amdgpu_object.c 25 KB

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  1. /*
  2. * Copyright 2009 Jerome Glisse.
  3. * All Rights Reserved.
  4. *
  5. * Permission is hereby granted, free of charge, to any person obtaining a
  6. * copy of this software and associated documentation files (the
  7. * "Software"), to deal in the Software without restriction, including
  8. * without limitation the rights to use, copy, modify, merge, publish,
  9. * distribute, sub license, and/or sell copies of the Software, and to
  10. * permit persons to whom the Software is furnished to do so, subject to
  11. * the following conditions:
  12. *
  13. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  14. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  15. * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
  16. * THE COPYRIGHT HOLDERS, AUTHORS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM,
  17. * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
  18. * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
  19. * USE OR OTHER DEALINGS IN THE SOFTWARE.
  20. *
  21. * The above copyright notice and this permission notice (including the
  22. * next paragraph) shall be included in all copies or substantial portions
  23. * of the Software.
  24. *
  25. */
  26. /*
  27. * Authors:
  28. * Jerome Glisse <glisse@freedesktop.org>
  29. * Thomas Hellstrom <thomas-at-tungstengraphics-dot-com>
  30. * Dave Airlie
  31. */
  32. #include <linux/list.h>
  33. #include <linux/slab.h>
  34. #include <drm/drmP.h>
  35. #include <drm/amdgpu_drm.h>
  36. #include <drm/drm_cache.h>
  37. #include "amdgpu.h"
  38. #include "amdgpu_trace.h"
  39. static u64 amdgpu_get_vis_part_size(struct amdgpu_device *adev,
  40. struct ttm_mem_reg *mem)
  41. {
  42. if (mem->start << PAGE_SHIFT >= adev->mc.visible_vram_size)
  43. return 0;
  44. return ((mem->start << PAGE_SHIFT) + mem->size) >
  45. adev->mc.visible_vram_size ?
  46. adev->mc.visible_vram_size - (mem->start << PAGE_SHIFT) :
  47. mem->size;
  48. }
  49. static void amdgpu_update_memory_usage(struct amdgpu_device *adev,
  50. struct ttm_mem_reg *old_mem,
  51. struct ttm_mem_reg *new_mem)
  52. {
  53. u64 vis_size;
  54. if (!adev)
  55. return;
  56. if (new_mem) {
  57. switch (new_mem->mem_type) {
  58. case TTM_PL_TT:
  59. atomic64_add(new_mem->size, &adev->gtt_usage);
  60. break;
  61. case TTM_PL_VRAM:
  62. atomic64_add(new_mem->size, &adev->vram_usage);
  63. vis_size = amdgpu_get_vis_part_size(adev, new_mem);
  64. atomic64_add(vis_size, &adev->vram_vis_usage);
  65. break;
  66. }
  67. }
  68. if (old_mem) {
  69. switch (old_mem->mem_type) {
  70. case TTM_PL_TT:
  71. atomic64_sub(old_mem->size, &adev->gtt_usage);
  72. break;
  73. case TTM_PL_VRAM:
  74. atomic64_sub(old_mem->size, &adev->vram_usage);
  75. vis_size = amdgpu_get_vis_part_size(adev, old_mem);
  76. atomic64_sub(vis_size, &adev->vram_vis_usage);
  77. break;
  78. }
  79. }
  80. }
  81. static void amdgpu_ttm_bo_destroy(struct ttm_buffer_object *tbo)
  82. {
  83. struct amdgpu_device *adev = amdgpu_ttm_adev(tbo->bdev);
  84. struct amdgpu_bo *bo;
  85. bo = container_of(tbo, struct amdgpu_bo, tbo);
  86. amdgpu_update_memory_usage(adev, &bo->tbo.mem, NULL);
  87. drm_gem_object_release(&bo->gem_base);
  88. amdgpu_bo_unref(&bo->parent);
  89. if (!list_empty(&bo->shadow_list)) {
  90. mutex_lock(&adev->shadow_list_lock);
  91. list_del_init(&bo->shadow_list);
  92. mutex_unlock(&adev->shadow_list_lock);
  93. }
  94. kfree(bo->metadata);
  95. kfree(bo);
  96. }
  97. bool amdgpu_ttm_bo_is_amdgpu_bo(struct ttm_buffer_object *bo)
  98. {
  99. if (bo->destroy == &amdgpu_ttm_bo_destroy)
  100. return true;
  101. return false;
  102. }
  103. static void amdgpu_ttm_placement_init(struct amdgpu_device *adev,
  104. struct ttm_placement *placement,
  105. struct ttm_place *places,
  106. u32 domain, u64 flags)
  107. {
  108. u32 c = 0;
  109. if (domain & AMDGPU_GEM_DOMAIN_VRAM) {
  110. unsigned visible_pfn = adev->mc.visible_vram_size >> PAGE_SHIFT;
  111. unsigned lpfn = 0;
  112. /* This forces a reallocation if the flag wasn't set before */
  113. if (flags & AMDGPU_GEM_CREATE_VRAM_CONTIGUOUS)
  114. lpfn = adev->mc.real_vram_size >> PAGE_SHIFT;
  115. places[c].fpfn = 0;
  116. places[c].lpfn = lpfn;
  117. places[c].flags = TTM_PL_FLAG_WC | TTM_PL_FLAG_UNCACHED |
  118. TTM_PL_FLAG_VRAM;
  119. if (flags & AMDGPU_GEM_CREATE_CPU_ACCESS_REQUIRED)
  120. places[c].lpfn = visible_pfn;
  121. else
  122. places[c].flags |= TTM_PL_FLAG_TOPDOWN;
  123. c++;
  124. }
  125. if (domain & AMDGPU_GEM_DOMAIN_GTT) {
  126. places[c].fpfn = 0;
  127. places[c].lpfn = 0;
  128. places[c].flags = TTM_PL_FLAG_TT;
  129. if (flags & AMDGPU_GEM_CREATE_CPU_GTT_USWC)
  130. places[c].flags |= TTM_PL_FLAG_WC |
  131. TTM_PL_FLAG_UNCACHED;
  132. else
  133. places[c].flags |= TTM_PL_FLAG_CACHED;
  134. c++;
  135. }
  136. if (domain & AMDGPU_GEM_DOMAIN_CPU) {
  137. places[c].fpfn = 0;
  138. places[c].lpfn = 0;
  139. places[c].flags = TTM_PL_FLAG_SYSTEM;
  140. if (flags & AMDGPU_GEM_CREATE_CPU_GTT_USWC)
  141. places[c].flags |= TTM_PL_FLAG_WC |
  142. TTM_PL_FLAG_UNCACHED;
  143. else
  144. places[c].flags |= TTM_PL_FLAG_CACHED;
  145. c++;
  146. }
  147. if (domain & AMDGPU_GEM_DOMAIN_GDS) {
  148. places[c].fpfn = 0;
  149. places[c].lpfn = 0;
  150. places[c].flags = TTM_PL_FLAG_UNCACHED | AMDGPU_PL_FLAG_GDS;
  151. c++;
  152. }
  153. if (domain & AMDGPU_GEM_DOMAIN_GWS) {
  154. places[c].fpfn = 0;
  155. places[c].lpfn = 0;
  156. places[c].flags = TTM_PL_FLAG_UNCACHED | AMDGPU_PL_FLAG_GWS;
  157. c++;
  158. }
  159. if (domain & AMDGPU_GEM_DOMAIN_OA) {
  160. places[c].fpfn = 0;
  161. places[c].lpfn = 0;
  162. places[c].flags = TTM_PL_FLAG_UNCACHED | AMDGPU_PL_FLAG_OA;
  163. c++;
  164. }
  165. if (!c) {
  166. places[c].fpfn = 0;
  167. places[c].lpfn = 0;
  168. places[c].flags = TTM_PL_MASK_CACHING | TTM_PL_FLAG_SYSTEM;
  169. c++;
  170. }
  171. placement->num_placement = c;
  172. placement->placement = places;
  173. placement->num_busy_placement = c;
  174. placement->busy_placement = places;
  175. }
  176. void amdgpu_ttm_placement_from_domain(struct amdgpu_bo *abo, u32 domain)
  177. {
  178. struct amdgpu_device *adev = amdgpu_ttm_adev(abo->tbo.bdev);
  179. amdgpu_ttm_placement_init(adev, &abo->placement, abo->placements,
  180. domain, abo->flags);
  181. }
  182. static void amdgpu_fill_placement_to_bo(struct amdgpu_bo *bo,
  183. struct ttm_placement *placement)
  184. {
  185. BUG_ON(placement->num_placement > (AMDGPU_GEM_DOMAIN_MAX + 1));
  186. memcpy(bo->placements, placement->placement,
  187. placement->num_placement * sizeof(struct ttm_place));
  188. bo->placement.num_placement = placement->num_placement;
  189. bo->placement.num_busy_placement = placement->num_busy_placement;
  190. bo->placement.placement = bo->placements;
  191. bo->placement.busy_placement = bo->placements;
  192. }
  193. /**
  194. * amdgpu_bo_create_kernel - create BO for kernel use
  195. *
  196. * @adev: amdgpu device object
  197. * @size: size for the new BO
  198. * @align: alignment for the new BO
  199. * @domain: where to place it
  200. * @bo_ptr: resulting BO
  201. * @gpu_addr: GPU addr of the pinned BO
  202. * @cpu_addr: optional CPU address mapping
  203. *
  204. * Allocates and pins a BO for kernel internal use.
  205. *
  206. * Returns 0 on success, negative error code otherwise.
  207. */
  208. int amdgpu_bo_create_kernel(struct amdgpu_device *adev,
  209. unsigned long size, int align,
  210. u32 domain, struct amdgpu_bo **bo_ptr,
  211. u64 *gpu_addr, void **cpu_addr)
  212. {
  213. int r;
  214. r = amdgpu_bo_create(adev, size, align, true, domain,
  215. AMDGPU_GEM_CREATE_CPU_ACCESS_REQUIRED |
  216. AMDGPU_GEM_CREATE_VRAM_CONTIGUOUS,
  217. NULL, NULL, bo_ptr);
  218. if (r) {
  219. dev_err(adev->dev, "(%d) failed to allocate kernel bo\n", r);
  220. return r;
  221. }
  222. r = amdgpu_bo_reserve(*bo_ptr, false);
  223. if (r) {
  224. dev_err(adev->dev, "(%d) failed to reserve kernel bo\n", r);
  225. goto error_free;
  226. }
  227. r = amdgpu_bo_pin(*bo_ptr, domain, gpu_addr);
  228. if (r) {
  229. dev_err(adev->dev, "(%d) kernel bo pin failed\n", r);
  230. goto error_unreserve;
  231. }
  232. if (cpu_addr) {
  233. r = amdgpu_bo_kmap(*bo_ptr, cpu_addr);
  234. if (r) {
  235. dev_err(adev->dev, "(%d) kernel bo map failed\n", r);
  236. goto error_unreserve;
  237. }
  238. }
  239. amdgpu_bo_unreserve(*bo_ptr);
  240. return 0;
  241. error_unreserve:
  242. amdgpu_bo_unreserve(*bo_ptr);
  243. error_free:
  244. amdgpu_bo_unref(bo_ptr);
  245. return r;
  246. }
  247. /**
  248. * amdgpu_bo_free_kernel - free BO for kernel use
  249. *
  250. * @bo: amdgpu BO to free
  251. *
  252. * unmaps and unpin a BO for kernel internal use.
  253. */
  254. void amdgpu_bo_free_kernel(struct amdgpu_bo **bo, u64 *gpu_addr,
  255. void **cpu_addr)
  256. {
  257. if (*bo == NULL)
  258. return;
  259. if (likely(amdgpu_bo_reserve(*bo, false) == 0)) {
  260. if (cpu_addr)
  261. amdgpu_bo_kunmap(*bo);
  262. amdgpu_bo_unpin(*bo);
  263. amdgpu_bo_unreserve(*bo);
  264. }
  265. amdgpu_bo_unref(bo);
  266. if (gpu_addr)
  267. *gpu_addr = 0;
  268. if (cpu_addr)
  269. *cpu_addr = NULL;
  270. }
  271. int amdgpu_bo_create_restricted(struct amdgpu_device *adev,
  272. unsigned long size, int byte_align,
  273. bool kernel, u32 domain, u64 flags,
  274. struct sg_table *sg,
  275. struct ttm_placement *placement,
  276. struct reservation_object *resv,
  277. struct amdgpu_bo **bo_ptr)
  278. {
  279. struct amdgpu_bo *bo;
  280. enum ttm_bo_type type;
  281. unsigned long page_align;
  282. u64 initial_bytes_moved;
  283. size_t acc_size;
  284. int r;
  285. page_align = roundup(byte_align, PAGE_SIZE) >> PAGE_SHIFT;
  286. size = ALIGN(size, PAGE_SIZE);
  287. if (kernel) {
  288. type = ttm_bo_type_kernel;
  289. } else if (sg) {
  290. type = ttm_bo_type_sg;
  291. } else {
  292. type = ttm_bo_type_device;
  293. }
  294. *bo_ptr = NULL;
  295. acc_size = ttm_bo_dma_acc_size(&adev->mman.bdev, size,
  296. sizeof(struct amdgpu_bo));
  297. bo = kzalloc(sizeof(struct amdgpu_bo), GFP_KERNEL);
  298. if (bo == NULL)
  299. return -ENOMEM;
  300. r = drm_gem_object_init(adev->ddev, &bo->gem_base, size);
  301. if (unlikely(r)) {
  302. kfree(bo);
  303. return r;
  304. }
  305. INIT_LIST_HEAD(&bo->shadow_list);
  306. INIT_LIST_HEAD(&bo->va);
  307. bo->prefered_domains = domain & (AMDGPU_GEM_DOMAIN_VRAM |
  308. AMDGPU_GEM_DOMAIN_GTT |
  309. AMDGPU_GEM_DOMAIN_CPU |
  310. AMDGPU_GEM_DOMAIN_GDS |
  311. AMDGPU_GEM_DOMAIN_GWS |
  312. AMDGPU_GEM_DOMAIN_OA);
  313. bo->allowed_domains = bo->prefered_domains;
  314. if (!kernel && bo->allowed_domains == AMDGPU_GEM_DOMAIN_VRAM)
  315. bo->allowed_domains |= AMDGPU_GEM_DOMAIN_GTT;
  316. bo->flags = flags;
  317. #ifdef CONFIG_X86_32
  318. /* XXX: Write-combined CPU mappings of GTT seem broken on 32-bit
  319. * See https://bugs.freedesktop.org/show_bug.cgi?id=84627
  320. */
  321. bo->flags &= ~AMDGPU_GEM_CREATE_CPU_GTT_USWC;
  322. #elif defined(CONFIG_X86) && !defined(CONFIG_X86_PAT)
  323. /* Don't try to enable write-combining when it can't work, or things
  324. * may be slow
  325. * See https://bugs.freedesktop.org/show_bug.cgi?id=88758
  326. */
  327. #ifndef CONFIG_COMPILE_TEST
  328. #warning Please enable CONFIG_MTRR and CONFIG_X86_PAT for better performance \
  329. thanks to write-combining
  330. #endif
  331. if (bo->flags & AMDGPU_GEM_CREATE_CPU_GTT_USWC)
  332. DRM_INFO_ONCE("Please enable CONFIG_MTRR and CONFIG_X86_PAT for "
  333. "better performance thanks to write-combining\n");
  334. bo->flags &= ~AMDGPU_GEM_CREATE_CPU_GTT_USWC;
  335. #else
  336. /* For architectures that don't support WC memory,
  337. * mask out the WC flag from the BO
  338. */
  339. if (!drm_arch_can_wc_memory())
  340. bo->flags &= ~AMDGPU_GEM_CREATE_CPU_GTT_USWC;
  341. #endif
  342. amdgpu_fill_placement_to_bo(bo, placement);
  343. /* Kernel allocation are uninterruptible */
  344. if (!resv) {
  345. bool locked;
  346. reservation_object_init(&bo->tbo.ttm_resv);
  347. locked = ww_mutex_trylock(&bo->tbo.ttm_resv.lock);
  348. WARN_ON(!locked);
  349. }
  350. initial_bytes_moved = atomic64_read(&adev->num_bytes_moved);
  351. r = ttm_bo_init(&adev->mman.bdev, &bo->tbo, size, type,
  352. &bo->placement, page_align, !kernel, NULL,
  353. acc_size, sg, resv ? resv : &bo->tbo.ttm_resv,
  354. &amdgpu_ttm_bo_destroy);
  355. amdgpu_cs_report_moved_bytes(adev,
  356. atomic64_read(&adev->num_bytes_moved) - initial_bytes_moved);
  357. if (unlikely(r != 0)) {
  358. if (!resv)
  359. ww_mutex_unlock(&bo->tbo.resv->lock);
  360. return r;
  361. }
  362. bo->tbo.priority = ilog2(bo->tbo.num_pages);
  363. if (kernel)
  364. bo->tbo.priority *= 2;
  365. bo->tbo.priority = min(bo->tbo.priority, (unsigned)(TTM_MAX_BO_PRIORITY - 1));
  366. if (flags & AMDGPU_GEM_CREATE_VRAM_CLEARED &&
  367. bo->tbo.mem.placement & TTM_PL_FLAG_VRAM) {
  368. struct dma_fence *fence;
  369. r = amdgpu_fill_buffer(bo, 0, bo->tbo.resv, &fence);
  370. if (unlikely(r))
  371. goto fail_unreserve;
  372. amdgpu_bo_fence(bo, fence, false);
  373. dma_fence_put(bo->tbo.moving);
  374. bo->tbo.moving = dma_fence_get(fence);
  375. dma_fence_put(fence);
  376. }
  377. if (!resv)
  378. ww_mutex_unlock(&bo->tbo.resv->lock);
  379. *bo_ptr = bo;
  380. trace_amdgpu_bo_create(bo);
  381. return 0;
  382. fail_unreserve:
  383. if (!resv)
  384. ww_mutex_unlock(&bo->tbo.resv->lock);
  385. amdgpu_bo_unref(&bo);
  386. return r;
  387. }
  388. static int amdgpu_bo_create_shadow(struct amdgpu_device *adev,
  389. unsigned long size, int byte_align,
  390. struct amdgpu_bo *bo)
  391. {
  392. struct ttm_placement placement = {0};
  393. struct ttm_place placements[AMDGPU_GEM_DOMAIN_MAX + 1];
  394. int r;
  395. if (bo->shadow)
  396. return 0;
  397. bo->flags |= AMDGPU_GEM_CREATE_SHADOW;
  398. memset(&placements, 0,
  399. (AMDGPU_GEM_DOMAIN_MAX + 1) * sizeof(struct ttm_place));
  400. amdgpu_ttm_placement_init(adev, &placement,
  401. placements, AMDGPU_GEM_DOMAIN_GTT,
  402. AMDGPU_GEM_CREATE_CPU_GTT_USWC);
  403. r = amdgpu_bo_create_restricted(adev, size, byte_align, true,
  404. AMDGPU_GEM_DOMAIN_GTT,
  405. AMDGPU_GEM_CREATE_CPU_GTT_USWC,
  406. NULL, &placement,
  407. bo->tbo.resv,
  408. &bo->shadow);
  409. if (!r) {
  410. bo->shadow->parent = amdgpu_bo_ref(bo);
  411. mutex_lock(&adev->shadow_list_lock);
  412. list_add_tail(&bo->shadow_list, &adev->shadow_list);
  413. mutex_unlock(&adev->shadow_list_lock);
  414. }
  415. return r;
  416. }
  417. int amdgpu_bo_create(struct amdgpu_device *adev,
  418. unsigned long size, int byte_align,
  419. bool kernel, u32 domain, u64 flags,
  420. struct sg_table *sg,
  421. struct reservation_object *resv,
  422. struct amdgpu_bo **bo_ptr)
  423. {
  424. struct ttm_placement placement = {0};
  425. struct ttm_place placements[AMDGPU_GEM_DOMAIN_MAX + 1];
  426. int r;
  427. memset(&placements, 0,
  428. (AMDGPU_GEM_DOMAIN_MAX + 1) * sizeof(struct ttm_place));
  429. amdgpu_ttm_placement_init(adev, &placement,
  430. placements, domain, flags);
  431. r = amdgpu_bo_create_restricted(adev, size, byte_align, kernel,
  432. domain, flags, sg, &placement,
  433. resv, bo_ptr);
  434. if (r)
  435. return r;
  436. if (amdgpu_need_backup(adev) && (flags & AMDGPU_GEM_CREATE_SHADOW)) {
  437. if (!resv) {
  438. r = ww_mutex_lock(&(*bo_ptr)->tbo.resv->lock, NULL);
  439. WARN_ON(r != 0);
  440. }
  441. r = amdgpu_bo_create_shadow(adev, size, byte_align, (*bo_ptr));
  442. if (!resv)
  443. ww_mutex_unlock(&(*bo_ptr)->tbo.resv->lock);
  444. if (r)
  445. amdgpu_bo_unref(bo_ptr);
  446. }
  447. return r;
  448. }
  449. int amdgpu_bo_backup_to_shadow(struct amdgpu_device *adev,
  450. struct amdgpu_ring *ring,
  451. struct amdgpu_bo *bo,
  452. struct reservation_object *resv,
  453. struct dma_fence **fence,
  454. bool direct)
  455. {
  456. struct amdgpu_bo *shadow = bo->shadow;
  457. uint64_t bo_addr, shadow_addr;
  458. int r;
  459. if (!shadow)
  460. return -EINVAL;
  461. bo_addr = amdgpu_bo_gpu_offset(bo);
  462. shadow_addr = amdgpu_bo_gpu_offset(bo->shadow);
  463. r = reservation_object_reserve_shared(bo->tbo.resv);
  464. if (r)
  465. goto err;
  466. r = amdgpu_copy_buffer(ring, bo_addr, shadow_addr,
  467. amdgpu_bo_size(bo), resv, fence,
  468. direct);
  469. if (!r)
  470. amdgpu_bo_fence(bo, *fence, true);
  471. err:
  472. return r;
  473. }
  474. int amdgpu_bo_restore_from_shadow(struct amdgpu_device *adev,
  475. struct amdgpu_ring *ring,
  476. struct amdgpu_bo *bo,
  477. struct reservation_object *resv,
  478. struct dma_fence **fence,
  479. bool direct)
  480. {
  481. struct amdgpu_bo *shadow = bo->shadow;
  482. uint64_t bo_addr, shadow_addr;
  483. int r;
  484. if (!shadow)
  485. return -EINVAL;
  486. bo_addr = amdgpu_bo_gpu_offset(bo);
  487. shadow_addr = amdgpu_bo_gpu_offset(bo->shadow);
  488. r = reservation_object_reserve_shared(bo->tbo.resv);
  489. if (r)
  490. goto err;
  491. r = amdgpu_copy_buffer(ring, shadow_addr, bo_addr,
  492. amdgpu_bo_size(bo), resv, fence,
  493. direct);
  494. if (!r)
  495. amdgpu_bo_fence(bo, *fence, true);
  496. err:
  497. return r;
  498. }
  499. int amdgpu_bo_kmap(struct amdgpu_bo *bo, void **ptr)
  500. {
  501. bool is_iomem;
  502. long r;
  503. if (bo->flags & AMDGPU_GEM_CREATE_NO_CPU_ACCESS)
  504. return -EPERM;
  505. if (bo->kptr) {
  506. if (ptr) {
  507. *ptr = bo->kptr;
  508. }
  509. return 0;
  510. }
  511. r = reservation_object_wait_timeout_rcu(bo->tbo.resv, false, false,
  512. MAX_SCHEDULE_TIMEOUT);
  513. if (r < 0)
  514. return r;
  515. r = ttm_bo_kmap(&bo->tbo, 0, bo->tbo.num_pages, &bo->kmap);
  516. if (r)
  517. return r;
  518. bo->kptr = ttm_kmap_obj_virtual(&bo->kmap, &is_iomem);
  519. if (ptr)
  520. *ptr = bo->kptr;
  521. return 0;
  522. }
  523. void amdgpu_bo_kunmap(struct amdgpu_bo *bo)
  524. {
  525. if (bo->kptr == NULL)
  526. return;
  527. bo->kptr = NULL;
  528. ttm_bo_kunmap(&bo->kmap);
  529. }
  530. struct amdgpu_bo *amdgpu_bo_ref(struct amdgpu_bo *bo)
  531. {
  532. if (bo == NULL)
  533. return NULL;
  534. ttm_bo_reference(&bo->tbo);
  535. return bo;
  536. }
  537. void amdgpu_bo_unref(struct amdgpu_bo **bo)
  538. {
  539. struct ttm_buffer_object *tbo;
  540. if ((*bo) == NULL)
  541. return;
  542. tbo = &((*bo)->tbo);
  543. ttm_bo_unref(&tbo);
  544. if (tbo == NULL)
  545. *bo = NULL;
  546. }
  547. int amdgpu_bo_pin_restricted(struct amdgpu_bo *bo, u32 domain,
  548. u64 min_offset, u64 max_offset,
  549. u64 *gpu_addr)
  550. {
  551. struct amdgpu_device *adev = amdgpu_ttm_adev(bo->tbo.bdev);
  552. int r, i;
  553. unsigned fpfn, lpfn;
  554. if (amdgpu_ttm_tt_get_usermm(bo->tbo.ttm))
  555. return -EPERM;
  556. if (WARN_ON_ONCE(min_offset > max_offset))
  557. return -EINVAL;
  558. if (bo->pin_count) {
  559. uint32_t mem_type = bo->tbo.mem.mem_type;
  560. if (domain != amdgpu_mem_type_to_domain(mem_type))
  561. return -EINVAL;
  562. bo->pin_count++;
  563. if (gpu_addr)
  564. *gpu_addr = amdgpu_bo_gpu_offset(bo);
  565. if (max_offset != 0) {
  566. u64 domain_start = bo->tbo.bdev->man[mem_type].gpu_offset;
  567. WARN_ON_ONCE(max_offset <
  568. (amdgpu_bo_gpu_offset(bo) - domain_start));
  569. }
  570. return 0;
  571. }
  572. bo->flags |= AMDGPU_GEM_CREATE_VRAM_CONTIGUOUS;
  573. amdgpu_ttm_placement_from_domain(bo, domain);
  574. for (i = 0; i < bo->placement.num_placement; i++) {
  575. /* force to pin into visible video ram */
  576. if ((bo->placements[i].flags & TTM_PL_FLAG_VRAM) &&
  577. !(bo->flags & AMDGPU_GEM_CREATE_NO_CPU_ACCESS) &&
  578. (!max_offset || max_offset >
  579. adev->mc.visible_vram_size)) {
  580. if (WARN_ON_ONCE(min_offset >
  581. adev->mc.visible_vram_size))
  582. return -EINVAL;
  583. fpfn = min_offset >> PAGE_SHIFT;
  584. lpfn = adev->mc.visible_vram_size >> PAGE_SHIFT;
  585. } else {
  586. fpfn = min_offset >> PAGE_SHIFT;
  587. lpfn = max_offset >> PAGE_SHIFT;
  588. }
  589. if (fpfn > bo->placements[i].fpfn)
  590. bo->placements[i].fpfn = fpfn;
  591. if (!bo->placements[i].lpfn ||
  592. (lpfn && lpfn < bo->placements[i].lpfn))
  593. bo->placements[i].lpfn = lpfn;
  594. bo->placements[i].flags |= TTM_PL_FLAG_NO_EVICT;
  595. }
  596. r = ttm_bo_validate(&bo->tbo, &bo->placement, false, false);
  597. if (unlikely(r)) {
  598. dev_err(adev->dev, "%p pin failed\n", bo);
  599. goto error;
  600. }
  601. r = amdgpu_ttm_bind(&bo->tbo, &bo->tbo.mem);
  602. if (unlikely(r)) {
  603. dev_err(adev->dev, "%p bind failed\n", bo);
  604. goto error;
  605. }
  606. bo->pin_count = 1;
  607. if (gpu_addr != NULL)
  608. *gpu_addr = amdgpu_bo_gpu_offset(bo);
  609. if (domain == AMDGPU_GEM_DOMAIN_VRAM) {
  610. adev->vram_pin_size += amdgpu_bo_size(bo);
  611. if (bo->flags & AMDGPU_GEM_CREATE_NO_CPU_ACCESS)
  612. adev->invisible_pin_size += amdgpu_bo_size(bo);
  613. } else if (domain == AMDGPU_GEM_DOMAIN_GTT) {
  614. adev->gart_pin_size += amdgpu_bo_size(bo);
  615. }
  616. error:
  617. return r;
  618. }
  619. int amdgpu_bo_pin(struct amdgpu_bo *bo, u32 domain, u64 *gpu_addr)
  620. {
  621. return amdgpu_bo_pin_restricted(bo, domain, 0, 0, gpu_addr);
  622. }
  623. int amdgpu_bo_unpin(struct amdgpu_bo *bo)
  624. {
  625. struct amdgpu_device *adev = amdgpu_ttm_adev(bo->tbo.bdev);
  626. int r, i;
  627. if (!bo->pin_count) {
  628. dev_warn(adev->dev, "%p unpin not necessary\n", bo);
  629. return 0;
  630. }
  631. bo->pin_count--;
  632. if (bo->pin_count)
  633. return 0;
  634. for (i = 0; i < bo->placement.num_placement; i++) {
  635. bo->placements[i].lpfn = 0;
  636. bo->placements[i].flags &= ~TTM_PL_FLAG_NO_EVICT;
  637. }
  638. r = ttm_bo_validate(&bo->tbo, &bo->placement, false, false);
  639. if (unlikely(r)) {
  640. dev_err(adev->dev, "%p validate failed for unpin\n", bo);
  641. goto error;
  642. }
  643. if (bo->tbo.mem.mem_type == TTM_PL_VRAM) {
  644. adev->vram_pin_size -= amdgpu_bo_size(bo);
  645. if (bo->flags & AMDGPU_GEM_CREATE_NO_CPU_ACCESS)
  646. adev->invisible_pin_size -= amdgpu_bo_size(bo);
  647. } else if (bo->tbo.mem.mem_type == TTM_PL_TT) {
  648. adev->gart_pin_size -= amdgpu_bo_size(bo);
  649. }
  650. error:
  651. return r;
  652. }
  653. int amdgpu_bo_evict_vram(struct amdgpu_device *adev)
  654. {
  655. /* late 2.6.33 fix IGP hibernate - we need pm ops to do this correct */
  656. if (0 && (adev->flags & AMD_IS_APU)) {
  657. /* Useless to evict on IGP chips */
  658. return 0;
  659. }
  660. return ttm_bo_evict_mm(&adev->mman.bdev, TTM_PL_VRAM);
  661. }
  662. static const char *amdgpu_vram_names[] = {
  663. "UNKNOWN",
  664. "GDDR1",
  665. "DDR2",
  666. "GDDR3",
  667. "GDDR4",
  668. "GDDR5",
  669. "HBM",
  670. "DDR3"
  671. };
  672. int amdgpu_bo_init(struct amdgpu_device *adev)
  673. {
  674. /* reserve PAT memory space to WC for VRAM */
  675. arch_io_reserve_memtype_wc(adev->mc.aper_base,
  676. adev->mc.aper_size);
  677. /* Add an MTRR for the VRAM */
  678. adev->mc.vram_mtrr = arch_phys_wc_add(adev->mc.aper_base,
  679. adev->mc.aper_size);
  680. DRM_INFO("Detected VRAM RAM=%lluM, BAR=%lluM\n",
  681. adev->mc.mc_vram_size >> 20,
  682. (unsigned long long)adev->mc.aper_size >> 20);
  683. DRM_INFO("RAM width %dbits %s\n",
  684. adev->mc.vram_width, amdgpu_vram_names[adev->mc.vram_type]);
  685. return amdgpu_ttm_init(adev);
  686. }
  687. void amdgpu_bo_fini(struct amdgpu_device *adev)
  688. {
  689. amdgpu_ttm_fini(adev);
  690. arch_phys_wc_del(adev->mc.vram_mtrr);
  691. arch_io_free_memtype_wc(adev->mc.aper_base, adev->mc.aper_size);
  692. }
  693. int amdgpu_bo_fbdev_mmap(struct amdgpu_bo *bo,
  694. struct vm_area_struct *vma)
  695. {
  696. return ttm_fbdev_mmap(vma, &bo->tbo);
  697. }
  698. int amdgpu_bo_set_tiling_flags(struct amdgpu_bo *bo, u64 tiling_flags)
  699. {
  700. if (AMDGPU_TILING_GET(tiling_flags, TILE_SPLIT) > 6)
  701. return -EINVAL;
  702. bo->tiling_flags = tiling_flags;
  703. return 0;
  704. }
  705. void amdgpu_bo_get_tiling_flags(struct amdgpu_bo *bo, u64 *tiling_flags)
  706. {
  707. lockdep_assert_held(&bo->tbo.resv->lock.base);
  708. if (tiling_flags)
  709. *tiling_flags = bo->tiling_flags;
  710. }
  711. int amdgpu_bo_set_metadata (struct amdgpu_bo *bo, void *metadata,
  712. uint32_t metadata_size, uint64_t flags)
  713. {
  714. void *buffer;
  715. if (!metadata_size) {
  716. if (bo->metadata_size) {
  717. kfree(bo->metadata);
  718. bo->metadata = NULL;
  719. bo->metadata_size = 0;
  720. }
  721. return 0;
  722. }
  723. if (metadata == NULL)
  724. return -EINVAL;
  725. buffer = kmemdup(metadata, metadata_size, GFP_KERNEL);
  726. if (buffer == NULL)
  727. return -ENOMEM;
  728. kfree(bo->metadata);
  729. bo->metadata_flags = flags;
  730. bo->metadata = buffer;
  731. bo->metadata_size = metadata_size;
  732. return 0;
  733. }
  734. int amdgpu_bo_get_metadata(struct amdgpu_bo *bo, void *buffer,
  735. size_t buffer_size, uint32_t *metadata_size,
  736. uint64_t *flags)
  737. {
  738. if (!buffer && !metadata_size)
  739. return -EINVAL;
  740. if (buffer) {
  741. if (buffer_size < bo->metadata_size)
  742. return -EINVAL;
  743. if (bo->metadata_size)
  744. memcpy(buffer, bo->metadata, bo->metadata_size);
  745. }
  746. if (metadata_size)
  747. *metadata_size = bo->metadata_size;
  748. if (flags)
  749. *flags = bo->metadata_flags;
  750. return 0;
  751. }
  752. void amdgpu_bo_move_notify(struct ttm_buffer_object *bo,
  753. bool evict,
  754. struct ttm_mem_reg *new_mem)
  755. {
  756. struct amdgpu_device *adev = amdgpu_ttm_adev(bo->bdev);
  757. struct amdgpu_bo *abo;
  758. struct ttm_mem_reg *old_mem = &bo->mem;
  759. if (!amdgpu_ttm_bo_is_amdgpu_bo(bo))
  760. return;
  761. abo = container_of(bo, struct amdgpu_bo, tbo);
  762. amdgpu_vm_bo_invalidate(adev, abo);
  763. /* remember the eviction */
  764. if (evict)
  765. atomic64_inc(&adev->num_evictions);
  766. /* update statistics */
  767. if (!new_mem)
  768. return;
  769. /* move_notify is called before move happens */
  770. amdgpu_update_memory_usage(adev, &bo->mem, new_mem);
  771. trace_amdgpu_ttm_bo_move(abo, new_mem->mem_type, old_mem->mem_type);
  772. }
  773. int amdgpu_bo_fault_reserve_notify(struct ttm_buffer_object *bo)
  774. {
  775. struct amdgpu_device *adev = amdgpu_ttm_adev(bo->bdev);
  776. struct amdgpu_bo *abo;
  777. unsigned long offset, size, lpfn;
  778. int i, r;
  779. if (!amdgpu_ttm_bo_is_amdgpu_bo(bo))
  780. return 0;
  781. abo = container_of(bo, struct amdgpu_bo, tbo);
  782. if (bo->mem.mem_type != TTM_PL_VRAM)
  783. return 0;
  784. size = bo->mem.num_pages << PAGE_SHIFT;
  785. offset = bo->mem.start << PAGE_SHIFT;
  786. /* TODO: figure out how to map scattered VRAM to the CPU */
  787. if ((offset + size) <= adev->mc.visible_vram_size &&
  788. (abo->flags & AMDGPU_GEM_CREATE_VRAM_CONTIGUOUS))
  789. return 0;
  790. /* Can't move a pinned BO to visible VRAM */
  791. if (abo->pin_count > 0)
  792. return -EINVAL;
  793. /* hurrah the memory is not visible ! */
  794. abo->flags |= AMDGPU_GEM_CREATE_VRAM_CONTIGUOUS;
  795. amdgpu_ttm_placement_from_domain(abo, AMDGPU_GEM_DOMAIN_VRAM);
  796. lpfn = adev->mc.visible_vram_size >> PAGE_SHIFT;
  797. for (i = 0; i < abo->placement.num_placement; i++) {
  798. /* Force into visible VRAM */
  799. if ((abo->placements[i].flags & TTM_PL_FLAG_VRAM) &&
  800. (!abo->placements[i].lpfn ||
  801. abo->placements[i].lpfn > lpfn))
  802. abo->placements[i].lpfn = lpfn;
  803. }
  804. r = ttm_bo_validate(bo, &abo->placement, false, false);
  805. if (unlikely(r == -ENOMEM)) {
  806. amdgpu_ttm_placement_from_domain(abo, AMDGPU_GEM_DOMAIN_GTT);
  807. return ttm_bo_validate(bo, &abo->placement, false, false);
  808. } else if (unlikely(r != 0)) {
  809. return r;
  810. }
  811. offset = bo->mem.start << PAGE_SHIFT;
  812. /* this should never happen */
  813. if ((offset + size) > adev->mc.visible_vram_size)
  814. return -EINVAL;
  815. return 0;
  816. }
  817. /**
  818. * amdgpu_bo_fence - add fence to buffer object
  819. *
  820. * @bo: buffer object in question
  821. * @fence: fence to add
  822. * @shared: true if fence should be added shared
  823. *
  824. */
  825. void amdgpu_bo_fence(struct amdgpu_bo *bo, struct dma_fence *fence,
  826. bool shared)
  827. {
  828. struct reservation_object *resv = bo->tbo.resv;
  829. if (shared)
  830. reservation_object_add_shared_fence(resv, fence);
  831. else
  832. reservation_object_add_excl_fence(resv, fence);
  833. }
  834. /**
  835. * amdgpu_bo_gpu_offset - return GPU offset of bo
  836. * @bo: amdgpu object for which we query the offset
  837. *
  838. * Returns current GPU offset of the object.
  839. *
  840. * Note: object should either be pinned or reserved when calling this
  841. * function, it might be useful to add check for this for debugging.
  842. */
  843. u64 amdgpu_bo_gpu_offset(struct amdgpu_bo *bo)
  844. {
  845. WARN_ON_ONCE(bo->tbo.mem.mem_type == TTM_PL_SYSTEM);
  846. WARN_ON_ONCE(bo->tbo.mem.mem_type == TTM_PL_TT &&
  847. !amdgpu_ttm_is_bound(bo->tbo.ttm));
  848. WARN_ON_ONCE(!ww_mutex_is_locked(&bo->tbo.resv->lock) &&
  849. !bo->pin_count);
  850. WARN_ON_ONCE(bo->tbo.mem.start == AMDGPU_BO_INVALID_OFFSET);
  851. WARN_ON_ONCE(bo->tbo.mem.mem_type == TTM_PL_VRAM &&
  852. !(bo->flags & AMDGPU_GEM_CREATE_VRAM_CONTIGUOUS));
  853. return bo->tbo.offset;
  854. }