]> bbs.cooldavid.org Git - net-next-2.6.git/blame - fs/locks.c
locks: prevent ENOMEM on lease unlock
[net-next-2.6.git] / fs / locks.c
CommitLineData
1da177e4
LT
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
117#include <linux/capability.h>
118#include <linux/file.h>
9f3acc31 119#include <linux/fdtable.h>
1da177e4
LT
120#include <linux/fs.h>
121#include <linux/init.h>
122#include <linux/module.h>
123#include <linux/security.h>
124#include <linux/slab.h>
125#include <linux/smp_lock.h>
126#include <linux/syscalls.h>
127#include <linux/time.h>
4fb3a538 128#include <linux/rcupdate.h>
ab1f1611 129#include <linux/pid_namespace.h>
1da177e4 130
1da177e4
LT
131#include <asm/uaccess.h>
132
133#define IS_POSIX(fl) (fl->fl_flags & FL_POSIX)
134#define IS_FLOCK(fl) (fl->fl_flags & FL_FLOCK)
135#define IS_LEASE(fl) (fl->fl_flags & FL_LEASE)
136
137int leases_enable = 1;
138int lease_break_time = 45;
139
140#define for_each_lock(inode, lockp) \
141 for (lockp = &inode->i_flock; *lockp != NULL; lockp = &(*lockp)->fl_next)
142
26bcbf96 143static LIST_HEAD(file_lock_list);
1da177e4 144static LIST_HEAD(blocked_list);
72f98e72 145static DEFINE_SPINLOCK(file_lock_lock);
1da177e4 146
b89f4321
AB
147/*
148 * Protects the two list heads above, plus the inode->i_flock list
149 * FIXME: should use a spinlock, once lockd and ceph are ready.
150 */
151void lock_flocks(void)
152{
72f98e72 153 spin_lock(&file_lock_lock);
b89f4321
AB
154}
155EXPORT_SYMBOL_GPL(lock_flocks);
156
157void unlock_flocks(void)
158{
72f98e72 159 spin_unlock(&file_lock_lock);
b89f4321
AB
160}
161EXPORT_SYMBOL_GPL(unlock_flocks);
162
e18b890b 163static struct kmem_cache *filelock_cache __read_mostly;
1da177e4
LT
164
165/* Allocate an empty lock structure. */
c5b1f0d9 166struct file_lock *locks_alloc_lock(void)
1da177e4 167{
e94b1766 168 return kmem_cache_alloc(filelock_cache, GFP_KERNEL);
1da177e4 169}
c5b1f0d9 170EXPORT_SYMBOL_GPL(locks_alloc_lock);
1da177e4 171
a9e61e25 172void locks_release_private(struct file_lock *fl)
47831f35
TM
173{
174 if (fl->fl_ops) {
175 if (fl->fl_ops->fl_release_private)
176 fl->fl_ops->fl_release_private(fl);
177 fl->fl_ops = NULL;
178 }
179 if (fl->fl_lmops) {
180 if (fl->fl_lmops->fl_release_private)
181 fl->fl_lmops->fl_release_private(fl);
182 fl->fl_lmops = NULL;
183 }
184
185}
a9e61e25 186EXPORT_SYMBOL_GPL(locks_release_private);
47831f35 187
1da177e4 188/* Free a lock which is not in use. */
33443c42 189static void locks_free_lock(struct file_lock *fl)
1da177e4 190{
5ce29646
MS
191 BUG_ON(waitqueue_active(&fl->fl_wait));
192 BUG_ON(!list_empty(&fl->fl_block));
193 BUG_ON(!list_empty(&fl->fl_link));
1da177e4 194
47831f35 195 locks_release_private(fl);
1da177e4
LT
196 kmem_cache_free(filelock_cache, fl);
197}
198
199void locks_init_lock(struct file_lock *fl)
200{
201 INIT_LIST_HEAD(&fl->fl_link);
202 INIT_LIST_HEAD(&fl->fl_block);
203 init_waitqueue_head(&fl->fl_wait);
204 fl->fl_next = NULL;
205 fl->fl_fasync = NULL;
206 fl->fl_owner = NULL;
207 fl->fl_pid = 0;
ab1f1611 208 fl->fl_nspid = NULL;
1da177e4
LT
209 fl->fl_file = NULL;
210 fl->fl_flags = 0;
211 fl->fl_type = 0;
212 fl->fl_start = fl->fl_end = 0;
213 fl->fl_ops = NULL;
214 fl->fl_lmops = NULL;
215}
216
217EXPORT_SYMBOL(locks_init_lock);
218
219/*
220 * Initialises the fields of the file lock which are invariant for
221 * free file_locks.
222 */
51cc5068 223static void init_once(void *foo)
1da177e4
LT
224{
225 struct file_lock *lock = (struct file_lock *) foo;
226
1da177e4
LT
227 locks_init_lock(lock);
228}
229
47831f35
TM
230static void locks_copy_private(struct file_lock *new, struct file_lock *fl)
231{
232 if (fl->fl_ops) {
233 if (fl->fl_ops->fl_copy_lock)
234 fl->fl_ops->fl_copy_lock(new, fl);
235 new->fl_ops = fl->fl_ops;
236 }
237 if (fl->fl_lmops) {
238 if (fl->fl_lmops->fl_copy_lock)
239 fl->fl_lmops->fl_copy_lock(new, fl);
240 new->fl_lmops = fl->fl_lmops;
241 }
242}
243
1da177e4
LT
244/*
245 * Initialize a new lock from an existing file_lock structure.
246 */
1a747ee0 247void __locks_copy_lock(struct file_lock *new, const struct file_lock *fl)
1da177e4
LT
248{
249 new->fl_owner = fl->fl_owner;
250 new->fl_pid = fl->fl_pid;
0996905f 251 new->fl_file = NULL;
1da177e4
LT
252 new->fl_flags = fl->fl_flags;
253 new->fl_type = fl->fl_type;
254 new->fl_start = fl->fl_start;
255 new->fl_end = fl->fl_end;
0996905f
TM
256 new->fl_ops = NULL;
257 new->fl_lmops = NULL;
258}
3dd7b71c 259EXPORT_SYMBOL(__locks_copy_lock);
0996905f
TM
260
261void locks_copy_lock(struct file_lock *new, struct file_lock *fl)
262{
263 locks_release_private(new);
264
265 __locks_copy_lock(new, fl);
266 new->fl_file = fl->fl_file;
1da177e4
LT
267 new->fl_ops = fl->fl_ops;
268 new->fl_lmops = fl->fl_lmops;
47831f35
TM
269
270 locks_copy_private(new, fl);
1da177e4
LT
271}
272
273EXPORT_SYMBOL(locks_copy_lock);
274
275static inline int flock_translate_cmd(int cmd) {
276 if (cmd & LOCK_MAND)
277 return cmd & (LOCK_MAND | LOCK_RW);
278 switch (cmd) {
279 case LOCK_SH:
280 return F_RDLCK;
281 case LOCK_EX:
282 return F_WRLCK;
283 case LOCK_UN:
284 return F_UNLCK;
285 }
286 return -EINVAL;
287}
288
289/* Fill in a file_lock structure with an appropriate FLOCK lock. */
290static int flock_make_lock(struct file *filp, struct file_lock **lock,
291 unsigned int cmd)
292{
293 struct file_lock *fl;
294 int type = flock_translate_cmd(cmd);
295 if (type < 0)
296 return type;
297
298 fl = locks_alloc_lock();
299 if (fl == NULL)
300 return -ENOMEM;
301
302 fl->fl_file = filp;
303 fl->fl_pid = current->tgid;
304 fl->fl_flags = FL_FLOCK;
305 fl->fl_type = type;
306 fl->fl_end = OFFSET_MAX;
307
308 *lock = fl;
309 return 0;
310}
311
312static int assign_type(struct file_lock *fl, int type)
313{
314 switch (type) {
315 case F_RDLCK:
316 case F_WRLCK:
317 case F_UNLCK:
318 fl->fl_type = type;
319 break;
320 default:
321 return -EINVAL;
322 }
323 return 0;
324}
325
326/* Verify a "struct flock" and copy it to a "struct file_lock" as a POSIX
327 * style lock.
328 */
329static int flock_to_posix_lock(struct file *filp, struct file_lock *fl,
330 struct flock *l)
331{
332 off_t start, end;
333
334 switch (l->l_whence) {
f5579f8c 335 case SEEK_SET:
1da177e4
LT
336 start = 0;
337 break;
f5579f8c 338 case SEEK_CUR:
1da177e4
LT
339 start = filp->f_pos;
340 break;
f5579f8c 341 case SEEK_END:
0f7fc9e4 342 start = i_size_read(filp->f_path.dentry->d_inode);
1da177e4
LT
343 break;
344 default:
345 return -EINVAL;
346 }
347
348 /* POSIX-1996 leaves the case l->l_len < 0 undefined;
349 POSIX-2001 defines it. */
350 start += l->l_start;
4c780a46
TM
351 if (start < 0)
352 return -EINVAL;
353 fl->fl_end = OFFSET_MAX;
354 if (l->l_len > 0) {
355 end = start + l->l_len - 1;
356 fl->fl_end = end;
357 } else if (l->l_len < 0) {
1da177e4 358 end = start - 1;
4c780a46 359 fl->fl_end = end;
1da177e4 360 start += l->l_len;
4c780a46
TM
361 if (start < 0)
362 return -EINVAL;
1da177e4 363 }
1da177e4 364 fl->fl_start = start; /* we record the absolute position */
4c780a46
TM
365 if (fl->fl_end < fl->fl_start)
366 return -EOVERFLOW;
1da177e4
LT
367
368 fl->fl_owner = current->files;
369 fl->fl_pid = current->tgid;
370 fl->fl_file = filp;
371 fl->fl_flags = FL_POSIX;
372 fl->fl_ops = NULL;
373 fl->fl_lmops = NULL;
374
375 return assign_type(fl, l->l_type);
376}
377
378#if BITS_PER_LONG == 32
379static int flock64_to_posix_lock(struct file *filp, struct file_lock *fl,
380 struct flock64 *l)
381{
382 loff_t start;
383
384 switch (l->l_whence) {
f5579f8c 385 case SEEK_SET:
1da177e4
LT
386 start = 0;
387 break;
f5579f8c 388 case SEEK_CUR:
1da177e4
LT
389 start = filp->f_pos;
390 break;
f5579f8c 391 case SEEK_END:
0f7fc9e4 392 start = i_size_read(filp->f_path.dentry->d_inode);
1da177e4
LT
393 break;
394 default:
395 return -EINVAL;
396 }
397
4c780a46
TM
398 start += l->l_start;
399 if (start < 0)
1da177e4 400 return -EINVAL;
4c780a46
TM
401 fl->fl_end = OFFSET_MAX;
402 if (l->l_len > 0) {
403 fl->fl_end = start + l->l_len - 1;
404 } else if (l->l_len < 0) {
405 fl->fl_end = start - 1;
406 start += l->l_len;
407 if (start < 0)
408 return -EINVAL;
409 }
1da177e4 410 fl->fl_start = start; /* we record the absolute position */
4c780a46
TM
411 if (fl->fl_end < fl->fl_start)
412 return -EOVERFLOW;
1da177e4
LT
413
414 fl->fl_owner = current->files;
415 fl->fl_pid = current->tgid;
416 fl->fl_file = filp;
417 fl->fl_flags = FL_POSIX;
418 fl->fl_ops = NULL;
419 fl->fl_lmops = NULL;
420
421 switch (l->l_type) {
422 case F_RDLCK:
423 case F_WRLCK:
424 case F_UNLCK:
425 fl->fl_type = l->l_type;
426 break;
427 default:
428 return -EINVAL;
429 }
430
431 return (0);
432}
433#endif
434
435/* default lease lock manager operations */
436static void lease_break_callback(struct file_lock *fl)
437{
438 kill_fasync(&fl->fl_fasync, SIGIO, POLL_MSG);
439}
440
441static void lease_release_private_callback(struct file_lock *fl)
442{
443 if (!fl->fl_file)
444 return;
445
446 f_delown(fl->fl_file);
447 fl->fl_file->f_owner.signum = 0;
448}
449
75c96f85 450static int lease_mylease_callback(struct file_lock *fl, struct file_lock *try)
1da177e4
LT
451{
452 return fl->fl_file == try->fl_file;
453}
454
7b021967 455static const struct lock_manager_operations lease_manager_ops = {
1da177e4
LT
456 .fl_break = lease_break_callback,
457 .fl_release_private = lease_release_private_callback,
458 .fl_mylease = lease_mylease_callback,
459 .fl_change = lease_modify,
460};
461
462/*
463 * Initialize a lease, use the default lock manager operations
464 */
465static int lease_init(struct file *filp, int type, struct file_lock *fl)
466 {
75dff55a
TM
467 if (assign_type(fl, type) != 0)
468 return -EINVAL;
469
1da177e4
LT
470 fl->fl_owner = current->files;
471 fl->fl_pid = current->tgid;
472
473 fl->fl_file = filp;
474 fl->fl_flags = FL_LEASE;
1da177e4
LT
475 fl->fl_start = 0;
476 fl->fl_end = OFFSET_MAX;
477 fl->fl_ops = NULL;
478 fl->fl_lmops = &lease_manager_ops;
479 return 0;
480}
481
482/* Allocate a file_lock initialised to this type of lease */
e32b8ee2 483static struct file_lock *lease_alloc(struct file *filp, int type)
1da177e4
LT
484{
485 struct file_lock *fl = locks_alloc_lock();
75dff55a 486 int error = -ENOMEM;
1da177e4
LT
487
488 if (fl == NULL)
e32b8ee2 489 return ERR_PTR(error);
1da177e4
LT
490
491 error = lease_init(filp, type, fl);
75dff55a
TM
492 if (error) {
493 locks_free_lock(fl);
e32b8ee2 494 return ERR_PTR(error);
75dff55a 495 }
e32b8ee2 496 return fl;
1da177e4
LT
497}
498
499/* Check if two locks overlap each other.
500 */
501static inline int locks_overlap(struct file_lock *fl1, struct file_lock *fl2)
502{
503 return ((fl1->fl_end >= fl2->fl_start) &&
504 (fl2->fl_end >= fl1->fl_start));
505}
506
507/*
508 * Check whether two locks have the same owner.
509 */
33443c42 510static int posix_same_owner(struct file_lock *fl1, struct file_lock *fl2)
1da177e4
LT
511{
512 if (fl1->fl_lmops && fl1->fl_lmops->fl_compare_owner)
513 return fl2->fl_lmops == fl1->fl_lmops &&
514 fl1->fl_lmops->fl_compare_owner(fl1, fl2);
515 return fl1->fl_owner == fl2->fl_owner;
516}
517
518/* Remove waiter from blocker's block list.
519 * When blocker ends up pointing to itself then the list is empty.
520 */
33443c42 521static void __locks_delete_block(struct file_lock *waiter)
1da177e4
LT
522{
523 list_del_init(&waiter->fl_block);
524 list_del_init(&waiter->fl_link);
525 waiter->fl_next = NULL;
526}
527
528/*
529 */
530static void locks_delete_block(struct file_lock *waiter)
531{
b89f4321 532 lock_flocks();
1da177e4 533 __locks_delete_block(waiter);
b89f4321 534 unlock_flocks();
1da177e4
LT
535}
536
537/* Insert waiter into blocker's block list.
538 * We use a circular list so that processes can be easily woken up in
539 * the order they blocked. The documentation doesn't require this but
540 * it seems like the reasonable thing to do.
541 */
542static void locks_insert_block(struct file_lock *blocker,
543 struct file_lock *waiter)
544{
6dc0fe8f 545 BUG_ON(!list_empty(&waiter->fl_block));
1da177e4
LT
546 list_add_tail(&waiter->fl_block, &blocker->fl_block);
547 waiter->fl_next = blocker;
548 if (IS_POSIX(blocker))
549 list_add(&waiter->fl_link, &blocked_list);
550}
551
552/* Wake up processes blocked waiting for blocker.
553 * If told to wait then schedule the processes until the block list
554 * is empty, otherwise empty the block list ourselves.
555 */
556static void locks_wake_up_blocks(struct file_lock *blocker)
557{
558 while (!list_empty(&blocker->fl_block)) {
f0c1cd0e
PE
559 struct file_lock *waiter;
560
561 waiter = list_first_entry(&blocker->fl_block,
1da177e4
LT
562 struct file_lock, fl_block);
563 __locks_delete_block(waiter);
564 if (waiter->fl_lmops && waiter->fl_lmops->fl_notify)
565 waiter->fl_lmops->fl_notify(waiter);
566 else
567 wake_up(&waiter->fl_wait);
568 }
569}
570
571/* Insert file lock fl into an inode's lock list at the position indicated
572 * by pos. At the same time add the lock to the global file lock list.
573 */
574static void locks_insert_lock(struct file_lock **pos, struct file_lock *fl)
575{
576 list_add(&fl->fl_link, &file_lock_list);
577
ab1f1611
VG
578 fl->fl_nspid = get_pid(task_tgid(current));
579
1da177e4
LT
580 /* insert into file's list */
581 fl->fl_next = *pos;
582 *pos = fl;
1da177e4
LT
583}
584
585/*
586 * Delete a lock and then free it.
587 * Wake up processes that are blocked waiting for this lock,
588 * notify the FS that the lock has been cleared and
589 * finally free the lock.
590 */
591static void locks_delete_lock(struct file_lock **thisfl_p)
592{
593 struct file_lock *fl = *thisfl_p;
594
595 *thisfl_p = fl->fl_next;
596 fl->fl_next = NULL;
597 list_del_init(&fl->fl_link);
598
599 fasync_helper(0, fl->fl_file, 0, &fl->fl_fasync);
600 if (fl->fl_fasync != NULL) {
601 printk(KERN_ERR "locks_delete_lock: fasync == %p\n", fl->fl_fasync);
602 fl->fl_fasync = NULL;
603 }
604
ab1f1611
VG
605 if (fl->fl_nspid) {
606 put_pid(fl->fl_nspid);
607 fl->fl_nspid = NULL;
608 }
609
1da177e4
LT
610 locks_wake_up_blocks(fl);
611 locks_free_lock(fl);
612}
613
614/* Determine if lock sys_fl blocks lock caller_fl. Common functionality
615 * checks for shared/exclusive status of overlapping locks.
616 */
617static int locks_conflict(struct file_lock *caller_fl, struct file_lock *sys_fl)
618{
619 if (sys_fl->fl_type == F_WRLCK)
620 return 1;
621 if (caller_fl->fl_type == F_WRLCK)
622 return 1;
623 return 0;
624}
625
626/* Determine if lock sys_fl blocks lock caller_fl. POSIX specific
627 * checking before calling the locks_conflict().
628 */
629static int posix_locks_conflict(struct file_lock *caller_fl, struct file_lock *sys_fl)
630{
631 /* POSIX locks owned by the same process do not conflict with
632 * each other.
633 */
634 if (!IS_POSIX(sys_fl) || posix_same_owner(caller_fl, sys_fl))
635 return (0);
636
637 /* Check whether they overlap */
638 if (!locks_overlap(caller_fl, sys_fl))
639 return 0;
640
641 return (locks_conflict(caller_fl, sys_fl));
642}
643
644/* Determine if lock sys_fl blocks lock caller_fl. FLOCK specific
645 * checking before calling the locks_conflict().
646 */
647static int flock_locks_conflict(struct file_lock *caller_fl, struct file_lock *sys_fl)
648{
649 /* FLOCK locks referring to the same filp do not conflict with
650 * each other.
651 */
652 if (!IS_FLOCK(sys_fl) || (caller_fl->fl_file == sys_fl->fl_file))
653 return (0);
654 if ((caller_fl->fl_type & LOCK_MAND) || (sys_fl->fl_type & LOCK_MAND))
655 return 0;
656
657 return (locks_conflict(caller_fl, sys_fl));
658}
659
6d34ac19 660void
9d6a8c5c 661posix_test_lock(struct file *filp, struct file_lock *fl)
1da177e4
LT
662{
663 struct file_lock *cfl;
664
b89f4321 665 lock_flocks();
0f7fc9e4 666 for (cfl = filp->f_path.dentry->d_inode->i_flock; cfl; cfl = cfl->fl_next) {
1da177e4
LT
667 if (!IS_POSIX(cfl))
668 continue;
b842e240 669 if (posix_locks_conflict(fl, cfl))
1da177e4
LT
670 break;
671 }
ab1f1611 672 if (cfl) {
9d6a8c5c 673 __locks_copy_lock(fl, cfl);
ab1f1611 674 if (cfl->fl_nspid)
6c5f3e7b 675 fl->fl_pid = pid_vnr(cfl->fl_nspid);
ab1f1611 676 } else
129a84de 677 fl->fl_type = F_UNLCK;
b89f4321 678 unlock_flocks();
6d34ac19 679 return;
1da177e4 680}
1da177e4
LT
681EXPORT_SYMBOL(posix_test_lock);
682
b533184f
BF
683/*
684 * Deadlock detection:
685 *
686 * We attempt to detect deadlocks that are due purely to posix file
687 * locks.
1da177e4 688 *
b533184f
BF
689 * We assume that a task can be waiting for at most one lock at a time.
690 * So for any acquired lock, the process holding that lock may be
691 * waiting on at most one other lock. That lock in turns may be held by
692 * someone waiting for at most one other lock. Given a requested lock
693 * caller_fl which is about to wait for a conflicting lock block_fl, we
694 * follow this chain of waiters to ensure we are not about to create a
695 * cycle.
1da177e4 696 *
b533184f
BF
697 * Since we do this before we ever put a process to sleep on a lock, we
698 * are ensured that there is never a cycle; that is what guarantees that
699 * the while() loop in posix_locks_deadlock() eventually completes.
97855b49 700 *
b533184f
BF
701 * Note: the above assumption may not be true when handling lock
702 * requests from a broken NFS client. It may also fail in the presence
703 * of tasks (such as posix threads) sharing the same open file table.
704 *
705 * To handle those cases, we just bail out after a few iterations.
1da177e4 706 */
97855b49
BF
707
708#define MAX_DEADLK_ITERATIONS 10
709
b533184f
BF
710/* Find a lock that the owner of the given block_fl is blocking on. */
711static struct file_lock *what_owner_is_waiting_for(struct file_lock *block_fl)
712{
713 struct file_lock *fl;
714
715 list_for_each_entry(fl, &blocked_list, fl_link) {
716 if (posix_same_owner(fl, block_fl))
717 return fl->fl_next;
718 }
719 return NULL;
720}
721
b0904e14 722static int posix_locks_deadlock(struct file_lock *caller_fl,
1da177e4
LT
723 struct file_lock *block_fl)
724{
97855b49 725 int i = 0;
1da177e4 726
b533184f
BF
727 while ((block_fl = what_owner_is_waiting_for(block_fl))) {
728 if (i++ > MAX_DEADLK_ITERATIONS)
729 return 0;
730 if (posix_same_owner(caller_fl, block_fl))
731 return 1;
1da177e4
LT
732 }
733 return 0;
734}
735
1da177e4 736/* Try to create a FLOCK lock on filp. We always insert new FLOCK locks
02888f41 737 * after any leases, but before any posix locks.
f475ae95
TM
738 *
739 * Note that if called with an FL_EXISTS argument, the caller may determine
740 * whether or not a lock was successfully freed by testing the return
741 * value for -ENOENT.
1da177e4 742 */
993dfa87 743static int flock_lock_file(struct file *filp, struct file_lock *request)
1da177e4 744{
993dfa87 745 struct file_lock *new_fl = NULL;
1da177e4 746 struct file_lock **before;
0f7fc9e4 747 struct inode * inode = filp->f_path.dentry->d_inode;
1da177e4
LT
748 int error = 0;
749 int found = 0;
750
b89f4321 751 if (!(request->fl_flags & FL_ACCESS) && (request->fl_type != F_UNLCK)) {
84d535ad 752 new_fl = locks_alloc_lock();
b89f4321
AB
753 if (!new_fl)
754 return -ENOMEM;
84d535ad
PE
755 }
756
b89f4321
AB
757 lock_flocks();
758 if (request->fl_flags & FL_ACCESS)
759 goto find_conflict;
760
1da177e4
LT
761 for_each_lock(inode, before) {
762 struct file_lock *fl = *before;
763 if (IS_POSIX(fl))
764 break;
765 if (IS_LEASE(fl))
766 continue;
767 if (filp != fl->fl_file)
768 continue;
993dfa87 769 if (request->fl_type == fl->fl_type)
1da177e4
LT
770 goto out;
771 found = 1;
772 locks_delete_lock(before);
773 break;
774 }
1da177e4 775
f475ae95
TM
776 if (request->fl_type == F_UNLCK) {
777 if ((request->fl_flags & FL_EXISTS) && !found)
778 error = -ENOENT;
993dfa87 779 goto out;
f475ae95 780 }
1da177e4
LT
781
782 /*
783 * If a higher-priority process was blocked on the old file lock,
784 * give it the opportunity to lock the file.
785 */
b89f4321
AB
786 if (found) {
787 unlock_flocks();
def01bc5 788 cond_resched();
b89f4321
AB
789 lock_flocks();
790 }
1da177e4 791
f07f18dd 792find_conflict:
1da177e4
LT
793 for_each_lock(inode, before) {
794 struct file_lock *fl = *before;
795 if (IS_POSIX(fl))
796 break;
797 if (IS_LEASE(fl))
798 continue;
993dfa87 799 if (!flock_locks_conflict(request, fl))
1da177e4
LT
800 continue;
801 error = -EAGAIN;
bde74e4b
MS
802 if (!(request->fl_flags & FL_SLEEP))
803 goto out;
804 error = FILE_LOCK_DEFERRED;
805 locks_insert_block(fl, request);
1da177e4
LT
806 goto out;
807 }
f07f18dd
TM
808 if (request->fl_flags & FL_ACCESS)
809 goto out;
993dfa87 810 locks_copy_lock(new_fl, request);
0e2f6db8 811 locks_insert_lock(before, new_fl);
993dfa87 812 new_fl = NULL;
9cedc194 813 error = 0;
1da177e4
LT
814
815out:
b89f4321 816 unlock_flocks();
993dfa87
TM
817 if (new_fl)
818 locks_free_lock(new_fl);
1da177e4
LT
819 return error;
820}
821
150b3934 822static int __posix_lock_file(struct inode *inode, struct file_lock *request, struct file_lock *conflock)
1da177e4
LT
823{
824 struct file_lock *fl;
39005d02
MS
825 struct file_lock *new_fl = NULL;
826 struct file_lock *new_fl2 = NULL;
1da177e4
LT
827 struct file_lock *left = NULL;
828 struct file_lock *right = NULL;
829 struct file_lock **before;
830 int error, added = 0;
831
832 /*
833 * We may need two file_lock structures for this operation,
834 * so we get them in advance to avoid races.
39005d02
MS
835 *
836 * In some cases we can be sure, that no new locks will be needed
1da177e4 837 */
39005d02
MS
838 if (!(request->fl_flags & FL_ACCESS) &&
839 (request->fl_type != F_UNLCK ||
840 request->fl_start != 0 || request->fl_end != OFFSET_MAX)) {
841 new_fl = locks_alloc_lock();
842 new_fl2 = locks_alloc_lock();
843 }
1da177e4 844
b89f4321 845 lock_flocks();
1da177e4
LT
846 if (request->fl_type != F_UNLCK) {
847 for_each_lock(inode, before) {
526985b9 848 fl = *before;
1da177e4
LT
849 if (!IS_POSIX(fl))
850 continue;
851 if (!posix_locks_conflict(request, fl))
852 continue;
5842add2 853 if (conflock)
1a747ee0 854 __locks_copy_lock(conflock, fl);
1da177e4
LT
855 error = -EAGAIN;
856 if (!(request->fl_flags & FL_SLEEP))
857 goto out;
858 error = -EDEADLK;
859 if (posix_locks_deadlock(request, fl))
860 goto out;
bde74e4b 861 error = FILE_LOCK_DEFERRED;
1da177e4
LT
862 locks_insert_block(fl, request);
863 goto out;
864 }
865 }
866
867 /* If we're just looking for a conflict, we're done. */
868 error = 0;
869 if (request->fl_flags & FL_ACCESS)
870 goto out;
871
1da177e4 872 /*
1da177e4
LT
873 * Find the first old lock with the same owner as the new lock.
874 */
875
876 before = &inode->i_flock;
877
878 /* First skip locks owned by other processes. */
879 while ((fl = *before) && (!IS_POSIX(fl) ||
880 !posix_same_owner(request, fl))) {
881 before = &fl->fl_next;
882 }
883
884 /* Process locks with this owner. */
885 while ((fl = *before) && posix_same_owner(request, fl)) {
886 /* Detect adjacent or overlapping regions (if same lock type)
887 */
888 if (request->fl_type == fl->fl_type) {
449231d6
OK
889 /* In all comparisons of start vs end, use
890 * "start - 1" rather than "end + 1". If end
891 * is OFFSET_MAX, end + 1 will become negative.
892 */
1da177e4
LT
893 if (fl->fl_end < request->fl_start - 1)
894 goto next_lock;
895 /* If the next lock in the list has entirely bigger
896 * addresses than the new one, insert the lock here.
897 */
449231d6 898 if (fl->fl_start - 1 > request->fl_end)
1da177e4
LT
899 break;
900
901 /* If we come here, the new and old lock are of the
902 * same type and adjacent or overlapping. Make one
903 * lock yielding from the lower start address of both
904 * locks to the higher end address.
905 */
906 if (fl->fl_start > request->fl_start)
907 fl->fl_start = request->fl_start;
908 else
909 request->fl_start = fl->fl_start;
910 if (fl->fl_end < request->fl_end)
911 fl->fl_end = request->fl_end;
912 else
913 request->fl_end = fl->fl_end;
914 if (added) {
915 locks_delete_lock(before);
916 continue;
917 }
918 request = fl;
919 added = 1;
920 }
921 else {
922 /* Processing for different lock types is a bit
923 * more complex.
924 */
925 if (fl->fl_end < request->fl_start)
926 goto next_lock;
927 if (fl->fl_start > request->fl_end)
928 break;
929 if (request->fl_type == F_UNLCK)
930 added = 1;
931 if (fl->fl_start < request->fl_start)
932 left = fl;
933 /* If the next lock in the list has a higher end
934 * address than the new one, insert the new one here.
935 */
936 if (fl->fl_end > request->fl_end) {
937 right = fl;
938 break;
939 }
940 if (fl->fl_start >= request->fl_start) {
941 /* The new lock completely replaces an old
942 * one (This may happen several times).
943 */
944 if (added) {
945 locks_delete_lock(before);
946 continue;
947 }
948 /* Replace the old lock with the new one.
949 * Wake up anybody waiting for the old one,
950 * as the change in lock type might satisfy
951 * their needs.
952 */
953 locks_wake_up_blocks(fl);
954 fl->fl_start = request->fl_start;
955 fl->fl_end = request->fl_end;
956 fl->fl_type = request->fl_type;
47831f35
TM
957 locks_release_private(fl);
958 locks_copy_private(fl, request);
1da177e4
LT
959 request = fl;
960 added = 1;
961 }
962 }
963 /* Go on to next lock.
964 */
965 next_lock:
966 before = &fl->fl_next;
967 }
968
0d9a490a
MS
969 /*
970 * The above code only modifies existing locks in case of
971 * merging or replacing. If new lock(s) need to be inserted
972 * all modifications are done bellow this, so it's safe yet to
973 * bail out.
974 */
975 error = -ENOLCK; /* "no luck" */
976 if (right && left == right && !new_fl2)
977 goto out;
978
1da177e4
LT
979 error = 0;
980 if (!added) {
f475ae95
TM
981 if (request->fl_type == F_UNLCK) {
982 if (request->fl_flags & FL_EXISTS)
983 error = -ENOENT;
1da177e4 984 goto out;
f475ae95 985 }
0d9a490a
MS
986
987 if (!new_fl) {
988 error = -ENOLCK;
989 goto out;
990 }
1da177e4
LT
991 locks_copy_lock(new_fl, request);
992 locks_insert_lock(before, new_fl);
993 new_fl = NULL;
994 }
995 if (right) {
996 if (left == right) {
997 /* The new lock breaks the old one in two pieces,
998 * so we have to use the second new lock.
999 */
1000 left = new_fl2;
1001 new_fl2 = NULL;
1002 locks_copy_lock(left, right);
1003 locks_insert_lock(before, left);
1004 }
1005 right->fl_start = request->fl_end + 1;
1006 locks_wake_up_blocks(right);
1007 }
1008 if (left) {
1009 left->fl_end = request->fl_start - 1;
1010 locks_wake_up_blocks(left);
1011 }
1012 out:
b89f4321 1013 unlock_flocks();
1da177e4
LT
1014 /*
1015 * Free any unused locks.
1016 */
1017 if (new_fl)
1018 locks_free_lock(new_fl);
1019 if (new_fl2)
1020 locks_free_lock(new_fl2);
1021 return error;
1022}
1023
1024/**
1025 * posix_lock_file - Apply a POSIX-style lock to a file
1026 * @filp: The file to apply the lock to
1027 * @fl: The lock to be applied
150b3934 1028 * @conflock: Place to return a copy of the conflicting lock, if found.
1da177e4
LT
1029 *
1030 * Add a POSIX style lock to a file.
1031 * We merge adjacent & overlapping locks whenever possible.
1032 * POSIX locks are sorted by owner task, then by starting address
f475ae95
TM
1033 *
1034 * Note that if called with an FL_EXISTS argument, the caller may determine
1035 * whether or not a lock was successfully freed by testing the return
1036 * value for -ENOENT.
1da177e4 1037 */
150b3934 1038int posix_lock_file(struct file *filp, struct file_lock *fl,
5842add2
AA
1039 struct file_lock *conflock)
1040{
150b3934 1041 return __posix_lock_file(filp->f_path.dentry->d_inode, fl, conflock);
1da177e4 1042}
150b3934 1043EXPORT_SYMBOL(posix_lock_file);
1da177e4
LT
1044
1045/**
1046 * posix_lock_file_wait - Apply a POSIX-style lock to a file
1047 * @filp: The file to apply the lock to
1048 * @fl: The lock to be applied
1049 *
1050 * Add a POSIX style lock to a file.
1051 * We merge adjacent & overlapping locks whenever possible.
1052 * POSIX locks are sorted by owner task, then by starting address
1053 */
1054int posix_lock_file_wait(struct file *filp, struct file_lock *fl)
1055{
1056 int error;
1057 might_sleep ();
1058 for (;;) {
150b3934 1059 error = posix_lock_file(filp, fl, NULL);
bde74e4b 1060 if (error != FILE_LOCK_DEFERRED)
1da177e4
LT
1061 break;
1062 error = wait_event_interruptible(fl->fl_wait, !fl->fl_next);
1063 if (!error)
1064 continue;
1065
1066 locks_delete_block(fl);
1067 break;
1068 }
1069 return error;
1070}
1071EXPORT_SYMBOL(posix_lock_file_wait);
1072
1073/**
1074 * locks_mandatory_locked - Check for an active lock
1075 * @inode: the file to check
1076 *
1077 * Searches the inode's list of locks to find any POSIX locks which conflict.
1078 * This function is called from locks_verify_locked() only.
1079 */
1080int locks_mandatory_locked(struct inode *inode)
1081{
1082 fl_owner_t owner = current->files;
1083 struct file_lock *fl;
1084
1085 /*
1086 * Search the lock list for this inode for any POSIX locks.
1087 */
b89f4321 1088 lock_flocks();
1da177e4
LT
1089 for (fl = inode->i_flock; fl != NULL; fl = fl->fl_next) {
1090 if (!IS_POSIX(fl))
1091 continue;
1092 if (fl->fl_owner != owner)
1093 break;
1094 }
b89f4321 1095 unlock_flocks();
1da177e4
LT
1096 return fl ? -EAGAIN : 0;
1097}
1098
1099/**
1100 * locks_mandatory_area - Check for a conflicting lock
1101 * @read_write: %FLOCK_VERIFY_WRITE for exclusive access, %FLOCK_VERIFY_READ
1102 * for shared
1103 * @inode: the file to check
1104 * @filp: how the file was opened (if it was)
1105 * @offset: start of area to check
1106 * @count: length of area to check
1107 *
1108 * Searches the inode's list of locks to find any POSIX locks which conflict.
1109 * This function is called from rw_verify_area() and
1110 * locks_verify_truncate().
1111 */
1112int locks_mandatory_area(int read_write, struct inode *inode,
1113 struct file *filp, loff_t offset,
1114 size_t count)
1115{
1116 struct file_lock fl;
1117 int error;
1118
1119 locks_init_lock(&fl);
1120 fl.fl_owner = current->files;
1121 fl.fl_pid = current->tgid;
1122 fl.fl_file = filp;
1123 fl.fl_flags = FL_POSIX | FL_ACCESS;
1124 if (filp && !(filp->f_flags & O_NONBLOCK))
1125 fl.fl_flags |= FL_SLEEP;
1126 fl.fl_type = (read_write == FLOCK_VERIFY_WRITE) ? F_WRLCK : F_RDLCK;
1127 fl.fl_start = offset;
1128 fl.fl_end = offset + count - 1;
1129
1130 for (;;) {
150b3934 1131 error = __posix_lock_file(inode, &fl, NULL);
bde74e4b 1132 if (error != FILE_LOCK_DEFERRED)
1da177e4
LT
1133 break;
1134 error = wait_event_interruptible(fl.fl_wait, !fl.fl_next);
1135 if (!error) {
1136 /*
1137 * If we've been sleeping someone might have
1138 * changed the permissions behind our back.
1139 */
a16877ca 1140 if (__mandatory_lock(inode))
1da177e4
LT
1141 continue;
1142 }
1143
1144 locks_delete_block(&fl);
1145 break;
1146 }
1147
1148 return error;
1149}
1150
1151EXPORT_SYMBOL(locks_mandatory_area);
1152
1153/* We already had a lease on this file; just change its type */
1154int lease_modify(struct file_lock **before, int arg)
1155{
1156 struct file_lock *fl = *before;
1157 int error = assign_type(fl, arg);
1158
1159 if (error)
1160 return error;
1161 locks_wake_up_blocks(fl);
1162 if (arg == F_UNLCK)
1163 locks_delete_lock(before);
1164 return 0;
1165}
1166
1167EXPORT_SYMBOL(lease_modify);
1168
1169static void time_out_leases(struct inode *inode)
1170{
1171 struct file_lock **before;
1172 struct file_lock *fl;
1173
1174 before = &inode->i_flock;
1175 while ((fl = *before) && IS_LEASE(fl) && (fl->fl_type & F_INPROGRESS)) {
1176 if ((fl->fl_break_time == 0)
1177 || time_before(jiffies, fl->fl_break_time)) {
1178 before = &fl->fl_next;
1179 continue;
1180 }
1da177e4
LT
1181 lease_modify(before, fl->fl_type & ~F_INPROGRESS);
1182 if (fl == *before) /* lease_modify may have freed fl */
1183 before = &fl->fl_next;
1184 }
1185}
1186
1187/**
1188 * __break_lease - revoke all outstanding leases on file
1189 * @inode: the inode of the file to return
1190 * @mode: the open mode (read or write)
1191 *
87250dd2 1192 * break_lease (inlined for speed) has checked there already is at least
1193 * some kind of lock (maybe a lease) on this file. Leases are broken on
1194 * a call to open() or truncate(). This function can sleep unless you
1da177e4
LT
1195 * specified %O_NONBLOCK to your open().
1196 */
1197int __break_lease(struct inode *inode, unsigned int mode)
1198{
1199 int error = 0, future;
1200 struct file_lock *new_fl, *flock;
1201 struct file_lock *fl;
1da177e4
LT
1202 unsigned long break_time;
1203 int i_have_this_lease = 0;
8737c930 1204 int want_write = (mode & O_ACCMODE) != O_RDONLY;
1da177e4 1205
8737c930 1206 new_fl = lease_alloc(NULL, want_write ? F_WRLCK : F_RDLCK);
1da177e4 1207
b89f4321 1208 lock_flocks();
1da177e4
LT
1209
1210 time_out_leases(inode);
1211
1212 flock = inode->i_flock;
1213 if ((flock == NULL) || !IS_LEASE(flock))
1214 goto out;
1215
1216 for (fl = flock; fl && IS_LEASE(fl); fl = fl->fl_next)
1217 if (fl->fl_owner == current->files)
1218 i_have_this_lease = 1;
1219
8737c930 1220 if (want_write) {
1da177e4
LT
1221 /* If we want write access, we have to revoke any lease. */
1222 future = F_UNLCK | F_INPROGRESS;
1223 } else if (flock->fl_type & F_INPROGRESS) {
1224 /* If the lease is already being broken, we just leave it */
1225 future = flock->fl_type;
1226 } else if (flock->fl_type & F_WRLCK) {
1227 /* Downgrade the exclusive lease to a read-only lease. */
1228 future = F_RDLCK | F_INPROGRESS;
1229 } else {
1230 /* the existing lease was read-only, so we can read too. */
1231 goto out;
1232 }
1233
e32b8ee2
BF
1234 if (IS_ERR(new_fl) && !i_have_this_lease
1235 && ((mode & O_NONBLOCK) == 0)) {
1236 error = PTR_ERR(new_fl);
1da177e4
LT
1237 goto out;
1238 }
1239
1240 break_time = 0;
1241 if (lease_break_time > 0) {
1242 break_time = jiffies + lease_break_time * HZ;
1243 if (break_time == 0)
1244 break_time++; /* so that 0 means no break time */
1245 }
1246
1247 for (fl = flock; fl && IS_LEASE(fl); fl = fl->fl_next) {
1248 if (fl->fl_type != future) {
1249 fl->fl_type = future;
1250 fl->fl_break_time = break_time;
1251 /* lease must have lmops break callback */
1252 fl->fl_lmops->fl_break(fl);
1253 }
1254 }
1255
1256 if (i_have_this_lease || (mode & O_NONBLOCK)) {
1257 error = -EWOULDBLOCK;
1258 goto out;
1259 }
1260
1261restart:
1262 break_time = flock->fl_break_time;
1263 if (break_time != 0) {
1264 break_time -= jiffies;
1265 if (break_time == 0)
1266 break_time++;
1267 }
4321e01e 1268 locks_insert_block(flock, new_fl);
b89f4321 1269 unlock_flocks();
4321e01e
MW
1270 error = wait_event_interruptible_timeout(new_fl->fl_wait,
1271 !new_fl->fl_next, break_time);
b89f4321 1272 lock_flocks();
4321e01e 1273 __locks_delete_block(new_fl);
1da177e4
LT
1274 if (error >= 0) {
1275 if (error == 0)
1276 time_out_leases(inode);
1277 /* Wait for the next lease that has not been broken yet */
1278 for (flock = inode->i_flock; flock && IS_LEASE(flock);
1279 flock = flock->fl_next) {
1280 if (flock->fl_type & F_INPROGRESS)
1281 goto restart;
1282 }
1283 error = 0;
1284 }
1285
1286out:
b89f4321 1287 unlock_flocks();
e32b8ee2 1288 if (!IS_ERR(new_fl))
1da177e4
LT
1289 locks_free_lock(new_fl);
1290 return error;
1291}
1292
1293EXPORT_SYMBOL(__break_lease);
1294
1295/**
a6b91919 1296 * lease_get_mtime - get the last modified time of an inode
1da177e4
LT
1297 * @inode: the inode
1298 * @time: pointer to a timespec which will contain the last modified time
1299 *
1300 * This is to force NFS clients to flush their caches for files with
1301 * exclusive leases. The justification is that if someone has an
a6b91919 1302 * exclusive lease, then they could be modifying it.
1da177e4
LT
1303 */
1304void lease_get_mtime(struct inode *inode, struct timespec *time)
1305{
1306 struct file_lock *flock = inode->i_flock;
1307 if (flock && IS_LEASE(flock) && (flock->fl_type & F_WRLCK))
1308 *time = current_fs_time(inode->i_sb);
1309 else
1310 *time = inode->i_mtime;
1311}
1312
1313EXPORT_SYMBOL(lease_get_mtime);
1314
1315/**
1316 * fcntl_getlease - Enquire what lease is currently active
1317 * @filp: the file
1318 *
1319 * The value returned by this function will be one of
1320 * (if no lease break is pending):
1321 *
1322 * %F_RDLCK to indicate a shared lease is held.
1323 *
1324 * %F_WRLCK to indicate an exclusive lease is held.
1325 *
1326 * %F_UNLCK to indicate no lease is held.
1327 *
1328 * (if a lease break is pending):
1329 *
1330 * %F_RDLCK to indicate an exclusive lease needs to be
1331 * changed to a shared lease (or removed).
1332 *
1333 * %F_UNLCK to indicate the lease needs to be removed.
1334 *
1335 * XXX: sfr & willy disagree over whether F_INPROGRESS
1336 * should be returned to userspace.
1337 */
1338int fcntl_getlease(struct file *filp)
1339{
1340 struct file_lock *fl;
1341 int type = F_UNLCK;
1342
b89f4321 1343 lock_flocks();
0f7fc9e4
JJS
1344 time_out_leases(filp->f_path.dentry->d_inode);
1345 for (fl = filp->f_path.dentry->d_inode->i_flock; fl && IS_LEASE(fl);
1da177e4
LT
1346 fl = fl->fl_next) {
1347 if (fl->fl_file == filp) {
1348 type = fl->fl_type & ~F_INPROGRESS;
1349 break;
1350 }
1351 }
b89f4321 1352 unlock_flocks();
1da177e4
LT
1353 return type;
1354}
1355
1356/**
0af1a450 1357 * generic_setlease - sets a lease on an open file
1da177e4
LT
1358 * @filp: file pointer
1359 * @arg: type of lease to obtain
1360 * @flp: input - file_lock to use, output - file_lock inserted
1361 *
1362 * The (input) flp->fl_lmops->fl_break function is required
1363 * by break_lease().
1364 *
b89f4321 1365 * Called with file_lock_lock held.
1da177e4 1366 */
0af1a450 1367int generic_setlease(struct file *filp, long arg, struct file_lock **flp)
1da177e4 1368{
7eaae282 1369 struct file_lock *fl, **before, **my_before = NULL, *lease;
0f7fc9e4 1370 struct dentry *dentry = filp->f_path.dentry;
1da177e4
LT
1371 struct inode *inode = dentry->d_inode;
1372 int error, rdlease_count = 0, wrlease_count = 0;
1373
da9592ed 1374 if ((current_fsuid() != inode->i_uid) && !capable(CAP_LEASE))
6d5e8b05
BF
1375 return -EACCES;
1376 if (!S_ISREG(inode->i_mode))
1377 return -EINVAL;
1378 error = security_file_lock(filp, arg);
1379 if (error)
1380 return error;
1381
1da177e4
LT
1382 time_out_leases(inode);
1383
d2ab0b0c 1384 BUG_ON(!(*flp)->fl_lmops->fl_break);
1da177e4 1385
7eaae282
KZ
1386 lease = *flp;
1387
288b2fd8
DR
1388 if (arg != F_UNLCK) {
1389 error = -EAGAIN;
1390 if ((arg == F_RDLCK) && (atomic_read(&inode->i_writecount) > 0))
1391 goto out;
1392 if ((arg == F_WRLCK)
1393 && ((atomic_read(&dentry->d_count) > 1)
1394 || (atomic_read(&inode->i_count) > 1)))
1395 goto out;
288b2fd8 1396 }
85c59580 1397
1da177e4
LT
1398 /*
1399 * At this point, we know that if there is an exclusive
1400 * lease on this file, then we hold it on this filp
1401 * (otherwise our open of this file would have blocked).
1402 * And if we are trying to acquire an exclusive lease,
1403 * then the file is not open by anyone (including us)
1404 * except for this filp.
1405 */
1406 for (before = &inode->i_flock;
1407 ((fl = *before) != NULL) && IS_LEASE(fl);
1408 before = &fl->fl_next) {
1409 if (lease->fl_lmops->fl_mylease(fl, lease))
1410 my_before = before;
1411 else if (fl->fl_type == (F_INPROGRESS | F_UNLCK))
1412 /*
1413 * Someone is in the process of opening this
1414 * file for writing so we may not take an
1415 * exclusive lease on it.
1416 */
1417 wrlease_count++;
1418 else
1419 rdlease_count++;
1420 }
1421
5fcc60c3 1422 error = -EAGAIN;
1da177e4
LT
1423 if ((arg == F_RDLCK && (wrlease_count > 0)) ||
1424 (arg == F_WRLCK && ((rdlease_count + wrlease_count) > 0)))
1425 goto out;
1426
1427 if (my_before != NULL) {
75dff55a 1428 *flp = *my_before;
1da177e4
LT
1429 error = lease->fl_lmops->fl_change(my_before, arg);
1430 goto out;
1431 }
1432
1da177e4
LT
1433 if (arg == F_UNLCK)
1434 goto out;
1435
1436 error = -EINVAL;
1437 if (!leases_enable)
1438 goto out;
1439
c5b1f0d9 1440 locks_insert_lock(before, lease);
85c59580 1441 return 0;
1da177e4 1442
1da177e4 1443out:
0ceaf6c7
BF
1444 if (arg != F_UNLCK)
1445 locks_free_lock(lease);
1da177e4
LT
1446 return error;
1447}
0af1a450 1448EXPORT_SYMBOL(generic_setlease);
1da177e4 1449
b89f4321
AB
1450static int __vfs_setlease(struct file *filp, long arg, struct file_lock **lease)
1451{
1452 if (filp->f_op && filp->f_op->setlease)
1453 return filp->f_op->setlease(filp, arg, lease);
1454 else
1455 return generic_setlease(filp, arg, lease);
1456}
1457
1458/**
a9933cea 1459 * vfs_setlease - sets a lease on an open file
1da177e4
LT
1460 * @filp: file pointer
1461 * @arg: type of lease to obtain
1462 * @lease: file_lock to use
1463 *
1464 * Call this to establish a lease on the file.
f9ffed26
BF
1465 * The (*lease)->fl_lmops->fl_break operation must be set; if not,
1466 * break_lease will oops!
1467 *
1468 * This will call the filesystem's setlease file method, if
1469 * defined. Note that there is no getlease method; instead, the
1470 * filesystem setlease method should call back to setlease() to
1471 * add a lease to the inode's lease list, where fcntl_getlease() can
1472 * find it. Since fcntl_getlease() only reports whether the current
1473 * task holds a lease, a cluster filesystem need only do this for
1474 * leases held by processes on this node.
1475 *
1476 * There is also no break_lease method; filesystems that
c9404c9c 1477 * handle their own leases should break leases themselves from the
f9ffed26
BF
1478 * filesystem's open, create, and (on truncate) setattr methods.
1479 *
1480 * Warning: the only current setlease methods exist only to disable
1481 * leases in certain cases. More vfs changes may be required to
1482 * allow a full filesystem lease implementation.
1da177e4
LT
1483 */
1484
a9933cea 1485int vfs_setlease(struct file *filp, long arg, struct file_lock **lease)
1da177e4 1486{
1da177e4
LT
1487 int error;
1488
b89f4321
AB
1489 lock_flocks();
1490 error = __vfs_setlease(filp, arg, lease);
1491 unlock_flocks();
1da177e4
LT
1492
1493 return error;
1494}
a9933cea 1495EXPORT_SYMBOL_GPL(vfs_setlease);
1da177e4 1496
0ceaf6c7
BF
1497static int do_fcntl_delete_lease(struct file *filp)
1498{
1499 struct file_lock fl, *flp = &fl;
1500
1501 lease_init(filp, F_UNLCK, flp);
1502
1503 return vfs_setlease(filp, F_UNLCK, &flp);
1504}
1505
1506static int do_fcntl_add_lease(unsigned int fd, struct file *filp, long arg)
1da177e4 1507{
c5b1f0d9 1508 struct file_lock *fl;
f7347ce4 1509 struct fasync_struct *new;
9d91cdcc 1510 struct inode *inode = filp->f_path.dentry->d_inode;
1da177e4
LT
1511 int error;
1512
c5b1f0d9
AB
1513 fl = lease_alloc(filp, arg);
1514 if (IS_ERR(fl))
1515 return PTR_ERR(fl);
1da177e4 1516
f7347ce4
LT
1517 new = fasync_alloc();
1518 if (!new) {
1519 locks_free_lock(fl);
1520 return -ENOMEM;
1521 }
b89f4321 1522 lock_flocks();
c5b1f0d9 1523 error = __vfs_setlease(filp, arg, &fl);
0ceaf6c7 1524 if (error)
1da177e4
LT
1525 goto out_unlock;
1526
f7347ce4
LT
1527 /*
1528 * fasync_insert_entry() returns the old entry if any.
1529 * If there was no old entry, then it used 'new' and
1530 * inserted it into the fasync list. Clear new so that
1531 * we don't release it here.
1532 */
1533 if (!fasync_insert_entry(fd, filp, &fl->fl_fasync, new))
1534 new = NULL;
1535
1da177e4 1536 if (error < 0) {
6d5e8b05 1537 /* remove lease just inserted by setlease */
c5b1f0d9
AB
1538 fl->fl_type = F_UNLCK | F_INPROGRESS;
1539 fl->fl_break_time = jiffies - 10;
1da177e4
LT
1540 time_out_leases(inode);
1541 goto out_unlock;
1542 }
1543
609d7fa9 1544 error = __f_setown(filp, task_pid(current), PIDTYPE_PID, 0);
1da177e4 1545out_unlock:
b89f4321 1546 unlock_flocks();
f7347ce4
LT
1547 if (new)
1548 fasync_free(new);
1da177e4
LT
1549 return error;
1550}
1551
0ceaf6c7
BF
1552/**
1553 * fcntl_setlease - sets a lease on an open file
1554 * @fd: open file descriptor
1555 * @filp: file pointer
1556 * @arg: type of lease to obtain
1557 *
1558 * Call this fcntl to establish a lease on the file.
1559 * Note that you also need to call %F_SETSIG to
1560 * receive a signal when the lease is broken.
1561 */
1562int fcntl_setlease(unsigned int fd, struct file *filp, long arg)
1563{
1564 if (arg == F_UNLCK)
1565 return do_fcntl_delete_lease(filp);
1566 return do_fcntl_add_lease(fd, filp, arg);
1567}
1568
1da177e4
LT
1569/**
1570 * flock_lock_file_wait - Apply a FLOCK-style lock to a file
1571 * @filp: The file to apply the lock to
1572 * @fl: The lock to be applied
1573 *
1574 * Add a FLOCK style lock to a file.
1575 */
1576int flock_lock_file_wait(struct file *filp, struct file_lock *fl)
1577{
1578 int error;
1579 might_sleep();
1580 for (;;) {
1581 error = flock_lock_file(filp, fl);
bde74e4b 1582 if (error != FILE_LOCK_DEFERRED)
1da177e4
LT
1583 break;
1584 error = wait_event_interruptible(fl->fl_wait, !fl->fl_next);
1585 if (!error)
1586 continue;
1587
1588 locks_delete_block(fl);
1589 break;
1590 }
1591 return error;
1592}
1593
1594EXPORT_SYMBOL(flock_lock_file_wait);
1595
1596/**
1597 * sys_flock: - flock() system call.
1598 * @fd: the file descriptor to lock.
1599 * @cmd: the type of lock to apply.
1600 *
1601 * Apply a %FL_FLOCK style lock to an open file descriptor.
1602 * The @cmd can be one of
1603 *
1604 * %LOCK_SH -- a shared lock.
1605 *
1606 * %LOCK_EX -- an exclusive lock.
1607 *
1608 * %LOCK_UN -- remove an existing lock.
1609 *
1610 * %LOCK_MAND -- a `mandatory' flock. This exists to emulate Windows Share Modes.
1611 *
1612 * %LOCK_MAND can be combined with %LOCK_READ or %LOCK_WRITE to allow other
1613 * processes read and write access respectively.
1614 */
002c8976 1615SYSCALL_DEFINE2(flock, unsigned int, fd, unsigned int, cmd)
1da177e4
LT
1616{
1617 struct file *filp;
1618 struct file_lock *lock;
1619 int can_sleep, unlock;
1620 int error;
1621
1622 error = -EBADF;
1623 filp = fget(fd);
1624 if (!filp)
1625 goto out;
1626
1627 can_sleep = !(cmd & LOCK_NB);
1628 cmd &= ~LOCK_NB;
1629 unlock = (cmd == LOCK_UN);
1630
aeb5d727
AV
1631 if (!unlock && !(cmd & LOCK_MAND) &&
1632 !(filp->f_mode & (FMODE_READ|FMODE_WRITE)))
1da177e4
LT
1633 goto out_putf;
1634
1635 error = flock_make_lock(filp, &lock, cmd);
1636 if (error)
1637 goto out_putf;
1638 if (can_sleep)
1639 lock->fl_flags |= FL_SLEEP;
1640
713c0ecd 1641 error = security_file_lock(filp, lock->fl_type);
1da177e4
LT
1642 if (error)
1643 goto out_free;
1644
1645 if (filp->f_op && filp->f_op->flock)
1646 error = filp->f_op->flock(filp,
1647 (can_sleep) ? F_SETLKW : F_SETLK,
1648 lock);
1649 else
1650 error = flock_lock_file_wait(filp, lock);
1651
1652 out_free:
993dfa87 1653 locks_free_lock(lock);
1da177e4
LT
1654
1655 out_putf:
1656 fput(filp);
1657 out:
1658 return error;
1659}
1660
3ee17abd
BF
1661/**
1662 * vfs_test_lock - test file byte range lock
1663 * @filp: The file to test lock for
6924c554 1664 * @fl: The lock to test; also used to hold result
3ee17abd
BF
1665 *
1666 * Returns -ERRNO on failure. Indicates presence of conflicting lock by
1667 * setting conf->fl_type to something other than F_UNLCK.
1668 */
1669int vfs_test_lock(struct file *filp, struct file_lock *fl)
1670{
1671 if (filp->f_op && filp->f_op->lock)
1672 return filp->f_op->lock(filp, F_GETLK, fl);
1673 posix_test_lock(filp, fl);
1674 return 0;
1675}
1676EXPORT_SYMBOL_GPL(vfs_test_lock);
1677
c2fa1b8a
BF
1678static int posix_lock_to_flock(struct flock *flock, struct file_lock *fl)
1679{
1680 flock->l_pid = fl->fl_pid;
1681#if BITS_PER_LONG == 32
1682 /*
1683 * Make sure we can represent the posix lock via
1684 * legacy 32bit flock.
1685 */
1686 if (fl->fl_start > OFFT_OFFSET_MAX)
1687 return -EOVERFLOW;
1688 if (fl->fl_end != OFFSET_MAX && fl->fl_end > OFFT_OFFSET_MAX)
1689 return -EOVERFLOW;
1690#endif
1691 flock->l_start = fl->fl_start;
1692 flock->l_len = fl->fl_end == OFFSET_MAX ? 0 :
1693 fl->fl_end - fl->fl_start + 1;
1694 flock->l_whence = 0;
129a84de 1695 flock->l_type = fl->fl_type;
c2fa1b8a
BF
1696 return 0;
1697}
1698
1699#if BITS_PER_LONG == 32
1700static void posix_lock_to_flock64(struct flock64 *flock, struct file_lock *fl)
1701{
1702 flock->l_pid = fl->fl_pid;
1703 flock->l_start = fl->fl_start;
1704 flock->l_len = fl->fl_end == OFFSET_MAX ? 0 :
1705 fl->fl_end - fl->fl_start + 1;
1706 flock->l_whence = 0;
1707 flock->l_type = fl->fl_type;
1708}
1709#endif
1710
1da177e4
LT
1711/* Report the first existing lock that would conflict with l.
1712 * This implements the F_GETLK command of fcntl().
1713 */
1714int fcntl_getlk(struct file *filp, struct flock __user *l)
1715{
9d6a8c5c 1716 struct file_lock file_lock;
1da177e4
LT
1717 struct flock flock;
1718 int error;
1719
1720 error = -EFAULT;
1721 if (copy_from_user(&flock, l, sizeof(flock)))
1722 goto out;
1723 error = -EINVAL;
1724 if ((flock.l_type != F_RDLCK) && (flock.l_type != F_WRLCK))
1725 goto out;
1726
1727 error = flock_to_posix_lock(filp, &file_lock, &flock);
1728 if (error)
1729 goto out;
1730
3ee17abd
BF
1731 error = vfs_test_lock(filp, &file_lock);
1732 if (error)
1733 goto out;
1da177e4 1734
9d6a8c5c
ME
1735 flock.l_type = file_lock.fl_type;
1736 if (file_lock.fl_type != F_UNLCK) {
1737 error = posix_lock_to_flock(&flock, &file_lock);
c2fa1b8a 1738 if (error)
1da177e4 1739 goto out;
1da177e4
LT
1740 }
1741 error = -EFAULT;
1742 if (!copy_to_user(l, &flock, sizeof(flock)))
1743 error = 0;
1744out:
1745 return error;
1746}
1747
7723ec97
ME
1748/**
1749 * vfs_lock_file - file byte range lock
1750 * @filp: The file to apply the lock to
1751 * @cmd: type of locking operation (F_SETLK, F_GETLK, etc.)
1752 * @fl: The lock to be applied
150b3934
ME
1753 * @conf: Place to return a copy of the conflicting lock, if found.
1754 *
1755 * A caller that doesn't care about the conflicting lock may pass NULL
1756 * as the final argument.
1757 *
1758 * If the filesystem defines a private ->lock() method, then @conf will
1759 * be left unchanged; so a caller that cares should initialize it to
1760 * some acceptable default.
2beb6614
ME
1761 *
1762 * To avoid blocking kernel daemons, such as lockd, that need to acquire POSIX
1763 * locks, the ->lock() interface may return asynchronously, before the lock has
1764 * been granted or denied by the underlying filesystem, if (and only if)
1765 * fl_grant is set. Callers expecting ->lock() to return asynchronously
1766 * will only use F_SETLK, not F_SETLKW; they will set FL_SLEEP if (and only if)
1767 * the request is for a blocking lock. When ->lock() does return asynchronously,
bde74e4b 1768 * it must return FILE_LOCK_DEFERRED, and call ->fl_grant() when the lock
2beb6614
ME
1769 * request completes.
1770 * If the request is for non-blocking lock the file system should return
bde74e4b
MS
1771 * FILE_LOCK_DEFERRED then try to get the lock and call the callback routine
1772 * with the result. If the request timed out the callback routine will return a
2beb6614
ME
1773 * nonzero return code and the file system should release the lock. The file
1774 * system is also responsible to keep a corresponding posix lock when it
1775 * grants a lock so the VFS can find out which locks are locally held and do
1776 * the correct lock cleanup when required.
1777 * The underlying filesystem must not drop the kernel lock or call
bde74e4b 1778 * ->fl_grant() before returning to the caller with a FILE_LOCK_DEFERRED
2beb6614 1779 * return code.
7723ec97 1780 */
150b3934 1781int vfs_lock_file(struct file *filp, unsigned int cmd, struct file_lock *fl, struct file_lock *conf)
7723ec97
ME
1782{
1783 if (filp->f_op && filp->f_op->lock)
1784 return filp->f_op->lock(filp, cmd, fl);
1785 else
150b3934 1786 return posix_lock_file(filp, fl, conf);
7723ec97
ME
1787}
1788EXPORT_SYMBOL_GPL(vfs_lock_file);
1789
b648a6de
MS
1790static int do_lock_file_wait(struct file *filp, unsigned int cmd,
1791 struct file_lock *fl)
1792{
1793 int error;
1794
1795 error = security_file_lock(filp, fl->fl_type);
1796 if (error)
1797 return error;
1798
764c76b3
MS
1799 for (;;) {
1800 error = vfs_lock_file(filp, cmd, fl, NULL);
1801 if (error != FILE_LOCK_DEFERRED)
b648a6de 1802 break;
764c76b3
MS
1803 error = wait_event_interruptible(fl->fl_wait, !fl->fl_next);
1804 if (!error)
1805 continue;
1806
1807 locks_delete_block(fl);
1808 break;
b648a6de
MS
1809 }
1810
1811 return error;
1812}
1813
1da177e4
LT
1814/* Apply the lock described by l to an open file descriptor.
1815 * This implements both the F_SETLK and F_SETLKW commands of fcntl().
1816 */
c293621b
PS
1817int fcntl_setlk(unsigned int fd, struct file *filp, unsigned int cmd,
1818 struct flock __user *l)
1da177e4
LT
1819{
1820 struct file_lock *file_lock = locks_alloc_lock();
1821 struct flock flock;
1822 struct inode *inode;
0b2bac2f 1823 struct file *f;
1da177e4
LT
1824 int error;
1825
1826 if (file_lock == NULL)
1827 return -ENOLCK;
1828
1829 /*
1830 * This might block, so we do it before checking the inode.
1831 */
1832 error = -EFAULT;
1833 if (copy_from_user(&flock, l, sizeof(flock)))
1834 goto out;
1835
0f7fc9e4 1836 inode = filp->f_path.dentry->d_inode;
1da177e4
LT
1837
1838 /* Don't allow mandatory locks on files that may be memory mapped
1839 * and shared.
1840 */
a16877ca 1841 if (mandatory_lock(inode) && mapping_writably_mapped(filp->f_mapping)) {
1da177e4
LT
1842 error = -EAGAIN;
1843 goto out;
1844 }
1845
c293621b 1846again:
1da177e4
LT
1847 error = flock_to_posix_lock(filp, file_lock, &flock);
1848 if (error)
1849 goto out;
1850 if (cmd == F_SETLKW) {
1851 file_lock->fl_flags |= FL_SLEEP;
1852 }
1853
1854 error = -EBADF;
1855 switch (flock.l_type) {
1856 case F_RDLCK:
1857 if (!(filp->f_mode & FMODE_READ))
1858 goto out;
1859 break;
1860 case F_WRLCK:
1861 if (!(filp->f_mode & FMODE_WRITE))
1862 goto out;
1863 break;
1864 case F_UNLCK:
1865 break;
1866 default:
1867 error = -EINVAL;
1868 goto out;
1869 }
1870
b648a6de 1871 error = do_lock_file_wait(filp, cmd, file_lock);
1da177e4 1872
c293621b
PS
1873 /*
1874 * Attempt to detect a close/fcntl race and recover by
1875 * releasing the lock that was just acquired.
1876 */
0b2bac2f
AV
1877 /*
1878 * we need that spin_lock here - it prevents reordering between
1879 * update of inode->i_flock and check for it done in close().
1880 * rcu_read_lock() wouldn't do.
1881 */
1882 spin_lock(&current->files->file_lock);
1883 f = fcheck(fd);
1884 spin_unlock(&current->files->file_lock);
1885 if (!error && f != filp && flock.l_type != F_UNLCK) {
c293621b
PS
1886 flock.l_type = F_UNLCK;
1887 goto again;
1da177e4
LT
1888 }
1889
c293621b 1890out:
1da177e4
LT
1891 locks_free_lock(file_lock);
1892 return error;
1893}
1894
1895#if BITS_PER_LONG == 32
1896/* Report the first existing lock that would conflict with l.
1897 * This implements the F_GETLK command of fcntl().
1898 */
1899int fcntl_getlk64(struct file *filp, struct flock64 __user *l)
1900{
9d6a8c5c 1901 struct file_lock file_lock;
1da177e4
LT
1902 struct flock64 flock;
1903 int error;
1904
1905 error = -EFAULT;
1906 if (copy_from_user(&flock, l, sizeof(flock)))
1907 goto out;
1908 error = -EINVAL;
1909 if ((flock.l_type != F_RDLCK) && (flock.l_type != F_WRLCK))
1910 goto out;
1911
1912 error = flock64_to_posix_lock(filp, &file_lock, &flock);
1913 if (error)
1914 goto out;
1915
3ee17abd
BF
1916 error = vfs_test_lock(filp, &file_lock);
1917 if (error)
1918 goto out;
1919
9d6a8c5c
ME
1920 flock.l_type = file_lock.fl_type;
1921 if (file_lock.fl_type != F_UNLCK)
1922 posix_lock_to_flock64(&flock, &file_lock);
1923
1da177e4
LT
1924 error = -EFAULT;
1925 if (!copy_to_user(l, &flock, sizeof(flock)))
1926 error = 0;
1927
1928out:
1929 return error;
1930}
1931
1932/* Apply the lock described by l to an open file descriptor.
1933 * This implements both the F_SETLK and F_SETLKW commands of fcntl().
1934 */
c293621b
PS
1935int fcntl_setlk64(unsigned int fd, struct file *filp, unsigned int cmd,
1936 struct flock64 __user *l)
1da177e4
LT
1937{
1938 struct file_lock *file_lock = locks_alloc_lock();
1939 struct flock64 flock;
1940 struct inode *inode;
0b2bac2f 1941 struct file *f;
1da177e4
LT
1942 int error;
1943
1944 if (file_lock == NULL)
1945 return -ENOLCK;
1946
1947 /*
1948 * This might block, so we do it before checking the inode.
1949 */
1950 error = -EFAULT;
1951 if (copy_from_user(&flock, l, sizeof(flock)))
1952 goto out;
1953
0f7fc9e4 1954 inode = filp->f_path.dentry->d_inode;
1da177e4
LT
1955
1956 /* Don't allow mandatory locks on files that may be memory mapped
1957 * and shared.
1958 */
a16877ca 1959 if (mandatory_lock(inode) && mapping_writably_mapped(filp->f_mapping)) {
1da177e4
LT
1960 error = -EAGAIN;
1961 goto out;
1962 }
1963
c293621b 1964again:
1da177e4
LT
1965 error = flock64_to_posix_lock(filp, file_lock, &flock);
1966 if (error)
1967 goto out;
1968 if (cmd == F_SETLKW64) {
1969 file_lock->fl_flags |= FL_SLEEP;
1970 }
1971
1972 error = -EBADF;
1973 switch (flock.l_type) {
1974 case F_RDLCK:
1975 if (!(filp->f_mode & FMODE_READ))
1976 goto out;
1977 break;
1978 case F_WRLCK:
1979 if (!(filp->f_mode & FMODE_WRITE))
1980 goto out;
1981 break;
1982 case F_UNLCK:
1983 break;
1984 default:
1985 error = -EINVAL;
1986 goto out;
1987 }
1988
b648a6de 1989 error = do_lock_file_wait(filp, cmd, file_lock);
1da177e4 1990
c293621b
PS
1991 /*
1992 * Attempt to detect a close/fcntl race and recover by
1993 * releasing the lock that was just acquired.
1994 */
0b2bac2f
AV
1995 spin_lock(&current->files->file_lock);
1996 f = fcheck(fd);
1997 spin_unlock(&current->files->file_lock);
1998 if (!error && f != filp && flock.l_type != F_UNLCK) {
c293621b
PS
1999 flock.l_type = F_UNLCK;
2000 goto again;
1da177e4
LT
2001 }
2002
2003out:
2004 locks_free_lock(file_lock);
2005 return error;
2006}
2007#endif /* BITS_PER_LONG == 32 */
2008
2009/*
2010 * This function is called when the file is being removed
2011 * from the task's fd array. POSIX locks belonging to this task
2012 * are deleted at this time.
2013 */
2014void locks_remove_posix(struct file *filp, fl_owner_t owner)
2015{
ff7b86b8 2016 struct file_lock lock;
1da177e4
LT
2017
2018 /*
2019 * If there are no locks held on this file, we don't need to call
2020 * posix_lock_file(). Another process could be setting a lock on this
2021 * file at the same time, but we wouldn't remove that lock anyway.
2022 */
0f7fc9e4 2023 if (!filp->f_path.dentry->d_inode->i_flock)
1da177e4
LT
2024 return;
2025
2026 lock.fl_type = F_UNLCK;
75e1fcc0 2027 lock.fl_flags = FL_POSIX | FL_CLOSE;
1da177e4
LT
2028 lock.fl_start = 0;
2029 lock.fl_end = OFFSET_MAX;
2030 lock.fl_owner = owner;
2031 lock.fl_pid = current->tgid;
2032 lock.fl_file = filp;
2033 lock.fl_ops = NULL;
2034 lock.fl_lmops = NULL;
2035
150b3934 2036 vfs_lock_file(filp, F_SETLK, &lock, NULL);
1da177e4 2037
1da177e4
LT
2038 if (lock.fl_ops && lock.fl_ops->fl_release_private)
2039 lock.fl_ops->fl_release_private(&lock);
2040}
2041
2042EXPORT_SYMBOL(locks_remove_posix);
2043
2044/*
2045 * This function is called on the last close of an open file.
2046 */
2047void locks_remove_flock(struct file *filp)
2048{
0f7fc9e4 2049 struct inode * inode = filp->f_path.dentry->d_inode;
1da177e4
LT
2050 struct file_lock *fl;
2051 struct file_lock **before;
2052
2053 if (!inode->i_flock)
2054 return;
2055
2056 if (filp->f_op && filp->f_op->flock) {
2057 struct file_lock fl = {
2058 .fl_pid = current->tgid,
2059 .fl_file = filp,
2060 .fl_flags = FL_FLOCK,
2061 .fl_type = F_UNLCK,
2062 .fl_end = OFFSET_MAX,
2063 };
2064 filp->f_op->flock(filp, F_SETLKW, &fl);
80fec4c6
TM
2065 if (fl.fl_ops && fl.fl_ops->fl_release_private)
2066 fl.fl_ops->fl_release_private(&fl);
1da177e4
LT
2067 }
2068
b89f4321 2069 lock_flocks();
1da177e4
LT
2070 before = &inode->i_flock;
2071
2072 while ((fl = *before) != NULL) {
2073 if (fl->fl_file == filp) {
c293621b 2074 if (IS_FLOCK(fl)) {
1da177e4
LT
2075 locks_delete_lock(before);
2076 continue;
2077 }
2078 if (IS_LEASE(fl)) {
2079 lease_modify(before, F_UNLCK);
2080 continue;
2081 }
2082 /* What? */
2083 BUG();
2084 }
2085 before = &fl->fl_next;
2086 }
b89f4321 2087 unlock_flocks();
1da177e4
LT
2088}
2089
1da177e4
LT
2090/**
2091 * posix_unblock_lock - stop waiting for a file lock
2092 * @filp: how the file was opened
2093 * @waiter: the lock which was waiting
2094 *
2095 * lockd needs to block waiting for locks.
2096 */
64a318ee 2097int
1da177e4
LT
2098posix_unblock_lock(struct file *filp, struct file_lock *waiter)
2099{
64a318ee
BF
2100 int status = 0;
2101
b89f4321 2102 lock_flocks();
5996a298 2103 if (waiter->fl_next)
1da177e4 2104 __locks_delete_block(waiter);
64a318ee
BF
2105 else
2106 status = -ENOENT;
b89f4321 2107 unlock_flocks();
64a318ee 2108 return status;
1da177e4
LT
2109}
2110
2111EXPORT_SYMBOL(posix_unblock_lock);
2112
9b9d2ab4
ME
2113/**
2114 * vfs_cancel_lock - file byte range unblock lock
2115 * @filp: The file to apply the unblock to
2116 * @fl: The lock to be unblocked
2117 *
2118 * Used by lock managers to cancel blocked requests
2119 */
2120int vfs_cancel_lock(struct file *filp, struct file_lock *fl)
2121{
2122 if (filp->f_op && filp->f_op->lock)
2123 return filp->f_op->lock(filp, F_CANCELLK, fl);
2124 return 0;
2125}
2126
2127EXPORT_SYMBOL_GPL(vfs_cancel_lock);
2128
7f8ada98 2129#ifdef CONFIG_PROC_FS
d8ba7a36 2130#include <linux/proc_fs.h>
7f8ada98
PE
2131#include <linux/seq_file.h>
2132
2133static void lock_get_status(struct seq_file *f, struct file_lock *fl,
99dc8292 2134 loff_t id, char *pfx)
1da177e4
LT
2135{
2136 struct inode *inode = NULL;
ab1f1611
VG
2137 unsigned int fl_pid;
2138
2139 if (fl->fl_nspid)
6c5f3e7b 2140 fl_pid = pid_vnr(fl->fl_nspid);
ab1f1611
VG
2141 else
2142 fl_pid = fl->fl_pid;
1da177e4
LT
2143
2144 if (fl->fl_file != NULL)
0f7fc9e4 2145 inode = fl->fl_file->f_path.dentry->d_inode;
1da177e4 2146
99dc8292 2147 seq_printf(f, "%lld:%s ", id, pfx);
1da177e4 2148 if (IS_POSIX(fl)) {
7f8ada98 2149 seq_printf(f, "%6s %s ",
1da177e4
LT
2150 (fl->fl_flags & FL_ACCESS) ? "ACCESS" : "POSIX ",
2151 (inode == NULL) ? "*NOINODE*" :
a16877ca 2152 mandatory_lock(inode) ? "MANDATORY" : "ADVISORY ");
1da177e4
LT
2153 } else if (IS_FLOCK(fl)) {
2154 if (fl->fl_type & LOCK_MAND) {
7f8ada98 2155 seq_printf(f, "FLOCK MSNFS ");
1da177e4 2156 } else {
7f8ada98 2157 seq_printf(f, "FLOCK ADVISORY ");
1da177e4
LT
2158 }
2159 } else if (IS_LEASE(fl)) {
7f8ada98 2160 seq_printf(f, "LEASE ");
1da177e4 2161 if (fl->fl_type & F_INPROGRESS)
7f8ada98 2162 seq_printf(f, "BREAKING ");
1da177e4 2163 else if (fl->fl_file)
7f8ada98 2164 seq_printf(f, "ACTIVE ");
1da177e4 2165 else
7f8ada98 2166 seq_printf(f, "BREAKER ");
1da177e4 2167 } else {
7f8ada98 2168 seq_printf(f, "UNKNOWN UNKNOWN ");
1da177e4
LT
2169 }
2170 if (fl->fl_type & LOCK_MAND) {
7f8ada98 2171 seq_printf(f, "%s ",
1da177e4
LT
2172 (fl->fl_type & LOCK_READ)
2173 ? (fl->fl_type & LOCK_WRITE) ? "RW " : "READ "
2174 : (fl->fl_type & LOCK_WRITE) ? "WRITE" : "NONE ");
2175 } else {
7f8ada98 2176 seq_printf(f, "%s ",
1da177e4
LT
2177 (fl->fl_type & F_INPROGRESS)
2178 ? (fl->fl_type & F_UNLCK) ? "UNLCK" : "READ "
2179 : (fl->fl_type & F_WRLCK) ? "WRITE" : "READ ");
2180 }
2181 if (inode) {
2182#ifdef WE_CAN_BREAK_LSLK_NOW
ab1f1611 2183 seq_printf(f, "%d %s:%ld ", fl_pid,
1da177e4
LT
2184 inode->i_sb->s_id, inode->i_ino);
2185#else
2186 /* userspace relies on this representation of dev_t ;-( */
ab1f1611 2187 seq_printf(f, "%d %02x:%02x:%ld ", fl_pid,
1da177e4
LT
2188 MAJOR(inode->i_sb->s_dev),
2189 MINOR(inode->i_sb->s_dev), inode->i_ino);
2190#endif
2191 } else {
ab1f1611 2192 seq_printf(f, "%d <none>:0 ", fl_pid);
1da177e4
LT
2193 }
2194 if (IS_POSIX(fl)) {
2195 if (fl->fl_end == OFFSET_MAX)
7f8ada98 2196 seq_printf(f, "%Ld EOF\n", fl->fl_start);
1da177e4 2197 else
7f8ada98 2198 seq_printf(f, "%Ld %Ld\n", fl->fl_start, fl->fl_end);
1da177e4 2199 } else {
7f8ada98 2200 seq_printf(f, "0 EOF\n");
1da177e4
LT
2201 }
2202}
2203
7f8ada98 2204static int locks_show(struct seq_file *f, void *v)
1da177e4 2205{
7f8ada98 2206 struct file_lock *fl, *bfl;
1da177e4 2207
7f8ada98 2208 fl = list_entry(v, struct file_lock, fl_link);
1da177e4 2209
99dc8292 2210 lock_get_status(f, fl, *((loff_t *)f->private), "");
1da177e4 2211
7f8ada98 2212 list_for_each_entry(bfl, &fl->fl_block, fl_block)
99dc8292 2213 lock_get_status(f, bfl, *((loff_t *)f->private), " ->");
094f2825 2214
7f8ada98
PE
2215 return 0;
2216}
1da177e4 2217
7f8ada98
PE
2218static void *locks_start(struct seq_file *f, loff_t *pos)
2219{
99dc8292
JM
2220 loff_t *p = f->private;
2221
b89f4321 2222 lock_flocks();
99dc8292 2223 *p = (*pos + 1);
7f8ada98
PE
2224 return seq_list_start(&file_lock_list, *pos);
2225}
1da177e4 2226
7f8ada98
PE
2227static void *locks_next(struct seq_file *f, void *v, loff_t *pos)
2228{
99dc8292
JM
2229 loff_t *p = f->private;
2230 ++*p;
7f8ada98
PE
2231 return seq_list_next(v, &file_lock_list, pos);
2232}
1da177e4 2233
7f8ada98
PE
2234static void locks_stop(struct seq_file *f, void *v)
2235{
b89f4321 2236 unlock_flocks();
1da177e4
LT
2237}
2238
d8ba7a36 2239static const struct seq_operations locks_seq_operations = {
7f8ada98
PE
2240 .start = locks_start,
2241 .next = locks_next,
2242 .stop = locks_stop,
2243 .show = locks_show,
2244};
d8ba7a36
AD
2245
2246static int locks_open(struct inode *inode, struct file *filp)
2247{
99dc8292 2248 return seq_open_private(filp, &locks_seq_operations, sizeof(loff_t));
d8ba7a36
AD
2249}
2250
2251static const struct file_operations proc_locks_operations = {
2252 .open = locks_open,
2253 .read = seq_read,
2254 .llseek = seq_lseek,
99dc8292 2255 .release = seq_release_private,
d8ba7a36
AD
2256};
2257
2258static int __init proc_locks_init(void)
2259{
2260 proc_create("locks", 0, NULL, &proc_locks_operations);
2261 return 0;
2262}
2263module_init(proc_locks_init);
7f8ada98
PE
2264#endif
2265
1da177e4
LT
2266/**
2267 * lock_may_read - checks that the region is free of locks
2268 * @inode: the inode that is being read
2269 * @start: the first byte to read
2270 * @len: the number of bytes to read
2271 *
2272 * Emulates Windows locking requirements. Whole-file
2273 * mandatory locks (share modes) can prohibit a read and
2274 * byte-range POSIX locks can prohibit a read if they overlap.
2275 *
2276 * N.B. this function is only ever called
2277 * from knfsd and ownership of locks is never checked.
2278 */
2279int lock_may_read(struct inode *inode, loff_t start, unsigned long len)
2280{
2281 struct file_lock *fl;
2282 int result = 1;
b89f4321 2283 lock_flocks();
1da177e4
LT
2284 for (fl = inode->i_flock; fl != NULL; fl = fl->fl_next) {
2285 if (IS_POSIX(fl)) {
2286 if (fl->fl_type == F_RDLCK)
2287 continue;
2288 if ((fl->fl_end < start) || (fl->fl_start > (start + len)))
2289 continue;
2290 } else if (IS_FLOCK(fl)) {
2291 if (!(fl->fl_type & LOCK_MAND))
2292 continue;
2293 if (fl->fl_type & LOCK_READ)
2294 continue;
2295 } else
2296 continue;
2297 result = 0;
2298 break;
2299 }
b89f4321 2300 unlock_flocks();
1da177e4
LT
2301 return result;
2302}
2303
2304EXPORT_SYMBOL(lock_may_read);
2305
2306/**
2307 * lock_may_write - checks that the region is free of locks
2308 * @inode: the inode that is being written
2309 * @start: the first byte to write
2310 * @len: the number of bytes to write
2311 *
2312 * Emulates Windows locking requirements. Whole-file
2313 * mandatory locks (share modes) can prohibit a write and
2314 * byte-range POSIX locks can prohibit a write if they overlap.
2315 *
2316 * N.B. this function is only ever called
2317 * from knfsd and ownership of locks is never checked.
2318 */
2319int lock_may_write(struct inode *inode, loff_t start, unsigned long len)
2320{
2321 struct file_lock *fl;
2322 int result = 1;
b89f4321 2323 lock_flocks();
1da177e4
LT
2324 for (fl = inode->i_flock; fl != NULL; fl = fl->fl_next) {
2325 if (IS_POSIX(fl)) {
2326 if ((fl->fl_end < start) || (fl->fl_start > (start + len)))
2327 continue;
2328 } else if (IS_FLOCK(fl)) {
2329 if (!(fl->fl_type & LOCK_MAND))
2330 continue;
2331 if (fl->fl_type & LOCK_WRITE)
2332 continue;
2333 } else
2334 continue;
2335 result = 0;
2336 break;
2337 }
b89f4321 2338 unlock_flocks();
1da177e4
LT
2339 return result;
2340}
2341
2342EXPORT_SYMBOL(lock_may_write);
2343
1da177e4
LT
2344static int __init filelock_init(void)
2345{
2346 filelock_cache = kmem_cache_create("file_lock_cache",
2347 sizeof(struct file_lock), 0, SLAB_PANIC,
20c2df83 2348 init_once);
1da177e4
LT
2349 return 0;
2350}
2351
2352core_initcall(filelock_init);