vulkan-capture.c 50 KB

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  1. #include <windows.h>
  2. #include "graphics-hook.h"
  3. #define VK_USE_PLATFORM_WIN32_KHR
  4. #include <malloc.h>
  5. #include <vulkan/vulkan.h>
  6. #include <vulkan/vk_layer.h>
  7. #include <vulkan/vulkan_win32.h>
  8. #define COBJMACROS
  9. #include <dxgi.h>
  10. #include <d3d11.h>
  11. #include "vulkan-capture.h"
  12. /* ======================================================================== */
  13. /* defs/statics */
  14. /* use the loader's dispatch table pointer as a key for internal data maps */
  15. #define GET_LDT(x) (*(void **)x)
  16. static bool vulkan_seen = false;
  17. /* ======================================================================== */
  18. /* hook data */
  19. struct vk_obj_node {
  20. uint64_t obj;
  21. struct vk_obj_node *next;
  22. };
  23. struct vk_obj_list {
  24. struct vk_obj_node *root;
  25. SRWLOCK mutex;
  26. };
  27. struct vk_swap_data {
  28. struct vk_obj_node node;
  29. VkExtent2D image_extent;
  30. VkFormat format;
  31. HWND hwnd;
  32. VkImage export_image;
  33. bool layout_initialized;
  34. VkDeviceMemory export_mem;
  35. VkImage *swap_images;
  36. uint32_t image_count;
  37. HANDLE handle;
  38. struct shtex_data *shtex_info;
  39. ID3D11Texture2D *d3d11_tex;
  40. bool captured;
  41. };
  42. struct vk_queue_data {
  43. struct vk_obj_node node;
  44. uint32_t fam_idx;
  45. bool supports_transfer;
  46. struct vk_frame_data *frames;
  47. uint32_t frame_index;
  48. uint32_t frame_count;
  49. };
  50. struct vk_frame_data {
  51. VkCommandPool cmd_pool;
  52. VkCommandBuffer cmd_buffer;
  53. VkFence fence;
  54. bool cmd_buffer_busy;
  55. };
  56. struct vk_surf_data {
  57. struct vk_obj_node node;
  58. HWND hwnd;
  59. };
  60. struct vk_inst_data {
  61. struct vk_obj_node node;
  62. bool valid;
  63. struct vk_inst_funcs funcs;
  64. struct vk_obj_list surfaces;
  65. };
  66. struct vk_data {
  67. struct vk_obj_node node;
  68. VkDevice device;
  69. bool valid;
  70. struct vk_device_funcs funcs;
  71. VkPhysicalDevice phy_device;
  72. struct vk_obj_list swaps;
  73. struct vk_swap_data *cur_swap;
  74. struct vk_obj_list queues;
  75. VkExternalMemoryProperties external_mem_props;
  76. struct vk_inst_data *inst_data;
  77. VkAllocationCallbacks ac_storage;
  78. const VkAllocationCallbacks *ac;
  79. ID3D11Device *d3d11_device;
  80. ID3D11DeviceContext *d3d11_context;
  81. };
  82. /* ------------------------------------------------------------------------- */
  83. static void *vk_alloc(const VkAllocationCallbacks *ac, size_t size,
  84. size_t alignment, enum VkSystemAllocationScope scope)
  85. {
  86. return ac ? ac->pfnAllocation(ac->pUserData, size, alignment, scope)
  87. : _aligned_malloc(size, alignment);
  88. }
  89. static void vk_free(const VkAllocationCallbacks *ac, void *memory)
  90. {
  91. if (ac)
  92. ac->pfnFree(ac->pUserData, memory);
  93. else
  94. _aligned_free(memory);
  95. }
  96. static void add_obj_data(struct vk_obj_list *list, uint64_t obj, void *data)
  97. {
  98. AcquireSRWLockExclusive(&list->mutex);
  99. struct vk_obj_node *const node = data;
  100. node->obj = obj;
  101. node->next = list->root;
  102. list->root = node;
  103. ReleaseSRWLockExclusive(&list->mutex);
  104. }
  105. static struct vk_obj_node *get_obj_data(struct vk_obj_list *list, uint64_t obj)
  106. {
  107. struct vk_obj_node *data = NULL;
  108. AcquireSRWLockExclusive(&list->mutex);
  109. struct vk_obj_node *node = list->root;
  110. while (node) {
  111. if (node->obj == obj) {
  112. data = node;
  113. break;
  114. }
  115. node = node->next;
  116. }
  117. ReleaseSRWLockExclusive(&list->mutex);
  118. return data;
  119. }
  120. static struct vk_obj_node *remove_obj_data(struct vk_obj_list *list,
  121. uint64_t obj)
  122. {
  123. struct vk_obj_node *data = NULL;
  124. AcquireSRWLockExclusive(&list->mutex);
  125. struct vk_obj_node *prev = NULL;
  126. struct vk_obj_node *node = list->root;
  127. while (node) {
  128. if (node->obj == obj) {
  129. data = node;
  130. if (prev)
  131. prev->next = node->next;
  132. else
  133. list->root = node->next;
  134. break;
  135. }
  136. prev = node;
  137. node = node->next;
  138. }
  139. ReleaseSRWLockExclusive(&list->mutex);
  140. return data;
  141. }
  142. static void init_obj_list(struct vk_obj_list *list)
  143. {
  144. list->root = NULL;
  145. InitializeSRWLock(&list->mutex);
  146. }
  147. static struct vk_obj_node *obj_walk_begin(struct vk_obj_list *list)
  148. {
  149. AcquireSRWLockExclusive(&list->mutex);
  150. return list->root;
  151. }
  152. static struct vk_obj_node *obj_walk_next(struct vk_obj_node *node)
  153. {
  154. return node->next;
  155. }
  156. static void obj_walk_end(struct vk_obj_list *list)
  157. {
  158. ReleaseSRWLockExclusive(&list->mutex);
  159. }
  160. /* ------------------------------------------------------------------------- */
  161. static struct vk_obj_list devices;
  162. static struct vk_data *alloc_device_data(const VkAllocationCallbacks *ac)
  163. {
  164. struct vk_data *data = vk_alloc(ac, sizeof(struct vk_data),
  165. _Alignof(struct vk_data),
  166. VK_SYSTEM_ALLOCATION_SCOPE_DEVICE);
  167. return data;
  168. }
  169. static void init_device_data(struct vk_data *data, VkDevice device)
  170. {
  171. add_obj_data(&devices, (uint64_t)GET_LDT(device), data);
  172. data->device = device;
  173. }
  174. static struct vk_data *get_device_data(VkDevice device)
  175. {
  176. return (struct vk_data *)get_obj_data(&devices,
  177. (uint64_t)GET_LDT(device));
  178. }
  179. static struct vk_data *get_device_data_by_queue(VkQueue queue)
  180. {
  181. return (struct vk_data *)get_obj_data(&devices,
  182. (uint64_t)GET_LDT(queue));
  183. }
  184. static struct vk_data *remove_device_data(VkDevice device)
  185. {
  186. return (struct vk_data *)remove_obj_data(&devices,
  187. (uint64_t)GET_LDT(device));
  188. }
  189. static void free_device_data(struct vk_data *data,
  190. const VkAllocationCallbacks *ac)
  191. {
  192. vk_free(ac, data);
  193. }
  194. /* ------------------------------------------------------------------------- */
  195. static struct vk_queue_data *add_queue_data(struct vk_data *data, VkQueue queue,
  196. uint32_t fam_idx,
  197. bool supports_transfer,
  198. const VkAllocationCallbacks *ac)
  199. {
  200. struct vk_queue_data *const queue_data =
  201. vk_alloc(ac, sizeof(struct vk_queue_data),
  202. _Alignof(struct vk_queue_data),
  203. VK_SYSTEM_ALLOCATION_SCOPE_DEVICE);
  204. add_obj_data(&data->queues, (uint64_t)queue, queue_data);
  205. queue_data->fam_idx = fam_idx;
  206. queue_data->supports_transfer = supports_transfer;
  207. queue_data->frames = NULL;
  208. queue_data->frame_index = 0;
  209. queue_data->frame_count = 0;
  210. return queue_data;
  211. }
  212. static struct vk_queue_data *get_queue_data(struct vk_data *data, VkQueue queue)
  213. {
  214. return (struct vk_queue_data *)get_obj_data(&data->queues,
  215. (uint64_t)queue);
  216. }
  217. static VkQueue get_queue_key(const struct vk_queue_data *queue_data)
  218. {
  219. return (VkQueue)(uintptr_t)queue_data->node.obj;
  220. }
  221. static void remove_free_queue_all(struct vk_data *data,
  222. const VkAllocationCallbacks *ac)
  223. {
  224. struct vk_queue_data *queue_data =
  225. (struct vk_queue_data *)data->queues.root;
  226. while (data->queues.root) {
  227. remove_obj_data(&data->queues, queue_data->node.obj);
  228. vk_free(ac, queue_data);
  229. queue_data = (struct vk_queue_data *)data->queues.root;
  230. }
  231. }
  232. static struct vk_queue_data *queue_walk_begin(struct vk_data *data)
  233. {
  234. return (struct vk_queue_data *)obj_walk_begin(&data->queues);
  235. }
  236. static struct vk_queue_data *queue_walk_next(struct vk_queue_data *queue_data)
  237. {
  238. return (struct vk_queue_data *)obj_walk_next(
  239. (struct vk_obj_node *)queue_data);
  240. }
  241. static void queue_walk_end(struct vk_data *data)
  242. {
  243. obj_walk_end(&data->queues);
  244. }
  245. /* ------------------------------------------------------------------------- */
  246. static struct vk_swap_data *alloc_swap_data(const VkAllocationCallbacks *ac)
  247. {
  248. struct vk_swap_data *const swap_data = vk_alloc(
  249. ac, sizeof(struct vk_swap_data), _Alignof(struct vk_swap_data),
  250. VK_SYSTEM_ALLOCATION_SCOPE_OBJECT);
  251. return swap_data;
  252. }
  253. static void init_swap_data(struct vk_swap_data *swap_data, struct vk_data *data,
  254. VkSwapchainKHR sc)
  255. {
  256. add_obj_data(&data->swaps, (uint64_t)sc, swap_data);
  257. }
  258. static struct vk_swap_data *get_swap_data(struct vk_data *data,
  259. VkSwapchainKHR sc)
  260. {
  261. return (struct vk_swap_data *)get_obj_data(&data->swaps, (uint64_t)sc);
  262. }
  263. static void remove_free_swap_data(struct vk_data *data, VkSwapchainKHR sc,
  264. const VkAllocationCallbacks *ac)
  265. {
  266. struct vk_swap_data *const swap_data =
  267. (struct vk_swap_data *)remove_obj_data(&data->swaps,
  268. (uint64_t)sc);
  269. vk_free(ac, swap_data);
  270. }
  271. static struct vk_swap_data *swap_walk_begin(struct vk_data *data)
  272. {
  273. return (struct vk_swap_data *)obj_walk_begin(&data->swaps);
  274. }
  275. static struct vk_swap_data *swap_walk_next(struct vk_swap_data *swap_data)
  276. {
  277. return (struct vk_swap_data *)obj_walk_next(
  278. (struct vk_obj_node *)swap_data);
  279. }
  280. static void swap_walk_end(struct vk_data *data)
  281. {
  282. obj_walk_end(&data->swaps);
  283. }
  284. /* ------------------------------------------------------------------------- */
  285. static void vk_shtex_clear_fence(const struct vk_data *data,
  286. struct vk_frame_data *frame_data)
  287. {
  288. const VkFence fence = frame_data->fence;
  289. if (frame_data->cmd_buffer_busy) {
  290. VkDevice device = data->device;
  291. const struct vk_device_funcs *funcs = &data->funcs;
  292. funcs->WaitForFences(device, 1, &fence, VK_TRUE, ~0ull);
  293. funcs->ResetFences(device, 1, &fence);
  294. frame_data->cmd_buffer_busy = false;
  295. }
  296. }
  297. static void vk_shtex_wait_until_pool_idle(struct vk_data *data,
  298. struct vk_queue_data *queue_data)
  299. {
  300. for (uint32_t frame_idx = 0; frame_idx < queue_data->frame_count;
  301. frame_idx++) {
  302. struct vk_frame_data *frame_data =
  303. &queue_data->frames[frame_idx];
  304. if (frame_data->cmd_pool != VK_NULL_HANDLE)
  305. vk_shtex_clear_fence(data, frame_data);
  306. }
  307. }
  308. static void vk_shtex_wait_until_idle(struct vk_data *data)
  309. {
  310. struct vk_queue_data *queue_data = queue_walk_begin(data);
  311. while (queue_data) {
  312. vk_shtex_wait_until_pool_idle(data, queue_data);
  313. queue_data = queue_walk_next(queue_data);
  314. }
  315. queue_walk_end(data);
  316. }
  317. static void vk_shtex_free(struct vk_data *data)
  318. {
  319. capture_free();
  320. vk_shtex_wait_until_idle(data);
  321. struct vk_swap_data *swap = swap_walk_begin(data);
  322. while (swap) {
  323. VkDevice device = data->device;
  324. if (swap->export_image)
  325. data->funcs.DestroyImage(device, swap->export_image,
  326. data->ac);
  327. if (swap->export_mem)
  328. data->funcs.FreeMemory(device, swap->export_mem, NULL);
  329. if (swap->d3d11_tex) {
  330. ID3D11Texture2D_Release(swap->d3d11_tex);
  331. }
  332. swap->handle = INVALID_HANDLE_VALUE;
  333. swap->d3d11_tex = NULL;
  334. swap->export_mem = VK_NULL_HANDLE;
  335. swap->export_image = VK_NULL_HANDLE;
  336. swap->captured = false;
  337. swap = swap_walk_next(swap);
  338. }
  339. swap_walk_end(data);
  340. if (data->d3d11_context) {
  341. ID3D11DeviceContext_Release(data->d3d11_context);
  342. data->d3d11_context = NULL;
  343. }
  344. if (data->d3d11_device) {
  345. ID3D11Device_Release(data->d3d11_device);
  346. data->d3d11_device = NULL;
  347. }
  348. data->cur_swap = NULL;
  349. hlog("------------------ vulkan capture freed ------------------");
  350. }
  351. /* ------------------------------------------------------------------------- */
  352. static void add_surf_data(struct vk_inst_data *idata, VkSurfaceKHR surf,
  353. HWND hwnd, const VkAllocationCallbacks *ac)
  354. {
  355. struct vk_surf_data *surf_data = vk_alloc(
  356. ac, sizeof(struct vk_surf_data), _Alignof(struct vk_surf_data),
  357. VK_SYSTEM_ALLOCATION_SCOPE_OBJECT);
  358. if (surf_data) {
  359. surf_data->hwnd = hwnd;
  360. add_obj_data(&idata->surfaces, (uint64_t)surf, surf_data);
  361. }
  362. }
  363. static HWND find_surf_hwnd(struct vk_inst_data *idata, VkSurfaceKHR surf)
  364. {
  365. struct vk_surf_data *surf_data = (struct vk_surf_data *)get_obj_data(
  366. &idata->surfaces, (uint64_t)surf);
  367. return surf_data->hwnd;
  368. }
  369. static void remove_free_surf_data(struct vk_inst_data *idata, VkSurfaceKHR surf,
  370. const VkAllocationCallbacks *ac)
  371. {
  372. struct vk_surf_data *surf_data = (struct vk_surf_data *)remove_obj_data(
  373. &idata->surfaces, (uint64_t)surf);
  374. vk_free(ac, surf_data);
  375. }
  376. /* ------------------------------------------------------------------------- */
  377. static struct vk_obj_list instances;
  378. static struct vk_inst_data *alloc_inst_data(const VkAllocationCallbacks *ac)
  379. {
  380. struct vk_inst_data *idata = vk_alloc(
  381. ac, sizeof(struct vk_inst_data), _Alignof(struct vk_inst_data),
  382. VK_SYSTEM_ALLOCATION_SCOPE_INSTANCE);
  383. return idata;
  384. }
  385. static void init_inst_data(struct vk_inst_data *data, VkInstance inst)
  386. {
  387. add_obj_data(&instances, (uint64_t)GET_LDT(inst), data);
  388. }
  389. static struct vk_inst_data *get_inst_data(VkInstance inst)
  390. {
  391. return (struct vk_inst_data *)get_obj_data(&instances,
  392. (uint64_t)GET_LDT(inst));
  393. }
  394. static struct vk_inst_funcs *get_inst_funcs(VkInstance inst)
  395. {
  396. struct vk_inst_data *idata = (struct vk_inst_data *)get_inst_data(inst);
  397. return &idata->funcs;
  398. }
  399. static struct vk_inst_data *
  400. get_inst_data_by_physical_device(VkPhysicalDevice physicalDevice)
  401. {
  402. return (struct vk_inst_data *)get_obj_data(
  403. &instances, (uint64_t)GET_LDT(physicalDevice));
  404. }
  405. static struct vk_inst_funcs *
  406. get_inst_funcs_by_physical_device(VkPhysicalDevice physicalDevice)
  407. {
  408. struct vk_inst_data *idata =
  409. (struct vk_inst_data *)get_inst_data_by_physical_device(
  410. physicalDevice);
  411. return &idata->funcs;
  412. }
  413. static void remove_free_inst_data(VkInstance inst,
  414. const VkAllocationCallbacks *ac)
  415. {
  416. struct vk_inst_data *idata = (struct vk_inst_data *)remove_obj_data(
  417. &instances, (uint64_t)GET_LDT(inst));
  418. vk_free(ac, idata);
  419. }
  420. /* ======================================================================== */
  421. /* capture */
  422. static inline bool vk_shtex_init_d3d11(struct vk_data *data)
  423. {
  424. D3D_FEATURE_LEVEL level_used;
  425. IDXGIFactory1 *factory;
  426. IDXGIAdapter1 *adapter;
  427. HRESULT hr;
  428. HMODULE d3d11 = load_system_library("d3d11.dll");
  429. if (!d3d11) {
  430. flog("failed to load d3d11: %d", GetLastError());
  431. return false;
  432. }
  433. HMODULE dxgi = load_system_library("dxgi.dll");
  434. if (!dxgi) {
  435. flog("failed to load dxgi: %d", GetLastError());
  436. return false;
  437. }
  438. HRESULT(WINAPI * create_factory)
  439. (REFIID, void **) = (void *)GetProcAddress(dxgi, "CreateDXGIFactory1");
  440. if (!create_factory) {
  441. flog("failed to get CreateDXGIFactory1 address: %d",
  442. GetLastError());
  443. return false;
  444. }
  445. PFN_D3D11_CREATE_DEVICE create =
  446. (void *)GetProcAddress(d3d11, "D3D11CreateDevice");
  447. if (!create) {
  448. flog("failed to get D3D11CreateDevice address: %d",
  449. GetLastError());
  450. return false;
  451. }
  452. hr = create_factory(&IID_IDXGIFactory1, &factory);
  453. if (FAILED(hr)) {
  454. flog_hr("failed to create factory", hr);
  455. return false;
  456. }
  457. hr = IDXGIFactory1_EnumAdapters1(factory, 0, &adapter);
  458. IDXGIFactory1_Release(factory);
  459. if (FAILED(hr)) {
  460. flog_hr("failed to create adapter", hr);
  461. return false;
  462. }
  463. static const D3D_FEATURE_LEVEL feature_levels[] = {
  464. D3D_FEATURE_LEVEL_11_0,
  465. D3D_FEATURE_LEVEL_10_1,
  466. D3D_FEATURE_LEVEL_10_0,
  467. D3D_FEATURE_LEVEL_9_3,
  468. };
  469. hr = create((IDXGIAdapter *)adapter, D3D_DRIVER_TYPE_UNKNOWN, NULL, 0,
  470. feature_levels,
  471. sizeof(feature_levels) / sizeof(D3D_FEATURE_LEVEL),
  472. D3D11_SDK_VERSION, &data->d3d11_device, &level_used,
  473. &data->d3d11_context);
  474. IDXGIAdapter1_Release(adapter);
  475. if (FAILED(hr)) {
  476. flog_hr("failed to create device", hr);
  477. return false;
  478. }
  479. return true;
  480. }
  481. static inline bool vk_shtex_init_d3d11_tex(struct vk_data *data,
  482. struct vk_swap_data *swap)
  483. {
  484. IDXGIResource *dxgi_res;
  485. HRESULT hr;
  486. const UINT width = swap->image_extent.width;
  487. const UINT height = swap->image_extent.height;
  488. flog("OBS requesting %s texture format. capture dimensions: %ux%u",
  489. vk_format_to_str(swap->format), width, height);
  490. const DXGI_FORMAT format = vk_format_to_dxgi(swap->format);
  491. if (format == DXGI_FORMAT_UNKNOWN) {
  492. flog("cannot convert to DXGI format");
  493. return false;
  494. }
  495. D3D11_TEXTURE2D_DESC desc = {0};
  496. desc.Width = width;
  497. desc.Height = height;
  498. desc.MipLevels = 1;
  499. desc.ArraySize = 1;
  500. desc.Format = format;
  501. desc.SampleDesc.Count = 1;
  502. desc.SampleDesc.Quality = 0;
  503. desc.Usage = D3D11_USAGE_DEFAULT;
  504. desc.MiscFlags = D3D11_RESOURCE_MISC_SHARED;
  505. desc.BindFlags = D3D11_BIND_RENDER_TARGET | D3D11_BIND_SHADER_RESOURCE;
  506. hr = ID3D11Device_CreateTexture2D(data->d3d11_device, &desc, NULL,
  507. &swap->d3d11_tex);
  508. if (FAILED(hr)) {
  509. flog_hr("failed to create texture", hr);
  510. return false;
  511. }
  512. hr = ID3D11Texture2D_QueryInterface(swap->d3d11_tex, &IID_IDXGIResource,
  513. &dxgi_res);
  514. if (FAILED(hr)) {
  515. flog_hr("failed to get IDXGIResource", hr);
  516. return false;
  517. }
  518. hr = IDXGIResource_GetSharedHandle(dxgi_res, &swap->handle);
  519. IDXGIResource_Release(dxgi_res);
  520. if (FAILED(hr)) {
  521. flog_hr("failed to get shared handle", hr);
  522. return false;
  523. }
  524. return true;
  525. }
  526. static inline bool vk_shtex_init_vulkan_tex(struct vk_data *data,
  527. struct vk_swap_data *swap)
  528. {
  529. struct vk_device_funcs *funcs = &data->funcs;
  530. VkExternalMemoryFeatureFlags f =
  531. data->external_mem_props.externalMemoryFeatures;
  532. /* -------------------------------------------------------- */
  533. /* create texture */
  534. VkExternalMemoryImageCreateInfo emici;
  535. emici.sType = VK_STRUCTURE_TYPE_EXTERNAL_MEMORY_IMAGE_CREATE_INFO;
  536. emici.pNext = NULL;
  537. emici.handleTypes =
  538. VK_EXTERNAL_MEMORY_HANDLE_TYPE_D3D11_TEXTURE_KMT_BIT;
  539. VkImageCreateInfo ici;
  540. ici.sType = VK_STRUCTURE_TYPE_IMAGE_CREATE_INFO;
  541. ici.pNext = &emici;
  542. ici.flags = 0;
  543. ici.imageType = VK_IMAGE_TYPE_2D;
  544. ici.format = swap->format;
  545. ici.extent.width = swap->image_extent.width;
  546. ici.extent.height = swap->image_extent.height;
  547. ici.extent.depth = 1;
  548. ici.mipLevels = 1;
  549. ici.arrayLayers = 1;
  550. ici.samples = VK_SAMPLE_COUNT_1_BIT;
  551. ici.tiling = VK_IMAGE_TILING_OPTIMAL;
  552. ici.usage = VK_IMAGE_USAGE_TRANSFER_DST_BIT |
  553. VK_IMAGE_USAGE_SAMPLED_BIT;
  554. ici.sharingMode = VK_SHARING_MODE_EXCLUSIVE;
  555. ici.queueFamilyIndexCount = 0;
  556. ici.pQueueFamilyIndices = 0;
  557. ici.initialLayout = VK_IMAGE_LAYOUT_UNDEFINED;
  558. VkDevice device = data->device;
  559. VkResult res;
  560. res = funcs->CreateImage(device, &ici, data->ac, &swap->export_image);
  561. if (VK_SUCCESS != res) {
  562. flog("failed to CreateImage: %s", result_to_str(res));
  563. swap->export_image = VK_NULL_HANDLE;
  564. return false;
  565. }
  566. swap->layout_initialized = false;
  567. /* -------------------------------------------------------- */
  568. /* get image memory requirements */
  569. VkMemoryRequirements mr;
  570. bool use_gimr2 = f & VK_EXTERNAL_MEMORY_FEATURE_DEDICATED_ONLY_BIT;
  571. if (use_gimr2) {
  572. VkMemoryDedicatedRequirements mdr = {0};
  573. mdr.sType = VK_STRUCTURE_TYPE_MEMORY_DEDICATED_REQUIREMENTS;
  574. mdr.pNext = NULL;
  575. VkMemoryRequirements2 mr2 = {0};
  576. mr2.sType = VK_STRUCTURE_TYPE_MEMORY_REQUIREMENTS_2;
  577. mr2.pNext = &mdr;
  578. VkImageMemoryRequirementsInfo2 imri2 = {0};
  579. imri2.sType =
  580. VK_STRUCTURE_TYPE_IMAGE_MEMORY_REQUIREMENTS_INFO_2;
  581. imri2.pNext = NULL;
  582. imri2.image = swap->export_image;
  583. funcs->GetImageMemoryRequirements2(device, &imri2, &mr2);
  584. mr = mr2.memoryRequirements;
  585. } else {
  586. funcs->GetImageMemoryRequirements(device, swap->export_image,
  587. &mr);
  588. }
  589. /* -------------------------------------------------------- */
  590. /* get memory type index */
  591. struct vk_inst_funcs *ifuncs =
  592. get_inst_funcs_by_physical_device(data->phy_device);
  593. VkPhysicalDeviceMemoryProperties pdmp;
  594. ifuncs->GetPhysicalDeviceMemoryProperties(data->phy_device, &pdmp);
  595. uint32_t mem_type_idx = 0;
  596. for (; mem_type_idx < pdmp.memoryTypeCount; mem_type_idx++) {
  597. if ((mr.memoryTypeBits & (1 << mem_type_idx)) &&
  598. (pdmp.memoryTypes[mem_type_idx].propertyFlags &
  599. VK_MEMORY_PROPERTY_DEVICE_LOCAL_BIT) ==
  600. VK_MEMORY_PROPERTY_DEVICE_LOCAL_BIT) {
  601. break;
  602. }
  603. }
  604. if (mem_type_idx == pdmp.memoryTypeCount) {
  605. flog("failed to get memory type index");
  606. funcs->DestroyImage(device, swap->export_image, data->ac);
  607. swap->export_image = VK_NULL_HANDLE;
  608. return false;
  609. }
  610. /* -------------------------------------------------------- */
  611. /* allocate memory */
  612. VkImportMemoryWin32HandleInfoKHR imw32hi;
  613. imw32hi.sType = VK_STRUCTURE_TYPE_IMPORT_MEMORY_WIN32_HANDLE_INFO_KHR;
  614. imw32hi.pNext = NULL;
  615. imw32hi.name = NULL;
  616. imw32hi.handleType =
  617. VK_EXTERNAL_MEMORY_HANDLE_TYPE_D3D11_TEXTURE_KMT_BIT;
  618. imw32hi.handle = swap->handle;
  619. VkMemoryAllocateInfo mai;
  620. mai.sType = VK_STRUCTURE_TYPE_MEMORY_ALLOCATE_INFO;
  621. mai.pNext = &imw32hi;
  622. mai.allocationSize = mr.size;
  623. mai.memoryTypeIndex = mem_type_idx;
  624. VkMemoryDedicatedAllocateInfo mdai;
  625. mdai.sType = VK_STRUCTURE_TYPE_MEMORY_DEDICATED_ALLOCATE_INFO;
  626. mdai.pNext = NULL;
  627. mdai.buffer = VK_NULL_HANDLE;
  628. if (data->external_mem_props.externalMemoryFeatures &
  629. VK_EXTERNAL_MEMORY_FEATURE_DEDICATED_ONLY_BIT) {
  630. mdai.image = swap->export_image;
  631. imw32hi.pNext = &mdai;
  632. }
  633. res = funcs->AllocateMemory(device, &mai, NULL, &swap->export_mem);
  634. if (VK_SUCCESS != res) {
  635. flog("failed to AllocateMemory: %s", result_to_str(res));
  636. funcs->DestroyImage(device, swap->export_image, data->ac);
  637. swap->export_image = VK_NULL_HANDLE;
  638. return false;
  639. }
  640. /* -------------------------------------------------------- */
  641. /* bind image memory */
  642. bool use_bi2 = f & VK_EXTERNAL_MEMORY_FEATURE_DEDICATED_ONLY_BIT;
  643. if (use_bi2) {
  644. VkBindImageMemoryInfo bimi = {0};
  645. bimi.sType = VK_STRUCTURE_TYPE_BIND_IMAGE_MEMORY_INFO;
  646. bimi.image = swap->export_image;
  647. bimi.memory = swap->export_mem;
  648. bimi.memoryOffset = 0;
  649. res = funcs->BindImageMemory2(device, 1, &bimi);
  650. } else {
  651. res = funcs->BindImageMemory(device, swap->export_image,
  652. swap->export_mem, 0);
  653. }
  654. if (VK_SUCCESS != res) {
  655. flog("%s failed: %s",
  656. use_bi2 ? "BindImageMemory2" : "BindImageMemory",
  657. result_to_str(res));
  658. funcs->DestroyImage(device, swap->export_image, data->ac);
  659. swap->export_image = VK_NULL_HANDLE;
  660. return false;
  661. }
  662. return true;
  663. }
  664. static bool vk_shtex_init(struct vk_data *data, HWND window,
  665. struct vk_swap_data *swap)
  666. {
  667. if (!vk_shtex_init_d3d11(data)) {
  668. return false;
  669. }
  670. if (!vk_shtex_init_d3d11_tex(data, swap)) {
  671. return false;
  672. }
  673. if (!vk_shtex_init_vulkan_tex(data, swap)) {
  674. return false;
  675. }
  676. data->cur_swap = swap;
  677. swap->captured = capture_init_shtex(&swap->shtex_info, window,
  678. swap->image_extent.width,
  679. swap->image_extent.height,
  680. (uint32_t)swap->format, false,
  681. (uintptr_t)swap->handle);
  682. if (!swap->captured)
  683. return false;
  684. if (global_hook_info->force_shmem) {
  685. flog("shared memory capture currently "
  686. "unsupported; ignoring");
  687. }
  688. hlog("vulkan shared texture capture successful");
  689. return true;
  690. }
  691. static void vk_shtex_create_frame_objects(struct vk_data *data,
  692. struct vk_queue_data *queue_data,
  693. uint32_t image_count)
  694. {
  695. queue_data->frames =
  696. vk_alloc(data->ac, image_count * sizeof(struct vk_frame_data),
  697. _Alignof(struct vk_frame_data),
  698. VK_SYSTEM_ALLOCATION_SCOPE_OBJECT);
  699. memset(queue_data->frames, 0,
  700. image_count * sizeof(struct vk_frame_data));
  701. queue_data->frame_index = 0;
  702. queue_data->frame_count = image_count;
  703. VkDevice device = data->device;
  704. for (uint32_t image_index = 0; image_index < image_count;
  705. image_index++) {
  706. struct vk_frame_data *frame_data =
  707. &queue_data->frames[image_index];
  708. VkCommandPoolCreateInfo cpci;
  709. cpci.sType = VK_STRUCTURE_TYPE_COMMAND_POOL_CREATE_INFO;
  710. cpci.pNext = NULL;
  711. cpci.flags = 0;
  712. cpci.queueFamilyIndex = queue_data->fam_idx;
  713. VkResult res = data->funcs.CreateCommandPool(
  714. device, &cpci, data->ac, &frame_data->cmd_pool);
  715. debug_res("CreateCommandPool", res);
  716. VkCommandBufferAllocateInfo cbai;
  717. cbai.sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_ALLOCATE_INFO;
  718. cbai.pNext = NULL;
  719. cbai.commandPool = frame_data->cmd_pool;
  720. cbai.level = VK_COMMAND_BUFFER_LEVEL_PRIMARY;
  721. cbai.commandBufferCount = 1;
  722. res = data->funcs.AllocateCommandBuffers(
  723. device, &cbai, &frame_data->cmd_buffer);
  724. debug_res("AllocateCommandBuffers", res);
  725. GET_LDT(frame_data->cmd_buffer) = GET_LDT(device);
  726. VkFenceCreateInfo fci = {0};
  727. fci.sType = VK_STRUCTURE_TYPE_FENCE_CREATE_INFO;
  728. fci.pNext = NULL;
  729. fci.flags = 0;
  730. res = data->funcs.CreateFence(device, &fci, data->ac,
  731. &frame_data->fence);
  732. debug_res("CreateFence", res);
  733. }
  734. }
  735. static void vk_shtex_destroy_fence(struct vk_data *data, bool *cmd_buffer_busy,
  736. VkFence *fence)
  737. {
  738. VkDevice device = data->device;
  739. if (*cmd_buffer_busy) {
  740. data->funcs.WaitForFences(device, 1, fence, VK_TRUE, ~0ull);
  741. *cmd_buffer_busy = false;
  742. }
  743. data->funcs.DestroyFence(device, *fence, data->ac);
  744. *fence = VK_NULL_HANDLE;
  745. }
  746. static void vk_shtex_destroy_frame_objects(struct vk_data *data,
  747. struct vk_queue_data *queue_data)
  748. {
  749. VkDevice device = data->device;
  750. for (uint32_t frame_idx = 0; frame_idx < queue_data->frame_count;
  751. frame_idx++) {
  752. struct vk_frame_data *frame_data =
  753. &queue_data->frames[frame_idx];
  754. bool *cmd_buffer_busy = &frame_data->cmd_buffer_busy;
  755. VkFence *fence = &frame_data->fence;
  756. vk_shtex_destroy_fence(data, cmd_buffer_busy, fence);
  757. data->funcs.DestroyCommandPool(device, frame_data->cmd_pool,
  758. data->ac);
  759. frame_data->cmd_pool = VK_NULL_HANDLE;
  760. }
  761. vk_free(data->ac, queue_data->frames);
  762. queue_data->frames = NULL;
  763. queue_data->frame_count = 0;
  764. }
  765. static void vk_shtex_capture(struct vk_data *data,
  766. struct vk_device_funcs *funcs,
  767. struct vk_swap_data *swap, uint32_t idx,
  768. VkQueue queue, const VkPresentInfoKHR *info)
  769. {
  770. VkResult res = VK_SUCCESS;
  771. VkCommandBufferBeginInfo begin_info;
  772. begin_info.sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_BEGIN_INFO;
  773. begin_info.pNext = NULL;
  774. begin_info.flags = VK_COMMAND_BUFFER_USAGE_ONE_TIME_SUBMIT_BIT;
  775. begin_info.pInheritanceInfo = NULL;
  776. VkImageMemoryBarrier mb[2];
  777. VkImageMemoryBarrier *src_mb = &mb[0];
  778. VkImageMemoryBarrier *dst_mb = &mb[1];
  779. /* ------------------------------------------------------ */
  780. /* do image copy */
  781. const uint32_t image_index = info->pImageIndices[idx];
  782. VkImage cur_backbuffer = swap->swap_images[image_index];
  783. struct vk_queue_data *queue_data = get_queue_data(data, queue);
  784. uint32_t fam_idx = queue_data->fam_idx;
  785. const uint32_t image_count = swap->image_count;
  786. if (queue_data->frame_count < image_count) {
  787. if (queue_data->frame_count > 0)
  788. vk_shtex_destroy_frame_objects(data, queue_data);
  789. vk_shtex_create_frame_objects(data, queue_data, image_count);
  790. }
  791. const uint32_t frame_index = queue_data->frame_index;
  792. struct vk_frame_data *frame_data = &queue_data->frames[frame_index];
  793. queue_data->frame_index = (frame_index + 1) % queue_data->frame_count;
  794. vk_shtex_clear_fence(data, frame_data);
  795. VkDevice device = data->device;
  796. res = funcs->ResetCommandPool(device, frame_data->cmd_pool, 0);
  797. #ifdef MORE_DEBUGGING
  798. debug_res("ResetCommandPool", res);
  799. #endif
  800. const VkCommandBuffer cmd_buffer = frame_data->cmd_buffer;
  801. res = funcs->BeginCommandBuffer(cmd_buffer, &begin_info);
  802. #ifdef MORE_DEBUGGING
  803. debug_res("BeginCommandBuffer", res);
  804. #endif
  805. /* ------------------------------------------------------ */
  806. /* transition shared texture if necessary */
  807. if (!swap->layout_initialized) {
  808. VkImageMemoryBarrier imb;
  809. imb.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  810. imb.pNext = NULL;
  811. imb.srcAccessMask = 0;
  812. imb.dstAccessMask = 0;
  813. imb.oldLayout = VK_IMAGE_LAYOUT_UNDEFINED;
  814. imb.newLayout = VK_IMAGE_LAYOUT_GENERAL;
  815. imb.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  816. imb.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  817. imb.image = swap->export_image;
  818. imb.subresourceRange.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
  819. imb.subresourceRange.baseMipLevel = 0;
  820. imb.subresourceRange.levelCount = 1;
  821. imb.subresourceRange.baseArrayLayer = 0;
  822. imb.subresourceRange.layerCount = 1;
  823. funcs->CmdPipelineBarrier(cmd_buffer,
  824. VK_PIPELINE_STAGE_TOP_OF_PIPE_BIT,
  825. VK_PIPELINE_STAGE_TOP_OF_PIPE_BIT, 0,
  826. 0, NULL, 0, NULL, 1, &imb);
  827. swap->layout_initialized = true;
  828. }
  829. /* ------------------------------------------------------ */
  830. /* transition cur_backbuffer to transfer source state */
  831. src_mb->sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  832. src_mb->pNext = NULL;
  833. src_mb->srcAccessMask = VK_ACCESS_MEMORY_READ_BIT;
  834. src_mb->dstAccessMask = VK_ACCESS_TRANSFER_READ_BIT;
  835. src_mb->oldLayout = VK_IMAGE_LAYOUT_PRESENT_SRC_KHR;
  836. src_mb->newLayout = VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL;
  837. src_mb->srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  838. src_mb->dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED;
  839. src_mb->image = cur_backbuffer;
  840. src_mb->subresourceRange.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
  841. src_mb->subresourceRange.baseMipLevel = 0;
  842. src_mb->subresourceRange.levelCount = 1;
  843. src_mb->subresourceRange.baseArrayLayer = 0;
  844. src_mb->subresourceRange.layerCount = 1;
  845. /* ------------------------------------------------------ */
  846. /* transition exportedTexture to transfer dest state */
  847. dst_mb->sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER;
  848. dst_mb->pNext = NULL;
  849. dst_mb->srcAccessMask = 0;
  850. dst_mb->dstAccessMask = VK_ACCESS_TRANSFER_WRITE_BIT;
  851. dst_mb->oldLayout = VK_IMAGE_LAYOUT_GENERAL;
  852. dst_mb->newLayout = VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL;
  853. dst_mb->srcQueueFamilyIndex = VK_QUEUE_FAMILY_EXTERNAL;
  854. dst_mb->dstQueueFamilyIndex = fam_idx;
  855. dst_mb->image = swap->export_image;
  856. dst_mb->subresourceRange.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
  857. dst_mb->subresourceRange.baseMipLevel = 0;
  858. dst_mb->subresourceRange.levelCount = 1;
  859. dst_mb->subresourceRange.baseArrayLayer = 0;
  860. dst_mb->subresourceRange.layerCount = 1;
  861. funcs->CmdPipelineBarrier(cmd_buffer,
  862. VK_PIPELINE_STAGE_BOTTOM_OF_PIPE_BIT,
  863. VK_PIPELINE_STAGE_TRANSFER_BIT, 0, 0, NULL, 0,
  864. NULL, 2, mb);
  865. /* ------------------------------------------------------ */
  866. /* copy cur_backbuffer's content to our interop image */
  867. VkImageCopy cpy;
  868. cpy.srcSubresource.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
  869. cpy.srcSubresource.mipLevel = 0;
  870. cpy.srcSubresource.baseArrayLayer = 0;
  871. cpy.srcSubresource.layerCount = 1;
  872. cpy.srcOffset.x = 0;
  873. cpy.srcOffset.y = 0;
  874. cpy.srcOffset.z = 0;
  875. cpy.dstSubresource.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT;
  876. cpy.dstSubresource.mipLevel = 0;
  877. cpy.dstSubresource.baseArrayLayer = 0;
  878. cpy.dstSubresource.layerCount = 1;
  879. cpy.dstOffset.x = 0;
  880. cpy.dstOffset.y = 0;
  881. cpy.dstOffset.z = 0;
  882. cpy.extent.width = swap->image_extent.width;
  883. cpy.extent.height = swap->image_extent.height;
  884. cpy.extent.depth = 1;
  885. funcs->CmdCopyImage(cmd_buffer, cur_backbuffer,
  886. VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL,
  887. swap->export_image,
  888. VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL, 1, &cpy);
  889. /* ------------------------------------------------------ */
  890. /* Restore the swap chain image layout to what it was
  891. * before. This may not be strictly needed, but it is
  892. * generally good to restore things to their original
  893. * state. */
  894. src_mb->srcAccessMask = VK_ACCESS_TRANSFER_READ_BIT;
  895. src_mb->dstAccessMask = VK_ACCESS_MEMORY_READ_BIT;
  896. src_mb->oldLayout = VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL;
  897. src_mb->newLayout = VK_IMAGE_LAYOUT_PRESENT_SRC_KHR;
  898. dst_mb->srcAccessMask = VK_ACCESS_TRANSFER_WRITE_BIT;
  899. dst_mb->dstAccessMask = 0;
  900. dst_mb->oldLayout = VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL;
  901. dst_mb->newLayout = VK_IMAGE_LAYOUT_GENERAL;
  902. dst_mb->srcQueueFamilyIndex = fam_idx;
  903. dst_mb->dstQueueFamilyIndex = VK_QUEUE_FAMILY_EXTERNAL;
  904. funcs->CmdPipelineBarrier(cmd_buffer, VK_PIPELINE_STAGE_TRANSFER_BIT,
  905. VK_PIPELINE_STAGE_TOP_OF_PIPE_BIT |
  906. VK_PIPELINE_STAGE_BOTTOM_OF_PIPE_BIT,
  907. 0, 0, NULL, 0, NULL, 2, mb);
  908. funcs->EndCommandBuffer(cmd_buffer);
  909. /* ------------------------------------------------------ */
  910. VkSubmitInfo submit_info;
  911. submit_info.sType = VK_STRUCTURE_TYPE_SUBMIT_INFO;
  912. submit_info.pNext = NULL;
  913. submit_info.waitSemaphoreCount = 0;
  914. submit_info.pWaitSemaphores = NULL;
  915. submit_info.pWaitDstStageMask = NULL;
  916. submit_info.commandBufferCount = 1;
  917. submit_info.pCommandBuffers = &cmd_buffer;
  918. submit_info.signalSemaphoreCount = 0;
  919. submit_info.pSignalSemaphores = NULL;
  920. const VkFence fence = frame_data->fence;
  921. res = funcs->QueueSubmit(queue, 1, &submit_info, fence);
  922. #ifdef MORE_DEBUGGING
  923. debug_res("QueueSubmit", res);
  924. #endif
  925. if (res == VK_SUCCESS)
  926. frame_data->cmd_buffer_busy = true;
  927. }
  928. static inline bool valid_rect(struct vk_swap_data *swap)
  929. {
  930. return !!swap->image_extent.width && !!swap->image_extent.height;
  931. }
  932. static void vk_capture(struct vk_data *data, VkQueue queue,
  933. const VkPresentInfoKHR *info)
  934. {
  935. struct vk_swap_data *swap = NULL;
  936. HWND window = NULL;
  937. uint32_t idx = 0;
  938. #ifdef MORE_DEBUGGING
  939. debug("QueuePresentKHR called on "
  940. "devicekey %p, swapchain count %d",
  941. &data->funcs, info->swapchainCount);
  942. #endif
  943. /* use first swap chain associated with a window */
  944. for (; idx < info->swapchainCount; idx++) {
  945. struct vk_swap_data *cur_swap =
  946. get_swap_data(data, info->pSwapchains[idx]);
  947. if (cur_swap) {
  948. window = cur_swap->hwnd;
  949. if (window != NULL) {
  950. swap = cur_swap;
  951. break;
  952. }
  953. }
  954. }
  955. if (!window) {
  956. return;
  957. }
  958. if (capture_should_stop()) {
  959. vk_shtex_free(data);
  960. }
  961. if (capture_should_init()) {
  962. if (valid_rect(swap) && !vk_shtex_init(data, window, swap)) {
  963. vk_shtex_free(data);
  964. data->valid = false;
  965. flog("vk_shtex_init failed");
  966. }
  967. }
  968. if (capture_ready()) {
  969. if (swap != data->cur_swap) {
  970. vk_shtex_free(data);
  971. return;
  972. }
  973. vk_shtex_capture(data, &data->funcs, swap, idx, queue, info);
  974. }
  975. }
  976. static VkResult VKAPI_CALL OBS_QueuePresentKHR(VkQueue queue,
  977. const VkPresentInfoKHR *info)
  978. {
  979. struct vk_data *const data = get_device_data_by_queue(queue);
  980. struct vk_queue_data *const queue_data = get_queue_data(data, queue);
  981. struct vk_device_funcs *const funcs = &data->funcs;
  982. if (data->valid && queue_data->supports_transfer) {
  983. vk_capture(data, queue, info);
  984. }
  985. return funcs->QueuePresentKHR(queue, info);
  986. }
  987. /* ======================================================================== */
  988. /* setup hooks */
  989. static inline bool is_inst_link_info(VkLayerInstanceCreateInfo *lici)
  990. {
  991. return lici->sType == VK_STRUCTURE_TYPE_LOADER_INSTANCE_CREATE_INFO &&
  992. lici->function == VK_LAYER_LINK_INFO;
  993. }
  994. static VkResult VKAPI_CALL OBS_CreateInstance(const VkInstanceCreateInfo *cinfo,
  995. const VkAllocationCallbacks *ac,
  996. VkInstance *p_inst)
  997. {
  998. VkInstanceCreateInfo info = *cinfo;
  999. bool funcs_not_found = false;
  1000. /* -------------------------------------------------------- */
  1001. /* step through chain until we get to the link info */
  1002. VkLayerInstanceCreateInfo *lici = (void *)info.pNext;
  1003. while (lici && !is_inst_link_info(lici)) {
  1004. lici = (VkLayerInstanceCreateInfo *)lici->pNext;
  1005. }
  1006. if (lici == NULL) {
  1007. return VK_ERROR_INITIALIZATION_FAILED;
  1008. }
  1009. PFN_vkGetInstanceProcAddr gpa =
  1010. lici->u.pLayerInfo->pfnNextGetInstanceProcAddr;
  1011. /* -------------------------------------------------------- */
  1012. /* move chain on for next layer */
  1013. lici->u.pLayerInfo = lici->u.pLayerInfo->pNext;
  1014. /* -------------------------------------------------------- */
  1015. /* (HACK) Set api version to 1.1 if set to 1.0 */
  1016. /* We do this to get our extensions working properly */
  1017. VkApplicationInfo ai;
  1018. if (info.pApplicationInfo) {
  1019. ai = *info.pApplicationInfo;
  1020. if (ai.apiVersion < VK_API_VERSION_1_1)
  1021. ai.apiVersion = VK_API_VERSION_1_1;
  1022. } else {
  1023. ai.sType = VK_STRUCTURE_TYPE_APPLICATION_INFO;
  1024. ai.pNext = NULL;
  1025. ai.pApplicationName = NULL;
  1026. ai.applicationVersion = 0;
  1027. ai.pEngineName = NULL;
  1028. ai.engineVersion = 0;
  1029. ai.apiVersion = VK_API_VERSION_1_1;
  1030. }
  1031. info.pApplicationInfo = &ai;
  1032. /* -------------------------------------------------------- */
  1033. /* allocate data node */
  1034. struct vk_inst_data *idata = alloc_inst_data(ac);
  1035. if (!idata)
  1036. return VK_ERROR_OUT_OF_HOST_MEMORY;
  1037. /* -------------------------------------------------------- */
  1038. /* create instance */
  1039. PFN_vkCreateInstance create = (void *)gpa(NULL, "vkCreateInstance");
  1040. VkResult res = create(&info, ac, p_inst);
  1041. if (res != VK_SUCCESS) {
  1042. vk_free(ac, idata);
  1043. return res;
  1044. }
  1045. VkInstance inst = *p_inst;
  1046. init_inst_data(idata, inst);
  1047. /* -------------------------------------------------------- */
  1048. /* fetch the functions we need */
  1049. struct vk_inst_funcs *ifuncs = &idata->funcs;
  1050. #define GETADDR(x) \
  1051. do { \
  1052. ifuncs->x = (void *)gpa(inst, "vk" #x); \
  1053. if (!ifuncs->x) { \
  1054. flog("could not get instance " \
  1055. "address for vk" #x); \
  1056. funcs_not_found = true; \
  1057. } \
  1058. } while (false)
  1059. GETADDR(GetInstanceProcAddr);
  1060. GETADDR(DestroyInstance);
  1061. GETADDR(CreateWin32SurfaceKHR);
  1062. GETADDR(DestroySurfaceKHR);
  1063. GETADDR(GetPhysicalDeviceQueueFamilyProperties);
  1064. GETADDR(GetPhysicalDeviceMemoryProperties);
  1065. GETADDR(GetPhysicalDeviceImageFormatProperties2);
  1066. GETADDR(EnumerateDeviceExtensionProperties);
  1067. #undef GETADDR
  1068. init_obj_list(&idata->surfaces);
  1069. idata->valid = !funcs_not_found;
  1070. return res;
  1071. }
  1072. static void VKAPI_CALL OBS_DestroyInstance(VkInstance instance,
  1073. const VkAllocationCallbacks *ac)
  1074. {
  1075. struct vk_inst_funcs *ifuncs = get_inst_funcs(instance);
  1076. PFN_vkDestroyInstance destroy_instance = ifuncs->DestroyInstance;
  1077. remove_free_inst_data(instance, ac);
  1078. destroy_instance(instance, ac);
  1079. }
  1080. static bool
  1081. vk_shared_tex_supported(struct vk_inst_funcs *funcs,
  1082. VkPhysicalDevice phy_device, VkFormat format,
  1083. VkImageUsageFlags usage,
  1084. VkExternalMemoryProperties *external_mem_props)
  1085. {
  1086. VkPhysicalDeviceImageFormatInfo2 info;
  1087. VkPhysicalDeviceExternalImageFormatInfo external_info;
  1088. external_info.sType =
  1089. VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_EXTERNAL_IMAGE_FORMAT_INFO;
  1090. external_info.pNext = NULL;
  1091. external_info.handleType =
  1092. VK_EXTERNAL_MEMORY_HANDLE_TYPE_D3D11_TEXTURE_KMT_BIT;
  1093. info.sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_IMAGE_FORMAT_INFO_2;
  1094. info.pNext = &external_info;
  1095. info.format = format;
  1096. info.type = VK_IMAGE_TYPE_2D;
  1097. info.tiling = VK_IMAGE_TILING_OPTIMAL;
  1098. info.flags = 0;
  1099. info.usage = usage;
  1100. VkExternalImageFormatProperties external_props = {0};
  1101. external_props.sType =
  1102. VK_STRUCTURE_TYPE_EXTERNAL_IMAGE_FORMAT_PROPERTIES;
  1103. external_props.pNext = NULL;
  1104. VkImageFormatProperties2 props = {0};
  1105. props.sType = VK_STRUCTURE_TYPE_IMAGE_FORMAT_PROPERTIES_2;
  1106. props.pNext = &external_props;
  1107. VkResult result = funcs->GetPhysicalDeviceImageFormatProperties2(
  1108. phy_device, &info, &props);
  1109. *external_mem_props = external_props.externalMemoryProperties;
  1110. const VkExternalMemoryFeatureFlags features =
  1111. external_mem_props->externalMemoryFeatures;
  1112. return ((VK_SUCCESS == result) &&
  1113. (features & VK_EXTERNAL_MEMORY_FEATURE_IMPORTABLE_BIT));
  1114. }
  1115. static inline bool is_device_link_info(VkLayerDeviceCreateInfo *lici)
  1116. {
  1117. return lici->sType == VK_STRUCTURE_TYPE_LOADER_DEVICE_CREATE_INFO &&
  1118. lici->function == VK_LAYER_LINK_INFO;
  1119. }
  1120. static VkResult VKAPI_CALL OBS_CreateDevice(VkPhysicalDevice phy_device,
  1121. const VkDeviceCreateInfo *info,
  1122. const VkAllocationCallbacks *ac,
  1123. VkDevice *p_device)
  1124. {
  1125. struct vk_inst_data *idata =
  1126. get_inst_data_by_physical_device(phy_device);
  1127. struct vk_inst_funcs *ifuncs = &idata->funcs;
  1128. struct vk_data *data = NULL;
  1129. VkResult ret = VK_ERROR_INITIALIZATION_FAILED;
  1130. VkLayerDeviceCreateInfo *ldci = (void *)info->pNext;
  1131. /* -------------------------------------------------------- */
  1132. /* step through chain until we get to the link info */
  1133. while (ldci && !is_device_link_info(ldci)) {
  1134. ldci = (VkLayerDeviceCreateInfo *)ldci->pNext;
  1135. }
  1136. if (!ldci) {
  1137. goto fail;
  1138. }
  1139. PFN_vkGetInstanceProcAddr gipa;
  1140. PFN_vkGetDeviceProcAddr gdpa;
  1141. gipa = ldci->u.pLayerInfo->pfnNextGetInstanceProcAddr;
  1142. gdpa = ldci->u.pLayerInfo->pfnNextGetDeviceProcAddr;
  1143. /* -------------------------------------------------------- */
  1144. /* move chain on for next layer */
  1145. ldci->u.pLayerInfo = ldci->u.pLayerInfo->pNext;
  1146. /* -------------------------------------------------------- */
  1147. /* allocate data node */
  1148. data = alloc_device_data(ac);
  1149. if (!data)
  1150. return VK_ERROR_OUT_OF_HOST_MEMORY;
  1151. init_obj_list(&data->queues);
  1152. /* -------------------------------------------------------- */
  1153. /* create device and initialize hook data */
  1154. PFN_vkCreateDevice createFunc =
  1155. (PFN_vkCreateDevice)gipa(VK_NULL_HANDLE, "vkCreateDevice");
  1156. ret = createFunc(phy_device, info, ac, p_device);
  1157. if (ret != VK_SUCCESS) {
  1158. vk_free(ac, data);
  1159. return ret;
  1160. }
  1161. VkDevice device = *p_device;
  1162. init_device_data(data, device);
  1163. data->valid = false; /* set true below if it doesn't go to fail */
  1164. data->phy_device = phy_device;
  1165. /* -------------------------------------------------------- */
  1166. /* fetch the functions we need */
  1167. struct vk_device_funcs *dfuncs = &data->funcs;
  1168. bool funcs_not_found = false;
  1169. #define GETADDR(x) \
  1170. do { \
  1171. dfuncs->x = (void *)gdpa(device, "vk" #x); \
  1172. if (!dfuncs->x) { \
  1173. flog("could not get device " \
  1174. "address for vk" #x); \
  1175. funcs_not_found = true; \
  1176. } \
  1177. } while (false)
  1178. GETADDR(GetDeviceProcAddr);
  1179. GETADDR(DestroyDevice);
  1180. GETADDR(CreateSwapchainKHR);
  1181. GETADDR(DestroySwapchainKHR);
  1182. GETADDR(QueuePresentKHR);
  1183. GETADDR(AllocateMemory);
  1184. GETADDR(FreeMemory);
  1185. GETADDR(BindImageMemory);
  1186. GETADDR(BindImageMemory2);
  1187. GETADDR(GetSwapchainImagesKHR);
  1188. GETADDR(CreateImage);
  1189. GETADDR(DestroyImage);
  1190. GETADDR(GetImageMemoryRequirements);
  1191. GETADDR(GetImageMemoryRequirements2);
  1192. GETADDR(ResetCommandPool);
  1193. GETADDR(BeginCommandBuffer);
  1194. GETADDR(EndCommandBuffer);
  1195. GETADDR(CmdCopyImage);
  1196. GETADDR(CmdPipelineBarrier);
  1197. GETADDR(GetDeviceQueue);
  1198. GETADDR(QueueSubmit);
  1199. GETADDR(CreateCommandPool);
  1200. GETADDR(DestroyCommandPool);
  1201. GETADDR(AllocateCommandBuffers);
  1202. GETADDR(CreateFence);
  1203. GETADDR(DestroyFence);
  1204. GETADDR(WaitForFences);
  1205. GETADDR(ResetFences);
  1206. #undef GETADDR
  1207. if (funcs_not_found) {
  1208. goto fail;
  1209. }
  1210. if (!idata->valid) {
  1211. flog("instance not valid");
  1212. goto fail;
  1213. }
  1214. const char *required_device_extensions[] = {
  1215. VK_KHR_EXTERNAL_MEMORY_WIN32_EXTENSION_NAME};
  1216. uint32_t device_extension_count = 0;
  1217. ret = ifuncs->EnumerateDeviceExtensionProperties(
  1218. phy_device, NULL, &device_extension_count, NULL);
  1219. if (ret != VK_SUCCESS)
  1220. goto fail;
  1221. VkExtensionProperties *device_extensions = _malloca(
  1222. sizeof(VkExtensionProperties) * device_extension_count);
  1223. ret = ifuncs->EnumerateDeviceExtensionProperties(
  1224. phy_device, NULL, &device_extension_count, device_extensions);
  1225. if (ret != VK_SUCCESS) {
  1226. _freea(device_extensions);
  1227. goto fail;
  1228. }
  1229. bool extensions_found = true;
  1230. for (uint32_t i = 0; i < _countof(required_device_extensions); i++) {
  1231. const char *const required_extension =
  1232. required_device_extensions[i];
  1233. bool found = false;
  1234. for (uint32_t j = 0; j < device_extension_count; j++) {
  1235. if (!strcmp(required_extension,
  1236. device_extensions[j].extensionName)) {
  1237. found = true;
  1238. break;
  1239. }
  1240. }
  1241. if (!found) {
  1242. flog("missing device extension: %s",
  1243. required_extension);
  1244. extensions_found = false;
  1245. }
  1246. }
  1247. _freea(device_extensions);
  1248. if (!extensions_found)
  1249. goto fail;
  1250. VkFormat format = VK_FORMAT_R8G8B8A8_UNORM;
  1251. VkImageUsageFlags usage = VK_IMAGE_USAGE_COLOR_ATTACHMENT_BIT |
  1252. VK_IMAGE_USAGE_TRANSFER_DST_BIT;
  1253. if (!vk_shared_tex_supported(ifuncs, phy_device, format, usage,
  1254. &data->external_mem_props)) {
  1255. flog("texture sharing is not supported");
  1256. goto fail;
  1257. }
  1258. data->inst_data = idata;
  1259. data->ac = NULL;
  1260. if (ac) {
  1261. data->ac_storage = *ac;
  1262. data->ac = &data->ac_storage;
  1263. }
  1264. uint32_t queue_family_property_count = 0;
  1265. ifuncs->GetPhysicalDeviceQueueFamilyProperties(
  1266. phy_device, &queue_family_property_count, NULL);
  1267. VkQueueFamilyProperties *queue_family_properties = _malloca(
  1268. sizeof(VkQueueFamilyProperties) * queue_family_property_count);
  1269. ifuncs->GetPhysicalDeviceQueueFamilyProperties(
  1270. phy_device, &queue_family_property_count,
  1271. queue_family_properties);
  1272. for (uint32_t info_index = 0, info_count = info->queueCreateInfoCount;
  1273. info_index < info_count; ++info_index) {
  1274. const VkDeviceQueueCreateInfo *queue_info =
  1275. &info->pQueueCreateInfos[info_index];
  1276. for (uint32_t queue_index = 0,
  1277. queue_count = queue_info->queueCount;
  1278. queue_index < queue_count; ++queue_index) {
  1279. const uint32_t family_index =
  1280. queue_info->queueFamilyIndex;
  1281. VkQueue queue;
  1282. data->funcs.GetDeviceQueue(device, family_index,
  1283. queue_index, &queue);
  1284. const bool supports_transfer =
  1285. (queue_family_properties[family_index]
  1286. .queueFlags &
  1287. (VK_QUEUE_GRAPHICS_BIT | VK_QUEUE_COMPUTE_BIT |
  1288. VK_QUEUE_TRANSFER_BIT)) != 0;
  1289. add_queue_data(data, queue, family_index,
  1290. supports_transfer, ac);
  1291. }
  1292. }
  1293. _freea(queue_family_properties);
  1294. init_obj_list(&data->swaps);
  1295. data->valid = true;
  1296. fail:
  1297. return ret;
  1298. }
  1299. static void VKAPI_CALL OBS_DestroyDevice(VkDevice device,
  1300. const VkAllocationCallbacks *ac)
  1301. {
  1302. struct vk_data *data = remove_device_data(device);
  1303. if (data->valid) {
  1304. struct vk_queue_data *queue_data = queue_walk_begin(data);
  1305. while (queue_data) {
  1306. vk_shtex_destroy_frame_objects(data, queue_data);
  1307. queue_data = queue_walk_next(queue_data);
  1308. }
  1309. queue_walk_end(data);
  1310. remove_free_queue_all(data, ac);
  1311. }
  1312. PFN_vkDestroyDevice destroy_device = data->funcs.DestroyDevice;
  1313. vk_free(ac, data);
  1314. destroy_device(device, ac);
  1315. }
  1316. static VkResult VKAPI_CALL
  1317. OBS_CreateSwapchainKHR(VkDevice device, const VkSwapchainCreateInfoKHR *cinfo,
  1318. const VkAllocationCallbacks *ac, VkSwapchainKHR *p_sc)
  1319. {
  1320. struct vk_data *data = get_device_data(device);
  1321. struct vk_device_funcs *funcs = &data->funcs;
  1322. if (!data->valid)
  1323. return funcs->CreateSwapchainKHR(device, cinfo, ac, p_sc);
  1324. VkSwapchainCreateInfoKHR info = *cinfo;
  1325. info.imageUsage |= VK_IMAGE_USAGE_TRANSFER_SRC_BIT;
  1326. VkResult res = funcs->CreateSwapchainKHR(device, &info, ac, p_sc);
  1327. debug_res("CreateSwapchainKHR", res);
  1328. if (res != VK_SUCCESS) {
  1329. /* try again with original imageUsage flags */
  1330. return funcs->CreateSwapchainKHR(device, cinfo, ac, p_sc);
  1331. }
  1332. VkSwapchainKHR sc = *p_sc;
  1333. uint32_t count = 0;
  1334. res = funcs->GetSwapchainImagesKHR(device, sc, &count, NULL);
  1335. debug_res("GetSwapchainImagesKHR", res);
  1336. if ((res == VK_SUCCESS) && (count > 0)) {
  1337. struct vk_swap_data *swap_data = alloc_swap_data(ac);
  1338. if (swap_data) {
  1339. init_swap_data(swap_data, data, sc);
  1340. swap_data->swap_images = vk_alloc(
  1341. ac, count * sizeof(VkImage), _Alignof(VkImage),
  1342. VK_SYSTEM_ALLOCATION_SCOPE_OBJECT);
  1343. res = funcs->GetSwapchainImagesKHR(
  1344. device, sc, &count, swap_data->swap_images);
  1345. debug_res("GetSwapchainImagesKHR", res);
  1346. swap_data->image_extent = cinfo->imageExtent;
  1347. swap_data->format = cinfo->imageFormat;
  1348. swap_data->hwnd =
  1349. find_surf_hwnd(data->inst_data, cinfo->surface);
  1350. swap_data->image_count = count;
  1351. swap_data->d3d11_tex = NULL;
  1352. }
  1353. }
  1354. return VK_SUCCESS;
  1355. }
  1356. static void VKAPI_CALL OBS_DestroySwapchainKHR(VkDevice device,
  1357. VkSwapchainKHR sc,
  1358. const VkAllocationCallbacks *ac)
  1359. {
  1360. struct vk_data *data = get_device_data(device);
  1361. struct vk_device_funcs *funcs = &data->funcs;
  1362. PFN_vkDestroySwapchainKHR destroy_swapchain =
  1363. funcs->DestroySwapchainKHR;
  1364. if ((sc != VK_NULL_HANDLE) && data->valid) {
  1365. struct vk_swap_data *swap = get_swap_data(data, sc);
  1366. if (swap) {
  1367. if (data->cur_swap == swap) {
  1368. vk_shtex_free(data);
  1369. }
  1370. vk_free(ac, swap->swap_images);
  1371. remove_free_swap_data(data, sc, ac);
  1372. }
  1373. }
  1374. destroy_swapchain(device, sc, ac);
  1375. }
  1376. static VkResult VKAPI_CALL OBS_CreateWin32SurfaceKHR(
  1377. VkInstance inst, const VkWin32SurfaceCreateInfoKHR *info,
  1378. const VkAllocationCallbacks *ac, VkSurfaceKHR *surf)
  1379. {
  1380. struct vk_inst_data *idata = get_inst_data(inst);
  1381. struct vk_inst_funcs *ifuncs = &idata->funcs;
  1382. VkResult res = ifuncs->CreateWin32SurfaceKHR(inst, info, ac, surf);
  1383. if (res == VK_SUCCESS)
  1384. add_surf_data(idata, *surf, info->hwnd, ac);
  1385. return res;
  1386. }
  1387. static void VKAPI_CALL OBS_DestroySurfaceKHR(VkInstance inst, VkSurfaceKHR surf,
  1388. const VkAllocationCallbacks *ac)
  1389. {
  1390. struct vk_inst_data *idata = get_inst_data(inst);
  1391. struct vk_inst_funcs *ifuncs = &idata->funcs;
  1392. PFN_vkDestroySurfaceKHR destroy_surface = ifuncs->DestroySurfaceKHR;
  1393. if (surf != VK_NULL_HANDLE)
  1394. remove_free_surf_data(idata, surf, ac);
  1395. destroy_surface(inst, surf, ac);
  1396. }
  1397. #define GETPROCADDR(func) \
  1398. if (!strcmp(name, "vk" #func)) \
  1399. return (PFN_vkVoidFunction)&OBS_##func;
  1400. #define GETPROCADDR_IF_SUPPORTED(func) \
  1401. if (!strcmp(name, "vk" #func)) \
  1402. return funcs->func ? (PFN_vkVoidFunction)&OBS_##func : NULL;
  1403. static PFN_vkVoidFunction VKAPI_CALL OBS_GetDeviceProcAddr(VkDevice dev,
  1404. const char *name)
  1405. {
  1406. struct vk_data *data = get_device_data(dev);
  1407. struct vk_device_funcs *funcs = &data->funcs;
  1408. debug_procaddr("vkGetDeviceProcAddr(%p, \"%s\")", dev, name);
  1409. GETPROCADDR(GetDeviceProcAddr);
  1410. GETPROCADDR(DestroyDevice);
  1411. GETPROCADDR_IF_SUPPORTED(CreateSwapchainKHR);
  1412. GETPROCADDR_IF_SUPPORTED(DestroySwapchainKHR);
  1413. GETPROCADDR_IF_SUPPORTED(QueuePresentKHR);
  1414. if (funcs->GetDeviceProcAddr == NULL)
  1415. return NULL;
  1416. return funcs->GetDeviceProcAddr(dev, name);
  1417. }
  1418. static PFN_vkVoidFunction VKAPI_CALL OBS_GetInstanceProcAddr(VkInstance inst,
  1419. const char *name)
  1420. {
  1421. debug_procaddr("vkGetInstanceProcAddr(%p, \"%s\")", inst, name);
  1422. /* instance chain functions we intercept */
  1423. GETPROCADDR(GetInstanceProcAddr);
  1424. GETPROCADDR(CreateInstance);
  1425. if (inst == NULL)
  1426. return NULL;
  1427. struct vk_inst_funcs *funcs = get_inst_funcs(inst);
  1428. /* instance chain functions we intercept */
  1429. GETPROCADDR(DestroyInstance);
  1430. GETPROCADDR_IF_SUPPORTED(CreateWin32SurfaceKHR);
  1431. GETPROCADDR_IF_SUPPORTED(DestroySurfaceKHR);
  1432. /* device chain functions we intercept */
  1433. GETPROCADDR(GetDeviceProcAddr);
  1434. GETPROCADDR(CreateDevice);
  1435. GETPROCADDR(DestroyDevice);
  1436. if (funcs->GetInstanceProcAddr == NULL)
  1437. return NULL;
  1438. return funcs->GetInstanceProcAddr(inst, name);
  1439. }
  1440. #undef GETPROCADDR
  1441. #ifndef _WIN64
  1442. #pragma comment(linker, "/EXPORT:OBS_Negotiate=_OBS_Negotiate@4")
  1443. #endif
  1444. __declspec(dllexport) VkResult VKAPI_CALL
  1445. OBS_Negotiate(VkNegotiateLayerInterface *nli)
  1446. {
  1447. if (nli->loaderLayerInterfaceVersion >= 2) {
  1448. nli->sType = LAYER_NEGOTIATE_INTERFACE_STRUCT;
  1449. nli->pNext = NULL;
  1450. nli->pfnGetInstanceProcAddr = OBS_GetInstanceProcAddr;
  1451. nli->pfnGetDeviceProcAddr = OBS_GetDeviceProcAddr;
  1452. nli->pfnGetPhysicalDeviceProcAddr = NULL;
  1453. }
  1454. const uint32_t cur_ver = CURRENT_LOADER_LAYER_INTERFACE_VERSION;
  1455. if (nli->loaderLayerInterfaceVersion > cur_ver) {
  1456. nli->loaderLayerInterfaceVersion = cur_ver;
  1457. }
  1458. if (!vulkan_seen) {
  1459. init_obj_list(&instances);
  1460. init_obj_list(&devices);
  1461. vulkan_seen = true;
  1462. }
  1463. return VK_SUCCESS;
  1464. }
  1465. bool hook_vulkan(void)
  1466. {
  1467. static bool hooked = false;
  1468. if (!hooked && vulkan_seen) {
  1469. hlog("Hooked Vulkan");
  1470. hooked = true;
  1471. }
  1472. return hooked;
  1473. }