2 Unix SMB/CIFS implementation.
3 Samba database functions
4 Copyright (C) Andrew Tridgell 1999-2000
5 Copyright (C) Luke Kenneth Casson Leighton 2000
6 Copyright (C) Paul `Rusty' Russell 2000
7 Copyright (C) Jeremy Allison 2000-2003
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 2 of the License, or
12 (at your option) any later version.
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
19 You should have received a copy of the GNU General Public License
20 along with this program; if not, write to the Free Software
21 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
25 /* NOTE: If you use tdbs under valgrind, and in particular if you run
26 * tdbtorture, you may get spurious "uninitialized value" warnings. I
27 * think this is because valgrind doesn't understand that the mmap'd
28 * area may be written to by other processes. Memory can, from the
29 * point of view of the grinded process, spontaneously become
32 * I can think of a few solutions. [mbp 20030311]
34 * 1 - Write suppressions for Valgrind so that it doesn't complain
35 * about this. Probably the most reasonable but people need to
36 * remember to use them.
38 * 2 - Use IO not mmap when running under valgrind. Not so nice.
40 * 3 - Use the special valgrind macros to mark memory as valid at the
41 * right time. Probably too hard -- the process just doesn't know.
65 #define TDB_MAGIC_FOOD "TDB file\n"
66 #define TDB_VERSION (0x26011967 + 6)
67 #define TDB_MAGIC (0x26011999U)
68 #define TDB_FREE_MAGIC (~TDB_MAGIC)
69 #define TDB_DEAD_MAGIC (0xFEE1DEAD)
70 #define TDB_ALIGNMENT 4
71 #define MIN_REC_SIZE (2*sizeof(struct list_struct) + TDB_ALIGNMENT)
72 #define DEFAULT_HASH_SIZE 131
73 #define TDB_PAGE_SIZE 0x2000
74 #define FREELIST_TOP (sizeof(struct tdb_header))
75 #define TDB_ALIGN(x,a) (((x) + (a)-1) & ~((a)-1))
76 #define TDB_BYTEREV(x) (((((x)&0xff)<<24)|((x)&0xFF00)<<8)|(((x)>>8)&0xFF00)|((x)>>24))
77 #define TDB_DEAD(r) ((r)->magic == TDB_DEAD_MAGIC)
78 #define TDB_BAD_MAGIC(r) ((r)->magic != TDB_MAGIC && !TDB_DEAD(r))
79 #define TDB_HASH_TOP(hash) (FREELIST_TOP + (BUCKET(hash)+1)*sizeof(tdb_off))
81 /* NB assumes there is a local variable called "tdb" that is the
82 * current context, also takes doubly-parenthesized print-style
84 #define TDB_LOG(x) (tdb->log_fn?((tdb->log_fn x),0) : 0)
95 #define MAP_FAILED ((void *)-1)
98 /* free memory if the pointer is valid and zero the pointer */
100 #define SAFE_FREE(x) do { if ((x) != NULL) {free((x)); (x)=NULL;} } while(0)
103 #define BUCKET(hash) ((hash) % tdb->header.hash_size)
106 /* all contexts, to ensure no double-opens (fcntl locks don't nest!) */
107 static TDB_CONTEXT
*tdbs
= NULL
;
109 static int tdb_munmap(TDB_CONTEXT
*tdb
)
111 if (tdb
->flags
& TDB_INTERNAL
)
116 int ret
= munmap(tdb
->map_ptr
, tdb
->map_size
);
125 static void tdb_mmap(TDB_CONTEXT
*tdb
)
127 if (tdb
->flags
& TDB_INTERNAL
)
131 if (!(tdb
->flags
& TDB_NOMMAP
)) {
132 tdb
->map_ptr
= mmap(NULL
, tdb
->map_size
,
133 PROT_READ
|(tdb
->read_only
? 0:PROT_WRITE
),
134 MAP_SHARED
|MAP_FILE
, tdb
->fd
, 0);
137 * NB. When mmap fails it returns MAP_FAILED *NOT* NULL !!!!
140 if (tdb
->map_ptr
== MAP_FAILED
) {
142 TDB_LOG((tdb
, 2, "tdb_mmap failed for size %d (%s)\n",
143 tdb
->map_size
, strerror(errno
)));
153 /* Endian conversion: we only ever deal with 4 byte quantities */
154 static void *convert(void *buf
, u32 size
)
157 for (i
= 0; i
< size
/ 4; i
++)
158 p
[i
] = TDB_BYTEREV(p
[i
]);
161 #define DOCONV() (tdb->flags & TDB_CONVERT)
162 #define CONVERT(x) (DOCONV() ? convert(&x, sizeof(x)) : &x)
164 /* the body of the database is made of one list_struct for the free space
165 plus a separate data list for each hash value */
167 tdb_off next
; /* offset of the next record in the list */
168 tdb_len rec_len
; /* total byte length of record */
169 tdb_len key_len
; /* byte length of key */
170 tdb_len data_len
; /* byte length of data */
171 u32 full_hash
; /* the full 32 bit hash of the key */
172 u32 magic
; /* try to catch errors */
173 /* the following union is implied:
175 char record[rec_len];
180 u32 totalsize; (tailer)
185 /***************************************************************
186 Allow a caller to set a "alarm" flag that tdb can check to abort
187 a blocking lock on SIGALRM.
188 ***************************************************************/
190 static sig_atomic_t *palarm_fired
;
192 void tdb_set_lock_alarm(sig_atomic_t *palarm
)
194 palarm_fired
= palarm
;
197 /* a byte range locking function - return 0 on success
198 this functions locks/unlocks 1 byte at the specified offset.
200 On error, errno is also set so that errors are passed back properly
201 through tdb_open(). */
202 static int tdb_brlock(TDB_CONTEXT
*tdb
, tdb_off offset
,
203 int rw_type
, int lck_type
, int probe
)
208 if (tdb
->flags
& TDB_NOLOCK
)
210 if ((rw_type
== F_WRLCK
) && (tdb
->read_only
)) {
216 fl
.l_whence
= SEEK_SET
;
222 ret
= fcntl(tdb
->fd
,lck_type
,&fl
);
223 if (ret
== -1 && errno
== EINTR
&& palarm_fired
&& *palarm_fired
)
225 } while (ret
== -1 && errno
== EINTR
);
228 if (!probe
&& lck_type
!= F_SETLK
) {
229 /* Ensure error code is set for log fun to examine. */
230 if (errno
== EINTR
&& palarm_fired
&& *palarm_fired
)
231 tdb
->ecode
= TDB_ERR_LOCK_TIMEOUT
;
233 tdb
->ecode
= TDB_ERR_LOCK
;
234 TDB_LOG((tdb
, 5,"tdb_brlock failed (fd=%d) at offset %d rw_type=%d lck_type=%d\n",
235 tdb
->fd
, offset
, rw_type
, lck_type
));
237 /* Was it an alarm timeout ? */
238 if (errno
== EINTR
&& palarm_fired
&& *palarm_fired
)
239 return TDB_ERRCODE(TDB_ERR_LOCK_TIMEOUT
, -1);
240 /* Otherwise - generic lock error. */
241 /* errno set by fcntl */
242 return TDB_ERRCODE(TDB_ERR_LOCK
, -1);
247 /* lock a list in the database. list -1 is the alloc list */
248 static int tdb_lock(TDB_CONTEXT
*tdb
, int list
, int ltype
)
250 if (list
< -1 || list
>= (int)tdb
->header
.hash_size
) {
251 TDB_LOG((tdb
, 0,"tdb_lock: invalid list %d for ltype=%d\n",
255 if (tdb
->flags
& TDB_NOLOCK
)
258 /* Since fcntl locks don't nest, we do a lock for the first one,
259 and simply bump the count for future ones */
260 if (tdb
->locked
[list
+1].count
== 0) {
261 if (!tdb
->read_only
&& tdb
->header
.rwlocks
) {
262 if (tdb_spinlock(tdb
, list
, ltype
)) {
263 TDB_LOG((tdb
, 0, "tdb_lock spinlock failed on list ltype=%d\n",
267 } else if (tdb_brlock(tdb
,FREELIST_TOP
+4*list
,ltype
,F_SETLKW
, 0)) {
268 TDB_LOG((tdb
, 0,"tdb_lock failed on list %d ltype=%d (%s)\n",
269 list
, ltype
, strerror(errno
)));
272 tdb
->locked
[list
+1].ltype
= ltype
;
274 tdb
->locked
[list
+1].count
++;
278 /* unlock the database: returns void because it's too late for errors. */
279 /* changed to return int it may be interesting to know there
280 has been an error --simo */
281 static int tdb_unlock(TDB_CONTEXT
*tdb
, int list
, int ltype
)
285 if (tdb
->flags
& TDB_NOLOCK
)
289 if (list
< -1 || list
>= (int)tdb
->header
.hash_size
) {
290 TDB_LOG((tdb
, 0, "tdb_unlock: list %d invalid (%d)\n", list
, tdb
->header
.hash_size
));
294 if (tdb
->locked
[list
+1].count
==0) {
295 TDB_LOG((tdb
, 0, "tdb_unlock: count is 0\n"));
299 if (tdb
->locked
[list
+1].count
== 1) {
300 /* Down to last nested lock: unlock underneath */
301 if (!tdb
->read_only
&& tdb
->header
.rwlocks
) {
302 ret
= tdb_spinunlock(tdb
, list
, ltype
);
304 ret
= tdb_brlock(tdb
, FREELIST_TOP
+4*list
, F_UNLCK
, F_SETLKW
, 0);
309 tdb
->locked
[list
+1].count
--;
312 TDB_LOG((tdb
, 0,"tdb_unlock: An error occurred unlocking!\n"));
316 /* This is based on the hash algorithm from gdbm */
317 static u32
tdb_hash(TDB_DATA
*key
)
319 u32 value
; /* Used to compute the hash value. */
320 u32 i
; /* Used to cycle through random values. */
322 /* Set the initial value from the key size. */
323 for (value
= 0x238F13AF * key
->dsize
, i
=0; i
< key
->dsize
; i
++)
324 value
= (value
+ (key
->dptr
[i
] << (i
*5 % 24)));
326 return (1103515243 * value
+ 12345);
329 /* check for an out of bounds access - if it is out of bounds then
330 see if the database has been expanded by someone else and expand
332 note that "len" is the minimum length needed for the db
334 static int tdb_oob(TDB_CONTEXT
*tdb
, tdb_off len
, int probe
)
337 if (len
<= tdb
->map_size
)
339 if (tdb
->flags
& TDB_INTERNAL
) {
341 /* Ensure ecode is set for log fn. */
342 tdb
->ecode
= TDB_ERR_IO
;
343 TDB_LOG((tdb
, 0,"tdb_oob len %d beyond internal malloc size %d\n",
344 (int)len
, (int)tdb
->map_size
));
346 return TDB_ERRCODE(TDB_ERR_IO
, -1);
349 if (fstat(tdb
->fd
, &st
) == -1)
350 return TDB_ERRCODE(TDB_ERR_IO
, -1);
352 if (st
.st_size
< (size_t)len
) {
354 /* Ensure ecode is set for log fn. */
355 tdb
->ecode
= TDB_ERR_IO
;
356 TDB_LOG((tdb
, 0,"tdb_oob len %d beyond eof at %d\n",
357 (int)len
, (int)st
.st_size
));
359 return TDB_ERRCODE(TDB_ERR_IO
, -1);
362 /* Unmap, update size, remap */
363 if (tdb_munmap(tdb
) == -1)
364 return TDB_ERRCODE(TDB_ERR_IO
, -1);
365 tdb
->map_size
= st
.st_size
;
370 /* write a lump of data at a specified offset */
371 static int tdb_write(TDB_CONTEXT
*tdb
, tdb_off off
, void *buf
, tdb_len len
)
373 if (tdb_oob(tdb
, off
+ len
, 0) != 0)
377 memcpy(off
+ (char *)tdb
->map_ptr
, buf
, len
);
379 else if (pwrite(tdb
->fd
, buf
, len
, off
) != (ssize_t
)len
) {
381 else if (lseek(tdb
->fd
, off
, SEEK_SET
) != off
382 || write(tdb
->fd
, buf
, len
) != (ssize_t
)len
) {
384 /* Ensure ecode is set for log fn. */
385 tdb
->ecode
= TDB_ERR_IO
;
386 TDB_LOG((tdb
, 0,"tdb_write failed at %d len=%d (%s)\n",
387 off
, len
, strerror(errno
)));
388 return TDB_ERRCODE(TDB_ERR_IO
, -1);
393 /* read a lump of data at a specified offset, maybe convert */
394 static int tdb_read(TDB_CONTEXT
*tdb
,tdb_off off
,void *buf
,tdb_len len
,int cv
)
396 if (tdb_oob(tdb
, off
+ len
, 0) != 0)
400 memcpy(buf
, off
+ (char *)tdb
->map_ptr
, len
);
402 else if (pread(tdb
->fd
, buf
, len
, off
) != (ssize_t
)len
) {
404 else if (lseek(tdb
->fd
, off
, SEEK_SET
) != off
405 || read(tdb
->fd
, buf
, len
) != (ssize_t
)len
) {
407 /* Ensure ecode is set for log fn. */
408 tdb
->ecode
= TDB_ERR_IO
;
409 TDB_LOG((tdb
, 0,"tdb_read failed at %d len=%d (%s)\n",
410 off
, len
, strerror(errno
)));
411 return TDB_ERRCODE(TDB_ERR_IO
, -1);
418 /* read a lump of data, allocating the space for it */
419 static char *tdb_alloc_read(TDB_CONTEXT
*tdb
, tdb_off offset
, tdb_len len
)
423 if (!(buf
= malloc(len
))) {
424 /* Ensure ecode is set for log fn. */
425 tdb
->ecode
= TDB_ERR_OOM
;
426 TDB_LOG((tdb
, 0,"tdb_alloc_read malloc failed len=%d (%s)\n",
427 len
, strerror(errno
)));
428 return TDB_ERRCODE(TDB_ERR_OOM
, buf
);
430 if (tdb_read(tdb
, offset
, buf
, len
, 0) == -1) {
437 /* read/write a tdb_off */
438 static int ofs_read(TDB_CONTEXT
*tdb
, tdb_off offset
, tdb_off
*d
)
440 return tdb_read(tdb
, offset
, (char*)d
, sizeof(*d
), DOCONV());
442 static int ofs_write(TDB_CONTEXT
*tdb
, tdb_off offset
, tdb_off
*d
)
445 return tdb_write(tdb
, offset
, CONVERT(off
), sizeof(*d
));
448 /* read/write a record */
449 static int rec_read(TDB_CONTEXT
*tdb
, tdb_off offset
, struct list_struct
*rec
)
451 if (tdb_read(tdb
, offset
, rec
, sizeof(*rec
),DOCONV()) == -1)
453 if (TDB_BAD_MAGIC(rec
)) {
454 /* Ensure ecode is set for log fn. */
455 tdb
->ecode
= TDB_ERR_CORRUPT
;
456 TDB_LOG((tdb
, 0,"rec_read bad magic 0x%x at offset=%d\n", rec
->magic
, offset
));
457 return TDB_ERRCODE(TDB_ERR_CORRUPT
, -1);
459 return tdb_oob(tdb
, rec
->next
+sizeof(*rec
), 0);
461 static int rec_write(TDB_CONTEXT
*tdb
, tdb_off offset
, struct list_struct
*rec
)
463 struct list_struct r
= *rec
;
464 return tdb_write(tdb
, offset
, CONVERT(r
), sizeof(r
));
467 /* read a freelist record and check for simple errors */
468 static int rec_free_read(TDB_CONTEXT
*tdb
, tdb_off off
, struct list_struct
*rec
)
470 if (tdb_read(tdb
, off
, rec
, sizeof(*rec
),DOCONV()) == -1)
473 if (rec
->magic
== TDB_MAGIC
) {
474 /* this happens when a app is showdown while deleting a record - we should
475 not completely fail when this happens */
476 TDB_LOG((tdb
, 0,"rec_free_read non-free magic at offset=%d - fixing\n",
478 rec
->magic
= TDB_FREE_MAGIC
;
479 if (tdb_write(tdb
, off
, rec
, sizeof(*rec
)) == -1)
483 if (rec
->magic
!= TDB_FREE_MAGIC
) {
484 /* Ensure ecode is set for log fn. */
485 tdb
->ecode
= TDB_ERR_CORRUPT
;
486 TDB_LOG((tdb
, 0,"rec_free_read bad magic 0x%x at offset=%d\n",
488 return TDB_ERRCODE(TDB_ERR_CORRUPT
, -1);
490 if (tdb_oob(tdb
, rec
->next
+sizeof(*rec
), 0) != 0)
495 /* update a record tailer (must hold allocation lock) */
496 static int update_tailer(TDB_CONTEXT
*tdb
, tdb_off offset
,
497 const struct list_struct
*rec
)
501 /* Offset of tailer from record header */
502 totalsize
= sizeof(*rec
) + rec
->rec_len
;
503 return ofs_write(tdb
, offset
+ totalsize
- sizeof(tdb_off
),
507 static tdb_off
tdb_dump_record(TDB_CONTEXT
*tdb
, tdb_off offset
)
509 struct list_struct rec
;
510 tdb_off tailer_ofs
, tailer
;
512 if (tdb_read(tdb
, offset
, (char *)&rec
, sizeof(rec
), DOCONV()) == -1) {
513 printf("ERROR: failed to read record at %u\n", offset
);
517 printf(" rec: offset=%u next=%d rec_len=%d key_len=%d data_len=%d full_hash=0x%x magic=0x%x\n",
518 offset
, rec
.next
, rec
.rec_len
, rec
.key_len
, rec
.data_len
, rec
.full_hash
, rec
.magic
);
520 tailer_ofs
= offset
+ sizeof(rec
) + rec
.rec_len
- sizeof(tdb_off
);
521 if (ofs_read(tdb
, tailer_ofs
, &tailer
) == -1) {
522 printf("ERROR: failed to read tailer at %u\n", tailer_ofs
);
526 if (tailer
!= rec
.rec_len
+ sizeof(rec
)) {
527 printf("ERROR: tailer does not match record! tailer=%u totalsize=%u\n",
528 (unsigned)tailer
, (unsigned)(rec
.rec_len
+ sizeof(rec
)));
533 static int tdb_dump_chain(TDB_CONTEXT
*tdb
, int i
)
535 tdb_off rec_ptr
, top
;
537 top
= TDB_HASH_TOP(i
);
539 if (tdb_lock(tdb
, i
, F_WRLCK
) != 0)
542 if (ofs_read(tdb
, top
, &rec_ptr
) == -1)
543 return tdb_unlock(tdb
, i
, F_WRLCK
);
546 printf("hash=%d\n", i
);
549 rec_ptr
= tdb_dump_record(tdb
, rec_ptr
);
552 return tdb_unlock(tdb
, i
, F_WRLCK
);
555 void tdb_dump_all(TDB_CONTEXT
*tdb
)
558 for (i
=0;i
<tdb
->header
.hash_size
;i
++) {
559 tdb_dump_chain(tdb
, i
);
561 printf("freelist:\n");
562 tdb_dump_chain(tdb
, -1);
565 int tdb_printfreelist(TDB_CONTEXT
*tdb
)
569 tdb_off offset
, rec_ptr
;
570 struct list_struct rec
;
572 if ((ret
= tdb_lock(tdb
, -1, F_WRLCK
)) != 0)
575 offset
= FREELIST_TOP
;
577 /* read in the freelist top */
578 if (ofs_read(tdb
, offset
, &rec_ptr
) == -1) {
579 tdb_unlock(tdb
, -1, F_WRLCK
);
583 printf("freelist top=[0x%08x]\n", rec_ptr
);
585 if (tdb_read(tdb
, rec_ptr
, (char *)&rec
, sizeof(rec
), DOCONV()) == -1) {
586 tdb_unlock(tdb
, -1, F_WRLCK
);
590 if (rec
.magic
!= TDB_FREE_MAGIC
) {
591 printf("bad magic 0x%08x in free list\n", rec
.magic
);
592 tdb_unlock(tdb
, -1, F_WRLCK
);
596 printf("entry offset=[0x%08x], rec.rec_len = [0x%08x (%d)]\n", rec
.next
, rec
.rec_len
, rec
.rec_len
);
597 total_free
+= rec
.rec_len
;
599 /* move to the next record */
602 printf("total rec_len = [0x%08x (%d)]\n", (int)total_free
,
605 return tdb_unlock(tdb
, -1, F_WRLCK
);
608 /* Remove an element from the freelist. Must have alloc lock. */
609 static int remove_from_freelist(TDB_CONTEXT
*tdb
, tdb_off off
, tdb_off next
)
613 /* read in the freelist top */
614 last_ptr
= FREELIST_TOP
;
615 while (ofs_read(tdb
, last_ptr
, &i
) != -1 && i
!= 0) {
617 /* We've found it! */
618 return ofs_write(tdb
, last_ptr
, &next
);
620 /* Follow chain (next offset is at start of record) */
623 TDB_LOG((tdb
, 0,"remove_from_freelist: not on list at off=%d\n", off
));
624 return TDB_ERRCODE(TDB_ERR_CORRUPT
, -1);
627 /* Add an element into the freelist. Merge adjacent records if
629 static int tdb_free(TDB_CONTEXT
*tdb
, tdb_off offset
, struct list_struct
*rec
)
633 /* Allocation and tailer lock */
634 if (tdb_lock(tdb
, -1, F_WRLCK
) != 0)
637 /* set an initial tailer, so if we fail we don't leave a bogus record */
638 if (update_tailer(tdb
, offset
, rec
) != 0) {
639 TDB_LOG((tdb
, 0, "tdb_free: upfate_tailer failed!\n"));
643 /* Look right first (I'm an Australian, dammit) */
644 right
= offset
+ sizeof(*rec
) + rec
->rec_len
;
645 if (right
+ sizeof(*rec
) <= tdb
->map_size
) {
646 struct list_struct r
;
648 if (tdb_read(tdb
, right
, &r
, sizeof(r
), DOCONV()) == -1) {
649 TDB_LOG((tdb
, 0, "tdb_free: right read failed at %u\n", right
));
653 /* If it's free, expand to include it. */
654 if (r
.magic
== TDB_FREE_MAGIC
) {
655 if (remove_from_freelist(tdb
, right
, r
.next
) == -1) {
656 TDB_LOG((tdb
, 0, "tdb_free: right free failed at %u\n", right
));
659 rec
->rec_len
+= sizeof(r
) + r
.rec_len
;
665 left
= offset
- sizeof(tdb_off
);
666 if (left
> TDB_HASH_TOP(tdb
->header
.hash_size
-1)) {
667 struct list_struct l
;
670 /* Read in tailer and jump back to header */
671 if (ofs_read(tdb
, left
, &leftsize
) == -1) {
672 TDB_LOG((tdb
, 0, "tdb_free: left offset read failed at %u\n", left
));
675 left
= offset
- leftsize
;
677 /* Now read in record */
678 if (tdb_read(tdb
, left
, &l
, sizeof(l
), DOCONV()) == -1) {
679 TDB_LOG((tdb
, 0, "tdb_free: left read failed at %u (%u)\n", left
, leftsize
));
683 /* If it's free, expand to include it. */
684 if (l
.magic
== TDB_FREE_MAGIC
) {
685 if (remove_from_freelist(tdb
, left
, l
.next
) == -1) {
686 TDB_LOG((tdb
, 0, "tdb_free: left free failed at %u\n", left
));
690 rec
->rec_len
+= leftsize
;
696 if (update_tailer(tdb
, offset
, rec
) == -1) {
697 TDB_LOG((tdb
, 0, "tdb_free: update_tailer failed at %u\n", offset
));
701 /* Now, prepend to free list */
702 rec
->magic
= TDB_FREE_MAGIC
;
704 if (ofs_read(tdb
, FREELIST_TOP
, &rec
->next
) == -1 ||
705 rec_write(tdb
, offset
, rec
) == -1 ||
706 ofs_write(tdb
, FREELIST_TOP
, &offset
) == -1) {
707 TDB_LOG((tdb
, 0, "tdb_free record write failed at offset=%d\n", offset
));
711 /* And we're done. */
712 tdb_unlock(tdb
, -1, F_WRLCK
);
716 tdb_unlock(tdb
, -1, F_WRLCK
);
721 /* expand a file. we prefer to use ftruncate, as that is what posix
722 says to use for mmap expansion */
723 static int expand_file(TDB_CONTEXT
*tdb
, tdb_off size
, tdb_off addition
)
726 #if HAVE_FTRUNCATE_EXTEND
727 if (ftruncate(tdb
->fd
, size
+addition
) != 0) {
728 TDB_LOG((tdb
, 0, "expand_file ftruncate to %d failed (%s)\n",
729 size
+addition
, strerror(errno
)));
736 if (pwrite(tdb
->fd
, &b
, 1, (size
+addition
) - 1) != 1) {
738 if (lseek(tdb
->fd
, (size
+addition
) - 1, SEEK_SET
) != (size
+addition
) - 1 ||
739 write(tdb
->fd
, &b
, 1) != 1) {
741 TDB_LOG((tdb
, 0, "expand_file to %d failed (%s)\n",
742 size
+addition
, strerror(errno
)));
747 /* now fill the file with something. This ensures that the file isn't sparse, which would be
748 very bad if we ran out of disk. This must be done with write, not via mmap */
749 memset(buf
, 0x42, sizeof(buf
));
751 int n
= addition
>sizeof(buf
)?sizeof(buf
):addition
;
753 int ret
= pwrite(tdb
->fd
, buf
, n
, size
);
756 if (lseek(tdb
->fd
, size
, SEEK_SET
) != size
)
758 ret
= write(tdb
->fd
, buf
, n
);
761 TDB_LOG((tdb
, 0, "expand_file write of %d failed (%s)\n",
762 n
, strerror(errno
)));
772 /* expand the database at least size bytes by expanding the underlying
773 file and doing the mmap again if necessary */
774 static int tdb_expand(TDB_CONTEXT
*tdb
, tdb_off size
)
776 struct list_struct rec
;
779 if (tdb_lock(tdb
, -1, F_WRLCK
) == -1) {
780 TDB_LOG((tdb
, 0, "lock failed in tdb_expand\n"));
784 /* must know about any previous expansions by another process */
785 tdb_oob(tdb
, tdb
->map_size
+ 1, 1);
787 /* always make room for at least 10 more records, and round
788 the database up to a multiple of TDB_PAGE_SIZE */
789 size
= TDB_ALIGN(tdb
->map_size
+ size
*10, TDB_PAGE_SIZE
) - tdb
->map_size
;
791 if (!(tdb
->flags
& TDB_INTERNAL
))
795 * We must ensure the file is unmapped before doing this
796 * to ensure consistency with systems like OpenBSD where
797 * writes and mmaps are not consistent.
800 /* expand the file itself */
801 if (!(tdb
->flags
& TDB_INTERNAL
)) {
802 if (expand_file(tdb
, tdb
->map_size
, size
) != 0)
806 tdb
->map_size
+= size
;
808 if (tdb
->flags
& TDB_INTERNAL
)
809 tdb
->map_ptr
= realloc(tdb
->map_ptr
, tdb
->map_size
);
812 * We must ensure the file is remapped before adding the space
813 * to ensure consistency with systems like OpenBSD where
814 * writes and mmaps are not consistent.
817 /* We're ok if the mmap fails as we'll fallback to read/write */
821 /* form a new freelist record */
822 memset(&rec
,'\0',sizeof(rec
));
823 rec
.rec_len
= size
- sizeof(rec
);
825 /* link it into the free list */
826 offset
= tdb
->map_size
- size
;
827 if (tdb_free(tdb
, offset
, &rec
) == -1)
830 tdb_unlock(tdb
, -1, F_WRLCK
);
833 tdb_unlock(tdb
, -1, F_WRLCK
);
837 /* allocate some space from the free list. The offset returned points
838 to a unconnected list_struct within the database with room for at
839 least length bytes of total data
841 0 is returned if the space could not be allocated
843 static tdb_off
tdb_allocate(TDB_CONTEXT
*tdb
, tdb_len length
,
844 struct list_struct
*rec
)
846 tdb_off rec_ptr
, last_ptr
, newrec_ptr
;
847 struct list_struct newrec
;
849 if (tdb_lock(tdb
, -1, F_WRLCK
) == -1)
852 /* Extra bytes required for tailer */
853 length
+= sizeof(tdb_off
);
856 last_ptr
= FREELIST_TOP
;
858 /* read in the freelist top */
859 if (ofs_read(tdb
, FREELIST_TOP
, &rec_ptr
) == -1)
862 /* keep looking until we find a freelist record big enough */
864 if (rec_free_read(tdb
, rec_ptr
, rec
) == -1)
867 if (rec
->rec_len
>= length
) {
868 /* found it - now possibly split it up */
869 if (rec
->rec_len
> length
+ MIN_REC_SIZE
) {
870 /* Length of left piece */
871 length
= TDB_ALIGN(length
, TDB_ALIGNMENT
);
873 /* Right piece to go on free list */
874 newrec
.rec_len
= rec
->rec_len
875 - (sizeof(*rec
) + length
);
876 newrec_ptr
= rec_ptr
+ sizeof(*rec
) + length
;
878 /* And left record is shortened */
879 rec
->rec_len
= length
;
883 /* Remove allocated record from the free list */
884 if (ofs_write(tdb
, last_ptr
, &rec
->next
) == -1)
887 /* Update header: do this before we drop alloc
888 lock, otherwise tdb_free() might try to
889 merge with us, thinking we're free.
890 (Thanks Jeremy Allison). */
891 rec
->magic
= TDB_MAGIC
;
892 if (rec_write(tdb
, rec_ptr
, rec
) == -1)
895 /* Did we create new block? */
897 /* Update allocated record tailer (we
899 if (update_tailer(tdb
, rec_ptr
, rec
) == -1)
902 /* Free new record */
903 if (tdb_free(tdb
, newrec_ptr
, &newrec
) == -1)
907 /* all done - return the new record offset */
908 tdb_unlock(tdb
, -1, F_WRLCK
);
911 /* move to the next record */
915 /* we didn't find enough space. See if we can expand the
916 database and if we can then try again */
917 if (tdb_expand(tdb
, length
+ sizeof(*rec
)) == 0)
920 tdb_unlock(tdb
, -1, F_WRLCK
);
924 /* initialise a new database with a specified hash size */
925 static int tdb_new_database(TDB_CONTEXT
*tdb
, int hash_size
)
927 struct tdb_header
*newdb
;
930 /* We make it up in memory, then write it out if not internal */
931 size
= sizeof(struct tdb_header
) + (hash_size
+1)*sizeof(tdb_off
);
932 if (!(newdb
= calloc(size
, 1)))
933 return TDB_ERRCODE(TDB_ERR_OOM
, -1);
935 /* Fill in the header */
936 newdb
->version
= TDB_VERSION
;
937 newdb
->hash_size
= hash_size
;
939 newdb
->rwlocks
= size
;
941 if (tdb
->flags
& TDB_INTERNAL
) {
942 tdb
->map_size
= size
;
943 tdb
->map_ptr
= (char *)newdb
;
944 memcpy(&tdb
->header
, newdb
, sizeof(tdb
->header
));
945 /* Convert the `ondisk' version if asked. */
949 if (lseek(tdb
->fd
, 0, SEEK_SET
) == -1)
952 if (ftruncate(tdb
->fd
, 0) == -1)
955 /* This creates an endian-converted header, as if read from disk */
957 memcpy(&tdb
->header
, newdb
, sizeof(tdb
->header
));
958 /* Don't endian-convert the magic food! */
959 memcpy(newdb
->magic_food
, TDB_MAGIC_FOOD
, strlen(TDB_MAGIC_FOOD
)+1);
960 if (write(tdb
->fd
, newdb
, size
) != size
)
963 ret
= tdb_create_rwlocks(tdb
->fd
, hash_size
);
970 /* Returns 0 on fail. On success, return offset of record, and fills
972 static tdb_off
tdb_find(TDB_CONTEXT
*tdb
, TDB_DATA key
, u32 hash
,
973 struct list_struct
*r
)
977 /* read in the hash top */
978 if (ofs_read(tdb
, TDB_HASH_TOP(hash
), &rec_ptr
) == -1)
981 /* keep looking until we find the right record */
983 if (rec_read(tdb
, rec_ptr
, r
) == -1)
986 if (!TDB_DEAD(r
) && hash
==r
->full_hash
&& key
.dsize
==r
->key_len
) {
988 /* a very likely hit - read the key */
989 k
= tdb_alloc_read(tdb
, rec_ptr
+ sizeof(*r
),
994 if (memcmp(key
.dptr
, k
, key
.dsize
) == 0) {
1002 return TDB_ERRCODE(TDB_ERR_NOEXIST
, 0);
1005 /* If they do lockkeys, check that this hash is one they locked */
1006 static int tdb_keylocked(TDB_CONTEXT
*tdb
, u32 hash
)
1009 if (!tdb
->lockedkeys
)
1011 for (i
= 0; i
< tdb
->lockedkeys
[0]; i
++)
1012 if (tdb
->lockedkeys
[i
+1] == hash
)
1014 return TDB_ERRCODE(TDB_ERR_NOLOCK
, 0);
1017 /* As tdb_find, but if you succeed, keep the lock */
1018 static tdb_off
tdb_find_lock(TDB_CONTEXT
*tdb
, TDB_DATA key
, int locktype
,
1019 struct list_struct
*rec
)
1023 hash
= tdb_hash(&key
);
1024 if (!tdb_keylocked(tdb
, hash
))
1026 if (tdb_lock(tdb
, BUCKET(hash
), locktype
) == -1)
1028 if (!(rec_ptr
= tdb_find(tdb
, key
, hash
, rec
)))
1029 tdb_unlock(tdb
, BUCKET(hash
), locktype
);
1033 enum TDB_ERROR
tdb_error(TDB_CONTEXT
*tdb
)
1038 static struct tdb_errname
{
1039 enum TDB_ERROR ecode
; const char *estring
;
1040 } emap
[] = { {TDB_SUCCESS
, "Success"},
1041 {TDB_ERR_CORRUPT
, "Corrupt database"},
1042 {TDB_ERR_IO
, "IO Error"},
1043 {TDB_ERR_LOCK
, "Locking error"},
1044 {TDB_ERR_OOM
, "Out of memory"},
1045 {TDB_ERR_EXISTS
, "Record exists"},
1046 {TDB_ERR_NOLOCK
, "Lock exists on other keys"},
1047 {TDB_ERR_NOEXIST
, "Record does not exist"} };
1049 /* Error string for the last tdb error */
1050 const char *tdb_errorstr(TDB_CONTEXT
*tdb
)
1053 for (i
= 0; i
< sizeof(emap
) / sizeof(struct tdb_errname
); i
++)
1054 if (tdb
->ecode
== emap
[i
].ecode
)
1055 return emap
[i
].estring
;
1056 return "Invalid error code";
1059 /* update an entry in place - this only works if the new data size
1060 is <= the old data size and the key exists.
1061 on failure return -1.
1064 static int tdb_update(TDB_CONTEXT
*tdb
, TDB_DATA key
, TDB_DATA dbuf
)
1066 struct list_struct rec
;
1070 if (!(rec_ptr
= tdb_find(tdb
, key
, tdb_hash(&key
), &rec
)))
1073 /* must be long enough key, data and tailer */
1074 if (rec
.rec_len
< key
.dsize
+ dbuf
.dsize
+ sizeof(tdb_off
)) {
1075 tdb
->ecode
= TDB_SUCCESS
; /* Not really an error */
1079 if (tdb_write(tdb
, rec_ptr
+ sizeof(rec
) + rec
.key_len
,
1080 dbuf
.dptr
, dbuf
.dsize
) == -1)
1083 if (dbuf
.dsize
!= rec
.data_len
) {
1085 rec
.data_len
= dbuf
.dsize
;
1086 return rec_write(tdb
, rec_ptr
, &rec
);
1092 /* find an entry in the database given a key */
1093 /* If an entry doesn't exist tdb_err will be set to
1094 * TDB_ERR_NOEXIST. If a key has no data attached
1095 * tdb_err will not be set. Both will return a
1096 * zero pptr and zero dsize.
1099 TDB_DATA
tdb_fetch(TDB_CONTEXT
*tdb
, TDB_DATA key
)
1102 struct list_struct rec
;
1105 /* find which hash bucket it is in */
1106 if (!(rec_ptr
= tdb_find_lock(tdb
,key
,F_RDLCK
,&rec
)))
1110 ret
.dptr
= tdb_alloc_read(tdb
, rec_ptr
+ sizeof(rec
) + rec
.key_len
,
1114 ret
.dsize
= rec
.data_len
;
1115 tdb_unlock(tdb
, BUCKET(rec
.full_hash
), F_RDLCK
);
1119 /* check if an entry in the database exists
1121 note that 1 is returned if the key is found and 0 is returned if not found
1122 this doesn't match the conventions in the rest of this module, but is
1123 compatible with gdbm
1125 int tdb_exists(TDB_CONTEXT
*tdb
, TDB_DATA key
)
1127 struct list_struct rec
;
1129 if (tdb_find_lock(tdb
, key
, F_RDLCK
, &rec
) == 0)
1131 tdb_unlock(tdb
, BUCKET(rec
.full_hash
), F_RDLCK
);
1135 /* record lock stops delete underneath */
1136 static int lock_record(TDB_CONTEXT
*tdb
, tdb_off off
)
1138 return off
? tdb_brlock(tdb
, off
, F_RDLCK
, F_SETLKW
, 0) : 0;
1141 Write locks override our own fcntl readlocks, so check it here.
1142 Note this is meant to be F_SETLK, *not* F_SETLKW, as it's not
1143 an error to fail to get the lock here.
1146 static int write_lock_record(TDB_CONTEXT
*tdb
, tdb_off off
)
1148 struct tdb_traverse_lock
*i
;
1149 for (i
= &tdb
->travlocks
; i
; i
= i
->next
)
1152 return tdb_brlock(tdb
, off
, F_WRLCK
, F_SETLK
, 1);
1156 Note this is meant to be F_SETLK, *not* F_SETLKW, as it's not
1157 an error to fail to get the lock here.
1160 static int write_unlock_record(TDB_CONTEXT
*tdb
, tdb_off off
)
1162 return tdb_brlock(tdb
, off
, F_UNLCK
, F_SETLK
, 0);
1164 /* fcntl locks don't stack: avoid unlocking someone else's */
1165 static int unlock_record(TDB_CONTEXT
*tdb
, tdb_off off
)
1167 struct tdb_traverse_lock
*i
;
1172 for (i
= &tdb
->travlocks
; i
; i
= i
->next
)
1175 return (count
== 1 ? tdb_brlock(tdb
, off
, F_UNLCK
, F_SETLKW
, 0) : 0);
1178 /* actually delete an entry in the database given the offset */
1179 static int do_delete(TDB_CONTEXT
*tdb
, tdb_off rec_ptr
, struct list_struct
*rec
)
1181 tdb_off last_ptr
, i
;
1182 struct list_struct lastrec
;
1184 if (tdb
->read_only
) return -1;
1186 if (write_lock_record(tdb
, rec_ptr
) == -1) {
1187 /* Someone traversing here: mark it as dead */
1188 rec
->magic
= TDB_DEAD_MAGIC
;
1189 return rec_write(tdb
, rec_ptr
, rec
);
1191 if (write_unlock_record(tdb
, rec_ptr
) != 0)
1194 /* find previous record in hash chain */
1195 if (ofs_read(tdb
, TDB_HASH_TOP(rec
->full_hash
), &i
) == -1)
1197 for (last_ptr
= 0; i
!= rec_ptr
; last_ptr
= i
, i
= lastrec
.next
)
1198 if (rec_read(tdb
, i
, &lastrec
) == -1)
1201 /* unlink it: next ptr is at start of record. */
1203 last_ptr
= TDB_HASH_TOP(rec
->full_hash
);
1204 if (ofs_write(tdb
, last_ptr
, &rec
->next
) == -1)
1207 /* recover the space */
1208 if (tdb_free(tdb
, rec_ptr
, rec
) == -1)
1213 /* Uses traverse lock: 0 = finish, -1 = error, other = record offset */
1214 static int tdb_next_lock(TDB_CONTEXT
*tdb
, struct tdb_traverse_lock
*tlock
,
1215 struct list_struct
*rec
)
1217 int want_next
= (tlock
->off
!= 0);
1219 /* No traversal allows if you've called tdb_lockkeys() */
1220 if (tdb
->lockedkeys
)
1221 return TDB_ERRCODE(TDB_ERR_NOLOCK
, -1);
1223 /* Lock each chain from the start one. */
1224 for (; tlock
->hash
< tdb
->header
.hash_size
; tlock
->hash
++) {
1225 if (tdb_lock(tdb
, tlock
->hash
, F_WRLCK
) == -1)
1228 /* No previous record? Start at top of chain. */
1230 if (ofs_read(tdb
, TDB_HASH_TOP(tlock
->hash
),
1234 /* Otherwise unlock the previous record. */
1235 if (unlock_record(tdb
, tlock
->off
) != 0)
1240 /* We have offset of old record: grab next */
1241 if (rec_read(tdb
, tlock
->off
, rec
) == -1)
1243 tlock
->off
= rec
->next
;
1246 /* Iterate through chain */
1247 while( tlock
->off
) {
1249 if (rec_read(tdb
, tlock
->off
, rec
) == -1)
1251 if (!TDB_DEAD(rec
)) {
1252 /* Woohoo: we found one! */
1253 if (lock_record(tdb
, tlock
->off
) != 0)
1257 /* Try to clean dead ones from old traverses */
1258 current
= tlock
->off
;
1259 tlock
->off
= rec
->next
;
1260 if (!tdb
->read_only
&&
1261 do_delete(tdb
, current
, rec
) != 0)
1264 tdb_unlock(tdb
, tlock
->hash
, F_WRLCK
);
1267 /* We finished iteration without finding anything */
1268 return TDB_ERRCODE(TDB_SUCCESS
, 0);
1272 if (tdb_unlock(tdb
, tlock
->hash
, F_WRLCK
) != 0)
1273 TDB_LOG((tdb
, 0, "tdb_next_lock: On error unlock failed!\n"));
1277 /* traverse the entire database - calling fn(tdb, key, data) on each element.
1278 return -1 on error or the record count traversed
1279 if fn is NULL then it is not called
1280 a non-zero return value from fn() indicates that the traversal should stop
1282 int tdb_traverse(TDB_CONTEXT
*tdb
, tdb_traverse_func fn
, void *state
)
1285 struct list_struct rec
;
1286 struct tdb_traverse_lock tl
= { NULL
, 0, 0 };
1289 /* This was in the initializaton, above, but the IRIX compiler
1290 * did not like it. crh
1292 tl
.next
= tdb
->travlocks
.next
;
1294 /* fcntl locks don't stack: beware traverse inside traverse */
1295 tdb
->travlocks
.next
= &tl
;
1297 /* tdb_next_lock places locks on the record returned, and its chain */
1298 while ((ret
= tdb_next_lock(tdb
, &tl
, &rec
)) > 0) {
1300 /* now read the full record */
1301 key
.dptr
= tdb_alloc_read(tdb
, tl
.off
+ sizeof(rec
),
1302 rec
.key_len
+ rec
.data_len
);
1305 if (tdb_unlock(tdb
, tl
.hash
, F_WRLCK
) != 0)
1307 if (unlock_record(tdb
, tl
.off
) != 0)
1308 TDB_LOG((tdb
, 0, "tdb_traverse: key.dptr == NULL and unlock_record failed!\n"));
1311 key
.dsize
= rec
.key_len
;
1312 dbuf
.dptr
= key
.dptr
+ rec
.key_len
;
1313 dbuf
.dsize
= rec
.data_len
;
1315 /* Drop chain lock, call out */
1316 if (tdb_unlock(tdb
, tl
.hash
, F_WRLCK
) != 0) {
1320 if (fn
&& fn(tdb
, key
, dbuf
, state
)) {
1321 /* They want us to terminate traversal */
1323 if (unlock_record(tdb
, tl
.off
) != 0) {
1324 TDB_LOG((tdb
, 0, "tdb_traverse: unlock_record failed!\n"));;
1327 tdb
->travlocks
.next
= tl
.next
;
1328 SAFE_FREE(key
.dptr
);
1331 SAFE_FREE(key
.dptr
);
1334 tdb
->travlocks
.next
= tl
.next
;
1341 /* find the first entry in the database and return its key */
1342 TDB_DATA
tdb_firstkey(TDB_CONTEXT
*tdb
)
1345 struct list_struct rec
;
1347 /* release any old lock */
1348 if (unlock_record(tdb
, tdb
->travlocks
.off
) != 0)
1350 tdb
->travlocks
.off
= tdb
->travlocks
.hash
= 0;
1352 if (tdb_next_lock(tdb
, &tdb
->travlocks
, &rec
) <= 0)
1354 /* now read the key */
1355 key
.dsize
= rec
.key_len
;
1356 key
.dptr
=tdb_alloc_read(tdb
,tdb
->travlocks
.off
+sizeof(rec
),key
.dsize
);
1357 if (tdb_unlock(tdb
, BUCKET(tdb
->travlocks
.hash
), F_WRLCK
) != 0)
1358 TDB_LOG((tdb
, 0, "tdb_firstkey: error occurred while tdb_unlocking!\n"));
1362 /* find the next entry in the database, returning its key */
1363 TDB_DATA
tdb_nextkey(TDB_CONTEXT
*tdb
, TDB_DATA oldkey
)
1366 TDB_DATA key
= tdb_null
;
1367 struct list_struct rec
;
1370 /* Is locked key the old key? If so, traverse will be reliable. */
1371 if (tdb
->travlocks
.off
) {
1372 if (tdb_lock(tdb
,tdb
->travlocks
.hash
,F_WRLCK
))
1374 if (rec_read(tdb
, tdb
->travlocks
.off
, &rec
) == -1
1375 || !(k
= tdb_alloc_read(tdb
,tdb
->travlocks
.off
+sizeof(rec
),
1377 || memcmp(k
, oldkey
.dptr
, oldkey
.dsize
) != 0) {
1378 /* No, it wasn't: unlock it and start from scratch */
1379 if (unlock_record(tdb
, tdb
->travlocks
.off
) != 0)
1381 if (tdb_unlock(tdb
, tdb
->travlocks
.hash
, F_WRLCK
) != 0)
1383 tdb
->travlocks
.off
= 0;
1389 if (!tdb
->travlocks
.off
) {
1390 /* No previous element: do normal find, and lock record */
1391 tdb
->travlocks
.off
= tdb_find_lock(tdb
, oldkey
, F_WRLCK
, &rec
);
1392 if (!tdb
->travlocks
.off
)
1394 tdb
->travlocks
.hash
= BUCKET(rec
.full_hash
);
1395 if (lock_record(tdb
, tdb
->travlocks
.off
) != 0) {
1396 TDB_LOG((tdb
, 0, "tdb_nextkey: lock_record failed (%s)!\n", strerror(errno
)));
1400 oldhash
= tdb
->travlocks
.hash
;
1402 /* Grab next record: locks chain and returned record,
1403 unlocks old record */
1404 if (tdb_next_lock(tdb
, &tdb
->travlocks
, &rec
) > 0) {
1405 key
.dsize
= rec
.key_len
;
1406 key
.dptr
= tdb_alloc_read(tdb
, tdb
->travlocks
.off
+sizeof(rec
),
1408 /* Unlock the chain of this new record */
1409 if (tdb_unlock(tdb
, tdb
->travlocks
.hash
, F_WRLCK
) != 0)
1410 TDB_LOG((tdb
, 0, "tdb_nextkey: WARNING tdb_unlock failed!\n"));
1412 /* Unlock the chain of old record */
1413 if (tdb_unlock(tdb
, BUCKET(oldhash
), F_WRLCK
) != 0)
1414 TDB_LOG((tdb
, 0, "tdb_nextkey: WARNING tdb_unlock failed!\n"));
1418 /* delete an entry in the database given a key */
1419 int tdb_delete(TDB_CONTEXT
*tdb
, TDB_DATA key
)
1422 struct list_struct rec
;
1425 if (!(rec_ptr
= tdb_find_lock(tdb
, key
, F_WRLCK
, &rec
)))
1427 ret
= do_delete(tdb
, rec_ptr
, &rec
);
1428 if (tdb_unlock(tdb
, BUCKET(rec
.full_hash
), F_WRLCK
) != 0)
1429 TDB_LOG((tdb
, 0, "tdb_delete: WARNING tdb_unlock failed!\n"));
1433 /* store an element in the database, replacing any existing element
1436 return 0 on success, -1 on failure
1438 int tdb_store(TDB_CONTEXT
*tdb
, TDB_DATA key
, TDB_DATA dbuf
, int flag
)
1440 struct list_struct rec
;
1446 /* find which hash bucket it is in */
1447 hash
= tdb_hash(&key
);
1448 if (!tdb_keylocked(tdb
, hash
))
1450 if (tdb_lock(tdb
, BUCKET(hash
), F_WRLCK
) == -1)
1453 /* check for it existing, on insert. */
1454 if (flag
== TDB_INSERT
) {
1455 if (tdb_exists(tdb
, key
)) {
1456 tdb
->ecode
= TDB_ERR_EXISTS
;
1460 /* first try in-place update, on modify or replace. */
1461 if (tdb_update(tdb
, key
, dbuf
) == 0)
1463 if (flag
== TDB_MODIFY
&& tdb
->ecode
== TDB_ERR_NOEXIST
)
1466 /* reset the error code potentially set by the tdb_update() */
1467 tdb
->ecode
= TDB_SUCCESS
;
1469 /* delete any existing record - if it doesn't exist we don't
1470 care. Doing this first reduces fragmentation, and avoids
1471 coalescing with `allocated' block before it's updated. */
1472 if (flag
!= TDB_INSERT
)
1473 tdb_delete(tdb
, key
);
1475 /* Copy key+value *before* allocating free space in case malloc
1476 fails and we are left with a dead spot in the tdb. */
1478 if (!(p
= (char *)malloc(key
.dsize
+ dbuf
.dsize
))) {
1479 tdb
->ecode
= TDB_ERR_OOM
;
1483 memcpy(p
, key
.dptr
, key
.dsize
);
1485 memcpy(p
+key
.dsize
, dbuf
.dptr
, dbuf
.dsize
);
1487 /* now we're into insert / modify / replace of a record which
1488 * we know could not be optimised by an in-place store (for
1489 * various reasons). */
1490 if (!(rec_ptr
= tdb_allocate(tdb
, key
.dsize
+ dbuf
.dsize
, &rec
)))
1493 /* Read hash top into next ptr */
1494 if (ofs_read(tdb
, TDB_HASH_TOP(hash
), &rec
.next
) == -1)
1497 rec
.key_len
= key
.dsize
;
1498 rec
.data_len
= dbuf
.dsize
;
1499 rec
.full_hash
= hash
;
1500 rec
.magic
= TDB_MAGIC
;
1502 /* write out and point the top of the hash chain at it */
1503 if (rec_write(tdb
, rec_ptr
, &rec
) == -1
1504 || tdb_write(tdb
, rec_ptr
+sizeof(rec
), p
, key
.dsize
+dbuf
.dsize
)==-1
1505 || ofs_write(tdb
, TDB_HASH_TOP(hash
), &rec_ptr
) == -1) {
1506 /* Need to tdb_unallocate() here */
1511 tdb_unlock(tdb
, BUCKET(hash
), F_WRLCK
);
1518 /* Attempt to append data to an entry in place - this only works if the new data size
1519 is <= the old data size and the key exists.
1520 on failure return -1. Record must be locked before calling.
1522 static int tdb_append_inplace(TDB_CONTEXT
*tdb
, TDB_DATA key
, TDB_DATA new_dbuf
)
1524 struct list_struct rec
;
1528 if (!(rec_ptr
= tdb_find(tdb
, key
, tdb_hash(&key
), &rec
)))
1531 /* Append of 0 is always ok. */
1532 if (new_dbuf
.dsize
== 0)
1535 /* must be long enough for key, old data + new data and tailer */
1536 if (rec
.rec_len
< key
.dsize
+ rec
.data_len
+ new_dbuf
.dsize
+ sizeof(tdb_off
)) {
1538 tdb
->ecode
= TDB_SUCCESS
; /* Not really an error */
1542 if (tdb_write(tdb
, rec_ptr
+ sizeof(rec
) + rec
.key_len
+ rec
.data_len
,
1543 new_dbuf
.dptr
, new_dbuf
.dsize
) == -1)
1547 rec
.data_len
+= new_dbuf
.dsize
;
1548 return rec_write(tdb
, rec_ptr
, &rec
);
1551 /* Append to an entry. Create if not exist. */
1553 int tdb_append(TDB_CONTEXT
*tdb
, TDB_DATA key
, TDB_DATA new_dbuf
)
1555 struct list_struct rec
;
1560 size_t new_data_size
= 0;
1562 /* find which hash bucket it is in */
1563 hash
= tdb_hash(&key
);
1564 if (!tdb_keylocked(tdb
, hash
))
1566 if (tdb_lock(tdb
, BUCKET(hash
), F_WRLCK
) == -1)
1569 /* first try in-place. */
1570 if (tdb_append_inplace(tdb
, key
, new_dbuf
) == 0)
1573 /* reset the error code potentially set by the tdb_append_inplace() */
1574 tdb
->ecode
= TDB_SUCCESS
;
1577 if (!(rec_ptr
= tdb_find(tdb
, key
, hash
, &rec
))) {
1578 if (tdb
->ecode
!= TDB_ERR_NOEXIST
)
1581 /* Not found - create. */
1583 ret
= tdb_store(tdb
, key
, new_dbuf
, TDB_INSERT
);
1587 new_data_size
= rec
.data_len
+ new_dbuf
.dsize
;
1589 /* Copy key+old_value+value *before* allocating free space in case malloc
1590 fails and we are left with a dead spot in the tdb. */
1592 if (!(p
= (char *)malloc(key
.dsize
+ new_data_size
))) {
1593 tdb
->ecode
= TDB_ERR_OOM
;
1597 /* Copy the key in place. */
1598 memcpy(p
, key
.dptr
, key
.dsize
);
1600 /* Now read the old data into place. */
1602 tdb_read(tdb
, rec_ptr
+ sizeof(rec
) + rec
.key_len
, p
+ key
.dsize
, rec
.data_len
, 0) == -1)
1605 /* Finally append the new data. */
1607 memcpy(p
+key
.dsize
+rec
.data_len
, new_dbuf
.dptr
, new_dbuf
.dsize
);
1609 /* delete any existing record - if it doesn't exist we don't
1610 care. Doing this first reduces fragmentation, and avoids
1611 coalescing with `allocated' block before it's updated. */
1613 tdb_delete(tdb
, key
);
1615 if (!(rec_ptr
= tdb_allocate(tdb
, key
.dsize
+ new_data_size
, &rec
)))
1618 /* Read hash top into next ptr */
1619 if (ofs_read(tdb
, TDB_HASH_TOP(hash
), &rec
.next
) == -1)
1622 rec
.key_len
= key
.dsize
;
1623 rec
.data_len
= new_data_size
;
1624 rec
.full_hash
= hash
;
1625 rec
.magic
= TDB_MAGIC
;
1627 /* write out and point the top of the hash chain at it */
1628 if (rec_write(tdb
, rec_ptr
, &rec
) == -1
1629 || tdb_write(tdb
, rec_ptr
+sizeof(rec
), p
, key
.dsize
+new_data_size
)==-1
1630 || ofs_write(tdb
, TDB_HASH_TOP(hash
), &rec_ptr
) == -1) {
1631 /* Need to tdb_unallocate() here */
1637 tdb_unlock(tdb
, BUCKET(hash
), F_WRLCK
);
1645 static int tdb_already_open(dev_t device
,
1650 for (i
= tdbs
; i
; i
= i
->next
) {
1651 if (i
->device
== device
&& i
->inode
== ino
) {
1659 /* open the database, creating it if necessary
1661 The open_flags and mode are passed straight to the open call on the
1662 database file. A flags value of O_WRONLY is invalid. The hash size
1663 is advisory, use zero for a default value.
1665 Return is NULL on error, in which case errno is also set. Don't
1666 try to call tdb_error or tdb_errname, just do strerror(errno).
1668 @param name may be NULL for internal databases. */
1669 TDB_CONTEXT
*tdb_open(const char *name
, int hash_size
, int tdb_flags
,
1670 int open_flags
, mode_t mode
)
1672 return tdb_open_ex(name
, hash_size
, tdb_flags
, open_flags
, mode
, NULL
);
1676 TDB_CONTEXT
*tdb_open_ex(const char *name
, int hash_size
, int tdb_flags
,
1677 int open_flags
, mode_t mode
,
1678 tdb_log_func log_fn
)
1682 int rev
= 0, locked
;
1686 if (!(tdb
= calloc(1, sizeof *tdb
))) {
1687 /* Can't log this */
1693 tdb
->map_ptr
= NULL
;
1694 tdb
->lockedkeys
= NULL
;
1695 tdb
->flags
= tdb_flags
;
1696 tdb
->open_flags
= open_flags
;
1697 tdb
->log_fn
= log_fn
;
1699 if ((open_flags
& O_ACCMODE
) == O_WRONLY
) {
1700 TDB_LOG((tdb
, 0, "tdb_open_ex: can't open tdb %s write-only\n",
1707 hash_size
= DEFAULT_HASH_SIZE
;
1708 if ((open_flags
& O_ACCMODE
) == O_RDONLY
) {
1710 /* read only databases don't do locking or clear if first */
1711 tdb
->flags
|= TDB_NOLOCK
;
1712 tdb
->flags
&= ~TDB_CLEAR_IF_FIRST
;
1715 /* internal databases don't mmap or lock, and start off cleared */
1716 if (tdb
->flags
& TDB_INTERNAL
) {
1717 tdb
->flags
|= (TDB_NOLOCK
| TDB_NOMMAP
);
1718 tdb
->flags
&= ~TDB_CLEAR_IF_FIRST
;
1719 if (tdb_new_database(tdb
, hash_size
) != 0) {
1720 TDB_LOG((tdb
, 0, "tdb_open_ex: tdb_new_database failed!"));
1726 if ((tdb
->fd
= open(name
, open_flags
, mode
)) == -1) {
1727 TDB_LOG((tdb
, 5, "tdb_open_ex: could not open file %s: %s\n",
1728 name
, strerror(errno
)));
1729 goto fail
; /* errno set by open(2) */
1732 /* ensure there is only one process initialising at once */
1733 if (tdb_brlock(tdb
, GLOBAL_LOCK
, F_WRLCK
, F_SETLKW
, 0) == -1) {
1734 TDB_LOG((tdb
, 0, "tdb_open_ex: failed to get global lock on %s: %s\n",
1735 name
, strerror(errno
)));
1736 goto fail
; /* errno set by tdb_brlock */
1739 /* we need to zero database if we are the only one with it open */
1740 if ((locked
= (tdb_brlock(tdb
, ACTIVE_LOCK
, F_WRLCK
, F_SETLK
, 0) == 0))
1741 && (tdb_flags
& TDB_CLEAR_IF_FIRST
)) {
1742 open_flags
|= O_CREAT
;
1743 if (ftruncate(tdb
->fd
, 0) == -1) {
1744 TDB_LOG((tdb
, 0, "tdb_open_ex: "
1745 "failed to truncate %s: %s\n",
1746 name
, strerror(errno
)));
1747 goto fail
; /* errno set by ftruncate */
1751 if (read(tdb
->fd
, &tdb
->header
, sizeof(tdb
->header
)) != sizeof(tdb
->header
)
1752 || strcmp(tdb
->header
.magic_food
, TDB_MAGIC_FOOD
) != 0
1753 || (tdb
->header
.version
!= TDB_VERSION
1754 && !(rev
= (tdb
->header
.version
==TDB_BYTEREV(TDB_VERSION
))))) {
1755 /* its not a valid database - possibly initialise it */
1756 if (!(open_flags
& O_CREAT
) || tdb_new_database(tdb
, hash_size
) == -1) {
1757 errno
= EIO
; /* ie bad format or something */
1760 rev
= (tdb
->flags
& TDB_CONVERT
);
1762 vp
= (unsigned char *)&tdb
->header
.version
;
1763 vertest
= (((u32
)vp
[0]) << 24) | (((u32
)vp
[1]) << 16) |
1764 (((u32
)vp
[2]) << 8) | (u32
)vp
[3];
1765 tdb
->flags
|= (vertest
==TDB_VERSION
) ? TDB_BIGENDIAN
: 0;
1767 tdb
->flags
&= ~TDB_CONVERT
;
1769 tdb
->flags
|= TDB_CONVERT
;
1770 convert(&tdb
->header
, sizeof(tdb
->header
));
1772 if (fstat(tdb
->fd
, &st
) == -1)
1775 /* Is it already in the open list? If so, fail. */
1776 if (tdb_already_open(st
.st_dev
, st
.st_ino
)) {
1777 TDB_LOG((tdb
, 2, "tdb_open_ex: "
1778 "%s (%d,%d) is already open in this process\n",
1779 name
, st
.st_dev
, st
.st_ino
));
1784 if (!(tdb
->name
= (char *)strdup(name
))) {
1789 tdb
->map_size
= st
.st_size
;
1790 tdb
->device
= st
.st_dev
;
1791 tdb
->inode
= st
.st_ino
;
1792 tdb
->locked
= calloc(tdb
->header
.hash_size
+1, sizeof(tdb
->locked
[0]));
1794 TDB_LOG((tdb
, 2, "tdb_open_ex: "
1795 "failed to allocate lock structure for %s\n",
1802 if (!tdb
->read_only
)
1803 if (tdb_clear_spinlocks(tdb
) != 0) {
1804 TDB_LOG((tdb
, 0, "tdb_open_ex: "
1805 "failed to clear spinlock\n"));
1808 if (tdb_brlock(tdb
, ACTIVE_LOCK
, F_UNLCK
, F_SETLK
, 0) == -1) {
1809 TDB_LOG((tdb
, 0, "tdb_open_ex: "
1810 "failed to take ACTIVE_LOCK on %s: %s\n",
1811 name
, strerror(errno
)));
1815 /* leave this lock in place to indicate it's in use */
1816 if (tdb_brlock(tdb
, ACTIVE_LOCK
, F_RDLCK
, F_SETLKW
, 0) == -1)
1820 /* Internal (memory-only) databases skip all the code above to
1821 * do with disk files, and resume here by releasing their
1822 * global lock and hooking into the active list. */
1823 if (tdb_brlock(tdb
, GLOBAL_LOCK
, F_UNLCK
, F_SETLKW
, 0) == -1)
1830 { int save_errno
= errno
;
1836 if (tdb
->flags
& TDB_INTERNAL
)
1837 SAFE_FREE(tdb
->map_ptr
);
1841 SAFE_FREE(tdb
->name
);
1843 if (close(tdb
->fd
) != 0)
1844 TDB_LOG((tdb
, 5, "tdb_open_ex: failed to close tdb->fd on error!\n"));
1845 SAFE_FREE(tdb
->locked
);
1855 * @returns -1 for error; 0 for success.
1857 int tdb_close(TDB_CONTEXT
*tdb
)
1863 if (tdb
->flags
& TDB_INTERNAL
)
1864 SAFE_FREE(tdb
->map_ptr
);
1868 SAFE_FREE(tdb
->name
);
1870 ret
= close(tdb
->fd
);
1871 SAFE_FREE(tdb
->locked
);
1872 SAFE_FREE(tdb
->lockedkeys
);
1874 /* Remove from contexts list */
1875 for (i
= &tdbs
; *i
; i
= &(*i
)->next
) {
1882 memset(tdb
, 0, sizeof(*tdb
));
1888 /* lock/unlock entire database */
1889 int tdb_lockall(TDB_CONTEXT
*tdb
)
1893 /* There are no locks on read-only dbs */
1895 return TDB_ERRCODE(TDB_ERR_LOCK
, -1);
1896 if (tdb
->lockedkeys
)
1897 return TDB_ERRCODE(TDB_ERR_NOLOCK
, -1);
1898 for (i
= 0; i
< tdb
->header
.hash_size
; i
++)
1899 if (tdb_lock(tdb
, i
, F_WRLCK
))
1902 /* If error, release locks we have... */
1903 if (i
< tdb
->header
.hash_size
) {
1906 for ( j
= 0; j
< i
; j
++)
1907 tdb_unlock(tdb
, j
, F_WRLCK
);
1908 return TDB_ERRCODE(TDB_ERR_NOLOCK
, -1);
1913 void tdb_unlockall(TDB_CONTEXT
*tdb
)
1916 for (i
=0; i
< tdb
->header
.hash_size
; i
++)
1917 tdb_unlock(tdb
, i
, F_WRLCK
);
1920 int tdb_lockkeys(TDB_CONTEXT
*tdb
, u32 number
, TDB_DATA keys
[])
1924 /* Can't lock more keys if already locked */
1925 if (tdb
->lockedkeys
)
1926 return TDB_ERRCODE(TDB_ERR_NOLOCK
, -1);
1927 if (!(tdb
->lockedkeys
= malloc(sizeof(u32
) * (number
+1))))
1928 return TDB_ERRCODE(TDB_ERR_OOM
, -1);
1929 /* First number in array is # keys */
1930 tdb
->lockedkeys
[0] = number
;
1932 /* Insertion sort by bucket */
1933 for (i
= 0; i
< number
; i
++) {
1934 hash
= tdb_hash(&keys
[i
]);
1935 for (j
= 0; j
< i
&& BUCKET(tdb
->lockedkeys
[j
+1]) < BUCKET(hash
); j
++);
1936 memmove(&tdb
->lockedkeys
[j
+2], &tdb
->lockedkeys
[j
+1], sizeof(u32
) * (i
-j
));
1937 tdb
->lockedkeys
[j
+1] = hash
;
1939 /* Finally, lock in order */
1940 for (i
= 0; i
< number
; i
++)
1941 if (tdb_lock(tdb
, i
, F_WRLCK
))
1944 /* If error, release locks we have... */
1946 for ( j
= 0; j
< i
; j
++)
1947 tdb_unlock(tdb
, j
, F_WRLCK
);
1948 SAFE_FREE(tdb
->lockedkeys
);
1949 return TDB_ERRCODE(TDB_ERR_NOLOCK
, -1);
1954 /* Unlock the keys previously locked by tdb_lockkeys() */
1955 void tdb_unlockkeys(TDB_CONTEXT
*tdb
)
1958 if (!tdb
->lockedkeys
)
1960 for (i
= 0; i
< tdb
->lockedkeys
[0]; i
++)
1961 tdb_unlock(tdb
, tdb
->lockedkeys
[i
+1], F_WRLCK
);
1962 SAFE_FREE(tdb
->lockedkeys
);
1965 /* lock/unlock one hash chain. This is meant to be used to reduce
1966 contention - it cannot guarantee how many records will be locked */
1967 int tdb_chainlock(TDB_CONTEXT
*tdb
, TDB_DATA key
)
1969 return tdb_lock(tdb
, BUCKET(tdb_hash(&key
)), F_WRLCK
);
1972 int tdb_chainunlock(TDB_CONTEXT
*tdb
, TDB_DATA key
)
1974 return tdb_unlock(tdb
, BUCKET(tdb_hash(&key
)), F_WRLCK
);
1977 int tdb_chainlock_read(TDB_CONTEXT
*tdb
, TDB_DATA key
)
1979 return tdb_lock(tdb
, BUCKET(tdb_hash(&key
)), F_RDLCK
);
1982 int tdb_chainunlock_read(TDB_CONTEXT
*tdb
, TDB_DATA key
)
1984 return tdb_unlock(tdb
, BUCKET(tdb_hash(&key
)), F_RDLCK
);
1988 /* register a loging function */
1989 void tdb_logging_function(TDB_CONTEXT
*tdb
, void (*fn
)(TDB_CONTEXT
*, int , const char *, ...))
1995 /* reopen a tdb - this is used after a fork to ensure that we have an independent
1996 seek pointer from our parent and to re-establish locks */
1997 int tdb_reopen(TDB_CONTEXT
*tdb
)
2001 if (tdb_munmap(tdb
) != 0) {
2002 TDB_LOG((tdb
, 0, "tdb_reopen: munmap failed (%s)\n", strerror(errno
)));
2005 if (close(tdb
->fd
) != 0)
2006 TDB_LOG((tdb
, 0, "tdb_reopen: WARNING closing tdb->fd failed!\n"));
2007 tdb
->fd
= open(tdb
->name
, tdb
->open_flags
& ~(O_CREAT
|O_TRUNC
), 0);
2008 if (tdb
->fd
== -1) {
2009 TDB_LOG((tdb
, 0, "tdb_reopen: open failed (%s)\n", strerror(errno
)));
2012 if (fstat(tdb
->fd
, &st
) != 0) {
2013 TDB_LOG((tdb
, 0, "tdb_reopen: fstat failed (%s)\n", strerror(errno
)));
2016 if (st
.st_ino
!= tdb
->inode
|| st
.st_dev
!= tdb
->device
) {
2017 TDB_LOG((tdb
, 0, "tdb_reopen: file dev/inode has changed!\n"));
2021 if (tdb_brlock(tdb
, ACTIVE_LOCK
, F_RDLCK
, F_SETLKW
, 0) == -1) {
2022 TDB_LOG((tdb
, 0, "tdb_reopen: failed to obtain active lock\n"));
2033 /* reopen all tdb's */
2034 int tdb_reopen_all(void)
2038 for (tdb
=tdbs
; tdb
; tdb
= tdb
->next
) {
2039 if (tdb_reopen(tdb
) != 0) return -1;