tdb: Make tdb_recovery_allocate overflow-safe
[Samba/gebeck_regimport.git] / lib / tdb / common / transaction.c
bloba2c3bbdff375b48f74107844cc320d7a9fa79e7c
1 /*
2 Unix SMB/CIFS implementation.
4 trivial database library
6 Copyright (C) Andrew Tridgell 2005
8 ** NOTE! The following LGPL license applies to the tdb
9 ** library. This does NOT imply that all of Samba is released
10 ** under the LGPL
12 This library is free software; you can redistribute it and/or
13 modify it under the terms of the GNU Lesser General Public
14 License as published by the Free Software Foundation; either
15 version 3 of the License, or (at your option) any later version.
17 This library is distributed in the hope that it will be useful,
18 but WITHOUT ANY WARRANTY; without even the implied warranty of
19 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
20 Lesser General Public License for more details.
22 You should have received a copy of the GNU Lesser General Public
23 License along with this library; if not, see <http://www.gnu.org/licenses/>.
26 #include "tdb_private.h"
29 transaction design:
31 - only allow a single transaction at a time per database. This makes
32 using the transaction API simpler, as otherwise the caller would
33 have to cope with temporary failures in transactions that conflict
34 with other current transactions
36 - keep the transaction recovery information in the same file as the
37 database, using a special 'transaction recovery' record pointed at
38 by the header. This removes the need for extra journal files as
39 used by some other databases
41 - dynamically allocated the transaction recover record, re-using it
42 for subsequent transactions. If a larger record is needed then
43 tdb_free() the old record to place it on the normal tdb freelist
44 before allocating the new record
46 - during transactions, keep a linked list of writes all that have
47 been performed by intercepting all tdb_write() calls. The hooked
48 transaction versions of tdb_read() and tdb_write() check this
49 linked list and try to use the elements of the list in preference
50 to the real database.
52 - don't allow any locks to be held when a transaction starts,
53 otherwise we can end up with deadlock (plus lack of lock nesting
54 in posix locks would mean the lock is lost)
56 - if the caller gains a lock during the transaction but doesn't
57 release it then fail the commit
59 - allow for nested calls to tdb_transaction_start(), re-using the
60 existing transaction record. If the inner transaction is cancelled
61 then a subsequent commit will fail
63 - keep a mirrored copy of the tdb hash chain heads to allow for the
64 fast hash heads scan on traverse, updating the mirrored copy in
65 the transaction version of tdb_write
67 - allow callers to mix transaction and non-transaction use of tdb,
68 although once a transaction is started then an exclusive lock is
69 gained until the transaction is committed or cancelled
71 - the commit stategy involves first saving away all modified data
72 into a linearised buffer in the transaction recovery area, then
73 marking the transaction recovery area with a magic value to
74 indicate a valid recovery record. In total 4 fsync/msync calls are
75 needed per commit to prevent race conditions. It might be possible
76 to reduce this to 3 or even 2 with some more work.
78 - check for a valid recovery record on open of the tdb, while the
79 open lock is held. Automatically recover from the transaction
80 recovery area if needed, then continue with the open as
81 usual. This allows for smooth crash recovery with no administrator
82 intervention.
84 - if TDB_NOSYNC is passed to flags in tdb_open then transactions are
85 still available, but no fsync/msync calls are made. This means we
86 are still proof against a process dying during transaction commit,
87 but not against machine reboot.
89 - if TDB_ALLOW_NESTING is passed to flags in tdb open, or added using
90 tdb_add_flags() transaction nesting is enabled.
91 It resets the TDB_DISALLOW_NESTING flag, as both cannot be used together.
92 The default is that transaction nesting is allowed.
93 Note: this default may change in future versions of tdb.
95 Beware. when transactions are nested a transaction successfully
96 completed with tdb_transaction_commit() can be silently unrolled later.
98 - if TDB_DISALLOW_NESTING is passed to flags in tdb open, or added using
99 tdb_add_flags() transaction nesting is disabled.
100 It resets the TDB_ALLOW_NESTING flag, as both cannot be used together.
101 An attempt create a nested transaction will fail with TDB_ERR_NESTING.
102 The default is that transaction nesting is allowed.
103 Note: this default may change in future versions of tdb.
108 hold the context of any current transaction
110 struct tdb_transaction {
111 /* we keep a mirrored copy of the tdb hash heads here so
112 tdb_next_hash_chain() can operate efficiently */
113 uint32_t *hash_heads;
115 /* the original io methods - used to do IOs to the real db */
116 const struct tdb_methods *io_methods;
118 /* the list of transaction blocks. When a block is first
119 written to, it gets created in this list */
120 uint8_t **blocks;
121 uint32_t num_blocks;
122 uint32_t block_size; /* bytes in each block */
123 uint32_t last_block_size; /* number of valid bytes in the last block */
125 /* non-zero when an internal transaction error has
126 occurred. All write operations will then fail until the
127 transaction is ended */
128 int transaction_error;
130 /* when inside a transaction we need to keep track of any
131 nested tdb_transaction_start() calls, as these are allowed,
132 but don't create a new transaction */
133 int nesting;
135 /* set when a prepare has already occurred */
136 bool prepared;
137 tdb_off_t magic_offset;
139 /* old file size before transaction */
140 tdb_len_t old_map_size;
142 /* did we expand in this transaction */
143 bool expanded;
148 read while in a transaction. We need to check first if the data is in our list
149 of transaction elements, then if not do a real read
151 static int transaction_read(struct tdb_context *tdb, tdb_off_t off, void *buf,
152 tdb_len_t len, int cv)
154 uint32_t blk;
156 /* break it down into block sized ops */
157 while (len + (off % tdb->transaction->block_size) > tdb->transaction->block_size) {
158 tdb_len_t len2 = tdb->transaction->block_size - (off % tdb->transaction->block_size);
159 if (transaction_read(tdb, off, buf, len2, cv) != 0) {
160 return -1;
162 len -= len2;
163 off += len2;
164 buf = (void *)(len2 + (char *)buf);
167 if (len == 0) {
168 return 0;
171 blk = off / tdb->transaction->block_size;
173 /* see if we have it in the block list */
174 if (tdb->transaction->num_blocks <= blk ||
175 tdb->transaction->blocks[blk] == NULL) {
176 /* nope, do a real read */
177 if (tdb->transaction->io_methods->tdb_read(tdb, off, buf, len, cv) != 0) {
178 goto fail;
180 return 0;
183 /* it is in the block list. Now check for the last block */
184 if (blk == tdb->transaction->num_blocks-1) {
185 if (len > tdb->transaction->last_block_size) {
186 goto fail;
190 /* now copy it out of this block */
191 memcpy(buf, tdb->transaction->blocks[blk] + (off % tdb->transaction->block_size), len);
192 if (cv) {
193 tdb_convert(buf, len);
195 return 0;
197 fail:
198 TDB_LOG((tdb, TDB_DEBUG_FATAL, "transaction_read: failed at off=%u len=%u\n", off, len));
199 tdb->ecode = TDB_ERR_IO;
200 tdb->transaction->transaction_error = 1;
201 return -1;
206 write while in a transaction
208 static int transaction_write(struct tdb_context *tdb, tdb_off_t off,
209 const void *buf, tdb_len_t len)
211 uint32_t blk;
213 /* Only a commit is allowed on a prepared transaction */
214 if (tdb->transaction->prepared) {
215 tdb->ecode = TDB_ERR_EINVAL;
216 TDB_LOG((tdb, TDB_DEBUG_FATAL, "transaction_write: transaction already prepared, write not allowed\n"));
217 tdb->transaction->transaction_error = 1;
218 return -1;
221 /* if the write is to a hash head, then update the transaction
222 hash heads */
223 if (len == sizeof(tdb_off_t) && off >= FREELIST_TOP &&
224 off < FREELIST_TOP+TDB_HASHTABLE_SIZE(tdb)) {
225 uint32_t chain = (off-FREELIST_TOP) / sizeof(tdb_off_t);
226 memcpy(&tdb->transaction->hash_heads[chain], buf, len);
229 /* break it up into block sized chunks */
230 while (len + (off % tdb->transaction->block_size) > tdb->transaction->block_size) {
231 tdb_len_t len2 = tdb->transaction->block_size - (off % tdb->transaction->block_size);
232 if (transaction_write(tdb, off, buf, len2) != 0) {
233 return -1;
235 len -= len2;
236 off += len2;
237 if (buf != NULL) {
238 buf = (const void *)(len2 + (const char *)buf);
242 if (len == 0) {
243 return 0;
246 blk = off / tdb->transaction->block_size;
247 off = off % tdb->transaction->block_size;
249 if (tdb->transaction->num_blocks <= blk) {
250 uint8_t **new_blocks;
251 /* expand the blocks array */
252 new_blocks = (uint8_t **)realloc(tdb->transaction->blocks,
253 (blk+1)*sizeof(uint8_t *));
254 if (new_blocks == NULL) {
255 tdb->ecode = TDB_ERR_OOM;
256 goto fail;
258 memset(&new_blocks[tdb->transaction->num_blocks], 0,
259 (1+(blk - tdb->transaction->num_blocks))*sizeof(uint8_t *));
260 tdb->transaction->blocks = new_blocks;
261 tdb->transaction->num_blocks = blk+1;
262 tdb->transaction->last_block_size = 0;
265 /* allocate and fill a block? */
266 if (tdb->transaction->blocks[blk] == NULL) {
267 tdb->transaction->blocks[blk] = (uint8_t *)calloc(tdb->transaction->block_size, 1);
268 if (tdb->transaction->blocks[blk] == NULL) {
269 tdb->ecode = TDB_ERR_OOM;
270 tdb->transaction->transaction_error = 1;
271 return -1;
273 if (tdb->transaction->old_map_size > blk * tdb->transaction->block_size) {
274 tdb_len_t len2 = tdb->transaction->block_size;
275 if (len2 + (blk * tdb->transaction->block_size) > tdb->transaction->old_map_size) {
276 len2 = tdb->transaction->old_map_size - (blk * tdb->transaction->block_size);
278 if (tdb->transaction->io_methods->tdb_read(tdb, blk * tdb->transaction->block_size,
279 tdb->transaction->blocks[blk],
280 len2, 0) != 0) {
281 SAFE_FREE(tdb->transaction->blocks[blk]);
282 tdb->ecode = TDB_ERR_IO;
283 goto fail;
285 if (blk == tdb->transaction->num_blocks-1) {
286 tdb->transaction->last_block_size = len2;
291 /* overwrite part of an existing block */
292 if (buf == NULL) {
293 memset(tdb->transaction->blocks[blk] + off, 0, len);
294 } else {
295 memcpy(tdb->transaction->blocks[blk] + off, buf, len);
297 if (blk == tdb->transaction->num_blocks-1) {
298 if (len + off > tdb->transaction->last_block_size) {
299 tdb->transaction->last_block_size = len + off;
303 return 0;
305 fail:
306 TDB_LOG((tdb, TDB_DEBUG_FATAL, "transaction_write: failed at off=%u len=%u\n",
307 (blk*tdb->transaction->block_size) + off, len));
308 tdb->transaction->transaction_error = 1;
309 return -1;
314 write while in a transaction - this variant never expands the transaction blocks, it only
315 updates existing blocks. This means it cannot change the recovery size
317 static int transaction_write_existing(struct tdb_context *tdb, tdb_off_t off,
318 const void *buf, tdb_len_t len)
320 uint32_t blk;
322 /* break it up into block sized chunks */
323 while (len + (off % tdb->transaction->block_size) > tdb->transaction->block_size) {
324 tdb_len_t len2 = tdb->transaction->block_size - (off % tdb->transaction->block_size);
325 if (transaction_write_existing(tdb, off, buf, len2) != 0) {
326 return -1;
328 len -= len2;
329 off += len2;
330 if (buf != NULL) {
331 buf = (const void *)(len2 + (const char *)buf);
335 if (len == 0) {
336 return 0;
339 blk = off / tdb->transaction->block_size;
340 off = off % tdb->transaction->block_size;
342 if (tdb->transaction->num_blocks <= blk ||
343 tdb->transaction->blocks[blk] == NULL) {
344 return 0;
347 if (blk == tdb->transaction->num_blocks-1 &&
348 off + len > tdb->transaction->last_block_size) {
349 if (off >= tdb->transaction->last_block_size) {
350 return 0;
352 len = tdb->transaction->last_block_size - off;
355 /* overwrite part of an existing block */
356 memcpy(tdb->transaction->blocks[blk] + off, buf, len);
358 return 0;
363 accelerated hash chain head search, using the cached hash heads
365 static void transaction_next_hash_chain(struct tdb_context *tdb, uint32_t *chain)
367 uint32_t h = *chain;
368 for (;h < tdb->hash_size;h++) {
369 /* the +1 takes account of the freelist */
370 if (0 != tdb->transaction->hash_heads[h+1]) {
371 break;
374 (*chain) = h;
378 out of bounds check during a transaction
380 static int transaction_oob(struct tdb_context *tdb, tdb_off_t off,
381 tdb_len_t len, int probe)
383 if (off + len >= off && off + len <= tdb->map_size) {
384 return 0;
386 tdb->ecode = TDB_ERR_IO;
387 return -1;
391 transaction version of tdb_expand().
393 static int transaction_expand_file(struct tdb_context *tdb, tdb_off_t size,
394 tdb_off_t addition)
396 /* add a write to the transaction elements, so subsequent
397 reads see the zero data */
398 if (transaction_write(tdb, size, NULL, addition) != 0) {
399 return -1;
402 tdb->transaction->expanded = true;
404 return 0;
407 static const struct tdb_methods transaction_methods = {
408 transaction_read,
409 transaction_write,
410 transaction_next_hash_chain,
411 transaction_oob,
412 transaction_expand_file,
417 start a tdb transaction. No token is returned, as only a single
418 transaction is allowed to be pending per tdb_context
420 static int _tdb_transaction_start(struct tdb_context *tdb,
421 enum tdb_lock_flags lockflags)
423 /* some sanity checks */
424 if (tdb->read_only || (tdb->flags & TDB_INTERNAL) || tdb->traverse_read) {
425 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_transaction_start: cannot start a transaction on a read-only or internal db\n"));
426 tdb->ecode = TDB_ERR_EINVAL;
427 return -1;
430 /* cope with nested tdb_transaction_start() calls */
431 if (tdb->transaction != NULL) {
432 if (!(tdb->flags & TDB_ALLOW_NESTING)) {
433 tdb->ecode = TDB_ERR_NESTING;
434 return -1;
436 tdb->transaction->nesting++;
437 TDB_LOG((tdb, TDB_DEBUG_TRACE, "tdb_transaction_start: nesting %d\n",
438 tdb->transaction->nesting));
439 return 0;
442 if (tdb_have_extra_locks(tdb)) {
443 /* the caller must not have any locks when starting a
444 transaction as otherwise we'll be screwed by lack
445 of nested locks in posix */
446 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_transaction_start: cannot start a transaction with locks held\n"));
447 tdb->ecode = TDB_ERR_LOCK;
448 return -1;
451 if (tdb->travlocks.next != NULL) {
452 /* you cannot use transactions inside a traverse (although you can use
453 traverse inside a transaction) as otherwise you can end up with
454 deadlock */
455 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_transaction_start: cannot start a transaction within a traverse\n"));
456 tdb->ecode = TDB_ERR_LOCK;
457 return -1;
460 tdb->transaction = (struct tdb_transaction *)
461 calloc(sizeof(struct tdb_transaction), 1);
462 if (tdb->transaction == NULL) {
463 tdb->ecode = TDB_ERR_OOM;
464 return -1;
467 /* a page at a time seems like a reasonable compromise between compactness and efficiency */
468 tdb->transaction->block_size = tdb->page_size;
470 /* get the transaction write lock. This is a blocking lock. As
471 discussed with Volker, there are a number of ways we could
472 make this async, which we will probably do in the future */
473 if (tdb_transaction_lock(tdb, F_WRLCK, lockflags) == -1) {
474 SAFE_FREE(tdb->transaction->blocks);
475 SAFE_FREE(tdb->transaction);
476 if ((lockflags & TDB_LOCK_WAIT) == 0) {
477 tdb->ecode = TDB_ERR_NOLOCK;
479 return -1;
482 /* get a read lock from the freelist to the end of file. This
483 is upgraded to a write lock during the commit */
484 if (tdb_allrecord_lock(tdb, F_RDLCK, TDB_LOCK_WAIT, true) == -1) {
485 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_transaction_start: failed to get hash locks\n"));
486 goto fail_allrecord_lock;
489 /* setup a copy of the hash table heads so the hash scan in
490 traverse can be fast */
491 tdb->transaction->hash_heads = (uint32_t *)
492 calloc(tdb->hash_size+1, sizeof(uint32_t));
493 if (tdb->transaction->hash_heads == NULL) {
494 tdb->ecode = TDB_ERR_OOM;
495 goto fail;
497 if (tdb->methods->tdb_read(tdb, FREELIST_TOP, tdb->transaction->hash_heads,
498 TDB_HASHTABLE_SIZE(tdb), 0) != 0) {
499 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_start: failed to read hash heads\n"));
500 tdb->ecode = TDB_ERR_IO;
501 goto fail;
504 /* make sure we know about any file expansions already done by
505 anyone else */
506 tdb->methods->tdb_oob(tdb, tdb->map_size, 1, 1);
507 tdb->transaction->old_map_size = tdb->map_size;
509 /* finally hook the io methods, replacing them with
510 transaction specific methods */
511 tdb->transaction->io_methods = tdb->methods;
512 tdb->methods = &transaction_methods;
514 /* Trace at the end, so we get sequence number correct. */
515 tdb_trace(tdb, "tdb_transaction_start");
516 return 0;
518 fail:
519 tdb_allrecord_unlock(tdb, F_RDLCK, false);
520 fail_allrecord_lock:
521 tdb_transaction_unlock(tdb, F_WRLCK);
522 SAFE_FREE(tdb->transaction->blocks);
523 SAFE_FREE(tdb->transaction->hash_heads);
524 SAFE_FREE(tdb->transaction);
525 return -1;
528 _PUBLIC_ int tdb_transaction_start(struct tdb_context *tdb)
530 return _tdb_transaction_start(tdb, TDB_LOCK_WAIT);
533 _PUBLIC_ int tdb_transaction_start_nonblock(struct tdb_context *tdb)
535 return _tdb_transaction_start(tdb, TDB_LOCK_NOWAIT|TDB_LOCK_PROBE);
539 sync to disk
541 static int transaction_sync(struct tdb_context *tdb, tdb_off_t offset, tdb_len_t length)
543 if (tdb->flags & TDB_NOSYNC) {
544 return 0;
547 #ifdef HAVE_FDATASYNC
548 if (fdatasync(tdb->fd) != 0) {
549 #else
550 if (fsync(tdb->fd) != 0) {
551 #endif
552 tdb->ecode = TDB_ERR_IO;
553 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction: fsync failed\n"));
554 return -1;
556 #ifdef HAVE_MMAP
557 if (tdb->map_ptr) {
558 tdb_off_t moffset = offset & ~(tdb->page_size-1);
559 if (msync(moffset + (char *)tdb->map_ptr,
560 length + (offset - moffset), MS_SYNC) != 0) {
561 tdb->ecode = TDB_ERR_IO;
562 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction: msync failed - %s\n",
563 strerror(errno)));
564 return -1;
567 #endif
568 return 0;
572 static int _tdb_transaction_cancel(struct tdb_context *tdb)
574 int i, ret = 0;
576 if (tdb->transaction == NULL) {
577 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_transaction_cancel: no transaction\n"));
578 return -1;
581 if (tdb->transaction->nesting != 0) {
582 tdb->transaction->transaction_error = 1;
583 tdb->transaction->nesting--;
584 return 0;
587 tdb->map_size = tdb->transaction->old_map_size;
589 /* free all the transaction blocks */
590 for (i=0;i<tdb->transaction->num_blocks;i++) {
591 if (tdb->transaction->blocks[i] != NULL) {
592 free(tdb->transaction->blocks[i]);
595 SAFE_FREE(tdb->transaction->blocks);
597 if (tdb->transaction->magic_offset) {
598 const struct tdb_methods *methods = tdb->transaction->io_methods;
599 const uint32_t invalid = TDB_RECOVERY_INVALID_MAGIC;
601 /* remove the recovery marker */
602 if (methods->tdb_write(tdb, tdb->transaction->magic_offset, &invalid, 4) == -1 ||
603 transaction_sync(tdb, tdb->transaction->magic_offset, 4) == -1) {
604 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_cancel: failed to remove recovery magic\n"));
605 ret = -1;
609 /* This also removes the OPEN_LOCK, if we have it. */
610 tdb_release_transaction_locks(tdb);
612 /* restore the normal io methods */
613 tdb->methods = tdb->transaction->io_methods;
615 SAFE_FREE(tdb->transaction->hash_heads);
616 SAFE_FREE(tdb->transaction);
618 return ret;
622 cancel the current transaction
624 _PUBLIC_ int tdb_transaction_cancel(struct tdb_context *tdb)
626 tdb_trace(tdb, "tdb_transaction_cancel");
627 return _tdb_transaction_cancel(tdb);
631 work out how much space the linearised recovery data will consume
633 static bool tdb_recovery_size(struct tdb_context *tdb, tdb_len_t *result)
635 tdb_len_t recovery_size = 0;
636 int i;
638 recovery_size = sizeof(uint32_t);
639 for (i=0;i<tdb->transaction->num_blocks;i++) {
640 tdb_len_t block_size;
641 if (i * tdb->transaction->block_size >= tdb->transaction->old_map_size) {
642 break;
644 if (tdb->transaction->blocks[i] == NULL) {
645 continue;
647 if (!tdb_add_len_t(recovery_size, 2*sizeof(tdb_off_t),
648 &recovery_size)) {
649 return false;
651 if (i == tdb->transaction->num_blocks-1) {
652 block_size = tdb->transaction->last_block_size;
653 } else {
654 block_size = tdb->transaction->block_size;
656 if (!tdb_add_len_t(recovery_size, block_size,
657 &recovery_size)) {
658 return false;
662 *result = recovery_size;
663 return true;
666 int tdb_recovery_area(struct tdb_context *tdb,
667 const struct tdb_methods *methods,
668 tdb_off_t *recovery_offset,
669 struct tdb_record *rec)
671 if (tdb_ofs_read(tdb, TDB_RECOVERY_HEAD, recovery_offset) == -1) {
672 return -1;
675 if (*recovery_offset == 0) {
676 rec->rec_len = 0;
677 return 0;
680 if (methods->tdb_read(tdb, *recovery_offset, rec, sizeof(*rec),
681 DOCONV()) == -1) {
682 return -1;
685 /* ignore invalid recovery regions: can happen in crash */
686 if (rec->magic != TDB_RECOVERY_MAGIC &&
687 rec->magic != TDB_RECOVERY_INVALID_MAGIC) {
688 *recovery_offset = 0;
689 rec->rec_len = 0;
691 return 0;
695 allocate the recovery area, or use an existing recovery area if it is
696 large enough
698 static int tdb_recovery_allocate(struct tdb_context *tdb,
699 tdb_len_t *recovery_size,
700 tdb_off_t *recovery_offset,
701 tdb_len_t *recovery_max_size)
703 struct tdb_record rec;
704 const struct tdb_methods *methods = tdb->transaction->io_methods;
705 tdb_off_t recovery_head, new_end;
707 if (tdb_recovery_area(tdb, methods, &recovery_head, &rec) == -1) {
708 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_recovery_allocate: failed to read recovery head\n"));
709 return -1;
712 if (!tdb_recovery_size(tdb, recovery_size)) {
713 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_recovery_allocate: "
714 "overflow recovery size\n"));
715 return -1;
718 /* Existing recovery area? */
719 if (recovery_head != 0 && *recovery_size <= rec.rec_len) {
720 /* it fits in the existing area */
721 *recovery_max_size = rec.rec_len;
722 *recovery_offset = recovery_head;
723 return 0;
726 /* If recovery area in middle of file, we need a new one. */
727 if (recovery_head == 0
728 || recovery_head + sizeof(rec) + rec.rec_len != tdb->map_size) {
729 /* we need to free up the old recovery area, then allocate a
730 new one at the end of the file. Note that we cannot use
731 tdb_allocate() to allocate the new one as that might return
732 us an area that is being currently used (as of the start of
733 the transaction) */
734 if (recovery_head) {
735 if (tdb_free(tdb, recovery_head, &rec) == -1) {
736 TDB_LOG((tdb, TDB_DEBUG_FATAL,
737 "tdb_recovery_allocate: failed to"
738 " free previous recovery area\n"));
739 return -1;
742 /* the tdb_free() call might have increased
743 * the recovery size */
744 if (!tdb_recovery_size(tdb, recovery_size)) {
745 TDB_LOG((tdb, TDB_DEBUG_FATAL,
746 "tdb_recovery_allocate: "
747 "overflow recovery size\n"));
748 return -1;
752 /* New head will be at end of file. */
753 recovery_head = tdb->map_size;
756 /* Now we know where it will be. */
757 *recovery_offset = recovery_head;
759 /* Expand by more than we need, so we don't do it often. */
760 *recovery_max_size = tdb_expand_adjust(tdb->map_size,
761 *recovery_size,
762 tdb->page_size)
763 - sizeof(rec);
765 if (!tdb_add_off_t(recovery_head, sizeof(rec), &new_end) ||
766 !tdb_add_off_t(new_end, *recovery_max_size, &new_end)) {
767 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_recovery_allocate: "
768 "overflow recovery area\n"));
769 return -1;
772 if (methods->tdb_expand_file(tdb, tdb->transaction->old_map_size,
773 new_end - tdb->transaction->old_map_size)
774 == -1) {
775 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_recovery_allocate: failed to create recovery area\n"));
776 return -1;
779 /* remap the file (if using mmap) */
780 methods->tdb_oob(tdb, tdb->map_size, 1, 1);
782 /* we have to reset the old map size so that we don't try to expand the file
783 again in the transaction commit, which would destroy the recovery area */
784 tdb->transaction->old_map_size = tdb->map_size;
786 /* write the recovery header offset and sync - we can sync without a race here
787 as the magic ptr in the recovery record has not been set */
788 CONVERT(recovery_head);
789 if (methods->tdb_write(tdb, TDB_RECOVERY_HEAD,
790 &recovery_head, sizeof(tdb_off_t)) == -1) {
791 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_recovery_allocate: failed to write recovery head\n"));
792 return -1;
794 if (transaction_write_existing(tdb, TDB_RECOVERY_HEAD, &recovery_head, sizeof(tdb_off_t)) == -1) {
795 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_recovery_allocate: failed to write recovery head\n"));
796 return -1;
799 return 0;
804 setup the recovery data that will be used on a crash during commit
806 static int transaction_setup_recovery(struct tdb_context *tdb,
807 tdb_off_t *magic_offset)
809 tdb_len_t recovery_size;
810 unsigned char *data, *p;
811 const struct tdb_methods *methods = tdb->transaction->io_methods;
812 struct tdb_record *rec;
813 tdb_off_t recovery_offset, recovery_max_size;
814 tdb_off_t old_map_size = tdb->transaction->old_map_size;
815 uint32_t magic, tailer;
816 int i;
819 check that the recovery area has enough space
821 if (tdb_recovery_allocate(tdb, &recovery_size,
822 &recovery_offset, &recovery_max_size) == -1) {
823 return -1;
826 data = (unsigned char *)malloc(recovery_size + sizeof(*rec));
827 if (data == NULL) {
828 tdb->ecode = TDB_ERR_OOM;
829 return -1;
832 rec = (struct tdb_record *)data;
833 memset(rec, 0, sizeof(*rec));
835 rec->magic = TDB_RECOVERY_INVALID_MAGIC;
836 rec->data_len = recovery_size;
837 rec->rec_len = recovery_max_size;
838 rec->key_len = old_map_size;
839 CONVERT(*rec);
841 /* build the recovery data into a single blob to allow us to do a single
842 large write, which should be more efficient */
843 p = data + sizeof(*rec);
844 for (i=0;i<tdb->transaction->num_blocks;i++) {
845 tdb_off_t offset;
846 tdb_len_t length;
848 if (tdb->transaction->blocks[i] == NULL) {
849 continue;
852 offset = i * tdb->transaction->block_size;
853 length = tdb->transaction->block_size;
854 if (i == tdb->transaction->num_blocks-1) {
855 length = tdb->transaction->last_block_size;
858 if (offset >= old_map_size) {
859 continue;
861 if (offset + length > tdb->transaction->old_map_size) {
862 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_setup_recovery: transaction data over new region boundary\n"));
863 free(data);
864 tdb->ecode = TDB_ERR_CORRUPT;
865 return -1;
867 memcpy(p, &offset, 4);
868 memcpy(p+4, &length, 4);
869 if (DOCONV()) {
870 tdb_convert(p, 8);
872 /* the recovery area contains the old data, not the
873 new data, so we have to call the original tdb_read
874 method to get it */
875 if (methods->tdb_read(tdb, offset, p + 8, length, 0) != 0) {
876 free(data);
877 tdb->ecode = TDB_ERR_IO;
878 return -1;
880 p += 8 + length;
883 /* and the tailer */
884 tailer = sizeof(*rec) + recovery_max_size;
885 memcpy(p, &tailer, 4);
886 if (DOCONV()) {
887 tdb_convert(p, 4);
890 /* write the recovery data to the recovery area */
891 if (methods->tdb_write(tdb, recovery_offset, data, sizeof(*rec) + recovery_size) == -1) {
892 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_setup_recovery: failed to write recovery data\n"));
893 free(data);
894 tdb->ecode = TDB_ERR_IO;
895 return -1;
897 if (transaction_write_existing(tdb, recovery_offset, data, sizeof(*rec) + recovery_size) == -1) {
898 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_setup_recovery: failed to write secondary recovery data\n"));
899 free(data);
900 tdb->ecode = TDB_ERR_IO;
901 return -1;
904 /* as we don't have ordered writes, we have to sync the recovery
905 data before we update the magic to indicate that the recovery
906 data is present */
907 if (transaction_sync(tdb, recovery_offset, sizeof(*rec) + recovery_size) == -1) {
908 free(data);
909 return -1;
912 free(data);
914 magic = TDB_RECOVERY_MAGIC;
915 CONVERT(magic);
917 *magic_offset = recovery_offset + offsetof(struct tdb_record, magic);
919 if (methods->tdb_write(tdb, *magic_offset, &magic, sizeof(magic)) == -1) {
920 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_setup_recovery: failed to write recovery magic\n"));
921 tdb->ecode = TDB_ERR_IO;
922 return -1;
924 if (transaction_write_existing(tdb, *magic_offset, &magic, sizeof(magic)) == -1) {
925 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_setup_recovery: failed to write secondary recovery magic\n"));
926 tdb->ecode = TDB_ERR_IO;
927 return -1;
930 /* ensure the recovery magic marker is on disk */
931 if (transaction_sync(tdb, *magic_offset, sizeof(magic)) == -1) {
932 return -1;
935 return 0;
938 static int _tdb_transaction_prepare_commit(struct tdb_context *tdb)
940 const struct tdb_methods *methods;
942 if (tdb->transaction == NULL) {
943 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_transaction_prepare_commit: no transaction\n"));
944 return -1;
947 if (tdb->transaction->prepared) {
948 tdb->ecode = TDB_ERR_EINVAL;
949 _tdb_transaction_cancel(tdb);
950 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_transaction_prepare_commit: transaction already prepared\n"));
951 return -1;
954 if (tdb->transaction->transaction_error) {
955 tdb->ecode = TDB_ERR_IO;
956 _tdb_transaction_cancel(tdb);
957 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_transaction_prepare_commit: transaction error pending\n"));
958 return -1;
962 if (tdb->transaction->nesting != 0) {
963 return 0;
966 /* check for a null transaction */
967 if (tdb->transaction->blocks == NULL) {
968 return 0;
971 methods = tdb->transaction->io_methods;
973 /* if there are any locks pending then the caller has not
974 nested their locks properly, so fail the transaction */
975 if (tdb_have_extra_locks(tdb)) {
976 tdb->ecode = TDB_ERR_LOCK;
977 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_transaction_prepare_commit: locks pending on commit\n"));
978 _tdb_transaction_cancel(tdb);
979 return -1;
982 /* upgrade the main transaction lock region to a write lock */
983 if (tdb_allrecord_upgrade(tdb) == -1) {
984 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_transaction_prepare_commit: failed to upgrade hash locks\n"));
985 _tdb_transaction_cancel(tdb);
986 return -1;
989 /* get the open lock - this prevents new users attaching to the database
990 during the commit */
991 if (tdb_nest_lock(tdb, OPEN_LOCK, F_WRLCK, TDB_LOCK_WAIT) == -1) {
992 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_transaction_prepare_commit: failed to get open lock\n"));
993 _tdb_transaction_cancel(tdb);
994 return -1;
997 /* write the recovery data to the end of the file */
998 if (transaction_setup_recovery(tdb, &tdb->transaction->magic_offset) == -1) {
999 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_prepare_commit: failed to setup recovery data\n"));
1000 _tdb_transaction_cancel(tdb);
1001 return -1;
1004 tdb->transaction->prepared = true;
1006 /* expand the file to the new size if needed */
1007 if (tdb->map_size != tdb->transaction->old_map_size) {
1008 if (methods->tdb_expand_file(tdb, tdb->transaction->old_map_size,
1009 tdb->map_size -
1010 tdb->transaction->old_map_size) == -1) {
1011 tdb->ecode = TDB_ERR_IO;
1012 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_prepare_commit: expansion failed\n"));
1013 _tdb_transaction_cancel(tdb);
1014 return -1;
1016 tdb->map_size = tdb->transaction->old_map_size;
1017 methods->tdb_oob(tdb, tdb->map_size, 1, 1);
1020 /* Keep the open lock until the actual commit */
1022 return 0;
1026 prepare to commit the current transaction
1028 _PUBLIC_ int tdb_transaction_prepare_commit(struct tdb_context *tdb)
1030 tdb_trace(tdb, "tdb_transaction_prepare_commit");
1031 return _tdb_transaction_prepare_commit(tdb);
1034 /* A repack is worthwhile if the largest is less than half total free. */
1035 static bool repack_worthwhile(struct tdb_context *tdb)
1037 tdb_off_t ptr;
1038 struct tdb_record rec;
1039 tdb_len_t total = 0, largest = 0;
1041 if (tdb_ofs_read(tdb, FREELIST_TOP, &ptr) == -1) {
1042 return false;
1045 while (ptr != 0 && tdb_rec_free_read(tdb, ptr, &rec) == 0) {
1046 total += rec.rec_len;
1047 if (rec.rec_len > largest) {
1048 largest = rec.rec_len;
1050 ptr = rec.next;
1053 return total > largest * 2;
1057 commit the current transaction
1059 _PUBLIC_ int tdb_transaction_commit(struct tdb_context *tdb)
1061 const struct tdb_methods *methods;
1062 int i;
1063 bool need_repack = false;
1065 if (tdb->transaction == NULL) {
1066 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_transaction_commit: no transaction\n"));
1067 return -1;
1070 tdb_trace(tdb, "tdb_transaction_commit");
1072 if (tdb->transaction->transaction_error) {
1073 tdb->ecode = TDB_ERR_IO;
1074 _tdb_transaction_cancel(tdb);
1075 TDB_LOG((tdb, TDB_DEBUG_ERROR, "tdb_transaction_commit: transaction error pending\n"));
1076 return -1;
1080 if (tdb->transaction->nesting != 0) {
1081 tdb->transaction->nesting--;
1082 return 0;
1085 /* check for a null transaction */
1086 if (tdb->transaction->blocks == NULL) {
1087 _tdb_transaction_cancel(tdb);
1088 return 0;
1091 if (!tdb->transaction->prepared) {
1092 int ret = _tdb_transaction_prepare_commit(tdb);
1093 if (ret)
1094 return ret;
1097 methods = tdb->transaction->io_methods;
1099 /* perform all the writes */
1100 for (i=0;i<tdb->transaction->num_blocks;i++) {
1101 tdb_off_t offset;
1102 tdb_len_t length;
1104 if (tdb->transaction->blocks[i] == NULL) {
1105 continue;
1108 offset = i * tdb->transaction->block_size;
1109 length = tdb->transaction->block_size;
1110 if (i == tdb->transaction->num_blocks-1) {
1111 length = tdb->transaction->last_block_size;
1114 if (methods->tdb_write(tdb, offset, tdb->transaction->blocks[i], length) == -1) {
1115 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_commit: write failed during commit\n"));
1117 /* we've overwritten part of the data and
1118 possibly expanded the file, so we need to
1119 run the crash recovery code */
1120 tdb->methods = methods;
1121 tdb_transaction_recover(tdb);
1123 _tdb_transaction_cancel(tdb);
1125 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_commit: write failed\n"));
1126 return -1;
1128 SAFE_FREE(tdb->transaction->blocks[i]);
1131 /* Do this before we drop lock or blocks. */
1132 if (tdb->transaction->expanded) {
1133 need_repack = repack_worthwhile(tdb);
1136 SAFE_FREE(tdb->transaction->blocks);
1137 tdb->transaction->num_blocks = 0;
1139 /* ensure the new data is on disk */
1140 if (transaction_sync(tdb, 0, tdb->map_size) == -1) {
1141 return -1;
1145 TODO: maybe write to some dummy hdr field, or write to magic
1146 offset without mmap, before the last sync, instead of the
1147 utime() call
1150 /* on some systems (like Linux 2.6.x) changes via mmap/msync
1151 don't change the mtime of the file, this means the file may
1152 not be backed up (as tdb rounding to block sizes means that
1153 file size changes are quite rare too). The following forces
1154 mtime changes when a transaction completes */
1155 #ifdef HAVE_UTIME
1156 utime(tdb->name, NULL);
1157 #endif
1159 /* use a transaction cancel to free memory and remove the
1160 transaction locks */
1161 _tdb_transaction_cancel(tdb);
1163 if (need_repack) {
1164 return tdb_repack(tdb);
1167 return 0;
1172 recover from an aborted transaction. Must be called with exclusive
1173 database write access already established (including the open
1174 lock to prevent new processes attaching)
1176 int tdb_transaction_recover(struct tdb_context *tdb)
1178 tdb_off_t recovery_head, recovery_eof;
1179 unsigned char *data, *p;
1180 uint32_t zero = 0;
1181 struct tdb_record rec;
1183 /* find the recovery area */
1184 if (tdb_ofs_read(tdb, TDB_RECOVERY_HEAD, &recovery_head) == -1) {
1185 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_recover: failed to read recovery head\n"));
1186 tdb->ecode = TDB_ERR_IO;
1187 return -1;
1190 if (recovery_head == 0) {
1191 /* we have never allocated a recovery record */
1192 return 0;
1195 /* read the recovery record */
1196 if (tdb->methods->tdb_read(tdb, recovery_head, &rec,
1197 sizeof(rec), DOCONV()) == -1) {
1198 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_recover: failed to read recovery record\n"));
1199 tdb->ecode = TDB_ERR_IO;
1200 return -1;
1203 if (rec.magic != TDB_RECOVERY_MAGIC) {
1204 /* there is no valid recovery data */
1205 return 0;
1208 if (tdb->read_only) {
1209 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_recover: attempt to recover read only database\n"));
1210 tdb->ecode = TDB_ERR_CORRUPT;
1211 return -1;
1214 recovery_eof = rec.key_len;
1216 data = (unsigned char *)malloc(rec.data_len);
1217 if (data == NULL) {
1218 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_recover: failed to allocate recovery data\n"));
1219 tdb->ecode = TDB_ERR_OOM;
1220 return -1;
1223 /* read the full recovery data */
1224 if (tdb->methods->tdb_read(tdb, recovery_head + sizeof(rec), data,
1225 rec.data_len, 0) == -1) {
1226 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_recover: failed to read recovery data\n"));
1227 tdb->ecode = TDB_ERR_IO;
1228 return -1;
1231 /* recover the file data */
1232 p = data;
1233 while (p+8 < data + rec.data_len) {
1234 uint32_t ofs, len;
1235 if (DOCONV()) {
1236 tdb_convert(p, 8);
1238 memcpy(&ofs, p, 4);
1239 memcpy(&len, p+4, 4);
1241 if (tdb->methods->tdb_write(tdb, ofs, p+8, len) == -1) {
1242 free(data);
1243 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_recover: failed to recover %u bytes at offset %u\n", len, ofs));
1244 tdb->ecode = TDB_ERR_IO;
1245 return -1;
1247 p += 8 + len;
1250 free(data);
1252 if (transaction_sync(tdb, 0, tdb->map_size) == -1) {
1253 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_recover: failed to sync recovery\n"));
1254 tdb->ecode = TDB_ERR_IO;
1255 return -1;
1258 /* if the recovery area is after the recovered eof then remove it */
1259 if (recovery_eof <= recovery_head) {
1260 if (tdb_ofs_write(tdb, TDB_RECOVERY_HEAD, &zero) == -1) {
1261 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_recover: failed to remove recovery head\n"));
1262 tdb->ecode = TDB_ERR_IO;
1263 return -1;
1267 /* remove the recovery magic */
1268 if (tdb_ofs_write(tdb, recovery_head + offsetof(struct tdb_record, magic),
1269 &zero) == -1) {
1270 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_recover: failed to remove recovery magic\n"));
1271 tdb->ecode = TDB_ERR_IO;
1272 return -1;
1275 if (transaction_sync(tdb, 0, recovery_eof) == -1) {
1276 TDB_LOG((tdb, TDB_DEBUG_FATAL, "tdb_transaction_recover: failed to sync2 recovery\n"));
1277 tdb->ecode = TDB_ERR_IO;
1278 return -1;
1281 TDB_LOG((tdb, TDB_DEBUG_TRACE, "tdb_transaction_recover: recovered %u byte database\n",
1282 recovery_eof));
1284 /* all done */
1285 return 0;
1288 /* Any I/O failures we say "needs recovery". */
1289 bool tdb_needs_recovery(struct tdb_context *tdb)
1291 tdb_off_t recovery_head;
1292 struct tdb_record rec;
1294 /* find the recovery area */
1295 if (tdb_ofs_read(tdb, TDB_RECOVERY_HEAD, &recovery_head) == -1) {
1296 return true;
1299 if (recovery_head == 0) {
1300 /* we have never allocated a recovery record */
1301 return false;
1304 /* read the recovery record */
1305 if (tdb->methods->tdb_read(tdb, recovery_head, &rec,
1306 sizeof(rec), DOCONV()) == -1) {
1307 return true;
1310 return (rec.magic == TDB_RECOVERY_MAGIC);