vmwgfx_surface.c 41 KB

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  1. /**************************************************************************
  2. *
  3. * Copyright © 2009-2014 VMware, Inc., Palo Alto, CA., USA
  4. * All Rights Reserved.
  5. *
  6. * Permission is hereby granted, free of charge, to any person obtaining a
  7. * copy of this software and associated documentation files (the
  8. * "Software"), to deal in the Software without restriction, including
  9. * without limitation the rights to use, copy, modify, merge, publish,
  10. * distribute, sub license, and/or sell copies of the Software, and to
  11. * permit persons to whom the Software is furnished to do so, subject to
  12. * the following conditions:
  13. *
  14. * The above copyright notice and this permission notice (including the
  15. * next paragraph) shall be included in all copies or substantial portions
  16. * of the Software.
  17. *
  18. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  19. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  20. * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
  21. * THE COPYRIGHT HOLDERS, AUTHORS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM,
  22. * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
  23. * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
  24. * USE OR OTHER DEALINGS IN THE SOFTWARE.
  25. *
  26. **************************************************************************/
  27. #include "vmwgfx_drv.h"
  28. #include "vmwgfx_resource_priv.h"
  29. #include <ttm/ttm_placement.h>
  30. #include "svga3d_surfacedefs.h"
  31. /**
  32. * struct vmw_user_surface - User-space visible surface resource
  33. *
  34. * @base: The TTM base object handling user-space visibility.
  35. * @srf: The surface metadata.
  36. * @size: TTM accounting size for the surface.
  37. * @master: master of the creating client. Used for security check.
  38. */
  39. struct vmw_user_surface {
  40. struct ttm_prime_object prime;
  41. struct vmw_surface srf;
  42. uint32_t size;
  43. struct drm_master *master;
  44. };
  45. /**
  46. * struct vmw_surface_offset - Backing store mip level offset info
  47. *
  48. * @face: Surface face.
  49. * @mip: Mip level.
  50. * @bo_offset: Offset into backing store of this mip level.
  51. *
  52. */
  53. struct vmw_surface_offset {
  54. uint32_t face;
  55. uint32_t mip;
  56. uint32_t bo_offset;
  57. };
  58. static void vmw_user_surface_free(struct vmw_resource *res);
  59. static struct vmw_resource *
  60. vmw_user_surface_base_to_res(struct ttm_base_object *base);
  61. static int vmw_legacy_srf_bind(struct vmw_resource *res,
  62. struct ttm_validate_buffer *val_buf);
  63. static int vmw_legacy_srf_unbind(struct vmw_resource *res,
  64. bool readback,
  65. struct ttm_validate_buffer *val_buf);
  66. static int vmw_legacy_srf_create(struct vmw_resource *res);
  67. static int vmw_legacy_srf_destroy(struct vmw_resource *res);
  68. static int vmw_gb_surface_create(struct vmw_resource *res);
  69. static int vmw_gb_surface_bind(struct vmw_resource *res,
  70. struct ttm_validate_buffer *val_buf);
  71. static int vmw_gb_surface_unbind(struct vmw_resource *res,
  72. bool readback,
  73. struct ttm_validate_buffer *val_buf);
  74. static int vmw_gb_surface_destroy(struct vmw_resource *res);
  75. static const struct vmw_user_resource_conv user_surface_conv = {
  76. .object_type = VMW_RES_SURFACE,
  77. .base_obj_to_res = vmw_user_surface_base_to_res,
  78. .res_free = vmw_user_surface_free
  79. };
  80. const struct vmw_user_resource_conv *user_surface_converter =
  81. &user_surface_conv;
  82. static uint64_t vmw_user_surface_size;
  83. static const struct vmw_res_func vmw_legacy_surface_func = {
  84. .res_type = vmw_res_surface,
  85. .needs_backup = false,
  86. .may_evict = true,
  87. .type_name = "legacy surfaces",
  88. .backup_placement = &vmw_srf_placement,
  89. .create = &vmw_legacy_srf_create,
  90. .destroy = &vmw_legacy_srf_destroy,
  91. .bind = &vmw_legacy_srf_bind,
  92. .unbind = &vmw_legacy_srf_unbind
  93. };
  94. static const struct vmw_res_func vmw_gb_surface_func = {
  95. .res_type = vmw_res_surface,
  96. .needs_backup = true,
  97. .may_evict = true,
  98. .type_name = "guest backed surfaces",
  99. .backup_placement = &vmw_mob_placement,
  100. .create = vmw_gb_surface_create,
  101. .destroy = vmw_gb_surface_destroy,
  102. .bind = vmw_gb_surface_bind,
  103. .unbind = vmw_gb_surface_unbind
  104. };
  105. /**
  106. * struct vmw_surface_dma - SVGA3D DMA command
  107. */
  108. struct vmw_surface_dma {
  109. SVGA3dCmdHeader header;
  110. SVGA3dCmdSurfaceDMA body;
  111. SVGA3dCopyBox cb;
  112. SVGA3dCmdSurfaceDMASuffix suffix;
  113. };
  114. /**
  115. * struct vmw_surface_define - SVGA3D Surface Define command
  116. */
  117. struct vmw_surface_define {
  118. SVGA3dCmdHeader header;
  119. SVGA3dCmdDefineSurface body;
  120. };
  121. /**
  122. * struct vmw_surface_destroy - SVGA3D Surface Destroy command
  123. */
  124. struct vmw_surface_destroy {
  125. SVGA3dCmdHeader header;
  126. SVGA3dCmdDestroySurface body;
  127. };
  128. /**
  129. * vmw_surface_dma_size - Compute fifo size for a dma command.
  130. *
  131. * @srf: Pointer to a struct vmw_surface
  132. *
  133. * Computes the required size for a surface dma command for backup or
  134. * restoration of the surface represented by @srf.
  135. */
  136. static inline uint32_t vmw_surface_dma_size(const struct vmw_surface *srf)
  137. {
  138. return srf->num_sizes * sizeof(struct vmw_surface_dma);
  139. }
  140. /**
  141. * vmw_surface_define_size - Compute fifo size for a surface define command.
  142. *
  143. * @srf: Pointer to a struct vmw_surface
  144. *
  145. * Computes the required size for a surface define command for the definition
  146. * of the surface represented by @srf.
  147. */
  148. static inline uint32_t vmw_surface_define_size(const struct vmw_surface *srf)
  149. {
  150. return sizeof(struct vmw_surface_define) + srf->num_sizes *
  151. sizeof(SVGA3dSize);
  152. }
  153. /**
  154. * vmw_surface_destroy_size - Compute fifo size for a surface destroy command.
  155. *
  156. * Computes the required size for a surface destroy command for the destruction
  157. * of a hw surface.
  158. */
  159. static inline uint32_t vmw_surface_destroy_size(void)
  160. {
  161. return sizeof(struct vmw_surface_destroy);
  162. }
  163. /**
  164. * vmw_surface_destroy_encode - Encode a surface_destroy command.
  165. *
  166. * @id: The surface id
  167. * @cmd_space: Pointer to memory area in which the commands should be encoded.
  168. */
  169. static void vmw_surface_destroy_encode(uint32_t id,
  170. void *cmd_space)
  171. {
  172. struct vmw_surface_destroy *cmd = (struct vmw_surface_destroy *)
  173. cmd_space;
  174. cmd->header.id = SVGA_3D_CMD_SURFACE_DESTROY;
  175. cmd->header.size = sizeof(cmd->body);
  176. cmd->body.sid = id;
  177. }
  178. /**
  179. * vmw_surface_define_encode - Encode a surface_define command.
  180. *
  181. * @srf: Pointer to a struct vmw_surface object.
  182. * @cmd_space: Pointer to memory area in which the commands should be encoded.
  183. */
  184. static void vmw_surface_define_encode(const struct vmw_surface *srf,
  185. void *cmd_space)
  186. {
  187. struct vmw_surface_define *cmd = (struct vmw_surface_define *)
  188. cmd_space;
  189. struct drm_vmw_size *src_size;
  190. SVGA3dSize *cmd_size;
  191. uint32_t cmd_len;
  192. int i;
  193. cmd_len = sizeof(cmd->body) + srf->num_sizes * sizeof(SVGA3dSize);
  194. cmd->header.id = SVGA_3D_CMD_SURFACE_DEFINE;
  195. cmd->header.size = cmd_len;
  196. cmd->body.sid = srf->res.id;
  197. cmd->body.surfaceFlags = srf->flags;
  198. cmd->body.format = srf->format;
  199. for (i = 0; i < DRM_VMW_MAX_SURFACE_FACES; ++i)
  200. cmd->body.face[i].numMipLevels = srf->mip_levels[i];
  201. cmd += 1;
  202. cmd_size = (SVGA3dSize *) cmd;
  203. src_size = srf->sizes;
  204. for (i = 0; i < srf->num_sizes; ++i, cmd_size++, src_size++) {
  205. cmd_size->width = src_size->width;
  206. cmd_size->height = src_size->height;
  207. cmd_size->depth = src_size->depth;
  208. }
  209. }
  210. /**
  211. * vmw_surface_dma_encode - Encode a surface_dma command.
  212. *
  213. * @srf: Pointer to a struct vmw_surface object.
  214. * @cmd_space: Pointer to memory area in which the commands should be encoded.
  215. * @ptr: Pointer to an SVGAGuestPtr indicating where the surface contents
  216. * should be placed or read from.
  217. * @to_surface: Boolean whether to DMA to the surface or from the surface.
  218. */
  219. static void vmw_surface_dma_encode(struct vmw_surface *srf,
  220. void *cmd_space,
  221. const SVGAGuestPtr *ptr,
  222. bool to_surface)
  223. {
  224. uint32_t i;
  225. struct vmw_surface_dma *cmd = (struct vmw_surface_dma *)cmd_space;
  226. const struct svga3d_surface_desc *desc =
  227. svga3dsurface_get_desc(srf->format);
  228. for (i = 0; i < srf->num_sizes; ++i) {
  229. SVGA3dCmdHeader *header = &cmd->header;
  230. SVGA3dCmdSurfaceDMA *body = &cmd->body;
  231. SVGA3dCopyBox *cb = &cmd->cb;
  232. SVGA3dCmdSurfaceDMASuffix *suffix = &cmd->suffix;
  233. const struct vmw_surface_offset *cur_offset = &srf->offsets[i];
  234. const struct drm_vmw_size *cur_size = &srf->sizes[i];
  235. header->id = SVGA_3D_CMD_SURFACE_DMA;
  236. header->size = sizeof(*body) + sizeof(*cb) + sizeof(*suffix);
  237. body->guest.ptr = *ptr;
  238. body->guest.ptr.offset += cur_offset->bo_offset;
  239. body->guest.pitch = svga3dsurface_calculate_pitch(desc,
  240. cur_size);
  241. body->host.sid = srf->res.id;
  242. body->host.face = cur_offset->face;
  243. body->host.mipmap = cur_offset->mip;
  244. body->transfer = ((to_surface) ? SVGA3D_WRITE_HOST_VRAM :
  245. SVGA3D_READ_HOST_VRAM);
  246. cb->x = 0;
  247. cb->y = 0;
  248. cb->z = 0;
  249. cb->srcx = 0;
  250. cb->srcy = 0;
  251. cb->srcz = 0;
  252. cb->w = cur_size->width;
  253. cb->h = cur_size->height;
  254. cb->d = cur_size->depth;
  255. suffix->suffixSize = sizeof(*suffix);
  256. suffix->maximumOffset =
  257. svga3dsurface_get_image_buffer_size(desc, cur_size,
  258. body->guest.pitch);
  259. suffix->flags.discard = 0;
  260. suffix->flags.unsynchronized = 0;
  261. suffix->flags.reserved = 0;
  262. ++cmd;
  263. }
  264. };
  265. /**
  266. * vmw_hw_surface_destroy - destroy a Device surface
  267. *
  268. * @res: Pointer to a struct vmw_resource embedded in a struct
  269. * vmw_surface.
  270. *
  271. * Destroys a the device surface associated with a struct vmw_surface if
  272. * any, and adjusts accounting and resource count accordingly.
  273. */
  274. static void vmw_hw_surface_destroy(struct vmw_resource *res)
  275. {
  276. struct vmw_private *dev_priv = res->dev_priv;
  277. struct vmw_surface *srf;
  278. void *cmd;
  279. if (res->func->destroy == vmw_gb_surface_destroy) {
  280. (void) vmw_gb_surface_destroy(res);
  281. return;
  282. }
  283. if (res->id != -1) {
  284. cmd = vmw_fifo_reserve(dev_priv, vmw_surface_destroy_size());
  285. if (unlikely(cmd == NULL)) {
  286. DRM_ERROR("Failed reserving FIFO space for surface "
  287. "destruction.\n");
  288. return;
  289. }
  290. vmw_surface_destroy_encode(res->id, cmd);
  291. vmw_fifo_commit(dev_priv, vmw_surface_destroy_size());
  292. /*
  293. * used_memory_size_atomic, or separate lock
  294. * to avoid taking dev_priv::cmdbuf_mutex in
  295. * the destroy path.
  296. */
  297. mutex_lock(&dev_priv->cmdbuf_mutex);
  298. srf = vmw_res_to_srf(res);
  299. dev_priv->used_memory_size -= res->backup_size;
  300. mutex_unlock(&dev_priv->cmdbuf_mutex);
  301. }
  302. vmw_fifo_resource_dec(dev_priv);
  303. }
  304. /**
  305. * vmw_legacy_srf_create - Create a device surface as part of the
  306. * resource validation process.
  307. *
  308. * @res: Pointer to a struct vmw_surface.
  309. *
  310. * If the surface doesn't have a hw id.
  311. *
  312. * Returns -EBUSY if there wasn't sufficient device resources to
  313. * complete the validation. Retry after freeing up resources.
  314. *
  315. * May return other errors if the kernel is out of guest resources.
  316. */
  317. static int vmw_legacy_srf_create(struct vmw_resource *res)
  318. {
  319. struct vmw_private *dev_priv = res->dev_priv;
  320. struct vmw_surface *srf;
  321. uint32_t submit_size;
  322. uint8_t *cmd;
  323. int ret;
  324. if (likely(res->id != -1))
  325. return 0;
  326. srf = vmw_res_to_srf(res);
  327. if (unlikely(dev_priv->used_memory_size + res->backup_size >=
  328. dev_priv->memory_size))
  329. return -EBUSY;
  330. /*
  331. * Alloc id for the resource.
  332. */
  333. ret = vmw_resource_alloc_id(res);
  334. if (unlikely(ret != 0)) {
  335. DRM_ERROR("Failed to allocate a surface id.\n");
  336. goto out_no_id;
  337. }
  338. if (unlikely(res->id >= SVGA3D_MAX_SURFACE_IDS)) {
  339. ret = -EBUSY;
  340. goto out_no_fifo;
  341. }
  342. /*
  343. * Encode surface define- commands.
  344. */
  345. submit_size = vmw_surface_define_size(srf);
  346. cmd = vmw_fifo_reserve(dev_priv, submit_size);
  347. if (unlikely(cmd == NULL)) {
  348. DRM_ERROR("Failed reserving FIFO space for surface "
  349. "creation.\n");
  350. ret = -ENOMEM;
  351. goto out_no_fifo;
  352. }
  353. vmw_surface_define_encode(srf, cmd);
  354. vmw_fifo_commit(dev_priv, submit_size);
  355. /*
  356. * Surface memory usage accounting.
  357. */
  358. dev_priv->used_memory_size += res->backup_size;
  359. return 0;
  360. out_no_fifo:
  361. vmw_resource_release_id(res);
  362. out_no_id:
  363. return ret;
  364. }
  365. /**
  366. * vmw_legacy_srf_dma - Copy backup data to or from a legacy surface.
  367. *
  368. * @res: Pointer to a struct vmw_res embedded in a struct
  369. * vmw_surface.
  370. * @val_buf: Pointer to a struct ttm_validate_buffer containing
  371. * information about the backup buffer.
  372. * @bind: Boolean wether to DMA to the surface.
  373. *
  374. * Transfer backup data to or from a legacy surface as part of the
  375. * validation process.
  376. * May return other errors if the kernel is out of guest resources.
  377. * The backup buffer will be fenced or idle upon successful completion,
  378. * and if the surface needs persistent backup storage, the backup buffer
  379. * will also be returned reserved iff @bind is true.
  380. */
  381. static int vmw_legacy_srf_dma(struct vmw_resource *res,
  382. struct ttm_validate_buffer *val_buf,
  383. bool bind)
  384. {
  385. SVGAGuestPtr ptr;
  386. struct vmw_fence_obj *fence;
  387. uint32_t submit_size;
  388. struct vmw_surface *srf = vmw_res_to_srf(res);
  389. uint8_t *cmd;
  390. struct vmw_private *dev_priv = res->dev_priv;
  391. BUG_ON(val_buf->bo == NULL);
  392. submit_size = vmw_surface_dma_size(srf);
  393. cmd = vmw_fifo_reserve(dev_priv, submit_size);
  394. if (unlikely(cmd == NULL)) {
  395. DRM_ERROR("Failed reserving FIFO space for surface "
  396. "DMA.\n");
  397. return -ENOMEM;
  398. }
  399. vmw_bo_get_guest_ptr(val_buf->bo, &ptr);
  400. vmw_surface_dma_encode(srf, cmd, &ptr, bind);
  401. vmw_fifo_commit(dev_priv, submit_size);
  402. /*
  403. * Create a fence object and fence the backup buffer.
  404. */
  405. (void) vmw_execbuf_fence_commands(NULL, dev_priv,
  406. &fence, NULL);
  407. vmw_fence_single_bo(val_buf->bo, fence);
  408. if (likely(fence != NULL))
  409. vmw_fence_obj_unreference(&fence);
  410. return 0;
  411. }
  412. /**
  413. * vmw_legacy_srf_bind - Perform a legacy surface bind as part of the
  414. * surface validation process.
  415. *
  416. * @res: Pointer to a struct vmw_res embedded in a struct
  417. * vmw_surface.
  418. * @val_buf: Pointer to a struct ttm_validate_buffer containing
  419. * information about the backup buffer.
  420. *
  421. * This function will copy backup data to the surface if the
  422. * backup buffer is dirty.
  423. */
  424. static int vmw_legacy_srf_bind(struct vmw_resource *res,
  425. struct ttm_validate_buffer *val_buf)
  426. {
  427. if (!res->backup_dirty)
  428. return 0;
  429. return vmw_legacy_srf_dma(res, val_buf, true);
  430. }
  431. /**
  432. * vmw_legacy_srf_unbind - Perform a legacy surface unbind as part of the
  433. * surface eviction process.
  434. *
  435. * @res: Pointer to a struct vmw_res embedded in a struct
  436. * vmw_surface.
  437. * @val_buf: Pointer to a struct ttm_validate_buffer containing
  438. * information about the backup buffer.
  439. *
  440. * This function will copy backup data from the surface.
  441. */
  442. static int vmw_legacy_srf_unbind(struct vmw_resource *res,
  443. bool readback,
  444. struct ttm_validate_buffer *val_buf)
  445. {
  446. if (unlikely(readback))
  447. return vmw_legacy_srf_dma(res, val_buf, false);
  448. return 0;
  449. }
  450. /**
  451. * vmw_legacy_srf_destroy - Destroy a device surface as part of a
  452. * resource eviction process.
  453. *
  454. * @res: Pointer to a struct vmw_res embedded in a struct
  455. * vmw_surface.
  456. */
  457. static int vmw_legacy_srf_destroy(struct vmw_resource *res)
  458. {
  459. struct vmw_private *dev_priv = res->dev_priv;
  460. uint32_t submit_size;
  461. uint8_t *cmd;
  462. BUG_ON(res->id == -1);
  463. /*
  464. * Encode the dma- and surface destroy commands.
  465. */
  466. submit_size = vmw_surface_destroy_size();
  467. cmd = vmw_fifo_reserve(dev_priv, submit_size);
  468. if (unlikely(cmd == NULL)) {
  469. DRM_ERROR("Failed reserving FIFO space for surface "
  470. "eviction.\n");
  471. return -ENOMEM;
  472. }
  473. vmw_surface_destroy_encode(res->id, cmd);
  474. vmw_fifo_commit(dev_priv, submit_size);
  475. /*
  476. * Surface memory usage accounting.
  477. */
  478. dev_priv->used_memory_size -= res->backup_size;
  479. /*
  480. * Release the surface ID.
  481. */
  482. vmw_resource_release_id(res);
  483. return 0;
  484. }
  485. /**
  486. * vmw_surface_init - initialize a struct vmw_surface
  487. *
  488. * @dev_priv: Pointer to a device private struct.
  489. * @srf: Pointer to the struct vmw_surface to initialize.
  490. * @res_free: Pointer to a resource destructor used to free
  491. * the object.
  492. */
  493. static int vmw_surface_init(struct vmw_private *dev_priv,
  494. struct vmw_surface *srf,
  495. void (*res_free) (struct vmw_resource *res))
  496. {
  497. int ret;
  498. struct vmw_resource *res = &srf->res;
  499. BUG_ON(res_free == NULL);
  500. if (!dev_priv->has_mob)
  501. vmw_fifo_resource_inc(dev_priv);
  502. ret = vmw_resource_init(dev_priv, res, true, res_free,
  503. (dev_priv->has_mob) ? &vmw_gb_surface_func :
  504. &vmw_legacy_surface_func);
  505. if (unlikely(ret != 0)) {
  506. if (!dev_priv->has_mob)
  507. vmw_fifo_resource_dec(dev_priv);
  508. res_free(res);
  509. return ret;
  510. }
  511. /*
  512. * The surface won't be visible to hardware until a
  513. * surface validate.
  514. */
  515. vmw_resource_activate(res, vmw_hw_surface_destroy);
  516. return ret;
  517. }
  518. /**
  519. * vmw_user_surface_base_to_res - TTM base object to resource converter for
  520. * user visible surfaces
  521. *
  522. * @base: Pointer to a TTM base object
  523. *
  524. * Returns the struct vmw_resource embedded in a struct vmw_surface
  525. * for the user-visible object identified by the TTM base object @base.
  526. */
  527. static struct vmw_resource *
  528. vmw_user_surface_base_to_res(struct ttm_base_object *base)
  529. {
  530. return &(container_of(base, struct vmw_user_surface,
  531. prime.base)->srf.res);
  532. }
  533. /**
  534. * vmw_user_surface_free - User visible surface resource destructor
  535. *
  536. * @res: A struct vmw_resource embedded in a struct vmw_surface.
  537. */
  538. static void vmw_user_surface_free(struct vmw_resource *res)
  539. {
  540. struct vmw_surface *srf = vmw_res_to_srf(res);
  541. struct vmw_user_surface *user_srf =
  542. container_of(srf, struct vmw_user_surface, srf);
  543. struct vmw_private *dev_priv = srf->res.dev_priv;
  544. uint32_t size = user_srf->size;
  545. if (user_srf->master)
  546. drm_master_put(&user_srf->master);
  547. kfree(srf->offsets);
  548. kfree(srf->sizes);
  549. kfree(srf->snooper.image);
  550. ttm_prime_object_kfree(user_srf, prime);
  551. ttm_mem_global_free(vmw_mem_glob(dev_priv), size);
  552. }
  553. /**
  554. * vmw_user_surface_free - User visible surface TTM base object destructor
  555. *
  556. * @p_base: Pointer to a pointer to a TTM base object
  557. * embedded in a struct vmw_user_surface.
  558. *
  559. * Drops the base object's reference on its resource, and the
  560. * pointer pointed to by *p_base is set to NULL.
  561. */
  562. static void vmw_user_surface_base_release(struct ttm_base_object **p_base)
  563. {
  564. struct ttm_base_object *base = *p_base;
  565. struct vmw_user_surface *user_srf =
  566. container_of(base, struct vmw_user_surface, prime.base);
  567. struct vmw_resource *res = &user_srf->srf.res;
  568. *p_base = NULL;
  569. vmw_resource_unreference(&res);
  570. }
  571. /**
  572. * vmw_user_surface_destroy_ioctl - Ioctl function implementing
  573. * the user surface destroy functionality.
  574. *
  575. * @dev: Pointer to a struct drm_device.
  576. * @data: Pointer to data copied from / to user-space.
  577. * @file_priv: Pointer to a drm file private structure.
  578. */
  579. int vmw_surface_destroy_ioctl(struct drm_device *dev, void *data,
  580. struct drm_file *file_priv)
  581. {
  582. struct drm_vmw_surface_arg *arg = (struct drm_vmw_surface_arg *)data;
  583. struct ttm_object_file *tfile = vmw_fpriv(file_priv)->tfile;
  584. return ttm_ref_object_base_unref(tfile, arg->sid, TTM_REF_USAGE);
  585. }
  586. /**
  587. * vmw_user_surface_define_ioctl - Ioctl function implementing
  588. * the user surface define functionality.
  589. *
  590. * @dev: Pointer to a struct drm_device.
  591. * @data: Pointer to data copied from / to user-space.
  592. * @file_priv: Pointer to a drm file private structure.
  593. */
  594. int vmw_surface_define_ioctl(struct drm_device *dev, void *data,
  595. struct drm_file *file_priv)
  596. {
  597. struct vmw_private *dev_priv = vmw_priv(dev);
  598. struct vmw_user_surface *user_srf;
  599. struct vmw_surface *srf;
  600. struct vmw_resource *res;
  601. struct vmw_resource *tmp;
  602. union drm_vmw_surface_create_arg *arg =
  603. (union drm_vmw_surface_create_arg *)data;
  604. struct drm_vmw_surface_create_req *req = &arg->req;
  605. struct drm_vmw_surface_arg *rep = &arg->rep;
  606. struct ttm_object_file *tfile = vmw_fpriv(file_priv)->tfile;
  607. struct drm_vmw_size __user *user_sizes;
  608. int ret;
  609. int i, j;
  610. uint32_t cur_bo_offset;
  611. struct drm_vmw_size *cur_size;
  612. struct vmw_surface_offset *cur_offset;
  613. uint32_t num_sizes;
  614. uint32_t size;
  615. const struct svga3d_surface_desc *desc;
  616. if (unlikely(vmw_user_surface_size == 0))
  617. vmw_user_surface_size = ttm_round_pot(sizeof(*user_srf)) +
  618. 128;
  619. num_sizes = 0;
  620. for (i = 0; i < DRM_VMW_MAX_SURFACE_FACES; ++i)
  621. num_sizes += req->mip_levels[i];
  622. if (num_sizes > DRM_VMW_MAX_SURFACE_FACES *
  623. DRM_VMW_MAX_MIP_LEVELS)
  624. return -EINVAL;
  625. size = vmw_user_surface_size + 128 +
  626. ttm_round_pot(num_sizes * sizeof(struct drm_vmw_size)) +
  627. ttm_round_pot(num_sizes * sizeof(struct vmw_surface_offset));
  628. desc = svga3dsurface_get_desc(req->format);
  629. if (unlikely(desc->block_desc == SVGA3DBLOCKDESC_NONE)) {
  630. DRM_ERROR("Invalid surface format for surface creation.\n");
  631. return -EINVAL;
  632. }
  633. ret = ttm_read_lock(&dev_priv->reservation_sem, true);
  634. if (unlikely(ret != 0))
  635. return ret;
  636. ret = ttm_mem_global_alloc(vmw_mem_glob(dev_priv),
  637. size, false, true);
  638. if (unlikely(ret != 0)) {
  639. if (ret != -ERESTARTSYS)
  640. DRM_ERROR("Out of graphics memory for surface"
  641. " creation.\n");
  642. goto out_unlock;
  643. }
  644. user_srf = kzalloc(sizeof(*user_srf), GFP_KERNEL);
  645. if (unlikely(user_srf == NULL)) {
  646. ret = -ENOMEM;
  647. goto out_no_user_srf;
  648. }
  649. srf = &user_srf->srf;
  650. res = &srf->res;
  651. srf->flags = req->flags;
  652. srf->format = req->format;
  653. srf->scanout = req->scanout;
  654. memcpy(srf->mip_levels, req->mip_levels, sizeof(srf->mip_levels));
  655. srf->num_sizes = num_sizes;
  656. user_srf->size = size;
  657. srf->sizes = kmalloc(srf->num_sizes * sizeof(*srf->sizes), GFP_KERNEL);
  658. if (unlikely(srf->sizes == NULL)) {
  659. ret = -ENOMEM;
  660. goto out_no_sizes;
  661. }
  662. srf->offsets = kmalloc(srf->num_sizes * sizeof(*srf->offsets),
  663. GFP_KERNEL);
  664. if (unlikely(srf->sizes == NULL)) {
  665. ret = -ENOMEM;
  666. goto out_no_offsets;
  667. }
  668. user_sizes = (struct drm_vmw_size __user *)(unsigned long)
  669. req->size_addr;
  670. ret = copy_from_user(srf->sizes, user_sizes,
  671. srf->num_sizes * sizeof(*srf->sizes));
  672. if (unlikely(ret != 0)) {
  673. ret = -EFAULT;
  674. goto out_no_copy;
  675. }
  676. srf->base_size = *srf->sizes;
  677. srf->autogen_filter = SVGA3D_TEX_FILTER_NONE;
  678. srf->multisample_count = 0;
  679. cur_bo_offset = 0;
  680. cur_offset = srf->offsets;
  681. cur_size = srf->sizes;
  682. for (i = 0; i < DRM_VMW_MAX_SURFACE_FACES; ++i) {
  683. for (j = 0; j < srf->mip_levels[i]; ++j) {
  684. uint32_t stride = svga3dsurface_calculate_pitch
  685. (desc, cur_size);
  686. cur_offset->face = i;
  687. cur_offset->mip = j;
  688. cur_offset->bo_offset = cur_bo_offset;
  689. cur_bo_offset += svga3dsurface_get_image_buffer_size
  690. (desc, cur_size, stride);
  691. ++cur_offset;
  692. ++cur_size;
  693. }
  694. }
  695. res->backup_size = cur_bo_offset;
  696. if (srf->scanout &&
  697. srf->num_sizes == 1 &&
  698. srf->sizes[0].width == 64 &&
  699. srf->sizes[0].height == 64 &&
  700. srf->format == SVGA3D_A8R8G8B8) {
  701. srf->snooper.image = kmalloc(64 * 64 * 4, GFP_KERNEL);
  702. /* clear the image */
  703. if (srf->snooper.image) {
  704. memset(srf->snooper.image, 0x00, 64 * 64 * 4);
  705. } else {
  706. DRM_ERROR("Failed to allocate cursor_image\n");
  707. ret = -ENOMEM;
  708. goto out_no_copy;
  709. }
  710. } else {
  711. srf->snooper.image = NULL;
  712. }
  713. srf->snooper.crtc = NULL;
  714. user_srf->prime.base.shareable = false;
  715. user_srf->prime.base.tfile = NULL;
  716. if (drm_is_primary_client(file_priv))
  717. user_srf->master = drm_master_get(file_priv->master);
  718. /**
  719. * From this point, the generic resource management functions
  720. * destroy the object on failure.
  721. */
  722. ret = vmw_surface_init(dev_priv, srf, vmw_user_surface_free);
  723. if (unlikely(ret != 0))
  724. goto out_unlock;
  725. /*
  726. * A gb-aware client referencing a shared surface will
  727. * expect a backup buffer to be present.
  728. */
  729. if (dev_priv->has_mob && req->shareable) {
  730. uint32_t backup_handle;
  731. ret = vmw_user_dmabuf_alloc(dev_priv, tfile,
  732. res->backup_size,
  733. true,
  734. &backup_handle,
  735. &res->backup);
  736. if (unlikely(ret != 0)) {
  737. vmw_resource_unreference(&res);
  738. goto out_unlock;
  739. }
  740. }
  741. tmp = vmw_resource_reference(&srf->res);
  742. ret = ttm_prime_object_init(tfile, res->backup_size, &user_srf->prime,
  743. req->shareable, VMW_RES_SURFACE,
  744. &vmw_user_surface_base_release, NULL);
  745. if (unlikely(ret != 0)) {
  746. vmw_resource_unreference(&tmp);
  747. vmw_resource_unreference(&res);
  748. goto out_unlock;
  749. }
  750. rep->sid = user_srf->prime.base.hash.key;
  751. vmw_resource_unreference(&res);
  752. ttm_read_unlock(&dev_priv->reservation_sem);
  753. return 0;
  754. out_no_copy:
  755. kfree(srf->offsets);
  756. out_no_offsets:
  757. kfree(srf->sizes);
  758. out_no_sizes:
  759. ttm_prime_object_kfree(user_srf, prime);
  760. out_no_user_srf:
  761. ttm_mem_global_free(vmw_mem_glob(dev_priv), size);
  762. out_unlock:
  763. ttm_read_unlock(&dev_priv->reservation_sem);
  764. return ret;
  765. }
  766. static int
  767. vmw_surface_handle_reference(struct vmw_private *dev_priv,
  768. struct drm_file *file_priv,
  769. uint32_t u_handle,
  770. enum drm_vmw_handle_type handle_type,
  771. struct ttm_base_object **base_p)
  772. {
  773. struct ttm_object_file *tfile = vmw_fpriv(file_priv)->tfile;
  774. struct vmw_user_surface *user_srf;
  775. uint32_t handle;
  776. struct ttm_base_object *base;
  777. int ret;
  778. if (handle_type == DRM_VMW_HANDLE_PRIME) {
  779. ret = ttm_prime_fd_to_handle(tfile, u_handle, &handle);
  780. if (unlikely(ret != 0))
  781. return ret;
  782. } else {
  783. if (unlikely(drm_is_render_client(file_priv))) {
  784. DRM_ERROR("Render client refused legacy "
  785. "surface reference.\n");
  786. return -EACCES;
  787. }
  788. handle = u_handle;
  789. }
  790. ret = -EINVAL;
  791. base = ttm_base_object_lookup_for_ref(dev_priv->tdev, handle);
  792. if (unlikely(base == NULL)) {
  793. DRM_ERROR("Could not find surface to reference.\n");
  794. goto out_no_lookup;
  795. }
  796. if (unlikely(ttm_base_object_type(base) != VMW_RES_SURFACE)) {
  797. DRM_ERROR("Referenced object is not a surface.\n");
  798. goto out_bad_resource;
  799. }
  800. if (handle_type != DRM_VMW_HANDLE_PRIME) {
  801. user_srf = container_of(base, struct vmw_user_surface,
  802. prime.base);
  803. /*
  804. * Make sure the surface creator has the same
  805. * authenticating master.
  806. */
  807. if (drm_is_primary_client(file_priv) &&
  808. user_srf->master != file_priv->master) {
  809. DRM_ERROR("Trying to reference surface outside of"
  810. " master domain.\n");
  811. ret = -EACCES;
  812. goto out_bad_resource;
  813. }
  814. ret = ttm_ref_object_add(tfile, base, TTM_REF_USAGE, NULL);
  815. if (unlikely(ret != 0)) {
  816. DRM_ERROR("Could not add a reference to a surface.\n");
  817. goto out_bad_resource;
  818. }
  819. }
  820. *base_p = base;
  821. return 0;
  822. out_bad_resource:
  823. ttm_base_object_unref(&base);
  824. out_no_lookup:
  825. if (handle_type == DRM_VMW_HANDLE_PRIME)
  826. (void) ttm_ref_object_base_unref(tfile, handle, TTM_REF_USAGE);
  827. return ret;
  828. }
  829. /**
  830. * vmw_user_surface_define_ioctl - Ioctl function implementing
  831. * the user surface reference functionality.
  832. *
  833. * @dev: Pointer to a struct drm_device.
  834. * @data: Pointer to data copied from / to user-space.
  835. * @file_priv: Pointer to a drm file private structure.
  836. */
  837. int vmw_surface_reference_ioctl(struct drm_device *dev, void *data,
  838. struct drm_file *file_priv)
  839. {
  840. struct vmw_private *dev_priv = vmw_priv(dev);
  841. union drm_vmw_surface_reference_arg *arg =
  842. (union drm_vmw_surface_reference_arg *)data;
  843. struct drm_vmw_surface_arg *req = &arg->req;
  844. struct drm_vmw_surface_create_req *rep = &arg->rep;
  845. struct ttm_object_file *tfile = vmw_fpriv(file_priv)->tfile;
  846. struct vmw_surface *srf;
  847. struct vmw_user_surface *user_srf;
  848. struct drm_vmw_size __user *user_sizes;
  849. struct ttm_base_object *base;
  850. int ret;
  851. ret = vmw_surface_handle_reference(dev_priv, file_priv, req->sid,
  852. req->handle_type, &base);
  853. if (unlikely(ret != 0))
  854. return ret;
  855. user_srf = container_of(base, struct vmw_user_surface, prime.base);
  856. srf = &user_srf->srf;
  857. rep->flags = srf->flags;
  858. rep->format = srf->format;
  859. memcpy(rep->mip_levels, srf->mip_levels, sizeof(srf->mip_levels));
  860. user_sizes = (struct drm_vmw_size __user *)(unsigned long)
  861. rep->size_addr;
  862. if (user_sizes)
  863. ret = copy_to_user(user_sizes, &srf->base_size,
  864. sizeof(srf->base_size));
  865. if (unlikely(ret != 0)) {
  866. DRM_ERROR("copy_to_user failed %p %u\n",
  867. user_sizes, srf->num_sizes);
  868. ttm_ref_object_base_unref(tfile, base->hash.key, TTM_REF_USAGE);
  869. ret = -EFAULT;
  870. }
  871. ttm_base_object_unref(&base);
  872. return ret;
  873. }
  874. /**
  875. * vmw_surface_define_encode - Encode a surface_define command.
  876. *
  877. * @srf: Pointer to a struct vmw_surface object.
  878. * @cmd_space: Pointer to memory area in which the commands should be encoded.
  879. */
  880. static int vmw_gb_surface_create(struct vmw_resource *res)
  881. {
  882. struct vmw_private *dev_priv = res->dev_priv;
  883. struct vmw_surface *srf = vmw_res_to_srf(res);
  884. uint32_t cmd_len, submit_len;
  885. int ret;
  886. struct {
  887. SVGA3dCmdHeader header;
  888. SVGA3dCmdDefineGBSurface body;
  889. } *cmd;
  890. if (likely(res->id != -1))
  891. return 0;
  892. vmw_fifo_resource_inc(dev_priv);
  893. ret = vmw_resource_alloc_id(res);
  894. if (unlikely(ret != 0)) {
  895. DRM_ERROR("Failed to allocate a surface id.\n");
  896. goto out_no_id;
  897. }
  898. if (unlikely(res->id >= VMWGFX_NUM_GB_SURFACE)) {
  899. ret = -EBUSY;
  900. goto out_no_fifo;
  901. }
  902. cmd_len = sizeof(cmd->body);
  903. submit_len = sizeof(*cmd);
  904. cmd = vmw_fifo_reserve(dev_priv, submit_len);
  905. if (unlikely(cmd == NULL)) {
  906. DRM_ERROR("Failed reserving FIFO space for surface "
  907. "creation.\n");
  908. ret = -ENOMEM;
  909. goto out_no_fifo;
  910. }
  911. cmd->header.id = SVGA_3D_CMD_DEFINE_GB_SURFACE;
  912. cmd->header.size = cmd_len;
  913. cmd->body.sid = srf->res.id;
  914. cmd->body.surfaceFlags = srf->flags;
  915. cmd->body.format = srf->format;
  916. cmd->body.numMipLevels = srf->mip_levels[0];
  917. cmd->body.multisampleCount = srf->multisample_count;
  918. cmd->body.autogenFilter = srf->autogen_filter;
  919. cmd->body.size.width = srf->base_size.width;
  920. cmd->body.size.height = srf->base_size.height;
  921. cmd->body.size.depth = srf->base_size.depth;
  922. vmw_fifo_commit(dev_priv, submit_len);
  923. return 0;
  924. out_no_fifo:
  925. vmw_resource_release_id(res);
  926. out_no_id:
  927. vmw_fifo_resource_dec(dev_priv);
  928. return ret;
  929. }
  930. static int vmw_gb_surface_bind(struct vmw_resource *res,
  931. struct ttm_validate_buffer *val_buf)
  932. {
  933. struct vmw_private *dev_priv = res->dev_priv;
  934. struct {
  935. SVGA3dCmdHeader header;
  936. SVGA3dCmdBindGBSurface body;
  937. } *cmd1;
  938. struct {
  939. SVGA3dCmdHeader header;
  940. SVGA3dCmdUpdateGBSurface body;
  941. } *cmd2;
  942. uint32_t submit_size;
  943. struct ttm_buffer_object *bo = val_buf->bo;
  944. BUG_ON(bo->mem.mem_type != VMW_PL_MOB);
  945. submit_size = sizeof(*cmd1) + (res->backup_dirty ? sizeof(*cmd2) : 0);
  946. cmd1 = vmw_fifo_reserve(dev_priv, submit_size);
  947. if (unlikely(cmd1 == NULL)) {
  948. DRM_ERROR("Failed reserving FIFO space for surface "
  949. "binding.\n");
  950. return -ENOMEM;
  951. }
  952. cmd1->header.id = SVGA_3D_CMD_BIND_GB_SURFACE;
  953. cmd1->header.size = sizeof(cmd1->body);
  954. cmd1->body.sid = res->id;
  955. cmd1->body.mobid = bo->mem.start;
  956. if (res->backup_dirty) {
  957. cmd2 = (void *) &cmd1[1];
  958. cmd2->header.id = SVGA_3D_CMD_UPDATE_GB_SURFACE;
  959. cmd2->header.size = sizeof(cmd2->body);
  960. cmd2->body.sid = res->id;
  961. res->backup_dirty = false;
  962. }
  963. vmw_fifo_commit(dev_priv, submit_size);
  964. return 0;
  965. }
  966. static int vmw_gb_surface_unbind(struct vmw_resource *res,
  967. bool readback,
  968. struct ttm_validate_buffer *val_buf)
  969. {
  970. struct vmw_private *dev_priv = res->dev_priv;
  971. struct ttm_buffer_object *bo = val_buf->bo;
  972. struct vmw_fence_obj *fence;
  973. struct {
  974. SVGA3dCmdHeader header;
  975. SVGA3dCmdReadbackGBSurface body;
  976. } *cmd1;
  977. struct {
  978. SVGA3dCmdHeader header;
  979. SVGA3dCmdInvalidateGBSurface body;
  980. } *cmd2;
  981. struct {
  982. SVGA3dCmdHeader header;
  983. SVGA3dCmdBindGBSurface body;
  984. } *cmd3;
  985. uint32_t submit_size;
  986. uint8_t *cmd;
  987. BUG_ON(bo->mem.mem_type != VMW_PL_MOB);
  988. submit_size = sizeof(*cmd3) + (readback ? sizeof(*cmd1) : sizeof(*cmd2));
  989. cmd = vmw_fifo_reserve(dev_priv, submit_size);
  990. if (unlikely(cmd == NULL)) {
  991. DRM_ERROR("Failed reserving FIFO space for surface "
  992. "unbinding.\n");
  993. return -ENOMEM;
  994. }
  995. if (readback) {
  996. cmd1 = (void *) cmd;
  997. cmd1->header.id = SVGA_3D_CMD_READBACK_GB_SURFACE;
  998. cmd1->header.size = sizeof(cmd1->body);
  999. cmd1->body.sid = res->id;
  1000. cmd3 = (void *) &cmd1[1];
  1001. } else {
  1002. cmd2 = (void *) cmd;
  1003. cmd2->header.id = SVGA_3D_CMD_INVALIDATE_GB_SURFACE;
  1004. cmd2->header.size = sizeof(cmd2->body);
  1005. cmd2->body.sid = res->id;
  1006. cmd3 = (void *) &cmd2[1];
  1007. }
  1008. cmd3->header.id = SVGA_3D_CMD_BIND_GB_SURFACE;
  1009. cmd3->header.size = sizeof(cmd3->body);
  1010. cmd3->body.sid = res->id;
  1011. cmd3->body.mobid = SVGA3D_INVALID_ID;
  1012. vmw_fifo_commit(dev_priv, submit_size);
  1013. /*
  1014. * Create a fence object and fence the backup buffer.
  1015. */
  1016. (void) vmw_execbuf_fence_commands(NULL, dev_priv,
  1017. &fence, NULL);
  1018. vmw_fence_single_bo(val_buf->bo, fence);
  1019. if (likely(fence != NULL))
  1020. vmw_fence_obj_unreference(&fence);
  1021. return 0;
  1022. }
  1023. static int vmw_gb_surface_destroy(struct vmw_resource *res)
  1024. {
  1025. struct vmw_private *dev_priv = res->dev_priv;
  1026. struct {
  1027. SVGA3dCmdHeader header;
  1028. SVGA3dCmdDestroyGBSurface body;
  1029. } *cmd;
  1030. if (likely(res->id == -1))
  1031. return 0;
  1032. mutex_lock(&dev_priv->binding_mutex);
  1033. vmw_context_binding_res_list_scrub(&res->binding_head);
  1034. cmd = vmw_fifo_reserve(dev_priv, sizeof(*cmd));
  1035. if (unlikely(cmd == NULL)) {
  1036. DRM_ERROR("Failed reserving FIFO space for surface "
  1037. "destruction.\n");
  1038. mutex_unlock(&dev_priv->binding_mutex);
  1039. return -ENOMEM;
  1040. }
  1041. cmd->header.id = SVGA_3D_CMD_DESTROY_GB_SURFACE;
  1042. cmd->header.size = sizeof(cmd->body);
  1043. cmd->body.sid = res->id;
  1044. vmw_fifo_commit(dev_priv, sizeof(*cmd));
  1045. mutex_unlock(&dev_priv->binding_mutex);
  1046. vmw_resource_release_id(res);
  1047. vmw_fifo_resource_dec(dev_priv);
  1048. return 0;
  1049. }
  1050. /**
  1051. * vmw_gb_surface_define_ioctl - Ioctl function implementing
  1052. * the user surface define functionality.
  1053. *
  1054. * @dev: Pointer to a struct drm_device.
  1055. * @data: Pointer to data copied from / to user-space.
  1056. * @file_priv: Pointer to a drm file private structure.
  1057. */
  1058. int vmw_gb_surface_define_ioctl(struct drm_device *dev, void *data,
  1059. struct drm_file *file_priv)
  1060. {
  1061. struct vmw_private *dev_priv = vmw_priv(dev);
  1062. struct vmw_user_surface *user_srf;
  1063. struct vmw_surface *srf;
  1064. struct vmw_resource *res;
  1065. struct vmw_resource *tmp;
  1066. union drm_vmw_gb_surface_create_arg *arg =
  1067. (union drm_vmw_gb_surface_create_arg *)data;
  1068. struct drm_vmw_gb_surface_create_req *req = &arg->req;
  1069. struct drm_vmw_gb_surface_create_rep *rep = &arg->rep;
  1070. struct ttm_object_file *tfile = vmw_fpriv(file_priv)->tfile;
  1071. int ret;
  1072. uint32_t size;
  1073. uint32_t backup_handle;
  1074. if (unlikely(vmw_user_surface_size == 0))
  1075. vmw_user_surface_size = ttm_round_pot(sizeof(*user_srf)) +
  1076. 128;
  1077. size = vmw_user_surface_size + 128;
  1078. /* Define a surface based on the parameters. */
  1079. ret = vmw_surface_gb_priv_define(dev,
  1080. size,
  1081. req->svga3d_flags,
  1082. req->format,
  1083. req->drm_surface_flags & drm_vmw_surface_flag_scanout,
  1084. req->mip_levels,
  1085. req->multisample_count,
  1086. req->base_size,
  1087. &srf);
  1088. if (unlikely(ret != 0))
  1089. return ret;
  1090. user_srf = container_of(srf, struct vmw_user_surface, srf);
  1091. if (drm_is_primary_client(file_priv))
  1092. user_srf->master = drm_master_get(file_priv->master);
  1093. ret = ttm_read_lock(&dev_priv->reservation_sem, true);
  1094. if (unlikely(ret != 0))
  1095. return ret;
  1096. res = &user_srf->srf.res;
  1097. if (req->buffer_handle != SVGA3D_INVALID_ID)
  1098. ret = vmw_user_dmabuf_lookup(tfile, req->buffer_handle,
  1099. &res->backup);
  1100. else if (req->drm_surface_flags & drm_vmw_surface_flag_create_buffer)
  1101. ret = vmw_user_dmabuf_alloc(dev_priv, tfile,
  1102. res->backup_size,
  1103. req->drm_surface_flags &
  1104. drm_vmw_surface_flag_shareable,
  1105. &backup_handle,
  1106. &res->backup);
  1107. if (unlikely(ret != 0)) {
  1108. vmw_resource_unreference(&res);
  1109. goto out_unlock;
  1110. }
  1111. tmp = vmw_resource_reference(res);
  1112. ret = ttm_prime_object_init(tfile, res->backup_size, &user_srf->prime,
  1113. req->drm_surface_flags &
  1114. drm_vmw_surface_flag_shareable,
  1115. VMW_RES_SURFACE,
  1116. &vmw_user_surface_base_release, NULL);
  1117. if (unlikely(ret != 0)) {
  1118. vmw_resource_unreference(&tmp);
  1119. vmw_resource_unreference(&res);
  1120. goto out_unlock;
  1121. }
  1122. rep->handle = user_srf->prime.base.hash.key;
  1123. rep->backup_size = res->backup_size;
  1124. if (res->backup) {
  1125. rep->buffer_map_handle =
  1126. drm_vma_node_offset_addr(&res->backup->base.vma_node);
  1127. rep->buffer_size = res->backup->base.num_pages * PAGE_SIZE;
  1128. rep->buffer_handle = backup_handle;
  1129. } else {
  1130. rep->buffer_map_handle = 0;
  1131. rep->buffer_size = 0;
  1132. rep->buffer_handle = SVGA3D_INVALID_ID;
  1133. }
  1134. vmw_resource_unreference(&res);
  1135. out_unlock:
  1136. ttm_read_unlock(&dev_priv->reservation_sem);
  1137. return ret;
  1138. }
  1139. /**
  1140. * vmw_gb_surface_reference_ioctl - Ioctl function implementing
  1141. * the user surface reference functionality.
  1142. *
  1143. * @dev: Pointer to a struct drm_device.
  1144. * @data: Pointer to data copied from / to user-space.
  1145. * @file_priv: Pointer to a drm file private structure.
  1146. */
  1147. int vmw_gb_surface_reference_ioctl(struct drm_device *dev, void *data,
  1148. struct drm_file *file_priv)
  1149. {
  1150. struct vmw_private *dev_priv = vmw_priv(dev);
  1151. union drm_vmw_gb_surface_reference_arg *arg =
  1152. (union drm_vmw_gb_surface_reference_arg *)data;
  1153. struct drm_vmw_surface_arg *req = &arg->req;
  1154. struct drm_vmw_gb_surface_ref_rep *rep = &arg->rep;
  1155. struct ttm_object_file *tfile = vmw_fpriv(file_priv)->tfile;
  1156. struct vmw_surface *srf;
  1157. struct vmw_user_surface *user_srf;
  1158. struct ttm_base_object *base;
  1159. uint32_t backup_handle;
  1160. int ret = -EINVAL;
  1161. ret = vmw_surface_handle_reference(dev_priv, file_priv, req->sid,
  1162. req->handle_type, &base);
  1163. if (unlikely(ret != 0))
  1164. return ret;
  1165. user_srf = container_of(base, struct vmw_user_surface, prime.base);
  1166. srf = &user_srf->srf;
  1167. if (srf->res.backup == NULL) {
  1168. DRM_ERROR("Shared GB surface is missing a backup buffer.\n");
  1169. goto out_bad_resource;
  1170. }
  1171. mutex_lock(&dev_priv->cmdbuf_mutex); /* Protect res->backup */
  1172. ret = vmw_user_dmabuf_reference(tfile, srf->res.backup,
  1173. &backup_handle);
  1174. mutex_unlock(&dev_priv->cmdbuf_mutex);
  1175. if (unlikely(ret != 0)) {
  1176. DRM_ERROR("Could not add a reference to a GB surface "
  1177. "backup buffer.\n");
  1178. (void) ttm_ref_object_base_unref(tfile, base->hash.key,
  1179. TTM_REF_USAGE);
  1180. goto out_bad_resource;
  1181. }
  1182. rep->creq.svga3d_flags = srf->flags;
  1183. rep->creq.format = srf->format;
  1184. rep->creq.mip_levels = srf->mip_levels[0];
  1185. rep->creq.drm_surface_flags = 0;
  1186. rep->creq.multisample_count = srf->multisample_count;
  1187. rep->creq.autogen_filter = srf->autogen_filter;
  1188. rep->creq.buffer_handle = backup_handle;
  1189. rep->creq.base_size = srf->base_size;
  1190. rep->crep.handle = user_srf->prime.base.hash.key;
  1191. rep->crep.backup_size = srf->res.backup_size;
  1192. rep->crep.buffer_handle = backup_handle;
  1193. rep->crep.buffer_map_handle =
  1194. drm_vma_node_offset_addr(&srf->res.backup->base.vma_node);
  1195. rep->crep.buffer_size = srf->res.backup->base.num_pages * PAGE_SIZE;
  1196. out_bad_resource:
  1197. ttm_base_object_unref(&base);
  1198. return ret;
  1199. }
  1200. /**
  1201. * vmw_surface_gb_priv_define - Define a private GB surface
  1202. *
  1203. * @dev: Pointer to a struct drm_device
  1204. * @user_accounting_size: Used to track user-space memory usage, set
  1205. * to 0 for kernel mode only memory
  1206. * @svga3d_flags: SVGA3d surface flags for the device
  1207. * @format: requested surface format
  1208. * @for_scanout: true if inteded to be used for scanout buffer
  1209. * @num_mip_levels: number of MIP levels
  1210. * @multisample_count:
  1211. * @size: width, heigh, depth of the surface requested
  1212. * @user_srf_out: allocated user_srf. Set to NULL on failure.
  1213. *
  1214. * GB surfaces allocated by this function will not have a user mode handle, and
  1215. * thus will only be visible to vmwgfx. For optimization reasons the
  1216. * surface may later be given a user mode handle by another function to make
  1217. * it available to user mode drivers.
  1218. */
  1219. int vmw_surface_gb_priv_define(struct drm_device *dev,
  1220. uint32_t user_accounting_size,
  1221. uint32_t svga3d_flags,
  1222. SVGA3dSurfaceFormat format,
  1223. bool for_scanout,
  1224. uint32_t num_mip_levels,
  1225. uint32_t multisample_count,
  1226. struct drm_vmw_size size,
  1227. struct vmw_surface **srf_out)
  1228. {
  1229. struct vmw_private *dev_priv = vmw_priv(dev);
  1230. struct vmw_user_surface *user_srf;
  1231. struct vmw_surface *srf;
  1232. int ret;
  1233. *srf_out = NULL;
  1234. if (for_scanout) {
  1235. if (!svga3dsurface_is_screen_target_format(format)) {
  1236. DRM_ERROR("Invalid Screen Target surface format.");
  1237. return -EINVAL;
  1238. }
  1239. } else {
  1240. const struct svga3d_surface_desc *desc;
  1241. desc = svga3dsurface_get_desc(format);
  1242. if (unlikely(desc->block_desc == SVGA3DBLOCKDESC_NONE)) {
  1243. DRM_ERROR("Invalid surface format.\n");
  1244. return -EINVAL;
  1245. }
  1246. }
  1247. ret = ttm_read_lock(&dev_priv->reservation_sem, true);
  1248. if (unlikely(ret != 0))
  1249. return ret;
  1250. ret = ttm_mem_global_alloc(vmw_mem_glob(dev_priv),
  1251. user_accounting_size, false, true);
  1252. if (unlikely(ret != 0)) {
  1253. if (ret != -ERESTARTSYS)
  1254. DRM_ERROR("Out of graphics memory for surface"
  1255. " creation.\n");
  1256. goto out_unlock;
  1257. }
  1258. user_srf = kzalloc(sizeof(*user_srf), GFP_KERNEL);
  1259. if (unlikely(user_srf == NULL)) {
  1260. ret = -ENOMEM;
  1261. goto out_no_user_srf;
  1262. }
  1263. *srf_out = &user_srf->srf;
  1264. user_srf->size = user_accounting_size;
  1265. user_srf->prime.base.shareable = false;
  1266. user_srf->prime.base.tfile = NULL;
  1267. srf = &user_srf->srf;
  1268. srf->flags = svga3d_flags;
  1269. srf->format = format;
  1270. srf->scanout = for_scanout;
  1271. srf->mip_levels[0] = num_mip_levels;
  1272. srf->num_sizes = 1;
  1273. srf->sizes = NULL;
  1274. srf->offsets = NULL;
  1275. srf->base_size = size;
  1276. srf->autogen_filter = SVGA3D_TEX_FILTER_NONE;
  1277. srf->multisample_count = multisample_count;
  1278. srf->res.backup_size = svga3dsurface_get_serialized_size(srf->format,
  1279. srf->base_size,
  1280. srf->mip_levels[0],
  1281. srf->flags & SVGA3D_SURFACE_CUBEMAP);
  1282. if (dev_priv->active_display_unit == vmw_du_screen_target &&
  1283. for_scanout)
  1284. srf->flags |= SVGA3D_SURFACE_SCREENTARGET;
  1285. /*
  1286. * From this point, the generic resource management functions
  1287. * destroy the object on failure.
  1288. */
  1289. ret = vmw_surface_init(dev_priv, srf, vmw_user_surface_free);
  1290. ttm_read_unlock(&dev_priv->reservation_sem);
  1291. return ret;
  1292. out_no_user_srf:
  1293. ttm_mem_global_free(vmw_mem_glob(dev_priv), user_accounting_size);
  1294. out_unlock:
  1295. ttm_read_unlock(&dev_priv->reservation_sem);
  1296. return ret;
  1297. }