block_dev.c 33 KB

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  1. /*
  2. * linux/fs/block_dev.c
  3. *
  4. * Copyright (C) 1991, 1992 Linus Torvalds
  5. * Copyright (C) 2001 Andrea Arcangeli <andrea@suse.de> SuSE
  6. */
  7. #include <linux/init.h>
  8. #include <linux/mm.h>
  9. #include <linux/fcntl.h>
  10. #include <linux/slab.h>
  11. #include <linux/kmod.h>
  12. #include <linux/major.h>
  13. #include <linux/smp_lock.h>
  14. #include <linux/device_cgroup.h>
  15. #include <linux/highmem.h>
  16. #include <linux/blkdev.h>
  17. #include <linux/module.h>
  18. #include <linux/blkpg.h>
  19. #include <linux/buffer_head.h>
  20. #include <linux/writeback.h>
  21. #include <linux/mpage.h>
  22. #include <linux/mount.h>
  23. #include <linux/uio.h>
  24. #include <linux/namei.h>
  25. #include <linux/log2.h>
  26. #include <asm/uaccess.h>
  27. #include "internal.h"
  28. struct bdev_inode {
  29. struct block_device bdev;
  30. struct inode vfs_inode;
  31. };
  32. static const struct address_space_operations def_blk_aops;
  33. static inline struct bdev_inode *BDEV_I(struct inode *inode)
  34. {
  35. return container_of(inode, struct bdev_inode, vfs_inode);
  36. }
  37. inline struct block_device *I_BDEV(struct inode *inode)
  38. {
  39. return &BDEV_I(inode)->bdev;
  40. }
  41. EXPORT_SYMBOL(I_BDEV);
  42. static sector_t max_block(struct block_device *bdev)
  43. {
  44. sector_t retval = ~((sector_t)0);
  45. loff_t sz = i_size_read(bdev->bd_inode);
  46. if (sz) {
  47. unsigned int size = block_size(bdev);
  48. unsigned int sizebits = blksize_bits(size);
  49. retval = (sz >> sizebits);
  50. }
  51. return retval;
  52. }
  53. /* Kill _all_ buffers and pagecache , dirty or not.. */
  54. static void kill_bdev(struct block_device *bdev)
  55. {
  56. if (bdev->bd_inode->i_mapping->nrpages == 0)
  57. return;
  58. invalidate_bh_lrus();
  59. truncate_inode_pages(bdev->bd_inode->i_mapping, 0);
  60. }
  61. int set_blocksize(struct block_device *bdev, int size)
  62. {
  63. /* Size must be a power of two, and between 512 and PAGE_SIZE */
  64. if (size > PAGE_SIZE || size < 512 || !is_power_of_2(size))
  65. return -EINVAL;
  66. /* Size cannot be smaller than the size supported by the device */
  67. if (size < bdev_hardsect_size(bdev))
  68. return -EINVAL;
  69. /* Don't change the size if it is same as current */
  70. if (bdev->bd_block_size != size) {
  71. sync_blockdev(bdev);
  72. bdev->bd_block_size = size;
  73. bdev->bd_inode->i_blkbits = blksize_bits(size);
  74. kill_bdev(bdev);
  75. }
  76. return 0;
  77. }
  78. EXPORT_SYMBOL(set_blocksize);
  79. int sb_set_blocksize(struct super_block *sb, int size)
  80. {
  81. if (set_blocksize(sb->s_bdev, size))
  82. return 0;
  83. /* If we get here, we know size is power of two
  84. * and it's value is between 512 and PAGE_SIZE */
  85. sb->s_blocksize = size;
  86. sb->s_blocksize_bits = blksize_bits(size);
  87. return sb->s_blocksize;
  88. }
  89. EXPORT_SYMBOL(sb_set_blocksize);
  90. int sb_min_blocksize(struct super_block *sb, int size)
  91. {
  92. int minsize = bdev_hardsect_size(sb->s_bdev);
  93. if (size < minsize)
  94. size = minsize;
  95. return sb_set_blocksize(sb, size);
  96. }
  97. EXPORT_SYMBOL(sb_min_blocksize);
  98. static int
  99. blkdev_get_block(struct inode *inode, sector_t iblock,
  100. struct buffer_head *bh, int create)
  101. {
  102. if (iblock >= max_block(I_BDEV(inode))) {
  103. if (create)
  104. return -EIO;
  105. /*
  106. * for reads, we're just trying to fill a partial page.
  107. * return a hole, they will have to call get_block again
  108. * before they can fill it, and they will get -EIO at that
  109. * time
  110. */
  111. return 0;
  112. }
  113. bh->b_bdev = I_BDEV(inode);
  114. bh->b_blocknr = iblock;
  115. set_buffer_mapped(bh);
  116. return 0;
  117. }
  118. static int
  119. blkdev_get_blocks(struct inode *inode, sector_t iblock,
  120. struct buffer_head *bh, int create)
  121. {
  122. sector_t end_block = max_block(I_BDEV(inode));
  123. unsigned long max_blocks = bh->b_size >> inode->i_blkbits;
  124. if ((iblock + max_blocks) > end_block) {
  125. max_blocks = end_block - iblock;
  126. if ((long)max_blocks <= 0) {
  127. if (create)
  128. return -EIO; /* write fully beyond EOF */
  129. /*
  130. * It is a read which is fully beyond EOF. We return
  131. * a !buffer_mapped buffer
  132. */
  133. max_blocks = 0;
  134. }
  135. }
  136. bh->b_bdev = I_BDEV(inode);
  137. bh->b_blocknr = iblock;
  138. bh->b_size = max_blocks << inode->i_blkbits;
  139. if (max_blocks)
  140. set_buffer_mapped(bh);
  141. return 0;
  142. }
  143. static ssize_t
  144. blkdev_direct_IO(int rw, struct kiocb *iocb, const struct iovec *iov,
  145. loff_t offset, unsigned long nr_segs)
  146. {
  147. struct file *file = iocb->ki_filp;
  148. struct inode *inode = file->f_mapping->host;
  149. return blockdev_direct_IO_no_locking(rw, iocb, inode, I_BDEV(inode),
  150. iov, offset, nr_segs, blkdev_get_blocks, NULL);
  151. }
  152. static int blkdev_writepage(struct page *page, struct writeback_control *wbc)
  153. {
  154. return block_write_full_page(page, blkdev_get_block, wbc);
  155. }
  156. static int blkdev_readpage(struct file * file, struct page * page)
  157. {
  158. return block_read_full_page(page, blkdev_get_block);
  159. }
  160. static int blkdev_write_begin(struct file *file, struct address_space *mapping,
  161. loff_t pos, unsigned len, unsigned flags,
  162. struct page **pagep, void **fsdata)
  163. {
  164. *pagep = NULL;
  165. return block_write_begin(file, mapping, pos, len, flags, pagep, fsdata,
  166. blkdev_get_block);
  167. }
  168. static int blkdev_write_end(struct file *file, struct address_space *mapping,
  169. loff_t pos, unsigned len, unsigned copied,
  170. struct page *page, void *fsdata)
  171. {
  172. int ret;
  173. ret = block_write_end(file, mapping, pos, len, copied, page, fsdata);
  174. unlock_page(page);
  175. page_cache_release(page);
  176. return ret;
  177. }
  178. /*
  179. * private llseek:
  180. * for a block special file file->f_path.dentry->d_inode->i_size is zero
  181. * so we compute the size by hand (just as in block_read/write above)
  182. */
  183. static loff_t block_llseek(struct file *file, loff_t offset, int origin)
  184. {
  185. struct inode *bd_inode = file->f_mapping->host;
  186. loff_t size;
  187. loff_t retval;
  188. mutex_lock(&bd_inode->i_mutex);
  189. size = i_size_read(bd_inode);
  190. switch (origin) {
  191. case 2:
  192. offset += size;
  193. break;
  194. case 1:
  195. offset += file->f_pos;
  196. }
  197. retval = -EINVAL;
  198. if (offset >= 0 && offset <= size) {
  199. if (offset != file->f_pos) {
  200. file->f_pos = offset;
  201. }
  202. retval = offset;
  203. }
  204. mutex_unlock(&bd_inode->i_mutex);
  205. return retval;
  206. }
  207. /*
  208. * Filp is never NULL; the only case when ->fsync() is called with
  209. * NULL first argument is nfsd_sync_dir() and that's not a directory.
  210. */
  211. static int block_fsync(struct file *filp, struct dentry *dentry, int datasync)
  212. {
  213. return sync_blockdev(I_BDEV(filp->f_mapping->host));
  214. }
  215. /*
  216. * pseudo-fs
  217. */
  218. static __cacheline_aligned_in_smp DEFINE_SPINLOCK(bdev_lock);
  219. static struct kmem_cache * bdev_cachep __read_mostly;
  220. static struct inode *bdev_alloc_inode(struct super_block *sb)
  221. {
  222. struct bdev_inode *ei = kmem_cache_alloc(bdev_cachep, GFP_KERNEL);
  223. if (!ei)
  224. return NULL;
  225. return &ei->vfs_inode;
  226. }
  227. static void bdev_destroy_inode(struct inode *inode)
  228. {
  229. struct bdev_inode *bdi = BDEV_I(inode);
  230. bdi->bdev.bd_inode_backing_dev_info = NULL;
  231. kmem_cache_free(bdev_cachep, bdi);
  232. }
  233. static void init_once(void *foo)
  234. {
  235. struct bdev_inode *ei = (struct bdev_inode *) foo;
  236. struct block_device *bdev = &ei->bdev;
  237. memset(bdev, 0, sizeof(*bdev));
  238. mutex_init(&bdev->bd_mutex);
  239. sema_init(&bdev->bd_mount_sem, 1);
  240. INIT_LIST_HEAD(&bdev->bd_inodes);
  241. INIT_LIST_HEAD(&bdev->bd_list);
  242. #ifdef CONFIG_SYSFS
  243. INIT_LIST_HEAD(&bdev->bd_holder_list);
  244. #endif
  245. inode_init_once(&ei->vfs_inode);
  246. /* Initialize mutex for freeze. */
  247. mutex_init(&bdev->bd_fsfreeze_mutex);
  248. }
  249. static inline void __bd_forget(struct inode *inode)
  250. {
  251. list_del_init(&inode->i_devices);
  252. inode->i_bdev = NULL;
  253. inode->i_mapping = &inode->i_data;
  254. }
  255. static void bdev_clear_inode(struct inode *inode)
  256. {
  257. struct block_device *bdev = &BDEV_I(inode)->bdev;
  258. struct list_head *p;
  259. spin_lock(&bdev_lock);
  260. while ( (p = bdev->bd_inodes.next) != &bdev->bd_inodes ) {
  261. __bd_forget(list_entry(p, struct inode, i_devices));
  262. }
  263. list_del_init(&bdev->bd_list);
  264. spin_unlock(&bdev_lock);
  265. }
  266. static const struct super_operations bdev_sops = {
  267. .statfs = simple_statfs,
  268. .alloc_inode = bdev_alloc_inode,
  269. .destroy_inode = bdev_destroy_inode,
  270. .drop_inode = generic_delete_inode,
  271. .clear_inode = bdev_clear_inode,
  272. };
  273. static int bd_get_sb(struct file_system_type *fs_type,
  274. int flags, const char *dev_name, void *data, struct vfsmount *mnt)
  275. {
  276. return get_sb_pseudo(fs_type, "bdev:", &bdev_sops, 0x62646576, mnt);
  277. }
  278. static struct file_system_type bd_type = {
  279. .name = "bdev",
  280. .get_sb = bd_get_sb,
  281. .kill_sb = kill_anon_super,
  282. };
  283. struct super_block *blockdev_superblock __read_mostly;
  284. void __init bdev_cache_init(void)
  285. {
  286. int err;
  287. struct vfsmount *bd_mnt;
  288. bdev_cachep = kmem_cache_create("bdev_cache", sizeof(struct bdev_inode),
  289. 0, (SLAB_HWCACHE_ALIGN|SLAB_RECLAIM_ACCOUNT|
  290. SLAB_MEM_SPREAD|SLAB_PANIC),
  291. init_once);
  292. err = register_filesystem(&bd_type);
  293. if (err)
  294. panic("Cannot register bdev pseudo-fs");
  295. bd_mnt = kern_mount(&bd_type);
  296. if (IS_ERR(bd_mnt))
  297. panic("Cannot create bdev pseudo-fs");
  298. blockdev_superblock = bd_mnt->mnt_sb; /* For writeback */
  299. }
  300. /*
  301. * Most likely _very_ bad one - but then it's hardly critical for small
  302. * /dev and can be fixed when somebody will need really large one.
  303. * Keep in mind that it will be fed through icache hash function too.
  304. */
  305. static inline unsigned long hash(dev_t dev)
  306. {
  307. return MAJOR(dev)+MINOR(dev);
  308. }
  309. static int bdev_test(struct inode *inode, void *data)
  310. {
  311. return BDEV_I(inode)->bdev.bd_dev == *(dev_t *)data;
  312. }
  313. static int bdev_set(struct inode *inode, void *data)
  314. {
  315. BDEV_I(inode)->bdev.bd_dev = *(dev_t *)data;
  316. return 0;
  317. }
  318. static LIST_HEAD(all_bdevs);
  319. struct block_device *bdget(dev_t dev)
  320. {
  321. struct block_device *bdev;
  322. struct inode *inode;
  323. inode = iget5_locked(blockdev_superblock, hash(dev),
  324. bdev_test, bdev_set, &dev);
  325. if (!inode)
  326. return NULL;
  327. bdev = &BDEV_I(inode)->bdev;
  328. if (inode->i_state & I_NEW) {
  329. bdev->bd_contains = NULL;
  330. bdev->bd_inode = inode;
  331. bdev->bd_block_size = (1 << inode->i_blkbits);
  332. bdev->bd_part_count = 0;
  333. bdev->bd_invalidated = 0;
  334. inode->i_mode = S_IFBLK;
  335. inode->i_rdev = dev;
  336. inode->i_bdev = bdev;
  337. inode->i_data.a_ops = &def_blk_aops;
  338. mapping_set_gfp_mask(&inode->i_data, GFP_USER);
  339. inode->i_data.backing_dev_info = &default_backing_dev_info;
  340. spin_lock(&bdev_lock);
  341. list_add(&bdev->bd_list, &all_bdevs);
  342. spin_unlock(&bdev_lock);
  343. unlock_new_inode(inode);
  344. }
  345. return bdev;
  346. }
  347. EXPORT_SYMBOL(bdget);
  348. long nr_blockdev_pages(void)
  349. {
  350. struct block_device *bdev;
  351. long ret = 0;
  352. spin_lock(&bdev_lock);
  353. list_for_each_entry(bdev, &all_bdevs, bd_list) {
  354. ret += bdev->bd_inode->i_mapping->nrpages;
  355. }
  356. spin_unlock(&bdev_lock);
  357. return ret;
  358. }
  359. void bdput(struct block_device *bdev)
  360. {
  361. iput(bdev->bd_inode);
  362. }
  363. EXPORT_SYMBOL(bdput);
  364. static struct block_device *bd_acquire(struct inode *inode)
  365. {
  366. struct block_device *bdev;
  367. spin_lock(&bdev_lock);
  368. bdev = inode->i_bdev;
  369. if (bdev) {
  370. atomic_inc(&bdev->bd_inode->i_count);
  371. spin_unlock(&bdev_lock);
  372. return bdev;
  373. }
  374. spin_unlock(&bdev_lock);
  375. bdev = bdget(inode->i_rdev);
  376. if (bdev) {
  377. spin_lock(&bdev_lock);
  378. if (!inode->i_bdev) {
  379. /*
  380. * We take an additional bd_inode->i_count for inode,
  381. * and it's released in clear_inode() of inode.
  382. * So, we can access it via ->i_mapping always
  383. * without igrab().
  384. */
  385. atomic_inc(&bdev->bd_inode->i_count);
  386. inode->i_bdev = bdev;
  387. inode->i_mapping = bdev->bd_inode->i_mapping;
  388. list_add(&inode->i_devices, &bdev->bd_inodes);
  389. }
  390. spin_unlock(&bdev_lock);
  391. }
  392. return bdev;
  393. }
  394. /* Call when you free inode */
  395. void bd_forget(struct inode *inode)
  396. {
  397. struct block_device *bdev = NULL;
  398. spin_lock(&bdev_lock);
  399. if (inode->i_bdev) {
  400. if (!sb_is_blkdev_sb(inode->i_sb))
  401. bdev = inode->i_bdev;
  402. __bd_forget(inode);
  403. }
  404. spin_unlock(&bdev_lock);
  405. if (bdev)
  406. iput(bdev->bd_inode);
  407. }
  408. int bd_claim(struct block_device *bdev, void *holder)
  409. {
  410. int res;
  411. spin_lock(&bdev_lock);
  412. /* first decide result */
  413. if (bdev->bd_holder == holder)
  414. res = 0; /* already a holder */
  415. else if (bdev->bd_holder != NULL)
  416. res = -EBUSY; /* held by someone else */
  417. else if (bdev->bd_contains == bdev)
  418. res = 0; /* is a whole device which isn't held */
  419. else if (bdev->bd_contains->bd_holder == bd_claim)
  420. res = 0; /* is a partition of a device that is being partitioned */
  421. else if (bdev->bd_contains->bd_holder != NULL)
  422. res = -EBUSY; /* is a partition of a held device */
  423. else
  424. res = 0; /* is a partition of an un-held device */
  425. /* now impose change */
  426. if (res==0) {
  427. /* note that for a whole device bd_holders
  428. * will be incremented twice, and bd_holder will
  429. * be set to bd_claim before being set to holder
  430. */
  431. bdev->bd_contains->bd_holders ++;
  432. bdev->bd_contains->bd_holder = bd_claim;
  433. bdev->bd_holders++;
  434. bdev->bd_holder = holder;
  435. }
  436. spin_unlock(&bdev_lock);
  437. return res;
  438. }
  439. EXPORT_SYMBOL(bd_claim);
  440. void bd_release(struct block_device *bdev)
  441. {
  442. spin_lock(&bdev_lock);
  443. if (!--bdev->bd_contains->bd_holders)
  444. bdev->bd_contains->bd_holder = NULL;
  445. if (!--bdev->bd_holders)
  446. bdev->bd_holder = NULL;
  447. spin_unlock(&bdev_lock);
  448. }
  449. EXPORT_SYMBOL(bd_release);
  450. #ifdef CONFIG_SYSFS
  451. /*
  452. * Functions for bd_claim_by_kobject / bd_release_from_kobject
  453. *
  454. * If a kobject is passed to bd_claim_by_kobject()
  455. * and the kobject has a parent directory,
  456. * following symlinks are created:
  457. * o from the kobject to the claimed bdev
  458. * o from "holders" directory of the bdev to the parent of the kobject
  459. * bd_release_from_kobject() removes these symlinks.
  460. *
  461. * Example:
  462. * If /dev/dm-0 maps to /dev/sda, kobject corresponding to
  463. * /sys/block/dm-0/slaves is passed to bd_claim_by_kobject(), then:
  464. * /sys/block/dm-0/slaves/sda --> /sys/block/sda
  465. * /sys/block/sda/holders/dm-0 --> /sys/block/dm-0
  466. */
  467. static int add_symlink(struct kobject *from, struct kobject *to)
  468. {
  469. if (!from || !to)
  470. return 0;
  471. return sysfs_create_link(from, to, kobject_name(to));
  472. }
  473. static void del_symlink(struct kobject *from, struct kobject *to)
  474. {
  475. if (!from || !to)
  476. return;
  477. sysfs_remove_link(from, kobject_name(to));
  478. }
  479. /*
  480. * 'struct bd_holder' contains pointers to kobjects symlinked by
  481. * bd_claim_by_kobject.
  482. * It's connected to bd_holder_list which is protected by bdev->bd_sem.
  483. */
  484. struct bd_holder {
  485. struct list_head list; /* chain of holders of the bdev */
  486. int count; /* references from the holder */
  487. struct kobject *sdir; /* holder object, e.g. "/block/dm-0/slaves" */
  488. struct kobject *hdev; /* e.g. "/block/dm-0" */
  489. struct kobject *hdir; /* e.g. "/block/sda/holders" */
  490. struct kobject *sdev; /* e.g. "/block/sda" */
  491. };
  492. /*
  493. * Get references of related kobjects at once.
  494. * Returns 1 on success. 0 on failure.
  495. *
  496. * Should call bd_holder_release_dirs() after successful use.
  497. */
  498. static int bd_holder_grab_dirs(struct block_device *bdev,
  499. struct bd_holder *bo)
  500. {
  501. if (!bdev || !bo)
  502. return 0;
  503. bo->sdir = kobject_get(bo->sdir);
  504. if (!bo->sdir)
  505. return 0;
  506. bo->hdev = kobject_get(bo->sdir->parent);
  507. if (!bo->hdev)
  508. goto fail_put_sdir;
  509. bo->sdev = kobject_get(&part_to_dev(bdev->bd_part)->kobj);
  510. if (!bo->sdev)
  511. goto fail_put_hdev;
  512. bo->hdir = kobject_get(bdev->bd_part->holder_dir);
  513. if (!bo->hdir)
  514. goto fail_put_sdev;
  515. return 1;
  516. fail_put_sdev:
  517. kobject_put(bo->sdev);
  518. fail_put_hdev:
  519. kobject_put(bo->hdev);
  520. fail_put_sdir:
  521. kobject_put(bo->sdir);
  522. return 0;
  523. }
  524. /* Put references of related kobjects at once. */
  525. static void bd_holder_release_dirs(struct bd_holder *bo)
  526. {
  527. kobject_put(bo->hdir);
  528. kobject_put(bo->sdev);
  529. kobject_put(bo->hdev);
  530. kobject_put(bo->sdir);
  531. }
  532. static struct bd_holder *alloc_bd_holder(struct kobject *kobj)
  533. {
  534. struct bd_holder *bo;
  535. bo = kzalloc(sizeof(*bo), GFP_KERNEL);
  536. if (!bo)
  537. return NULL;
  538. bo->count = 1;
  539. bo->sdir = kobj;
  540. return bo;
  541. }
  542. static void free_bd_holder(struct bd_holder *bo)
  543. {
  544. kfree(bo);
  545. }
  546. /**
  547. * find_bd_holder - find matching struct bd_holder from the block device
  548. *
  549. * @bdev: struct block device to be searched
  550. * @bo: target struct bd_holder
  551. *
  552. * Returns matching entry with @bo in @bdev->bd_holder_list.
  553. * If found, increment the reference count and return the pointer.
  554. * If not found, returns NULL.
  555. */
  556. static struct bd_holder *find_bd_holder(struct block_device *bdev,
  557. struct bd_holder *bo)
  558. {
  559. struct bd_holder *tmp;
  560. list_for_each_entry(tmp, &bdev->bd_holder_list, list)
  561. if (tmp->sdir == bo->sdir) {
  562. tmp->count++;
  563. return tmp;
  564. }
  565. return NULL;
  566. }
  567. /**
  568. * add_bd_holder - create sysfs symlinks for bd_claim() relationship
  569. *
  570. * @bdev: block device to be bd_claimed
  571. * @bo: preallocated and initialized by alloc_bd_holder()
  572. *
  573. * Add @bo to @bdev->bd_holder_list, create symlinks.
  574. *
  575. * Returns 0 if symlinks are created.
  576. * Returns -ve if something fails.
  577. */
  578. static int add_bd_holder(struct block_device *bdev, struct bd_holder *bo)
  579. {
  580. int err;
  581. if (!bo)
  582. return -EINVAL;
  583. if (!bd_holder_grab_dirs(bdev, bo))
  584. return -EBUSY;
  585. err = add_symlink(bo->sdir, bo->sdev);
  586. if (err)
  587. return err;
  588. err = add_symlink(bo->hdir, bo->hdev);
  589. if (err) {
  590. del_symlink(bo->sdir, bo->sdev);
  591. return err;
  592. }
  593. list_add_tail(&bo->list, &bdev->bd_holder_list);
  594. return 0;
  595. }
  596. /**
  597. * del_bd_holder - delete sysfs symlinks for bd_claim() relationship
  598. *
  599. * @bdev: block device to be bd_claimed
  600. * @kobj: holder's kobject
  601. *
  602. * If there is matching entry with @kobj in @bdev->bd_holder_list
  603. * and no other bd_claim() from the same kobject,
  604. * remove the struct bd_holder from the list, delete symlinks for it.
  605. *
  606. * Returns a pointer to the struct bd_holder when it's removed from the list
  607. * and ready to be freed.
  608. * Returns NULL if matching claim isn't found or there is other bd_claim()
  609. * by the same kobject.
  610. */
  611. static struct bd_holder *del_bd_holder(struct block_device *bdev,
  612. struct kobject *kobj)
  613. {
  614. struct bd_holder *bo;
  615. list_for_each_entry(bo, &bdev->bd_holder_list, list) {
  616. if (bo->sdir == kobj) {
  617. bo->count--;
  618. BUG_ON(bo->count < 0);
  619. if (!bo->count) {
  620. list_del(&bo->list);
  621. del_symlink(bo->sdir, bo->sdev);
  622. del_symlink(bo->hdir, bo->hdev);
  623. bd_holder_release_dirs(bo);
  624. return bo;
  625. }
  626. break;
  627. }
  628. }
  629. return NULL;
  630. }
  631. /**
  632. * bd_claim_by_kobject - bd_claim() with additional kobject signature
  633. *
  634. * @bdev: block device to be claimed
  635. * @holder: holder's signature
  636. * @kobj: holder's kobject
  637. *
  638. * Do bd_claim() and if it succeeds, create sysfs symlinks between
  639. * the bdev and the holder's kobject.
  640. * Use bd_release_from_kobject() when relesing the claimed bdev.
  641. *
  642. * Returns 0 on success. (same as bd_claim())
  643. * Returns errno on failure.
  644. */
  645. static int bd_claim_by_kobject(struct block_device *bdev, void *holder,
  646. struct kobject *kobj)
  647. {
  648. int err;
  649. struct bd_holder *bo, *found;
  650. if (!kobj)
  651. return -EINVAL;
  652. bo = alloc_bd_holder(kobj);
  653. if (!bo)
  654. return -ENOMEM;
  655. mutex_lock(&bdev->bd_mutex);
  656. err = bd_claim(bdev, holder);
  657. if (err)
  658. goto fail;
  659. found = find_bd_holder(bdev, bo);
  660. if (found)
  661. goto fail;
  662. err = add_bd_holder(bdev, bo);
  663. if (err)
  664. bd_release(bdev);
  665. else
  666. bo = NULL;
  667. fail:
  668. mutex_unlock(&bdev->bd_mutex);
  669. free_bd_holder(bo);
  670. return err;
  671. }
  672. /**
  673. * bd_release_from_kobject - bd_release() with additional kobject signature
  674. *
  675. * @bdev: block device to be released
  676. * @kobj: holder's kobject
  677. *
  678. * Do bd_release() and remove sysfs symlinks created by bd_claim_by_kobject().
  679. */
  680. static void bd_release_from_kobject(struct block_device *bdev,
  681. struct kobject *kobj)
  682. {
  683. if (!kobj)
  684. return;
  685. mutex_lock(&bdev->bd_mutex);
  686. bd_release(bdev);
  687. free_bd_holder(del_bd_holder(bdev, kobj));
  688. mutex_unlock(&bdev->bd_mutex);
  689. }
  690. /**
  691. * bd_claim_by_disk - wrapper function for bd_claim_by_kobject()
  692. *
  693. * @bdev: block device to be claimed
  694. * @holder: holder's signature
  695. * @disk: holder's gendisk
  696. *
  697. * Call bd_claim_by_kobject() with getting @disk->slave_dir.
  698. */
  699. int bd_claim_by_disk(struct block_device *bdev, void *holder,
  700. struct gendisk *disk)
  701. {
  702. return bd_claim_by_kobject(bdev, holder, kobject_get(disk->slave_dir));
  703. }
  704. EXPORT_SYMBOL_GPL(bd_claim_by_disk);
  705. /**
  706. * bd_release_from_disk - wrapper function for bd_release_from_kobject()
  707. *
  708. * @bdev: block device to be claimed
  709. * @disk: holder's gendisk
  710. *
  711. * Call bd_release_from_kobject() and put @disk->slave_dir.
  712. */
  713. void bd_release_from_disk(struct block_device *bdev, struct gendisk *disk)
  714. {
  715. bd_release_from_kobject(bdev, disk->slave_dir);
  716. kobject_put(disk->slave_dir);
  717. }
  718. EXPORT_SYMBOL_GPL(bd_release_from_disk);
  719. #endif
  720. /*
  721. * Tries to open block device by device number. Use it ONLY if you
  722. * really do not have anything better - i.e. when you are behind a
  723. * truly sucky interface and all you are given is a device number. _Never_
  724. * to be used for internal purposes. If you ever need it - reconsider
  725. * your API.
  726. */
  727. struct block_device *open_by_devnum(dev_t dev, fmode_t mode)
  728. {
  729. struct block_device *bdev = bdget(dev);
  730. int err = -ENOMEM;
  731. if (bdev)
  732. err = blkdev_get(bdev, mode);
  733. return err ? ERR_PTR(err) : bdev;
  734. }
  735. EXPORT_SYMBOL(open_by_devnum);
  736. /**
  737. * flush_disk - invalidates all buffer-cache entries on a disk
  738. *
  739. * @bdev: struct block device to be flushed
  740. *
  741. * Invalidates all buffer-cache entries on a disk. It should be called
  742. * when a disk has been changed -- either by a media change or online
  743. * resize.
  744. */
  745. static void flush_disk(struct block_device *bdev)
  746. {
  747. if (__invalidate_device(bdev)) {
  748. char name[BDEVNAME_SIZE] = "";
  749. if (bdev->bd_disk)
  750. disk_name(bdev->bd_disk, 0, name);
  751. printk(KERN_WARNING "VFS: busy inodes on changed media or "
  752. "resized disk %s\n", name);
  753. }
  754. if (!bdev->bd_disk)
  755. return;
  756. if (disk_partitionable(bdev->bd_disk))
  757. bdev->bd_invalidated = 1;
  758. }
  759. /**
  760. * check_disk_size_change - checks for disk size change and adjusts bdev size.
  761. * @disk: struct gendisk to check
  762. * @bdev: struct bdev to adjust.
  763. *
  764. * This routine checks to see if the bdev size does not match the disk size
  765. * and adjusts it if it differs.
  766. */
  767. void check_disk_size_change(struct gendisk *disk, struct block_device *bdev)
  768. {
  769. loff_t disk_size, bdev_size;
  770. disk_size = (loff_t)get_capacity(disk) << 9;
  771. bdev_size = i_size_read(bdev->bd_inode);
  772. if (disk_size != bdev_size) {
  773. char name[BDEVNAME_SIZE];
  774. disk_name(disk, 0, name);
  775. printk(KERN_INFO
  776. "%s: detected capacity change from %lld to %lld\n",
  777. name, bdev_size, disk_size);
  778. i_size_write(bdev->bd_inode, disk_size);
  779. flush_disk(bdev);
  780. }
  781. }
  782. EXPORT_SYMBOL(check_disk_size_change);
  783. /**
  784. * revalidate_disk - wrapper for lower-level driver's revalidate_disk call-back
  785. * @disk: struct gendisk to be revalidated
  786. *
  787. * This routine is a wrapper for lower-level driver's revalidate_disk
  788. * call-backs. It is used to do common pre and post operations needed
  789. * for all revalidate_disk operations.
  790. */
  791. int revalidate_disk(struct gendisk *disk)
  792. {
  793. struct block_device *bdev;
  794. int ret = 0;
  795. if (disk->fops->revalidate_disk)
  796. ret = disk->fops->revalidate_disk(disk);
  797. bdev = bdget_disk(disk, 0);
  798. if (!bdev)
  799. return ret;
  800. mutex_lock(&bdev->bd_mutex);
  801. check_disk_size_change(disk, bdev);
  802. mutex_unlock(&bdev->bd_mutex);
  803. bdput(bdev);
  804. return ret;
  805. }
  806. EXPORT_SYMBOL(revalidate_disk);
  807. /*
  808. * This routine checks whether a removable media has been changed,
  809. * and invalidates all buffer-cache-entries in that case. This
  810. * is a relatively slow routine, so we have to try to minimize using
  811. * it. Thus it is called only upon a 'mount' or 'open'. This
  812. * is the best way of combining speed and utility, I think.
  813. * People changing diskettes in the middle of an operation deserve
  814. * to lose :-)
  815. */
  816. int check_disk_change(struct block_device *bdev)
  817. {
  818. struct gendisk *disk = bdev->bd_disk;
  819. struct block_device_operations * bdops = disk->fops;
  820. if (!bdops->media_changed)
  821. return 0;
  822. if (!bdops->media_changed(bdev->bd_disk))
  823. return 0;
  824. flush_disk(bdev);
  825. if (bdops->revalidate_disk)
  826. bdops->revalidate_disk(bdev->bd_disk);
  827. return 1;
  828. }
  829. EXPORT_SYMBOL(check_disk_change);
  830. void bd_set_size(struct block_device *bdev, loff_t size)
  831. {
  832. unsigned bsize = bdev_hardsect_size(bdev);
  833. bdev->bd_inode->i_size = size;
  834. while (bsize < PAGE_CACHE_SIZE) {
  835. if (size & bsize)
  836. break;
  837. bsize <<= 1;
  838. }
  839. bdev->bd_block_size = bsize;
  840. bdev->bd_inode->i_blkbits = blksize_bits(bsize);
  841. }
  842. EXPORT_SYMBOL(bd_set_size);
  843. static int __blkdev_put(struct block_device *bdev, fmode_t mode, int for_part);
  844. /*
  845. * bd_mutex locking:
  846. *
  847. * mutex_lock(part->bd_mutex)
  848. * mutex_lock_nested(whole->bd_mutex, 1)
  849. */
  850. static int __blkdev_get(struct block_device *bdev, fmode_t mode, int for_part)
  851. {
  852. struct gendisk *disk;
  853. int ret;
  854. int partno;
  855. int perm = 0;
  856. if (mode & FMODE_READ)
  857. perm |= MAY_READ;
  858. if (mode & FMODE_WRITE)
  859. perm |= MAY_WRITE;
  860. /*
  861. * hooks: /n/, see "layering violations".
  862. */
  863. ret = devcgroup_inode_permission(bdev->bd_inode, perm);
  864. if (ret != 0) {
  865. bdput(bdev);
  866. return ret;
  867. }
  868. lock_kernel();
  869. restart:
  870. ret = -ENXIO;
  871. disk = get_gendisk(bdev->bd_dev, &partno);
  872. if (!disk)
  873. goto out_unlock_kernel;
  874. mutex_lock_nested(&bdev->bd_mutex, for_part);
  875. if (!bdev->bd_openers) {
  876. bdev->bd_disk = disk;
  877. bdev->bd_contains = bdev;
  878. if (!partno) {
  879. struct backing_dev_info *bdi;
  880. ret = -ENXIO;
  881. bdev->bd_part = disk_get_part(disk, partno);
  882. if (!bdev->bd_part)
  883. goto out_clear;
  884. if (disk->fops->open) {
  885. ret = disk->fops->open(bdev, mode);
  886. if (ret == -ERESTARTSYS) {
  887. /* Lost a race with 'disk' being
  888. * deleted, try again.
  889. * See md.c
  890. */
  891. disk_put_part(bdev->bd_part);
  892. bdev->bd_part = NULL;
  893. module_put(disk->fops->owner);
  894. put_disk(disk);
  895. bdev->bd_disk = NULL;
  896. mutex_unlock(&bdev->bd_mutex);
  897. goto restart;
  898. }
  899. if (ret)
  900. goto out_clear;
  901. }
  902. if (!bdev->bd_openers) {
  903. bd_set_size(bdev,(loff_t)get_capacity(disk)<<9);
  904. bdi = blk_get_backing_dev_info(bdev);
  905. if (bdi == NULL)
  906. bdi = &default_backing_dev_info;
  907. bdev->bd_inode->i_data.backing_dev_info = bdi;
  908. }
  909. if (bdev->bd_invalidated)
  910. rescan_partitions(disk, bdev);
  911. } else {
  912. struct block_device *whole;
  913. whole = bdget_disk(disk, 0);
  914. ret = -ENOMEM;
  915. if (!whole)
  916. goto out_clear;
  917. BUG_ON(for_part);
  918. ret = __blkdev_get(whole, mode, 1);
  919. if (ret)
  920. goto out_clear;
  921. bdev->bd_contains = whole;
  922. bdev->bd_inode->i_data.backing_dev_info =
  923. whole->bd_inode->i_data.backing_dev_info;
  924. bdev->bd_part = disk_get_part(disk, partno);
  925. if (!(disk->flags & GENHD_FL_UP) ||
  926. !bdev->bd_part || !bdev->bd_part->nr_sects) {
  927. ret = -ENXIO;
  928. goto out_clear;
  929. }
  930. bd_set_size(bdev, (loff_t)bdev->bd_part->nr_sects << 9);
  931. }
  932. } else {
  933. put_disk(disk);
  934. module_put(disk->fops->owner);
  935. disk = NULL;
  936. if (bdev->bd_contains == bdev) {
  937. if (bdev->bd_disk->fops->open) {
  938. ret = bdev->bd_disk->fops->open(bdev, mode);
  939. if (ret)
  940. goto out_unlock_bdev;
  941. }
  942. if (bdev->bd_invalidated)
  943. rescan_partitions(bdev->bd_disk, bdev);
  944. }
  945. }
  946. bdev->bd_openers++;
  947. if (for_part)
  948. bdev->bd_part_count++;
  949. mutex_unlock(&bdev->bd_mutex);
  950. unlock_kernel();
  951. return 0;
  952. out_clear:
  953. disk_put_part(bdev->bd_part);
  954. bdev->bd_disk = NULL;
  955. bdev->bd_part = NULL;
  956. bdev->bd_inode->i_data.backing_dev_info = &default_backing_dev_info;
  957. if (bdev != bdev->bd_contains)
  958. __blkdev_put(bdev->bd_contains, mode, 1);
  959. bdev->bd_contains = NULL;
  960. out_unlock_bdev:
  961. mutex_unlock(&bdev->bd_mutex);
  962. out_unlock_kernel:
  963. unlock_kernel();
  964. if (disk)
  965. module_put(disk->fops->owner);
  966. put_disk(disk);
  967. bdput(bdev);
  968. return ret;
  969. }
  970. int blkdev_get(struct block_device *bdev, fmode_t mode)
  971. {
  972. return __blkdev_get(bdev, mode, 0);
  973. }
  974. EXPORT_SYMBOL(blkdev_get);
  975. static int blkdev_open(struct inode * inode, struct file * filp)
  976. {
  977. struct block_device *bdev;
  978. int res;
  979. /*
  980. * Preserve backwards compatibility and allow large file access
  981. * even if userspace doesn't ask for it explicitly. Some mkfs
  982. * binary needs it. We might want to drop this workaround
  983. * during an unstable branch.
  984. */
  985. filp->f_flags |= O_LARGEFILE;
  986. if (filp->f_flags & O_NDELAY)
  987. filp->f_mode |= FMODE_NDELAY;
  988. if (filp->f_flags & O_EXCL)
  989. filp->f_mode |= FMODE_EXCL;
  990. if ((filp->f_flags & O_ACCMODE) == 3)
  991. filp->f_mode |= FMODE_WRITE_IOCTL;
  992. bdev = bd_acquire(inode);
  993. if (bdev == NULL)
  994. return -ENOMEM;
  995. filp->f_mapping = bdev->bd_inode->i_mapping;
  996. res = blkdev_get(bdev, filp->f_mode);
  997. if (res)
  998. return res;
  999. if (filp->f_mode & FMODE_EXCL) {
  1000. res = bd_claim(bdev, filp);
  1001. if (res)
  1002. goto out_blkdev_put;
  1003. }
  1004. return 0;
  1005. out_blkdev_put:
  1006. blkdev_put(bdev, filp->f_mode);
  1007. return res;
  1008. }
  1009. static int __blkdev_put(struct block_device *bdev, fmode_t mode, int for_part)
  1010. {
  1011. int ret = 0;
  1012. struct gendisk *disk = bdev->bd_disk;
  1013. struct block_device *victim = NULL;
  1014. mutex_lock_nested(&bdev->bd_mutex, for_part);
  1015. lock_kernel();
  1016. if (for_part)
  1017. bdev->bd_part_count--;
  1018. if (!--bdev->bd_openers) {
  1019. sync_blockdev(bdev);
  1020. kill_bdev(bdev);
  1021. }
  1022. if (bdev->bd_contains == bdev) {
  1023. if (disk->fops->release)
  1024. ret = disk->fops->release(disk, mode);
  1025. }
  1026. if (!bdev->bd_openers) {
  1027. struct module *owner = disk->fops->owner;
  1028. put_disk(disk);
  1029. module_put(owner);
  1030. disk_put_part(bdev->bd_part);
  1031. bdev->bd_part = NULL;
  1032. bdev->bd_disk = NULL;
  1033. bdev->bd_inode->i_data.backing_dev_info = &default_backing_dev_info;
  1034. if (bdev != bdev->bd_contains)
  1035. victim = bdev->bd_contains;
  1036. bdev->bd_contains = NULL;
  1037. }
  1038. unlock_kernel();
  1039. mutex_unlock(&bdev->bd_mutex);
  1040. bdput(bdev);
  1041. if (victim)
  1042. __blkdev_put(victim, mode, 1);
  1043. return ret;
  1044. }
  1045. int blkdev_put(struct block_device *bdev, fmode_t mode)
  1046. {
  1047. return __blkdev_put(bdev, mode, 0);
  1048. }
  1049. EXPORT_SYMBOL(blkdev_put);
  1050. static int blkdev_close(struct inode * inode, struct file * filp)
  1051. {
  1052. struct block_device *bdev = I_BDEV(filp->f_mapping->host);
  1053. if (bdev->bd_holder == filp)
  1054. bd_release(bdev);
  1055. return blkdev_put(bdev, filp->f_mode);
  1056. }
  1057. static long block_ioctl(struct file *file, unsigned cmd, unsigned long arg)
  1058. {
  1059. struct block_device *bdev = I_BDEV(file->f_mapping->host);
  1060. fmode_t mode = file->f_mode;
  1061. /*
  1062. * O_NDELAY can be altered using fcntl(.., F_SETFL, ..), so we have
  1063. * to updated it before every ioctl.
  1064. */
  1065. if (file->f_flags & O_NDELAY)
  1066. mode |= FMODE_NDELAY;
  1067. else
  1068. mode &= ~FMODE_NDELAY;
  1069. return blkdev_ioctl(bdev, mode, cmd, arg);
  1070. }
  1071. /*
  1072. * Try to release a page associated with block device when the system
  1073. * is under memory pressure.
  1074. */
  1075. static int blkdev_releasepage(struct page *page, gfp_t wait)
  1076. {
  1077. struct super_block *super = BDEV_I(page->mapping->host)->bdev.bd_super;
  1078. if (super && super->s_op->bdev_try_to_free_page)
  1079. return super->s_op->bdev_try_to_free_page(super, page, wait);
  1080. return try_to_free_buffers(page);
  1081. }
  1082. static const struct address_space_operations def_blk_aops = {
  1083. .readpage = blkdev_readpage,
  1084. .writepage = blkdev_writepage,
  1085. .sync_page = block_sync_page,
  1086. .write_begin = blkdev_write_begin,
  1087. .write_end = blkdev_write_end,
  1088. .writepages = generic_writepages,
  1089. .releasepage = blkdev_releasepage,
  1090. .direct_IO = blkdev_direct_IO,
  1091. };
  1092. const struct file_operations def_blk_fops = {
  1093. .open = blkdev_open,
  1094. .release = blkdev_close,
  1095. .llseek = block_llseek,
  1096. .read = do_sync_read,
  1097. .write = do_sync_write,
  1098. .aio_read = generic_file_aio_read,
  1099. .aio_write = generic_file_aio_write_nolock,
  1100. .mmap = generic_file_mmap,
  1101. .fsync = block_fsync,
  1102. .unlocked_ioctl = block_ioctl,
  1103. #ifdef CONFIG_COMPAT
  1104. .compat_ioctl = compat_blkdev_ioctl,
  1105. #endif
  1106. .splice_read = generic_file_splice_read,
  1107. .splice_write = generic_file_splice_write,
  1108. };
  1109. int ioctl_by_bdev(struct block_device *bdev, unsigned cmd, unsigned long arg)
  1110. {
  1111. int res;
  1112. mm_segment_t old_fs = get_fs();
  1113. set_fs(KERNEL_DS);
  1114. res = blkdev_ioctl(bdev, 0, cmd, arg);
  1115. set_fs(old_fs);
  1116. return res;
  1117. }
  1118. EXPORT_SYMBOL(ioctl_by_bdev);
  1119. /**
  1120. * lookup_bdev - lookup a struct block_device by name
  1121. * @pathname: special file representing the block device
  1122. *
  1123. * Get a reference to the blockdevice at @pathname in the current
  1124. * namespace if possible and return it. Return ERR_PTR(error)
  1125. * otherwise.
  1126. */
  1127. struct block_device *lookup_bdev(const char *pathname)
  1128. {
  1129. struct block_device *bdev;
  1130. struct inode *inode;
  1131. struct path path;
  1132. int error;
  1133. if (!pathname || !*pathname)
  1134. return ERR_PTR(-EINVAL);
  1135. error = kern_path(pathname, LOOKUP_FOLLOW, &path);
  1136. if (error)
  1137. return ERR_PTR(error);
  1138. inode = path.dentry->d_inode;
  1139. error = -ENOTBLK;
  1140. if (!S_ISBLK(inode->i_mode))
  1141. goto fail;
  1142. error = -EACCES;
  1143. if (path.mnt->mnt_flags & MNT_NODEV)
  1144. goto fail;
  1145. error = -ENOMEM;
  1146. bdev = bd_acquire(inode);
  1147. if (!bdev)
  1148. goto fail;
  1149. out:
  1150. path_put(&path);
  1151. return bdev;
  1152. fail:
  1153. bdev = ERR_PTR(error);
  1154. goto out;
  1155. }
  1156. EXPORT_SYMBOL(lookup_bdev);
  1157. /**
  1158. * open_bdev_exclusive - open a block device by name and set it up for use
  1159. *
  1160. * @path: special file representing the block device
  1161. * @mode: FMODE_... combination to pass be used
  1162. * @holder: owner for exclusion
  1163. *
  1164. * Open the blockdevice described by the special file at @path, claim it
  1165. * for the @holder.
  1166. */
  1167. struct block_device *open_bdev_exclusive(const char *path, fmode_t mode, void *holder)
  1168. {
  1169. struct block_device *bdev;
  1170. int error = 0;
  1171. bdev = lookup_bdev(path);
  1172. if (IS_ERR(bdev))
  1173. return bdev;
  1174. error = blkdev_get(bdev, mode);
  1175. if (error)
  1176. return ERR_PTR(error);
  1177. error = -EACCES;
  1178. if ((mode & FMODE_WRITE) && bdev_read_only(bdev))
  1179. goto blkdev_put;
  1180. error = bd_claim(bdev, holder);
  1181. if (error)
  1182. goto blkdev_put;
  1183. return bdev;
  1184. blkdev_put:
  1185. blkdev_put(bdev, mode);
  1186. return ERR_PTR(error);
  1187. }
  1188. EXPORT_SYMBOL(open_bdev_exclusive);
  1189. /**
  1190. * close_bdev_exclusive - close a blockdevice opened by open_bdev_exclusive()
  1191. *
  1192. * @bdev: blockdevice to close
  1193. * @mode: mode, must match that used to open.
  1194. *
  1195. * This is the counterpart to open_bdev_exclusive().
  1196. */
  1197. void close_bdev_exclusive(struct block_device *bdev, fmode_t mode)
  1198. {
  1199. bd_release(bdev);
  1200. blkdev_put(bdev, mode);
  1201. }
  1202. EXPORT_SYMBOL(close_bdev_exclusive);
  1203. int __invalidate_device(struct block_device *bdev)
  1204. {
  1205. struct super_block *sb = get_super(bdev);
  1206. int res = 0;
  1207. if (sb) {
  1208. /*
  1209. * no need to lock the super, get_super holds the
  1210. * read mutex so the filesystem cannot go away
  1211. * under us (->put_super runs with the write lock
  1212. * hold).
  1213. */
  1214. shrink_dcache_sb(sb);
  1215. res = invalidate_inodes(sb);
  1216. drop_super(sb);
  1217. }
  1218. invalidate_bdev(bdev);
  1219. return res;
  1220. }
  1221. EXPORT_SYMBOL(__invalidate_device);