videobuf-dma-sg.c 18 KB

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  1. /*
  2. * helper functions for SG DMA video4linux capture buffers
  3. *
  4. * The functions expect the hardware being able to scatter gather
  5. * (i.e. the buffers are not linear in physical memory, but fragmented
  6. * into PAGE_SIZE chunks). They also assume the driver does not need
  7. * to touch the video data.
  8. *
  9. * (c) 2007 Mauro Carvalho Chehab, <mchehab@infradead.org>
  10. *
  11. * Highly based on video-buf written originally by:
  12. * (c) 2001,02 Gerd Knorr <kraxel@bytesex.org>
  13. * (c) 2006 Mauro Carvalho Chehab, <mchehab@infradead.org>
  14. * (c) 2006 Ted Walther and John Sokol
  15. *
  16. * This program is free software; you can redistribute it and/or modify
  17. * it under the terms of the GNU General Public License as published by
  18. * the Free Software Foundation; either version 2
  19. */
  20. #include <linux/init.h>
  21. #include <linux/module.h>
  22. #include <linux/moduleparam.h>
  23. #include <linux/sched.h>
  24. #include <linux/slab.h>
  25. #include <linux/interrupt.h>
  26. #include <linux/dma-mapping.h>
  27. #include <linux/vmalloc.h>
  28. #include <linux/pagemap.h>
  29. #include <linux/scatterlist.h>
  30. #include <asm/page.h>
  31. #include <asm/pgtable.h>
  32. #include <media/videobuf-dma-sg.h>
  33. #define MAGIC_DMABUF 0x19721112
  34. #define MAGIC_SG_MEM 0x17890714
  35. #define MAGIC_CHECK(is,should) if (unlikely((is) != (should))) \
  36. { printk(KERN_ERR "magic mismatch: %x (expected %x)\n",is,should); BUG(); }
  37. static int debug;
  38. module_param(debug, int, 0644);
  39. MODULE_DESCRIPTION("helper module to manage video4linux dma sg buffers");
  40. MODULE_AUTHOR("Mauro Carvalho Chehab <mchehab@infradead.org>");
  41. MODULE_LICENSE("GPL");
  42. #define dprintk(level, fmt, arg...) if (debug >= level) \
  43. printk(KERN_DEBUG "vbuf-sg: " fmt , ## arg)
  44. /* --------------------------------------------------------------------- */
  45. struct scatterlist*
  46. videobuf_vmalloc_to_sg(unsigned char *virt, int nr_pages)
  47. {
  48. struct scatterlist *sglist;
  49. struct page *pg;
  50. int i;
  51. sglist = vmalloc(nr_pages * sizeof(*sglist));
  52. if (NULL == sglist)
  53. return NULL;
  54. memset(sglist, 0, nr_pages * sizeof(*sglist));
  55. sg_init_table(sglist, nr_pages);
  56. for (i = 0; i < nr_pages; i++, virt += PAGE_SIZE) {
  57. pg = vmalloc_to_page(virt);
  58. if (NULL == pg)
  59. goto err;
  60. BUG_ON(PageHighMem(pg));
  61. sg_set_page(&sglist[i], pg, PAGE_SIZE, 0);
  62. }
  63. return sglist;
  64. err:
  65. vfree(sglist);
  66. return NULL;
  67. }
  68. struct scatterlist*
  69. videobuf_pages_to_sg(struct page **pages, int nr_pages, int offset)
  70. {
  71. struct scatterlist *sglist;
  72. int i;
  73. if (NULL == pages[0])
  74. return NULL;
  75. sglist = vmalloc(nr_pages * sizeof(*sglist));
  76. if (NULL == sglist)
  77. return NULL;
  78. sg_init_table(sglist, nr_pages);
  79. if (PageHighMem(pages[0]))
  80. /* DMA to highmem pages might not work */
  81. goto highmem;
  82. sg_set_page(&sglist[0], pages[0], PAGE_SIZE - offset, offset);
  83. for (i = 1; i < nr_pages; i++) {
  84. if (NULL == pages[i])
  85. goto nopage;
  86. if (PageHighMem(pages[i]))
  87. goto highmem;
  88. sg_set_page(&sglist[i], pages[i], PAGE_SIZE, 0);
  89. }
  90. return sglist;
  91. nopage:
  92. dprintk(2,"sgl: oops - no page\n");
  93. vfree(sglist);
  94. return NULL;
  95. highmem:
  96. dprintk(2,"sgl: oops - highmem page\n");
  97. vfree(sglist);
  98. return NULL;
  99. }
  100. /* --------------------------------------------------------------------- */
  101. struct videobuf_dmabuf *videobuf_to_dma (struct videobuf_buffer *buf)
  102. {
  103. struct videobuf_dma_sg_memory *mem = buf->priv;
  104. BUG_ON(!mem);
  105. MAGIC_CHECK(mem->magic, MAGIC_SG_MEM);
  106. return &mem->dma;
  107. }
  108. void videobuf_dma_init(struct videobuf_dmabuf *dma)
  109. {
  110. memset(dma,0,sizeof(*dma));
  111. dma->magic = MAGIC_DMABUF;
  112. }
  113. static int videobuf_dma_init_user_locked(struct videobuf_dmabuf *dma,
  114. int direction, unsigned long data, unsigned long size)
  115. {
  116. unsigned long first,last;
  117. int err, rw = 0;
  118. dma->direction = direction;
  119. switch (dma->direction) {
  120. case DMA_FROM_DEVICE:
  121. rw = READ;
  122. break;
  123. case DMA_TO_DEVICE:
  124. rw = WRITE;
  125. break;
  126. default:
  127. BUG();
  128. }
  129. first = (data & PAGE_MASK) >> PAGE_SHIFT;
  130. last = ((data+size-1) & PAGE_MASK) >> PAGE_SHIFT;
  131. dma->offset = data & ~PAGE_MASK;
  132. dma->nr_pages = last-first+1;
  133. dma->pages = kmalloc(dma->nr_pages * sizeof(struct page*),
  134. GFP_KERNEL);
  135. if (NULL == dma->pages)
  136. return -ENOMEM;
  137. dprintk(1,"init user [0x%lx+0x%lx => %d pages]\n",
  138. data,size,dma->nr_pages);
  139. err = get_user_pages(current,current->mm,
  140. data & PAGE_MASK, dma->nr_pages,
  141. rw == READ, 1, /* force */
  142. dma->pages, NULL);
  143. if (err != dma->nr_pages) {
  144. dma->nr_pages = (err >= 0) ? err : 0;
  145. dprintk(1,"get_user_pages: err=%d [%d]\n",err,dma->nr_pages);
  146. return err < 0 ? err : -EINVAL;
  147. }
  148. return 0;
  149. }
  150. int videobuf_dma_init_user(struct videobuf_dmabuf *dma, int direction,
  151. unsigned long data, unsigned long size)
  152. {
  153. int ret;
  154. down_read(&current->mm->mmap_sem);
  155. ret = videobuf_dma_init_user_locked(dma, direction, data, size);
  156. up_read(&current->mm->mmap_sem);
  157. return ret;
  158. }
  159. int videobuf_dma_init_kernel(struct videobuf_dmabuf *dma, int direction,
  160. int nr_pages)
  161. {
  162. dprintk(1,"init kernel [%d pages]\n",nr_pages);
  163. dma->direction = direction;
  164. dma->vmalloc = vmalloc_32(nr_pages << PAGE_SHIFT);
  165. if (NULL == dma->vmalloc) {
  166. dprintk(1,"vmalloc_32(%d pages) failed\n",nr_pages);
  167. return -ENOMEM;
  168. }
  169. dprintk(1,"vmalloc is at addr 0x%08lx, size=%d\n",
  170. (unsigned long)dma->vmalloc,
  171. nr_pages << PAGE_SHIFT);
  172. memset(dma->vmalloc,0,nr_pages << PAGE_SHIFT);
  173. dma->nr_pages = nr_pages;
  174. return 0;
  175. }
  176. int videobuf_dma_init_overlay(struct videobuf_dmabuf *dma, int direction,
  177. dma_addr_t addr, int nr_pages)
  178. {
  179. dprintk(1,"init overlay [%d pages @ bus 0x%lx]\n",
  180. nr_pages,(unsigned long)addr);
  181. dma->direction = direction;
  182. if (0 == addr)
  183. return -EINVAL;
  184. dma->bus_addr = addr;
  185. dma->nr_pages = nr_pages;
  186. return 0;
  187. }
  188. int videobuf_dma_map(struct videobuf_queue* q, struct videobuf_dmabuf *dma)
  189. {
  190. MAGIC_CHECK(dma->magic,MAGIC_DMABUF);
  191. BUG_ON(0 == dma->nr_pages);
  192. if (dma->pages) {
  193. dma->sglist = videobuf_pages_to_sg(dma->pages, dma->nr_pages,
  194. dma->offset);
  195. }
  196. if (dma->vmalloc) {
  197. dma->sglist = videobuf_vmalloc_to_sg
  198. (dma->vmalloc,dma->nr_pages);
  199. }
  200. if (dma->bus_addr) {
  201. dma->sglist = vmalloc(sizeof(*dma->sglist));
  202. if (NULL != dma->sglist) {
  203. dma->sglen = 1;
  204. sg_dma_address(&dma->sglist[0]) = dma->bus_addr & PAGE_MASK;
  205. dma->sglist[0].offset = dma->bus_addr & ~PAGE_MASK;
  206. sg_dma_len(&dma->sglist[0]) = dma->nr_pages * PAGE_SIZE;
  207. }
  208. }
  209. if (NULL == dma->sglist) {
  210. dprintk(1,"scatterlist is NULL\n");
  211. return -ENOMEM;
  212. }
  213. if (!dma->bus_addr) {
  214. dma->sglen = dma_map_sg(q->dev, dma->sglist,
  215. dma->nr_pages, dma->direction);
  216. if (0 == dma->sglen) {
  217. printk(KERN_WARNING
  218. "%s: videobuf_map_sg failed\n",__func__);
  219. vfree(dma->sglist);
  220. dma->sglist = NULL;
  221. dma->sglen = 0;
  222. return -ENOMEM;
  223. }
  224. }
  225. return 0;
  226. }
  227. int videobuf_dma_sync(struct videobuf_queue *q, struct videobuf_dmabuf *dma)
  228. {
  229. MAGIC_CHECK(dma->magic, MAGIC_DMABUF);
  230. BUG_ON(!dma->sglen);
  231. dma_sync_sg_for_cpu(q->dev, dma->sglist, dma->nr_pages, dma->direction);
  232. return 0;
  233. }
  234. int videobuf_dma_unmap(struct videobuf_queue* q,struct videobuf_dmabuf *dma)
  235. {
  236. MAGIC_CHECK(dma->magic, MAGIC_DMABUF);
  237. if (!dma->sglen)
  238. return 0;
  239. dma_unmap_sg(q->dev, dma->sglist, dma->nr_pages, dma->direction);
  240. vfree(dma->sglist);
  241. dma->sglist = NULL;
  242. dma->sglen = 0;
  243. return 0;
  244. }
  245. int videobuf_dma_free(struct videobuf_dmabuf *dma)
  246. {
  247. MAGIC_CHECK(dma->magic,MAGIC_DMABUF);
  248. BUG_ON(dma->sglen);
  249. if (dma->pages) {
  250. int i;
  251. for (i=0; i < dma->nr_pages; i++)
  252. page_cache_release(dma->pages[i]);
  253. kfree(dma->pages);
  254. dma->pages = NULL;
  255. }
  256. vfree(dma->vmalloc);
  257. dma->vmalloc = NULL;
  258. if (dma->bus_addr) {
  259. dma->bus_addr = 0;
  260. }
  261. dma->direction = DMA_NONE;
  262. return 0;
  263. }
  264. /* --------------------------------------------------------------------- */
  265. int videobuf_sg_dma_map(struct device *dev, struct videobuf_dmabuf *dma)
  266. {
  267. struct videobuf_queue q;
  268. q.dev = dev;
  269. return videobuf_dma_map(&q, dma);
  270. }
  271. int videobuf_sg_dma_unmap(struct device *dev, struct videobuf_dmabuf *dma)
  272. {
  273. struct videobuf_queue q;
  274. q.dev = dev;
  275. return videobuf_dma_unmap(&q, dma);
  276. }
  277. /* --------------------------------------------------------------------- */
  278. static void
  279. videobuf_vm_open(struct vm_area_struct *vma)
  280. {
  281. struct videobuf_mapping *map = vma->vm_private_data;
  282. dprintk(2,"vm_open %p [count=%d,vma=%08lx-%08lx]\n",map,
  283. map->count,vma->vm_start,vma->vm_end);
  284. map->count++;
  285. }
  286. static void
  287. videobuf_vm_close(struct vm_area_struct *vma)
  288. {
  289. struct videobuf_mapping *map = vma->vm_private_data;
  290. struct videobuf_queue *q = map->q;
  291. struct videobuf_dma_sg_memory *mem;
  292. int i;
  293. dprintk(2,"vm_close %p [count=%d,vma=%08lx-%08lx]\n",map,
  294. map->count,vma->vm_start,vma->vm_end);
  295. map->count--;
  296. if (0 == map->count) {
  297. dprintk(1,"munmap %p q=%p\n",map,q);
  298. mutex_lock(&q->vb_lock);
  299. for (i = 0; i < VIDEO_MAX_FRAME; i++) {
  300. if (NULL == q->bufs[i])
  301. continue;
  302. mem=q->bufs[i]->priv;
  303. if (!mem)
  304. continue;
  305. MAGIC_CHECK(mem->magic,MAGIC_SG_MEM);
  306. if (q->bufs[i]->map != map)
  307. continue;
  308. q->bufs[i]->map = NULL;
  309. q->bufs[i]->baddr = 0;
  310. q->ops->buf_release(q,q->bufs[i]);
  311. }
  312. mutex_unlock(&q->vb_lock);
  313. kfree(map);
  314. }
  315. return;
  316. }
  317. /*
  318. * Get a anonymous page for the mapping. Make sure we can DMA to that
  319. * memory location with 32bit PCI devices (i.e. don't use highmem for
  320. * now ...). Bounce buffers don't work very well for the data rates
  321. * video capture has.
  322. */
  323. static int
  324. videobuf_vm_fault(struct vm_area_struct *vma, struct vm_fault *vmf)
  325. {
  326. struct page *page;
  327. dprintk(3,"fault: fault @ %08lx [vma %08lx-%08lx]\n",
  328. (unsigned long)vmf->virtual_address,vma->vm_start,vma->vm_end);
  329. page = alloc_page(GFP_USER | __GFP_DMA32);
  330. if (!page)
  331. return VM_FAULT_OOM;
  332. clear_user_highpage(page, (unsigned long)vmf->virtual_address);
  333. vmf->page = page;
  334. return 0;
  335. }
  336. static const struct vm_operations_struct videobuf_vm_ops =
  337. {
  338. .open = videobuf_vm_open,
  339. .close = videobuf_vm_close,
  340. .fault = videobuf_vm_fault,
  341. };
  342. /* ---------------------------------------------------------------------
  343. * SG handlers for the generic methods
  344. */
  345. /* Allocated area consists on 3 parts:
  346. struct video_buffer
  347. struct <driver>_buffer (cx88_buffer, saa7134_buf, ...)
  348. struct videobuf_dma_sg_memory
  349. */
  350. static void *__videobuf_alloc(size_t size)
  351. {
  352. struct videobuf_dma_sg_memory *mem;
  353. struct videobuf_buffer *vb;
  354. vb = kzalloc(size+sizeof(*mem),GFP_KERNEL);
  355. mem = vb->priv = ((char *)vb)+size;
  356. mem->magic=MAGIC_SG_MEM;
  357. videobuf_dma_init(&mem->dma);
  358. dprintk(1,"%s: allocated at %p(%ld+%ld) & %p(%ld)\n",
  359. __func__,vb,(long)sizeof(*vb),(long)size-sizeof(*vb),
  360. mem,(long)sizeof(*mem));
  361. return vb;
  362. }
  363. static void *__videobuf_to_vmalloc (struct videobuf_buffer *buf)
  364. {
  365. struct videobuf_dma_sg_memory *mem = buf->priv;
  366. BUG_ON(!mem);
  367. MAGIC_CHECK(mem->magic, MAGIC_SG_MEM);
  368. return mem->dma.vmalloc;
  369. }
  370. static int __videobuf_iolock (struct videobuf_queue* q,
  371. struct videobuf_buffer *vb,
  372. struct v4l2_framebuffer *fbuf)
  373. {
  374. int err,pages;
  375. dma_addr_t bus;
  376. struct videobuf_dma_sg_memory *mem = vb->priv;
  377. BUG_ON(!mem);
  378. MAGIC_CHECK(mem->magic, MAGIC_SG_MEM);
  379. switch (vb->memory) {
  380. case V4L2_MEMORY_MMAP:
  381. case V4L2_MEMORY_USERPTR:
  382. if (0 == vb->baddr) {
  383. /* no userspace addr -- kernel bounce buffer */
  384. pages = PAGE_ALIGN(vb->size) >> PAGE_SHIFT;
  385. err = videobuf_dma_init_kernel( &mem->dma,
  386. DMA_FROM_DEVICE,
  387. pages );
  388. if (0 != err)
  389. return err;
  390. } else if (vb->memory == V4L2_MEMORY_USERPTR) {
  391. /* dma directly to userspace */
  392. err = videobuf_dma_init_user( &mem->dma,
  393. DMA_FROM_DEVICE,
  394. vb->baddr,vb->bsize );
  395. if (0 != err)
  396. return err;
  397. } else {
  398. /* NOTE: HACK: videobuf_iolock on V4L2_MEMORY_MMAP
  399. buffers can only be called from videobuf_qbuf
  400. we take current->mm->mmap_sem there, to prevent
  401. locking inversion, so don't take it here */
  402. err = videobuf_dma_init_user_locked(&mem->dma,
  403. DMA_FROM_DEVICE,
  404. vb->baddr, vb->bsize);
  405. if (0 != err)
  406. return err;
  407. }
  408. break;
  409. case V4L2_MEMORY_OVERLAY:
  410. if (NULL == fbuf)
  411. return -EINVAL;
  412. /* FIXME: need sanity checks for vb->boff */
  413. /*
  414. * Using a double cast to avoid compiler warnings when
  415. * building for PAE. Compiler doesn't like direct casting
  416. * of a 32 bit ptr to 64 bit integer.
  417. */
  418. bus = (dma_addr_t)(unsigned long)fbuf->base + vb->boff;
  419. pages = PAGE_ALIGN(vb->size) >> PAGE_SHIFT;
  420. err = videobuf_dma_init_overlay(&mem->dma, DMA_FROM_DEVICE,
  421. bus, pages);
  422. if (0 != err)
  423. return err;
  424. break;
  425. default:
  426. BUG();
  427. }
  428. err = videobuf_dma_map(q, &mem->dma);
  429. if (0 != err)
  430. return err;
  431. return 0;
  432. }
  433. static int __videobuf_sync(struct videobuf_queue *q,
  434. struct videobuf_buffer *buf)
  435. {
  436. struct videobuf_dma_sg_memory *mem = buf->priv;
  437. BUG_ON(!mem);
  438. MAGIC_CHECK(mem->magic,MAGIC_SG_MEM);
  439. return videobuf_dma_sync(q,&mem->dma);
  440. }
  441. static int __videobuf_mmap_free(struct videobuf_queue *q)
  442. {
  443. int i;
  444. for (i = 0; i < VIDEO_MAX_FRAME; i++) {
  445. if (q->bufs[i]) {
  446. if (q->bufs[i]->map)
  447. return -EBUSY;
  448. }
  449. }
  450. return 0;
  451. }
  452. static int __videobuf_mmap_mapper(struct videobuf_queue *q,
  453. struct vm_area_struct *vma)
  454. {
  455. struct videobuf_dma_sg_memory *mem;
  456. struct videobuf_mapping *map;
  457. unsigned int first,last,size,i;
  458. int retval;
  459. retval = -EINVAL;
  460. if (!(vma->vm_flags & VM_WRITE)) {
  461. dprintk(1,"mmap app bug: PROT_WRITE please\n");
  462. goto done;
  463. }
  464. if (!(vma->vm_flags & VM_SHARED)) {
  465. dprintk(1,"mmap app bug: MAP_SHARED please\n");
  466. goto done;
  467. }
  468. /* This function maintains backwards compatibility with V4L1 and will
  469. * map more than one buffer if the vma length is equal to the combined
  470. * size of multiple buffers than it will map them together. See
  471. * VIDIOCGMBUF in the v4l spec
  472. *
  473. * TODO: Allow drivers to specify if they support this mode
  474. */
  475. /* look for first buffer to map */
  476. for (first = 0; first < VIDEO_MAX_FRAME; first++) {
  477. if (NULL == q->bufs[first])
  478. continue;
  479. mem=q->bufs[first]->priv;
  480. BUG_ON(!mem);
  481. MAGIC_CHECK(mem->magic,MAGIC_SG_MEM);
  482. if (V4L2_MEMORY_MMAP != q->bufs[first]->memory)
  483. continue;
  484. if (q->bufs[first]->boff == (vma->vm_pgoff << PAGE_SHIFT))
  485. break;
  486. }
  487. if (VIDEO_MAX_FRAME == first) {
  488. dprintk(1,"mmap app bug: offset invalid [offset=0x%lx]\n",
  489. (vma->vm_pgoff << PAGE_SHIFT));
  490. goto done;
  491. }
  492. /* look for last buffer to map */
  493. for (size = 0, last = first; last < VIDEO_MAX_FRAME; last++) {
  494. if (NULL == q->bufs[last])
  495. continue;
  496. if (V4L2_MEMORY_MMAP != q->bufs[last]->memory)
  497. continue;
  498. if (q->bufs[last]->map) {
  499. retval = -EBUSY;
  500. goto done;
  501. }
  502. size += q->bufs[last]->bsize;
  503. if (size == (vma->vm_end - vma->vm_start))
  504. break;
  505. }
  506. if (VIDEO_MAX_FRAME == last) {
  507. dprintk(1,"mmap app bug: size invalid [size=0x%lx]\n",
  508. (vma->vm_end - vma->vm_start));
  509. goto done;
  510. }
  511. /* create mapping + update buffer list */
  512. retval = -ENOMEM;
  513. map = kmalloc(sizeof(struct videobuf_mapping),GFP_KERNEL);
  514. if (NULL == map)
  515. goto done;
  516. size = 0;
  517. for (i = first; i <= last; i++) {
  518. if (NULL == q->bufs[i])
  519. continue;
  520. q->bufs[i]->map = map;
  521. q->bufs[i]->baddr = vma->vm_start + size;
  522. size += q->bufs[i]->bsize;
  523. }
  524. map->count = 1;
  525. map->start = vma->vm_start;
  526. map->end = vma->vm_end;
  527. map->q = q;
  528. vma->vm_ops = &videobuf_vm_ops;
  529. vma->vm_flags |= VM_DONTEXPAND | VM_RESERVED;
  530. vma->vm_flags &= ~VM_IO; /* using shared anonymous pages */
  531. vma->vm_private_data = map;
  532. dprintk(1,"mmap %p: q=%p %08lx-%08lx pgoff %08lx bufs %d-%d\n",
  533. map,q,vma->vm_start,vma->vm_end,vma->vm_pgoff,first,last);
  534. retval = 0;
  535. done:
  536. return retval;
  537. }
  538. static int __videobuf_copy_to_user ( struct videobuf_queue *q,
  539. char __user *data, size_t count,
  540. int nonblocking )
  541. {
  542. struct videobuf_dma_sg_memory *mem = q->read_buf->priv;
  543. BUG_ON(!mem);
  544. MAGIC_CHECK(mem->magic,MAGIC_SG_MEM);
  545. /* copy to userspace */
  546. if (count > q->read_buf->size - q->read_off)
  547. count = q->read_buf->size - q->read_off;
  548. if (copy_to_user(data, mem->dma.vmalloc+q->read_off, count))
  549. return -EFAULT;
  550. return count;
  551. }
  552. static int __videobuf_copy_stream ( struct videobuf_queue *q,
  553. char __user *data, size_t count, size_t pos,
  554. int vbihack, int nonblocking )
  555. {
  556. unsigned int *fc;
  557. struct videobuf_dma_sg_memory *mem = q->read_buf->priv;
  558. BUG_ON(!mem);
  559. MAGIC_CHECK(mem->magic,MAGIC_SG_MEM);
  560. if (vbihack) {
  561. /* dirty, undocumented hack -- pass the frame counter
  562. * within the last four bytes of each vbi data block.
  563. * We need that one to maintain backward compatibility
  564. * to all vbi decoding software out there ... */
  565. fc = (unsigned int*)mem->dma.vmalloc;
  566. fc += (q->read_buf->size>>2) -1;
  567. *fc = q->read_buf->field_count >> 1;
  568. dprintk(1,"vbihack: %d\n",*fc);
  569. }
  570. /* copy stuff using the common method */
  571. count = __videobuf_copy_to_user (q,data,count,nonblocking);
  572. if ( (count==-EFAULT) && (0 == pos) )
  573. return -EFAULT;
  574. return count;
  575. }
  576. static struct videobuf_qtype_ops sg_ops = {
  577. .magic = MAGIC_QTYPE_OPS,
  578. .alloc = __videobuf_alloc,
  579. .iolock = __videobuf_iolock,
  580. .sync = __videobuf_sync,
  581. .mmap_free = __videobuf_mmap_free,
  582. .mmap_mapper = __videobuf_mmap_mapper,
  583. .video_copy_to_user = __videobuf_copy_to_user,
  584. .copy_stream = __videobuf_copy_stream,
  585. .vmalloc = __videobuf_to_vmalloc,
  586. };
  587. void *videobuf_sg_alloc(size_t size)
  588. {
  589. struct videobuf_queue q;
  590. /* Required to make generic handler to call __videobuf_alloc */
  591. q.int_ops = &sg_ops;
  592. q.msize = size;
  593. return videobuf_alloc(&q);
  594. }
  595. void videobuf_queue_sg_init(struct videobuf_queue* q,
  596. struct videobuf_queue_ops *ops,
  597. struct device *dev,
  598. spinlock_t *irqlock,
  599. enum v4l2_buf_type type,
  600. enum v4l2_field field,
  601. unsigned int msize,
  602. void *priv)
  603. {
  604. videobuf_queue_core_init(q, ops, dev, irqlock, type, field, msize,
  605. priv, &sg_ops);
  606. }
  607. /* --------------------------------------------------------------------- */
  608. EXPORT_SYMBOL_GPL(videobuf_vmalloc_to_sg);
  609. EXPORT_SYMBOL_GPL(videobuf_to_dma);
  610. EXPORT_SYMBOL_GPL(videobuf_dma_init);
  611. EXPORT_SYMBOL_GPL(videobuf_dma_init_user);
  612. EXPORT_SYMBOL_GPL(videobuf_dma_init_kernel);
  613. EXPORT_SYMBOL_GPL(videobuf_dma_init_overlay);
  614. EXPORT_SYMBOL_GPL(videobuf_dma_map);
  615. EXPORT_SYMBOL_GPL(videobuf_dma_sync);
  616. EXPORT_SYMBOL_GPL(videobuf_dma_unmap);
  617. EXPORT_SYMBOL_GPL(videobuf_dma_free);
  618. EXPORT_SYMBOL_GPL(videobuf_sg_dma_map);
  619. EXPORT_SYMBOL_GPL(videobuf_sg_dma_unmap);
  620. EXPORT_SYMBOL_GPL(videobuf_sg_alloc);
  621. EXPORT_SYMBOL_GPL(videobuf_queue_sg_init);
  622. /*
  623. * Local variables:
  624. * c-basic-offset: 8
  625. * End:
  626. */