tdb: Fix blank line endings
[Samba/gebeck_regimport.git] / lib / tdb / common / lock.c
blob74ead7be053635033683812e787026dc590e3245
1 /*
2 Unix SMB/CIFS implementation.
4 trivial database library
6 Copyright (C) Andrew Tridgell 1999-2005
7 Copyright (C) Paul `Rusty' Russell 2000
8 Copyright (C) Jeremy Allison 2000-2003
10 ** NOTE! The following LGPL license applies to the tdb
11 ** library. This does NOT imply that all of Samba is released
12 ** under the LGPL
14 This library is free software; you can redistribute it and/or
15 modify it under the terms of the GNU Lesser General Public
16 License as published by the Free Software Foundation; either
17 version 3 of the License, or (at your option) any later version.
19 This library is distributed in the hope that it will be useful,
20 but WITHOUT ANY WARRANTY; without even the implied warranty of
21 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
22 Lesser General Public License for more details.
24 You should have received a copy of the GNU Lesser General Public
25 License along with this library; if not, see <http://www.gnu.org/licenses/>.
28 #include "tdb_private.h"
30 _PUBLIC_ void tdb_setalarm_sigptr(struct tdb_context *tdb, volatile sig_atomic_t *ptr)
32 tdb->interrupt_sig_ptr = ptr;
35 static int fcntl_lock(struct tdb_context *tdb,
36 int rw, off_t off, off_t len, bool waitflag)
38 struct flock fl;
40 fl.l_type = rw;
41 fl.l_whence = SEEK_SET;
42 fl.l_start = off;
43 fl.l_len = len;
44 fl.l_pid = 0;
46 if (waitflag)
47 return fcntl(tdb->fd, F_SETLKW, &fl);
48 else
49 return fcntl(tdb->fd, F_SETLK, &fl);
52 static int fcntl_unlock(struct tdb_context *tdb, int rw, off_t off, off_t len)
54 struct flock fl;
55 #if 0 /* Check they matched up locks and unlocks correctly. */
56 char line[80];
57 FILE *locks;
58 bool found = false;
60 locks = fopen("/proc/locks", "r");
62 while (fgets(line, 80, locks)) {
63 char *p;
64 int type, start, l;
66 /* eg. 1: FLOCK ADVISORY WRITE 2440 08:01:2180826 0 EOF */
67 p = strchr(line, ':') + 1;
68 if (strncmp(p, " POSIX ADVISORY ", strlen(" POSIX ADVISORY ")))
69 continue;
70 p += strlen(" FLOCK ADVISORY ");
71 if (strncmp(p, "READ ", strlen("READ ")) == 0)
72 type = F_RDLCK;
73 else if (strncmp(p, "WRITE ", strlen("WRITE ")) == 0)
74 type = F_WRLCK;
75 else
76 abort();
77 p += 6;
78 if (atoi(p) != getpid())
79 continue;
80 p = strchr(strchr(p, ' ') + 1, ' ') + 1;
81 start = atoi(p);
82 p = strchr(p, ' ') + 1;
83 if (strncmp(p, "EOF", 3) == 0)
84 l = 0;
85 else
86 l = atoi(p) - start + 1;
88 if (off == start) {
89 if (len != l) {
90 fprintf(stderr, "Len %u should be %u: %s",
91 (int)len, l, line);
92 abort();
94 if (type != rw) {
95 fprintf(stderr, "Type %s wrong: %s",
96 rw == F_RDLCK ? "READ" : "WRITE", line);
97 abort();
99 found = true;
100 break;
104 if (!found) {
105 fprintf(stderr, "Unlock on %u@%u not found!\n",
106 (int)off, (int)len);
107 abort();
110 fclose(locks);
111 #endif
113 fl.l_type = F_UNLCK;
114 fl.l_whence = SEEK_SET;
115 fl.l_start = off;
116 fl.l_len = len;
117 fl.l_pid = 0;
119 return fcntl(tdb->fd, F_SETLKW, &fl);
122 /* list -1 is the alloc list, otherwise a hash chain. */
123 static tdb_off_t lock_offset(int list)
125 return FREELIST_TOP + 4*list;
128 /* a byte range locking function - return 0 on success
129 this functions locks/unlocks "len" byte at the specified offset.
131 On error, errno is also set so that errors are passed back properly
132 through tdb_open().
134 note that a len of zero means lock to end of file
136 int tdb_brlock(struct tdb_context *tdb,
137 int rw_type, tdb_off_t offset, size_t len,
138 enum tdb_lock_flags flags)
140 int ret;
142 if (tdb->flags & TDB_NOLOCK) {
143 return 0;
146 if (flags & TDB_LOCK_MARK_ONLY) {
147 return 0;
150 if ((rw_type == F_WRLCK) && (tdb->read_only || tdb->traverse_read)) {
151 tdb->ecode = TDB_ERR_RDONLY;
152 return -1;
155 do {
156 ret = fcntl_lock(tdb, rw_type, offset, len,
157 flags & TDB_LOCK_WAIT);
158 /* Check for a sigalarm break. */
159 if (ret == -1 && errno == EINTR &&
160 tdb->interrupt_sig_ptr &&
161 *tdb->interrupt_sig_ptr) {
162 break;
164 } while (ret == -1 && errno == EINTR);
166 if (ret == -1) {
167 tdb->ecode = TDB_ERR_LOCK;
168 /* Generic lock error. errno set by fcntl.
169 * EAGAIN is an expected return from non-blocking
170 * locks. */
171 if (!(flags & TDB_LOCK_PROBE) && errno != EAGAIN) {
172 TDB_LOG((tdb, TDB_DEBUG_TRACE,"tdb_brlock failed (fd=%d) at offset %d rw_type=%d flags=%d len=%d\n",
173 tdb->fd, offset, rw_type, flags, (int)len));
175 return -1;
177 return 0;
180 int tdb_brunlock(struct tdb_context *tdb,
181 int rw_type, tdb_off_t offset, size_t len)
183 int ret;
185 if (tdb->flags & TDB_NOLOCK) {
186 return 0;
189 do {
190 ret = fcntl_unlock(tdb, rw_type, offset, len);
191 } while (ret == -1 && errno == EINTR);
193 if (ret == -1) {
194 TDB_LOG((tdb, TDB_DEBUG_TRACE,"tdb_brunlock failed (fd=%d) at offset %d rw_type=%d len=%d\n",
195 tdb->fd, offset, rw_type, (int)len));
197 return ret;
201 upgrade a read lock to a write lock. This needs to be handled in a
202 special way as some OSes (such as solaris) have too conservative
203 deadlock detection and claim a deadlock when progress can be
204 made. For those OSes we may loop for a while.
206 int tdb_allrecord_upgrade(struct tdb_context *tdb)
208 int count = 1000;
210 if (tdb->allrecord_lock.count != 1) {
211 TDB_LOG((tdb, TDB_DEBUG_ERROR,
212 "tdb_allrecord_upgrade failed: count %u too high\n",
213 tdb->allrecord_lock.count));
214 return -1;
217 if (tdb->allrecord_lock.off != 1) {
218 TDB_LOG((tdb, TDB_DEBUG_ERROR,
219 "tdb_allrecord_upgrade failed: already upgraded?\n"));
220 return -1;
223 while (count--) {
224 struct timeval tv;
225 if (tdb_brlock(tdb, F_WRLCK, FREELIST_TOP, 0,
226 TDB_LOCK_WAIT|TDB_LOCK_PROBE) == 0) {
227 tdb->allrecord_lock.ltype = F_WRLCK;
228 tdb->allrecord_lock.off = 0;
229 return 0;
231 if (errno != EDEADLK) {
232 break;
234 /* sleep for as short a time as we can - more portable than usleep() */
235 tv.tv_sec = 0;
236 tv.tv_usec = 1;
237 select(0, NULL, NULL, NULL, &tv);
239 TDB_LOG((tdb, TDB_DEBUG_TRACE,"tdb_allrecord_upgrade failed\n"));
240 return -1;
243 static struct tdb_lock_type *find_nestlock(struct tdb_context *tdb,
244 tdb_off_t offset)
246 unsigned int i;
248 for (i=0; i<tdb->num_lockrecs; i++) {
249 if (tdb->lockrecs[i].off == offset) {
250 return &tdb->lockrecs[i];
253 return NULL;
256 /* lock an offset in the database. */
257 int tdb_nest_lock(struct tdb_context *tdb, uint32_t offset, int ltype,
258 enum tdb_lock_flags flags)
260 struct tdb_lock_type *new_lck;
262 if (offset >= lock_offset(tdb->header.hash_size)) {
263 tdb->ecode = TDB_ERR_LOCK;
264 TDB_LOG((tdb, TDB_DEBUG_ERROR,"tdb_lock: invalid offset %u for ltype=%d\n",
265 offset, ltype));
266 return -1;
268 if (tdb->flags & TDB_NOLOCK)
269 return 0;
271 new_lck = find_nestlock(tdb, offset);
272 if (new_lck) {
274 * Just increment the in-memory struct, posix locks
275 * don't stack.
277 new_lck->count++;
278 return 0;
281 new_lck = (struct tdb_lock_type *)realloc(
282 tdb->lockrecs,
283 sizeof(*tdb->lockrecs) * (tdb->num_lockrecs+1));
284 if (new_lck == NULL) {
285 errno = ENOMEM;
286 return -1;
288 tdb->lockrecs = new_lck;
290 /* Since fcntl locks don't nest, we do a lock for the first one,
291 and simply bump the count for future ones */
292 if (tdb_brlock(tdb, ltype, offset, 1, flags)) {
293 return -1;
296 tdb->lockrecs[tdb->num_lockrecs].off = offset;
297 tdb->lockrecs[tdb->num_lockrecs].count = 1;
298 tdb->lockrecs[tdb->num_lockrecs].ltype = ltype;
299 tdb->num_lockrecs++;
301 return 0;
304 static int tdb_lock_and_recover(struct tdb_context *tdb)
306 int ret;
308 /* We need to match locking order in transaction commit. */
309 if (tdb_brlock(tdb, F_WRLCK, FREELIST_TOP, 0, TDB_LOCK_WAIT)) {
310 return -1;
313 if (tdb_brlock(tdb, F_WRLCK, OPEN_LOCK, 1, TDB_LOCK_WAIT)) {
314 tdb_brunlock(tdb, F_WRLCK, FREELIST_TOP, 0);
315 return -1;
318 ret = tdb_transaction_recover(tdb);
320 tdb_brunlock(tdb, F_WRLCK, OPEN_LOCK, 1);
321 tdb_brunlock(tdb, F_WRLCK, FREELIST_TOP, 0);
323 return ret;
326 static bool have_data_locks(const struct tdb_context *tdb)
328 unsigned int i;
330 for (i = 0; i < tdb->num_lockrecs; i++) {
331 if (tdb->lockrecs[i].off >= lock_offset(-1))
332 return true;
334 return false;
337 static int tdb_lock_list(struct tdb_context *tdb, int list, int ltype,
338 enum tdb_lock_flags waitflag)
340 int ret;
341 bool check = false;
343 /* a allrecord lock allows us to avoid per chain locks */
344 if (tdb->allrecord_lock.count &&
345 (ltype == tdb->allrecord_lock.ltype || ltype == F_RDLCK)) {
346 return 0;
349 if (tdb->allrecord_lock.count) {
350 tdb->ecode = TDB_ERR_LOCK;
351 ret = -1;
352 } else {
353 /* Only check when we grab first data lock. */
354 check = !have_data_locks(tdb);
355 ret = tdb_nest_lock(tdb, lock_offset(list), ltype, waitflag);
357 if (ret == 0 && check && tdb_needs_recovery(tdb)) {
358 tdb_nest_unlock(tdb, lock_offset(list), ltype, false);
360 if (tdb_lock_and_recover(tdb) == -1) {
361 return -1;
363 return tdb_lock_list(tdb, list, ltype, waitflag);
366 return ret;
369 /* lock a list in the database. list -1 is the alloc list */
370 int tdb_lock(struct tdb_context *tdb, int list, int ltype)
372 int ret;
374 ret = tdb_lock_list(tdb, list, ltype, TDB_LOCK_WAIT);
375 if (ret) {
376 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_lock failed on list %d "
377 "ltype=%d (%s)\n", list, ltype, strerror(errno)));
379 return ret;
382 /* lock a list in the database. list -1 is the alloc list. non-blocking lock */
383 _PUBLIC_ int tdb_lock_nonblock(struct tdb_context *tdb, int list, int ltype)
385 return tdb_lock_list(tdb, list, ltype, TDB_LOCK_NOWAIT);
389 int tdb_nest_unlock(struct tdb_context *tdb, uint32_t offset, int ltype,
390 bool mark_lock)
392 int ret = -1;
393 struct tdb_lock_type *lck;
395 if (tdb->flags & TDB_NOLOCK)
396 return 0;
398 /* Sanity checks */
399 if (offset >= lock_offset(tdb->header.hash_size)) {
400 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_unlock: offset %u invalid (%d)\n", offset, tdb->header.hash_size));
401 return ret;
404 lck = find_nestlock(tdb, offset);
405 if ((lck == NULL) || (lck->count == 0)) {
406 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_unlock: count is 0\n"));
407 return -1;
410 if (lck->count > 1) {
411 lck->count--;
412 return 0;
416 * This lock has count==1 left, so we need to unlock it in the
417 * kernel. We don't bother with decrementing the in-memory array
418 * element, we're about to overwrite it with the last array element
419 * anyway.
422 if (mark_lock) {
423 ret = 0;
424 } else {
425 ret = tdb_brunlock(tdb, ltype, offset, 1);
429 * Shrink the array by overwriting the element just unlocked with the
430 * last array element.
432 *lck = tdb->lockrecs[--tdb->num_lockrecs];
435 * We don't bother with realloc when the array shrinks, but if we have
436 * a completely idle tdb we should get rid of the locked array.
439 if (tdb->num_lockrecs == 0) {
440 SAFE_FREE(tdb->lockrecs);
443 if (ret)
444 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_unlock: An error occurred unlocking!\n"));
445 return ret;
448 _PUBLIC_ int tdb_unlock(struct tdb_context *tdb, int list, int ltype)
450 /* a global lock allows us to avoid per chain locks */
451 if (tdb->allrecord_lock.count &&
452 (ltype == tdb->allrecord_lock.ltype || ltype == F_RDLCK)) {
453 return 0;
456 if (tdb->allrecord_lock.count) {
457 tdb->ecode = TDB_ERR_LOCK;
458 return -1;
461 return tdb_nest_unlock(tdb, lock_offset(list), ltype, false);
465 get the transaction lock
467 int tdb_transaction_lock(struct tdb_context *tdb, int ltype,
468 enum tdb_lock_flags lockflags)
470 return tdb_nest_lock(tdb, TRANSACTION_LOCK, ltype, lockflags);
474 release the transaction lock
476 int tdb_transaction_unlock(struct tdb_context *tdb, int ltype)
478 return tdb_nest_unlock(tdb, TRANSACTION_LOCK, ltype, false);
481 /* Returns 0 if all done, -1 if error, 1 if ok. */
482 static int tdb_allrecord_check(struct tdb_context *tdb, int ltype,
483 enum tdb_lock_flags flags, bool upgradable)
485 /* There are no locks on read-only dbs */
486 if (tdb->read_only || tdb->traverse_read) {
487 tdb->ecode = TDB_ERR_LOCK;
488 return -1;
491 if (tdb->allrecord_lock.count && tdb->allrecord_lock.ltype == ltype) {
492 tdb->allrecord_lock.count++;
493 return 0;
496 if (tdb->allrecord_lock.count) {
497 /* a global lock of a different type exists */
498 tdb->ecode = TDB_ERR_LOCK;
499 return -1;
502 if (tdb_have_extra_locks(tdb)) {
503 /* can't combine global and chain locks */
504 tdb->ecode = TDB_ERR_LOCK;
505 return -1;
508 if (upgradable && ltype != F_RDLCK) {
509 /* tdb error: you can't upgrade a write lock! */
510 tdb->ecode = TDB_ERR_LOCK;
511 return -1;
513 return 1;
516 /* We only need to lock individual bytes, but Linux merges consecutive locks
517 * so we lock in contiguous ranges. */
518 static int tdb_chainlock_gradual(struct tdb_context *tdb,
519 int ltype, enum tdb_lock_flags flags,
520 size_t off, size_t len)
522 int ret;
523 enum tdb_lock_flags nb_flags = (flags & ~TDB_LOCK_WAIT);
525 if (len <= 4) {
526 /* Single record. Just do blocking lock. */
527 return tdb_brlock(tdb, ltype, off, len, flags);
530 /* First we try non-blocking. */
531 ret = tdb_brlock(tdb, ltype, off, len, nb_flags);
532 if (ret == 0) {
533 return 0;
536 /* Try locking first half, then second. */
537 ret = tdb_chainlock_gradual(tdb, ltype, flags, off, len / 2);
538 if (ret == -1)
539 return -1;
541 ret = tdb_chainlock_gradual(tdb, ltype, flags,
542 off + len / 2, len - len / 2);
543 if (ret == -1) {
544 tdb_brunlock(tdb, ltype, off, len / 2);
545 return -1;
547 return 0;
550 /* lock/unlock entire database. It can only be upgradable if you have some
551 * other way of guaranteeing exclusivity (ie. transaction write lock).
552 * We do the locking gradually to avoid being starved by smaller locks. */
553 int tdb_allrecord_lock(struct tdb_context *tdb, int ltype,
554 enum tdb_lock_flags flags, bool upgradable)
556 switch (tdb_allrecord_check(tdb, ltype, flags, upgradable)) {
557 case -1:
558 return -1;
559 case 0:
560 return 0;
563 /* We cover two kinds of locks:
564 * 1) Normal chain locks. Taken for almost all operations.
565 * 2) Individual records locks. Taken after normal or free
566 * chain locks.
568 * It is (1) which cause the starvation problem, so we're only
569 * gradual for that. */
570 if (tdb_chainlock_gradual(tdb, ltype, flags, FREELIST_TOP,
571 tdb->header.hash_size * 4) == -1) {
572 return -1;
575 /* Grab individual record locks. */
576 if (tdb_brlock(tdb, ltype, lock_offset(tdb->header.hash_size), 0,
577 flags) == -1) {
578 tdb_brunlock(tdb, ltype, FREELIST_TOP,
579 tdb->header.hash_size * 4);
580 return -1;
583 tdb->allrecord_lock.count = 1;
584 /* If it's upgradable, it's actually exclusive so we can treat
585 * it as a write lock. */
586 tdb->allrecord_lock.ltype = upgradable ? F_WRLCK : ltype;
587 tdb->allrecord_lock.off = upgradable;
589 if (tdb_needs_recovery(tdb)) {
590 bool mark = flags & TDB_LOCK_MARK_ONLY;
591 tdb_allrecord_unlock(tdb, ltype, mark);
592 if (mark) {
593 tdb->ecode = TDB_ERR_LOCK;
594 TDB_LOG((tdb, TDB_DEBUG_ERROR,
595 "tdb_lockall_mark cannot do recovery\n"));
596 return -1;
598 if (tdb_lock_and_recover(tdb) == -1) {
599 return -1;
601 return tdb_allrecord_lock(tdb, ltype, flags, upgradable);
604 return 0;
609 /* unlock entire db */
610 int tdb_allrecord_unlock(struct tdb_context *tdb, int ltype, bool mark_lock)
612 /* There are no locks on read-only dbs */
613 if (tdb->read_only || tdb->traverse_read) {
614 tdb->ecode = TDB_ERR_LOCK;
615 return -1;
618 if (tdb->allrecord_lock.count == 0) {
619 tdb->ecode = TDB_ERR_LOCK;
620 return -1;
623 /* Upgradable locks are marked as write locks. */
624 if (tdb->allrecord_lock.ltype != ltype
625 && (!tdb->allrecord_lock.off || ltype != F_RDLCK)) {
626 tdb->ecode = TDB_ERR_LOCK;
627 return -1;
630 if (tdb->allrecord_lock.count > 1) {
631 tdb->allrecord_lock.count--;
632 return 0;
635 if (!mark_lock && tdb_brunlock(tdb, ltype, FREELIST_TOP, 0)) {
636 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_unlockall failed (%s)\n", strerror(errno)));
637 return -1;
640 tdb->allrecord_lock.count = 0;
641 tdb->allrecord_lock.ltype = 0;
643 return 0;
646 /* lock entire database with write lock */
647 _PUBLIC_ int tdb_lockall(struct tdb_context *tdb)
649 tdb_trace(tdb, "tdb_lockall");
650 return tdb_allrecord_lock(tdb, F_WRLCK, TDB_LOCK_WAIT, false);
653 /* lock entire database with write lock - mark only */
654 _PUBLIC_ int tdb_lockall_mark(struct tdb_context *tdb)
656 tdb_trace(tdb, "tdb_lockall_mark");
657 return tdb_allrecord_lock(tdb, F_WRLCK, TDB_LOCK_MARK_ONLY, false);
660 /* unlock entire database with write lock - unmark only */
661 _PUBLIC_ int tdb_lockall_unmark(struct tdb_context *tdb)
663 tdb_trace(tdb, "tdb_lockall_unmark");
664 return tdb_allrecord_unlock(tdb, F_WRLCK, true);
667 /* lock entire database with write lock - nonblocking varient */
668 _PUBLIC_ int tdb_lockall_nonblock(struct tdb_context *tdb)
670 int ret = tdb_allrecord_lock(tdb, F_WRLCK, TDB_LOCK_NOWAIT, false);
671 tdb_trace_ret(tdb, "tdb_lockall_nonblock", ret);
672 return ret;
675 /* unlock entire database with write lock */
676 _PUBLIC_ int tdb_unlockall(struct tdb_context *tdb)
678 tdb_trace(tdb, "tdb_unlockall");
679 return tdb_allrecord_unlock(tdb, F_WRLCK, false);
682 /* lock entire database with read lock */
683 _PUBLIC_ int tdb_lockall_read(struct tdb_context *tdb)
685 tdb_trace(tdb, "tdb_lockall_read");
686 return tdb_allrecord_lock(tdb, F_RDLCK, TDB_LOCK_WAIT, false);
689 /* lock entire database with read lock - nonblock varient */
690 _PUBLIC_ int tdb_lockall_read_nonblock(struct tdb_context *tdb)
692 int ret = tdb_allrecord_lock(tdb, F_RDLCK, TDB_LOCK_NOWAIT, false);
693 tdb_trace_ret(tdb, "tdb_lockall_read_nonblock", ret);
694 return ret;
697 /* unlock entire database with read lock */
698 _PUBLIC_ int tdb_unlockall_read(struct tdb_context *tdb)
700 tdb_trace(tdb, "tdb_unlockall_read");
701 return tdb_allrecord_unlock(tdb, F_RDLCK, false);
704 /* lock/unlock one hash chain. This is meant to be used to reduce
705 contention - it cannot guarantee how many records will be locked */
706 _PUBLIC_ int tdb_chainlock(struct tdb_context *tdb, TDB_DATA key)
708 int ret = tdb_lock(tdb, BUCKET(tdb->hash_fn(&key)), F_WRLCK);
709 tdb_trace_1rec(tdb, "tdb_chainlock", key);
710 return ret;
713 /* lock/unlock one hash chain, non-blocking. This is meant to be used
714 to reduce contention - it cannot guarantee how many records will be
715 locked */
716 _PUBLIC_ int tdb_chainlock_nonblock(struct tdb_context *tdb, TDB_DATA key)
718 int ret = tdb_lock_nonblock(tdb, BUCKET(tdb->hash_fn(&key)), F_WRLCK);
719 tdb_trace_1rec_ret(tdb, "tdb_chainlock_nonblock", key, ret);
720 return ret;
723 /* mark a chain as locked without actually locking it. Warning! use with great caution! */
724 _PUBLIC_ int tdb_chainlock_mark(struct tdb_context *tdb, TDB_DATA key)
726 int ret = tdb_nest_lock(tdb, lock_offset(BUCKET(tdb->hash_fn(&key))),
727 F_WRLCK, TDB_LOCK_MARK_ONLY);
728 tdb_trace_1rec(tdb, "tdb_chainlock_mark", key);
729 return ret;
732 /* unmark a chain as locked without actually locking it. Warning! use with great caution! */
733 _PUBLIC_ int tdb_chainlock_unmark(struct tdb_context *tdb, TDB_DATA key)
735 tdb_trace_1rec(tdb, "tdb_chainlock_unmark", key);
736 return tdb_nest_unlock(tdb, lock_offset(BUCKET(tdb->hash_fn(&key))),
737 F_WRLCK, true);
740 _PUBLIC_ int tdb_chainunlock(struct tdb_context *tdb, TDB_DATA key)
742 tdb_trace_1rec(tdb, "tdb_chainunlock", key);
743 return tdb_unlock(tdb, BUCKET(tdb->hash_fn(&key)), F_WRLCK);
746 _PUBLIC_ int tdb_chainlock_read(struct tdb_context *tdb, TDB_DATA key)
748 int ret;
749 ret = tdb_lock(tdb, BUCKET(tdb->hash_fn(&key)), F_RDLCK);
750 tdb_trace_1rec(tdb, "tdb_chainlock_read", key);
751 return ret;
754 _PUBLIC_ int tdb_chainunlock_read(struct tdb_context *tdb, TDB_DATA key)
756 tdb_trace_1rec(tdb, "tdb_chainunlock_read", key);
757 return tdb_unlock(tdb, BUCKET(tdb->hash_fn(&key)), F_RDLCK);
760 /* record lock stops delete underneath */
761 int tdb_lock_record(struct tdb_context *tdb, tdb_off_t off)
763 if (tdb->allrecord_lock.count) {
764 return 0;
766 return off ? tdb_brlock(tdb, F_RDLCK, off, 1, TDB_LOCK_WAIT) : 0;
770 Write locks override our own fcntl readlocks, so check it here.
771 Note this is meant to be F_SETLK, *not* F_SETLKW, as it's not
772 an error to fail to get the lock here.
774 int tdb_write_lock_record(struct tdb_context *tdb, tdb_off_t off)
776 struct tdb_traverse_lock *i;
777 for (i = &tdb->travlocks; i; i = i->next)
778 if (i->off == off)
779 return -1;
780 if (tdb->allrecord_lock.count) {
781 if (tdb->allrecord_lock.ltype == F_WRLCK) {
782 return 0;
784 return -1;
786 return tdb_brlock(tdb, F_WRLCK, off, 1, TDB_LOCK_NOWAIT|TDB_LOCK_PROBE);
789 int tdb_write_unlock_record(struct tdb_context *tdb, tdb_off_t off)
791 if (tdb->allrecord_lock.count) {
792 return 0;
794 return tdb_brunlock(tdb, F_WRLCK, off, 1);
797 /* fcntl locks don't stack: avoid unlocking someone else's */
798 int tdb_unlock_record(struct tdb_context *tdb, tdb_off_t off)
800 struct tdb_traverse_lock *i;
801 uint32_t count = 0;
803 if (tdb->allrecord_lock.count) {
804 return 0;
807 if (off == 0)
808 return 0;
809 for (i = &tdb->travlocks; i; i = i->next)
810 if (i->off == off)
811 count++;
812 return (count == 1 ? tdb_brunlock(tdb, F_RDLCK, off, 1) : 0);
815 bool tdb_have_extra_locks(struct tdb_context *tdb)
817 unsigned int extra = tdb->num_lockrecs;
819 /* A transaction holds the lock for all records. */
820 if (!tdb->transaction && tdb->allrecord_lock.count) {
821 return true;
824 /* We always hold the active lock if CLEAR_IF_FIRST. */
825 if (find_nestlock(tdb, ACTIVE_LOCK)) {
826 extra--;
829 /* In a transaction, we expect to hold the transaction lock */
830 if (tdb->transaction && find_nestlock(tdb, TRANSACTION_LOCK)) {
831 extra--;
834 return extra;
837 /* The transaction code uses this to remove all locks. */
838 void tdb_release_transaction_locks(struct tdb_context *tdb)
840 unsigned int i, active = 0;
842 if (tdb->allrecord_lock.count != 0) {
843 tdb_brunlock(tdb, tdb->allrecord_lock.ltype, FREELIST_TOP, 0);
844 tdb->allrecord_lock.count = 0;
847 for (i=0;i<tdb->num_lockrecs;i++) {
848 struct tdb_lock_type *lck = &tdb->lockrecs[i];
850 /* Don't release the active lock! Copy it to first entry. */
851 if (lck->off == ACTIVE_LOCK) {
852 tdb->lockrecs[active++] = *lck;
853 } else {
854 tdb_brunlock(tdb, lck->ltype, lck->off, 1);
857 tdb->num_lockrecs = active;
858 if (tdb->num_lockrecs == 0) {
859 SAFE_FREE(tdb->lockrecs);
863 /* Following functions are added specifically to support CTDB. */
865 /* Don't do actual fcntl locking, just mark tdb locked */
866 _PUBLIC_ int tdb_transaction_write_lock_mark(struct tdb_context *tdb)
868 return tdb_transaction_lock(tdb, F_WRLCK, TDB_LOCK_MARK_ONLY);
871 /* Don't do actual fcntl unlocking, just mark tdb unlocked */
872 _PUBLIC_ int tdb_transaction_write_lock_unmark(struct tdb_context *tdb)
874 return tdb_nest_unlock(tdb, TRANSACTION_LOCK, F_WRLCK, true);