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1 /* $OpenLDAP$ */
2 /* syncprov.c - syncrepl provider */
3 /* This work is part of OpenLDAP Software <http://www.openldap.org/>.
4  *
5  * Copyright 2004 The OpenLDAP Foundation.
6  * All rights reserved.
7  *
8  * Redistribution and use in source and binary forms, with or without
9  * modification, are permitted only as authorized by the OpenLDAP
10  * Public License.
11  *
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>.
15  */
16 /* ACKNOWLEDGEMENTS:
17  * This work was initially developed by Howard Chu for inclusion in
18  * OpenLDAP Software.
19  */
20
21 #include "portable.h"
22
23 #ifdef SLAPD_OVER_SYNCPROV
24
25 #include <ac/string.h>
26 #include "lutil.h"
27 #include "slap.h"
28
29 /* A modify request on a particular entry */
30 typedef struct modinst {
31         struct modinst *mi_next;
32         Operation *mi_op;
33 } modinst;
34
35 typedef struct modtarget {
36         struct modinst *mt_mods;
37         struct modinst *mt_tail;
38         Operation *mt_op;
39         ldap_pvt_thread_mutex_t mt_mutex;
40 } modtarget;
41
42 /* A queued result of a persistent search */
43 typedef struct syncres {
44         struct syncres *s_next;
45         struct berval s_dn;
46         struct berval s_ndn;
47         struct berval s_uuid;
48         struct berval s_csn;
49         char s_mode;
50         char s_isreference;
51 } syncres;
52
53 /* Record of a persistent search */
54 typedef struct syncops {
55         struct syncops *s_next;
56         struct berval   s_base;         /* ndn of search base */
57         ID              s_eid;          /* entryID of search base */
58         Operation       *s_op;          /* search op */
59         int             s_sid;
60         int             s_rid;
61         struct berval s_filterstr;
62         int             s_flags;        /* search status */
63         int             s_inuse;        /* reference count */
64         struct syncres *s_res;
65         struct syncres *s_restail;
66         ldap_pvt_thread_mutex_t s_mutex;
67 } syncops;
68
69 /* A received sync control */
70 typedef struct sync_control {
71         struct sync_cookie sr_state;
72         int sr_rhint;
73 } sync_control;
74
75 #if 0 /* moved back to slap.h */
76 #define o_sync  o_ctrlflag[slap_cids.sc_LDAPsync]
77 #endif
78 /* o_sync_mode uses data bits of o_sync */
79 #define o_sync_mode     o_ctrlflag[slap_cids.sc_LDAPsync]
80
81 #define SLAP_SYNC_NONE                                  (LDAP_SYNC_NONE<<SLAP_CONTROL_SHIFT)
82 #define SLAP_SYNC_REFRESH                               (LDAP_SYNC_REFRESH_ONLY<<SLAP_CONTROL_SHIFT)
83 #define SLAP_SYNC_PERSIST                               (LDAP_SYNC_RESERVED<<SLAP_CONTROL_SHIFT)
84 #define SLAP_SYNC_REFRESH_AND_PERSIST   (LDAP_SYNC_REFRESH_AND_PERSIST<<SLAP_CONTROL_SHIFT)
85
86 #define PS_IS_REFRESHING        0x01
87
88 /* Record of which searches matched at premodify step */
89 typedef struct syncmatches {
90         struct syncmatches *sm_next;
91         syncops *sm_op;
92 } syncmatches;
93
94 /* Session log data */
95 typedef struct slog_entry {
96         struct slog_entry *se_next;
97         struct berval se_uuid;
98         struct berval se_csn;
99         ber_tag_t       se_tag;
100 } slog_entry;
101
102 typedef struct sessionlog {
103         struct sessionlog *sl_next;
104         int             sl_sid;
105         struct berval   sl_mincsn;
106         int             sl_num;
107         int             sl_size;
108         slog_entry *sl_head;
109         slog_entry *sl_tail;
110         ldap_pvt_thread_mutex_t sl_mutex;
111 } sessionlog;
112
113 /* The main state for this overlay */
114 typedef struct syncprov_info_t {
115         syncops         *si_ops;
116         struct berval   si_ctxcsn;      /* ldapsync context */
117         int             si_chkops;      /* checkpointing info */
118         int             si_chktime;
119         int             si_numops;      /* number of ops since last checkpoint */
120         time_t  si_chklast;     /* time of last checkpoint */
121         Avlnode *si_mods;       /* entries being modified */
122         sessionlog      *si_logs;
123         ldap_pvt_thread_mutex_t si_csn_mutex;
124         ldap_pvt_thread_mutex_t si_ops_mutex;
125         ldap_pvt_thread_mutex_t si_mods_mutex;
126         char            si_ctxcsnbuf[LDAP_LUTIL_CSNSTR_BUFSIZE];
127 } syncprov_info_t;
128
129 typedef struct opcookie {
130         slap_overinst *son;
131         syncmatches *smatches;
132         struct berval sdn;      /* DN of entry, for deletes */
133         struct berval sndn;
134         struct berval suuid;    /* UUID of entry */
135         struct berval sctxcsn;
136         int sreference; /* Is the entry a reference? */
137 } opcookie;
138
139 typedef struct fbase_cookie {
140         struct berval *fdn;     /* DN of a modified entry, for scope testing */
141         syncops *fss;   /* persistent search we're testing against */
142         int fbase;      /* if TRUE we found the search base and it's still valid */
143         int fscope;     /* if TRUE then fdn is within the psearch scope */
144 } fbase_cookie;
145
146 static AttributeName csn_anlist[2];
147 static AttributeName uuid_anlist[2];
148
149 /* Build a LDAPsync intermediate state control */
150 static int
151 syncprov_state_ctrl(
152         Operation       *op,
153         SlapReply       *rs,
154         Entry           *e,
155         int             entry_sync_state,
156         LDAPControl     **ctrls,
157         int             num_ctrls,
158         int             send_cookie,
159         struct berval   *cookie )
160 {
161         Attribute* a;
162         int ret;
163         int res;
164         const char *text = NULL;
165
166         BerElementBuffer berbuf;
167         BerElement *ber = (BerElement *)&berbuf;
168
169         struct berval   entryuuid_bv = BER_BVNULL;
170
171         ber_init2( ber, 0, LBER_USE_DER );
172         ber_set_option( ber, LBER_OPT_BER_MEMCTX, &op->o_tmpmemctx );
173
174         ctrls[num_ctrls] = op->o_tmpalloc( sizeof ( LDAPControl ), op->o_tmpmemctx );
175
176         for ( a = e->e_attrs; a != NULL; a = a->a_next ) {
177                 AttributeDescription *desc = a->a_desc;
178                 if ( desc == slap_schema.si_ad_entryUUID ) {
179                         entryuuid_bv = a->a_nvals[0];
180                         break;
181                 }
182         }
183
184         if ( send_cookie && cookie ) {
185                 ber_printf( ber, "{eOON}",
186                         entry_sync_state, &entryuuid_bv, cookie );
187         } else {
188                 ber_printf( ber, "{eON}",
189                         entry_sync_state, &entryuuid_bv );
190         }
191
192         ctrls[num_ctrls]->ldctl_oid = LDAP_CONTROL_SYNC_STATE;
193         ctrls[num_ctrls]->ldctl_iscritical = (op->o_sync == SLAP_CONTROL_CRITICAL);
194         ret = ber_flatten2( ber, &ctrls[num_ctrls]->ldctl_value, 1 );
195
196         ber_free_buf( ber );
197
198         if ( ret < 0 ) {
199                 Debug( LDAP_DEBUG_TRACE,
200                         "slap_build_sync_ctrl: ber_flatten2 failed\n",
201                         0, 0, 0 );
202                 send_ldap_error( op, rs, LDAP_OTHER, "internal error" );
203                 return ret;
204         }
205
206         return LDAP_SUCCESS;
207 }
208
209 /* Build a LDAPsync final state control */
210 static int
211 syncprov_done_ctrl(
212         Operation       *op,
213         SlapReply       *rs,
214         LDAPControl     **ctrls,
215         int                     num_ctrls,
216         int                     send_cookie,
217         struct berval *cookie,
218         int                     refreshDeletes )
219 {
220         int ret;
221         BerElementBuffer berbuf;
222         BerElement *ber = (BerElement *)&berbuf;
223
224         ber_init2( ber, NULL, LBER_USE_DER );
225         ber_set_option( ber, LBER_OPT_BER_MEMCTX, &op->o_tmpmemctx );
226
227         ctrls[num_ctrls] = op->o_tmpalloc( sizeof ( LDAPControl ), op->o_tmpmemctx );
228
229         ber_printf( ber, "{" );
230         if ( send_cookie && cookie ) {
231                 ber_printf( ber, "O", cookie );
232         }
233         if ( refreshDeletes == LDAP_SYNC_REFRESH_DELETES ) {
234                 ber_printf( ber, "b", refreshDeletes );
235         }
236         ber_printf( ber, "N}" );
237
238         ctrls[num_ctrls]->ldctl_oid = LDAP_CONTROL_SYNC_DONE;
239         ctrls[num_ctrls]->ldctl_iscritical = (op->o_sync == SLAP_CONTROL_CRITICAL);
240         ret = ber_flatten2( ber, &ctrls[num_ctrls]->ldctl_value, 1 );
241
242         ber_free_buf( ber );
243
244         if ( ret < 0 ) {
245                 Debug( LDAP_DEBUG_TRACE,
246                         "syncprov_done_ctrl: ber_flatten2 failed\n",
247                         0, 0, 0 );
248                 send_ldap_error( op, rs, LDAP_OTHER, "internal error" );
249                 return ret;
250         }
251
252         return LDAP_SUCCESS;
253 }
254
255 #if 0
256 /* Generate state based on session log - not implemented yet */
257 static int
258 syncprov_state_ctrl_from_slog(
259         Operation       *op,
260         SlapReply       *rs,
261         struct slog_entry *slog_e,
262         int                     entry_sync_state,
263         LDAPControl     **ctrls,
264         int                     num_ctrls,
265         int                     send_cookie,
266         struct berval   *cookie)
267 {
268         Attribute* a;
269         int ret;
270         int res;
271         const char *text = NULL;
272
273         BerElementBuffer berbuf;
274         BerElement *ber = (BerElement *)&berbuf;
275
276         struct berval entryuuid_bv      = BER_BVNULL;
277
278         ber_init2( ber, NULL, LBER_USE_DER );
279         ber_set_option( ber, LBER_OPT_BER_MEMCTX, &op->o_tmpmemctx );
280
281         ctrls[num_ctrls] = ch_malloc ( sizeof ( LDAPControl ) );
282
283         entryuuid_bv = slog_e->sl_uuid;
284
285         if ( send_cookie && cookie ) {
286                 ber_printf( ber, "{eOON}",
287                         entry_sync_state, &entryuuid_bv, cookie );
288         } else {
289                 ber_printf( ber, "{eON}",
290                         entry_sync_state, &entryuuid_bv );
291         }
292
293         ctrls[num_ctrls]->ldctl_oid = LDAP_CONTROL_SYNC_STATE;
294         ctrls[num_ctrls]->ldctl_iscritical = (op->o_sync == SLAP_CONTROL_CRITICAL);
295         ret = ber_flatten2( ber, &ctrls[num_ctrls]->ldctl_value, 1 );
296
297         ber_free_buf( ber );
298
299         if ( ret < 0 ) {
300                 Debug( LDAP_DEBUG_TRACE,
301                         "slap_build_sync_ctrl: ber_flatten2 failed\n",
302                         0, 0, 0 );
303                 send_ldap_error( op, rs, LDAP_OTHER, "internal error" );
304                 return ret;
305         }
306
307         return LDAP_SUCCESS;
308 }
309 #endif
310
311 static int
312 syncprov_sendinfo(
313         Operation       *op,
314         SlapReply       *rs,
315         int                     type,
316         struct berval *cookie,
317         int                     refreshDone,
318         BerVarray       syncUUIDs,
319         int                     refreshDeletes )
320 {
321         BerElementBuffer berbuf;
322         BerElement *ber = (BerElement *)&berbuf;
323         struct berval rspdata;
324
325         int ret;
326
327         ber_init2( ber, NULL, LBER_USE_DER );
328         ber_set_option( ber, LBER_OPT_BER_MEMCTX, &op->o_tmpmemctx );
329
330         if ( type ) {
331                 switch ( type ) {
332                 case LDAP_TAG_SYNC_NEW_COOKIE:
333                         ber_printf( ber, "tO", type, cookie );
334                         break;
335                 case LDAP_TAG_SYNC_REFRESH_DELETE:
336                 case LDAP_TAG_SYNC_REFRESH_PRESENT:
337                         ber_printf( ber, "t{", type );
338                         if ( cookie ) {
339                                 ber_printf( ber, "O", cookie );
340                         }
341                         if ( refreshDone == 0 ) {
342                                 ber_printf( ber, "b", refreshDone );
343                         }
344                         ber_printf( ber, "N}" );
345                         break;
346                 case LDAP_TAG_SYNC_ID_SET:
347                         ber_printf( ber, "t{", type );
348                         if ( cookie ) {
349                                 ber_printf( ber, "O", cookie );
350                         }
351                         if ( refreshDeletes == 1 ) {
352                                 ber_printf( ber, "b", refreshDeletes );
353                         }
354                         ber_printf( ber, "[W]", syncUUIDs );
355                         ber_printf( ber, "N}" );
356                         break;
357                 default:
358                         Debug( LDAP_DEBUG_TRACE,
359                                 "syncprov_sendinfo: invalid syncinfo type (%d)\n",
360                                 type, 0, 0 );
361                         return LDAP_OTHER;
362                 }
363         }
364
365         ret = ber_flatten2( ber, &rspdata, 0 );
366
367         if ( ret < 0 ) {
368                 Debug( LDAP_DEBUG_TRACE,
369                         "syncprov_sendinfo: ber_flatten2 failed\n",
370                         0, 0, 0 );
371                 send_ldap_error( op, rs, LDAP_OTHER, "internal error" );
372                 return ret;
373         }
374
375         rs->sr_rspoid = LDAP_SYNC_INFO;
376         rs->sr_rspdata = &rspdata;
377         send_ldap_intermediate( op, rs );
378         rs->sr_rspdata = NULL;
379         ber_free_buf( ber );
380
381         return LDAP_SUCCESS;
382 }
383
384 /* Find a modtarget in an AVL tree */
385 static int
386 sp_avl_cmp( const void *c1, const void *c2 )
387 {
388         const modtarget *m1, *m2;
389         int rc;
390
391         m1 = c1; m2 = c2;
392         rc = m1->mt_op->o_req_ndn.bv_len - m2->mt_op->o_req_ndn.bv_len;
393
394         if ( rc ) return rc;
395         return ber_bvcmp( &m1->mt_op->o_req_ndn, &m2->mt_op->o_req_ndn );
396 }
397
398 /* syncprov_findbase:
399  *   finds the true DN of the base of a search (with alias dereferencing) and
400  * checks to make sure the base entry doesn't get replaced with a different
401  * entry (e.g., swapping trees via ModDN, or retargeting an alias). If a
402  * change is detected, any persistent search on this base must be terminated /
403  * reloaded.
404  *   On the first call, we just save the DN and entryID. On subsequent calls
405  * we compare the DN and entryID with the saved values.
406  */
407 static int
408 findbase_cb( Operation *op, SlapReply *rs )
409 {
410         slap_callback *sc = op->o_callback;
411
412         if ( rs->sr_type == REP_SEARCH && rs->sr_err == LDAP_SUCCESS ) {
413                 fbase_cookie *fc = sc->sc_private;
414
415                 /* If no entryID, we're looking for the first time.
416                  * Just store whatever we got.
417                  */
418                 if ( fc->fss->s_eid == NOID ) {
419                         fc->fbase = 1;
420                         fc->fss->s_eid = rs->sr_entry->e_id;
421                         ber_dupbv( &fc->fss->s_base, &rs->sr_entry->e_nname );
422
423                 } else if ( rs->sr_entry->e_id == fc->fss->s_eid &&
424                         dn_match( &rs->sr_entry->e_nname, &fc->fss->s_base )) {
425
426                 /* OK, the DN is the same and the entryID is the same. Now
427                  * see if the fdn resides in the scope.
428                  */
429                         fc->fbase = 1;
430                         switch ( fc->fss->s_op->ors_scope ) {
431                         case LDAP_SCOPE_BASE:
432                                 fc->fscope = dn_match( fc->fdn, &rs->sr_entry->e_nname );
433                                 break;
434                         case LDAP_SCOPE_ONELEVEL: {
435                                 struct berval pdn;
436                                 dnParent( fc->fdn, &pdn );
437                                 fc->fscope = dn_match( &pdn, &rs->sr_entry->e_nname );
438                                 break; }
439                         case LDAP_SCOPE_SUBTREE:
440                                 fc->fscope = dnIsSuffix( fc->fdn, &rs->sr_entry->e_nname );
441                                 break;
442 #ifdef LDAP_SCOPE_SUBORDINATE
443                         case LDAP_SCOPE_SUBORDINATE:
444                                 fc->fscope = dnIsSuffix( fc->fdn, &rs->sr_entry->e_nname ) &&
445                                         !dn_match( fc->fdn, &rs->sr_entry->e_nname );
446                                 break;
447 #endif
448                         }
449                 }
450         }
451         if ( rs->sr_err != LDAP_SUCCESS ) {
452                 Debug( LDAP_DEBUG_ANY, "findbase failed! %d\n", rs->sr_err,0,0 );
453         }
454         return LDAP_SUCCESS;
455 }
456
457 static int
458 syncprov_findbase( Operation *op, fbase_cookie *fc )
459 {
460         opcookie *opc = op->o_callback->sc_private;
461         slap_overinst *on = opc->son;
462         syncprov_info_t         *si = on->on_bi.bi_private;
463
464         slap_callback cb = {0};
465         Operation fop;
466         SlapReply frs = { REP_RESULT };
467         int rc;
468
469         fop = *op;
470
471         cb.sc_response = findbase_cb;
472         cb.sc_private = fc;
473
474         fop.o_sync_mode &= SLAP_CONTROL_MASK;   /* turn off sync mode */
475         fop.o_callback = &cb;
476         fop.o_tag = LDAP_REQ_SEARCH;
477         fop.ors_scope = LDAP_SCOPE_BASE;
478         fop.ors_deref = fc->fss->s_op->ors_deref;
479         fop.ors_limit = NULL;
480         fop.ors_slimit = 1;
481         fop.ors_tlimit = SLAP_NO_LIMIT;
482         fop.ors_attrs = slap_anlist_no_attrs;
483         fop.ors_attrsonly = 1;
484         fop.ors_filter = fc->fss->s_op->ors_filter;
485         fop.ors_filterstr = fc->fss->s_op->ors_filterstr;
486
487         fop.o_req_ndn = fc->fss->s_op->o_req_ndn;
488
489         fop.o_bd->bd_info = on->on_info->oi_orig;
490         rc = fop.o_bd->be_search( &fop, &frs );
491         fop.o_bd->bd_info = (BackendInfo *)on;
492
493         if ( fc->fbase ) return LDAP_SUCCESS;
494
495         /* If entryID has changed, then the base of this search has
496          * changed. Invalidate the psearch.
497          */
498         return LDAP_NO_SUCH_OBJECT;
499 }
500
501 /* syncprov_findcsn:
502  *   This function has three different purposes, but they all use a search
503  * that filters on entryCSN so they're combined here.
504  * 1: at startup time, after a contextCSN has been read from the database,
505  * we search for all entries with CSN >= contextCSN in case the contextCSN
506  * was not checkpointed at the previous shutdown.
507  *
508  * 2: when the current contextCSN is known and we have a sync cookie, we search
509  * for one entry with CSN <= the cookie CSN. (Used to search for =.) If an
510  * entry is found, the cookie CSN is valid, otherwise it is stale.
511  *
512  * 3: during a refresh phase, we search for all entries with CSN <= the cookie
513  * CSN, and generate Present records for them. We always collect this result
514  * in SyncID sets, even if there's only one match.
515  */
516 #define FIND_MAXCSN     1
517 #define FIND_CSN        2
518 #define FIND_PRESENT    3
519
520 static int
521 findmax_cb( Operation *op, SlapReply *rs )
522 {
523         if ( rs->sr_type == REP_SEARCH && rs->sr_err == LDAP_SUCCESS ) {
524                 struct berval *maxcsn = op->o_callback->sc_private;
525                 Attribute *a = attr_find( rs->sr_entry->e_attrs,
526                         slap_schema.si_ad_entryCSN );
527
528                 if ( a && ber_bvcmp( &a->a_vals[0], maxcsn )) {
529                         maxcsn->bv_len = a->a_vals[0].bv_len;
530                         strcpy( maxcsn->bv_val, a->a_vals[0].bv_val );
531                 }
532         }
533         return LDAP_SUCCESS;
534 }
535
536 static int
537 findcsn_cb( Operation *op, SlapReply *rs )
538 {
539         slap_callback *sc = op->o_callback;
540
541         if ( rs->sr_type == REP_SEARCH && rs->sr_err == LDAP_SUCCESS ) {
542                 sc->sc_private = (void *)1;
543         }
544         return LDAP_SUCCESS;
545 }
546
547 /* Build a list of entryUUIDs for sending in a SyncID set */
548
549 #define UUID_LEN        16
550
551 typedef struct fpres_cookie {
552         int num;
553         BerVarray uuids;
554         char *last;
555 } fpres_cookie;
556
557 static int
558 findpres_cb( Operation *op, SlapReply *rs )
559 {
560         slap_callback *sc = op->o_callback;
561         fpres_cookie *pc = sc->sc_private;
562         Attribute *a;
563         int ret = SLAP_CB_CONTINUE;
564
565         switch ( rs->sr_type ) {
566         case REP_SEARCH:
567                 a = attr_find( rs->sr_entry->e_attrs, slap_schema.si_ad_entryUUID );
568                 if ( a ) {
569                         pc->uuids[pc->num].bv_val = pc->last;
570                         AC_MEMCPY( pc->uuids[pc->num].bv_val, a->a_nvals[0].bv_val,
571                                 pc->uuids[pc->num].bv_len );
572                         pc->num++;
573                         pc->last = pc->uuids[pc->num].bv_val;
574                         pc->uuids[pc->num].bv_val = NULL;
575                 }
576                 ret = LDAP_SUCCESS;
577                 if ( pc->num != SLAP_SYNCUUID_SET_SIZE )
578                         break;
579                 /* FALLTHRU */
580         case REP_RESULT:
581                 ret = rs->sr_err;
582                 if ( pc->num ) {
583                         ret = syncprov_sendinfo( op, rs, LDAP_TAG_SYNC_ID_SET, NULL,
584                                 0, pc->uuids, 0 );
585                         pc->uuids[pc->num].bv_val = pc->last;
586                         pc->num = 0;
587                         pc->last = pc->uuids[0].bv_val;
588                 }
589                 break;
590         default:
591                 break;
592         }
593         return ret;
594 }
595
596 static int
597 syncprov_findcsn( Operation *op, int mode )
598 {
599         slap_overinst           *on = (slap_overinst *)op->o_bd->bd_info;
600         syncprov_info_t         *si = on->on_bi.bi_private;
601
602         slap_callback cb = {0};
603         Operation fop;
604         SlapReply frs = { REP_RESULT };
605         char buf[LDAP_LUTIL_CSNSTR_BUFSIZE + STRLENOF("(entryCSN<=)")];
606         char cbuf[LDAP_LUTIL_CSNSTR_BUFSIZE];
607         struct berval fbuf, maxcsn;
608         Filter cf, af;
609         AttributeAssertion eq;
610         int i, rc = LDAP_SUCCESS;
611         fpres_cookie pcookie;
612         sync_control *srs;
613
614         if ( mode != FIND_MAXCSN ) {
615                 srs = op->o_controls[slap_cids.sc_LDAPsync];
616
617                 if ( srs->sr_state.ctxcsn->bv_len >= LDAP_LUTIL_CSNSTR_BUFSIZE ) {
618                         return LDAP_OTHER;
619                 }
620         }
621
622         fop = *op;
623         fop.o_sync_mode &= SLAP_CONTROL_MASK;   /* turn off sync_mode */
624
625         fbuf.bv_val = buf;
626         cf.f_ava = &eq;
627         cf.f_av_desc = slap_schema.si_ad_entryCSN;
628         cf.f_next = NULL;
629
630         fop.o_callback = &cb;
631         fop.ors_limit = NULL;
632         fop.ors_tlimit = SLAP_NO_LIMIT;
633         fop.ors_filter = &cf;
634         fop.ors_filterstr = fbuf;
635
636         switch( mode ) {
637         case FIND_MAXCSN:
638                 cf.f_choice = LDAP_FILTER_GE;
639                 cf.f_av_value = si->si_ctxcsn;
640                 fbuf.bv_len = sprintf( buf, "(entryCSN>=%s)",
641                         cf.f_av_value.bv_val );
642                 fop.ors_attrsonly = 0;
643                 fop.ors_attrs = csn_anlist;
644                 fop.ors_slimit = SLAP_NO_LIMIT;
645                 cb.sc_private = &maxcsn;
646                 cb.sc_response = findmax_cb;
647                 maxcsn.bv_val = cbuf;
648                 maxcsn.bv_len = 0;
649                 break;
650         case FIND_CSN:
651                 cf.f_choice = LDAP_FILTER_LE;
652                 cf.f_av_value = *srs->sr_state.ctxcsn;
653                 fbuf.bv_len = sprintf( buf, "(entryCSN<=%s)",
654                         cf.f_av_value.bv_val );
655                 fop.ors_attrsonly = 1;
656                 fop.ors_attrs = slap_anlist_no_attrs;
657                 fop.ors_slimit = 1;
658                 cb.sc_private = NULL;
659                 cb.sc_response = findcsn_cb;
660                 break;
661         case FIND_PRESENT:
662                 af.f_choice = LDAP_FILTER_AND;
663                 af.f_next = NULL;
664                 af.f_and = &cf;
665                 cf.f_choice = LDAP_FILTER_LE;
666                 cf.f_av_value = *srs->sr_state.ctxcsn;
667                 cf.f_next = op->ors_filter;
668                 fop.ors_filter = &af;
669                 filter2bv_x( &fop, fop.ors_filter, &fop.ors_filterstr );
670                 fop.ors_attrsonly = 0;
671                 fop.ors_attrs = uuid_anlist;
672                 fop.ors_slimit = SLAP_NO_LIMIT;
673                 /* We want pure entries, not referrals */
674                 fop.o_managedsait = SLAP_CONTROL_CRITICAL;
675                 cb.sc_private = &pcookie;
676                 cb.sc_response = findpres_cb;
677                 pcookie.num = 0;
678
679                 /* preallocate storage for a full set */
680                 pcookie.uuids = op->o_tmpalloc( (SLAP_SYNCUUID_SET_SIZE+1) *
681                         sizeof(struct berval) + SLAP_SYNCUUID_SET_SIZE * UUID_LEN,
682                         op->o_tmpmemctx );
683                 pcookie.last = (char *)(pcookie.uuids + SLAP_SYNCUUID_SET_SIZE+1);
684                 pcookie.uuids[0].bv_val = pcookie.last;
685                 pcookie.uuids[0].bv_len = UUID_LEN;
686                 for (i=1; i<SLAP_SYNCUUID_SET_SIZE; i++) {
687                         pcookie.uuids[i].bv_val = pcookie.uuids[i-1].bv_val + UUID_LEN;
688                         pcookie.uuids[i].bv_len = UUID_LEN;
689                 }
690                 break;
691         }
692
693         fop.o_bd->bd_info = on->on_info->oi_orig;
694         fop.o_bd->be_search( &fop, &frs );
695         fop.o_bd->bd_info = (BackendInfo *)on;
696
697         switch( mode ) {
698         case FIND_MAXCSN:
699                 if ( maxcsn.bv_len ) {
700                         strcpy( si->si_ctxcsnbuf, maxcsn.bv_val );
701                         si->si_ctxcsn.bv_len = maxcsn.bv_len;
702                 }
703                 break;
704         case FIND_CSN:
705                 /* If matching CSN was not found, invalidate the context. */
706                 if ( !cb.sc_private ) rc = LDAP_NO_SUCH_OBJECT;
707                 break;
708         case FIND_PRESENT:
709                 op->o_tmpfree( pcookie.uuids, op->o_tmpmemctx );
710                 op->o_tmpfree( fop.ors_filterstr.bv_val, op->o_tmpmemctx );
711                 break;
712         }
713
714         return rc;
715 }
716
717 /* Queue a persistent search response if still in Refresh stage */
718 static int
719 syncprov_qresp( opcookie *opc, syncops *so, int mode )
720 {
721         syncres *sr;
722
723         sr = ch_malloc(sizeof(syncres) + opc->suuid.bv_len + 1 +
724                 opc->sdn.bv_len + 1 + opc->sndn.bv_len + 1 + opc->sctxcsn.bv_len + 1 );
725         sr->s_next = NULL;
726         sr->s_dn.bv_val = (char *)(sr + 1);
727         sr->s_mode = mode;
728         sr->s_isreference = opc->sreference;
729         sr->s_ndn.bv_val = lutil_strcopy( sr->s_dn.bv_val, opc->sdn.bv_val );
730         *(sr->s_ndn.bv_val++) = '\0';
731         sr->s_uuid.bv_val = lutil_strcopy( sr->s_ndn.bv_val, opc->sndn.bv_val );
732         *(sr->s_uuid.bv_val++) = '\0';
733         sr->s_csn.bv_val = lutil_strcopy( sr->s_uuid.bv_val, opc->suuid.bv_val );
734
735         if ( !so->s_res ) {
736                 so->s_res = sr;
737         } else {
738                 so->s_restail->s_next = sr;
739         }
740         so->s_restail = sr;
741         ldap_pvt_thread_mutex_unlock( &so->s_mutex );
742         return LDAP_SUCCESS;
743 }
744
745 /* Send a persistent search response */
746 static int
747 syncprov_sendresp( Operation *op, opcookie *opc, syncops *so, Entry *e, int mode, int queue )
748 {
749         slap_overinst *on = opc->son;
750         syncprov_info_t *si = on->on_bi.bi_private;
751
752         SlapReply rs = { REP_SEARCH };
753         LDAPControl *ctrls[2];
754         struct berval cookie;
755         Entry e_uuid = {0};
756         Attribute a_uuid = {0};
757         Operation sop = *so->s_op;
758         Opheader ohdr;
759
760         ohdr = *sop.o_hdr;
761         sop.o_hdr = &ohdr;
762         sop.o_tmpmemctx = op->o_tmpmemctx;
763         sop.o_bd = op->o_bd;
764         sop.o_controls = op->o_controls;
765
766         if ( queue && (so->s_flags & PS_IS_REFRESHING) ) {
767                 ldap_pvt_thread_mutex_lock( &so->s_mutex );
768                 if ( so->s_flags & PS_IS_REFRESHING )
769                         return syncprov_qresp( opc, so, mode );
770                 ldap_pvt_thread_mutex_unlock( &so->s_mutex );
771         }
772
773         ctrls[1] = NULL;
774         slap_compose_sync_cookie( op, &cookie, &opc->sctxcsn,
775                 so->s_sid, so->s_rid );
776
777         e_uuid.e_attrs = &a_uuid;
778         a_uuid.a_desc = slap_schema.si_ad_entryUUID;
779         a_uuid.a_nvals = &opc->suuid;
780         rs.sr_err = syncprov_state_ctrl( &sop, &rs, &e_uuid,
781                 mode, ctrls, 0, 1, &cookie );
782
783         rs.sr_entry = e;
784         rs.sr_ctrls = ctrls;
785         switch( mode ) {
786         case LDAP_SYNC_ADD:
787                 if ( opc->sreference ) {
788                         rs.sr_ref = get_entry_referrals( &sop, e );
789                         send_search_reference( &sop, &rs );
790                         ber_bvarray_free( rs.sr_ref );
791                         break;
792                 }
793                 /* fallthru */
794         case LDAP_SYNC_MODIFY:
795                 rs.sr_attrs = sop.ors_attrs;
796                 send_search_entry( &sop, &rs );
797                 break;
798         case LDAP_SYNC_DELETE:
799                 e_uuid.e_attrs = NULL;
800                 e_uuid.e_name = opc->sdn;
801                 e_uuid.e_nname = opc->sndn;
802                 rs.sr_entry = &e_uuid;
803                 if ( opc->sreference ) {
804                         struct berval bv = BER_BVNULL;
805                         rs.sr_ref = &bv;
806                         send_search_reference( &sop, &rs );
807                 } else {
808                         send_search_entry( &sop, &rs );
809                 }
810                 break;
811         default:
812                 assert(0);
813         }
814         op->o_tmpfree( rs.sr_ctrls[0], op->o_tmpmemctx );
815         rs.sr_ctrls = NULL;
816         return rs.sr_err;
817 }
818
819 static void
820 syncprov_free_syncop( syncops *so )
821 {
822         syncres *sr, *srnext;
823         GroupAssertion *ga, *gnext;
824
825         ldap_pvt_thread_mutex_lock( &so->s_mutex );
826         so->s_inuse--;
827         if ( so->s_inuse > 0 ) {
828                 ldap_pvt_thread_mutex_unlock( &so->s_mutex );
829                 return;
830         }
831         ldap_pvt_thread_mutex_unlock( &so->s_mutex );
832         filter_free( so->s_op->ors_filter );
833         for ( ga = so->s_op->o_groups; ga; ga=gnext ) {
834                 gnext = ga->ga_next;
835                 ch_free( ga );
836         }
837         ch_free( so->s_op );
838         ch_free( so->s_base.bv_val );
839         for ( sr=so->s_res; sr; sr=srnext ) {
840                 srnext = sr->s_next;
841                 ch_free( sr );
842         }
843         ldap_pvt_thread_mutex_destroy( &so->s_mutex );
844         ch_free( so );
845 }
846
847 static int
848 syncprov_drop_psearch( syncops *so, int lock )
849 {
850         if ( lock )
851                 ldap_pvt_thread_mutex_lock( &so->s_op->o_conn->c_mutex );
852         so->s_op->o_conn->c_n_ops_executing--;
853         so->s_op->o_conn->c_n_ops_completed++;
854         LDAP_STAILQ_REMOVE( &so->s_op->o_conn->c_ops, so->s_op, slap_op,
855                 o_next );
856         if ( lock )
857                 ldap_pvt_thread_mutex_unlock( &so->s_op->o_conn->c_mutex );
858         syncprov_free_syncop( so );
859 }
860
861 static int
862 syncprov_op_abandon( Operation *op, SlapReply *rs )
863 {
864         slap_overinst           *on = (slap_overinst *)op->o_bd->bd_info;
865         syncprov_info_t         *si = on->on_bi.bi_private;
866         syncops *so, *soprev;
867
868         ldap_pvt_thread_mutex_lock( &si->si_ops_mutex );
869         for ( so=si->si_ops, soprev = (syncops *)&si->si_ops; so;
870                 soprev=so, so=so->s_next ) {
871                 if ( so->s_op->o_connid == op->o_connid &&
872                         so->s_op->o_msgid == op->orn_msgid ) {
873                                 so->s_op->o_abandon = 1;
874                                 soprev->s_next = so->s_next;
875                                 break;
876                 }
877         }
878         ldap_pvt_thread_mutex_unlock( &si->si_ops_mutex );
879         if ( so ) {
880                 /* Is this really a Cancel exop? */
881                 if ( op->o_tag != LDAP_REQ_ABANDON ) {
882                         rs->sr_err = LDAP_CANCELLED;
883                         send_ldap_result( so->s_op, rs );
884                 }
885                 /* Our cloned searches have no ctrls set.
886                  * we don't want to muck with real search ops
887                  * from the frontend.
888                  */
889                 if ( ! so->s_op->o_sync )
890                         syncprov_drop_psearch( so, 0 );
891         }
892         return SLAP_CB_CONTINUE;
893 }
894
895 /* Find which persistent searches are affected by this operation */
896 static void
897 syncprov_matchops( Operation *op, opcookie *opc, int saveit )
898 {
899         slap_overinst *on = opc->son;
900         syncprov_info_t         *si = on->on_bi.bi_private;
901
902         fbase_cookie fc;
903         syncops *ss, *sprev, *snext;
904         Entry *e;
905         Attribute *a;
906         int rc;
907         struct berval newdn;
908         int freefdn = 0;
909
910         fc.fdn = &op->o_req_ndn;
911         /* compute new DN */
912         if ( op->o_tag == LDAP_REQ_MODRDN && !saveit ) {
913                 struct berval pdn;
914                 if ( op->orr_nnewSup ) pdn = *op->orr_nnewSup;
915                 else dnParent( fc.fdn, &pdn );
916                 build_new_dn( &newdn, &pdn, &op->orr_nnewrdn, op->o_tmpmemctx );
917                 fc.fdn = &newdn;
918                 freefdn = 1;
919         }
920         if ( op->o_tag != LDAP_REQ_ADD ) {
921                 op->o_bd->bd_info = (BackendInfo *)on->on_info;
922                 rc = be_entry_get_rw( op, fc.fdn, NULL, NULL, 0, &e );
923                 op->o_bd->bd_info = (BackendInfo *)on;
924                 if ( rc ) return;
925         } else {
926                 e = op->ora_e;
927         }
928
929         /* Never replicate these */
930         if ( is_entry_syncConsumerSubentry( e )) {
931                 goto done;
932         }
933         if ( saveit ) {
934                 ber_dupbv_x( &opc->sdn, &e->e_name, op->o_tmpmemctx );
935                 ber_dupbv_x( &opc->sndn, &e->e_nname, op->o_tmpmemctx );
936                 opc->sreference = is_entry_referral( e );
937         }
938         if ( saveit || op->o_tag == LDAP_REQ_ADD ) {
939                 a = attr_find( e->e_attrs, slap_schema.si_ad_entryUUID );
940                 if ( a )
941                         ber_dupbv_x( &opc->suuid, &a->a_nvals[0], op->o_tmpmemctx );
942         }
943
944         ldap_pvt_thread_mutex_lock( &si->si_ops_mutex );
945         for (ss = si->si_ops, sprev = (syncops *)&si->si_ops; ss;
946                 sprev = ss, ss=snext)
947         {
948                 syncmatches *sm;
949                 int found = 0;
950
951                 snext = ss->s_next;
952                 /* validate base */
953                 fc.fss = ss;
954                 fc.fbase = 0;
955                 fc.fscope = 0;
956
957                 /* If the base of the search is missing, signal a refresh */
958                 rc = syncprov_findbase( op, &fc );
959                 if ( rc != LDAP_SUCCESS ) {
960                         SlapReply rs = {REP_RESULT};
961                         send_ldap_error( ss->s_op, &rs, LDAP_SYNC_REFRESH_REQUIRED,
962                                 "search base has changed" );
963                         sprev->s_next = snext;
964                         syncprov_drop_psearch( ss, 1 );
965                         continue;
966                 }
967
968                 /* If we're sending results now, look for this op in old matches */
969                 if ( !saveit ) {
970                         syncmatches *old;
971                         for ( sm=opc->smatches, old=(syncmatches *)&opc->smatches; sm;
972                                 old=sm, sm=sm->sm_next ) {
973                                 if ( sm->sm_op == ss ) {
974                                         found = 1;
975                                         old->sm_next = sm->sm_next;
976                                         op->o_tmpfree( sm, op->o_tmpmemctx );
977                                         break;
978                                 }
979                         }
980                 }
981
982                 /* check if current o_req_dn is in scope and matches filter */
983                 if ( fc.fscope && test_filter( op, e, ss->s_op->ors_filter ) ==
984                         LDAP_COMPARE_TRUE ) {
985                         if ( saveit ) {
986                                 sm = op->o_tmpalloc( sizeof(syncmatches), op->o_tmpmemctx );
987                                 sm->sm_next = opc->smatches;
988                                 sm->sm_op = ss;
989                                 ss->s_inuse++;
990                                 opc->smatches = sm;
991                         } else {
992                                 /* if found send UPDATE else send ADD */
993                                 syncprov_sendresp( op, opc, ss, e,
994                                         found ? LDAP_SYNC_MODIFY : LDAP_SYNC_ADD, 1 );
995                         }
996                 } else if ( !saveit && found ) {
997                         /* send DELETE */
998                         syncprov_sendresp( op, opc, ss, NULL, LDAP_SYNC_DELETE, 1 );
999                 }
1000         }
1001         ldap_pvt_thread_mutex_unlock( &si->si_ops_mutex );
1002 done:
1003         if ( op->o_tag != LDAP_REQ_ADD ) {
1004                 op->o_bd->bd_info = (BackendInfo *)on->on_info;
1005                 be_entry_release_r( op, e );
1006                 op->o_bd->bd_info = (BackendInfo *)on;
1007         }
1008         if ( freefdn ) {
1009                 op->o_tmpfree( fc.fdn->bv_val, op->o_tmpmemctx );
1010         }
1011 }
1012
1013 static int
1014 syncprov_op_cleanup( Operation *op, SlapReply *rs )
1015 {
1016         slap_callback *cb = op->o_callback;
1017         opcookie *opc = cb->sc_private;
1018         slap_overinst *on = opc->son;
1019         syncprov_info_t         *si = on->on_bi.bi_private;
1020         syncmatches *sm, *snext;
1021         modtarget *mt, mtdummy;
1022
1023         for (sm = opc->smatches; sm; sm=snext) {
1024                 snext = sm->sm_next;
1025                 syncprov_free_syncop( sm->sm_op );
1026                 op->o_tmpfree( sm, op->o_tmpmemctx );
1027         }
1028
1029         /* Remove op from lock table */
1030         mtdummy.mt_op = op;
1031         ldap_pvt_thread_mutex_lock( &si->si_mods_mutex );
1032         mt = avl_find( si->si_mods, &mtdummy, sp_avl_cmp );
1033         ldap_pvt_thread_mutex_unlock( &si->si_mods_mutex );
1034         if ( mt ) {
1035                 modinst *mi = mt->mt_mods;
1036
1037                 /* If there are more, promote the next one */
1038                 ldap_pvt_thread_mutex_lock( &mt->mt_mutex );
1039                 if ( mi->mi_next ) {
1040                         mt->mt_mods = mi->mi_next;
1041                         mt->mt_op = mt->mt_mods->mi_op;
1042                         ldap_pvt_thread_mutex_unlock( &mt->mt_mutex );
1043                 } else {
1044                         ldap_pvt_thread_mutex_lock( &si->si_mods_mutex );
1045                         avl_delete( &si->si_mods, mt, sp_avl_cmp );
1046                         ldap_pvt_thread_mutex_unlock( &si->si_mods_mutex );
1047                         ldap_pvt_thread_mutex_unlock( &mt->mt_mutex );
1048                         ldap_pvt_thread_mutex_destroy( &mt->mt_mutex );
1049                         ch_free( mt );
1050                 }
1051         }
1052         if ( !BER_BVISNULL( &opc->suuid ))
1053                 op->o_tmpfree( opc->suuid.bv_val, op->o_tmpmemctx );
1054         if ( !BER_BVISNULL( &opc->sndn ))
1055                 op->o_tmpfree( opc->sndn.bv_val, op->o_tmpmemctx );
1056         if ( !BER_BVISNULL( &opc->sdn ))
1057                 op->o_tmpfree( opc->sdn.bv_val, op->o_tmpmemctx );
1058         op->o_callback = cb->sc_next;
1059         op->o_tmpfree(cb, op->o_tmpmemctx);
1060 }
1061
1062 static void
1063 syncprov_checkpoint( Operation *op, SlapReply *rs, slap_overinst *on )
1064 {
1065         syncprov_info_t         *si = on->on_bi.bi_private;
1066         Modifications mod;
1067         Operation opm;
1068         struct berval bv[2];
1069         BackendInfo *orig;
1070         slap_callback cb = {0};
1071
1072         mod.sml_values = bv;
1073         bv[1].bv_val = NULL;
1074         bv[0] = si->si_ctxcsn;
1075         mod.sml_nvalues = NULL;
1076         mod.sml_desc = slap_schema.si_ad_contextCSN;
1077         mod.sml_op = LDAP_MOD_REPLACE;
1078         mod.sml_next = NULL;
1079
1080         cb.sc_response = slap_null_cb;
1081         opm = *op;
1082         opm.o_tag = LDAP_REQ_MODIFY;
1083         opm.o_callback = &cb;
1084         opm.orm_modlist = &mod;
1085         opm.o_req_dn = op->o_bd->be_suffix[0];
1086         opm.o_req_ndn = op->o_bd->be_nsuffix[0];
1087         orig = opm.o_bd->bd_info;
1088         opm.o_bd->bd_info = on->on_info->oi_orig;
1089         opm.o_bd->be_modify( &opm, rs );
1090 }
1091
1092 static void
1093 syncprov_add_slog( Operation *op, struct berval *csn )
1094 {
1095         opcookie *opc = op->o_callback->sc_private;
1096         slap_overinst *on = opc->son;
1097         syncprov_info_t         *si = on->on_bi.bi_private;
1098         sessionlog *sl;
1099         slog_entry *se;
1100
1101         for ( sl = si->si_logs; sl; sl=sl->sl_next ) {
1102                 /* Allocate a record. UUIDs are not NUL-terminated. */
1103                 se = ch_malloc( sizeof( slog_entry ) + opc->suuid.bv_len + 
1104                         csn->bv_len + 1 );
1105                 se->se_next = NULL;
1106                 se->se_tag = op->o_tag;
1107
1108                 se->se_uuid.bv_val = (char *)(se+1);
1109                 se->se_csn.bv_val = se->se_uuid.bv_val + opc->suuid.bv_len + 1;
1110                 AC_MEMCPY( se->se_uuid.bv_val, opc->suuid.bv_val, opc->suuid.bv_len );
1111                 se->se_uuid.bv_len = opc->suuid.bv_len;
1112
1113                 AC_MEMCPY( se->se_csn.bv_val, csn->bv_val, csn->bv_len );
1114                 se->se_csn.bv_val[csn->bv_len] = '\0';
1115                 se->se_csn.bv_len = csn->bv_len;
1116
1117                 ldap_pvt_thread_mutex_lock( &sl->sl_mutex );
1118                 if ( sl->sl_head ) {
1119                         sl->sl_tail->se_next = se;
1120                 } else {
1121                         sl->sl_head = se;
1122                 }
1123                 sl->sl_tail = se;
1124                 sl->sl_num++;
1125                 while ( sl->sl_num > sl->sl_size ) {
1126                         se = sl->sl_head;
1127                         sl->sl_head = se->se_next;
1128                         strcpy( sl->sl_mincsn.bv_val, se->se_csn.bv_val );
1129                         sl->sl_mincsn.bv_len = se->se_csn.bv_len;
1130                         ch_free( se );
1131                         sl->sl_num--;
1132                         if ( !sl->sl_head ) {
1133                                 sl->sl_tail = NULL;
1134                         }
1135                 }
1136                 ldap_pvt_thread_mutex_unlock( &sl->sl_mutex );
1137         }
1138 }
1139
1140 /* Just set a flag if we found the matching entry */
1141 static int
1142 playlog_cb( Operation *op, SlapReply *rs )
1143 {
1144         if ( rs->sr_type == REP_SEARCH ) {
1145                 op->o_callback->sc_private = (void *)1;
1146         }
1147         return rs->sr_err;
1148 }
1149
1150 /* enter with sl->sl_mutex locked, release before returning */
1151 static void
1152 syncprov_playlog( Operation *op, SlapReply *rs, sessionlog *sl,
1153         struct berval *oldcsn, struct berval *ctxcsn )
1154 {
1155         slap_overinst           *on = (slap_overinst *)op->o_bd->bd_info;
1156         syncprov_info_t         *si = on->on_bi.bi_private;
1157         slog_entry *se;
1158         int i, j, ndel, num, nmods, mmods;
1159         BerVarray uuids;
1160
1161         if ( !sl->sl_num ) {
1162                 ldap_pvt_thread_mutex_unlock( &sl->sl_mutex );
1163                 return;
1164         }
1165
1166         num = sl->sl_num;
1167         i = 0;
1168         nmods = 0;
1169
1170         uuids = op->o_tmpalloc( (num+1) * sizeof( struct berval ) +
1171                 num * UUID_LEN, op->o_tmpmemctx );
1172
1173         uuids[0].bv_val = (char *)(uuids + num + 1);
1174
1175         /* Make a copy of the relevant UUIDs. Put the Deletes up front
1176          * and everything else at the end. Do this first so we can
1177          * unlock the list mutex.
1178          */
1179         for ( se=sl->sl_head; se; se=se->se_next ) {
1180                 if ( ber_bvcmp( &se->se_csn, oldcsn ) < 0 ) continue;
1181                 if ( ber_bvcmp( &se->se_csn, ctxcsn ) > 0 ) break;
1182                 if ( se->se_tag == LDAP_REQ_DELETE ) {
1183                         j = i;
1184                         i++;
1185                 } else {
1186                         nmods++;
1187                         j = num - nmods;
1188                 }
1189                 uuids[j].bv_val = uuids[0].bv_val + (j * UUID_LEN);
1190                 AC_MEMCPY(uuids[j].bv_val, se->se_uuid.bv_val, UUID_LEN);
1191                 uuids[j].bv_len = UUID_LEN;
1192         }
1193         ldap_pvt_thread_mutex_unlock( &sl->sl_mutex );
1194
1195         ndel = i;
1196
1197         /* Mods must be validated to see if they belong in this delete set.
1198          */
1199
1200         mmods = nmods;
1201         /* Strip any duplicates */
1202         for ( i=0; i<nmods; i++ ) {
1203                 for ( j=0; j<ndel; j++ ) {
1204                         if ( bvmatch( &uuids[j], &uuids[num - 1 - i] )) {
1205                                 uuids[num - 1 - i].bv_len = 0;
1206                                 mmods --;
1207                                 break;
1208                         }
1209                 }
1210                 if ( uuids[num - 1 - i].bv_len == 0 ) continue;
1211                 for ( j=0; j<i; j++ ) {
1212                         if ( bvmatch( &uuids[num - 1 - j], &uuids[num - 1 - i] )) {
1213                                 uuids[num - 1 - i].bv_len = 0;
1214                                 mmods --;
1215                                 break;
1216                         }
1217                 }
1218         }
1219
1220         if ( mmods ) {
1221                 Operation fop;
1222                 SlapReply frs = { REP_RESULT };
1223                 int rc;
1224                 Filter mf, af;
1225                 AttributeAssertion eq;
1226                 slap_callback cb = {0};
1227
1228                 fop = *op;
1229
1230                 fop.o_sync_mode = 0;
1231                 fop.o_callback = &cb;
1232                 fop.ors_limit = NULL;
1233                 fop.ors_tlimit = SLAP_NO_LIMIT;
1234                 fop.ors_attrs = slap_anlist_all_attributes;
1235                 fop.ors_attrsonly = 0;
1236                 fop.o_managedsait = SLAP_CONTROL_CRITICAL;
1237
1238                 af.f_choice = LDAP_FILTER_AND;
1239                 af.f_next = NULL;
1240                 af.f_and = &mf;
1241                 mf.f_choice = LDAP_FILTER_EQUALITY;
1242                 mf.f_ava = &eq;
1243                 mf.f_av_desc = slap_schema.si_ad_entryUUID;
1244                 mf.f_next = fop.ors_filter;
1245
1246                 fop.ors_filter = &af;
1247
1248                 cb.sc_response = playlog_cb;
1249                 fop.o_bd->bd_info = on->on_info->oi_orig;
1250
1251                 for ( i=ndel; i<num; i++ ) {
1252                         if ( uuids[i].bv_len == 0 ) continue;
1253
1254                         mf.f_av_value = uuids[i];
1255                         cb.sc_private = NULL;
1256                         fop.ors_slimit = 1;
1257                         rc = fop.o_bd->be_search( &fop, &frs );
1258
1259                         /* If entry was not found, add to delete list */
1260                         if ( !cb.sc_private ) {
1261                                 uuids[ndel++] = uuids[i];
1262                         }
1263                 }
1264                 fop.o_bd->bd_info = (BackendInfo *)on;
1265         }
1266         if ( ndel ) {
1267                 uuids[ndel].bv_val = NULL;
1268                 syncprov_sendinfo( op, rs, LDAP_TAG_SYNC_ID_SET, NULL, 0, uuids, 1 );
1269         }
1270 }
1271
1272 static int
1273 syncprov_op_response( Operation *op, SlapReply *rs )
1274 {
1275         opcookie *opc = op->o_callback->sc_private;
1276         slap_overinst *on = opc->son;
1277         syncprov_info_t         *si = on->on_bi.bi_private;
1278         syncmatches *sm;
1279
1280         if ( rs->sr_err == LDAP_SUCCESS )
1281         {
1282                 struct berval maxcsn = BER_BVNULL, curcsn = BER_BVNULL;
1283                 char cbuf[LDAP_LUTIL_CSNSTR_BUFSIZE];
1284
1285                 /* Update our context CSN */
1286                 cbuf[0] = '\0';
1287                 ldap_pvt_thread_mutex_lock( &si->si_csn_mutex );
1288                 slap_get_commit_csn( op, &maxcsn, &curcsn );
1289                 if ( !BER_BVISNULL( &maxcsn ) ) {
1290                         strcpy( cbuf, maxcsn.bv_val );
1291                         if ( ber_bvcmp( &maxcsn, &si->si_ctxcsn ) > 0 ) {
1292                                 strcpy( si->si_ctxcsnbuf, cbuf );
1293                                 si->si_ctxcsn.bv_len = maxcsn.bv_len;
1294                         }
1295                 }
1296
1297                 si->si_numops++;
1298                 if ( si->si_chkops || si->si_chktime ) {
1299                         int do_check=0;
1300                         if ( si->si_chkops && si->si_numops >= si->si_chkops ) {
1301                                 do_check = 1;
1302                                 si->si_numops = 0;
1303                         }
1304                         if ( si->si_chktime &&
1305                                 (op->o_time - si->si_chklast >= si->si_chktime )) {
1306                                 do_check = 1;
1307                                 si->si_chklast = op->o_time;
1308                         }
1309                         if ( do_check ) {
1310                                 syncprov_checkpoint( op, rs, on );
1311                         }
1312                 }
1313                 ldap_pvt_thread_mutex_unlock( &si->si_csn_mutex );
1314
1315                 opc->sctxcsn.bv_len = maxcsn.bv_len;
1316                 opc->sctxcsn.bv_val = cbuf;
1317
1318                 /* Handle any persistent searches */
1319                 if ( si->si_ops ) {
1320                         switch(op->o_tag) {
1321                         case LDAP_REQ_ADD:
1322                         case LDAP_REQ_MODIFY:
1323                         case LDAP_REQ_MODRDN:
1324                         case LDAP_REQ_EXTENDED:
1325                                 syncprov_matchops( op, opc, 0 );
1326                                 break;
1327                         case LDAP_REQ_DELETE:
1328                                 /* for each match in opc->smatches:
1329                                  *   send DELETE msg
1330                                  */
1331                                 ldap_pvt_thread_mutex_lock( &si->si_ops_mutex );
1332                                 for ( sm = opc->smatches; sm; sm=sm->sm_next ) {
1333                                         if ( sm->sm_op->s_op->o_abandon )
1334                                                 continue;
1335                                         syncprov_sendresp( op, opc, sm->sm_op, NULL,
1336                                                 LDAP_SYNC_DELETE, 1 );
1337                                 }
1338                                 ldap_pvt_thread_mutex_unlock( &si->si_ops_mutex );
1339                                 break;
1340                         }
1341                 }
1342
1343                 /* Add any log records */
1344                 if ( si->si_logs && op->o_tag != LDAP_REQ_ADD ) {
1345                         syncprov_add_slog( op, &curcsn );
1346                 }
1347
1348         }
1349         return SLAP_CB_CONTINUE;
1350 }
1351
1352 /* We don't use a subentry to store the context CSN any more.
1353  * We expose the current context CSN as an operational attribute
1354  * of the suffix entry.
1355  */
1356 static int
1357 syncprov_op_compare( Operation *op, SlapReply *rs )
1358 {
1359         slap_overinst           *on = (slap_overinst *)op->o_bd->bd_info;
1360         syncprov_info_t         *si = on->on_bi.bi_private;
1361         int rc = SLAP_CB_CONTINUE;
1362
1363         if ( dn_match( &op->o_req_ndn, op->o_bd->be_nsuffix ) &&
1364                 op->oq_compare.rs_ava->aa_desc == slap_schema.si_ad_contextCSN )
1365         {
1366                 Entry e = {0};
1367                 Attribute a = {0};
1368                 struct berval bv[2];
1369
1370                 e.e_name = op->o_bd->be_suffix[0];
1371                 e.e_nname = op->o_bd->be_nsuffix[0];
1372
1373                 BER_BVZERO( &bv[1] );
1374                 bv[0] = si->si_ctxcsn;
1375
1376                 a.a_desc = slap_schema.si_ad_contextCSN;
1377                 a.a_vals = bv;
1378                 a.a_nvals = a.a_vals;
1379
1380                 ldap_pvt_thread_mutex_lock( &si->si_csn_mutex );
1381
1382                 rs->sr_err = access_allowed( op, &e, op->oq_compare.rs_ava->aa_desc,
1383                         &op->oq_compare.rs_ava->aa_value, ACL_COMPARE, NULL );
1384                 if ( ! rs->sr_err ) {
1385                         rs->sr_err = LDAP_INSUFFICIENT_ACCESS;
1386                         goto return_results;
1387                 }
1388
1389                 if ( get_assert( op ) &&
1390                         ( test_filter( op, &e, get_assertion( op ) ) != LDAP_COMPARE_TRUE ) )
1391                 {
1392                         rs->sr_err = LDAP_ASSERTION_FAILED;
1393                         goto return_results;
1394                 }
1395
1396
1397                 rs->sr_err = LDAP_COMPARE_FALSE;
1398
1399                 if ( value_find_ex( op->oq_compare.rs_ava->aa_desc,
1400                         SLAP_MR_ATTRIBUTE_VALUE_NORMALIZED_MATCH |
1401                                 SLAP_MR_ASSERTED_VALUE_NORMALIZED_MATCH,
1402                                 a.a_nvals, &op->oq_compare.rs_ava->aa_value, op->o_tmpmemctx ) == 0 )
1403                 {
1404                         rs->sr_err = LDAP_COMPARE_TRUE;
1405                 }
1406
1407 return_results:;
1408
1409                 ldap_pvt_thread_mutex_unlock( &si->si_csn_mutex );
1410
1411                 send_ldap_result( op, rs );
1412
1413                 if( rs->sr_err == LDAP_COMPARE_FALSE || rs->sr_err == LDAP_COMPARE_TRUE ) {
1414                         rs->sr_err = LDAP_SUCCESS;
1415                 }
1416                 rc = rs->sr_err;
1417         }
1418
1419         return rc;
1420 }
1421
1422 static int
1423 syncprov_op_mod( Operation *op, SlapReply *rs )
1424 {
1425         slap_overinst           *on = (slap_overinst *)op->o_bd->bd_info;
1426         syncprov_info_t         *si = on->on_bi.bi_private;
1427
1428         slap_callback *cb = op->o_tmpcalloc(1, sizeof(slap_callback)+
1429                 sizeof(opcookie) +
1430                 (si->si_ops ? sizeof(modinst) : 0 ),
1431                 op->o_tmpmemctx);
1432         opcookie *opc = (opcookie *)(cb+1);
1433         opc->son = on;
1434         cb->sc_response = syncprov_op_response;
1435         cb->sc_cleanup = syncprov_op_cleanup;
1436         cb->sc_private = opc;
1437         cb->sc_next = op->o_callback;
1438         op->o_callback = cb;
1439
1440         /* If there are active persistent searches, lock this operation.
1441          * See seqmod.c for the locking logic on its own.
1442          */
1443         if ( si->si_ops ) {
1444                 modtarget *mt, mtdummy;
1445                 modinst *mi;
1446
1447                 mi = (modinst *)(opc+1);
1448                 mi->mi_op = op;
1449
1450                 /* See if we're already modifying this entry... */
1451                 mtdummy.mt_op = op;
1452                 ldap_pvt_thread_mutex_lock( &si->si_mods_mutex );
1453                 mt = avl_find( si->si_mods, &mtdummy, sp_avl_cmp );
1454                 if ( mt ) {
1455                         ldap_pvt_thread_mutex_lock( &mt->mt_mutex );
1456                         ldap_pvt_thread_mutex_unlock( &si->si_mods_mutex );
1457                         mt->mt_tail->mi_next = mi;
1458                         mt->mt_tail = mi;
1459                         /* wait for this op to get to head of list */
1460                         while ( mt->mt_mods != mi ) {
1461                                 ldap_pvt_thread_mutex_unlock( &mt->mt_mutex );
1462                                 ldap_pvt_thread_yield();
1463                                 ldap_pvt_thread_mutex_lock( &mt->mt_mutex );
1464                         }
1465                         ldap_pvt_thread_mutex_unlock( &mt->mt_mutex );
1466                 } else {
1467                         /* Record that we're modifying this entry now */
1468                         mt = ch_malloc( sizeof(modtarget) );
1469                         mt->mt_mods = mi;
1470                         mt->mt_tail = mi;
1471                         mt->mt_op = mi->mi_op;
1472                         ldap_pvt_thread_mutex_init( &mt->mt_mutex );
1473                         avl_insert( &si->si_mods, mt, sp_avl_cmp, avl_dup_error );
1474                         ldap_pvt_thread_mutex_unlock( &si->si_mods_mutex );
1475                 }
1476         }
1477
1478         if (( si->si_ops || si->si_logs ) && op->o_tag != LDAP_REQ_ADD )
1479                 syncprov_matchops( op, opc, 1 );
1480                 
1481
1482         return SLAP_CB_CONTINUE;
1483 }
1484
1485 static int
1486 syncprov_op_extended( Operation *op, SlapReply *rs )
1487 {
1488         if ( exop_is_write( op ))
1489                 return syncprov_op_mod( op, rs );
1490
1491         return SLAP_CB_CONTINUE;
1492 }
1493
1494 typedef struct searchstate {
1495         slap_overinst *ss_on;
1496         syncops *ss_so;
1497         int ss_present;
1498 } searchstate;
1499
1500 static int
1501 syncprov_search_cleanup( Operation *op, SlapReply *rs )
1502 {
1503         if ( rs->sr_ctrls ) {
1504                 op->o_tmpfree( rs->sr_ctrls[0], op->o_tmpmemctx );
1505                 op->o_tmpfree( rs->sr_ctrls, op->o_tmpmemctx );
1506                 rs->sr_ctrls = NULL;
1507         }
1508         return 0;
1509 }
1510
1511 static void
1512 syncprov_detach_op( Operation *op, syncops *so )
1513 {
1514         Operation *op2;
1515         int i, alen = 0;
1516         size_t size;
1517         char *ptr;
1518         GroupAssertion *g1, *g2;
1519
1520         /* count the search attrs */
1521         for (i=0; op->ors_attrs && !BER_BVISNULL( &op->ors_attrs[i].an_name ); i++) {
1522                 alen += op->ors_attrs[i].an_name.bv_len + 1;
1523         }
1524         /* Make a new copy of the operation */
1525         size = sizeof(Operation) + sizeof(Opheader) +
1526                 (i ? ( (i+1) * sizeof(AttributeName) + alen) : 0) +
1527                 op->o_req_dn.bv_len + 1 +
1528                 op->o_req_ndn.bv_len + 1 +
1529                 op->o_ndn.bv_len + 1 +
1530                 so->s_filterstr.bv_len + 1;
1531         op2 = (Operation *)ch_calloc( 1, size );
1532         op2->o_hdr = (Opheader *)(op2+1);
1533
1534         /* Copy the fields we care about explicitly, leave the rest alone */
1535         *op2->o_hdr = *op->o_hdr;
1536         op2->o_tag = op->o_tag;
1537         op2->o_time = op->o_time;
1538         op2->o_bd = op->o_bd;
1539         op2->o_request = op->o_request;
1540
1541         if ( i ) {
1542                 op2->ors_attrs = (AttributeName *)(op2->o_hdr + 1);
1543                 ptr = (char *)(op2->ors_attrs+i+1);
1544                 for (i=0; !BER_BVISNULL( &op->ors_attrs[i].an_name ); i++) {
1545                         op2->ors_attrs[i] = op->ors_attrs[i];
1546                         op2->ors_attrs[i].an_name.bv_val = ptr;
1547                         ptr = lutil_strcopy( ptr, op->ors_attrs[i].an_name.bv_val ) + 1;
1548                 }
1549                 BER_BVZERO( &op2->ors_attrs[i].an_name );
1550         } else {
1551                 ptr = (char *)(op2->o_hdr + 1);
1552         }
1553         op2->o_authz = op->o_authz;
1554         op2->o_ndn.bv_val = ptr;
1555         ptr = lutil_strcopy(ptr, op->o_ndn.bv_val) + 1;
1556         op2->o_dn = op2->o_ndn;
1557         op2->o_req_dn.bv_len = op->o_req_dn.bv_len;
1558         op2->o_req_dn.bv_val = ptr;
1559         ptr = lutil_strcopy(ptr, op->o_req_dn.bv_val) + 1;
1560         op2->o_req_ndn.bv_len = op->o_req_ndn.bv_len;
1561         op2->o_req_ndn.bv_val = ptr;
1562         ptr = lutil_strcopy(ptr, op->o_req_ndn.bv_val) + 1;
1563         op2->ors_filterstr.bv_val = ptr;
1564         strcpy( ptr, so->s_filterstr.bv_val );
1565         op2->ors_filterstr.bv_len = so->s_filterstr.bv_len;
1566         op2->ors_filter = str2filter( ptr );
1567         so->s_op = op2;
1568
1569         /* Copy any cached group ACLs individually */
1570         op2->o_groups = NULL;
1571         for ( g1=op->o_groups; g1; g1=g1->ga_next ) {
1572                 g2 = ch_malloc( sizeof(GroupAssertion) + g1->ga_len );
1573                 *g2 = *g1;
1574                 strcpy( g2->ga_ndn, g1->ga_ndn );
1575                 g2->ga_next = op2->o_groups;
1576                 op2->o_groups = g2;
1577         }
1578
1579         /* Add op2 to conn so abandon will find us */
1580         ldap_pvt_thread_mutex_lock( &op->o_conn->c_mutex );
1581         op->o_conn->c_n_ops_executing++;
1582         op->o_conn->c_n_ops_completed--;
1583         LDAP_STAILQ_INSERT_TAIL( &op->o_conn->c_ops, op2, o_next );
1584         ldap_pvt_thread_mutex_unlock( &op->o_conn->c_mutex );
1585 }
1586
1587 static int
1588 syncprov_search_response( Operation *op, SlapReply *rs )
1589 {
1590         searchstate *ss = op->o_callback->sc_private;
1591         slap_overinst *on = ss->ss_on;
1592         syncprov_info_t         *si = on->on_bi.bi_private;
1593         sync_control *srs = op->o_controls[slap_cids.sc_LDAPsync];
1594
1595         if ( rs->sr_type == REP_SEARCH || rs->sr_type == REP_SEARCHREF ) {
1596                 int i;
1597                 /* If we got a referral without a referral object, there's
1598                  * something missing that we cannot replicate. Just ignore it.
1599                  * The consumer will abort because we didn't send the expected
1600                  * control.
1601                  */
1602                 if ( !rs->sr_entry ) {
1603                         assert( rs->sr_entry );
1604                         Debug( LDAP_DEBUG_ANY, "bogus referral in context\n",0,0,0 );
1605                         return SLAP_CB_CONTINUE;
1606                 }
1607                 if ( srs->sr_state.ctxcsn ) {
1608                         Attribute *a = attr_find( rs->sr_entry->e_attrs,
1609                                 slap_schema.si_ad_entryCSN );
1610                         /* Don't send the ctx entry twice */
1611                         if ( bvmatch( &a->a_nvals[0], srs->sr_state.ctxcsn ))
1612                                 return LDAP_SUCCESS;
1613                 }
1614                 rs->sr_ctrls = op->o_tmpalloc( sizeof(LDAPControl *)*2,
1615                         op->o_tmpmemctx );
1616                 rs->sr_ctrls[1] = NULL;
1617                 rs->sr_err = syncprov_state_ctrl( op, rs, rs->sr_entry,
1618                         LDAP_SYNC_ADD, rs->sr_ctrls, 0, 0, NULL );
1619         } else if ( rs->sr_type == REP_RESULT && rs->sr_err == LDAP_SUCCESS ) {
1620                 struct berval cookie;
1621
1622                 slap_compose_sync_cookie( op, &cookie,
1623                         &op->ors_filter->f_and->f_ava->aa_value,
1624                         srs->sr_state.sid, srs->sr_state.rid );
1625
1626                 /* Is this a regular refresh? */
1627                 if ( !ss->ss_so ) {
1628                         rs->sr_ctrls = op->o_tmpalloc( sizeof(LDAPControl *)*2,
1629                                 op->o_tmpmemctx );
1630                         rs->sr_ctrls[1] = NULL;
1631                         rs->sr_err = syncprov_done_ctrl( op, rs, rs->sr_ctrls,
1632                                 0, 1, &cookie, ss->ss_present ?  LDAP_SYNC_REFRESH_PRESENTS :
1633                                         LDAP_SYNC_REFRESH_DELETES );
1634                 } else {
1635                         int locked = 0;
1636                 /* It's RefreshAndPersist, transition to Persist phase */
1637                         syncprov_sendinfo( op, rs, ( ss->ss_present && rs->sr_nentries ) ?
1638                                 LDAP_TAG_SYNC_REFRESH_PRESENT : LDAP_TAG_SYNC_REFRESH_DELETE,
1639                                 &cookie, 1, NULL, 0 );
1640                         /* Flush any queued persist messages */
1641                         if ( ss->ss_so->s_res ) {
1642                                 syncres *sr, *srnext;
1643                                 Entry *e;
1644                                 opcookie opc;
1645
1646                                 opc.son = on;
1647                                 ldap_pvt_thread_mutex_lock( &ss->ss_so->s_mutex );
1648                                 locked = 1;
1649                                 for (sr = ss->ss_so->s_res; sr; sr=srnext) {
1650                                         int rc = LDAP_SUCCESS;
1651                                         srnext = sr->s_next;
1652                                         opc.sdn = sr->s_dn;
1653                                         opc.sndn = sr->s_ndn;
1654                                         opc.suuid = sr->s_uuid;
1655                                         opc.sctxcsn = sr->s_csn;
1656                                         opc.sreference = sr->s_isreference;
1657                                         e = NULL;
1658
1659                                         if ( sr->s_mode != LDAP_SYNC_DELETE ) {
1660                                                 op->o_bd->bd_info = (BackendInfo *)on->on_info;
1661                                                 rc = be_entry_get_rw( op, &opc.sndn, NULL, NULL, 0, &e );
1662                                                 op->o_bd->bd_info = (BackendInfo *)on;
1663                                         }
1664                                         if ( rc == LDAP_SUCCESS )
1665                                                 syncprov_sendresp( op, &opc, ss->ss_so, e,
1666                                                         sr->s_mode, 0 );
1667
1668                                         if ( e ) {
1669                                                 op->o_bd->bd_info = (BackendInfo *)on->on_info;
1670                                                 be_entry_release_r( op, e );
1671                                                 op->o_bd->bd_info = (BackendInfo *)on;
1672                                         }
1673                                         ch_free( sr );
1674                                 }
1675                                 ss->ss_so->s_res = NULL;
1676                                 ss->ss_so->s_restail = NULL;
1677                         }
1678
1679                         /* Turn off the refreshing flag */
1680                         ss->ss_so->s_flags ^= PS_IS_REFRESHING;
1681                         if ( locked )
1682                                 ldap_pvt_thread_mutex_unlock( &ss->ss_so->s_mutex );
1683
1684                         /* Detach this Op from frontend control */
1685                         syncprov_detach_op( op, ss->ss_so );
1686
1687                         return LDAP_SUCCESS;
1688                 }
1689         }
1690
1691         return SLAP_CB_CONTINUE;
1692 }
1693
1694 static int
1695 syncprov_op_search( Operation *op, SlapReply *rs )
1696 {
1697         slap_overinst           *on = (slap_overinst *)op->o_bd->bd_info;
1698         syncprov_info_t         *si = (syncprov_info_t *)on->on_bi.bi_private;
1699         slap_callback   *cb;
1700         int gotstate = 0, nochange = 0, do_present = 1;
1701         Filter *fand, *fava;
1702         syncops *sop = NULL;
1703         searchstate *ss;
1704         sync_control *srs;
1705         struct berval ctxcsn;
1706         char csnbuf[LDAP_LUTIL_CSNSTR_BUFSIZE];
1707
1708         if ( !(op->o_sync_mode & SLAP_SYNC_REFRESH) ) return SLAP_CB_CONTINUE;
1709
1710         if ( op->ors_deref & LDAP_DEREF_SEARCHING ) {
1711                 send_ldap_error( op, rs, LDAP_PROTOCOL_ERROR, "illegal value for derefAliases" );
1712                 return rs->sr_err;
1713         }
1714
1715         srs = op->o_controls[slap_cids.sc_LDAPsync];
1716
1717         /* If this is a persistent search, set it up right away */
1718         if ( op->o_sync_mode & SLAP_SYNC_PERSIST ) {
1719                 syncops so = {0};
1720                 fbase_cookie fc;
1721                 opcookie opc;
1722                 slap_callback sc;
1723
1724                 fc.fss = &so;
1725                 fc.fbase = 0;
1726                 so.s_eid = NOID;
1727                 so.s_op = op;
1728                 so.s_flags = PS_IS_REFRESHING;
1729                 /* syncprov_findbase expects to be called as a callback... */
1730                 sc.sc_private = &opc;
1731                 opc.son = on;
1732                 cb = op->o_callback;
1733                 op->o_callback = &sc;
1734                 rs->sr_err = syncprov_findbase( op, &fc );
1735                 op->o_callback = cb;
1736
1737                 if ( rs->sr_err != LDAP_SUCCESS ) {
1738                         send_ldap_result( op, rs );
1739                         return rs->sr_err;
1740                 }
1741                 sop = ch_malloc( sizeof( syncops ));
1742                 *sop = so;
1743                 ldap_pvt_thread_mutex_init( &sop->s_mutex );
1744                 sop->s_sid = srs->sr_state.sid;
1745                 sop->s_rid = srs->sr_state.rid;
1746                 sop->s_inuse = 1;
1747
1748                 ldap_pvt_thread_mutex_lock( &si->si_ops_mutex );
1749                 sop->s_next = si->si_ops;
1750                 si->si_ops = sop;
1751                 ldap_pvt_thread_mutex_unlock( &si->si_ops_mutex );
1752         }
1753
1754         /* snapshot the ctxcsn */
1755         ldap_pvt_thread_mutex_lock( &si->si_csn_mutex );
1756         strcpy( csnbuf, si->si_ctxcsnbuf );
1757         ctxcsn.bv_len = si->si_ctxcsn.bv_len;
1758         ldap_pvt_thread_mutex_unlock( &si->si_csn_mutex );
1759         ctxcsn.bv_val = csnbuf;
1760         
1761         /* If we have a cookie, handle the PRESENT lookups */
1762         if ( srs->sr_state.ctxcsn ) {
1763                 sessionlog *sl;
1764                 int valid = 0;
1765
1766                 /* Is the CSN in a valid format? */
1767                 /* FIXME: should use csnValidate when that is implemented */
1768                 while (!valid) {
1769                         char *ptr;
1770                         struct berval timestamp;
1771                         slap_syntax_validate_func *validate;
1772                         AttributeDescription *ad = slap_schema.si_ad_modifyTimestamp;
1773
1774                         if ( srs->sr_state.ctxcsn->bv_len >= LDAP_LUTIL_CSNSTR_BUFSIZE )
1775                                 break;
1776                         ptr = strchr( srs->sr_state.ctxcsn->bv_val, '#' );
1777                         if ( !ptr )
1778                                 break;
1779                         timestamp.bv_val = srs->sr_state.ctxcsn->bv_val;
1780                         timestamp.bv_len = ptr - timestamp.bv_val;
1781                         validate = ad->ad_type->sat_syntax->ssyn_validate;
1782                         if ( validate( ad->ad_type->sat_syntax, &timestamp ))
1783                                 break;
1784                         valid = 1;
1785                         break;
1786                 }
1787                 /* Skip any present searches, there's nothing to compare */
1788                 if ( !valid ) {
1789                         goto shortcut;
1790                 }
1791                 /* If just Refreshing and nothing has changed, shortcut it */
1792                 if ( bvmatch( srs->sr_state.ctxcsn, &ctxcsn )) {
1793                         nochange = 1;
1794                         if ( !(op->o_sync_mode & SLAP_SYNC_PERSIST) ) {
1795                                 LDAPControl     *ctrls[2];
1796
1797                                 ctrls[0] = NULL;
1798                                 ctrls[1] = NULL;
1799                                 syncprov_done_ctrl( op, rs, ctrls, 0, 0,
1800                                         NULL, LDAP_SYNC_REFRESH_DELETES );
1801                                 rs->sr_ctrls = ctrls;
1802                                 rs->sr_err = LDAP_SUCCESS;
1803                                 send_ldap_result( op, rs );
1804                                 rs->sr_ctrls = NULL;
1805                                 return rs->sr_err;
1806                         }
1807                         goto shortcut;
1808                 }
1809                 /* Do we have a sessionlog for this search? */
1810                 for ( sl=si->si_logs; sl; sl=sl->sl_next )
1811                         if ( sl->sl_sid == srs->sr_state.sid ) break;
1812                 if ( sl ) {
1813                         ldap_pvt_thread_mutex_lock( &sl->sl_mutex );
1814                         if ( ber_bvcmp( srs->sr_state.ctxcsn, &sl->sl_mincsn ) >= 0 ) {
1815                                 do_present = 0;
1816                                 /* mutex is unlocked in playlog */
1817                                 syncprov_playlog( op, rs, sl, srs->sr_state.ctxcsn, &ctxcsn );
1818                         } else {
1819                                 ldap_pvt_thread_mutex_unlock( &sl->sl_mutex );
1820                         }
1821                 }
1822                 /* Is the CSN still present in the database? */
1823                 if ( syncprov_findcsn( op, FIND_CSN ) != LDAP_SUCCESS ) {
1824                         /* No, so a reload is required */
1825 #if 0           /* the consumer doesn't seem to send this hint */
1826                         if ( op->o_sync_rhint == 0 ) {
1827                                 send_ldap_error( op, rs, LDAP_SYNC_REFRESH_REQUIRED, "sync cookie is stale" );
1828                                 return rs->sr_err;
1829                         }
1830 #endif
1831                 } else {
1832                         gotstate = 1;
1833                         /* If changed and doing Present lookup, send Present UUIDs */
1834                         if ( do_present && syncprov_findcsn( op, FIND_PRESENT ) !=
1835                                 LDAP_SUCCESS ) {
1836                                 send_ldap_result( op, rs );
1837                                 return rs->sr_err;
1838                         }
1839                 }
1840         }
1841
1842 shortcut:
1843         /* Append CSN range to search filter, save original filter
1844          * for persistent search evaluation
1845          */
1846         if ( sop ) {
1847                 sop->s_filterstr= op->ors_filterstr;
1848         }
1849
1850         fand = op->o_tmpalloc( sizeof(Filter), op->o_tmpmemctx );
1851         fand->f_choice = LDAP_FILTER_AND;
1852         fand->f_next = NULL;
1853         fava = op->o_tmpalloc( sizeof(Filter), op->o_tmpmemctx );
1854         fava->f_choice = LDAP_FILTER_LE;
1855         fava->f_ava = op->o_tmpalloc( sizeof(AttributeAssertion), op->o_tmpmemctx );
1856         fava->f_ava->aa_desc = slap_schema.si_ad_entryCSN;
1857         ber_dupbv_x( &fava->f_ava->aa_value, &ctxcsn, op->o_tmpmemctx );
1858         fand->f_and = fava;
1859         if ( gotstate ) {
1860                 fava->f_next = op->o_tmpalloc( sizeof(Filter), op->o_tmpmemctx );
1861                 fava = fava->f_next;
1862                 fava->f_choice = LDAP_FILTER_GE;
1863                 fava->f_ava = op->o_tmpalloc( sizeof(AttributeAssertion), op->o_tmpmemctx );
1864                 fava->f_ava->aa_desc = slap_schema.si_ad_entryCSN;
1865                 ber_dupbv_x( &fava->f_ava->aa_value, srs->sr_state.ctxcsn, op->o_tmpmemctx );
1866         }
1867         fava->f_next = op->ors_filter;
1868         op->ors_filter = fand;
1869         filter2bv_x( op, op->ors_filter, &op->ors_filterstr );
1870
1871         /* Let our callback add needed info to returned entries */
1872         cb = op->o_tmpcalloc(1, sizeof(slap_callback)+sizeof(searchstate), op->o_tmpmemctx);
1873         ss = (searchstate *)(cb+1);
1874         ss->ss_on = on;
1875         ss->ss_so = sop;
1876         ss->ss_present = do_present;
1877         cb->sc_response = syncprov_search_response;
1878         cb->sc_cleanup = syncprov_search_cleanup;
1879         cb->sc_private = ss;
1880         cb->sc_next = op->o_callback;
1881         op->o_callback = cb;
1882
1883 #if 0   /* I don't think we need to shortcircuit back-bdb any more */
1884         op->o_sync_mode &= SLAP_CONTROL_MASK;
1885 #endif
1886
1887         /* If this is a persistent search and no changes were reported during
1888          * the refresh phase, just invoke the response callback to transition
1889          * us into persist phase
1890          */
1891         if ( nochange ) {
1892                 rs->sr_err = LDAP_SUCCESS;
1893                 rs->sr_nentries = 0;
1894                 send_ldap_result( op, rs );
1895                 return rs->sr_err;
1896         }
1897         return SLAP_CB_CONTINUE;
1898 }
1899
1900 static int
1901 syncprov_operational(
1902         Operation *op,
1903         SlapReply *rs )
1904 {
1905         slap_overinst           *on = (slap_overinst *)op->o_bd->bd_info;
1906         syncprov_info_t         *si = (syncprov_info_t *)on->on_bi.bi_private;
1907
1908         if ( rs->sr_entry &&
1909                 dn_match( &rs->sr_entry->e_nname, op->o_bd->be_nsuffix )) {
1910
1911                 if ( SLAP_OPATTRS( rs->sr_attr_flags ) ||
1912                         ad_inlist( slap_schema.si_ad_contextCSN, rs->sr_attrs )) {
1913                         Attribute *a, **ap = NULL;
1914
1915                         for ( a=rs->sr_entry->e_attrs; a; a=a->a_next ) {
1916                                 if ( a->a_desc == slap_schema.si_ad_contextCSN )
1917                                         break;
1918                         }
1919
1920                         if ( !a ) {
1921                                 for ( ap = &rs->sr_operational_attrs; *ap; ap=&(*ap)->a_next );
1922
1923                                 a = ch_malloc( sizeof(Attribute));
1924                                 a->a_desc = slap_schema.si_ad_contextCSN;
1925                                 a->a_vals = ch_malloc( 2 * sizeof(struct berval));
1926                                 a->a_vals[1].bv_val = NULL;
1927                                 a->a_nvals = a->a_vals;
1928                                 a->a_next = NULL;
1929                                 a->a_flags = 0;
1930                                 *ap = a;
1931                         }
1932
1933                         ldap_pvt_thread_mutex_lock( &si->si_csn_mutex );
1934                         if ( !ap ) {
1935                                 strcpy( a->a_vals[0].bv_val, si->si_ctxcsnbuf );
1936                         } else {
1937                                 ber_dupbv( &a->a_vals[0], &si->si_ctxcsn );
1938                         }
1939                         ldap_pvt_thread_mutex_unlock( &si->si_csn_mutex );
1940                 }
1941         }
1942         return SLAP_CB_CONTINUE;
1943 }
1944
1945 static int
1946 syncprov_db_config(
1947         BackendDB       *be,
1948         const char      *fname,
1949         int             lineno,
1950         int             argc,
1951         char    **argv
1952 )
1953 {
1954         slap_overinst           *on = (slap_overinst *)be->bd_info;
1955         syncprov_info_t         *si = (syncprov_info_t *)on->on_bi.bi_private;
1956
1957         if ( strcasecmp( argv[ 0 ], "syncprov-checkpoint" ) == 0 ) {
1958                 if ( argc != 3 ) {
1959                         fprintf( stderr, "%s: line %d: wrong number of arguments in "
1960                                 "\"syncprov-checkpoint <ops> <minutes>\"\n", fname, lineno );
1961                         return -1;
1962                 }
1963                 si->si_chkops = atoi( argv[1] );
1964                 si->si_chktime = atoi( argv[2] ) * 60;
1965                 return 0;
1966
1967         } else if ( strcasecmp( argv[0], "syncprov-sessionlog" ) == 0 ) {
1968                 sessionlog *sl;
1969                 int sid, size;
1970                 if ( argc != 3 ) {
1971                         fprintf( stderr, "%s: line %d: wrong number of arguments in "
1972                                 "\"syncprov-sessionlog <sid> <size>\"\n", fname, lineno );
1973                         return -1;
1974                 }
1975                 sid = atoi( argv[1] );
1976                 if ( sid < 0 || sid > 999 ) {
1977                         fprintf( stderr,
1978                                 "%s: line %d: session log id %d is out of range [0..999]\n",
1979                                 fname, lineno, sid );
1980                         return -1;
1981                 }
1982                 size = atoi( argv[2] );
1983                 if ( size < 0 ) {
1984                         fprintf( stderr,
1985                                 "%s: line %d: session log size %d is negative\n",
1986                                 fname, lineno, size );
1987                         return -1;
1988                 }
1989                 for ( sl = si->si_logs; sl; sl=sl->sl_next ) {
1990                         if ( sl->sl_sid == sid ) {
1991                                 sl->sl_size = size;
1992                                 break;
1993                         }
1994                 }
1995                 if ( !sl ) {
1996                         sl = ch_malloc( sizeof( sessionlog ) + LDAP_LUTIL_CSNSTR_BUFSIZE );
1997                         sl->sl_mincsn.bv_val = (char *)(sl+1);
1998                         sl->sl_mincsn.bv_len = 0;
1999                         sl->sl_sid = sid;
2000                         sl->sl_size = size;
2001                         sl->sl_num = 0;
2002                         sl->sl_head = sl->sl_tail = NULL;
2003                         sl->sl_next = si->si_logs;
2004                         ldap_pvt_thread_mutex_init( &sl->sl_mutex );
2005                         si->si_logs = sl;
2006                 }
2007                 return 0;
2008         }
2009
2010         return SLAP_CONF_UNKNOWN;
2011 }
2012
2013 /* Cheating - we have no thread pool context for these functions,
2014  * so make one.
2015  */
2016 typedef struct thread_keys {
2017         void *key;
2018         void *data;
2019         ldap_pvt_thread_pool_keyfree_t *xfree;
2020 } thread_keys;
2021
2022 #define MAXKEYS 32
2023 /* A fake thread context */
2024 static thread_keys thrctx[MAXKEYS];
2025
2026 /* Read any existing contextCSN from the underlying db.
2027  * Then search for any entries newer than that. If no value exists,
2028  * just generate it. Cache whatever result.
2029  */
2030 static int
2031 syncprov_db_open(
2032     BackendDB *be
2033 )
2034 {
2035         slap_overinst   *on = (slap_overinst *) be->bd_info;
2036         syncprov_info_t *si = (syncprov_info_t *)on->on_bi.bi_private;
2037
2038         Connection conn;
2039         char opbuf[OPERATION_BUFFER_SIZE];
2040         char ctxcsnbuf[LDAP_LUTIL_CSNSTR_BUFSIZE];
2041         Operation *op = (Operation *)opbuf;
2042         Entry *e;
2043         Attribute *a;
2044         int rc;
2045
2046         connection_fake_init( &conn, op, thrctx );
2047         op->o_bd = be;
2048         op->o_dn = be->be_rootdn;
2049         op->o_ndn = be->be_rootndn;
2050
2051         ctxcsnbuf[0] = '\0';
2052
2053         op->o_bd->bd_info = on->on_info->oi_orig;
2054         rc = be_entry_get_rw( op, be->be_nsuffix, NULL,
2055                 slap_schema.si_ad_contextCSN, 0, &e );
2056
2057         if ( e ) {
2058                 a = attr_find( e->e_attrs, slap_schema.si_ad_contextCSN );
2059                 if ( a ) {
2060                         si->si_ctxcsn.bv_len = a->a_nvals[0].bv_len;
2061                         if ( si->si_ctxcsn.bv_len >= sizeof(si->si_ctxcsnbuf ))
2062                                 si->si_ctxcsn.bv_len = sizeof(si->si_ctxcsnbuf)-1;
2063                         strncpy( si->si_ctxcsnbuf, a->a_nvals[0].bv_val,
2064                                 si->si_ctxcsn.bv_len );
2065                         si->si_ctxcsnbuf[si->si_ctxcsn.bv_len] = '\0';
2066                         strcpy( ctxcsnbuf, si->si_ctxcsnbuf );
2067                 }
2068                 be_entry_release_r( op, e );
2069                 op->o_bd->bd_info = (BackendInfo *)on;
2070                 op->o_req_dn = be->be_suffix[0];
2071                 op->o_req_ndn = be->be_nsuffix[0];
2072                 op->ors_scope = LDAP_SCOPE_SUBTREE;
2073                 syncprov_findcsn( op, FIND_MAXCSN );
2074         }
2075
2076         if ( BER_BVISEMPTY( &si->si_ctxcsn ) ) {
2077                 slap_get_csn( op, si->si_ctxcsnbuf, sizeof(si->si_ctxcsnbuf),
2078                                 &si->si_ctxcsn, 0 );
2079         }
2080
2081         /* If our ctxcsn is different from what was read from the root
2082          * entry, write the new value out.
2083          */
2084         if ( strcmp( si->si_ctxcsnbuf, ctxcsnbuf )) {
2085                 SlapReply rs = {REP_RESULT};
2086                 syncprov_checkpoint( op, &rs, on );
2087         }
2088
2089         op->o_bd->bd_info = (BackendInfo *)on;
2090         return 0;
2091 }
2092
2093 /* Write the current contextCSN into the underlying db.
2094  */
2095 static int
2096 syncprov_db_close(
2097     BackendDB *be
2098 )
2099 {
2100     slap_overinst   *on = (slap_overinst *) be->bd_info;
2101     syncprov_info_t *si = (syncprov_info_t *)on->on_bi.bi_private;
2102         int i;
2103
2104         if ( si->si_numops ) {
2105                 Connection conn;
2106                 char opbuf[OPERATION_BUFFER_SIZE];
2107                 Operation *op = (Operation *)opbuf;
2108                 SlapReply rs = {REP_RESULT};
2109
2110                 connection_fake_init( &conn, op, thrctx );
2111                 op->o_bd = be;
2112                 op->o_dn = be->be_rootdn;
2113                 op->o_ndn = be->be_rootndn;
2114                 syncprov_checkpoint( op, &rs, on );
2115         }
2116         for ( i=0; thrctx[i].key; i++) {
2117                 if ( thrctx[i].xfree )
2118                         thrctx[i].xfree( thrctx[i].key, thrctx[i].data );
2119                 thrctx[i].key = NULL;
2120         }
2121
2122     return 0;
2123 }
2124
2125 static int
2126 syncprov_db_init(
2127         BackendDB *be
2128 )
2129 {
2130         slap_overinst   *on = (slap_overinst *)be->bd_info;
2131         syncprov_info_t *si;
2132
2133         si = ch_calloc(1, sizeof(syncprov_info_t));
2134         on->on_bi.bi_private = si;
2135         ldap_pvt_thread_mutex_init( &si->si_csn_mutex );
2136         ldap_pvt_thread_mutex_init( &si->si_ops_mutex );
2137         ldap_pvt_thread_mutex_init( &si->si_mods_mutex );
2138         si->si_ctxcsn.bv_val = si->si_ctxcsnbuf;
2139
2140         csn_anlist[0].an_desc = slap_schema.si_ad_entryCSN;
2141         csn_anlist[0].an_name = slap_schema.si_ad_entryCSN->ad_cname;
2142
2143         uuid_anlist[0].an_desc = slap_schema.si_ad_entryUUID;
2144         uuid_anlist[0].an_name = slap_schema.si_ad_entryUUID->ad_cname;
2145
2146         return 0;
2147 }
2148
2149 static int
2150 syncprov_db_destroy(
2151         BackendDB *be
2152 )
2153 {
2154         slap_overinst   *on = (slap_overinst *)be->bd_info;
2155         syncprov_info_t *si = (syncprov_info_t *)on->on_bi.bi_private;
2156
2157         if ( si ) {
2158                 ldap_pvt_thread_mutex_destroy( &si->si_mods_mutex );
2159                 ldap_pvt_thread_mutex_destroy( &si->si_ops_mutex );
2160                 ldap_pvt_thread_mutex_destroy( &si->si_csn_mutex );
2161                 ch_free( si );
2162         }
2163
2164         return 0;
2165 }
2166
2167 static int syncprov_parseCtrl (
2168         Operation *op,
2169         SlapReply *rs,
2170         LDAPControl *ctrl )
2171 {
2172         ber_tag_t tag;
2173         BerElement *ber;
2174         ber_int_t mode;
2175         ber_len_t len;
2176         struct berval cookie = BER_BVNULL;
2177         sync_control *sr;
2178         int rhint = 0;
2179
2180         if ( op->o_sync != SLAP_CONTROL_NONE ) {
2181                 rs->sr_text = "Sync control specified multiple times";
2182                 return LDAP_PROTOCOL_ERROR;
2183         }
2184
2185         if ( op->o_pagedresults != SLAP_CONTROL_NONE ) {
2186                 rs->sr_text = "Sync control specified with pagedResults control";
2187                 return LDAP_PROTOCOL_ERROR;
2188         }
2189
2190         if ( BER_BVISEMPTY( &ctrl->ldctl_value ) ) {
2191                 rs->sr_text = "Sync control value is empty (or absent)";
2192                 return LDAP_PROTOCOL_ERROR;
2193         }
2194
2195         /* Parse the control value
2196          *      syncRequestValue ::= SEQUENCE {
2197          *              mode   ENUMERATED {
2198          *                      -- 0 unused
2199          *                      refreshOnly             (1),
2200          *                      -- 2 reserved
2201          *                      refreshAndPersist       (3)
2202          *              },
2203          *              cookie  syncCookie OPTIONAL
2204          *      }
2205          */
2206
2207         ber = ber_init( &ctrl->ldctl_value );
2208         if( ber == NULL ) {
2209                 rs->sr_text = "internal error";
2210                 return LDAP_OTHER;
2211         }
2212
2213         if ( (tag = ber_scanf( ber, "{i" /*}*/, &mode )) == LBER_ERROR ) {
2214                 rs->sr_text = "Sync control : mode decoding error";
2215                 return LDAP_PROTOCOL_ERROR;
2216         }
2217
2218         switch( mode ) {
2219         case LDAP_SYNC_REFRESH_ONLY:
2220                 mode = SLAP_SYNC_REFRESH;
2221                 break;
2222         case LDAP_SYNC_REFRESH_AND_PERSIST:
2223                 mode = SLAP_SYNC_REFRESH_AND_PERSIST;
2224                 break;
2225         default:
2226                 rs->sr_text = "Sync control : unknown update mode";
2227                 return LDAP_PROTOCOL_ERROR;
2228         }
2229
2230         tag = ber_peek_tag( ber, &len );
2231
2232         if ( tag == LDAP_TAG_SYNC_COOKIE ) {
2233                 if (( ber_scanf( ber, /*{*/ "o", &cookie )) == LBER_ERROR ) {
2234                         rs->sr_text = "Sync control : cookie decoding error";
2235                         return LDAP_PROTOCOL_ERROR;
2236                 }
2237         }
2238         if ( tag == LDAP_TAG_RELOAD_HINT ) {
2239                 if (( ber_scanf( ber, /*{*/ "b", &rhint )) == LBER_ERROR ) {
2240                         rs->sr_text = "Sync control : rhint decoding error";
2241                         return LDAP_PROTOCOL_ERROR;
2242                 }
2243         }
2244         if (( ber_scanf( ber, /*{*/ "}")) == LBER_ERROR ) {
2245                         rs->sr_text = "Sync control : decoding error";
2246                         return LDAP_PROTOCOL_ERROR;
2247         }
2248         sr = op->o_tmpcalloc( 1, sizeof(struct sync_control), op->o_tmpmemctx );
2249         sr->sr_rhint = rhint;
2250         if (!BER_BVISNULL(&cookie)) {
2251                 ber_bvarray_add( &sr->sr_state.octet_str, &cookie );
2252                 slap_parse_sync_cookie( &sr->sr_state );
2253         }
2254
2255         op->o_controls[slap_cids.sc_LDAPsync] = sr;
2256
2257         (void) ber_free( ber, 1 );
2258
2259         op->o_sync = ctrl->ldctl_iscritical
2260                 ? SLAP_CONTROL_CRITICAL
2261                 : SLAP_CONTROL_NONCRITICAL;
2262
2263         op->o_sync_mode |= mode;        /* o_sync_mode shares o_sync */
2264
2265         return LDAP_SUCCESS;
2266 }
2267
2268 /* This overlay is set up for dynamic loading via moduleload. For static
2269  * configuration, you'll need to arrange for the slap_overinst to be
2270  * initialized and registered by some other function inside slapd.
2271  */
2272
2273 static slap_overinst            syncprov;
2274
2275 int
2276 syncprov_init()
2277 {
2278         int rc;
2279
2280         rc = register_supported_control( LDAP_CONTROL_SYNC,
2281                 SLAP_CTRL_HIDE|SLAP_CTRL_SEARCH, NULL,
2282                 syncprov_parseCtrl, &slap_cids.sc_LDAPsync );
2283         if ( rc != LDAP_SUCCESS ) {
2284                 fprintf( stderr, "Failed to register control %d\n", rc );
2285                 return rc;
2286         }
2287
2288         syncprov.on_bi.bi_type = "syncprov";
2289         syncprov.on_bi.bi_db_init = syncprov_db_init;
2290         syncprov.on_bi.bi_db_config = syncprov_db_config;
2291         syncprov.on_bi.bi_db_destroy = syncprov_db_destroy;
2292         syncprov.on_bi.bi_db_open = syncprov_db_open;
2293         syncprov.on_bi.bi_db_close = syncprov_db_close;
2294
2295         syncprov.on_bi.bi_op_abandon = syncprov_op_abandon;
2296         syncprov.on_bi.bi_op_cancel = syncprov_op_abandon;
2297
2298         syncprov.on_bi.bi_op_add = syncprov_op_mod;
2299         syncprov.on_bi.bi_op_compare = syncprov_op_compare;
2300         syncprov.on_bi.bi_op_delete = syncprov_op_mod;
2301         syncprov.on_bi.bi_op_modify = syncprov_op_mod;
2302         syncprov.on_bi.bi_op_modrdn = syncprov_op_mod;
2303         syncprov.on_bi.bi_op_search = syncprov_op_search;
2304         syncprov.on_bi.bi_extended = syncprov_op_extended;
2305         syncprov.on_bi.bi_operational = syncprov_operational;
2306
2307         return overlay_register( &syncprov );
2308 }
2309
2310 #if SLAPD_OVER_SYNCPROV == SLAPD_MOD_DYNAMIC
2311 int
2312 init_module( int argc, char *argv[] )
2313 {
2314         return syncprov_init();
2315 }
2316 #endif /* SLAPD_OVER_SYNCPROV == SLAPD_MOD_DYNAMIC */
2317
2318 #endif /* defined(SLAPD_OVER_SYNCPROV) */