msm_gem.c 34 KB

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  1. /*
  2. * Copyright (c) 2021-2022 Qualcomm Innovation Center, Inc. All rights reserved.
  3. * Copyright (c) 2018-2021, The Linux Foundation. All rights reserved.
  4. * Copyright (C) 2013 Red Hat
  5. * Author: Rob Clark <[email protected]>
  6. *
  7. * This program is free software; you can redistribute it and/or modify it
  8. * under the terms of the GNU General Public License version 2 as published by
  9. * the Free Software Foundation.
  10. *
  11. * This program is distributed in the hope that it will be useful, but WITHOUT
  12. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  13. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  14. * more details.
  15. *
  16. * You should have received a copy of the GNU General Public License along with
  17. * this program. If not, see <http://www.gnu.org/licenses/>.
  18. */
  19. #include <linux/qcom-dma-mapping.h>
  20. #include <linux/spinlock.h>
  21. #include <linux/shmem_fs.h>
  22. #include <linux/dma-buf.h>
  23. #include <linux/pfn_t.h>
  24. #include <linux/ion.h>
  25. #include "msm_drv.h"
  26. #include "msm_gem.h"
  27. #include "msm_mmu.h"
  28. #include "sde_dbg.h"
  29. #define GUARD_BYTES (BIT(8) - 1)
  30. #define ALIGNED_OFFSET (U32_MAX & ~(GUARD_BYTES))
  31. static void msm_gem_vunmap_locked(struct drm_gem_object *obj);
  32. static dma_addr_t physaddr(struct drm_gem_object *obj)
  33. {
  34. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  35. struct msm_drm_private *priv = obj->dev->dev_private;
  36. return (((dma_addr_t)msm_obj->vram_node->start) << PAGE_SHIFT) +
  37. priv->vram.paddr;
  38. }
  39. static bool use_pages(struct drm_gem_object *obj)
  40. {
  41. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  42. return !msm_obj->vram_node;
  43. }
  44. /* allocate pages from VRAM carveout, used when no IOMMU: */
  45. static struct page **get_pages_vram(struct drm_gem_object *obj, int npages)
  46. {
  47. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  48. struct msm_drm_private *priv = obj->dev->dev_private;
  49. dma_addr_t paddr;
  50. struct page **p;
  51. int ret, i;
  52. p = kvmalloc_array(npages, sizeof(struct page *), GFP_KERNEL);
  53. if (!p)
  54. return ERR_PTR(-ENOMEM);
  55. spin_lock(&priv->vram.lock);
  56. ret = drm_mm_insert_node(&priv->vram.mm, msm_obj->vram_node, npages);
  57. spin_unlock(&priv->vram.lock);
  58. if (ret) {
  59. kvfree(p);
  60. return ERR_PTR(ret);
  61. }
  62. paddr = physaddr(obj);
  63. for (i = 0; i < npages; i++) {
  64. p[i] = phys_to_page(paddr);
  65. paddr += PAGE_SIZE;
  66. }
  67. return p;
  68. }
  69. static struct page **get_pages(struct drm_gem_object *obj)
  70. {
  71. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  72. struct device *aspace_dev;
  73. if (obj->import_attach)
  74. return msm_obj->pages;
  75. if (!msm_obj->pages) {
  76. struct drm_device *dev = obj->dev;
  77. struct page **p;
  78. int npages = obj->size >> PAGE_SHIFT;
  79. if (use_pages(obj))
  80. p = drm_gem_get_pages(obj);
  81. else
  82. p = get_pages_vram(obj, npages);
  83. if (IS_ERR(p)) {
  84. dev_err(dev->dev, "could not get pages: %ld\n",
  85. PTR_ERR(p));
  86. return p;
  87. }
  88. msm_obj->pages = p;
  89. msm_obj->sgt = drm_prime_pages_to_sg(dev, p, npages);
  90. if (IS_ERR(msm_obj->sgt)) {
  91. void *ptr = ERR_CAST(msm_obj->sgt);
  92. dev_err(dev->dev, "failed to allocate sgt\n");
  93. msm_obj->sgt = NULL;
  94. return ptr;
  95. }
  96. if (msm_obj->vram_node) {
  97. goto end;
  98. /*
  99. * For non-cached buffers, ensure the new pages are clean
  100. * because display controller, GPU, etc. are not coherent
  101. */
  102. } else if (msm_obj->flags & (MSM_BO_WC|MSM_BO_UNCACHED)) {
  103. aspace_dev = msm_gem_get_aspace_device(msm_obj->aspace);
  104. if (aspace_dev) {
  105. dma_map_sg(aspace_dev, msm_obj->sgt->sgl,
  106. msm_obj->sgt->nents, DMA_BIDIRECTIONAL);
  107. /* mark the buffer as external buffer */
  108. msm_obj->flags |= MSM_BO_EXTBUF;
  109. } else {
  110. DRM_ERROR("failed to get aspace_device\n");
  111. }
  112. }
  113. }
  114. end:
  115. return msm_obj->pages;
  116. }
  117. static void put_pages_vram(struct drm_gem_object *obj)
  118. {
  119. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  120. struct msm_drm_private *priv = obj->dev->dev_private;
  121. spin_lock(&priv->vram.lock);
  122. drm_mm_remove_node(msm_obj->vram_node);
  123. spin_unlock(&priv->vram.lock);
  124. kvfree(msm_obj->pages);
  125. }
  126. static void put_pages(struct drm_gem_object *obj)
  127. {
  128. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  129. if (msm_obj->pages) {
  130. if (msm_obj->sgt) {
  131. sg_free_table(msm_obj->sgt);
  132. kfree(msm_obj->sgt);
  133. }
  134. if (use_pages(obj))
  135. drm_gem_put_pages(obj, msm_obj->pages, true, false);
  136. else
  137. put_pages_vram(obj);
  138. msm_obj->pages = NULL;
  139. }
  140. }
  141. struct page **msm_gem_get_pages(struct drm_gem_object *obj)
  142. {
  143. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  144. struct page **p;
  145. mutex_lock(&msm_obj->lock);
  146. if (WARN_ON(msm_obj->madv != MSM_MADV_WILLNEED)) {
  147. mutex_unlock(&msm_obj->lock);
  148. return ERR_PTR(-EBUSY);
  149. }
  150. p = get_pages(obj);
  151. mutex_unlock(&msm_obj->lock);
  152. return p;
  153. }
  154. void msm_gem_put_pages(struct drm_gem_object *obj)
  155. {
  156. /* when we start tracking the pin count, then do something here */
  157. }
  158. void msm_gem_sync(struct drm_gem_object *obj)
  159. {
  160. struct msm_gem_object *msm_obj;
  161. struct device *aspace_dev;
  162. if (!obj)
  163. return;
  164. msm_obj = to_msm_bo(obj);
  165. if (msm_obj->vram_node)
  166. return;
  167. /*
  168. * dma_sync_sg_for_device synchronises a single contiguous or
  169. * scatter/gather mapping for the CPU and device.
  170. */
  171. aspace_dev = msm_gem_get_aspace_device(msm_obj->aspace);
  172. if (aspace_dev)
  173. dma_sync_sg_for_device(aspace_dev, msm_obj->sgt->sgl,
  174. msm_obj->sgt->nents, DMA_BIDIRECTIONAL);
  175. else
  176. DRM_ERROR("failed to get aspace_device\n");
  177. }
  178. int msm_gem_mmap_obj(struct drm_gem_object *obj,
  179. struct vm_area_struct *vma)
  180. {
  181. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  182. vma->vm_flags &= ~VM_PFNMAP;
  183. vma->vm_flags |= VM_MIXEDMAP;
  184. if (msm_obj->flags & MSM_BO_WC) {
  185. vma->vm_page_prot = pgprot_writecombine(vm_get_page_prot(vma->vm_flags));
  186. } else if (msm_obj->flags & MSM_BO_UNCACHED) {
  187. vma->vm_page_prot = pgprot_noncached(vm_get_page_prot(vma->vm_flags));
  188. } else {
  189. /*
  190. * Shunt off cached objs to shmem file so they have their own
  191. * address_space (so unmap_mapping_range does what we want,
  192. * in particular in the case of mmap'd dmabufs)
  193. */
  194. fput(vma->vm_file);
  195. get_file(obj->filp);
  196. vma->vm_pgoff = 0;
  197. vma->vm_file = obj->filp;
  198. vma->vm_page_prot = vm_get_page_prot(vma->vm_flags);
  199. }
  200. return 0;
  201. }
  202. int msm_gem_mmap(struct file *filp, struct vm_area_struct *vma)
  203. {
  204. int ret;
  205. ret = drm_gem_mmap(filp, vma);
  206. if (ret) {
  207. DBG("mmap failed: %d", ret);
  208. return ret;
  209. }
  210. return msm_gem_mmap_obj(vma->vm_private_data, vma);
  211. }
  212. vm_fault_t msm_gem_fault(struct vm_fault *vmf)
  213. {
  214. struct vm_area_struct *vma = vmf->vma;
  215. struct drm_gem_object *obj = vma->vm_private_data;
  216. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  217. struct page **pages;
  218. unsigned long pfn;
  219. pgoff_t pgoff;
  220. int err;
  221. vm_fault_t ret;
  222. /*
  223. * vm_ops.open/drm_gem_mmap_obj and close get and put
  224. * a reference on obj. So, we dont need to hold one here.
  225. */
  226. err = mutex_lock_interruptible(&msm_obj->lock);
  227. if (err) {
  228. ret = VM_FAULT_NOPAGE;
  229. goto out;
  230. }
  231. if (WARN_ON(msm_obj->madv != MSM_MADV_WILLNEED)) {
  232. mutex_unlock(&msm_obj->lock);
  233. return VM_FAULT_SIGBUS;
  234. }
  235. /* make sure we have pages attached now */
  236. pages = get_pages(obj);
  237. if (IS_ERR(pages)) {
  238. ret = vmf_error(PTR_ERR(pages));
  239. goto out_unlock;
  240. }
  241. /* We don't use vmf->pgoff since that has the fake offset: */
  242. pgoff = (vmf->address - vma->vm_start) >> PAGE_SHIFT;
  243. pfn = page_to_pfn(pages[pgoff]);
  244. VERB("Inserting %pK pfn %lx, pa %lx", (void *)vmf->address,
  245. pfn, pfn << PAGE_SHIFT);
  246. ret = vmf_insert_mixed(vma, vmf->address, __pfn_to_pfn_t(pfn, PFN_DEV));
  247. out_unlock:
  248. mutex_unlock(&msm_obj->lock);
  249. out:
  250. return ret;
  251. }
  252. /** get mmap offset */
  253. static uint64_t mmap_offset(struct drm_gem_object *obj)
  254. {
  255. struct drm_device *dev = obj->dev;
  256. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  257. int ret;
  258. WARN_ON(!mutex_is_locked(&msm_obj->lock));
  259. /* Make it mmapable */
  260. ret = drm_gem_create_mmap_offset(obj);
  261. if (ret) {
  262. dev_err(dev->dev, "could not allocate mmap offset\n");
  263. return 0;
  264. }
  265. return drm_vma_node_offset_addr(&obj->vma_node);
  266. }
  267. uint64_t msm_gem_mmap_offset(struct drm_gem_object *obj)
  268. {
  269. uint64_t offset;
  270. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  271. mutex_lock(&msm_obj->lock);
  272. offset = mmap_offset(obj);
  273. mutex_unlock(&msm_obj->lock);
  274. return offset;
  275. }
  276. dma_addr_t msm_gem_get_dma_addr(struct drm_gem_object *obj)
  277. {
  278. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  279. struct sg_table *sgt;
  280. if (!msm_obj->sgt) {
  281. sgt = dma_buf_map_attachment(obj->import_attach,
  282. DMA_BIDIRECTIONAL);
  283. if (IS_ERR_OR_NULL(sgt)) {
  284. DRM_ERROR("dma_buf_map_attachment failure, err=%ld\n",
  285. PTR_ERR(sgt));
  286. return 0;
  287. }
  288. msm_obj->sgt = sgt;
  289. }
  290. return sg_phys(msm_obj->sgt->sgl);
  291. }
  292. static struct msm_gem_vma *add_vma(struct drm_gem_object *obj,
  293. struct msm_gem_address_space *aspace)
  294. {
  295. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  296. struct msm_gem_vma *vma;
  297. WARN_ON(!mutex_is_locked(&msm_obj->lock));
  298. vma = kzalloc(sizeof(*vma), GFP_KERNEL);
  299. if (!vma)
  300. return ERR_PTR(-ENOMEM);
  301. vma->aspace = aspace;
  302. msm_obj->aspace = aspace;
  303. list_add_tail(&vma->list, &msm_obj->vmas);
  304. return vma;
  305. }
  306. static struct msm_gem_vma *lookup_vma(struct drm_gem_object *obj,
  307. struct msm_gem_address_space *aspace)
  308. {
  309. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  310. struct msm_gem_vma *vma;
  311. WARN_ON(!mutex_is_locked(&msm_obj->lock));
  312. list_for_each_entry(vma, &msm_obj->vmas, list) {
  313. if (vma->aspace == aspace)
  314. return vma;
  315. }
  316. return NULL;
  317. }
  318. static void del_vma(struct msm_gem_vma *vma)
  319. {
  320. if (!vma)
  321. return;
  322. list_del(&vma->list);
  323. kfree(vma);
  324. }
  325. /* Called with msm_obj->lock locked */
  326. static void
  327. put_iova(struct drm_gem_object *obj)
  328. {
  329. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  330. struct msm_gem_vma *vma, *tmp;
  331. WARN_ON(!mutex_is_locked(&msm_obj->lock));
  332. list_for_each_entry_safe(vma, tmp, &msm_obj->vmas, list) {
  333. msm_gem_unmap_vma(vma->aspace, vma, msm_obj->sgt,
  334. msm_obj->flags);
  335. /*
  336. * put_iova removes the domain connected to the obj which makes
  337. * the aspace inaccessible. Store the aspace, as it is used to
  338. * update the active_list during gem_free_obj and gem_purge.
  339. */
  340. msm_obj->aspace = vma->aspace;
  341. del_vma(vma);
  342. }
  343. }
  344. /* get iova, taking a reference. Should have a matching put */
  345. static int msm_gem_get_iova_locked(struct drm_gem_object *obj,
  346. struct msm_gem_address_space *aspace, uint64_t *iova)
  347. {
  348. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  349. struct msm_gem_vma *vma;
  350. int ret = 0;
  351. WARN_ON(!mutex_is_locked(&msm_obj->lock));
  352. vma = lookup_vma(obj, aspace);
  353. if (!vma) {
  354. struct page **pages;
  355. struct device *dev;
  356. struct dma_buf *dmabuf;
  357. bool reattach = false;
  358. unsigned long dma_map_attrs;
  359. dev = msm_gem_get_aspace_device(aspace);
  360. if ((dev && obj->import_attach) &&
  361. ((dev != obj->import_attach->dev) ||
  362. msm_obj->obj_dirty)) {
  363. if (of_device_is_compatible(dev->of_node, "qcom,smmu_sde_unsec") &&
  364. of_device_is_compatible(obj->import_attach->dev->of_node,
  365. "qcom,smmu_sde_sec")) {
  366. SDE_EVT32(obj->import_attach->dev, dev, msm_obj->sgt,
  367. msm_obj->obj_dirty);
  368. DRM_ERROR("gem obj found mapped to %s, now requesting map on %s",
  369. dev_name(obj->import_attach->dev), dev_name(dev));
  370. return -EINVAL;
  371. }
  372. dmabuf = obj->import_attach->dmabuf;
  373. dma_map_attrs = obj->import_attach->dma_map_attrs;
  374. DRM_DEBUG("detach nsec-dev:%pK attach sec-dev:%pK\n",
  375. obj->import_attach->dev, dev);
  376. SDE_EVT32(obj->import_attach->dev, dev, msm_obj->sgt,
  377. msm_obj->obj_dirty);
  378. if (msm_obj->sgt)
  379. dma_buf_unmap_attachment(obj->import_attach,
  380. msm_obj->sgt, DMA_BIDIRECTIONAL);
  381. dma_buf_detach(dmabuf, obj->import_attach);
  382. obj->import_attach = dma_buf_attach(dmabuf, dev);
  383. if (IS_ERR(obj->import_attach)) {
  384. DRM_ERROR("dma_buf_attach failure, err=%ld\n",
  385. PTR_ERR(obj->import_attach));
  386. ret = PTR_ERR(obj->import_attach);
  387. return ret;
  388. }
  389. /*
  390. * obj->import_attach is created as part of dma_buf_attach.
  391. * Re-apply the dma_map_attr in this case to be in sync
  392. * with iommu_map attrs during map_attachment callback.
  393. */
  394. obj->import_attach->dma_map_attrs |= dma_map_attrs;
  395. msm_obj->obj_dirty = false;
  396. reattach = true;
  397. }
  398. /* perform delayed import for buffers without existing sgt */
  399. if (((msm_obj->flags & MSM_BO_EXTBUF) && !(msm_obj->sgt))
  400. || reattach) {
  401. ret = msm_gem_delayed_import(obj);
  402. if (ret) {
  403. DRM_ERROR("delayed dma-buf import failed %d\n",
  404. ret);
  405. msm_obj->obj_dirty = true;
  406. return ret;
  407. }
  408. }
  409. vma = add_vma(obj, aspace);
  410. if (IS_ERR(vma)) {
  411. ret = PTR_ERR(vma);
  412. return ret;
  413. }
  414. pages = get_pages(obj);
  415. if (IS_ERR(pages)) {
  416. ret = PTR_ERR(pages);
  417. goto fail;
  418. }
  419. ret = msm_gem_map_vma(aspace, vma, msm_obj->sgt,
  420. obj->size >> PAGE_SHIFT,
  421. msm_obj->flags);
  422. if (ret)
  423. goto fail;
  424. }
  425. *iova = vma->iova;
  426. if (aspace && !msm_obj->in_active_list) {
  427. mutex_lock(&aspace->list_lock);
  428. msm_gem_add_obj_to_aspace_active_list(aspace, obj);
  429. mutex_unlock(&aspace->list_lock);
  430. }
  431. return 0;
  432. fail:
  433. del_vma(vma);
  434. return ret;
  435. }
  436. static int msm_gem_pin_iova(struct drm_gem_object *obj,
  437. struct msm_gem_address_space *aspace)
  438. {
  439. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  440. struct msm_gem_vma *vma;
  441. struct page **pages;
  442. WARN_ON(!mutex_is_locked(&msm_obj->lock));
  443. if (WARN_ON(msm_obj->madv != MSM_MADV_WILLNEED))
  444. return -EBUSY;
  445. vma = lookup_vma(obj, aspace);
  446. if (WARN_ON(!vma))
  447. return -EINVAL;
  448. pages = get_pages(obj);
  449. if (IS_ERR(pages))
  450. return PTR_ERR(pages);
  451. return msm_gem_map_vma(aspace, vma, msm_obj->sgt,
  452. obj->size >> PAGE_SHIFT, msm_obj->flags);
  453. }
  454. /* get iova and pin it. Should have a matching put */
  455. int msm_gem_get_and_pin_iova(struct drm_gem_object *obj,
  456. struct msm_gem_address_space *aspace, uint64_t *iova)
  457. {
  458. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  459. u64 local;
  460. int ret;
  461. mutex_lock(&msm_obj->lock);
  462. ret = msm_gem_get_iova_locked(obj, aspace, &local);
  463. if (!ret)
  464. ret = msm_gem_pin_iova(obj, aspace);
  465. if (!ret)
  466. *iova = local;
  467. mutex_unlock(&msm_obj->lock);
  468. return ret;
  469. }
  470. int msm_gem_get_iova(struct drm_gem_object *obj,
  471. struct msm_gem_address_space *aspace, uint64_t *iova)
  472. {
  473. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  474. int ret;
  475. mutex_lock(&msm_obj->lock);
  476. ret = msm_gem_get_iova_locked(obj, aspace, iova);
  477. mutex_unlock(&msm_obj->lock);
  478. return ret;
  479. }
  480. /* get iova without taking a reference, used in places where you have
  481. * already done a 'msm_gem_get_iova()'.
  482. */
  483. uint64_t msm_gem_iova(struct drm_gem_object *obj,
  484. struct msm_gem_address_space *aspace)
  485. {
  486. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  487. struct msm_gem_vma *vma;
  488. mutex_lock(&msm_obj->lock);
  489. vma = lookup_vma(obj, aspace);
  490. mutex_unlock(&msm_obj->lock);
  491. WARN_ON(!vma);
  492. return vma ? vma->iova : 0;
  493. }
  494. /*
  495. * Unpin a iova by updating the reference counts. The memory isn't actually
  496. * purged until something else (shrinker, mm_notifier, destroy, etc) decides
  497. * to get rid of it
  498. */
  499. void msm_gem_unpin_iova(struct drm_gem_object *obj,
  500. struct msm_gem_address_space *aspace)
  501. {
  502. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  503. struct msm_gem_vma *vma;
  504. mutex_lock(&msm_obj->lock);
  505. vma = lookup_vma(obj, aspace);
  506. if (!WARN_ON(!vma))
  507. msm_gem_unmap_vma(vma->aspace, vma, msm_obj->sgt,
  508. msm_obj->flags);
  509. mutex_unlock(&msm_obj->lock);
  510. }
  511. void msm_gem_put_iova(struct drm_gem_object *obj,
  512. struct msm_gem_address_space *aspace)
  513. {
  514. // XXX TODO ..
  515. // NOTE: probably don't need a _locked() version.. we wouldn't
  516. // normally unmap here, but instead just mark that it could be
  517. // unmapped (if the iova refcnt drops to zero), but then later
  518. // if another _get_iova_locked() fails we can start unmapping
  519. // things that are no longer needed..
  520. }
  521. void msm_gem_aspace_domain_attach_detach_update(
  522. struct msm_gem_address_space *aspace,
  523. bool is_detach)
  524. {
  525. struct msm_gem_object *msm_obj;
  526. struct drm_gem_object *obj;
  527. struct aspace_client *aclient;
  528. int ret;
  529. uint64_t iova;
  530. if (!aspace)
  531. return;
  532. mutex_lock(&aspace->list_lock);
  533. if (is_detach) {
  534. /* Indicate to clients domain is getting detached */
  535. list_for_each_entry(aclient, &aspace->clients, list) {
  536. if (aclient->cb)
  537. aclient->cb(aclient->cb_data,
  538. is_detach);
  539. }
  540. /**
  541. * Unmap active buffers,
  542. * typically clients should do this when the callback is called,
  543. * but this needs to be done for the buffers which are not
  544. * attached to any planes.
  545. */
  546. list_for_each_entry(msm_obj, &aspace->active_list, iova_list) {
  547. obj = &msm_obj->base;
  548. if (obj->import_attach) {
  549. mutex_lock(&msm_obj->lock);
  550. put_iova(obj);
  551. msm_obj->obj_dirty = true;
  552. mutex_unlock(&msm_obj->lock);
  553. }
  554. }
  555. } else {
  556. /* map active buffers */
  557. list_for_each_entry(msm_obj, &aspace->active_list, iova_list) {
  558. obj = &msm_obj->base;
  559. ret = msm_gem_get_iova(obj, aspace, &iova);
  560. if (ret) {
  561. mutex_unlock(&aspace->list_lock);
  562. return;
  563. }
  564. }
  565. /* Indicate to clients domain is attached */
  566. list_for_each_entry(aclient, &aspace->clients, list) {
  567. if (aclient->cb)
  568. aclient->cb(aclient->cb_data,
  569. is_detach);
  570. }
  571. }
  572. mutex_unlock(&aspace->list_lock);
  573. }
  574. int msm_gem_dumb_create(struct drm_file *file, struct drm_device *dev,
  575. struct drm_mode_create_dumb *args)
  576. {
  577. args->pitch = align_pitch(args->width, args->bpp);
  578. args->size = PAGE_ALIGN(args->pitch * args->height);
  579. return msm_gem_new_handle(dev, file, args->size,
  580. MSM_BO_SCANOUT | MSM_BO_CACHED, &args->handle, "dumb");
  581. }
  582. int msm_gem_dumb_map_offset(struct drm_file *file, struct drm_device *dev,
  583. uint32_t handle, uint64_t *offset)
  584. {
  585. struct drm_gem_object *obj;
  586. int ret = 0;
  587. /* GEM does all our handle to object mapping */
  588. obj = drm_gem_object_lookup(file, handle);
  589. if (obj == NULL) {
  590. ret = -ENOENT;
  591. goto fail;
  592. }
  593. *offset = msm_gem_mmap_offset(obj);
  594. drm_gem_object_put(obj);
  595. fail:
  596. return ret;
  597. }
  598. static void *get_vaddr(struct drm_gem_object *obj, unsigned madv)
  599. {
  600. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  601. int ret = 0;
  602. mutex_lock(&msm_obj->lock);
  603. if (WARN_ON(msm_obj->madv > madv)) {
  604. dev_err(obj->dev->dev, "Invalid madv state: %u vs %u\n",
  605. msm_obj->madv, madv);
  606. mutex_unlock(&msm_obj->lock);
  607. return ERR_PTR(-EBUSY);
  608. }
  609. /* increment vmap_count *before* vmap() call, so shrinker can
  610. * check vmap_count (is_vunmapable()) outside of msm_obj->lock.
  611. * This guarantees that we won't try to msm_gem_vunmap() this
  612. * same object from within the vmap() call (while we already
  613. * hold msm_obj->lock)
  614. */
  615. msm_obj->vmap_count++;
  616. if (!msm_obj->vaddr) {
  617. struct page **pages = get_pages(obj);
  618. if (IS_ERR(pages)) {
  619. ret = PTR_ERR(pages);
  620. goto fail;
  621. }
  622. if (obj->import_attach) {
  623. if (obj->dev && obj->dev->dev && !dev_is_dma_coherent(obj->dev->dev)) {
  624. ret = dma_buf_begin_cpu_access(
  625. obj->import_attach->dmabuf, DMA_BIDIRECTIONAL);
  626. if (ret)
  627. goto fail;
  628. }
  629. msm_obj->vaddr =
  630. dma_buf_vmap(obj->import_attach->dmabuf);
  631. } else {
  632. msm_obj->vaddr = vmap(pages, obj->size >> PAGE_SHIFT,
  633. VM_MAP, PAGE_KERNEL);
  634. }
  635. if (msm_obj->vaddr == NULL) {
  636. ret = -ENOMEM;
  637. goto fail;
  638. }
  639. }
  640. mutex_unlock(&msm_obj->lock);
  641. return msm_obj->vaddr;
  642. fail:
  643. msm_obj->vmap_count--;
  644. mutex_unlock(&msm_obj->lock);
  645. return ERR_PTR(ret);
  646. }
  647. void *msm_gem_get_vaddr(struct drm_gem_object *obj)
  648. {
  649. return get_vaddr(obj, MSM_MADV_WILLNEED);
  650. }
  651. /*
  652. * Don't use this! It is for the very special case of dumping
  653. * submits from GPU hangs or faults, were the bo may already
  654. * be MSM_MADV_DONTNEED, but we know the buffer is still on the
  655. * active list.
  656. */
  657. void *msm_gem_get_vaddr_active(struct drm_gem_object *obj)
  658. {
  659. return get_vaddr(obj, __MSM_MADV_PURGED);
  660. }
  661. void msm_gem_put_vaddr(struct drm_gem_object *obj)
  662. {
  663. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  664. mutex_lock(&msm_obj->lock);
  665. WARN_ON(msm_obj->vmap_count < 1);
  666. msm_obj->vmap_count--;
  667. mutex_unlock(&msm_obj->lock);
  668. }
  669. /* Update madvise status, returns true if not purged, else
  670. * false or -errno.
  671. */
  672. int msm_gem_madvise(struct drm_gem_object *obj, unsigned madv)
  673. {
  674. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  675. mutex_lock(&msm_obj->lock);
  676. WARN_ON(!mutex_is_locked(&obj->dev->struct_mutex));
  677. if (msm_obj->madv != __MSM_MADV_PURGED)
  678. msm_obj->madv = madv;
  679. madv = msm_obj->madv;
  680. mutex_unlock(&msm_obj->lock);
  681. return (madv != __MSM_MADV_PURGED);
  682. }
  683. void msm_gem_purge(struct drm_gem_object *obj, enum msm_gem_lock subclass)
  684. {
  685. struct drm_device *dev = obj->dev;
  686. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  687. WARN_ON(!mutex_is_locked(&dev->struct_mutex));
  688. WARN_ON(!is_purgeable(msm_obj));
  689. WARN_ON(obj->import_attach);
  690. mutex_lock_nested(&msm_obj->lock, subclass);
  691. put_iova(obj);
  692. if (msm_obj->aspace) {
  693. mutex_lock(&msm_obj->aspace->list_lock);
  694. msm_gem_remove_obj_from_aspace_active_list(msm_obj->aspace,
  695. obj);
  696. mutex_unlock(&msm_obj->aspace->list_lock);
  697. }
  698. msm_gem_vunmap_locked(obj);
  699. put_pages(obj);
  700. msm_obj->madv = __MSM_MADV_PURGED;
  701. drm_vma_node_unmap(&obj->vma_node, dev->anon_inode->i_mapping);
  702. drm_gem_free_mmap_offset(obj);
  703. /* Our goal here is to return as much of the memory as
  704. * is possible back to the system as we are called from OOM.
  705. * To do this we must instruct the shmfs to drop all of its
  706. * backing pages, *now*.
  707. */
  708. shmem_truncate_range(file_inode(obj->filp), 0, (loff_t)-1);
  709. invalidate_mapping_pages(file_inode(obj->filp)->i_mapping,
  710. 0, (loff_t)-1);
  711. mutex_unlock(&msm_obj->lock);
  712. }
  713. static void msm_gem_vunmap_locked(struct drm_gem_object *obj)
  714. {
  715. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  716. WARN_ON(!mutex_is_locked(&msm_obj->lock));
  717. if (!msm_obj->vaddr || WARN_ON(!is_vunmapable(msm_obj)))
  718. return;
  719. if (obj->import_attach) {
  720. dma_buf_vunmap(obj->import_attach->dmabuf, msm_obj->vaddr);
  721. if (obj->dev && obj->dev->dev && !dev_is_dma_coherent(obj->dev->dev))
  722. dma_buf_end_cpu_access(obj->import_attach->dmabuf, DMA_BIDIRECTIONAL);
  723. } else {
  724. vunmap(msm_obj->vaddr);
  725. }
  726. msm_obj->vaddr = NULL;
  727. }
  728. void msm_gem_vunmap(struct drm_gem_object *obj, enum msm_gem_lock subclass)
  729. {
  730. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  731. mutex_lock_nested(&msm_obj->lock, subclass);
  732. msm_gem_vunmap_locked(obj);
  733. mutex_unlock(&msm_obj->lock);
  734. }
  735. int msm_gem_cpu_prep(struct drm_gem_object *obj, uint32_t op, ktime_t *timeout)
  736. {
  737. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  738. bool write = !!(op & MSM_PREP_WRITE);
  739. unsigned long remain =
  740. op & MSM_PREP_NOSYNC ? 0 : timeout_to_jiffies(timeout);
  741. long ret;
  742. ret = dma_resv_wait_timeout_rcu(msm_obj->resv, write,
  743. true, remain);
  744. if (ret == 0)
  745. return remain == 0 ? -EBUSY : -ETIMEDOUT;
  746. else if (ret < 0)
  747. return ret;
  748. /* TODO cache maintenance */
  749. return 0;
  750. }
  751. int msm_gem_cpu_fini(struct drm_gem_object *obj)
  752. {
  753. /* TODO cache maintenance */
  754. return 0;
  755. }
  756. #ifdef CONFIG_DEBUG_FS
  757. static void describe_fence(struct dma_fence *fence, const char *type,
  758. struct seq_file *m)
  759. {
  760. if (!dma_fence_is_signaled(fence))
  761. seq_printf(m, "\t%9s: %s %s seq %llu\n", type,
  762. fence->ops->get_driver_name(fence),
  763. fence->ops->get_timeline_name(fence),
  764. fence->seqno);
  765. }
  766. void msm_gem_describe(struct drm_gem_object *obj, struct seq_file *m)
  767. {
  768. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  769. struct dma_resv *robj = msm_obj->resv;
  770. struct dma_resv_list *fobj;
  771. struct dma_fence *fence;
  772. struct msm_gem_vma *vma;
  773. uint64_t off = drm_vma_node_start(&obj->vma_node);
  774. const char *madv;
  775. mutex_lock(&msm_obj->lock);
  776. switch (msm_obj->madv) {
  777. case __MSM_MADV_PURGED:
  778. madv = " purged";
  779. break;
  780. case MSM_MADV_DONTNEED:
  781. madv = " purgeable";
  782. break;
  783. case MSM_MADV_WILLNEED:
  784. default:
  785. madv = "";
  786. break;
  787. }
  788. seq_printf(m, "%08x: %c %2d (%2d) %08llx %pK\t",
  789. msm_obj->flags, is_active(msm_obj) ? 'A' : 'I',
  790. obj->name, kref_read(&obj->refcount),
  791. off, msm_obj->vaddr);
  792. seq_printf(m, " %08zu %9s %-32s\n", obj->size, madv, msm_obj->name);
  793. if (!list_empty(&msm_obj->vmas)) {
  794. seq_puts(m, " vmas:");
  795. list_for_each_entry(vma, &msm_obj->vmas, list)
  796. seq_printf(m, " [%s: %08llx,%s,inuse=%d]", vma->aspace->name,
  797. vma->iova, vma->mapped ? "mapped" : "unmapped",
  798. vma->inuse);
  799. seq_puts(m, "\n");
  800. }
  801. rcu_read_lock();
  802. fobj = rcu_dereference(robj->fence);
  803. if (fobj) {
  804. unsigned int i, shared_count = fobj->shared_count;
  805. for (i = 0; i < shared_count; i++) {
  806. fence = rcu_dereference(fobj->shared[i]);
  807. describe_fence(fence, "Shared", m);
  808. }
  809. }
  810. fence = rcu_dereference(robj->fence_excl);
  811. if (fence)
  812. describe_fence(fence, "Exclusive", m);
  813. rcu_read_unlock();
  814. mutex_unlock(&msm_obj->lock);
  815. }
  816. void msm_gem_describe_objects(struct list_head *list, struct seq_file *m)
  817. {
  818. struct msm_gem_object *msm_obj;
  819. int count = 0;
  820. size_t size = 0;
  821. seq_puts(m, " flags id ref offset kaddr size madv name\n");
  822. list_for_each_entry(msm_obj, list, mm_list) {
  823. struct drm_gem_object *obj = &msm_obj->base;
  824. seq_puts(m, " ");
  825. msm_gem_describe(obj, m);
  826. count++;
  827. size += obj->size;
  828. }
  829. seq_printf(m, "Total %d objects, %zu bytes\n", count, size);
  830. }
  831. #endif
  832. /* don't call directly! Use drm_gem_object_put() and friends */
  833. void msm_gem_free_object(struct drm_gem_object *obj)
  834. {
  835. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  836. struct drm_device *dev = obj->dev;
  837. struct msm_drm_private *priv = dev->dev_private;
  838. /* object should not be on active list: */
  839. WARN_ON(is_active(msm_obj));
  840. mutex_lock(&priv->mm_lock);
  841. list_del(&msm_obj->mm_list);
  842. mutex_unlock(&priv->mm_lock);
  843. mutex_lock(&msm_obj->lock);
  844. put_iova(obj);
  845. if (msm_obj->aspace) {
  846. mutex_lock(&msm_obj->aspace->list_lock);
  847. msm_gem_remove_obj_from_aspace_active_list(msm_obj->aspace,
  848. obj);
  849. mutex_unlock(&msm_obj->aspace->list_lock);
  850. }
  851. if (obj->import_attach) {
  852. if (msm_obj->vaddr)
  853. dma_buf_vunmap(obj->import_attach->dmabuf, msm_obj->vaddr);
  854. /* Don't drop the pages for imported dmabuf, as they are not
  855. * ours, just free the array we allocated:
  856. */
  857. if (msm_obj->pages)
  858. kvfree(msm_obj->pages);
  859. drm_prime_gem_destroy(obj, msm_obj->sgt);
  860. } else {
  861. msm_gem_vunmap_locked(obj);
  862. put_pages(obj);
  863. }
  864. if (msm_obj->resv == &msm_obj->_resv)
  865. dma_resv_fini(msm_obj->resv);
  866. drm_gem_object_release(obj);
  867. mutex_unlock(&msm_obj->lock);
  868. kfree(msm_obj);
  869. }
  870. /* convenience method to construct a GEM buffer object, and userspace handle */
  871. int msm_gem_new_handle(struct drm_device *dev, struct drm_file *file,
  872. uint32_t size, uint32_t flags, uint32_t *handle,
  873. char *name)
  874. {
  875. struct drm_gem_object *obj;
  876. int ret;
  877. obj = msm_gem_new(dev, size, flags);
  878. if (IS_ERR(obj))
  879. return PTR_ERR(obj);
  880. if (name)
  881. msm_gem_object_set_name(obj, "%s", name);
  882. ret = drm_gem_handle_create(file, obj, handle);
  883. /* drop reference from allocate - handle holds it now */
  884. drm_gem_object_put(obj);
  885. return ret;
  886. }
  887. static int msm_gem_new_impl(struct drm_device *dev,
  888. uint32_t size, uint32_t flags,
  889. struct dma_resv *resv,
  890. struct drm_gem_object **obj,
  891. bool struct_mutex_locked)
  892. {
  893. struct msm_drm_private *priv = dev->dev_private;
  894. struct msm_gem_object *msm_obj;
  895. switch (flags & MSM_BO_CACHE_MASK) {
  896. case MSM_BO_UNCACHED:
  897. case MSM_BO_CACHED:
  898. case MSM_BO_WC:
  899. break;
  900. default:
  901. dev_err(dev->dev, "invalid cache flag: %x\n",
  902. (flags & MSM_BO_CACHE_MASK));
  903. return -EINVAL;
  904. }
  905. msm_obj = kzalloc(sizeof(*msm_obj), GFP_KERNEL);
  906. if (!msm_obj)
  907. return -ENOMEM;
  908. mutex_init(&msm_obj->lock);
  909. msm_obj->flags = flags;
  910. msm_obj->madv = MSM_MADV_WILLNEED;
  911. if (resv) {
  912. msm_obj->resv = resv;
  913. } else {
  914. msm_obj->resv = &msm_obj->_resv;
  915. dma_resv_init(msm_obj->resv);
  916. }
  917. INIT_LIST_HEAD(&msm_obj->submit_entry);
  918. INIT_LIST_HEAD(&msm_obj->vmas);
  919. INIT_LIST_HEAD(&msm_obj->iova_list);
  920. msm_obj->aspace = msm_gem_smmu_address_space_get(dev,
  921. MSM_SMMU_DOMAIN_UNSECURE);
  922. if (IS_ERR(msm_obj->aspace))
  923. msm_obj->aspace = NULL;
  924. msm_obj->in_active_list = false;
  925. msm_obj->obj_dirty = false;
  926. mutex_lock(&priv->mm_lock);
  927. list_add_tail(&msm_obj->mm_list, &priv->inactive_list);
  928. mutex_unlock(&priv->mm_lock);
  929. *obj = &msm_obj->base;
  930. return 0;
  931. }
  932. static struct drm_gem_object *_msm_gem_new(struct drm_device *dev,
  933. uint32_t size, uint32_t flags, bool struct_mutex_locked)
  934. {
  935. struct msm_drm_private *priv = dev->dev_private;
  936. struct drm_gem_object *obj = NULL;
  937. bool use_vram = false;
  938. int ret;
  939. size = PAGE_ALIGN(size);
  940. if (!iommu_present(&platform_bus_type))
  941. use_vram = true;
  942. else if ((flags & (MSM_BO_STOLEN | MSM_BO_SCANOUT)) && priv->vram.size)
  943. use_vram = true;
  944. if (WARN_ON(use_vram && !priv->vram.size))
  945. return ERR_PTR(-EINVAL);
  946. /* Disallow zero sized objects as they make the underlying
  947. * infrastructure grumpy
  948. */
  949. if (size == 0)
  950. return ERR_PTR(-EINVAL);
  951. ret = msm_gem_new_impl(dev, size, flags, NULL, &obj, struct_mutex_locked);
  952. if (ret)
  953. goto fail;
  954. if (use_vram) {
  955. struct msm_gem_vma *vma;
  956. struct page **pages;
  957. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  958. mutex_lock(&msm_obj->lock);
  959. vma = add_vma(obj, NULL);
  960. mutex_unlock(&msm_obj->lock);
  961. if (IS_ERR(vma)) {
  962. ret = PTR_ERR(vma);
  963. goto fail;
  964. }
  965. to_msm_bo(obj)->vram_node = &vma->node;
  966. drm_gem_private_object_init(dev, obj, size);
  967. pages = get_pages(obj);
  968. if (IS_ERR(pages)) {
  969. ret = PTR_ERR(pages);
  970. goto fail;
  971. }
  972. vma->iova = physaddr(obj);
  973. } else {
  974. ret = drm_gem_object_init(dev, obj, size);
  975. if (ret)
  976. goto fail;
  977. }
  978. return obj;
  979. fail:
  980. drm_gem_object_put(obj);
  981. return ERR_PTR(ret);
  982. }
  983. struct drm_gem_object *msm_gem_new_locked(struct drm_device *dev,
  984. uint32_t size, uint32_t flags)
  985. {
  986. return _msm_gem_new(dev, size, flags, true);
  987. }
  988. struct drm_gem_object *msm_gem_new(struct drm_device *dev,
  989. uint32_t size, uint32_t flags)
  990. {
  991. return _msm_gem_new(dev, size, flags, false);
  992. }
  993. int msm_gem_delayed_import(struct drm_gem_object *obj)
  994. {
  995. struct dma_buf_attachment *attach;
  996. struct sg_table *sgt;
  997. struct msm_gem_object *msm_obj;
  998. int ret = 0;
  999. if (!obj) {
  1000. DRM_ERROR("NULL drm gem object\n");
  1001. return -EINVAL;
  1002. }
  1003. msm_obj = to_msm_bo(obj);
  1004. if (!obj->import_attach) {
  1005. DRM_ERROR("NULL dma_buf_attachment in drm gem object\n");
  1006. return -EINVAL;
  1007. }
  1008. attach = obj->import_attach;
  1009. attach->dma_map_attrs |= DMA_ATTR_DELAYED_UNMAP;
  1010. if (msm_obj->flags & MSM_BO_SKIPSYNC)
  1011. attach->dma_map_attrs |= DMA_ATTR_SKIP_CPU_SYNC;
  1012. /*
  1013. * dma_buf_map_attachment will call dma_map_sg for ion buffer
  1014. * mapping, and iova will get mapped when the function returns.
  1015. */
  1016. sgt = dma_buf_map_attachment(attach, DMA_BIDIRECTIONAL);
  1017. if (IS_ERR(sgt)) {
  1018. ret = PTR_ERR(sgt);
  1019. DRM_ERROR("dma_buf_map_attachment failure, err=%d\n",
  1020. ret);
  1021. goto fail_import;
  1022. }
  1023. msm_obj->sgt = sgt;
  1024. msm_obj->pages = NULL;
  1025. fail_import:
  1026. return ret;
  1027. }
  1028. struct drm_gem_object *msm_gem_import(struct drm_device *dev,
  1029. struct dma_buf *dmabuf, struct sg_table *sgt)
  1030. {
  1031. struct msm_gem_object *msm_obj;
  1032. struct drm_gem_object *obj = NULL;
  1033. uint32_t size;
  1034. int ret;
  1035. unsigned long flags = 0;
  1036. size = PAGE_ALIGN(dmabuf->size);
  1037. ret = msm_gem_new_impl(dev, size, MSM_BO_WC, dmabuf->resv, &obj,
  1038. false);
  1039. if (ret)
  1040. goto fail;
  1041. drm_gem_private_object_init(dev, obj, size);
  1042. msm_obj = to_msm_bo(obj);
  1043. mutex_lock(&msm_obj->lock);
  1044. msm_obj->sgt = sgt;
  1045. msm_obj->pages = NULL;
  1046. /*
  1047. * 1) If sg table is NULL, user should call msm_gem_delayed_import
  1048. * to add back the sg table to the drm gem object.
  1049. *
  1050. * 2) Add buffer flag unconditionally for all import cases.
  1051. * # Cached buffer will be attached immediately hence sgt will
  1052. * be available upon gem obj creation.
  1053. * # Un-cached buffer will follow delayed attach hence sgt
  1054. * will be NULL upon gem obj creation.
  1055. */
  1056. msm_obj->flags |= MSM_BO_EXTBUF;
  1057. /*
  1058. * For all uncached buffers, there is no need to perform cache
  1059. * maintenance on dma map/unmap time.
  1060. */
  1061. ret = dma_buf_get_flags(dmabuf, &flags);
  1062. if (ret) {
  1063. DRM_ERROR("dma_buf_get_flags failure, err=%d\n", ret);
  1064. } else if ((flags & ION_FLAG_CACHED) == 0) {
  1065. DRM_DEBUG("Buffer is uncached type\n");
  1066. msm_obj->flags |= MSM_BO_SKIPSYNC;
  1067. }
  1068. mutex_unlock(&msm_obj->lock);
  1069. return obj;
  1070. fail:
  1071. drm_gem_object_put(obj);
  1072. return ERR_PTR(ret);
  1073. }
  1074. static void *_msm_gem_kernel_new(struct drm_device *dev, uint32_t size,
  1075. uint32_t flags, struct msm_gem_address_space *aspace,
  1076. struct drm_gem_object **bo, uint64_t *iova, bool locked)
  1077. {
  1078. void *vaddr;
  1079. struct drm_gem_object *obj = _msm_gem_new(dev, size, flags, locked);
  1080. int ret;
  1081. if (IS_ERR(obj))
  1082. return ERR_CAST(obj);
  1083. if (iova) {
  1084. ret = msm_gem_get_iova(obj, aspace, iova);
  1085. if (ret)
  1086. goto err;
  1087. }
  1088. vaddr = msm_gem_get_vaddr(obj);
  1089. if (IS_ERR(vaddr)) {
  1090. msm_gem_put_iova(obj, aspace);
  1091. ret = PTR_ERR(vaddr);
  1092. goto err;
  1093. }
  1094. if (bo)
  1095. *bo = obj;
  1096. return vaddr;
  1097. err:
  1098. if (locked)
  1099. drm_gem_object_put_locked(obj);
  1100. else
  1101. drm_gem_object_put(obj);
  1102. return ERR_PTR(ret);
  1103. }
  1104. void *msm_gem_kernel_new(struct drm_device *dev, uint32_t size,
  1105. uint32_t flags, struct msm_gem_address_space *aspace,
  1106. struct drm_gem_object **bo, uint64_t *iova)
  1107. {
  1108. return _msm_gem_kernel_new(dev, size, flags, aspace, bo, iova, false);
  1109. }
  1110. void *msm_gem_kernel_new_locked(struct drm_device *dev, uint32_t size,
  1111. uint32_t flags, struct msm_gem_address_space *aspace,
  1112. struct drm_gem_object **bo, uint64_t *iova)
  1113. {
  1114. return _msm_gem_kernel_new(dev, size, flags, aspace, bo, iova, true);
  1115. }
  1116. void msm_gem_kernel_put(struct drm_gem_object *bo,
  1117. struct msm_gem_address_space *aspace, bool locked)
  1118. {
  1119. if (IS_ERR_OR_NULL(bo))
  1120. return;
  1121. msm_gem_put_vaddr(bo);
  1122. msm_gem_unpin_iova(bo, aspace);
  1123. if (locked)
  1124. drm_gem_object_put_locked(bo);
  1125. else
  1126. drm_gem_object_put(bo);
  1127. }
  1128. void msm_gem_object_set_name(struct drm_gem_object *bo, const char *fmt, ...)
  1129. {
  1130. struct msm_gem_object *msm_obj = to_msm_bo(bo);
  1131. va_list ap;
  1132. if (!fmt)
  1133. return;
  1134. va_start(ap, fmt);
  1135. vsnprintf(msm_obj->name, sizeof(msm_obj->name), fmt, ap);
  1136. va_end(ap);
  1137. }
  1138. void msm_gem_put_buffer(struct drm_gem_object *gem)
  1139. {
  1140. struct msm_gem_object *msm_gem;
  1141. if (!gem)
  1142. return;
  1143. msm_gem = to_msm_bo(gem);
  1144. msm_gem_put_iova(gem, msm_gem->aspace);
  1145. msm_gem_put_vaddr(gem);
  1146. }
  1147. int msm_gem_get_buffer(struct drm_gem_object *gem,
  1148. struct drm_device *dev, struct drm_framebuffer *fb,
  1149. uint32_t align_size)
  1150. {
  1151. struct msm_gem_object *msm_gem;
  1152. uint32_t size;
  1153. uint64_t iova_aligned;
  1154. int ret = -EINVAL;
  1155. if (!gem) {
  1156. DRM_ERROR("invalid drm gem");
  1157. return ret;
  1158. }
  1159. msm_gem = to_msm_bo(gem);
  1160. size = PAGE_ALIGN(gem->size);
  1161. if (size < (align_size + GUARD_BYTES)) {
  1162. DRM_ERROR("invalid gem size");
  1163. goto exit;
  1164. }
  1165. msm_gem_smmu_address_space_get(dev, MSM_SMMU_DOMAIN_UNSECURE);
  1166. if (PTR_ERR(msm_gem->aspace) == -ENODEV) {
  1167. DRM_DEBUG("IOMMU not present, relying on VRAM.");
  1168. } else if (IS_ERR_OR_NULL(msm_gem->aspace)) {
  1169. ret = PTR_ERR(msm_gem->aspace);
  1170. DRM_ERROR("failed to get aspace");
  1171. goto exit;
  1172. }
  1173. ret = msm_gem_get_iova(gem, msm_gem->aspace, &msm_gem->iova);
  1174. if (ret) {
  1175. DRM_ERROR("failed to get the iova ret %d", ret);
  1176. goto exit;
  1177. }
  1178. msm_gem_get_vaddr(gem);
  1179. if (IS_ERR_OR_NULL(msm_gem->vaddr)) {
  1180. DRM_ERROR("failed to get vaddr");
  1181. goto exit;
  1182. }
  1183. iova_aligned = (msm_gem->iova + GUARD_BYTES) & ALIGNED_OFFSET;
  1184. msm_gem->offset = iova_aligned - msm_gem->iova;
  1185. msm_gem->iova = msm_gem->iova + msm_gem->offset;
  1186. return 0;
  1187. exit:
  1188. msm_gem_put_buffer(gem);
  1189. return ret;
  1190. }