rendering_device_vulkan.cpp 380 KB

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  1. /*************************************************************************/
  2. /* rendering_device_vulkan.cpp */
  3. /*************************************************************************/
  4. /* This file is part of: */
  5. /* GODOT ENGINE */
  6. /* https://godotengine.org */
  7. /*************************************************************************/
  8. /* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
  9. /* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
  10. /* */
  11. /* Permission is hereby granted, free of charge, to any person obtaining */
  12. /* a copy of this software and associated documentation files (the */
  13. /* "Software"), to deal in the Software without restriction, including */
  14. /* without limitation the rights to use, copy, modify, merge, publish, */
  15. /* distribute, sublicense, and/or sell copies of the Software, and to */
  16. /* permit persons to whom the Software is furnished to do so, subject to */
  17. /* the following conditions: */
  18. /* */
  19. /* The above copyright notice and this permission notice shall be */
  20. /* included in all copies or substantial portions of the Software. */
  21. /* */
  22. /* THE SOFTWARE IS 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. /* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
  29. /*************************************************************************/
  30. #include "rendering_device_vulkan.h"
  31. #include "core/config/project_settings.h"
  32. #include "core/io/compression.h"
  33. #include "core/io/file_access.h"
  34. #include "core/io/marshalls.h"
  35. #include "core/os/os.h"
  36. #include "core/templates/hashfuncs.h"
  37. #include "core/version.h"
  38. #include "drivers/vulkan/vulkan_context.h"
  39. #include "thirdparty/misc/smolv.h"
  40. //#define FORCE_FULL_BARRIER
  41. static const uint32_t SMALL_ALLOCATION_MAX_SIZE = 4096;
  42. // Get the Vulkan object information and possible stage access types (bitwise OR'd with incoming values).
  43. RenderingDeviceVulkan::Buffer *RenderingDeviceVulkan::_get_buffer_from_owner(RID p_buffer, VkPipelineStageFlags &r_stage_mask, VkAccessFlags &r_access_mask, BitField<BarrierMask> p_post_barrier) {
  44. Buffer *buffer = nullptr;
  45. if (vertex_buffer_owner.owns(p_buffer)) {
  46. buffer = vertex_buffer_owner.get_or_null(p_buffer);
  47. r_stage_mask |= VK_PIPELINE_STAGE_VERTEX_INPUT_BIT;
  48. r_access_mask |= VK_ACCESS_VERTEX_ATTRIBUTE_READ_BIT;
  49. if (buffer->usage & VK_BUFFER_USAGE_STORAGE_BUFFER_BIT) {
  50. if (p_post_barrier.has_flag(BARRIER_MASK_RASTER)) {
  51. r_access_mask |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  52. r_stage_mask |= VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT;
  53. }
  54. if (p_post_barrier.has_flag(BARRIER_MASK_COMPUTE)) {
  55. r_access_mask |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  56. r_stage_mask |= VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  57. }
  58. }
  59. } else if (index_buffer_owner.owns(p_buffer)) {
  60. r_stage_mask |= VK_PIPELINE_STAGE_VERTEX_INPUT_BIT;
  61. r_access_mask |= VK_ACCESS_INDEX_READ_BIT;
  62. buffer = index_buffer_owner.get_or_null(p_buffer);
  63. } else if (uniform_buffer_owner.owns(p_buffer)) {
  64. if (p_post_barrier.has_flag(BARRIER_MASK_RASTER)) {
  65. r_stage_mask |= VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT;
  66. }
  67. if (p_post_barrier.has_flag(BARRIER_MASK_COMPUTE)) {
  68. r_stage_mask |= VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  69. }
  70. r_access_mask |= VK_ACCESS_UNIFORM_READ_BIT;
  71. buffer = uniform_buffer_owner.get_or_null(p_buffer);
  72. } else if (texture_buffer_owner.owns(p_buffer)) {
  73. if (p_post_barrier.has_flag(BARRIER_MASK_RASTER)) {
  74. r_stage_mask |= VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT;
  75. r_access_mask |= VK_ACCESS_SHADER_READ_BIT;
  76. }
  77. if (p_post_barrier.has_flag(BARRIER_MASK_COMPUTE)) {
  78. r_stage_mask |= VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  79. r_access_mask |= VK_ACCESS_SHADER_READ_BIT;
  80. }
  81. buffer = &texture_buffer_owner.get_or_null(p_buffer)->buffer;
  82. } else if (storage_buffer_owner.owns(p_buffer)) {
  83. buffer = storage_buffer_owner.get_or_null(p_buffer);
  84. if (p_post_barrier.has_flag(BARRIER_MASK_RASTER)) {
  85. r_stage_mask |= VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT;
  86. r_access_mask |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  87. }
  88. if (p_post_barrier.has_flag(BARRIER_MASK_COMPUTE)) {
  89. r_stage_mask |= VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  90. r_access_mask |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  91. }
  92. if (buffer->usage & VK_BUFFER_USAGE_INDIRECT_BUFFER_BIT) {
  93. r_stage_mask |= VK_PIPELINE_STAGE_DRAW_INDIRECT_BIT;
  94. r_access_mask |= VK_ACCESS_INDIRECT_COMMAND_READ_BIT;
  95. }
  96. }
  97. return buffer;
  98. }
  99. static void update_external_dependency_for_store(VkSubpassDependency2KHR &dependency, bool is_sampled, bool is_storage, bool is_depth) {
  100. // Transitioning from write to read, protect the shaders that may use this next.
  101. // Allow for copies/image layout transitions.
  102. dependency.dstStageMask |= VK_PIPELINE_STAGE_TRANSFER_BIT;
  103. dependency.dstAccessMask |= VK_ACCESS_TRANSFER_READ_BIT;
  104. if (is_sampled) {
  105. dependency.dstStageMask |= VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT | VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  106. dependency.dstAccessMask |= VK_ACCESS_SHADER_READ_BIT;
  107. } else if (is_storage) {
  108. dependency.dstStageMask |= VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT | VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  109. dependency.dstAccessMask |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  110. } else {
  111. dependency.dstStageMask |= VK_PIPELINE_STAGE_COLOR_ATTACHMENT_OUTPUT_BIT;
  112. dependency.dstAccessMask |= VK_ACCESS_COLOR_ATTACHMENT_READ_BIT | VK_ACCESS_COLOR_ATTACHMENT_WRITE_BIT;
  113. }
  114. if (is_depth) {
  115. // Depth resources have additional stages that may be interested in them.
  116. dependency.dstStageMask |= VK_PIPELINE_STAGE_EARLY_FRAGMENT_TESTS_BIT | VK_PIPELINE_STAGE_LATE_FRAGMENT_TESTS_BIT;
  117. dependency.dstAccessMask |= VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_READ_BIT | VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_WRITE_BIT;
  118. }
  119. }
  120. void RenderingDeviceVulkan::_add_dependency(RID p_id, RID p_depends_on) {
  121. if (!dependency_map.has(p_depends_on)) {
  122. dependency_map[p_depends_on] = HashSet<RID>();
  123. }
  124. dependency_map[p_depends_on].insert(p_id);
  125. if (!reverse_dependency_map.has(p_id)) {
  126. reverse_dependency_map[p_id] = HashSet<RID>();
  127. }
  128. reverse_dependency_map[p_id].insert(p_depends_on);
  129. }
  130. void RenderingDeviceVulkan::_free_dependencies(RID p_id) {
  131. // Direct dependencies must be freed.
  132. HashMap<RID, HashSet<RID>>::Iterator E = dependency_map.find(p_id);
  133. if (E) {
  134. while (E->value.size()) {
  135. free(*E->value.begin());
  136. }
  137. dependency_map.remove(E);
  138. }
  139. // Reverse dependencies must be unreferenced.
  140. E = reverse_dependency_map.find(p_id);
  141. if (E) {
  142. for (const RID &F : E->value) {
  143. HashMap<RID, HashSet<RID>>::Iterator G = dependency_map.find(F);
  144. ERR_CONTINUE(!G);
  145. ERR_CONTINUE(!G->value.has(p_id));
  146. G->value.erase(p_id);
  147. }
  148. reverse_dependency_map.remove(E);
  149. }
  150. }
  151. const VkFormat RenderingDeviceVulkan::vulkan_formats[RenderingDevice::DATA_FORMAT_MAX] = {
  152. VK_FORMAT_R4G4_UNORM_PACK8,
  153. VK_FORMAT_R4G4B4A4_UNORM_PACK16,
  154. VK_FORMAT_B4G4R4A4_UNORM_PACK16,
  155. VK_FORMAT_R5G6B5_UNORM_PACK16,
  156. VK_FORMAT_B5G6R5_UNORM_PACK16,
  157. VK_FORMAT_R5G5B5A1_UNORM_PACK16,
  158. VK_FORMAT_B5G5R5A1_UNORM_PACK16,
  159. VK_FORMAT_A1R5G5B5_UNORM_PACK16,
  160. VK_FORMAT_R8_UNORM,
  161. VK_FORMAT_R8_SNORM,
  162. VK_FORMAT_R8_USCALED,
  163. VK_FORMAT_R8_SSCALED,
  164. VK_FORMAT_R8_UINT,
  165. VK_FORMAT_R8_SINT,
  166. VK_FORMAT_R8_SRGB,
  167. VK_FORMAT_R8G8_UNORM,
  168. VK_FORMAT_R8G8_SNORM,
  169. VK_FORMAT_R8G8_USCALED,
  170. VK_FORMAT_R8G8_SSCALED,
  171. VK_FORMAT_R8G8_UINT,
  172. VK_FORMAT_R8G8_SINT,
  173. VK_FORMAT_R8G8_SRGB,
  174. VK_FORMAT_R8G8B8_UNORM,
  175. VK_FORMAT_R8G8B8_SNORM,
  176. VK_FORMAT_R8G8B8_USCALED,
  177. VK_FORMAT_R8G8B8_SSCALED,
  178. VK_FORMAT_R8G8B8_UINT,
  179. VK_FORMAT_R8G8B8_SINT,
  180. VK_FORMAT_R8G8B8_SRGB,
  181. VK_FORMAT_B8G8R8_UNORM,
  182. VK_FORMAT_B8G8R8_SNORM,
  183. VK_FORMAT_B8G8R8_USCALED,
  184. VK_FORMAT_B8G8R8_SSCALED,
  185. VK_FORMAT_B8G8R8_UINT,
  186. VK_FORMAT_B8G8R8_SINT,
  187. VK_FORMAT_B8G8R8_SRGB,
  188. VK_FORMAT_R8G8B8A8_UNORM,
  189. VK_FORMAT_R8G8B8A8_SNORM,
  190. VK_FORMAT_R8G8B8A8_USCALED,
  191. VK_FORMAT_R8G8B8A8_SSCALED,
  192. VK_FORMAT_R8G8B8A8_UINT,
  193. VK_FORMAT_R8G8B8A8_SINT,
  194. VK_FORMAT_R8G8B8A8_SRGB,
  195. VK_FORMAT_B8G8R8A8_UNORM,
  196. VK_FORMAT_B8G8R8A8_SNORM,
  197. VK_FORMAT_B8G8R8A8_USCALED,
  198. VK_FORMAT_B8G8R8A8_SSCALED,
  199. VK_FORMAT_B8G8R8A8_UINT,
  200. VK_FORMAT_B8G8R8A8_SINT,
  201. VK_FORMAT_B8G8R8A8_SRGB,
  202. VK_FORMAT_A8B8G8R8_UNORM_PACK32,
  203. VK_FORMAT_A8B8G8R8_SNORM_PACK32,
  204. VK_FORMAT_A8B8G8R8_USCALED_PACK32,
  205. VK_FORMAT_A8B8G8R8_SSCALED_PACK32,
  206. VK_FORMAT_A8B8G8R8_UINT_PACK32,
  207. VK_FORMAT_A8B8G8R8_SINT_PACK32,
  208. VK_FORMAT_A8B8G8R8_SRGB_PACK32,
  209. VK_FORMAT_A2R10G10B10_UNORM_PACK32,
  210. VK_FORMAT_A2R10G10B10_SNORM_PACK32,
  211. VK_FORMAT_A2R10G10B10_USCALED_PACK32,
  212. VK_FORMAT_A2R10G10B10_SSCALED_PACK32,
  213. VK_FORMAT_A2R10G10B10_UINT_PACK32,
  214. VK_FORMAT_A2R10G10B10_SINT_PACK32,
  215. VK_FORMAT_A2B10G10R10_UNORM_PACK32,
  216. VK_FORMAT_A2B10G10R10_SNORM_PACK32,
  217. VK_FORMAT_A2B10G10R10_USCALED_PACK32,
  218. VK_FORMAT_A2B10G10R10_SSCALED_PACK32,
  219. VK_FORMAT_A2B10G10R10_UINT_PACK32,
  220. VK_FORMAT_A2B10G10R10_SINT_PACK32,
  221. VK_FORMAT_R16_UNORM,
  222. VK_FORMAT_R16_SNORM,
  223. VK_FORMAT_R16_USCALED,
  224. VK_FORMAT_R16_SSCALED,
  225. VK_FORMAT_R16_UINT,
  226. VK_FORMAT_R16_SINT,
  227. VK_FORMAT_R16_SFLOAT,
  228. VK_FORMAT_R16G16_UNORM,
  229. VK_FORMAT_R16G16_SNORM,
  230. VK_FORMAT_R16G16_USCALED,
  231. VK_FORMAT_R16G16_SSCALED,
  232. VK_FORMAT_R16G16_UINT,
  233. VK_FORMAT_R16G16_SINT,
  234. VK_FORMAT_R16G16_SFLOAT,
  235. VK_FORMAT_R16G16B16_UNORM,
  236. VK_FORMAT_R16G16B16_SNORM,
  237. VK_FORMAT_R16G16B16_USCALED,
  238. VK_FORMAT_R16G16B16_SSCALED,
  239. VK_FORMAT_R16G16B16_UINT,
  240. VK_FORMAT_R16G16B16_SINT,
  241. VK_FORMAT_R16G16B16_SFLOAT,
  242. VK_FORMAT_R16G16B16A16_UNORM,
  243. VK_FORMAT_R16G16B16A16_SNORM,
  244. VK_FORMAT_R16G16B16A16_USCALED,
  245. VK_FORMAT_R16G16B16A16_SSCALED,
  246. VK_FORMAT_R16G16B16A16_UINT,
  247. VK_FORMAT_R16G16B16A16_SINT,
  248. VK_FORMAT_R16G16B16A16_SFLOAT,
  249. VK_FORMAT_R32_UINT,
  250. VK_FORMAT_R32_SINT,
  251. VK_FORMAT_R32_SFLOAT,
  252. VK_FORMAT_R32G32_UINT,
  253. VK_FORMAT_R32G32_SINT,
  254. VK_FORMAT_R32G32_SFLOAT,
  255. VK_FORMAT_R32G32B32_UINT,
  256. VK_FORMAT_R32G32B32_SINT,
  257. VK_FORMAT_R32G32B32_SFLOAT,
  258. VK_FORMAT_R32G32B32A32_UINT,
  259. VK_FORMAT_R32G32B32A32_SINT,
  260. VK_FORMAT_R32G32B32A32_SFLOAT,
  261. VK_FORMAT_R64_UINT,
  262. VK_FORMAT_R64_SINT,
  263. VK_FORMAT_R64_SFLOAT,
  264. VK_FORMAT_R64G64_UINT,
  265. VK_FORMAT_R64G64_SINT,
  266. VK_FORMAT_R64G64_SFLOAT,
  267. VK_FORMAT_R64G64B64_UINT,
  268. VK_FORMAT_R64G64B64_SINT,
  269. VK_FORMAT_R64G64B64_SFLOAT,
  270. VK_FORMAT_R64G64B64A64_UINT,
  271. VK_FORMAT_R64G64B64A64_SINT,
  272. VK_FORMAT_R64G64B64A64_SFLOAT,
  273. VK_FORMAT_B10G11R11_UFLOAT_PACK32,
  274. VK_FORMAT_E5B9G9R9_UFLOAT_PACK32,
  275. VK_FORMAT_D16_UNORM,
  276. VK_FORMAT_X8_D24_UNORM_PACK32,
  277. VK_FORMAT_D32_SFLOAT,
  278. VK_FORMAT_S8_UINT,
  279. VK_FORMAT_D16_UNORM_S8_UINT,
  280. VK_FORMAT_D24_UNORM_S8_UINT,
  281. VK_FORMAT_D32_SFLOAT_S8_UINT,
  282. VK_FORMAT_BC1_RGB_UNORM_BLOCK,
  283. VK_FORMAT_BC1_RGB_SRGB_BLOCK,
  284. VK_FORMAT_BC1_RGBA_UNORM_BLOCK,
  285. VK_FORMAT_BC1_RGBA_SRGB_BLOCK,
  286. VK_FORMAT_BC2_UNORM_BLOCK,
  287. VK_FORMAT_BC2_SRGB_BLOCK,
  288. VK_FORMAT_BC3_UNORM_BLOCK,
  289. VK_FORMAT_BC3_SRGB_BLOCK,
  290. VK_FORMAT_BC4_UNORM_BLOCK,
  291. VK_FORMAT_BC4_SNORM_BLOCK,
  292. VK_FORMAT_BC5_UNORM_BLOCK,
  293. VK_FORMAT_BC5_SNORM_BLOCK,
  294. VK_FORMAT_BC6H_UFLOAT_BLOCK,
  295. VK_FORMAT_BC6H_SFLOAT_BLOCK,
  296. VK_FORMAT_BC7_UNORM_BLOCK,
  297. VK_FORMAT_BC7_SRGB_BLOCK,
  298. VK_FORMAT_ETC2_R8G8B8_UNORM_BLOCK,
  299. VK_FORMAT_ETC2_R8G8B8_SRGB_BLOCK,
  300. VK_FORMAT_ETC2_R8G8B8A1_UNORM_BLOCK,
  301. VK_FORMAT_ETC2_R8G8B8A1_SRGB_BLOCK,
  302. VK_FORMAT_ETC2_R8G8B8A8_UNORM_BLOCK,
  303. VK_FORMAT_ETC2_R8G8B8A8_SRGB_BLOCK,
  304. VK_FORMAT_EAC_R11_UNORM_BLOCK,
  305. VK_FORMAT_EAC_R11_SNORM_BLOCK,
  306. VK_FORMAT_EAC_R11G11_UNORM_BLOCK,
  307. VK_FORMAT_EAC_R11G11_SNORM_BLOCK,
  308. VK_FORMAT_ASTC_4x4_UNORM_BLOCK,
  309. VK_FORMAT_ASTC_4x4_SRGB_BLOCK,
  310. VK_FORMAT_ASTC_5x4_UNORM_BLOCK,
  311. VK_FORMAT_ASTC_5x4_SRGB_BLOCK,
  312. VK_FORMAT_ASTC_5x5_UNORM_BLOCK,
  313. VK_FORMAT_ASTC_5x5_SRGB_BLOCK,
  314. VK_FORMAT_ASTC_6x5_UNORM_BLOCK,
  315. VK_FORMAT_ASTC_6x5_SRGB_BLOCK,
  316. VK_FORMAT_ASTC_6x6_UNORM_BLOCK,
  317. VK_FORMAT_ASTC_6x6_SRGB_BLOCK,
  318. VK_FORMAT_ASTC_8x5_UNORM_BLOCK,
  319. VK_FORMAT_ASTC_8x5_SRGB_BLOCK,
  320. VK_FORMAT_ASTC_8x6_UNORM_BLOCK,
  321. VK_FORMAT_ASTC_8x6_SRGB_BLOCK,
  322. VK_FORMAT_ASTC_8x8_UNORM_BLOCK,
  323. VK_FORMAT_ASTC_8x8_SRGB_BLOCK,
  324. VK_FORMAT_ASTC_10x5_UNORM_BLOCK,
  325. VK_FORMAT_ASTC_10x5_SRGB_BLOCK,
  326. VK_FORMAT_ASTC_10x6_UNORM_BLOCK,
  327. VK_FORMAT_ASTC_10x6_SRGB_BLOCK,
  328. VK_FORMAT_ASTC_10x8_UNORM_BLOCK,
  329. VK_FORMAT_ASTC_10x8_SRGB_BLOCK,
  330. VK_FORMAT_ASTC_10x10_UNORM_BLOCK,
  331. VK_FORMAT_ASTC_10x10_SRGB_BLOCK,
  332. VK_FORMAT_ASTC_12x10_UNORM_BLOCK,
  333. VK_FORMAT_ASTC_12x10_SRGB_BLOCK,
  334. VK_FORMAT_ASTC_12x12_UNORM_BLOCK,
  335. VK_FORMAT_ASTC_12x12_SRGB_BLOCK,
  336. VK_FORMAT_G8B8G8R8_422_UNORM,
  337. VK_FORMAT_B8G8R8G8_422_UNORM,
  338. VK_FORMAT_G8_B8_R8_3PLANE_420_UNORM,
  339. VK_FORMAT_G8_B8R8_2PLANE_420_UNORM,
  340. VK_FORMAT_G8_B8_R8_3PLANE_422_UNORM,
  341. VK_FORMAT_G8_B8R8_2PLANE_422_UNORM,
  342. VK_FORMAT_G8_B8_R8_3PLANE_444_UNORM,
  343. VK_FORMAT_R10X6_UNORM_PACK16,
  344. VK_FORMAT_R10X6G10X6_UNORM_2PACK16,
  345. VK_FORMAT_R10X6G10X6B10X6A10X6_UNORM_4PACK16,
  346. VK_FORMAT_G10X6B10X6G10X6R10X6_422_UNORM_4PACK16,
  347. VK_FORMAT_B10X6G10X6R10X6G10X6_422_UNORM_4PACK16,
  348. VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_420_UNORM_3PACK16,
  349. VK_FORMAT_G10X6_B10X6R10X6_2PLANE_420_UNORM_3PACK16,
  350. VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_422_UNORM_3PACK16,
  351. VK_FORMAT_G10X6_B10X6R10X6_2PLANE_422_UNORM_3PACK16,
  352. VK_FORMAT_G10X6_B10X6_R10X6_3PLANE_444_UNORM_3PACK16,
  353. VK_FORMAT_R12X4_UNORM_PACK16,
  354. VK_FORMAT_R12X4G12X4_UNORM_2PACK16,
  355. VK_FORMAT_R12X4G12X4B12X4A12X4_UNORM_4PACK16,
  356. VK_FORMAT_G12X4B12X4G12X4R12X4_422_UNORM_4PACK16,
  357. VK_FORMAT_B12X4G12X4R12X4G12X4_422_UNORM_4PACK16,
  358. VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_420_UNORM_3PACK16,
  359. VK_FORMAT_G12X4_B12X4R12X4_2PLANE_420_UNORM_3PACK16,
  360. VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_422_UNORM_3PACK16,
  361. VK_FORMAT_G12X4_B12X4R12X4_2PLANE_422_UNORM_3PACK16,
  362. VK_FORMAT_G12X4_B12X4_R12X4_3PLANE_444_UNORM_3PACK16,
  363. VK_FORMAT_G16B16G16R16_422_UNORM,
  364. VK_FORMAT_B16G16R16G16_422_UNORM,
  365. VK_FORMAT_G16_B16_R16_3PLANE_420_UNORM,
  366. VK_FORMAT_G16_B16R16_2PLANE_420_UNORM,
  367. VK_FORMAT_G16_B16_R16_3PLANE_422_UNORM,
  368. VK_FORMAT_G16_B16R16_2PLANE_422_UNORM,
  369. VK_FORMAT_G16_B16_R16_3PLANE_444_UNORM,
  370. };
  371. const char *RenderingDeviceVulkan::named_formats[RenderingDevice::DATA_FORMAT_MAX] = {
  372. "R4G4_Unorm_Pack8",
  373. "R4G4B4A4_Unorm_Pack16",
  374. "B4G4R4A4_Unorm_Pack16",
  375. "R5G6B5_Unorm_Pack16",
  376. "B5G6R5_Unorm_Pack16",
  377. "R5G5B5A1_Unorm_Pack16",
  378. "B5G5R5A1_Unorm_Pack16",
  379. "A1R5G5B5_Unorm_Pack16",
  380. "R8_Unorm",
  381. "R8_Snorm",
  382. "R8_Uscaled",
  383. "R8_Sscaled",
  384. "R8_Uint",
  385. "R8_Sint",
  386. "R8_Srgb",
  387. "R8G8_Unorm",
  388. "R8G8_Snorm",
  389. "R8G8_Uscaled",
  390. "R8G8_Sscaled",
  391. "R8G8_Uint",
  392. "R8G8_Sint",
  393. "R8G8_Srgb",
  394. "R8G8B8_Unorm",
  395. "R8G8B8_Snorm",
  396. "R8G8B8_Uscaled",
  397. "R8G8B8_Sscaled",
  398. "R8G8B8_Uint",
  399. "R8G8B8_Sint",
  400. "R8G8B8_Srgb",
  401. "B8G8R8_Unorm",
  402. "B8G8R8_Snorm",
  403. "B8G8R8_Uscaled",
  404. "B8G8R8_Sscaled",
  405. "B8G8R8_Uint",
  406. "B8G8R8_Sint",
  407. "B8G8R8_Srgb",
  408. "R8G8B8A8_Unorm",
  409. "R8G8B8A8_Snorm",
  410. "R8G8B8A8_Uscaled",
  411. "R8G8B8A8_Sscaled",
  412. "R8G8B8A8_Uint",
  413. "R8G8B8A8_Sint",
  414. "R8G8B8A8_Srgb",
  415. "B8G8R8A8_Unorm",
  416. "B8G8R8A8_Snorm",
  417. "B8G8R8A8_Uscaled",
  418. "B8G8R8A8_Sscaled",
  419. "B8G8R8A8_Uint",
  420. "B8G8R8A8_Sint",
  421. "B8G8R8A8_Srgb",
  422. "A8B8G8R8_Unorm_Pack32",
  423. "A8B8G8R8_Snorm_Pack32",
  424. "A8B8G8R8_Uscaled_Pack32",
  425. "A8B8G8R8_Sscaled_Pack32",
  426. "A8B8G8R8_Uint_Pack32",
  427. "A8B8G8R8_Sint_Pack32",
  428. "A8B8G8R8_Srgb_Pack32",
  429. "A2R10G10B10_Unorm_Pack32",
  430. "A2R10G10B10_Snorm_Pack32",
  431. "A2R10G10B10_Uscaled_Pack32",
  432. "A2R10G10B10_Sscaled_Pack32",
  433. "A2R10G10B10_Uint_Pack32",
  434. "A2R10G10B10_Sint_Pack32",
  435. "A2B10G10R10_Unorm_Pack32",
  436. "A2B10G10R10_Snorm_Pack32",
  437. "A2B10G10R10_Uscaled_Pack32",
  438. "A2B10G10R10_Sscaled_Pack32",
  439. "A2B10G10R10_Uint_Pack32",
  440. "A2B10G10R10_Sint_Pack32",
  441. "R16_Unorm",
  442. "R16_Snorm",
  443. "R16_Uscaled",
  444. "R16_Sscaled",
  445. "R16_Uint",
  446. "R16_Sint",
  447. "R16_Sfloat",
  448. "R16G16_Unorm",
  449. "R16G16_Snorm",
  450. "R16G16_Uscaled",
  451. "R16G16_Sscaled",
  452. "R16G16_Uint",
  453. "R16G16_Sint",
  454. "R16G16_Sfloat",
  455. "R16G16B16_Unorm",
  456. "R16G16B16_Snorm",
  457. "R16G16B16_Uscaled",
  458. "R16G16B16_Sscaled",
  459. "R16G16B16_Uint",
  460. "R16G16B16_Sint",
  461. "R16G16B16_Sfloat",
  462. "R16G16B16A16_Unorm",
  463. "R16G16B16A16_Snorm",
  464. "R16G16B16A16_Uscaled",
  465. "R16G16B16A16_Sscaled",
  466. "R16G16B16A16_Uint",
  467. "R16G16B16A16_Sint",
  468. "R16G16B16A16_Sfloat",
  469. "R32_Uint",
  470. "R32_Sint",
  471. "R32_Sfloat",
  472. "R32G32_Uint",
  473. "R32G32_Sint",
  474. "R32G32_Sfloat",
  475. "R32G32B32_Uint",
  476. "R32G32B32_Sint",
  477. "R32G32B32_Sfloat",
  478. "R32G32B32A32_Uint",
  479. "R32G32B32A32_Sint",
  480. "R32G32B32A32_Sfloat",
  481. "R64_Uint",
  482. "R64_Sint",
  483. "R64_Sfloat",
  484. "R64G64_Uint",
  485. "R64G64_Sint",
  486. "R64G64_Sfloat",
  487. "R64G64B64_Uint",
  488. "R64G64B64_Sint",
  489. "R64G64B64_Sfloat",
  490. "R64G64B64A64_Uint",
  491. "R64G64B64A64_Sint",
  492. "R64G64B64A64_Sfloat",
  493. "B10G11R11_Ufloat_Pack32",
  494. "E5B9G9R9_Ufloat_Pack32",
  495. "D16_Unorm",
  496. "X8_D24_Unorm_Pack32",
  497. "D32_Sfloat",
  498. "S8_Uint",
  499. "D16_Unorm_S8_Uint",
  500. "D24_Unorm_S8_Uint",
  501. "D32_Sfloat_S8_Uint",
  502. "Bc1_Rgb_Unorm_Block",
  503. "Bc1_Rgb_Srgb_Block",
  504. "Bc1_Rgba_Unorm_Block",
  505. "Bc1_Rgba_Srgb_Block",
  506. "Bc2_Unorm_Block",
  507. "Bc2_Srgb_Block",
  508. "Bc3_Unorm_Block",
  509. "Bc3_Srgb_Block",
  510. "Bc4_Unorm_Block",
  511. "Bc4_Snorm_Block",
  512. "Bc5_Unorm_Block",
  513. "Bc5_Snorm_Block",
  514. "Bc6H_Ufloat_Block",
  515. "Bc6H_Sfloat_Block",
  516. "Bc7_Unorm_Block",
  517. "Bc7_Srgb_Block",
  518. "Etc2_R8G8B8_Unorm_Block",
  519. "Etc2_R8G8B8_Srgb_Block",
  520. "Etc2_R8G8B8A1_Unorm_Block",
  521. "Etc2_R8G8B8A1_Srgb_Block",
  522. "Etc2_R8G8B8A8_Unorm_Block",
  523. "Etc2_R8G8B8A8_Srgb_Block",
  524. "Eac_R11_Unorm_Block",
  525. "Eac_R11_Snorm_Block",
  526. "Eac_R11G11_Unorm_Block",
  527. "Eac_R11G11_Snorm_Block",
  528. "Astc_4X4_Unorm_Block",
  529. "Astc_4X4_Srgb_Block",
  530. "Astc_5X4_Unorm_Block",
  531. "Astc_5X4_Srgb_Block",
  532. "Astc_5X5_Unorm_Block",
  533. "Astc_5X5_Srgb_Block",
  534. "Astc_6X5_Unorm_Block",
  535. "Astc_6X5_Srgb_Block",
  536. "Astc_6X6_Unorm_Block",
  537. "Astc_6X6_Srgb_Block",
  538. "Astc_8X5_Unorm_Block",
  539. "Astc_8X5_Srgb_Block",
  540. "Astc_8X6_Unorm_Block",
  541. "Astc_8X6_Srgb_Block",
  542. "Astc_8X8_Unorm_Block",
  543. "Astc_8X8_Srgb_Block",
  544. "Astc_10X5_Unorm_Block",
  545. "Astc_10X5_Srgb_Block",
  546. "Astc_10X6_Unorm_Block",
  547. "Astc_10X6_Srgb_Block",
  548. "Astc_10X8_Unorm_Block",
  549. "Astc_10X8_Srgb_Block",
  550. "Astc_10X10_Unorm_Block",
  551. "Astc_10X10_Srgb_Block",
  552. "Astc_12X10_Unorm_Block",
  553. "Astc_12X10_Srgb_Block",
  554. "Astc_12X12_Unorm_Block",
  555. "Astc_12X12_Srgb_Block",
  556. "G8B8G8R8_422_Unorm",
  557. "B8G8R8G8_422_Unorm",
  558. "G8_B8_R8_3Plane_420_Unorm",
  559. "G8_B8R8_2Plane_420_Unorm",
  560. "G8_B8_R8_3Plane_422_Unorm",
  561. "G8_B8R8_2Plane_422_Unorm",
  562. "G8_B8_R8_3Plane_444_Unorm",
  563. "R10X6_Unorm_Pack16",
  564. "R10X6G10X6_Unorm_2Pack16",
  565. "R10X6G10X6B10X6A10X6_Unorm_4Pack16",
  566. "G10X6B10X6G10X6R10X6_422_Unorm_4Pack16",
  567. "B10X6G10X6R10X6G10X6_422_Unorm_4Pack16",
  568. "G10X6_B10X6_R10X6_3Plane_420_Unorm_3Pack16",
  569. "G10X6_B10X6R10X6_2Plane_420_Unorm_3Pack16",
  570. "G10X6_B10X6_R10X6_3Plane_422_Unorm_3Pack16",
  571. "G10X6_B10X6R10X6_2Plane_422_Unorm_3Pack16",
  572. "G10X6_B10X6_R10X6_3Plane_444_Unorm_3Pack16",
  573. "R12X4_Unorm_Pack16",
  574. "R12X4G12X4_Unorm_2Pack16",
  575. "R12X4G12X4B12X4A12X4_Unorm_4Pack16",
  576. "G12X4B12X4G12X4R12X4_422_Unorm_4Pack16",
  577. "B12X4G12X4R12X4G12X4_422_Unorm_4Pack16",
  578. "G12X4_B12X4_R12X4_3Plane_420_Unorm_3Pack16",
  579. "G12X4_B12X4R12X4_2Plane_420_Unorm_3Pack16",
  580. "G12X4_B12X4_R12X4_3Plane_422_Unorm_3Pack16",
  581. "G12X4_B12X4R12X4_2Plane_422_Unorm_3Pack16",
  582. "G12X4_B12X4_R12X4_3Plane_444_Unorm_3Pack16",
  583. "G16B16G16R16_422_Unorm",
  584. "B16G16R16G16_422_Unorm",
  585. "G16_B16_R16_3Plane_420_Unorm",
  586. "G16_B16R16_2Plane_420_Unorm",
  587. "G16_B16_R16_3Plane_422_Unorm",
  588. "G16_B16R16_2Plane_422_Unorm",
  589. "G16_B16_R16_3Plane_444_Unorm",
  590. };
  591. int RenderingDeviceVulkan::get_format_vertex_size(DataFormat p_format) {
  592. switch (p_format) {
  593. case DATA_FORMAT_R8_UNORM:
  594. case DATA_FORMAT_R8_SNORM:
  595. case DATA_FORMAT_R8_UINT:
  596. case DATA_FORMAT_R8_SINT:
  597. case DATA_FORMAT_R8G8_UNORM:
  598. case DATA_FORMAT_R8G8_SNORM:
  599. case DATA_FORMAT_R8G8_UINT:
  600. case DATA_FORMAT_R8G8_SINT:
  601. case DATA_FORMAT_R8G8B8_UNORM:
  602. case DATA_FORMAT_R8G8B8_SNORM:
  603. case DATA_FORMAT_R8G8B8_UINT:
  604. case DATA_FORMAT_R8G8B8_SINT:
  605. case DATA_FORMAT_B8G8R8_UNORM:
  606. case DATA_FORMAT_B8G8R8_SNORM:
  607. case DATA_FORMAT_B8G8R8_UINT:
  608. case DATA_FORMAT_B8G8R8_SINT:
  609. case DATA_FORMAT_R8G8B8A8_UNORM:
  610. case DATA_FORMAT_R8G8B8A8_SNORM:
  611. case DATA_FORMAT_R8G8B8A8_UINT:
  612. case DATA_FORMAT_R8G8B8A8_SINT:
  613. case DATA_FORMAT_B8G8R8A8_UNORM:
  614. case DATA_FORMAT_B8G8R8A8_SNORM:
  615. case DATA_FORMAT_B8G8R8A8_UINT:
  616. case DATA_FORMAT_B8G8R8A8_SINT:
  617. case DATA_FORMAT_A2B10G10R10_UNORM_PACK32:
  618. return 4;
  619. case DATA_FORMAT_R16_UNORM:
  620. case DATA_FORMAT_R16_SNORM:
  621. case DATA_FORMAT_R16_UINT:
  622. case DATA_FORMAT_R16_SINT:
  623. case DATA_FORMAT_R16_SFLOAT:
  624. return 4;
  625. case DATA_FORMAT_R16G16_UNORM:
  626. case DATA_FORMAT_R16G16_SNORM:
  627. case DATA_FORMAT_R16G16_UINT:
  628. case DATA_FORMAT_R16G16_SINT:
  629. case DATA_FORMAT_R16G16_SFLOAT:
  630. return 4;
  631. case DATA_FORMAT_R16G16B16_UNORM:
  632. case DATA_FORMAT_R16G16B16_SNORM:
  633. case DATA_FORMAT_R16G16B16_UINT:
  634. case DATA_FORMAT_R16G16B16_SINT:
  635. case DATA_FORMAT_R16G16B16_SFLOAT:
  636. return 8;
  637. case DATA_FORMAT_R16G16B16A16_UNORM:
  638. case DATA_FORMAT_R16G16B16A16_SNORM:
  639. case DATA_FORMAT_R16G16B16A16_UINT:
  640. case DATA_FORMAT_R16G16B16A16_SINT:
  641. case DATA_FORMAT_R16G16B16A16_SFLOAT:
  642. return 8;
  643. case DATA_FORMAT_R32_UINT:
  644. case DATA_FORMAT_R32_SINT:
  645. case DATA_FORMAT_R32_SFLOAT:
  646. return 4;
  647. case DATA_FORMAT_R32G32_UINT:
  648. case DATA_FORMAT_R32G32_SINT:
  649. case DATA_FORMAT_R32G32_SFLOAT:
  650. return 8;
  651. case DATA_FORMAT_R32G32B32_UINT:
  652. case DATA_FORMAT_R32G32B32_SINT:
  653. case DATA_FORMAT_R32G32B32_SFLOAT:
  654. return 12;
  655. case DATA_FORMAT_R32G32B32A32_UINT:
  656. case DATA_FORMAT_R32G32B32A32_SINT:
  657. case DATA_FORMAT_R32G32B32A32_SFLOAT:
  658. return 16;
  659. case DATA_FORMAT_R64_UINT:
  660. case DATA_FORMAT_R64_SINT:
  661. case DATA_FORMAT_R64_SFLOAT:
  662. return 8;
  663. case DATA_FORMAT_R64G64_UINT:
  664. case DATA_FORMAT_R64G64_SINT:
  665. case DATA_FORMAT_R64G64_SFLOAT:
  666. return 16;
  667. case DATA_FORMAT_R64G64B64_UINT:
  668. case DATA_FORMAT_R64G64B64_SINT:
  669. case DATA_FORMAT_R64G64B64_SFLOAT:
  670. return 24;
  671. case DATA_FORMAT_R64G64B64A64_UINT:
  672. case DATA_FORMAT_R64G64B64A64_SINT:
  673. case DATA_FORMAT_R64G64B64A64_SFLOAT:
  674. return 32;
  675. default:
  676. return 0;
  677. }
  678. }
  679. uint32_t RenderingDeviceVulkan::get_image_format_pixel_size(DataFormat p_format) {
  680. switch (p_format) {
  681. case DATA_FORMAT_R4G4_UNORM_PACK8:
  682. return 1;
  683. case DATA_FORMAT_R4G4B4A4_UNORM_PACK16:
  684. case DATA_FORMAT_B4G4R4A4_UNORM_PACK16:
  685. case DATA_FORMAT_R5G6B5_UNORM_PACK16:
  686. case DATA_FORMAT_B5G6R5_UNORM_PACK16:
  687. case DATA_FORMAT_R5G5B5A1_UNORM_PACK16:
  688. case DATA_FORMAT_B5G5R5A1_UNORM_PACK16:
  689. case DATA_FORMAT_A1R5G5B5_UNORM_PACK16:
  690. return 2;
  691. case DATA_FORMAT_R8_UNORM:
  692. case DATA_FORMAT_R8_SNORM:
  693. case DATA_FORMAT_R8_USCALED:
  694. case DATA_FORMAT_R8_SSCALED:
  695. case DATA_FORMAT_R8_UINT:
  696. case DATA_FORMAT_R8_SINT:
  697. case DATA_FORMAT_R8_SRGB:
  698. return 1;
  699. case DATA_FORMAT_R8G8_UNORM:
  700. case DATA_FORMAT_R8G8_SNORM:
  701. case DATA_FORMAT_R8G8_USCALED:
  702. case DATA_FORMAT_R8G8_SSCALED:
  703. case DATA_FORMAT_R8G8_UINT:
  704. case DATA_FORMAT_R8G8_SINT:
  705. case DATA_FORMAT_R8G8_SRGB:
  706. return 2;
  707. case DATA_FORMAT_R8G8B8_UNORM:
  708. case DATA_FORMAT_R8G8B8_SNORM:
  709. case DATA_FORMAT_R8G8B8_USCALED:
  710. case DATA_FORMAT_R8G8B8_SSCALED:
  711. case DATA_FORMAT_R8G8B8_UINT:
  712. case DATA_FORMAT_R8G8B8_SINT:
  713. case DATA_FORMAT_R8G8B8_SRGB:
  714. case DATA_FORMAT_B8G8R8_UNORM:
  715. case DATA_FORMAT_B8G8R8_SNORM:
  716. case DATA_FORMAT_B8G8R8_USCALED:
  717. case DATA_FORMAT_B8G8R8_SSCALED:
  718. case DATA_FORMAT_B8G8R8_UINT:
  719. case DATA_FORMAT_B8G8R8_SINT:
  720. case DATA_FORMAT_B8G8R8_SRGB:
  721. return 3;
  722. case DATA_FORMAT_R8G8B8A8_UNORM:
  723. case DATA_FORMAT_R8G8B8A8_SNORM:
  724. case DATA_FORMAT_R8G8B8A8_USCALED:
  725. case DATA_FORMAT_R8G8B8A8_SSCALED:
  726. case DATA_FORMAT_R8G8B8A8_UINT:
  727. case DATA_FORMAT_R8G8B8A8_SINT:
  728. case DATA_FORMAT_R8G8B8A8_SRGB:
  729. case DATA_FORMAT_B8G8R8A8_UNORM:
  730. case DATA_FORMAT_B8G8R8A8_SNORM:
  731. case DATA_FORMAT_B8G8R8A8_USCALED:
  732. case DATA_FORMAT_B8G8R8A8_SSCALED:
  733. case DATA_FORMAT_B8G8R8A8_UINT:
  734. case DATA_FORMAT_B8G8R8A8_SINT:
  735. case DATA_FORMAT_B8G8R8A8_SRGB:
  736. return 4;
  737. case DATA_FORMAT_A8B8G8R8_UNORM_PACK32:
  738. case DATA_FORMAT_A8B8G8R8_SNORM_PACK32:
  739. case DATA_FORMAT_A8B8G8R8_USCALED_PACK32:
  740. case DATA_FORMAT_A8B8G8R8_SSCALED_PACK32:
  741. case DATA_FORMAT_A8B8G8R8_UINT_PACK32:
  742. case DATA_FORMAT_A8B8G8R8_SINT_PACK32:
  743. case DATA_FORMAT_A8B8G8R8_SRGB_PACK32:
  744. case DATA_FORMAT_A2R10G10B10_UNORM_PACK32:
  745. case DATA_FORMAT_A2R10G10B10_SNORM_PACK32:
  746. case DATA_FORMAT_A2R10G10B10_USCALED_PACK32:
  747. case DATA_FORMAT_A2R10G10B10_SSCALED_PACK32:
  748. case DATA_FORMAT_A2R10G10B10_UINT_PACK32:
  749. case DATA_FORMAT_A2R10G10B10_SINT_PACK32:
  750. case DATA_FORMAT_A2B10G10R10_UNORM_PACK32:
  751. case DATA_FORMAT_A2B10G10R10_SNORM_PACK32:
  752. case DATA_FORMAT_A2B10G10R10_USCALED_PACK32:
  753. case DATA_FORMAT_A2B10G10R10_SSCALED_PACK32:
  754. case DATA_FORMAT_A2B10G10R10_UINT_PACK32:
  755. case DATA_FORMAT_A2B10G10R10_SINT_PACK32:
  756. return 4;
  757. case DATA_FORMAT_R16_UNORM:
  758. case DATA_FORMAT_R16_SNORM:
  759. case DATA_FORMAT_R16_USCALED:
  760. case DATA_FORMAT_R16_SSCALED:
  761. case DATA_FORMAT_R16_UINT:
  762. case DATA_FORMAT_R16_SINT:
  763. case DATA_FORMAT_R16_SFLOAT:
  764. return 2;
  765. case DATA_FORMAT_R16G16_UNORM:
  766. case DATA_FORMAT_R16G16_SNORM:
  767. case DATA_FORMAT_R16G16_USCALED:
  768. case DATA_FORMAT_R16G16_SSCALED:
  769. case DATA_FORMAT_R16G16_UINT:
  770. case DATA_FORMAT_R16G16_SINT:
  771. case DATA_FORMAT_R16G16_SFLOAT:
  772. return 4;
  773. case DATA_FORMAT_R16G16B16_UNORM:
  774. case DATA_FORMAT_R16G16B16_SNORM:
  775. case DATA_FORMAT_R16G16B16_USCALED:
  776. case DATA_FORMAT_R16G16B16_SSCALED:
  777. case DATA_FORMAT_R16G16B16_UINT:
  778. case DATA_FORMAT_R16G16B16_SINT:
  779. case DATA_FORMAT_R16G16B16_SFLOAT:
  780. return 6;
  781. case DATA_FORMAT_R16G16B16A16_UNORM:
  782. case DATA_FORMAT_R16G16B16A16_SNORM:
  783. case DATA_FORMAT_R16G16B16A16_USCALED:
  784. case DATA_FORMAT_R16G16B16A16_SSCALED:
  785. case DATA_FORMAT_R16G16B16A16_UINT:
  786. case DATA_FORMAT_R16G16B16A16_SINT:
  787. case DATA_FORMAT_R16G16B16A16_SFLOAT:
  788. return 8;
  789. case DATA_FORMAT_R32_UINT:
  790. case DATA_FORMAT_R32_SINT:
  791. case DATA_FORMAT_R32_SFLOAT:
  792. return 4;
  793. case DATA_FORMAT_R32G32_UINT:
  794. case DATA_FORMAT_R32G32_SINT:
  795. case DATA_FORMAT_R32G32_SFLOAT:
  796. return 8;
  797. case DATA_FORMAT_R32G32B32_UINT:
  798. case DATA_FORMAT_R32G32B32_SINT:
  799. case DATA_FORMAT_R32G32B32_SFLOAT:
  800. return 12;
  801. case DATA_FORMAT_R32G32B32A32_UINT:
  802. case DATA_FORMAT_R32G32B32A32_SINT:
  803. case DATA_FORMAT_R32G32B32A32_SFLOAT:
  804. return 16;
  805. case DATA_FORMAT_R64_UINT:
  806. case DATA_FORMAT_R64_SINT:
  807. case DATA_FORMAT_R64_SFLOAT:
  808. return 8;
  809. case DATA_FORMAT_R64G64_UINT:
  810. case DATA_FORMAT_R64G64_SINT:
  811. case DATA_FORMAT_R64G64_SFLOAT:
  812. return 16;
  813. case DATA_FORMAT_R64G64B64_UINT:
  814. case DATA_FORMAT_R64G64B64_SINT:
  815. case DATA_FORMAT_R64G64B64_SFLOAT:
  816. return 24;
  817. case DATA_FORMAT_R64G64B64A64_UINT:
  818. case DATA_FORMAT_R64G64B64A64_SINT:
  819. case DATA_FORMAT_R64G64B64A64_SFLOAT:
  820. return 32;
  821. case DATA_FORMAT_B10G11R11_UFLOAT_PACK32:
  822. case DATA_FORMAT_E5B9G9R9_UFLOAT_PACK32:
  823. return 4;
  824. case DATA_FORMAT_D16_UNORM:
  825. return 2;
  826. case DATA_FORMAT_X8_D24_UNORM_PACK32:
  827. return 4;
  828. case DATA_FORMAT_D32_SFLOAT:
  829. return 4;
  830. case DATA_FORMAT_S8_UINT:
  831. return 1;
  832. case DATA_FORMAT_D16_UNORM_S8_UINT:
  833. return 4;
  834. case DATA_FORMAT_D24_UNORM_S8_UINT:
  835. return 4;
  836. case DATA_FORMAT_D32_SFLOAT_S8_UINT:
  837. return 5; // ?
  838. case DATA_FORMAT_BC1_RGB_UNORM_BLOCK:
  839. case DATA_FORMAT_BC1_RGB_SRGB_BLOCK:
  840. case DATA_FORMAT_BC1_RGBA_UNORM_BLOCK:
  841. case DATA_FORMAT_BC1_RGBA_SRGB_BLOCK:
  842. case DATA_FORMAT_BC2_UNORM_BLOCK:
  843. case DATA_FORMAT_BC2_SRGB_BLOCK:
  844. case DATA_FORMAT_BC3_UNORM_BLOCK:
  845. case DATA_FORMAT_BC3_SRGB_BLOCK:
  846. case DATA_FORMAT_BC4_UNORM_BLOCK:
  847. case DATA_FORMAT_BC4_SNORM_BLOCK:
  848. case DATA_FORMAT_BC5_UNORM_BLOCK:
  849. case DATA_FORMAT_BC5_SNORM_BLOCK:
  850. case DATA_FORMAT_BC6H_UFLOAT_BLOCK:
  851. case DATA_FORMAT_BC6H_SFLOAT_BLOCK:
  852. case DATA_FORMAT_BC7_UNORM_BLOCK:
  853. case DATA_FORMAT_BC7_SRGB_BLOCK:
  854. return 1;
  855. case DATA_FORMAT_ETC2_R8G8B8_UNORM_BLOCK:
  856. case DATA_FORMAT_ETC2_R8G8B8_SRGB_BLOCK:
  857. case DATA_FORMAT_ETC2_R8G8B8A1_UNORM_BLOCK:
  858. case DATA_FORMAT_ETC2_R8G8B8A1_SRGB_BLOCK:
  859. case DATA_FORMAT_ETC2_R8G8B8A8_UNORM_BLOCK:
  860. case DATA_FORMAT_ETC2_R8G8B8A8_SRGB_BLOCK:
  861. return 1;
  862. case DATA_FORMAT_EAC_R11_UNORM_BLOCK:
  863. case DATA_FORMAT_EAC_R11_SNORM_BLOCK:
  864. case DATA_FORMAT_EAC_R11G11_UNORM_BLOCK:
  865. case DATA_FORMAT_EAC_R11G11_SNORM_BLOCK:
  866. return 1;
  867. case DATA_FORMAT_ASTC_4x4_UNORM_BLOCK:
  868. case DATA_FORMAT_ASTC_4x4_SRGB_BLOCK:
  869. case DATA_FORMAT_ASTC_5x4_UNORM_BLOCK:
  870. case DATA_FORMAT_ASTC_5x4_SRGB_BLOCK:
  871. case DATA_FORMAT_ASTC_5x5_UNORM_BLOCK:
  872. case DATA_FORMAT_ASTC_5x5_SRGB_BLOCK:
  873. case DATA_FORMAT_ASTC_6x5_UNORM_BLOCK:
  874. case DATA_FORMAT_ASTC_6x5_SRGB_BLOCK:
  875. case DATA_FORMAT_ASTC_6x6_UNORM_BLOCK:
  876. case DATA_FORMAT_ASTC_6x6_SRGB_BLOCK:
  877. case DATA_FORMAT_ASTC_8x5_UNORM_BLOCK:
  878. case DATA_FORMAT_ASTC_8x5_SRGB_BLOCK:
  879. case DATA_FORMAT_ASTC_8x6_UNORM_BLOCK:
  880. case DATA_FORMAT_ASTC_8x6_SRGB_BLOCK:
  881. case DATA_FORMAT_ASTC_8x8_UNORM_BLOCK:
  882. case DATA_FORMAT_ASTC_8x8_SRGB_BLOCK:
  883. case DATA_FORMAT_ASTC_10x5_UNORM_BLOCK:
  884. case DATA_FORMAT_ASTC_10x5_SRGB_BLOCK:
  885. case DATA_FORMAT_ASTC_10x6_UNORM_BLOCK:
  886. case DATA_FORMAT_ASTC_10x6_SRGB_BLOCK:
  887. case DATA_FORMAT_ASTC_10x8_UNORM_BLOCK:
  888. case DATA_FORMAT_ASTC_10x8_SRGB_BLOCK:
  889. case DATA_FORMAT_ASTC_10x10_UNORM_BLOCK:
  890. case DATA_FORMAT_ASTC_10x10_SRGB_BLOCK:
  891. case DATA_FORMAT_ASTC_12x10_UNORM_BLOCK:
  892. case DATA_FORMAT_ASTC_12x10_SRGB_BLOCK:
  893. case DATA_FORMAT_ASTC_12x12_UNORM_BLOCK:
  894. case DATA_FORMAT_ASTC_12x12_SRGB_BLOCK:
  895. return 1;
  896. case DATA_FORMAT_G8B8G8R8_422_UNORM:
  897. case DATA_FORMAT_B8G8R8G8_422_UNORM:
  898. return 4;
  899. case DATA_FORMAT_G8_B8_R8_3PLANE_420_UNORM:
  900. case DATA_FORMAT_G8_B8R8_2PLANE_420_UNORM:
  901. case DATA_FORMAT_G8_B8_R8_3PLANE_422_UNORM:
  902. case DATA_FORMAT_G8_B8R8_2PLANE_422_UNORM:
  903. case DATA_FORMAT_G8_B8_R8_3PLANE_444_UNORM:
  904. return 4;
  905. case DATA_FORMAT_R10X6_UNORM_PACK16:
  906. case DATA_FORMAT_R10X6G10X6_UNORM_2PACK16:
  907. case DATA_FORMAT_R10X6G10X6B10X6A10X6_UNORM_4PACK16:
  908. case DATA_FORMAT_G10X6B10X6G10X6R10X6_422_UNORM_4PACK16:
  909. case DATA_FORMAT_B10X6G10X6R10X6G10X6_422_UNORM_4PACK16:
  910. case DATA_FORMAT_G10X6_B10X6_R10X6_3PLANE_420_UNORM_3PACK16:
  911. case DATA_FORMAT_G10X6_B10X6R10X6_2PLANE_420_UNORM_3PACK16:
  912. case DATA_FORMAT_G10X6_B10X6_R10X6_3PLANE_422_UNORM_3PACK16:
  913. case DATA_FORMAT_G10X6_B10X6R10X6_2PLANE_422_UNORM_3PACK16:
  914. case DATA_FORMAT_G10X6_B10X6_R10X6_3PLANE_444_UNORM_3PACK16:
  915. case DATA_FORMAT_R12X4_UNORM_PACK16:
  916. case DATA_FORMAT_R12X4G12X4_UNORM_2PACK16:
  917. case DATA_FORMAT_R12X4G12X4B12X4A12X4_UNORM_4PACK16:
  918. case DATA_FORMAT_G12X4B12X4G12X4R12X4_422_UNORM_4PACK16:
  919. case DATA_FORMAT_B12X4G12X4R12X4G12X4_422_UNORM_4PACK16:
  920. case DATA_FORMAT_G12X4_B12X4_R12X4_3PLANE_420_UNORM_3PACK16:
  921. case DATA_FORMAT_G12X4_B12X4R12X4_2PLANE_420_UNORM_3PACK16:
  922. case DATA_FORMAT_G12X4_B12X4_R12X4_3PLANE_422_UNORM_3PACK16:
  923. case DATA_FORMAT_G12X4_B12X4R12X4_2PLANE_422_UNORM_3PACK16:
  924. case DATA_FORMAT_G12X4_B12X4_R12X4_3PLANE_444_UNORM_3PACK16:
  925. return 2;
  926. case DATA_FORMAT_G16B16G16R16_422_UNORM:
  927. case DATA_FORMAT_B16G16R16G16_422_UNORM:
  928. case DATA_FORMAT_G16_B16_R16_3PLANE_420_UNORM:
  929. case DATA_FORMAT_G16_B16R16_2PLANE_420_UNORM:
  930. case DATA_FORMAT_G16_B16_R16_3PLANE_422_UNORM:
  931. case DATA_FORMAT_G16_B16R16_2PLANE_422_UNORM:
  932. case DATA_FORMAT_G16_B16_R16_3PLANE_444_UNORM:
  933. return 8;
  934. default: {
  935. ERR_PRINT("Format not handled, bug");
  936. }
  937. }
  938. return 1;
  939. }
  940. // https://www.khronos.org/registry/DataFormat/specs/1.1/dataformat.1.1.pdf
  941. void RenderingDeviceVulkan::get_compressed_image_format_block_dimensions(DataFormat p_format, uint32_t &r_w, uint32_t &r_h) {
  942. switch (p_format) {
  943. case DATA_FORMAT_BC1_RGB_UNORM_BLOCK:
  944. case DATA_FORMAT_BC1_RGB_SRGB_BLOCK:
  945. case DATA_FORMAT_BC1_RGBA_UNORM_BLOCK:
  946. case DATA_FORMAT_BC1_RGBA_SRGB_BLOCK:
  947. case DATA_FORMAT_BC2_UNORM_BLOCK:
  948. case DATA_FORMAT_BC2_SRGB_BLOCK:
  949. case DATA_FORMAT_BC3_UNORM_BLOCK:
  950. case DATA_FORMAT_BC3_SRGB_BLOCK:
  951. case DATA_FORMAT_BC4_UNORM_BLOCK:
  952. case DATA_FORMAT_BC4_SNORM_BLOCK:
  953. case DATA_FORMAT_BC5_UNORM_BLOCK:
  954. case DATA_FORMAT_BC5_SNORM_BLOCK:
  955. case DATA_FORMAT_BC6H_UFLOAT_BLOCK:
  956. case DATA_FORMAT_BC6H_SFLOAT_BLOCK:
  957. case DATA_FORMAT_BC7_UNORM_BLOCK:
  958. case DATA_FORMAT_BC7_SRGB_BLOCK:
  959. case DATA_FORMAT_ETC2_R8G8B8_UNORM_BLOCK:
  960. case DATA_FORMAT_ETC2_R8G8B8_SRGB_BLOCK:
  961. case DATA_FORMAT_ETC2_R8G8B8A1_UNORM_BLOCK:
  962. case DATA_FORMAT_ETC2_R8G8B8A1_SRGB_BLOCK:
  963. case DATA_FORMAT_ETC2_R8G8B8A8_UNORM_BLOCK:
  964. case DATA_FORMAT_ETC2_R8G8B8A8_SRGB_BLOCK:
  965. case DATA_FORMAT_EAC_R11_UNORM_BLOCK:
  966. case DATA_FORMAT_EAC_R11_SNORM_BLOCK:
  967. case DATA_FORMAT_EAC_R11G11_UNORM_BLOCK:
  968. case DATA_FORMAT_EAC_R11G11_SNORM_BLOCK:
  969. case DATA_FORMAT_ASTC_4x4_UNORM_BLOCK: // Again, not sure about astc.
  970. case DATA_FORMAT_ASTC_4x4_SRGB_BLOCK:
  971. case DATA_FORMAT_ASTC_5x4_UNORM_BLOCK:
  972. case DATA_FORMAT_ASTC_5x4_SRGB_BLOCK:
  973. case DATA_FORMAT_ASTC_5x5_UNORM_BLOCK:
  974. case DATA_FORMAT_ASTC_5x5_SRGB_BLOCK:
  975. case DATA_FORMAT_ASTC_6x5_UNORM_BLOCK:
  976. case DATA_FORMAT_ASTC_6x5_SRGB_BLOCK:
  977. case DATA_FORMAT_ASTC_6x6_UNORM_BLOCK:
  978. case DATA_FORMAT_ASTC_6x6_SRGB_BLOCK:
  979. case DATA_FORMAT_ASTC_8x5_UNORM_BLOCK:
  980. case DATA_FORMAT_ASTC_8x5_SRGB_BLOCK:
  981. case DATA_FORMAT_ASTC_8x6_UNORM_BLOCK:
  982. case DATA_FORMAT_ASTC_8x6_SRGB_BLOCK:
  983. case DATA_FORMAT_ASTC_8x8_UNORM_BLOCK:
  984. case DATA_FORMAT_ASTC_8x8_SRGB_BLOCK:
  985. case DATA_FORMAT_ASTC_10x5_UNORM_BLOCK:
  986. case DATA_FORMAT_ASTC_10x5_SRGB_BLOCK:
  987. case DATA_FORMAT_ASTC_10x6_UNORM_BLOCK:
  988. case DATA_FORMAT_ASTC_10x6_SRGB_BLOCK:
  989. case DATA_FORMAT_ASTC_10x8_UNORM_BLOCK:
  990. case DATA_FORMAT_ASTC_10x8_SRGB_BLOCK:
  991. case DATA_FORMAT_ASTC_10x10_UNORM_BLOCK:
  992. case DATA_FORMAT_ASTC_10x10_SRGB_BLOCK:
  993. case DATA_FORMAT_ASTC_12x10_UNORM_BLOCK:
  994. case DATA_FORMAT_ASTC_12x10_SRGB_BLOCK:
  995. case DATA_FORMAT_ASTC_12x12_UNORM_BLOCK:
  996. case DATA_FORMAT_ASTC_12x12_SRGB_BLOCK:
  997. r_w = 4;
  998. r_h = 4;
  999. return;
  1000. default: {
  1001. r_w = 1;
  1002. r_h = 1;
  1003. }
  1004. }
  1005. }
  1006. uint32_t RenderingDeviceVulkan::get_compressed_image_format_block_byte_size(DataFormat p_format) {
  1007. switch (p_format) {
  1008. case DATA_FORMAT_BC1_RGB_UNORM_BLOCK:
  1009. case DATA_FORMAT_BC1_RGB_SRGB_BLOCK:
  1010. case DATA_FORMAT_BC1_RGBA_UNORM_BLOCK:
  1011. case DATA_FORMAT_BC1_RGBA_SRGB_BLOCK:
  1012. return 8;
  1013. case DATA_FORMAT_BC2_UNORM_BLOCK:
  1014. case DATA_FORMAT_BC2_SRGB_BLOCK:
  1015. return 16;
  1016. case DATA_FORMAT_BC3_UNORM_BLOCK:
  1017. case DATA_FORMAT_BC3_SRGB_BLOCK:
  1018. return 16;
  1019. case DATA_FORMAT_BC4_UNORM_BLOCK:
  1020. case DATA_FORMAT_BC4_SNORM_BLOCK:
  1021. return 8;
  1022. case DATA_FORMAT_BC5_UNORM_BLOCK:
  1023. case DATA_FORMAT_BC5_SNORM_BLOCK:
  1024. return 16;
  1025. case DATA_FORMAT_BC6H_UFLOAT_BLOCK:
  1026. case DATA_FORMAT_BC6H_SFLOAT_BLOCK:
  1027. return 16;
  1028. case DATA_FORMAT_BC7_UNORM_BLOCK:
  1029. case DATA_FORMAT_BC7_SRGB_BLOCK:
  1030. return 16;
  1031. case DATA_FORMAT_ETC2_R8G8B8_UNORM_BLOCK:
  1032. case DATA_FORMAT_ETC2_R8G8B8_SRGB_BLOCK:
  1033. return 8;
  1034. case DATA_FORMAT_ETC2_R8G8B8A1_UNORM_BLOCK:
  1035. case DATA_FORMAT_ETC2_R8G8B8A1_SRGB_BLOCK:
  1036. return 8;
  1037. case DATA_FORMAT_ETC2_R8G8B8A8_UNORM_BLOCK:
  1038. case DATA_FORMAT_ETC2_R8G8B8A8_SRGB_BLOCK:
  1039. return 16;
  1040. case DATA_FORMAT_EAC_R11_UNORM_BLOCK:
  1041. case DATA_FORMAT_EAC_R11_SNORM_BLOCK:
  1042. return 8;
  1043. case DATA_FORMAT_EAC_R11G11_UNORM_BLOCK:
  1044. case DATA_FORMAT_EAC_R11G11_SNORM_BLOCK:
  1045. return 16;
  1046. case DATA_FORMAT_ASTC_4x4_UNORM_BLOCK: // Again, not sure about astc.
  1047. case DATA_FORMAT_ASTC_4x4_SRGB_BLOCK:
  1048. case DATA_FORMAT_ASTC_5x4_UNORM_BLOCK:
  1049. case DATA_FORMAT_ASTC_5x4_SRGB_BLOCK:
  1050. case DATA_FORMAT_ASTC_5x5_UNORM_BLOCK:
  1051. case DATA_FORMAT_ASTC_5x5_SRGB_BLOCK:
  1052. case DATA_FORMAT_ASTC_6x5_UNORM_BLOCK:
  1053. case DATA_FORMAT_ASTC_6x5_SRGB_BLOCK:
  1054. case DATA_FORMAT_ASTC_6x6_UNORM_BLOCK:
  1055. case DATA_FORMAT_ASTC_6x6_SRGB_BLOCK:
  1056. case DATA_FORMAT_ASTC_8x5_UNORM_BLOCK:
  1057. case DATA_FORMAT_ASTC_8x5_SRGB_BLOCK:
  1058. case DATA_FORMAT_ASTC_8x6_UNORM_BLOCK:
  1059. case DATA_FORMAT_ASTC_8x6_SRGB_BLOCK:
  1060. case DATA_FORMAT_ASTC_8x8_UNORM_BLOCK:
  1061. case DATA_FORMAT_ASTC_8x8_SRGB_BLOCK:
  1062. case DATA_FORMAT_ASTC_10x5_UNORM_BLOCK:
  1063. case DATA_FORMAT_ASTC_10x5_SRGB_BLOCK:
  1064. case DATA_FORMAT_ASTC_10x6_UNORM_BLOCK:
  1065. case DATA_FORMAT_ASTC_10x6_SRGB_BLOCK:
  1066. case DATA_FORMAT_ASTC_10x8_UNORM_BLOCK:
  1067. case DATA_FORMAT_ASTC_10x8_SRGB_BLOCK:
  1068. case DATA_FORMAT_ASTC_10x10_UNORM_BLOCK:
  1069. case DATA_FORMAT_ASTC_10x10_SRGB_BLOCK:
  1070. case DATA_FORMAT_ASTC_12x10_UNORM_BLOCK:
  1071. case DATA_FORMAT_ASTC_12x10_SRGB_BLOCK:
  1072. case DATA_FORMAT_ASTC_12x12_UNORM_BLOCK:
  1073. case DATA_FORMAT_ASTC_12x12_SRGB_BLOCK:
  1074. return 8; // Wrong.
  1075. default: {
  1076. }
  1077. }
  1078. return 1;
  1079. }
  1080. uint32_t RenderingDeviceVulkan::get_compressed_image_format_pixel_rshift(DataFormat p_format) {
  1081. switch (p_format) {
  1082. case DATA_FORMAT_BC1_RGB_UNORM_BLOCK: // These formats are half byte size, so rshift is 1.
  1083. case DATA_FORMAT_BC1_RGB_SRGB_BLOCK:
  1084. case DATA_FORMAT_BC1_RGBA_UNORM_BLOCK:
  1085. case DATA_FORMAT_BC1_RGBA_SRGB_BLOCK:
  1086. case DATA_FORMAT_BC4_UNORM_BLOCK:
  1087. case DATA_FORMAT_BC4_SNORM_BLOCK:
  1088. case DATA_FORMAT_ETC2_R8G8B8_UNORM_BLOCK:
  1089. case DATA_FORMAT_ETC2_R8G8B8_SRGB_BLOCK:
  1090. case DATA_FORMAT_ETC2_R8G8B8A1_UNORM_BLOCK:
  1091. case DATA_FORMAT_ETC2_R8G8B8A1_SRGB_BLOCK:
  1092. case DATA_FORMAT_EAC_R11_UNORM_BLOCK:
  1093. case DATA_FORMAT_EAC_R11_SNORM_BLOCK:
  1094. return 1;
  1095. default: {
  1096. }
  1097. }
  1098. return 0;
  1099. }
  1100. bool RenderingDeviceVulkan::format_has_stencil(DataFormat p_format) {
  1101. switch (p_format) {
  1102. case DATA_FORMAT_S8_UINT:
  1103. case DATA_FORMAT_D16_UNORM_S8_UINT:
  1104. case DATA_FORMAT_D24_UNORM_S8_UINT:
  1105. case DATA_FORMAT_D32_SFLOAT_S8_UINT: {
  1106. return true;
  1107. }
  1108. default: {
  1109. }
  1110. }
  1111. return false;
  1112. }
  1113. uint32_t RenderingDeviceVulkan::get_image_format_required_size(DataFormat p_format, uint32_t p_width, uint32_t p_height, uint32_t p_depth, uint32_t p_mipmaps, uint32_t *r_blockw, uint32_t *r_blockh, uint32_t *r_depth) {
  1114. ERR_FAIL_COND_V(p_mipmaps == 0, 0);
  1115. uint32_t w = p_width;
  1116. uint32_t h = p_height;
  1117. uint32_t d = p_depth;
  1118. uint32_t size = 0;
  1119. uint32_t pixel_size = get_image_format_pixel_size(p_format);
  1120. uint32_t pixel_rshift = get_compressed_image_format_pixel_rshift(p_format);
  1121. uint32_t blockw, blockh;
  1122. get_compressed_image_format_block_dimensions(p_format, blockw, blockh);
  1123. for (uint32_t i = 0; i < p_mipmaps; i++) {
  1124. uint32_t bw = w % blockw != 0 ? w + (blockw - w % blockw) : w;
  1125. uint32_t bh = h % blockh != 0 ? h + (blockh - h % blockh) : h;
  1126. uint32_t s = bw * bh;
  1127. s *= pixel_size;
  1128. s >>= pixel_rshift;
  1129. size += s * d;
  1130. if (r_blockw) {
  1131. *r_blockw = bw;
  1132. }
  1133. if (r_blockh) {
  1134. *r_blockh = bh;
  1135. }
  1136. if (r_depth) {
  1137. *r_depth = d;
  1138. }
  1139. w = MAX(blockw, w >> 1);
  1140. h = MAX(blockh, h >> 1);
  1141. d = MAX(1u, d >> 1);
  1142. }
  1143. return size;
  1144. }
  1145. uint32_t RenderingDeviceVulkan::get_image_required_mipmaps(uint32_t p_width, uint32_t p_height, uint32_t p_depth) {
  1146. // Formats and block size don't really matter here since they can all go down to 1px (even if block is larger).
  1147. uint32_t w = p_width;
  1148. uint32_t h = p_height;
  1149. uint32_t d = p_depth;
  1150. uint32_t mipmaps = 1;
  1151. while (true) {
  1152. if (w == 1 && h == 1 && d == 1) {
  1153. break;
  1154. }
  1155. w = MAX(1u, w >> 1);
  1156. h = MAX(1u, h >> 1);
  1157. d = MAX(1u, d >> 1);
  1158. mipmaps++;
  1159. }
  1160. return mipmaps;
  1161. }
  1162. ///////////////////////
  1163. const VkCompareOp RenderingDeviceVulkan::compare_operators[RenderingDevice::COMPARE_OP_MAX] = {
  1164. VK_COMPARE_OP_NEVER,
  1165. VK_COMPARE_OP_LESS,
  1166. VK_COMPARE_OP_EQUAL,
  1167. VK_COMPARE_OP_LESS_OR_EQUAL,
  1168. VK_COMPARE_OP_GREATER,
  1169. VK_COMPARE_OP_NOT_EQUAL,
  1170. VK_COMPARE_OP_GREATER_OR_EQUAL,
  1171. VK_COMPARE_OP_ALWAYS
  1172. };
  1173. const VkStencilOp RenderingDeviceVulkan::stencil_operations[RenderingDevice::STENCIL_OP_MAX] = {
  1174. VK_STENCIL_OP_KEEP,
  1175. VK_STENCIL_OP_ZERO,
  1176. VK_STENCIL_OP_REPLACE,
  1177. VK_STENCIL_OP_INCREMENT_AND_CLAMP,
  1178. VK_STENCIL_OP_DECREMENT_AND_CLAMP,
  1179. VK_STENCIL_OP_INVERT,
  1180. VK_STENCIL_OP_INCREMENT_AND_WRAP,
  1181. VK_STENCIL_OP_DECREMENT_AND_WRAP
  1182. };
  1183. const VkSampleCountFlagBits RenderingDeviceVulkan::rasterization_sample_count[RenderingDevice::TEXTURE_SAMPLES_MAX] = {
  1184. VK_SAMPLE_COUNT_1_BIT,
  1185. VK_SAMPLE_COUNT_2_BIT,
  1186. VK_SAMPLE_COUNT_4_BIT,
  1187. VK_SAMPLE_COUNT_8_BIT,
  1188. VK_SAMPLE_COUNT_16_BIT,
  1189. VK_SAMPLE_COUNT_32_BIT,
  1190. VK_SAMPLE_COUNT_64_BIT,
  1191. };
  1192. const VkLogicOp RenderingDeviceVulkan::logic_operations[RenderingDevice::LOGIC_OP_MAX] = {
  1193. VK_LOGIC_OP_CLEAR,
  1194. VK_LOGIC_OP_AND,
  1195. VK_LOGIC_OP_AND_REVERSE,
  1196. VK_LOGIC_OP_COPY,
  1197. VK_LOGIC_OP_AND_INVERTED,
  1198. VK_LOGIC_OP_NO_OP,
  1199. VK_LOGIC_OP_XOR,
  1200. VK_LOGIC_OP_OR,
  1201. VK_LOGIC_OP_NOR,
  1202. VK_LOGIC_OP_EQUIVALENT,
  1203. VK_LOGIC_OP_INVERT,
  1204. VK_LOGIC_OP_OR_REVERSE,
  1205. VK_LOGIC_OP_COPY_INVERTED,
  1206. VK_LOGIC_OP_OR_INVERTED,
  1207. VK_LOGIC_OP_NAND,
  1208. VK_LOGIC_OP_SET
  1209. };
  1210. const VkBlendFactor RenderingDeviceVulkan::blend_factors[RenderingDevice::BLEND_FACTOR_MAX] = {
  1211. VK_BLEND_FACTOR_ZERO,
  1212. VK_BLEND_FACTOR_ONE,
  1213. VK_BLEND_FACTOR_SRC_COLOR,
  1214. VK_BLEND_FACTOR_ONE_MINUS_SRC_COLOR,
  1215. VK_BLEND_FACTOR_DST_COLOR,
  1216. VK_BLEND_FACTOR_ONE_MINUS_DST_COLOR,
  1217. VK_BLEND_FACTOR_SRC_ALPHA,
  1218. VK_BLEND_FACTOR_ONE_MINUS_SRC_ALPHA,
  1219. VK_BLEND_FACTOR_DST_ALPHA,
  1220. VK_BLEND_FACTOR_ONE_MINUS_DST_ALPHA,
  1221. VK_BLEND_FACTOR_CONSTANT_COLOR,
  1222. VK_BLEND_FACTOR_ONE_MINUS_CONSTANT_COLOR,
  1223. VK_BLEND_FACTOR_CONSTANT_ALPHA,
  1224. VK_BLEND_FACTOR_ONE_MINUS_CONSTANT_ALPHA,
  1225. VK_BLEND_FACTOR_SRC_ALPHA_SATURATE,
  1226. VK_BLEND_FACTOR_SRC1_COLOR,
  1227. VK_BLEND_FACTOR_ONE_MINUS_SRC1_COLOR,
  1228. VK_BLEND_FACTOR_SRC1_ALPHA,
  1229. VK_BLEND_FACTOR_ONE_MINUS_SRC1_ALPHA
  1230. };
  1231. const VkBlendOp RenderingDeviceVulkan::blend_operations[RenderingDevice::BLEND_OP_MAX] = {
  1232. VK_BLEND_OP_ADD,
  1233. VK_BLEND_OP_SUBTRACT,
  1234. VK_BLEND_OP_REVERSE_SUBTRACT,
  1235. VK_BLEND_OP_MIN,
  1236. VK_BLEND_OP_MAX
  1237. };
  1238. const VkSamplerAddressMode RenderingDeviceVulkan::address_modes[RenderingDevice::SAMPLER_REPEAT_MODE_MAX] = {
  1239. VK_SAMPLER_ADDRESS_MODE_REPEAT,
  1240. VK_SAMPLER_ADDRESS_MODE_MIRRORED_REPEAT,
  1241. VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
  1242. VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_BORDER,
  1243. VK_SAMPLER_ADDRESS_MODE_MIRROR_CLAMP_TO_EDGE
  1244. };
  1245. const VkBorderColor RenderingDeviceVulkan::sampler_border_colors[RenderingDevice::SAMPLER_BORDER_COLOR_MAX] = {
  1246. VK_BORDER_COLOR_FLOAT_TRANSPARENT_BLACK,
  1247. VK_BORDER_COLOR_INT_TRANSPARENT_BLACK,
  1248. VK_BORDER_COLOR_FLOAT_OPAQUE_BLACK,
  1249. VK_BORDER_COLOR_INT_OPAQUE_BLACK,
  1250. VK_BORDER_COLOR_FLOAT_OPAQUE_WHITE,
  1251. VK_BORDER_COLOR_INT_OPAQUE_WHITE
  1252. };
  1253. const VkImageType RenderingDeviceVulkan::vulkan_image_type[RenderingDevice::TEXTURE_TYPE_MAX] = {
  1254. VK_IMAGE_TYPE_1D,
  1255. VK_IMAGE_TYPE_2D,
  1256. VK_IMAGE_TYPE_3D,
  1257. VK_IMAGE_TYPE_2D,
  1258. VK_IMAGE_TYPE_1D,
  1259. VK_IMAGE_TYPE_2D,
  1260. VK_IMAGE_TYPE_2D
  1261. };
  1262. /***************************/
  1263. /**** BUFFER MANAGEMENT ****/
  1264. /***************************/
  1265. Error RenderingDeviceVulkan::_buffer_allocate(Buffer *p_buffer, uint32_t p_size, uint32_t p_usage, VmaMemoryUsage p_mem_usage, VmaAllocationCreateFlags p_mem_flags) {
  1266. VkBufferCreateInfo bufferInfo;
  1267. bufferInfo.sType = VK_STRUCTURE_TYPE_BUFFER_CREATE_INFO;
  1268. bufferInfo.pNext = nullptr;
  1269. bufferInfo.flags = 0;
  1270. bufferInfo.size = p_size;
  1271. bufferInfo.usage = p_usage;
  1272. bufferInfo.sharingMode = VK_SHARING_MODE_EXCLUSIVE;
  1273. bufferInfo.queueFamilyIndexCount = 0;
  1274. bufferInfo.pQueueFamilyIndices = nullptr;
  1275. VmaAllocationCreateInfo allocInfo;
  1276. allocInfo.flags = p_mem_flags;
  1277. allocInfo.usage = p_mem_usage;
  1278. allocInfo.requiredFlags = 0;
  1279. allocInfo.preferredFlags = 0;
  1280. allocInfo.memoryTypeBits = 0;
  1281. allocInfo.pool = nullptr;
  1282. allocInfo.pUserData = nullptr;
  1283. if (p_size <= SMALL_ALLOCATION_MAX_SIZE) {
  1284. uint32_t mem_type_index = 0;
  1285. vmaFindMemoryTypeIndexForBufferInfo(allocator, &bufferInfo, &allocInfo, &mem_type_index);
  1286. allocInfo.pool = _find_or_create_small_allocs_pool(mem_type_index);
  1287. }
  1288. VkResult err = vmaCreateBuffer(allocator, &bufferInfo, &allocInfo, &p_buffer->buffer, &p_buffer->allocation, nullptr);
  1289. ERR_FAIL_COND_V_MSG(err, ERR_CANT_CREATE, "Can't create buffer of size: " + itos(p_size) + ", error " + itos(err) + ".");
  1290. p_buffer->size = p_size;
  1291. p_buffer->buffer_info.buffer = p_buffer->buffer;
  1292. p_buffer->buffer_info.offset = 0;
  1293. p_buffer->buffer_info.range = p_size;
  1294. p_buffer->usage = p_usage;
  1295. buffer_memory += p_size;
  1296. return OK;
  1297. }
  1298. Error RenderingDeviceVulkan::_buffer_free(Buffer *p_buffer) {
  1299. ERR_FAIL_COND_V(p_buffer->size == 0, ERR_INVALID_PARAMETER);
  1300. buffer_memory -= p_buffer->size;
  1301. vmaDestroyBuffer(allocator, p_buffer->buffer, p_buffer->allocation);
  1302. p_buffer->buffer = VK_NULL_HANDLE;
  1303. p_buffer->allocation = nullptr;
  1304. p_buffer->size = 0;
  1305. return OK;
  1306. }
  1307. Error RenderingDeviceVulkan::_insert_staging_block() {
  1308. VkBufferCreateInfo bufferInfo;
  1309. bufferInfo.sType = VK_STRUCTURE_TYPE_BUFFER_CREATE_INFO;
  1310. bufferInfo.pNext = nullptr;
  1311. bufferInfo.flags = 0;
  1312. bufferInfo.size = staging_buffer_block_size;
  1313. bufferInfo.usage = VK_BUFFER_USAGE_TRANSFER_SRC_BIT;
  1314. bufferInfo.sharingMode = VK_SHARING_MODE_EXCLUSIVE;
  1315. bufferInfo.queueFamilyIndexCount = 0;
  1316. bufferInfo.pQueueFamilyIndices = nullptr;
  1317. VmaAllocationCreateInfo allocInfo;
  1318. allocInfo.flags = VMA_ALLOCATION_CREATE_HOST_ACCESS_SEQUENTIAL_WRITE_BIT;
  1319. allocInfo.usage = VMA_MEMORY_USAGE_AUTO_PREFER_HOST;
  1320. allocInfo.requiredFlags = 0;
  1321. allocInfo.preferredFlags = 0;
  1322. allocInfo.memoryTypeBits = 0;
  1323. allocInfo.pool = nullptr;
  1324. allocInfo.pUserData = nullptr;
  1325. StagingBufferBlock block;
  1326. VkResult err = vmaCreateBuffer(allocator, &bufferInfo, &allocInfo, &block.buffer, &block.allocation, nullptr);
  1327. ERR_FAIL_COND_V_MSG(err, ERR_CANT_CREATE, "vmaCreateBuffer failed with error " + itos(err) + ".");
  1328. block.frame_used = 0;
  1329. block.fill_amount = 0;
  1330. staging_buffer_blocks.insert(staging_buffer_current, block);
  1331. return OK;
  1332. }
  1333. Error RenderingDeviceVulkan::_staging_buffer_allocate(uint32_t p_amount, uint32_t p_required_align, uint32_t &r_alloc_offset, uint32_t &r_alloc_size, bool p_can_segment) {
  1334. // Determine a block to use.
  1335. r_alloc_size = p_amount;
  1336. while (true) {
  1337. r_alloc_offset = 0;
  1338. // See if we can use current block.
  1339. if (staging_buffer_blocks[staging_buffer_current].frame_used == frames_drawn) {
  1340. // We used this block this frame, let's see if there is still room.
  1341. uint32_t write_from = staging_buffer_blocks[staging_buffer_current].fill_amount;
  1342. {
  1343. uint32_t align_remainder = write_from % p_required_align;
  1344. if (align_remainder != 0) {
  1345. write_from += p_required_align - align_remainder;
  1346. }
  1347. }
  1348. int32_t available_bytes = int32_t(staging_buffer_block_size) - int32_t(write_from);
  1349. if ((int32_t)p_amount < available_bytes) {
  1350. // All is good, we should be ok, all will fit.
  1351. r_alloc_offset = write_from;
  1352. } else if (p_can_segment && available_bytes >= (int32_t)p_required_align) {
  1353. // Ok all won't fit but at least we can fit a chunkie.
  1354. // All is good, update what needs to be written to.
  1355. r_alloc_offset = write_from;
  1356. r_alloc_size = available_bytes - (available_bytes % p_required_align);
  1357. } else {
  1358. // Can't fit it into this buffer.
  1359. // Will need to try next buffer.
  1360. staging_buffer_current = (staging_buffer_current + 1) % staging_buffer_blocks.size();
  1361. // Before doing anything, though, let's check that we didn't manage to fill all blocks.
  1362. // Possible in a single frame.
  1363. if (staging_buffer_blocks[staging_buffer_current].frame_used == frames_drawn) {
  1364. // Guess we did.. ok, let's see if we can insert a new block.
  1365. if ((uint64_t)staging_buffer_blocks.size() * staging_buffer_block_size < staging_buffer_max_size) {
  1366. // We can, so we are safe.
  1367. Error err = _insert_staging_block();
  1368. if (err) {
  1369. return err;
  1370. }
  1371. // Claim for this frame.
  1372. staging_buffer_blocks.write[staging_buffer_current].frame_used = frames_drawn;
  1373. } else {
  1374. // Ok, worst case scenario, all the staging buffers belong to this frame
  1375. // and this frame is not even done.
  1376. // If this is the main thread, it means the user is likely loading a lot of resources at once,.
  1377. // Otherwise, the thread should just be blocked until the next frame (currently unimplemented).
  1378. if (false) { // Separate thread from render.
  1379. //block_until_next_frame()
  1380. continue;
  1381. } else {
  1382. // Flush EVERYTHING including setup commands. IF not immediate, also need to flush the draw commands.
  1383. _flush(true);
  1384. // Clear the whole staging buffer.
  1385. for (int i = 0; i < staging_buffer_blocks.size(); i++) {
  1386. staging_buffer_blocks.write[i].frame_used = 0;
  1387. staging_buffer_blocks.write[i].fill_amount = 0;
  1388. }
  1389. // Claim current.
  1390. staging_buffer_blocks.write[staging_buffer_current].frame_used = frames_drawn;
  1391. }
  1392. }
  1393. } else {
  1394. // Not from current frame, so continue and try again.
  1395. continue;
  1396. }
  1397. }
  1398. } else if (staging_buffer_blocks[staging_buffer_current].frame_used <= frames_drawn - frame_count) {
  1399. // This is an old block, which was already processed, let's reuse.
  1400. staging_buffer_blocks.write[staging_buffer_current].frame_used = frames_drawn;
  1401. staging_buffer_blocks.write[staging_buffer_current].fill_amount = 0;
  1402. } else {
  1403. // This block may still be in use, let's not touch it unless we have to, so.. can we create a new one?
  1404. if ((uint64_t)staging_buffer_blocks.size() * staging_buffer_block_size < staging_buffer_max_size) {
  1405. // We are still allowed to create a new block, so let's do that and insert it for current pos.
  1406. Error err = _insert_staging_block();
  1407. if (err) {
  1408. return err;
  1409. }
  1410. // Claim for this frame.
  1411. staging_buffer_blocks.write[staging_buffer_current].frame_used = frames_drawn;
  1412. } else {
  1413. // Oops, we are out of room and we can't create more.
  1414. // Let's flush older frames.
  1415. // The logic here is that if a game is loading a lot of data from the main thread, it will need to be stalled anyway.
  1416. // If loading from a separate thread, we can block that thread until next frame when more room is made (not currently implemented, though).
  1417. if (false) {
  1418. // Separate thread from render.
  1419. //block_until_next_frame()
  1420. continue; // And try again.
  1421. } else {
  1422. _flush(false);
  1423. for (int i = 0; i < staging_buffer_blocks.size(); i++) {
  1424. // Clear all blocks but the ones from this frame.
  1425. int block_idx = (i + staging_buffer_current) % staging_buffer_blocks.size();
  1426. if (staging_buffer_blocks[block_idx].frame_used == frames_drawn) {
  1427. break; // Ok, we reached something from this frame, abort.
  1428. }
  1429. staging_buffer_blocks.write[block_idx].frame_used = 0;
  1430. staging_buffer_blocks.write[block_idx].fill_amount = 0;
  1431. }
  1432. // Claim for current frame.
  1433. staging_buffer_blocks.write[staging_buffer_current].frame_used = frames_drawn;
  1434. }
  1435. }
  1436. }
  1437. // All was good, break.
  1438. break;
  1439. }
  1440. staging_buffer_used = true;
  1441. return OK;
  1442. }
  1443. Error RenderingDeviceVulkan::_buffer_update(Buffer *p_buffer, size_t p_offset, const uint8_t *p_data, size_t p_data_size, bool p_use_draw_command_buffer, uint32_t p_required_align) {
  1444. // Submitting may get chunked for various reasons, so convert this to a task.
  1445. size_t to_submit = p_data_size;
  1446. size_t submit_from = 0;
  1447. while (to_submit > 0) {
  1448. uint32_t block_write_offset;
  1449. uint32_t block_write_amount;
  1450. Error err = _staging_buffer_allocate(MIN(to_submit, staging_buffer_block_size), p_required_align, block_write_offset, block_write_amount);
  1451. if (err) {
  1452. return err;
  1453. }
  1454. // Map staging buffer (It's CPU and coherent).
  1455. void *data_ptr = nullptr;
  1456. {
  1457. VkResult vkerr = vmaMapMemory(allocator, staging_buffer_blocks[staging_buffer_current].allocation, &data_ptr);
  1458. ERR_FAIL_COND_V_MSG(vkerr, ERR_CANT_CREATE, "vmaMapMemory failed with error " + itos(vkerr) + ".");
  1459. }
  1460. // Copy to staging buffer.
  1461. memcpy(((uint8_t *)data_ptr) + block_write_offset, p_data + submit_from, block_write_amount);
  1462. // Unmap.
  1463. vmaUnmapMemory(allocator, staging_buffer_blocks[staging_buffer_current].allocation);
  1464. // Insert a command to copy this.
  1465. VkBufferCopy region;
  1466. region.srcOffset = block_write_offset;
  1467. region.dstOffset = submit_from + p_offset;
  1468. region.size = block_write_amount;
  1469. vkCmdCopyBuffer(p_use_draw_command_buffer ? frames[frame].draw_command_buffer : frames[frame].setup_command_buffer, staging_buffer_blocks[staging_buffer_current].buffer, p_buffer->buffer, 1, &region);
  1470. staging_buffer_blocks.write[staging_buffer_current].fill_amount = block_write_offset + block_write_amount;
  1471. to_submit -= block_write_amount;
  1472. submit_from += block_write_amount;
  1473. }
  1474. return OK;
  1475. }
  1476. void RenderingDeviceVulkan::_memory_barrier(VkPipelineStageFlags p_src_stage_mask, VkPipelineStageFlags p_dst_stage_mask, VkAccessFlags p_src_access, VkAccessFlags p_dst_access, bool p_sync_with_draw) {
  1477. VkMemoryBarrier mem_barrier;
  1478. mem_barrier.sType = VK_STRUCTURE_TYPE_MEMORY_BARRIER;
  1479. mem_barrier.pNext = nullptr;
  1480. mem_barrier.srcAccessMask = p_src_access;
  1481. mem_barrier.dstAccessMask = p_dst_access;
  1482. if (p_src_stage_mask == 0 || p_dst_stage_mask == 0) {
  1483. return; // No barrier, since this is invalid.
  1484. }
  1485. vkCmdPipelineBarrier(p_sync_with_draw ? frames[frame].draw_command_buffer : frames[frame].setup_command_buffer, p_src_stage_mask, p_dst_stage_mask, 0, 1, &mem_barrier, 0, nullptr, 0, nullptr);
  1486. }
  1487. void RenderingDeviceVulkan::_full_barrier(bool p_sync_with_draw) {
  1488. // Used for debug.
  1489. _memory_barrier(VK_PIPELINE_STAGE_ALL_COMMANDS_BIT, VK_PIPELINE_STAGE_ALL_COMMANDS_BIT,
  1490. VK_ACCESS_INDIRECT_COMMAND_READ_BIT |
  1491. VK_ACCESS_INDEX_READ_BIT |
  1492. VK_ACCESS_VERTEX_ATTRIBUTE_READ_BIT |
  1493. VK_ACCESS_UNIFORM_READ_BIT |
  1494. VK_ACCESS_INPUT_ATTACHMENT_READ_BIT |
  1495. VK_ACCESS_SHADER_READ_BIT |
  1496. VK_ACCESS_SHADER_WRITE_BIT |
  1497. VK_ACCESS_COLOR_ATTACHMENT_READ_BIT |
  1498. VK_ACCESS_COLOR_ATTACHMENT_WRITE_BIT |
  1499. VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_READ_BIT |
  1500. VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_WRITE_BIT |
  1501. VK_ACCESS_TRANSFER_READ_BIT |
  1502. VK_ACCESS_TRANSFER_WRITE_BIT |
  1503. VK_ACCESS_HOST_READ_BIT |
  1504. VK_ACCESS_HOST_WRITE_BIT,
  1505. VK_ACCESS_INDIRECT_COMMAND_READ_BIT |
  1506. VK_ACCESS_INDEX_READ_BIT |
  1507. VK_ACCESS_VERTEX_ATTRIBUTE_READ_BIT |
  1508. VK_ACCESS_UNIFORM_READ_BIT |
  1509. VK_ACCESS_INPUT_ATTACHMENT_READ_BIT |
  1510. VK_ACCESS_SHADER_READ_BIT |
  1511. VK_ACCESS_SHADER_WRITE_BIT |
  1512. VK_ACCESS_COLOR_ATTACHMENT_READ_BIT |
  1513. VK_ACCESS_COLOR_ATTACHMENT_WRITE_BIT |
  1514. VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_READ_BIT |
  1515. VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_WRITE_BIT |
  1516. VK_ACCESS_TRANSFER_READ_BIT |
  1517. VK_ACCESS_TRANSFER_WRITE_BIT |
  1518. VK_ACCESS_HOST_READ_BIT |
  1519. VK_ACCESS_HOST_WRITE_BIT,
  1520. p_sync_with_draw);
  1521. }
  1522. void RenderingDeviceVulkan::_buffer_memory_barrier(VkBuffer buffer, uint64_t p_from, uint64_t p_size, VkPipelineStageFlags p_src_stage_mask, VkPipelineStageFlags p_dst_stage_mask, VkAccessFlags p_src_access, VkAccessFlags p_dst_access, bool p_sync_with_draw) {
  1523. VkBufferMemoryBarrier buffer_mem_barrier;
  1524. buffer_mem_barrier.sType = VK_STRUCTURE_TYPE_BUFFER_MEMORY_BARRIER;
  1525. buffer_mem_barrier.pNext = nullptr;
  1526. buffer_mem_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  1527. buffer_mem_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  1528. buffer_mem_barrier.srcAccessMask = p_src_access;
  1529. buffer_mem_barrier.dstAccessMask = p_dst_access;
  1530. buffer_mem_barrier.buffer = buffer;
  1531. buffer_mem_barrier.offset = p_from;
  1532. buffer_mem_barrier.size = p_size;
  1533. vkCmdPipelineBarrier(p_sync_with_draw ? frames[frame].draw_command_buffer : frames[frame].setup_command_buffer, p_src_stage_mask, p_dst_stage_mask, 0, 0, nullptr, 1, &buffer_mem_barrier, 0, nullptr);
  1534. }
  1535. /*****************/
  1536. /**** TEXTURE ****/
  1537. /*****************/
  1538. RID RenderingDeviceVulkan::texture_create(const TextureFormat &p_format, const TextureView &p_view, const Vector<Vector<uint8_t>> &p_data) {
  1539. _THREAD_SAFE_METHOD_
  1540. VkImageCreateInfo image_create_info;
  1541. image_create_info.sType = VK_STRUCTURE_TYPE_IMAGE_CREATE_INFO;
  1542. image_create_info.pNext = nullptr;
  1543. image_create_info.flags = 0;
  1544. // TODO: Check for support via RenderingDevice to enable on mobile when possible.
  1545. #ifndef ANDROID_ENABLED
  1546. // vkCreateImage fails with format list on Android (VK_ERROR_OUT_OF_HOST_MEMORY)
  1547. VkImageFormatListCreateInfoKHR format_list_create_info; // Keep out of the if, needed for creation.
  1548. Vector<VkFormat> allowed_formats; // Keep out of the if, needed for creation.
  1549. #endif
  1550. if (p_format.shareable_formats.size()) {
  1551. image_create_info.flags |= VK_IMAGE_CREATE_MUTABLE_FORMAT_BIT;
  1552. #ifndef ANDROID_ENABLED
  1553. for (int i = 0; i < p_format.shareable_formats.size(); i++) {
  1554. allowed_formats.push_back(vulkan_formats[p_format.shareable_formats[i]]);
  1555. }
  1556. format_list_create_info.sType = VK_STRUCTURE_TYPE_IMAGE_FORMAT_LIST_CREATE_INFO_KHR;
  1557. format_list_create_info.pNext = nullptr;
  1558. format_list_create_info.viewFormatCount = allowed_formats.size();
  1559. format_list_create_info.pViewFormats = allowed_formats.ptr();
  1560. image_create_info.pNext = &format_list_create_info;
  1561. ERR_FAIL_COND_V_MSG(p_format.shareable_formats.find(p_format.format) == -1, RID(),
  1562. "If supplied a list of shareable formats, the current format must be present in the list");
  1563. ERR_FAIL_COND_V_MSG(p_view.format_override != DATA_FORMAT_MAX && p_format.shareable_formats.find(p_view.format_override) == -1, RID(),
  1564. "If supplied a list of shareable formats, the current view format override must be present in the list");
  1565. #endif
  1566. }
  1567. if (p_format.texture_type == TEXTURE_TYPE_CUBE || p_format.texture_type == TEXTURE_TYPE_CUBE_ARRAY) {
  1568. image_create_info.flags |= VK_IMAGE_CREATE_CUBE_COMPATIBLE_BIT;
  1569. }
  1570. /*if (p_format.type == TEXTURE_TYPE_2D || p_format.type == TEXTURE_TYPE_2D_ARRAY) {
  1571. image_create_info.flags |= VK_IMAGE_CREATE_2D_ARRAY_COMPATIBLE_BIT;
  1572. }*/
  1573. ERR_FAIL_INDEX_V(p_format.texture_type, TEXTURE_TYPE_MAX, RID());
  1574. image_create_info.imageType = vulkan_image_type[p_format.texture_type];
  1575. ERR_FAIL_COND_V_MSG(p_format.width < 1, RID(), "Width must be equal or greater than 1 for all textures");
  1576. image_create_info.format = vulkan_formats[p_format.format];
  1577. image_create_info.extent.width = p_format.width;
  1578. if (image_create_info.imageType == VK_IMAGE_TYPE_3D || image_create_info.imageType == VK_IMAGE_TYPE_2D) {
  1579. ERR_FAIL_COND_V_MSG(p_format.height < 1, RID(), "Height must be equal or greater than 1 for 2D and 3D textures");
  1580. image_create_info.extent.height = p_format.height;
  1581. } else {
  1582. image_create_info.extent.height = 1;
  1583. }
  1584. if (image_create_info.imageType == VK_IMAGE_TYPE_3D) {
  1585. ERR_FAIL_COND_V_MSG(p_format.depth < 1, RID(), "Depth must be equal or greater than 1 for 3D textures");
  1586. image_create_info.extent.depth = p_format.depth;
  1587. } else {
  1588. image_create_info.extent.depth = 1;
  1589. }
  1590. ERR_FAIL_COND_V(p_format.mipmaps < 1, RID());
  1591. image_create_info.mipLevels = p_format.mipmaps;
  1592. if (p_format.texture_type == TEXTURE_TYPE_1D_ARRAY || p_format.texture_type == TEXTURE_TYPE_2D_ARRAY || p_format.texture_type == TEXTURE_TYPE_CUBE_ARRAY || p_format.texture_type == TEXTURE_TYPE_CUBE) {
  1593. ERR_FAIL_COND_V_MSG(p_format.array_layers < 1, RID(),
  1594. "Amount of layers must be equal or greater than 1 for arrays and cubemaps.");
  1595. ERR_FAIL_COND_V_MSG((p_format.texture_type == TEXTURE_TYPE_CUBE_ARRAY || p_format.texture_type == TEXTURE_TYPE_CUBE) && (p_format.array_layers % 6) != 0, RID(),
  1596. "Cubemap and cubemap array textures must provide a layer number that is multiple of 6");
  1597. image_create_info.arrayLayers = p_format.array_layers;
  1598. } else {
  1599. image_create_info.arrayLayers = 1;
  1600. }
  1601. ERR_FAIL_INDEX_V(p_format.samples, TEXTURE_SAMPLES_MAX, RID());
  1602. image_create_info.samples = _ensure_supported_sample_count(p_format.samples);
  1603. image_create_info.tiling = (p_format.usage_bits & TEXTURE_USAGE_CPU_READ_BIT) ? VK_IMAGE_TILING_LINEAR : VK_IMAGE_TILING_OPTIMAL;
  1604. // Usage.
  1605. image_create_info.usage = 0;
  1606. if (p_format.usage_bits & TEXTURE_USAGE_SAMPLING_BIT) {
  1607. image_create_info.usage |= VK_IMAGE_USAGE_SAMPLED_BIT;
  1608. }
  1609. if (p_format.usage_bits & TEXTURE_USAGE_STORAGE_BIT) {
  1610. image_create_info.usage |= VK_IMAGE_USAGE_STORAGE_BIT;
  1611. }
  1612. if (p_format.usage_bits & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT) {
  1613. image_create_info.usage |= VK_IMAGE_USAGE_COLOR_ATTACHMENT_BIT;
  1614. }
  1615. if (p_format.usage_bits & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  1616. image_create_info.usage |= VK_IMAGE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT;
  1617. }
  1618. if (p_format.usage_bits & TEXTURE_USAGE_INPUT_ATTACHMENT_BIT) {
  1619. image_create_info.usage |= VK_IMAGE_USAGE_INPUT_ATTACHMENT_BIT;
  1620. }
  1621. if (p_format.usage_bits & TEXTURE_USAGE_VRS_ATTACHMENT_BIT) {
  1622. image_create_info.usage |= VK_IMAGE_USAGE_FRAGMENT_SHADING_RATE_ATTACHMENT_BIT_KHR;
  1623. }
  1624. if (p_format.usage_bits & TEXTURE_USAGE_CAN_UPDATE_BIT) {
  1625. image_create_info.usage |= VK_IMAGE_USAGE_TRANSFER_DST_BIT;
  1626. }
  1627. if (p_format.usage_bits & TEXTURE_USAGE_CAN_COPY_FROM_BIT) {
  1628. image_create_info.usage |= VK_IMAGE_USAGE_TRANSFER_SRC_BIT;
  1629. }
  1630. if (p_format.usage_bits & TEXTURE_USAGE_CAN_COPY_TO_BIT) {
  1631. image_create_info.usage |= VK_IMAGE_USAGE_TRANSFER_DST_BIT;
  1632. }
  1633. image_create_info.sharingMode = VK_SHARING_MODE_EXCLUSIVE;
  1634. image_create_info.queueFamilyIndexCount = 0;
  1635. image_create_info.pQueueFamilyIndices = nullptr;
  1636. image_create_info.initialLayout = VK_IMAGE_LAYOUT_UNDEFINED;
  1637. uint32_t required_mipmaps = get_image_required_mipmaps(image_create_info.extent.width, image_create_info.extent.height, image_create_info.extent.depth);
  1638. ERR_FAIL_COND_V_MSG(required_mipmaps < image_create_info.mipLevels, RID(),
  1639. "Too many mipmaps requested for texture format and dimensions (" + itos(image_create_info.mipLevels) + "), maximum allowed: (" + itos(required_mipmaps) + ").");
  1640. if (p_data.size()) {
  1641. ERR_FAIL_COND_V_MSG(!(p_format.usage_bits & TEXTURE_USAGE_CAN_UPDATE_BIT), RID(),
  1642. "Texture needs the TEXTURE_USAGE_CAN_UPDATE_BIT usage flag in order to be updated at initialization or later");
  1643. int expected_images = image_create_info.arrayLayers;
  1644. ERR_FAIL_COND_V_MSG(p_data.size() != expected_images, RID(),
  1645. "Default supplied data for image format is of invalid length (" + itos(p_data.size()) + "), should be (" + itos(expected_images) + ").");
  1646. for (uint32_t i = 0; i < image_create_info.arrayLayers; i++) {
  1647. uint32_t required_size = get_image_format_required_size(p_format.format, image_create_info.extent.width, image_create_info.extent.height, image_create_info.extent.depth, image_create_info.mipLevels);
  1648. ERR_FAIL_COND_V_MSG((uint32_t)p_data[i].size() != required_size, RID(),
  1649. "Data for slice index " + itos(i) + " (mapped to layer " + itos(i) + ") differs in size (supplied: " + itos(p_data[i].size()) + ") than what is required by the format (" + itos(required_size) + ").");
  1650. }
  1651. }
  1652. {
  1653. // Validate that this image is supported for the intended use.
  1654. VkFormatProperties properties;
  1655. vkGetPhysicalDeviceFormatProperties(context->get_physical_device(), image_create_info.format, &properties);
  1656. VkFormatFeatureFlags flags;
  1657. String format_text = "'" + String(named_formats[p_format.format]) + "'";
  1658. if (p_format.usage_bits & TEXTURE_USAGE_CPU_READ_BIT) {
  1659. flags = properties.linearTilingFeatures;
  1660. format_text += " (with CPU read bit)";
  1661. } else {
  1662. flags = properties.optimalTilingFeatures;
  1663. }
  1664. if (p_format.usage_bits & TEXTURE_USAGE_SAMPLING_BIT && !(flags & VK_FORMAT_FEATURE_SAMPLED_IMAGE_BIT)) {
  1665. ERR_FAIL_V_MSG(RID(), "Format " + format_text + " does not support usage as sampling texture.");
  1666. }
  1667. if (p_format.usage_bits & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT && !(flags & VK_FORMAT_FEATURE_COLOR_ATTACHMENT_BIT)) {
  1668. ERR_FAIL_V_MSG(RID(), "Format " + format_text + " does not support usage as color attachment.");
  1669. }
  1670. if (p_format.usage_bits & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT && !(flags & VK_FORMAT_FEATURE_DEPTH_STENCIL_ATTACHMENT_BIT)) {
  1671. printf("vkformat: %x\n", image_create_info.format);
  1672. ERR_FAIL_V_MSG(RID(), "Format " + format_text + " does not support usage as depth-stencil attachment.");
  1673. }
  1674. if (p_format.usage_bits & TEXTURE_USAGE_STORAGE_BIT && !(flags & VK_FORMAT_FEATURE_STORAGE_IMAGE_BIT)) {
  1675. ERR_FAIL_V_MSG(RID(), "Format " + format_text + " does not support usage as storage image.");
  1676. }
  1677. if (p_format.usage_bits & TEXTURE_USAGE_STORAGE_ATOMIC_BIT && !(flags & VK_FORMAT_FEATURE_STORAGE_IMAGE_ATOMIC_BIT)) {
  1678. ERR_FAIL_V_MSG(RID(), "Format " + format_text + " does not support usage as atomic storage image.");
  1679. }
  1680. // Validation via VK_FORMAT_FEATURE_FRAGMENT_SHADING_RATE_ATTACHMENT_BIT_KHR fails if VRS attachment is not supported.
  1681. if (p_format.usage_bits & TEXTURE_USAGE_VRS_ATTACHMENT_BIT && p_format.format != DATA_FORMAT_R8_UINT) {
  1682. ERR_FAIL_V_MSG(RID(), "Format " + format_text + " does not support usage as VRS attachment.");
  1683. }
  1684. }
  1685. // Some view validation.
  1686. if (p_view.format_override != DATA_FORMAT_MAX) {
  1687. ERR_FAIL_INDEX_V(p_view.format_override, DATA_FORMAT_MAX, RID());
  1688. }
  1689. ERR_FAIL_INDEX_V(p_view.swizzle_r, TEXTURE_SWIZZLE_MAX, RID());
  1690. ERR_FAIL_INDEX_V(p_view.swizzle_g, TEXTURE_SWIZZLE_MAX, RID());
  1691. ERR_FAIL_INDEX_V(p_view.swizzle_b, TEXTURE_SWIZZLE_MAX, RID());
  1692. ERR_FAIL_INDEX_V(p_view.swizzle_a, TEXTURE_SWIZZLE_MAX, RID());
  1693. // Allocate memory.
  1694. uint32_t width, height;
  1695. uint32_t image_size = get_image_format_required_size(p_format.format, p_format.width, p_format.height, p_format.depth, p_format.mipmaps, &width, &height);
  1696. VmaAllocationCreateInfo allocInfo;
  1697. allocInfo.flags = (p_format.usage_bits & TEXTURE_USAGE_CPU_READ_BIT) ? VMA_ALLOCATION_CREATE_HOST_ACCESS_RANDOM_BIT : 0;
  1698. allocInfo.pool = nullptr;
  1699. allocInfo.usage = VMA_MEMORY_USAGE_AUTO_PREFER_DEVICE;
  1700. allocInfo.requiredFlags = 0;
  1701. allocInfo.preferredFlags = 0;
  1702. allocInfo.memoryTypeBits = 0;
  1703. allocInfo.pUserData = nullptr;
  1704. if (image_size <= SMALL_ALLOCATION_MAX_SIZE) {
  1705. uint32_t mem_type_index = 0;
  1706. vmaFindMemoryTypeIndexForImageInfo(allocator, &image_create_info, &allocInfo, &mem_type_index);
  1707. allocInfo.pool = _find_or_create_small_allocs_pool(mem_type_index);
  1708. }
  1709. Texture texture;
  1710. VkResult err = vmaCreateImage(allocator, &image_create_info, &allocInfo, &texture.image, &texture.allocation, &texture.allocation_info);
  1711. ERR_FAIL_COND_V_MSG(err, RID(), "vmaCreateImage failed with error " + itos(err) + ".");
  1712. image_memory += texture.allocation_info.size;
  1713. texture.type = p_format.texture_type;
  1714. texture.format = p_format.format;
  1715. texture.width = image_create_info.extent.width;
  1716. texture.height = image_create_info.extent.height;
  1717. texture.depth = image_create_info.extent.depth;
  1718. texture.layers = image_create_info.arrayLayers;
  1719. texture.mipmaps = image_create_info.mipLevels;
  1720. texture.base_mipmap = 0;
  1721. texture.base_layer = 0;
  1722. texture.is_resolve_buffer = p_format.is_resolve_buffer;
  1723. texture.usage_flags = p_format.usage_bits;
  1724. texture.samples = p_format.samples;
  1725. texture.allowed_shared_formats = p_format.shareable_formats;
  1726. // Set base layout based on usage priority.
  1727. if (p_format.usage_bits & TEXTURE_USAGE_SAMPLING_BIT) {
  1728. // First priority, readable.
  1729. texture.layout = VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL;
  1730. } else if (p_format.usage_bits & TEXTURE_USAGE_STORAGE_BIT) {
  1731. // Second priority, storage.
  1732. texture.layout = VK_IMAGE_LAYOUT_GENERAL;
  1733. } else if (p_format.usage_bits & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT) {
  1734. // Third priority, color or depth.
  1735. texture.layout = VK_IMAGE_LAYOUT_COLOR_ATTACHMENT_OPTIMAL;
  1736. } else if (p_format.usage_bits & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  1737. texture.layout = VK_IMAGE_LAYOUT_DEPTH_STENCIL_ATTACHMENT_OPTIMAL;
  1738. } else {
  1739. texture.layout = VK_IMAGE_LAYOUT_GENERAL;
  1740. }
  1741. if (p_format.usage_bits & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  1742. texture.read_aspect_mask = VK_IMAGE_ASPECT_DEPTH_BIT;
  1743. texture.barrier_aspect_mask = VK_IMAGE_ASPECT_DEPTH_BIT;
  1744. if (format_has_stencil(p_format.format)) {
  1745. texture.barrier_aspect_mask |= VK_IMAGE_ASPECT_STENCIL_BIT;
  1746. }
  1747. } else {
  1748. texture.read_aspect_mask = VK_IMAGE_ASPECT_COLOR_BIT;
  1749. texture.barrier_aspect_mask = VK_IMAGE_ASPECT_COLOR_BIT;
  1750. }
  1751. texture.bound = false;
  1752. // Create view.
  1753. VkImageViewCreateInfo image_view_create_info;
  1754. image_view_create_info.sType = VK_STRUCTURE_TYPE_IMAGE_VIEW_CREATE_INFO;
  1755. image_view_create_info.pNext = nullptr;
  1756. image_view_create_info.flags = 0;
  1757. image_view_create_info.image = texture.image;
  1758. static const VkImageViewType view_types[TEXTURE_TYPE_MAX] = {
  1759. VK_IMAGE_VIEW_TYPE_1D,
  1760. VK_IMAGE_VIEW_TYPE_2D,
  1761. VK_IMAGE_VIEW_TYPE_3D,
  1762. VK_IMAGE_VIEW_TYPE_CUBE,
  1763. VK_IMAGE_VIEW_TYPE_1D_ARRAY,
  1764. VK_IMAGE_VIEW_TYPE_2D_ARRAY,
  1765. VK_IMAGE_VIEW_TYPE_CUBE_ARRAY,
  1766. };
  1767. image_view_create_info.viewType = view_types[p_format.texture_type];
  1768. if (p_view.format_override == DATA_FORMAT_MAX) {
  1769. image_view_create_info.format = image_create_info.format;
  1770. } else {
  1771. image_view_create_info.format = vulkan_formats[p_view.format_override];
  1772. }
  1773. static const VkComponentSwizzle component_swizzles[TEXTURE_SWIZZLE_MAX] = {
  1774. VK_COMPONENT_SWIZZLE_IDENTITY,
  1775. VK_COMPONENT_SWIZZLE_ZERO,
  1776. VK_COMPONENT_SWIZZLE_ONE,
  1777. VK_COMPONENT_SWIZZLE_R,
  1778. VK_COMPONENT_SWIZZLE_G,
  1779. VK_COMPONENT_SWIZZLE_B,
  1780. VK_COMPONENT_SWIZZLE_A
  1781. };
  1782. image_view_create_info.components.r = component_swizzles[p_view.swizzle_r];
  1783. image_view_create_info.components.g = component_swizzles[p_view.swizzle_g];
  1784. image_view_create_info.components.b = component_swizzles[p_view.swizzle_b];
  1785. image_view_create_info.components.a = component_swizzles[p_view.swizzle_a];
  1786. image_view_create_info.subresourceRange.baseMipLevel = 0;
  1787. image_view_create_info.subresourceRange.levelCount = image_create_info.mipLevels;
  1788. image_view_create_info.subresourceRange.baseArrayLayer = 0;
  1789. image_view_create_info.subresourceRange.layerCount = image_create_info.arrayLayers;
  1790. if (p_format.usage_bits & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  1791. image_view_create_info.subresourceRange.aspectMask = VK_IMAGE_ASPECT_DEPTH_BIT;
  1792. } else {
  1793. image_view_create_info.subresourceRange.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
  1794. }
  1795. err = vkCreateImageView(device, &image_view_create_info, nullptr, &texture.view);
  1796. if (err) {
  1797. vmaDestroyImage(allocator, texture.image, texture.allocation);
  1798. ERR_FAIL_V_MSG(RID(), "vkCreateImageView failed with error " + itos(err) + ".");
  1799. }
  1800. // Barrier to set layout.
  1801. {
  1802. VkImageMemoryBarrier image_memory_barrier;
  1803. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  1804. image_memory_barrier.pNext = nullptr;
  1805. image_memory_barrier.srcAccessMask = 0;
  1806. image_memory_barrier.dstAccessMask = VK_ACCESS_SHADER_READ_BIT;
  1807. image_memory_barrier.oldLayout = VK_IMAGE_LAYOUT_UNDEFINED;
  1808. image_memory_barrier.newLayout = texture.layout;
  1809. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  1810. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  1811. image_memory_barrier.image = texture.image;
  1812. image_memory_barrier.subresourceRange.aspectMask = texture.barrier_aspect_mask;
  1813. image_memory_barrier.subresourceRange.baseMipLevel = 0;
  1814. image_memory_barrier.subresourceRange.levelCount = image_create_info.mipLevels;
  1815. image_memory_barrier.subresourceRange.baseArrayLayer = 0;
  1816. image_memory_barrier.subresourceRange.layerCount = image_create_info.arrayLayers;
  1817. vkCmdPipelineBarrier(frames[frame].setup_command_buffer, VK_PIPELINE_STAGE_TOP_OF_PIPE_BIT, VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT | VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  1818. }
  1819. RID id = texture_owner.make_rid(texture);
  1820. #ifdef DEV_ENABLED
  1821. set_resource_name(id, "RID:" + itos(id.get_id()));
  1822. #endif
  1823. if (p_data.size()) {
  1824. for (uint32_t i = 0; i < image_create_info.arrayLayers; i++) {
  1825. _texture_update(id, i, p_data[i], RD::BARRIER_MASK_ALL_BARRIERS, true);
  1826. }
  1827. }
  1828. return id;
  1829. }
  1830. RID RenderingDeviceVulkan::texture_create_shared(const TextureView &p_view, RID p_with_texture) {
  1831. _THREAD_SAFE_METHOD_
  1832. Texture *src_texture = texture_owner.get_or_null(p_with_texture);
  1833. ERR_FAIL_COND_V(!src_texture, RID());
  1834. if (src_texture->owner.is_valid()) { // Ahh this is a share.
  1835. p_with_texture = src_texture->owner;
  1836. src_texture = texture_owner.get_or_null(src_texture->owner);
  1837. ERR_FAIL_COND_V(!src_texture, RID()); // This is a bug.
  1838. }
  1839. // Create view.
  1840. Texture texture = *src_texture;
  1841. VkImageViewCreateInfo image_view_create_info;
  1842. image_view_create_info.sType = VK_STRUCTURE_TYPE_IMAGE_VIEW_CREATE_INFO;
  1843. image_view_create_info.pNext = nullptr;
  1844. image_view_create_info.flags = 0;
  1845. image_view_create_info.image = texture.image;
  1846. static const VkImageViewType view_types[TEXTURE_TYPE_MAX] = {
  1847. VK_IMAGE_VIEW_TYPE_1D,
  1848. VK_IMAGE_VIEW_TYPE_2D,
  1849. VK_IMAGE_VIEW_TYPE_3D,
  1850. VK_IMAGE_VIEW_TYPE_CUBE,
  1851. VK_IMAGE_VIEW_TYPE_1D_ARRAY,
  1852. VK_IMAGE_VIEW_TYPE_2D_ARRAY,
  1853. VK_IMAGE_VIEW_TYPE_CUBE_ARRAY,
  1854. };
  1855. image_view_create_info.viewType = view_types[texture.type];
  1856. if (p_view.format_override == DATA_FORMAT_MAX || p_view.format_override == texture.format) {
  1857. image_view_create_info.format = vulkan_formats[texture.format];
  1858. } else {
  1859. ERR_FAIL_INDEX_V(p_view.format_override, DATA_FORMAT_MAX, RID());
  1860. ERR_FAIL_COND_V_MSG(texture.allowed_shared_formats.find(p_view.format_override) == -1, RID(),
  1861. "Format override is not in the list of allowed shareable formats for original texture.");
  1862. image_view_create_info.format = vulkan_formats[p_view.format_override];
  1863. }
  1864. static const VkComponentSwizzle component_swizzles[TEXTURE_SWIZZLE_MAX] = {
  1865. VK_COMPONENT_SWIZZLE_IDENTITY,
  1866. VK_COMPONENT_SWIZZLE_ZERO,
  1867. VK_COMPONENT_SWIZZLE_ONE,
  1868. VK_COMPONENT_SWIZZLE_R,
  1869. VK_COMPONENT_SWIZZLE_G,
  1870. VK_COMPONENT_SWIZZLE_B,
  1871. VK_COMPONENT_SWIZZLE_A
  1872. };
  1873. image_view_create_info.components.r = component_swizzles[p_view.swizzle_r];
  1874. image_view_create_info.components.g = component_swizzles[p_view.swizzle_g];
  1875. image_view_create_info.components.b = component_swizzles[p_view.swizzle_b];
  1876. image_view_create_info.components.a = component_swizzles[p_view.swizzle_a];
  1877. image_view_create_info.subresourceRange.baseMipLevel = 0;
  1878. image_view_create_info.subresourceRange.levelCount = texture.mipmaps;
  1879. image_view_create_info.subresourceRange.layerCount = texture.layers;
  1880. image_view_create_info.subresourceRange.baseArrayLayer = 0;
  1881. if (texture.usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  1882. image_view_create_info.subresourceRange.aspectMask = VK_IMAGE_ASPECT_DEPTH_BIT;
  1883. } else {
  1884. image_view_create_info.subresourceRange.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
  1885. }
  1886. VkImageViewUsageCreateInfo usage_info;
  1887. usage_info.sType = VK_STRUCTURE_TYPE_IMAGE_VIEW_USAGE_CREATE_INFO;
  1888. usage_info.pNext = nullptr;
  1889. if (p_view.format_override != DATA_FORMAT_MAX) {
  1890. // Need to validate usage with vulkan.
  1891. usage_info.usage = 0;
  1892. if (texture.usage_flags & TEXTURE_USAGE_SAMPLING_BIT) {
  1893. usage_info.usage |= VK_IMAGE_USAGE_SAMPLED_BIT;
  1894. }
  1895. if (texture.usage_flags & TEXTURE_USAGE_STORAGE_BIT) {
  1896. if (texture_is_format_supported_for_usage(p_view.format_override, TEXTURE_USAGE_STORAGE_BIT)) {
  1897. usage_info.usage |= VK_IMAGE_USAGE_STORAGE_BIT;
  1898. }
  1899. }
  1900. if (texture.usage_flags & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT) {
  1901. if (texture_is_format_supported_for_usage(p_view.format_override, TEXTURE_USAGE_COLOR_ATTACHMENT_BIT)) {
  1902. usage_info.usage |= VK_IMAGE_USAGE_COLOR_ATTACHMENT_BIT;
  1903. }
  1904. }
  1905. if (texture.usage_flags & TEXTURE_USAGE_INPUT_ATTACHMENT_BIT) {
  1906. usage_info.usage |= VK_IMAGE_USAGE_INPUT_ATTACHMENT_BIT;
  1907. }
  1908. if (texture.usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  1909. usage_info.usage |= VK_IMAGE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT;
  1910. }
  1911. if (texture.usage_flags & TEXTURE_USAGE_CAN_UPDATE_BIT) {
  1912. usage_info.usage |= VK_IMAGE_USAGE_TRANSFER_DST_BIT;
  1913. }
  1914. if (texture.usage_flags & TEXTURE_USAGE_CAN_COPY_FROM_BIT) {
  1915. usage_info.usage |= VK_IMAGE_USAGE_TRANSFER_SRC_BIT;
  1916. }
  1917. if (texture.usage_flags & TEXTURE_USAGE_CAN_COPY_TO_BIT) {
  1918. usage_info.usage |= VK_IMAGE_USAGE_TRANSFER_DST_BIT;
  1919. }
  1920. image_view_create_info.pNext = &usage_info;
  1921. }
  1922. VkResult err = vkCreateImageView(device, &image_view_create_info, nullptr, &texture.view);
  1923. ERR_FAIL_COND_V_MSG(err, RID(), "vkCreateImageView failed with error " + itos(err) + ".");
  1924. texture.owner = p_with_texture;
  1925. RID id = texture_owner.make_rid(texture);
  1926. #ifdef DEV_ENABLED
  1927. set_resource_name(id, "RID:" + itos(id.get_id()));
  1928. #endif
  1929. _add_dependency(id, p_with_texture);
  1930. return id;
  1931. }
  1932. RID RenderingDeviceVulkan::texture_create_from_extension(TextureType p_type, DataFormat p_format, TextureSamples p_samples, uint64_t p_flags, uint64_t p_image, uint64_t p_width, uint64_t p_height, uint64_t p_depth, uint64_t p_layers) {
  1933. _THREAD_SAFE_METHOD_
  1934. // This method creates a texture object using a VkImage created by an extension, module or other external source (OpenXR uses this).
  1935. VkImage image = (VkImage)p_image;
  1936. Texture texture;
  1937. texture.image = image;
  1938. // If we leave texture.allocation as a nullptr, would that be enough to detect we don't "own" the image?
  1939. // Also leave texture.allocation_info alone.
  1940. // We'll set texture.view later on.
  1941. texture.type = p_type;
  1942. texture.format = p_format;
  1943. texture.samples = p_samples;
  1944. texture.width = p_width;
  1945. texture.height = p_height;
  1946. texture.depth = p_depth;
  1947. texture.layers = p_layers;
  1948. texture.mipmaps = 1;
  1949. texture.usage_flags = p_flags;
  1950. texture.base_mipmap = 0;
  1951. texture.base_layer = 0;
  1952. texture.allowed_shared_formats.push_back(RD::DATA_FORMAT_R8G8B8A8_UNORM);
  1953. texture.allowed_shared_formats.push_back(RD::DATA_FORMAT_R8G8B8A8_SRGB);
  1954. // Set base layout based on usage priority.
  1955. if (texture.usage_flags & TEXTURE_USAGE_SAMPLING_BIT) {
  1956. // First priority, readable.
  1957. texture.layout = VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL;
  1958. } else if (texture.usage_flags & TEXTURE_USAGE_STORAGE_BIT) {
  1959. // Second priority, storage.
  1960. texture.layout = VK_IMAGE_LAYOUT_GENERAL;
  1961. } else if (texture.usage_flags & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT) {
  1962. // Third priority, color or depth.
  1963. texture.layout = VK_IMAGE_LAYOUT_COLOR_ATTACHMENT_OPTIMAL;
  1964. } else if (texture.usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  1965. texture.layout = VK_IMAGE_LAYOUT_DEPTH_STENCIL_ATTACHMENT_OPTIMAL;
  1966. } else {
  1967. texture.layout = VK_IMAGE_LAYOUT_GENERAL;
  1968. }
  1969. if (texture.usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  1970. texture.read_aspect_mask = VK_IMAGE_ASPECT_DEPTH_BIT;
  1971. texture.barrier_aspect_mask = VK_IMAGE_ASPECT_DEPTH_BIT;
  1972. // if (format_has_stencil(p_format.format)) {
  1973. // texture.barrier_aspect_mask |= VK_IMAGE_ASPECT_STENCIL_BIT;
  1974. // }
  1975. } else {
  1976. texture.read_aspect_mask = VK_IMAGE_ASPECT_COLOR_BIT;
  1977. texture.barrier_aspect_mask = VK_IMAGE_ASPECT_COLOR_BIT;
  1978. }
  1979. // Create a view for us to use.
  1980. VkImageViewCreateInfo image_view_create_info;
  1981. image_view_create_info.sType = VK_STRUCTURE_TYPE_IMAGE_VIEW_CREATE_INFO;
  1982. image_view_create_info.pNext = nullptr;
  1983. image_view_create_info.flags = 0;
  1984. image_view_create_info.image = texture.image;
  1985. static const VkImageViewType view_types[TEXTURE_TYPE_MAX] = {
  1986. VK_IMAGE_VIEW_TYPE_1D,
  1987. VK_IMAGE_VIEW_TYPE_2D,
  1988. VK_IMAGE_VIEW_TYPE_3D,
  1989. VK_IMAGE_VIEW_TYPE_CUBE,
  1990. VK_IMAGE_VIEW_TYPE_1D_ARRAY,
  1991. VK_IMAGE_VIEW_TYPE_2D_ARRAY,
  1992. VK_IMAGE_VIEW_TYPE_CUBE_ARRAY,
  1993. };
  1994. image_view_create_info.viewType = view_types[texture.type];
  1995. image_view_create_info.format = vulkan_formats[texture.format];
  1996. static const VkComponentSwizzle component_swizzles[TEXTURE_SWIZZLE_MAX] = {
  1997. VK_COMPONENT_SWIZZLE_IDENTITY,
  1998. VK_COMPONENT_SWIZZLE_ZERO,
  1999. VK_COMPONENT_SWIZZLE_ONE,
  2000. VK_COMPONENT_SWIZZLE_R,
  2001. VK_COMPONENT_SWIZZLE_G,
  2002. VK_COMPONENT_SWIZZLE_B,
  2003. VK_COMPONENT_SWIZZLE_A
  2004. };
  2005. // Hardcode for now, maybe make this settable from outside.
  2006. image_view_create_info.components.r = component_swizzles[TEXTURE_SWIZZLE_R];
  2007. image_view_create_info.components.g = component_swizzles[TEXTURE_SWIZZLE_G];
  2008. image_view_create_info.components.b = component_swizzles[TEXTURE_SWIZZLE_B];
  2009. image_view_create_info.components.a = component_swizzles[TEXTURE_SWIZZLE_A];
  2010. image_view_create_info.subresourceRange.baseMipLevel = 0;
  2011. image_view_create_info.subresourceRange.levelCount = texture.mipmaps;
  2012. image_view_create_info.subresourceRange.baseArrayLayer = 0;
  2013. image_view_create_info.subresourceRange.layerCount = texture.layers;
  2014. if (texture.usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  2015. image_view_create_info.subresourceRange.aspectMask = VK_IMAGE_ASPECT_DEPTH_BIT;
  2016. } else {
  2017. image_view_create_info.subresourceRange.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
  2018. }
  2019. VkResult err = vkCreateImageView(device, &image_view_create_info, nullptr, &texture.view);
  2020. if (err) {
  2021. // vmaDestroyImage(allocator, texture.image, texture.allocation);
  2022. ERR_FAIL_V_MSG(RID(), "vkCreateImageView failed with error " + itos(err) + ".");
  2023. }
  2024. // Barrier to set layout.
  2025. {
  2026. VkImageMemoryBarrier image_memory_barrier;
  2027. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  2028. image_memory_barrier.pNext = nullptr;
  2029. image_memory_barrier.srcAccessMask = 0;
  2030. image_memory_barrier.dstAccessMask = VK_ACCESS_SHADER_READ_BIT;
  2031. image_memory_barrier.oldLayout = VK_IMAGE_LAYOUT_UNDEFINED;
  2032. image_memory_barrier.newLayout = texture.layout;
  2033. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2034. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2035. image_memory_barrier.image = texture.image;
  2036. image_memory_barrier.subresourceRange.aspectMask = texture.barrier_aspect_mask;
  2037. image_memory_barrier.subresourceRange.baseMipLevel = 0;
  2038. image_memory_barrier.subresourceRange.levelCount = texture.mipmaps;
  2039. image_memory_barrier.subresourceRange.baseArrayLayer = 0;
  2040. image_memory_barrier.subresourceRange.layerCount = texture.layers;
  2041. vkCmdPipelineBarrier(frames[frame].setup_command_buffer, VK_PIPELINE_STAGE_TOP_OF_PIPE_BIT, VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT | VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  2042. }
  2043. RID id = texture_owner.make_rid(texture);
  2044. #ifdef DEV_ENABLED
  2045. set_resource_name(id, "RID:" + itos(id.get_id()));
  2046. #endif
  2047. return id;
  2048. }
  2049. RID RenderingDeviceVulkan::texture_create_shared_from_slice(const TextureView &p_view, RID p_with_texture, uint32_t p_layer, uint32_t p_mipmap, uint32_t p_mipmaps, TextureSliceType p_slice_type) {
  2050. _THREAD_SAFE_METHOD_
  2051. Texture *src_texture = texture_owner.get_or_null(p_with_texture);
  2052. ERR_FAIL_COND_V(!src_texture, RID());
  2053. if (src_texture->owner.is_valid()) { // Ahh this is a share.
  2054. p_with_texture = src_texture->owner;
  2055. src_texture = texture_owner.get_or_null(src_texture->owner);
  2056. ERR_FAIL_COND_V(!src_texture, RID()); // This is a bug.
  2057. }
  2058. ERR_FAIL_COND_V_MSG(p_slice_type == TEXTURE_SLICE_CUBEMAP && (src_texture->type != TEXTURE_TYPE_CUBE && src_texture->type != TEXTURE_TYPE_CUBE_ARRAY), RID(),
  2059. "Can only create a cubemap slice from a cubemap or cubemap array mipmap");
  2060. ERR_FAIL_COND_V_MSG(p_slice_type == TEXTURE_SLICE_3D && src_texture->type != TEXTURE_TYPE_3D, RID(),
  2061. "Can only create a 3D slice from a 3D texture");
  2062. ERR_FAIL_COND_V_MSG(p_slice_type == TEXTURE_SLICE_2D_ARRAY && (src_texture->type != TEXTURE_TYPE_2D_ARRAY), RID(),
  2063. "Can only create an array slice from a 2D array mipmap");
  2064. // Create view.
  2065. ERR_FAIL_UNSIGNED_INDEX_V(p_mipmap, src_texture->mipmaps, RID());
  2066. ERR_FAIL_COND_V(p_mipmap + p_mipmaps > src_texture->mipmaps, RID());
  2067. ERR_FAIL_UNSIGNED_INDEX_V(p_layer, src_texture->layers, RID());
  2068. int slice_layers = 1;
  2069. if (p_slice_type == TEXTURE_SLICE_2D_ARRAY) {
  2070. ERR_FAIL_COND_V_MSG(p_layer != 0, RID(), "layer must be 0 when obtaining a 2D array mipmap slice");
  2071. slice_layers = src_texture->layers;
  2072. } else if (p_slice_type == TEXTURE_SLICE_CUBEMAP) {
  2073. slice_layers = 6;
  2074. }
  2075. Texture texture = *src_texture;
  2076. get_image_format_required_size(texture.format, texture.width, texture.height, texture.depth, p_mipmap + 1, &texture.width, &texture.height);
  2077. texture.mipmaps = p_mipmaps;
  2078. texture.layers = slice_layers;
  2079. texture.base_mipmap = p_mipmap;
  2080. texture.base_layer = p_layer;
  2081. VkImageViewCreateInfo image_view_create_info;
  2082. image_view_create_info.sType = VK_STRUCTURE_TYPE_IMAGE_VIEW_CREATE_INFO;
  2083. image_view_create_info.pNext = nullptr;
  2084. image_view_create_info.flags = 0;
  2085. image_view_create_info.image = texture.image;
  2086. static const VkImageViewType view_types[TEXTURE_TYPE_MAX] = {
  2087. VK_IMAGE_VIEW_TYPE_1D,
  2088. VK_IMAGE_VIEW_TYPE_2D,
  2089. VK_IMAGE_VIEW_TYPE_2D,
  2090. VK_IMAGE_VIEW_TYPE_2D,
  2091. VK_IMAGE_VIEW_TYPE_1D,
  2092. VK_IMAGE_VIEW_TYPE_2D,
  2093. VK_IMAGE_VIEW_TYPE_2D,
  2094. };
  2095. image_view_create_info.viewType = view_types[texture.type];
  2096. if (p_slice_type == TEXTURE_SLICE_CUBEMAP) {
  2097. image_view_create_info.viewType = VK_IMAGE_VIEW_TYPE_CUBE;
  2098. } else if (p_slice_type == TEXTURE_SLICE_3D) {
  2099. image_view_create_info.viewType = VK_IMAGE_VIEW_TYPE_3D;
  2100. } else if (p_slice_type == TEXTURE_SLICE_2D_ARRAY) {
  2101. image_view_create_info.viewType = VK_IMAGE_VIEW_TYPE_2D_ARRAY;
  2102. }
  2103. if (p_slice_type == TEXTURE_SLICE_2D) {
  2104. texture.type = TEXTURE_TYPE_2D;
  2105. } else if (p_slice_type == TEXTURE_SLICE_3D) {
  2106. texture.type = TEXTURE_TYPE_3D;
  2107. }
  2108. if (p_view.format_override == DATA_FORMAT_MAX || p_view.format_override == texture.format) {
  2109. image_view_create_info.format = vulkan_formats[texture.format];
  2110. } else {
  2111. ERR_FAIL_INDEX_V(p_view.format_override, DATA_FORMAT_MAX, RID());
  2112. ERR_FAIL_COND_V_MSG(texture.allowed_shared_formats.find(p_view.format_override) == -1, RID(),
  2113. "Format override is not in the list of allowed shareable formats for original texture.");
  2114. image_view_create_info.format = vulkan_formats[p_view.format_override];
  2115. }
  2116. static const VkComponentSwizzle component_swizzles[TEXTURE_SWIZZLE_MAX] = {
  2117. VK_COMPONENT_SWIZZLE_IDENTITY,
  2118. VK_COMPONENT_SWIZZLE_ZERO,
  2119. VK_COMPONENT_SWIZZLE_ONE,
  2120. VK_COMPONENT_SWIZZLE_R,
  2121. VK_COMPONENT_SWIZZLE_G,
  2122. VK_COMPONENT_SWIZZLE_B,
  2123. VK_COMPONENT_SWIZZLE_A
  2124. };
  2125. image_view_create_info.components.r = component_swizzles[p_view.swizzle_r];
  2126. image_view_create_info.components.g = component_swizzles[p_view.swizzle_g];
  2127. image_view_create_info.components.b = component_swizzles[p_view.swizzle_b];
  2128. image_view_create_info.components.a = component_swizzles[p_view.swizzle_a];
  2129. if (p_slice_type == TEXTURE_SLICE_CUBEMAP) {
  2130. ERR_FAIL_COND_V_MSG(p_layer >= src_texture->layers, RID(),
  2131. "Specified layer is invalid for cubemap");
  2132. ERR_FAIL_COND_V_MSG((p_layer % 6) != 0, RID(),
  2133. "Specified layer must be a multiple of 6.");
  2134. }
  2135. image_view_create_info.subresourceRange.baseMipLevel = p_mipmap;
  2136. image_view_create_info.subresourceRange.levelCount = p_mipmaps;
  2137. image_view_create_info.subresourceRange.layerCount = slice_layers;
  2138. image_view_create_info.subresourceRange.baseArrayLayer = p_layer;
  2139. if (texture.usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  2140. image_view_create_info.subresourceRange.aspectMask = VK_IMAGE_ASPECT_DEPTH_BIT;
  2141. } else {
  2142. image_view_create_info.subresourceRange.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
  2143. }
  2144. VkResult err = vkCreateImageView(device, &image_view_create_info, nullptr, &texture.view);
  2145. ERR_FAIL_COND_V_MSG(err, RID(), "vkCreateImageView failed with error " + itos(err) + ".");
  2146. texture.owner = p_with_texture;
  2147. RID id = texture_owner.make_rid(texture);
  2148. #ifdef DEV_ENABLED
  2149. set_resource_name(id, "RID:" + itos(id.get_id()));
  2150. #endif
  2151. _add_dependency(id, p_with_texture);
  2152. return id;
  2153. }
  2154. Error RenderingDeviceVulkan::texture_update(RID p_texture, uint32_t p_layer, const Vector<uint8_t> &p_data, BitField<BarrierMask> p_post_barrier) {
  2155. return _texture_update(p_texture, p_layer, p_data, p_post_barrier, false);
  2156. }
  2157. static _ALWAYS_INLINE_ void _copy_region(uint8_t const *__restrict p_src, uint8_t *__restrict p_dst, uint32_t p_src_x, uint32_t p_src_y, uint32_t p_src_w, uint32_t p_src_h, uint32_t p_src_full_w, uint32_t p_unit_size) {
  2158. uint32_t src_offset = (p_src_y * p_src_full_w + p_src_x) * p_unit_size;
  2159. uint32_t dst_offset = 0;
  2160. for (uint32_t y = p_src_h; y > 0; y--) {
  2161. uint8_t const *__restrict src = p_src + src_offset;
  2162. uint8_t *__restrict dst = p_dst + dst_offset;
  2163. for (uint32_t x = p_src_w * p_unit_size; x > 0; x--) {
  2164. *dst = *src;
  2165. src++;
  2166. dst++;
  2167. }
  2168. src_offset += p_src_full_w * p_unit_size;
  2169. dst_offset += p_src_w * p_unit_size;
  2170. }
  2171. }
  2172. Error RenderingDeviceVulkan::_texture_update(RID p_texture, uint32_t p_layer, const Vector<uint8_t> &p_data, BitField<BarrierMask> p_post_barrier, bool p_use_setup_queue) {
  2173. _THREAD_SAFE_METHOD_
  2174. ERR_FAIL_COND_V_MSG((draw_list || compute_list) && !p_use_setup_queue, ERR_INVALID_PARAMETER,
  2175. "Updating textures is forbidden during creation of a draw or compute list");
  2176. Texture *texture = texture_owner.get_or_null(p_texture);
  2177. ERR_FAIL_COND_V(!texture, ERR_INVALID_PARAMETER);
  2178. if (texture->owner != RID()) {
  2179. p_texture = texture->owner;
  2180. texture = texture_owner.get_or_null(texture->owner);
  2181. ERR_FAIL_COND_V(!texture, ERR_BUG); // This is a bug.
  2182. }
  2183. ERR_FAIL_COND_V_MSG(texture->bound, ERR_CANT_ACQUIRE_RESOURCE,
  2184. "Texture can't be updated while a render pass that uses it is being created. Ensure render pass is finalized (and that it was created with RENDER_PASS_CONTENTS_FINISH) to unbind this texture.");
  2185. ERR_FAIL_COND_V_MSG(!(texture->usage_flags & TEXTURE_USAGE_CAN_UPDATE_BIT), ERR_INVALID_PARAMETER,
  2186. "Texture requires the TEXTURE_USAGE_CAN_UPDATE_BIT in order to be updatable.");
  2187. uint32_t layer_count = texture->layers;
  2188. if (texture->type == TEXTURE_TYPE_CUBE || texture->type == TEXTURE_TYPE_CUBE_ARRAY) {
  2189. layer_count *= 6;
  2190. }
  2191. ERR_FAIL_COND_V(p_layer >= layer_count, ERR_INVALID_PARAMETER);
  2192. uint32_t width, height;
  2193. uint32_t image_size = get_image_format_required_size(texture->format, texture->width, texture->height, texture->depth, texture->mipmaps, &width, &height);
  2194. uint32_t required_size = image_size;
  2195. uint32_t required_align = get_compressed_image_format_block_byte_size(texture->format);
  2196. if (required_align == 1) {
  2197. required_align = get_image_format_pixel_size(texture->format);
  2198. }
  2199. if ((required_align % 4) != 0) { // Alignment rules are really strange.
  2200. required_align *= 4;
  2201. }
  2202. ERR_FAIL_COND_V_MSG(required_size != (uint32_t)p_data.size(), ERR_INVALID_PARAMETER,
  2203. "Required size for texture update (" + itos(required_size) + ") does not match data supplied size (" + itos(p_data.size()) + ").");
  2204. uint32_t region_size = texture_upload_region_size_px;
  2205. const uint8_t *r = p_data.ptr();
  2206. VkCommandBuffer command_buffer = p_use_setup_queue ? frames[frame].setup_command_buffer : frames[frame].draw_command_buffer;
  2207. // Barrier to transfer.
  2208. {
  2209. VkImageMemoryBarrier image_memory_barrier;
  2210. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  2211. image_memory_barrier.pNext = nullptr;
  2212. image_memory_barrier.srcAccessMask = 0;
  2213. image_memory_barrier.dstAccessMask = VK_ACCESS_TRANSFER_WRITE_BIT;
  2214. image_memory_barrier.oldLayout = texture->layout;
  2215. image_memory_barrier.newLayout = VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL;
  2216. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2217. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2218. image_memory_barrier.image = texture->image;
  2219. image_memory_barrier.subresourceRange.aspectMask = texture->barrier_aspect_mask;
  2220. image_memory_barrier.subresourceRange.baseMipLevel = 0;
  2221. image_memory_barrier.subresourceRange.levelCount = texture->mipmaps;
  2222. image_memory_barrier.subresourceRange.baseArrayLayer = p_layer;
  2223. image_memory_barrier.subresourceRange.layerCount = 1;
  2224. vkCmdPipelineBarrier(command_buffer, VK_PIPELINE_STAGE_BOTTOM_OF_PIPE_BIT, VK_PIPELINE_STAGE_TRANSFER_BIT, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  2225. }
  2226. uint32_t mipmap_offset = 0;
  2227. uint32_t logic_width = texture->width;
  2228. uint32_t logic_height = texture->height;
  2229. for (uint32_t mm_i = 0; mm_i < texture->mipmaps; mm_i++) {
  2230. uint32_t depth;
  2231. uint32_t image_total = get_image_format_required_size(texture->format, texture->width, texture->height, texture->depth, mm_i + 1, &width, &height, &depth);
  2232. const uint8_t *read_ptr_mipmap = r + mipmap_offset;
  2233. image_size = image_total - mipmap_offset;
  2234. for (uint32_t z = 0; z < depth; z++) { // For 3D textures, depth may be > 0.
  2235. const uint8_t *read_ptr = read_ptr_mipmap + image_size * z / depth;
  2236. for (uint32_t y = 0; y < height; y += region_size) {
  2237. for (uint32_t x = 0; x < width; x += region_size) {
  2238. uint32_t region_w = MIN(region_size, width - x);
  2239. uint32_t region_h = MIN(region_size, height - y);
  2240. uint32_t region_logic_w = MIN(region_size, logic_width - x);
  2241. uint32_t region_logic_h = MIN(region_size, logic_height - y);
  2242. uint32_t pixel_size = get_image_format_pixel_size(texture->format);
  2243. uint32_t to_allocate = region_w * region_h * pixel_size;
  2244. to_allocate >>= get_compressed_image_format_pixel_rshift(texture->format);
  2245. uint32_t alloc_offset, alloc_size;
  2246. Error err = _staging_buffer_allocate(to_allocate, required_align, alloc_offset, alloc_size, false);
  2247. ERR_FAIL_COND_V(err, ERR_CANT_CREATE);
  2248. uint8_t *write_ptr;
  2249. { // Map.
  2250. void *data_ptr = nullptr;
  2251. VkResult vkerr = vmaMapMemory(allocator, staging_buffer_blocks[staging_buffer_current].allocation, &data_ptr);
  2252. ERR_FAIL_COND_V_MSG(vkerr, ERR_CANT_CREATE, "vmaMapMemory failed with error " + itos(vkerr) + ".");
  2253. write_ptr = (uint8_t *)data_ptr;
  2254. write_ptr += alloc_offset;
  2255. }
  2256. uint32_t block_w, block_h;
  2257. get_compressed_image_format_block_dimensions(texture->format, block_w, block_h);
  2258. ERR_FAIL_COND_V(region_w % block_w, ERR_BUG);
  2259. ERR_FAIL_COND_V(region_h % block_h, ERR_BUG);
  2260. if (block_w != 1 || block_h != 1) {
  2261. // Compressed image (blocks).
  2262. // Must copy a block region.
  2263. uint32_t block_size = get_compressed_image_format_block_byte_size(texture->format);
  2264. // Re-create current variables in blocky format.
  2265. uint32_t xb = x / block_w;
  2266. uint32_t yb = y / block_h;
  2267. uint32_t wb = width / block_w;
  2268. //uint32_t hb = height / block_h;
  2269. uint32_t region_wb = region_w / block_w;
  2270. uint32_t region_hb = region_h / block_h;
  2271. _copy_region(read_ptr, write_ptr, xb, yb, region_wb, region_hb, wb, block_size);
  2272. } else {
  2273. // Regular image (pixels).
  2274. // Must copy a pixel region.
  2275. _copy_region(read_ptr, write_ptr, x, y, region_w, region_h, width, pixel_size);
  2276. }
  2277. { // Unmap.
  2278. vmaUnmapMemory(allocator, staging_buffer_blocks[staging_buffer_current].allocation);
  2279. }
  2280. VkBufferImageCopy buffer_image_copy;
  2281. buffer_image_copy.bufferOffset = alloc_offset;
  2282. buffer_image_copy.bufferRowLength = 0; // Tightly packed.
  2283. buffer_image_copy.bufferImageHeight = 0; // Tightly packed.
  2284. buffer_image_copy.imageSubresource.aspectMask = texture->read_aspect_mask;
  2285. buffer_image_copy.imageSubresource.mipLevel = mm_i;
  2286. buffer_image_copy.imageSubresource.baseArrayLayer = p_layer;
  2287. buffer_image_copy.imageSubresource.layerCount = 1;
  2288. buffer_image_copy.imageOffset.x = x;
  2289. buffer_image_copy.imageOffset.y = y;
  2290. buffer_image_copy.imageOffset.z = z;
  2291. buffer_image_copy.imageExtent.width = region_logic_w;
  2292. buffer_image_copy.imageExtent.height = region_logic_h;
  2293. buffer_image_copy.imageExtent.depth = 1;
  2294. vkCmdCopyBufferToImage(command_buffer, staging_buffer_blocks[staging_buffer_current].buffer, texture->image, VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL, 1, &buffer_image_copy);
  2295. staging_buffer_blocks.write[staging_buffer_current].fill_amount += alloc_size;
  2296. }
  2297. }
  2298. }
  2299. mipmap_offset = image_total;
  2300. logic_width = MAX(1u, logic_width >> 1);
  2301. logic_height = MAX(1u, logic_height >> 1);
  2302. }
  2303. // Barrier to restore layout.
  2304. {
  2305. uint32_t barrier_flags = 0;
  2306. uint32_t access_flags = 0;
  2307. if (p_post_barrier.has_flag(BARRIER_MASK_COMPUTE)) {
  2308. barrier_flags |= VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  2309. access_flags |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  2310. }
  2311. if (p_post_barrier.has_flag(BARRIER_MASK_RASTER)) {
  2312. barrier_flags |= VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT;
  2313. access_flags |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  2314. }
  2315. if (p_post_barrier.has_flag(BARRIER_MASK_TRANSFER)) {
  2316. barrier_flags |= VK_PIPELINE_STAGE_TRANSFER_BIT;
  2317. access_flags |= VK_ACCESS_TRANSFER_WRITE_BIT;
  2318. }
  2319. if (barrier_flags == 0) {
  2320. barrier_flags = VK_PIPELINE_STAGE_BOTTOM_OF_PIPE_BIT;
  2321. }
  2322. VkImageMemoryBarrier image_memory_barrier;
  2323. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  2324. image_memory_barrier.pNext = nullptr;
  2325. image_memory_barrier.srcAccessMask = VK_ACCESS_TRANSFER_WRITE_BIT;
  2326. image_memory_barrier.dstAccessMask = access_flags;
  2327. image_memory_barrier.oldLayout = VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL;
  2328. image_memory_barrier.newLayout = texture->layout;
  2329. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2330. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2331. image_memory_barrier.image = texture->image;
  2332. image_memory_barrier.subresourceRange.aspectMask = texture->barrier_aspect_mask;
  2333. image_memory_barrier.subresourceRange.baseMipLevel = 0;
  2334. image_memory_barrier.subresourceRange.levelCount = texture->mipmaps;
  2335. image_memory_barrier.subresourceRange.baseArrayLayer = p_layer;
  2336. image_memory_barrier.subresourceRange.layerCount = 1;
  2337. vkCmdPipelineBarrier(command_buffer, VK_PIPELINE_STAGE_TRANSFER_BIT, barrier_flags, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  2338. }
  2339. if (texture->used_in_frame != frames_drawn) {
  2340. texture->used_in_raster = false;
  2341. texture->used_in_compute = false;
  2342. texture->used_in_frame = frames_drawn;
  2343. }
  2344. texture->used_in_transfer = true;
  2345. return OK;
  2346. }
  2347. Vector<uint8_t> RenderingDeviceVulkan::_texture_get_data_from_image(Texture *tex, VkImage p_image, VmaAllocation p_allocation, uint32_t p_layer, bool p_2d) {
  2348. uint32_t width, height, depth;
  2349. uint32_t image_size = get_image_format_required_size(tex->format, tex->width, tex->height, p_2d ? 1 : tex->depth, tex->mipmaps, &width, &height, &depth);
  2350. Vector<uint8_t> image_data;
  2351. image_data.resize(image_size);
  2352. void *img_mem;
  2353. vmaMapMemory(allocator, p_allocation, &img_mem);
  2354. uint32_t blockw, blockh;
  2355. get_compressed_image_format_block_dimensions(tex->format, blockw, blockh);
  2356. uint32_t block_size = get_compressed_image_format_block_byte_size(tex->format);
  2357. uint32_t pixel_size = get_image_format_pixel_size(tex->format);
  2358. {
  2359. uint8_t *w = image_data.ptrw();
  2360. uint32_t mipmap_offset = 0;
  2361. for (uint32_t mm_i = 0; mm_i < tex->mipmaps; mm_i++) {
  2362. uint32_t image_total = get_image_format_required_size(tex->format, tex->width, tex->height, p_2d ? 1 : tex->depth, mm_i + 1, &width, &height, &depth);
  2363. uint8_t *write_ptr_mipmap = w + mipmap_offset;
  2364. image_size = image_total - mipmap_offset;
  2365. VkImageSubresource image_sub_resorce;
  2366. image_sub_resorce.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
  2367. image_sub_resorce.arrayLayer = p_layer;
  2368. image_sub_resorce.mipLevel = mm_i;
  2369. VkSubresourceLayout layout;
  2370. vkGetImageSubresourceLayout(device, p_image, &image_sub_resorce, &layout);
  2371. for (uint32_t z = 0; z < depth; z++) {
  2372. uint8_t *write_ptr = write_ptr_mipmap + z * image_size / depth;
  2373. const uint8_t *slice_read_ptr = ((uint8_t *)img_mem) + layout.offset + z * layout.depthPitch;
  2374. if (block_size > 1) {
  2375. // Compressed.
  2376. uint32_t line_width = (block_size * (width / blockw));
  2377. for (uint32_t y = 0; y < height / blockh; y++) {
  2378. const uint8_t *rptr = slice_read_ptr + y * layout.rowPitch;
  2379. uint8_t *wptr = write_ptr + y * line_width;
  2380. memcpy(wptr, rptr, line_width);
  2381. }
  2382. } else {
  2383. // Uncompressed.
  2384. for (uint32_t y = 0; y < height; y++) {
  2385. const uint8_t *rptr = slice_read_ptr + y * layout.rowPitch;
  2386. uint8_t *wptr = write_ptr + y * pixel_size * width;
  2387. memcpy(wptr, rptr, (uint64_t)pixel_size * width);
  2388. }
  2389. }
  2390. }
  2391. mipmap_offset = image_total;
  2392. }
  2393. }
  2394. vmaUnmapMemory(allocator, p_allocation);
  2395. return image_data;
  2396. }
  2397. Vector<uint8_t> RenderingDeviceVulkan::texture_get_data(RID p_texture, uint32_t p_layer) {
  2398. _THREAD_SAFE_METHOD_
  2399. Texture *tex = texture_owner.get_or_null(p_texture);
  2400. ERR_FAIL_COND_V(!tex, Vector<uint8_t>());
  2401. ERR_FAIL_COND_V_MSG(tex->bound, Vector<uint8_t>(),
  2402. "Texture can't be retrieved while a render pass that uses it is being created. Ensure render pass is finalized (and that it was created with RENDER_PASS_CONTENTS_FINISH) to unbind this texture.");
  2403. ERR_FAIL_COND_V_MSG(!(tex->usage_flags & TEXTURE_USAGE_CAN_COPY_FROM_BIT), Vector<uint8_t>(),
  2404. "Texture requires the TEXTURE_USAGE_CAN_COPY_FROM_BIT in order to be retrieved.");
  2405. uint32_t layer_count = tex->layers;
  2406. if (tex->type == TEXTURE_TYPE_CUBE || tex->type == TEXTURE_TYPE_CUBE_ARRAY) {
  2407. layer_count *= 6;
  2408. }
  2409. ERR_FAIL_COND_V(p_layer >= layer_count, Vector<uint8_t>());
  2410. if (tex->usage_flags & TEXTURE_USAGE_CPU_READ_BIT) {
  2411. // Does not need anything fancy, map and read.
  2412. return _texture_get_data_from_image(tex, tex->image, tex->allocation, p_layer);
  2413. } else {
  2414. // Compute total image size.
  2415. uint32_t width, height, depth;
  2416. uint32_t buffer_size = get_image_format_required_size(tex->format, tex->width, tex->height, tex->depth, tex->mipmaps, &width, &height, &depth);
  2417. // Allocate buffer.
  2418. VkCommandBuffer command_buffer = frames[frame].draw_command_buffer; // Makes more sense to retrieve.
  2419. Buffer tmp_buffer;
  2420. _buffer_allocate(&tmp_buffer, buffer_size, VK_BUFFER_USAGE_TRANSFER_DST_BIT, VMA_MEMORY_USAGE_AUTO_PREFER_HOST, VMA_ALLOCATION_CREATE_HOST_ACCESS_RANDOM_BIT);
  2421. { // Source image barrier.
  2422. VkImageMemoryBarrier image_memory_barrier;
  2423. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  2424. image_memory_barrier.pNext = nullptr;
  2425. image_memory_barrier.srcAccessMask = 0;
  2426. image_memory_barrier.dstAccessMask = VK_ACCESS_TRANSFER_READ_BIT;
  2427. image_memory_barrier.oldLayout = tex->layout;
  2428. image_memory_barrier.newLayout = VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL;
  2429. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2430. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2431. image_memory_barrier.image = tex->image;
  2432. image_memory_barrier.subresourceRange.aspectMask = tex->barrier_aspect_mask;
  2433. image_memory_barrier.subresourceRange.baseMipLevel = 0;
  2434. image_memory_barrier.subresourceRange.levelCount = tex->mipmaps;
  2435. image_memory_barrier.subresourceRange.baseArrayLayer = p_layer;
  2436. image_memory_barrier.subresourceRange.layerCount = 1;
  2437. vkCmdPipelineBarrier(command_buffer, VK_PIPELINE_STAGE_TOP_OF_PIPE_BIT, VK_PIPELINE_STAGE_TRANSFER_BIT, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  2438. }
  2439. uint32_t computed_w = tex->width;
  2440. uint32_t computed_h = tex->height;
  2441. uint32_t computed_d = tex->depth;
  2442. uint32_t prev_size = 0;
  2443. uint32_t offset = 0;
  2444. for (uint32_t i = 0; i < tex->mipmaps; i++) {
  2445. VkBufferImageCopy buffer_image_copy;
  2446. uint32_t image_size = get_image_format_required_size(tex->format, tex->width, tex->height, tex->depth, i + 1);
  2447. uint32_t size = image_size - prev_size;
  2448. prev_size = image_size;
  2449. buffer_image_copy.bufferOffset = offset;
  2450. buffer_image_copy.bufferImageHeight = 0;
  2451. buffer_image_copy.bufferRowLength = 0;
  2452. buffer_image_copy.imageSubresource.aspectMask = tex->read_aspect_mask;
  2453. buffer_image_copy.imageSubresource.baseArrayLayer = p_layer;
  2454. buffer_image_copy.imageSubresource.layerCount = 1;
  2455. buffer_image_copy.imageSubresource.mipLevel = i;
  2456. buffer_image_copy.imageOffset.x = 0;
  2457. buffer_image_copy.imageOffset.y = 0;
  2458. buffer_image_copy.imageOffset.z = 0;
  2459. buffer_image_copy.imageExtent.width = computed_w;
  2460. buffer_image_copy.imageExtent.height = computed_h;
  2461. buffer_image_copy.imageExtent.depth = computed_d;
  2462. vkCmdCopyImageToBuffer(command_buffer, tex->image, VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL, tmp_buffer.buffer, 1, &buffer_image_copy);
  2463. computed_w = MAX(1u, computed_w >> 1);
  2464. computed_h = MAX(1u, computed_h >> 1);
  2465. computed_d = MAX(1u, computed_d >> 1);
  2466. offset += size;
  2467. }
  2468. { // Restore src.
  2469. VkImageMemoryBarrier image_memory_barrier;
  2470. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  2471. image_memory_barrier.pNext = nullptr;
  2472. image_memory_barrier.srcAccessMask = VK_ACCESS_TRANSFER_READ_BIT;
  2473. image_memory_barrier.dstAccessMask = VK_ACCESS_SHADER_READ_BIT;
  2474. if (tex->usage_flags & TEXTURE_USAGE_STORAGE_BIT) {
  2475. image_memory_barrier.dstAccessMask |= VK_ACCESS_SHADER_WRITE_BIT;
  2476. }
  2477. image_memory_barrier.oldLayout = VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL;
  2478. image_memory_barrier.newLayout = tex->layout;
  2479. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2480. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2481. image_memory_barrier.image = tex->image;
  2482. image_memory_barrier.subresourceRange.aspectMask = tex->barrier_aspect_mask;
  2483. image_memory_barrier.subresourceRange.baseMipLevel = 0;
  2484. image_memory_barrier.subresourceRange.levelCount = tex->mipmaps;
  2485. image_memory_barrier.subresourceRange.baseArrayLayer = p_layer;
  2486. image_memory_barrier.subresourceRange.layerCount = 1;
  2487. vkCmdPipelineBarrier(command_buffer, VK_PIPELINE_STAGE_TRANSFER_BIT, VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT | VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  2488. }
  2489. _flush(true);
  2490. void *buffer_mem;
  2491. VkResult vkerr = vmaMapMemory(allocator, tmp_buffer.allocation, &buffer_mem);
  2492. ERR_FAIL_COND_V_MSG(vkerr, Vector<uint8_t>(), "vmaMapMemory failed with error " + itos(vkerr) + ".");
  2493. Vector<uint8_t> buffer_data;
  2494. {
  2495. buffer_data.resize(buffer_size);
  2496. uint8_t *w = buffer_data.ptrw();
  2497. memcpy(w, buffer_mem, buffer_size);
  2498. }
  2499. vmaUnmapMemory(allocator, tmp_buffer.allocation);
  2500. _buffer_free(&tmp_buffer);
  2501. return buffer_data;
  2502. }
  2503. }
  2504. bool RenderingDeviceVulkan::texture_is_shared(RID p_texture) {
  2505. _THREAD_SAFE_METHOD_
  2506. Texture *tex = texture_owner.get_or_null(p_texture);
  2507. ERR_FAIL_COND_V(!tex, false);
  2508. return tex->owner.is_valid();
  2509. }
  2510. bool RenderingDeviceVulkan::texture_is_valid(RID p_texture) {
  2511. return texture_owner.owns(p_texture);
  2512. }
  2513. Size2i RenderingDeviceVulkan::texture_size(RID p_texture) {
  2514. _THREAD_SAFE_METHOD_
  2515. Texture *tex = texture_owner.get_or_null(p_texture);
  2516. ERR_FAIL_COND_V(!tex, Size2i());
  2517. return Size2i(tex->width, tex->height);
  2518. }
  2519. Error RenderingDeviceVulkan::texture_copy(RID p_from_texture, RID p_to_texture, const Vector3 &p_from, const Vector3 &p_to, const Vector3 &p_size, uint32_t p_src_mipmap, uint32_t p_dst_mipmap, uint32_t p_src_layer, uint32_t p_dst_layer, BitField<BarrierMask> p_post_barrier) {
  2520. _THREAD_SAFE_METHOD_
  2521. Texture *src_tex = texture_owner.get_or_null(p_from_texture);
  2522. ERR_FAIL_COND_V(!src_tex, ERR_INVALID_PARAMETER);
  2523. ERR_FAIL_COND_V_MSG(src_tex->bound, ERR_INVALID_PARAMETER,
  2524. "Source texture can't be copied while a render pass that uses it is being created. Ensure render pass is finalized (and that it was created with RENDER_PASS_CONTENTS_FINISH) to unbind this texture.");
  2525. ERR_FAIL_COND_V_MSG(!(src_tex->usage_flags & TEXTURE_USAGE_CAN_COPY_FROM_BIT), ERR_INVALID_PARAMETER,
  2526. "Source texture requires the TEXTURE_USAGE_CAN_COPY_FROM_BIT in order to be retrieved.");
  2527. uint32_t src_layer_count = src_tex->layers;
  2528. uint32_t src_width, src_height, src_depth;
  2529. get_image_format_required_size(src_tex->format, src_tex->width, src_tex->height, src_tex->depth, p_src_mipmap + 1, &src_width, &src_height, &src_depth);
  2530. if (src_tex->type == TEXTURE_TYPE_CUBE || src_tex->type == TEXTURE_TYPE_CUBE_ARRAY) {
  2531. src_layer_count *= 6;
  2532. }
  2533. ERR_FAIL_COND_V(p_from.x < 0 || p_from.x + p_size.x > src_width, ERR_INVALID_PARAMETER);
  2534. ERR_FAIL_COND_V(p_from.y < 0 || p_from.y + p_size.y > src_height, ERR_INVALID_PARAMETER);
  2535. ERR_FAIL_COND_V(p_from.z < 0 || p_from.z + p_size.z > src_depth, ERR_INVALID_PARAMETER);
  2536. ERR_FAIL_COND_V(p_src_mipmap >= src_tex->mipmaps, ERR_INVALID_PARAMETER);
  2537. ERR_FAIL_COND_V(p_src_layer >= src_layer_count, ERR_INVALID_PARAMETER);
  2538. Texture *dst_tex = texture_owner.get_or_null(p_to_texture);
  2539. ERR_FAIL_COND_V(!dst_tex, ERR_INVALID_PARAMETER);
  2540. ERR_FAIL_COND_V_MSG(dst_tex->bound, ERR_INVALID_PARAMETER,
  2541. "Destination texture can't be copied while a render pass that uses it is being created. Ensure render pass is finalized (and that it was created with RENDER_PASS_CONTENTS_FINISH) to unbind this texture.");
  2542. ERR_FAIL_COND_V_MSG(!(dst_tex->usage_flags & TEXTURE_USAGE_CAN_COPY_TO_BIT), ERR_INVALID_PARAMETER,
  2543. "Destination texture requires the TEXTURE_USAGE_CAN_COPY_TO_BIT in order to be retrieved.");
  2544. uint32_t dst_layer_count = dst_tex->layers;
  2545. uint32_t dst_width, dst_height, dst_depth;
  2546. get_image_format_required_size(dst_tex->format, dst_tex->width, dst_tex->height, dst_tex->depth, p_dst_mipmap + 1, &dst_width, &dst_height, &dst_depth);
  2547. if (dst_tex->type == TEXTURE_TYPE_CUBE || dst_tex->type == TEXTURE_TYPE_CUBE_ARRAY) {
  2548. dst_layer_count *= 6;
  2549. }
  2550. ERR_FAIL_COND_V(p_to.x < 0 || p_to.x + p_size.x > dst_width, ERR_INVALID_PARAMETER);
  2551. ERR_FAIL_COND_V(p_to.y < 0 || p_to.y + p_size.y > dst_height, ERR_INVALID_PARAMETER);
  2552. ERR_FAIL_COND_V(p_to.z < 0 || p_to.z + p_size.z > dst_depth, ERR_INVALID_PARAMETER);
  2553. ERR_FAIL_COND_V(p_dst_mipmap >= dst_tex->mipmaps, ERR_INVALID_PARAMETER);
  2554. ERR_FAIL_COND_V(p_dst_layer >= dst_layer_count, ERR_INVALID_PARAMETER);
  2555. ERR_FAIL_COND_V_MSG(src_tex->read_aspect_mask != dst_tex->read_aspect_mask, ERR_INVALID_PARAMETER,
  2556. "Source and destination texture must be of the same type (color or depth).");
  2557. VkCommandBuffer command_buffer = frames[frame].draw_command_buffer;
  2558. {
  2559. // PRE Copy the image.
  2560. { // Source.
  2561. VkImageMemoryBarrier image_memory_barrier;
  2562. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  2563. image_memory_barrier.pNext = nullptr;
  2564. image_memory_barrier.srcAccessMask = 0;
  2565. image_memory_barrier.dstAccessMask = VK_ACCESS_TRANSFER_READ_BIT;
  2566. image_memory_barrier.oldLayout = src_tex->layout;
  2567. image_memory_barrier.newLayout = VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL;
  2568. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2569. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2570. image_memory_barrier.image = src_tex->image;
  2571. image_memory_barrier.subresourceRange.aspectMask = src_tex->barrier_aspect_mask;
  2572. image_memory_barrier.subresourceRange.baseMipLevel = p_src_mipmap;
  2573. image_memory_barrier.subresourceRange.levelCount = 1;
  2574. image_memory_barrier.subresourceRange.baseArrayLayer = p_src_layer;
  2575. image_memory_barrier.subresourceRange.layerCount = 1;
  2576. vkCmdPipelineBarrier(command_buffer, VK_PIPELINE_STAGE_TOP_OF_PIPE_BIT, VK_PIPELINE_STAGE_TRANSFER_BIT, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  2577. }
  2578. { // Dest.
  2579. VkImageMemoryBarrier image_memory_barrier;
  2580. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  2581. image_memory_barrier.pNext = nullptr;
  2582. image_memory_barrier.srcAccessMask = 0;
  2583. image_memory_barrier.dstAccessMask = VK_ACCESS_TRANSFER_WRITE_BIT;
  2584. image_memory_barrier.oldLayout = dst_tex->layout;
  2585. image_memory_barrier.newLayout = VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL;
  2586. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2587. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2588. image_memory_barrier.image = dst_tex->image;
  2589. image_memory_barrier.subresourceRange.aspectMask = dst_tex->read_aspect_mask;
  2590. image_memory_barrier.subresourceRange.baseMipLevel = p_dst_mipmap;
  2591. image_memory_barrier.subresourceRange.levelCount = 1;
  2592. image_memory_barrier.subresourceRange.baseArrayLayer = p_dst_layer;
  2593. image_memory_barrier.subresourceRange.layerCount = 1;
  2594. vkCmdPipelineBarrier(command_buffer, VK_PIPELINE_STAGE_TOP_OF_PIPE_BIT, VK_PIPELINE_STAGE_TRANSFER_BIT, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  2595. }
  2596. // COPY.
  2597. {
  2598. VkImageCopy image_copy_region;
  2599. image_copy_region.srcSubresource.aspectMask = src_tex->read_aspect_mask;
  2600. image_copy_region.srcSubresource.baseArrayLayer = p_src_layer;
  2601. image_copy_region.srcSubresource.layerCount = 1;
  2602. image_copy_region.srcSubresource.mipLevel = p_src_mipmap;
  2603. image_copy_region.srcOffset.x = p_from.x;
  2604. image_copy_region.srcOffset.y = p_from.y;
  2605. image_copy_region.srcOffset.z = p_from.z;
  2606. image_copy_region.dstSubresource.aspectMask = dst_tex->read_aspect_mask;
  2607. image_copy_region.dstSubresource.baseArrayLayer = p_dst_layer;
  2608. image_copy_region.dstSubresource.layerCount = 1;
  2609. image_copy_region.dstSubresource.mipLevel = p_dst_mipmap;
  2610. image_copy_region.dstOffset.x = p_to.x;
  2611. image_copy_region.dstOffset.y = p_to.y;
  2612. image_copy_region.dstOffset.z = p_to.z;
  2613. image_copy_region.extent.width = p_size.x;
  2614. image_copy_region.extent.height = p_size.y;
  2615. image_copy_region.extent.depth = p_size.z;
  2616. vkCmdCopyImage(command_buffer, src_tex->image, VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL, dst_tex->image, VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL, 1, &image_copy_region);
  2617. }
  2618. // RESTORE LAYOUT for SRC and DST.
  2619. uint32_t barrier_flags = 0;
  2620. uint32_t access_flags = 0;
  2621. if (p_post_barrier.has_flag(BARRIER_MASK_COMPUTE)) {
  2622. barrier_flags |= VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  2623. access_flags |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  2624. }
  2625. if (p_post_barrier.has_flag(BARRIER_MASK_RASTER)) {
  2626. barrier_flags |= VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT;
  2627. access_flags |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  2628. }
  2629. if (p_post_barrier.has_flag(BARRIER_MASK_TRANSFER)) {
  2630. barrier_flags |= VK_PIPELINE_STAGE_TRANSFER_BIT;
  2631. access_flags |= VK_ACCESS_TRANSFER_WRITE_BIT;
  2632. }
  2633. if (barrier_flags == 0) {
  2634. barrier_flags = VK_PIPELINE_STAGE_BOTTOM_OF_PIPE_BIT;
  2635. }
  2636. { // Restore src.
  2637. VkImageMemoryBarrier image_memory_barrier;
  2638. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  2639. image_memory_barrier.pNext = nullptr;
  2640. image_memory_barrier.srcAccessMask = VK_ACCESS_TRANSFER_READ_BIT;
  2641. image_memory_barrier.dstAccessMask = access_flags;
  2642. image_memory_barrier.oldLayout = VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL;
  2643. image_memory_barrier.newLayout = src_tex->layout;
  2644. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2645. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2646. image_memory_barrier.image = src_tex->image;
  2647. image_memory_barrier.subresourceRange.aspectMask = src_tex->barrier_aspect_mask;
  2648. image_memory_barrier.subresourceRange.baseMipLevel = p_src_mipmap;
  2649. image_memory_barrier.subresourceRange.levelCount = src_tex->mipmaps;
  2650. image_memory_barrier.subresourceRange.baseArrayLayer = p_src_layer;
  2651. image_memory_barrier.subresourceRange.layerCount = 1;
  2652. vkCmdPipelineBarrier(command_buffer, VK_PIPELINE_STAGE_TRANSFER_BIT, barrier_flags, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  2653. }
  2654. { // Make dst readable.
  2655. VkImageMemoryBarrier image_memory_barrier;
  2656. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  2657. image_memory_barrier.pNext = nullptr;
  2658. image_memory_barrier.srcAccessMask = VK_ACCESS_TRANSFER_WRITE_BIT;
  2659. image_memory_barrier.dstAccessMask = access_flags;
  2660. image_memory_barrier.oldLayout = VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL;
  2661. image_memory_barrier.newLayout = dst_tex->layout;
  2662. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2663. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2664. image_memory_barrier.image = dst_tex->image;
  2665. image_memory_barrier.subresourceRange.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
  2666. image_memory_barrier.subresourceRange.baseMipLevel = p_src_mipmap;
  2667. image_memory_barrier.subresourceRange.levelCount = 1;
  2668. image_memory_barrier.subresourceRange.baseArrayLayer = p_src_layer;
  2669. image_memory_barrier.subresourceRange.layerCount = 1;
  2670. vkCmdPipelineBarrier(command_buffer, VK_PIPELINE_STAGE_TRANSFER_BIT, barrier_flags, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  2671. }
  2672. }
  2673. if (dst_tex->used_in_frame != frames_drawn) {
  2674. dst_tex->used_in_raster = false;
  2675. dst_tex->used_in_compute = false;
  2676. dst_tex->used_in_frame = frames_drawn;
  2677. }
  2678. dst_tex->used_in_transfer = true;
  2679. return OK;
  2680. }
  2681. Error RenderingDeviceVulkan::texture_resolve_multisample(RID p_from_texture, RID p_to_texture, BitField<BarrierMask> p_post_barrier) {
  2682. _THREAD_SAFE_METHOD_
  2683. Texture *src_tex = texture_owner.get_or_null(p_from_texture);
  2684. ERR_FAIL_COND_V(!src_tex, ERR_INVALID_PARAMETER);
  2685. ERR_FAIL_COND_V_MSG(src_tex->bound, ERR_INVALID_PARAMETER,
  2686. "Source texture can't be copied while a render pass that uses it is being created. Ensure render pass is finalized (and that it was created with RENDER_PASS_CONTENTS_FINISH) to unbind this texture.");
  2687. ERR_FAIL_COND_V_MSG(!(src_tex->usage_flags & TEXTURE_USAGE_CAN_COPY_FROM_BIT), ERR_INVALID_PARAMETER,
  2688. "Source texture requires the TEXTURE_USAGE_CAN_COPY_FROM_BIT in order to be retrieved.");
  2689. ERR_FAIL_COND_V_MSG(src_tex->type != TEXTURE_TYPE_2D, ERR_INVALID_PARAMETER, "Source texture must be 2D (or a slice of a 3D/Cube texture)");
  2690. ERR_FAIL_COND_V_MSG(src_tex->samples == TEXTURE_SAMPLES_1, ERR_INVALID_PARAMETER, "Source texture must be multisampled.");
  2691. Texture *dst_tex = texture_owner.get_or_null(p_to_texture);
  2692. ERR_FAIL_COND_V(!dst_tex, ERR_INVALID_PARAMETER);
  2693. ERR_FAIL_COND_V_MSG(dst_tex->bound, ERR_INVALID_PARAMETER,
  2694. "Destination texture can't be copied while a render pass that uses it is being created. Ensure render pass is finalized (and that it was created with RENDER_PASS_CONTENTS_FINISH) to unbind this texture.");
  2695. ERR_FAIL_COND_V_MSG(!(dst_tex->usage_flags & TEXTURE_USAGE_CAN_COPY_TO_BIT), ERR_INVALID_PARAMETER,
  2696. "Destination texture requires the TEXTURE_USAGE_CAN_COPY_TO_BIT in order to be retrieved.");
  2697. ERR_FAIL_COND_V_MSG(dst_tex->type != TEXTURE_TYPE_2D, ERR_INVALID_PARAMETER, "Destination texture must be 2D (or a slice of a 3D/Cube texture).");
  2698. ERR_FAIL_COND_V_MSG(dst_tex->samples != TEXTURE_SAMPLES_1, ERR_INVALID_PARAMETER, "Destination texture must not be multisampled.");
  2699. ERR_FAIL_COND_V_MSG(src_tex->format != dst_tex->format, ERR_INVALID_PARAMETER, "Source and Destination textures must be the same format.");
  2700. ERR_FAIL_COND_V_MSG(src_tex->width != dst_tex->width && src_tex->height != dst_tex->height && src_tex->depth != dst_tex->depth, ERR_INVALID_PARAMETER, "Source and Destination textures must have the same dimensions.");
  2701. ERR_FAIL_COND_V_MSG(src_tex->read_aspect_mask != dst_tex->read_aspect_mask, ERR_INVALID_PARAMETER,
  2702. "Source and destination texture must be of the same type (color or depth).");
  2703. VkCommandBuffer command_buffer = frames[frame].draw_command_buffer;
  2704. {
  2705. // PRE Copy the image.
  2706. { // Source.
  2707. VkImageMemoryBarrier image_memory_barrier;
  2708. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  2709. image_memory_barrier.pNext = nullptr;
  2710. image_memory_barrier.srcAccessMask = 0;
  2711. image_memory_barrier.dstAccessMask = VK_ACCESS_TRANSFER_READ_BIT;
  2712. image_memory_barrier.oldLayout = src_tex->layout;
  2713. image_memory_barrier.newLayout = VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL;
  2714. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2715. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2716. image_memory_barrier.image = src_tex->image;
  2717. image_memory_barrier.subresourceRange.aspectMask = src_tex->barrier_aspect_mask;
  2718. image_memory_barrier.subresourceRange.baseMipLevel = src_tex->base_mipmap;
  2719. image_memory_barrier.subresourceRange.levelCount = 1;
  2720. image_memory_barrier.subresourceRange.baseArrayLayer = src_tex->base_layer;
  2721. image_memory_barrier.subresourceRange.layerCount = 1;
  2722. vkCmdPipelineBarrier(command_buffer, VK_PIPELINE_STAGE_BOTTOM_OF_PIPE_BIT, VK_PIPELINE_STAGE_TRANSFER_BIT, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  2723. }
  2724. { // Dest.
  2725. VkImageMemoryBarrier image_memory_barrier;
  2726. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  2727. image_memory_barrier.pNext = nullptr;
  2728. image_memory_barrier.srcAccessMask = 0;
  2729. image_memory_barrier.dstAccessMask = VK_ACCESS_TRANSFER_WRITE_BIT;
  2730. image_memory_barrier.oldLayout = dst_tex->layout;
  2731. image_memory_barrier.newLayout = VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL;
  2732. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2733. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2734. image_memory_barrier.image = dst_tex->image;
  2735. image_memory_barrier.subresourceRange.aspectMask = dst_tex->read_aspect_mask;
  2736. image_memory_barrier.subresourceRange.baseMipLevel = dst_tex->base_mipmap;
  2737. image_memory_barrier.subresourceRange.levelCount = 1;
  2738. image_memory_barrier.subresourceRange.baseArrayLayer = dst_tex->base_layer;
  2739. image_memory_barrier.subresourceRange.layerCount = 1;
  2740. vkCmdPipelineBarrier(command_buffer, VK_PIPELINE_STAGE_TOP_OF_PIPE_BIT, VK_PIPELINE_STAGE_TRANSFER_BIT, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  2741. }
  2742. // COPY.
  2743. {
  2744. VkImageResolve image_copy_region;
  2745. image_copy_region.srcSubresource.aspectMask = src_tex->read_aspect_mask;
  2746. image_copy_region.srcSubresource.baseArrayLayer = src_tex->base_layer;
  2747. image_copy_region.srcSubresource.layerCount = 1;
  2748. image_copy_region.srcSubresource.mipLevel = src_tex->base_mipmap;
  2749. image_copy_region.srcOffset.x = 0;
  2750. image_copy_region.srcOffset.y = 0;
  2751. image_copy_region.srcOffset.z = 0;
  2752. image_copy_region.dstSubresource.aspectMask = dst_tex->read_aspect_mask;
  2753. image_copy_region.dstSubresource.baseArrayLayer = dst_tex->base_layer;
  2754. image_copy_region.dstSubresource.layerCount = 1;
  2755. image_copy_region.dstSubresource.mipLevel = dst_tex->base_mipmap;
  2756. image_copy_region.dstOffset.x = 0;
  2757. image_copy_region.dstOffset.y = 0;
  2758. image_copy_region.dstOffset.z = 0;
  2759. image_copy_region.extent.width = src_tex->width;
  2760. image_copy_region.extent.height = src_tex->height;
  2761. image_copy_region.extent.depth = src_tex->depth;
  2762. vkCmdResolveImage(command_buffer, src_tex->image, VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL, dst_tex->image, VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL, 1, &image_copy_region);
  2763. }
  2764. // RESTORE LAYOUT for SRC and DST.
  2765. uint32_t barrier_flags = 0;
  2766. uint32_t access_flags = 0;
  2767. if (p_post_barrier.has_flag(BARRIER_MASK_COMPUTE)) {
  2768. barrier_flags |= VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  2769. access_flags |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  2770. }
  2771. if (p_post_barrier.has_flag(BARRIER_MASK_RASTER)) {
  2772. barrier_flags |= VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT;
  2773. access_flags |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  2774. }
  2775. if (p_post_barrier.has_flag(BARRIER_MASK_TRANSFER)) {
  2776. barrier_flags |= VK_PIPELINE_STAGE_TRANSFER_BIT;
  2777. access_flags |= VK_ACCESS_TRANSFER_WRITE_BIT;
  2778. }
  2779. if (barrier_flags == 0) {
  2780. barrier_flags = VK_PIPELINE_STAGE_BOTTOM_OF_PIPE_BIT;
  2781. }
  2782. { // Restore src.
  2783. VkImageMemoryBarrier image_memory_barrier;
  2784. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  2785. image_memory_barrier.pNext = nullptr;
  2786. image_memory_barrier.srcAccessMask = VK_ACCESS_TRANSFER_READ_BIT;
  2787. image_memory_barrier.dstAccessMask = access_flags;
  2788. image_memory_barrier.oldLayout = VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL;
  2789. image_memory_barrier.newLayout = src_tex->layout;
  2790. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2791. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2792. image_memory_barrier.image = src_tex->image;
  2793. image_memory_barrier.subresourceRange.aspectMask = src_tex->barrier_aspect_mask;
  2794. image_memory_barrier.subresourceRange.baseMipLevel = src_tex->base_mipmap;
  2795. image_memory_barrier.subresourceRange.levelCount = 1;
  2796. image_memory_barrier.subresourceRange.baseArrayLayer = src_tex->base_layer;
  2797. image_memory_barrier.subresourceRange.layerCount = 1;
  2798. vkCmdPipelineBarrier(command_buffer, VK_ACCESS_TRANSFER_WRITE_BIT, barrier_flags, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  2799. }
  2800. { // Make dst readable.
  2801. VkImageMemoryBarrier image_memory_barrier;
  2802. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  2803. image_memory_barrier.pNext = nullptr;
  2804. image_memory_barrier.srcAccessMask = VK_ACCESS_TRANSFER_WRITE_BIT;
  2805. image_memory_barrier.dstAccessMask = access_flags;
  2806. image_memory_barrier.oldLayout = VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL;
  2807. image_memory_barrier.newLayout = dst_tex->layout;
  2808. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2809. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2810. image_memory_barrier.image = dst_tex->image;
  2811. image_memory_barrier.subresourceRange.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
  2812. image_memory_barrier.subresourceRange.baseMipLevel = dst_tex->base_mipmap;
  2813. image_memory_barrier.subresourceRange.levelCount = 1;
  2814. image_memory_barrier.subresourceRange.baseArrayLayer = dst_tex->base_layer;
  2815. image_memory_barrier.subresourceRange.layerCount = 1;
  2816. vkCmdPipelineBarrier(command_buffer, VK_PIPELINE_STAGE_TRANSFER_BIT, barrier_flags, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  2817. }
  2818. }
  2819. return OK;
  2820. }
  2821. Error RenderingDeviceVulkan::texture_clear(RID p_texture, const Color &p_color, uint32_t p_base_mipmap, uint32_t p_mipmaps, uint32_t p_base_layer, uint32_t p_layers, BitField<BarrierMask> p_post_barrier) {
  2822. _THREAD_SAFE_METHOD_
  2823. Texture *src_tex = texture_owner.get_or_null(p_texture);
  2824. ERR_FAIL_COND_V(!src_tex, ERR_INVALID_PARAMETER);
  2825. ERR_FAIL_COND_V_MSG(src_tex->bound, ERR_INVALID_PARAMETER,
  2826. "Source texture can't be cleared while a render pass that uses it is being created. Ensure render pass is finalized (and that it was created with RENDER_PASS_CONTENTS_FINISH) to unbind this texture.");
  2827. ERR_FAIL_COND_V(p_layers == 0, ERR_INVALID_PARAMETER);
  2828. ERR_FAIL_COND_V(p_mipmaps == 0, ERR_INVALID_PARAMETER);
  2829. ERR_FAIL_COND_V_MSG(!(src_tex->usage_flags & TEXTURE_USAGE_CAN_COPY_TO_BIT), ERR_INVALID_PARAMETER,
  2830. "Source texture requires the TEXTURE_USAGE_CAN_COPY_TO_BIT in order to be cleared.");
  2831. uint32_t src_layer_count = src_tex->layers;
  2832. if (src_tex->type == TEXTURE_TYPE_CUBE || src_tex->type == TEXTURE_TYPE_CUBE_ARRAY) {
  2833. src_layer_count *= 6;
  2834. }
  2835. ERR_FAIL_COND_V(p_base_mipmap + p_mipmaps > src_tex->mipmaps, ERR_INVALID_PARAMETER);
  2836. ERR_FAIL_COND_V(p_base_layer + p_layers > src_layer_count, ERR_INVALID_PARAMETER);
  2837. VkCommandBuffer command_buffer = frames[frame].draw_command_buffer;
  2838. VkImageLayout clear_layout = (src_tex->layout == VK_IMAGE_LAYOUT_GENERAL) ? VK_IMAGE_LAYOUT_GENERAL : VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL;
  2839. // NOTE: Perhaps the valid stages/accesses for a given owner should be a property of the owner. (Here and places like _get_buffer_from_owner.)
  2840. const VkPipelineStageFlags valid_texture_stages = VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT | VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  2841. constexpr VkAccessFlags read_access = VK_ACCESS_SHADER_READ_BIT;
  2842. constexpr VkAccessFlags read_write_access = VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  2843. const VkAccessFlags valid_texture_access = (src_tex->usage_flags & TEXTURE_USAGE_STORAGE_BIT) ? read_write_access : read_access;
  2844. { // Barrier from previous access with optional layout change (see clear_layout logic above).
  2845. VkImageMemoryBarrier image_memory_barrier;
  2846. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  2847. image_memory_barrier.pNext = nullptr;
  2848. image_memory_barrier.srcAccessMask = valid_texture_access;
  2849. image_memory_barrier.dstAccessMask = VK_ACCESS_TRANSFER_WRITE_BIT;
  2850. image_memory_barrier.oldLayout = src_tex->layout;
  2851. image_memory_barrier.newLayout = clear_layout;
  2852. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2853. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2854. image_memory_barrier.image = src_tex->image;
  2855. image_memory_barrier.subresourceRange.aspectMask = src_tex->read_aspect_mask;
  2856. image_memory_barrier.subresourceRange.baseMipLevel = src_tex->base_mipmap + p_base_mipmap;
  2857. image_memory_barrier.subresourceRange.levelCount = p_mipmaps;
  2858. image_memory_barrier.subresourceRange.baseArrayLayer = src_tex->base_layer + p_base_layer;
  2859. image_memory_barrier.subresourceRange.layerCount = p_layers;
  2860. vkCmdPipelineBarrier(command_buffer, valid_texture_stages, VK_PIPELINE_STAGE_TRANSFER_BIT, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  2861. }
  2862. VkClearColorValue clear_color;
  2863. clear_color.float32[0] = p_color.r;
  2864. clear_color.float32[1] = p_color.g;
  2865. clear_color.float32[2] = p_color.b;
  2866. clear_color.float32[3] = p_color.a;
  2867. VkImageSubresourceRange range;
  2868. range.aspectMask = src_tex->read_aspect_mask;
  2869. range.baseArrayLayer = src_tex->base_layer + p_base_layer;
  2870. range.layerCount = p_layers;
  2871. range.baseMipLevel = src_tex->base_mipmap + p_base_mipmap;
  2872. range.levelCount = p_mipmaps;
  2873. vkCmdClearColorImage(command_buffer, src_tex->image, clear_layout, &clear_color, 1, &range);
  2874. { // Barrier to post clear accesses (changing back the layout if needed).
  2875. uint32_t barrier_flags = 0;
  2876. uint32_t access_flags = 0;
  2877. if (p_post_barrier.has_flag(BARRIER_MASK_COMPUTE)) {
  2878. barrier_flags |= VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  2879. access_flags |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  2880. }
  2881. if (p_post_barrier.has_flag(BARRIER_MASK_RASTER)) {
  2882. barrier_flags |= VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT;
  2883. access_flags |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  2884. }
  2885. if (p_post_barrier.has_flag(BARRIER_MASK_TRANSFER)) {
  2886. barrier_flags |= VK_PIPELINE_STAGE_TRANSFER_BIT;
  2887. access_flags |= VK_ACCESS_TRANSFER_WRITE_BIT;
  2888. }
  2889. if (barrier_flags == 0) {
  2890. barrier_flags = VK_PIPELINE_STAGE_BOTTOM_OF_PIPE_BIT;
  2891. }
  2892. VkImageMemoryBarrier image_memory_barrier;
  2893. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  2894. image_memory_barrier.pNext = nullptr;
  2895. image_memory_barrier.srcAccessMask = VK_ACCESS_TRANSFER_WRITE_BIT;
  2896. image_memory_barrier.dstAccessMask = access_flags;
  2897. image_memory_barrier.oldLayout = clear_layout;
  2898. image_memory_barrier.newLayout = src_tex->layout;
  2899. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2900. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  2901. image_memory_barrier.image = src_tex->image;
  2902. image_memory_barrier.subresourceRange.aspectMask = src_tex->read_aspect_mask;
  2903. image_memory_barrier.subresourceRange.baseMipLevel = src_tex->base_mipmap + p_base_mipmap;
  2904. image_memory_barrier.subresourceRange.levelCount = p_mipmaps;
  2905. image_memory_barrier.subresourceRange.baseArrayLayer = src_tex->base_layer + p_base_layer;
  2906. image_memory_barrier.subresourceRange.layerCount = p_layers;
  2907. vkCmdPipelineBarrier(command_buffer, VK_PIPELINE_STAGE_TRANSFER_BIT, barrier_flags, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  2908. }
  2909. if (src_tex->used_in_frame != frames_drawn) {
  2910. src_tex->used_in_raster = false;
  2911. src_tex->used_in_compute = false;
  2912. src_tex->used_in_frame = frames_drawn;
  2913. }
  2914. src_tex->used_in_transfer = true;
  2915. return OK;
  2916. }
  2917. bool RenderingDeviceVulkan::texture_is_format_supported_for_usage(DataFormat p_format, BitField<RenderingDevice::TextureUsageBits> p_usage) const {
  2918. ERR_FAIL_INDEX_V(p_format, DATA_FORMAT_MAX, false);
  2919. _THREAD_SAFE_METHOD_
  2920. // Validate that this image is supported for the intended use.
  2921. VkFormatProperties properties;
  2922. vkGetPhysicalDeviceFormatProperties(context->get_physical_device(), vulkan_formats[p_format], &properties);
  2923. VkFormatFeatureFlags flags;
  2924. if (p_usage.has_flag(TEXTURE_USAGE_CPU_READ_BIT)) {
  2925. flags = properties.linearTilingFeatures;
  2926. } else {
  2927. flags = properties.optimalTilingFeatures;
  2928. }
  2929. if (p_usage.has_flag(TEXTURE_USAGE_SAMPLING_BIT) && !(flags & VK_FORMAT_FEATURE_SAMPLED_IMAGE_BIT)) {
  2930. return false;
  2931. }
  2932. if (p_usage.has_flag(TEXTURE_USAGE_COLOR_ATTACHMENT_BIT) && !(flags & VK_FORMAT_FEATURE_COLOR_ATTACHMENT_BIT)) {
  2933. return false;
  2934. }
  2935. if (p_usage.has_flag(TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) && !(flags & VK_FORMAT_FEATURE_DEPTH_STENCIL_ATTACHMENT_BIT)) {
  2936. return false;
  2937. }
  2938. if (p_usage.has_flag(TEXTURE_USAGE_STORAGE_BIT) && !(flags & VK_FORMAT_FEATURE_STORAGE_IMAGE_BIT)) {
  2939. return false;
  2940. }
  2941. if (p_usage.has_flag(TEXTURE_USAGE_STORAGE_ATOMIC_BIT) && !(flags & VK_FORMAT_FEATURE_STORAGE_IMAGE_ATOMIC_BIT)) {
  2942. return false;
  2943. }
  2944. // Validation via VK_FORMAT_FEATURE_FRAGMENT_SHADING_RATE_ATTACHMENT_BIT_KHR fails if VRS attachment is not supported.
  2945. if (p_usage.has_flag(TEXTURE_USAGE_VRS_ATTACHMENT_BIT) && p_format != DATA_FORMAT_R8_UINT) {
  2946. return false;
  2947. }
  2948. return true;
  2949. }
  2950. /********************/
  2951. /**** ATTACHMENT ****/
  2952. /********************/
  2953. VkRenderPass RenderingDeviceVulkan::_render_pass_create(const Vector<AttachmentFormat> &p_attachments, const Vector<FramebufferPass> &p_passes, InitialAction p_initial_action, FinalAction p_final_action, InitialAction p_initial_depth_action, FinalAction p_final_depth_action, uint32_t p_view_count, Vector<TextureSamples> *r_samples) {
  2954. // Set up dependencies from/to external equivalent to the default (implicit) one, and then amend them.
  2955. const VkPipelineStageFlags default_access_mask = VK_ACCESS_INPUT_ATTACHMENT_READ_BIT |
  2956. VK_ACCESS_COLOR_ATTACHMENT_READ_BIT |
  2957. VK_ACCESS_COLOR_ATTACHMENT_WRITE_BIT |
  2958. VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_READ_BIT |
  2959. VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_WRITE_BIT | // From Section 7.1 of Vulkan API Spec v1.1.148.
  2960. VK_ACCESS_FRAGMENT_SHADING_RATE_ATTACHMENT_READ_BIT_KHR;
  2961. VkPipelineStageFlags reading_stages = VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT | VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT | VK_PIPELINE_STAGE_TRANSFER_BIT;
  2962. VkSubpassDependency2KHR dependencies[2] = {
  2963. { VK_STRUCTURE_TYPE_SUBPASS_DESCRIPTION_2_KHR, nullptr, VK_SUBPASS_EXTERNAL, 0, VK_PIPELINE_STAGE_TOP_OF_PIPE_BIT, VK_PIPELINE_STAGE_ALL_GRAPHICS_BIT, 0, default_access_mask, 0, 0 },
  2964. { VK_STRUCTURE_TYPE_SUBPASS_DESCRIPTION_2_KHR, nullptr, 0, VK_SUBPASS_EXTERNAL, VK_PIPELINE_STAGE_ALL_GRAPHICS_BIT, VK_PIPELINE_STAGE_BOTTOM_OF_PIPE_BIT, default_access_mask, 0, 0, 0 }
  2965. };
  2966. VkSubpassDependency2KHR &dependency_from_external = dependencies[0];
  2967. VkSubpassDependency2KHR &dependency_to_external = dependencies[1];
  2968. LocalVector<int32_t> attachment_last_pass;
  2969. attachment_last_pass.resize(p_attachments.size());
  2970. if (p_view_count > 1) {
  2971. const VulkanContext::MultiviewCapabilities capabilities = context->get_multiview_capabilities();
  2972. // This only works with multiview!
  2973. ERR_FAIL_COND_V_MSG(!capabilities.is_supported, VK_NULL_HANDLE, "Multiview not supported");
  2974. // Make sure we limit this to the number of views we support.
  2975. ERR_FAIL_COND_V_MSG(p_view_count > capabilities.max_view_count, VK_NULL_HANDLE, "Hardware does not support requested number of views for Multiview render pass");
  2976. }
  2977. // These are only used if we use multiview but we need to define them in scope.
  2978. const uint32_t view_mask = (1 << p_view_count) - 1;
  2979. const uint32_t correlation_mask = (1 << p_view_count) - 1;
  2980. Vector<VkAttachmentDescription2KHR> attachments;
  2981. Vector<int> attachment_remap;
  2982. for (int i = 0; i < p_attachments.size(); i++) {
  2983. if (p_attachments[i].usage_flags == AttachmentFormat::UNUSED_ATTACHMENT) {
  2984. attachment_remap.push_back(VK_ATTACHMENT_UNUSED);
  2985. continue;
  2986. }
  2987. ERR_FAIL_INDEX_V(p_attachments[i].format, DATA_FORMAT_MAX, VK_NULL_HANDLE);
  2988. ERR_FAIL_INDEX_V(p_attachments[i].samples, TEXTURE_SAMPLES_MAX, VK_NULL_HANDLE);
  2989. ERR_FAIL_COND_V_MSG(!(p_attachments[i].usage_flags & (TEXTURE_USAGE_COLOR_ATTACHMENT_BIT | TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT | TEXTURE_USAGE_INPUT_ATTACHMENT_BIT | TEXTURE_USAGE_VRS_ATTACHMENT_BIT)),
  2990. VK_NULL_HANDLE, "Texture format for index (" + itos(i) + ") requires an attachment (color, depth-stencil, input or VRS) bit set.");
  2991. VkAttachmentDescription2KHR description = {};
  2992. description.sType = VK_STRUCTURE_TYPE_ATTACHMENT_DESCRIPTION_2_KHR;
  2993. description.pNext = nullptr;
  2994. description.flags = 0;
  2995. description.format = vulkan_formats[p_attachments[i].format];
  2996. description.samples = _ensure_supported_sample_count(p_attachments[i].samples);
  2997. bool is_sampled = p_attachments[i].usage_flags & TEXTURE_USAGE_SAMPLING_BIT;
  2998. bool is_storage = p_attachments[i].usage_flags & TEXTURE_USAGE_STORAGE_BIT;
  2999. bool is_depth = p_attachments[i].usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT;
  3000. // We can setup a framebuffer where we write to our VRS texture to set it up.
  3001. // We make the assumption here that if our texture is actually used as our VRS attachment.
  3002. // It is used as such for each subpass. This is fairly certain seeing the restrictions on subpasses.
  3003. bool is_vrs = p_attachments[i].usage_flags & TEXTURE_USAGE_VRS_ATTACHMENT_BIT && i == p_passes[0].vrs_attachment;
  3004. if (is_vrs) {
  3005. // For VRS we only read, there is no writing to this texture.
  3006. description.loadOp = VK_ATTACHMENT_LOAD_OP_LOAD;
  3007. description.initialLayout = VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL;
  3008. description.stencilLoadOp = VK_ATTACHMENT_LOAD_OP_LOAD;
  3009. } else {
  3010. // For each UNDEFINED, assume the prior use was a *read*, as we'd be discarding the output of a write.
  3011. // Also, each UNDEFINED will do an immediate layout transition (write), s.t. we must ensure execution synchronization vs
  3012. // the read. If this is a performance issue, one could track the actual last accessor of each resource, adding only that
  3013. // stage.
  3014. switch (is_depth ? p_initial_depth_action : p_initial_action) {
  3015. case INITIAL_ACTION_CLEAR_REGION:
  3016. case INITIAL_ACTION_CLEAR: {
  3017. if (p_attachments[i].usage_flags & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT) {
  3018. description.loadOp = VK_ATTACHMENT_LOAD_OP_CLEAR;
  3019. description.initialLayout = is_sampled ? VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL : (is_storage ? VK_IMAGE_LAYOUT_GENERAL : VK_IMAGE_LAYOUT_COLOR_ATTACHMENT_OPTIMAL);
  3020. description.stencilLoadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3021. } else if (p_attachments[i].usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  3022. description.loadOp = VK_ATTACHMENT_LOAD_OP_CLEAR;
  3023. description.initialLayout = is_sampled ? VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL : (is_storage ? VK_IMAGE_LAYOUT_GENERAL : VK_IMAGE_LAYOUT_DEPTH_STENCIL_ATTACHMENT_OPTIMAL);
  3024. description.stencilLoadOp = VK_ATTACHMENT_LOAD_OP_CLEAR;
  3025. dependency_from_external.srcStageMask |= reading_stages;
  3026. } else {
  3027. description.loadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3028. description.stencilLoadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3029. description.initialLayout = VK_IMAGE_LAYOUT_UNDEFINED; // Don't care what is there.
  3030. dependency_from_external.srcStageMask |= reading_stages;
  3031. }
  3032. } break;
  3033. case INITIAL_ACTION_KEEP: {
  3034. if (p_attachments[i].usage_flags & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT) {
  3035. description.loadOp = VK_ATTACHMENT_LOAD_OP_LOAD;
  3036. description.initialLayout = is_sampled ? VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL : (is_storage ? VK_IMAGE_LAYOUT_GENERAL : VK_IMAGE_LAYOUT_COLOR_ATTACHMENT_OPTIMAL);
  3037. description.stencilLoadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3038. } else if (p_attachments[i].usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  3039. description.loadOp = VK_ATTACHMENT_LOAD_OP_LOAD;
  3040. description.initialLayout = is_sampled ? VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL : (is_storage ? VK_IMAGE_LAYOUT_GENERAL : VK_IMAGE_LAYOUT_DEPTH_STENCIL_ATTACHMENT_OPTIMAL);
  3041. description.stencilLoadOp = VK_ATTACHMENT_LOAD_OP_LOAD;
  3042. dependency_from_external.srcStageMask |= reading_stages;
  3043. } else {
  3044. description.loadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3045. description.stencilLoadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3046. description.initialLayout = VK_IMAGE_LAYOUT_UNDEFINED; // Don't care what is there.
  3047. dependency_from_external.srcStageMask |= reading_stages;
  3048. }
  3049. } break;
  3050. case INITIAL_ACTION_DROP: {
  3051. if (p_attachments[i].usage_flags & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT) {
  3052. description.loadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3053. description.initialLayout = is_sampled ? VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL : (is_storage ? VK_IMAGE_LAYOUT_GENERAL : VK_IMAGE_LAYOUT_COLOR_ATTACHMENT_OPTIMAL);
  3054. description.stencilLoadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3055. } else if (p_attachments[i].usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  3056. description.loadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3057. description.initialLayout = VK_IMAGE_LAYOUT_UNDEFINED; // Don't care what is there.
  3058. description.stencilLoadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3059. dependency_from_external.srcStageMask |= reading_stages;
  3060. } else {
  3061. description.loadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3062. description.stencilLoadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3063. description.initialLayout = VK_IMAGE_LAYOUT_UNDEFINED; // Don't care what is there.
  3064. dependency_from_external.srcStageMask |= reading_stages;
  3065. }
  3066. } break;
  3067. case INITIAL_ACTION_CLEAR_REGION_CONTINUE:
  3068. case INITIAL_ACTION_CONTINUE: {
  3069. if (p_attachments[i].usage_flags & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT) {
  3070. description.loadOp = VK_ATTACHMENT_LOAD_OP_LOAD;
  3071. description.initialLayout = VK_IMAGE_LAYOUT_COLOR_ATTACHMENT_OPTIMAL;
  3072. description.stencilLoadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3073. } else if (p_attachments[i].usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  3074. description.loadOp = VK_ATTACHMENT_LOAD_OP_LOAD;
  3075. description.initialLayout = VK_IMAGE_LAYOUT_DEPTH_STENCIL_ATTACHMENT_OPTIMAL;
  3076. description.stencilLoadOp = VK_ATTACHMENT_LOAD_OP_LOAD;
  3077. } else {
  3078. description.loadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3079. description.stencilLoadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3080. description.initialLayout = VK_IMAGE_LAYOUT_UNDEFINED; // Don't care what is there.
  3081. dependency_from_external.srcStageMask |= reading_stages;
  3082. }
  3083. } break;
  3084. default: {
  3085. ERR_FAIL_V(VK_NULL_HANDLE); // Should never reach here.
  3086. }
  3087. }
  3088. }
  3089. bool used_last = false;
  3090. {
  3091. int last_pass = p_passes.size() - 1;
  3092. if (is_depth) {
  3093. // Likely missing depth resolve?
  3094. if (p_passes[last_pass].depth_attachment == i) {
  3095. used_last = true;
  3096. }
  3097. } else if (is_vrs) {
  3098. if (p_passes[last_pass].vrs_attachment == i) {
  3099. used_last = true;
  3100. }
  3101. } else {
  3102. if (p_passes[last_pass].resolve_attachments.size()) {
  3103. // If using resolve attachments, check resolve attachments.
  3104. for (int j = 0; j < p_passes[last_pass].resolve_attachments.size(); j++) {
  3105. if (p_passes[last_pass].resolve_attachments[j] == i) {
  3106. used_last = true;
  3107. break;
  3108. }
  3109. }
  3110. }
  3111. if (!used_last) {
  3112. for (int j = 0; j < p_passes[last_pass].color_attachments.size(); j++) {
  3113. if (p_passes[last_pass].color_attachments[j] == i) {
  3114. used_last = true;
  3115. break;
  3116. }
  3117. }
  3118. }
  3119. }
  3120. if (!used_last) {
  3121. for (int j = 0; j < p_passes[last_pass].preserve_attachments.size(); j++) {
  3122. if (p_passes[last_pass].preserve_attachments[j] == i) {
  3123. used_last = true;
  3124. break;
  3125. }
  3126. }
  3127. }
  3128. }
  3129. FinalAction final_action = p_final_action;
  3130. FinalAction final_depth_action = p_final_depth_action;
  3131. if (!used_last) {
  3132. if (is_depth) {
  3133. final_depth_action = FINAL_ACTION_DISCARD;
  3134. } else {
  3135. final_action = FINAL_ACTION_DISCARD;
  3136. }
  3137. }
  3138. if (is_vrs) {
  3139. // We don't change our VRS texture during this process.
  3140. description.storeOp = VK_ATTACHMENT_STORE_OP_DONT_CARE;
  3141. description.stencilStoreOp = VK_ATTACHMENT_STORE_OP_DONT_CARE;
  3142. description.finalLayout = VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL;
  3143. // TODO: Do we need to update our external dependency?
  3144. // update_external_dependency_for_store(dependency_to_external, is_sampled, is_storage, false);
  3145. } else {
  3146. switch (is_depth ? final_depth_action : final_action) {
  3147. case FINAL_ACTION_READ: {
  3148. if (p_attachments[i].usage_flags & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT) {
  3149. description.storeOp = VK_ATTACHMENT_STORE_OP_STORE;
  3150. description.stencilStoreOp = VK_ATTACHMENT_STORE_OP_DONT_CARE;
  3151. description.finalLayout = is_sampled ? VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL : (is_storage ? VK_IMAGE_LAYOUT_GENERAL : VK_IMAGE_LAYOUT_COLOR_ATTACHMENT_OPTIMAL);
  3152. update_external_dependency_for_store(dependency_to_external, is_sampled, is_storage, false);
  3153. } else if (p_attachments[i].usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  3154. description.storeOp = VK_ATTACHMENT_STORE_OP_STORE;
  3155. description.stencilStoreOp = VK_ATTACHMENT_STORE_OP_STORE;
  3156. description.finalLayout = is_sampled ? VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL : (is_storage ? VK_IMAGE_LAYOUT_GENERAL : VK_IMAGE_LAYOUT_DEPTH_STENCIL_ATTACHMENT_OPTIMAL);
  3157. update_external_dependency_for_store(dependency_to_external, is_sampled, is_storage, true);
  3158. } else {
  3159. description.loadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3160. description.stencilLoadOp = VK_ATTACHMENT_LOAD_OP_DONT_CARE;
  3161. description.initialLayout = VK_IMAGE_LAYOUT_UNDEFINED; // Don't care what is there.
  3162. // TODO: What does this mean about the next usage (and thus appropriate dependency masks.
  3163. }
  3164. } break;
  3165. case FINAL_ACTION_DISCARD: {
  3166. if (p_attachments[i].usage_flags & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT) {
  3167. description.storeOp = VK_ATTACHMENT_STORE_OP_DONT_CARE;
  3168. description.stencilStoreOp = VK_ATTACHMENT_STORE_OP_DONT_CARE;
  3169. description.finalLayout = is_sampled ? VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL : (is_storage ? VK_IMAGE_LAYOUT_GENERAL : VK_IMAGE_LAYOUT_COLOR_ATTACHMENT_OPTIMAL);
  3170. } else if (p_attachments[i].usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  3171. description.storeOp = VK_ATTACHMENT_STORE_OP_DONT_CARE;
  3172. description.stencilStoreOp = VK_ATTACHMENT_STORE_OP_DONT_CARE;
  3173. description.finalLayout = is_sampled ? VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL : (is_storage ? VK_IMAGE_LAYOUT_GENERAL : VK_IMAGE_LAYOUT_DEPTH_STENCIL_ATTACHMENT_OPTIMAL);
  3174. } else {
  3175. description.storeOp = VK_ATTACHMENT_STORE_OP_DONT_CARE;
  3176. description.stencilStoreOp = VK_ATTACHMENT_STORE_OP_DONT_CARE;
  3177. description.finalLayout = VK_IMAGE_LAYOUT_UNDEFINED; // Don't care what is there.
  3178. }
  3179. } break;
  3180. case FINAL_ACTION_CONTINUE: {
  3181. if (p_attachments[i].usage_flags & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT) {
  3182. description.storeOp = VK_ATTACHMENT_STORE_OP_STORE;
  3183. description.stencilStoreOp = VK_ATTACHMENT_STORE_OP_DONT_CARE;
  3184. description.finalLayout = VK_IMAGE_LAYOUT_COLOR_ATTACHMENT_OPTIMAL;
  3185. } else if (p_attachments[i].usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  3186. description.storeOp = VK_ATTACHMENT_STORE_OP_STORE;
  3187. description.stencilStoreOp = VK_ATTACHMENT_STORE_OP_STORE;
  3188. description.finalLayout = VK_IMAGE_LAYOUT_DEPTH_STENCIL_ATTACHMENT_OPTIMAL;
  3189. } else {
  3190. description.storeOp = VK_ATTACHMENT_STORE_OP_DONT_CARE;
  3191. description.stencilStoreOp = VK_ATTACHMENT_STORE_OP_DONT_CARE;
  3192. description.finalLayout = VK_IMAGE_LAYOUT_UNDEFINED; // Don't care what is there.
  3193. }
  3194. } break;
  3195. default: {
  3196. ERR_FAIL_V(VK_NULL_HANDLE); // Should never reach here.
  3197. }
  3198. }
  3199. }
  3200. attachment_last_pass[i] = -1;
  3201. attachment_remap.push_back(attachments.size());
  3202. attachments.push_back(description);
  3203. }
  3204. LocalVector<VkSubpassDescription2KHR> subpasses;
  3205. LocalVector<LocalVector<VkAttachmentReference2KHR>> color_reference_array;
  3206. LocalVector<LocalVector<VkAttachmentReference2KHR>> input_reference_array;
  3207. LocalVector<LocalVector<VkAttachmentReference2KHR>> resolve_reference_array;
  3208. LocalVector<LocalVector<uint32_t>> preserve_reference_array;
  3209. LocalVector<VkAttachmentReference2KHR> depth_reference_array;
  3210. LocalVector<VkAttachmentReference2KHR> vrs_reference_array;
  3211. LocalVector<VkFragmentShadingRateAttachmentInfoKHR> vrs_attachment_info_array;
  3212. subpasses.resize(p_passes.size());
  3213. color_reference_array.resize(p_passes.size());
  3214. input_reference_array.resize(p_passes.size());
  3215. resolve_reference_array.resize(p_passes.size());
  3216. preserve_reference_array.resize(p_passes.size());
  3217. depth_reference_array.resize(p_passes.size());
  3218. vrs_reference_array.resize(p_passes.size());
  3219. vrs_attachment_info_array.resize(p_passes.size());
  3220. LocalVector<VkSubpassDependency2KHR> subpass_dependencies;
  3221. for (int i = 0; i < p_passes.size(); i++) {
  3222. const FramebufferPass *pass = &p_passes[i];
  3223. LocalVector<VkAttachmentReference2KHR> &color_references = color_reference_array[i];
  3224. TextureSamples texture_samples = TEXTURE_SAMPLES_1;
  3225. bool is_multisample_first = true;
  3226. void *subpass_nextptr = nullptr;
  3227. for (int j = 0; j < pass->color_attachments.size(); j++) {
  3228. int32_t attachment = pass->color_attachments[j];
  3229. VkAttachmentReference2KHR reference;
  3230. reference.sType = VK_STRUCTURE_TYPE_ATTACHMENT_REFERENCE_2_KHR;
  3231. reference.pNext = nullptr;
  3232. if (attachment == FramebufferPass::ATTACHMENT_UNUSED) {
  3233. reference.attachment = VK_ATTACHMENT_UNUSED;
  3234. reference.layout = VK_IMAGE_LAYOUT_UNDEFINED;
  3235. } else {
  3236. ERR_FAIL_INDEX_V_MSG(attachment, p_attachments.size(), VK_NULL_HANDLE, "Invalid framebuffer format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), color attachment (" + itos(j) + ").");
  3237. ERR_FAIL_COND_V_MSG(!(p_attachments[attachment].usage_flags & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT), VK_NULL_HANDLE, "Invalid framebuffer format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), it's marked as depth, but it's not usable as color attachment.");
  3238. ERR_FAIL_COND_V_MSG(attachment_last_pass[attachment] == i, VK_NULL_HANDLE, "Invalid framebuffer format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), it already was used for something else before in this pass.");
  3239. if (is_multisample_first) {
  3240. texture_samples = p_attachments[attachment].samples;
  3241. is_multisample_first = false;
  3242. } else {
  3243. ERR_FAIL_COND_V_MSG(texture_samples != p_attachments[attachment].samples, VK_NULL_HANDLE, "Invalid framebuffer format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), if an attachment is marked as multisample, all of them should be multisample and use the same number of samples.");
  3244. }
  3245. reference.attachment = attachment_remap[attachment];
  3246. reference.layout = VK_IMAGE_LAYOUT_COLOR_ATTACHMENT_OPTIMAL;
  3247. attachment_last_pass[attachment] = i;
  3248. }
  3249. reference.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
  3250. color_references.push_back(reference);
  3251. }
  3252. LocalVector<VkAttachmentReference2KHR> &input_references = input_reference_array[i];
  3253. for (int j = 0; j < pass->input_attachments.size(); j++) {
  3254. int32_t attachment = pass->input_attachments[j];
  3255. VkAttachmentReference2KHR reference;
  3256. reference.sType = VK_STRUCTURE_TYPE_ATTACHMENT_REFERENCE_2_KHR;
  3257. reference.pNext = nullptr;
  3258. if (attachment == FramebufferPass::ATTACHMENT_UNUSED) {
  3259. reference.attachment = VK_ATTACHMENT_UNUSED;
  3260. reference.layout = VK_IMAGE_LAYOUT_UNDEFINED;
  3261. } else {
  3262. ERR_FAIL_INDEX_V_MSG(attachment, p_attachments.size(), VK_NULL_HANDLE, "Invalid framebuffer format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), input attachment (" + itos(j) + ").");
  3263. ERR_FAIL_COND_V_MSG(!(p_attachments[attachment].usage_flags & TEXTURE_USAGE_INPUT_ATTACHMENT_BIT), VK_NULL_HANDLE, "Invalid framebuffer format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), it isn't marked as an input texture.");
  3264. ERR_FAIL_COND_V_MSG(attachment_last_pass[attachment] == i, VK_NULL_HANDLE, "Invalid framebuffer format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), it already was used for something else before in this pass.");
  3265. reference.attachment = attachment_remap[attachment];
  3266. reference.layout = VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL;
  3267. attachment_last_pass[attachment] = i;
  3268. }
  3269. reference.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
  3270. input_references.push_back(reference);
  3271. }
  3272. LocalVector<VkAttachmentReference2KHR> &resolve_references = resolve_reference_array[i];
  3273. if (pass->resolve_attachments.size() > 0) {
  3274. ERR_FAIL_COND_V_MSG(pass->resolve_attachments.size() != pass->color_attachments.size(), VK_NULL_HANDLE, "The amount of resolve attachments (" + itos(pass->resolve_attachments.size()) + ") must match the number of color attachments (" + itos(pass->color_attachments.size()) + ").");
  3275. ERR_FAIL_COND_V_MSG(texture_samples == TEXTURE_SAMPLES_1, VK_NULL_HANDLE, "Resolve attachments specified, but color attachments are not multisample.");
  3276. }
  3277. for (int j = 0; j < pass->resolve_attachments.size(); j++) {
  3278. int32_t attachment = pass->resolve_attachments[j];
  3279. VkAttachmentReference2KHR reference;
  3280. reference.sType = VK_STRUCTURE_TYPE_ATTACHMENT_REFERENCE_2_KHR;
  3281. reference.pNext = nullptr;
  3282. if (attachment == FramebufferPass::ATTACHMENT_UNUSED) {
  3283. reference.attachment = VK_ATTACHMENT_UNUSED;
  3284. reference.layout = VK_IMAGE_LAYOUT_UNDEFINED;
  3285. } else {
  3286. ERR_FAIL_INDEX_V_MSG(attachment, p_attachments.size(), VK_NULL_HANDLE, "Invalid framebuffer format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), resolve attachment (" + itos(j) + ").");
  3287. ERR_FAIL_COND_V_MSG(pass->color_attachments[j] == FramebufferPass::ATTACHMENT_UNUSED, VK_NULL_HANDLE, "Invalid framebuffer format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), resolve attachment (" + itos(j) + "), the respective color attachment is marked as unused.");
  3288. ERR_FAIL_COND_V_MSG(!(p_attachments[attachment].usage_flags & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT), VK_NULL_HANDLE, "Invalid framebuffer format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), resolve attachment, it isn't marked as a color texture.");
  3289. ERR_FAIL_COND_V_MSG(attachment_last_pass[attachment] == i, VK_NULL_HANDLE, "Invalid framebuffer format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), it already was used for something else before in this pass.");
  3290. bool multisample = p_attachments[attachment].samples > TEXTURE_SAMPLES_1;
  3291. ERR_FAIL_COND_V_MSG(multisample, VK_NULL_HANDLE, "Invalid framebuffer format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), resolve attachments can't be multisample.");
  3292. reference.attachment = attachment_remap[attachment];
  3293. reference.layout = VK_IMAGE_LAYOUT_COLOR_ATTACHMENT_OPTIMAL; // VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL
  3294. attachment_last_pass[attachment] = i;
  3295. }
  3296. reference.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
  3297. resolve_references.push_back(reference);
  3298. }
  3299. VkAttachmentReference2KHR &depth_stencil_reference = depth_reference_array[i];
  3300. depth_stencil_reference.sType = VK_STRUCTURE_TYPE_ATTACHMENT_REFERENCE_2_KHR;
  3301. depth_stencil_reference.pNext = nullptr;
  3302. if (pass->depth_attachment != FramebufferPass::ATTACHMENT_UNUSED) {
  3303. int32_t attachment = pass->depth_attachment;
  3304. ERR_FAIL_INDEX_V_MSG(attachment, p_attachments.size(), VK_NULL_HANDLE, "Invalid framebuffer depth format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), depth attachment.");
  3305. ERR_FAIL_COND_V_MSG(!(p_attachments[attachment].usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT), VK_NULL_HANDLE, "Invalid framebuffer depth format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), it's marked as depth, but it's not a depth attachment.");
  3306. ERR_FAIL_COND_V_MSG(attachment_last_pass[attachment] == i, VK_NULL_HANDLE, "Invalid framebuffer depth format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), it already was used for something else before in this pass.");
  3307. depth_stencil_reference.attachment = attachment_remap[attachment];
  3308. depth_stencil_reference.layout = VK_IMAGE_LAYOUT_DEPTH_STENCIL_ATTACHMENT_OPTIMAL;
  3309. depth_stencil_reference.aspectMask = VK_IMAGE_ASPECT_NONE;
  3310. attachment_last_pass[attachment] = i;
  3311. if (is_multisample_first) {
  3312. texture_samples = p_attachments[attachment].samples;
  3313. is_multisample_first = false;
  3314. } else {
  3315. ERR_FAIL_COND_V_MSG(texture_samples != p_attachments[attachment].samples, VK_NULL_HANDLE, "Invalid framebuffer depth format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), if an attachment is marked as multisample, all of them should be multisample and use the same number of samples including the depth.");
  3316. }
  3317. } else {
  3318. depth_stencil_reference.attachment = VK_ATTACHMENT_UNUSED;
  3319. depth_stencil_reference.layout = VK_IMAGE_LAYOUT_UNDEFINED;
  3320. }
  3321. if (context->get_vrs_capabilities().attachment_vrs_supported && pass->vrs_attachment != FramebufferPass::ATTACHMENT_UNUSED) {
  3322. int32_t attachment = pass->vrs_attachment;
  3323. ERR_FAIL_INDEX_V_MSG(attachment, p_attachments.size(), VK_NULL_HANDLE, "Invalid framebuffer VRS format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), VRS attachment.");
  3324. ERR_FAIL_COND_V_MSG(!(p_attachments[attachment].usage_flags & TEXTURE_USAGE_VRS_ATTACHMENT_BIT), VK_NULL_HANDLE, "Invalid framebuffer VRS format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), it's marked as VRS, but it's not a VRS attachment.");
  3325. ERR_FAIL_COND_V_MSG(attachment_last_pass[attachment] == i, VK_NULL_HANDLE, "Invalid framebuffer VRS attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), it already was used for something else before in this pass.");
  3326. VkAttachmentReference2KHR &vrs_reference = vrs_reference_array[i];
  3327. vrs_reference.sType = VK_STRUCTURE_TYPE_ATTACHMENT_REFERENCE_2_KHR;
  3328. vrs_reference.pNext = nullptr;
  3329. vrs_reference.attachment = attachment_remap[attachment];
  3330. vrs_reference.layout = VK_IMAGE_LAYOUT_FRAGMENT_SHADING_RATE_ATTACHMENT_OPTIMAL_KHR;
  3331. vrs_reference.aspectMask = VK_IMAGE_ASPECT_NONE;
  3332. Size2i texel_size = context->get_vrs_capabilities().texel_size;
  3333. VkFragmentShadingRateAttachmentInfoKHR &vrs_attachment_info = vrs_attachment_info_array[i];
  3334. vrs_attachment_info.sType = VK_STRUCTURE_TYPE_FRAGMENT_SHADING_RATE_ATTACHMENT_INFO_KHR;
  3335. vrs_attachment_info.pNext = nullptr;
  3336. vrs_attachment_info.pFragmentShadingRateAttachment = &vrs_reference;
  3337. vrs_attachment_info.shadingRateAttachmentTexelSize = { uint32_t(texel_size.x), uint32_t(texel_size.y) };
  3338. attachment_last_pass[attachment] = i;
  3339. subpass_nextptr = &vrs_attachment_info;
  3340. }
  3341. LocalVector<uint32_t> &preserve_references = preserve_reference_array[i];
  3342. for (int j = 0; j < pass->preserve_attachments.size(); j++) {
  3343. int32_t attachment = pass->preserve_attachments[j];
  3344. ERR_FAIL_COND_V_MSG(attachment == FramebufferPass::ATTACHMENT_UNUSED, VK_NULL_HANDLE, "Invalid framebuffer format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), preserve attachment (" + itos(j) + "). Preserve attachments can't be unused.");
  3345. ERR_FAIL_INDEX_V_MSG(attachment, p_attachments.size(), VK_NULL_HANDLE, "Invalid framebuffer format attachment(" + itos(attachment) + "), in pass (" + itos(i) + "), preserve attachment (" + itos(j) + ").");
  3346. if (attachment_last_pass[attachment] != i) {
  3347. // Preserve can still be used to keep depth or color from being discarded after use.
  3348. attachment_last_pass[attachment] = i;
  3349. preserve_references.push_back(attachment);
  3350. }
  3351. }
  3352. VkSubpassDescription2KHR &subpass = subpasses[i];
  3353. subpass.sType = VK_STRUCTURE_TYPE_SUBPASS_DESCRIPTION_2_KHR;
  3354. subpass.pNext = subpass_nextptr;
  3355. subpass.flags = 0;
  3356. subpass.pipelineBindPoint = VK_PIPELINE_BIND_POINT_GRAPHICS;
  3357. if (p_view_count == 1) {
  3358. // VUID-VkSubpassDescription2-multiview-06558: If the multiview feature is not enabled, viewMask must be 0.
  3359. subpass.viewMask = 0;
  3360. } else {
  3361. subpass.viewMask = view_mask;
  3362. }
  3363. subpass.inputAttachmentCount = input_references.size();
  3364. if (input_references.size()) {
  3365. subpass.pInputAttachments = input_references.ptr();
  3366. } else {
  3367. subpass.pInputAttachments = nullptr;
  3368. }
  3369. subpass.colorAttachmentCount = color_references.size();
  3370. if (color_references.size()) {
  3371. subpass.pColorAttachments = color_references.ptr();
  3372. } else {
  3373. subpass.pColorAttachments = nullptr;
  3374. }
  3375. if (depth_stencil_reference.attachment != VK_ATTACHMENT_UNUSED) {
  3376. subpass.pDepthStencilAttachment = &depth_stencil_reference;
  3377. } else {
  3378. subpass.pDepthStencilAttachment = nullptr;
  3379. }
  3380. if (resolve_references.size()) {
  3381. subpass.pResolveAttachments = resolve_references.ptr();
  3382. } else {
  3383. subpass.pResolveAttachments = nullptr;
  3384. }
  3385. subpass.preserveAttachmentCount = preserve_references.size();
  3386. if (preserve_references.size()) {
  3387. subpass.pPreserveAttachments = preserve_references.ptr();
  3388. } else {
  3389. subpass.pPreserveAttachments = nullptr;
  3390. }
  3391. if (r_samples) {
  3392. r_samples->push_back(texture_samples);
  3393. }
  3394. if (i > 0) {
  3395. VkSubpassDependency2KHR dependency;
  3396. dependency.sType = VK_STRUCTURE_TYPE_SUBPASS_DEPENDENCY_2_KHR;
  3397. dependency.pNext = nullptr;
  3398. dependency.srcSubpass = i - 1;
  3399. dependency.dstSubpass = i;
  3400. dependency.srcStageMask = 0;
  3401. dependency.srcStageMask = VK_PIPELINE_STAGE_COLOR_ATTACHMENT_OUTPUT_BIT | VK_PIPELINE_STAGE_EARLY_FRAGMENT_TESTS_BIT | VK_PIPELINE_STAGE_LATE_FRAGMENT_TESTS_BIT;
  3402. dependency.dstStageMask = VK_PIPELINE_STAGE_COLOR_ATTACHMENT_OUTPUT_BIT | VK_PIPELINE_STAGE_EARLY_FRAGMENT_TESTS_BIT | VK_PIPELINE_STAGE_LATE_FRAGMENT_TESTS_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT;
  3403. dependency.srcAccessMask = VK_ACCESS_COLOR_ATTACHMENT_WRITE_BIT | VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_WRITE_BIT;
  3404. dependency.dstAccessMask = VK_ACCESS_COLOR_ATTACHMENT_READ_BIT | VK_ACCESS_COLOR_ATTACHMENT_WRITE_BIT | VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_READ_BIT | VK_ACCESS_INPUT_ATTACHMENT_READ_BIT;
  3405. dependency.dependencyFlags = VK_DEPENDENCY_BY_REGION_BIT;
  3406. dependency.viewOffset = 0;
  3407. subpass_dependencies.push_back(dependency);
  3408. }
  3409. /*
  3410. // NOTE: Big Mallet Approach -- any layout transition causes a full barrier.
  3411. if (reference.layout != description.initialLayout) {
  3412. // NOTE: This should be smarter based on the texture's knowledge of its previous role.
  3413. dependency_from_external.srcStageMask |= VK_PIPELINE_STAGE_ALL_COMMANDS_BIT;
  3414. dependency_from_external.srcAccessMask |= VK_ACCESS_MEMORY_READ_BIT | VK_ACCESS_MEMORY_WRITE_BIT;
  3415. }
  3416. if (reference.layout != description.finalLayout) {
  3417. // NOTE: This should be smarter based on the texture's knowledge of its subsequent role.
  3418. dependency_to_external.dstStageMask |= VK_PIPELINE_STAGE_ALL_COMMANDS_BIT;
  3419. dependency_to_external.dstAccessMask |= VK_ACCESS_MEMORY_READ_BIT | VK_ACCESS_MEMORY_WRITE_BIT;
  3420. }
  3421. */
  3422. }
  3423. VkRenderPassCreateInfo2KHR render_pass_create_info;
  3424. render_pass_create_info.sType = VK_STRUCTURE_TYPE_RENDER_PASS_CREATE_INFO_2_KHR;
  3425. render_pass_create_info.pNext = nullptr;
  3426. render_pass_create_info.flags = 0;
  3427. render_pass_create_info.attachmentCount = attachments.size();
  3428. render_pass_create_info.pAttachments = attachments.ptr();
  3429. render_pass_create_info.subpassCount = subpasses.size();
  3430. render_pass_create_info.pSubpasses = subpasses.ptr();
  3431. // Commenting this because it seems it just avoids raster and compute to work at the same time.
  3432. // Other barriers seem to be protecting the render pass fine.
  3433. // render_pass_create_info.dependencyCount = 2;
  3434. // render_pass_create_info.pDependencies = dependencies;
  3435. render_pass_create_info.dependencyCount = subpass_dependencies.size();
  3436. if (subpass_dependencies.size()) {
  3437. render_pass_create_info.pDependencies = subpass_dependencies.ptr();
  3438. } else {
  3439. render_pass_create_info.pDependencies = nullptr;
  3440. }
  3441. if (p_view_count == 1) {
  3442. // VUID-VkRenderPassCreateInfo2-viewMask-03057: If the VkSubpassDescription2::viewMask member of all elements of pSubpasses is 0, correlatedViewMaskCount must be 0.
  3443. render_pass_create_info.correlatedViewMaskCount = 0;
  3444. render_pass_create_info.pCorrelatedViewMasks = nullptr;
  3445. } else {
  3446. render_pass_create_info.correlatedViewMaskCount = 1;
  3447. render_pass_create_info.pCorrelatedViewMasks = &correlation_mask;
  3448. }
  3449. Vector<uint32_t> view_masks;
  3450. VkRenderPassMultiviewCreateInfo render_pass_multiview_create_info;
  3451. if ((p_view_count > 1) && !context->supports_renderpass2()) {
  3452. // This is only required when using vkCreateRenderPass, we add it if vkCreateRenderPass2KHR is not supported
  3453. // resulting this in being passed to our vkCreateRenderPass fallback.
  3454. // Set view masks for each subpass.
  3455. for (uint32_t i = 0; i < subpasses.size(); i++) {
  3456. view_masks.push_back(view_mask);
  3457. }
  3458. render_pass_multiview_create_info.sType = VK_STRUCTURE_TYPE_RENDER_PASS_MULTIVIEW_CREATE_INFO;
  3459. render_pass_multiview_create_info.pNext = nullptr;
  3460. render_pass_multiview_create_info.subpassCount = subpasses.size();
  3461. render_pass_multiview_create_info.pViewMasks = view_masks.ptr();
  3462. render_pass_multiview_create_info.dependencyCount = 0;
  3463. render_pass_multiview_create_info.pViewOffsets = nullptr;
  3464. render_pass_multiview_create_info.correlationMaskCount = 1;
  3465. render_pass_multiview_create_info.pCorrelationMasks = &correlation_mask;
  3466. render_pass_create_info.pNext = &render_pass_multiview_create_info;
  3467. }
  3468. VkRenderPass render_pass;
  3469. VkResult res = context->vkCreateRenderPass2KHR(device, &render_pass_create_info, nullptr, &render_pass);
  3470. ERR_FAIL_COND_V_MSG(res, VK_NULL_HANDLE, "vkCreateRenderPass2KHR failed with error " + itos(res) + ".");
  3471. return render_pass;
  3472. }
  3473. RenderingDevice::FramebufferFormatID RenderingDeviceVulkan::framebuffer_format_create(const Vector<AttachmentFormat> &p_format, uint32_t p_view_count) {
  3474. FramebufferPass pass;
  3475. for (int i = 0; i < p_format.size(); i++) {
  3476. if (p_format[i].usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  3477. pass.depth_attachment = i;
  3478. } else {
  3479. pass.color_attachments.push_back(i);
  3480. }
  3481. }
  3482. Vector<FramebufferPass> passes;
  3483. passes.push_back(pass);
  3484. return framebuffer_format_create_multipass(p_format, passes, p_view_count);
  3485. }
  3486. RenderingDevice::FramebufferFormatID RenderingDeviceVulkan::framebuffer_format_create_multipass(const Vector<AttachmentFormat> &p_attachments, const Vector<FramebufferPass> &p_passes, uint32_t p_view_count) {
  3487. _THREAD_SAFE_METHOD_
  3488. FramebufferFormatKey key;
  3489. key.attachments = p_attachments;
  3490. key.passes = p_passes;
  3491. key.view_count = p_view_count;
  3492. const RBMap<FramebufferFormatKey, FramebufferFormatID>::Element *E = framebuffer_format_cache.find(key);
  3493. if (E) {
  3494. // Exists, return.
  3495. return E->get();
  3496. }
  3497. Vector<TextureSamples> samples;
  3498. VkRenderPass render_pass = _render_pass_create(p_attachments, p_passes, INITIAL_ACTION_CLEAR, FINAL_ACTION_READ, INITIAL_ACTION_CLEAR, FINAL_ACTION_READ, p_view_count, &samples); // Actions don't matter for this use case.
  3499. if (render_pass == VK_NULL_HANDLE) { // Was likely invalid.
  3500. return INVALID_ID;
  3501. }
  3502. FramebufferFormatID id = FramebufferFormatID(framebuffer_format_cache.size()) | (FramebufferFormatID(ID_TYPE_FRAMEBUFFER_FORMAT) << FramebufferFormatID(ID_BASE_SHIFT));
  3503. E = framebuffer_format_cache.insert(key, id);
  3504. FramebufferFormat fb_format;
  3505. fb_format.E = E;
  3506. fb_format.render_pass = render_pass;
  3507. fb_format.pass_samples = samples;
  3508. fb_format.view_count = p_view_count;
  3509. framebuffer_formats[id] = fb_format;
  3510. return id;
  3511. }
  3512. RenderingDevice::FramebufferFormatID RenderingDeviceVulkan::framebuffer_format_create_empty(TextureSamples p_samples) {
  3513. FramebufferFormatKey key;
  3514. key.passes.push_back(FramebufferPass());
  3515. const RBMap<FramebufferFormatKey, FramebufferFormatID>::Element *E = framebuffer_format_cache.find(key);
  3516. if (E) {
  3517. // Exists, return.
  3518. return E->get();
  3519. }
  3520. VkSubpassDescription2KHR subpass;
  3521. subpass.sType = VK_STRUCTURE_TYPE_SUBPASS_DESCRIPTION_2_KHR;
  3522. subpass.pNext = nullptr;
  3523. subpass.flags = 0;
  3524. subpass.pipelineBindPoint = VK_PIPELINE_BIND_POINT_GRAPHICS;
  3525. subpass.viewMask = 0;
  3526. subpass.inputAttachmentCount = 0; // Unsupported for now.
  3527. subpass.pInputAttachments = nullptr;
  3528. subpass.colorAttachmentCount = 0;
  3529. subpass.pColorAttachments = nullptr;
  3530. subpass.pDepthStencilAttachment = nullptr;
  3531. subpass.pResolveAttachments = nullptr;
  3532. subpass.preserveAttachmentCount = 0;
  3533. subpass.pPreserveAttachments = nullptr;
  3534. VkRenderPassCreateInfo2KHR render_pass_create_info;
  3535. render_pass_create_info.sType = VK_STRUCTURE_TYPE_RENDER_PASS_CREATE_INFO_2_KHR;
  3536. render_pass_create_info.pNext = nullptr;
  3537. render_pass_create_info.flags = 0;
  3538. render_pass_create_info.attachmentCount = 0;
  3539. render_pass_create_info.pAttachments = nullptr;
  3540. render_pass_create_info.subpassCount = 1;
  3541. render_pass_create_info.pSubpasses = &subpass;
  3542. render_pass_create_info.dependencyCount = 0;
  3543. render_pass_create_info.pDependencies = nullptr;
  3544. render_pass_create_info.correlatedViewMaskCount = 0;
  3545. render_pass_create_info.pCorrelatedViewMasks = nullptr;
  3546. VkRenderPass render_pass;
  3547. VkResult res = context->vkCreateRenderPass2KHR(device, &render_pass_create_info, nullptr, &render_pass);
  3548. ERR_FAIL_COND_V_MSG(res, 0, "vkCreateRenderPass2KHR for empty fb failed with error " + itos(res) + ".");
  3549. if (render_pass == VK_NULL_HANDLE) { // Was likely invalid.
  3550. return INVALID_ID;
  3551. }
  3552. FramebufferFormatID id = FramebufferFormatID(framebuffer_format_cache.size()) | (FramebufferFormatID(ID_TYPE_FRAMEBUFFER_FORMAT) << FramebufferFormatID(ID_BASE_SHIFT));
  3553. E = framebuffer_format_cache.insert(key, id);
  3554. FramebufferFormat fb_format;
  3555. fb_format.E = E;
  3556. fb_format.render_pass = render_pass;
  3557. fb_format.pass_samples.push_back(p_samples);
  3558. framebuffer_formats[id] = fb_format;
  3559. return id;
  3560. }
  3561. RenderingDevice::TextureSamples RenderingDeviceVulkan::framebuffer_format_get_texture_samples(FramebufferFormatID p_format, uint32_t p_pass) {
  3562. HashMap<FramebufferFormatID, FramebufferFormat>::Iterator E = framebuffer_formats.find(p_format);
  3563. ERR_FAIL_COND_V(!E, TEXTURE_SAMPLES_1);
  3564. ERR_FAIL_COND_V(p_pass >= uint32_t(E->value.pass_samples.size()), TEXTURE_SAMPLES_1);
  3565. return E->value.pass_samples[p_pass];
  3566. }
  3567. /***********************/
  3568. /**** RENDER TARGET ****/
  3569. /***********************/
  3570. RID RenderingDeviceVulkan::framebuffer_create_empty(const Size2i &p_size, TextureSamples p_samples, FramebufferFormatID p_format_check) {
  3571. _THREAD_SAFE_METHOD_
  3572. Framebuffer framebuffer;
  3573. framebuffer.format_id = framebuffer_format_create_empty(p_samples);
  3574. ERR_FAIL_COND_V(p_format_check != INVALID_FORMAT_ID && framebuffer.format_id != p_format_check, RID());
  3575. framebuffer.size = p_size;
  3576. framebuffer.view_count = 1;
  3577. RID id = framebuffer_owner.make_rid(framebuffer);
  3578. #ifdef DEV_ENABLED
  3579. set_resource_name(id, "RID:" + itos(id.get_id()));
  3580. #endif
  3581. return id;
  3582. }
  3583. RID RenderingDeviceVulkan::framebuffer_create(const Vector<RID> &p_texture_attachments, FramebufferFormatID p_format_check, uint32_t p_view_count) {
  3584. _THREAD_SAFE_METHOD_
  3585. FramebufferPass pass;
  3586. for (int i = 0; i < p_texture_attachments.size(); i++) {
  3587. Texture *texture = texture_owner.get_or_null(p_texture_attachments[i]);
  3588. ERR_FAIL_COND_V_MSG(texture && texture->layers != p_view_count, RID(), "Layers of our texture doesn't match view count for this framebuffer");
  3589. if (texture && texture->usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  3590. pass.depth_attachment = i;
  3591. } else if (texture && texture->usage_flags & TEXTURE_USAGE_VRS_ATTACHMENT_BIT) {
  3592. pass.vrs_attachment = i;
  3593. } else {
  3594. if (texture && texture->is_resolve_buffer) {
  3595. pass.resolve_attachments.push_back(i);
  3596. } else {
  3597. pass.color_attachments.push_back(texture ? i : FramebufferPass::ATTACHMENT_UNUSED);
  3598. }
  3599. }
  3600. }
  3601. Vector<FramebufferPass> passes;
  3602. passes.push_back(pass);
  3603. return framebuffer_create_multipass(p_texture_attachments, passes, p_format_check, p_view_count);
  3604. }
  3605. RID RenderingDeviceVulkan::framebuffer_create_multipass(const Vector<RID> &p_texture_attachments, const Vector<FramebufferPass> &p_passes, FramebufferFormatID p_format_check, uint32_t p_view_count) {
  3606. _THREAD_SAFE_METHOD_
  3607. Vector<AttachmentFormat> attachments;
  3608. attachments.resize(p_texture_attachments.size());
  3609. Size2i size;
  3610. bool size_set = false;
  3611. for (int i = 0; i < p_texture_attachments.size(); i++) {
  3612. AttachmentFormat af;
  3613. Texture *texture = texture_owner.get_or_null(p_texture_attachments[i]);
  3614. if (!texture) {
  3615. af.usage_flags = AttachmentFormat::UNUSED_ATTACHMENT;
  3616. } else {
  3617. ERR_FAIL_COND_V_MSG(texture->layers != p_view_count, RID(), "Layers of our texture doesn't match view count for this framebuffer");
  3618. if (!size_set) {
  3619. size.width = texture->width;
  3620. size.height = texture->height;
  3621. size_set = true;
  3622. } else if (texture->usage_flags & TEXTURE_USAGE_VRS_ATTACHMENT_BIT) {
  3623. // If this is not the first attachment we assume this is used as the VRS attachment.
  3624. // In this case this texture will be 1/16th the size of the color attachment.
  3625. // So we skip the size check.
  3626. } else {
  3627. ERR_FAIL_COND_V_MSG((uint32_t)size.width != texture->width || (uint32_t)size.height != texture->height, RID(),
  3628. "All textures in a framebuffer should be the same size.");
  3629. }
  3630. af.format = texture->format;
  3631. af.samples = texture->samples;
  3632. af.usage_flags = texture->usage_flags;
  3633. }
  3634. attachments.write[i] = af;
  3635. }
  3636. ERR_FAIL_COND_V_MSG(!size_set, RID(), "All attachments unused.");
  3637. FramebufferFormatID format_id = framebuffer_format_create_multipass(attachments, p_passes, p_view_count);
  3638. if (format_id == INVALID_ID) {
  3639. return RID();
  3640. }
  3641. ERR_FAIL_COND_V_MSG(p_format_check != INVALID_ID && format_id != p_format_check, RID(),
  3642. "The format used to check this framebuffer differs from the intended framebuffer format.");
  3643. Framebuffer framebuffer;
  3644. framebuffer.format_id = format_id;
  3645. framebuffer.texture_ids = p_texture_attachments;
  3646. framebuffer.size = size;
  3647. framebuffer.view_count = p_view_count;
  3648. RID id = framebuffer_owner.make_rid(framebuffer);
  3649. #ifdef DEV_ENABLED
  3650. set_resource_name(id, "RID:" + itos(id.get_id()));
  3651. #endif
  3652. for (int i = 0; i < p_texture_attachments.size(); i++) {
  3653. if (p_texture_attachments[i].is_valid()) {
  3654. _add_dependency(id, p_texture_attachments[i]);
  3655. }
  3656. }
  3657. return id;
  3658. }
  3659. RenderingDevice::FramebufferFormatID RenderingDeviceVulkan::framebuffer_get_format(RID p_framebuffer) {
  3660. _THREAD_SAFE_METHOD_
  3661. Framebuffer *framebuffer = framebuffer_owner.get_or_null(p_framebuffer);
  3662. ERR_FAIL_COND_V(!framebuffer, INVALID_ID);
  3663. return framebuffer->format_id;
  3664. }
  3665. bool RenderingDeviceVulkan::framebuffer_is_valid(RID p_framebuffer) const {
  3666. _THREAD_SAFE_METHOD_
  3667. return framebuffer_owner.owns(p_framebuffer);
  3668. }
  3669. void RenderingDeviceVulkan::framebuffer_set_invalidation_callback(RID p_framebuffer, InvalidationCallback p_callback, void *p_userdata) {
  3670. _THREAD_SAFE_METHOD_
  3671. Framebuffer *framebuffer = framebuffer_owner.get_or_null(p_framebuffer);
  3672. ERR_FAIL_COND(!framebuffer);
  3673. framebuffer->invalidated_callback = p_callback;
  3674. framebuffer->invalidated_callback_userdata = p_userdata;
  3675. }
  3676. /*****************/
  3677. /**** SAMPLER ****/
  3678. /*****************/
  3679. RID RenderingDeviceVulkan::sampler_create(const SamplerState &p_state) {
  3680. _THREAD_SAFE_METHOD_
  3681. VkSamplerCreateInfo sampler_create_info;
  3682. sampler_create_info.sType = VK_STRUCTURE_TYPE_SAMPLER_CREATE_INFO;
  3683. sampler_create_info.pNext = nullptr;
  3684. sampler_create_info.flags = 0;
  3685. sampler_create_info.magFilter = p_state.mag_filter == SAMPLER_FILTER_LINEAR ? VK_FILTER_LINEAR : VK_FILTER_NEAREST;
  3686. sampler_create_info.minFilter = p_state.min_filter == SAMPLER_FILTER_LINEAR ? VK_FILTER_LINEAR : VK_FILTER_NEAREST;
  3687. sampler_create_info.mipmapMode = p_state.mip_filter == SAMPLER_FILTER_LINEAR ? VK_SAMPLER_MIPMAP_MODE_LINEAR : VK_SAMPLER_MIPMAP_MODE_NEAREST;
  3688. ERR_FAIL_INDEX_V(p_state.repeat_u, SAMPLER_REPEAT_MODE_MAX, RID());
  3689. sampler_create_info.addressModeU = address_modes[p_state.repeat_u];
  3690. ERR_FAIL_INDEX_V(p_state.repeat_v, SAMPLER_REPEAT_MODE_MAX, RID());
  3691. sampler_create_info.addressModeV = address_modes[p_state.repeat_v];
  3692. ERR_FAIL_INDEX_V(p_state.repeat_w, SAMPLER_REPEAT_MODE_MAX, RID());
  3693. sampler_create_info.addressModeW = address_modes[p_state.repeat_w];
  3694. sampler_create_info.mipLodBias = p_state.lod_bias;
  3695. sampler_create_info.anisotropyEnable = p_state.use_anisotropy;
  3696. sampler_create_info.maxAnisotropy = p_state.anisotropy_max;
  3697. sampler_create_info.compareEnable = p_state.enable_compare;
  3698. ERR_FAIL_INDEX_V(p_state.compare_op, COMPARE_OP_MAX, RID());
  3699. sampler_create_info.compareOp = compare_operators[p_state.compare_op];
  3700. sampler_create_info.minLod = p_state.min_lod;
  3701. sampler_create_info.maxLod = p_state.max_lod;
  3702. ERR_FAIL_INDEX_V(p_state.border_color, SAMPLER_BORDER_COLOR_MAX, RID());
  3703. sampler_create_info.borderColor = sampler_border_colors[p_state.border_color];
  3704. sampler_create_info.unnormalizedCoordinates = p_state.unnormalized_uvw;
  3705. VkSampler sampler;
  3706. VkResult res = vkCreateSampler(device, &sampler_create_info, nullptr, &sampler);
  3707. ERR_FAIL_COND_V_MSG(res, RID(), "vkCreateSampler failed with error " + itos(res) + ".");
  3708. RID id = sampler_owner.make_rid(sampler);
  3709. #ifdef DEV_ENABLED
  3710. set_resource_name(id, "RID:" + itos(id.get_id()));
  3711. #endif
  3712. return id;
  3713. }
  3714. /**********************/
  3715. /**** VERTEX ARRAY ****/
  3716. /**********************/
  3717. RID RenderingDeviceVulkan::vertex_buffer_create(uint32_t p_size_bytes, const Vector<uint8_t> &p_data, bool p_use_as_storage) {
  3718. _THREAD_SAFE_METHOD_
  3719. ERR_FAIL_COND_V(p_data.size() && (uint32_t)p_data.size() != p_size_bytes, RID());
  3720. ERR_FAIL_COND_V_MSG(draw_list != nullptr && p_data.size(), RID(),
  3721. "Creating buffers with data is forbidden during creation of a draw list");
  3722. ERR_FAIL_COND_V_MSG(compute_list != nullptr && p_data.size(), RID(),
  3723. "Creating buffers with data is forbidden during creation of a draw list");
  3724. uint32_t usage = VK_BUFFER_USAGE_TRANSFER_SRC_BIT | VK_BUFFER_USAGE_TRANSFER_DST_BIT | VK_BUFFER_USAGE_VERTEX_BUFFER_BIT;
  3725. if (p_use_as_storage) {
  3726. usage |= VK_BUFFER_USAGE_STORAGE_BUFFER_BIT;
  3727. }
  3728. Buffer buffer;
  3729. _buffer_allocate(&buffer, p_size_bytes, usage, VMA_MEMORY_USAGE_AUTO_PREFER_DEVICE, 0);
  3730. if (p_data.size()) {
  3731. uint64_t data_size = p_data.size();
  3732. const uint8_t *r = p_data.ptr();
  3733. _buffer_update(&buffer, 0, r, data_size);
  3734. _buffer_memory_barrier(buffer.buffer, 0, data_size, VK_PIPELINE_STAGE_TRANSFER_BIT, VK_PIPELINE_STAGE_VERTEX_INPUT_BIT, VK_ACCESS_TRANSFER_WRITE_BIT, VK_ACCESS_VERTEX_ATTRIBUTE_READ_BIT, false);
  3735. }
  3736. RID id = vertex_buffer_owner.make_rid(buffer);
  3737. #ifdef DEV_ENABLED
  3738. set_resource_name(id, "RID:" + itos(id.get_id()));
  3739. #endif
  3740. return id;
  3741. }
  3742. // Internally reference counted, this ID is warranted to be unique for the same description, but needs to be freed as many times as it was allocated.
  3743. RenderingDevice::VertexFormatID RenderingDeviceVulkan::vertex_format_create(const Vector<VertexAttribute> &p_vertex_formats) {
  3744. _THREAD_SAFE_METHOD_
  3745. VertexDescriptionKey key;
  3746. key.vertex_formats = p_vertex_formats;
  3747. VertexFormatID *idptr = vertex_format_cache.getptr(key);
  3748. if (idptr) {
  3749. return *idptr;
  3750. }
  3751. // Does not exist, create one and cache it.
  3752. VertexDescriptionCache vdcache;
  3753. vdcache.bindings = memnew_arr(VkVertexInputBindingDescription, p_vertex_formats.size());
  3754. vdcache.attributes = memnew_arr(VkVertexInputAttributeDescription, p_vertex_formats.size());
  3755. HashSet<int> used_locations;
  3756. for (int i = 0; i < p_vertex_formats.size(); i++) {
  3757. ERR_CONTINUE(p_vertex_formats[i].format >= DATA_FORMAT_MAX);
  3758. ERR_FAIL_COND_V(used_locations.has(p_vertex_formats[i].location), INVALID_ID);
  3759. ERR_FAIL_COND_V_MSG(get_format_vertex_size(p_vertex_formats[i].format) == 0, INVALID_ID,
  3760. "Data format for attachment (" + itos(i) + "), '" + named_formats[p_vertex_formats[i].format] + "', is not valid for a vertex array.");
  3761. vdcache.bindings[i].binding = i;
  3762. vdcache.bindings[i].stride = p_vertex_formats[i].stride;
  3763. vdcache.bindings[i].inputRate = p_vertex_formats[i].frequency == VERTEX_FREQUENCY_INSTANCE ? VK_VERTEX_INPUT_RATE_INSTANCE : VK_VERTEX_INPUT_RATE_VERTEX;
  3764. vdcache.attributes[i].binding = i;
  3765. vdcache.attributes[i].location = p_vertex_formats[i].location;
  3766. vdcache.attributes[i].format = vulkan_formats[p_vertex_formats[i].format];
  3767. vdcache.attributes[i].offset = p_vertex_formats[i].offset;
  3768. used_locations.insert(p_vertex_formats[i].location);
  3769. }
  3770. vdcache.create_info.sType = VK_STRUCTURE_TYPE_PIPELINE_VERTEX_INPUT_STATE_CREATE_INFO;
  3771. vdcache.create_info.pNext = nullptr;
  3772. vdcache.create_info.flags = 0;
  3773. vdcache.create_info.vertexAttributeDescriptionCount = p_vertex_formats.size();
  3774. vdcache.create_info.pVertexAttributeDescriptions = vdcache.attributes;
  3775. vdcache.create_info.vertexBindingDescriptionCount = p_vertex_formats.size();
  3776. vdcache.create_info.pVertexBindingDescriptions = vdcache.bindings;
  3777. vdcache.vertex_formats = p_vertex_formats;
  3778. VertexFormatID id = VertexFormatID(vertex_format_cache.size()) | (VertexFormatID(ID_TYPE_VERTEX_FORMAT) << ID_BASE_SHIFT);
  3779. vertex_format_cache[key] = id;
  3780. vertex_formats[id] = vdcache;
  3781. return id;
  3782. }
  3783. RID RenderingDeviceVulkan::vertex_array_create(uint32_t p_vertex_count, VertexFormatID p_vertex_format, const Vector<RID> &p_src_buffers, const Vector<uint64_t> &p_offsets) {
  3784. _THREAD_SAFE_METHOD_
  3785. ERR_FAIL_COND_V(!vertex_formats.has(p_vertex_format), RID());
  3786. const VertexDescriptionCache &vd = vertex_formats[p_vertex_format];
  3787. ERR_FAIL_COND_V(vd.vertex_formats.size() != p_src_buffers.size(), RID());
  3788. for (int i = 0; i < p_src_buffers.size(); i++) {
  3789. ERR_FAIL_COND_V(!vertex_buffer_owner.owns(p_src_buffers[i]), RID());
  3790. }
  3791. VertexArray vertex_array;
  3792. if (p_offsets.is_empty()) {
  3793. vertex_array.offsets.resize_zeroed(p_src_buffers.size());
  3794. } else {
  3795. ERR_FAIL_COND_V(p_offsets.size() != p_src_buffers.size(), RID());
  3796. vertex_array.offsets = p_offsets;
  3797. }
  3798. vertex_array.vertex_count = p_vertex_count;
  3799. vertex_array.description = p_vertex_format;
  3800. vertex_array.max_instances_allowed = 0xFFFFFFFF; // By default as many as you want.
  3801. for (int i = 0; i < p_src_buffers.size(); i++) {
  3802. Buffer *buffer = vertex_buffer_owner.get_or_null(p_src_buffers[i]);
  3803. // Validate with buffer.
  3804. {
  3805. const VertexAttribute &atf = vd.vertex_formats[i];
  3806. uint32_t element_size = get_format_vertex_size(atf.format);
  3807. ERR_FAIL_COND_V(element_size == 0, RID()); // Should never happens since this was prevalidated.
  3808. if (atf.frequency == VERTEX_FREQUENCY_VERTEX) {
  3809. // Validate size for regular drawing.
  3810. uint64_t total_size = uint64_t(atf.stride) * (p_vertex_count - 1) + atf.offset + element_size;
  3811. ERR_FAIL_COND_V_MSG(total_size > buffer->size, RID(),
  3812. "Attachment (" + itos(i) + ") will read past the end of the buffer.");
  3813. } else {
  3814. // Validate size for instances drawing.
  3815. uint64_t available = buffer->size - atf.offset;
  3816. ERR_FAIL_COND_V_MSG(available < element_size, RID(),
  3817. "Attachment (" + itos(i) + ") uses instancing, but it's just too small.");
  3818. uint32_t instances_allowed = available / atf.stride;
  3819. vertex_array.max_instances_allowed = MIN(instances_allowed, vertex_array.max_instances_allowed);
  3820. }
  3821. }
  3822. vertex_array.buffers.push_back(buffer->buffer);
  3823. }
  3824. RID id = vertex_array_owner.make_rid(vertex_array);
  3825. for (int i = 0; i < p_src_buffers.size(); i++) {
  3826. _add_dependency(id, p_src_buffers[i]);
  3827. }
  3828. return id;
  3829. }
  3830. RID RenderingDeviceVulkan::index_buffer_create(uint32_t p_index_count, IndexBufferFormat p_format, const Vector<uint8_t> &p_data, bool p_use_restart_indices) {
  3831. _THREAD_SAFE_METHOD_
  3832. ERR_FAIL_COND_V_MSG(draw_list != nullptr && p_data.size(), RID(),
  3833. "Creating buffers with data is forbidden during creation of a draw list");
  3834. ERR_FAIL_COND_V_MSG(compute_list != nullptr && p_data.size(), RID(),
  3835. "Creating buffers with data is forbidden during creation of a draw list");
  3836. ERR_FAIL_COND_V(p_index_count == 0, RID());
  3837. IndexBuffer index_buffer;
  3838. index_buffer.index_type = (p_format == INDEX_BUFFER_FORMAT_UINT16) ? VK_INDEX_TYPE_UINT16 : VK_INDEX_TYPE_UINT32;
  3839. index_buffer.supports_restart_indices = p_use_restart_indices;
  3840. index_buffer.index_count = p_index_count;
  3841. uint32_t size_bytes = p_index_count * ((p_format == INDEX_BUFFER_FORMAT_UINT16) ? 2 : 4);
  3842. #ifdef DEBUG_ENABLED
  3843. if (p_data.size()) {
  3844. index_buffer.max_index = 0;
  3845. ERR_FAIL_COND_V_MSG((uint32_t)p_data.size() != size_bytes, RID(),
  3846. "Default index buffer initializer array size (" + itos(p_data.size()) + ") does not match format required size (" + itos(size_bytes) + ").");
  3847. const uint8_t *r = p_data.ptr();
  3848. if (p_format == INDEX_BUFFER_FORMAT_UINT16) {
  3849. const uint16_t *index16 = (const uint16_t *)r;
  3850. for (uint32_t i = 0; i < p_index_count; i++) {
  3851. if (p_use_restart_indices && index16[i] == 0xFFFF) {
  3852. continue; // Restart index, ignore.
  3853. }
  3854. index_buffer.max_index = MAX(index16[i], index_buffer.max_index);
  3855. }
  3856. } else {
  3857. const uint32_t *index32 = (const uint32_t *)r;
  3858. for (uint32_t i = 0; i < p_index_count; i++) {
  3859. if (p_use_restart_indices && index32[i] == 0xFFFFFFFF) {
  3860. continue; // Restart index, ignore.
  3861. }
  3862. index_buffer.max_index = MAX(index32[i], index_buffer.max_index);
  3863. }
  3864. }
  3865. } else {
  3866. index_buffer.max_index = 0xFFFFFFFF;
  3867. }
  3868. #else
  3869. index_buffer.max_index = 0xFFFFFFFF;
  3870. #endif
  3871. _buffer_allocate(&index_buffer, size_bytes, VK_BUFFER_USAGE_TRANSFER_SRC_BIT | VK_BUFFER_USAGE_TRANSFER_DST_BIT | VK_BUFFER_USAGE_INDEX_BUFFER_BIT, VMA_MEMORY_USAGE_AUTO_PREFER_DEVICE, 0);
  3872. if (p_data.size()) {
  3873. uint64_t data_size = p_data.size();
  3874. const uint8_t *r = p_data.ptr();
  3875. _buffer_update(&index_buffer, 0, r, data_size);
  3876. _buffer_memory_barrier(index_buffer.buffer, 0, data_size, VK_PIPELINE_STAGE_TRANSFER_BIT, VK_PIPELINE_STAGE_VERTEX_INPUT_BIT, VK_ACCESS_TRANSFER_WRITE_BIT, VK_ACCESS_INDEX_READ_BIT, false);
  3877. }
  3878. RID id = index_buffer_owner.make_rid(index_buffer);
  3879. #ifdef DEV_ENABLED
  3880. set_resource_name(id, "RID:" + itos(id.get_id()));
  3881. #endif
  3882. return id;
  3883. }
  3884. RID RenderingDeviceVulkan::index_array_create(RID p_index_buffer, uint32_t p_index_offset, uint32_t p_index_count) {
  3885. _THREAD_SAFE_METHOD_
  3886. ERR_FAIL_COND_V(!index_buffer_owner.owns(p_index_buffer), RID());
  3887. IndexBuffer *index_buffer = index_buffer_owner.get_or_null(p_index_buffer);
  3888. ERR_FAIL_COND_V(p_index_count == 0, RID());
  3889. ERR_FAIL_COND_V(p_index_offset + p_index_count > index_buffer->index_count, RID());
  3890. IndexArray index_array;
  3891. index_array.max_index = index_buffer->max_index;
  3892. index_array.buffer = index_buffer->buffer;
  3893. index_array.offset = p_index_offset;
  3894. index_array.indices = p_index_count;
  3895. index_array.index_type = index_buffer->index_type;
  3896. index_array.supports_restart_indices = index_buffer->supports_restart_indices;
  3897. RID id = index_array_owner.make_rid(index_array);
  3898. _add_dependency(id, p_index_buffer);
  3899. return id;
  3900. }
  3901. /****************/
  3902. /**** SHADER ****/
  3903. /****************/
  3904. static const char *shader_uniform_names[RenderingDevice::UNIFORM_TYPE_MAX] = {
  3905. "Sampler", "CombinedSampler", "Texture", "Image", "TextureBuffer", "SamplerTextureBuffer", "ImageBuffer", "UniformBuffer", "StorageBuffer", "InputAttachment"
  3906. };
  3907. static VkShaderStageFlagBits shader_stage_masks[RenderingDevice::SHADER_STAGE_MAX] = {
  3908. VK_SHADER_STAGE_VERTEX_BIT,
  3909. VK_SHADER_STAGE_FRAGMENT_BIT,
  3910. VK_SHADER_STAGE_TESSELLATION_CONTROL_BIT,
  3911. VK_SHADER_STAGE_TESSELLATION_EVALUATION_BIT,
  3912. VK_SHADER_STAGE_COMPUTE_BIT,
  3913. };
  3914. String RenderingDeviceVulkan::_shader_uniform_debug(RID p_shader, int p_set) {
  3915. String ret;
  3916. const Shader *shader = shader_owner.get_or_null(p_shader);
  3917. ERR_FAIL_COND_V(!shader, String());
  3918. for (int i = 0; i < shader->sets.size(); i++) {
  3919. if (p_set >= 0 && i != p_set) {
  3920. continue;
  3921. }
  3922. for (int j = 0; j < shader->sets[i].uniform_info.size(); j++) {
  3923. const UniformInfo &ui = shader->sets[i].uniform_info[j];
  3924. if (!ret.is_empty()) {
  3925. ret += "\n";
  3926. }
  3927. ret += "Set: " + itos(i) + " Binding: " + itos(ui.binding) + " Type: " + shader_uniform_names[ui.type] + " Writable: " + (ui.writable ? "Y" : "N") + " Length: " + itos(ui.length);
  3928. }
  3929. }
  3930. return ret;
  3931. }
  3932. // Version 1: initial.
  3933. // Version 2: Added shader name.
  3934. // Version 3: Added writable.
  3935. #define SHADER_BINARY_VERSION 3
  3936. String RenderingDeviceVulkan::shader_get_binary_cache_key() const {
  3937. return "Vulkan-SV" + itos(SHADER_BINARY_VERSION) + "-" + String(VERSION_NUMBER) + "-" + String(VERSION_HASH);
  3938. }
  3939. struct RenderingDeviceVulkanShaderBinaryDataBinding {
  3940. uint32_t type;
  3941. uint32_t binding;
  3942. uint32_t stages;
  3943. uint32_t length; // Size of arrays (in total elements), or ubos (in bytes * total elements).
  3944. uint32_t writable;
  3945. };
  3946. struct RenderingDeviceVulkanShaderBinarySpecializationConstant {
  3947. uint32_t type;
  3948. uint32_t constant_id;
  3949. union {
  3950. uint32_t int_value;
  3951. float float_value;
  3952. bool bool_value;
  3953. };
  3954. uint32_t stage_flags;
  3955. };
  3956. struct RenderingDeviceVulkanShaderBinaryData {
  3957. uint32_t vertex_input_mask;
  3958. uint32_t fragment_output_mask;
  3959. uint32_t specialization_constants_count;
  3960. uint32_t is_compute;
  3961. uint32_t compute_local_size[3];
  3962. uint32_t set_count;
  3963. uint32_t push_constant_size;
  3964. uint32_t push_constant_vk_stages_mask;
  3965. uint32_t stage_count;
  3966. uint32_t shader_name_len;
  3967. };
  3968. Vector<uint8_t> RenderingDeviceVulkan::shader_compile_binary_from_spirv(const Vector<ShaderStageSPIRVData> &p_spirv, const String &p_shader_name) {
  3969. SpirvReflectionData spirv_data;
  3970. if (_reflect_spirv(p_spirv, spirv_data) != OK) {
  3971. return Vector<uint8_t>();
  3972. }
  3973. ERR_FAIL_COND_V_MSG((uint32_t)spirv_data.uniforms.size() > limits.maxBoundDescriptorSets, Vector<uint8_t>(),
  3974. "Number of uniform sets is larger than what is supported by the hardware (" + itos(limits.maxBoundDescriptorSets) + ").");
  3975. // Collect reflection data into binary data.
  3976. RenderingDeviceVulkanShaderBinaryData binary_data;
  3977. Vector<Vector<RenderingDeviceVulkanShaderBinaryDataBinding>> uniform_info; // Set bindings.
  3978. Vector<RenderingDeviceVulkanShaderBinarySpecializationConstant> specialization_constants;
  3979. {
  3980. binary_data.vertex_input_mask = spirv_data.vertex_input_mask;
  3981. binary_data.fragment_output_mask = spirv_data.fragment_output_mask;
  3982. binary_data.specialization_constants_count = spirv_data.specialization_constants.size();
  3983. binary_data.is_compute = spirv_data.is_compute;
  3984. binary_data.compute_local_size[0] = spirv_data.compute_local_size[0];
  3985. binary_data.compute_local_size[1] = spirv_data.compute_local_size[1];
  3986. binary_data.compute_local_size[2] = spirv_data.compute_local_size[2];
  3987. binary_data.set_count = spirv_data.uniforms.size();
  3988. binary_data.push_constant_size = spirv_data.push_constant_size;
  3989. for (uint32_t i = 0; i < SHADER_STAGE_MAX; i++) {
  3990. if (spirv_data.push_constant_stages_mask.has_flag((ShaderStage)(1 << i))) {
  3991. binary_data.push_constant_vk_stages_mask |= shader_stage_masks[i];
  3992. }
  3993. }
  3994. for (const Vector<SpirvReflectionData::Uniform> &spirv_set : spirv_data.uniforms) {
  3995. Vector<RenderingDeviceVulkanShaderBinaryDataBinding> set_bindings;
  3996. for (const SpirvReflectionData::Uniform &spirv_uniform : spirv_set) {
  3997. RenderingDeviceVulkanShaderBinaryDataBinding binding{};
  3998. binding.type = (uint32_t)spirv_uniform.type;
  3999. binding.binding = spirv_uniform.binding;
  4000. binding.stages = (uint32_t)spirv_uniform.stages_mask;
  4001. binding.length = spirv_uniform.length;
  4002. binding.writable = (uint32_t)spirv_uniform.writable;
  4003. set_bindings.push_back(binding);
  4004. }
  4005. uniform_info.push_back(set_bindings);
  4006. }
  4007. for (const SpirvReflectionData::SpecializationConstant &spirv_sc : spirv_data.specialization_constants) {
  4008. RenderingDeviceVulkanShaderBinarySpecializationConstant spec_constant{};
  4009. spec_constant.type = (uint32_t)spirv_sc.type;
  4010. spec_constant.constant_id = spirv_sc.constant_id;
  4011. spec_constant.int_value = spirv_sc.int_value;
  4012. spec_constant.stage_flags = (uint32_t)spirv_sc.stages_mask;
  4013. specialization_constants.push_back(spec_constant);
  4014. }
  4015. }
  4016. Vector<Vector<uint8_t>> compressed_stages;
  4017. Vector<uint32_t> smolv_size;
  4018. Vector<uint32_t> zstd_size; // If 0, zstd not used.
  4019. uint32_t stages_binary_size = 0;
  4020. bool strip_debug = false;
  4021. for (int i = 0; i < p_spirv.size(); i++) {
  4022. smolv::ByteArray smolv;
  4023. if (!smolv::Encode(p_spirv[i].spir_v.ptr(), p_spirv[i].spir_v.size(), smolv, strip_debug ? smolv::kEncodeFlagStripDebugInfo : 0)) {
  4024. ERR_FAIL_V_MSG(Vector<uint8_t>(), "Error compressing shader stage :" + String(shader_stage_names[p_spirv[i].shader_stage]));
  4025. } else {
  4026. smolv_size.push_back(smolv.size());
  4027. { // zstd.
  4028. Vector<uint8_t> zstd;
  4029. zstd.resize(Compression::get_max_compressed_buffer_size(smolv.size(), Compression::MODE_ZSTD));
  4030. int dst_size = Compression::compress(zstd.ptrw(), &smolv[0], smolv.size(), Compression::MODE_ZSTD);
  4031. if (dst_size > 0 && (uint32_t)dst_size < smolv.size()) {
  4032. zstd_size.push_back(dst_size);
  4033. zstd.resize(dst_size);
  4034. compressed_stages.push_back(zstd);
  4035. } else {
  4036. Vector<uint8_t> smv;
  4037. smv.resize(smolv.size());
  4038. memcpy(smv.ptrw(), &smolv[0], smolv.size());
  4039. zstd_size.push_back(0); // Not using zstd.
  4040. compressed_stages.push_back(smv);
  4041. }
  4042. }
  4043. }
  4044. uint32_t s = compressed_stages[i].size();
  4045. if (s % 4 != 0) {
  4046. s += 4 - (s % 4);
  4047. }
  4048. stages_binary_size += s;
  4049. }
  4050. binary_data.specialization_constants_count = specialization_constants.size();
  4051. binary_data.set_count = uniform_info.size();
  4052. binary_data.stage_count = p_spirv.size();
  4053. CharString shader_name_utf = p_shader_name.utf8();
  4054. binary_data.shader_name_len = shader_name_utf.length();
  4055. uint32_t total_size = sizeof(uint32_t) * 3; // Header + version + main datasize;.
  4056. total_size += sizeof(RenderingDeviceVulkanShaderBinaryData);
  4057. total_size += binary_data.shader_name_len;
  4058. if ((binary_data.shader_name_len % 4) != 0) { // Alignment rules are really strange.
  4059. total_size += 4 - (binary_data.shader_name_len % 4);
  4060. }
  4061. for (int i = 0; i < uniform_info.size(); i++) {
  4062. total_size += sizeof(uint32_t);
  4063. total_size += uniform_info[i].size() * sizeof(RenderingDeviceVulkanShaderBinaryDataBinding);
  4064. }
  4065. total_size += sizeof(RenderingDeviceVulkanShaderBinarySpecializationConstant) * specialization_constants.size();
  4066. total_size += compressed_stages.size() * sizeof(uint32_t) * 3; // Sizes.
  4067. total_size += stages_binary_size;
  4068. Vector<uint8_t> ret;
  4069. ret.resize(total_size);
  4070. {
  4071. uint32_t offset = 0;
  4072. uint8_t *binptr = ret.ptrw();
  4073. binptr[0] = 'G';
  4074. binptr[1] = 'S';
  4075. binptr[2] = 'B';
  4076. binptr[3] = 'D'; // Godot Shader Binary Data.
  4077. offset += 4;
  4078. encode_uint32(SHADER_BINARY_VERSION, binptr + offset);
  4079. offset += sizeof(uint32_t);
  4080. encode_uint32(sizeof(RenderingDeviceVulkanShaderBinaryData), binptr + offset);
  4081. offset += sizeof(uint32_t);
  4082. memcpy(binptr + offset, &binary_data, sizeof(RenderingDeviceVulkanShaderBinaryData));
  4083. offset += sizeof(RenderingDeviceVulkanShaderBinaryData);
  4084. memcpy(binptr + offset, shader_name_utf.ptr(), binary_data.shader_name_len);
  4085. offset += binary_data.shader_name_len;
  4086. if ((binary_data.shader_name_len % 4) != 0) { // Alignment rules are really strange.
  4087. offset += 4 - (binary_data.shader_name_len % 4);
  4088. }
  4089. for (int i = 0; i < uniform_info.size(); i++) {
  4090. int count = uniform_info[i].size();
  4091. encode_uint32(count, binptr + offset);
  4092. offset += sizeof(uint32_t);
  4093. if (count > 0) {
  4094. memcpy(binptr + offset, uniform_info[i].ptr(), sizeof(RenderingDeviceVulkanShaderBinaryDataBinding) * count);
  4095. offset += sizeof(RenderingDeviceVulkanShaderBinaryDataBinding) * count;
  4096. }
  4097. }
  4098. if (specialization_constants.size()) {
  4099. memcpy(binptr + offset, specialization_constants.ptr(), sizeof(RenderingDeviceVulkanShaderBinarySpecializationConstant) * specialization_constants.size());
  4100. offset += sizeof(RenderingDeviceVulkanShaderBinarySpecializationConstant) * specialization_constants.size();
  4101. }
  4102. for (int i = 0; i < compressed_stages.size(); i++) {
  4103. encode_uint32(p_spirv[i].shader_stage, binptr + offset);
  4104. offset += sizeof(uint32_t);
  4105. encode_uint32(smolv_size[i], binptr + offset);
  4106. offset += sizeof(uint32_t);
  4107. encode_uint32(zstd_size[i], binptr + offset);
  4108. offset += sizeof(uint32_t);
  4109. memcpy(binptr + offset, compressed_stages[i].ptr(), compressed_stages[i].size());
  4110. uint32_t s = compressed_stages[i].size();
  4111. if (s % 4 != 0) {
  4112. s += 4 - (s % 4);
  4113. }
  4114. offset += s;
  4115. }
  4116. ERR_FAIL_COND_V(offset != (uint32_t)ret.size(), Vector<uint8_t>());
  4117. }
  4118. return ret;
  4119. }
  4120. RID RenderingDeviceVulkan::shader_create_from_bytecode(const Vector<uint8_t> &p_shader_binary) {
  4121. const uint8_t *binptr = p_shader_binary.ptr();
  4122. uint32_t binsize = p_shader_binary.size();
  4123. uint32_t read_offset = 0;
  4124. // Consistency check.
  4125. ERR_FAIL_COND_V(binsize < sizeof(uint32_t) * 3 + sizeof(RenderingDeviceVulkanShaderBinaryData), RID());
  4126. ERR_FAIL_COND_V(binptr[0] != 'G' || binptr[1] != 'S' || binptr[2] != 'B' || binptr[3] != 'D', RID());
  4127. uint32_t bin_version = decode_uint32(binptr + 4);
  4128. ERR_FAIL_COND_V(bin_version != SHADER_BINARY_VERSION, RID());
  4129. uint32_t bin_data_size = decode_uint32(binptr + 8);
  4130. const RenderingDeviceVulkanShaderBinaryData &binary_data = *(reinterpret_cast<const RenderingDeviceVulkanShaderBinaryData *>(binptr + 12));
  4131. Shader::PushConstant push_constant;
  4132. push_constant.size = binary_data.push_constant_size;
  4133. push_constant.vk_stages_mask = binary_data.push_constant_vk_stages_mask;
  4134. uint32_t vertex_input_mask = binary_data.vertex_input_mask;
  4135. uint32_t fragment_output_mask = binary_data.fragment_output_mask;
  4136. bool is_compute = binary_data.is_compute;
  4137. const uint32_t compute_local_size[3] = { binary_data.compute_local_size[0], binary_data.compute_local_size[1], binary_data.compute_local_size[2] };
  4138. read_offset += sizeof(uint32_t) * 3 + bin_data_size;
  4139. String name;
  4140. if (binary_data.shader_name_len) {
  4141. name.parse_utf8((const char *)(binptr + read_offset), binary_data.shader_name_len);
  4142. read_offset += binary_data.shader_name_len;
  4143. if ((binary_data.shader_name_len % 4) != 0) { // Alignment rules are really strange.
  4144. read_offset += 4 - (binary_data.shader_name_len % 4);
  4145. }
  4146. }
  4147. Vector<Vector<VkDescriptorSetLayoutBinding>> set_bindings;
  4148. Vector<Vector<UniformInfo>> uniform_info;
  4149. set_bindings.resize(binary_data.set_count);
  4150. uniform_info.resize(binary_data.set_count);
  4151. for (uint32_t i = 0; i < binary_data.set_count; i++) {
  4152. ERR_FAIL_COND_V(read_offset + sizeof(uint32_t) >= binsize, RID());
  4153. uint32_t set_count = decode_uint32(binptr + read_offset);
  4154. read_offset += sizeof(uint32_t);
  4155. const RenderingDeviceVulkanShaderBinaryDataBinding *set_ptr = reinterpret_cast<const RenderingDeviceVulkanShaderBinaryDataBinding *>(binptr + read_offset);
  4156. uint32_t set_size = set_count * sizeof(RenderingDeviceVulkanShaderBinaryDataBinding);
  4157. ERR_FAIL_COND_V(read_offset + set_size >= binsize, RID());
  4158. for (uint32_t j = 0; j < set_count; j++) {
  4159. UniformInfo info;
  4160. info.type = UniformType(set_ptr[j].type);
  4161. info.writable = set_ptr[j].writable;
  4162. info.length = set_ptr[j].length;
  4163. info.binding = set_ptr[j].binding;
  4164. info.stages = set_ptr[j].stages;
  4165. VkDescriptorSetLayoutBinding layout_binding;
  4166. layout_binding.pImmutableSamplers = nullptr;
  4167. layout_binding.binding = set_ptr[j].binding;
  4168. layout_binding.descriptorCount = 1;
  4169. layout_binding.stageFlags = 0;
  4170. for (uint32_t k = 0; k < SHADER_STAGE_MAX; k++) {
  4171. if (set_ptr[j].stages & (1 << k)) {
  4172. layout_binding.stageFlags |= shader_stage_masks[k];
  4173. }
  4174. }
  4175. switch (info.type) {
  4176. case UNIFORM_TYPE_SAMPLER: {
  4177. layout_binding.descriptorType = VK_DESCRIPTOR_TYPE_SAMPLER;
  4178. layout_binding.descriptorCount = set_ptr[j].length;
  4179. } break;
  4180. case UNIFORM_TYPE_SAMPLER_WITH_TEXTURE: {
  4181. layout_binding.descriptorType = VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER;
  4182. layout_binding.descriptorCount = set_ptr[j].length;
  4183. } break;
  4184. case UNIFORM_TYPE_TEXTURE: {
  4185. layout_binding.descriptorType = VK_DESCRIPTOR_TYPE_SAMPLED_IMAGE;
  4186. layout_binding.descriptorCount = set_ptr[j].length;
  4187. } break;
  4188. case UNIFORM_TYPE_IMAGE: {
  4189. layout_binding.descriptorType = VK_DESCRIPTOR_TYPE_STORAGE_IMAGE;
  4190. layout_binding.descriptorCount = set_ptr[j].length;
  4191. } break;
  4192. case UNIFORM_TYPE_TEXTURE_BUFFER: {
  4193. layout_binding.descriptorType = VK_DESCRIPTOR_TYPE_UNIFORM_TEXEL_BUFFER;
  4194. layout_binding.descriptorCount = set_ptr[j].length;
  4195. } break;
  4196. case UNIFORM_TYPE_IMAGE_BUFFER: {
  4197. layout_binding.descriptorType = VK_DESCRIPTOR_TYPE_STORAGE_TEXEL_BUFFER;
  4198. } break;
  4199. case UNIFORM_TYPE_UNIFORM_BUFFER: {
  4200. layout_binding.descriptorType = VK_DESCRIPTOR_TYPE_UNIFORM_BUFFER;
  4201. } break;
  4202. case UNIFORM_TYPE_STORAGE_BUFFER: {
  4203. layout_binding.descriptorType = VK_DESCRIPTOR_TYPE_STORAGE_BUFFER;
  4204. } break;
  4205. case UNIFORM_TYPE_INPUT_ATTACHMENT: {
  4206. layout_binding.descriptorType = VK_DESCRIPTOR_TYPE_INPUT_ATTACHMENT;
  4207. } break;
  4208. default: {
  4209. ERR_FAIL_V(RID());
  4210. }
  4211. }
  4212. set_bindings.write[i].push_back(layout_binding);
  4213. uniform_info.write[i].push_back(info);
  4214. }
  4215. read_offset += set_size;
  4216. }
  4217. ERR_FAIL_COND_V(read_offset + binary_data.specialization_constants_count * sizeof(RenderingDeviceVulkanShaderBinarySpecializationConstant) >= binsize, RID());
  4218. Vector<Shader::SpecializationConstant> specialization_constants;
  4219. for (uint32_t i = 0; i < binary_data.specialization_constants_count; i++) {
  4220. const RenderingDeviceVulkanShaderBinarySpecializationConstant &src_sc = *(reinterpret_cast<const RenderingDeviceVulkanShaderBinarySpecializationConstant *>(binptr + read_offset));
  4221. Shader::SpecializationConstant sc;
  4222. sc.constant.int_value = src_sc.int_value;
  4223. sc.constant.type = PipelineSpecializationConstantType(src_sc.type);
  4224. sc.constant.constant_id = src_sc.constant_id;
  4225. sc.stage_flags = src_sc.stage_flags;
  4226. specialization_constants.push_back(sc);
  4227. read_offset += sizeof(RenderingDeviceVulkanShaderBinarySpecializationConstant);
  4228. }
  4229. Vector<Vector<uint8_t>> stage_spirv_data;
  4230. Vector<ShaderStage> stage_type;
  4231. for (uint32_t i = 0; i < binary_data.stage_count; i++) {
  4232. ERR_FAIL_COND_V(read_offset + sizeof(uint32_t) * 3 >= binsize, RID());
  4233. uint32_t stage = decode_uint32(binptr + read_offset);
  4234. read_offset += sizeof(uint32_t);
  4235. uint32_t smolv_size = decode_uint32(binptr + read_offset);
  4236. read_offset += sizeof(uint32_t);
  4237. uint32_t zstd_size = decode_uint32(binptr + read_offset);
  4238. read_offset += sizeof(uint32_t);
  4239. uint32_t buf_size = (zstd_size > 0) ? zstd_size : smolv_size;
  4240. Vector<uint8_t> smolv;
  4241. const uint8_t *src_smolv = nullptr;
  4242. if (zstd_size > 0) {
  4243. // Decompress to smolv.
  4244. smolv.resize(smolv_size);
  4245. int dec_smolv_size = Compression::decompress(smolv.ptrw(), smolv.size(), binptr + read_offset, zstd_size, Compression::MODE_ZSTD);
  4246. ERR_FAIL_COND_V(dec_smolv_size != (int32_t)smolv_size, RID());
  4247. src_smolv = smolv.ptr();
  4248. } else {
  4249. src_smolv = binptr + read_offset;
  4250. }
  4251. Vector<uint8_t> spirv;
  4252. uint32_t spirv_size = smolv::GetDecodedBufferSize(src_smolv, smolv_size);
  4253. spirv.resize(spirv_size);
  4254. if (!smolv::Decode(src_smolv, smolv_size, spirv.ptrw(), spirv_size)) {
  4255. ERR_FAIL_V_MSG(RID(), "Malformed smolv input uncompressing shader stage:" + String(shader_stage_names[stage]));
  4256. }
  4257. stage_spirv_data.push_back(spirv);
  4258. stage_type.push_back(ShaderStage(stage));
  4259. if (buf_size % 4 != 0) {
  4260. buf_size += 4 - (buf_size % 4);
  4261. }
  4262. ERR_FAIL_COND_V(read_offset + buf_size > binsize, RID());
  4263. read_offset += buf_size;
  4264. }
  4265. ERR_FAIL_COND_V(read_offset != binsize, RID());
  4266. // All good, let's create modules.
  4267. _THREAD_SAFE_METHOD_
  4268. Shader shader;
  4269. shader.vertex_input_mask = vertex_input_mask;
  4270. shader.fragment_output_mask = fragment_output_mask;
  4271. shader.push_constant = push_constant;
  4272. shader.is_compute = is_compute;
  4273. shader.compute_local_size[0] = compute_local_size[0];
  4274. shader.compute_local_size[1] = compute_local_size[1];
  4275. shader.compute_local_size[2] = compute_local_size[2];
  4276. shader.specialization_constants = specialization_constants;
  4277. shader.name = name;
  4278. String error_text;
  4279. bool success = true;
  4280. for (int i = 0; i < stage_spirv_data.size(); i++) {
  4281. VkShaderModuleCreateInfo shader_module_create_info;
  4282. shader_module_create_info.sType = VK_STRUCTURE_TYPE_SHADER_MODULE_CREATE_INFO;
  4283. shader_module_create_info.pNext = nullptr;
  4284. shader_module_create_info.flags = 0;
  4285. shader_module_create_info.codeSize = stage_spirv_data[i].size();
  4286. const uint8_t *r = stage_spirv_data[i].ptr();
  4287. shader_module_create_info.pCode = (const uint32_t *)r;
  4288. VkShaderModule module;
  4289. VkResult res = vkCreateShaderModule(device, &shader_module_create_info, nullptr, &module);
  4290. if (res) {
  4291. success = false;
  4292. error_text = "Error (" + itos(res) + ") creating shader module for stage: " + String(shader_stage_names[stage_type[i]]);
  4293. break;
  4294. }
  4295. VkPipelineShaderStageCreateInfo shader_stage;
  4296. shader_stage.sType = VK_STRUCTURE_TYPE_PIPELINE_SHADER_STAGE_CREATE_INFO;
  4297. shader_stage.pNext = nullptr;
  4298. shader_stage.flags = 0;
  4299. shader_stage.stage = shader_stage_masks[stage_type[i]];
  4300. shader_stage.module = module;
  4301. shader_stage.pName = "main";
  4302. shader_stage.pSpecializationInfo = nullptr;
  4303. shader.pipeline_stages.push_back(shader_stage);
  4304. }
  4305. // Proceed to create descriptor sets.
  4306. if (success) {
  4307. for (int i = 0; i < set_bindings.size(); i++) {
  4308. // Empty ones are fine if they were not used according to spec (binding count will be 0).
  4309. VkDescriptorSetLayoutCreateInfo layout_create_info;
  4310. layout_create_info.sType = VK_STRUCTURE_TYPE_DESCRIPTOR_SET_LAYOUT_CREATE_INFO;
  4311. layout_create_info.pNext = nullptr;
  4312. layout_create_info.flags = 0;
  4313. layout_create_info.bindingCount = set_bindings[i].size();
  4314. layout_create_info.pBindings = set_bindings[i].ptr();
  4315. VkDescriptorSetLayout layout;
  4316. VkResult res = vkCreateDescriptorSetLayout(device, &layout_create_info, nullptr, &layout);
  4317. if (res) {
  4318. error_text = "Error (" + itos(res) + ") creating descriptor set layout for set " + itos(i);
  4319. success = false;
  4320. break;
  4321. }
  4322. Shader::Set set;
  4323. set.descriptor_set_layout = layout;
  4324. set.uniform_info = uniform_info[i];
  4325. // Sort and hash.
  4326. set.uniform_info.sort();
  4327. uint32_t format = 0; // No format, default.
  4328. if (set.uniform_info.size()) {
  4329. // Has data, needs an actual format.
  4330. UniformSetFormat usformat;
  4331. usformat.uniform_info = set.uniform_info;
  4332. RBMap<UniformSetFormat, uint32_t>::Element *E = uniform_set_format_cache.find(usformat);
  4333. if (E) {
  4334. format = E->get();
  4335. } else {
  4336. format = uniform_set_format_cache.size() + 1;
  4337. uniform_set_format_cache.insert(usformat, format);
  4338. }
  4339. }
  4340. shader.sets.push_back(set);
  4341. shader.set_formats.push_back(format);
  4342. }
  4343. }
  4344. if (success) {
  4345. // Create pipeline layout.
  4346. VkPipelineLayoutCreateInfo pipeline_layout_create_info;
  4347. pipeline_layout_create_info.sType = VK_STRUCTURE_TYPE_PIPELINE_LAYOUT_CREATE_INFO;
  4348. pipeline_layout_create_info.pNext = nullptr;
  4349. pipeline_layout_create_info.flags = 0;
  4350. pipeline_layout_create_info.setLayoutCount = shader.sets.size();
  4351. Vector<VkDescriptorSetLayout> layouts;
  4352. layouts.resize(shader.sets.size());
  4353. for (int i = 0; i < layouts.size(); i++) {
  4354. layouts.write[i] = shader.sets[i].descriptor_set_layout;
  4355. }
  4356. pipeline_layout_create_info.pSetLayouts = layouts.ptr();
  4357. // Needs to be declared in this outer scope, otherwise it may not outlive its assignment
  4358. // to pipeline_layout_create_info.
  4359. VkPushConstantRange push_constant_range;
  4360. if (push_constant.size) {
  4361. push_constant_range.stageFlags = push_constant.vk_stages_mask;
  4362. push_constant_range.offset = 0;
  4363. push_constant_range.size = push_constant.size;
  4364. pipeline_layout_create_info.pushConstantRangeCount = 1;
  4365. pipeline_layout_create_info.pPushConstantRanges = &push_constant_range;
  4366. } else {
  4367. pipeline_layout_create_info.pushConstantRangeCount = 0;
  4368. pipeline_layout_create_info.pPushConstantRanges = nullptr;
  4369. }
  4370. VkResult err = vkCreatePipelineLayout(device, &pipeline_layout_create_info, nullptr, &shader.pipeline_layout);
  4371. if (err) {
  4372. error_text = "Error (" + itos(err) + ") creating pipeline layout.";
  4373. success = false;
  4374. }
  4375. }
  4376. if (!success) {
  4377. // Clean up if failed.
  4378. for (int i = 0; i < shader.pipeline_stages.size(); i++) {
  4379. vkDestroyShaderModule(device, shader.pipeline_stages[i].module, nullptr);
  4380. }
  4381. for (int i = 0; i < shader.sets.size(); i++) {
  4382. vkDestroyDescriptorSetLayout(device, shader.sets[i].descriptor_set_layout, nullptr);
  4383. }
  4384. ERR_FAIL_V_MSG(RID(), error_text);
  4385. }
  4386. RID id = shader_owner.make_rid(shader);
  4387. #ifdef DEV_ENABLED
  4388. set_resource_name(id, "RID:" + itos(id.get_id()));
  4389. #endif
  4390. return id;
  4391. }
  4392. uint32_t RenderingDeviceVulkan::shader_get_vertex_input_attribute_mask(RID p_shader) {
  4393. _THREAD_SAFE_METHOD_
  4394. const Shader *shader = shader_owner.get_or_null(p_shader);
  4395. ERR_FAIL_COND_V(!shader, 0);
  4396. return shader->vertex_input_mask;
  4397. }
  4398. /******************/
  4399. /**** UNIFORMS ****/
  4400. /******************/
  4401. RID RenderingDeviceVulkan::uniform_buffer_create(uint32_t p_size_bytes, const Vector<uint8_t> &p_data) {
  4402. _THREAD_SAFE_METHOD_
  4403. ERR_FAIL_COND_V(p_data.size() && (uint32_t)p_data.size() != p_size_bytes, RID());
  4404. ERR_FAIL_COND_V_MSG(draw_list != nullptr && p_data.size(), RID(),
  4405. "Creating buffers with data is forbidden during creation of a draw list");
  4406. ERR_FAIL_COND_V_MSG(compute_list != nullptr && p_data.size(), RID(),
  4407. "Creating buffers with data is forbidden during creation of a draw list");
  4408. Buffer buffer;
  4409. Error err = _buffer_allocate(&buffer, p_size_bytes, VK_BUFFER_USAGE_TRANSFER_DST_BIT | VK_BUFFER_USAGE_UNIFORM_BUFFER_BIT, VMA_MEMORY_USAGE_AUTO_PREFER_DEVICE, 0);
  4410. ERR_FAIL_COND_V(err != OK, RID());
  4411. if (p_data.size()) {
  4412. uint64_t data_size = p_data.size();
  4413. const uint8_t *r = p_data.ptr();
  4414. _buffer_update(&buffer, 0, r, data_size);
  4415. _buffer_memory_barrier(buffer.buffer, 0, data_size, VK_PIPELINE_STAGE_TRANSFER_BIT, VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT | VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT, VK_ACCESS_TRANSFER_WRITE_BIT, VK_ACCESS_UNIFORM_READ_BIT, false);
  4416. }
  4417. RID id = uniform_buffer_owner.make_rid(buffer);
  4418. #ifdef DEV_ENABLED
  4419. set_resource_name(id, "RID:" + itos(id.get_id()));
  4420. #endif
  4421. return id;
  4422. }
  4423. RID RenderingDeviceVulkan::storage_buffer_create(uint32_t p_size_bytes, const Vector<uint8_t> &p_data, uint32_t p_usage) {
  4424. _THREAD_SAFE_METHOD_
  4425. ERR_FAIL_COND_V_MSG(draw_list != nullptr && p_data.size(), RID(),
  4426. "Creating buffers with data is forbidden during creation of a draw list");
  4427. ERR_FAIL_COND_V_MSG(compute_list != nullptr && p_data.size(), RID(),
  4428. "Creating buffers with data is forbidden during creation of a draw list");
  4429. ERR_FAIL_COND_V(p_data.size() && (uint32_t)p_data.size() != p_size_bytes, RID());
  4430. Buffer buffer;
  4431. uint32_t flags = VK_BUFFER_USAGE_TRANSFER_SRC_BIT | VK_BUFFER_USAGE_TRANSFER_DST_BIT | VK_BUFFER_USAGE_STORAGE_BUFFER_BIT;
  4432. if (p_usage & STORAGE_BUFFER_USAGE_DISPATCH_INDIRECT) {
  4433. flags |= VK_BUFFER_USAGE_INDIRECT_BUFFER_BIT;
  4434. }
  4435. Error err = _buffer_allocate(&buffer, p_size_bytes, flags, VMA_MEMORY_USAGE_AUTO_PREFER_DEVICE, 0);
  4436. ERR_FAIL_COND_V(err != OK, RID());
  4437. if (p_data.size()) {
  4438. uint64_t data_size = p_data.size();
  4439. const uint8_t *r = p_data.ptr();
  4440. _buffer_update(&buffer, 0, r, data_size);
  4441. _buffer_memory_barrier(buffer.buffer, 0, data_size, VK_PIPELINE_STAGE_TRANSFER_BIT, VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT | VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT, VK_ACCESS_TRANSFER_WRITE_BIT, VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT, false);
  4442. }
  4443. return storage_buffer_owner.make_rid(buffer);
  4444. }
  4445. RID RenderingDeviceVulkan::texture_buffer_create(uint32_t p_size_elements, DataFormat p_format, const Vector<uint8_t> &p_data) {
  4446. _THREAD_SAFE_METHOD_
  4447. ERR_FAIL_COND_V_MSG(draw_list != nullptr && p_data.size(), RID(),
  4448. "Creating buffers with data is forbidden during creation of a draw list");
  4449. ERR_FAIL_COND_V_MSG(compute_list != nullptr && p_data.size(), RID(),
  4450. "Creating buffers with data is forbidden during creation of a draw list");
  4451. uint32_t element_size = get_format_vertex_size(p_format);
  4452. ERR_FAIL_COND_V_MSG(element_size == 0, RID(), "Format requested is not supported for texture buffers");
  4453. uint64_t size_bytes = uint64_t(element_size) * p_size_elements;
  4454. ERR_FAIL_COND_V(p_data.size() && (uint32_t)p_data.size() != size_bytes, RID());
  4455. TextureBuffer texture_buffer;
  4456. Error err = _buffer_allocate(&texture_buffer.buffer, size_bytes, VK_BUFFER_USAGE_TRANSFER_SRC_BIT | VK_BUFFER_USAGE_TRANSFER_DST_BIT | VK_BUFFER_USAGE_UNIFORM_TEXEL_BUFFER_BIT, VMA_MEMORY_USAGE_AUTO_PREFER_DEVICE, 0);
  4457. ERR_FAIL_COND_V(err != OK, RID());
  4458. if (p_data.size()) {
  4459. uint64_t data_size = p_data.size();
  4460. const uint8_t *r = p_data.ptr();
  4461. _buffer_update(&texture_buffer.buffer, 0, r, data_size);
  4462. _buffer_memory_barrier(texture_buffer.buffer.buffer, 0, data_size, VK_PIPELINE_STAGE_TRANSFER_BIT, VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT | VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT, VK_ACCESS_TRANSFER_WRITE_BIT, VK_ACCESS_SHADER_READ_BIT, false);
  4463. }
  4464. VkBufferViewCreateInfo view_create_info;
  4465. view_create_info.sType = VK_STRUCTURE_TYPE_BUFFER_VIEW_CREATE_INFO;
  4466. view_create_info.pNext = nullptr;
  4467. view_create_info.flags = 0;
  4468. view_create_info.buffer = texture_buffer.buffer.buffer;
  4469. view_create_info.format = vulkan_formats[p_format];
  4470. view_create_info.offset = 0;
  4471. view_create_info.range = size_bytes;
  4472. texture_buffer.view = VK_NULL_HANDLE;
  4473. VkResult res = vkCreateBufferView(device, &view_create_info, nullptr, &texture_buffer.view);
  4474. if (res) {
  4475. _buffer_free(&texture_buffer.buffer);
  4476. ERR_FAIL_V_MSG(RID(), "Unable to create buffer view, error " + itos(res) + ".");
  4477. }
  4478. // Allocate the view.
  4479. RID id = texture_buffer_owner.make_rid(texture_buffer);
  4480. #ifdef DEV_ENABLED
  4481. set_resource_name(id, "RID:" + itos(id.get_id()));
  4482. #endif
  4483. return id;
  4484. }
  4485. RenderingDeviceVulkan::DescriptorPool *RenderingDeviceVulkan::_descriptor_pool_allocate(const DescriptorPoolKey &p_key) {
  4486. if (!descriptor_pools.has(p_key)) {
  4487. descriptor_pools[p_key] = HashSet<DescriptorPool *>();
  4488. }
  4489. DescriptorPool *pool = nullptr;
  4490. for (DescriptorPool *E : descriptor_pools[p_key]) {
  4491. if (E->usage < max_descriptors_per_pool) {
  4492. pool = E;
  4493. break;
  4494. }
  4495. }
  4496. if (!pool) {
  4497. // Create a new one.
  4498. pool = memnew(DescriptorPool);
  4499. pool->usage = 0;
  4500. VkDescriptorPoolCreateInfo descriptor_pool_create_info;
  4501. descriptor_pool_create_info.sType = VK_STRUCTURE_TYPE_DESCRIPTOR_POOL_CREATE_INFO;
  4502. descriptor_pool_create_info.pNext = nullptr;
  4503. descriptor_pool_create_info.flags = VK_DESCRIPTOR_POOL_CREATE_FREE_DESCRIPTOR_SET_BIT; // Can't think how somebody may NOT need this flag.
  4504. descriptor_pool_create_info.maxSets = max_descriptors_per_pool;
  4505. Vector<VkDescriptorPoolSize> sizes;
  4506. // Here comes more vulkan API strangeness.
  4507. if (p_key.uniform_type[UNIFORM_TYPE_SAMPLER]) {
  4508. VkDescriptorPoolSize s;
  4509. s.type = VK_DESCRIPTOR_TYPE_SAMPLER;
  4510. s.descriptorCount = p_key.uniform_type[UNIFORM_TYPE_SAMPLER] * max_descriptors_per_pool;
  4511. sizes.push_back(s);
  4512. }
  4513. if (p_key.uniform_type[UNIFORM_TYPE_SAMPLER_WITH_TEXTURE]) {
  4514. VkDescriptorPoolSize s;
  4515. s.type = VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER;
  4516. s.descriptorCount = p_key.uniform_type[UNIFORM_TYPE_SAMPLER_WITH_TEXTURE] * max_descriptors_per_pool;
  4517. sizes.push_back(s);
  4518. }
  4519. if (p_key.uniform_type[UNIFORM_TYPE_TEXTURE]) {
  4520. VkDescriptorPoolSize s;
  4521. s.type = VK_DESCRIPTOR_TYPE_SAMPLED_IMAGE;
  4522. s.descriptorCount = p_key.uniform_type[UNIFORM_TYPE_TEXTURE] * max_descriptors_per_pool;
  4523. sizes.push_back(s);
  4524. }
  4525. if (p_key.uniform_type[UNIFORM_TYPE_IMAGE]) {
  4526. VkDescriptorPoolSize s;
  4527. s.type = VK_DESCRIPTOR_TYPE_STORAGE_IMAGE;
  4528. s.descriptorCount = p_key.uniform_type[UNIFORM_TYPE_IMAGE] * max_descriptors_per_pool;
  4529. sizes.push_back(s);
  4530. }
  4531. if (p_key.uniform_type[UNIFORM_TYPE_TEXTURE_BUFFER] || p_key.uniform_type[UNIFORM_TYPE_SAMPLER_WITH_TEXTURE_BUFFER]) {
  4532. VkDescriptorPoolSize s;
  4533. s.type = VK_DESCRIPTOR_TYPE_UNIFORM_TEXEL_BUFFER;
  4534. s.descriptorCount = (p_key.uniform_type[UNIFORM_TYPE_TEXTURE_BUFFER] + p_key.uniform_type[UNIFORM_TYPE_SAMPLER_WITH_TEXTURE_BUFFER]) * max_descriptors_per_pool;
  4535. sizes.push_back(s);
  4536. }
  4537. if (p_key.uniform_type[UNIFORM_TYPE_IMAGE_BUFFER]) {
  4538. VkDescriptorPoolSize s;
  4539. s.type = VK_DESCRIPTOR_TYPE_STORAGE_TEXEL_BUFFER;
  4540. s.descriptorCount = p_key.uniform_type[UNIFORM_TYPE_IMAGE_BUFFER] * max_descriptors_per_pool;
  4541. sizes.push_back(s);
  4542. }
  4543. if (p_key.uniform_type[UNIFORM_TYPE_UNIFORM_BUFFER]) {
  4544. VkDescriptorPoolSize s;
  4545. s.type = VK_DESCRIPTOR_TYPE_UNIFORM_BUFFER;
  4546. s.descriptorCount = p_key.uniform_type[UNIFORM_TYPE_UNIFORM_BUFFER] * max_descriptors_per_pool;
  4547. sizes.push_back(s);
  4548. }
  4549. if (p_key.uniform_type[UNIFORM_TYPE_STORAGE_BUFFER]) {
  4550. VkDescriptorPoolSize s;
  4551. s.type = VK_DESCRIPTOR_TYPE_STORAGE_BUFFER;
  4552. s.descriptorCount = p_key.uniform_type[UNIFORM_TYPE_STORAGE_BUFFER] * max_descriptors_per_pool;
  4553. sizes.push_back(s);
  4554. }
  4555. if (p_key.uniform_type[UNIFORM_TYPE_INPUT_ATTACHMENT]) {
  4556. VkDescriptorPoolSize s;
  4557. s.type = VK_DESCRIPTOR_TYPE_INPUT_ATTACHMENT;
  4558. s.descriptorCount = p_key.uniform_type[UNIFORM_TYPE_INPUT_ATTACHMENT] * max_descriptors_per_pool;
  4559. sizes.push_back(s);
  4560. }
  4561. descriptor_pool_create_info.poolSizeCount = sizes.size();
  4562. descriptor_pool_create_info.pPoolSizes = sizes.ptr();
  4563. VkResult res = vkCreateDescriptorPool(device, &descriptor_pool_create_info, nullptr, &pool->pool);
  4564. if (res) {
  4565. memdelete(pool);
  4566. ERR_FAIL_COND_V_MSG(res, nullptr, "vkCreateDescriptorPool failed with error " + itos(res) + ".");
  4567. }
  4568. descriptor_pools[p_key].insert(pool);
  4569. }
  4570. pool->usage++;
  4571. return pool;
  4572. }
  4573. void RenderingDeviceVulkan::_descriptor_pool_free(const DescriptorPoolKey &p_key, DescriptorPool *p_pool) {
  4574. #ifdef DEBUG_ENABLED
  4575. ERR_FAIL_COND(!descriptor_pools[p_key].has(p_pool));
  4576. #endif
  4577. ERR_FAIL_COND(p_pool->usage == 0);
  4578. p_pool->usage--;
  4579. if (p_pool->usage == 0) {
  4580. vkDestroyDescriptorPool(device, p_pool->pool, nullptr);
  4581. descriptor_pools[p_key].erase(p_pool);
  4582. memdelete(p_pool);
  4583. if (descriptor_pools[p_key].is_empty()) {
  4584. descriptor_pools.erase(p_key);
  4585. }
  4586. }
  4587. }
  4588. RID RenderingDeviceVulkan::uniform_set_create(const Vector<Uniform> &p_uniforms, RID p_shader, uint32_t p_shader_set) {
  4589. _THREAD_SAFE_METHOD_
  4590. ERR_FAIL_COND_V(p_uniforms.size() == 0, RID());
  4591. Shader *shader = shader_owner.get_or_null(p_shader);
  4592. ERR_FAIL_COND_V(!shader, RID());
  4593. ERR_FAIL_COND_V_MSG(p_shader_set >= (uint32_t)shader->sets.size() || shader->sets[p_shader_set].uniform_info.size() == 0, RID(),
  4594. "Desired set (" + itos(p_shader_set) + ") not used by shader.");
  4595. // See that all sets in shader are satisfied.
  4596. const Shader::Set &set = shader->sets[p_shader_set];
  4597. uint32_t uniform_count = p_uniforms.size();
  4598. const Uniform *uniforms = p_uniforms.ptr();
  4599. uint32_t set_uniform_count = set.uniform_info.size();
  4600. const UniformInfo *set_uniforms = set.uniform_info.ptr();
  4601. Vector<VkWriteDescriptorSet> writes;
  4602. DescriptorPoolKey pool_key;
  4603. // To keep them alive until update call.
  4604. List<Vector<VkDescriptorBufferInfo>> buffer_infos;
  4605. List<Vector<VkBufferView>> buffer_views;
  4606. List<Vector<VkDescriptorImageInfo>> image_infos;
  4607. // Used for verification to make sure a uniform set does not use a framebuffer bound texture.
  4608. LocalVector<UniformSet::AttachableTexture> attachable_textures;
  4609. Vector<Texture *> mutable_sampled_textures;
  4610. Vector<Texture *> mutable_storage_textures;
  4611. for (uint32_t i = 0; i < set_uniform_count; i++) {
  4612. const UniformInfo &set_uniform = set_uniforms[i];
  4613. int uniform_idx = -1;
  4614. for (int j = 0; j < (int)uniform_count; j++) {
  4615. if (uniforms[j].binding == set_uniform.binding) {
  4616. uniform_idx = j;
  4617. }
  4618. }
  4619. ERR_FAIL_COND_V_MSG(uniform_idx == -1, RID(),
  4620. "All the shader bindings for the given set must be covered by the uniforms provided. Binding (" + itos(set_uniform.binding) + "), set (" + itos(p_shader_set) + ") was not provided.");
  4621. const Uniform &uniform = uniforms[uniform_idx];
  4622. ERR_FAIL_COND_V_MSG(uniform.uniform_type != set_uniform.type, RID(),
  4623. "Mismatch uniform type for binding (" + itos(set_uniform.binding) + "), set (" + itos(p_shader_set) + "). Expected '" + shader_uniform_names[set_uniform.type] + "', supplied: '" + shader_uniform_names[uniform.uniform_type] + "'.");
  4624. VkWriteDescriptorSet write; // Common header.
  4625. write.sType = VK_STRUCTURE_TYPE_WRITE_DESCRIPTOR_SET;
  4626. write.pNext = nullptr;
  4627. write.dstSet = VK_NULL_HANDLE; // Will assign afterwards when everything is valid.
  4628. write.dstBinding = set_uniform.binding;
  4629. write.dstArrayElement = 0;
  4630. write.descriptorCount = 0;
  4631. write.descriptorType = VK_DESCRIPTOR_TYPE_MAX_ENUM; // Invalid value.
  4632. write.pImageInfo = nullptr;
  4633. write.pBufferInfo = nullptr;
  4634. write.pTexelBufferView = nullptr;
  4635. uint32_t type_size = 1;
  4636. switch (uniform.uniform_type) {
  4637. case UNIFORM_TYPE_SAMPLER: {
  4638. if (uniform.get_id_count() != (uint32_t)set_uniform.length) {
  4639. if (set_uniform.length > 1) {
  4640. ERR_FAIL_V_MSG(RID(), "Sampler (binding: " + itos(uniform.binding) + ") is an array of (" + itos(set_uniform.length) + ") sampler elements, so it should be provided equal number of sampler IDs to satisfy it (IDs provided: " + itos(uniform.get_id_count()) + ").");
  4641. } else {
  4642. ERR_FAIL_V_MSG(RID(), "Sampler (binding: " + itos(uniform.binding) + ") should provide one ID referencing a sampler (IDs provided: " + itos(uniform.get_id_count()) + ").");
  4643. }
  4644. }
  4645. Vector<VkDescriptorImageInfo> image_info;
  4646. for (uint32_t j = 0; j < uniform.get_id_count(); j++) {
  4647. VkSampler *sampler = sampler_owner.get_or_null(uniform.get_id(j));
  4648. ERR_FAIL_COND_V_MSG(!sampler, RID(), "Sampler (binding: " + itos(uniform.binding) + ", index " + itos(j) + ") is not a valid sampler.");
  4649. VkDescriptorImageInfo img_info;
  4650. img_info.sampler = *sampler;
  4651. img_info.imageView = VK_NULL_HANDLE;
  4652. img_info.imageLayout = VK_IMAGE_LAYOUT_UNDEFINED;
  4653. image_info.push_back(img_info);
  4654. }
  4655. write.dstArrayElement = 0;
  4656. write.descriptorCount = uniform.get_id_count();
  4657. write.descriptorType = VK_DESCRIPTOR_TYPE_SAMPLER;
  4658. write.pImageInfo = image_infos.push_back(image_info)->get().ptr();
  4659. write.pBufferInfo = nullptr;
  4660. write.pTexelBufferView = nullptr;
  4661. type_size = uniform.get_id_count();
  4662. } break;
  4663. case UNIFORM_TYPE_SAMPLER_WITH_TEXTURE: {
  4664. if (uniform.get_id_count() != (uint32_t)set_uniform.length * 2) {
  4665. if (set_uniform.length > 1) {
  4666. ERR_FAIL_V_MSG(RID(), "SamplerTexture (binding: " + itos(uniform.binding) + ") is an array of (" + itos(set_uniform.length) + ") sampler&texture elements, so it should provided twice the amount of IDs (sampler,texture pairs) to satisfy it (IDs provided: " + itos(uniform.get_id_count()) + ").");
  4667. } else {
  4668. ERR_FAIL_V_MSG(RID(), "SamplerTexture (binding: " + itos(uniform.binding) + ") should provide two IDs referencing a sampler and then a texture (IDs provided: " + itos(uniform.get_id_count()) + ").");
  4669. }
  4670. }
  4671. Vector<VkDescriptorImageInfo> image_info;
  4672. for (uint32_t j = 0; j < uniform.get_id_count(); j += 2) {
  4673. VkSampler *sampler = sampler_owner.get_or_null(uniform.get_id(j + 0));
  4674. ERR_FAIL_COND_V_MSG(!sampler, RID(), "SamplerBuffer (binding: " + itos(uniform.binding) + ", index " + itos(j + 1) + ") is not a valid sampler.");
  4675. Texture *texture = texture_owner.get_or_null(uniform.get_id(j + 1));
  4676. ERR_FAIL_COND_V_MSG(!texture, RID(), "Texture (binding: " + itos(uniform.binding) + ", index " + itos(j) + ") is not a valid texture.");
  4677. ERR_FAIL_COND_V_MSG(!(texture->usage_flags & TEXTURE_USAGE_SAMPLING_BIT), RID(),
  4678. "Texture (binding: " + itos(uniform.binding) + ", index " + itos(j) + ") needs the TEXTURE_USAGE_SAMPLING_BIT usage flag set in order to be used as uniform.");
  4679. VkDescriptorImageInfo img_info;
  4680. img_info.sampler = *sampler;
  4681. img_info.imageView = texture->view;
  4682. if (texture->usage_flags & (TEXTURE_USAGE_COLOR_ATTACHMENT_BIT | TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT | TEXTURE_USAGE_INPUT_ATTACHMENT_BIT)) {
  4683. UniformSet::AttachableTexture attachable_texture;
  4684. attachable_texture.bind = set_uniform.binding;
  4685. attachable_texture.texture = texture->owner.is_valid() ? texture->owner : uniform.get_id(j + 1);
  4686. attachable_textures.push_back(attachable_texture);
  4687. }
  4688. if (texture->usage_flags & TEXTURE_USAGE_STORAGE_BIT) {
  4689. // Can also be used as storage, add to mutable sampled.
  4690. mutable_sampled_textures.push_back(texture);
  4691. }
  4692. if (texture->owner.is_valid()) {
  4693. texture = texture_owner.get_or_null(texture->owner);
  4694. ERR_FAIL_COND_V(!texture, RID()); // Bug, should never happen.
  4695. }
  4696. img_info.imageLayout = VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL;
  4697. image_info.push_back(img_info);
  4698. }
  4699. write.dstArrayElement = 0;
  4700. write.descriptorCount = uniform.get_id_count() / 2;
  4701. write.descriptorType = VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER;
  4702. write.pImageInfo = image_infos.push_back(image_info)->get().ptr();
  4703. write.pBufferInfo = nullptr;
  4704. write.pTexelBufferView = nullptr;
  4705. type_size = uniform.get_id_count() / 2;
  4706. } break;
  4707. case UNIFORM_TYPE_TEXTURE: {
  4708. if (uniform.get_id_count() != (uint32_t)set_uniform.length) {
  4709. if (set_uniform.length > 1) {
  4710. ERR_FAIL_V_MSG(RID(), "Texture (binding: " + itos(uniform.binding) + ") is an array of (" + itos(set_uniform.length) + ") textures, so it should be provided equal number of texture IDs to satisfy it (IDs provided: " + itos(uniform.get_id_count()) + ").");
  4711. } else {
  4712. ERR_FAIL_V_MSG(RID(), "Texture (binding: " + itos(uniform.binding) + ") should provide one ID referencing a texture (IDs provided: " + itos(uniform.get_id_count()) + ").");
  4713. }
  4714. }
  4715. Vector<VkDescriptorImageInfo> image_info;
  4716. for (uint32_t j = 0; j < uniform.get_id_count(); j++) {
  4717. Texture *texture = texture_owner.get_or_null(uniform.get_id(j));
  4718. ERR_FAIL_COND_V_MSG(!texture, RID(), "Texture (binding: " + itos(uniform.binding) + ", index " + itos(j) + ") is not a valid texture.");
  4719. ERR_FAIL_COND_V_MSG(!(texture->usage_flags & TEXTURE_USAGE_SAMPLING_BIT), RID(),
  4720. "Texture (binding: " + itos(uniform.binding) + ", index " + itos(j) + ") needs the TEXTURE_USAGE_SAMPLING_BIT usage flag set in order to be used as uniform.");
  4721. VkDescriptorImageInfo img_info;
  4722. img_info.sampler = VK_NULL_HANDLE;
  4723. img_info.imageView = texture->view;
  4724. if (texture->usage_flags & (TEXTURE_USAGE_COLOR_ATTACHMENT_BIT | TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT | TEXTURE_USAGE_INPUT_ATTACHMENT_BIT)) {
  4725. UniformSet::AttachableTexture attachable_texture;
  4726. attachable_texture.bind = set_uniform.binding;
  4727. attachable_texture.texture = texture->owner.is_valid() ? texture->owner : uniform.get_id(j);
  4728. attachable_textures.push_back(attachable_texture);
  4729. }
  4730. if (texture->usage_flags & TEXTURE_USAGE_STORAGE_BIT) {
  4731. // Can also be used as storage, add to mutable sampled.
  4732. mutable_sampled_textures.push_back(texture);
  4733. }
  4734. if (texture->owner.is_valid()) {
  4735. texture = texture_owner.get_or_null(texture->owner);
  4736. ERR_FAIL_COND_V(!texture, RID()); // Bug, should never happen.
  4737. }
  4738. img_info.imageLayout = VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL;
  4739. image_info.push_back(img_info);
  4740. }
  4741. write.dstArrayElement = 0;
  4742. write.descriptorCount = uniform.get_id_count();
  4743. write.descriptorType = VK_DESCRIPTOR_TYPE_SAMPLED_IMAGE;
  4744. write.pImageInfo = image_infos.push_back(image_info)->get().ptr();
  4745. write.pBufferInfo = nullptr;
  4746. write.pTexelBufferView = nullptr;
  4747. type_size = uniform.get_id_count();
  4748. } break;
  4749. case UNIFORM_TYPE_IMAGE: {
  4750. if (uniform.get_id_count() != (uint32_t)set_uniform.length) {
  4751. if (set_uniform.length > 1) {
  4752. ERR_FAIL_V_MSG(RID(), "Image (binding: " + itos(uniform.binding) + ") is an array of (" + itos(set_uniform.length) + ") textures, so it should be provided equal number of texture IDs to satisfy it (IDs provided: " + itos(uniform.get_id_count()) + ").");
  4753. } else {
  4754. ERR_FAIL_V_MSG(RID(), "Image (binding: " + itos(uniform.binding) + ") should provide one ID referencing a texture (IDs provided: " + itos(uniform.get_id_count()) + ").");
  4755. }
  4756. }
  4757. Vector<VkDescriptorImageInfo> image_info;
  4758. for (uint32_t j = 0; j < uniform.get_id_count(); j++) {
  4759. Texture *texture = texture_owner.get_or_null(uniform.get_id(j));
  4760. ERR_FAIL_COND_V_MSG(!texture, RID(),
  4761. "Image (binding: " + itos(uniform.binding) + ", index " + itos(j) + ") is not a valid texture.");
  4762. ERR_FAIL_COND_V_MSG(!(texture->usage_flags & TEXTURE_USAGE_STORAGE_BIT), RID(),
  4763. "Image (binding: " + itos(uniform.binding) + ", index " + itos(j) + ") needs the TEXTURE_USAGE_STORAGE_BIT usage flag set in order to be used as uniform.");
  4764. VkDescriptorImageInfo img_info;
  4765. img_info.sampler = VK_NULL_HANDLE;
  4766. img_info.imageView = texture->view;
  4767. if (texture->usage_flags & TEXTURE_USAGE_SAMPLING_BIT) {
  4768. // Can also be used as storage, add to mutable sampled.
  4769. mutable_storage_textures.push_back(texture);
  4770. }
  4771. if (texture->owner.is_valid()) {
  4772. texture = texture_owner.get_or_null(texture->owner);
  4773. ERR_FAIL_COND_V(!texture, RID()); // Bug, should never happen.
  4774. }
  4775. img_info.imageLayout = VK_IMAGE_LAYOUT_GENERAL;
  4776. image_info.push_back(img_info);
  4777. }
  4778. write.dstArrayElement = 0;
  4779. write.descriptorCount = uniform.get_id_count();
  4780. write.descriptorType = VK_DESCRIPTOR_TYPE_STORAGE_IMAGE;
  4781. write.pImageInfo = image_infos.push_back(image_info)->get().ptr();
  4782. write.pBufferInfo = nullptr;
  4783. write.pTexelBufferView = nullptr;
  4784. type_size = uniform.get_id_count();
  4785. } break;
  4786. case UNIFORM_TYPE_TEXTURE_BUFFER: {
  4787. if (uniform.get_id_count() != (uint32_t)set_uniform.length) {
  4788. if (set_uniform.length > 1) {
  4789. ERR_FAIL_V_MSG(RID(), "Buffer (binding: " + itos(uniform.binding) + ") is an array of (" + itos(set_uniform.length) + ") texture buffer elements, so it should be provided equal number of texture buffer IDs to satisfy it (IDs provided: " + itos(uniform.get_id_count()) + ").");
  4790. } else {
  4791. ERR_FAIL_V_MSG(RID(), "Buffer (binding: " + itos(uniform.binding) + ") should provide one ID referencing a texture buffer (IDs provided: " + itos(uniform.get_id_count()) + ").");
  4792. }
  4793. }
  4794. Vector<VkDescriptorBufferInfo> buffer_info;
  4795. Vector<VkBufferView> buffer_view;
  4796. for (uint32_t j = 0; j < uniform.get_id_count(); j++) {
  4797. TextureBuffer *buffer = texture_buffer_owner.get_or_null(uniform.get_id(j));
  4798. ERR_FAIL_COND_V_MSG(!buffer, RID(), "Texture Buffer (binding: " + itos(uniform.binding) + ", index " + itos(j) + ") is not a valid texture buffer.");
  4799. buffer_info.push_back(buffer->buffer.buffer_info);
  4800. buffer_view.push_back(buffer->view);
  4801. }
  4802. write.dstArrayElement = 0;
  4803. write.descriptorCount = uniform.get_id_count();
  4804. write.descriptorType = VK_DESCRIPTOR_TYPE_UNIFORM_TEXEL_BUFFER;
  4805. write.pImageInfo = nullptr;
  4806. write.pBufferInfo = buffer_infos.push_back(buffer_info)->get().ptr();
  4807. write.pTexelBufferView = buffer_views.push_back(buffer_view)->get().ptr();
  4808. type_size = uniform.get_id_count();
  4809. } break;
  4810. case UNIFORM_TYPE_SAMPLER_WITH_TEXTURE_BUFFER: {
  4811. if (uniform.get_id_count() != (uint32_t)set_uniform.length * 2) {
  4812. if (set_uniform.length > 1) {
  4813. ERR_FAIL_V_MSG(RID(), "SamplerBuffer (binding: " + itos(uniform.binding) + ") is an array of (" + itos(set_uniform.length) + ") sampler buffer elements, so it should provided twice the amount of IDs (sampler,buffer pairs) to satisfy it (IDs provided: " + itos(uniform.get_id_count()) + ").");
  4814. } else {
  4815. ERR_FAIL_V_MSG(RID(), "SamplerBuffer (binding: " + itos(uniform.binding) + ") should provide two IDs referencing a sampler and then a texture buffer (IDs provided: " + itos(uniform.get_id_count()) + ").");
  4816. }
  4817. }
  4818. Vector<VkDescriptorImageInfo> image_info;
  4819. Vector<VkDescriptorBufferInfo> buffer_info;
  4820. Vector<VkBufferView> buffer_view;
  4821. for (uint32_t j = 0; j < uniform.get_id_count(); j += 2) {
  4822. VkSampler *sampler = sampler_owner.get_or_null(uniform.get_id(j + 0));
  4823. ERR_FAIL_COND_V_MSG(!sampler, RID(), "SamplerBuffer (binding: " + itos(uniform.binding) + ", index " + itos(j + 1) + ") is not a valid sampler.");
  4824. TextureBuffer *buffer = texture_buffer_owner.get_or_null(uniform.get_id(j + 1));
  4825. VkDescriptorImageInfo img_info;
  4826. img_info.sampler = *sampler;
  4827. img_info.imageView = VK_NULL_HANDLE;
  4828. img_info.imageLayout = VK_IMAGE_LAYOUT_UNDEFINED;
  4829. image_info.push_back(img_info);
  4830. ERR_FAIL_COND_V_MSG(!buffer, RID(), "SamplerBuffer (binding: " + itos(uniform.binding) + ", index " + itos(j + 1) + ") is not a valid texture buffer.");
  4831. buffer_info.push_back(buffer->buffer.buffer_info);
  4832. buffer_view.push_back(buffer->view);
  4833. }
  4834. write.dstArrayElement = 0;
  4835. write.descriptorCount = uniform.get_id_count() / 2;
  4836. write.descriptorType = VK_DESCRIPTOR_TYPE_UNIFORM_TEXEL_BUFFER;
  4837. write.pImageInfo = image_infos.push_back(image_info)->get().ptr();
  4838. write.pBufferInfo = buffer_infos.push_back(buffer_info)->get().ptr();
  4839. write.pTexelBufferView = buffer_views.push_back(buffer_view)->get().ptr();
  4840. type_size = uniform.get_id_count() / 2;
  4841. } break;
  4842. case UNIFORM_TYPE_IMAGE_BUFFER: {
  4843. // Todo.
  4844. } break;
  4845. case UNIFORM_TYPE_UNIFORM_BUFFER: {
  4846. ERR_FAIL_COND_V_MSG(uniform.get_id_count() != 1, RID(),
  4847. "Uniform buffer supplied (binding: " + itos(uniform.binding) + ") must provide one ID (" + itos(uniform.get_id_count()) + " provided).");
  4848. Buffer *buffer = uniform_buffer_owner.get_or_null(uniform.get_id(0));
  4849. ERR_FAIL_COND_V_MSG(!buffer, RID(), "Uniform buffer supplied (binding: " + itos(uniform.binding) + ") is invalid.");
  4850. ERR_FAIL_COND_V_MSG(buffer->size != (uint32_t)set_uniform.length, RID(),
  4851. "Uniform buffer supplied (binding: " + itos(uniform.binding) + ") size (" + itos(buffer->size) + " does not match size of shader uniform: (" + itos(set_uniform.length) + ").");
  4852. write.dstArrayElement = 0;
  4853. write.descriptorCount = 1;
  4854. write.descriptorType = VK_DESCRIPTOR_TYPE_UNIFORM_BUFFER;
  4855. write.pImageInfo = nullptr;
  4856. write.pBufferInfo = &buffer->buffer_info;
  4857. write.pTexelBufferView = nullptr;
  4858. } break;
  4859. case UNIFORM_TYPE_STORAGE_BUFFER: {
  4860. ERR_FAIL_COND_V_MSG(uniform.get_id_count() != 1, RID(),
  4861. "Storage buffer supplied (binding: " + itos(uniform.binding) + ") must provide one ID (" + itos(uniform.get_id_count()) + " provided).");
  4862. Buffer *buffer = nullptr;
  4863. if (storage_buffer_owner.owns(uniform.get_id(0))) {
  4864. buffer = storage_buffer_owner.get_or_null(uniform.get_id(0));
  4865. } else if (vertex_buffer_owner.owns(uniform.get_id(0))) {
  4866. buffer = vertex_buffer_owner.get_or_null(uniform.get_id(0));
  4867. ERR_FAIL_COND_V_MSG(!(buffer->usage & VK_BUFFER_USAGE_STORAGE_BUFFER_BIT), RID(), "Vertex buffer supplied (binding: " + itos(uniform.binding) + ") was not created with storage flag.");
  4868. }
  4869. ERR_FAIL_COND_V_MSG(!buffer, RID(), "Storage buffer supplied (binding: " + itos(uniform.binding) + ") is invalid.");
  4870. // If 0, then it's sized on link time.
  4871. ERR_FAIL_COND_V_MSG(set_uniform.length > 0 && buffer->size != (uint32_t)set_uniform.length, RID(),
  4872. "Storage buffer supplied (binding: " + itos(uniform.binding) + ") size (" + itos(buffer->size) + " does not match size of shader uniform: (" + itos(set_uniform.length) + ").");
  4873. write.dstArrayElement = 0;
  4874. write.descriptorCount = 1;
  4875. write.descriptorType = VK_DESCRIPTOR_TYPE_STORAGE_BUFFER;
  4876. write.pImageInfo = nullptr;
  4877. write.pBufferInfo = &buffer->buffer_info;
  4878. write.pTexelBufferView = nullptr;
  4879. } break;
  4880. case UNIFORM_TYPE_INPUT_ATTACHMENT: {
  4881. ERR_FAIL_COND_V_MSG(shader->is_compute, RID(), "InputAttachment (binding: " + itos(uniform.binding) + ") supplied for compute shader (this is not allowed).");
  4882. if (uniform.get_id_count() != (uint32_t)set_uniform.length) {
  4883. if (set_uniform.length > 1) {
  4884. ERR_FAIL_V_MSG(RID(), "InputAttachment (binding: " + itos(uniform.binding) + ") is an array of (" + itos(set_uniform.length) + ") textures, so it should be provided equal number of texture IDs to satisfy it (IDs provided: " + itos(uniform.get_id_count()) + ").");
  4885. } else {
  4886. ERR_FAIL_V_MSG(RID(), "InputAttachment (binding: " + itos(uniform.binding) + ") should provide one ID referencing a texture (IDs provided: " + itos(uniform.get_id_count()) + ").");
  4887. }
  4888. }
  4889. Vector<VkDescriptorImageInfo> image_info;
  4890. for (uint32_t j = 0; j < uniform.get_id_count(); j++) {
  4891. Texture *texture = texture_owner.get_or_null(uniform.get_id(j));
  4892. ERR_FAIL_COND_V_MSG(!texture, RID(),
  4893. "InputAttachment (binding: " + itos(uniform.binding) + ", index " + itos(j) + ") is not a valid texture.");
  4894. ERR_FAIL_COND_V_MSG(!(texture->usage_flags & TEXTURE_USAGE_SAMPLING_BIT), RID(),
  4895. "InputAttachment (binding: " + itos(uniform.binding) + ", index " + itos(j) + ") needs the TEXTURE_USAGE_SAMPLING_BIT usage flag set in order to be used as uniform.");
  4896. VkDescriptorImageInfo img_info;
  4897. img_info.sampler = VK_NULL_HANDLE;
  4898. img_info.imageView = texture->view;
  4899. if (texture->owner.is_valid()) {
  4900. texture = texture_owner.get_or_null(texture->owner);
  4901. ERR_FAIL_COND_V(!texture, RID()); // Bug, should never happen.
  4902. }
  4903. img_info.imageLayout = VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL;
  4904. image_info.push_back(img_info);
  4905. }
  4906. write.dstArrayElement = 0;
  4907. write.descriptorCount = uniform.get_id_count();
  4908. write.descriptorType = VK_DESCRIPTOR_TYPE_INPUT_ATTACHMENT;
  4909. write.pImageInfo = image_infos.push_back(image_info)->get().ptr();
  4910. write.pBufferInfo = nullptr;
  4911. write.pTexelBufferView = nullptr;
  4912. type_size = uniform.get_id_count();
  4913. } break;
  4914. default: {
  4915. }
  4916. }
  4917. writes.push_back(write);
  4918. ERR_FAIL_COND_V_MSG(pool_key.uniform_type[set_uniform.type] == MAX_DESCRIPTOR_POOL_ELEMENT, RID(),
  4919. "Uniform set reached the limit of bindings for the same type (" + itos(MAX_DESCRIPTOR_POOL_ELEMENT) + ").");
  4920. pool_key.uniform_type[set_uniform.type] += type_size;
  4921. }
  4922. // Need a descriptor pool.
  4923. DescriptorPool *pool = _descriptor_pool_allocate(pool_key);
  4924. ERR_FAIL_COND_V(!pool, RID());
  4925. VkDescriptorSetAllocateInfo descriptor_set_allocate_info;
  4926. descriptor_set_allocate_info.sType = VK_STRUCTURE_TYPE_DESCRIPTOR_SET_ALLOCATE_INFO;
  4927. descriptor_set_allocate_info.pNext = nullptr;
  4928. descriptor_set_allocate_info.descriptorPool = pool->pool;
  4929. descriptor_set_allocate_info.descriptorSetCount = 1;
  4930. descriptor_set_allocate_info.pSetLayouts = &shader->sets[p_shader_set].descriptor_set_layout;
  4931. VkDescriptorSet descriptor_set;
  4932. VkResult res = vkAllocateDescriptorSets(device, &descriptor_set_allocate_info, &descriptor_set);
  4933. if (res) {
  4934. _descriptor_pool_free(pool_key, pool); // Meh.
  4935. ERR_FAIL_V_MSG(RID(), "Cannot allocate descriptor sets, error " + itos(res) + ".");
  4936. }
  4937. UniformSet uniform_set;
  4938. uniform_set.pool = pool;
  4939. uniform_set.pool_key = pool_key;
  4940. uniform_set.descriptor_set = descriptor_set;
  4941. uniform_set.format = shader->set_formats[p_shader_set];
  4942. uniform_set.attachable_textures = attachable_textures;
  4943. uniform_set.mutable_sampled_textures = mutable_sampled_textures;
  4944. uniform_set.mutable_storage_textures = mutable_storage_textures;
  4945. uniform_set.shader_set = p_shader_set;
  4946. uniform_set.shader_id = p_shader;
  4947. RID id = uniform_set_owner.make_rid(uniform_set);
  4948. #ifdef DEV_ENABLED
  4949. set_resource_name(id, "RID:" + itos(id.get_id()));
  4950. #endif
  4951. // Add dependencies.
  4952. _add_dependency(id, p_shader);
  4953. for (uint32_t i = 0; i < uniform_count; i++) {
  4954. const Uniform &uniform = uniforms[i];
  4955. int id_count = uniform.get_id_count();
  4956. for (int j = 0; j < id_count; j++) {
  4957. _add_dependency(id, uniform.get_id(j));
  4958. }
  4959. }
  4960. // Write the contents.
  4961. if (writes.size()) {
  4962. for (int i = 0; i < writes.size(); i++) {
  4963. writes.write[i].dstSet = descriptor_set;
  4964. }
  4965. vkUpdateDescriptorSets(device, writes.size(), writes.ptr(), 0, nullptr);
  4966. }
  4967. return id;
  4968. }
  4969. bool RenderingDeviceVulkan::uniform_set_is_valid(RID p_uniform_set) {
  4970. return uniform_set_owner.owns(p_uniform_set);
  4971. }
  4972. void RenderingDeviceVulkan::uniform_set_set_invalidation_callback(RID p_uniform_set, InvalidationCallback p_callback, void *p_userdata) {
  4973. UniformSet *us = uniform_set_owner.get_or_null(p_uniform_set);
  4974. ERR_FAIL_COND(!us);
  4975. us->invalidated_callback = p_callback;
  4976. us->invalidated_callback_userdata = p_userdata;
  4977. }
  4978. Error RenderingDeviceVulkan::buffer_update(RID p_buffer, uint32_t p_offset, uint32_t p_size, const void *p_data, BitField<BarrierMask> p_post_barrier) {
  4979. _THREAD_SAFE_METHOD_
  4980. ERR_FAIL_COND_V_MSG(draw_list, ERR_INVALID_PARAMETER,
  4981. "Updating buffers is forbidden during creation of a draw list");
  4982. ERR_FAIL_COND_V_MSG(compute_list, ERR_INVALID_PARAMETER,
  4983. "Updating buffers is forbidden during creation of a compute list");
  4984. VkPipelineStageFlags dst_stage_mask = 0;
  4985. VkAccessFlags dst_access = 0;
  4986. if (p_post_barrier.has_flag(BARRIER_MASK_TRANSFER)) {
  4987. // Protect subsequent updates.
  4988. dst_stage_mask = VK_PIPELINE_STAGE_TRANSFER_BIT;
  4989. dst_access = VK_ACCESS_TRANSFER_WRITE_BIT;
  4990. }
  4991. Buffer *buffer = _get_buffer_from_owner(p_buffer, dst_stage_mask, dst_access, p_post_barrier);
  4992. if (!buffer) {
  4993. ERR_FAIL_V_MSG(ERR_INVALID_PARAMETER, "Buffer argument is not a valid buffer of any type.");
  4994. }
  4995. ERR_FAIL_COND_V_MSG(p_offset + p_size > buffer->size, ERR_INVALID_PARAMETER,
  4996. "Attempted to write buffer (" + itos((p_offset + p_size) - buffer->size) + " bytes) past the end.");
  4997. // No barrier should be needed here.
  4998. // _buffer_memory_barrier(buffer->buffer, p_offset, p_size, dst_stage_mask, VK_PIPELINE_STAGE_TRANSFER_BIT, dst_access, VK_ACCESS_TRANSFER_WRITE_BIT, true);
  4999. Error err = _buffer_update(buffer, p_offset, (uint8_t *)p_data, p_size, p_post_barrier);
  5000. if (err) {
  5001. return err;
  5002. }
  5003. #ifdef FORCE_FULL_BARRIER
  5004. _full_barrier(true);
  5005. #else
  5006. if (dst_stage_mask == 0) {
  5007. dst_stage_mask = VK_PIPELINE_STAGE_BOTTOM_OF_PIPE_BIT;
  5008. }
  5009. if (p_post_barrier != RD::BARRIER_MASK_NO_BARRIER) {
  5010. _buffer_memory_barrier(buffer->buffer, p_offset, p_size, VK_PIPELINE_STAGE_TRANSFER_BIT, dst_stage_mask, VK_ACCESS_TRANSFER_WRITE_BIT, dst_access, true);
  5011. }
  5012. #endif
  5013. return err;
  5014. }
  5015. Error RenderingDeviceVulkan::buffer_clear(RID p_buffer, uint32_t p_offset, uint32_t p_size, BitField<BarrierMask> p_post_barrier) {
  5016. _THREAD_SAFE_METHOD_
  5017. ERR_FAIL_COND_V_MSG((p_size % 4) != 0, ERR_INVALID_PARAMETER,
  5018. "Size must be a multiple of four");
  5019. ERR_FAIL_COND_V_MSG(draw_list, ERR_INVALID_PARAMETER,
  5020. "Updating buffers in is forbidden during creation of a draw list");
  5021. ERR_FAIL_COND_V_MSG(compute_list, ERR_INVALID_PARAMETER,
  5022. "Updating buffers is forbidden during creation of a compute list");
  5023. VkPipelineStageFlags dst_stage_mask = 0;
  5024. VkAccessFlags dst_access = 0;
  5025. if (p_post_barrier.has_flag(BARRIER_MASK_TRANSFER)) {
  5026. // Protect subsequent updates.
  5027. dst_stage_mask = VK_PIPELINE_STAGE_TRANSFER_BIT;
  5028. dst_access = VK_ACCESS_TRANSFER_WRITE_BIT;
  5029. }
  5030. Buffer *buffer = _get_buffer_from_owner(p_buffer, dst_stage_mask, dst_access, p_post_barrier);
  5031. if (!buffer) {
  5032. ERR_FAIL_V_MSG(ERR_INVALID_PARAMETER, "Buffer argument is not a valid buffer of any type.");
  5033. }
  5034. ERR_FAIL_COND_V_MSG(p_offset + p_size > buffer->size, ERR_INVALID_PARAMETER,
  5035. "Attempted to write buffer (" + itos((p_offset + p_size) - buffer->size) + " bytes) past the end.");
  5036. // Should not be needed.
  5037. // _buffer_memory_barrier(buffer->buffer, p_offset, p_size, dst_stage_mask, VK_PIPELINE_STAGE_TRANSFER_BIT, dst_access, VK_ACCESS_TRANSFER_WRITE_BIT, p_post_barrier);
  5038. vkCmdFillBuffer(frames[frame].draw_command_buffer, buffer->buffer, p_offset, p_size, 0);
  5039. #ifdef FORCE_FULL_BARRIER
  5040. _full_barrier(true);
  5041. #else
  5042. if (dst_stage_mask == 0) {
  5043. dst_stage_mask = VK_PIPELINE_STAGE_BOTTOM_OF_PIPE_BIT;
  5044. }
  5045. _buffer_memory_barrier(buffer->buffer, p_offset, p_size, VK_PIPELINE_STAGE_TRANSFER_BIT, dst_stage_mask, VK_ACCESS_TRANSFER_WRITE_BIT, dst_access, dst_stage_mask);
  5046. #endif
  5047. return OK;
  5048. }
  5049. Vector<uint8_t> RenderingDeviceVulkan::buffer_get_data(RID p_buffer) {
  5050. _THREAD_SAFE_METHOD_
  5051. // It could be this buffer was just created.
  5052. VkPipelineShaderStageCreateFlags src_stage_mask = VK_PIPELINE_STAGE_TRANSFER_BIT;
  5053. VkAccessFlags src_access_mask = VK_ACCESS_TRANSFER_WRITE_BIT;
  5054. // Get the vulkan buffer and the potential stage/access possible.
  5055. Buffer *buffer = _get_buffer_from_owner(p_buffer, src_stage_mask, src_access_mask, BARRIER_MASK_ALL_BARRIERS);
  5056. if (!buffer) {
  5057. ERR_FAIL_V_MSG(Vector<uint8_t>(), "Buffer is either invalid or this type of buffer can't be retrieved. Only Index and Vertex buffers allow retrieving.");
  5058. }
  5059. // Make sure no one is using the buffer -- the "false" gets us to the same command buffer as below.
  5060. _buffer_memory_barrier(buffer->buffer, 0, buffer->size, src_stage_mask, VK_PIPELINE_STAGE_TRANSFER_BIT, src_access_mask, VK_ACCESS_TRANSFER_READ_BIT, false);
  5061. VkCommandBuffer command_buffer = frames[frame].setup_command_buffer;
  5062. Buffer tmp_buffer;
  5063. _buffer_allocate(&tmp_buffer, buffer->size, VK_BUFFER_USAGE_TRANSFER_DST_BIT, VMA_MEMORY_USAGE_AUTO_PREFER_HOST, VMA_ALLOCATION_CREATE_HOST_ACCESS_RANDOM_BIT);
  5064. VkBufferCopy region;
  5065. region.srcOffset = 0;
  5066. region.dstOffset = 0;
  5067. region.size = buffer->size;
  5068. vkCmdCopyBuffer(command_buffer, buffer->buffer, tmp_buffer.buffer, 1, &region); // Dst buffer is in CPU, but I wonder if src buffer needs a barrier for this.
  5069. // Flush everything so memory can be safely mapped.
  5070. _flush(true);
  5071. void *buffer_mem;
  5072. VkResult vkerr = vmaMapMemory(allocator, tmp_buffer.allocation, &buffer_mem);
  5073. ERR_FAIL_COND_V_MSG(vkerr, Vector<uint8_t>(), "vmaMapMemory failed with error " + itos(vkerr) + ".");
  5074. Vector<uint8_t> buffer_data;
  5075. {
  5076. buffer_data.resize(buffer->size);
  5077. uint8_t *w = buffer_data.ptrw();
  5078. memcpy(w, buffer_mem, buffer->size);
  5079. }
  5080. vmaUnmapMemory(allocator, tmp_buffer.allocation);
  5081. _buffer_free(&tmp_buffer);
  5082. return buffer_data;
  5083. }
  5084. /*************************/
  5085. /**** RENDER PIPELINE ****/
  5086. /*************************/
  5087. RID RenderingDeviceVulkan::render_pipeline_create(RID p_shader, FramebufferFormatID p_framebuffer_format, VertexFormatID p_vertex_format, RenderPrimitive p_render_primitive, const PipelineRasterizationState &p_rasterization_state, const PipelineMultisampleState &p_multisample_state, const PipelineDepthStencilState &p_depth_stencil_state, const PipelineColorBlendState &p_blend_state, BitField<PipelineDynamicStateFlags> p_dynamic_state_flags, uint32_t p_for_render_pass, const Vector<PipelineSpecializationConstant> &p_specialization_constants) {
  5088. _THREAD_SAFE_METHOD_
  5089. // Needs a shader.
  5090. Shader *shader = shader_owner.get_or_null(p_shader);
  5091. ERR_FAIL_COND_V(!shader, RID());
  5092. ERR_FAIL_COND_V_MSG(shader->is_compute, RID(),
  5093. "Compute shaders can't be used in render pipelines");
  5094. if (p_framebuffer_format == INVALID_ID) {
  5095. // If nothing provided, use an empty one (no attachments).
  5096. p_framebuffer_format = framebuffer_format_create(Vector<AttachmentFormat>());
  5097. }
  5098. ERR_FAIL_COND_V(!framebuffer_formats.has(p_framebuffer_format), RID());
  5099. const FramebufferFormat &fb_format = framebuffer_formats[p_framebuffer_format];
  5100. { // Validate shader vs framebuffer.
  5101. ERR_FAIL_COND_V_MSG(p_for_render_pass >= uint32_t(fb_format.E->key().passes.size()), RID(), "Render pass requested for pipeline creation (" + itos(p_for_render_pass) + ") is out of bounds");
  5102. const FramebufferPass &pass = fb_format.E->key().passes[p_for_render_pass];
  5103. uint32_t output_mask = 0;
  5104. for (int i = 0; i < pass.color_attachments.size(); i++) {
  5105. if (pass.color_attachments[i] != FramebufferPass::ATTACHMENT_UNUSED) {
  5106. output_mask |= 1 << i;
  5107. }
  5108. }
  5109. ERR_FAIL_COND_V_MSG(shader->fragment_output_mask != output_mask, RID(),
  5110. "Mismatch fragment shader output mask (" + itos(shader->fragment_output_mask) + ") and framebuffer color output mask (" + itos(output_mask) + ") when binding both in render pipeline.");
  5111. }
  5112. // Vertex.
  5113. VkPipelineVertexInputStateCreateInfo pipeline_vertex_input_state_create_info;
  5114. if (p_vertex_format != INVALID_ID) {
  5115. // Uses vertices, else it does not.
  5116. ERR_FAIL_COND_V(!vertex_formats.has(p_vertex_format), RID());
  5117. const VertexDescriptionCache &vd = vertex_formats[p_vertex_format];
  5118. pipeline_vertex_input_state_create_info = vd.create_info;
  5119. // Validate with inputs.
  5120. for (uint32_t i = 0; i < 32; i++) {
  5121. if (!(shader->vertex_input_mask & (1UL << i))) {
  5122. continue;
  5123. }
  5124. bool found = false;
  5125. for (int j = 0; j < vd.vertex_formats.size(); j++) {
  5126. if (vd.vertex_formats[j].location == i) {
  5127. found = true;
  5128. }
  5129. }
  5130. ERR_FAIL_COND_V_MSG(!found, RID(),
  5131. "Shader vertex input location (" + itos(i) + ") not provided in vertex input description for pipeline creation.");
  5132. }
  5133. } else {
  5134. // Does not use vertices.
  5135. pipeline_vertex_input_state_create_info.sType = VK_STRUCTURE_TYPE_PIPELINE_VERTEX_INPUT_STATE_CREATE_INFO;
  5136. pipeline_vertex_input_state_create_info.pNext = nullptr;
  5137. pipeline_vertex_input_state_create_info.flags = 0;
  5138. pipeline_vertex_input_state_create_info.vertexBindingDescriptionCount = 0;
  5139. pipeline_vertex_input_state_create_info.pVertexBindingDescriptions = nullptr;
  5140. pipeline_vertex_input_state_create_info.vertexAttributeDescriptionCount = 0;
  5141. pipeline_vertex_input_state_create_info.pVertexAttributeDescriptions = nullptr;
  5142. ERR_FAIL_COND_V_MSG(shader->vertex_input_mask != 0, RID(),
  5143. "Shader contains vertex inputs, but no vertex input description was provided for pipeline creation.");
  5144. }
  5145. // Input assembly.
  5146. ERR_FAIL_INDEX_V(p_render_primitive, RENDER_PRIMITIVE_MAX, RID());
  5147. VkPipelineInputAssemblyStateCreateInfo input_assembly_create_info;
  5148. input_assembly_create_info.sType = VK_STRUCTURE_TYPE_PIPELINE_INPUT_ASSEMBLY_STATE_CREATE_INFO;
  5149. input_assembly_create_info.pNext = nullptr;
  5150. input_assembly_create_info.flags = 0;
  5151. static const VkPrimitiveTopology topology_list[RENDER_PRIMITIVE_MAX] = {
  5152. VK_PRIMITIVE_TOPOLOGY_POINT_LIST,
  5153. VK_PRIMITIVE_TOPOLOGY_LINE_LIST,
  5154. VK_PRIMITIVE_TOPOLOGY_LINE_LIST_WITH_ADJACENCY,
  5155. VK_PRIMITIVE_TOPOLOGY_LINE_STRIP,
  5156. VK_PRIMITIVE_TOPOLOGY_LINE_STRIP_WITH_ADJACENCY,
  5157. VK_PRIMITIVE_TOPOLOGY_TRIANGLE_LIST,
  5158. VK_PRIMITIVE_TOPOLOGY_TRIANGLE_LIST_WITH_ADJACENCY,
  5159. VK_PRIMITIVE_TOPOLOGY_TRIANGLE_STRIP,
  5160. VK_PRIMITIVE_TOPOLOGY_TRIANGLE_STRIP_WITH_ADJACENCY,
  5161. VK_PRIMITIVE_TOPOLOGY_TRIANGLE_STRIP,
  5162. VK_PRIMITIVE_TOPOLOGY_PATCH_LIST
  5163. };
  5164. input_assembly_create_info.topology = topology_list[p_render_primitive];
  5165. input_assembly_create_info.primitiveRestartEnable = (p_render_primitive == RENDER_PRIMITIVE_TRIANGLE_STRIPS_WITH_RESTART_INDEX);
  5166. // Tessellation.
  5167. VkPipelineTessellationStateCreateInfo tessellation_create_info;
  5168. tessellation_create_info.sType = VK_STRUCTURE_TYPE_PIPELINE_TESSELLATION_STATE_CREATE_INFO;
  5169. tessellation_create_info.pNext = nullptr;
  5170. tessellation_create_info.flags = 0;
  5171. ERR_FAIL_COND_V(limits.maxTessellationPatchSize > 0 && (p_rasterization_state.patch_control_points < 1 || p_rasterization_state.patch_control_points > limits.maxTessellationPatchSize), RID());
  5172. tessellation_create_info.patchControlPoints = p_rasterization_state.patch_control_points;
  5173. VkPipelineViewportStateCreateInfo viewport_state_create_info;
  5174. viewport_state_create_info.sType = VK_STRUCTURE_TYPE_PIPELINE_VIEWPORT_STATE_CREATE_INFO;
  5175. viewport_state_create_info.pNext = nullptr;
  5176. viewport_state_create_info.flags = 0;
  5177. viewport_state_create_info.viewportCount = 1; // If VR extensions are supported at some point, this will have to be customizable in the framebuffer format.
  5178. viewport_state_create_info.pViewports = nullptr;
  5179. viewport_state_create_info.scissorCount = 1;
  5180. viewport_state_create_info.pScissors = nullptr;
  5181. // Rasterization.
  5182. VkPipelineRasterizationStateCreateInfo rasterization_state_create_info;
  5183. rasterization_state_create_info.sType = VK_STRUCTURE_TYPE_PIPELINE_RASTERIZATION_STATE_CREATE_INFO;
  5184. rasterization_state_create_info.pNext = nullptr;
  5185. rasterization_state_create_info.flags = 0;
  5186. rasterization_state_create_info.depthClampEnable = p_rasterization_state.enable_depth_clamp;
  5187. rasterization_state_create_info.rasterizerDiscardEnable = p_rasterization_state.discard_primitives;
  5188. rasterization_state_create_info.polygonMode = (p_rasterization_state.wireframe ? VK_POLYGON_MODE_LINE : VK_POLYGON_MODE_FILL);
  5189. static const VkCullModeFlags cull_mode[3] = {
  5190. VK_CULL_MODE_NONE,
  5191. VK_CULL_MODE_FRONT_BIT,
  5192. VK_CULL_MODE_BACK_BIT
  5193. };
  5194. ERR_FAIL_INDEX_V(p_rasterization_state.cull_mode, 3, RID());
  5195. rasterization_state_create_info.cullMode = cull_mode[p_rasterization_state.cull_mode];
  5196. rasterization_state_create_info.frontFace = (p_rasterization_state.front_face == POLYGON_FRONT_FACE_CLOCKWISE ? VK_FRONT_FACE_CLOCKWISE : VK_FRONT_FACE_COUNTER_CLOCKWISE);
  5197. rasterization_state_create_info.depthBiasEnable = p_rasterization_state.depth_bias_enabled;
  5198. rasterization_state_create_info.depthBiasConstantFactor = p_rasterization_state.depth_bias_constant_factor;
  5199. rasterization_state_create_info.depthBiasClamp = p_rasterization_state.depth_bias_clamp;
  5200. rasterization_state_create_info.depthBiasSlopeFactor = p_rasterization_state.depth_bias_slope_factor;
  5201. rasterization_state_create_info.lineWidth = p_rasterization_state.line_width;
  5202. // Multisample.
  5203. VkPipelineMultisampleStateCreateInfo multisample_state_create_info;
  5204. multisample_state_create_info.sType = VK_STRUCTURE_TYPE_PIPELINE_MULTISAMPLE_STATE_CREATE_INFO;
  5205. multisample_state_create_info.pNext = nullptr;
  5206. multisample_state_create_info.flags = 0;
  5207. multisample_state_create_info.rasterizationSamples = _ensure_supported_sample_count(p_multisample_state.sample_count);
  5208. multisample_state_create_info.sampleShadingEnable = p_multisample_state.enable_sample_shading;
  5209. multisample_state_create_info.minSampleShading = p_multisample_state.min_sample_shading;
  5210. Vector<VkSampleMask> sample_mask;
  5211. if (p_multisample_state.sample_mask.size()) {
  5212. // Use sample mask.
  5213. const int rasterization_sample_mask_expected_size[TEXTURE_SAMPLES_MAX] = {
  5214. 1, 2, 4, 8, 16, 32, 64
  5215. };
  5216. ERR_FAIL_COND_V(rasterization_sample_mask_expected_size[p_multisample_state.sample_count] != p_multisample_state.sample_mask.size(), RID());
  5217. sample_mask.resize(p_multisample_state.sample_mask.size());
  5218. for (int i = 0; i < p_multisample_state.sample_mask.size(); i++) {
  5219. VkSampleMask mask = p_multisample_state.sample_mask[i];
  5220. sample_mask.push_back(mask);
  5221. }
  5222. multisample_state_create_info.pSampleMask = sample_mask.ptr();
  5223. } else {
  5224. multisample_state_create_info.pSampleMask = nullptr;
  5225. }
  5226. multisample_state_create_info.alphaToCoverageEnable = p_multisample_state.enable_alpha_to_coverage;
  5227. multisample_state_create_info.alphaToOneEnable = p_multisample_state.enable_alpha_to_one;
  5228. // Depth stencil.
  5229. VkPipelineDepthStencilStateCreateInfo depth_stencil_state_create_info;
  5230. depth_stencil_state_create_info.sType = VK_STRUCTURE_TYPE_PIPELINE_DEPTH_STENCIL_STATE_CREATE_INFO;
  5231. depth_stencil_state_create_info.pNext = nullptr;
  5232. depth_stencil_state_create_info.flags = 0;
  5233. depth_stencil_state_create_info.depthTestEnable = p_depth_stencil_state.enable_depth_test;
  5234. depth_stencil_state_create_info.depthWriteEnable = p_depth_stencil_state.enable_depth_write;
  5235. ERR_FAIL_INDEX_V(p_depth_stencil_state.depth_compare_operator, COMPARE_OP_MAX, RID());
  5236. depth_stencil_state_create_info.depthCompareOp = compare_operators[p_depth_stencil_state.depth_compare_operator];
  5237. depth_stencil_state_create_info.depthBoundsTestEnable = p_depth_stencil_state.enable_depth_range;
  5238. depth_stencil_state_create_info.stencilTestEnable = p_depth_stencil_state.enable_stencil;
  5239. ERR_FAIL_INDEX_V(p_depth_stencil_state.front_op.fail, STENCIL_OP_MAX, RID());
  5240. depth_stencil_state_create_info.front.failOp = stencil_operations[p_depth_stencil_state.front_op.fail];
  5241. ERR_FAIL_INDEX_V(p_depth_stencil_state.front_op.pass, STENCIL_OP_MAX, RID());
  5242. depth_stencil_state_create_info.front.passOp = stencil_operations[p_depth_stencil_state.front_op.pass];
  5243. ERR_FAIL_INDEX_V(p_depth_stencil_state.front_op.depth_fail, STENCIL_OP_MAX, RID());
  5244. depth_stencil_state_create_info.front.depthFailOp = stencil_operations[p_depth_stencil_state.front_op.depth_fail];
  5245. ERR_FAIL_INDEX_V(p_depth_stencil_state.front_op.compare, COMPARE_OP_MAX, RID());
  5246. depth_stencil_state_create_info.front.compareOp = compare_operators[p_depth_stencil_state.front_op.compare];
  5247. depth_stencil_state_create_info.front.compareMask = p_depth_stencil_state.front_op.compare_mask;
  5248. depth_stencil_state_create_info.front.writeMask = p_depth_stencil_state.front_op.write_mask;
  5249. depth_stencil_state_create_info.front.reference = p_depth_stencil_state.front_op.reference;
  5250. ERR_FAIL_INDEX_V(p_depth_stencil_state.back_op.fail, STENCIL_OP_MAX, RID());
  5251. depth_stencil_state_create_info.back.failOp = stencil_operations[p_depth_stencil_state.back_op.fail];
  5252. ERR_FAIL_INDEX_V(p_depth_stencil_state.back_op.pass, STENCIL_OP_MAX, RID());
  5253. depth_stencil_state_create_info.back.passOp = stencil_operations[p_depth_stencil_state.back_op.pass];
  5254. ERR_FAIL_INDEX_V(p_depth_stencil_state.back_op.depth_fail, STENCIL_OP_MAX, RID());
  5255. depth_stencil_state_create_info.back.depthFailOp = stencil_operations[p_depth_stencil_state.back_op.depth_fail];
  5256. ERR_FAIL_INDEX_V(p_depth_stencil_state.back_op.compare, COMPARE_OP_MAX, RID());
  5257. depth_stencil_state_create_info.back.compareOp = compare_operators[p_depth_stencil_state.back_op.compare];
  5258. depth_stencil_state_create_info.back.compareMask = p_depth_stencil_state.back_op.compare_mask;
  5259. depth_stencil_state_create_info.back.writeMask = p_depth_stencil_state.back_op.write_mask;
  5260. depth_stencil_state_create_info.back.reference = p_depth_stencil_state.back_op.reference;
  5261. depth_stencil_state_create_info.minDepthBounds = p_depth_stencil_state.depth_range_min;
  5262. depth_stencil_state_create_info.maxDepthBounds = p_depth_stencil_state.depth_range_max;
  5263. // Blend state.
  5264. VkPipelineColorBlendStateCreateInfo color_blend_state_create_info;
  5265. color_blend_state_create_info.sType = VK_STRUCTURE_TYPE_PIPELINE_COLOR_BLEND_STATE_CREATE_INFO;
  5266. color_blend_state_create_info.pNext = nullptr;
  5267. color_blend_state_create_info.flags = 0;
  5268. color_blend_state_create_info.logicOpEnable = p_blend_state.enable_logic_op;
  5269. ERR_FAIL_INDEX_V(p_blend_state.logic_op, LOGIC_OP_MAX, RID());
  5270. color_blend_state_create_info.logicOp = logic_operations[p_blend_state.logic_op];
  5271. Vector<VkPipelineColorBlendAttachmentState> attachment_states;
  5272. {
  5273. const FramebufferPass &pass = fb_format.E->key().passes[p_for_render_pass];
  5274. attachment_states.resize(pass.color_attachments.size());
  5275. ERR_FAIL_COND_V(p_blend_state.attachments.size() < pass.color_attachments.size(), RID());
  5276. for (int i = 0; i < pass.color_attachments.size(); i++) {
  5277. VkPipelineColorBlendAttachmentState state;
  5278. if (pass.color_attachments[i] == FramebufferPass::ATTACHMENT_UNUSED) {
  5279. state.blendEnable = false;
  5280. state.srcColorBlendFactor = VK_BLEND_FACTOR_ZERO;
  5281. state.dstColorBlendFactor = VK_BLEND_FACTOR_ZERO;
  5282. state.colorBlendOp = VK_BLEND_OP_ADD;
  5283. state.srcAlphaBlendFactor = VK_BLEND_FACTOR_ZERO;
  5284. state.dstAlphaBlendFactor = VK_BLEND_FACTOR_ZERO;
  5285. state.alphaBlendOp = VK_BLEND_OP_ADD;
  5286. state.colorWriteMask = 0;
  5287. } else {
  5288. state.blendEnable = p_blend_state.attachments[i].enable_blend;
  5289. ERR_FAIL_INDEX_V(p_blend_state.attachments[i].src_color_blend_factor, BLEND_FACTOR_MAX, RID());
  5290. state.srcColorBlendFactor = blend_factors[p_blend_state.attachments[i].src_color_blend_factor];
  5291. ERR_FAIL_INDEX_V(p_blend_state.attachments[i].dst_color_blend_factor, BLEND_FACTOR_MAX, RID());
  5292. state.dstColorBlendFactor = blend_factors[p_blend_state.attachments[i].dst_color_blend_factor];
  5293. ERR_FAIL_INDEX_V(p_blend_state.attachments[i].color_blend_op, BLEND_OP_MAX, RID());
  5294. state.colorBlendOp = blend_operations[p_blend_state.attachments[i].color_blend_op];
  5295. ERR_FAIL_INDEX_V(p_blend_state.attachments[i].src_alpha_blend_factor, BLEND_FACTOR_MAX, RID());
  5296. state.srcAlphaBlendFactor = blend_factors[p_blend_state.attachments[i].src_alpha_blend_factor];
  5297. ERR_FAIL_INDEX_V(p_blend_state.attachments[i].dst_alpha_blend_factor, BLEND_FACTOR_MAX, RID());
  5298. state.dstAlphaBlendFactor = blend_factors[p_blend_state.attachments[i].dst_alpha_blend_factor];
  5299. ERR_FAIL_INDEX_V(p_blend_state.attachments[i].alpha_blend_op, BLEND_OP_MAX, RID());
  5300. state.alphaBlendOp = blend_operations[p_blend_state.attachments[i].alpha_blend_op];
  5301. state.colorWriteMask = 0;
  5302. if (p_blend_state.attachments[i].write_r) {
  5303. state.colorWriteMask |= VK_COLOR_COMPONENT_R_BIT;
  5304. }
  5305. if (p_blend_state.attachments[i].write_g) {
  5306. state.colorWriteMask |= VK_COLOR_COMPONENT_G_BIT;
  5307. }
  5308. if (p_blend_state.attachments[i].write_b) {
  5309. state.colorWriteMask |= VK_COLOR_COMPONENT_B_BIT;
  5310. }
  5311. if (p_blend_state.attachments[i].write_a) {
  5312. state.colorWriteMask |= VK_COLOR_COMPONENT_A_BIT;
  5313. }
  5314. }
  5315. attachment_states.write[i] = state;
  5316. }
  5317. }
  5318. color_blend_state_create_info.attachmentCount = attachment_states.size();
  5319. color_blend_state_create_info.pAttachments = attachment_states.ptr();
  5320. color_blend_state_create_info.blendConstants[0] = p_blend_state.blend_constant.r;
  5321. color_blend_state_create_info.blendConstants[1] = p_blend_state.blend_constant.g;
  5322. color_blend_state_create_info.blendConstants[2] = p_blend_state.blend_constant.b;
  5323. color_blend_state_create_info.blendConstants[3] = p_blend_state.blend_constant.a;
  5324. // Dynamic state.
  5325. VkPipelineDynamicStateCreateInfo dynamic_state_create_info;
  5326. dynamic_state_create_info.sType = VK_STRUCTURE_TYPE_PIPELINE_DYNAMIC_STATE_CREATE_INFO;
  5327. dynamic_state_create_info.pNext = nullptr;
  5328. dynamic_state_create_info.flags = 0;
  5329. Vector<VkDynamicState> dynamic_states; // Vulkan is weird.
  5330. dynamic_states.push_back(VK_DYNAMIC_STATE_VIEWPORT); // Viewport and scissor are always dynamic.
  5331. dynamic_states.push_back(VK_DYNAMIC_STATE_SCISSOR);
  5332. if (p_dynamic_state_flags.has_flag(DYNAMIC_STATE_LINE_WIDTH)) {
  5333. dynamic_states.push_back(VK_DYNAMIC_STATE_LINE_WIDTH);
  5334. }
  5335. if (p_dynamic_state_flags.has_flag(DYNAMIC_STATE_DEPTH_BIAS)) {
  5336. dynamic_states.push_back(VK_DYNAMIC_STATE_DEPTH_BIAS);
  5337. }
  5338. if (p_dynamic_state_flags.has_flag(DYNAMIC_STATE_BLEND_CONSTANTS)) {
  5339. dynamic_states.push_back(VK_DYNAMIC_STATE_BLEND_CONSTANTS);
  5340. }
  5341. if (p_dynamic_state_flags.has_flag(DYNAMIC_STATE_DEPTH_BOUNDS)) {
  5342. dynamic_states.push_back(VK_DYNAMIC_STATE_DEPTH_BOUNDS);
  5343. }
  5344. if (p_dynamic_state_flags.has_flag(DYNAMIC_STATE_STENCIL_COMPARE_MASK)) {
  5345. dynamic_states.push_back(VK_DYNAMIC_STATE_STENCIL_COMPARE_MASK);
  5346. }
  5347. if (p_dynamic_state_flags.has_flag(DYNAMIC_STATE_STENCIL_WRITE_MASK)) {
  5348. dynamic_states.push_back(VK_DYNAMIC_STATE_STENCIL_WRITE_MASK);
  5349. }
  5350. if (p_dynamic_state_flags.has_flag(DYNAMIC_STATE_STENCIL_REFERENCE)) {
  5351. dynamic_states.push_back(VK_DYNAMIC_STATE_STENCIL_REFERENCE);
  5352. }
  5353. dynamic_state_create_info.dynamicStateCount = dynamic_states.size();
  5354. dynamic_state_create_info.pDynamicStates = dynamic_states.ptr();
  5355. void *graphics_pipeline_nextptr = nullptr;
  5356. VkPipelineFragmentShadingRateStateCreateInfoKHR vrs_create_info;
  5357. if (context->get_vrs_capabilities().attachment_vrs_supported) {
  5358. // If VRS is used, this defines how the different VRS types are combined.
  5359. // combinerOps[0] decides how we use the output of pipeline and primitive (drawcall) VRS.
  5360. // combinerOps[1] decides how we use the output of combinerOps[0] and our attachment VRS.
  5361. vrs_create_info.sType = VK_STRUCTURE_TYPE_PIPELINE_FRAGMENT_SHADING_RATE_STATE_CREATE_INFO_KHR;
  5362. vrs_create_info.pNext = nullptr;
  5363. vrs_create_info.fragmentSize = { 4, 4 };
  5364. vrs_create_info.combinerOps[0] = VK_FRAGMENT_SHADING_RATE_COMBINER_OP_KEEP_KHR; // We don't use pipeline/primitive VRS so this really doesn't matter.
  5365. vrs_create_info.combinerOps[1] = VK_FRAGMENT_SHADING_RATE_COMBINER_OP_REPLACE_KHR; // Always use the outcome of attachment VRS if enabled.
  5366. graphics_pipeline_nextptr = &vrs_create_info;
  5367. }
  5368. // Finally, pipeline create info.
  5369. VkGraphicsPipelineCreateInfo graphics_pipeline_create_info;
  5370. graphics_pipeline_create_info.sType = VK_STRUCTURE_TYPE_GRAPHICS_PIPELINE_CREATE_INFO;
  5371. graphics_pipeline_create_info.pNext = graphics_pipeline_nextptr;
  5372. graphics_pipeline_create_info.flags = 0;
  5373. Vector<VkPipelineShaderStageCreateInfo> pipeline_stages = shader->pipeline_stages;
  5374. Vector<VkSpecializationInfo> specialization_info;
  5375. Vector<Vector<VkSpecializationMapEntry>> specialization_map_entries;
  5376. Vector<uint32_t> specialization_constant_data;
  5377. if (shader->specialization_constants.size()) {
  5378. specialization_constant_data.resize(shader->specialization_constants.size());
  5379. uint32_t *data_ptr = specialization_constant_data.ptrw();
  5380. specialization_info.resize(pipeline_stages.size());
  5381. specialization_map_entries.resize(pipeline_stages.size());
  5382. for (int i = 0; i < shader->specialization_constants.size(); i++) {
  5383. // See if overridden.
  5384. const Shader::SpecializationConstant &sc = shader->specialization_constants[i];
  5385. data_ptr[i] = sc.constant.int_value; // Just copy the 32 bits.
  5386. for (int j = 0; j < p_specialization_constants.size(); j++) {
  5387. const PipelineSpecializationConstant &psc = p_specialization_constants[j];
  5388. if (psc.constant_id == sc.constant.constant_id) {
  5389. ERR_FAIL_COND_V_MSG(psc.type != sc.constant.type, RID(), "Specialization constant provided for id (" + itos(sc.constant.constant_id) + ") is of the wrong type.");
  5390. data_ptr[i] = psc.int_value;
  5391. break;
  5392. }
  5393. }
  5394. VkSpecializationMapEntry entry;
  5395. entry.constantID = sc.constant.constant_id;
  5396. entry.offset = i * sizeof(uint32_t);
  5397. entry.size = sizeof(uint32_t);
  5398. for (int j = 0; j < SHADER_STAGE_MAX; j++) {
  5399. if (sc.stage_flags & (1 << j)) {
  5400. VkShaderStageFlagBits stage = shader_stage_masks[j];
  5401. for (int k = 0; k < pipeline_stages.size(); k++) {
  5402. if (pipeline_stages[k].stage == stage) {
  5403. specialization_map_entries.write[k].push_back(entry);
  5404. }
  5405. }
  5406. }
  5407. }
  5408. }
  5409. for (int i = 0; i < pipeline_stages.size(); i++) {
  5410. if (specialization_map_entries[i].size()) {
  5411. specialization_info.write[i].dataSize = specialization_constant_data.size() * sizeof(uint32_t);
  5412. specialization_info.write[i].pData = data_ptr;
  5413. specialization_info.write[i].mapEntryCount = specialization_map_entries[i].size();
  5414. specialization_info.write[i].pMapEntries = specialization_map_entries[i].ptr();
  5415. pipeline_stages.write[i].pSpecializationInfo = specialization_info.ptr() + i;
  5416. }
  5417. }
  5418. }
  5419. graphics_pipeline_create_info.stageCount = pipeline_stages.size();
  5420. graphics_pipeline_create_info.pStages = pipeline_stages.ptr();
  5421. graphics_pipeline_create_info.pVertexInputState = &pipeline_vertex_input_state_create_info;
  5422. graphics_pipeline_create_info.pInputAssemblyState = &input_assembly_create_info;
  5423. graphics_pipeline_create_info.pTessellationState = &tessellation_create_info;
  5424. graphics_pipeline_create_info.pViewportState = &viewport_state_create_info;
  5425. graphics_pipeline_create_info.pRasterizationState = &rasterization_state_create_info;
  5426. graphics_pipeline_create_info.pMultisampleState = &multisample_state_create_info;
  5427. graphics_pipeline_create_info.pDepthStencilState = &depth_stencil_state_create_info;
  5428. graphics_pipeline_create_info.pColorBlendState = &color_blend_state_create_info;
  5429. graphics_pipeline_create_info.pDynamicState = &dynamic_state_create_info;
  5430. graphics_pipeline_create_info.layout = shader->pipeline_layout;
  5431. graphics_pipeline_create_info.renderPass = fb_format.render_pass;
  5432. graphics_pipeline_create_info.subpass = p_for_render_pass;
  5433. graphics_pipeline_create_info.basePipelineHandle = VK_NULL_HANDLE;
  5434. graphics_pipeline_create_info.basePipelineIndex = 0;
  5435. RenderPipeline pipeline;
  5436. VkResult err = vkCreateGraphicsPipelines(device, VK_NULL_HANDLE, 1, &graphics_pipeline_create_info, nullptr, &pipeline.pipeline);
  5437. ERR_FAIL_COND_V_MSG(err, RID(), "vkCreateGraphicsPipelines failed with error " + itos(err) + " for shader '" + shader->name + "'.");
  5438. pipeline.set_formats = shader->set_formats;
  5439. pipeline.push_constant_stages_mask = shader->push_constant.vk_stages_mask;
  5440. pipeline.pipeline_layout = shader->pipeline_layout;
  5441. pipeline.shader = p_shader;
  5442. pipeline.push_constant_size = shader->push_constant.size;
  5443. #ifdef DEBUG_ENABLED
  5444. pipeline.validation.dynamic_state = p_dynamic_state_flags;
  5445. pipeline.validation.framebuffer_format = p_framebuffer_format;
  5446. pipeline.validation.render_pass = p_for_render_pass;
  5447. pipeline.validation.vertex_format = p_vertex_format;
  5448. pipeline.validation.uses_restart_indices = input_assembly_create_info.primitiveRestartEnable;
  5449. static const uint32_t primitive_divisor[RENDER_PRIMITIVE_MAX] = {
  5450. 1, 2, 1, 1, 1, 3, 1, 1, 1, 1, 1
  5451. };
  5452. pipeline.validation.primitive_divisor = primitive_divisor[p_render_primitive];
  5453. static const uint32_t primitive_minimum[RENDER_PRIMITIVE_MAX] = {
  5454. 1,
  5455. 2,
  5456. 2,
  5457. 2,
  5458. 2,
  5459. 3,
  5460. 3,
  5461. 3,
  5462. 3,
  5463. 3,
  5464. 1,
  5465. };
  5466. pipeline.validation.primitive_minimum = primitive_minimum[p_render_primitive];
  5467. #endif
  5468. // Create ID to associate with this pipeline.
  5469. RID id = render_pipeline_owner.make_rid(pipeline);
  5470. #ifdef DEV_ENABLED
  5471. set_resource_name(id, "RID:" + itos(id.get_id()));
  5472. #endif
  5473. // Now add all the dependencies.
  5474. _add_dependency(id, p_shader);
  5475. return id;
  5476. }
  5477. bool RenderingDeviceVulkan::render_pipeline_is_valid(RID p_pipeline) {
  5478. _THREAD_SAFE_METHOD_
  5479. return render_pipeline_owner.owns(p_pipeline);
  5480. }
  5481. /**************************/
  5482. /**** COMPUTE PIPELINE ****/
  5483. /**************************/
  5484. RID RenderingDeviceVulkan::compute_pipeline_create(RID p_shader, const Vector<PipelineSpecializationConstant> &p_specialization_constants) {
  5485. _THREAD_SAFE_METHOD_
  5486. // Needs a shader.
  5487. Shader *shader = shader_owner.get_or_null(p_shader);
  5488. ERR_FAIL_COND_V(!shader, RID());
  5489. ERR_FAIL_COND_V_MSG(!shader->is_compute, RID(),
  5490. "Non-compute shaders can't be used in compute pipelines");
  5491. // Finally, pipeline create info.
  5492. VkComputePipelineCreateInfo compute_pipeline_create_info;
  5493. compute_pipeline_create_info.sType = VK_STRUCTURE_TYPE_COMPUTE_PIPELINE_CREATE_INFO;
  5494. compute_pipeline_create_info.pNext = nullptr;
  5495. compute_pipeline_create_info.flags = 0;
  5496. compute_pipeline_create_info.stage = shader->pipeline_stages[0];
  5497. compute_pipeline_create_info.layout = shader->pipeline_layout;
  5498. compute_pipeline_create_info.basePipelineHandle = VK_NULL_HANDLE;
  5499. compute_pipeline_create_info.basePipelineIndex = 0;
  5500. VkSpecializationInfo specialization_info;
  5501. Vector<VkSpecializationMapEntry> specialization_map_entries;
  5502. Vector<uint32_t> specialization_constant_data;
  5503. if (shader->specialization_constants.size()) {
  5504. specialization_constant_data.resize(shader->specialization_constants.size());
  5505. uint32_t *data_ptr = specialization_constant_data.ptrw();
  5506. for (int i = 0; i < shader->specialization_constants.size(); i++) {
  5507. // See if overridden.
  5508. const Shader::SpecializationConstant &sc = shader->specialization_constants[i];
  5509. data_ptr[i] = sc.constant.int_value; // Just copy the 32 bits.
  5510. for (int j = 0; j < p_specialization_constants.size(); j++) {
  5511. const PipelineSpecializationConstant &psc = p_specialization_constants[j];
  5512. if (psc.constant_id == sc.constant.constant_id) {
  5513. ERR_FAIL_COND_V_MSG(psc.type != sc.constant.type, RID(), "Specialization constant provided for id (" + itos(sc.constant.constant_id) + ") is of the wrong type.");
  5514. data_ptr[i] = psc.int_value;
  5515. break;
  5516. }
  5517. }
  5518. VkSpecializationMapEntry entry;
  5519. entry.constantID = sc.constant.constant_id;
  5520. entry.offset = i * sizeof(uint32_t);
  5521. entry.size = sizeof(uint32_t);
  5522. specialization_map_entries.push_back(entry);
  5523. }
  5524. specialization_info.dataSize = specialization_constant_data.size() * sizeof(uint32_t);
  5525. specialization_info.pData = data_ptr;
  5526. specialization_info.mapEntryCount = specialization_map_entries.size();
  5527. specialization_info.pMapEntries = specialization_map_entries.ptr();
  5528. compute_pipeline_create_info.stage.pSpecializationInfo = &specialization_info;
  5529. }
  5530. ComputePipeline pipeline;
  5531. VkResult err = vkCreateComputePipelines(device, VK_NULL_HANDLE, 1, &compute_pipeline_create_info, nullptr, &pipeline.pipeline);
  5532. ERR_FAIL_COND_V_MSG(err, RID(), "vkCreateComputePipelines failed with error " + itos(err) + ".");
  5533. pipeline.set_formats = shader->set_formats;
  5534. pipeline.push_constant_stages_mask = shader->push_constant.vk_stages_mask;
  5535. pipeline.pipeline_layout = shader->pipeline_layout;
  5536. pipeline.shader = p_shader;
  5537. pipeline.push_constant_size = shader->push_constant.size;
  5538. pipeline.local_group_size[0] = shader->compute_local_size[0];
  5539. pipeline.local_group_size[1] = shader->compute_local_size[1];
  5540. pipeline.local_group_size[2] = shader->compute_local_size[2];
  5541. // Create ID to associate with this pipeline.
  5542. RID id = compute_pipeline_owner.make_rid(pipeline);
  5543. #ifdef DEV_ENABLED
  5544. set_resource_name(id, "RID:" + itos(id.get_id()));
  5545. #endif
  5546. // Now add all the dependencies.
  5547. _add_dependency(id, p_shader);
  5548. return id;
  5549. }
  5550. bool RenderingDeviceVulkan::compute_pipeline_is_valid(RID p_pipeline) {
  5551. return compute_pipeline_owner.owns(p_pipeline);
  5552. }
  5553. /****************/
  5554. /**** SCREEN ****/
  5555. /****************/
  5556. int RenderingDeviceVulkan::screen_get_width(DisplayServer::WindowID p_screen) const {
  5557. _THREAD_SAFE_METHOD_
  5558. ERR_FAIL_COND_V_MSG(local_device.is_valid(), -1, "Local devices have no screen");
  5559. return context->window_get_width(p_screen);
  5560. }
  5561. int RenderingDeviceVulkan::screen_get_height(DisplayServer::WindowID p_screen) const {
  5562. _THREAD_SAFE_METHOD_
  5563. ERR_FAIL_COND_V_MSG(local_device.is_valid(), -1, "Local devices have no screen");
  5564. return context->window_get_height(p_screen);
  5565. }
  5566. RenderingDevice::FramebufferFormatID RenderingDeviceVulkan::screen_get_framebuffer_format() const {
  5567. _THREAD_SAFE_METHOD_
  5568. ERR_FAIL_COND_V_MSG(local_device.is_valid(), INVALID_ID, "Local devices have no screen");
  5569. // Very hacky, but not used often per frame so I guess ok.
  5570. VkFormat vkformat = context->get_screen_format();
  5571. DataFormat format = DATA_FORMAT_MAX;
  5572. for (int i = 0; i < DATA_FORMAT_MAX; i++) {
  5573. if (vkformat == vulkan_formats[i]) {
  5574. format = DataFormat(i);
  5575. break;
  5576. }
  5577. }
  5578. ERR_FAIL_COND_V(format == DATA_FORMAT_MAX, INVALID_ID);
  5579. AttachmentFormat attachment;
  5580. attachment.format = format;
  5581. attachment.samples = TEXTURE_SAMPLES_1;
  5582. attachment.usage_flags = TEXTURE_USAGE_COLOR_ATTACHMENT_BIT;
  5583. Vector<AttachmentFormat> screen_attachment;
  5584. screen_attachment.push_back(attachment);
  5585. return const_cast<RenderingDeviceVulkan *>(this)->framebuffer_format_create(screen_attachment);
  5586. }
  5587. /*******************/
  5588. /**** DRAW LIST ****/
  5589. /*******************/
  5590. RenderingDevice::DrawListID RenderingDeviceVulkan::draw_list_begin_for_screen(DisplayServer::WindowID p_screen, const Color &p_clear_color) {
  5591. _THREAD_SAFE_METHOD_
  5592. ERR_FAIL_COND_V_MSG(local_device.is_valid(), INVALID_ID, "Local devices have no screen");
  5593. ERR_FAIL_COND_V_MSG(draw_list != nullptr, INVALID_ID, "Only one draw list can be active at the same time.");
  5594. ERR_FAIL_COND_V_MSG(compute_list != nullptr, INVALID_ID, "Only one draw/compute list can be active at the same time.");
  5595. VkCommandBuffer command_buffer = frames[frame].draw_command_buffer;
  5596. if (!context->window_is_valid_swapchain(p_screen)) {
  5597. return INVALID_ID;
  5598. }
  5599. Size2i size = Size2i(context->window_get_width(p_screen), context->window_get_height(p_screen));
  5600. _draw_list_allocate(Rect2i(Vector2i(), size), 0, 0);
  5601. #ifdef DEBUG_ENABLED
  5602. draw_list_framebuffer_format = screen_get_framebuffer_format();
  5603. #endif
  5604. draw_list_subpass_count = 1;
  5605. VkRenderPassBeginInfo render_pass_begin;
  5606. render_pass_begin.sType = VK_STRUCTURE_TYPE_RENDER_PASS_BEGIN_INFO;
  5607. render_pass_begin.pNext = nullptr;
  5608. render_pass_begin.renderPass = context->window_get_render_pass(p_screen);
  5609. render_pass_begin.framebuffer = context->window_get_framebuffer(p_screen);
  5610. render_pass_begin.renderArea.extent.width = size.width;
  5611. render_pass_begin.renderArea.extent.height = size.height;
  5612. render_pass_begin.renderArea.offset.x = 0;
  5613. render_pass_begin.renderArea.offset.y = 0;
  5614. render_pass_begin.clearValueCount = 1;
  5615. VkClearValue clear_value;
  5616. clear_value.color.float32[0] = p_clear_color.r;
  5617. clear_value.color.float32[1] = p_clear_color.g;
  5618. clear_value.color.float32[2] = p_clear_color.b;
  5619. clear_value.color.float32[3] = p_clear_color.a;
  5620. render_pass_begin.pClearValues = &clear_value;
  5621. vkCmdBeginRenderPass(command_buffer, &render_pass_begin, VK_SUBPASS_CONTENTS_INLINE);
  5622. uint32_t size_x = screen_get_width(p_screen);
  5623. uint32_t size_y = screen_get_height(p_screen);
  5624. VkViewport viewport;
  5625. viewport.x = 0;
  5626. viewport.y = 0;
  5627. viewport.width = size_x;
  5628. viewport.height = size_y;
  5629. viewport.minDepth = 0;
  5630. viewport.maxDepth = 1.0;
  5631. vkCmdSetViewport(command_buffer, 0, 1, &viewport);
  5632. VkRect2D scissor;
  5633. scissor.offset.x = 0;
  5634. scissor.offset.y = 0;
  5635. scissor.extent.width = size_x;
  5636. scissor.extent.height = size_y;
  5637. vkCmdSetScissor(command_buffer, 0, 1, &scissor);
  5638. return int64_t(ID_TYPE_DRAW_LIST) << ID_BASE_SHIFT;
  5639. }
  5640. Error RenderingDeviceVulkan::_draw_list_setup_framebuffer(Framebuffer *p_framebuffer, InitialAction p_initial_color_action, FinalAction p_final_color_action, InitialAction p_initial_depth_action, FinalAction p_final_depth_action, VkFramebuffer *r_framebuffer, VkRenderPass *r_render_pass, uint32_t *r_subpass_count) {
  5641. Framebuffer::VersionKey vk;
  5642. vk.initial_color_action = p_initial_color_action;
  5643. vk.final_color_action = p_final_color_action;
  5644. vk.initial_depth_action = p_initial_depth_action;
  5645. vk.final_depth_action = p_final_depth_action;
  5646. vk.view_count = p_framebuffer->view_count;
  5647. if (!p_framebuffer->framebuffers.has(vk)) {
  5648. // Need to create this version.
  5649. Framebuffer::Version version;
  5650. version.render_pass = _render_pass_create(framebuffer_formats[p_framebuffer->format_id].E->key().attachments, framebuffer_formats[p_framebuffer->format_id].E->key().passes, p_initial_color_action, p_final_color_action, p_initial_depth_action, p_final_depth_action, p_framebuffer->view_count);
  5651. VkFramebufferCreateInfo framebuffer_create_info;
  5652. framebuffer_create_info.sType = VK_STRUCTURE_TYPE_FRAMEBUFFER_CREATE_INFO;
  5653. framebuffer_create_info.pNext = nullptr;
  5654. framebuffer_create_info.flags = 0;
  5655. framebuffer_create_info.renderPass = version.render_pass;
  5656. Vector<VkImageView> attachments;
  5657. for (int i = 0; i < p_framebuffer->texture_ids.size(); i++) {
  5658. Texture *texture = texture_owner.get_or_null(p_framebuffer->texture_ids[i]);
  5659. if (texture) {
  5660. attachments.push_back(texture->view);
  5661. if (!(texture->usage_flags & TEXTURE_USAGE_VRS_ATTACHMENT_BIT)) { // VRS attachment will be a different size.
  5662. ERR_FAIL_COND_V(texture->width != p_framebuffer->size.width, ERR_BUG);
  5663. ERR_FAIL_COND_V(texture->height != p_framebuffer->size.height, ERR_BUG);
  5664. }
  5665. }
  5666. }
  5667. framebuffer_create_info.attachmentCount = attachments.size();
  5668. framebuffer_create_info.pAttachments = attachments.ptr();
  5669. framebuffer_create_info.width = p_framebuffer->size.width;
  5670. framebuffer_create_info.height = p_framebuffer->size.height;
  5671. framebuffer_create_info.layers = 1;
  5672. VkResult err = vkCreateFramebuffer(device, &framebuffer_create_info, nullptr, &version.framebuffer);
  5673. ERR_FAIL_COND_V_MSG(err, ERR_CANT_CREATE, "vkCreateFramebuffer failed with error " + itos(err) + ".");
  5674. version.subpass_count = framebuffer_formats[p_framebuffer->format_id].E->key().passes.size();
  5675. p_framebuffer->framebuffers.insert(vk, version);
  5676. }
  5677. const Framebuffer::Version &version = p_framebuffer->framebuffers[vk];
  5678. *r_framebuffer = version.framebuffer;
  5679. *r_render_pass = version.render_pass;
  5680. *r_subpass_count = version.subpass_count;
  5681. return OK;
  5682. }
  5683. Error RenderingDeviceVulkan::_draw_list_render_pass_begin(Framebuffer *framebuffer, InitialAction p_initial_color_action, FinalAction p_final_color_action, InitialAction p_initial_depth_action, FinalAction p_final_depth_action, const Vector<Color> &p_clear_colors, float p_clear_depth, uint32_t p_clear_stencil, Point2i viewport_offset, Point2i viewport_size, VkFramebuffer vkframebuffer, VkRenderPass render_pass, VkCommandBuffer command_buffer, VkSubpassContents subpass_contents, const Vector<RID> &p_storage_textures) {
  5684. VkRenderPassBeginInfo render_pass_begin;
  5685. render_pass_begin.sType = VK_STRUCTURE_TYPE_RENDER_PASS_BEGIN_INFO;
  5686. render_pass_begin.pNext = nullptr;
  5687. render_pass_begin.renderPass = render_pass;
  5688. render_pass_begin.framebuffer = vkframebuffer;
  5689. /*
  5690. * Given how API works, it makes sense to always fully operate on the whole framebuffer.
  5691. * This allows better continue operations for operations like shadowmapping.
  5692. render_pass_begin.renderArea.extent.width = viewport_size.width;
  5693. render_pass_begin.renderArea.extent.height = viewport_size.height;
  5694. render_pass_begin.renderArea.offset.x = viewport_offset.x;
  5695. render_pass_begin.renderArea.offset.y = viewport_offset.y;
  5696. */
  5697. render_pass_begin.renderArea.extent.width = framebuffer->size.width;
  5698. render_pass_begin.renderArea.extent.height = framebuffer->size.height;
  5699. render_pass_begin.renderArea.offset.x = 0;
  5700. render_pass_begin.renderArea.offset.y = 0;
  5701. Vector<VkClearValue> clear_values;
  5702. clear_values.resize(framebuffer->texture_ids.size());
  5703. int clear_values_count = 0;
  5704. {
  5705. int color_index = 0;
  5706. for (int i = 0; i < framebuffer->texture_ids.size(); i++) {
  5707. VkClearValue clear_value;
  5708. Texture *texture = texture_owner.get_or_null(framebuffer->texture_ids[i]);
  5709. if (!texture) {
  5710. color_index++;
  5711. continue;
  5712. }
  5713. if (color_index < p_clear_colors.size() && texture->usage_flags & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT) {
  5714. ERR_FAIL_INDEX_V(color_index, p_clear_colors.size(), ERR_BUG); // A bug.
  5715. Color clear_color = p_clear_colors[color_index];
  5716. clear_value.color.float32[0] = clear_color.r;
  5717. clear_value.color.float32[1] = clear_color.g;
  5718. clear_value.color.float32[2] = clear_color.b;
  5719. clear_value.color.float32[3] = clear_color.a;
  5720. color_index++;
  5721. } else if (texture->usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  5722. clear_value.depthStencil.depth = p_clear_depth;
  5723. clear_value.depthStencil.stencil = p_clear_stencil;
  5724. } else {
  5725. clear_value.color.float32[0] = 0;
  5726. clear_value.color.float32[1] = 0;
  5727. clear_value.color.float32[2] = 0;
  5728. clear_value.color.float32[3] = 0;
  5729. }
  5730. clear_values.write[clear_values_count++] = clear_value;
  5731. }
  5732. }
  5733. render_pass_begin.clearValueCount = clear_values_count;
  5734. render_pass_begin.pClearValues = clear_values.ptr();
  5735. for (int i = 0; i < p_storage_textures.size(); i++) {
  5736. Texture *texture = texture_owner.get_or_null(p_storage_textures[i]);
  5737. if (!texture) {
  5738. continue;
  5739. }
  5740. ERR_CONTINUE_MSG(!(texture->usage_flags & TEXTURE_USAGE_STORAGE_BIT), "Supplied storage texture " + itos(i) + " for draw list is not set to be used for storage.");
  5741. if (texture->usage_flags & TEXTURE_USAGE_SAMPLING_BIT) {
  5742. // Must change layout to general.
  5743. VkImageMemoryBarrier image_memory_barrier;
  5744. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  5745. image_memory_barrier.pNext = nullptr;
  5746. image_memory_barrier.srcAccessMask = VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  5747. image_memory_barrier.dstAccessMask = VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  5748. image_memory_barrier.oldLayout = texture->layout;
  5749. image_memory_barrier.newLayout = VK_IMAGE_LAYOUT_GENERAL;
  5750. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  5751. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  5752. image_memory_barrier.image = texture->image;
  5753. image_memory_barrier.subresourceRange.aspectMask = texture->read_aspect_mask;
  5754. image_memory_barrier.subresourceRange.baseMipLevel = texture->base_mipmap;
  5755. image_memory_barrier.subresourceRange.levelCount = texture->mipmaps;
  5756. image_memory_barrier.subresourceRange.baseArrayLayer = texture->base_layer;
  5757. image_memory_barrier.subresourceRange.layerCount = texture->layers;
  5758. vkCmdPipelineBarrier(command_buffer, VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT, VK_PIPELINE_STAGE_VERTEX_INPUT_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT, 0, 0, nullptr, 0, nullptr, 1, &image_memory_barrier);
  5759. texture->layout = VK_IMAGE_LAYOUT_GENERAL;
  5760. draw_list_storage_textures.push_back(p_storage_textures[i]);
  5761. }
  5762. }
  5763. vkCmdBeginRenderPass(command_buffer, &render_pass_begin, subpass_contents);
  5764. // Mark textures as bound.
  5765. draw_list_bound_textures.clear();
  5766. draw_list_unbind_color_textures = p_final_color_action != FINAL_ACTION_CONTINUE;
  5767. draw_list_unbind_depth_textures = p_final_depth_action != FINAL_ACTION_CONTINUE;
  5768. for (int i = 0; i < framebuffer->texture_ids.size(); i++) {
  5769. Texture *texture = texture_owner.get_or_null(framebuffer->texture_ids[i]);
  5770. if (!texture) {
  5771. continue;
  5772. }
  5773. texture->bound = true;
  5774. draw_list_bound_textures.push_back(framebuffer->texture_ids[i]);
  5775. }
  5776. return OK;
  5777. }
  5778. void RenderingDeviceVulkan::_draw_list_insert_clear_region(DrawList *p_draw_list, Framebuffer *p_framebuffer, Point2i p_viewport_offset, Point2i p_viewport_size, bool p_clear_color, const Vector<Color> &p_clear_colors, bool p_clear_depth, float p_depth, uint32_t p_stencil) {
  5779. Vector<VkClearAttachment> clear_attachments;
  5780. int color_index = 0;
  5781. int texture_index = 0;
  5782. for (int i = 0; i < p_framebuffer->texture_ids.size(); i++) {
  5783. Texture *texture = texture_owner.get_or_null(p_framebuffer->texture_ids[i]);
  5784. if (!texture) {
  5785. texture_index++;
  5786. continue;
  5787. }
  5788. VkClearAttachment clear_at = {};
  5789. if (p_clear_color && texture->usage_flags & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT) {
  5790. Color clear_color = p_clear_colors[texture_index++];
  5791. clear_at.clearValue.color.float32[0] = clear_color.r;
  5792. clear_at.clearValue.color.float32[1] = clear_color.g;
  5793. clear_at.clearValue.color.float32[2] = clear_color.b;
  5794. clear_at.clearValue.color.float32[3] = clear_color.a;
  5795. clear_at.colorAttachment = color_index++;
  5796. clear_at.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
  5797. } else if (p_clear_depth && texture->usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) {
  5798. clear_at.clearValue.depthStencil.depth = p_depth;
  5799. clear_at.clearValue.depthStencil.stencil = p_stencil;
  5800. clear_at.colorAttachment = 0;
  5801. clear_at.aspectMask = VK_IMAGE_ASPECT_DEPTH_BIT;
  5802. if (format_has_stencil(texture->format)) {
  5803. clear_at.aspectMask |= VK_IMAGE_ASPECT_STENCIL_BIT;
  5804. }
  5805. } else {
  5806. ERR_CONTINUE(true);
  5807. }
  5808. clear_attachments.push_back(clear_at);
  5809. }
  5810. VkClearRect cr;
  5811. cr.baseArrayLayer = 0;
  5812. cr.layerCount = 1;
  5813. cr.rect.offset.x = p_viewport_offset.x;
  5814. cr.rect.offset.y = p_viewport_offset.y;
  5815. cr.rect.extent.width = p_viewport_size.width;
  5816. cr.rect.extent.height = p_viewport_size.height;
  5817. vkCmdClearAttachments(p_draw_list->command_buffer, clear_attachments.size(), clear_attachments.ptr(), 1, &cr);
  5818. }
  5819. RenderingDevice::DrawListID RenderingDeviceVulkan::draw_list_begin(RID p_framebuffer, InitialAction p_initial_color_action, FinalAction p_final_color_action, InitialAction p_initial_depth_action, FinalAction p_final_depth_action, const Vector<Color> &p_clear_color_values, float p_clear_depth, uint32_t p_clear_stencil, const Rect2 &p_region, const Vector<RID> &p_storage_textures) {
  5820. _THREAD_SAFE_METHOD_
  5821. ERR_FAIL_COND_V_MSG(draw_list != nullptr, INVALID_ID, "Only one draw list can be active at the same time.");
  5822. ERR_FAIL_COND_V_MSG(compute_list != nullptr && !compute_list->state.allow_draw_overlap, INVALID_ID, "Only one draw/compute list can be active at the same time.");
  5823. Framebuffer *framebuffer = framebuffer_owner.get_or_null(p_framebuffer);
  5824. ERR_FAIL_COND_V(!framebuffer, INVALID_ID);
  5825. Point2i viewport_offset;
  5826. Point2i viewport_size = framebuffer->size;
  5827. bool needs_clear_color = false;
  5828. bool needs_clear_depth = false;
  5829. if (p_region != Rect2() && p_region != Rect2(Vector2(), viewport_size)) { // Check custom region.
  5830. Rect2i viewport(viewport_offset, viewport_size);
  5831. Rect2i regioni = p_region;
  5832. if (!(regioni.position.x >= viewport.position.x) && (regioni.position.y >= viewport.position.y) &&
  5833. ((regioni.position.x + regioni.size.x) <= (viewport.position.x + viewport.size.x)) &&
  5834. ((regioni.position.y + regioni.size.y) <= (viewport.position.y + viewport.size.y))) {
  5835. ERR_FAIL_V_MSG(INVALID_ID, "When supplying a custom region, it must be contained within the framebuffer rectangle");
  5836. }
  5837. viewport_offset = regioni.position;
  5838. viewport_size = regioni.size;
  5839. if (p_initial_color_action == INITIAL_ACTION_CLEAR_REGION_CONTINUE) {
  5840. needs_clear_color = true;
  5841. p_initial_color_action = INITIAL_ACTION_CONTINUE;
  5842. }
  5843. if (p_initial_depth_action == INITIAL_ACTION_CLEAR_REGION_CONTINUE) {
  5844. needs_clear_depth = true;
  5845. p_initial_depth_action = INITIAL_ACTION_CONTINUE;
  5846. }
  5847. if (p_initial_color_action == INITIAL_ACTION_CLEAR_REGION) {
  5848. needs_clear_color = true;
  5849. p_initial_color_action = INITIAL_ACTION_KEEP;
  5850. }
  5851. if (p_initial_depth_action == INITIAL_ACTION_CLEAR_REGION) {
  5852. needs_clear_depth = true;
  5853. p_initial_depth_action = INITIAL_ACTION_KEEP;
  5854. }
  5855. }
  5856. if (p_initial_color_action == INITIAL_ACTION_CLEAR || needs_clear_color) { // Check clear values.
  5857. int color_count = 0;
  5858. for (int i = 0; i < framebuffer->texture_ids.size(); i++) {
  5859. Texture *texture = texture_owner.get_or_null(framebuffer->texture_ids[i]);
  5860. // We only check for our VRS usage bit if this is not the first texture id.
  5861. // If it is the first we're likely populating our VRS texture.
  5862. // Bit dirty but...
  5863. if (!texture || (!(texture->usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) && !(i != 0 && texture->usage_flags & TEXTURE_USAGE_VRS_ATTACHMENT_BIT))) {
  5864. if (!texture || !texture->is_resolve_buffer) {
  5865. color_count++;
  5866. }
  5867. }
  5868. }
  5869. ERR_FAIL_COND_V_MSG(p_clear_color_values.size() != color_count, INVALID_ID, "Clear color values supplied (" + itos(p_clear_color_values.size()) + ") differ from the amount required for framebuffer color attachments (" + itos(color_count) + ").");
  5870. }
  5871. VkFramebuffer vkframebuffer;
  5872. VkRenderPass render_pass;
  5873. Error err = _draw_list_setup_framebuffer(framebuffer, p_initial_color_action, p_final_color_action, p_initial_depth_action, p_final_depth_action, &vkframebuffer, &render_pass, &draw_list_subpass_count);
  5874. ERR_FAIL_COND_V(err != OK, INVALID_ID);
  5875. VkCommandBuffer command_buffer = frames[frame].draw_command_buffer;
  5876. err = _draw_list_render_pass_begin(framebuffer, p_initial_color_action, p_final_color_action, p_initial_depth_action, p_final_depth_action, p_clear_color_values, p_clear_depth, p_clear_stencil, viewport_offset, viewport_size, vkframebuffer, render_pass, command_buffer, VK_SUBPASS_CONTENTS_INLINE, p_storage_textures);
  5877. if (err != OK) {
  5878. return INVALID_ID;
  5879. }
  5880. draw_list_render_pass = render_pass;
  5881. draw_list_vkframebuffer = vkframebuffer;
  5882. _draw_list_allocate(Rect2i(viewport_offset, viewport_size), 0, 0);
  5883. #ifdef DEBUG_ENABLED
  5884. draw_list_framebuffer_format = framebuffer->format_id;
  5885. #endif
  5886. draw_list_current_subpass = 0;
  5887. if (needs_clear_color || needs_clear_depth) {
  5888. _draw_list_insert_clear_region(draw_list, framebuffer, viewport_offset, viewport_size, needs_clear_color, p_clear_color_values, needs_clear_depth, p_clear_depth, p_clear_stencil);
  5889. }
  5890. VkViewport viewport;
  5891. viewport.x = viewport_offset.x;
  5892. viewport.y = viewport_offset.y;
  5893. viewport.width = viewport_size.width;
  5894. viewport.height = viewport_size.height;
  5895. viewport.minDepth = 0;
  5896. viewport.maxDepth = 1.0;
  5897. vkCmdSetViewport(command_buffer, 0, 1, &viewport);
  5898. VkRect2D scissor;
  5899. scissor.offset.x = viewport_offset.x;
  5900. scissor.offset.y = viewport_offset.y;
  5901. scissor.extent.width = viewport_size.width;
  5902. scissor.extent.height = viewport_size.height;
  5903. vkCmdSetScissor(command_buffer, 0, 1, &scissor);
  5904. return int64_t(ID_TYPE_DRAW_LIST) << ID_BASE_SHIFT;
  5905. }
  5906. Error RenderingDeviceVulkan::draw_list_begin_split(RID p_framebuffer, uint32_t p_splits, DrawListID *r_split_ids, InitialAction p_initial_color_action, FinalAction p_final_color_action, InitialAction p_initial_depth_action, FinalAction p_final_depth_action, const Vector<Color> &p_clear_color_values, float p_clear_depth, uint32_t p_clear_stencil, const Rect2 &p_region, const Vector<RID> &p_storage_textures) {
  5907. _THREAD_SAFE_METHOD_
  5908. ERR_FAIL_COND_V_MSG(draw_list != nullptr, ERR_BUSY, "Only one draw list can be active at the same time.");
  5909. ERR_FAIL_COND_V_MSG(compute_list != nullptr && !compute_list->state.allow_draw_overlap, ERR_BUSY, "Only one draw/compute list can be active at the same time.");
  5910. ERR_FAIL_COND_V(p_splits < 1, ERR_INVALID_DECLARATION);
  5911. Framebuffer *framebuffer = framebuffer_owner.get_or_null(p_framebuffer);
  5912. ERR_FAIL_COND_V(!framebuffer, ERR_INVALID_DECLARATION);
  5913. Point2i viewport_offset;
  5914. Point2i viewport_size = framebuffer->size;
  5915. bool needs_clear_color = false;
  5916. bool needs_clear_depth = false;
  5917. if (p_region != Rect2() && p_region != Rect2(Vector2(), viewport_size)) { // Check custom region.
  5918. Rect2i viewport(viewport_offset, viewport_size);
  5919. Rect2i regioni = p_region;
  5920. if (!(regioni.position.x >= viewport.position.x) && (regioni.position.y >= viewport.position.y) &&
  5921. ((regioni.position.x + regioni.size.x) <= (viewport.position.x + viewport.size.x)) &&
  5922. ((regioni.position.y + regioni.size.y) <= (viewport.position.y + viewport.size.y))) {
  5923. ERR_FAIL_V_MSG(ERR_INVALID_PARAMETER, "When supplying a custom region, it must be contained within the framebuffer rectangle");
  5924. }
  5925. viewport_offset = regioni.position;
  5926. viewport_size = regioni.size;
  5927. if (p_initial_color_action == INITIAL_ACTION_CLEAR_REGION) {
  5928. needs_clear_color = true;
  5929. p_initial_color_action = INITIAL_ACTION_KEEP;
  5930. }
  5931. if (p_initial_depth_action == INITIAL_ACTION_CLEAR_REGION) {
  5932. needs_clear_depth = true;
  5933. p_initial_depth_action = INITIAL_ACTION_KEEP;
  5934. }
  5935. }
  5936. if (p_initial_color_action == INITIAL_ACTION_CLEAR || needs_clear_color) { // Check clear values.
  5937. int color_count = 0;
  5938. for (int i = 0; i < framebuffer->texture_ids.size(); i++) {
  5939. Texture *texture = texture_owner.get_or_null(framebuffer->texture_ids[i]);
  5940. if (!texture || !(texture->usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT)) {
  5941. color_count++;
  5942. }
  5943. }
  5944. ERR_FAIL_COND_V_MSG(p_clear_color_values.size() != color_count, ERR_INVALID_PARAMETER,
  5945. "Clear color values supplied (" + itos(p_clear_color_values.size()) + ") differ from the amount required for framebuffer (" + itos(color_count) + ").");
  5946. }
  5947. VkFramebuffer vkframebuffer;
  5948. VkRenderPass render_pass;
  5949. Error err = _draw_list_setup_framebuffer(framebuffer, p_initial_color_action, p_final_color_action, p_initial_depth_action, p_final_depth_action, &vkframebuffer, &render_pass, &draw_list_subpass_count);
  5950. ERR_FAIL_COND_V(err != OK, ERR_CANT_CREATE);
  5951. VkCommandBuffer frame_command_buffer = frames[frame].draw_command_buffer;
  5952. err = _draw_list_render_pass_begin(framebuffer, p_initial_color_action, p_final_color_action, p_initial_depth_action, p_final_depth_action, p_clear_color_values, p_clear_depth, p_clear_stencil, viewport_offset, viewport_size, vkframebuffer, render_pass, frame_command_buffer, VK_SUBPASS_CONTENTS_SECONDARY_COMMAND_BUFFERS, p_storage_textures);
  5953. if (err != OK) {
  5954. return ERR_CANT_CREATE;
  5955. }
  5956. draw_list_current_subpass = 0;
  5957. #ifdef DEBUG_ENABLED
  5958. draw_list_framebuffer_format = framebuffer->format_id;
  5959. #endif
  5960. draw_list_render_pass = render_pass;
  5961. draw_list_vkframebuffer = vkframebuffer;
  5962. err = _draw_list_allocate(Rect2i(viewport_offset, viewport_size), p_splits, 0);
  5963. if (err != OK) {
  5964. return err;
  5965. }
  5966. if (needs_clear_color || needs_clear_depth) {
  5967. _draw_list_insert_clear_region(&draw_list[0], framebuffer, viewport_offset, viewport_size, needs_clear_color, p_clear_color_values, needs_clear_depth, p_clear_depth, p_clear_stencil);
  5968. }
  5969. for (uint32_t i = 0; i < p_splits; i++) {
  5970. VkViewport viewport;
  5971. viewport.x = viewport_offset.x;
  5972. viewport.y = viewport_offset.y;
  5973. viewport.width = viewport_size.width;
  5974. viewport.height = viewport_size.height;
  5975. viewport.minDepth = 0;
  5976. viewport.maxDepth = 1.0;
  5977. vkCmdSetViewport(draw_list[i].command_buffer, 0, 1, &viewport);
  5978. VkRect2D scissor;
  5979. scissor.offset.x = viewport_offset.x;
  5980. scissor.offset.y = viewport_offset.y;
  5981. scissor.extent.width = viewport_size.width;
  5982. scissor.extent.height = viewport_size.height;
  5983. vkCmdSetScissor(draw_list[i].command_buffer, 0, 1, &scissor);
  5984. r_split_ids[i] = (int64_t(ID_TYPE_SPLIT_DRAW_LIST) << ID_BASE_SHIFT) + i;
  5985. }
  5986. return OK;
  5987. }
  5988. RenderingDeviceVulkan::DrawList *RenderingDeviceVulkan::_get_draw_list_ptr(DrawListID p_id) {
  5989. if (p_id < 0) {
  5990. return nullptr;
  5991. }
  5992. if (!draw_list) {
  5993. return nullptr;
  5994. } else if (p_id == (int64_t(ID_TYPE_DRAW_LIST) << ID_BASE_SHIFT)) {
  5995. if (draw_list_split) {
  5996. return nullptr;
  5997. }
  5998. return draw_list;
  5999. } else if (p_id >> DrawListID(ID_BASE_SHIFT) == ID_TYPE_SPLIT_DRAW_LIST) {
  6000. if (!draw_list_split) {
  6001. return nullptr;
  6002. }
  6003. uint64_t index = p_id & ((DrawListID(1) << DrawListID(ID_BASE_SHIFT)) - 1); // Mask.
  6004. if (index >= draw_list_count) {
  6005. return nullptr;
  6006. }
  6007. return &draw_list[index];
  6008. } else {
  6009. return nullptr;
  6010. }
  6011. }
  6012. void RenderingDeviceVulkan::draw_list_set_blend_constants(DrawListID p_list, const Color &p_color) {
  6013. DrawList *dl = _get_draw_list_ptr(p_list);
  6014. ERR_FAIL_COND(!dl);
  6015. #ifdef DEBUG_ENABLED
  6016. ERR_FAIL_COND_MSG(!dl->validation.active, "Submitted Draw Lists can no longer be modified.");
  6017. #endif
  6018. vkCmdSetBlendConstants(dl->command_buffer, p_color.components);
  6019. }
  6020. void RenderingDeviceVulkan::draw_list_bind_render_pipeline(DrawListID p_list, RID p_render_pipeline) {
  6021. DrawList *dl = _get_draw_list_ptr(p_list);
  6022. ERR_FAIL_COND(!dl);
  6023. #ifdef DEBUG_ENABLED
  6024. ERR_FAIL_COND_MSG(!dl->validation.active, "Submitted Draw Lists can no longer be modified.");
  6025. #endif
  6026. const RenderPipeline *pipeline = render_pipeline_owner.get_or_null(p_render_pipeline);
  6027. ERR_FAIL_COND(!pipeline);
  6028. #ifdef DEBUG_ENABLED
  6029. ERR_FAIL_COND(pipeline->validation.framebuffer_format != draw_list_framebuffer_format && pipeline->validation.render_pass != draw_list_current_subpass);
  6030. #endif
  6031. if (p_render_pipeline == dl->state.pipeline) {
  6032. return; // Redundant state, return.
  6033. }
  6034. dl->state.pipeline = p_render_pipeline;
  6035. dl->state.pipeline_layout = pipeline->pipeline_layout;
  6036. vkCmdBindPipeline(dl->command_buffer, VK_PIPELINE_BIND_POINT_GRAPHICS, pipeline->pipeline);
  6037. if (dl->state.pipeline_shader != pipeline->shader) {
  6038. // Shader changed, so descriptor sets may become incompatible.
  6039. // Go through ALL sets, and unbind them (and all those above) if the format is different.
  6040. uint32_t pcount = pipeline->set_formats.size(); // Formats count in this pipeline.
  6041. dl->state.set_count = MAX(dl->state.set_count, pcount);
  6042. const uint32_t *pformats = pipeline->set_formats.ptr(); // Pipeline set formats.
  6043. bool sets_valid = true; // Once invalid, all above become invalid.
  6044. for (uint32_t i = 0; i < pcount; i++) {
  6045. // If a part of the format is different, invalidate it (and the rest).
  6046. if (!sets_valid || dl->state.sets[i].pipeline_expected_format != pformats[i]) {
  6047. dl->state.sets[i].bound = false;
  6048. dl->state.sets[i].pipeline_expected_format = pformats[i];
  6049. sets_valid = false;
  6050. }
  6051. }
  6052. for (uint32_t i = pcount; i < dl->state.set_count; i++) {
  6053. // Unbind the ones above (not used) if exist.
  6054. dl->state.sets[i].bound = false;
  6055. }
  6056. dl->state.set_count = pcount; // Update set count.
  6057. if (pipeline->push_constant_size) {
  6058. dl->state.pipeline_push_constant_stages = pipeline->push_constant_stages_mask;
  6059. #ifdef DEBUG_ENABLED
  6060. dl->validation.pipeline_push_constant_supplied = false;
  6061. #endif
  6062. }
  6063. dl->state.pipeline_shader = pipeline->shader;
  6064. }
  6065. #ifdef DEBUG_ENABLED
  6066. // Update render pass pipeline info.
  6067. dl->validation.pipeline_active = true;
  6068. dl->validation.pipeline_dynamic_state = pipeline->validation.dynamic_state;
  6069. dl->validation.pipeline_vertex_format = pipeline->validation.vertex_format;
  6070. dl->validation.pipeline_uses_restart_indices = pipeline->validation.uses_restart_indices;
  6071. dl->validation.pipeline_primitive_divisor = pipeline->validation.primitive_divisor;
  6072. dl->validation.pipeline_primitive_minimum = pipeline->validation.primitive_minimum;
  6073. dl->validation.pipeline_push_constant_size = pipeline->push_constant_size;
  6074. #endif
  6075. }
  6076. void RenderingDeviceVulkan::draw_list_bind_uniform_set(DrawListID p_list, RID p_uniform_set, uint32_t p_index) {
  6077. #ifdef DEBUG_ENABLED
  6078. ERR_FAIL_COND_MSG(p_index >= limits.maxBoundDescriptorSets || p_index >= MAX_UNIFORM_SETS,
  6079. "Attempting to bind a descriptor set (" + itos(p_index) + ") greater than what the hardware supports (" + itos(limits.maxBoundDescriptorSets) + ").");
  6080. #endif
  6081. DrawList *dl = _get_draw_list_ptr(p_list);
  6082. ERR_FAIL_COND(!dl);
  6083. #ifdef DEBUG_ENABLED
  6084. ERR_FAIL_COND_MSG(!dl->validation.active, "Submitted Draw Lists can no longer be modified.");
  6085. #endif
  6086. const UniformSet *uniform_set = uniform_set_owner.get_or_null(p_uniform_set);
  6087. ERR_FAIL_COND(!uniform_set);
  6088. if (p_index > dl->state.set_count) {
  6089. dl->state.set_count = p_index;
  6090. }
  6091. dl->state.sets[p_index].descriptor_set = uniform_set->descriptor_set; // Update set pointer.
  6092. dl->state.sets[p_index].bound = false; // Needs rebind.
  6093. dl->state.sets[p_index].uniform_set_format = uniform_set->format;
  6094. dl->state.sets[p_index].uniform_set = p_uniform_set;
  6095. uint32_t mst_count = uniform_set->mutable_storage_textures.size();
  6096. if (mst_count) {
  6097. Texture **mst_textures = const_cast<UniformSet *>(uniform_set)->mutable_storage_textures.ptrw();
  6098. for (uint32_t i = 0; i < mst_count; i++) {
  6099. if (mst_textures[i]->used_in_frame != frames_drawn) {
  6100. mst_textures[i]->used_in_frame = frames_drawn;
  6101. mst_textures[i]->used_in_transfer = false;
  6102. mst_textures[i]->used_in_compute = false;
  6103. }
  6104. mst_textures[i]->used_in_raster = true;
  6105. }
  6106. }
  6107. #ifdef DEBUG_ENABLED
  6108. { // Validate that textures bound are not attached as framebuffer bindings.
  6109. uint32_t attachable_count = uniform_set->attachable_textures.size();
  6110. const UniformSet::AttachableTexture *attachable_ptr = uniform_set->attachable_textures.ptr();
  6111. uint32_t bound_count = draw_list_bound_textures.size();
  6112. const RID *bound_ptr = draw_list_bound_textures.ptr();
  6113. for (uint32_t i = 0; i < attachable_count; i++) {
  6114. for (uint32_t j = 0; j < bound_count; j++) {
  6115. ERR_FAIL_COND_MSG(attachable_ptr[i].texture == bound_ptr[j],
  6116. "Attempted to use the same texture in framebuffer attachment and a uniform (set: " + itos(p_index) + ", binding: " + itos(attachable_ptr[i].bind) + "), this is not allowed.");
  6117. }
  6118. }
  6119. }
  6120. #endif
  6121. }
  6122. void RenderingDeviceVulkan::draw_list_bind_vertex_array(DrawListID p_list, RID p_vertex_array) {
  6123. DrawList *dl = _get_draw_list_ptr(p_list);
  6124. ERR_FAIL_COND(!dl);
  6125. #ifdef DEBUG_ENABLED
  6126. ERR_FAIL_COND_MSG(!dl->validation.active, "Submitted Draw Lists can no longer be modified.");
  6127. #endif
  6128. const VertexArray *vertex_array = vertex_array_owner.get_or_null(p_vertex_array);
  6129. ERR_FAIL_COND(!vertex_array);
  6130. if (dl->state.vertex_array == p_vertex_array) {
  6131. return; // Already set.
  6132. }
  6133. dl->state.vertex_array = p_vertex_array;
  6134. #ifdef DEBUG_ENABLED
  6135. dl->validation.vertex_format = vertex_array->description;
  6136. dl->validation.vertex_max_instances_allowed = vertex_array->max_instances_allowed;
  6137. #endif
  6138. dl->validation.vertex_array_size = vertex_array->vertex_count;
  6139. vkCmdBindVertexBuffers(dl->command_buffer, 0, vertex_array->buffers.size(), vertex_array->buffers.ptr(), vertex_array->offsets.ptr());
  6140. }
  6141. void RenderingDeviceVulkan::draw_list_bind_index_array(DrawListID p_list, RID p_index_array) {
  6142. DrawList *dl = _get_draw_list_ptr(p_list);
  6143. ERR_FAIL_COND(!dl);
  6144. #ifdef DEBUG_ENABLED
  6145. ERR_FAIL_COND_MSG(!dl->validation.active, "Submitted Draw Lists can no longer be modified.");
  6146. #endif
  6147. const IndexArray *index_array = index_array_owner.get_or_null(p_index_array);
  6148. ERR_FAIL_COND(!index_array);
  6149. if (dl->state.index_array == p_index_array) {
  6150. return; // Already set.
  6151. }
  6152. dl->state.index_array = p_index_array;
  6153. #ifdef DEBUG_ENABLED
  6154. dl->validation.index_array_max_index = index_array->max_index;
  6155. #endif
  6156. dl->validation.index_array_size = index_array->indices;
  6157. dl->validation.index_array_offset = index_array->offset;
  6158. vkCmdBindIndexBuffer(dl->command_buffer, index_array->buffer, 0, index_array->index_type);
  6159. }
  6160. void RenderingDeviceVulkan::draw_list_set_line_width(DrawListID p_list, float p_width) {
  6161. DrawList *dl = _get_draw_list_ptr(p_list);
  6162. ERR_FAIL_COND(!dl);
  6163. #ifdef DEBUG_ENABLED
  6164. ERR_FAIL_COND_MSG(!dl->validation.active, "Submitted Draw Lists can no longer be modified.");
  6165. #endif
  6166. vkCmdSetLineWidth(dl->command_buffer, p_width);
  6167. }
  6168. void RenderingDeviceVulkan::draw_list_set_push_constant(DrawListID p_list, const void *p_data, uint32_t p_data_size) {
  6169. DrawList *dl = _get_draw_list_ptr(p_list);
  6170. ERR_FAIL_COND(!dl);
  6171. #ifdef DEBUG_ENABLED
  6172. ERR_FAIL_COND_MSG(!dl->validation.active, "Submitted Draw Lists can no longer be modified.");
  6173. #endif
  6174. #ifdef DEBUG_ENABLED
  6175. ERR_FAIL_COND_MSG(p_data_size != dl->validation.pipeline_push_constant_size,
  6176. "This render pipeline requires (" + itos(dl->validation.pipeline_push_constant_size) + ") bytes of push constant data, supplied: (" + itos(p_data_size) + ")");
  6177. #endif
  6178. vkCmdPushConstants(dl->command_buffer, dl->state.pipeline_layout, dl->state.pipeline_push_constant_stages, 0, p_data_size, p_data);
  6179. #ifdef DEBUG_ENABLED
  6180. dl->validation.pipeline_push_constant_supplied = true;
  6181. #endif
  6182. }
  6183. void RenderingDeviceVulkan::draw_list_draw(DrawListID p_list, bool p_use_indices, uint32_t p_instances, uint32_t p_procedural_vertices) {
  6184. DrawList *dl = _get_draw_list_ptr(p_list);
  6185. ERR_FAIL_COND(!dl);
  6186. #ifdef DEBUG_ENABLED
  6187. ERR_FAIL_COND_MSG(!dl->validation.active, "Submitted Draw Lists can no longer be modified.");
  6188. #endif
  6189. #ifdef DEBUG_ENABLED
  6190. ERR_FAIL_COND_MSG(!dl->validation.pipeline_active,
  6191. "No render pipeline was set before attempting to draw.");
  6192. if (dl->validation.pipeline_vertex_format != INVALID_ID) {
  6193. // Pipeline uses vertices, validate format.
  6194. ERR_FAIL_COND_MSG(dl->validation.vertex_format == INVALID_ID,
  6195. "No vertex array was bound, and render pipeline expects vertices.");
  6196. // Make sure format is right.
  6197. ERR_FAIL_COND_MSG(dl->validation.pipeline_vertex_format != dl->validation.vertex_format,
  6198. "The vertex format used to create the pipeline does not match the vertex format bound.");
  6199. // Make sure number of instances is valid.
  6200. ERR_FAIL_COND_MSG(p_instances > dl->validation.vertex_max_instances_allowed,
  6201. "Number of instances requested (" + itos(p_instances) + " is larger than the maximum number supported by the bound vertex array (" + itos(dl->validation.vertex_max_instances_allowed) + ").");
  6202. }
  6203. if (dl->validation.pipeline_push_constant_size > 0) {
  6204. // Using push constants, check that they were supplied.
  6205. ERR_FAIL_COND_MSG(!dl->validation.pipeline_push_constant_supplied,
  6206. "The shader in this pipeline requires a push constant to be set before drawing, but it's not present.");
  6207. }
  6208. #endif
  6209. // Bind descriptor sets.
  6210. for (uint32_t i = 0; i < dl->state.set_count; i++) {
  6211. if (dl->state.sets[i].pipeline_expected_format == 0) {
  6212. continue; // Nothing expected by this pipeline.
  6213. }
  6214. #ifdef DEBUG_ENABLED
  6215. if (dl->state.sets[i].pipeline_expected_format != dl->state.sets[i].uniform_set_format) {
  6216. if (dl->state.sets[i].uniform_set_format == 0) {
  6217. ERR_FAIL_MSG("Uniforms were never supplied for set (" + itos(i) + ") at the time of drawing, which are required by the pipeline");
  6218. } else if (uniform_set_owner.owns(dl->state.sets[i].uniform_set)) {
  6219. UniformSet *us = uniform_set_owner.get_or_null(dl->state.sets[i].uniform_set);
  6220. ERR_FAIL_MSG("Uniforms supplied for set (" + itos(i) + "):\n" + _shader_uniform_debug(us->shader_id, us->shader_set) + "\nare not the same format as required by the pipeline shader. Pipeline shader requires the following bindings:\n" + _shader_uniform_debug(dl->state.pipeline_shader));
  6221. } else {
  6222. ERR_FAIL_MSG("Uniforms supplied for set (" + itos(i) + ", which was was just freed) are not the same format as required by the pipeline shader. Pipeline shader requires the following bindings:\n" + _shader_uniform_debug(dl->state.pipeline_shader));
  6223. }
  6224. }
  6225. #endif
  6226. if (!dl->state.sets[i].bound) {
  6227. // All good, see if this requires re-binding.
  6228. vkCmdBindDescriptorSets(dl->command_buffer, VK_PIPELINE_BIND_POINT_GRAPHICS, dl->state.pipeline_layout, i, 1, &dl->state.sets[i].descriptor_set, 0, nullptr);
  6229. dl->state.sets[i].bound = true;
  6230. }
  6231. }
  6232. if (p_use_indices) {
  6233. #ifdef DEBUG_ENABLED
  6234. ERR_FAIL_COND_MSG(p_procedural_vertices > 0,
  6235. "Procedural vertices can't be used together with indices.");
  6236. ERR_FAIL_COND_MSG(!dl->validation.index_array_size,
  6237. "Draw command requested indices, but no index buffer was set.");
  6238. ERR_FAIL_COND_MSG(dl->validation.pipeline_uses_restart_indices != dl->validation.index_buffer_uses_restart_indices,
  6239. "The usage of restart indices in index buffer does not match the render primitive in the pipeline.");
  6240. #endif
  6241. uint32_t to_draw = dl->validation.index_array_size;
  6242. #ifdef DEBUG_ENABLED
  6243. ERR_FAIL_COND_MSG(to_draw < dl->validation.pipeline_primitive_minimum,
  6244. "Too few indices (" + itos(to_draw) + ") for the render primitive set in the render pipeline (" + itos(dl->validation.pipeline_primitive_minimum) + ").");
  6245. ERR_FAIL_COND_MSG((to_draw % dl->validation.pipeline_primitive_divisor) != 0,
  6246. "Index amount (" + itos(to_draw) + ") must be a multiple of the amount of indices required by the render primitive (" + itos(dl->validation.pipeline_primitive_divisor) + ").");
  6247. #endif
  6248. vkCmdDrawIndexed(dl->command_buffer, to_draw, p_instances, dl->validation.index_array_offset, 0, 0);
  6249. } else {
  6250. uint32_t to_draw;
  6251. if (p_procedural_vertices > 0) {
  6252. #ifdef DEBUG_ENABLED
  6253. ERR_FAIL_COND_MSG(dl->validation.pipeline_vertex_format != INVALID_ID,
  6254. "Procedural vertices requested, but pipeline expects a vertex array.");
  6255. #endif
  6256. to_draw = p_procedural_vertices;
  6257. } else {
  6258. #ifdef DEBUG_ENABLED
  6259. ERR_FAIL_COND_MSG(dl->validation.pipeline_vertex_format == INVALID_ID,
  6260. "Draw command lacks indices, but pipeline format does not use vertices.");
  6261. #endif
  6262. to_draw = dl->validation.vertex_array_size;
  6263. }
  6264. #ifdef DEBUG_ENABLED
  6265. ERR_FAIL_COND_MSG(to_draw < dl->validation.pipeline_primitive_minimum,
  6266. "Too few vertices (" + itos(to_draw) + ") for the render primitive set in the render pipeline (" + itos(dl->validation.pipeline_primitive_minimum) + ").");
  6267. ERR_FAIL_COND_MSG((to_draw % dl->validation.pipeline_primitive_divisor) != 0,
  6268. "Vertex amount (" + itos(to_draw) + ") must be a multiple of the amount of vertices required by the render primitive (" + itos(dl->validation.pipeline_primitive_divisor) + ").");
  6269. #endif
  6270. vkCmdDraw(dl->command_buffer, to_draw, p_instances, 0, 0);
  6271. }
  6272. }
  6273. void RenderingDeviceVulkan::draw_list_enable_scissor(DrawListID p_list, const Rect2 &p_rect) {
  6274. DrawList *dl = _get_draw_list_ptr(p_list);
  6275. ERR_FAIL_COND(!dl);
  6276. #ifdef DEBUG_ENABLED
  6277. ERR_FAIL_COND_MSG(!dl->validation.active, "Submitted Draw Lists can no longer be modified.");
  6278. #endif
  6279. Rect2i rect = p_rect;
  6280. rect.position += dl->viewport.position;
  6281. rect = dl->viewport.intersection(rect);
  6282. if (rect.get_area() == 0) {
  6283. return;
  6284. }
  6285. VkRect2D scissor;
  6286. scissor.offset.x = rect.position.x;
  6287. scissor.offset.y = rect.position.y;
  6288. scissor.extent.width = rect.size.width;
  6289. scissor.extent.height = rect.size.height;
  6290. vkCmdSetScissor(dl->command_buffer, 0, 1, &scissor);
  6291. }
  6292. void RenderingDeviceVulkan::draw_list_disable_scissor(DrawListID p_list) {
  6293. DrawList *dl = _get_draw_list_ptr(p_list);
  6294. ERR_FAIL_COND(!dl);
  6295. #ifdef DEBUG_ENABLED
  6296. ERR_FAIL_COND_MSG(!dl->validation.active, "Submitted Draw Lists can no longer be modified.");
  6297. #endif
  6298. VkRect2D scissor;
  6299. scissor.offset.x = dl->viewport.position.x;
  6300. scissor.offset.y = dl->viewport.position.y;
  6301. scissor.extent.width = dl->viewport.size.width;
  6302. scissor.extent.height = dl->viewport.size.height;
  6303. vkCmdSetScissor(dl->command_buffer, 0, 1, &scissor);
  6304. }
  6305. uint32_t RenderingDeviceVulkan::draw_list_get_current_pass() {
  6306. return draw_list_current_subpass;
  6307. }
  6308. RenderingDevice::DrawListID RenderingDeviceVulkan::draw_list_switch_to_next_pass() {
  6309. ERR_FAIL_COND_V(draw_list == nullptr, INVALID_ID);
  6310. ERR_FAIL_COND_V(draw_list_current_subpass >= draw_list_subpass_count - 1, INVALID_FORMAT_ID);
  6311. draw_list_current_subpass++;
  6312. Rect2i viewport;
  6313. _draw_list_free(&viewport);
  6314. vkCmdNextSubpass(frames[frame].draw_command_buffer, VK_SUBPASS_CONTENTS_INLINE);
  6315. _draw_list_allocate(viewport, 0, draw_list_current_subpass);
  6316. return int64_t(ID_TYPE_DRAW_LIST) << ID_BASE_SHIFT;
  6317. }
  6318. Error RenderingDeviceVulkan::draw_list_switch_to_next_pass_split(uint32_t p_splits, DrawListID *r_split_ids) {
  6319. ERR_FAIL_COND_V(draw_list == nullptr, ERR_INVALID_PARAMETER);
  6320. ERR_FAIL_COND_V(draw_list_current_subpass >= draw_list_subpass_count - 1, ERR_INVALID_PARAMETER);
  6321. draw_list_current_subpass++;
  6322. Rect2i viewport;
  6323. _draw_list_free(&viewport);
  6324. vkCmdNextSubpass(frames[frame].draw_command_buffer, VK_SUBPASS_CONTENTS_INLINE);
  6325. _draw_list_allocate(viewport, p_splits, draw_list_current_subpass);
  6326. for (uint32_t i = 0; i < p_splits; i++) {
  6327. r_split_ids[i] = (int64_t(ID_TYPE_SPLIT_DRAW_LIST) << ID_BASE_SHIFT) + i;
  6328. }
  6329. return OK;
  6330. }
  6331. Error RenderingDeviceVulkan::_draw_list_allocate(const Rect2i &p_viewport, uint32_t p_splits, uint32_t p_subpass) {
  6332. // Lock while draw_list is active.
  6333. _THREAD_SAFE_LOCK_
  6334. if (p_splits == 0) {
  6335. draw_list = memnew(DrawList);
  6336. draw_list->command_buffer = frames[frame].draw_command_buffer;
  6337. draw_list->viewport = p_viewport;
  6338. draw_list_count = 0;
  6339. draw_list_split = false;
  6340. } else {
  6341. if (p_splits > (uint32_t)split_draw_list_allocators.size()) {
  6342. uint32_t from = split_draw_list_allocators.size();
  6343. split_draw_list_allocators.resize(p_splits);
  6344. for (uint32_t i = from; i < p_splits; i++) {
  6345. VkCommandPoolCreateInfo cmd_pool_info;
  6346. cmd_pool_info.sType = VK_STRUCTURE_TYPE_COMMAND_POOL_CREATE_INFO;
  6347. cmd_pool_info.pNext = nullptr;
  6348. cmd_pool_info.queueFamilyIndex = context->get_graphics_queue_family_index();
  6349. cmd_pool_info.flags = VK_COMMAND_POOL_CREATE_RESET_COMMAND_BUFFER_BIT;
  6350. VkResult res = vkCreateCommandPool(device, &cmd_pool_info, nullptr, &split_draw_list_allocators.write[i].command_pool);
  6351. ERR_FAIL_COND_V_MSG(res, ERR_CANT_CREATE, "vkCreateCommandPool failed with error " + itos(res) + ".");
  6352. for (int j = 0; j < frame_count; j++) {
  6353. VkCommandBuffer command_buffer;
  6354. VkCommandBufferAllocateInfo cmdbuf;
  6355. // No command buffer exists, create it.
  6356. cmdbuf.sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_ALLOCATE_INFO;
  6357. cmdbuf.pNext = nullptr;
  6358. cmdbuf.commandPool = split_draw_list_allocators[i].command_pool;
  6359. cmdbuf.level = VK_COMMAND_BUFFER_LEVEL_SECONDARY;
  6360. cmdbuf.commandBufferCount = 1;
  6361. VkResult err = vkAllocateCommandBuffers(device, &cmdbuf, &command_buffer);
  6362. ERR_FAIL_COND_V_MSG(err, ERR_CANT_CREATE, "vkAllocateCommandBuffers failed with error " + itos(err) + ".");
  6363. split_draw_list_allocators.write[i].command_buffers.push_back(command_buffer);
  6364. }
  6365. }
  6366. }
  6367. draw_list = memnew_arr(DrawList, p_splits);
  6368. draw_list_count = p_splits;
  6369. draw_list_split = true;
  6370. for (uint32_t i = 0; i < p_splits; i++) {
  6371. // Take a command buffer and initialize it.
  6372. VkCommandBuffer command_buffer = split_draw_list_allocators[i].command_buffers[frame];
  6373. VkCommandBufferInheritanceInfo inheritance_info;
  6374. inheritance_info.sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_INHERITANCE_INFO;
  6375. inheritance_info.pNext = nullptr;
  6376. inheritance_info.renderPass = draw_list_render_pass;
  6377. inheritance_info.subpass = p_subpass;
  6378. inheritance_info.framebuffer = draw_list_vkframebuffer;
  6379. inheritance_info.occlusionQueryEnable = false;
  6380. inheritance_info.queryFlags = 0; // ?
  6381. inheritance_info.pipelineStatistics = 0;
  6382. VkCommandBufferBeginInfo cmdbuf_begin;
  6383. cmdbuf_begin.sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_BEGIN_INFO;
  6384. cmdbuf_begin.pNext = nullptr;
  6385. cmdbuf_begin.flags = VK_COMMAND_BUFFER_USAGE_SIMULTANEOUS_USE_BIT | VK_COMMAND_BUFFER_USAGE_RENDER_PASS_CONTINUE_BIT;
  6386. cmdbuf_begin.pInheritanceInfo = &inheritance_info;
  6387. VkResult res = vkResetCommandBuffer(command_buffer, 0);
  6388. if (res) {
  6389. memdelete_arr(draw_list);
  6390. draw_list = nullptr;
  6391. ERR_FAIL_V_MSG(ERR_CANT_CREATE, "vkResetCommandBuffer failed with error " + itos(res) + ".");
  6392. }
  6393. res = vkBeginCommandBuffer(command_buffer, &cmdbuf_begin);
  6394. if (res) {
  6395. memdelete_arr(draw_list);
  6396. draw_list = nullptr;
  6397. ERR_FAIL_V_MSG(ERR_CANT_CREATE, "vkBeginCommandBuffer failed with error " + itos(res) + ".");
  6398. }
  6399. draw_list[i].command_buffer = command_buffer;
  6400. draw_list[i].viewport = p_viewport;
  6401. }
  6402. }
  6403. return OK;
  6404. }
  6405. void RenderingDeviceVulkan::_draw_list_free(Rect2i *r_last_viewport) {
  6406. if (draw_list_split) {
  6407. // Send all command buffers.
  6408. VkCommandBuffer *command_buffers = (VkCommandBuffer *)alloca(sizeof(VkCommandBuffer) * draw_list_count);
  6409. for (uint32_t i = 0; i < draw_list_count; i++) {
  6410. vkEndCommandBuffer(draw_list[i].command_buffer);
  6411. command_buffers[i] = draw_list[i].command_buffer;
  6412. if (r_last_viewport) {
  6413. if (i == 0 || draw_list[i].viewport_set) {
  6414. *r_last_viewport = draw_list[i].viewport;
  6415. }
  6416. }
  6417. }
  6418. vkCmdExecuteCommands(frames[frame].draw_command_buffer, draw_list_count, command_buffers);
  6419. memdelete_arr(draw_list);
  6420. draw_list = nullptr;
  6421. } else {
  6422. if (r_last_viewport) {
  6423. *r_last_viewport = draw_list->viewport;
  6424. }
  6425. // Just end the list.
  6426. memdelete(draw_list);
  6427. draw_list = nullptr;
  6428. }
  6429. // Draw_list is no longer active.
  6430. _THREAD_SAFE_UNLOCK_
  6431. }
  6432. void RenderingDeviceVulkan::draw_list_end(BitField<BarrierMask> p_post_barrier) {
  6433. _THREAD_SAFE_METHOD_
  6434. ERR_FAIL_COND_MSG(!draw_list, "Immediate draw list is already inactive.");
  6435. _draw_list_free();
  6436. vkCmdEndRenderPass(frames[frame].draw_command_buffer);
  6437. for (int i = 0; i < draw_list_bound_textures.size(); i++) {
  6438. Texture *texture = texture_owner.get_or_null(draw_list_bound_textures[i]);
  6439. ERR_CONTINUE(!texture); // Wtf.
  6440. if (draw_list_unbind_color_textures && (texture->usage_flags & TEXTURE_USAGE_COLOR_ATTACHMENT_BIT)) {
  6441. texture->bound = false;
  6442. }
  6443. if (draw_list_unbind_depth_textures && (texture->usage_flags & TEXTURE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT)) {
  6444. texture->bound = false;
  6445. }
  6446. }
  6447. uint32_t barrier_flags = 0;
  6448. uint32_t access_flags = 0;
  6449. if (p_post_barrier.has_flag(BARRIER_MASK_COMPUTE)) {
  6450. barrier_flags |= VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  6451. access_flags |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  6452. }
  6453. if (p_post_barrier.has_flag(BARRIER_MASK_RASTER)) {
  6454. barrier_flags |= VK_PIPELINE_STAGE_VERTEX_INPUT_BIT | VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT /*| VK_PIPELINE_STAGE_DRAW_INDIRECT_BIT*/;
  6455. access_flags |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT | VK_ACCESS_INDEX_READ_BIT | VK_ACCESS_VERTEX_ATTRIBUTE_READ_BIT /*| VK_ACCESS_INDIRECT_COMMAND_READ_BIT*/;
  6456. }
  6457. if (p_post_barrier.has_flag(BARRIER_MASK_TRANSFER)) {
  6458. barrier_flags |= VK_PIPELINE_STAGE_TRANSFER_BIT;
  6459. access_flags |= VK_ACCESS_TRANSFER_WRITE_BIT | VK_ACCESS_TRANSFER_READ_BIT;
  6460. }
  6461. if (barrier_flags == 0) {
  6462. barrier_flags = VK_PIPELINE_STAGE_BOTTOM_OF_PIPE_BIT;
  6463. }
  6464. draw_list_bound_textures.clear();
  6465. VkImageMemoryBarrier *image_barriers = nullptr;
  6466. uint32_t image_barrier_count = draw_list_storage_textures.size();
  6467. if (image_barrier_count) {
  6468. image_barriers = (VkImageMemoryBarrier *)alloca(sizeof(VkImageMemoryBarrier) * draw_list_storage_textures.size());
  6469. }
  6470. uint32_t src_stage = VK_PIPELINE_STAGE_COLOR_ATTACHMENT_OUTPUT_BIT | VK_PIPELINE_STAGE_LATE_FRAGMENT_TESTS_BIT;
  6471. uint32_t src_access = VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_WRITE_BIT | VK_ACCESS_COLOR_ATTACHMENT_WRITE_BIT;
  6472. if (image_barrier_count) {
  6473. src_stage |= VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT;
  6474. src_access |= VK_ACCESS_SHADER_WRITE_BIT;
  6475. }
  6476. for (uint32_t i = 0; i < image_barrier_count; i++) {
  6477. Texture *texture = texture_owner.get_or_null(draw_list_storage_textures[i]);
  6478. VkImageMemoryBarrier &image_memory_barrier = image_barriers[i];
  6479. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  6480. image_memory_barrier.pNext = nullptr;
  6481. image_memory_barrier.srcAccessMask = src_access;
  6482. image_memory_barrier.dstAccessMask = access_flags;
  6483. image_memory_barrier.oldLayout = texture->layout;
  6484. image_memory_barrier.newLayout = VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL;
  6485. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  6486. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  6487. image_memory_barrier.image = texture->image;
  6488. image_memory_barrier.subresourceRange.aspectMask = texture->read_aspect_mask;
  6489. image_memory_barrier.subresourceRange.baseMipLevel = texture->base_mipmap;
  6490. image_memory_barrier.subresourceRange.levelCount = texture->mipmaps;
  6491. image_memory_barrier.subresourceRange.baseArrayLayer = texture->base_layer;
  6492. image_memory_barrier.subresourceRange.layerCount = texture->layers;
  6493. texture->layout = VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL;
  6494. }
  6495. draw_list_storage_textures.clear();
  6496. // To ensure proper synchronization, we must make sure rendering is done before:
  6497. // * Some buffer is copied.
  6498. // * Another render pass happens (since we may be done).
  6499. VkMemoryBarrier mem_barrier;
  6500. mem_barrier.sType = VK_STRUCTURE_TYPE_MEMORY_BARRIER;
  6501. mem_barrier.pNext = nullptr;
  6502. mem_barrier.srcAccessMask = src_access;
  6503. mem_barrier.dstAccessMask = access_flags;
  6504. if (image_barrier_count > 0 || p_post_barrier != BARRIER_MASK_NO_BARRIER) {
  6505. vkCmdPipelineBarrier(frames[frame].draw_command_buffer, src_stage, barrier_flags, 0, 1, &mem_barrier, 0, nullptr, image_barrier_count, image_barriers);
  6506. }
  6507. #ifdef FORCE_FULL_BARRIER
  6508. _full_barrier(true);
  6509. #endif
  6510. }
  6511. /***********************/
  6512. /**** COMPUTE LISTS ****/
  6513. /***********************/
  6514. RenderingDevice::ComputeListID RenderingDeviceVulkan::compute_list_begin(bool p_allow_draw_overlap) {
  6515. ERR_FAIL_COND_V_MSG(!p_allow_draw_overlap && draw_list != nullptr, INVALID_ID, "Only one draw list can be active at the same time.");
  6516. ERR_FAIL_COND_V_MSG(compute_list != nullptr, INVALID_ID, "Only one draw/compute list can be active at the same time.");
  6517. // Lock while compute_list is active.
  6518. _THREAD_SAFE_LOCK_
  6519. compute_list = memnew(ComputeList);
  6520. compute_list->command_buffer = frames[frame].draw_command_buffer;
  6521. compute_list->state.allow_draw_overlap = p_allow_draw_overlap;
  6522. return ID_TYPE_COMPUTE_LIST;
  6523. }
  6524. void RenderingDeviceVulkan::compute_list_bind_compute_pipeline(ComputeListID p_list, RID p_compute_pipeline) {
  6525. ERR_FAIL_COND(p_list != ID_TYPE_COMPUTE_LIST);
  6526. ERR_FAIL_COND(!compute_list);
  6527. ComputeList *cl = compute_list;
  6528. const ComputePipeline *pipeline = compute_pipeline_owner.get_or_null(p_compute_pipeline);
  6529. ERR_FAIL_COND(!pipeline);
  6530. if (p_compute_pipeline == cl->state.pipeline) {
  6531. return; // Redundant state, return.
  6532. }
  6533. cl->state.pipeline = p_compute_pipeline;
  6534. cl->state.pipeline_layout = pipeline->pipeline_layout;
  6535. vkCmdBindPipeline(cl->command_buffer, VK_PIPELINE_BIND_POINT_COMPUTE, pipeline->pipeline);
  6536. if (cl->state.pipeline_shader != pipeline->shader) {
  6537. // Shader changed, so descriptor sets may become incompatible.
  6538. // Go through ALL sets, and unbind them (and all those above) if the format is different.
  6539. uint32_t pcount = pipeline->set_formats.size(); // Formats count in this pipeline.
  6540. cl->state.set_count = MAX(cl->state.set_count, pcount);
  6541. const uint32_t *pformats = pipeline->set_formats.ptr(); // Pipeline set formats.
  6542. bool sets_valid = true; // Once invalid, all above become invalid.
  6543. for (uint32_t i = 0; i < pcount; i++) {
  6544. // If a part of the format is different, invalidate it (and the rest).
  6545. if (!sets_valid || cl->state.sets[i].pipeline_expected_format != pformats[i]) {
  6546. cl->state.sets[i].bound = false;
  6547. cl->state.sets[i].pipeline_expected_format = pformats[i];
  6548. sets_valid = false;
  6549. }
  6550. }
  6551. for (uint32_t i = pcount; i < cl->state.set_count; i++) {
  6552. // Unbind the ones above (not used) if exist.
  6553. cl->state.sets[i].bound = false;
  6554. }
  6555. cl->state.set_count = pcount; // Update set count.
  6556. if (pipeline->push_constant_size) {
  6557. cl->state.pipeline_push_constant_stages = pipeline->push_constant_stages_mask;
  6558. #ifdef DEBUG_ENABLED
  6559. cl->validation.pipeline_push_constant_supplied = false;
  6560. #endif
  6561. }
  6562. cl->state.pipeline_shader = pipeline->shader;
  6563. cl->state.local_group_size[0] = pipeline->local_group_size[0];
  6564. cl->state.local_group_size[1] = pipeline->local_group_size[1];
  6565. cl->state.local_group_size[2] = pipeline->local_group_size[2];
  6566. }
  6567. #ifdef DEBUG_ENABLED
  6568. // Update compute pass pipeline info.
  6569. cl->validation.pipeline_active = true;
  6570. cl->validation.pipeline_push_constant_size = pipeline->push_constant_size;
  6571. #endif
  6572. }
  6573. void RenderingDeviceVulkan::compute_list_bind_uniform_set(ComputeListID p_list, RID p_uniform_set, uint32_t p_index) {
  6574. ERR_FAIL_COND(p_list != ID_TYPE_COMPUTE_LIST);
  6575. ERR_FAIL_COND(!compute_list);
  6576. ComputeList *cl = compute_list;
  6577. #ifdef DEBUG_ENABLED
  6578. ERR_FAIL_COND_MSG(p_index >= limits.maxBoundDescriptorSets || p_index >= MAX_UNIFORM_SETS,
  6579. "Attempting to bind a descriptor set (" + itos(p_index) + ") greater than what the hardware supports (" + itos(limits.maxBoundDescriptorSets) + ").");
  6580. #endif
  6581. #ifdef DEBUG_ENABLED
  6582. ERR_FAIL_COND_MSG(!cl->validation.active, "Submitted Compute Lists can no longer be modified.");
  6583. #endif
  6584. UniformSet *uniform_set = uniform_set_owner.get_or_null(p_uniform_set);
  6585. ERR_FAIL_COND(!uniform_set);
  6586. if (p_index > cl->state.set_count) {
  6587. cl->state.set_count = p_index;
  6588. }
  6589. cl->state.sets[p_index].descriptor_set = uniform_set->descriptor_set; // Update set pointer.
  6590. cl->state.sets[p_index].bound = false; // Needs rebind.
  6591. cl->state.sets[p_index].uniform_set_format = uniform_set->format;
  6592. cl->state.sets[p_index].uniform_set = p_uniform_set;
  6593. uint32_t textures_to_sampled_count = uniform_set->mutable_sampled_textures.size();
  6594. uint32_t textures_to_storage_count = uniform_set->mutable_storage_textures.size();
  6595. Texture **textures_to_sampled = uniform_set->mutable_sampled_textures.ptrw();
  6596. VkImageMemoryBarrier *texture_barriers = nullptr;
  6597. if (textures_to_sampled_count + textures_to_storage_count) {
  6598. texture_barriers = (VkImageMemoryBarrier *)alloca(sizeof(VkImageMemoryBarrier) * (textures_to_sampled_count + textures_to_storage_count));
  6599. }
  6600. uint32_t texture_barrier_count = 0;
  6601. uint32_t src_stage_flags = 0;
  6602. for (uint32_t i = 0; i < textures_to_sampled_count; i++) {
  6603. if (textures_to_sampled[i]->layout != VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL) {
  6604. src_stage_flags |= VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  6605. VkImageMemoryBarrier &image_memory_barrier = texture_barriers[texture_barrier_count++];
  6606. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  6607. image_memory_barrier.pNext = nullptr;
  6608. image_memory_barrier.srcAccessMask = VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  6609. image_memory_barrier.dstAccessMask = VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  6610. image_memory_barrier.oldLayout = textures_to_sampled[i]->layout;
  6611. image_memory_barrier.newLayout = VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL;
  6612. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  6613. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  6614. image_memory_barrier.image = textures_to_sampled[i]->image;
  6615. image_memory_barrier.subresourceRange.aspectMask = textures_to_sampled[i]->read_aspect_mask;
  6616. image_memory_barrier.subresourceRange.baseMipLevel = textures_to_sampled[i]->base_mipmap;
  6617. image_memory_barrier.subresourceRange.levelCount = textures_to_sampled[i]->mipmaps;
  6618. image_memory_barrier.subresourceRange.baseArrayLayer = textures_to_sampled[i]->base_layer;
  6619. image_memory_barrier.subresourceRange.layerCount = textures_to_sampled[i]->layers;
  6620. textures_to_sampled[i]->layout = VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL;
  6621. cl->state.textures_to_sampled_layout.erase(textures_to_sampled[i]);
  6622. }
  6623. if (textures_to_sampled[i]->used_in_frame != frames_drawn) {
  6624. textures_to_sampled[i]->used_in_frame = frames_drawn;
  6625. textures_to_sampled[i]->used_in_transfer = false;
  6626. textures_to_sampled[i]->used_in_raster = false;
  6627. }
  6628. textures_to_sampled[i]->used_in_compute = true;
  6629. }
  6630. Texture **textures_to_storage = uniform_set->mutable_storage_textures.ptrw();
  6631. for (uint32_t i = 0; i < textures_to_storage_count; i++) {
  6632. if (textures_to_storage[i]->layout != VK_IMAGE_LAYOUT_GENERAL) {
  6633. uint32_t src_access_flags = 0;
  6634. if (textures_to_storage[i]->used_in_frame == frames_drawn) {
  6635. if (textures_to_storage[i]->used_in_compute) {
  6636. src_stage_flags |= VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  6637. src_access_flags |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  6638. }
  6639. if (textures_to_storage[i]->used_in_raster) {
  6640. src_stage_flags |= VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT | VK_PIPELINE_STAGE_VERTEX_SHADER_BIT;
  6641. src_access_flags |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  6642. }
  6643. if (textures_to_storage[i]->used_in_transfer) {
  6644. src_stage_flags |= VK_PIPELINE_STAGE_TRANSFER_BIT;
  6645. src_access_flags |= VK_ACCESS_TRANSFER_WRITE_BIT | VK_ACCESS_TRANSFER_READ_BIT;
  6646. }
  6647. textures_to_storage[i]->used_in_compute = false;
  6648. textures_to_storage[i]->used_in_raster = false;
  6649. textures_to_storage[i]->used_in_transfer = false;
  6650. } else {
  6651. src_access_flags = 0;
  6652. textures_to_storage[i]->used_in_compute = false;
  6653. textures_to_storage[i]->used_in_raster = false;
  6654. textures_to_storage[i]->used_in_transfer = false;
  6655. textures_to_storage[i]->used_in_frame = frames_drawn;
  6656. }
  6657. VkImageMemoryBarrier &image_memory_barrier = texture_barriers[texture_barrier_count++];
  6658. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  6659. image_memory_barrier.pNext = nullptr;
  6660. image_memory_barrier.srcAccessMask = src_access_flags;
  6661. image_memory_barrier.dstAccessMask = VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  6662. image_memory_barrier.oldLayout = textures_to_storage[i]->layout;
  6663. image_memory_barrier.newLayout = VK_IMAGE_LAYOUT_GENERAL;
  6664. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  6665. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  6666. image_memory_barrier.image = textures_to_storage[i]->image;
  6667. image_memory_barrier.subresourceRange.aspectMask = textures_to_storage[i]->read_aspect_mask;
  6668. image_memory_barrier.subresourceRange.baseMipLevel = textures_to_storage[i]->base_mipmap;
  6669. image_memory_barrier.subresourceRange.levelCount = textures_to_storage[i]->mipmaps;
  6670. image_memory_barrier.subresourceRange.baseArrayLayer = textures_to_storage[i]->base_layer;
  6671. image_memory_barrier.subresourceRange.layerCount = textures_to_storage[i]->layers;
  6672. textures_to_storage[i]->layout = VK_IMAGE_LAYOUT_GENERAL;
  6673. cl->state.textures_to_sampled_layout.insert(textures_to_storage[i]); // Needs to go back to sampled layout afterwards.
  6674. }
  6675. }
  6676. if (texture_barrier_count) {
  6677. if (src_stage_flags == 0) {
  6678. src_stage_flags = VK_PIPELINE_STAGE_TOP_OF_PIPE_BIT;
  6679. }
  6680. vkCmdPipelineBarrier(cl->command_buffer, src_stage_flags, VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT, 0, 0, nullptr, 0, nullptr, texture_barrier_count, texture_barriers);
  6681. }
  6682. #if 0
  6683. { // Validate that textures bound are not attached as framebuffer bindings.
  6684. uint32_t attachable_count = uniform_set->attachable_textures.size();
  6685. const RID *attachable_ptr = uniform_set->attachable_textures.ptr();
  6686. uint32_t bound_count = draw_list_bound_textures.size();
  6687. const RID *bound_ptr = draw_list_bound_textures.ptr();
  6688. for (uint32_t i = 0; i < attachable_count; i++) {
  6689. for (uint32_t j = 0; j < bound_count; j++) {
  6690. ERR_FAIL_COND_MSG(attachable_ptr[i] == bound_ptr[j],
  6691. "Attempted to use the same texture in framebuffer attachment and a uniform set, this is not allowed.");
  6692. }
  6693. }
  6694. }
  6695. #endif
  6696. }
  6697. void RenderingDeviceVulkan::compute_list_set_push_constant(ComputeListID p_list, const void *p_data, uint32_t p_data_size) {
  6698. ERR_FAIL_COND(p_list != ID_TYPE_COMPUTE_LIST);
  6699. ERR_FAIL_COND(!compute_list);
  6700. ComputeList *cl = compute_list;
  6701. #ifdef DEBUG_ENABLED
  6702. ERR_FAIL_COND_MSG(!cl->validation.active, "Submitted Compute Lists can no longer be modified.");
  6703. #endif
  6704. #ifdef DEBUG_ENABLED
  6705. ERR_FAIL_COND_MSG(p_data_size != cl->validation.pipeline_push_constant_size,
  6706. "This compute pipeline requires (" + itos(cl->validation.pipeline_push_constant_size) + ") bytes of push constant data, supplied: (" + itos(p_data_size) + ")");
  6707. #endif
  6708. vkCmdPushConstants(cl->command_buffer, cl->state.pipeline_layout, cl->state.pipeline_push_constant_stages, 0, p_data_size, p_data);
  6709. #ifdef DEBUG_ENABLED
  6710. cl->validation.pipeline_push_constant_supplied = true;
  6711. #endif
  6712. }
  6713. void RenderingDeviceVulkan::compute_list_dispatch(ComputeListID p_list, uint32_t p_x_groups, uint32_t p_y_groups, uint32_t p_z_groups) {
  6714. ERR_FAIL_COND(p_list != ID_TYPE_COMPUTE_LIST);
  6715. ERR_FAIL_COND(!compute_list);
  6716. ComputeList *cl = compute_list;
  6717. #ifdef DEBUG_ENABLED
  6718. ERR_FAIL_COND_MSG(p_x_groups == 0, "Dispatch amount of X compute groups (" + itos(p_x_groups) + ") is zero.");
  6719. ERR_FAIL_COND_MSG(p_z_groups == 0, "Dispatch amount of Z compute groups (" + itos(p_z_groups) + ") is zero.");
  6720. ERR_FAIL_COND_MSG(p_y_groups == 0, "Dispatch amount of Y compute groups (" + itos(p_y_groups) + ") is zero.");
  6721. ERR_FAIL_COND_MSG(p_x_groups > limits.maxComputeWorkGroupCount[0],
  6722. "Dispatch amount of X compute groups (" + itos(p_x_groups) + ") is larger than device limit (" + itos(limits.maxComputeWorkGroupCount[0]) + ")");
  6723. ERR_FAIL_COND_MSG(p_y_groups > limits.maxComputeWorkGroupCount[1],
  6724. "Dispatch amount of Y compute groups (" + itos(p_y_groups) + ") is larger than device limit (" + itos(limits.maxComputeWorkGroupCount[1]) + ")");
  6725. ERR_FAIL_COND_MSG(p_z_groups > limits.maxComputeWorkGroupCount[2],
  6726. "Dispatch amount of Z compute groups (" + itos(p_z_groups) + ") is larger than device limit (" + itos(limits.maxComputeWorkGroupCount[2]) + ")");
  6727. ERR_FAIL_COND_MSG(!cl->validation.active, "Submitted Compute Lists can no longer be modified.");
  6728. #endif
  6729. #ifdef DEBUG_ENABLED
  6730. ERR_FAIL_COND_MSG(!cl->validation.pipeline_active, "No compute pipeline was set before attempting to draw.");
  6731. if (cl->validation.pipeline_push_constant_size > 0) {
  6732. // Using push constants, check that they were supplied.
  6733. ERR_FAIL_COND_MSG(!cl->validation.pipeline_push_constant_supplied,
  6734. "The shader in this pipeline requires a push constant to be set before drawing, but it's not present.");
  6735. }
  6736. #endif
  6737. // Bind descriptor sets.
  6738. for (uint32_t i = 0; i < cl->state.set_count; i++) {
  6739. if (cl->state.sets[i].pipeline_expected_format == 0) {
  6740. continue; // Nothing expected by this pipeline.
  6741. }
  6742. #ifdef DEBUG_ENABLED
  6743. if (cl->state.sets[i].pipeline_expected_format != cl->state.sets[i].uniform_set_format) {
  6744. if (cl->state.sets[i].uniform_set_format == 0) {
  6745. ERR_FAIL_MSG("Uniforms were never supplied for set (" + itos(i) + ") at the time of drawing, which are required by the pipeline");
  6746. } else if (uniform_set_owner.owns(cl->state.sets[i].uniform_set)) {
  6747. UniformSet *us = uniform_set_owner.get_or_null(cl->state.sets[i].uniform_set);
  6748. ERR_FAIL_MSG("Uniforms supplied for set (" + itos(i) + "):\n" + _shader_uniform_debug(us->shader_id, us->shader_set) + "\nare not the same format as required by the pipeline shader. Pipeline shader requires the following bindings:\n" + _shader_uniform_debug(cl->state.pipeline_shader));
  6749. } else {
  6750. ERR_FAIL_MSG("Uniforms supplied for set (" + itos(i) + ", which was was just freed) are not the same format as required by the pipeline shader. Pipeline shader requires the following bindings:\n" + _shader_uniform_debug(cl->state.pipeline_shader));
  6751. }
  6752. }
  6753. #endif
  6754. if (!cl->state.sets[i].bound) {
  6755. // All good, see if this requires re-binding.
  6756. vkCmdBindDescriptorSets(cl->command_buffer, VK_PIPELINE_BIND_POINT_COMPUTE, cl->state.pipeline_layout, i, 1, &cl->state.sets[i].descriptor_set, 0, nullptr);
  6757. cl->state.sets[i].bound = true;
  6758. }
  6759. }
  6760. vkCmdDispatch(cl->command_buffer, p_x_groups, p_y_groups, p_z_groups);
  6761. }
  6762. void RenderingDeviceVulkan::compute_list_dispatch_threads(ComputeListID p_list, uint32_t p_x_threads, uint32_t p_y_threads, uint32_t p_z_threads) {
  6763. ERR_FAIL_COND(p_list != ID_TYPE_COMPUTE_LIST);
  6764. ERR_FAIL_COND(!compute_list);
  6765. #ifdef DEBUG_ENABLED
  6766. ERR_FAIL_COND_MSG(p_x_threads == 0, "Dispatch amount of X compute threads (" + itos(p_x_threads) + ") is zero.");
  6767. ERR_FAIL_COND_MSG(p_y_threads == 0, "Dispatch amount of Y compute threads (" + itos(p_y_threads) + ") is zero.");
  6768. ERR_FAIL_COND_MSG(p_z_threads == 0, "Dispatch amount of Z compute threads (" + itos(p_z_threads) + ") is zero.");
  6769. #endif
  6770. ComputeList *cl = compute_list;
  6771. #ifdef DEBUG_ENABLED
  6772. ERR_FAIL_COND_MSG(!cl->validation.pipeline_active, "No compute pipeline was set before attempting to draw.");
  6773. if (cl->validation.pipeline_push_constant_size > 0) {
  6774. // Using push constants, check that they were supplied.
  6775. ERR_FAIL_COND_MSG(!cl->validation.pipeline_push_constant_supplied,
  6776. "The shader in this pipeline requires a push constant to be set before drawing, but it's not present.");
  6777. }
  6778. #endif
  6779. compute_list_dispatch(p_list, (p_x_threads - 1) / cl->state.local_group_size[0] + 1, (p_y_threads - 1) / cl->state.local_group_size[1] + 1, (p_z_threads - 1) / cl->state.local_group_size[2] + 1);
  6780. }
  6781. void RenderingDeviceVulkan::compute_list_dispatch_indirect(ComputeListID p_list, RID p_buffer, uint32_t p_offset) {
  6782. ERR_FAIL_COND(p_list != ID_TYPE_COMPUTE_LIST);
  6783. ERR_FAIL_COND(!compute_list);
  6784. ComputeList *cl = compute_list;
  6785. Buffer *buffer = storage_buffer_owner.get_or_null(p_buffer);
  6786. ERR_FAIL_COND(!buffer);
  6787. ERR_FAIL_COND_MSG(!(buffer->usage & VK_BUFFER_USAGE_INDIRECT_BUFFER_BIT), "Buffer provided was not created to do indirect dispatch.");
  6788. ERR_FAIL_COND_MSG(p_offset + 12 > buffer->size, "Offset provided (+12) is past the end of buffer.");
  6789. #ifdef DEBUG_ENABLED
  6790. ERR_FAIL_COND_MSG(!cl->validation.active, "Submitted Compute Lists can no longer be modified.");
  6791. #endif
  6792. #ifdef DEBUG_ENABLED
  6793. ERR_FAIL_COND_MSG(!cl->validation.pipeline_active, "No compute pipeline was set before attempting to draw.");
  6794. if (cl->validation.pipeline_push_constant_size > 0) {
  6795. // Using push constants, check that they were supplied.
  6796. ERR_FAIL_COND_MSG(!cl->validation.pipeline_push_constant_supplied,
  6797. "The shader in this pipeline requires a push constant to be set before drawing, but it's not present.");
  6798. }
  6799. #endif
  6800. // Bind descriptor sets.
  6801. for (uint32_t i = 0; i < cl->state.set_count; i++) {
  6802. if (cl->state.sets[i].pipeline_expected_format == 0) {
  6803. continue; // Nothing expected by this pipeline.
  6804. }
  6805. #ifdef DEBUG_ENABLED
  6806. if (cl->state.sets[i].pipeline_expected_format != cl->state.sets[i].uniform_set_format) {
  6807. if (cl->state.sets[i].uniform_set_format == 0) {
  6808. ERR_FAIL_MSG("Uniforms were never supplied for set (" + itos(i) + ") at the time of drawing, which are required by the pipeline");
  6809. } else if (uniform_set_owner.owns(cl->state.sets[i].uniform_set)) {
  6810. UniformSet *us = uniform_set_owner.get_or_null(cl->state.sets[i].uniform_set);
  6811. ERR_FAIL_MSG("Uniforms supplied for set (" + itos(i) + "):\n" + _shader_uniform_debug(us->shader_id, us->shader_set) + "\nare not the same format as required by the pipeline shader. Pipeline shader requires the following bindings:\n" + _shader_uniform_debug(cl->state.pipeline_shader));
  6812. } else {
  6813. ERR_FAIL_MSG("Uniforms supplied for set (" + itos(i) + ", which was was just freed) are not the same format as required by the pipeline shader. Pipeline shader requires the following bindings:\n" + _shader_uniform_debug(cl->state.pipeline_shader));
  6814. }
  6815. }
  6816. #endif
  6817. if (!cl->state.sets[i].bound) {
  6818. // All good, see if this requires re-binding.
  6819. vkCmdBindDescriptorSets(cl->command_buffer, VK_PIPELINE_BIND_POINT_COMPUTE, cl->state.pipeline_layout, i, 1, &cl->state.sets[i].descriptor_set, 0, nullptr);
  6820. cl->state.sets[i].bound = true;
  6821. }
  6822. }
  6823. vkCmdDispatchIndirect(cl->command_buffer, buffer->buffer, p_offset);
  6824. }
  6825. void RenderingDeviceVulkan::compute_list_add_barrier(ComputeListID p_list) {
  6826. #ifdef FORCE_FULL_BARRIER
  6827. _full_barrier(true);
  6828. #else
  6829. _memory_barrier(VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT, VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT, VK_ACCESS_SHADER_WRITE_BIT, VK_ACCESS_SHADER_READ_BIT, true);
  6830. #endif
  6831. }
  6832. void RenderingDeviceVulkan::compute_list_end(BitField<BarrierMask> p_post_barrier) {
  6833. ERR_FAIL_COND(!compute_list);
  6834. uint32_t barrier_flags = 0;
  6835. uint32_t access_flags = 0;
  6836. if (p_post_barrier.has_flag(BARRIER_MASK_COMPUTE)) {
  6837. barrier_flags |= VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  6838. access_flags |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  6839. }
  6840. if (p_post_barrier.has_flag(BARRIER_MASK_RASTER)) {
  6841. barrier_flags |= VK_PIPELINE_STAGE_VERTEX_INPUT_BIT | VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT | VK_PIPELINE_STAGE_DRAW_INDIRECT_BIT;
  6842. access_flags |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT | VK_ACCESS_INDEX_READ_BIT | VK_ACCESS_VERTEX_ATTRIBUTE_READ_BIT | VK_ACCESS_INDIRECT_COMMAND_READ_BIT;
  6843. }
  6844. if (p_post_barrier.has_flag(BARRIER_MASK_TRANSFER)) {
  6845. barrier_flags |= VK_PIPELINE_STAGE_TRANSFER_BIT;
  6846. access_flags |= VK_ACCESS_TRANSFER_WRITE_BIT | VK_ACCESS_TRANSFER_READ_BIT;
  6847. }
  6848. if (barrier_flags == 0) {
  6849. barrier_flags = VK_PIPELINE_STAGE_BOTTOM_OF_PIPE_BIT;
  6850. }
  6851. VkImageMemoryBarrier *image_barriers = nullptr;
  6852. uint32_t image_barrier_count = compute_list->state.textures_to_sampled_layout.size();
  6853. if (image_barrier_count) {
  6854. image_barriers = (VkImageMemoryBarrier *)alloca(sizeof(VkImageMemoryBarrier) * image_barrier_count);
  6855. }
  6856. uint32_t barrier_idx = 0;
  6857. for (Texture *E : compute_list->state.textures_to_sampled_layout) {
  6858. VkImageMemoryBarrier &image_memory_barrier = image_barriers[barrier_idx++];
  6859. image_memory_barrier.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  6860. image_memory_barrier.pNext = nullptr;
  6861. image_memory_barrier.srcAccessMask = VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  6862. image_memory_barrier.dstAccessMask = access_flags;
  6863. image_memory_barrier.oldLayout = E->layout;
  6864. image_memory_barrier.newLayout = VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL;
  6865. image_memory_barrier.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  6866. image_memory_barrier.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  6867. image_memory_barrier.image = E->image;
  6868. image_memory_barrier.subresourceRange.aspectMask = E->read_aspect_mask;
  6869. image_memory_barrier.subresourceRange.baseMipLevel = E->base_mipmap;
  6870. image_memory_barrier.subresourceRange.levelCount = E->mipmaps;
  6871. image_memory_barrier.subresourceRange.baseArrayLayer = E->base_layer;
  6872. image_memory_barrier.subresourceRange.layerCount = E->layers;
  6873. E->layout = VK_IMAGE_LAYOUT_SHADER_READ_ONLY_OPTIMAL;
  6874. if (E->used_in_frame != frames_drawn) {
  6875. E->used_in_transfer = false;
  6876. E->used_in_raster = false;
  6877. E->used_in_compute = false;
  6878. E->used_in_frame = frames_drawn;
  6879. }
  6880. }
  6881. VkMemoryBarrier mem_barrier;
  6882. mem_barrier.sType = VK_STRUCTURE_TYPE_MEMORY_BARRIER;
  6883. mem_barrier.pNext = nullptr;
  6884. mem_barrier.srcAccessMask = VK_ACCESS_SHADER_WRITE_BIT;
  6885. mem_barrier.dstAccessMask = access_flags;
  6886. if (image_barrier_count > 0 || p_post_barrier != BARRIER_MASK_NO_BARRIER) {
  6887. vkCmdPipelineBarrier(compute_list->command_buffer, VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT, barrier_flags, 0, 1, &mem_barrier, 0, nullptr, image_barrier_count, image_barriers);
  6888. }
  6889. #ifdef FORCE_FULL_BARRIER
  6890. _full_barrier(true);
  6891. #endif
  6892. memdelete(compute_list);
  6893. compute_list = nullptr;
  6894. // Compute_list is no longer active.
  6895. _THREAD_SAFE_UNLOCK_
  6896. }
  6897. void RenderingDeviceVulkan::barrier(BitField<BarrierMask> p_from, BitField<BarrierMask> p_to) {
  6898. uint32_t src_barrier_flags = 0;
  6899. uint32_t src_access_flags = 0;
  6900. if (p_from == 0) {
  6901. src_barrier_flags = VK_PIPELINE_STAGE_TOP_OF_PIPE_BIT;
  6902. } else {
  6903. if (p_from.has_flag(BARRIER_MASK_COMPUTE)) {
  6904. src_barrier_flags |= VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  6905. src_access_flags |= VK_ACCESS_SHADER_WRITE_BIT;
  6906. }
  6907. if (p_from.has_flag(BARRIER_MASK_RASTER)) {
  6908. src_barrier_flags |= VK_PIPELINE_STAGE_COLOR_ATTACHMENT_OUTPUT_BIT | VK_PIPELINE_STAGE_LATE_FRAGMENT_TESTS_BIT;
  6909. src_access_flags |= VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_WRITE_BIT | VK_ACCESS_COLOR_ATTACHMENT_WRITE_BIT;
  6910. }
  6911. if (p_from.has_flag(BARRIER_MASK_TRANSFER)) {
  6912. src_barrier_flags |= VK_PIPELINE_STAGE_TRANSFER_BIT;
  6913. src_access_flags |= VK_ACCESS_TRANSFER_WRITE_BIT;
  6914. }
  6915. }
  6916. uint32_t dst_barrier_flags = 0;
  6917. uint32_t dst_access_flags = 0;
  6918. if (p_to == 0) {
  6919. dst_barrier_flags = VK_PIPELINE_STAGE_BOTTOM_OF_PIPE_BIT;
  6920. } else {
  6921. if (p_to.has_flag(BARRIER_MASK_COMPUTE)) {
  6922. dst_barrier_flags |= VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT;
  6923. dst_access_flags |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT;
  6924. }
  6925. if (p_to.has_flag(BARRIER_MASK_RASTER)) {
  6926. dst_barrier_flags |= VK_PIPELINE_STAGE_VERTEX_INPUT_BIT | VK_PIPELINE_STAGE_VERTEX_SHADER_BIT | VK_PIPELINE_STAGE_FRAGMENT_SHADER_BIT | VK_PIPELINE_STAGE_DRAW_INDIRECT_BIT;
  6927. dst_access_flags |= VK_ACCESS_SHADER_READ_BIT | VK_ACCESS_SHADER_WRITE_BIT | VK_ACCESS_INDEX_READ_BIT | VK_ACCESS_VERTEX_ATTRIBUTE_READ_BIT | VK_ACCESS_INDIRECT_COMMAND_READ_BIT;
  6928. }
  6929. if (p_to.has_flag(BARRIER_MASK_TRANSFER)) {
  6930. dst_barrier_flags |= VK_PIPELINE_STAGE_TRANSFER_BIT;
  6931. dst_access_flags |= VK_ACCESS_TRANSFER_WRITE_BIT | VK_ACCESS_TRANSFER_READ_BIT;
  6932. }
  6933. }
  6934. _memory_barrier(src_barrier_flags, dst_barrier_flags, src_access_flags, dst_access_flags, true);
  6935. }
  6936. void RenderingDeviceVulkan::full_barrier() {
  6937. #ifndef DEBUG_ENABLED
  6938. ERR_PRINT("Full barrier is debug-only, should not be used in production");
  6939. #endif
  6940. _full_barrier(true);
  6941. }
  6942. #if 0
  6943. void RenderingDeviceVulkan::draw_list_render_secondary_to_framebuffer(ID p_framebuffer, ID *p_draw_lists, uint32_t p_draw_list_count, InitialAction p_initial_action, FinalAction p_final_action, const Vector<Variant> &p_clear_colors) {
  6944. VkCommandBuffer frame_cmdbuf = frames[frame].frame_buffer;
  6945. ERR_FAIL_COND(!frame_cmdbuf);
  6946. VkRenderPassBeginInfo render_pass_begin;
  6947. render_pass_begin.sType = VK_STRUCTURE_TYPE_RENDER_PASS_BEGIN_INFO;
  6948. render_pass_begin.pNext = nullptr;
  6949. render_pass_begin.renderPass = context->get_render_pass();
  6950. render_pass_begin.framebuffer = context->get_frame_framebuffer(frame);
  6951. render_pass_begin.renderArea.extent.width = context->get_screen_width(p_screen);
  6952. render_pass_begin.renderArea.extent.height = context->get_screen_height(p_screen);
  6953. render_pass_begin.renderArea.offset.x = 0;
  6954. render_pass_begin.renderArea.offset.y = 0;
  6955. render_pass_begin.clearValueCount = 1;
  6956. VkClearValue clear_value;
  6957. clear_value.color.float32[0] = p_clear_color.r;
  6958. clear_value.color.float32[1] = p_clear_color.g;
  6959. clear_value.color.float32[2] = p_clear_color.b;
  6960. clear_value.color.float32[3] = p_clear_color.a;
  6961. render_pass_begin.pClearValues = &clear_value;
  6962. vkCmdBeginRenderPass(frame_cmdbuf, &render_pass_begin, VK_SUBPASS_CONTENTS_SECONDARY_COMMAND_BUFFERS);
  6963. ID screen_format = screen_get_framebuffer_format();
  6964. {
  6965. VkCommandBuffer *command_buffers = (VkCommandBuffer *)alloca(sizeof(VkCommandBuffer) * p_draw_list_count);
  6966. uint32_t command_buffer_count = 0;
  6967. for (uint32_t i = 0; i < p_draw_list_count; i++) {
  6968. DrawList *dl = _get_draw_list_ptr(p_draw_lists[i]);
  6969. ERR_CONTINUE_MSG(!dl, "Draw list index (" + itos(i) + ") is not a valid draw list ID.");
  6970. ERR_CONTINUE_MSG(dl->validation.framebuffer_format != p_format_check,
  6971. "Draw list index (" + itos(i) + ") is created with a framebuffer format incompatible with this render pass.");
  6972. if (dl->validation.active) {
  6973. // Needs to be closed, so close it.
  6974. vkEndCommandBuffer(dl->command_buffer);
  6975. dl->validation.active = false;
  6976. }
  6977. command_buffers[command_buffer_count++] = dl->command_buffer;
  6978. }
  6979. print_line("to draw: " + itos(command_buffer_count));
  6980. vkCmdExecuteCommands(p_primary, command_buffer_count, command_buffers);
  6981. }
  6982. vkCmdEndRenderPass(frame_cmdbuf);
  6983. }
  6984. #endif
  6985. void RenderingDeviceVulkan::_free_internal(RID p_id) {
  6986. #ifdef DEV_ENABLED
  6987. String resource_name;
  6988. if (resource_names.has(p_id)) {
  6989. resource_name = resource_names[p_id];
  6990. resource_names.erase(p_id);
  6991. }
  6992. #endif
  6993. // Push everything so it's disposed of next time this frame index is processed (means, it's safe to do it).
  6994. if (texture_owner.owns(p_id)) {
  6995. Texture *texture = texture_owner.get_or_null(p_id);
  6996. frames[frame].textures_to_dispose_of.push_back(*texture);
  6997. texture_owner.free(p_id);
  6998. } else if (framebuffer_owner.owns(p_id)) {
  6999. Framebuffer *framebuffer = framebuffer_owner.get_or_null(p_id);
  7000. frames[frame].framebuffers_to_dispose_of.push_back(*framebuffer);
  7001. if (framebuffer->invalidated_callback != nullptr) {
  7002. framebuffer->invalidated_callback(framebuffer->invalidated_callback_userdata);
  7003. }
  7004. framebuffer_owner.free(p_id);
  7005. } else if (sampler_owner.owns(p_id)) {
  7006. VkSampler *sampler = sampler_owner.get_or_null(p_id);
  7007. frames[frame].samplers_to_dispose_of.push_back(*sampler);
  7008. sampler_owner.free(p_id);
  7009. } else if (vertex_buffer_owner.owns(p_id)) {
  7010. Buffer *vertex_buffer = vertex_buffer_owner.get_or_null(p_id);
  7011. frames[frame].buffers_to_dispose_of.push_back(*vertex_buffer);
  7012. vertex_buffer_owner.free(p_id);
  7013. } else if (vertex_array_owner.owns(p_id)) {
  7014. vertex_array_owner.free(p_id);
  7015. } else if (index_buffer_owner.owns(p_id)) {
  7016. IndexBuffer *index_buffer = index_buffer_owner.get_or_null(p_id);
  7017. Buffer b;
  7018. b.allocation = index_buffer->allocation;
  7019. b.buffer = index_buffer->buffer;
  7020. b.size = index_buffer->size;
  7021. b.buffer_info = {};
  7022. frames[frame].buffers_to_dispose_of.push_back(b);
  7023. index_buffer_owner.free(p_id);
  7024. } else if (index_array_owner.owns(p_id)) {
  7025. index_array_owner.free(p_id);
  7026. } else if (shader_owner.owns(p_id)) {
  7027. Shader *shader = shader_owner.get_or_null(p_id);
  7028. frames[frame].shaders_to_dispose_of.push_back(*shader);
  7029. shader_owner.free(p_id);
  7030. } else if (uniform_buffer_owner.owns(p_id)) {
  7031. Buffer *uniform_buffer = uniform_buffer_owner.get_or_null(p_id);
  7032. frames[frame].buffers_to_dispose_of.push_back(*uniform_buffer);
  7033. uniform_buffer_owner.free(p_id);
  7034. } else if (texture_buffer_owner.owns(p_id)) {
  7035. TextureBuffer *texture_buffer = texture_buffer_owner.get_or_null(p_id);
  7036. frames[frame].buffers_to_dispose_of.push_back(texture_buffer->buffer);
  7037. frames[frame].buffer_views_to_dispose_of.push_back(texture_buffer->view);
  7038. texture_buffer_owner.free(p_id);
  7039. } else if (storage_buffer_owner.owns(p_id)) {
  7040. Buffer *storage_buffer = storage_buffer_owner.get_or_null(p_id);
  7041. frames[frame].buffers_to_dispose_of.push_back(*storage_buffer);
  7042. storage_buffer_owner.free(p_id);
  7043. } else if (uniform_set_owner.owns(p_id)) {
  7044. UniformSet *uniform_set = uniform_set_owner.get_or_null(p_id);
  7045. frames[frame].uniform_sets_to_dispose_of.push_back(*uniform_set);
  7046. uniform_set_owner.free(p_id);
  7047. if (uniform_set->invalidated_callback != nullptr) {
  7048. uniform_set->invalidated_callback(uniform_set->invalidated_callback_userdata);
  7049. }
  7050. } else if (render_pipeline_owner.owns(p_id)) {
  7051. RenderPipeline *pipeline = render_pipeline_owner.get_or_null(p_id);
  7052. frames[frame].render_pipelines_to_dispose_of.push_back(*pipeline);
  7053. render_pipeline_owner.free(p_id);
  7054. } else if (compute_pipeline_owner.owns(p_id)) {
  7055. ComputePipeline *pipeline = compute_pipeline_owner.get_or_null(p_id);
  7056. frames[frame].compute_pipelines_to_dispose_of.push_back(*pipeline);
  7057. compute_pipeline_owner.free(p_id);
  7058. } else {
  7059. #ifdef DEV_ENABLED
  7060. ERR_PRINT("Attempted to free invalid ID: " + itos(p_id.get_id()) + " " + resource_name);
  7061. #else
  7062. ERR_PRINT("Attempted to free invalid ID: " + itos(p_id.get_id()));
  7063. #endif
  7064. }
  7065. }
  7066. void RenderingDeviceVulkan::free(RID p_id) {
  7067. _THREAD_SAFE_METHOD_
  7068. _free_dependencies(p_id); // Recursively erase dependencies first, to avoid potential API problems.
  7069. _free_internal(p_id);
  7070. }
  7071. // The full list of resources that can be named is in the VkObjectType enum.
  7072. // We just expose the resources that are owned and can be accessed easily.
  7073. void RenderingDeviceVulkan::set_resource_name(RID p_id, const String p_name) {
  7074. if (texture_owner.owns(p_id)) {
  7075. Texture *texture = texture_owner.get_or_null(p_id);
  7076. if (texture->owner.is_null()) {
  7077. // Don't set the source texture's name when calling on a texture view.
  7078. context->set_object_name(VK_OBJECT_TYPE_IMAGE, uint64_t(texture->image), p_name);
  7079. }
  7080. context->set_object_name(VK_OBJECT_TYPE_IMAGE_VIEW, uint64_t(texture->view), p_name + " View");
  7081. } else if (framebuffer_owner.owns(p_id)) {
  7082. //Framebuffer *framebuffer = framebuffer_owner.get_or_null(p_id);
  7083. // Not implemented for now as the relationship between Framebuffer and RenderPass is very complex.
  7084. } else if (sampler_owner.owns(p_id)) {
  7085. VkSampler *sampler = sampler_owner.get_or_null(p_id);
  7086. context->set_object_name(VK_OBJECT_TYPE_SAMPLER, uint64_t(*sampler), p_name);
  7087. } else if (vertex_buffer_owner.owns(p_id)) {
  7088. Buffer *vertex_buffer = vertex_buffer_owner.get_or_null(p_id);
  7089. context->set_object_name(VK_OBJECT_TYPE_BUFFER, uint64_t(vertex_buffer->buffer), p_name);
  7090. } else if (index_buffer_owner.owns(p_id)) {
  7091. IndexBuffer *index_buffer = index_buffer_owner.get_or_null(p_id);
  7092. context->set_object_name(VK_OBJECT_TYPE_BUFFER, uint64_t(index_buffer->buffer), p_name);
  7093. } else if (shader_owner.owns(p_id)) {
  7094. Shader *shader = shader_owner.get_or_null(p_id);
  7095. context->set_object_name(VK_OBJECT_TYPE_PIPELINE_LAYOUT, uint64_t(shader->pipeline_layout), p_name + " Pipeline Layout");
  7096. for (int i = 0; i < shader->sets.size(); i++) {
  7097. context->set_object_name(VK_OBJECT_TYPE_DESCRIPTOR_SET_LAYOUT, uint64_t(shader->sets[i].descriptor_set_layout), p_name);
  7098. }
  7099. } else if (uniform_buffer_owner.owns(p_id)) {
  7100. Buffer *uniform_buffer = uniform_buffer_owner.get_or_null(p_id);
  7101. context->set_object_name(VK_OBJECT_TYPE_BUFFER, uint64_t(uniform_buffer->buffer), p_name);
  7102. } else if (texture_buffer_owner.owns(p_id)) {
  7103. TextureBuffer *texture_buffer = texture_buffer_owner.get_or_null(p_id);
  7104. context->set_object_name(VK_OBJECT_TYPE_BUFFER, uint64_t(texture_buffer->buffer.buffer), p_name);
  7105. context->set_object_name(VK_OBJECT_TYPE_BUFFER_VIEW, uint64_t(texture_buffer->view), p_name + " View");
  7106. } else if (storage_buffer_owner.owns(p_id)) {
  7107. Buffer *storage_buffer = storage_buffer_owner.get_or_null(p_id);
  7108. context->set_object_name(VK_OBJECT_TYPE_BUFFER, uint64_t(storage_buffer->buffer), p_name);
  7109. } else if (uniform_set_owner.owns(p_id)) {
  7110. UniformSet *uniform_set = uniform_set_owner.get_or_null(p_id);
  7111. context->set_object_name(VK_OBJECT_TYPE_DESCRIPTOR_SET, uint64_t(uniform_set->descriptor_set), p_name);
  7112. } else if (render_pipeline_owner.owns(p_id)) {
  7113. RenderPipeline *pipeline = render_pipeline_owner.get_or_null(p_id);
  7114. context->set_object_name(VK_OBJECT_TYPE_PIPELINE, uint64_t(pipeline->pipeline), p_name);
  7115. context->set_object_name(VK_OBJECT_TYPE_PIPELINE_LAYOUT, uint64_t(pipeline->pipeline_layout), p_name + " Layout");
  7116. } else if (compute_pipeline_owner.owns(p_id)) {
  7117. ComputePipeline *pipeline = compute_pipeline_owner.get_or_null(p_id);
  7118. context->set_object_name(VK_OBJECT_TYPE_PIPELINE, uint64_t(pipeline->pipeline), p_name);
  7119. context->set_object_name(VK_OBJECT_TYPE_PIPELINE_LAYOUT, uint64_t(pipeline->pipeline_layout), p_name + " Layout");
  7120. } else {
  7121. ERR_PRINT("Attempted to name invalid ID: " + itos(p_id.get_id()));
  7122. return;
  7123. }
  7124. #ifdef DEV_ENABLED
  7125. resource_names[p_id] = p_name;
  7126. #endif
  7127. }
  7128. void RenderingDeviceVulkan::draw_command_begin_label(String p_label_name, const Color p_color) {
  7129. context->command_begin_label(frames[frame].draw_command_buffer, p_label_name, p_color);
  7130. }
  7131. void RenderingDeviceVulkan::draw_command_insert_label(String p_label_name, const Color p_color) {
  7132. context->command_insert_label(frames[frame].draw_command_buffer, p_label_name, p_color);
  7133. }
  7134. void RenderingDeviceVulkan::draw_command_end_label() {
  7135. context->command_end_label(frames[frame].draw_command_buffer);
  7136. }
  7137. String RenderingDeviceVulkan::get_device_vendor_name() const {
  7138. return context->get_device_vendor_name();
  7139. }
  7140. String RenderingDeviceVulkan::get_device_name() const {
  7141. return context->get_device_name();
  7142. }
  7143. RenderingDevice::DeviceType RenderingDeviceVulkan::get_device_type() const {
  7144. return context->get_device_type();
  7145. }
  7146. String RenderingDeviceVulkan::get_device_api_version() const {
  7147. return context->get_device_api_version();
  7148. }
  7149. String RenderingDeviceVulkan::get_device_pipeline_cache_uuid() const {
  7150. return context->get_device_pipeline_cache_uuid();
  7151. }
  7152. void RenderingDeviceVulkan::_finalize_command_bufers() {
  7153. if (draw_list) {
  7154. ERR_PRINT("Found open draw list at the end of the frame, this should never happen (further drawing will likely not work).");
  7155. }
  7156. if (compute_list) {
  7157. ERR_PRINT("Found open compute list at the end of the frame, this should never happen (further compute will likely not work).");
  7158. }
  7159. { // Complete the setup buffer (that needs to be processed before anything else).
  7160. vkEndCommandBuffer(frames[frame].setup_command_buffer);
  7161. vkEndCommandBuffer(frames[frame].draw_command_buffer);
  7162. }
  7163. }
  7164. void RenderingDeviceVulkan::_begin_frame() {
  7165. // Erase pending resources.
  7166. _free_pending_resources(frame);
  7167. // Create setup command buffer and set as the setup buffer.
  7168. {
  7169. VkCommandBufferBeginInfo cmdbuf_begin;
  7170. cmdbuf_begin.sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_BEGIN_INFO;
  7171. cmdbuf_begin.pNext = nullptr;
  7172. cmdbuf_begin.flags = VK_COMMAND_BUFFER_USAGE_ONE_TIME_SUBMIT_BIT;
  7173. cmdbuf_begin.pInheritanceInfo = nullptr;
  7174. VkResult err = vkResetCommandBuffer(frames[frame].setup_command_buffer, 0);
  7175. ERR_FAIL_COND_MSG(err, "vkResetCommandBuffer failed with error " + itos(err) + ".");
  7176. err = vkBeginCommandBuffer(frames[frame].setup_command_buffer, &cmdbuf_begin);
  7177. ERR_FAIL_COND_MSG(err, "vkBeginCommandBuffer failed with error " + itos(err) + ".");
  7178. err = vkBeginCommandBuffer(frames[frame].draw_command_buffer, &cmdbuf_begin);
  7179. ERR_FAIL_COND_MSG(err, "vkBeginCommandBuffer failed with error " + itos(err) + ".");
  7180. if (local_device.is_null()) {
  7181. context->append_command_buffer(frames[frame].draw_command_buffer);
  7182. context->set_setup_buffer(frames[frame].setup_command_buffer); // Append now so it's added before everything else.
  7183. }
  7184. }
  7185. // Advance current frame.
  7186. frames_drawn++;
  7187. // Advance staging buffer if used.
  7188. if (staging_buffer_used) {
  7189. staging_buffer_current = (staging_buffer_current + 1) % staging_buffer_blocks.size();
  7190. staging_buffer_used = false;
  7191. }
  7192. if (frames[frame].timestamp_count) {
  7193. vkGetQueryPoolResults(device, frames[frame].timestamp_pool, 0, frames[frame].timestamp_count, sizeof(uint64_t) * max_timestamp_query_elements, frames[frame].timestamp_result_values.ptr(), sizeof(uint64_t), VK_QUERY_RESULT_64_BIT);
  7194. vkCmdResetQueryPool(frames[frame].setup_command_buffer, frames[frame].timestamp_pool, 0, frames[frame].timestamp_count);
  7195. SWAP(frames[frame].timestamp_names, frames[frame].timestamp_result_names);
  7196. SWAP(frames[frame].timestamp_cpu_values, frames[frame].timestamp_cpu_result_values);
  7197. }
  7198. frames[frame].timestamp_result_count = frames[frame].timestamp_count;
  7199. frames[frame].timestamp_count = 0;
  7200. frames[frame].index = Engine::get_singleton()->get_frames_drawn();
  7201. }
  7202. VkSampleCountFlagBits RenderingDeviceVulkan::_ensure_supported_sample_count(TextureSamples p_requested_sample_count) const {
  7203. VkSampleCountFlags sample_count_flags = limits.framebufferColorSampleCounts & limits.framebufferDepthSampleCounts;
  7204. if (sample_count_flags & rasterization_sample_count[p_requested_sample_count]) {
  7205. // The requested sample count is supported.
  7206. return rasterization_sample_count[p_requested_sample_count];
  7207. } else {
  7208. // Find the closest lower supported sample count.
  7209. VkSampleCountFlagBits sample_count = rasterization_sample_count[p_requested_sample_count];
  7210. while (sample_count > VK_SAMPLE_COUNT_1_BIT) {
  7211. if (sample_count_flags & sample_count) {
  7212. return sample_count;
  7213. }
  7214. sample_count = (VkSampleCountFlagBits)(sample_count >> 1);
  7215. }
  7216. }
  7217. return VK_SAMPLE_COUNT_1_BIT;
  7218. }
  7219. void RenderingDeviceVulkan::swap_buffers() {
  7220. ERR_FAIL_COND_MSG(local_device.is_valid(), "Local devices can't swap buffers.");
  7221. _THREAD_SAFE_METHOD_
  7222. _finalize_command_bufers();
  7223. screen_prepared = false;
  7224. // Swap buffers.
  7225. context->swap_buffers();
  7226. frame = (frame + 1) % frame_count;
  7227. _begin_frame();
  7228. }
  7229. void RenderingDeviceVulkan::submit() {
  7230. ERR_FAIL_COND_MSG(local_device.is_null(), "Only local devices can submit and sync.");
  7231. ERR_FAIL_COND_MSG(local_device_processing, "device already submitted, call sync to wait until done.");
  7232. _finalize_command_bufers();
  7233. VkCommandBuffer command_buffers[2] = { frames[frame].setup_command_buffer, frames[frame].draw_command_buffer };
  7234. context->local_device_push_command_buffers(local_device, command_buffers, 2);
  7235. local_device_processing = true;
  7236. }
  7237. void RenderingDeviceVulkan::sync() {
  7238. ERR_FAIL_COND_MSG(local_device.is_null(), "Only local devices can submit and sync.");
  7239. ERR_FAIL_COND_MSG(!local_device_processing, "sync can only be called after a submit");
  7240. context->local_device_sync(local_device);
  7241. _begin_frame();
  7242. local_device_processing = false;
  7243. }
  7244. VmaPool RenderingDeviceVulkan::_find_or_create_small_allocs_pool(uint32_t p_mem_type_index) {
  7245. if (small_allocs_pools.has(p_mem_type_index)) {
  7246. return small_allocs_pools[p_mem_type_index];
  7247. }
  7248. print_verbose("Creating VMA small objects pool for memory type index " + itos(p_mem_type_index));
  7249. VmaPoolCreateInfo pci;
  7250. pci.memoryTypeIndex = p_mem_type_index;
  7251. pci.flags = 0;
  7252. pci.blockSize = 0;
  7253. pci.minBlockCount = 0;
  7254. pci.maxBlockCount = SIZE_MAX;
  7255. pci.priority = 0.5f;
  7256. pci.minAllocationAlignment = 0;
  7257. pci.pMemoryAllocateNext = nullptr;
  7258. VmaPool pool = VK_NULL_HANDLE;
  7259. VkResult res = vmaCreatePool(allocator, &pci, &pool);
  7260. small_allocs_pools[p_mem_type_index] = pool; // Don't try to create it again if failed the first time.
  7261. ERR_FAIL_COND_V_MSG(res, pool, "vmaCreatePool failed with error " + itos(res) + ".");
  7262. return pool;
  7263. }
  7264. void RenderingDeviceVulkan::_free_pending_resources(int p_frame) {
  7265. // Free in dependency usage order, so nothing weird happens.
  7266. // Pipelines.
  7267. while (frames[p_frame].render_pipelines_to_dispose_of.front()) {
  7268. RenderPipeline *pipeline = &frames[p_frame].render_pipelines_to_dispose_of.front()->get();
  7269. vkDestroyPipeline(device, pipeline->pipeline, nullptr);
  7270. frames[p_frame].render_pipelines_to_dispose_of.pop_front();
  7271. }
  7272. while (frames[p_frame].compute_pipelines_to_dispose_of.front()) {
  7273. ComputePipeline *pipeline = &frames[p_frame].compute_pipelines_to_dispose_of.front()->get();
  7274. vkDestroyPipeline(device, pipeline->pipeline, nullptr);
  7275. frames[p_frame].compute_pipelines_to_dispose_of.pop_front();
  7276. }
  7277. // Uniform sets.
  7278. while (frames[p_frame].uniform_sets_to_dispose_of.front()) {
  7279. UniformSet *uniform_set = &frames[p_frame].uniform_sets_to_dispose_of.front()->get();
  7280. vkFreeDescriptorSets(device, uniform_set->pool->pool, 1, &uniform_set->descriptor_set);
  7281. _descriptor_pool_free(uniform_set->pool_key, uniform_set->pool);
  7282. frames[p_frame].uniform_sets_to_dispose_of.pop_front();
  7283. }
  7284. // Buffer views.
  7285. while (frames[p_frame].buffer_views_to_dispose_of.front()) {
  7286. VkBufferView buffer_view = frames[p_frame].buffer_views_to_dispose_of.front()->get();
  7287. vkDestroyBufferView(device, buffer_view, nullptr);
  7288. frames[p_frame].buffer_views_to_dispose_of.pop_front();
  7289. }
  7290. // Shaders.
  7291. while (frames[p_frame].shaders_to_dispose_of.front()) {
  7292. Shader *shader = &frames[p_frame].shaders_to_dispose_of.front()->get();
  7293. // Descriptor set layout for each set.
  7294. for (int i = 0; i < shader->sets.size(); i++) {
  7295. vkDestroyDescriptorSetLayout(device, shader->sets[i].descriptor_set_layout, nullptr);
  7296. }
  7297. // Pipeline layout.
  7298. vkDestroyPipelineLayout(device, shader->pipeline_layout, nullptr);
  7299. // Shaders themselves.
  7300. for (int i = 0; i < shader->pipeline_stages.size(); i++) {
  7301. vkDestroyShaderModule(device, shader->pipeline_stages[i].module, nullptr);
  7302. }
  7303. frames[p_frame].shaders_to_dispose_of.pop_front();
  7304. }
  7305. // Samplers.
  7306. while (frames[p_frame].samplers_to_dispose_of.front()) {
  7307. VkSampler sampler = frames[p_frame].samplers_to_dispose_of.front()->get();
  7308. vkDestroySampler(device, sampler, nullptr);
  7309. frames[p_frame].samplers_to_dispose_of.pop_front();
  7310. }
  7311. // Framebuffers.
  7312. while (frames[p_frame].framebuffers_to_dispose_of.front()) {
  7313. Framebuffer *framebuffer = &frames[p_frame].framebuffers_to_dispose_of.front()->get();
  7314. for (const KeyValue<Framebuffer::VersionKey, Framebuffer::Version> &E : framebuffer->framebuffers) {
  7315. // First framebuffer, then render pass because it depends on it.
  7316. vkDestroyFramebuffer(device, E.value.framebuffer, nullptr);
  7317. vkDestroyRenderPass(device, E.value.render_pass, nullptr);
  7318. }
  7319. frames[p_frame].framebuffers_to_dispose_of.pop_front();
  7320. }
  7321. // Textures.
  7322. while (frames[p_frame].textures_to_dispose_of.front()) {
  7323. Texture *texture = &frames[p_frame].textures_to_dispose_of.front()->get();
  7324. if (texture->bound) {
  7325. WARN_PRINT("Deleted a texture while it was bound.");
  7326. }
  7327. vkDestroyImageView(device, texture->view, nullptr);
  7328. if (texture->owner.is_null()) {
  7329. // Actually owns the image and the allocation too.
  7330. image_memory -= texture->allocation_info.size;
  7331. vmaDestroyImage(allocator, texture->image, texture->allocation);
  7332. }
  7333. frames[p_frame].textures_to_dispose_of.pop_front();
  7334. }
  7335. // Buffers.
  7336. while (frames[p_frame].buffers_to_dispose_of.front()) {
  7337. _buffer_free(&frames[p_frame].buffers_to_dispose_of.front()->get());
  7338. frames[p_frame].buffers_to_dispose_of.pop_front();
  7339. }
  7340. }
  7341. void RenderingDeviceVulkan::prepare_screen_for_drawing() {
  7342. _THREAD_SAFE_METHOD_
  7343. context->prepare_buffers();
  7344. screen_prepared = true;
  7345. }
  7346. uint32_t RenderingDeviceVulkan::get_frame_delay() const {
  7347. return frame_count;
  7348. }
  7349. uint64_t RenderingDeviceVulkan::get_memory_usage(MemoryType p_type) const {
  7350. if (p_type == MEMORY_BUFFERS) {
  7351. return buffer_memory;
  7352. } else if (p_type == MEMORY_TEXTURES) {
  7353. return image_memory;
  7354. } else {
  7355. VmaTotalStatistics stats;
  7356. vmaCalculateStatistics(allocator, &stats);
  7357. return stats.total.statistics.allocationBytes;
  7358. }
  7359. }
  7360. void RenderingDeviceVulkan::_flush(bool p_current_frame) {
  7361. if (local_device.is_valid() && !p_current_frame) {
  7362. return; // Flushing previous frames has no effect with local device.
  7363. }
  7364. // Not doing this crashes RADV (undefined behavior).
  7365. if (p_current_frame) {
  7366. vkEndCommandBuffer(frames[frame].setup_command_buffer);
  7367. vkEndCommandBuffer(frames[frame].draw_command_buffer);
  7368. }
  7369. if (local_device.is_valid()) {
  7370. VkCommandBuffer command_buffers[2] = { frames[frame].setup_command_buffer, frames[frame].draw_command_buffer };
  7371. context->local_device_push_command_buffers(local_device, command_buffers, 2);
  7372. context->local_device_sync(local_device);
  7373. VkCommandBufferBeginInfo cmdbuf_begin;
  7374. cmdbuf_begin.sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_BEGIN_INFO;
  7375. cmdbuf_begin.pNext = nullptr;
  7376. cmdbuf_begin.flags = VK_COMMAND_BUFFER_USAGE_ONE_TIME_SUBMIT_BIT;
  7377. cmdbuf_begin.pInheritanceInfo = nullptr;
  7378. VkResult err = vkBeginCommandBuffer(frames[frame].setup_command_buffer, &cmdbuf_begin);
  7379. ERR_FAIL_COND_MSG(err, "vkBeginCommandBuffer failed with error " + itos(err) + ".");
  7380. err = vkBeginCommandBuffer(frames[frame].draw_command_buffer, &cmdbuf_begin);
  7381. ERR_FAIL_COND_MSG(err, "vkBeginCommandBuffer failed with error " + itos(err) + ".");
  7382. } else {
  7383. context->flush(p_current_frame, p_current_frame);
  7384. // Re-create the setup command.
  7385. if (p_current_frame) {
  7386. VkCommandBufferBeginInfo cmdbuf_begin;
  7387. cmdbuf_begin.sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_BEGIN_INFO;
  7388. cmdbuf_begin.pNext = nullptr;
  7389. cmdbuf_begin.flags = VK_COMMAND_BUFFER_USAGE_ONE_TIME_SUBMIT_BIT;
  7390. cmdbuf_begin.pInheritanceInfo = nullptr;
  7391. VkResult err = vkBeginCommandBuffer(frames[frame].setup_command_buffer, &cmdbuf_begin);
  7392. ERR_FAIL_COND_MSG(err, "vkBeginCommandBuffer failed with error " + itos(err) + ".");
  7393. context->set_setup_buffer(frames[frame].setup_command_buffer); // Append now so it's added before everything else.
  7394. }
  7395. if (p_current_frame) {
  7396. VkCommandBufferBeginInfo cmdbuf_begin;
  7397. cmdbuf_begin.sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_BEGIN_INFO;
  7398. cmdbuf_begin.pNext = nullptr;
  7399. cmdbuf_begin.flags = VK_COMMAND_BUFFER_USAGE_ONE_TIME_SUBMIT_BIT;
  7400. cmdbuf_begin.pInheritanceInfo = nullptr;
  7401. VkResult err = vkBeginCommandBuffer(frames[frame].draw_command_buffer, &cmdbuf_begin);
  7402. ERR_FAIL_COND_MSG(err, "vkBeginCommandBuffer failed with error " + itos(err) + ".");
  7403. context->append_command_buffer(frames[frame].draw_command_buffer);
  7404. }
  7405. }
  7406. }
  7407. void RenderingDeviceVulkan::initialize(VulkanContext *p_context, bool p_local_device) {
  7408. // Get our device capabilities.
  7409. {
  7410. device_capabilities.version_major = p_context->get_vulkan_major();
  7411. device_capabilities.version_minor = p_context->get_vulkan_minor();
  7412. }
  7413. context = p_context;
  7414. device = p_context->get_device();
  7415. if (p_local_device) {
  7416. frame_count = 1;
  7417. local_device = p_context->local_device_create();
  7418. device = p_context->local_device_get_vk_device(local_device);
  7419. } else {
  7420. frame_count = p_context->get_swapchain_image_count() + 1; // Always need one extra to ensure it's unused at any time, without having to use a fence for this.
  7421. }
  7422. limits = p_context->get_device_limits();
  7423. max_timestamp_query_elements = 256;
  7424. { // Initialize allocator.
  7425. VmaAllocatorCreateInfo allocatorInfo;
  7426. memset(&allocatorInfo, 0, sizeof(VmaAllocatorCreateInfo));
  7427. allocatorInfo.physicalDevice = p_context->get_physical_device();
  7428. allocatorInfo.device = device;
  7429. allocatorInfo.instance = p_context->get_instance();
  7430. vmaCreateAllocator(&allocatorInfo, &allocator);
  7431. }
  7432. frames.resize(frame_count);
  7433. frame = 0;
  7434. // Create setup and frame buffers.
  7435. for (int i = 0; i < frame_count; i++) {
  7436. frames[i].index = 0;
  7437. { // Create command pool, one per frame is recommended.
  7438. VkCommandPoolCreateInfo cmd_pool_info;
  7439. cmd_pool_info.sType = VK_STRUCTURE_TYPE_COMMAND_POOL_CREATE_INFO;
  7440. cmd_pool_info.pNext = nullptr;
  7441. cmd_pool_info.queueFamilyIndex = p_context->get_graphics_queue_family_index();
  7442. cmd_pool_info.flags = VK_COMMAND_POOL_CREATE_RESET_COMMAND_BUFFER_BIT;
  7443. VkResult res = vkCreateCommandPool(device, &cmd_pool_info, nullptr, &frames[i].command_pool);
  7444. ERR_FAIL_COND_MSG(res, "vkCreateCommandPool failed with error " + itos(res) + ".");
  7445. }
  7446. { // Create command buffers.
  7447. VkCommandBufferAllocateInfo cmdbuf;
  7448. // No command buffer exists, create it.
  7449. cmdbuf.sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_ALLOCATE_INFO;
  7450. cmdbuf.pNext = nullptr;
  7451. cmdbuf.commandPool = frames[i].command_pool;
  7452. cmdbuf.level = VK_COMMAND_BUFFER_LEVEL_PRIMARY;
  7453. cmdbuf.commandBufferCount = 1;
  7454. VkResult err = vkAllocateCommandBuffers(device, &cmdbuf, &frames[i].setup_command_buffer);
  7455. ERR_CONTINUE_MSG(err, "vkAllocateCommandBuffers failed with error " + itos(err) + ".");
  7456. err = vkAllocateCommandBuffers(device, &cmdbuf, &frames[i].draw_command_buffer);
  7457. ERR_CONTINUE_MSG(err, "vkAllocateCommandBuffers failed with error " + itos(err) + ".");
  7458. }
  7459. {
  7460. // Create query pool.
  7461. VkQueryPoolCreateInfo query_pool_create_info;
  7462. query_pool_create_info.sType = VK_STRUCTURE_TYPE_QUERY_POOL_CREATE_INFO;
  7463. query_pool_create_info.flags = 0;
  7464. query_pool_create_info.pNext = nullptr;
  7465. query_pool_create_info.queryType = VK_QUERY_TYPE_TIMESTAMP;
  7466. query_pool_create_info.queryCount = max_timestamp_query_elements;
  7467. query_pool_create_info.pipelineStatistics = 0;
  7468. vkCreateQueryPool(device, &query_pool_create_info, nullptr, &frames[i].timestamp_pool);
  7469. frames[i].timestamp_names.resize(max_timestamp_query_elements);
  7470. frames[i].timestamp_cpu_values.resize(max_timestamp_query_elements);
  7471. frames[i].timestamp_count = 0;
  7472. frames[i].timestamp_result_names.resize(max_timestamp_query_elements);
  7473. frames[i].timestamp_cpu_result_values.resize(max_timestamp_query_elements);
  7474. frames[i].timestamp_result_values.resize(max_timestamp_query_elements);
  7475. frames[i].timestamp_result_count = 0;
  7476. }
  7477. }
  7478. {
  7479. // Begin the first command buffer for the first frame, so
  7480. // setting up things can be done in the meantime until swap_buffers(), which is called before advance.
  7481. VkCommandBufferBeginInfo cmdbuf_begin;
  7482. cmdbuf_begin.sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_BEGIN_INFO;
  7483. cmdbuf_begin.pNext = nullptr;
  7484. cmdbuf_begin.flags = VK_COMMAND_BUFFER_USAGE_ONE_TIME_SUBMIT_BIT;
  7485. cmdbuf_begin.pInheritanceInfo = nullptr;
  7486. VkResult err = vkBeginCommandBuffer(frames[0].setup_command_buffer, &cmdbuf_begin);
  7487. ERR_FAIL_COND_MSG(err, "vkBeginCommandBuffer failed with error " + itos(err) + ".");
  7488. err = vkBeginCommandBuffer(frames[0].draw_command_buffer, &cmdbuf_begin);
  7489. ERR_FAIL_COND_MSG(err, "vkBeginCommandBuffer failed with error " + itos(err) + ".");
  7490. if (local_device.is_null()) {
  7491. context->set_setup_buffer(frames[0].setup_command_buffer); // Append now so it's added before everything else.
  7492. context->append_command_buffer(frames[0].draw_command_buffer);
  7493. }
  7494. }
  7495. staging_buffer_block_size = GLOBAL_GET("rendering/rendering_device/staging_buffer/block_size_kb");
  7496. staging_buffer_block_size = MAX(4u, staging_buffer_block_size);
  7497. staging_buffer_block_size *= 1024; // Kb -> bytes.
  7498. staging_buffer_max_size = GLOBAL_GET("rendering/rendering_device/staging_buffer/max_size_mb");
  7499. staging_buffer_max_size = MAX(1u, staging_buffer_max_size);
  7500. staging_buffer_max_size *= 1024 * 1024;
  7501. if (staging_buffer_max_size < staging_buffer_block_size * 4) {
  7502. // Validate enough blocks.
  7503. staging_buffer_max_size = staging_buffer_block_size * 4;
  7504. }
  7505. texture_upload_region_size_px = GLOBAL_GET("rendering/rendering_device/staging_buffer/texture_upload_region_size_px");
  7506. texture_upload_region_size_px = nearest_power_of_2_templated(texture_upload_region_size_px);
  7507. frames_drawn = frame_count; // Start from frame count, so everything else is immediately old.
  7508. // Ensure current staging block is valid and at least one per frame exists.
  7509. staging_buffer_current = 0;
  7510. staging_buffer_used = false;
  7511. for (int i = 0; i < frame_count; i++) {
  7512. // Staging was never used, create a block.
  7513. Error err = _insert_staging_block();
  7514. ERR_CONTINUE(err != OK);
  7515. }
  7516. max_descriptors_per_pool = GLOBAL_GET("rendering/rendering_device/vulkan/max_descriptors_per_pool");
  7517. // Check to make sure DescriptorPoolKey is good.
  7518. static_assert(sizeof(uint64_t) * 3 >= UNIFORM_TYPE_MAX * sizeof(uint16_t));
  7519. draw_list = nullptr;
  7520. draw_list_count = 0;
  7521. draw_list_split = false;
  7522. compute_list = nullptr;
  7523. }
  7524. template <class T>
  7525. void RenderingDeviceVulkan::_free_rids(T &p_owner, const char *p_type) {
  7526. List<RID> owned;
  7527. p_owner.get_owned_list(&owned);
  7528. if (owned.size()) {
  7529. if (owned.size() == 1) {
  7530. WARN_PRINT(vformat("1 RID of type \"%s\" was leaked.", p_type));
  7531. } else {
  7532. WARN_PRINT(vformat("%d RIDs of type \"%s\" were leaked.", owned.size(), p_type));
  7533. }
  7534. for (const RID &E : owned) {
  7535. #ifdef DEV_ENABLED
  7536. if (resource_names.has(E)) {
  7537. print_line(String(" - ") + resource_names[E]);
  7538. }
  7539. #endif
  7540. free(E);
  7541. }
  7542. }
  7543. }
  7544. void RenderingDeviceVulkan::capture_timestamp(const String &p_name) {
  7545. ERR_FAIL_COND_MSG(draw_list != nullptr, "Capturing timestamps during draw list creation is not allowed. Offending timestamp was: " + p_name);
  7546. ERR_FAIL_COND(frames[frame].timestamp_count >= max_timestamp_query_elements);
  7547. // This should be optional for profiling, else it will slow things down.
  7548. {
  7549. VkMemoryBarrier memoryBarrier;
  7550. memoryBarrier.sType = VK_STRUCTURE_TYPE_MEMORY_BARRIER;
  7551. memoryBarrier.pNext = nullptr;
  7552. memoryBarrier.srcAccessMask = VK_ACCESS_INDIRECT_COMMAND_READ_BIT |
  7553. VK_ACCESS_INDEX_READ_BIT |
  7554. VK_ACCESS_VERTEX_ATTRIBUTE_READ_BIT |
  7555. VK_ACCESS_UNIFORM_READ_BIT |
  7556. VK_ACCESS_INPUT_ATTACHMENT_READ_BIT |
  7557. VK_ACCESS_SHADER_READ_BIT |
  7558. VK_ACCESS_SHADER_WRITE_BIT |
  7559. VK_ACCESS_COLOR_ATTACHMENT_READ_BIT |
  7560. VK_ACCESS_COLOR_ATTACHMENT_WRITE_BIT |
  7561. VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_READ_BIT |
  7562. VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_WRITE_BIT |
  7563. VK_ACCESS_TRANSFER_READ_BIT |
  7564. VK_ACCESS_TRANSFER_WRITE_BIT |
  7565. VK_ACCESS_HOST_READ_BIT |
  7566. VK_ACCESS_HOST_WRITE_BIT;
  7567. memoryBarrier.dstAccessMask = VK_ACCESS_INDIRECT_COMMAND_READ_BIT |
  7568. VK_ACCESS_INDEX_READ_BIT |
  7569. VK_ACCESS_VERTEX_ATTRIBUTE_READ_BIT |
  7570. VK_ACCESS_UNIFORM_READ_BIT |
  7571. VK_ACCESS_INPUT_ATTACHMENT_READ_BIT |
  7572. VK_ACCESS_SHADER_READ_BIT |
  7573. VK_ACCESS_SHADER_WRITE_BIT |
  7574. VK_ACCESS_COLOR_ATTACHMENT_READ_BIT |
  7575. VK_ACCESS_COLOR_ATTACHMENT_WRITE_BIT |
  7576. VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_READ_BIT |
  7577. VK_ACCESS_DEPTH_STENCIL_ATTACHMENT_WRITE_BIT |
  7578. VK_ACCESS_TRANSFER_READ_BIT |
  7579. VK_ACCESS_TRANSFER_WRITE_BIT |
  7580. VK_ACCESS_HOST_READ_BIT |
  7581. VK_ACCESS_HOST_WRITE_BIT;
  7582. vkCmdPipelineBarrier(frames[frame].draw_command_buffer, VK_PIPELINE_STAGE_ALL_COMMANDS_BIT, VK_PIPELINE_STAGE_ALL_COMMANDS_BIT, 0, 1, &memoryBarrier, 0, nullptr, 0, nullptr);
  7583. }
  7584. vkCmdWriteTimestamp(frames[frame].draw_command_buffer, VK_PIPELINE_STAGE_BOTTOM_OF_PIPE_BIT, frames[frame].timestamp_pool, frames[frame].timestamp_count);
  7585. frames[frame].timestamp_names[frames[frame].timestamp_count] = p_name;
  7586. frames[frame].timestamp_cpu_values[frames[frame].timestamp_count] = OS::get_singleton()->get_ticks_usec();
  7587. frames[frame].timestamp_count++;
  7588. }
  7589. uint64_t RenderingDeviceVulkan::get_driver_resource(DriverResource p_resource, RID p_rid, uint64_t p_index) {
  7590. _THREAD_SAFE_METHOD_
  7591. switch (p_resource) {
  7592. case DRIVER_RESOURCE_VULKAN_DEVICE: {
  7593. return (uint64_t)context->get_device();
  7594. } break;
  7595. case DRIVER_RESOURCE_VULKAN_PHYSICAL_DEVICE: {
  7596. return (uint64_t)context->get_physical_device();
  7597. } break;
  7598. case DRIVER_RESOURCE_VULKAN_INSTANCE: {
  7599. return (uint64_t)context->get_instance();
  7600. } break;
  7601. case DRIVER_RESOURCE_VULKAN_QUEUE: {
  7602. return (uint64_t)context->get_graphics_queue();
  7603. } break;
  7604. case DRIVER_RESOURCE_VULKAN_QUEUE_FAMILY_INDEX: {
  7605. return context->get_graphics_queue_family_index();
  7606. } break;
  7607. case DRIVER_RESOURCE_VULKAN_IMAGE: {
  7608. Texture *tex = texture_owner.get_or_null(p_rid);
  7609. ERR_FAIL_NULL_V(tex, 0);
  7610. return (uint64_t)tex->image;
  7611. } break;
  7612. case DRIVER_RESOURCE_VULKAN_IMAGE_VIEW: {
  7613. Texture *tex = texture_owner.get_or_null(p_rid);
  7614. ERR_FAIL_NULL_V(tex, 0);
  7615. return (uint64_t)tex->view;
  7616. } break;
  7617. case DRIVER_RESOURCE_VULKAN_IMAGE_NATIVE_TEXTURE_FORMAT: {
  7618. Texture *tex = texture_owner.get_or_null(p_rid);
  7619. ERR_FAIL_NULL_V(tex, 0);
  7620. return vulkan_formats[tex->format];
  7621. } break;
  7622. case DRIVER_RESOURCE_VULKAN_SAMPLER: {
  7623. VkSampler *sampler = sampler_owner.get_or_null(p_rid);
  7624. ERR_FAIL_NULL_V(sampler, 0);
  7625. return uint64_t(*sampler);
  7626. } break;
  7627. case DRIVER_RESOURCE_VULKAN_DESCRIPTOR_SET: {
  7628. UniformSet *uniform_set = uniform_set_owner.get_or_null(p_rid);
  7629. ERR_FAIL_NULL_V(uniform_set, 0);
  7630. return uint64_t(uniform_set->descriptor_set);
  7631. } break;
  7632. case DRIVER_RESOURCE_VULKAN_BUFFER: {
  7633. Buffer *buffer = nullptr;
  7634. if (vertex_buffer_owner.owns(p_rid)) {
  7635. buffer = vertex_buffer_owner.get_or_null(p_rid);
  7636. } else if (index_buffer_owner.owns(p_rid)) {
  7637. buffer = index_buffer_owner.get_or_null(p_rid);
  7638. } else if (uniform_buffer_owner.owns(p_rid)) {
  7639. buffer = uniform_buffer_owner.get_or_null(p_rid);
  7640. } else if (texture_buffer_owner.owns(p_rid)) {
  7641. buffer = &texture_buffer_owner.get_or_null(p_rid)->buffer;
  7642. } else if (storage_buffer_owner.owns(p_rid)) {
  7643. buffer = storage_buffer_owner.get_or_null(p_rid);
  7644. }
  7645. ERR_FAIL_NULL_V(buffer, 0);
  7646. return uint64_t(buffer->buffer);
  7647. } break;
  7648. case DRIVER_RESOURCE_VULKAN_COMPUTE_PIPELINE: {
  7649. ComputePipeline *compute_pipeline = compute_pipeline_owner.get_or_null(p_rid);
  7650. ERR_FAIL_NULL_V(compute_pipeline, 0);
  7651. return uint64_t(compute_pipeline->pipeline);
  7652. } break;
  7653. case DRIVER_RESOURCE_VULKAN_RENDER_PIPELINE: {
  7654. RenderPipeline *render_pipeline = render_pipeline_owner.get_or_null(p_rid);
  7655. ERR_FAIL_NULL_V(render_pipeline, 0);
  7656. return uint64_t(render_pipeline->pipeline);
  7657. } break;
  7658. default: {
  7659. // Not supported for this driver.
  7660. return 0;
  7661. } break;
  7662. }
  7663. }
  7664. uint32_t RenderingDeviceVulkan::get_captured_timestamps_count() const {
  7665. return frames[frame].timestamp_result_count;
  7666. }
  7667. uint64_t RenderingDeviceVulkan::get_captured_timestamps_frame() const {
  7668. return frames[frame].index;
  7669. }
  7670. static void mult64to128(uint64_t u, uint64_t v, uint64_t &h, uint64_t &l) {
  7671. uint64_t u1 = (u & 0xffffffff);
  7672. uint64_t v1 = (v & 0xffffffff);
  7673. uint64_t t = (u1 * v1);
  7674. uint64_t w3 = (t & 0xffffffff);
  7675. uint64_t k = (t >> 32);
  7676. u >>= 32;
  7677. t = (u * v1) + k;
  7678. k = (t & 0xffffffff);
  7679. uint64_t w1 = (t >> 32);
  7680. v >>= 32;
  7681. t = (u1 * v) + k;
  7682. k = (t >> 32);
  7683. h = (u * v) + w1 + k;
  7684. l = (t << 32) + w3;
  7685. }
  7686. uint64_t RenderingDeviceVulkan::get_captured_timestamp_gpu_time(uint32_t p_index) const {
  7687. ERR_FAIL_UNSIGNED_INDEX_V(p_index, frames[frame].timestamp_result_count, 0);
  7688. // This sucks because timestampPeriod multiplier is a float, while the timestamp is 64 bits nanosecs.
  7689. // So, in cases like nvidia which give you enormous numbers and 1 as multiplier, multiplying is next to impossible.
  7690. // Need to do 128 bits fixed point multiplication to get the right value.
  7691. uint64_t shift_bits = 16;
  7692. uint64_t h, l;
  7693. mult64to128(frames[frame].timestamp_result_values[p_index], uint64_t(double(limits.timestampPeriod) * double(1 << shift_bits)), h, l);
  7694. l >>= shift_bits;
  7695. l |= h << (64 - shift_bits);
  7696. return l;
  7697. }
  7698. uint64_t RenderingDeviceVulkan::get_captured_timestamp_cpu_time(uint32_t p_index) const {
  7699. ERR_FAIL_UNSIGNED_INDEX_V(p_index, frames[frame].timestamp_result_count, 0);
  7700. return frames[frame].timestamp_cpu_result_values[p_index];
  7701. }
  7702. String RenderingDeviceVulkan::get_captured_timestamp_name(uint32_t p_index) const {
  7703. ERR_FAIL_UNSIGNED_INDEX_V(p_index, frames[frame].timestamp_result_count, String());
  7704. return frames[frame].timestamp_result_names[p_index];
  7705. }
  7706. uint64_t RenderingDeviceVulkan::limit_get(Limit p_limit) const {
  7707. switch (p_limit) {
  7708. case LIMIT_MAX_BOUND_UNIFORM_SETS:
  7709. return limits.maxBoundDescriptorSets;
  7710. case LIMIT_MAX_FRAMEBUFFER_COLOR_ATTACHMENTS:
  7711. return limits.maxColorAttachments;
  7712. case LIMIT_MAX_TEXTURES_PER_UNIFORM_SET:
  7713. return limits.maxDescriptorSetSampledImages;
  7714. case LIMIT_MAX_SAMPLERS_PER_UNIFORM_SET:
  7715. return limits.maxDescriptorSetSamplers;
  7716. case LIMIT_MAX_STORAGE_BUFFERS_PER_UNIFORM_SET:
  7717. return limits.maxDescriptorSetStorageBuffers;
  7718. case LIMIT_MAX_STORAGE_IMAGES_PER_UNIFORM_SET:
  7719. return limits.maxDescriptorSetStorageImages;
  7720. case LIMIT_MAX_UNIFORM_BUFFERS_PER_UNIFORM_SET:
  7721. return limits.maxDescriptorSetUniformBuffers;
  7722. case LIMIT_MAX_DRAW_INDEXED_INDEX:
  7723. return limits.maxDrawIndexedIndexValue;
  7724. case LIMIT_MAX_FRAMEBUFFER_HEIGHT:
  7725. return limits.maxFramebufferHeight;
  7726. case LIMIT_MAX_FRAMEBUFFER_WIDTH:
  7727. return limits.maxFramebufferWidth;
  7728. case LIMIT_MAX_TEXTURE_ARRAY_LAYERS:
  7729. return limits.maxImageArrayLayers;
  7730. case LIMIT_MAX_TEXTURE_SIZE_1D:
  7731. return limits.maxImageDimension1D;
  7732. case LIMIT_MAX_TEXTURE_SIZE_2D:
  7733. return limits.maxImageDimension2D;
  7734. case LIMIT_MAX_TEXTURE_SIZE_3D:
  7735. return limits.maxImageDimension3D;
  7736. case LIMIT_MAX_TEXTURE_SIZE_CUBE:
  7737. return limits.maxImageDimensionCube;
  7738. case LIMIT_MAX_TEXTURES_PER_SHADER_STAGE:
  7739. return limits.maxPerStageDescriptorSampledImages;
  7740. case LIMIT_MAX_SAMPLERS_PER_SHADER_STAGE:
  7741. return limits.maxPerStageDescriptorSamplers;
  7742. case LIMIT_MAX_STORAGE_BUFFERS_PER_SHADER_STAGE:
  7743. return limits.maxPerStageDescriptorStorageBuffers;
  7744. case LIMIT_MAX_STORAGE_IMAGES_PER_SHADER_STAGE:
  7745. return limits.maxPerStageDescriptorStorageImages;
  7746. case LIMIT_MAX_UNIFORM_BUFFERS_PER_SHADER_STAGE:
  7747. return limits.maxPerStageDescriptorUniformBuffers;
  7748. case LIMIT_MAX_PUSH_CONSTANT_SIZE:
  7749. return limits.maxPushConstantsSize;
  7750. case LIMIT_MAX_UNIFORM_BUFFER_SIZE:
  7751. return limits.maxUniformBufferRange;
  7752. case LIMIT_MAX_VERTEX_INPUT_ATTRIBUTE_OFFSET:
  7753. return limits.maxVertexInputAttributeOffset;
  7754. case LIMIT_MAX_VERTEX_INPUT_ATTRIBUTES:
  7755. return limits.maxVertexInputAttributes;
  7756. case LIMIT_MAX_VERTEX_INPUT_BINDINGS:
  7757. return limits.maxVertexInputBindings;
  7758. case LIMIT_MAX_VERTEX_INPUT_BINDING_STRIDE:
  7759. return limits.maxVertexInputBindingStride;
  7760. case LIMIT_MIN_UNIFORM_BUFFER_OFFSET_ALIGNMENT:
  7761. return limits.minUniformBufferOffsetAlignment;
  7762. case LIMIT_MAX_COMPUTE_WORKGROUP_COUNT_X:
  7763. return limits.maxComputeWorkGroupCount[0];
  7764. case LIMIT_MAX_COMPUTE_WORKGROUP_COUNT_Y:
  7765. return limits.maxComputeWorkGroupCount[1];
  7766. case LIMIT_MAX_COMPUTE_WORKGROUP_COUNT_Z:
  7767. return limits.maxComputeWorkGroupCount[2];
  7768. case LIMIT_MAX_COMPUTE_WORKGROUP_INVOCATIONS:
  7769. return limits.maxComputeWorkGroupInvocations;
  7770. case LIMIT_MAX_COMPUTE_WORKGROUP_SIZE_X:
  7771. return limits.maxComputeWorkGroupSize[0];
  7772. case LIMIT_MAX_COMPUTE_WORKGROUP_SIZE_Y:
  7773. return limits.maxComputeWorkGroupSize[1];
  7774. case LIMIT_MAX_COMPUTE_WORKGROUP_SIZE_Z:
  7775. return limits.maxComputeWorkGroupSize[2];
  7776. case LIMIT_MAX_VIEWPORT_DIMENSIONS_X:
  7777. return limits.maxViewportDimensions[0];
  7778. case LIMIT_MAX_VIEWPORT_DIMENSIONS_Y:
  7779. return limits.maxViewportDimensions[1];
  7780. case LIMIT_SUBGROUP_SIZE: {
  7781. VulkanContext::SubgroupCapabilities subgroup_capabilities = context->get_subgroup_capabilities();
  7782. return subgroup_capabilities.size;
  7783. }
  7784. case LIMIT_SUBGROUP_IN_SHADERS: {
  7785. VulkanContext::SubgroupCapabilities subgroup_capabilities = context->get_subgroup_capabilities();
  7786. return subgroup_capabilities.supported_stages_flags_rd();
  7787. }
  7788. case LIMIT_SUBGROUP_OPERATIONS: {
  7789. VulkanContext::SubgroupCapabilities subgroup_capabilities = context->get_subgroup_capabilities();
  7790. return subgroup_capabilities.supported_operations_flags_rd();
  7791. }
  7792. case LIMIT_VRS_TEXEL_WIDTH: {
  7793. return context->get_vrs_capabilities().texel_size.x;
  7794. }
  7795. case LIMIT_VRS_TEXEL_HEIGHT: {
  7796. return context->get_vrs_capabilities().texel_size.y;
  7797. }
  7798. default:
  7799. ERR_FAIL_V(0);
  7800. }
  7801. return 0;
  7802. }
  7803. void RenderingDeviceVulkan::finalize() {
  7804. // Free all resources.
  7805. _flush(false);
  7806. _free_rids(render_pipeline_owner, "Pipeline");
  7807. _free_rids(compute_pipeline_owner, "Compute");
  7808. _free_rids(uniform_set_owner, "UniformSet");
  7809. _free_rids(texture_buffer_owner, "TextureBuffer");
  7810. _free_rids(storage_buffer_owner, "StorageBuffer");
  7811. _free_rids(uniform_buffer_owner, "UniformBuffer");
  7812. _free_rids(shader_owner, "Shader");
  7813. _free_rids(index_array_owner, "IndexArray");
  7814. _free_rids(index_buffer_owner, "IndexBuffer");
  7815. _free_rids(vertex_array_owner, "VertexArray");
  7816. _free_rids(vertex_buffer_owner, "VertexBuffer");
  7817. _free_rids(framebuffer_owner, "Framebuffer");
  7818. _free_rids(sampler_owner, "Sampler");
  7819. {
  7820. // For textures it's a bit more difficult because they may be shared.
  7821. List<RID> owned;
  7822. texture_owner.get_owned_list(&owned);
  7823. if (owned.size()) {
  7824. if (owned.size() == 1) {
  7825. WARN_PRINT("1 RID of type \"Texture\" was leaked.");
  7826. } else {
  7827. WARN_PRINT(vformat("%d RIDs of type \"Texture\" were leaked.", owned.size()));
  7828. }
  7829. // Free shared first.
  7830. for (List<RID>::Element *E = owned.front(); E;) {
  7831. List<RID>::Element *N = E->next();
  7832. if (texture_is_shared(E->get())) {
  7833. #ifdef DEV_ENABLED
  7834. if (resource_names.has(E->get())) {
  7835. print_line(String(" - ") + resource_names[E->get()]);
  7836. }
  7837. #endif
  7838. free(E->get());
  7839. owned.erase(E);
  7840. }
  7841. E = N;
  7842. }
  7843. // Free non shared second, this will avoid an error trying to free unexisting textures due to dependencies.
  7844. for (const RID &E : owned) {
  7845. #ifdef DEV_ENABLED
  7846. if (resource_names.has(E)) {
  7847. print_line(String(" - ") + resource_names[E]);
  7848. }
  7849. #endif
  7850. free(E);
  7851. }
  7852. }
  7853. }
  7854. // Free everything pending.
  7855. for (int i = 0; i < frame_count; i++) {
  7856. int f = (frame + i) % frame_count;
  7857. _free_pending_resources(f);
  7858. vkDestroyCommandPool(device, frames[i].command_pool, nullptr);
  7859. vkDestroyQueryPool(device, frames[i].timestamp_pool, nullptr);
  7860. }
  7861. for (int i = 0; i < split_draw_list_allocators.size(); i++) {
  7862. vkDestroyCommandPool(device, split_draw_list_allocators[i].command_pool, nullptr);
  7863. }
  7864. frames.clear();
  7865. for (int i = 0; i < staging_buffer_blocks.size(); i++) {
  7866. vmaDestroyBuffer(allocator, staging_buffer_blocks[i].buffer, staging_buffer_blocks[i].allocation);
  7867. }
  7868. while (small_allocs_pools.size()) {
  7869. HashMap<uint32_t, VmaPool>::Iterator E = small_allocs_pools.begin();
  7870. vmaDestroyPool(allocator, E->value);
  7871. small_allocs_pools.remove(E);
  7872. }
  7873. vmaDestroyAllocator(allocator);
  7874. while (vertex_formats.size()) {
  7875. HashMap<VertexFormatID, VertexDescriptionCache>::Iterator temp = vertex_formats.begin();
  7876. memdelete_arr(temp->value.bindings);
  7877. memdelete_arr(temp->value.attributes);
  7878. vertex_formats.remove(temp);
  7879. }
  7880. for (KeyValue<FramebufferFormatID, FramebufferFormat> &E : framebuffer_formats) {
  7881. vkDestroyRenderPass(device, E.value.render_pass, nullptr);
  7882. }
  7883. framebuffer_formats.clear();
  7884. // All these should be clear at this point.
  7885. ERR_FAIL_COND(descriptor_pools.size());
  7886. ERR_FAIL_COND(dependency_map.size());
  7887. ERR_FAIL_COND(reverse_dependency_map.size());
  7888. }
  7889. RenderingDevice *RenderingDeviceVulkan::create_local_device() {
  7890. RenderingDeviceVulkan *rd = memnew(RenderingDeviceVulkan);
  7891. rd->initialize(context, true);
  7892. return rd;
  7893. }
  7894. bool RenderingDeviceVulkan::has_feature(const Features p_feature) const {
  7895. switch (p_feature) {
  7896. case SUPPORTS_MULTIVIEW: {
  7897. VulkanContext::MultiviewCapabilities multiview_capabilies = context->get_multiview_capabilities();
  7898. return multiview_capabilies.is_supported && multiview_capabilies.max_view_count > 1;
  7899. } break;
  7900. case SUPPORTS_FSR_HALF_FLOAT: {
  7901. return context->get_shader_capabilities().shader_float16_is_supported && context->get_storage_buffer_capabilities().storage_buffer_16_bit_access_is_supported;
  7902. } break;
  7903. case SUPPORTS_ATTACHMENT_VRS: {
  7904. VulkanContext::VRSCapabilities vrs_capabilities = context->get_vrs_capabilities();
  7905. return vrs_capabilities.attachment_vrs_supported;
  7906. } break;
  7907. default: {
  7908. return false;
  7909. }
  7910. }
  7911. }
  7912. RenderingDeviceVulkan::RenderingDeviceVulkan() {
  7913. device_capabilities.device_family = DEVICE_VULKAN;
  7914. }
  7915. RenderingDeviceVulkan::~RenderingDeviceVulkan() {
  7916. if (local_device.is_valid()) {
  7917. finalize();
  7918. context->local_device_free(local_device);
  7919. }
  7920. }