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/cvs/BDB/BDB.xs
Revision: 1.27
Committed: Mon Dec 17 06:31:43 2007 UTC (16 years, 5 months ago) by root
Branch: MAIN
Changes since 1.26: +16 -5 lines
Log Message:
*** empty log message ***

File Contents

# Content
1 #include "xthread.h"
2
3 #include <errno.h>
4
5 #include "EXTERN.h"
6 #include "perl.h"
7 #include "XSUB.h"
8
9 // perl stupidly defines these as macros, breaking
10 // lots and lots of code.
11 #undef open
12 #undef close
13 #undef abort
14 #undef malloc
15 #undef free
16 #undef send
17
18 #include <stddef.h>
19 #include <stdlib.h>
20 #include <errno.h>
21 #include <sys/types.h>
22 #include <limits.h>
23 #include <fcntl.h>
24
25 #ifndef _WIN32
26 # include <sys/time.h>
27 # include <unistd.h>
28 #endif
29
30 #include <db.h>
31
32 #if DB_VERSION_MAJOR < 4 || (DB_VERSION_MAJOR == 4 && DB_VERSION_MINOR < 4)
33 # error you need Berkeley DB 4.4 or newer installed
34 #endif
35
36 /* number of seconds after which idle threads exit */
37 #define IDLE_TIMEOUT 10
38
39 typedef DB_ENV DB_ENV_ornull;
40 typedef DB_TXN DB_TXN_ornull;
41 typedef DBC DBC_ornull;
42 typedef DB DB_ornull;
43 typedef DB_SEQUENCE DB_SEQUENCE_ornull;
44
45 typedef SV SV8; /* byte-sv, used for argument-checking */
46 typedef char *octetstring;
47
48 static SV *prepare_cb;
49
50 #if DB_VERSION_MINOR >= 6
51 # define c_close close
52 # define c_count count
53 # define c_del del
54 # define c_dup dup
55 # define c_get get
56 # define c_pget pget
57 # define c_put put
58 #endif
59
60 static void
61 debug_errcall (const DB_ENV *dbenv, const char *errpfx, const char *msg)
62 {
63 printf ("err[%s]\n", msg);
64 }
65
66 static void
67 debug_msgcall (const DB_ENV *dbenv, const char *msg)
68 {
69 printf ("msg[%s]\n", msg);
70 }
71
72 static char *
73 strdup_ornull (const char *s)
74 {
75 return s ? strdup (s) : 0;
76 }
77
78 static void
79 sv_to_dbt (DBT *dbt, SV *sv)
80 {
81 STRLEN len;
82 char *data = SvPVbyte (sv, len);
83
84 dbt->data = malloc (len);
85 memcpy (dbt->data, data, len);
86 dbt->size = len;
87 dbt->flags = DB_DBT_REALLOC;
88 }
89
90 static void
91 dbt_to_sv (SV *sv, DBT *dbt)
92 {
93 if (sv)
94 {
95 SvREADONLY_off (sv);
96 sv_setpvn_mg (sv, dbt->data, dbt->size);
97 SvREFCNT_dec (sv);
98 }
99
100 free (dbt->data);
101 }
102
103 enum {
104 REQ_QUIT,
105 REQ_ENV_OPEN, REQ_ENV_CLOSE, REQ_ENV_TXN_CHECKPOINT, REQ_ENV_LOCK_DETECT,
106 REQ_ENV_MEMP_SYNC, REQ_ENV_MEMP_TRICKLE,
107 REQ_DB_OPEN, REQ_DB_CLOSE, REQ_DB_COMPACT, REQ_DB_SYNC, REQ_DB_UPGRADE,
108 REQ_DB_PUT, REQ_DB_GET, REQ_DB_PGET, REQ_DB_DEL, REQ_DB_KEY_RANGE,
109 REQ_TXN_COMMIT, REQ_TXN_ABORT, REQ_TXN_FINISH,
110 REQ_C_CLOSE, REQ_C_COUNT, REQ_C_PUT, REQ_C_GET, REQ_C_PGET, REQ_C_DEL,
111 REQ_SEQ_OPEN, REQ_SEQ_CLOSE, REQ_SEQ_GET, REQ_SEQ_REMOVE,
112 };
113
114 typedef struct aio_cb
115 {
116 struct aio_cb *volatile next;
117 SV *callback;
118 int type, pri, result;
119
120 DB_ENV *env;
121 DB *db;
122 DB_TXN *txn;
123 DBC *dbc;
124
125 UV uv1;
126 int int1, int2;
127 U32 uint1, uint2;
128 char *buf1, *buf2;
129 SV *sv1, *sv2, *sv3;
130
131 DBT dbt1, dbt2, dbt3;
132 DB_KEY_RANGE key_range;
133 DB_SEQUENCE *seq;
134 db_seq_t seq_t;
135 } aio_cb;
136
137 typedef aio_cb *aio_req;
138
139 enum {
140 PRI_MIN = -4,
141 PRI_MAX = 4,
142
143 DEFAULT_PRI = 0,
144 PRI_BIAS = -PRI_MIN,
145 NUM_PRI = PRI_MAX + PRI_BIAS + 1,
146 };
147
148 #define AIO_TICKS ((1000000 + 1023) >> 10)
149
150 static unsigned int max_poll_time = 0;
151 static unsigned int max_poll_reqs = 0;
152
153 /* calculcate time difference in ~1/AIO_TICKS of a second */
154 static int tvdiff (struct timeval *tv1, struct timeval *tv2)
155 {
156 return (tv2->tv_sec - tv1->tv_sec ) * AIO_TICKS
157 + ((tv2->tv_usec - tv1->tv_usec) >> 10);
158 }
159
160 static int next_pri = DEFAULT_PRI + PRI_BIAS;
161
162 static unsigned int started, idle, wanted;
163
164 /* worker threads management */
165 static mutex_t wrklock = X_MUTEX_INIT;
166
167 typedef struct worker {
168 /* locked by wrklock */
169 struct worker *prev, *next;
170
171 thread_t tid;
172
173 /* locked by reslock, reqlock or wrklock */
174 aio_req req; /* currently processed request */
175 void *dbuf;
176 DIR *dirp;
177 } worker;
178
179 static worker wrk_first = { &wrk_first, &wrk_first, 0 };
180
181 static void worker_clear (worker *wrk)
182 {
183 }
184
185 static void worker_free (worker *wrk)
186 {
187 wrk->next->prev = wrk->prev;
188 wrk->prev->next = wrk->next;
189
190 free (wrk);
191 }
192
193 static volatile unsigned int nreqs, nready, npending;
194 static volatile unsigned int max_idle = 4;
195 static volatile unsigned int max_outstanding = 0xffffffff;
196 static int respipe_osf [2], respipe [2] = { -1, -1 };
197
198 static mutex_t reslock = X_MUTEX_INIT;
199 static mutex_t reqlock = X_MUTEX_INIT;
200 static cond_t reqwait = X_COND_INIT;
201
202 #if WORDACCESS_UNSAFE
203
204 static unsigned int get_nready ()
205 {
206 unsigned int retval;
207
208 X_LOCK (reqlock);
209 retval = nready;
210 X_UNLOCK (reqlock);
211
212 return retval;
213 }
214
215 static unsigned int get_npending ()
216 {
217 unsigned int retval;
218
219 X_LOCK (reslock);
220 retval = npending;
221 X_UNLOCK (reslock);
222
223 return retval;
224 }
225
226 static unsigned int get_nthreads ()
227 {
228 unsigned int retval;
229
230 X_LOCK (wrklock);
231 retval = started;
232 X_UNLOCK (wrklock);
233
234 return retval;
235 }
236
237 #else
238
239 # define get_nready() nready
240 # define get_npending() npending
241 # define get_nthreads() started
242
243 #endif
244
245 /*
246 * a somewhat faster data structure might be nice, but
247 * with 8 priorities this actually needs <20 insns
248 * per shift, the most expensive operation.
249 */
250 typedef struct {
251 aio_req qs[NUM_PRI], qe[NUM_PRI]; /* qstart, qend */
252 int size;
253 } reqq;
254
255 static reqq req_queue;
256 static reqq res_queue;
257
258 int reqq_push (reqq *q, aio_req req)
259 {
260 int pri = req->pri;
261 req->next = 0;
262
263 if (q->qe[pri])
264 {
265 q->qe[pri]->next = req;
266 q->qe[pri] = req;
267 }
268 else
269 q->qe[pri] = q->qs[pri] = req;
270
271 return q->size++;
272 }
273
274 aio_req reqq_shift (reqq *q)
275 {
276 int pri;
277
278 if (!q->size)
279 return 0;
280
281 --q->size;
282
283 for (pri = NUM_PRI; pri--; )
284 {
285 aio_req req = q->qs[pri];
286
287 if (req)
288 {
289 if (!(q->qs[pri] = req->next))
290 q->qe[pri] = 0;
291
292 return req;
293 }
294 }
295
296 abort ();
297 }
298
299 static int poll_cb ();
300 static void req_free (aio_req req);
301 static void req_cancel (aio_req req);
302
303 static int req_invoke (aio_req req)
304 {
305 dSP;
306
307 if (SvOK (req->callback))
308 {
309 ENTER;
310 SAVETMPS;
311 PUSHMARK (SP);
312
313 switch (req->type)
314 {
315 case REQ_DB_CLOSE:
316 SvREFCNT_dec (req->sv1);
317 break;
318
319 case REQ_DB_GET:
320 case REQ_DB_PGET:
321 dbt_to_sv (req->sv3, &req->dbt3);
322 break;
323
324 case REQ_C_GET:
325 case REQ_C_PGET:
326 dbt_to_sv (req->sv1, &req->dbt1);
327 dbt_to_sv (req->sv2, &req->dbt2);
328 dbt_to_sv (req->sv3, &req->dbt3);
329 break;
330
331 case REQ_DB_PUT:
332 case REQ_C_PUT:
333 dbt_to_sv (0, &req->dbt1);
334 dbt_to_sv (0, &req->dbt2);
335 break;
336
337 case REQ_DB_KEY_RANGE:
338 {
339 AV *av = newAV ();
340
341 av_push (av, newSVnv (req->key_range.less));
342 av_push (av, newSVnv (req->key_range.equal));
343 av_push (av, newSVnv (req->key_range.greater));
344
345 SvREADONLY_off (req->sv1);
346 sv_setsv_mg (req->sv1, newRV_noinc ((SV *)av));
347 SvREFCNT_dec (req->sv1);
348 }
349 break;
350
351 case REQ_SEQ_GET:
352 SvREADONLY_off (req->sv1);
353
354 if (sizeof (IV) > 4)
355 sv_setiv_mg (req->sv1, (IV)req->seq_t);
356 else
357 sv_setnv_mg (req->sv1, (NV)req->seq_t);
358
359 SvREFCNT_dec (req->sv1);
360 break;
361 }
362
363 errno = req->result;
364
365 PUTBACK;
366 call_sv (req->callback, G_VOID | G_EVAL);
367 SPAGAIN;
368
369 FREETMPS;
370 LEAVE;
371 }
372
373 return !SvTRUE (ERRSV);
374 }
375
376 static void req_free (aio_req req)
377 {
378 free (req->buf1);
379 free (req->buf2);
380 Safefree (req);
381 }
382
383 #ifdef USE_SOCKETS_AS_HANDLES
384 # define TO_SOCKET(x) (win32_get_osfhandle (x))
385 #else
386 # define TO_SOCKET(x) (x)
387 #endif
388
389 static void
390 create_respipe ()
391 {
392 #ifdef _WIN32
393 int arg; /* argg */
394 #endif
395 int old_readfd = respipe [0];
396
397 if (respipe [1] >= 0)
398 respipe_close (TO_SOCKET (respipe [1]));
399
400 #ifdef _WIN32
401 if (PerlSock_socketpair (AF_UNIX, SOCK_STREAM, 0, respipe))
402 #else
403 if (pipe (respipe))
404 #endif
405 croak ("unable to initialize result pipe");
406
407 if (old_readfd >= 0)
408 {
409 if (dup2 (TO_SOCKET (respipe [0]), TO_SOCKET (old_readfd)) < 0)
410 croak ("unable to initialize result pipe(2)");
411
412 respipe_close (respipe [0]);
413 respipe [0] = old_readfd;
414 }
415
416 #ifdef _WIN32
417 arg = 1;
418 if (ioctlsocket (TO_SOCKET (respipe [0]), FIONBIO, &arg)
419 || ioctlsocket (TO_SOCKET (respipe [1]), FIONBIO, &arg))
420 #else
421 if (fcntl (respipe [0], F_SETFL, O_NONBLOCK)
422 || fcntl (respipe [1], F_SETFL, O_NONBLOCK))
423 #endif
424 croak ("unable to initialize result pipe(3)");
425
426 respipe_osf [0] = TO_SOCKET (respipe [0]);
427 respipe_osf [1] = TO_SOCKET (respipe [1]);
428 }
429
430 X_THREAD_PROC (bdb_proc);
431
432 static void start_thread (void)
433 {
434 worker *wrk = calloc (1, sizeof (worker));
435
436 if (!wrk)
437 croak ("unable to allocate worker thread data");
438
439 X_LOCK (wrklock);
440 if (thread_create (&wrk->tid, bdb_proc, (void *)wrk))
441 {
442 wrk->prev = &wrk_first;
443 wrk->next = wrk_first.next;
444 wrk_first.next->prev = wrk;
445 wrk_first.next = wrk;
446 ++started;
447 }
448 else
449 free (wrk);
450
451 X_UNLOCK (wrklock);
452 }
453
454 static void maybe_start_thread ()
455 {
456 if (get_nthreads () >= wanted)
457 return;
458
459 /* todo: maybe use idle here, but might be less exact */
460 if (0 <= (int)get_nthreads () + (int)get_npending () - (int)nreqs)
461 return;
462
463 start_thread ();
464 }
465
466 static void req_send (aio_req req)
467 {
468 SV *wait_callback = 0;
469
470 // synthesize callback if none given
471 if (!SvOK (req->callback))
472 {
473 int count;
474
475 dSP;
476 PUSHMARK (SP);
477 PUTBACK;
478 count = call_sv (prepare_cb, G_ARRAY);
479 SPAGAIN;
480
481 if (count != 2)
482 croak ("prepare callback must return exactly two values\n");
483
484 wait_callback = POPs;
485 SvREFCNT_dec (req->callback);
486 req->callback = SvREFCNT_inc (POPs);
487 }
488
489 ++nreqs;
490
491 X_LOCK (reqlock);
492 ++nready;
493 reqq_push (&req_queue, req);
494 X_COND_SIGNAL (reqwait);
495 X_UNLOCK (reqlock);
496
497 maybe_start_thread ();
498
499 if (wait_callback)
500 {
501 dSP;
502 PUSHMARK (SP);
503 PUTBACK;
504 call_sv (wait_callback, G_DISCARD);
505 }
506 }
507
508 static void end_thread (void)
509 {
510 aio_req req;
511
512 Newz (0, req, 1, aio_cb);
513
514 req->type = REQ_QUIT;
515 req->pri = PRI_MAX + PRI_BIAS;
516
517 X_LOCK (reqlock);
518 reqq_push (&req_queue, req);
519 X_COND_SIGNAL (reqwait);
520 X_UNLOCK (reqlock);
521
522 X_LOCK (wrklock);
523 --started;
524 X_UNLOCK (wrklock);
525 }
526
527 static void set_max_idle (int nthreads)
528 {
529 if (WORDACCESS_UNSAFE) X_LOCK (reqlock);
530 max_idle = nthreads <= 0 ? 1 : nthreads;
531 if (WORDACCESS_UNSAFE) X_UNLOCK (reqlock);
532 }
533
534 static void min_parallel (int nthreads)
535 {
536 if (wanted < nthreads)
537 wanted = nthreads;
538 }
539
540 static void max_parallel (int nthreads)
541 {
542 if (wanted > nthreads)
543 wanted = nthreads;
544
545 while (started > wanted)
546 end_thread ();
547 }
548
549 static void poll_wait ()
550 {
551 fd_set rfd;
552
553 while (nreqs)
554 {
555 int size;
556 if (WORDACCESS_UNSAFE) X_LOCK (reslock);
557 size = res_queue.size;
558 if (WORDACCESS_UNSAFE) X_UNLOCK (reslock);
559
560 if (size)
561 return;
562
563 maybe_start_thread ();
564
565 FD_ZERO (&rfd);
566 FD_SET (respipe [0], &rfd);
567
568 PerlSock_select (respipe [0] + 1, &rfd, 0, 0, 0);
569 }
570 }
571
572 static int poll_cb ()
573 {
574 dSP;
575 int count = 0;
576 int maxreqs = max_poll_reqs;
577 int do_croak = 0;
578 struct timeval tv_start, tv_now;
579 aio_req req;
580
581 if (max_poll_time)
582 gettimeofday (&tv_start, 0);
583
584 for (;;)
585 {
586 for (;;)
587 {
588 maybe_start_thread ();
589
590 X_LOCK (reslock);
591 req = reqq_shift (&res_queue);
592
593 if (req)
594 {
595 --npending;
596
597 if (!res_queue.size)
598 {
599 /* read any signals sent by the worker threads */
600 char buf [4];
601 while (respipe_read (respipe [0], buf, 4) == 4)
602 ;
603 }
604 }
605
606 X_UNLOCK (reslock);
607
608 if (!req)
609 break;
610
611 --nreqs;
612
613 if (!req_invoke (req))
614 {
615 req_free (req);
616 croak (0);
617 }
618
619 count++;
620
621 req_free (req);
622
623 if (maxreqs && !--maxreqs)
624 break;
625
626 if (max_poll_time)
627 {
628 gettimeofday (&tv_now, 0);
629
630 if (tvdiff (&tv_start, &tv_now) >= max_poll_time)
631 break;
632 }
633 }
634
635 if (nreqs <= max_outstanding)
636 break;
637
638 poll_wait ();
639
640 ++maxreqs;
641 }
642
643 return count;
644 }
645
646 /*****************************************************************************/
647
648 X_THREAD_PROC (bdb_proc)
649 {
650 aio_req req;
651 struct timespec ts;
652 worker *self = (worker *)thr_arg;
653
654 /* try to distribute timeouts somewhat evenly */
655 ts.tv_nsec = ((unsigned long)self & 1023UL) * (1000000000UL / 1024UL);
656
657 for (;;)
658 {
659 ts.tv_sec = time (0) + IDLE_TIMEOUT;
660
661 X_LOCK (reqlock);
662
663 for (;;)
664 {
665 self->req = req = reqq_shift (&req_queue);
666
667 if (req)
668 break;
669
670 ++idle;
671
672 if (X_COND_TIMEDWAIT (reqwait, reqlock, ts)
673 == ETIMEDOUT)
674 {
675 if (idle > max_idle)
676 {
677 --idle;
678 X_UNLOCK (reqlock);
679 X_LOCK (wrklock);
680 --started;
681 X_UNLOCK (wrklock);
682 goto quit;
683 }
684
685 /* we are allowed to idle, so do so without any timeout */
686 X_COND_WAIT (reqwait, reqlock);
687 ts.tv_sec = time (0) + IDLE_TIMEOUT;
688 }
689
690 --idle;
691 }
692
693 --nready;
694
695 X_UNLOCK (reqlock);
696
697 switch (req->type)
698 {
699 case REQ_QUIT:
700 req->result = ENOSYS;
701 goto quit;
702
703 case REQ_ENV_OPEN:
704 req->result = req->env->open (req->env, req->buf1, req->uint1, req->int1);
705 break;
706
707 case REQ_ENV_CLOSE:
708 req->result = req->env->close (req->env, req->uint1);
709 break;
710
711 case REQ_ENV_TXN_CHECKPOINT:
712 req->result = req->env->txn_checkpoint (req->env, req->uint1, req->int1, req->uint2);
713 break;
714
715 case REQ_ENV_LOCK_DETECT:
716 req->result = req->env->lock_detect (req->env, req->uint1, req->uint2, &req->int1);
717 break;
718
719 case REQ_ENV_MEMP_SYNC:
720 req->result = req->env->memp_sync (req->env, 0);
721 break;
722
723 case REQ_ENV_MEMP_TRICKLE:
724 req->result = req->env->memp_trickle (req->env, req->int1, &req->int2);
725 break;
726
727 case REQ_DB_OPEN:
728 req->result = req->db->open (req->db, req->txn, req->buf1, req->buf2, req->int1, req->uint1, req->int2);
729 break;
730
731 case REQ_DB_CLOSE:
732 req->result = req->db->close (req->db, req->uint1);
733 break;
734
735 case REQ_DB_COMPACT:
736 req->result = req->db->compact (req->db, req->txn, &req->dbt1, &req->dbt2, 0, req->uint1, 0);
737 break;
738
739 case REQ_DB_SYNC:
740 req->result = req->db->sync (req->db, req->uint1);
741 break;
742
743 case REQ_DB_UPGRADE:
744 req->result = req->db->upgrade (req->db, req->buf1, req->uint1);
745 break;
746
747 case REQ_DB_PUT:
748 req->result = req->db->put (req->db, req->txn, &req->dbt1, &req->dbt2, req->uint1);
749 break;
750
751 case REQ_DB_GET:
752 req->result = req->db->get (req->db, req->txn, &req->dbt1, &req->dbt3, req->uint1);
753 break;
754
755 case REQ_DB_PGET:
756 req->result = req->db->pget (req->db, req->txn, &req->dbt1, &req->dbt2, &req->dbt3, req->uint1);
757 break;
758
759 case REQ_DB_DEL:
760 req->result = req->db->del (req->db, req->txn, &req->dbt1, req->uint1);
761 break;
762
763 case REQ_DB_KEY_RANGE:
764 req->result = req->db->key_range (req->db, req->txn, &req->dbt1, &req->key_range, req->uint1);
765 break;
766
767 case REQ_TXN_COMMIT:
768 req->result = req->txn->commit (req->txn, req->uint1);
769 break;
770
771 case REQ_TXN_ABORT:
772 req->result = req->txn->abort (req->txn);
773 break;
774
775 case REQ_TXN_FINISH:
776 if (req->txn->flags & TXN_DEADLOCK)
777 {
778 req->result = req->txn->abort (req->txn);
779 if (!req->result)
780 req->result = DB_LOCK_DEADLOCK;
781 }
782 else
783 req->result = req->txn->commit (req->txn, req->uint1);
784 break;
785
786 case REQ_C_CLOSE:
787 req->result = req->dbc->c_close (req->dbc);
788 break;
789
790 case REQ_C_COUNT:
791 {
792 db_recno_t recno;
793 req->result = req->dbc->c_count (req->dbc, &recno, req->uint1);
794 req->uv1 = recno;
795 }
796 break;
797
798 case REQ_C_PUT:
799 req->result = req->dbc->c_put (req->dbc, &req->dbt1, &req->dbt2, req->uint1);
800 break;
801
802 case REQ_C_GET:
803 req->result = req->dbc->c_get (req->dbc, &req->dbt1, &req->dbt3, req->uint1);
804 break;
805
806 case REQ_C_PGET:
807 req->result = req->dbc->c_pget (req->dbc, &req->dbt1, &req->dbt2, &req->dbt3, req->uint1);
808 break;
809
810 case REQ_C_DEL:
811 req->result = req->dbc->c_del (req->dbc, req->uint1);
812 break;
813
814 case REQ_SEQ_OPEN:
815 req->result = req->seq->open (req->seq, req->txn, &req->dbt1, req->uint1);
816 break;
817
818 case REQ_SEQ_CLOSE:
819 req->result = req->seq->close (req->seq, req->uint1);
820 break;
821
822 case REQ_SEQ_GET:
823 req->result = req->seq->get (req->seq, req->txn, req->int1, &req->seq_t, req->uint1);
824 break;
825
826 case REQ_SEQ_REMOVE:
827 req->result = req->seq->remove (req->seq, req->txn, req->uint1);
828 break;
829
830 default:
831 req->result = ENOSYS;
832 break;
833 }
834
835 if (req->txn && (req->result > 0 || req->result == DB_LOCK_NOTGRANTED))
836 req->txn->flags |= TXN_DEADLOCK;
837
838 X_LOCK (reslock);
839
840 ++npending;
841
842 if (!reqq_push (&res_queue, req))
843 /* write a dummy byte to the pipe so fh becomes ready */
844 respipe_write (respipe_osf [1], (const void *)&respipe_osf, 1);
845
846 self->req = 0;
847 worker_clear (self);
848
849 X_UNLOCK (reslock);
850 }
851
852 quit:
853 X_LOCK (wrklock);
854 worker_free (self);
855 X_UNLOCK (wrklock);
856
857 return 0;
858 }
859
860 /*****************************************************************************/
861
862 static void atfork_prepare (void)
863 {
864 X_LOCK (wrklock);
865 X_LOCK (reqlock);
866 X_LOCK (reslock);
867 }
868
869 static void atfork_parent (void)
870 {
871 X_UNLOCK (reslock);
872 X_UNLOCK (reqlock);
873 X_UNLOCK (wrklock);
874 }
875
876 static void atfork_child (void)
877 {
878 aio_req prv;
879
880 while (prv = reqq_shift (&req_queue))
881 req_free (prv);
882
883 while (prv = reqq_shift (&res_queue))
884 req_free (prv);
885
886 while (wrk_first.next != &wrk_first)
887 {
888 worker *wrk = wrk_first.next;
889
890 if (wrk->req)
891 req_free (wrk->req);
892
893 worker_clear (wrk);
894 worker_free (wrk);
895 }
896
897 started = 0;
898 idle = 0;
899 nreqs = 0;
900 nready = 0;
901 npending = 0;
902
903 create_respipe ();
904
905 atfork_parent ();
906 }
907
908 #define dREQ(reqtype) \
909 aio_req req; \
910 int req_pri = next_pri; \
911 next_pri = DEFAULT_PRI + PRI_BIAS; \
912 \
913 if (SvOK (callback) && !SvROK (callback)) \
914 croak ("callback must be undef or of reference type"); \
915 \
916 Newz (0, req, 1, aio_cb); \
917 if (!req) \
918 croak ("out of memory during aio_req allocation"); \
919 \
920 req->callback = newSVsv (callback); \
921 req->type = (reqtype); \
922 req->pri = req_pri
923
924 #define REQ_SEND \
925 req_send (req)
926
927 #define SvPTR(var, arg, type, class, nullok) \
928 if (!SvOK (arg)) \
929 { \
930 if (!nullok) \
931 croak (# var " must be a " # class " object, not undef"); \
932 \
933 (var) = 0; \
934 } \
935 else if (sv_derived_from ((arg), # class)) \
936 { \
937 IV tmp = SvIV ((SV*) SvRV (arg)); \
938 (var) = INT2PTR (type, tmp); \
939 if (!var) \
940 croak (# var " is not a valid " # class " object anymore"); \
941 } \
942 else \
943 croak (# var " is not of type " # class); \
944 \
945
946 static void
947 ptr_nuke (SV *sv)
948 {
949 assert (SvROK (sv));
950 sv_setiv (SvRV (sv), 0);
951 }
952
953 MODULE = BDB PACKAGE = BDB
954
955 PROTOTYPES: ENABLE
956
957 BOOT:
958 {
959 HV *stash = gv_stashpv ("BDB", 1);
960
961 static const struct {
962 const char *name;
963 IV iv;
964 } *civ, const_iv[] = {
965 #define const_iv(name) { # name, (IV)DB_ ## name },
966 const_iv (RPCCLIENT)
967 const_iv (INIT_CDB)
968 const_iv (INIT_LOCK)
969 const_iv (INIT_LOG)
970 const_iv (INIT_MPOOL)
971 const_iv (INIT_REP)
972 const_iv (INIT_TXN)
973 const_iv (RECOVER)
974 const_iv (INIT_TXN)
975 const_iv (RECOVER_FATAL)
976 const_iv (CREATE)
977 const_iv (RDONLY)
978 const_iv (USE_ENVIRON)
979 const_iv (USE_ENVIRON_ROOT)
980 const_iv (LOCKDOWN)
981 const_iv (PRIVATE)
982 const_iv (REGISTER)
983 const_iv (SYSTEM_MEM)
984 const_iv (AUTO_COMMIT)
985 const_iv (CDB_ALLDB)
986 const_iv (DIRECT_DB)
987 const_iv (DIRECT_LOG)
988 const_iv (DSYNC_DB)
989 const_iv (DSYNC_LOG)
990 const_iv (LOG_AUTOREMOVE)
991 const_iv (LOG_INMEMORY)
992 const_iv (NOLOCKING)
993 const_iv (NOMMAP)
994 const_iv (NOPANIC)
995 const_iv (OVERWRITE)
996 const_iv (PANIC_ENVIRONMENT)
997 const_iv (REGION_INIT)
998 const_iv (TIME_NOTGRANTED)
999 const_iv (TXN_NOSYNC)
1000 const_iv (TXN_NOT_DURABLE)
1001 const_iv (TXN_WRITE_NOSYNC)
1002 const_iv (WRITECURSOR)
1003 const_iv (YIELDCPU)
1004 const_iv (ENCRYPT_AES)
1005 const_iv (XA_CREATE)
1006 const_iv (BTREE)
1007 const_iv (HASH)
1008 const_iv (QUEUE)
1009 const_iv (RECNO)
1010 const_iv (UNKNOWN)
1011 const_iv (EXCL)
1012 const_iv (READ_COMMITTED)
1013 const_iv (READ_UNCOMMITTED)
1014 const_iv (TRUNCATE)
1015 const_iv (NOSYNC)
1016 const_iv (CHKSUM)
1017 const_iv (ENCRYPT)
1018 const_iv (DUP)
1019 const_iv (DUPSORT)
1020 const_iv (RECNUM)
1021 const_iv (RENUMBER)
1022 const_iv (REVSPLITOFF)
1023 const_iv (INORDER)
1024 const_iv (CONSUME)
1025 const_iv (CONSUME_WAIT)
1026 const_iv (GET_BOTH)
1027 const_iv (GET_BOTH_RANGE)
1028 //const_iv (SET_RECNO)
1029 //const_iv (MULTIPLE)
1030 const_iv (SNAPSHOT)
1031 const_iv (JOIN_ITEM)
1032 const_iv (JOIN_NOSORT)
1033 const_iv (RMW)
1034
1035 const_iv (NOTFOUND)
1036 const_iv (KEYEMPTY)
1037 const_iv (LOCK_DEADLOCK)
1038 const_iv (LOCK_NOTGRANTED)
1039 const_iv (RUNRECOVERY)
1040 const_iv (OLD_VERSION)
1041 const_iv (REP_HANDLE_DEAD)
1042 const_iv (REP_LOCKOUT)
1043 const_iv (SECONDARY_BAD)
1044
1045 const_iv (FREE_SPACE)
1046 const_iv (FREELIST_ONLY)
1047
1048 const_iv (APPEND)
1049 const_iv (NODUPDATA)
1050 const_iv (NOOVERWRITE)
1051
1052 const_iv (TXN_NOWAIT)
1053 const_iv (TXN_SYNC)
1054
1055 const_iv (SET_LOCK_TIMEOUT)
1056 const_iv (SET_TXN_TIMEOUT)
1057
1058 const_iv (FIRST)
1059 const_iv (NEXT)
1060 const_iv (NEXT_DUP)
1061 const_iv (NEXT_NODUP)
1062 const_iv (PREV)
1063 const_iv (PREV_NODUP)
1064 const_iv (SET)
1065 const_iv (SET_RANGE)
1066 const_iv (LAST)
1067 const_iv (BEFORE)
1068 const_iv (AFTER)
1069 const_iv (CURRENT)
1070 const_iv (KEYFIRST)
1071 const_iv (KEYLAST)
1072 const_iv (NODUPDATA)
1073
1074 const_iv (FORCE)
1075
1076 const_iv (LOCK_DEFAULT)
1077 const_iv (LOCK_EXPIRE)
1078 const_iv (LOCK_MAXLOCKS)
1079 const_iv (LOCK_MAXWRITE)
1080 const_iv (LOCK_MINLOCKS)
1081 const_iv (LOCK_MINWRITE)
1082 const_iv (LOCK_OLDEST)
1083 const_iv (LOCK_RANDOM)
1084 const_iv (LOCK_YOUNGEST)
1085
1086 const_iv (SEQ_DEC)
1087 const_iv (SEQ_INC)
1088 const_iv (SEQ_WRAP)
1089
1090 const_iv (BUFFER_SMALL)
1091 const_iv (DONOTINDEX)
1092 const_iv (KEYEMPTY )
1093 const_iv (KEYEXIST )
1094 const_iv (LOCK_DEADLOCK)
1095 const_iv (LOCK_NOTGRANTED)
1096 const_iv (LOG_BUFFER_FULL)
1097 const_iv (NOSERVER)
1098 const_iv (NOSERVER_HOME)
1099 const_iv (NOSERVER_ID)
1100 const_iv (NOTFOUND)
1101 const_iv (PAGE_NOTFOUND)
1102 const_iv (REP_DUPMASTER)
1103 const_iv (REP_HANDLE_DEAD)
1104 const_iv (REP_HOLDELECTION)
1105 const_iv (REP_IGNORE)
1106 const_iv (REP_ISPERM)
1107 const_iv (REP_JOIN_FAILURE)
1108 const_iv (REP_LOCKOUT)
1109 const_iv (REP_NEWMASTER)
1110 const_iv (REP_NEWSITE)
1111 const_iv (REP_NOTPERM)
1112 const_iv (REP_UNAVAIL)
1113 const_iv (RUNRECOVERY)
1114 const_iv (SECONDARY_BAD)
1115 const_iv (VERIFY_BAD)
1116 const_iv (VERSION_MISMATCH)
1117
1118 const_iv (VERB_DEADLOCK)
1119 const_iv (VERB_RECOVERY)
1120 const_iv (VERB_REGISTER)
1121 const_iv (VERB_REPLICATION)
1122 const_iv (VERB_WAITSFOR)
1123
1124 const_iv (VERSION_MAJOR)
1125 const_iv (VERSION_MINOR)
1126 const_iv (VERSION_PATCH)
1127 #if DB_VERSION_MINOR >= 5
1128 const_iv (MULTIVERSION)
1129 const_iv (TXN_SNAPSHOT)
1130 #endif
1131 #if DB_VERSION_MINOR >= 6
1132 const_iv (PREV_DUP)
1133 const_iv (PRIORITY_UNCHANGED)
1134 const_iv (PRIORITY_VERY_LOW)
1135 const_iv (PRIORITY_LOW)
1136 const_iv (PRIORITY_DEFAULT)
1137 const_iv (PRIORITY_HIGH)
1138 const_iv (PRIORITY_VERY_HIGH)
1139 #endif
1140 };
1141
1142 for (civ = const_iv + sizeof (const_iv) / sizeof (const_iv [0]); civ-- > const_iv; )
1143 newCONSTSUB (stash, (char *)civ->name, newSViv (civ->iv));
1144
1145 newCONSTSUB (stash, "VERSION", newSVnv (DB_VERSION_MAJOR + DB_VERSION_MINOR * .1));
1146 newCONSTSUB (stash, "VERSION_STRING", newSVpv (DB_VERSION_STRING, 0));
1147
1148 create_respipe ();
1149
1150 X_THREAD_ATFORK (atfork_prepare, atfork_parent, atfork_child);
1151 #ifdef _WIN32
1152 X_MUTEX_CHECK (wrklock);
1153 X_MUTEX_CHECK (reslock);
1154 X_MUTEX_CHECK (reqlock);
1155
1156 X_COND_CHECK (reqwait);
1157 #endif
1158 }
1159
1160 void
1161 max_poll_reqs (int nreqs)
1162 PROTOTYPE: $
1163 CODE:
1164 max_poll_reqs = nreqs;
1165
1166 void
1167 max_poll_time (double nseconds)
1168 PROTOTYPE: $
1169 CODE:
1170 max_poll_time = nseconds * AIO_TICKS;
1171
1172 void
1173 min_parallel (int nthreads)
1174 PROTOTYPE: $
1175
1176 void
1177 max_parallel (int nthreads)
1178 PROTOTYPE: $
1179
1180 void
1181 max_idle (int nthreads)
1182 PROTOTYPE: $
1183 CODE:
1184 set_max_idle (nthreads);
1185
1186 int
1187 max_outstanding (int maxreqs)
1188 PROTOTYPE: $
1189 CODE:
1190 RETVAL = max_outstanding;
1191 max_outstanding = maxreqs;
1192 OUTPUT:
1193 RETVAL
1194
1195 int
1196 dbreq_pri (int pri = 0)
1197 PROTOTYPE: ;$
1198 CODE:
1199 RETVAL = next_pri - PRI_BIAS;
1200 if (items > 0)
1201 {
1202 if (pri < PRI_MIN) pri = PRI_MIN;
1203 if (pri > PRI_MAX) pri = PRI_MAX;
1204 next_pri = pri + PRI_BIAS;
1205 }
1206 OUTPUT:
1207 RETVAL
1208
1209 void
1210 dbreq_nice (int nice = 0)
1211 CODE:
1212 nice = next_pri - nice;
1213 if (nice < PRI_MIN) nice = PRI_MIN;
1214 if (nice > PRI_MAX) nice = PRI_MAX;
1215 next_pri = nice + PRI_BIAS;
1216
1217 void
1218 flush ()
1219 PROTOTYPE:
1220 CODE:
1221 while (nreqs)
1222 {
1223 poll_wait ();
1224 poll_cb ();
1225 }
1226
1227 int
1228 poll ()
1229 PROTOTYPE:
1230 CODE:
1231 poll_wait ();
1232 RETVAL = poll_cb ();
1233 OUTPUT:
1234 RETVAL
1235
1236 int
1237 poll_fileno ()
1238 PROTOTYPE:
1239 CODE:
1240 RETVAL = respipe [0];
1241 OUTPUT:
1242 RETVAL
1243
1244 int
1245 poll_cb (...)
1246 PROTOTYPE:
1247 CODE:
1248 RETVAL = poll_cb ();
1249 OUTPUT:
1250 RETVAL
1251
1252 void
1253 poll_wait ()
1254 PROTOTYPE:
1255 CODE:
1256 poll_wait ();
1257
1258 int
1259 nreqs ()
1260 PROTOTYPE:
1261 CODE:
1262 RETVAL = nreqs;
1263 OUTPUT:
1264 RETVAL
1265
1266 int
1267 nready ()
1268 PROTOTYPE:
1269 CODE:
1270 RETVAL = get_nready ();
1271 OUTPUT:
1272 RETVAL
1273
1274 int
1275 npending ()
1276 PROTOTYPE:
1277 CODE:
1278 RETVAL = get_npending ();
1279 OUTPUT:
1280 RETVAL
1281
1282 int
1283 nthreads ()
1284 PROTOTYPE:
1285 CODE:
1286 if (WORDACCESS_UNSAFE) X_LOCK (wrklock);
1287 RETVAL = started;
1288 if (WORDACCESS_UNSAFE) X_UNLOCK (wrklock);
1289 OUTPUT:
1290 RETVAL
1291
1292 void
1293 set_sync_prepare (SV *cb)
1294 PROTOTYPE: &
1295 CODE:
1296 SvREFCNT_dec (prepare_cb);
1297 prepare_cb = newSVsv (cb);
1298
1299 char *
1300 strerror (int errorno = errno)
1301 PROTOTYPE: ;$
1302 CODE:
1303 RETVAL = db_strerror (errorno);
1304 OUTPUT:
1305 RETVAL
1306
1307 DB_ENV *
1308 db_env_create (U32 env_flags = 0)
1309 CODE:
1310 {
1311 errno = db_env_create (&RETVAL, env_flags);
1312 if (errno)
1313 croak ("db_env_create: %s", db_strerror (errno));
1314
1315 if (0)
1316 {
1317 RETVAL->set_errcall (RETVAL, debug_errcall);
1318 RETVAL->set_msgcall (RETVAL, debug_msgcall);
1319 }
1320 }
1321 OUTPUT:
1322 RETVAL
1323
1324 void
1325 db_env_open (DB_ENV *env, octetstring db_home, U32 open_flags, int mode, SV *callback = &PL_sv_undef)
1326 CODE:
1327 {
1328 dREQ (REQ_ENV_OPEN);
1329
1330 env->set_thread_count (env, wanted + 2);
1331
1332 req->env = env;
1333 req->uint1 = open_flags | DB_THREAD;
1334 req->int1 = mode;
1335 req->buf1 = strdup_ornull (db_home);
1336 REQ_SEND;
1337 }
1338
1339 void
1340 db_env_close (DB_ENV *env, U32 flags = 0, SV *callback = &PL_sv_undef)
1341 CODE:
1342 {
1343 dREQ (REQ_ENV_CLOSE);
1344 req->env = env;
1345 req->uint1 = flags;
1346 REQ_SEND;
1347 ptr_nuke (ST (0));
1348 }
1349
1350 void
1351 db_env_txn_checkpoint (DB_ENV *env, U32 kbyte = 0, U32 min = 0, U32 flags = 0, SV *callback = &PL_sv_undef)
1352 CODE:
1353 {
1354 dREQ (REQ_ENV_TXN_CHECKPOINT);
1355 req->env = env;
1356 req->uint1 = kbyte;
1357 req->int1 = min;
1358 req->uint2 = flags;
1359 REQ_SEND;
1360 }
1361
1362 void
1363 db_env_lock_detect (DB_ENV *env, U32 flags = 0, U32 atype = DB_LOCK_DEFAULT, SV *dummy = 0, SV *callback = &PL_sv_undef)
1364 CODE:
1365 {
1366 dREQ (REQ_ENV_LOCK_DETECT);
1367 req->env = env;
1368 req->uint1 = flags;
1369 req->uint2 = atype;
1370 REQ_SEND;
1371 }
1372
1373 void
1374 db_env_memp_sync (DB_ENV *env, SV *dummy = 0, SV *callback = &PL_sv_undef)
1375 CODE:
1376 {
1377 dREQ (REQ_ENV_MEMP_SYNC);
1378 req->env = env;
1379 REQ_SEND;
1380 }
1381
1382 void
1383 db_env_memp_trickle (DB_ENV *env, int percent, SV *dummy = 0, SV *callback = &PL_sv_undef)
1384 CODE:
1385 {
1386 dREQ (REQ_ENV_MEMP_TRICKLE);
1387 req->env = env;
1388 req->int1 = percent;
1389 REQ_SEND;
1390 }
1391
1392
1393 DB *
1394 db_create (DB_ENV *env = 0, U32 flags = 0)
1395 CODE:
1396 {
1397 errno = db_create (&RETVAL, env, flags);
1398 if (errno)
1399 croak ("db_create: %s", db_strerror (errno));
1400
1401 if (RETVAL)
1402 RETVAL->app_private = (void *)newSVsv (ST (0));
1403 }
1404 OUTPUT:
1405 RETVAL
1406
1407 void
1408 db_open (DB *db, DB_TXN_ornull *txnid, octetstring file, octetstring database, int type, U32 flags, int mode, SV *callback = &PL_sv_undef)
1409 CODE:
1410 {
1411 dREQ (REQ_DB_OPEN);
1412 req->db = db;
1413 req->txn = txnid;
1414 req->buf1 = strdup_ornull (file);
1415 req->buf2 = strdup_ornull (database);
1416 req->int1 = type;
1417 req->uint1 = flags | DB_THREAD;
1418 req->int2 = mode;
1419 REQ_SEND;
1420 }
1421
1422 void
1423 db_close (DB *db, U32 flags = 0, SV *callback = &PL_sv_undef)
1424 CODE:
1425 {
1426 dREQ (REQ_DB_CLOSE);
1427 req->db = db;
1428 req->uint1 = flags;
1429 req->sv1 = (SV *)db->app_private;
1430 REQ_SEND;
1431 ptr_nuke (ST (0));
1432 }
1433
1434 void
1435 db_compact (DB *db, DB_TXN_ornull *txn = 0, SV *start = 0, SV *stop = 0, SV *unused1 = 0, U32 flags = DB_FREE_SPACE, SV *unused2 = 0, SV *callback = &PL_sv_undef)
1436 CODE:
1437 {
1438 dREQ (REQ_DB_COMPACT);
1439 req->db = db;
1440 req->txn = txn;
1441 sv_to_dbt (&req->dbt1, start);
1442 sv_to_dbt (&req->dbt2, stop);
1443 req->uint1 = flags;
1444 REQ_SEND;
1445 }
1446
1447 void
1448 db_sync (DB *db, U32 flags = 0, SV *callback = &PL_sv_undef)
1449 CODE:
1450 {
1451 dREQ (REQ_DB_SYNC);
1452 req->db = db;
1453 req->uint1 = flags;
1454 REQ_SEND;
1455 }
1456
1457 void
1458 db_upgrade (DB *db, octetstring file, U32 flags = 0, SV *callback = &PL_sv_undef)
1459 CODE:
1460 {
1461 dREQ (REQ_DB_SYNC);
1462 req->db = db;
1463 req->buf1 = strdup (file);
1464 req->uint1 = flags;
1465 REQ_SEND;
1466 }
1467
1468 void
1469 db_key_range (DB *db, DB_TXN_ornull *txn, SV *key, SV *key_range, U32 flags = 0, SV *callback = &PL_sv_undef)
1470 CODE:
1471 {
1472 dREQ (REQ_DB_KEY_RANGE);
1473 req->db = db;
1474 req->txn = txn;
1475 sv_to_dbt (&req->dbt1, key);
1476 req->uint1 = flags;
1477 req->sv1 = SvREFCNT_inc (key_range); SvREADONLY_on (key_range);
1478 REQ_SEND;
1479 }
1480
1481 void
1482 db_put (DB *db, DB_TXN_ornull *txn, SV *key, SV *data, U32 flags = 0, SV *callback = &PL_sv_undef)
1483 CODE:
1484 {
1485 dREQ (REQ_DB_PUT);
1486 req->db = db;
1487 req->txn = txn;
1488 sv_to_dbt (&req->dbt1, key);
1489 sv_to_dbt (&req->dbt2, data);
1490 req->uint1 = flags;
1491 REQ_SEND;
1492 }
1493
1494 void
1495 db_get (DB *db, DB_TXN_ornull *txn, SV *key, SV *data, U32 flags = 0, SV *callback = &PL_sv_undef)
1496 CODE:
1497 {
1498 if (SvREADONLY (data))
1499 croak ("can't modify read-only data scalar in db_get");
1500
1501 dREQ (REQ_DB_GET);
1502 req->db = db;
1503 req->txn = txn;
1504 req->uint1 = flags;
1505 sv_to_dbt (&req->dbt1, key);
1506 req->dbt3.flags = DB_DBT_MALLOC;
1507 req->sv3 = SvREFCNT_inc (data); SvREADONLY_on (data);
1508 REQ_SEND;
1509 }
1510
1511 void
1512 db_pget (DB *db, DB_TXN_ornull *txn, SV *key, SV *pkey, SV *data, U32 flags = 0, SV *callback = &PL_sv_undef)
1513 CODE:
1514 {
1515 if (SvREADONLY (data))
1516 croak ("can't modify read-only data scalar in db_pget");
1517
1518 dREQ (REQ_DB_PGET);
1519 req->db = db;
1520 req->txn = txn;
1521 req->uint1 = flags;
1522 sv_to_dbt (&req->dbt1, key);
1523 sv_to_dbt (&req->dbt2, pkey);
1524 req->dbt3.flags = DB_DBT_MALLOC;
1525 req->sv3 = SvREFCNT_inc (data); SvREADONLY_on (data);
1526 REQ_SEND;
1527 }
1528
1529 void
1530 db_del (DB *db, DB_TXN_ornull *txn, SV *key, U32 flags = 0, SV *callback = &PL_sv_undef)
1531 CODE:
1532 {
1533 dREQ (REQ_DB_DEL);
1534 req->db = db;
1535 req->txn = txn;
1536 req->uint1 = flags;
1537 sv_to_dbt (&req->dbt1, key);
1538 REQ_SEND;
1539 }
1540
1541 void
1542 db_txn_commit (DB_TXN *txn, U32 flags = 0, SV *callback = &PL_sv_undef)
1543 CODE:
1544 {
1545 dREQ (REQ_TXN_COMMIT);
1546 req->txn = txn;
1547 req->uint1 = flags;
1548 REQ_SEND;
1549 ptr_nuke (ST (0));
1550 }
1551
1552 void
1553 db_txn_abort (DB_TXN *txn, SV *callback = &PL_sv_undef)
1554 CODE:
1555 {
1556 dREQ (REQ_TXN_ABORT);
1557 req->txn = txn;
1558 REQ_SEND;
1559 ptr_nuke (ST (0));
1560 }
1561
1562 void
1563 db_txn_finish (DB_TXN *txn, U32 flags = 0, SV *callback = &PL_sv_undef)
1564 CODE:
1565 {
1566 dREQ (REQ_TXN_FINISH);
1567 req->txn = txn;
1568 req->uint1 = flags;
1569 REQ_SEND;
1570 ptr_nuke (ST (0));
1571 }
1572
1573 void
1574 db_c_close (DBC *dbc, SV *callback = &PL_sv_undef)
1575 CODE:
1576 {
1577 dREQ (REQ_C_CLOSE);
1578 req->dbc = dbc;
1579 REQ_SEND;
1580 ptr_nuke (ST (0));
1581 }
1582
1583 void
1584 db_c_count (DBC *dbc, SV *count, U32 flags = 0, SV *callback = &PL_sv_undef)
1585 CODE:
1586 {
1587 dREQ (REQ_C_COUNT);
1588 req->dbc = dbc;
1589 req->sv1 = SvREFCNT_inc (count);
1590 REQ_SEND;
1591 }
1592
1593 void
1594 db_c_put (DBC *dbc, SV *key, SV *data, U32 flags = 0, SV *callback = &PL_sv_undef)
1595 CODE:
1596 {
1597 dREQ (REQ_C_PUT);
1598 req->dbc = dbc;
1599 sv_to_dbt (&req->dbt1, key);
1600 sv_to_dbt (&req->dbt2, data);
1601 req->uint1 = flags;
1602 REQ_SEND;
1603 }
1604
1605 void
1606 db_c_get (DBC *dbc, SV *key, SV *data, U32 flags = 0, SV *callback = &PL_sv_undef)
1607 CODE:
1608 {
1609 dREQ (REQ_C_GET);
1610 req->dbc = dbc;
1611 req->uint1 = flags;
1612 if ((flags & DB_SET) == DB_SET
1613 || (flags & DB_SET_RANGE) == DB_SET_RANGE)
1614 sv_to_dbt (&req->dbt1, key);
1615 else
1616 req->dbt1.flags = DB_DBT_MALLOC;
1617
1618 req->sv1 = SvREFCNT_inc (key); SvREADONLY_on (key);
1619
1620 if ((flags & DB_GET_BOTH) == DB_GET_BOTH
1621 || (flags & DB_GET_BOTH_RANGE) == DB_GET_BOTH_RANGE)
1622 sv_to_dbt (&req->dbt3, data);
1623 else
1624 req->dbt3.flags = DB_DBT_MALLOC;
1625
1626 req->sv3 = SvREFCNT_inc (data); SvREADONLY_on (data);
1627 REQ_SEND;
1628 }
1629
1630 void
1631 db_c_pget (DBC *dbc, SV *key, SV *pkey, SV *data, U32 flags = 0, SV *callback = &PL_sv_undef)
1632 CODE:
1633 {
1634 dREQ (REQ_C_PGET);
1635 req->dbc = dbc;
1636 req->uint1 = flags;
1637 if ((flags & DB_SET) == DB_SET
1638 || (flags & DB_SET_RANGE) == DB_SET_RANGE)
1639 sv_to_dbt (&req->dbt1, key);
1640 else
1641 req->dbt1.flags = DB_DBT_MALLOC;
1642
1643 req->sv1 = SvREFCNT_inc (key); SvREADONLY_on (key);
1644
1645 req->dbt2.flags = DB_DBT_MALLOC;
1646 req->sv2 = SvREFCNT_inc (pkey); SvREADONLY_on (pkey);
1647
1648 if ((flags & DB_GET_BOTH) == DB_GET_BOTH
1649 || (flags & DB_GET_BOTH_RANGE) == DB_GET_BOTH_RANGE)
1650 sv_to_dbt (&req->dbt3, data);
1651 else
1652 req->dbt3.flags = DB_DBT_MALLOC;
1653
1654 req->sv3 = SvREFCNT_inc (data); SvREADONLY_on (data);
1655 REQ_SEND;
1656 }
1657
1658 void
1659 db_c_del (DBC *dbc, U32 flags = 0, SV *callback = &PL_sv_undef)
1660 CODE:
1661 {
1662 dREQ (REQ_C_DEL);
1663 req->dbc = dbc;
1664 req->uint1 = flags;
1665 REQ_SEND;
1666 }
1667
1668
1669 void
1670 db_sequence_open (DB_SEQUENCE *seq, DB_TXN_ornull *txnid, SV *key, U32 flags = 0, SV *callback = &PL_sv_undef)
1671 CODE:
1672 {
1673 dREQ (REQ_SEQ_OPEN);
1674 req->seq = seq;
1675 req->txn = txnid;
1676 req->uint1 = flags | DB_THREAD;
1677 sv_to_dbt (&req->dbt1, key);
1678 REQ_SEND;
1679 }
1680
1681 void
1682 db_sequence_close (DB_SEQUENCE *seq, U32 flags = 0, SV *callback = &PL_sv_undef)
1683 CODE:
1684 {
1685 dREQ (REQ_SEQ_CLOSE);
1686 req->seq = seq;
1687 req->uint1 = flags;
1688 REQ_SEND;
1689 ptr_nuke (ST (0));
1690 }
1691
1692 void
1693 db_sequence_get (DB_SEQUENCE *seq, DB_TXN_ornull *txnid, int delta, SV *seq_value, U32 flags = DB_TXN_NOSYNC, SV *callback = &PL_sv_undef)
1694 CODE:
1695 {
1696 dREQ (REQ_SEQ_GET);
1697 req->seq = seq;
1698 req->txn = txnid;
1699 req->int1 = delta;
1700 req->uint1 = flags;
1701 req->sv1 = SvREFCNT_inc (seq_value); SvREADONLY_on (seq_value);
1702 REQ_SEND;
1703 }
1704
1705 void
1706 db_sequence_remove (DB_SEQUENCE *seq, DB_TXN_ornull *txnid = 0, U32 flags = 0, SV *callback = &PL_sv_undef)
1707 CODE:
1708 {
1709 dREQ (REQ_SEQ_REMOVE);
1710 req->seq = seq;
1711 req->txn = txnid;
1712 req->uint1 = flags;
1713 REQ_SEND;
1714 }
1715
1716
1717 MODULE = BDB PACKAGE = BDB::Env
1718
1719 void
1720 DESTROY (DB_ENV_ornull *env)
1721 CODE:
1722 if (env)
1723 env->close (env, 0);
1724
1725 int set_data_dir (DB_ENV *env, const char *dir)
1726 CODE:
1727 RETVAL = env->set_data_dir (env, dir);
1728 OUTPUT:
1729 RETVAL
1730
1731 int set_tmp_dir (DB_ENV *env, const char *dir)
1732 CODE:
1733 RETVAL = env->set_tmp_dir (env, dir);
1734 OUTPUT:
1735 RETVAL
1736
1737 int set_lg_dir (DB_ENV *env, const char *dir)
1738 CODE:
1739 RETVAL = env->set_lg_dir (env, dir);
1740 OUTPUT:
1741 RETVAL
1742
1743 int set_shm_key (DB_ENV *env, long shm_key)
1744 CODE:
1745 RETVAL = env->set_shm_key (env, shm_key);
1746 OUTPUT:
1747 RETVAL
1748
1749 int set_cachesize (DB_ENV *env, U32 gbytes, U32 bytes, int ncache = 0)
1750 CODE:
1751 RETVAL = env->set_cachesize (env, gbytes, bytes, ncache);
1752 OUTPUT:
1753 RETVAL
1754
1755 int set_flags (DB_ENV *env, U32 flags, int onoff = 1)
1756 CODE:
1757 RETVAL = env->set_flags (env, flags, onoff);
1758 OUTPUT:
1759 RETVAL
1760
1761 void set_errfile (DB_ENV *env, FILE *errfile = 0)
1762 CODE:
1763 env->set_errfile (env, errfile);
1764
1765 void set_msgfile (DB_ENV *env, FILE *msgfile = 0)
1766 CODE:
1767 env->set_msgfile (env, msgfile);
1768
1769 int set_verbose (DB_ENV *env, U32 which = -1, int onoff = 1)
1770 CODE:
1771 RETVAL = env->set_verbose (env, which, onoff);
1772 OUTPUT:
1773 RETVAL
1774
1775 int set_encrypt (DB_ENV *env, const char *password, U32 flags = 0)
1776 CODE:
1777 RETVAL = env->set_encrypt (env, password, flags);
1778 OUTPUT:
1779 RETVAL
1780
1781 int set_timeout (DB_ENV *env, NV timeout, U32 flags = DB_SET_TXN_TIMEOUT)
1782 CODE:
1783 RETVAL = env->set_timeout (env, timeout * 1000000, flags);
1784 OUTPUT:
1785 RETVAL
1786
1787 int set_mp_max_openfd (DB_ENV *env, int maxopenfd);
1788 CODE:
1789 RETVAL = env->set_mp_max_openfd (env, maxopenfd);
1790 OUTPUT:
1791 RETVAL
1792
1793 int set_mp_max_write (DB_ENV *env, int maxwrite, int maxwrite_sleep);
1794 CODE:
1795 RETVAL = env->set_mp_max_write (env, maxwrite, maxwrite_sleep);
1796 OUTPUT:
1797 RETVAL
1798
1799 int set_mp_mmapsize (DB_ENV *env, int mmapsize_mb)
1800 CODE:
1801 RETVAL = env->set_mp_mmapsize (env, ((size_t)mmapsize_mb) << 20);
1802 OUTPUT:
1803 RETVAL
1804
1805 int set_lk_detect (DB_ENV *env, U32 detect = DB_LOCK_DEFAULT)
1806 CODE:
1807 RETVAL = env->set_lk_detect (env, detect);
1808 OUTPUT:
1809 RETVAL
1810
1811 int set_lk_max_lockers (DB_ENV *env, U32 max)
1812 CODE:
1813 RETVAL = env->set_lk_max_lockers (env, max);
1814 OUTPUT:
1815 RETVAL
1816
1817 int set_lk_max_locks (DB_ENV *env, U32 max)
1818 CODE:
1819 RETVAL = env->set_lk_max_locks (env, max);
1820 OUTPUT:
1821 RETVAL
1822
1823 int set_lk_max_objects (DB_ENV *env, U32 max)
1824 CODE:
1825 RETVAL = env->set_lk_max_objects (env, max);
1826 OUTPUT:
1827 RETVAL
1828
1829 int set_lg_bsize (DB_ENV *env, U32 max)
1830 CODE:
1831 RETVAL = env->set_lg_bsize (env, max);
1832 OUTPUT:
1833 RETVAL
1834
1835 int set_lg_max (DB_ENV *env, U32 max)
1836 CODE:
1837 RETVAL = env->set_lg_max (env, max);
1838 OUTPUT:
1839 RETVAL
1840
1841 int mutex_set_max (DB_ENV *env, U32 max)
1842 CODE:
1843 RETVAL = env->mutex_set_max (env, max);
1844 OUTPUT:
1845 RETVAL
1846
1847 int mutex_set_increment (DB_ENV *env, U32 increment)
1848 CODE:
1849 RETVAL = env->mutex_set_increment (env, increment);
1850 OUTPUT:
1851 RETVAL
1852
1853 int mutex_set_tas_spins (DB_ENV *env, U32 tas_spins)
1854 CODE:
1855 RETVAL = env->mutex_set_tas_spins (env, tas_spins);
1856 OUTPUT:
1857 RETVAL
1858
1859 int mutex_set_align (DB_ENV *env, U32 align)
1860 CODE:
1861 RETVAL = env->mutex_set_align (env, align);
1862 OUTPUT:
1863 RETVAL
1864
1865 DB_TXN *
1866 txn_begin (DB_ENV *env, DB_TXN_ornull *parent = 0, U32 flags = 0)
1867 CODE:
1868 errno = env->txn_begin (env, parent, &RETVAL, flags);
1869 if (errno)
1870 croak ("DB_ENV->txn_begin: %s", db_strerror (errno));
1871 OUTPUT:
1872 RETVAL
1873
1874 MODULE = BDB PACKAGE = BDB::Db
1875
1876 void
1877 DESTROY (DB_ornull *db)
1878 CODE:
1879 if (db)
1880 {
1881 SV *env = (SV *)db->app_private;
1882 db->close (db, 0);
1883 SvREFCNT_dec (env);
1884 }
1885
1886 int set_cachesize (DB *db, U32 gbytes, U32 bytes, int ncache = 0)
1887 CODE:
1888 RETVAL = db->set_cachesize (db, gbytes, bytes, ncache);
1889 OUTPUT:
1890 RETVAL
1891
1892 int set_flags (DB *db, U32 flags)
1893 CODE:
1894 RETVAL = db->set_flags (db, flags);
1895 OUTPUT:
1896 RETVAL
1897
1898 int set_encrypt (DB *db, const char *password, U32 flags)
1899 CODE:
1900 RETVAL = db->set_encrypt (db, password, flags);
1901 OUTPUT:
1902 RETVAL
1903
1904 int set_lorder (DB *db, int lorder)
1905 CODE:
1906 RETVAL = db->set_lorder (db, lorder);
1907 OUTPUT:
1908 RETVAL
1909
1910 int set_bt_minkey (DB *db, U32 minkey)
1911 CODE:
1912 RETVAL = db->set_bt_minkey (db, minkey);
1913 OUTPUT:
1914 RETVAL
1915
1916 int set_re_delim (DB *db, int delim)
1917 CODE:
1918 RETVAL = db->set_re_delim (db, delim);
1919 OUTPUT:
1920 RETVAL
1921
1922 int set_re_pad (DB *db, int re_pad)
1923 CODE:
1924 RETVAL = db->set_re_pad (db, re_pad);
1925 OUTPUT:
1926 RETVAL
1927
1928 int set_re_source (DB *db, char *source)
1929 CODE:
1930 RETVAL = db->set_re_source (db, source);
1931 OUTPUT:
1932 RETVAL
1933
1934 int set_re_len (DB *db, U32 re_len)
1935 CODE:
1936 RETVAL = db->set_re_len (db, re_len);
1937 OUTPUT:
1938 RETVAL
1939
1940 int set_h_ffactor (DB *db, U32 h_ffactor)
1941 CODE:
1942 RETVAL = db->set_h_ffactor (db, h_ffactor);
1943 OUTPUT:
1944 RETVAL
1945
1946 int set_h_nelem (DB *db, U32 h_nelem)
1947 CODE:
1948 RETVAL = db->set_h_nelem (db, h_nelem);
1949 OUTPUT:
1950 RETVAL
1951
1952 int set_q_extentsize (DB *db, U32 extentsize)
1953 CODE:
1954 RETVAL = db->set_q_extentsize (db, extentsize);
1955 OUTPUT:
1956 RETVAL
1957
1958 DBC *
1959 cursor (DB *db, DB_TXN_ornull *txn = 0, U32 flags = 0)
1960 CODE:
1961 errno = db->cursor (db, txn, &RETVAL, flags);
1962 if (errno)
1963 croak ("DB->cursor: %s", db_strerror (errno));
1964 OUTPUT:
1965 RETVAL
1966
1967 DB_SEQUENCE *
1968 sequence (DB *db, U32 flags = 0)
1969 CODE:
1970 {
1971 errno = db_sequence_create (&RETVAL, db, flags);
1972 if (errno)
1973 croak ("db_sequence_create: %s", db_strerror (errno));
1974 }
1975 OUTPUT:
1976 RETVAL
1977
1978
1979 MODULE = BDB PACKAGE = BDB::Txn
1980
1981 void
1982 DESTROY (DB_TXN_ornull *txn)
1983 CODE:
1984 if (txn)
1985 txn->abort (txn);
1986
1987 int set_timeout (DB_TXN *txn, NV timeout, U32 flags = DB_SET_TXN_TIMEOUT)
1988 CODE:
1989 RETVAL = txn->set_timeout (txn, timeout * 1000000, flags);
1990 OUTPUT:
1991 RETVAL
1992
1993 int failed (DB_TXN *txn)
1994 CODE:
1995 RETVAL = !!(txn->flags & TXN_DEADLOCK);
1996 OUTPUT:
1997 RETVAL
1998
1999
2000 MODULE = BDB PACKAGE = BDB::Cursor
2001
2002 void
2003 DESTROY (DBC_ornull *dbc)
2004 CODE:
2005 if (dbc)
2006 dbc->c_close (dbc);
2007
2008 #if DB_VERSION_MINOR >= 6
2009
2010 int set_priority (DBC *dbc, int priority)
2011 CODE:
2012 dbc->set_priority (dbc, priority);
2013
2014 #endif
2015
2016 MODULE = BDB PACKAGE = BDB::Sequence
2017
2018 void
2019 DESTROY (DB_SEQUENCE_ornull *seq)
2020 CODE:
2021 if (seq)
2022 seq->close (seq, 0);
2023
2024 int initial_value (DB_SEQUENCE *seq, db_seq_t value)
2025 CODE:
2026 RETVAL = seq->initial_value (seq, value);
2027 OUTPUT:
2028 RETVAL
2029
2030 int set_cachesize (DB_SEQUENCE *seq, U32 size)
2031 CODE:
2032 RETVAL = seq->set_cachesize (seq, size);
2033 OUTPUT:
2034 RETVAL
2035
2036 int set_flags (DB_SEQUENCE *seq, U32 flags)
2037 CODE:
2038 RETVAL = seq->set_flags (seq, flags);
2039 OUTPUT:
2040 RETVAL
2041
2042 int set_range (DB_SEQUENCE *seq, db_seq_t min, db_seq_t max)
2043 CODE:
2044 RETVAL = seq->set_range (seq, min, max);
2045 OUTPUT:
2046 RETVAL
2047