locks.c 59 KB

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  1. /*
  2. * linux/fs/locks.c
  3. *
  4. * Provide support for fcntl()'s F_GETLK, F_SETLK, and F_SETLKW calls.
  5. * Doug Evans (dje@spiff.uucp), August 07, 1992
  6. *
  7. * Deadlock detection added.
  8. * FIXME: one thing isn't handled yet:
  9. * - mandatory locks (requires lots of changes elsewhere)
  10. * Kelly Carmichael (kelly@[142.24.8.65]), September 17, 1994.
  11. *
  12. * Miscellaneous edits, and a total rewrite of posix_lock_file() code.
  13. * Kai Petzke (wpp@marie.physik.tu-berlin.de), 1994
  14. *
  15. * Converted file_lock_table to a linked list from an array, which eliminates
  16. * the limits on how many active file locks are open.
  17. * Chad Page (pageone@netcom.com), November 27, 1994
  18. *
  19. * Removed dependency on file descriptors. dup()'ed file descriptors now
  20. * get the same locks as the original file descriptors, and a close() on
  21. * any file descriptor removes ALL the locks on the file for the current
  22. * process. Since locks still depend on the process id, locks are inherited
  23. * after an exec() but not after a fork(). This agrees with POSIX, and both
  24. * BSD and SVR4 practice.
  25. * Andy Walker (andy@lysaker.kvaerner.no), February 14, 1995
  26. *
  27. * Scrapped free list which is redundant now that we allocate locks
  28. * dynamically with kmalloc()/kfree().
  29. * Andy Walker (andy@lysaker.kvaerner.no), February 21, 1995
  30. *
  31. * Implemented two lock personalities - FL_FLOCK and FL_POSIX.
  32. *
  33. * FL_POSIX locks are created with calls to fcntl() and lockf() through the
  34. * fcntl() system call. They have the semantics described above.
  35. *
  36. * FL_FLOCK locks are created with calls to flock(), through the flock()
  37. * system call, which is new. Old C libraries implement flock() via fcntl()
  38. * and will continue to use the old, broken implementation.
  39. *
  40. * FL_FLOCK locks follow the 4.4 BSD flock() semantics. They are associated
  41. * with a file pointer (filp). As a result they can be shared by a parent
  42. * process and its children after a fork(). They are removed when the last
  43. * file descriptor referring to the file pointer is closed (unless explicitly
  44. * unlocked).
  45. *
  46. * FL_FLOCK locks never deadlock, an existing lock is always removed before
  47. * upgrading from shared to exclusive (or vice versa). When this happens
  48. * any processes blocked by the current lock are woken up and allowed to
  49. * run before the new lock is applied.
  50. * Andy Walker (andy@lysaker.kvaerner.no), June 09, 1995
  51. *
  52. * Removed some race conditions in flock_lock_file(), marked other possible
  53. * races. Just grep for FIXME to see them.
  54. * Dmitry Gorodchanin (pgmdsg@ibi.com), February 09, 1996.
  55. *
  56. * Addressed Dmitry's concerns. Deadlock checking no longer recursive.
  57. * Lock allocation changed to GFP_ATOMIC as we can't afford to sleep
  58. * once we've checked for blocking and deadlocking.
  59. * Andy Walker (andy@lysaker.kvaerner.no), April 03, 1996.
  60. *
  61. * Initial implementation of mandatory locks. SunOS turned out to be
  62. * a rotten model, so I implemented the "obvious" semantics.
  63. * See 'Documentation/mandatory.txt' for details.
  64. * Andy Walker (andy@lysaker.kvaerner.no), April 06, 1996.
  65. *
  66. * Don't allow mandatory locks on mmap()'ed files. Added simple functions to
  67. * check if a file has mandatory locks, used by mmap(), open() and creat() to
  68. * see if system call should be rejected. Ref. HP-UX/SunOS/Solaris Reference
  69. * Manual, Section 2.
  70. * Andy Walker (andy@lysaker.kvaerner.no), April 09, 1996.
  71. *
  72. * Tidied up block list handling. Added '/proc/locks' interface.
  73. * Andy Walker (andy@lysaker.kvaerner.no), April 24, 1996.
  74. *
  75. * Fixed deadlock condition for pathological code that mixes calls to
  76. * flock() and fcntl().
  77. * Andy Walker (andy@lysaker.kvaerner.no), April 29, 1996.
  78. *
  79. * Allow only one type of locking scheme (FL_POSIX or FL_FLOCK) to be in use
  80. * for a given file at a time. Changed the CONFIG_LOCK_MANDATORY scheme to
  81. * guarantee sensible behaviour in the case where file system modules might
  82. * be compiled with different options than the kernel itself.
  83. * Andy Walker (andy@lysaker.kvaerner.no), May 15, 1996.
  84. *
  85. * Added a couple of missing wake_up() calls. Thanks to Thomas Meckel
  86. * (Thomas.Meckel@mni.fh-giessen.de) for spotting this.
  87. * Andy Walker (andy@lysaker.kvaerner.no), May 15, 1996.
  88. *
  89. * Changed FL_POSIX locks to use the block list in the same way as FL_FLOCK
  90. * locks. Changed process synchronisation to avoid dereferencing locks that
  91. * have already been freed.
  92. * Andy Walker (andy@lysaker.kvaerner.no), Sep 21, 1996.
  93. *
  94. * Made the block list a circular list to minimise searching in the list.
  95. * Andy Walker (andy@lysaker.kvaerner.no), Sep 25, 1996.
  96. *
  97. * Made mandatory locking a mount option. Default is not to allow mandatory
  98. * locking.
  99. * Andy Walker (andy@lysaker.kvaerner.no), Oct 04, 1996.
  100. *
  101. * Some adaptations for NFS support.
  102. * Olaf Kirch (okir@monad.swb.de), Dec 1996,
  103. *
  104. * Fixed /proc/locks interface so that we can't overrun the buffer we are handed.
  105. * Andy Walker (andy@lysaker.kvaerner.no), May 12, 1997.
  106. *
  107. * Use slab allocator instead of kmalloc/kfree.
  108. * Use generic list implementation from <linux/list.h>.
  109. * Sped up posix_locks_deadlock by only considering blocked locks.
  110. * Matthew Wilcox <willy@debian.org>, March, 2000.
  111. *
  112. * Leases and LOCK_MAND
  113. * Matthew Wilcox <willy@debian.org>, June, 2000.
  114. * Stephen Rothwell <sfr@canb.auug.org.au>, June, 2000.
  115. */
  116. #include <linux/capability.h>
  117. #include <linux/file.h>
  118. #include <linux/fdtable.h>
  119. #include <linux/fs.h>
  120. #include <linux/init.h>
  121. #include <linux/module.h>
  122. #include <linux/security.h>
  123. #include <linux/slab.h>
  124. #include <linux/syscalls.h>
  125. #include <linux/time.h>
  126. #include <linux/rcupdate.h>
  127. #include <linux/pid_namespace.h>
  128. #include <asm/uaccess.h>
  129. #define IS_POSIX(fl) (fl->fl_flags & FL_POSIX)
  130. #define IS_FLOCK(fl) (fl->fl_flags & FL_FLOCK)
  131. #define IS_LEASE(fl) (fl->fl_flags & FL_LEASE)
  132. int leases_enable = 1;
  133. int lease_break_time = 45;
  134. #define for_each_lock(inode, lockp) \
  135. for (lockp = &inode->i_flock; *lockp != NULL; lockp = &(*lockp)->fl_next)
  136. static LIST_HEAD(file_lock_list);
  137. static LIST_HEAD(blocked_list);
  138. static DEFINE_SPINLOCK(file_lock_lock);
  139. /*
  140. * Protects the two list heads above, plus the inode->i_flock list
  141. * FIXME: should use a spinlock, once lockd and ceph are ready.
  142. */
  143. void lock_flocks(void)
  144. {
  145. spin_lock(&file_lock_lock);
  146. }
  147. EXPORT_SYMBOL_GPL(lock_flocks);
  148. void unlock_flocks(void)
  149. {
  150. spin_unlock(&file_lock_lock);
  151. }
  152. EXPORT_SYMBOL_GPL(unlock_flocks);
  153. static struct kmem_cache *filelock_cache __read_mostly;
  154. /* Allocate an empty lock structure. */
  155. struct file_lock *locks_alloc_lock(void)
  156. {
  157. return kmem_cache_alloc(filelock_cache, GFP_KERNEL);
  158. }
  159. EXPORT_SYMBOL_GPL(locks_alloc_lock);
  160. void locks_release_private(struct file_lock *fl)
  161. {
  162. if (fl->fl_ops) {
  163. if (fl->fl_ops->fl_release_private)
  164. fl->fl_ops->fl_release_private(fl);
  165. fl->fl_ops = NULL;
  166. }
  167. if (fl->fl_lmops) {
  168. if (fl->fl_lmops->fl_release_private)
  169. fl->fl_lmops->fl_release_private(fl);
  170. fl->fl_lmops = NULL;
  171. }
  172. }
  173. EXPORT_SYMBOL_GPL(locks_release_private);
  174. /* Free a lock which is not in use. */
  175. void locks_free_lock(struct file_lock *fl)
  176. {
  177. BUG_ON(waitqueue_active(&fl->fl_wait));
  178. BUG_ON(!list_empty(&fl->fl_block));
  179. BUG_ON(!list_empty(&fl->fl_link));
  180. locks_release_private(fl);
  181. kmem_cache_free(filelock_cache, fl);
  182. }
  183. EXPORT_SYMBOL(locks_free_lock);
  184. void locks_init_lock(struct file_lock *fl)
  185. {
  186. INIT_LIST_HEAD(&fl->fl_link);
  187. INIT_LIST_HEAD(&fl->fl_block);
  188. init_waitqueue_head(&fl->fl_wait);
  189. fl->fl_next = NULL;
  190. fl->fl_fasync = NULL;
  191. fl->fl_owner = NULL;
  192. fl->fl_pid = 0;
  193. fl->fl_nspid = NULL;
  194. fl->fl_file = NULL;
  195. fl->fl_flags = 0;
  196. fl->fl_type = 0;
  197. fl->fl_start = fl->fl_end = 0;
  198. fl->fl_ops = NULL;
  199. fl->fl_lmops = NULL;
  200. }
  201. EXPORT_SYMBOL(locks_init_lock);
  202. /*
  203. * Initialises the fields of the file lock which are invariant for
  204. * free file_locks.
  205. */
  206. static void init_once(void *foo)
  207. {
  208. struct file_lock *lock = (struct file_lock *) foo;
  209. locks_init_lock(lock);
  210. }
  211. static void locks_copy_private(struct file_lock *new, struct file_lock *fl)
  212. {
  213. if (fl->fl_ops) {
  214. if (fl->fl_ops->fl_copy_lock)
  215. fl->fl_ops->fl_copy_lock(new, fl);
  216. new->fl_ops = fl->fl_ops;
  217. }
  218. if (fl->fl_lmops)
  219. new->fl_lmops = fl->fl_lmops;
  220. }
  221. /*
  222. * Initialize a new lock from an existing file_lock structure.
  223. */
  224. void __locks_copy_lock(struct file_lock *new, const struct file_lock *fl)
  225. {
  226. new->fl_owner = fl->fl_owner;
  227. new->fl_pid = fl->fl_pid;
  228. new->fl_file = NULL;
  229. new->fl_flags = fl->fl_flags;
  230. new->fl_type = fl->fl_type;
  231. new->fl_start = fl->fl_start;
  232. new->fl_end = fl->fl_end;
  233. new->fl_ops = NULL;
  234. new->fl_lmops = NULL;
  235. }
  236. EXPORT_SYMBOL(__locks_copy_lock);
  237. void locks_copy_lock(struct file_lock *new, struct file_lock *fl)
  238. {
  239. locks_release_private(new);
  240. __locks_copy_lock(new, fl);
  241. new->fl_file = fl->fl_file;
  242. new->fl_ops = fl->fl_ops;
  243. new->fl_lmops = fl->fl_lmops;
  244. locks_copy_private(new, fl);
  245. }
  246. EXPORT_SYMBOL(locks_copy_lock);
  247. static inline int flock_translate_cmd(int cmd) {
  248. if (cmd & LOCK_MAND)
  249. return cmd & (LOCK_MAND | LOCK_RW);
  250. switch (cmd) {
  251. case LOCK_SH:
  252. return F_RDLCK;
  253. case LOCK_EX:
  254. return F_WRLCK;
  255. case LOCK_UN:
  256. return F_UNLCK;
  257. }
  258. return -EINVAL;
  259. }
  260. /* Fill in a file_lock structure with an appropriate FLOCK lock. */
  261. static int flock_make_lock(struct file *filp, struct file_lock **lock,
  262. unsigned int cmd)
  263. {
  264. struct file_lock *fl;
  265. int type = flock_translate_cmd(cmd);
  266. if (type < 0)
  267. return type;
  268. fl = locks_alloc_lock();
  269. if (fl == NULL)
  270. return -ENOMEM;
  271. fl->fl_file = filp;
  272. fl->fl_pid = current->tgid;
  273. fl->fl_flags = FL_FLOCK;
  274. fl->fl_type = type;
  275. fl->fl_end = OFFSET_MAX;
  276. *lock = fl;
  277. return 0;
  278. }
  279. static int assign_type(struct file_lock *fl, int type)
  280. {
  281. switch (type) {
  282. case F_RDLCK:
  283. case F_WRLCK:
  284. case F_UNLCK:
  285. fl->fl_type = type;
  286. break;
  287. default:
  288. return -EINVAL;
  289. }
  290. return 0;
  291. }
  292. /* Verify a "struct flock" and copy it to a "struct file_lock" as a POSIX
  293. * style lock.
  294. */
  295. static int flock_to_posix_lock(struct file *filp, struct file_lock *fl,
  296. struct flock *l)
  297. {
  298. off_t start, end;
  299. switch (l->l_whence) {
  300. case SEEK_SET:
  301. start = 0;
  302. break;
  303. case SEEK_CUR:
  304. start = filp->f_pos;
  305. break;
  306. case SEEK_END:
  307. start = i_size_read(filp->f_path.dentry->d_inode);
  308. break;
  309. default:
  310. return -EINVAL;
  311. }
  312. /* POSIX-1996 leaves the case l->l_len < 0 undefined;
  313. POSIX-2001 defines it. */
  314. start += l->l_start;
  315. if (start < 0)
  316. return -EINVAL;
  317. fl->fl_end = OFFSET_MAX;
  318. if (l->l_len > 0) {
  319. end = start + l->l_len - 1;
  320. fl->fl_end = end;
  321. } else if (l->l_len < 0) {
  322. end = start - 1;
  323. fl->fl_end = end;
  324. start += l->l_len;
  325. if (start < 0)
  326. return -EINVAL;
  327. }
  328. fl->fl_start = start; /* we record the absolute position */
  329. if (fl->fl_end < fl->fl_start)
  330. return -EOVERFLOW;
  331. fl->fl_owner = current->files;
  332. fl->fl_pid = current->tgid;
  333. fl->fl_file = filp;
  334. fl->fl_flags = FL_POSIX;
  335. fl->fl_ops = NULL;
  336. fl->fl_lmops = NULL;
  337. return assign_type(fl, l->l_type);
  338. }
  339. #if BITS_PER_LONG == 32
  340. static int flock64_to_posix_lock(struct file *filp, struct file_lock *fl,
  341. struct flock64 *l)
  342. {
  343. loff_t start;
  344. switch (l->l_whence) {
  345. case SEEK_SET:
  346. start = 0;
  347. break;
  348. case SEEK_CUR:
  349. start = filp->f_pos;
  350. break;
  351. case SEEK_END:
  352. start = i_size_read(filp->f_path.dentry->d_inode);
  353. break;
  354. default:
  355. return -EINVAL;
  356. }
  357. start += l->l_start;
  358. if (start < 0)
  359. return -EINVAL;
  360. fl->fl_end = OFFSET_MAX;
  361. if (l->l_len > 0) {
  362. fl->fl_end = start + l->l_len - 1;
  363. } else if (l->l_len < 0) {
  364. fl->fl_end = start - 1;
  365. start += l->l_len;
  366. if (start < 0)
  367. return -EINVAL;
  368. }
  369. fl->fl_start = start; /* we record the absolute position */
  370. if (fl->fl_end < fl->fl_start)
  371. return -EOVERFLOW;
  372. fl->fl_owner = current->files;
  373. fl->fl_pid = current->tgid;
  374. fl->fl_file = filp;
  375. fl->fl_flags = FL_POSIX;
  376. fl->fl_ops = NULL;
  377. fl->fl_lmops = NULL;
  378. switch (l->l_type) {
  379. case F_RDLCK:
  380. case F_WRLCK:
  381. case F_UNLCK:
  382. fl->fl_type = l->l_type;
  383. break;
  384. default:
  385. return -EINVAL;
  386. }
  387. return (0);
  388. }
  389. #endif
  390. /* default lease lock manager operations */
  391. static void lease_break_callback(struct file_lock *fl)
  392. {
  393. kill_fasync(&fl->fl_fasync, SIGIO, POLL_MSG);
  394. }
  395. static void lease_release_private_callback(struct file_lock *fl)
  396. {
  397. if (!fl->fl_file)
  398. return;
  399. f_delown(fl->fl_file);
  400. fl->fl_file->f_owner.signum = 0;
  401. }
  402. static int lease_mylease_callback(struct file_lock *fl, struct file_lock *try)
  403. {
  404. return fl->fl_file == try->fl_file;
  405. }
  406. static const struct lock_manager_operations lease_manager_ops = {
  407. .fl_break = lease_break_callback,
  408. .fl_release_private = lease_release_private_callback,
  409. .fl_mylease = lease_mylease_callback,
  410. .fl_change = lease_modify,
  411. };
  412. /*
  413. * Initialize a lease, use the default lock manager operations
  414. */
  415. static int lease_init(struct file *filp, int type, struct file_lock *fl)
  416. {
  417. if (assign_type(fl, type) != 0)
  418. return -EINVAL;
  419. fl->fl_owner = current->files;
  420. fl->fl_pid = current->tgid;
  421. fl->fl_file = filp;
  422. fl->fl_flags = FL_LEASE;
  423. fl->fl_start = 0;
  424. fl->fl_end = OFFSET_MAX;
  425. fl->fl_ops = NULL;
  426. fl->fl_lmops = &lease_manager_ops;
  427. return 0;
  428. }
  429. /* Allocate a file_lock initialised to this type of lease */
  430. static struct file_lock *lease_alloc(struct file *filp, int type)
  431. {
  432. struct file_lock *fl = locks_alloc_lock();
  433. int error = -ENOMEM;
  434. if (fl == NULL)
  435. return ERR_PTR(error);
  436. error = lease_init(filp, type, fl);
  437. if (error) {
  438. locks_free_lock(fl);
  439. return ERR_PTR(error);
  440. }
  441. return fl;
  442. }
  443. /* Check if two locks overlap each other.
  444. */
  445. static inline int locks_overlap(struct file_lock *fl1, struct file_lock *fl2)
  446. {
  447. return ((fl1->fl_end >= fl2->fl_start) &&
  448. (fl2->fl_end >= fl1->fl_start));
  449. }
  450. /*
  451. * Check whether two locks have the same owner.
  452. */
  453. static int posix_same_owner(struct file_lock *fl1, struct file_lock *fl2)
  454. {
  455. if (fl1->fl_lmops && fl1->fl_lmops->fl_compare_owner)
  456. return fl2->fl_lmops == fl1->fl_lmops &&
  457. fl1->fl_lmops->fl_compare_owner(fl1, fl2);
  458. return fl1->fl_owner == fl2->fl_owner;
  459. }
  460. /* Remove waiter from blocker's block list.
  461. * When blocker ends up pointing to itself then the list is empty.
  462. */
  463. static void __locks_delete_block(struct file_lock *waiter)
  464. {
  465. list_del_init(&waiter->fl_block);
  466. list_del_init(&waiter->fl_link);
  467. waiter->fl_next = NULL;
  468. }
  469. /*
  470. */
  471. static void locks_delete_block(struct file_lock *waiter)
  472. {
  473. lock_flocks();
  474. __locks_delete_block(waiter);
  475. unlock_flocks();
  476. }
  477. /* Insert waiter into blocker's block list.
  478. * We use a circular list so that processes can be easily woken up in
  479. * the order they blocked. The documentation doesn't require this but
  480. * it seems like the reasonable thing to do.
  481. */
  482. static void locks_insert_block(struct file_lock *blocker,
  483. struct file_lock *waiter)
  484. {
  485. BUG_ON(!list_empty(&waiter->fl_block));
  486. list_add_tail(&waiter->fl_block, &blocker->fl_block);
  487. waiter->fl_next = blocker;
  488. if (IS_POSIX(blocker))
  489. list_add(&waiter->fl_link, &blocked_list);
  490. }
  491. /* Wake up processes blocked waiting for blocker.
  492. * If told to wait then schedule the processes until the block list
  493. * is empty, otherwise empty the block list ourselves.
  494. */
  495. static void locks_wake_up_blocks(struct file_lock *blocker)
  496. {
  497. while (!list_empty(&blocker->fl_block)) {
  498. struct file_lock *waiter;
  499. waiter = list_first_entry(&blocker->fl_block,
  500. struct file_lock, fl_block);
  501. __locks_delete_block(waiter);
  502. if (waiter->fl_lmops && waiter->fl_lmops->fl_notify)
  503. waiter->fl_lmops->fl_notify(waiter);
  504. else
  505. wake_up(&waiter->fl_wait);
  506. }
  507. }
  508. /* Insert file lock fl into an inode's lock list at the position indicated
  509. * by pos. At the same time add the lock to the global file lock list.
  510. */
  511. static void locks_insert_lock(struct file_lock **pos, struct file_lock *fl)
  512. {
  513. list_add(&fl->fl_link, &file_lock_list);
  514. fl->fl_nspid = get_pid(task_tgid(current));
  515. /* insert into file's list */
  516. fl->fl_next = *pos;
  517. *pos = fl;
  518. }
  519. /*
  520. * Delete a lock and then free it.
  521. * Wake up processes that are blocked waiting for this lock,
  522. * notify the FS that the lock has been cleared and
  523. * finally free the lock.
  524. */
  525. static void locks_delete_lock(struct file_lock **thisfl_p)
  526. {
  527. struct file_lock *fl = *thisfl_p;
  528. *thisfl_p = fl->fl_next;
  529. fl->fl_next = NULL;
  530. list_del_init(&fl->fl_link);
  531. fasync_helper(0, fl->fl_file, 0, &fl->fl_fasync);
  532. if (fl->fl_fasync != NULL) {
  533. printk(KERN_ERR "locks_delete_lock: fasync == %p\n", fl->fl_fasync);
  534. fl->fl_fasync = NULL;
  535. }
  536. if (fl->fl_nspid) {
  537. put_pid(fl->fl_nspid);
  538. fl->fl_nspid = NULL;
  539. }
  540. locks_wake_up_blocks(fl);
  541. locks_free_lock(fl);
  542. }
  543. /* Determine if lock sys_fl blocks lock caller_fl. Common functionality
  544. * checks for shared/exclusive status of overlapping locks.
  545. */
  546. static int locks_conflict(struct file_lock *caller_fl, struct file_lock *sys_fl)
  547. {
  548. if (sys_fl->fl_type == F_WRLCK)
  549. return 1;
  550. if (caller_fl->fl_type == F_WRLCK)
  551. return 1;
  552. return 0;
  553. }
  554. /* Determine if lock sys_fl blocks lock caller_fl. POSIX specific
  555. * checking before calling the locks_conflict().
  556. */
  557. static int posix_locks_conflict(struct file_lock *caller_fl, struct file_lock *sys_fl)
  558. {
  559. /* POSIX locks owned by the same process do not conflict with
  560. * each other.
  561. */
  562. if (!IS_POSIX(sys_fl) || posix_same_owner(caller_fl, sys_fl))
  563. return (0);
  564. /* Check whether they overlap */
  565. if (!locks_overlap(caller_fl, sys_fl))
  566. return 0;
  567. return (locks_conflict(caller_fl, sys_fl));
  568. }
  569. /* Determine if lock sys_fl blocks lock caller_fl. FLOCK specific
  570. * checking before calling the locks_conflict().
  571. */
  572. static int flock_locks_conflict(struct file_lock *caller_fl, struct file_lock *sys_fl)
  573. {
  574. /* FLOCK locks referring to the same filp do not conflict with
  575. * each other.
  576. */
  577. if (!IS_FLOCK(sys_fl) || (caller_fl->fl_file == sys_fl->fl_file))
  578. return (0);
  579. if ((caller_fl->fl_type & LOCK_MAND) || (sys_fl->fl_type & LOCK_MAND))
  580. return 0;
  581. return (locks_conflict(caller_fl, sys_fl));
  582. }
  583. void
  584. posix_test_lock(struct file *filp, struct file_lock *fl)
  585. {
  586. struct file_lock *cfl;
  587. lock_flocks();
  588. for (cfl = filp->f_path.dentry->d_inode->i_flock; cfl; cfl = cfl->fl_next) {
  589. if (!IS_POSIX(cfl))
  590. continue;
  591. if (posix_locks_conflict(fl, cfl))
  592. break;
  593. }
  594. if (cfl) {
  595. __locks_copy_lock(fl, cfl);
  596. if (cfl->fl_nspid)
  597. fl->fl_pid = pid_vnr(cfl->fl_nspid);
  598. } else
  599. fl->fl_type = F_UNLCK;
  600. unlock_flocks();
  601. return;
  602. }
  603. EXPORT_SYMBOL(posix_test_lock);
  604. /*
  605. * Deadlock detection:
  606. *
  607. * We attempt to detect deadlocks that are due purely to posix file
  608. * locks.
  609. *
  610. * We assume that a task can be waiting for at most one lock at a time.
  611. * So for any acquired lock, the process holding that lock may be
  612. * waiting on at most one other lock. That lock in turns may be held by
  613. * someone waiting for at most one other lock. Given a requested lock
  614. * caller_fl which is about to wait for a conflicting lock block_fl, we
  615. * follow this chain of waiters to ensure we are not about to create a
  616. * cycle.
  617. *
  618. * Since we do this before we ever put a process to sleep on a lock, we
  619. * are ensured that there is never a cycle; that is what guarantees that
  620. * the while() loop in posix_locks_deadlock() eventually completes.
  621. *
  622. * Note: the above assumption may not be true when handling lock
  623. * requests from a broken NFS client. It may also fail in the presence
  624. * of tasks (such as posix threads) sharing the same open file table.
  625. *
  626. * To handle those cases, we just bail out after a few iterations.
  627. */
  628. #define MAX_DEADLK_ITERATIONS 10
  629. /* Find a lock that the owner of the given block_fl is blocking on. */
  630. static struct file_lock *what_owner_is_waiting_for(struct file_lock *block_fl)
  631. {
  632. struct file_lock *fl;
  633. list_for_each_entry(fl, &blocked_list, fl_link) {
  634. if (posix_same_owner(fl, block_fl))
  635. return fl->fl_next;
  636. }
  637. return NULL;
  638. }
  639. static int posix_locks_deadlock(struct file_lock *caller_fl,
  640. struct file_lock *block_fl)
  641. {
  642. int i = 0;
  643. while ((block_fl = what_owner_is_waiting_for(block_fl))) {
  644. if (i++ > MAX_DEADLK_ITERATIONS)
  645. return 0;
  646. if (posix_same_owner(caller_fl, block_fl))
  647. return 1;
  648. }
  649. return 0;
  650. }
  651. /* Try to create a FLOCK lock on filp. We always insert new FLOCK locks
  652. * after any leases, but before any posix locks.
  653. *
  654. * Note that if called with an FL_EXISTS argument, the caller may determine
  655. * whether or not a lock was successfully freed by testing the return
  656. * value for -ENOENT.
  657. */
  658. static int flock_lock_file(struct file *filp, struct file_lock *request)
  659. {
  660. struct file_lock *new_fl = NULL;
  661. struct file_lock **before;
  662. struct inode * inode = filp->f_path.dentry->d_inode;
  663. int error = 0;
  664. int found = 0;
  665. if (!(request->fl_flags & FL_ACCESS) && (request->fl_type != F_UNLCK)) {
  666. new_fl = locks_alloc_lock();
  667. if (!new_fl)
  668. return -ENOMEM;
  669. }
  670. lock_flocks();
  671. if (request->fl_flags & FL_ACCESS)
  672. goto find_conflict;
  673. for_each_lock(inode, before) {
  674. struct file_lock *fl = *before;
  675. if (IS_POSIX(fl))
  676. break;
  677. if (IS_LEASE(fl))
  678. continue;
  679. if (filp != fl->fl_file)
  680. continue;
  681. if (request->fl_type == fl->fl_type)
  682. goto out;
  683. found = 1;
  684. locks_delete_lock(before);
  685. break;
  686. }
  687. if (request->fl_type == F_UNLCK) {
  688. if ((request->fl_flags & FL_EXISTS) && !found)
  689. error = -ENOENT;
  690. goto out;
  691. }
  692. /*
  693. * If a higher-priority process was blocked on the old file lock,
  694. * give it the opportunity to lock the file.
  695. */
  696. if (found) {
  697. unlock_flocks();
  698. cond_resched();
  699. lock_flocks();
  700. }
  701. find_conflict:
  702. for_each_lock(inode, before) {
  703. struct file_lock *fl = *before;
  704. if (IS_POSIX(fl))
  705. break;
  706. if (IS_LEASE(fl))
  707. continue;
  708. if (!flock_locks_conflict(request, fl))
  709. continue;
  710. error = -EAGAIN;
  711. if (!(request->fl_flags & FL_SLEEP))
  712. goto out;
  713. error = FILE_LOCK_DEFERRED;
  714. locks_insert_block(fl, request);
  715. goto out;
  716. }
  717. if (request->fl_flags & FL_ACCESS)
  718. goto out;
  719. locks_copy_lock(new_fl, request);
  720. locks_insert_lock(before, new_fl);
  721. new_fl = NULL;
  722. error = 0;
  723. out:
  724. unlock_flocks();
  725. if (new_fl)
  726. locks_free_lock(new_fl);
  727. return error;
  728. }
  729. static int __posix_lock_file(struct inode *inode, struct file_lock *request, struct file_lock *conflock)
  730. {
  731. struct file_lock *fl;
  732. struct file_lock *new_fl = NULL;
  733. struct file_lock *new_fl2 = NULL;
  734. struct file_lock *left = NULL;
  735. struct file_lock *right = NULL;
  736. struct file_lock **before;
  737. int error, added = 0;
  738. /*
  739. * We may need two file_lock structures for this operation,
  740. * so we get them in advance to avoid races.
  741. *
  742. * In some cases we can be sure, that no new locks will be needed
  743. */
  744. if (!(request->fl_flags & FL_ACCESS) &&
  745. (request->fl_type != F_UNLCK ||
  746. request->fl_start != 0 || request->fl_end != OFFSET_MAX)) {
  747. new_fl = locks_alloc_lock();
  748. new_fl2 = locks_alloc_lock();
  749. }
  750. lock_flocks();
  751. if (request->fl_type != F_UNLCK) {
  752. for_each_lock(inode, before) {
  753. fl = *before;
  754. if (!IS_POSIX(fl))
  755. continue;
  756. if (!posix_locks_conflict(request, fl))
  757. continue;
  758. if (conflock)
  759. __locks_copy_lock(conflock, fl);
  760. error = -EAGAIN;
  761. if (!(request->fl_flags & FL_SLEEP))
  762. goto out;
  763. error = -EDEADLK;
  764. if (posix_locks_deadlock(request, fl))
  765. goto out;
  766. error = FILE_LOCK_DEFERRED;
  767. locks_insert_block(fl, request);
  768. goto out;
  769. }
  770. }
  771. /* If we're just looking for a conflict, we're done. */
  772. error = 0;
  773. if (request->fl_flags & FL_ACCESS)
  774. goto out;
  775. /*
  776. * Find the first old lock with the same owner as the new lock.
  777. */
  778. before = &inode->i_flock;
  779. /* First skip locks owned by other processes. */
  780. while ((fl = *before) && (!IS_POSIX(fl) ||
  781. !posix_same_owner(request, fl))) {
  782. before = &fl->fl_next;
  783. }
  784. /* Process locks with this owner. */
  785. while ((fl = *before) && posix_same_owner(request, fl)) {
  786. /* Detect adjacent or overlapping regions (if same lock type)
  787. */
  788. if (request->fl_type == fl->fl_type) {
  789. /* In all comparisons of start vs end, use
  790. * "start - 1" rather than "end + 1". If end
  791. * is OFFSET_MAX, end + 1 will become negative.
  792. */
  793. if (fl->fl_end < request->fl_start - 1)
  794. goto next_lock;
  795. /* If the next lock in the list has entirely bigger
  796. * addresses than the new one, insert the lock here.
  797. */
  798. if (fl->fl_start - 1 > request->fl_end)
  799. break;
  800. /* If we come here, the new and old lock are of the
  801. * same type and adjacent or overlapping. Make one
  802. * lock yielding from the lower start address of both
  803. * locks to the higher end address.
  804. */
  805. if (fl->fl_start > request->fl_start)
  806. fl->fl_start = request->fl_start;
  807. else
  808. request->fl_start = fl->fl_start;
  809. if (fl->fl_end < request->fl_end)
  810. fl->fl_end = request->fl_end;
  811. else
  812. request->fl_end = fl->fl_end;
  813. if (added) {
  814. locks_delete_lock(before);
  815. continue;
  816. }
  817. request = fl;
  818. added = 1;
  819. }
  820. else {
  821. /* Processing for different lock types is a bit
  822. * more complex.
  823. */
  824. if (fl->fl_end < request->fl_start)
  825. goto next_lock;
  826. if (fl->fl_start > request->fl_end)
  827. break;
  828. if (request->fl_type == F_UNLCK)
  829. added = 1;
  830. if (fl->fl_start < request->fl_start)
  831. left = fl;
  832. /* If the next lock in the list has a higher end
  833. * address than the new one, insert the new one here.
  834. */
  835. if (fl->fl_end > request->fl_end) {
  836. right = fl;
  837. break;
  838. }
  839. if (fl->fl_start >= request->fl_start) {
  840. /* The new lock completely replaces an old
  841. * one (This may happen several times).
  842. */
  843. if (added) {
  844. locks_delete_lock(before);
  845. continue;
  846. }
  847. /* Replace the old lock with the new one.
  848. * Wake up anybody waiting for the old one,
  849. * as the change in lock type might satisfy
  850. * their needs.
  851. */
  852. locks_wake_up_blocks(fl);
  853. fl->fl_start = request->fl_start;
  854. fl->fl_end = request->fl_end;
  855. fl->fl_type = request->fl_type;
  856. locks_release_private(fl);
  857. locks_copy_private(fl, request);
  858. request = fl;
  859. added = 1;
  860. }
  861. }
  862. /* Go on to next lock.
  863. */
  864. next_lock:
  865. before = &fl->fl_next;
  866. }
  867. /*
  868. * The above code only modifies existing locks in case of
  869. * merging or replacing. If new lock(s) need to be inserted
  870. * all modifications are done bellow this, so it's safe yet to
  871. * bail out.
  872. */
  873. error = -ENOLCK; /* "no luck" */
  874. if (right && left == right && !new_fl2)
  875. goto out;
  876. error = 0;
  877. if (!added) {
  878. if (request->fl_type == F_UNLCK) {
  879. if (request->fl_flags & FL_EXISTS)
  880. error = -ENOENT;
  881. goto out;
  882. }
  883. if (!new_fl) {
  884. error = -ENOLCK;
  885. goto out;
  886. }
  887. locks_copy_lock(new_fl, request);
  888. locks_insert_lock(before, new_fl);
  889. new_fl = NULL;
  890. }
  891. if (right) {
  892. if (left == right) {
  893. /* The new lock breaks the old one in two pieces,
  894. * so we have to use the second new lock.
  895. */
  896. left = new_fl2;
  897. new_fl2 = NULL;
  898. locks_copy_lock(left, right);
  899. locks_insert_lock(before, left);
  900. }
  901. right->fl_start = request->fl_end + 1;
  902. locks_wake_up_blocks(right);
  903. }
  904. if (left) {
  905. left->fl_end = request->fl_start - 1;
  906. locks_wake_up_blocks(left);
  907. }
  908. out:
  909. unlock_flocks();
  910. /*
  911. * Free any unused locks.
  912. */
  913. if (new_fl)
  914. locks_free_lock(new_fl);
  915. if (new_fl2)
  916. locks_free_lock(new_fl2);
  917. return error;
  918. }
  919. /**
  920. * posix_lock_file - Apply a POSIX-style lock to a file
  921. * @filp: The file to apply the lock to
  922. * @fl: The lock to be applied
  923. * @conflock: Place to return a copy of the conflicting lock, if found.
  924. *
  925. * Add a POSIX style lock to a file.
  926. * We merge adjacent & overlapping locks whenever possible.
  927. * POSIX locks are sorted by owner task, then by starting address
  928. *
  929. * Note that if called with an FL_EXISTS argument, the caller may determine
  930. * whether or not a lock was successfully freed by testing the return
  931. * value for -ENOENT.
  932. */
  933. int posix_lock_file(struct file *filp, struct file_lock *fl,
  934. struct file_lock *conflock)
  935. {
  936. return __posix_lock_file(filp->f_path.dentry->d_inode, fl, conflock);
  937. }
  938. EXPORT_SYMBOL(posix_lock_file);
  939. /**
  940. * posix_lock_file_wait - Apply a POSIX-style lock to a file
  941. * @filp: The file to apply the lock to
  942. * @fl: The lock to be applied
  943. *
  944. * Add a POSIX style lock to a file.
  945. * We merge adjacent & overlapping locks whenever possible.
  946. * POSIX locks are sorted by owner task, then by starting address
  947. */
  948. int posix_lock_file_wait(struct file *filp, struct file_lock *fl)
  949. {
  950. int error;
  951. might_sleep ();
  952. for (;;) {
  953. error = posix_lock_file(filp, fl, NULL);
  954. if (error != FILE_LOCK_DEFERRED)
  955. break;
  956. error = wait_event_interruptible(fl->fl_wait, !fl->fl_next);
  957. if (!error)
  958. continue;
  959. locks_delete_block(fl);
  960. break;
  961. }
  962. return error;
  963. }
  964. EXPORT_SYMBOL(posix_lock_file_wait);
  965. /**
  966. * locks_mandatory_locked - Check for an active lock
  967. * @inode: the file to check
  968. *
  969. * Searches the inode's list of locks to find any POSIX locks which conflict.
  970. * This function is called from locks_verify_locked() only.
  971. */
  972. int locks_mandatory_locked(struct inode *inode)
  973. {
  974. fl_owner_t owner = current->files;
  975. struct file_lock *fl;
  976. /*
  977. * Search the lock list for this inode for any POSIX locks.
  978. */
  979. lock_flocks();
  980. for (fl = inode->i_flock; fl != NULL; fl = fl->fl_next) {
  981. if (!IS_POSIX(fl))
  982. continue;
  983. if (fl->fl_owner != owner)
  984. break;
  985. }
  986. unlock_flocks();
  987. return fl ? -EAGAIN : 0;
  988. }
  989. /**
  990. * locks_mandatory_area - Check for a conflicting lock
  991. * @read_write: %FLOCK_VERIFY_WRITE for exclusive access, %FLOCK_VERIFY_READ
  992. * for shared
  993. * @inode: the file to check
  994. * @filp: how the file was opened (if it was)
  995. * @offset: start of area to check
  996. * @count: length of area to check
  997. *
  998. * Searches the inode's list of locks to find any POSIX locks which conflict.
  999. * This function is called from rw_verify_area() and
  1000. * locks_verify_truncate().
  1001. */
  1002. int locks_mandatory_area(int read_write, struct inode *inode,
  1003. struct file *filp, loff_t offset,
  1004. size_t count)
  1005. {
  1006. struct file_lock fl;
  1007. int error;
  1008. locks_init_lock(&fl);
  1009. fl.fl_owner = current->files;
  1010. fl.fl_pid = current->tgid;
  1011. fl.fl_file = filp;
  1012. fl.fl_flags = FL_POSIX | FL_ACCESS;
  1013. if (filp && !(filp->f_flags & O_NONBLOCK))
  1014. fl.fl_flags |= FL_SLEEP;
  1015. fl.fl_type = (read_write == FLOCK_VERIFY_WRITE) ? F_WRLCK : F_RDLCK;
  1016. fl.fl_start = offset;
  1017. fl.fl_end = offset + count - 1;
  1018. for (;;) {
  1019. error = __posix_lock_file(inode, &fl, NULL);
  1020. if (error != FILE_LOCK_DEFERRED)
  1021. break;
  1022. error = wait_event_interruptible(fl.fl_wait, !fl.fl_next);
  1023. if (!error) {
  1024. /*
  1025. * If we've been sleeping someone might have
  1026. * changed the permissions behind our back.
  1027. */
  1028. if (__mandatory_lock(inode))
  1029. continue;
  1030. }
  1031. locks_delete_block(&fl);
  1032. break;
  1033. }
  1034. return error;
  1035. }
  1036. EXPORT_SYMBOL(locks_mandatory_area);
  1037. /* We already had a lease on this file; just change its type */
  1038. int lease_modify(struct file_lock **before, int arg)
  1039. {
  1040. struct file_lock *fl = *before;
  1041. int error = assign_type(fl, arg);
  1042. if (error)
  1043. return error;
  1044. locks_wake_up_blocks(fl);
  1045. if (arg == F_UNLCK)
  1046. locks_delete_lock(before);
  1047. return 0;
  1048. }
  1049. EXPORT_SYMBOL(lease_modify);
  1050. static void time_out_leases(struct inode *inode)
  1051. {
  1052. struct file_lock **before;
  1053. struct file_lock *fl;
  1054. before = &inode->i_flock;
  1055. while ((fl = *before) && IS_LEASE(fl) && (fl->fl_type & F_INPROGRESS)) {
  1056. if ((fl->fl_break_time == 0)
  1057. || time_before(jiffies, fl->fl_break_time)) {
  1058. before = &fl->fl_next;
  1059. continue;
  1060. }
  1061. lease_modify(before, fl->fl_type & ~F_INPROGRESS);
  1062. if (fl == *before) /* lease_modify may have freed fl */
  1063. before = &fl->fl_next;
  1064. }
  1065. }
  1066. /**
  1067. * __break_lease - revoke all outstanding leases on file
  1068. * @inode: the inode of the file to return
  1069. * @mode: the open mode (read or write)
  1070. *
  1071. * break_lease (inlined for speed) has checked there already is at least
  1072. * some kind of lock (maybe a lease) on this file. Leases are broken on
  1073. * a call to open() or truncate(). This function can sleep unless you
  1074. * specified %O_NONBLOCK to your open().
  1075. */
  1076. int __break_lease(struct inode *inode, unsigned int mode)
  1077. {
  1078. int error = 0, future;
  1079. struct file_lock *new_fl, *flock;
  1080. struct file_lock *fl;
  1081. unsigned long break_time;
  1082. int i_have_this_lease = 0;
  1083. int want_write = (mode & O_ACCMODE) != O_RDONLY;
  1084. new_fl = lease_alloc(NULL, want_write ? F_WRLCK : F_RDLCK);
  1085. lock_flocks();
  1086. time_out_leases(inode);
  1087. flock = inode->i_flock;
  1088. if ((flock == NULL) || !IS_LEASE(flock))
  1089. goto out;
  1090. for (fl = flock; fl && IS_LEASE(fl); fl = fl->fl_next)
  1091. if (fl->fl_owner == current->files)
  1092. i_have_this_lease = 1;
  1093. if (want_write) {
  1094. /* If we want write access, we have to revoke any lease. */
  1095. future = F_UNLCK | F_INPROGRESS;
  1096. } else if (flock->fl_type & F_INPROGRESS) {
  1097. /* If the lease is already being broken, we just leave it */
  1098. future = flock->fl_type;
  1099. } else if (flock->fl_type & F_WRLCK) {
  1100. /* Downgrade the exclusive lease to a read-only lease. */
  1101. future = F_RDLCK | F_INPROGRESS;
  1102. } else {
  1103. /* the existing lease was read-only, so we can read too. */
  1104. goto out;
  1105. }
  1106. if (IS_ERR(new_fl) && !i_have_this_lease
  1107. && ((mode & O_NONBLOCK) == 0)) {
  1108. error = PTR_ERR(new_fl);
  1109. goto out;
  1110. }
  1111. break_time = 0;
  1112. if (lease_break_time > 0) {
  1113. break_time = jiffies + lease_break_time * HZ;
  1114. if (break_time == 0)
  1115. break_time++; /* so that 0 means no break time */
  1116. }
  1117. for (fl = flock; fl && IS_LEASE(fl); fl = fl->fl_next) {
  1118. if (fl->fl_type != future) {
  1119. fl->fl_type = future;
  1120. fl->fl_break_time = break_time;
  1121. /* lease must have lmops break callback */
  1122. fl->fl_lmops->fl_break(fl);
  1123. }
  1124. }
  1125. if (i_have_this_lease || (mode & O_NONBLOCK)) {
  1126. error = -EWOULDBLOCK;
  1127. goto out;
  1128. }
  1129. restart:
  1130. break_time = flock->fl_break_time;
  1131. if (break_time != 0) {
  1132. break_time -= jiffies;
  1133. if (break_time == 0)
  1134. break_time++;
  1135. }
  1136. locks_insert_block(flock, new_fl);
  1137. unlock_flocks();
  1138. error = wait_event_interruptible_timeout(new_fl->fl_wait,
  1139. !new_fl->fl_next, break_time);
  1140. lock_flocks();
  1141. __locks_delete_block(new_fl);
  1142. if (error >= 0) {
  1143. if (error == 0)
  1144. time_out_leases(inode);
  1145. /* Wait for the next lease that has not been broken yet */
  1146. for (flock = inode->i_flock; flock && IS_LEASE(flock);
  1147. flock = flock->fl_next) {
  1148. if (flock->fl_type & F_INPROGRESS)
  1149. goto restart;
  1150. }
  1151. error = 0;
  1152. }
  1153. out:
  1154. unlock_flocks();
  1155. if (!IS_ERR(new_fl))
  1156. locks_free_lock(new_fl);
  1157. return error;
  1158. }
  1159. EXPORT_SYMBOL(__break_lease);
  1160. /**
  1161. * lease_get_mtime - get the last modified time of an inode
  1162. * @inode: the inode
  1163. * @time: pointer to a timespec which will contain the last modified time
  1164. *
  1165. * This is to force NFS clients to flush their caches for files with
  1166. * exclusive leases. The justification is that if someone has an
  1167. * exclusive lease, then they could be modifying it.
  1168. */
  1169. void lease_get_mtime(struct inode *inode, struct timespec *time)
  1170. {
  1171. struct file_lock *flock = inode->i_flock;
  1172. if (flock && IS_LEASE(flock) && (flock->fl_type & F_WRLCK))
  1173. *time = current_fs_time(inode->i_sb);
  1174. else
  1175. *time = inode->i_mtime;
  1176. }
  1177. EXPORT_SYMBOL(lease_get_mtime);
  1178. /**
  1179. * fcntl_getlease - Enquire what lease is currently active
  1180. * @filp: the file
  1181. *
  1182. * The value returned by this function will be one of
  1183. * (if no lease break is pending):
  1184. *
  1185. * %F_RDLCK to indicate a shared lease is held.
  1186. *
  1187. * %F_WRLCK to indicate an exclusive lease is held.
  1188. *
  1189. * %F_UNLCK to indicate no lease is held.
  1190. *
  1191. * (if a lease break is pending):
  1192. *
  1193. * %F_RDLCK to indicate an exclusive lease needs to be
  1194. * changed to a shared lease (or removed).
  1195. *
  1196. * %F_UNLCK to indicate the lease needs to be removed.
  1197. *
  1198. * XXX: sfr & willy disagree over whether F_INPROGRESS
  1199. * should be returned to userspace.
  1200. */
  1201. int fcntl_getlease(struct file *filp)
  1202. {
  1203. struct file_lock *fl;
  1204. int type = F_UNLCK;
  1205. lock_flocks();
  1206. time_out_leases(filp->f_path.dentry->d_inode);
  1207. for (fl = filp->f_path.dentry->d_inode->i_flock; fl && IS_LEASE(fl);
  1208. fl = fl->fl_next) {
  1209. if (fl->fl_file == filp) {
  1210. type = fl->fl_type & ~F_INPROGRESS;
  1211. break;
  1212. }
  1213. }
  1214. unlock_flocks();
  1215. return type;
  1216. }
  1217. /**
  1218. * generic_setlease - sets a lease on an open file
  1219. * @filp: file pointer
  1220. * @arg: type of lease to obtain
  1221. * @flp: input - file_lock to use, output - file_lock inserted
  1222. *
  1223. * The (input) flp->fl_lmops->fl_break function is required
  1224. * by break_lease().
  1225. *
  1226. * Called with file_lock_lock held.
  1227. */
  1228. int generic_setlease(struct file *filp, long arg, struct file_lock **flp)
  1229. {
  1230. struct file_lock *fl, **before, **my_before = NULL, *lease;
  1231. struct dentry *dentry = filp->f_path.dentry;
  1232. struct inode *inode = dentry->d_inode;
  1233. int error, rdlease_count = 0, wrlease_count = 0;
  1234. lease = *flp;
  1235. error = -EACCES;
  1236. if ((current_fsuid() != inode->i_uid) && !capable(CAP_LEASE))
  1237. goto out;
  1238. error = -EINVAL;
  1239. if (!S_ISREG(inode->i_mode))
  1240. goto out;
  1241. error = security_file_lock(filp, arg);
  1242. if (error)
  1243. goto out;
  1244. time_out_leases(inode);
  1245. BUG_ON(!(*flp)->fl_lmops->fl_break);
  1246. if (arg != F_UNLCK) {
  1247. error = -EAGAIN;
  1248. if ((arg == F_RDLCK) && (atomic_read(&inode->i_writecount) > 0))
  1249. goto out;
  1250. if ((arg == F_WRLCK)
  1251. && ((dentry->d_count > 1)
  1252. || (atomic_read(&inode->i_count) > 1)))
  1253. goto out;
  1254. }
  1255. /*
  1256. * At this point, we know that if there is an exclusive
  1257. * lease on this file, then we hold it on this filp
  1258. * (otherwise our open of this file would have blocked).
  1259. * And if we are trying to acquire an exclusive lease,
  1260. * then the file is not open by anyone (including us)
  1261. * except for this filp.
  1262. */
  1263. for (before = &inode->i_flock;
  1264. ((fl = *before) != NULL) && IS_LEASE(fl);
  1265. before = &fl->fl_next) {
  1266. if (lease->fl_lmops->fl_mylease(fl, lease))
  1267. my_before = before;
  1268. else if (fl->fl_type == (F_INPROGRESS | F_UNLCK))
  1269. /*
  1270. * Someone is in the process of opening this
  1271. * file for writing so we may not take an
  1272. * exclusive lease on it.
  1273. */
  1274. wrlease_count++;
  1275. else
  1276. rdlease_count++;
  1277. }
  1278. error = -EAGAIN;
  1279. if ((arg == F_RDLCK && (wrlease_count > 0)) ||
  1280. (arg == F_WRLCK && ((rdlease_count + wrlease_count) > 0)))
  1281. goto out;
  1282. if (my_before != NULL) {
  1283. error = lease->fl_lmops->fl_change(my_before, arg);
  1284. if (!error)
  1285. *flp = *my_before;
  1286. goto out;
  1287. }
  1288. if (arg == F_UNLCK)
  1289. goto out;
  1290. error = -EINVAL;
  1291. if (!leases_enable)
  1292. goto out;
  1293. locks_insert_lock(before, lease);
  1294. return 0;
  1295. out:
  1296. return error;
  1297. }
  1298. EXPORT_SYMBOL(generic_setlease);
  1299. static int __vfs_setlease(struct file *filp, long arg, struct file_lock **lease)
  1300. {
  1301. if (filp->f_op && filp->f_op->setlease)
  1302. return filp->f_op->setlease(filp, arg, lease);
  1303. else
  1304. return generic_setlease(filp, arg, lease);
  1305. }
  1306. /**
  1307. * vfs_setlease - sets a lease on an open file
  1308. * @filp: file pointer
  1309. * @arg: type of lease to obtain
  1310. * @lease: file_lock to use
  1311. *
  1312. * Call this to establish a lease on the file.
  1313. * The (*lease)->fl_lmops->fl_break operation must be set; if not,
  1314. * break_lease will oops!
  1315. *
  1316. * This will call the filesystem's setlease file method, if
  1317. * defined. Note that there is no getlease method; instead, the
  1318. * filesystem setlease method should call back to setlease() to
  1319. * add a lease to the inode's lease list, where fcntl_getlease() can
  1320. * find it. Since fcntl_getlease() only reports whether the current
  1321. * task holds a lease, a cluster filesystem need only do this for
  1322. * leases held by processes on this node.
  1323. *
  1324. * There is also no break_lease method; filesystems that
  1325. * handle their own leases should break leases themselves from the
  1326. * filesystem's open, create, and (on truncate) setattr methods.
  1327. *
  1328. * Warning: the only current setlease methods exist only to disable
  1329. * leases in certain cases. More vfs changes may be required to
  1330. * allow a full filesystem lease implementation.
  1331. */
  1332. int vfs_setlease(struct file *filp, long arg, struct file_lock **lease)
  1333. {
  1334. int error;
  1335. lock_flocks();
  1336. error = __vfs_setlease(filp, arg, lease);
  1337. unlock_flocks();
  1338. return error;
  1339. }
  1340. EXPORT_SYMBOL_GPL(vfs_setlease);
  1341. static int do_fcntl_delete_lease(struct file *filp)
  1342. {
  1343. struct file_lock fl, *flp = &fl;
  1344. lease_init(filp, F_UNLCK, flp);
  1345. return vfs_setlease(filp, F_UNLCK, &flp);
  1346. }
  1347. static int do_fcntl_add_lease(unsigned int fd, struct file *filp, long arg)
  1348. {
  1349. struct file_lock *fl, *ret;
  1350. struct fasync_struct *new;
  1351. int error;
  1352. fl = lease_alloc(filp, arg);
  1353. if (IS_ERR(fl))
  1354. return PTR_ERR(fl);
  1355. new = fasync_alloc();
  1356. if (!new) {
  1357. locks_free_lock(fl);
  1358. return -ENOMEM;
  1359. }
  1360. ret = fl;
  1361. lock_flocks();
  1362. error = __vfs_setlease(filp, arg, &ret);
  1363. if (error) {
  1364. unlock_flocks();
  1365. locks_free_lock(fl);
  1366. goto out_free_fasync;
  1367. }
  1368. if (ret != fl)
  1369. locks_free_lock(fl);
  1370. /*
  1371. * fasync_insert_entry() returns the old entry if any.
  1372. * If there was no old entry, then it used 'new' and
  1373. * inserted it into the fasync list. Clear new so that
  1374. * we don't release it here.
  1375. */
  1376. if (!fasync_insert_entry(fd, filp, &ret->fl_fasync, new))
  1377. new = NULL;
  1378. error = __f_setown(filp, task_pid(current), PIDTYPE_PID, 0);
  1379. unlock_flocks();
  1380. out_free_fasync:
  1381. if (new)
  1382. fasync_free(new);
  1383. return error;
  1384. }
  1385. /**
  1386. * fcntl_setlease - sets a lease on an open file
  1387. * @fd: open file descriptor
  1388. * @filp: file pointer
  1389. * @arg: type of lease to obtain
  1390. *
  1391. * Call this fcntl to establish a lease on the file.
  1392. * Note that you also need to call %F_SETSIG to
  1393. * receive a signal when the lease is broken.
  1394. */
  1395. int fcntl_setlease(unsigned int fd, struct file *filp, long arg)
  1396. {
  1397. if (arg == F_UNLCK)
  1398. return do_fcntl_delete_lease(filp);
  1399. return do_fcntl_add_lease(fd, filp, arg);
  1400. }
  1401. /**
  1402. * flock_lock_file_wait - Apply a FLOCK-style lock to a file
  1403. * @filp: The file to apply the lock to
  1404. * @fl: The lock to be applied
  1405. *
  1406. * Add a FLOCK style lock to a file.
  1407. */
  1408. int flock_lock_file_wait(struct file *filp, struct file_lock *fl)
  1409. {
  1410. int error;
  1411. might_sleep();
  1412. for (;;) {
  1413. error = flock_lock_file(filp, fl);
  1414. if (error != FILE_LOCK_DEFERRED)
  1415. break;
  1416. error = wait_event_interruptible(fl->fl_wait, !fl->fl_next);
  1417. if (!error)
  1418. continue;
  1419. locks_delete_block(fl);
  1420. break;
  1421. }
  1422. return error;
  1423. }
  1424. EXPORT_SYMBOL(flock_lock_file_wait);
  1425. /**
  1426. * sys_flock: - flock() system call.
  1427. * @fd: the file descriptor to lock.
  1428. * @cmd: the type of lock to apply.
  1429. *
  1430. * Apply a %FL_FLOCK style lock to an open file descriptor.
  1431. * The @cmd can be one of
  1432. *
  1433. * %LOCK_SH -- a shared lock.
  1434. *
  1435. * %LOCK_EX -- an exclusive lock.
  1436. *
  1437. * %LOCK_UN -- remove an existing lock.
  1438. *
  1439. * %LOCK_MAND -- a `mandatory' flock. This exists to emulate Windows Share Modes.
  1440. *
  1441. * %LOCK_MAND can be combined with %LOCK_READ or %LOCK_WRITE to allow other
  1442. * processes read and write access respectively.
  1443. */
  1444. SYSCALL_DEFINE2(flock, unsigned int, fd, unsigned int, cmd)
  1445. {
  1446. struct file *filp;
  1447. struct file_lock *lock;
  1448. int can_sleep, unlock;
  1449. int error;
  1450. error = -EBADF;
  1451. filp = fget(fd);
  1452. if (!filp)
  1453. goto out;
  1454. can_sleep = !(cmd & LOCK_NB);
  1455. cmd &= ~LOCK_NB;
  1456. unlock = (cmd == LOCK_UN);
  1457. if (!unlock && !(cmd & LOCK_MAND) &&
  1458. !(filp->f_mode & (FMODE_READ|FMODE_WRITE)))
  1459. goto out_putf;
  1460. error = flock_make_lock(filp, &lock, cmd);
  1461. if (error)
  1462. goto out_putf;
  1463. if (can_sleep)
  1464. lock->fl_flags |= FL_SLEEP;
  1465. error = security_file_lock(filp, lock->fl_type);
  1466. if (error)
  1467. goto out_free;
  1468. if (filp->f_op && filp->f_op->flock)
  1469. error = filp->f_op->flock(filp,
  1470. (can_sleep) ? F_SETLKW : F_SETLK,
  1471. lock);
  1472. else
  1473. error = flock_lock_file_wait(filp, lock);
  1474. out_free:
  1475. locks_free_lock(lock);
  1476. out_putf:
  1477. fput(filp);
  1478. out:
  1479. return error;
  1480. }
  1481. /**
  1482. * vfs_test_lock - test file byte range lock
  1483. * @filp: The file to test lock for
  1484. * @fl: The lock to test; also used to hold result
  1485. *
  1486. * Returns -ERRNO on failure. Indicates presence of conflicting lock by
  1487. * setting conf->fl_type to something other than F_UNLCK.
  1488. */
  1489. int vfs_test_lock(struct file *filp, struct file_lock *fl)
  1490. {
  1491. if (filp->f_op && filp->f_op->lock)
  1492. return filp->f_op->lock(filp, F_GETLK, fl);
  1493. posix_test_lock(filp, fl);
  1494. return 0;
  1495. }
  1496. EXPORT_SYMBOL_GPL(vfs_test_lock);
  1497. static int posix_lock_to_flock(struct flock *flock, struct file_lock *fl)
  1498. {
  1499. flock->l_pid = fl->fl_pid;
  1500. #if BITS_PER_LONG == 32
  1501. /*
  1502. * Make sure we can represent the posix lock via
  1503. * legacy 32bit flock.
  1504. */
  1505. if (fl->fl_start > OFFT_OFFSET_MAX)
  1506. return -EOVERFLOW;
  1507. if (fl->fl_end != OFFSET_MAX && fl->fl_end > OFFT_OFFSET_MAX)
  1508. return -EOVERFLOW;
  1509. #endif
  1510. flock->l_start = fl->fl_start;
  1511. flock->l_len = fl->fl_end == OFFSET_MAX ? 0 :
  1512. fl->fl_end - fl->fl_start + 1;
  1513. flock->l_whence = 0;
  1514. flock->l_type = fl->fl_type;
  1515. return 0;
  1516. }
  1517. #if BITS_PER_LONG == 32
  1518. static void posix_lock_to_flock64(struct flock64 *flock, struct file_lock *fl)
  1519. {
  1520. flock->l_pid = fl->fl_pid;
  1521. flock->l_start = fl->fl_start;
  1522. flock->l_len = fl->fl_end == OFFSET_MAX ? 0 :
  1523. fl->fl_end - fl->fl_start + 1;
  1524. flock->l_whence = 0;
  1525. flock->l_type = fl->fl_type;
  1526. }
  1527. #endif
  1528. /* Report the first existing lock that would conflict with l.
  1529. * This implements the F_GETLK command of fcntl().
  1530. */
  1531. int fcntl_getlk(struct file *filp, struct flock __user *l)
  1532. {
  1533. struct file_lock file_lock;
  1534. struct flock flock;
  1535. int error;
  1536. error = -EFAULT;
  1537. if (copy_from_user(&flock, l, sizeof(flock)))
  1538. goto out;
  1539. error = -EINVAL;
  1540. if ((flock.l_type != F_RDLCK) && (flock.l_type != F_WRLCK))
  1541. goto out;
  1542. error = flock_to_posix_lock(filp, &file_lock, &flock);
  1543. if (error)
  1544. goto out;
  1545. error = vfs_test_lock(filp, &file_lock);
  1546. if (error)
  1547. goto out;
  1548. flock.l_type = file_lock.fl_type;
  1549. if (file_lock.fl_type != F_UNLCK) {
  1550. error = posix_lock_to_flock(&flock, &file_lock);
  1551. if (error)
  1552. goto out;
  1553. }
  1554. error = -EFAULT;
  1555. if (!copy_to_user(l, &flock, sizeof(flock)))
  1556. error = 0;
  1557. out:
  1558. return error;
  1559. }
  1560. /**
  1561. * vfs_lock_file - file byte range lock
  1562. * @filp: The file to apply the lock to
  1563. * @cmd: type of locking operation (F_SETLK, F_GETLK, etc.)
  1564. * @fl: The lock to be applied
  1565. * @conf: Place to return a copy of the conflicting lock, if found.
  1566. *
  1567. * A caller that doesn't care about the conflicting lock may pass NULL
  1568. * as the final argument.
  1569. *
  1570. * If the filesystem defines a private ->lock() method, then @conf will
  1571. * be left unchanged; so a caller that cares should initialize it to
  1572. * some acceptable default.
  1573. *
  1574. * To avoid blocking kernel daemons, such as lockd, that need to acquire POSIX
  1575. * locks, the ->lock() interface may return asynchronously, before the lock has
  1576. * been granted or denied by the underlying filesystem, if (and only if)
  1577. * fl_grant is set. Callers expecting ->lock() to return asynchronously
  1578. * will only use F_SETLK, not F_SETLKW; they will set FL_SLEEP if (and only if)
  1579. * the request is for a blocking lock. When ->lock() does return asynchronously,
  1580. * it must return FILE_LOCK_DEFERRED, and call ->fl_grant() when the lock
  1581. * request completes.
  1582. * If the request is for non-blocking lock the file system should return
  1583. * FILE_LOCK_DEFERRED then try to get the lock and call the callback routine
  1584. * with the result. If the request timed out the callback routine will return a
  1585. * nonzero return code and the file system should release the lock. The file
  1586. * system is also responsible to keep a corresponding posix lock when it
  1587. * grants a lock so the VFS can find out which locks are locally held and do
  1588. * the correct lock cleanup when required.
  1589. * The underlying filesystem must not drop the kernel lock or call
  1590. * ->fl_grant() before returning to the caller with a FILE_LOCK_DEFERRED
  1591. * return code.
  1592. */
  1593. int vfs_lock_file(struct file *filp, unsigned int cmd, struct file_lock *fl, struct file_lock *conf)
  1594. {
  1595. if (filp->f_op && filp->f_op->lock)
  1596. return filp->f_op->lock(filp, cmd, fl);
  1597. else
  1598. return posix_lock_file(filp, fl, conf);
  1599. }
  1600. EXPORT_SYMBOL_GPL(vfs_lock_file);
  1601. static int do_lock_file_wait(struct file *filp, unsigned int cmd,
  1602. struct file_lock *fl)
  1603. {
  1604. int error;
  1605. error = security_file_lock(filp, fl->fl_type);
  1606. if (error)
  1607. return error;
  1608. for (;;) {
  1609. error = vfs_lock_file(filp, cmd, fl, NULL);
  1610. if (error != FILE_LOCK_DEFERRED)
  1611. break;
  1612. error = wait_event_interruptible(fl->fl_wait, !fl->fl_next);
  1613. if (!error)
  1614. continue;
  1615. locks_delete_block(fl);
  1616. break;
  1617. }
  1618. return error;
  1619. }
  1620. /* Apply the lock described by l to an open file descriptor.
  1621. * This implements both the F_SETLK and F_SETLKW commands of fcntl().
  1622. */
  1623. int fcntl_setlk(unsigned int fd, struct file *filp, unsigned int cmd,
  1624. struct flock __user *l)
  1625. {
  1626. struct file_lock *file_lock = locks_alloc_lock();
  1627. struct flock flock;
  1628. struct inode *inode;
  1629. struct file *f;
  1630. int error;
  1631. if (file_lock == NULL)
  1632. return -ENOLCK;
  1633. /*
  1634. * This might block, so we do it before checking the inode.
  1635. */
  1636. error = -EFAULT;
  1637. if (copy_from_user(&flock, l, sizeof(flock)))
  1638. goto out;
  1639. inode = filp->f_path.dentry->d_inode;
  1640. /* Don't allow mandatory locks on files that may be memory mapped
  1641. * and shared.
  1642. */
  1643. if (mandatory_lock(inode) && mapping_writably_mapped(filp->f_mapping)) {
  1644. error = -EAGAIN;
  1645. goto out;
  1646. }
  1647. again:
  1648. error = flock_to_posix_lock(filp, file_lock, &flock);
  1649. if (error)
  1650. goto out;
  1651. if (cmd == F_SETLKW) {
  1652. file_lock->fl_flags |= FL_SLEEP;
  1653. }
  1654. error = -EBADF;
  1655. switch (flock.l_type) {
  1656. case F_RDLCK:
  1657. if (!(filp->f_mode & FMODE_READ))
  1658. goto out;
  1659. break;
  1660. case F_WRLCK:
  1661. if (!(filp->f_mode & FMODE_WRITE))
  1662. goto out;
  1663. break;
  1664. case F_UNLCK:
  1665. break;
  1666. default:
  1667. error = -EINVAL;
  1668. goto out;
  1669. }
  1670. error = do_lock_file_wait(filp, cmd, file_lock);
  1671. /*
  1672. * Attempt to detect a close/fcntl race and recover by
  1673. * releasing the lock that was just acquired.
  1674. */
  1675. /*
  1676. * we need that spin_lock here - it prevents reordering between
  1677. * update of inode->i_flock and check for it done in close().
  1678. * rcu_read_lock() wouldn't do.
  1679. */
  1680. spin_lock(&current->files->file_lock);
  1681. f = fcheck(fd);
  1682. spin_unlock(&current->files->file_lock);
  1683. if (!error && f != filp && flock.l_type != F_UNLCK) {
  1684. flock.l_type = F_UNLCK;
  1685. goto again;
  1686. }
  1687. out:
  1688. locks_free_lock(file_lock);
  1689. return error;
  1690. }
  1691. #if BITS_PER_LONG == 32
  1692. /* Report the first existing lock that would conflict with l.
  1693. * This implements the F_GETLK command of fcntl().
  1694. */
  1695. int fcntl_getlk64(struct file *filp, struct flock64 __user *l)
  1696. {
  1697. struct file_lock file_lock;
  1698. struct flock64 flock;
  1699. int error;
  1700. error = -EFAULT;
  1701. if (copy_from_user(&flock, l, sizeof(flock)))
  1702. goto out;
  1703. error = -EINVAL;
  1704. if ((flock.l_type != F_RDLCK) && (flock.l_type != F_WRLCK))
  1705. goto out;
  1706. error = flock64_to_posix_lock(filp, &file_lock, &flock);
  1707. if (error)
  1708. goto out;
  1709. error = vfs_test_lock(filp, &file_lock);
  1710. if (error)
  1711. goto out;
  1712. flock.l_type = file_lock.fl_type;
  1713. if (file_lock.fl_type != F_UNLCK)
  1714. posix_lock_to_flock64(&flock, &file_lock);
  1715. error = -EFAULT;
  1716. if (!copy_to_user(l, &flock, sizeof(flock)))
  1717. error = 0;
  1718. out:
  1719. return error;
  1720. }
  1721. /* Apply the lock described by l to an open file descriptor.
  1722. * This implements both the F_SETLK and F_SETLKW commands of fcntl().
  1723. */
  1724. int fcntl_setlk64(unsigned int fd, struct file *filp, unsigned int cmd,
  1725. struct flock64 __user *l)
  1726. {
  1727. struct file_lock *file_lock = locks_alloc_lock();
  1728. struct flock64 flock;
  1729. struct inode *inode;
  1730. struct file *f;
  1731. int error;
  1732. if (file_lock == NULL)
  1733. return -ENOLCK;
  1734. /*
  1735. * This might block, so we do it before checking the inode.
  1736. */
  1737. error = -EFAULT;
  1738. if (copy_from_user(&flock, l, sizeof(flock)))
  1739. goto out;
  1740. inode = filp->f_path.dentry->d_inode;
  1741. /* Don't allow mandatory locks on files that may be memory mapped
  1742. * and shared.
  1743. */
  1744. if (mandatory_lock(inode) && mapping_writably_mapped(filp->f_mapping)) {
  1745. error = -EAGAIN;
  1746. goto out;
  1747. }
  1748. again:
  1749. error = flock64_to_posix_lock(filp, file_lock, &flock);
  1750. if (error)
  1751. goto out;
  1752. if (cmd == F_SETLKW64) {
  1753. file_lock->fl_flags |= FL_SLEEP;
  1754. }
  1755. error = -EBADF;
  1756. switch (flock.l_type) {
  1757. case F_RDLCK:
  1758. if (!(filp->f_mode & FMODE_READ))
  1759. goto out;
  1760. break;
  1761. case F_WRLCK:
  1762. if (!(filp->f_mode & FMODE_WRITE))
  1763. goto out;
  1764. break;
  1765. case F_UNLCK:
  1766. break;
  1767. default:
  1768. error = -EINVAL;
  1769. goto out;
  1770. }
  1771. error = do_lock_file_wait(filp, cmd, file_lock);
  1772. /*
  1773. * Attempt to detect a close/fcntl race and recover by
  1774. * releasing the lock that was just acquired.
  1775. */
  1776. spin_lock(&current->files->file_lock);
  1777. f = fcheck(fd);
  1778. spin_unlock(&current->files->file_lock);
  1779. if (!error && f != filp && flock.l_type != F_UNLCK) {
  1780. flock.l_type = F_UNLCK;
  1781. goto again;
  1782. }
  1783. out:
  1784. locks_free_lock(file_lock);
  1785. return error;
  1786. }
  1787. #endif /* BITS_PER_LONG == 32 */
  1788. /*
  1789. * This function is called when the file is being removed
  1790. * from the task's fd array. POSIX locks belonging to this task
  1791. * are deleted at this time.
  1792. */
  1793. void locks_remove_posix(struct file *filp, fl_owner_t owner)
  1794. {
  1795. struct file_lock lock;
  1796. /*
  1797. * If there are no locks held on this file, we don't need to call
  1798. * posix_lock_file(). Another process could be setting a lock on this
  1799. * file at the same time, but we wouldn't remove that lock anyway.
  1800. */
  1801. if (!filp->f_path.dentry->d_inode->i_flock)
  1802. return;
  1803. lock.fl_type = F_UNLCK;
  1804. lock.fl_flags = FL_POSIX | FL_CLOSE;
  1805. lock.fl_start = 0;
  1806. lock.fl_end = OFFSET_MAX;
  1807. lock.fl_owner = owner;
  1808. lock.fl_pid = current->tgid;
  1809. lock.fl_file = filp;
  1810. lock.fl_ops = NULL;
  1811. lock.fl_lmops = NULL;
  1812. vfs_lock_file(filp, F_SETLK, &lock, NULL);
  1813. if (lock.fl_ops && lock.fl_ops->fl_release_private)
  1814. lock.fl_ops->fl_release_private(&lock);
  1815. }
  1816. EXPORT_SYMBOL(locks_remove_posix);
  1817. /*
  1818. * This function is called on the last close of an open file.
  1819. */
  1820. void locks_remove_flock(struct file *filp)
  1821. {
  1822. struct inode * inode = filp->f_path.dentry->d_inode;
  1823. struct file_lock *fl;
  1824. struct file_lock **before;
  1825. if (!inode->i_flock)
  1826. return;
  1827. if (filp->f_op && filp->f_op->flock) {
  1828. struct file_lock fl = {
  1829. .fl_pid = current->tgid,
  1830. .fl_file = filp,
  1831. .fl_flags = FL_FLOCK,
  1832. .fl_type = F_UNLCK,
  1833. .fl_end = OFFSET_MAX,
  1834. };
  1835. filp->f_op->flock(filp, F_SETLKW, &fl);
  1836. if (fl.fl_ops && fl.fl_ops->fl_release_private)
  1837. fl.fl_ops->fl_release_private(&fl);
  1838. }
  1839. lock_flocks();
  1840. before = &inode->i_flock;
  1841. while ((fl = *before) != NULL) {
  1842. if (fl->fl_file == filp) {
  1843. if (IS_FLOCK(fl)) {
  1844. locks_delete_lock(before);
  1845. continue;
  1846. }
  1847. if (IS_LEASE(fl)) {
  1848. lease_modify(before, F_UNLCK);
  1849. continue;
  1850. }
  1851. /* What? */
  1852. BUG();
  1853. }
  1854. before = &fl->fl_next;
  1855. }
  1856. unlock_flocks();
  1857. }
  1858. /**
  1859. * posix_unblock_lock - stop waiting for a file lock
  1860. * @filp: how the file was opened
  1861. * @waiter: the lock which was waiting
  1862. *
  1863. * lockd needs to block waiting for locks.
  1864. */
  1865. int
  1866. posix_unblock_lock(struct file *filp, struct file_lock *waiter)
  1867. {
  1868. int status = 0;
  1869. lock_flocks();
  1870. if (waiter->fl_next)
  1871. __locks_delete_block(waiter);
  1872. else
  1873. status = -ENOENT;
  1874. unlock_flocks();
  1875. return status;
  1876. }
  1877. EXPORT_SYMBOL(posix_unblock_lock);
  1878. /**
  1879. * vfs_cancel_lock - file byte range unblock lock
  1880. * @filp: The file to apply the unblock to
  1881. * @fl: The lock to be unblocked
  1882. *
  1883. * Used by lock managers to cancel blocked requests
  1884. */
  1885. int vfs_cancel_lock(struct file *filp, struct file_lock *fl)
  1886. {
  1887. if (filp->f_op && filp->f_op->lock)
  1888. return filp->f_op->lock(filp, F_CANCELLK, fl);
  1889. return 0;
  1890. }
  1891. EXPORT_SYMBOL_GPL(vfs_cancel_lock);
  1892. #ifdef CONFIG_PROC_FS
  1893. #include <linux/proc_fs.h>
  1894. #include <linux/seq_file.h>
  1895. static void lock_get_status(struct seq_file *f, struct file_lock *fl,
  1896. loff_t id, char *pfx)
  1897. {
  1898. struct inode *inode = NULL;
  1899. unsigned int fl_pid;
  1900. if (fl->fl_nspid)
  1901. fl_pid = pid_vnr(fl->fl_nspid);
  1902. else
  1903. fl_pid = fl->fl_pid;
  1904. if (fl->fl_file != NULL)
  1905. inode = fl->fl_file->f_path.dentry->d_inode;
  1906. seq_printf(f, "%lld:%s ", id, pfx);
  1907. if (IS_POSIX(fl)) {
  1908. seq_printf(f, "%6s %s ",
  1909. (fl->fl_flags & FL_ACCESS) ? "ACCESS" : "POSIX ",
  1910. (inode == NULL) ? "*NOINODE*" :
  1911. mandatory_lock(inode) ? "MANDATORY" : "ADVISORY ");
  1912. } else if (IS_FLOCK(fl)) {
  1913. if (fl->fl_type & LOCK_MAND) {
  1914. seq_printf(f, "FLOCK MSNFS ");
  1915. } else {
  1916. seq_printf(f, "FLOCK ADVISORY ");
  1917. }
  1918. } else if (IS_LEASE(fl)) {
  1919. seq_printf(f, "LEASE ");
  1920. if (fl->fl_type & F_INPROGRESS)
  1921. seq_printf(f, "BREAKING ");
  1922. else if (fl->fl_file)
  1923. seq_printf(f, "ACTIVE ");
  1924. else
  1925. seq_printf(f, "BREAKER ");
  1926. } else {
  1927. seq_printf(f, "UNKNOWN UNKNOWN ");
  1928. }
  1929. if (fl->fl_type & LOCK_MAND) {
  1930. seq_printf(f, "%s ",
  1931. (fl->fl_type & LOCK_READ)
  1932. ? (fl->fl_type & LOCK_WRITE) ? "RW " : "READ "
  1933. : (fl->fl_type & LOCK_WRITE) ? "WRITE" : "NONE ");
  1934. } else {
  1935. seq_printf(f, "%s ",
  1936. (fl->fl_type & F_INPROGRESS)
  1937. ? (fl->fl_type & F_UNLCK) ? "UNLCK" : "READ "
  1938. : (fl->fl_type & F_WRLCK) ? "WRITE" : "READ ");
  1939. }
  1940. if (inode) {
  1941. #ifdef WE_CAN_BREAK_LSLK_NOW
  1942. seq_printf(f, "%d %s:%ld ", fl_pid,
  1943. inode->i_sb->s_id, inode->i_ino);
  1944. #else
  1945. /* userspace relies on this representation of dev_t ;-( */
  1946. seq_printf(f, "%d %02x:%02x:%ld ", fl_pid,
  1947. MAJOR(inode->i_sb->s_dev),
  1948. MINOR(inode->i_sb->s_dev), inode->i_ino);
  1949. #endif
  1950. } else {
  1951. seq_printf(f, "%d <none>:0 ", fl_pid);
  1952. }
  1953. if (IS_POSIX(fl)) {
  1954. if (fl->fl_end == OFFSET_MAX)
  1955. seq_printf(f, "%Ld EOF\n", fl->fl_start);
  1956. else
  1957. seq_printf(f, "%Ld %Ld\n", fl->fl_start, fl->fl_end);
  1958. } else {
  1959. seq_printf(f, "0 EOF\n");
  1960. }
  1961. }
  1962. static int locks_show(struct seq_file *f, void *v)
  1963. {
  1964. struct file_lock *fl, *bfl;
  1965. fl = list_entry(v, struct file_lock, fl_link);
  1966. lock_get_status(f, fl, *((loff_t *)f->private), "");
  1967. list_for_each_entry(bfl, &fl->fl_block, fl_block)
  1968. lock_get_status(f, bfl, *((loff_t *)f->private), " ->");
  1969. return 0;
  1970. }
  1971. static void *locks_start(struct seq_file *f, loff_t *pos)
  1972. {
  1973. loff_t *p = f->private;
  1974. lock_flocks();
  1975. *p = (*pos + 1);
  1976. return seq_list_start(&file_lock_list, *pos);
  1977. }
  1978. static void *locks_next(struct seq_file *f, void *v, loff_t *pos)
  1979. {
  1980. loff_t *p = f->private;
  1981. ++*p;
  1982. return seq_list_next(v, &file_lock_list, pos);
  1983. }
  1984. static void locks_stop(struct seq_file *f, void *v)
  1985. {
  1986. unlock_flocks();
  1987. }
  1988. static const struct seq_operations locks_seq_operations = {
  1989. .start = locks_start,
  1990. .next = locks_next,
  1991. .stop = locks_stop,
  1992. .show = locks_show,
  1993. };
  1994. static int locks_open(struct inode *inode, struct file *filp)
  1995. {
  1996. return seq_open_private(filp, &locks_seq_operations, sizeof(loff_t));
  1997. }
  1998. static const struct file_operations proc_locks_operations = {
  1999. .open = locks_open,
  2000. .read = seq_read,
  2001. .llseek = seq_lseek,
  2002. .release = seq_release_private,
  2003. };
  2004. static int __init proc_locks_init(void)
  2005. {
  2006. proc_create("locks", 0, NULL, &proc_locks_operations);
  2007. return 0;
  2008. }
  2009. module_init(proc_locks_init);
  2010. #endif
  2011. /**
  2012. * lock_may_read - checks that the region is free of locks
  2013. * @inode: the inode that is being read
  2014. * @start: the first byte to read
  2015. * @len: the number of bytes to read
  2016. *
  2017. * Emulates Windows locking requirements. Whole-file
  2018. * mandatory locks (share modes) can prohibit a read and
  2019. * byte-range POSIX locks can prohibit a read if they overlap.
  2020. *
  2021. * N.B. this function is only ever called
  2022. * from knfsd and ownership of locks is never checked.
  2023. */
  2024. int lock_may_read(struct inode *inode, loff_t start, unsigned long len)
  2025. {
  2026. struct file_lock *fl;
  2027. int result = 1;
  2028. lock_flocks();
  2029. for (fl = inode->i_flock; fl != NULL; fl = fl->fl_next) {
  2030. if (IS_POSIX(fl)) {
  2031. if (fl->fl_type == F_RDLCK)
  2032. continue;
  2033. if ((fl->fl_end < start) || (fl->fl_start > (start + len)))
  2034. continue;
  2035. } else if (IS_FLOCK(fl)) {
  2036. if (!(fl->fl_type & LOCK_MAND))
  2037. continue;
  2038. if (fl->fl_type & LOCK_READ)
  2039. continue;
  2040. } else
  2041. continue;
  2042. result = 0;
  2043. break;
  2044. }
  2045. unlock_flocks();
  2046. return result;
  2047. }
  2048. EXPORT_SYMBOL(lock_may_read);
  2049. /**
  2050. * lock_may_write - checks that the region is free of locks
  2051. * @inode: the inode that is being written
  2052. * @start: the first byte to write
  2053. * @len: the number of bytes to write
  2054. *
  2055. * Emulates Windows locking requirements. Whole-file
  2056. * mandatory locks (share modes) can prohibit a write and
  2057. * byte-range POSIX locks can prohibit a write if they overlap.
  2058. *
  2059. * N.B. this function is only ever called
  2060. * from knfsd and ownership of locks is never checked.
  2061. */
  2062. int lock_may_write(struct inode *inode, loff_t start, unsigned long len)
  2063. {
  2064. struct file_lock *fl;
  2065. int result = 1;
  2066. lock_flocks();
  2067. for (fl = inode->i_flock; fl != NULL; fl = fl->fl_next) {
  2068. if (IS_POSIX(fl)) {
  2069. if ((fl->fl_end < start) || (fl->fl_start > (start + len)))
  2070. continue;
  2071. } else if (IS_FLOCK(fl)) {
  2072. if (!(fl->fl_type & LOCK_MAND))
  2073. continue;
  2074. if (fl->fl_type & LOCK_WRITE)
  2075. continue;
  2076. } else
  2077. continue;
  2078. result = 0;
  2079. break;
  2080. }
  2081. unlock_flocks();
  2082. return result;
  2083. }
  2084. EXPORT_SYMBOL(lock_may_write);
  2085. static int __init filelock_init(void)
  2086. {
  2087. filelock_cache = kmem_cache_create("file_lock_cache",
  2088. sizeof(struct file_lock), 0, SLAB_PANIC,
  2089. init_once);
  2090. return 0;
  2091. }
  2092. core_initcall(filelock_init);