2 /* syncprov.c - syncrepl provider */
3 /* This work is part of OpenLDAP Software <http://www.openldap.org/>.
5 * Copyright 2004-2005 The OpenLDAP Foundation.
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted only as authorized by the OpenLDAP
12 * A copy of this license is available in the file LICENSE in the
13 * top-level directory of the distribution or, alternatively, at
14 * <http://www.OpenLDAP.org/license.html>.
17 * This work was initially developed by Howard Chu for inclusion in
23 #ifdef SLAPD_OVER_SYNCPROV
25 #include <ac/string.h>
31 /* A modify request on a particular entry */
32 typedef struct modinst {
33 struct modinst *mi_next;
37 typedef struct modtarget {
38 struct modinst *mt_mods;
39 struct modinst *mt_tail;
41 ldap_pvt_thread_mutex_t mt_mutex;
44 /* A queued result of a persistent search */
45 typedef struct syncres {
46 struct syncres *s_next;
55 /* Record of a persistent search */
56 typedef struct syncops {
57 struct syncops *s_next;
58 struct berval s_base; /* ndn of search base */
59 ID s_eid; /* entryID of search base */
60 Operation *s_op; /* search op */
62 struct berval s_filterstr;
63 int s_flags; /* search status */
64 #define PS_IS_REFRESHING 0x01
65 #define PS_IS_DETACHED 0x02
66 #define PS_WROTE_BASE 0x04
67 #define PS_FIND_BASE 0x08
69 int s_inuse; /* reference count */
70 struct syncres *s_res;
71 struct syncres *s_restail;
72 struct re_s *s_qtask; /* task for playing psearch responses */
73 #define RUNQ_INTERVAL 36000 /* a long time */
74 ldap_pvt_thread_mutex_t s_mutex;
77 /* A received sync control */
78 typedef struct sync_control {
79 struct sync_cookie sr_state;
83 #if 0 /* moved back to slap.h */
84 #define o_sync o_ctrlflag[slap_cids.sc_LDAPsync]
86 /* o_sync_mode uses data bits of o_sync */
87 #define o_sync_mode o_ctrlflag[slap_cids.sc_LDAPsync]
89 #define SLAP_SYNC_NONE (LDAP_SYNC_NONE<<SLAP_CONTROL_SHIFT)
90 #define SLAP_SYNC_REFRESH (LDAP_SYNC_REFRESH_ONLY<<SLAP_CONTROL_SHIFT)
91 #define SLAP_SYNC_PERSIST (LDAP_SYNC_RESERVED<<SLAP_CONTROL_SHIFT)
92 #define SLAP_SYNC_REFRESH_AND_PERSIST (LDAP_SYNC_REFRESH_AND_PERSIST<<SLAP_CONTROL_SHIFT)
94 /* Record of which searches matched at premodify step */
95 typedef struct syncmatches {
96 struct syncmatches *sm_next;
100 /* Session log data */
101 typedef struct slog_entry {
102 struct slog_entry *se_next;
103 struct berval se_uuid;
104 struct berval se_csn;
108 typedef struct sessionlog {
109 struct berval sl_mincsn;
114 ldap_pvt_thread_mutex_t sl_mutex;
117 /* The main state for this overlay */
118 typedef struct syncprov_info_t {
120 struct berval si_ctxcsn; /* ldapsync context */
121 int si_chkops; /* checkpointing info */
123 int si_numops; /* number of ops since last checkpoint */
124 int si_nopres; /* Skip present phase */
125 int si_usehint; /* use reload hint */
126 time_t si_chklast; /* time of last checkpoint */
127 Avlnode *si_mods; /* entries being modified */
129 ldap_pvt_thread_mutex_t si_csn_mutex;
130 ldap_pvt_thread_mutex_t si_ops_mutex;
131 ldap_pvt_thread_mutex_t si_mods_mutex;
132 char si_ctxcsnbuf[LDAP_LUTIL_CSNSTR_BUFSIZE];
135 typedef struct opcookie {
137 syncmatches *smatches;
138 struct berval sdn; /* DN of entry, for deletes */
140 struct berval suuid; /* UUID of entry */
141 struct berval sctxcsn;
142 int sreference; /* Is the entry a reference? */
145 typedef struct fbase_cookie {
146 struct berval *fdn; /* DN of a modified entry, for scope testing */
147 syncops *fss; /* persistent search we're testing against */
148 int fbase; /* if TRUE we found the search base and it's still valid */
149 int fscope; /* if TRUE then fdn is within the psearch scope */
152 static AttributeName csn_anlist[3];
153 static AttributeName uuid_anlist[2];
155 /* Build a LDAPsync intermediate state control */
161 int entry_sync_state,
165 struct berval *cookie )
170 BerElementBuffer berbuf;
171 BerElement *ber = (BerElement *)&berbuf;
173 struct berval entryuuid_bv = BER_BVNULL;
175 ber_init2( ber, 0, LBER_USE_DER );
176 ber_set_option( ber, LBER_OPT_BER_MEMCTX, &op->o_tmpmemctx );
178 ctrls[num_ctrls] = op->o_tmpalloc( sizeof ( LDAPControl ), op->o_tmpmemctx );
180 for ( a = e->e_attrs; a != NULL; a = a->a_next ) {
181 AttributeDescription *desc = a->a_desc;
182 if ( desc == slap_schema.si_ad_entryUUID ) {
183 entryuuid_bv = a->a_nvals[0];
188 /* FIXME: what if entryuuid is NULL or empty ? */
190 if ( send_cookie && cookie ) {
191 ber_printf( ber, "{eOON}",
192 entry_sync_state, &entryuuid_bv, cookie );
194 ber_printf( ber, "{eON}",
195 entry_sync_state, &entryuuid_bv );
198 ctrls[num_ctrls]->ldctl_oid = LDAP_CONTROL_SYNC_STATE;
199 ctrls[num_ctrls]->ldctl_iscritical = (op->o_sync == SLAP_CONTROL_CRITICAL);
200 ret = ber_flatten2( ber, &ctrls[num_ctrls]->ldctl_value, 1 );
205 Debug( LDAP_DEBUG_TRACE,
206 "slap_build_sync_ctrl: ber_flatten2 failed\n",
208 send_ldap_error( op, rs, LDAP_OTHER, "internal error" );
215 /* Build a LDAPsync final state control */
223 struct berval *cookie,
227 BerElementBuffer berbuf;
228 BerElement *ber = (BerElement *)&berbuf;
230 ber_init2( ber, NULL, LBER_USE_DER );
231 ber_set_option( ber, LBER_OPT_BER_MEMCTX, &op->o_tmpmemctx );
233 ctrls[num_ctrls] = op->o_tmpalloc( sizeof ( LDAPControl ), op->o_tmpmemctx );
235 ber_printf( ber, "{" );
236 if ( send_cookie && cookie ) {
237 ber_printf( ber, "O", cookie );
239 if ( refreshDeletes == LDAP_SYNC_REFRESH_DELETES ) {
240 ber_printf( ber, "b", refreshDeletes );
242 ber_printf( ber, "N}" );
244 ctrls[num_ctrls]->ldctl_oid = LDAP_CONTROL_SYNC_DONE;
245 ctrls[num_ctrls]->ldctl_iscritical = (op->o_sync == SLAP_CONTROL_CRITICAL);
246 ret = ber_flatten2( ber, &ctrls[num_ctrls]->ldctl_value, 1 );
251 Debug( LDAP_DEBUG_TRACE,
252 "syncprov_done_ctrl: ber_flatten2 failed\n",
254 send_ldap_error( op, rs, LDAP_OTHER, "internal error" );
266 struct berval *cookie,
271 BerElementBuffer berbuf;
272 BerElement *ber = (BerElement *)&berbuf;
273 struct berval rspdata;
277 ber_init2( ber, NULL, LBER_USE_DER );
278 ber_set_option( ber, LBER_OPT_BER_MEMCTX, &op->o_tmpmemctx );
282 case LDAP_TAG_SYNC_NEW_COOKIE:
283 ber_printf( ber, "tO", type, cookie );
285 case LDAP_TAG_SYNC_REFRESH_DELETE:
286 case LDAP_TAG_SYNC_REFRESH_PRESENT:
287 ber_printf( ber, "t{", type );
289 ber_printf( ber, "O", cookie );
291 if ( refreshDone == 0 ) {
292 ber_printf( ber, "b", refreshDone );
294 ber_printf( ber, "N}" );
296 case LDAP_TAG_SYNC_ID_SET:
297 ber_printf( ber, "t{", type );
299 ber_printf( ber, "O", cookie );
301 if ( refreshDeletes == 1 ) {
302 ber_printf( ber, "b", refreshDeletes );
304 ber_printf( ber, "[W]", syncUUIDs );
305 ber_printf( ber, "N}" );
308 Debug( LDAP_DEBUG_TRACE,
309 "syncprov_sendinfo: invalid syncinfo type (%d)\n",
315 ret = ber_flatten2( ber, &rspdata, 0 );
318 Debug( LDAP_DEBUG_TRACE,
319 "syncprov_sendinfo: ber_flatten2 failed\n",
321 send_ldap_error( op, rs, LDAP_OTHER, "internal error" );
325 rs->sr_rspoid = LDAP_SYNC_INFO;
326 rs->sr_rspdata = &rspdata;
327 send_ldap_intermediate( op, rs );
328 rs->sr_rspdata = NULL;
334 /* Find a modtarget in an AVL tree */
336 sp_avl_cmp( const void *c1, const void *c2 )
338 const modtarget *m1, *m2;
342 rc = m1->mt_op->o_req_ndn.bv_len - m2->mt_op->o_req_ndn.bv_len;
345 return ber_bvcmp( &m1->mt_op->o_req_ndn, &m2->mt_op->o_req_ndn );
348 /* syncprov_findbase:
349 * finds the true DN of the base of a search (with alias dereferencing) and
350 * checks to make sure the base entry doesn't get replaced with a different
351 * entry (e.g., swapping trees via ModDN, or retargeting an alias). If a
352 * change is detected, any persistent search on this base must be terminated /
354 * On the first call, we just save the DN and entryID. On subsequent calls
355 * we compare the DN and entryID with the saved values.
358 findbase_cb( Operation *op, SlapReply *rs )
360 slap_callback *sc = op->o_callback;
362 if ( rs->sr_type == REP_SEARCH && rs->sr_err == LDAP_SUCCESS ) {
363 fbase_cookie *fc = sc->sc_private;
365 /* If no entryID, we're looking for the first time.
366 * Just store whatever we got.
368 if ( fc->fss->s_eid == NOID ) {
370 fc->fss->s_eid = rs->sr_entry->e_id;
371 ber_dupbv( &fc->fss->s_base, &rs->sr_entry->e_nname );
373 } else if ( rs->sr_entry->e_id == fc->fss->s_eid &&
374 dn_match( &rs->sr_entry->e_nname, &fc->fss->s_base )) {
376 /* OK, the DN is the same and the entryID is the same. */
380 if ( rs->sr_err != LDAP_SUCCESS ) {
381 Debug( LDAP_DEBUG_ANY, "findbase failed! %d\n", rs->sr_err,0,0 );
386 static Filter generic_filter = { LDAP_FILTER_PRESENT, { 0 }, NULL };
387 static struct berval generic_filterstr = BER_BVC("(objectclass=*)");
390 syncprov_findbase( Operation *op, fbase_cookie *fc )
392 opcookie *opc = op->o_callback->sc_private;
393 slap_overinst *on = opc->son;
395 /* Use basic parameters from syncrepl search, but use
396 * current op's threadctx / tmpmemctx
398 ldap_pvt_thread_mutex_lock( &fc->fss->s_mutex );
399 if ( fc->fss->s_flags & PS_FIND_BASE ) {
400 slap_callback cb = {0};
402 SlapReply frs = { REP_RESULT };
405 fc->fss->s_flags ^= PS_FIND_BASE;
406 ldap_pvt_thread_mutex_unlock( &fc->fss->s_mutex );
408 fop = *fc->fss->s_op;
410 fop.o_hdr = op->o_hdr;
412 fop.o_time = op->o_time;
413 fop.o_tincr = op->o_tincr;
415 cb.sc_response = findbase_cb;
418 fop.o_sync_mode = 0; /* turn off sync mode */
419 fop.o_managedsait = SLAP_CONTROL_CRITICAL;
420 fop.o_callback = &cb;
421 fop.o_tag = LDAP_REQ_SEARCH;
422 fop.ors_scope = LDAP_SCOPE_BASE;
423 fop.ors_limit = NULL;
425 fop.ors_tlimit = SLAP_NO_LIMIT;
426 fop.ors_attrs = slap_anlist_no_attrs;
427 fop.ors_attrsonly = 1;
428 fop.ors_filter = &generic_filter;
429 fop.ors_filterstr = generic_filterstr;
431 fop.o_bd->bd_info = on->on_info->oi_orig;
432 rc = fop.o_bd->be_search( &fop, &frs );
433 fop.o_bd->bd_info = (BackendInfo *)on;
435 ldap_pvt_thread_mutex_unlock( &fc->fss->s_mutex );
439 /* After the first call, see if the fdn resides in the scope */
440 if ( fc->fbase == 1 ) {
441 switch ( fc->fss->s_op->ors_scope ) {
442 case LDAP_SCOPE_BASE:
443 fc->fscope = dn_match( fc->fdn, &fc->fss->s_base );
445 case LDAP_SCOPE_ONELEVEL: {
447 dnParent( fc->fdn, &pdn );
448 fc->fscope = dn_match( &pdn, &fc->fss->s_base );
450 case LDAP_SCOPE_SUBTREE:
451 fc->fscope = dnIsSuffix( fc->fdn, &fc->fss->s_base );
453 #ifdef LDAP_SCOPE_SUBORDINATE
454 case LDAP_SCOPE_SUBORDINATE:
455 fc->fscope = dnIsSuffix( fc->fdn, &fc->fss->s_base ) &&
456 !dn_match( fc->fdn, &fc->fss->s_base );
465 /* If entryID has changed, then the base of this search has
466 * changed. Invalidate the psearch.
468 return LDAP_NO_SUCH_OBJECT;
472 * This function has three different purposes, but they all use a search
473 * that filters on entryCSN so they're combined here.
474 * 1: at startup time, after a contextCSN has been read from the database,
475 * we search for all entries with CSN >= contextCSN in case the contextCSN
476 * was not checkpointed at the previous shutdown.
478 * 2: when the current contextCSN is known and we have a sync cookie, we search
479 * for one entry with CSN = the cookie CSN. If not found, try <= cookie CSN.
480 * If an entry is found, the cookie CSN is valid, otherwise it is stale.
482 * 3: during a refresh phase, we search for all entries with CSN <= the cookie
483 * CSN, and generate Present records for them. We always collect this result
484 * in SyncID sets, even if there's only one match.
486 typedef enum find_csn_t {
493 findmax_cb( Operation *op, SlapReply *rs )
495 if ( rs->sr_type == REP_SEARCH && rs->sr_err == LDAP_SUCCESS ) {
496 struct berval *maxcsn = op->o_callback->sc_private;
497 Attribute *a = attr_find( rs->sr_entry->e_attrs,
498 slap_schema.si_ad_entryCSN );
500 if ( a && ber_bvcmp( &a->a_vals[0], maxcsn ) > 0 ) {
501 maxcsn->bv_len = a->a_vals[0].bv_len;
502 strcpy( maxcsn->bv_val, a->a_vals[0].bv_val );
509 findcsn_cb( Operation *op, SlapReply *rs )
511 slap_callback *sc = op->o_callback;
513 /* We just want to know that at least one exists, so it's OK if
514 * we exceed the unchecked limit.
516 if ( rs->sr_err == LDAP_ADMINLIMIT_EXCEEDED ||
517 (rs->sr_type == REP_SEARCH && rs->sr_err == LDAP_SUCCESS )) {
518 sc->sc_private = (void *)1;
523 /* Build a list of entryUUIDs for sending in a SyncID set */
527 typedef struct fpres_cookie {
534 findpres_cb( Operation *op, SlapReply *rs )
536 slap_callback *sc = op->o_callback;
537 fpres_cookie *pc = sc->sc_private;
539 int ret = SLAP_CB_CONTINUE;
541 switch ( rs->sr_type ) {
543 a = attr_find( rs->sr_entry->e_attrs, slap_schema.si_ad_entryUUID );
545 pc->uuids[pc->num].bv_val = pc->last;
546 AC_MEMCPY( pc->uuids[pc->num].bv_val, a->a_nvals[0].bv_val,
547 pc->uuids[pc->num].bv_len );
549 pc->last = pc->uuids[pc->num].bv_val;
550 pc->uuids[pc->num].bv_val = NULL;
553 if ( pc->num != SLAP_SYNCUUID_SET_SIZE )
559 ret = syncprov_sendinfo( op, rs, LDAP_TAG_SYNC_ID_SET, NULL,
561 pc->uuids[pc->num].bv_val = pc->last;
563 pc->last = pc->uuids[0].bv_val;
573 syncprov_findcsn( Operation *op, find_csn_t mode )
575 slap_overinst *on = (slap_overinst *)op->o_bd->bd_info;
576 syncprov_info_t *si = on->on_bi.bi_private;
578 slap_callback cb = {0};
580 SlapReply frs = { REP_RESULT };
581 char buf[LDAP_LUTIL_CSNSTR_BUFSIZE + STRLENOF("(entryCSN<=)")];
582 char cbuf[LDAP_LUTIL_CSNSTR_BUFSIZE];
583 struct berval maxcsn;
585 #ifdef LDAP_COMP_MATCH
586 AttributeAssertion eq = { NULL, BER_BVNULL, NULL };
588 AttributeAssertion eq = { NULL, BER_BVNULL };
590 fpres_cookie pcookie;
591 sync_control *srs = NULL;
592 struct slap_limits_set fc_limits;
593 int i, rc = LDAP_SUCCESS, findcsn_retry = 1;
595 if ( mode != FIND_MAXCSN ) {
596 srs = op->o_controls[slap_cids.sc_LDAPsync];
598 if ( srs->sr_state.ctxcsn.bv_len >= LDAP_LUTIL_CSNSTR_BUFSIZE ) {
604 fop.o_sync_mode &= SLAP_CONTROL_MASK; /* turn off sync_mode */
605 /* We want pure entries, not referrals */
606 fop.o_managedsait = SLAP_CONTROL_CRITICAL;
609 cf.f_av_desc = slap_schema.si_ad_entryCSN;
612 fop.o_callback = &cb;
613 fop.ors_limit = NULL;
614 fop.ors_tlimit = SLAP_NO_LIMIT;
615 fop.ors_filter = &cf;
616 fop.ors_filterstr.bv_val = buf;
621 cf.f_choice = LDAP_FILTER_GE;
622 cf.f_av_value = si->si_ctxcsn;
623 fop.ors_filterstr.bv_len = sprintf( buf, "(entryCSN>=%s)",
624 cf.f_av_value.bv_val );
625 fop.ors_attrsonly = 0;
626 fop.ors_attrs = csn_anlist;
627 fop.ors_slimit = SLAP_NO_LIMIT;
628 cb.sc_private = &maxcsn;
629 cb.sc_response = findmax_cb;
630 strcpy( cbuf, si->si_ctxcsn.bv_val );
631 maxcsn.bv_val = cbuf;
632 maxcsn.bv_len = si->si_ctxcsn.bv_len;
635 cf.f_av_value = srs->sr_state.ctxcsn;
636 /* Look for exact match the first time */
637 if ( findcsn_retry ) {
638 cf.f_choice = LDAP_FILTER_EQUALITY;
639 fop.ors_filterstr.bv_len = sprintf( buf, "(entryCSN=%s)",
640 cf.f_av_value.bv_val );
641 /* On retry, look for <= */
643 cf.f_choice = LDAP_FILTER_LE;
644 fop.ors_limit = &fc_limits;
645 fc_limits.lms_s_unchecked = 1;
646 fop.ors_filterstr.bv_len = sprintf( buf, "(entryCSN<=%s)",
647 cf.f_av_value.bv_val );
649 fop.ors_attrsonly = 1;
650 fop.ors_attrs = slap_anlist_no_attrs;
652 cb.sc_private = NULL;
653 cb.sc_response = findcsn_cb;
656 af.f_choice = LDAP_FILTER_AND;
659 cf.f_choice = LDAP_FILTER_LE;
660 cf.f_av_value = srs->sr_state.ctxcsn;
661 cf.f_next = op->ors_filter;
662 fop.ors_filter = ⁡
663 filter2bv_x( &fop, fop.ors_filter, &fop.ors_filterstr );
664 fop.ors_attrsonly = 0;
665 fop.ors_attrs = uuid_anlist;
666 fop.ors_slimit = SLAP_NO_LIMIT;
667 cb.sc_private = &pcookie;
668 cb.sc_response = findpres_cb;
671 /* preallocate storage for a full set */
672 pcookie.uuids = op->o_tmpalloc( (SLAP_SYNCUUID_SET_SIZE+1) *
673 sizeof(struct berval) + SLAP_SYNCUUID_SET_SIZE * UUID_LEN,
675 pcookie.last = (char *)(pcookie.uuids + SLAP_SYNCUUID_SET_SIZE+1);
676 pcookie.uuids[0].bv_val = pcookie.last;
677 pcookie.uuids[0].bv_len = UUID_LEN;
678 for (i=1; i<SLAP_SYNCUUID_SET_SIZE; i++) {
679 pcookie.uuids[i].bv_val = pcookie.uuids[i-1].bv_val + UUID_LEN;
680 pcookie.uuids[i].bv_len = UUID_LEN;
685 fop.o_bd->bd_info = on->on_info->oi_orig;
686 fop.o_bd->be_search( &fop, &frs );
687 fop.o_bd->bd_info = (BackendInfo *)on;
691 strcpy( si->si_ctxcsnbuf, maxcsn.bv_val );
692 si->si_ctxcsn.bv_len = maxcsn.bv_len;
695 /* If matching CSN was not found, invalidate the context. */
696 if ( !cb.sc_private ) {
697 /* If we didn't find an exact match, then try for <= */
698 if ( findcsn_retry ) {
702 rc = LDAP_NO_SUCH_OBJECT;
706 op->o_tmpfree( pcookie.uuids, op->o_tmpmemctx );
707 op->o_tmpfree( fop.ors_filterstr.bv_val, op->o_tmpmemctx );
715 syncprov_free_syncop( syncops *so )
717 syncres *sr, *srnext;
718 GroupAssertion *ga, *gnext;
720 ldap_pvt_thread_mutex_lock( &so->s_mutex );
721 if ( --so->s_inuse > 0 ) {
722 ldap_pvt_thread_mutex_unlock( &so->s_mutex );
725 ldap_pvt_thread_mutex_unlock( &so->s_mutex );
726 if ( so->s_flags & PS_IS_DETACHED ) {
727 filter_free( so->s_op->ors_filter );
728 for ( ga = so->s_op->o_groups; ga; ga=gnext ) {
734 ch_free( so->s_base.bv_val );
735 for ( sr=so->s_res; sr; sr=srnext ) {
739 ldap_pvt_thread_mutex_destroy( &so->s_mutex );
743 /* Send a persistent search response */
745 syncprov_sendresp( Operation *op, opcookie *opc, syncops *so,
746 Entry **e, int mode )
748 slap_overinst *on = opc->son;
750 SlapReply rs = { REP_SEARCH };
751 LDAPControl *ctrls[2];
752 struct berval cookie;
754 Attribute a_uuid = {0};
756 if ( so->s_op->o_abandon )
757 return SLAPD_ABANDON;
760 slap_compose_sync_cookie( op, &cookie, &opc->sctxcsn, so->s_rid );
762 e_uuid.e_attrs = &a_uuid;
763 a_uuid.a_desc = slap_schema.si_ad_entryUUID;
764 a_uuid.a_nvals = &opc->suuid;
765 rs.sr_err = syncprov_state_ctrl( op, &rs, &e_uuid,
766 mode, ctrls, 0, 1, &cookie );
767 op->o_tmpfree( cookie.bv_val, op->o_tmpmemctx );
770 op->o_bd->bd_info = (BackendInfo *)on->on_info;
774 if ( rs.sr_entry->e_private )
775 rs.sr_flags = REP_ENTRY_MUSTRELEASE;
776 if ( opc->sreference ) {
777 rs.sr_ref = get_entry_referrals( op, rs.sr_entry );
778 send_search_reference( op, &rs );
779 ber_bvarray_free( rs.sr_ref );
785 case LDAP_SYNC_MODIFY:
787 if ( rs.sr_entry->e_private )
788 rs.sr_flags = REP_ENTRY_MUSTRELEASE;
789 rs.sr_attrs = op->ors_attrs;
790 send_search_entry( op, &rs );
794 case LDAP_SYNC_DELETE:
795 e_uuid.e_attrs = NULL;
796 e_uuid.e_name = opc->sdn;
797 e_uuid.e_nname = opc->sndn;
798 rs.sr_entry = &e_uuid;
799 if ( opc->sreference ) {
800 struct berval bv = BER_BVNULL;
802 send_search_reference( op, &rs );
804 send_search_entry( op, &rs );
810 /* In case someone else freed it already? */
812 op->o_tmpfree( rs.sr_ctrls[0], op->o_tmpmemctx );
819 /* Play back queued responses */
821 syncprov_qplay( Operation *op, slap_overinst *on, syncops *so )
829 op->o_bd->bd_info = (BackendInfo *)on->on_info;
832 ldap_pvt_thread_mutex_lock( &so->s_mutex );
835 so->s_res = sr->s_next;
837 so->s_restail = NULL;
838 ldap_pvt_thread_mutex_unlock( &so->s_mutex );
840 if ( !sr || so->s_op->o_abandon )
844 opc.sndn = sr->s_ndn;
845 opc.suuid = sr->s_uuid;
846 opc.sctxcsn = sr->s_csn;
847 opc.sreference = sr->s_isreference;
850 if ( sr->s_mode != LDAP_SYNC_DELETE ) {
851 rc = be_entry_get_rw( op, &opc.sndn, NULL, NULL, 0, &e );
857 rc = syncprov_sendresp( op, &opc, so, &e, sr->s_mode );
860 be_entry_release_rw( op, e, 0 );
868 op->o_bd->bd_info = (BackendInfo *)on;
872 /* runqueue task for playing back queued responses */
874 syncprov_qtask( void *ctx, void *arg )
876 struct re_s *rtask = arg;
877 syncops *so = rtask->arg;
878 slap_overinst *on = so->s_op->o_private;
879 OperationBuffer opbuf;
883 op = (Operation *) &opbuf;
885 op->o_hdr = (Opheader *)(op+1);
886 op->o_controls = (void **)(op->o_hdr+1);
887 memset( op->o_controls, 0, SLAP_MAX_CIDS * sizeof(void *));
889 *op->o_hdr = *so->s_op->o_hdr;
891 op->o_tmpmemctx = slap_sl_mem_create(SLAP_SLAB_SIZE, SLAP_SLAB_STACK, ctx);
892 op->o_tmpmfuncs = &slap_sl_mfuncs;
893 op->o_threadctx = ctx;
895 /* syncprov_qplay expects a fake db */
896 be = *so->s_op->o_bd;
897 be.be_flags |= SLAP_DBFLAG_OVERLAY;
899 op->o_private = NULL;
900 op->o_callback = NULL;
902 syncprov_qplay( op, on, so );
904 /* decrement use count... */
905 syncprov_free_syncop( so );
907 /* wait until we get explicitly scheduled again */
908 ldap_pvt_thread_mutex_lock( &slapd_rq.rq_mutex );
909 ldap_pvt_runqueue_stoptask( &slapd_rq, so->s_qtask );
910 ldap_pvt_runqueue_resched( &slapd_rq, so->s_qtask, 1 );
911 ldap_pvt_thread_mutex_unlock( &slapd_rq.rq_mutex );
916 /* Queue a persistent search response */
918 syncprov_qresp( opcookie *opc, syncops *so, int mode )
922 sr = ch_malloc(sizeof(syncres) + opc->suuid.bv_len + 1 +
923 opc->sdn.bv_len + 1 + opc->sndn.bv_len + 1 + opc->sctxcsn.bv_len + 1 );
925 sr->s_dn.bv_val = (char *)(sr + 1);
926 sr->s_dn.bv_len = opc->sdn.bv_len;
928 sr->s_isreference = opc->sreference;
929 sr->s_ndn.bv_val = lutil_strcopy( sr->s_dn.bv_val,
930 opc->sdn.bv_val ) + 1;
931 sr->s_ndn.bv_len = opc->sndn.bv_len;
932 sr->s_uuid.bv_val = lutil_strcopy( sr->s_ndn.bv_val,
933 opc->sndn.bv_val ) + 1;
934 sr->s_uuid.bv_len = opc->suuid.bv_len;
935 AC_MEMCPY( sr->s_uuid.bv_val, opc->suuid.bv_val, opc->suuid.bv_len );
936 sr->s_csn.bv_val = sr->s_uuid.bv_val + sr->s_uuid.bv_len + 1;
937 sr->s_csn.bv_len = opc->sctxcsn.bv_len;
938 strcpy( sr->s_csn.bv_val, opc->sctxcsn.bv_val );
940 ldap_pvt_thread_mutex_lock( &so->s_mutex );
944 so->s_restail->s_next = sr;
948 /* If the base of the psearch was modified, check it next time round */
949 if ( so->s_flags & PS_WROTE_BASE ) {
950 so->s_flags ^= PS_WROTE_BASE;
951 so->s_flags |= PS_FIND_BASE;
953 if ( so->s_flags & PS_IS_DETACHED ) {
954 ldap_pvt_thread_mutex_lock( &slapd_rq.rq_mutex );
955 if ( !so->s_qtask ) {
956 so->s_qtask = ldap_pvt_runqueue_insert( &slapd_rq, RUNQ_INTERVAL,
957 syncprov_qtask, so, "syncprov_qtask",
958 so->s_op->o_conn->c_peer_name.bv_val );
961 if (!ldap_pvt_runqueue_isrunning( &slapd_rq, so->s_qtask ) &&
962 !so->s_qtask->next_sched.tv_sec ) {
963 so->s_qtask->interval.tv_sec = 0;
964 ldap_pvt_runqueue_resched( &slapd_rq, so->s_qtask, 0 );
965 so->s_qtask->interval.tv_sec = RUNQ_INTERVAL;
969 ldap_pvt_thread_mutex_unlock( &slapd_rq.rq_mutex );
971 ldap_pvt_thread_mutex_unlock( &so->s_mutex );
976 syncprov_drop_psearch( syncops *so, int lock )
978 if ( so->s_flags & PS_IS_DETACHED ) {
980 ldap_pvt_thread_mutex_lock( &so->s_op->o_conn->c_mutex );
981 so->s_op->o_conn->c_n_ops_executing--;
982 so->s_op->o_conn->c_n_ops_completed++;
983 LDAP_STAILQ_REMOVE( &so->s_op->o_conn->c_ops, so->s_op, slap_op,
986 ldap_pvt_thread_mutex_unlock( &so->s_op->o_conn->c_mutex );
988 syncprov_free_syncop( so );
994 syncprov_ab_cleanup( Operation *op, SlapReply *rs )
996 slap_callback *sc = op->o_callback;
997 op->o_callback = sc->sc_next;
998 syncprov_drop_psearch( op->o_callback->sc_private, 0 );
999 op->o_tmpfree( sc, op->o_tmpmemctx );
1004 syncprov_op_abandon( Operation *op, SlapReply *rs )
1006 slap_overinst *on = (slap_overinst *)op->o_bd->bd_info;
1007 syncprov_info_t *si = on->on_bi.bi_private;
1008 syncops *so, *soprev;
1010 ldap_pvt_thread_mutex_lock( &si->si_ops_mutex );
1011 for ( so=si->si_ops, soprev = (syncops *)&si->si_ops; so;
1012 soprev=so, so=so->s_next ) {
1013 if ( so->s_op->o_connid == op->o_connid &&
1014 so->s_op->o_msgid == op->orn_msgid ) {
1015 so->s_op->o_abandon = 1;
1016 soprev->s_next = so->s_next;
1020 ldap_pvt_thread_mutex_unlock( &si->si_ops_mutex );
1022 /* Is this really a Cancel exop? */
1023 if ( op->o_tag != LDAP_REQ_ABANDON ) {
1024 so->s_op->o_cancel = SLAP_CANCEL_ACK;
1025 rs->sr_err = LDAP_CANCELLED;
1026 send_ldap_result( so->s_op, rs );
1027 if ( so->s_flags & PS_IS_DETACHED ) {
1029 cb = op->o_tmpcalloc( 1, sizeof(slap_callback), op->o_tmpmemctx );
1030 cb->sc_cleanup = syncprov_ab_cleanup;
1031 cb->sc_next = op->o_callback;
1032 cb->sc_private = so;
1033 return SLAP_CB_CONTINUE;
1036 syncprov_drop_psearch( so, 0 );
1038 return SLAP_CB_CONTINUE;
1041 /* Find which persistent searches are affected by this operation */
1043 syncprov_matchops( Operation *op, opcookie *opc, int saveit )
1045 slap_overinst *on = opc->son;
1046 syncprov_info_t *si = on->on_bi.bi_private;
1049 syncops *ss, *sprev, *snext;
1053 struct berval newdn;
1056 fc.fdn = &op->o_req_ndn;
1057 /* compute new DN */
1058 if ( op->o_tag == LDAP_REQ_MODRDN && !saveit ) {
1060 if ( op->orr_nnewSup ) pdn = *op->orr_nnewSup;
1061 else dnParent( fc.fdn, &pdn );
1062 build_new_dn( &newdn, &pdn, &op->orr_nnewrdn, op->o_tmpmemctx );
1066 if ( op->o_tag != LDAP_REQ_ADD ) {
1067 op->o_bd->bd_info = (BackendInfo *)on->on_info;
1068 rc = be_entry_get_rw( op, fc.fdn, NULL, NULL, 0, &e );
1069 /* If we're sending responses now, make a copy and unlock the DB */
1070 if ( e && !saveit ) {
1071 Entry *e2 = entry_dup( e );
1072 be_entry_release_rw( op, e, 0 );
1075 op->o_bd->bd_info = (BackendInfo *)on;
1081 if ( saveit || op->o_tag == LDAP_REQ_ADD ) {
1082 ber_dupbv_x( &opc->sdn, &e->e_name, op->o_tmpmemctx );
1083 ber_dupbv_x( &opc->sndn, &e->e_nname, op->o_tmpmemctx );
1084 opc->sreference = is_entry_referral( e );
1085 a = attr_find( e->e_attrs, slap_schema.si_ad_entryUUID );
1087 ber_dupbv_x( &opc->suuid, &a->a_nvals[0], op->o_tmpmemctx );
1088 } else if ( op->o_tag == LDAP_REQ_MODRDN && !saveit ) {
1089 op->o_tmpfree( opc->sndn.bv_val, op->o_tmpmemctx );
1090 op->o_tmpfree( opc->sdn.bv_val, op->o_tmpmemctx );
1091 ber_dupbv_x( &opc->sdn, &e->e_name, op->o_tmpmemctx );
1092 ber_dupbv_x( &opc->sndn, &e->e_nname, op->o_tmpmemctx );
1095 ldap_pvt_thread_mutex_lock( &si->si_ops_mutex );
1096 for (ss = si->si_ops, sprev = (syncops *)&si->si_ops; ss;
1097 sprev = ss, ss=snext)
1108 /* If the base of the search is missing, signal a refresh */
1109 rc = syncprov_findbase( op, &fc );
1110 if ( rc != LDAP_SUCCESS ) {
1111 SlapReply rs = {REP_RESULT};
1112 send_ldap_error( ss->s_op, &rs, LDAP_SYNC_REFRESH_REQUIRED,
1113 "search base has changed" );
1114 sprev->s_next = snext;
1115 syncprov_drop_psearch( ss, 1 );
1121 /* If we're sending results now, look for this op in old matches */
1125 /* Did we modify the search base? */
1126 if ( dn_match( &op->o_req_ndn, &ss->s_base )) {
1127 ldap_pvt_thread_mutex_lock( &ss->s_mutex );
1128 ss->s_flags |= PS_WROTE_BASE;
1129 ldap_pvt_thread_mutex_unlock( &ss->s_mutex );
1132 for ( sm=opc->smatches, old=(syncmatches *)&opc->smatches; sm;
1133 old=sm, sm=sm->sm_next ) {
1134 if ( sm->sm_op == ss ) {
1136 old->sm_next = sm->sm_next;
1137 op->o_tmpfree( sm, op->o_tmpmemctx );
1143 /* check if current o_req_dn is in scope and matches filter */
1144 if ( fc.fscope && test_filter( op, e, ss->s_op->ors_filter ) ==
1145 LDAP_COMPARE_TRUE ) {
1147 sm = op->o_tmpalloc( sizeof(syncmatches), op->o_tmpmemctx );
1148 sm->sm_next = opc->smatches;
1150 ldap_pvt_thread_mutex_lock( &ss->s_mutex );
1152 ldap_pvt_thread_mutex_unlock( &ss->s_mutex );
1155 /* if found send UPDATE else send ADD */
1156 syncprov_qresp( opc, ss,
1157 found ? LDAP_SYNC_MODIFY : LDAP_SYNC_ADD );
1159 } else if ( !saveit && found ) {
1161 syncprov_qresp( opc, ss, LDAP_SYNC_DELETE );
1164 ldap_pvt_thread_mutex_unlock( &si->si_ops_mutex );
1166 if ( op->o_tag != LDAP_REQ_ADD && e ) {
1167 op->o_bd->bd_info = (BackendInfo *)on->on_info;
1168 be_entry_release_rw( op, e, 0 );
1169 op->o_bd->bd_info = (BackendInfo *)on;
1172 op->o_tmpfree( fc.fdn->bv_val, op->o_tmpmemctx );
1177 syncprov_op_cleanup( Operation *op, SlapReply *rs )
1179 slap_callback *cb = op->o_callback;
1180 opcookie *opc = cb->sc_private;
1181 slap_overinst *on = opc->son;
1182 syncprov_info_t *si = on->on_bi.bi_private;
1183 syncmatches *sm, *snext;
1184 modtarget *mt, mtdummy;
1186 for (sm = opc->smatches; sm; sm=snext) {
1187 snext = sm->sm_next;
1188 syncprov_free_syncop( sm->sm_op );
1189 op->o_tmpfree( sm, op->o_tmpmemctx );
1192 /* Remove op from lock table */
1194 ldap_pvt_thread_mutex_lock( &si->si_mods_mutex );
1195 mt = avl_find( si->si_mods, &mtdummy, sp_avl_cmp );
1197 modinst *mi = mt->mt_mods;
1199 /* If there are more, promote the next one */
1200 ldap_pvt_thread_mutex_lock( &mt->mt_mutex );
1201 if ( mi->mi_next ) {
1202 mt->mt_mods = mi->mi_next;
1203 mt->mt_op = mt->mt_mods->mi_op;
1204 ldap_pvt_thread_mutex_unlock( &mt->mt_mutex );
1206 avl_delete( &si->si_mods, mt, sp_avl_cmp );
1207 ldap_pvt_thread_mutex_unlock( &mt->mt_mutex );
1208 ldap_pvt_thread_mutex_destroy( &mt->mt_mutex );
1212 ldap_pvt_thread_mutex_unlock( &si->si_mods_mutex );
1213 if ( !BER_BVISNULL( &opc->suuid ))
1214 op->o_tmpfree( opc->suuid.bv_val, op->o_tmpmemctx );
1215 if ( !BER_BVISNULL( &opc->sndn ))
1216 op->o_tmpfree( opc->sndn.bv_val, op->o_tmpmemctx );
1217 if ( !BER_BVISNULL( &opc->sdn ))
1218 op->o_tmpfree( opc->sdn.bv_val, op->o_tmpmemctx );
1219 op->o_callback = cb->sc_next;
1220 op->o_tmpfree(cb, op->o_tmpmemctx);
1226 syncprov_checkpoint( Operation *op, SlapReply *rs, slap_overinst *on )
1228 syncprov_info_t *si = on->on_bi.bi_private;
1231 SlapReply rsm = { 0 };
1232 struct berval bv[2];
1233 slap_callback cb = {0};
1235 mod.sml_values = bv;
1236 bv[1].bv_val = NULL;
1237 bv[0] = si->si_ctxcsn;
1238 mod.sml_nvalues = NULL;
1239 mod.sml_desc = slap_schema.si_ad_contextCSN;
1240 mod.sml_op = LDAP_MOD_REPLACE;
1242 mod.sml_next = NULL;
1244 cb.sc_response = slap_null_cb;
1246 opm.o_tag = LDAP_REQ_MODIFY;
1247 opm.o_callback = &cb;
1248 opm.orm_modlist = &mod;
1249 opm.o_req_dn = op->o_bd->be_suffix[0];
1250 opm.o_req_ndn = op->o_bd->be_nsuffix[0];
1251 opm.o_bd->bd_info = on->on_info->oi_orig;
1252 opm.o_managedsait = SLAP_CONTROL_NONCRITICAL;
1253 SLAP_DBFLAGS( opm.o_bd ) |= SLAP_DBFLAG_NOLASTMOD;
1254 opm.o_bd->be_modify( &opm, &rsm );
1255 SLAP_DBFLAGS( opm.o_bd ) ^= SLAP_DBFLAG_NOLASTMOD;
1256 if ( mod.sml_next != NULL ) {
1257 slap_mods_free( mod.sml_next, 1 );
1262 syncprov_add_slog( Operation *op, struct berval *csn )
1264 opcookie *opc = op->o_callback->sc_private;
1265 slap_overinst *on = opc->son;
1266 syncprov_info_t *si = on->on_bi.bi_private;
1272 /* Allocate a record. UUIDs are not NUL-terminated. */
1273 se = ch_malloc( sizeof( slog_entry ) + opc->suuid.bv_len +
1276 se->se_tag = op->o_tag;
1278 se->se_uuid.bv_val = (char *)(se+1);
1279 AC_MEMCPY( se->se_uuid.bv_val, opc->suuid.bv_val, opc->suuid.bv_len );
1280 se->se_uuid.bv_len = opc->suuid.bv_len;
1282 se->se_csn.bv_val = se->se_uuid.bv_val + opc->suuid.bv_len;
1283 AC_MEMCPY( se->se_csn.bv_val, csn->bv_val, csn->bv_len );
1284 se->se_csn.bv_val[csn->bv_len] = '\0';
1285 se->se_csn.bv_len = csn->bv_len;
1287 ldap_pvt_thread_mutex_lock( &sl->sl_mutex );
1288 if ( sl->sl_head ) {
1289 sl->sl_tail->se_next = se;
1295 while ( sl->sl_num > sl->sl_size ) {
1297 sl->sl_head = se->se_next;
1298 strcpy( sl->sl_mincsn.bv_val, se->se_csn.bv_val );
1299 sl->sl_mincsn.bv_len = se->se_csn.bv_len;
1302 if ( !sl->sl_head ) {
1306 ldap_pvt_thread_mutex_unlock( &sl->sl_mutex );
1310 /* Just set a flag if we found the matching entry */
1312 playlog_cb( Operation *op, SlapReply *rs )
1314 if ( rs->sr_type == REP_SEARCH ) {
1315 op->o_callback->sc_private = (void *)1;
1320 /* enter with sl->sl_mutex locked, release before returning */
1322 syncprov_playlog( Operation *op, SlapReply *rs, sessionlog *sl,
1323 struct berval *oldcsn, struct berval *ctxcsn )
1325 slap_overinst *on = (slap_overinst *)op->o_bd->bd_info;
1327 int i, j, ndel, num, nmods, mmods;
1330 if ( !sl->sl_num ) {
1331 ldap_pvt_thread_mutex_unlock( &sl->sl_mutex );
1339 uuids = op->o_tmpalloc( (num+1) * sizeof( struct berval ) +
1340 num * UUID_LEN, op->o_tmpmemctx );
1342 uuids[0].bv_val = (char *)(uuids + num + 1);
1344 /* Make a copy of the relevant UUIDs. Put the Deletes up front
1345 * and everything else at the end. Do this first so we can
1346 * unlock the list mutex.
1348 for ( se=sl->sl_head; se; se=se->se_next ) {
1349 if ( ber_bvcmp( &se->se_csn, oldcsn ) < 0 ) continue;
1350 if ( ber_bvcmp( &se->se_csn, ctxcsn ) > 0 ) break;
1351 if ( se->se_tag == LDAP_REQ_DELETE ) {
1358 uuids[j].bv_val = uuids[0].bv_val + (j * UUID_LEN);
1359 AC_MEMCPY(uuids[j].bv_val, se->se_uuid.bv_val, UUID_LEN);
1360 uuids[j].bv_len = UUID_LEN;
1362 ldap_pvt_thread_mutex_unlock( &sl->sl_mutex );
1366 /* Zero out unused slots */
1367 for ( i=ndel; i < num - nmods; i++ )
1368 uuids[i].bv_len = 0;
1370 /* Mods must be validated to see if they belong in this delete set.
1374 /* Strip any duplicates */
1375 for ( i=0; i<nmods; i++ ) {
1376 for ( j=0; j<ndel; j++ ) {
1377 if ( bvmatch( &uuids[j], &uuids[num - 1 - i] )) {
1378 uuids[num - 1 - i].bv_len = 0;
1383 if ( uuids[num - 1 - i].bv_len == 0 ) continue;
1384 for ( j=0; j<i; j++ ) {
1385 if ( bvmatch( &uuids[num - 1 - j], &uuids[num - 1 - i] )) {
1386 uuids[num - 1 - i].bv_len = 0;
1395 SlapReply frs = { REP_RESULT };
1398 #ifdef LDAP_COMP_MATCH
1399 AttributeAssertion eq = { NULL, BER_BVNULL, NULL };
1401 AttributeAssertion eq;
1403 slap_callback cb = {0};
1407 fop.o_sync_mode = 0;
1408 fop.o_callback = &cb;
1409 fop.ors_limit = NULL;
1410 fop.ors_tlimit = SLAP_NO_LIMIT;
1411 fop.ors_attrs = slap_anlist_all_attributes;
1412 fop.ors_attrsonly = 0;
1413 fop.o_managedsait = SLAP_CONTROL_CRITICAL;
1415 af.f_choice = LDAP_FILTER_AND;
1418 mf.f_choice = LDAP_FILTER_EQUALITY;
1420 mf.f_av_desc = slap_schema.si_ad_entryUUID;
1421 mf.f_next = fop.ors_filter;
1423 fop.ors_filter = ⁡
1425 cb.sc_response = playlog_cb;
1426 fop.o_bd->bd_info = on->on_info->oi_orig;
1428 for ( i=ndel; i<num; i++ ) {
1429 if ( uuids[i].bv_len == 0 ) continue;
1431 mf.f_av_value = uuids[i];
1432 cb.sc_private = NULL;
1434 rc = fop.o_bd->be_search( &fop, &frs );
1436 /* If entry was not found, add to delete list */
1437 if ( !cb.sc_private ) {
1438 uuids[ndel++] = uuids[i];
1441 fop.o_bd->bd_info = (BackendInfo *)on;
1444 uuids[ndel].bv_val = NULL;
1445 syncprov_sendinfo( op, rs, LDAP_TAG_SYNC_ID_SET, NULL, 0, uuids, 1 );
1450 syncprov_op_response( Operation *op, SlapReply *rs )
1452 opcookie *opc = op->o_callback->sc_private;
1453 slap_overinst *on = opc->son;
1454 syncprov_info_t *si = on->on_bi.bi_private;
1457 if ( rs->sr_err == LDAP_SUCCESS )
1459 struct berval maxcsn = BER_BVNULL, curcsn = BER_BVNULL;
1460 char cbuf[LDAP_LUTIL_CSNSTR_BUFSIZE];
1462 /* Update our context CSN */
1464 ldap_pvt_thread_mutex_lock( &si->si_csn_mutex );
1465 slap_get_commit_csn( op, &maxcsn, &curcsn );
1466 if ( !BER_BVISNULL( &maxcsn ) ) {
1467 strcpy( cbuf, maxcsn.bv_val );
1468 if ( ber_bvcmp( &maxcsn, &si->si_ctxcsn ) > 0 ) {
1469 strcpy( si->si_ctxcsnbuf, cbuf );
1470 si->si_ctxcsn.bv_len = maxcsn.bv_len;
1474 /* Don't do any processing for consumer contextCSN updates */
1475 if ( SLAP_SYNC_SHADOW( op->o_bd ) &&
1476 op->o_msgid == SLAP_SYNC_UPDATE_MSGID ) {
1477 ldap_pvt_thread_mutex_unlock( &si->si_csn_mutex );
1478 return SLAP_CB_CONTINUE;
1482 if ( si->si_chkops || si->si_chktime ) {
1484 if ( si->si_chkops && si->si_numops >= si->si_chkops ) {
1488 if ( si->si_chktime &&
1489 (op->o_time - si->si_chklast >= si->si_chktime )) {
1491 si->si_chklast = op->o_time;
1494 syncprov_checkpoint( op, rs, on );
1497 ldap_pvt_thread_mutex_unlock( &si->si_csn_mutex );
1499 opc->sctxcsn.bv_len = maxcsn.bv_len;
1500 opc->sctxcsn.bv_val = cbuf;
1502 /* Handle any persistent searches */
1506 case LDAP_REQ_MODIFY:
1507 case LDAP_REQ_MODRDN:
1508 case LDAP_REQ_EXTENDED:
1509 syncprov_matchops( op, opc, 0 );
1511 case LDAP_REQ_DELETE:
1512 /* for each match in opc->smatches:
1515 for ( sm = opc->smatches; sm; sm=sm->sm_next ) {
1516 if ( sm->sm_op->s_op->o_abandon )
1518 syncprov_qresp( opc, sm->sm_op, LDAP_SYNC_DELETE );
1524 /* Add any log records */
1525 if ( si->si_logs && op->o_tag != LDAP_REQ_ADD ) {
1526 syncprov_add_slog( op, &curcsn );
1530 return SLAP_CB_CONTINUE;
1533 /* We don't use a subentry to store the context CSN any more.
1534 * We expose the current context CSN as an operational attribute
1535 * of the suffix entry.
1538 syncprov_op_compare( Operation *op, SlapReply *rs )
1540 slap_overinst *on = (slap_overinst *)op->o_bd->bd_info;
1541 syncprov_info_t *si = on->on_bi.bi_private;
1542 int rc = SLAP_CB_CONTINUE;
1544 if ( dn_match( &op->o_req_ndn, op->o_bd->be_nsuffix ) &&
1545 op->oq_compare.rs_ava->aa_desc == slap_schema.si_ad_contextCSN )
1549 struct berval bv[2];
1551 e.e_name = op->o_bd->be_suffix[0];
1552 e.e_nname = op->o_bd->be_nsuffix[0];
1554 BER_BVZERO( &bv[1] );
1555 bv[0] = si->si_ctxcsn;
1557 a.a_desc = slap_schema.si_ad_contextCSN;
1559 a.a_nvals = a.a_vals;
1561 ldap_pvt_thread_mutex_lock( &si->si_csn_mutex );
1563 rs->sr_err = access_allowed( op, &e, op->oq_compare.rs_ava->aa_desc,
1564 &op->oq_compare.rs_ava->aa_value, ACL_COMPARE, NULL );
1565 if ( ! rs->sr_err ) {
1566 rs->sr_err = LDAP_INSUFFICIENT_ACCESS;
1567 goto return_results;
1570 if ( get_assert( op ) &&
1571 ( test_filter( op, &e, get_assertion( op ) ) != LDAP_COMPARE_TRUE ) )
1573 rs->sr_err = LDAP_ASSERTION_FAILED;
1574 goto return_results;
1578 rs->sr_err = LDAP_COMPARE_FALSE;
1580 if ( value_find_ex( op->oq_compare.rs_ava->aa_desc,
1581 SLAP_MR_ATTRIBUTE_VALUE_NORMALIZED_MATCH |
1582 SLAP_MR_ASSERTED_VALUE_NORMALIZED_MATCH,
1583 a.a_nvals, &op->oq_compare.rs_ava->aa_value, op->o_tmpmemctx ) == 0 )
1585 rs->sr_err = LDAP_COMPARE_TRUE;
1590 ldap_pvt_thread_mutex_unlock( &si->si_csn_mutex );
1592 send_ldap_result( op, rs );
1594 if( rs->sr_err == LDAP_COMPARE_FALSE || rs->sr_err == LDAP_COMPARE_TRUE ) {
1595 rs->sr_err = LDAP_SUCCESS;
1604 syncprov_op_mod( Operation *op, SlapReply *rs )
1606 slap_overinst *on = (slap_overinst *)op->o_bd->bd_info;
1607 syncprov_info_t *si = on->on_bi.bi_private;
1609 slap_callback *cb = op->o_tmpcalloc(1, sizeof(slap_callback)+
1611 (si->si_ops ? sizeof(modinst) : 0 ),
1613 opcookie *opc = (opcookie *)(cb+1);
1615 cb->sc_response = syncprov_op_response;
1616 cb->sc_cleanup = syncprov_op_cleanup;
1617 cb->sc_private = opc;
1618 cb->sc_next = op->o_callback;
1619 op->o_callback = cb;
1621 /* If there are active persistent searches, lock this operation.
1622 * See seqmod.c for the locking logic on its own.
1625 modtarget *mt, mtdummy;
1628 mi = (modinst *)(opc+1);
1631 /* See if we're already modifying this entry... */
1633 ldap_pvt_thread_mutex_lock( &si->si_mods_mutex );
1634 mt = avl_find( si->si_mods, &mtdummy, sp_avl_cmp );
1636 ldap_pvt_thread_mutex_lock( &mt->mt_mutex );
1637 ldap_pvt_thread_mutex_unlock( &si->si_mods_mutex );
1638 mt->mt_tail->mi_next = mi;
1640 /* wait for this op to get to head of list */
1641 while ( mt->mt_mods != mi ) {
1642 ldap_pvt_thread_mutex_unlock( &mt->mt_mutex );
1643 ldap_pvt_thread_yield();
1644 ldap_pvt_thread_mutex_lock( &mt->mt_mutex );
1646 /* clean up if the caller is giving up */
1647 if ( op->o_abandon ) {
1649 for ( m2 = mt->mt_mods; m2->mi_next != mi;
1651 m2->mi_next = mi->mi_next;
1652 if ( mt->mt_tail == mi ) mt->mt_tail = m2;
1653 op->o_tmpfree( cb, op->o_tmpmemctx );
1654 ldap_pvt_thread_mutex_unlock( &mt->mt_mutex );
1655 return SLAPD_ABANDON;
1658 ldap_pvt_thread_mutex_unlock( &mt->mt_mutex );
1660 /* Record that we're modifying this entry now */
1661 mt = ch_malloc( sizeof(modtarget) );
1664 mt->mt_op = mi->mi_op;
1665 ldap_pvt_thread_mutex_init( &mt->mt_mutex );
1666 avl_insert( &si->si_mods, mt, sp_avl_cmp, avl_dup_error );
1667 ldap_pvt_thread_mutex_unlock( &si->si_mods_mutex );
1671 if (( si->si_ops || si->si_logs ) && op->o_tag != LDAP_REQ_ADD )
1672 syncprov_matchops( op, opc, 1 );
1674 return SLAP_CB_CONTINUE;
1678 syncprov_op_extended( Operation *op, SlapReply *rs )
1680 if ( exop_is_write( op ))
1681 return syncprov_op_mod( op, rs );
1683 return SLAP_CB_CONTINUE;
1686 typedef struct searchstate {
1687 slap_overinst *ss_on;
1690 struct berval ss_ctxcsn;
1691 char ss_csnbuf[LDAP_LUTIL_CSNSTR_BUFSIZE];
1695 syncprov_search_cleanup( Operation *op, SlapReply *rs )
1697 if ( rs->sr_ctrls ) {
1698 op->o_tmpfree( rs->sr_ctrls[0], op->o_tmpmemctx );
1699 op->o_tmpfree( rs->sr_ctrls, op->o_tmpmemctx );
1700 rs->sr_ctrls = NULL;
1706 syncprov_detach_op( Operation *op, syncops *so, slap_overinst *on )
1712 GroupAssertion *g1, *g2;
1714 /* count the search attrs */
1715 for (i=0; op->ors_attrs && !BER_BVISNULL( &op->ors_attrs[i].an_name ); i++) {
1716 alen += op->ors_attrs[i].an_name.bv_len + 1;
1718 /* Make a new copy of the operation */
1719 size = sizeof(Operation) + sizeof(Opheader) +
1720 (i ? ( (i+1) * sizeof(AttributeName) + alen) : 0) +
1721 op->o_req_dn.bv_len + 1 +
1722 op->o_req_ndn.bv_len + 1 +
1723 op->o_ndn.bv_len + 1 +
1724 so->s_filterstr.bv_len + 1;
1725 op2 = (Operation *)ch_calloc( 1, size );
1726 op2->o_hdr = (Opheader *)(op2+1);
1728 /* Copy the fields we care about explicitly, leave the rest alone */
1729 *op2->o_hdr = *op->o_hdr;
1730 op2->o_tag = op->o_tag;
1731 op2->o_time = op->o_time;
1732 op2->o_bd = on->on_info->oi_origdb;
1733 op2->o_request = op->o_request;
1734 op2->o_private = on;
1737 op2->ors_attrs = (AttributeName *)(op2->o_hdr + 1);
1738 ptr = (char *)(op2->ors_attrs+i+1);
1739 for (i=0; !BER_BVISNULL( &op->ors_attrs[i].an_name ); i++) {
1740 op2->ors_attrs[i] = op->ors_attrs[i];
1741 op2->ors_attrs[i].an_name.bv_val = ptr;
1742 ptr = lutil_strcopy( ptr, op->ors_attrs[i].an_name.bv_val ) + 1;
1744 BER_BVZERO( &op2->ors_attrs[i].an_name );
1746 ptr = (char *)(op2->o_hdr + 1);
1748 op2->o_authz = op->o_authz;
1749 op2->o_ndn.bv_val = ptr;
1750 ptr = lutil_strcopy(ptr, op->o_ndn.bv_val) + 1;
1751 op2->o_dn = op2->o_ndn;
1752 op2->o_req_dn.bv_len = op->o_req_dn.bv_len;
1753 op2->o_req_dn.bv_val = ptr;
1754 ptr = lutil_strcopy(ptr, op->o_req_dn.bv_val) + 1;
1755 op2->o_req_ndn.bv_len = op->o_req_ndn.bv_len;
1756 op2->o_req_ndn.bv_val = ptr;
1757 ptr = lutil_strcopy(ptr, op->o_req_ndn.bv_val) + 1;
1758 op2->ors_filterstr.bv_val = ptr;
1759 strcpy( ptr, so->s_filterstr.bv_val );
1760 op2->ors_filterstr.bv_len = so->s_filterstr.bv_len;
1761 op2->ors_filter = str2filter( ptr );
1764 /* Copy any cached group ACLs individually */
1765 op2->o_groups = NULL;
1766 for ( g1=op->o_groups; g1; g1=g1->ga_next ) {
1767 g2 = ch_malloc( sizeof(GroupAssertion) + g1->ga_len );
1769 strcpy( g2->ga_ndn, g1->ga_ndn );
1770 g2->ga_next = op2->o_groups;
1773 /* Don't allow any further group caching */
1774 op2->o_do_not_cache = 1;
1776 /* Add op2 to conn so abandon will find us */
1777 ldap_pvt_thread_mutex_lock( &op->o_conn->c_mutex );
1778 op->o_conn->c_n_ops_executing++;
1779 op->o_conn->c_n_ops_completed--;
1780 LDAP_STAILQ_INSERT_TAIL( &op->o_conn->c_ops, op2, o_next );
1781 so->s_flags |= PS_IS_DETACHED;
1782 ldap_pvt_thread_mutex_unlock( &op->o_conn->c_mutex );
1786 syncprov_search_response( Operation *op, SlapReply *rs )
1788 searchstate *ss = op->o_callback->sc_private;
1789 slap_overinst *on = ss->ss_on;
1790 sync_control *srs = op->o_controls[slap_cids.sc_LDAPsync];
1792 if ( rs->sr_type == REP_SEARCH || rs->sr_type == REP_SEARCHREF ) {
1794 /* If we got a referral without a referral object, there's
1795 * something missing that we cannot replicate. Just ignore it.
1796 * The consumer will abort because we didn't send the expected
1799 if ( !rs->sr_entry ) {
1800 assert( rs->sr_entry != NULL );
1801 Debug( LDAP_DEBUG_ANY, "bogus referral in context\n",0,0,0 );
1802 return SLAP_CB_CONTINUE;
1804 a = attr_find( rs->sr_entry->e_attrs, slap_schema.si_ad_entryCSN );
1806 /* Make sure entry is less than the snaphot'd contextCSN */
1807 if ( ber_bvcmp( &a->a_nvals[0], &ss->ss_ctxcsn ) > 0 )
1808 return LDAP_SUCCESS;
1810 /* Don't send the ctx entry twice */
1811 if ( !BER_BVISNULL( &srs->sr_state.ctxcsn ) &&
1812 bvmatch( &a->a_nvals[0], &srs->sr_state.ctxcsn ) )
1813 return LDAP_SUCCESS;
1815 rs->sr_ctrls = op->o_tmpalloc( sizeof(LDAPControl *)*2,
1817 rs->sr_ctrls[1] = NULL;
1818 rs->sr_err = syncprov_state_ctrl( op, rs, rs->sr_entry,
1819 LDAP_SYNC_ADD, rs->sr_ctrls, 0, 0, NULL );
1820 } else if ( rs->sr_type == REP_RESULT && rs->sr_err == LDAP_SUCCESS ) {
1821 struct berval cookie;
1823 slap_compose_sync_cookie( op, &cookie, &ss->ss_ctxcsn,
1824 srs->sr_state.rid );
1826 /* Is this a regular refresh? */
1828 rs->sr_ctrls = op->o_tmpalloc( sizeof(LDAPControl *)*2,
1830 rs->sr_ctrls[1] = NULL;
1831 rs->sr_err = syncprov_done_ctrl( op, rs, rs->sr_ctrls,
1832 0, 1, &cookie, ss->ss_present ? LDAP_SYNC_REFRESH_PRESENTS :
1833 LDAP_SYNC_REFRESH_DELETES );
1834 op->o_tmpfree( cookie.bv_val, op->o_tmpmemctx );
1836 /* It's RefreshAndPersist, transition to Persist phase */
1837 syncprov_sendinfo( op, rs, ( ss->ss_present && rs->sr_nentries ) ?
1838 LDAP_TAG_SYNC_REFRESH_PRESENT : LDAP_TAG_SYNC_REFRESH_DELETE,
1839 &cookie, 1, NULL, 0 );
1840 op->o_tmpfree( cookie.bv_val, op->o_tmpmemctx );
1842 /* Detach this Op from frontend control */
1843 ldap_pvt_thread_mutex_lock( &ss->ss_so->s_mutex );
1845 /* Turn off the refreshing flag */
1846 ss->ss_so->s_flags ^= PS_IS_REFRESHING;
1848 syncprov_detach_op( op, ss->ss_so, on );
1849 ldap_pvt_thread_mutex_unlock( &ss->ss_so->s_mutex );
1851 return LDAP_SUCCESS;
1855 return SLAP_CB_CONTINUE;
1859 syncprov_op_search( Operation *op, SlapReply *rs )
1861 slap_overinst *on = (slap_overinst *)op->o_bd->bd_info;
1862 syncprov_info_t *si = (syncprov_info_t *)on->on_bi.bi_private;
1864 int gotstate = 0, nochange = 0, do_present;
1865 syncops *sop = NULL;
1868 struct berval ctxcsn;
1869 char csnbuf[LDAP_LUTIL_CSNSTR_BUFSIZE];
1871 if ( !(op->o_sync_mode & SLAP_SYNC_REFRESH) ) return SLAP_CB_CONTINUE;
1873 if ( op->ors_deref & LDAP_DEREF_SEARCHING ) {
1874 send_ldap_error( op, rs, LDAP_PROTOCOL_ERROR, "illegal value for derefAliases" );
1878 do_present = si->si_nopres ? 0 : 1;
1880 srs = op->o_controls[slap_cids.sc_LDAPsync];
1881 op->o_managedsait = SLAP_CONTROL_NONCRITICAL;
1883 /* If this is a persistent search, set it up right away */
1884 if ( op->o_sync_mode & SLAP_SYNC_PERSIST ) {
1894 so.s_flags = PS_IS_REFRESHING | PS_FIND_BASE;
1895 /* syncprov_findbase expects to be called as a callback... */
1896 sc.sc_private = &opc;
1898 cb = op->o_callback;
1899 op->o_callback = ≻
1900 rs->sr_err = syncprov_findbase( op, &fc );
1901 op->o_callback = cb;
1903 if ( rs->sr_err != LDAP_SUCCESS ) {
1904 send_ldap_result( op, rs );
1907 sop = ch_malloc( sizeof( syncops ));
1909 ldap_pvt_thread_mutex_init( &sop->s_mutex );
1910 sop->s_rid = srs->sr_state.rid;
1913 ldap_pvt_thread_mutex_lock( &si->si_ops_mutex );
1914 sop->s_next = si->si_ops;
1916 ldap_pvt_thread_mutex_unlock( &si->si_ops_mutex );
1919 /* snapshot the ctxcsn */
1920 ldap_pvt_thread_mutex_lock( &si->si_csn_mutex );
1921 strcpy( csnbuf, si->si_ctxcsnbuf );
1922 ctxcsn.bv_len = si->si_ctxcsn.bv_len;
1923 ldap_pvt_thread_mutex_unlock( &si->si_csn_mutex );
1924 ctxcsn.bv_val = csnbuf;
1926 /* If we have a cookie, handle the PRESENT lookups */
1927 if ( !BER_BVISNULL( &srs->sr_state.ctxcsn )) {
1930 /* The cookie was validated when it was parsed, just use it */
1932 /* If just Refreshing and nothing has changed, shortcut it */
1933 if ( bvmatch( &srs->sr_state.ctxcsn, &ctxcsn )) {
1935 if ( !(op->o_sync_mode & SLAP_SYNC_PERSIST) ) {
1936 LDAPControl *ctrls[2];
1940 syncprov_done_ctrl( op, rs, ctrls, 0, 0,
1941 NULL, LDAP_SYNC_REFRESH_DELETES );
1942 rs->sr_ctrls = ctrls;
1943 rs->sr_err = LDAP_SUCCESS;
1944 send_ldap_result( op, rs );
1945 rs->sr_ctrls = NULL;
1950 /* Do we have a sessionlog for this search? */
1953 ldap_pvt_thread_mutex_lock( &sl->sl_mutex );
1954 if ( ber_bvcmp( &srs->sr_state.ctxcsn, &sl->sl_mincsn ) >= 0 ) {
1956 /* mutex is unlocked in playlog */
1957 syncprov_playlog( op, rs, sl, &srs->sr_state.ctxcsn, &ctxcsn );
1959 ldap_pvt_thread_mutex_unlock( &sl->sl_mutex );
1962 /* Is the CSN still present in the database? */
1963 if ( syncprov_findcsn( op, FIND_CSN ) != LDAP_SUCCESS ) {
1964 /* No, so a reload is required */
1965 /* the 2.2 consumer doesn't send this hint */
1966 if ( si->si_usehint && srs->sr_rhint == 0 ) {
1967 send_ldap_error( op, rs, LDAP_SYNC_REFRESH_REQUIRED, "sync cookie is stale" );
1972 /* If changed and doing Present lookup, send Present UUIDs */
1973 if ( do_present && syncprov_findcsn( op, FIND_PRESENT ) !=
1975 send_ldap_result( op, rs );
1982 /* Append CSN range to search filter, save original filter
1983 * for persistent search evaluation
1986 sop->s_filterstr= op->ors_filterstr;
1989 /* If something changed, find the changes */
1990 if ( gotstate && !nochange ) {
1991 Filter *fand, *fava;
1993 fand = op->o_tmpalloc( sizeof(Filter), op->o_tmpmemctx );
1994 fand->f_choice = LDAP_FILTER_AND;
1995 fand->f_next = NULL;
1996 fava = op->o_tmpalloc( sizeof(Filter), op->o_tmpmemctx );
1998 fava->f_choice = LDAP_FILTER_GE;
1999 fava->f_ava = op->o_tmpalloc( sizeof(AttributeAssertion), op->o_tmpmemctx );
2000 fava->f_ava->aa_desc = slap_schema.si_ad_entryCSN;
2001 #ifdef LDAP_COMP_MATCH
2002 fava->f_ava->aa_cf = NULL;
2004 ber_dupbv_x( &fava->f_ava->aa_value, &srs->sr_state.ctxcsn, op->o_tmpmemctx );
2005 fava->f_next = op->ors_filter;
2006 op->ors_filter = fand;
2007 filter2bv_x( op, op->ors_filter, &op->ors_filterstr );
2010 /* Let our callback add needed info to returned entries */
2011 cb = op->o_tmpcalloc(1, sizeof(slap_callback)+sizeof(searchstate), op->o_tmpmemctx);
2012 ss = (searchstate *)(cb+1);
2015 ss->ss_present = do_present;
2016 ss->ss_ctxcsn.bv_len = ctxcsn.bv_len;
2017 ss->ss_ctxcsn.bv_val = ss->ss_csnbuf;
2018 strcpy( ss->ss_ctxcsn.bv_val, ctxcsn.bv_val );
2019 cb->sc_response = syncprov_search_response;
2020 cb->sc_cleanup = syncprov_search_cleanup;
2021 cb->sc_private = ss;
2022 cb->sc_next = op->o_callback;
2023 op->o_callback = cb;
2025 #if 0 /* I don't think we need to shortcircuit back-bdb any more */
2026 op->o_sync_mode &= SLAP_CONTROL_MASK;
2029 /* If this is a persistent search and no changes were reported during
2030 * the refresh phase, just invoke the response callback to transition
2031 * us into persist phase
2034 rs->sr_err = LDAP_SUCCESS;
2035 rs->sr_nentries = 0;
2036 send_ldap_result( op, rs );
2039 return SLAP_CB_CONTINUE;
2043 syncprov_operational(
2047 slap_overinst *on = (slap_overinst *)op->o_bd->bd_info;
2048 syncprov_info_t *si = (syncprov_info_t *)on->on_bi.bi_private;
2050 if ( rs->sr_entry &&
2051 dn_match( &rs->sr_entry->e_nname, op->o_bd->be_nsuffix )) {
2053 if ( SLAP_OPATTRS( rs->sr_attr_flags ) ||
2054 ad_inlist( slap_schema.si_ad_contextCSN, rs->sr_attrs )) {
2055 Attribute *a, **ap = NULL;
2057 for ( a=rs->sr_entry->e_attrs; a; a=a->a_next ) {
2058 if ( a->a_desc == slap_schema.si_ad_contextCSN )
2063 for ( ap = &rs->sr_operational_attrs; *ap; ap=&(*ap)->a_next );
2065 a = ch_malloc( sizeof(Attribute));
2066 a->a_desc = slap_schema.si_ad_contextCSN;
2067 a->a_vals = ch_malloc( 2 * sizeof(struct berval));
2068 a->a_vals[1].bv_val = NULL;
2069 a->a_nvals = a->a_vals;
2075 ldap_pvt_thread_mutex_lock( &si->si_csn_mutex );
2077 strcpy( a->a_vals[0].bv_val, si->si_ctxcsnbuf );
2079 ber_dupbv( &a->a_vals[0], &si->si_ctxcsn );
2081 ldap_pvt_thread_mutex_unlock( &si->si_csn_mutex );
2084 return SLAP_CB_CONTINUE;
2094 static ConfigDriver sp_cf_gen;
2096 static ConfigTable spcfg[] = {
2097 { "syncprov-checkpoint", "ops> <minutes", 3, 3, 0, ARG_MAGIC|SP_CHKPT,
2098 sp_cf_gen, "( OLcfgOvAt:1.1 NAME 'olcSpCheckpoint' "
2099 "DESC 'ContextCSN checkpoint interval in ops and minutes' "
2100 "SYNTAX OMsDirectoryString SINGLE-VALUE )", NULL, NULL },
2101 { "syncprov-sessionlog", "ops", 2, 2, 0, ARG_INT|ARG_MAGIC|SP_SESSL,
2102 sp_cf_gen, "( OLcfgOvAt:1.2 NAME 'olcSpSessionlog' "
2103 "DESC 'Session log size in ops' "
2104 "SYNTAX OMsInteger SINGLE-VALUE )", NULL, NULL },
2105 { "syncprov-nopresent", NULL, 2, 2, 0, ARG_ON_OFF|ARG_MAGIC|SP_NOPRES,
2106 sp_cf_gen, "( OLcfgOvAt:1.3 NAME 'olcSpNoPresent' "
2107 "DESC 'Omit Present phase processing' "
2108 "SYNTAX OMsBoolean SINGLE-VALUE )", NULL, NULL },
2109 { "syncprov-reloadhint", NULL, 2, 2, 0, ARG_ON_OFF|ARG_MAGIC|SP_USEHINT,
2110 sp_cf_gen, "( OLcfgOvAt:1.4 NAME 'olcSpReloadHint' "
2111 "DESC 'Observe Reload Hint in Request control' "
2112 "SYNTAX OMsBoolean SINGLE-VALUE )", NULL, NULL },
2113 { NULL, NULL, 0, 0, 0, ARG_IGNORED }
2116 static ConfigOCs spocs[] = {
2117 { "( OLcfgOvOc:1.1 "
2118 "NAME 'olcSyncProvConfig' "
2119 "DESC 'SyncRepl Provider configuration' "
2120 "SUP olcOverlayConfig "
2121 "MAY ( olcSpCheckpoint $ olcSpSessionlog $ olcSpNoPresent ) )",
2122 Cft_Overlay, spcfg },
2127 sp_cf_gen(ConfigArgs *c)
2129 slap_overinst *on = (slap_overinst *)c->bi;
2130 syncprov_info_t *si = (syncprov_info_t *)on->on_bi.bi_private;
2133 if ( c->op == SLAP_CONFIG_EMIT ) {
2134 switch ( c->type ) {
2136 if ( si->si_chkops || si->si_chktime ) {
2138 bv.bv_len = sprintf( c->msg, "%d %d",
2139 si->si_chkops, si->si_chktime );
2141 value_add_one( &c->rvalue_vals, &bv );
2147 if ( si->si_logs ) {
2148 c->value_int = si->si_logs->sl_size;
2154 if ( si->si_nopres ) {
2161 if ( si->si_usehint ) {
2169 } else if ( c->op == LDAP_MOD_DELETE ) {
2170 switch ( c->type ) {
2177 si->si_logs->sl_size = 0;
2179 rc = LDAP_NO_SUCH_ATTRIBUTE;
2182 if ( si->si_nopres )
2185 rc = LDAP_NO_SUCH_ATTRIBUTE;
2188 if ( si->si_usehint )
2191 rc = LDAP_NO_SUCH_ATTRIBUTE;
2196 switch ( c->type ) {
2198 si->si_chkops = atoi( c->argv[1] );
2199 si->si_chktime = atoi( c->argv[2] ) * 60;
2203 int size = c->value_int;
2206 sprintf( c->msg, "%s size %d is negative",
2208 Debug( LDAP_DEBUG_CONFIG, "%s: %s\n", c->log, c->msg, 0 );
2209 return ARG_BAD_CONF;
2213 sl = ch_malloc( sizeof( sessionlog ) + LDAP_LUTIL_CSNSTR_BUFSIZE );
2214 sl->sl_mincsn.bv_val = (char *)(sl+1);
2215 sl->sl_mincsn.bv_len = 0;
2217 sl->sl_head = sl->sl_tail = NULL;
2218 ldap_pvt_thread_mutex_init( &sl->sl_mutex );
2225 si->si_nopres = c->value_int;
2228 si->si_usehint = c->value_int;
2234 /* ITS#3456 we cannot run this search on the main thread, must use a
2235 * child thread in order to insure we have a big enough stack.
2242 syncprov_findcsn( ptr, FIND_MAXCSN );
2246 /* Read any existing contextCSN from the underlying db.
2247 * Then search for any entries newer than that. If no value exists,
2248 * just generate it. Cache whatever result.
2255 slap_overinst *on = (slap_overinst *) be->bd_info;
2256 syncprov_info_t *si = (syncprov_info_t *)on->on_bi.bi_private;
2259 OperationBuffer opbuf;
2260 char ctxcsnbuf[LDAP_LUTIL_CSNSTR_BUFSIZE];
2261 Operation *op = (Operation *) &opbuf;
2265 void *thrctx = NULL;
2267 if ( slapMode & SLAP_TOOL_MODE ) {
2271 rc = overlay_register_control( be, LDAP_CONTROL_SYNC );
2276 thrctx = ldap_pvt_thread_pool_context();
2277 connection_fake_init( &conn, op, thrctx );
2279 op->o_dn = be->be_rootdn;
2280 op->o_ndn = be->be_rootndn;
2282 ctxcsnbuf[0] = '\0';
2284 op->o_bd->bd_info = on->on_info->oi_orig;
2285 rc = be_entry_get_rw( op, be->be_nsuffix, NULL,
2286 slap_schema.si_ad_contextCSN, 0, &e );
2289 ldap_pvt_thread_t tid;
2291 a = attr_find( e->e_attrs, slap_schema.si_ad_contextCSN );
2293 si->si_ctxcsn.bv_len = a->a_nvals[0].bv_len;
2294 if ( si->si_ctxcsn.bv_len >= sizeof(si->si_ctxcsnbuf ))
2295 si->si_ctxcsn.bv_len = sizeof(si->si_ctxcsnbuf)-1;
2296 strncpy( si->si_ctxcsnbuf, a->a_nvals[0].bv_val,
2297 si->si_ctxcsn.bv_len );
2298 si->si_ctxcsnbuf[si->si_ctxcsn.bv_len] = '\0';
2299 strcpy( ctxcsnbuf, si->si_ctxcsnbuf );
2301 be_entry_release_rw( op, e, 0 );
2302 op->o_bd->bd_info = (BackendInfo *)on;
2303 op->o_req_dn = be->be_suffix[0];
2304 op->o_req_ndn = be->be_nsuffix[0];
2305 op->ors_scope = LDAP_SCOPE_SUBTREE;
2306 ldap_pvt_thread_create( &tid, 0, syncprov_db_otask, op );
2307 ldap_pvt_thread_join( tid, NULL );
2308 } else if ( SLAP_SYNC_SHADOW( op->o_bd )) {
2309 /* If we're also a consumer, and we didn't find the context entry,
2310 * then don't generate anything, wait for our provider to send it
2316 if ( BER_BVISEMPTY( &si->si_ctxcsn ) ) {
2317 si->si_ctxcsn.bv_len = sizeof( si->si_ctxcsnbuf );
2318 slap_get_csn( op, &si->si_ctxcsn, 0 );
2321 /* If our ctxcsn is different from what was read from the root
2322 * entry, make sure we do a checkpoint on close
2324 if ( strcmp( si->si_ctxcsnbuf, ctxcsnbuf )) {
2329 op->o_bd->bd_info = (BackendInfo *)on;
2330 ldap_pvt_thread_pool_context_reset( thrctx );
2334 /* Write the current contextCSN into the underlying db.
2341 slap_overinst *on = (slap_overinst *) be->bd_info;
2342 syncprov_info_t *si = (syncprov_info_t *)on->on_bi.bi_private;
2344 if ( slapMode & SLAP_TOOL_MODE ) {
2347 if ( si->si_numops ) {
2349 OperationBuffer opbuf;
2350 Operation *op = (Operation *) &opbuf;
2351 SlapReply rs = {REP_RESULT};
2354 thrctx = ldap_pvt_thread_pool_context();
2355 connection_fake_init( &conn, op, thrctx );
2357 op->o_dn = be->be_rootdn;
2358 op->o_ndn = be->be_rootndn;
2359 syncprov_checkpoint( op, &rs, on );
2360 ldap_pvt_thread_pool_context_reset( thrctx );
2371 slap_overinst *on = (slap_overinst *)be->bd_info;
2372 syncprov_info_t *si;
2374 si = ch_calloc(1, sizeof(syncprov_info_t));
2375 on->on_bi.bi_private = si;
2376 ldap_pvt_thread_mutex_init( &si->si_csn_mutex );
2377 ldap_pvt_thread_mutex_init( &si->si_ops_mutex );
2378 ldap_pvt_thread_mutex_init( &si->si_mods_mutex );
2379 si->si_ctxcsn.bv_val = si->si_ctxcsnbuf;
2381 csn_anlist[0].an_desc = slap_schema.si_ad_entryCSN;
2382 csn_anlist[0].an_name = slap_schema.si_ad_entryCSN->ad_cname;
2383 csn_anlist[1].an_desc = slap_schema.si_ad_entryUUID;
2384 csn_anlist[1].an_name = slap_schema.si_ad_entryUUID->ad_cname;
2386 uuid_anlist[0].an_desc = slap_schema.si_ad_entryUUID;
2387 uuid_anlist[0].an_name = slap_schema.si_ad_entryUUID->ad_cname;
2393 syncprov_db_destroy(
2397 slap_overinst *on = (slap_overinst *)be->bd_info;
2398 syncprov_info_t *si = (syncprov_info_t *)on->on_bi.bi_private;
2401 ldap_pvt_thread_mutex_destroy( &si->si_mods_mutex );
2402 ldap_pvt_thread_mutex_destroy( &si->si_ops_mutex );
2403 ldap_pvt_thread_mutex_destroy( &si->si_csn_mutex );
2410 static int syncprov_parseCtrl (
2416 BerElementBuffer berbuf;
2417 BerElement *ber = (BerElement *)&berbuf;
2420 struct berval cookie = BER_BVNULL;
2424 if ( op->o_sync != SLAP_CONTROL_NONE ) {
2425 rs->sr_text = "Sync control specified multiple times";
2426 return LDAP_PROTOCOL_ERROR;
2429 if ( op->o_pagedresults != SLAP_CONTROL_NONE ) {
2430 rs->sr_text = "Sync control specified with pagedResults control";
2431 return LDAP_PROTOCOL_ERROR;
2434 if ( BER_BVISEMPTY( &ctrl->ldctl_value ) ) {
2435 rs->sr_text = "Sync control value is empty (or absent)";
2436 return LDAP_PROTOCOL_ERROR;
2439 /* Parse the control value
2440 * syncRequestValue ::= SEQUENCE {
2445 * refreshAndPersist (3)
2447 * cookie syncCookie OPTIONAL
2451 ber_init2( ber, &ctrl->ldctl_value, 0 );
2453 if ( (tag = ber_scanf( ber, "{i" /*}*/, &mode )) == LBER_ERROR ) {
2454 rs->sr_text = "Sync control : mode decoding error";
2455 return LDAP_PROTOCOL_ERROR;
2459 case LDAP_SYNC_REFRESH_ONLY:
2460 mode = SLAP_SYNC_REFRESH;
2462 case LDAP_SYNC_REFRESH_AND_PERSIST:
2463 mode = SLAP_SYNC_REFRESH_AND_PERSIST;
2466 rs->sr_text = "Sync control : unknown update mode";
2467 return LDAP_PROTOCOL_ERROR;
2470 tag = ber_peek_tag( ber, &len );
2472 if ( tag == LDAP_TAG_SYNC_COOKIE ) {
2473 if (( ber_scanf( ber, /*{*/ "m", &cookie )) == LBER_ERROR ) {
2474 rs->sr_text = "Sync control : cookie decoding error";
2475 return LDAP_PROTOCOL_ERROR;
2477 tag = ber_peek_tag( ber, &len );
2479 if ( tag == LDAP_TAG_RELOAD_HINT ) {
2480 if (( ber_scanf( ber, /*{*/ "b", &rhint )) == LBER_ERROR ) {
2481 rs->sr_text = "Sync control : rhint decoding error";
2482 return LDAP_PROTOCOL_ERROR;
2485 if (( ber_scanf( ber, /*{*/ "}")) == LBER_ERROR ) {
2486 rs->sr_text = "Sync control : decoding error";
2487 return LDAP_PROTOCOL_ERROR;
2489 sr = op->o_tmpcalloc( 1, sizeof(struct sync_control), op->o_tmpmemctx );
2490 sr->sr_rhint = rhint;
2491 if (!BER_BVISNULL(&cookie)) {
2492 ber_dupbv_x( &sr->sr_state.octet_str, &cookie, op->o_tmpmemctx );
2493 slap_parse_sync_cookie( &sr->sr_state, op->o_tmpmemctx );
2494 if ( sr->sr_state.rid == -1 ) {
2495 rs->sr_text = "Sync control : cookie parsing error";
2496 return LDAP_PROTOCOL_ERROR;
2500 op->o_controls[slap_cids.sc_LDAPsync] = sr;
2502 op->o_sync = ctrl->ldctl_iscritical
2503 ? SLAP_CONTROL_CRITICAL
2504 : SLAP_CONTROL_NONCRITICAL;
2506 op->o_sync_mode |= mode; /* o_sync_mode shares o_sync */
2508 return LDAP_SUCCESS;
2511 /* This overlay is set up for dynamic loading via moduleload. For static
2512 * configuration, you'll need to arrange for the slap_overinst to be
2513 * initialized and registered by some other function inside slapd.
2516 static slap_overinst syncprov;
2523 rc = register_supported_control( LDAP_CONTROL_SYNC,
2524 SLAP_CTRL_HIDE|SLAP_CTRL_SEARCH, NULL,
2525 syncprov_parseCtrl, &slap_cids.sc_LDAPsync );
2526 if ( rc != LDAP_SUCCESS ) {
2527 Debug( LDAP_DEBUG_ANY,
2528 "syncprov_init: Failed to register control %d\n", rc, 0, 0 );
2532 syncprov.on_bi.bi_type = "syncprov";
2533 syncprov.on_bi.bi_db_init = syncprov_db_init;
2534 syncprov.on_bi.bi_db_destroy = syncprov_db_destroy;
2535 syncprov.on_bi.bi_db_open = syncprov_db_open;
2536 syncprov.on_bi.bi_db_close = syncprov_db_close;
2538 syncprov.on_bi.bi_op_abandon = syncprov_op_abandon;
2539 syncprov.on_bi.bi_op_cancel = syncprov_op_abandon;
2541 syncprov.on_bi.bi_op_add = syncprov_op_mod;
2542 syncprov.on_bi.bi_op_compare = syncprov_op_compare;
2543 syncprov.on_bi.bi_op_delete = syncprov_op_mod;
2544 syncprov.on_bi.bi_op_modify = syncprov_op_mod;
2545 syncprov.on_bi.bi_op_modrdn = syncprov_op_mod;
2546 syncprov.on_bi.bi_op_search = syncprov_op_search;
2547 syncprov.on_bi.bi_extended = syncprov_op_extended;
2548 syncprov.on_bi.bi_operational = syncprov_operational;
2550 syncprov.on_bi.bi_cf_ocs = spocs;
2552 generic_filter.f_desc = slap_schema.si_ad_objectClass;
2554 rc = config_register_schema( spcfg, spocs );
2555 if ( rc ) return rc;
2557 return overlay_register( &syncprov );
2560 #if SLAPD_OVER_SYNCPROV == SLAPD_MOD_DYNAMIC
2562 init_module( int argc, char *argv[] )
2564 return syncprov_init();
2566 #endif /* SLAPD_OVER_SYNCPROV == SLAPD_MOD_DYNAMIC */
2568 #endif /* defined(SLAPD_OVER_SYNCPROV) */