msm_gem.c 16 KB

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  1. /*
  2. * Copyright (C) 2013 Red Hat
  3. * Author: Rob Clark <robdclark@gmail.com>
  4. *
  5. * This program is free software; you can redistribute it and/or modify it
  6. * under the terms of the GNU General Public License version 2 as published by
  7. * the Free Software Foundation.
  8. *
  9. * This program is distributed in the hope that it will be useful, but WITHOUT
  10. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  11. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  12. * more details.
  13. *
  14. * You should have received a copy of the GNU General Public License along with
  15. * this program. If not, see <http://www.gnu.org/licenses/>.
  16. */
  17. #include <linux/spinlock.h>
  18. #include <linux/shmem_fs.h>
  19. #include <linux/dma-buf.h>
  20. #include "msm_drv.h"
  21. #include "msm_gem.h"
  22. #include "msm_gpu.h"
  23. #include "msm_mmu.h"
  24. static dma_addr_t physaddr(struct drm_gem_object *obj)
  25. {
  26. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  27. struct msm_drm_private *priv = obj->dev->dev_private;
  28. return (((dma_addr_t)msm_obj->vram_node->start) << PAGE_SHIFT) +
  29. priv->vram.paddr;
  30. }
  31. /* allocate pages from VRAM carveout, used when no IOMMU: */
  32. static struct page **get_pages_vram(struct drm_gem_object *obj,
  33. int npages)
  34. {
  35. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  36. struct msm_drm_private *priv = obj->dev->dev_private;
  37. dma_addr_t paddr;
  38. struct page **p;
  39. int ret, i;
  40. p = drm_malloc_ab(npages, sizeof(struct page *));
  41. if (!p)
  42. return ERR_PTR(-ENOMEM);
  43. ret = drm_mm_insert_node(&priv->vram.mm, msm_obj->vram_node,
  44. npages, 0, DRM_MM_SEARCH_DEFAULT);
  45. if (ret) {
  46. drm_free_large(p);
  47. return ERR_PTR(ret);
  48. }
  49. paddr = physaddr(obj);
  50. for (i = 0; i < npages; i++) {
  51. p[i] = phys_to_page(paddr);
  52. paddr += PAGE_SIZE;
  53. }
  54. return p;
  55. }
  56. /* called with dev->struct_mutex held */
  57. static struct page **get_pages(struct drm_gem_object *obj)
  58. {
  59. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  60. if (!msm_obj->pages) {
  61. struct drm_device *dev = obj->dev;
  62. struct page **p;
  63. int npages = obj->size >> PAGE_SHIFT;
  64. if (iommu_present(&platform_bus_type))
  65. p = drm_gem_get_pages(obj, 0);
  66. else
  67. p = get_pages_vram(obj, npages);
  68. if (IS_ERR(p)) {
  69. dev_err(dev->dev, "could not get pages: %ld\n",
  70. PTR_ERR(p));
  71. return p;
  72. }
  73. msm_obj->sgt = drm_prime_pages_to_sg(p, npages);
  74. if (IS_ERR(msm_obj->sgt)) {
  75. dev_err(dev->dev, "failed to allocate sgt\n");
  76. return ERR_CAST(msm_obj->sgt);
  77. }
  78. msm_obj->pages = p;
  79. /* For non-cached buffers, ensure the new pages are clean
  80. * because display controller, GPU, etc. are not coherent:
  81. */
  82. if (msm_obj->flags & (MSM_BO_WC|MSM_BO_UNCACHED))
  83. dma_map_sg(dev->dev, msm_obj->sgt->sgl,
  84. msm_obj->sgt->nents, DMA_BIDIRECTIONAL);
  85. }
  86. return msm_obj->pages;
  87. }
  88. static void put_pages(struct drm_gem_object *obj)
  89. {
  90. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  91. if (msm_obj->pages) {
  92. /* For non-cached buffers, ensure the new pages are clean
  93. * because display controller, GPU, etc. are not coherent:
  94. */
  95. if (msm_obj->flags & (MSM_BO_WC|MSM_BO_UNCACHED))
  96. dma_unmap_sg(obj->dev->dev, msm_obj->sgt->sgl,
  97. msm_obj->sgt->nents, DMA_BIDIRECTIONAL);
  98. sg_free_table(msm_obj->sgt);
  99. kfree(msm_obj->sgt);
  100. if (iommu_present(&platform_bus_type))
  101. drm_gem_put_pages(obj, msm_obj->pages, true, false);
  102. else
  103. drm_mm_remove_node(msm_obj->vram_node);
  104. msm_obj->pages = NULL;
  105. }
  106. }
  107. struct page **msm_gem_get_pages(struct drm_gem_object *obj)
  108. {
  109. struct drm_device *dev = obj->dev;
  110. struct page **p;
  111. mutex_lock(&dev->struct_mutex);
  112. p = get_pages(obj);
  113. mutex_unlock(&dev->struct_mutex);
  114. return p;
  115. }
  116. void msm_gem_put_pages(struct drm_gem_object *obj)
  117. {
  118. /* when we start tracking the pin count, then do something here */
  119. }
  120. int msm_gem_mmap_obj(struct drm_gem_object *obj,
  121. struct vm_area_struct *vma)
  122. {
  123. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  124. vma->vm_flags &= ~VM_PFNMAP;
  125. vma->vm_flags |= VM_MIXEDMAP;
  126. if (msm_obj->flags & MSM_BO_WC) {
  127. vma->vm_page_prot = pgprot_writecombine(vm_get_page_prot(vma->vm_flags));
  128. } else if (msm_obj->flags & MSM_BO_UNCACHED) {
  129. vma->vm_page_prot = pgprot_noncached(vm_get_page_prot(vma->vm_flags));
  130. } else {
  131. /*
  132. * Shunt off cached objs to shmem file so they have their own
  133. * address_space (so unmap_mapping_range does what we want,
  134. * in particular in the case of mmap'd dmabufs)
  135. */
  136. fput(vma->vm_file);
  137. get_file(obj->filp);
  138. vma->vm_pgoff = 0;
  139. vma->vm_file = obj->filp;
  140. vma->vm_page_prot = vm_get_page_prot(vma->vm_flags);
  141. }
  142. return 0;
  143. }
  144. int msm_gem_mmap(struct file *filp, struct vm_area_struct *vma)
  145. {
  146. int ret;
  147. ret = drm_gem_mmap(filp, vma);
  148. if (ret) {
  149. DBG("mmap failed: %d", ret);
  150. return ret;
  151. }
  152. return msm_gem_mmap_obj(vma->vm_private_data, vma);
  153. }
  154. int msm_gem_fault(struct vm_area_struct *vma, struct vm_fault *vmf)
  155. {
  156. struct drm_gem_object *obj = vma->vm_private_data;
  157. struct drm_device *dev = obj->dev;
  158. struct page **pages;
  159. unsigned long pfn;
  160. pgoff_t pgoff;
  161. int ret;
  162. /* Make sure we don't parallel update on a fault, nor move or remove
  163. * something from beneath our feet
  164. */
  165. ret = mutex_lock_interruptible(&dev->struct_mutex);
  166. if (ret)
  167. goto out;
  168. /* make sure we have pages attached now */
  169. pages = get_pages(obj);
  170. if (IS_ERR(pages)) {
  171. ret = PTR_ERR(pages);
  172. goto out_unlock;
  173. }
  174. /* We don't use vmf->pgoff since that has the fake offset: */
  175. pgoff = ((unsigned long)vmf->virtual_address -
  176. vma->vm_start) >> PAGE_SHIFT;
  177. pfn = page_to_pfn(pages[pgoff]);
  178. VERB("Inserting %p pfn %lx, pa %lx", vmf->virtual_address,
  179. pfn, pfn << PAGE_SHIFT);
  180. ret = vm_insert_mixed(vma, (unsigned long)vmf->virtual_address, pfn);
  181. out_unlock:
  182. mutex_unlock(&dev->struct_mutex);
  183. out:
  184. switch (ret) {
  185. case -EAGAIN:
  186. case 0:
  187. case -ERESTARTSYS:
  188. case -EINTR:
  189. case -EBUSY:
  190. /*
  191. * EBUSY is ok: this just means that another thread
  192. * already did the job.
  193. */
  194. return VM_FAULT_NOPAGE;
  195. case -ENOMEM:
  196. return VM_FAULT_OOM;
  197. default:
  198. return VM_FAULT_SIGBUS;
  199. }
  200. }
  201. /** get mmap offset */
  202. static uint64_t mmap_offset(struct drm_gem_object *obj)
  203. {
  204. struct drm_device *dev = obj->dev;
  205. int ret;
  206. WARN_ON(!mutex_is_locked(&dev->struct_mutex));
  207. /* Make it mmapable */
  208. ret = drm_gem_create_mmap_offset(obj);
  209. if (ret) {
  210. dev_err(dev->dev, "could not allocate mmap offset\n");
  211. return 0;
  212. }
  213. return drm_vma_node_offset_addr(&obj->vma_node);
  214. }
  215. uint64_t msm_gem_mmap_offset(struct drm_gem_object *obj)
  216. {
  217. uint64_t offset;
  218. mutex_lock(&obj->dev->struct_mutex);
  219. offset = mmap_offset(obj);
  220. mutex_unlock(&obj->dev->struct_mutex);
  221. return offset;
  222. }
  223. /* should be called under struct_mutex.. although it can be called
  224. * from atomic context without struct_mutex to acquire an extra
  225. * iova ref if you know one is already held.
  226. *
  227. * That means when I do eventually need to add support for unpinning
  228. * the refcnt counter needs to be atomic_t.
  229. */
  230. int msm_gem_get_iova_locked(struct drm_gem_object *obj, int id,
  231. uint32_t *iova)
  232. {
  233. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  234. int ret = 0;
  235. if (!msm_obj->domain[id].iova) {
  236. struct msm_drm_private *priv = obj->dev->dev_private;
  237. struct msm_mmu *mmu = priv->mmus[id];
  238. struct page **pages = get_pages(obj);
  239. if (IS_ERR(pages))
  240. return PTR_ERR(pages);
  241. if (iommu_present(&platform_bus_type)) {
  242. uint32_t offset = (uint32_t)mmap_offset(obj);
  243. ret = mmu->funcs->map(mmu, offset, msm_obj->sgt,
  244. obj->size, IOMMU_READ | IOMMU_WRITE);
  245. msm_obj->domain[id].iova = offset;
  246. } else {
  247. msm_obj->domain[id].iova = physaddr(obj);
  248. }
  249. }
  250. if (!ret)
  251. *iova = msm_obj->domain[id].iova;
  252. return ret;
  253. }
  254. int msm_gem_get_iova(struct drm_gem_object *obj, int id, uint32_t *iova)
  255. {
  256. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  257. int ret;
  258. /* this is safe right now because we don't unmap until the
  259. * bo is deleted:
  260. */
  261. if (msm_obj->domain[id].iova) {
  262. *iova = msm_obj->domain[id].iova;
  263. return 0;
  264. }
  265. mutex_lock(&obj->dev->struct_mutex);
  266. ret = msm_gem_get_iova_locked(obj, id, iova);
  267. mutex_unlock(&obj->dev->struct_mutex);
  268. return ret;
  269. }
  270. void msm_gem_put_iova(struct drm_gem_object *obj, int id)
  271. {
  272. // XXX TODO ..
  273. // NOTE: probably don't need a _locked() version.. we wouldn't
  274. // normally unmap here, but instead just mark that it could be
  275. // unmapped (if the iova refcnt drops to zero), but then later
  276. // if another _get_iova_locked() fails we can start unmapping
  277. // things that are no longer needed..
  278. }
  279. int msm_gem_dumb_create(struct drm_file *file, struct drm_device *dev,
  280. struct drm_mode_create_dumb *args)
  281. {
  282. args->pitch = align_pitch(args->width, args->bpp);
  283. args->size = PAGE_ALIGN(args->pitch * args->height);
  284. return msm_gem_new_handle(dev, file, args->size,
  285. MSM_BO_SCANOUT | MSM_BO_WC, &args->handle);
  286. }
  287. int msm_gem_dumb_map_offset(struct drm_file *file, struct drm_device *dev,
  288. uint32_t handle, uint64_t *offset)
  289. {
  290. struct drm_gem_object *obj;
  291. int ret = 0;
  292. /* GEM does all our handle to object mapping */
  293. obj = drm_gem_object_lookup(dev, file, handle);
  294. if (obj == NULL) {
  295. ret = -ENOENT;
  296. goto fail;
  297. }
  298. *offset = msm_gem_mmap_offset(obj);
  299. drm_gem_object_unreference_unlocked(obj);
  300. fail:
  301. return ret;
  302. }
  303. void *msm_gem_vaddr_locked(struct drm_gem_object *obj)
  304. {
  305. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  306. WARN_ON(!mutex_is_locked(&obj->dev->struct_mutex));
  307. if (!msm_obj->vaddr) {
  308. struct page **pages = get_pages(obj);
  309. if (IS_ERR(pages))
  310. return ERR_CAST(pages);
  311. msm_obj->vaddr = vmap(pages, obj->size >> PAGE_SHIFT,
  312. VM_MAP, pgprot_writecombine(PAGE_KERNEL));
  313. }
  314. return msm_obj->vaddr;
  315. }
  316. void *msm_gem_vaddr(struct drm_gem_object *obj)
  317. {
  318. void *ret;
  319. mutex_lock(&obj->dev->struct_mutex);
  320. ret = msm_gem_vaddr_locked(obj);
  321. mutex_unlock(&obj->dev->struct_mutex);
  322. return ret;
  323. }
  324. /* setup callback for when bo is no longer busy..
  325. * TODO probably want to differentiate read vs write..
  326. */
  327. int msm_gem_queue_inactive_cb(struct drm_gem_object *obj,
  328. struct msm_fence_cb *cb)
  329. {
  330. struct drm_device *dev = obj->dev;
  331. struct msm_drm_private *priv = dev->dev_private;
  332. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  333. int ret = 0;
  334. mutex_lock(&dev->struct_mutex);
  335. if (!list_empty(&cb->work.entry)) {
  336. ret = -EINVAL;
  337. } else if (is_active(msm_obj)) {
  338. cb->fence = max(msm_obj->read_fence, msm_obj->write_fence);
  339. list_add_tail(&cb->work.entry, &priv->fence_cbs);
  340. } else {
  341. queue_work(priv->wq, &cb->work);
  342. }
  343. mutex_unlock(&dev->struct_mutex);
  344. return ret;
  345. }
  346. void msm_gem_move_to_active(struct drm_gem_object *obj,
  347. struct msm_gpu *gpu, bool write, uint32_t fence)
  348. {
  349. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  350. msm_obj->gpu = gpu;
  351. if (write)
  352. msm_obj->write_fence = fence;
  353. else
  354. msm_obj->read_fence = fence;
  355. list_del_init(&msm_obj->mm_list);
  356. list_add_tail(&msm_obj->mm_list, &gpu->active_list);
  357. }
  358. void msm_gem_move_to_inactive(struct drm_gem_object *obj)
  359. {
  360. struct drm_device *dev = obj->dev;
  361. struct msm_drm_private *priv = dev->dev_private;
  362. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  363. WARN_ON(!mutex_is_locked(&dev->struct_mutex));
  364. msm_obj->gpu = NULL;
  365. msm_obj->read_fence = 0;
  366. msm_obj->write_fence = 0;
  367. list_del_init(&msm_obj->mm_list);
  368. list_add_tail(&msm_obj->mm_list, &priv->inactive_list);
  369. }
  370. int msm_gem_cpu_prep(struct drm_gem_object *obj, uint32_t op,
  371. struct timespec *timeout)
  372. {
  373. struct drm_device *dev = obj->dev;
  374. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  375. int ret = 0;
  376. if (is_active(msm_obj)) {
  377. uint32_t fence = 0;
  378. if (op & MSM_PREP_READ)
  379. fence = msm_obj->write_fence;
  380. if (op & MSM_PREP_WRITE)
  381. fence = max(fence, msm_obj->read_fence);
  382. if (op & MSM_PREP_NOSYNC)
  383. timeout = NULL;
  384. ret = msm_wait_fence_interruptable(dev, fence, timeout);
  385. }
  386. /* TODO cache maintenance */
  387. return ret;
  388. }
  389. int msm_gem_cpu_fini(struct drm_gem_object *obj)
  390. {
  391. /* TODO cache maintenance */
  392. return 0;
  393. }
  394. #ifdef CONFIG_DEBUG_FS
  395. void msm_gem_describe(struct drm_gem_object *obj, struct seq_file *m)
  396. {
  397. struct drm_device *dev = obj->dev;
  398. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  399. uint64_t off = drm_vma_node_start(&obj->vma_node);
  400. WARN_ON(!mutex_is_locked(&dev->struct_mutex));
  401. seq_printf(m, "%08x: %c(r=%u,w=%u) %2d (%2d) %08llx %p %d\n",
  402. msm_obj->flags, is_active(msm_obj) ? 'A' : 'I',
  403. msm_obj->read_fence, msm_obj->write_fence,
  404. obj->name, obj->refcount.refcount.counter,
  405. off, msm_obj->vaddr, obj->size);
  406. }
  407. void msm_gem_describe_objects(struct list_head *list, struct seq_file *m)
  408. {
  409. struct msm_gem_object *msm_obj;
  410. int count = 0;
  411. size_t size = 0;
  412. list_for_each_entry(msm_obj, list, mm_list) {
  413. struct drm_gem_object *obj = &msm_obj->base;
  414. seq_printf(m, " ");
  415. msm_gem_describe(obj, m);
  416. count++;
  417. size += obj->size;
  418. }
  419. seq_printf(m, "Total %d objects, %zu bytes\n", count, size);
  420. }
  421. #endif
  422. void msm_gem_free_object(struct drm_gem_object *obj)
  423. {
  424. struct drm_device *dev = obj->dev;
  425. struct msm_drm_private *priv = obj->dev->dev_private;
  426. struct msm_gem_object *msm_obj = to_msm_bo(obj);
  427. int id;
  428. WARN_ON(!mutex_is_locked(&dev->struct_mutex));
  429. /* object should not be on active list: */
  430. WARN_ON(is_active(msm_obj));
  431. list_del(&msm_obj->mm_list);
  432. for (id = 0; id < ARRAY_SIZE(msm_obj->domain); id++) {
  433. struct msm_mmu *mmu = priv->mmus[id];
  434. if (mmu && msm_obj->domain[id].iova) {
  435. uint32_t offset = (uint32_t)mmap_offset(obj);
  436. mmu->funcs->unmap(mmu, offset, msm_obj->sgt, obj->size);
  437. }
  438. }
  439. drm_gem_free_mmap_offset(obj);
  440. if (obj->import_attach) {
  441. if (msm_obj->vaddr)
  442. dma_buf_vunmap(obj->import_attach->dmabuf, msm_obj->vaddr);
  443. /* Don't drop the pages for imported dmabuf, as they are not
  444. * ours, just free the array we allocated:
  445. */
  446. if (msm_obj->pages)
  447. drm_free_large(msm_obj->pages);
  448. } else {
  449. if (msm_obj->vaddr)
  450. vunmap(msm_obj->vaddr);
  451. put_pages(obj);
  452. }
  453. if (msm_obj->resv == &msm_obj->_resv)
  454. reservation_object_fini(msm_obj->resv);
  455. drm_gem_object_release(obj);
  456. kfree(msm_obj);
  457. }
  458. /* convenience method to construct a GEM buffer object, and userspace handle */
  459. int msm_gem_new_handle(struct drm_device *dev, struct drm_file *file,
  460. uint32_t size, uint32_t flags, uint32_t *handle)
  461. {
  462. struct drm_gem_object *obj;
  463. int ret;
  464. ret = mutex_lock_interruptible(&dev->struct_mutex);
  465. if (ret)
  466. return ret;
  467. obj = msm_gem_new(dev, size, flags);
  468. mutex_unlock(&dev->struct_mutex);
  469. if (IS_ERR(obj))
  470. return PTR_ERR(obj);
  471. ret = drm_gem_handle_create(file, obj, handle);
  472. /* drop reference from allocate - handle holds it now */
  473. drm_gem_object_unreference_unlocked(obj);
  474. return ret;
  475. }
  476. static int msm_gem_new_impl(struct drm_device *dev,
  477. uint32_t size, uint32_t flags,
  478. struct drm_gem_object **obj)
  479. {
  480. struct msm_drm_private *priv = dev->dev_private;
  481. struct msm_gem_object *msm_obj;
  482. unsigned sz;
  483. switch (flags & MSM_BO_CACHE_MASK) {
  484. case MSM_BO_UNCACHED:
  485. case MSM_BO_CACHED:
  486. case MSM_BO_WC:
  487. break;
  488. default:
  489. dev_err(dev->dev, "invalid cache flag: %x\n",
  490. (flags & MSM_BO_CACHE_MASK));
  491. return -EINVAL;
  492. }
  493. sz = sizeof(*msm_obj);
  494. if (!iommu_present(&platform_bus_type))
  495. sz += sizeof(struct drm_mm_node);
  496. msm_obj = kzalloc(sz, GFP_KERNEL);
  497. if (!msm_obj)
  498. return -ENOMEM;
  499. if (!iommu_present(&platform_bus_type))
  500. msm_obj->vram_node = (void *)&msm_obj[1];
  501. msm_obj->flags = flags;
  502. msm_obj->resv = &msm_obj->_resv;
  503. reservation_object_init(msm_obj->resv);
  504. INIT_LIST_HEAD(&msm_obj->submit_entry);
  505. list_add_tail(&msm_obj->mm_list, &priv->inactive_list);
  506. *obj = &msm_obj->base;
  507. return 0;
  508. }
  509. struct drm_gem_object *msm_gem_new(struct drm_device *dev,
  510. uint32_t size, uint32_t flags)
  511. {
  512. struct drm_gem_object *obj = NULL;
  513. int ret;
  514. WARN_ON(!mutex_is_locked(&dev->struct_mutex));
  515. size = PAGE_ALIGN(size);
  516. ret = msm_gem_new_impl(dev, size, flags, &obj);
  517. if (ret)
  518. goto fail;
  519. if (iommu_present(&platform_bus_type)) {
  520. ret = drm_gem_object_init(dev, obj, size);
  521. if (ret)
  522. goto fail;
  523. } else {
  524. drm_gem_private_object_init(dev, obj, size);
  525. }
  526. return obj;
  527. fail:
  528. if (obj)
  529. drm_gem_object_unreference(obj);
  530. return ERR_PTR(ret);
  531. }
  532. struct drm_gem_object *msm_gem_import(struct drm_device *dev,
  533. uint32_t size, struct sg_table *sgt)
  534. {
  535. struct msm_gem_object *msm_obj;
  536. struct drm_gem_object *obj;
  537. int ret, npages;
  538. /* if we don't have IOMMU, don't bother pretending we can import: */
  539. if (!iommu_present(&platform_bus_type)) {
  540. dev_err(dev->dev, "cannot import without IOMMU\n");
  541. return ERR_PTR(-EINVAL);
  542. }
  543. size = PAGE_ALIGN(size);
  544. ret = msm_gem_new_impl(dev, size, MSM_BO_WC, &obj);
  545. if (ret)
  546. goto fail;
  547. drm_gem_private_object_init(dev, obj, size);
  548. npages = size / PAGE_SIZE;
  549. msm_obj = to_msm_bo(obj);
  550. msm_obj->sgt = sgt;
  551. msm_obj->pages = drm_malloc_ab(npages, sizeof(struct page *));
  552. if (!msm_obj->pages) {
  553. ret = -ENOMEM;
  554. goto fail;
  555. }
  556. ret = drm_prime_sg_to_page_addr_arrays(sgt, msm_obj->pages, NULL, npages);
  557. if (ret)
  558. goto fail;
  559. return obj;
  560. fail:
  561. if (obj)
  562. drm_gem_object_unreference_unlocked(obj);
  563. return ERR_PTR(ret);
  564. }