMPLER_MIPMAP_MODE_LINEAR,
1174 .addressModeU = VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
1175 .addressModeV = sampler_info.addressModeU,
1176 .addressModeW = sampler_info.addressModeU,
1177 .anisotropyEnable = VK_FALSE,
1178 .compareOp = VK_COMPARE_OP_NEVER,
1179 .borderColor = VK_BORDER_COLOR_FLOAT_TRANSPARENT_BLACK,
1180 .unnormalizedCoordinates = unnorm_coords,
1183 ret = vk->CreateSampler(
s->hwctx->act_dev, &sampler_info,
1184 s->hwctx->alloc, sampler);
1185 if (
ret != VK_SUCCESS) {
1209 const int high =
desc->comp[0].depth > 8;
1210 return high ?
"rgba16f" :
"rgba8";
1225 vk->DestroyImageView(
s->hwctx->act_dev, iv->
views[
i],
s->hwctx->alloc);
1248 for (
int i = 0;
i < nb_planes;
i++) {
1249 VkImageAspectFlags plane_aspect[] = { VK_IMAGE_ASPECT_COLOR_BIT,
1250 VK_IMAGE_ASPECT_PLANE_0_BIT,
1251 VK_IMAGE_ASPECT_PLANE_1_BIT,
1252 VK_IMAGE_ASPECT_PLANE_2_BIT, };
1254 VkImageViewCreateInfo view_create_info = {
1255 .sType = VK_STRUCTURE_TYPE_IMAGE_VIEW_CREATE_INFO,
1257 .image = vkf->
img[
FFMIN(
i, nb_images - 1)],
1258 .viewType = VK_IMAGE_VIEW_TYPE_2D,
1259 .format = rep_fmts[
i],
1261 .subresourceRange = {
1262 .aspectMask = plane_aspect[(nb_planes != nb_images) +
1263 i*(nb_planes != nb_images)],
1269 ret = vk->CreateImageView(
s->hwctx->act_dev, &view_create_info,
1270 s->hwctx->alloc, &iv->
views[
i]);
1271 if (
ret != VK_SUCCESS) {
1292 memcpy(views, iv->views, nb_planes*
sizeof(*views));
1297 for (
int i = 0;
i < iv->nb_views;
i++)
1298 vk->DestroyImageView(
s->hwctx->act_dev, iv->views[
i],
s->hwctx->alloc);
1304 AVFrame *pic, VkImageMemoryBarrier2 *bar,
int *nb_bar,
1305 VkPipelineStageFlags src_stage,
1306 VkPipelineStageFlags dst_stage,
1307 VkAccessFlagBits new_access,
1308 VkImageLayout new_layout,
1321 for (
int i = 0;
i < nb_images;
i++) {
1322 bar[*nb_bar] = (VkImageMemoryBarrier2) {
1323 .sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER_2,
1325 .srcStageMask = src_stage,
1326 .dstStageMask = dst_stage,
1328 .dstAccessMask = new_access,
1330 .newLayout = new_layout,
1332 .dstQueueFamilyIndex = new_qf,
1333 .image = vkf->
img[
i],
1334 .subresourceRange = (VkImageSubresourceRange) {
1335 .aspectMask = VK_IMAGE_ASPECT_COLOR_BIT,
1347 VkShaderStageFlags stage, uint32_t required_subgroup_size)
1351 shd->
shader.sType = VK_STRUCTURE_TYPE_PIPELINE_SHADER_STAGE_CREATE_INFO;
1352 shd->
shader.stage = stage;
1354 if (required_subgroup_size) {
1355 shd->
shader.flags |= VK_PIPELINE_SHADER_STAGE_CREATE_REQUIRE_FULL_SUBGROUPS_BIT;
1357 shd->
subgroup_info.sType = VK_STRUCTURE_TYPE_PIPELINE_SHADER_STAGE_REQUIRED_SUBGROUP_SIZE_CREATE_INFO;
1358 shd->
subgroup_info.requiredSubgroupSize = required_subgroup_size;
1364 GLSLC(0, #define IS_WITHIN(v1, v2) ((v1.x < v2.x) && (v1.y < v2.y)) );
1366 GLSLC(0, #extension GL_EXT_buffer_reference : require );
1367 GLSLC(0, #extension GL_EXT_buffer_reference2 : require );
1379 "local_size_y = %i, local_size_z = %i) in;\n\n",
1386 const char *p = shd->
src.str;
1387 const char *start = p;
1388 const size_t len = strlen(p);
1393 for (
int i = 0;
i <
len;
i++) {
1411 vk->DestroyShaderModule(
s->hwctx->act_dev, shd->
shader.module,
s->hwctx->alloc);
1415 uint8_t *spirv,
size_t spirv_size,
const char *entrypoint)
1419 VkShaderModuleCreateInfo shader_create;
1421 shd->
shader.pName = entrypoint;
1424 shd->
name, spirv_size);
1426 shader_create.sType = VK_STRUCTURE_TYPE_SHADER_MODULE_CREATE_INFO;
1427 shader_create.pNext =
NULL;
1428 shader_create.codeSize = spirv_size;
1429 shader_create.flags = 0;
1430 shader_create.pCode = (
void *)spirv;
1432 ret = vk->CreateShaderModule(
s->hwctx->act_dev, &shader_create,
NULL,
1434 if (
ret != VK_SUCCESS) {
1451 [VK_DESCRIPTOR_TYPE_SAMPLER] = {
sizeof(VkDescriptorImageInfo),
"sampler", 1, 0, 0, 0, },
1452 [VK_DESCRIPTOR_TYPE_SAMPLED_IMAGE] = {
sizeof(VkDescriptorImageInfo),
"texture", 1, 0, 1, 0, },
1453 [VK_DESCRIPTOR_TYPE_STORAGE_IMAGE] = {
sizeof(VkDescriptorImageInfo),
"image", 1, 1, 1, 0, },
1454 [VK_DESCRIPTOR_TYPE_INPUT_ATTACHMENT] = {
sizeof(VkDescriptorImageInfo),
"subpassInput", 1, 0, 0, 0, },
1455 [VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER] = {
sizeof(VkDescriptorImageInfo),
"sampler", 1, 0, 1, 0, },
1456 [VK_DESCRIPTOR_TYPE_UNIFORM_BUFFER] = {
sizeof(VkDescriptorBufferInfo),
NULL, 1, 0, 0, 1, },
1457 [VK_DESCRIPTOR_TYPE_STORAGE_BUFFER] = {
sizeof(VkDescriptorBufferInfo),
"buffer", 0, 1, 0, 1, },
1458 [VK_DESCRIPTOR_TYPE_UNIFORM_BUFFER_DYNAMIC] = {
sizeof(VkDescriptorBufferInfo),
NULL, 1, 0, 0, 1, },
1459 [VK_DESCRIPTOR_TYPE_STORAGE_BUFFER_DYNAMIC] = {
sizeof(VkDescriptorBufferInfo),
"buffer", 0, 1, 0, 1, },
1460 [VK_DESCRIPTOR_TYPE_UNIFORM_TEXEL_BUFFER] = {
sizeof(VkBufferView),
"samplerBuffer", 1, 0, 0, 0, },
1461 [VK_DESCRIPTOR_TYPE_STORAGE_TEXEL_BUFFER] = {
sizeof(VkBufferView),
"imageBuffer", 1, 0, 0, 0, },
1467 int read_only,
int print_to_shader_only)
1470 int has_sampler = 0;
1473 VkDescriptorSetLayoutCreateInfo desc_create_layout;
1475 if (print_to_shader_only)
1485 memset(
set, 0,
sizeof(*
set));
1492 if (!
set->binding_offset) {
1497 desc_create_layout = (VkDescriptorSetLayoutCreateInfo) {
1498 .sType = VK_STRUCTURE_TYPE_DESCRIPTOR_SET_LAYOUT_CREATE_INFO,
1500 .pBindings =
set->binding,
1501 .flags = VK_DESCRIPTOR_SET_LAYOUT_CREATE_DESCRIPTOR_BUFFER_BIT_EXT,
1504 for (
int i = 0;
i < nb;
i++) {
1505 set->binding[
i].binding =
i;
1506 set->binding[
i].descriptorType =
desc[
i].type;
1508 set->binding[
i].stageFlags =
desc[
i].stages;
1509 set->binding[
i].pImmutableSamplers =
desc[
i].samplers;
1511 if (
desc[
i].
type == VK_DESCRIPTOR_TYPE_SAMPLER ||
1512 desc[
i].
type == VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER)
1516 set->usage = VK_BUFFER_USAGE_RESOURCE_DESCRIPTOR_BUFFER_BIT_EXT |
1517 VK_BUFFER_USAGE_SHADER_DEVICE_ADDRESS_BIT;
1519 set->usage |= VK_BUFFER_USAGE_SAMPLER_DESCRIPTOR_BUFFER_BIT_EXT;
1521 ret = vk->CreateDescriptorSetLayout(
s->hwctx->act_dev, &desc_create_layout,
1522 s->hwctx->alloc, &
set->layout);
1523 if (
ret != VK_SUCCESS) {
1529 vk->GetDescriptorSetLayoutSizeEXT(
s->hwctx->act_dev,
set->layout, &
set->layout_size);
1531 set->aligned_size =
FFALIGN(
set->layout_size,
s->desc_buf_props.descriptorBufferOffsetAlignment);
1533 for (
int i = 0;
i < nb;
i++)
1534 vk->GetDescriptorSetLayoutBindingOffsetEXT(
s->hwctx->act_dev,
set->layout,
1535 i, &
set->binding_offset[
i]);
1537 set->read_only = read_only;
1538 set->nb_bindings = nb;
1543 for (
int i = 0;
i < nb;
i++) {
1547 if (
desc[
i].mem_layout)
1567 else if (
desc[
i].elems > 0)
1598 VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT |
1599 VK_MEMORY_PROPERTY_HOST_COHERENT_BIT);
1607 pl->
desc_bind[
i] = (VkDescriptorBufferBindingInfoEXT) {
1608 .sType = VK_STRUCTURE_TYPE_DESCRIPTOR_BUFFER_BINDING_INFO_EXT,
1609 .usage =
set->usage,
1610 .address =
set->buf.address,
1621 int bind_idx,
int array_idx,
1622 VkDescriptorGetInfoEXT *desc_get_info,
1626 const size_t exec_offset =
set->read_only ? 0 :
set->aligned_size*e->
idx;
1629 set->binding_offset[bind_idx] +
1630 array_idx*desc_size;
1632 vk->GetDescriptorEXT(
s->hwctx->act_dev, desc_get_info, desc_size,
desc);
1637 VkImageView view, VkImageLayout
layout,
1641 VkDescriptorGetInfoEXT desc_get_info = {
1642 .sType = VK_STRUCTURE_TYPE_DESCRIPTOR_GET_INFO_EXT,
1643 .type = desc_set->
binding[bind].descriptorType,
1645 VkDescriptorImageInfo desc_img_info = {
1652 switch (desc_get_info.type) {
1653 case VK_DESCRIPTOR_TYPE_SAMPLED_IMAGE:
1654 desc_get_info.
data.pSampledImage = &desc_img_info;
1655 desc_size =
s->desc_buf_props.sampledImageDescriptorSize;
1657 case VK_DESCRIPTOR_TYPE_STORAGE_IMAGE:
1658 desc_get_info.data.pStorageImage = &desc_img_info;
1659 desc_size =
s->desc_buf_props.storageImageDescriptorSize;
1661 case VK_DESCRIPTOR_TYPE_INPUT_ATTACHMENT:
1662 desc_get_info.data.pInputAttachmentImage = &desc_img_info;
1663 desc_size =
s->desc_buf_props.inputAttachmentDescriptorSize;
1665 case VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER:
1666 desc_get_info.data.pCombinedImageSampler = &desc_img_info;
1667 desc_size =
s->desc_buf_props.combinedImageSamplerDescriptorSize;
1671 set, bind, desc_get_info.type);
1683 VkDeviceAddress addr, VkDeviceSize
len,
VkFormat fmt)
1686 VkDescriptorGetInfoEXT desc_get_info = {
1687 .sType = VK_STRUCTURE_TYPE_DESCRIPTOR_GET_INFO_EXT,
1688 .type = desc_set->
binding[bind].descriptorType,
1690 VkDescriptorAddressInfoEXT desc_buf_info = {
1697 switch (desc_get_info.type) {
1698 case VK_DESCRIPTOR_TYPE_UNIFORM_BUFFER:
1699 desc_get_info.data.pUniformBuffer = &desc_buf_info;
1700 desc_size =
s->desc_buf_props.uniformBufferDescriptorSize;
1702 case VK_DESCRIPTOR_TYPE_STORAGE_BUFFER:
1703 desc_get_info.data.pStorageBuffer = &desc_buf_info;
1704 desc_size =
s->desc_buf_props.storageBufferDescriptorSize;
1706 case VK_DESCRIPTOR_TYPE_UNIFORM_TEXEL_BUFFER:
1707 desc_get_info.data.pUniformTexelBuffer = &desc_buf_info;
1708 desc_size =
s->desc_buf_props.uniformTexelBufferDescriptorSize;
1710 case VK_DESCRIPTOR_TYPE_STORAGE_TEXEL_BUFFER:
1711 desc_get_info.data.pStorageTexelBuffer = &desc_buf_info;
1712 desc_size =
s->desc_buf_props.storageTexelBufferDescriptorSize;
1716 set, bind, desc_get_info.type);
1728 VkImageView *views,
int set,
int binding,
1729 VkImageLayout
layout, VkSampler sampler)
1734 for (
int i = 0;
i < nb_planes;
i++)
1741 VkShaderStageFlagBits stage,
1753 VkPipelineLayoutCreateInfo pipeline_layout_info;
1756 sizeof(desc_layouts));
1764 pipeline_layout_info = (VkPipelineLayoutCreateInfo) {
1765 .sType = VK_STRUCTURE_TYPE_PIPELINE_LAYOUT_CREATE_INFO,
1766 .pSetLayouts = desc_layouts,
1772 ret = vk->CreatePipelineLayout(
s->hwctx->act_dev, &pipeline_layout_info,
1775 if (
ret != VK_SUCCESS) {
1791 VkComputePipelineCreateInfo pipeline_create_info;
1797 pipeline_create_info = (VkComputePipelineCreateInfo) {
1798 .sType = VK_STRUCTURE_TYPE_COMPUTE_PIPELINE_CREATE_INFO,
1799 .flags = VK_PIPELINE_CREATE_DESCRIPTOR_BUFFER_BIT_EXT,
1804 ret = vk->CreateComputePipelines(
s->hwctx->act_dev, VK_NULL_HANDLE, 1,
1805 &pipeline_create_info,
1807 if (
ret != VK_SUCCESS) {
1813 pl->
bind_point = VK_PIPELINE_BIND_POINT_COMPUTE;
1848 vk->DestroyPipeline(
s->hwctx->act_dev, pl->
pipeline,
s->hwctx->alloc);
1859 vk->DestroyDescriptorSetLayout(
s->hwctx->act_dev,
set->layout,