search.c revision 1.4 1 1.3 christos /* $NetBSD: search.c,v 1.4 2025/09/05 21:16:28 christos Exp $ */
2 1.1 tron
3 1.1 tron /* search.c - search operation */
4 1.1 tron /* $OpenLDAP$ */
5 1.1 tron /* This work is part of OpenLDAP Software <http://www.openldap.org/>.
6 1.1 tron *
7 1.4 christos * Copyright 2000-2024 The OpenLDAP Foundation.
8 1.1 tron * All rights reserved.
9 1.1 tron *
10 1.1 tron * Redistribution and use in source and binary forms, with or without
11 1.1 tron * modification, are permitted only as authorized by the OpenLDAP
12 1.1 tron * Public License.
13 1.1 tron *
14 1.1 tron * A copy of this license is available in the file LICENSE in the
15 1.1 tron * top-level directory of the distribution or, alternatively, at
16 1.1 tron * <http://www.OpenLDAP.org/license.html>.
17 1.1 tron */
18 1.1 tron
19 1.2 christos #include <sys/cdefs.h>
20 1.3 christos __RCSID("$NetBSD: search.c,v 1.4 2025/09/05 21:16:28 christos Exp $");
21 1.2 christos
22 1.1 tron #include "portable.h"
23 1.1 tron
24 1.1 tron #include <stdio.h>
25 1.1 tron #include <ac/string.h>
26 1.1 tron
27 1.1 tron #include "back-mdb.h"
28 1.1 tron #include "idl.h"
29 1.1 tron
30 1.1 tron static int base_candidate(
31 1.1 tron BackendDB *be,
32 1.1 tron Entry *e,
33 1.1 tron ID *ids );
34 1.1 tron
35 1.1 tron static int search_candidates(
36 1.1 tron Operation *op,
37 1.1 tron SlapReply *rs,
38 1.1 tron Entry *e,
39 1.2 christos IdScopes *isc,
40 1.1 tron MDB_cursor *mci,
41 1.1 tron ID *ids,
42 1.2 christos ID *stack );
43 1.1 tron
44 1.1 tron static int parse_paged_cookie( Operation *op, SlapReply *rs );
45 1.1 tron
46 1.1 tron static void send_paged_response(
47 1.1 tron Operation *op,
48 1.1 tron SlapReply *rs,
49 1.1 tron ID *lastid,
50 1.1 tron int tentries );
51 1.1 tron
52 1.1 tron /* Dereference aliases for a single alias entry. Return the final
53 1.1 tron * dereferenced entry on success, NULL on any failure.
54 1.1 tron */
55 1.1 tron static Entry * deref_base (
56 1.1 tron Operation *op,
57 1.1 tron SlapReply *rs,
58 1.1 tron Entry *e,
59 1.1 tron Entry **matched,
60 1.1 tron MDB_txn *txn,
61 1.1 tron ID *tmp,
62 1.1 tron ID *visited )
63 1.1 tron {
64 1.1 tron struct berval ndn;
65 1.1 tron
66 1.1 tron rs->sr_err = LDAP_ALIAS_DEREF_PROBLEM;
67 1.1 tron rs->sr_text = "maximum deref depth exceeded";
68 1.1 tron
69 1.1 tron for (;;) {
70 1.1 tron /* Remember the last entry we looked at, so we can
71 1.1 tron * report broken links
72 1.1 tron */
73 1.1 tron *matched = e;
74 1.1 tron
75 1.1 tron if (MDB_IDL_N(tmp) >= op->o_bd->be_max_deref_depth) {
76 1.1 tron e = NULL;
77 1.1 tron break;
78 1.1 tron }
79 1.1 tron
80 1.1 tron /* If this is part of a subtree or onelevel search,
81 1.1 tron * have we seen this ID before? If so, quit.
82 1.1 tron */
83 1.1 tron if ( visited && mdb_idl_insert( visited, e->e_id ) ) {
84 1.1 tron e = NULL;
85 1.1 tron break;
86 1.1 tron }
87 1.1 tron
88 1.1 tron /* If we've seen this ID during this deref iteration,
89 1.1 tron * we've hit a loop.
90 1.1 tron */
91 1.1 tron if ( mdb_idl_insert( tmp, e->e_id ) ) {
92 1.1 tron rs->sr_err = LDAP_ALIAS_PROBLEM;
93 1.1 tron rs->sr_text = "circular alias";
94 1.1 tron e = NULL;
95 1.1 tron break;
96 1.1 tron }
97 1.1 tron
98 1.1 tron /* If there was a problem getting the aliasedObjectName,
99 1.1 tron * get_alias_dn will have set the error status.
100 1.1 tron */
101 1.1 tron if ( get_alias_dn(e, &ndn, &rs->sr_err, &rs->sr_text) ) {
102 1.1 tron e = NULL;
103 1.1 tron break;
104 1.1 tron }
105 1.1 tron
106 1.1 tron rs->sr_err = mdb_dn2entry( op, txn, NULL, &ndn, &e, NULL, 0 );
107 1.1 tron if (rs->sr_err) {
108 1.1 tron rs->sr_err = LDAP_ALIAS_PROBLEM;
109 1.1 tron rs->sr_text = "aliasedObject not found";
110 1.1 tron break;
111 1.1 tron }
112 1.1 tron
113 1.1 tron /* Free the previous entry, continue to work with the
114 1.1 tron * one we just retrieved.
115 1.1 tron */
116 1.1 tron mdb_entry_return( op, *matched );
117 1.1 tron
118 1.1 tron /* We found a regular entry. Return this to the caller.
119 1.1 tron */
120 1.1 tron if (!is_entry_alias(e)) {
121 1.1 tron rs->sr_err = LDAP_SUCCESS;
122 1.1 tron rs->sr_text = NULL;
123 1.1 tron break;
124 1.1 tron }
125 1.1 tron }
126 1.1 tron return e;
127 1.1 tron }
128 1.1 tron
129 1.1 tron /* Look for and dereference all aliases within the search scope.
130 1.1 tron * Requires "stack" to be able to hold 6 levels of DB_SIZE IDLs.
131 1.1 tron * Of course we're hardcoded to require a minimum of 8 UM_SIZE
132 1.1 tron * IDLs so this is never a problem.
133 1.1 tron */
134 1.1 tron static int search_aliases(
135 1.1 tron Operation *op,
136 1.1 tron SlapReply *rs,
137 1.1 tron ID e_id,
138 1.2 christos IdScopes *isc,
139 1.1 tron MDB_cursor *mci,
140 1.1 tron ID *stack )
141 1.1 tron {
142 1.1 tron ID *aliases, *curscop, *visited, *newsubs, *oldsubs, *tmp;
143 1.1 tron ID cursora, ida, cursoro, ido;
144 1.1 tron Entry *matched, *a;
145 1.1 tron struct berval bv_alias = BER_BVC( "alias" );
146 1.1 tron AttributeAssertion aa_alias = ATTRIBUTEASSERTION_INIT;
147 1.1 tron Filter af;
148 1.1 tron
149 1.1 tron aliases = stack; /* IDL of all aliases in the database */
150 1.3 christos curscop = aliases + MDB_idl_db_size; /* Aliases in the current scope */
151 1.3 christos visited = curscop + MDB_idl_db_size; /* IDs we've seen in this search */
152 1.3 christos newsubs = visited + MDB_idl_db_size; /* New subtrees we've added */
153 1.3 christos oldsubs = newsubs + MDB_idl_db_size; /* Subtrees added previously */
154 1.3 christos tmp = oldsubs + MDB_idl_db_size; /* Scratch space for deref_base() */
155 1.1 tron
156 1.1 tron af.f_choice = LDAP_FILTER_EQUALITY;
157 1.1 tron af.f_ava = &aa_alias;
158 1.1 tron af.f_av_desc = slap_schema.si_ad_objectClass;
159 1.1 tron af.f_av_value = bv_alias;
160 1.1 tron af.f_next = NULL;
161 1.1 tron
162 1.1 tron /* Find all aliases in database */
163 1.1 tron MDB_IDL_ZERO( aliases );
164 1.2 christos rs->sr_err = mdb_filter_candidates( op, isc->mt, &af, aliases,
165 1.1 tron curscop, visited );
166 1.1 tron if (rs->sr_err != LDAP_SUCCESS || MDB_IDL_IS_ZERO( aliases )) {
167 1.1 tron return rs->sr_err;
168 1.1 tron }
169 1.2 christos if ( op->ors_limit /* isroot == FALSE */ &&
170 1.2 christos op->ors_limit->lms_s_unchecked != -1 &&
171 1.2 christos MDB_IDL_N( aliases ) > (unsigned) op->ors_limit->lms_s_unchecked )
172 1.2 christos {
173 1.2 christos return LDAP_ADMINLIMIT_EXCEEDED;
174 1.2 christos }
175 1.1 tron oldsubs[0] = 1;
176 1.1 tron oldsubs[1] = e_id;
177 1.1 tron
178 1.1 tron MDB_IDL_ZERO( visited );
179 1.1 tron MDB_IDL_ZERO( newsubs );
180 1.1 tron
181 1.1 tron cursoro = 0;
182 1.1 tron ido = mdb_idl_first( oldsubs, &cursoro );
183 1.1 tron
184 1.1 tron for (;;) {
185 1.1 tron /* Set curscop to only the aliases in the current scope. Start with
186 1.1 tron * all the aliases, then get the intersection with the scope.
187 1.1 tron */
188 1.2 christos rs->sr_err = mdb_idscope( op, isc->mt, e_id, aliases, curscop );
189 1.1 tron
190 1.1 tron /* Dereference all of the aliases in the current scope. */
191 1.1 tron cursora = 0;
192 1.1 tron for (ida = mdb_idl_first(curscop, &cursora); ida != NOID;
193 1.1 tron ida = mdb_idl_next(curscop, &cursora))
194 1.1 tron {
195 1.1 tron rs->sr_err = mdb_id2entry(op, mci, ida, &a);
196 1.1 tron if (rs->sr_err != LDAP_SUCCESS) {
197 1.1 tron continue;
198 1.1 tron }
199 1.1 tron
200 1.1 tron /* This should only happen if the curscop IDL has maxed out and
201 1.1 tron * turned into a range that spans IDs indiscriminately
202 1.1 tron */
203 1.1 tron if (!is_entry_alias(a)) {
204 1.1 tron mdb_entry_return(op, a);
205 1.1 tron continue;
206 1.1 tron }
207 1.1 tron
208 1.1 tron /* Actually dereference the alias */
209 1.1 tron MDB_IDL_ZERO(tmp);
210 1.2 christos a = deref_base( op, rs, a, &matched, isc->mt,
211 1.1 tron tmp, visited );
212 1.1 tron if (a) {
213 1.1 tron /* If the target was not already in our current scopes,
214 1.1 tron * make note of it in the newsubs list.
215 1.1 tron */
216 1.1 tron ID2 mid;
217 1.1 tron mid.mid = a->e_id;
218 1.1 tron mid.mval.mv_data = NULL;
219 1.2 christos if (op->ors_scope == LDAP_SCOPE_SUBTREE) {
220 1.2 christos isc->id = a->e_id;
221 1.2 christos /* if ID is a child of any of our current scopes,
222 1.2 christos * ignore it, it's already included.
223 1.2 christos */
224 1.2 christos if (mdb_idscopechk(op, isc))
225 1.2 christos goto skip;
226 1.2 christos }
227 1.2 christos if (mdb_id2l_insert(isc->scopes, &mid) == 0) {
228 1.1 tron mdb_idl_insert(newsubs, a->e_id);
229 1.1 tron }
230 1.2 christos skip: mdb_entry_return( op, a );
231 1.1 tron
232 1.1 tron } else if (matched) {
233 1.1 tron /* Alias could not be dereferenced, or it deref'd to
234 1.1 tron * an ID we've already seen. Ignore it.
235 1.1 tron */
236 1.1 tron mdb_entry_return( op, matched );
237 1.1 tron rs->sr_text = NULL;
238 1.1 tron rs->sr_err = 0;
239 1.1 tron }
240 1.1 tron }
241 1.1 tron /* If this is a OneLevel search, we're done; oldsubs only had one
242 1.1 tron * ID in it. For a Subtree search, oldsubs may be a list of scope IDs.
243 1.1 tron */
244 1.1 tron if ( op->ors_scope == LDAP_SCOPE_ONELEVEL ) break;
245 1.1 tron nextido:
246 1.1 tron ido = mdb_idl_next( oldsubs, &cursoro );
247 1.1 tron
248 1.1 tron /* If we're done processing the old scopes, did we add any new
249 1.1 tron * scopes in this iteration? If so, go back and do those now.
250 1.1 tron */
251 1.1 tron if (ido == NOID) {
252 1.1 tron if (MDB_IDL_IS_ZERO(newsubs)) break;
253 1.1 tron MDB_IDL_CPY(oldsubs, newsubs);
254 1.1 tron MDB_IDL_ZERO(newsubs);
255 1.1 tron cursoro = 0;
256 1.1 tron ido = mdb_idl_first( oldsubs, &cursoro );
257 1.1 tron }
258 1.1 tron
259 1.1 tron /* Find the entry corresponding to the next scope. If it can't
260 1.1 tron * be found, ignore it and move on. This should never happen;
261 1.1 tron * we should never see the ID of an entry that doesn't exist.
262 1.1 tron */
263 1.1 tron {
264 1.1 tron MDB_val edata;
265 1.1 tron rs->sr_err = mdb_id2edata(op, mci, ido, &edata);
266 1.1 tron if ( rs->sr_err != MDB_SUCCESS ) {
267 1.1 tron goto nextido;
268 1.1 tron }
269 1.1 tron e_id = ido;
270 1.1 tron }
271 1.1 tron }
272 1.1 tron return rs->sr_err;
273 1.1 tron }
274 1.1 tron
275 1.1 tron /* Get the next ID from the DB. Used if the candidate list is
276 1.1 tron * a range and simple iteration hits missing entryIDs
277 1.1 tron */
278 1.1 tron static int
279 1.1 tron mdb_get_nextid(MDB_cursor *mci, ID *cursor)
280 1.1 tron {
281 1.1 tron MDB_val key;
282 1.1 tron ID id;
283 1.1 tron int rc;
284 1.1 tron
285 1.1 tron id = *cursor + 1;
286 1.1 tron key.mv_data = &id;
287 1.1 tron key.mv_size = sizeof(ID);
288 1.1 tron rc = mdb_cursor_get( mci, &key, NULL, MDB_SET_RANGE );
289 1.1 tron if ( rc )
290 1.1 tron return rc;
291 1.1 tron memcpy( cursor, key.mv_data, sizeof(ID));
292 1.1 tron return 0;
293 1.1 tron }
294 1.1 tron
295 1.1 tron static void scope_chunk_free( void *key, void *data )
296 1.1 tron {
297 1.1 tron ID2 *p1, *p2;
298 1.1 tron for (p1 = data; p1; p1 = p2) {
299 1.1 tron p2 = p1[0].mval.mv_data;
300 1.1 tron ber_memfree_x(p1, NULL);
301 1.1 tron }
302 1.1 tron }
303 1.1 tron
304 1.1 tron static ID2 *scope_chunk_get( Operation *op )
305 1.1 tron {
306 1.1 tron ID2 *ret = NULL;
307 1.1 tron
308 1.1 tron ldap_pvt_thread_pool_getkey( op->o_threadctx, (void *)scope_chunk_get,
309 1.1 tron (void *)&ret, NULL );
310 1.1 tron if ( !ret ) {
311 1.3 christos ret = ch_malloc( MDB_idl_um_size * sizeof( ID2 ));
312 1.1 tron } else {
313 1.1 tron void *r2 = ret[0].mval.mv_data;
314 1.1 tron ldap_pvt_thread_pool_setkey( op->o_threadctx, (void *)scope_chunk_get,
315 1.1 tron r2, scope_chunk_free, NULL, NULL );
316 1.1 tron }
317 1.1 tron return ret;
318 1.1 tron }
319 1.1 tron
320 1.1 tron static void scope_chunk_ret( Operation *op, ID2 *scopes )
321 1.1 tron {
322 1.1 tron void *ret = NULL;
323 1.1 tron
324 1.1 tron ldap_pvt_thread_pool_getkey( op->o_threadctx, (void *)scope_chunk_get,
325 1.1 tron &ret, NULL );
326 1.1 tron scopes[0].mval.mv_data = ret;
327 1.1 tron ldap_pvt_thread_pool_setkey( op->o_threadctx, (void *)scope_chunk_get,
328 1.1 tron (void *)scopes, scope_chunk_free, NULL, NULL );
329 1.1 tron }
330 1.1 tron
331 1.2 christos static void *search_stack( Operation *op );
332 1.2 christos
333 1.2 christos typedef struct ww_ctx {
334 1.2 christos MDB_txn *txn;
335 1.2 christos MDB_cursor *mcd; /* if set, save cursor context */
336 1.2 christos ID key;
337 1.2 christos MDB_val data;
338 1.2 christos int flag;
339 1.2 christos unsigned nentries;
340 1.2 christos } ww_ctx;
341 1.2 christos
342 1.2 christos /* ITS#7904 if we get blocked while writing results to client,
343 1.2 christos * release the current reader txn and reacquire it after we
344 1.2 christos * unblock.
345 1.2 christos * Slight problem - if we're doing a scope-based walk (mdb_dn2id_walk)
346 1.2 christos * to return results, we need to remember the state of the mcd cursor.
347 1.2 christos * If the node that cursor was pointing to gets deleted while we're
348 1.2 christos * blocked, we may be unable to restore the cursor position. In that
349 1.2 christos * case return an LDAP_BUSY error - let the client know this search
350 1.2 christos * couldn't succeed, but might succeed on a retry.
351 1.2 christos */
352 1.2 christos static void
353 1.2 christos mdb_rtxn_snap( Operation *op, ww_ctx *ww )
354 1.2 christos {
355 1.2 christos /* save cursor position and release read txn */
356 1.2 christos if ( ww->mcd ) {
357 1.2 christos MDB_val key, data;
358 1.2 christos mdb_cursor_get( ww->mcd, &key, &data, MDB_GET_CURRENT );
359 1.2 christos memcpy( &ww->key, key.mv_data, sizeof(ID) );
360 1.2 christos ww->data.mv_size = data.mv_size;
361 1.2 christos ww->data.mv_data = op->o_tmpalloc( data.mv_size, op->o_tmpmemctx );
362 1.2 christos memcpy(ww->data.mv_data, data.mv_data, data.mv_size);
363 1.2 christos }
364 1.2 christos mdb_txn_reset( ww->txn );
365 1.2 christos ww->flag = 1;
366 1.2 christos }
367 1.2 christos
368 1.2 christos static void
369 1.2 christos mdb_writewait( Operation *op, slap_callback *sc )
370 1.2 christos {
371 1.2 christos ww_ctx *ww = sc->sc_private;
372 1.2 christos if ( !ww->flag ) {
373 1.2 christos mdb_rtxn_snap( op, ww );
374 1.2 christos }
375 1.2 christos }
376 1.2 christos
377 1.2 christos static int
378 1.2 christos mdb_waitfixup( Operation *op, ww_ctx *ww, MDB_cursor *mci, MDB_cursor *mcd, IdScopes *isc )
379 1.2 christos {
380 1.2 christos MDB_val key;
381 1.2 christos int rc = 0;
382 1.2 christos ww->flag = 0;
383 1.2 christos mdb_txn_renew( ww->txn );
384 1.2 christos mdb_cursor_renew( ww->txn, mci );
385 1.2 christos mdb_cursor_renew( ww->txn, mcd );
386 1.2 christos
387 1.2 christos key.mv_size = sizeof(ID);
388 1.2 christos if ( ww->mcd ) { /* scope-based search using dn2id_walk */
389 1.2 christos MDB_val data;
390 1.2 christos
391 1.2 christos if ( isc->numrdns )
392 1.2 christos mdb_dn2id_wrestore( op, isc );
393 1.2 christos
394 1.2 christos key.mv_data = &ww->key;
395 1.2 christos data = ww->data;
396 1.2 christos rc = mdb_cursor_get( mcd, &key, &data, MDB_GET_BOTH );
397 1.2 christos if ( rc == MDB_NOTFOUND ) {
398 1.2 christos data = ww->data;
399 1.2 christos rc = mdb_cursor_get( mcd, &key, &data, MDB_GET_BOTH_RANGE );
400 1.2 christos /* the loop will skip this node using NEXT_DUP but we want it
401 1.2 christos * sent, so go back one space first
402 1.2 christos */
403 1.2 christos if ( rc == MDB_SUCCESS )
404 1.2 christos mdb_cursor_get( mcd, &key, &data, MDB_PREV_DUP );
405 1.2 christos else
406 1.2 christos rc = LDAP_BUSY;
407 1.2 christos } else if ( rc ) {
408 1.2 christos rc = LDAP_OTHER;
409 1.2 christos }
410 1.2 christos op->o_tmpfree( ww->data.mv_data, op->o_tmpmemctx );
411 1.2 christos ww->data.mv_data = NULL;
412 1.2 christos } else if ( isc->scopes[0].mid > 1 ) { /* candidate-based search */
413 1.2 christos int i;
414 1.3 christos for ( i=1; i<=isc->scopes[0].mid; i++ ) {
415 1.2 christos if ( !isc->scopes[i].mval.mv_data )
416 1.2 christos continue;
417 1.2 christos key.mv_data = &isc->scopes[i].mid;
418 1.2 christos mdb_cursor_get( mcd, &key, &isc->scopes[i].mval, MDB_SET );
419 1.2 christos }
420 1.2 christos }
421 1.2 christos return rc;
422 1.2 christos }
423 1.2 christos
424 1.1 tron int
425 1.1 tron mdb_search( Operation *op, SlapReply *rs )
426 1.1 tron {
427 1.1 tron struct mdb_info *mdb = (struct mdb_info *) op->o_bd->be_private;
428 1.1 tron ID id, cursor, nsubs, ncand, cscope;
429 1.1 tron ID lastid = NOID;
430 1.3 christos ID *candidates, *iscopes, *c0;
431 1.1 tron ID2 *scopes;
432 1.2 christos void *stack;
433 1.1 tron Entry *e = NULL, *base = NULL;
434 1.1 tron Entry *matched = NULL;
435 1.1 tron AttributeName *attrs;
436 1.1 tron slap_mask_t mask;
437 1.1 tron time_t stoptime;
438 1.1 tron int manageDSAit;
439 1.1 tron int tentries = 0;
440 1.3 christos int admincheck = 0;
441 1.1 tron IdScopes isc;
442 1.1 tron MDB_cursor *mci, *mcd;
443 1.2 christos ww_ctx wwctx;
444 1.2 christos slap_callback cb = { 0 };
445 1.1 tron
446 1.1 tron mdb_op_info opinfo = {{{0}}}, *moi = &opinfo;
447 1.1 tron MDB_txn *ltid = NULL;
448 1.1 tron
449 1.3 christos Debug( LDAP_DEBUG_TRACE, "=> " LDAP_XSTRING(mdb_search) "\n" );
450 1.1 tron attrs = op->oq_search.rs_attrs;
451 1.1 tron
452 1.1 tron manageDSAit = get_manageDSAit( op );
453 1.1 tron
454 1.1 tron rs->sr_err = mdb_opinfo_get( op, mdb, 1, &moi );
455 1.1 tron switch(rs->sr_err) {
456 1.1 tron case 0:
457 1.1 tron break;
458 1.1 tron default:
459 1.1 tron send_ldap_error( op, rs, LDAP_OTHER, "internal error" );
460 1.1 tron return rs->sr_err;
461 1.1 tron }
462 1.1 tron
463 1.1 tron ltid = moi->moi_txn;
464 1.1 tron
465 1.1 tron rs->sr_err = mdb_cursor_open( ltid, mdb->mi_id2entry, &mci );
466 1.1 tron if ( rs->sr_err ) {
467 1.1 tron send_ldap_error( op, rs, LDAP_OTHER, "internal error" );
468 1.1 tron return rs->sr_err;
469 1.1 tron }
470 1.1 tron
471 1.1 tron rs->sr_err = mdb_cursor_open( ltid, mdb->mi_dn2id, &mcd );
472 1.1 tron if ( rs->sr_err ) {
473 1.1 tron mdb_cursor_close( mci );
474 1.1 tron send_ldap_error( op, rs, LDAP_OTHER, "internal error" );
475 1.1 tron return rs->sr_err;
476 1.1 tron }
477 1.1 tron
478 1.1 tron scopes = scope_chunk_get( op );
479 1.3 christos candidates = c0 = search_stack( op );
480 1.3 christos iscopes = candidates + MDB_idl_um_size;
481 1.3 christos stack = iscopes + MDB_idl_db_size;
482 1.3 christos /* if candidates already in use, alloc a new array */
483 1.3 christos if ( c0[0] ) {
484 1.3 christos candidates = ch_malloc(( MDB_idl_um_size + MDB_idl_db_size ) * sizeof ( ID ));
485 1.3 christos iscopes = candidates + MDB_idl_um_size;
486 1.3 christos }
487 1.1 tron isc.mt = ltid;
488 1.1 tron isc.mc = mcd;
489 1.1 tron isc.scopes = scopes;
490 1.1 tron isc.oscope = op->ors_scope;
491 1.2 christos isc.sctmp = stack;
492 1.1 tron
493 1.1 tron if ( op->ors_deref & LDAP_DEREF_FINDING ) {
494 1.1 tron MDB_IDL_ZERO(candidates);
495 1.1 tron }
496 1.1 tron dn2entry_retry:
497 1.1 tron /* get entry with reader lock */
498 1.1 tron rs->sr_err = mdb_dn2entry( op, ltid, mcd, &op->o_req_ndn, &e, &nsubs, 1 );
499 1.1 tron
500 1.1 tron switch(rs->sr_err) {
501 1.1 tron case MDB_NOTFOUND:
502 1.1 tron matched = e;
503 1.1 tron e = NULL;
504 1.1 tron break;
505 1.1 tron case 0:
506 1.1 tron break;
507 1.1 tron case LDAP_BUSY:
508 1.1 tron send_ldap_error( op, rs, LDAP_BUSY, "ldap server busy" );
509 1.1 tron goto done;
510 1.1 tron default:
511 1.1 tron send_ldap_error( op, rs, LDAP_OTHER, "internal error" );
512 1.1 tron goto done;
513 1.1 tron }
514 1.1 tron
515 1.1 tron if ( op->ors_deref & LDAP_DEREF_FINDING ) {
516 1.1 tron if ( matched && is_entry_alias( matched )) {
517 1.1 tron struct berval stub;
518 1.1 tron
519 1.1 tron stub.bv_val = op->o_req_ndn.bv_val;
520 1.1 tron stub.bv_len = op->o_req_ndn.bv_len - matched->e_nname.bv_len - 1;
521 1.1 tron e = deref_base( op, rs, matched, &matched, ltid,
522 1.1 tron candidates, NULL );
523 1.1 tron if ( e ) {
524 1.1 tron build_new_dn( &op->o_req_ndn, &e->e_nname, &stub,
525 1.1 tron op->o_tmpmemctx );
526 1.1 tron mdb_entry_return(op, e);
527 1.1 tron matched = NULL;
528 1.1 tron goto dn2entry_retry;
529 1.1 tron }
530 1.1 tron } else if ( e && is_entry_alias( e )) {
531 1.1 tron e = deref_base( op, rs, e, &matched, ltid,
532 1.1 tron candidates, NULL );
533 1.1 tron }
534 1.1 tron }
535 1.1 tron
536 1.1 tron if ( e == NULL ) {
537 1.1 tron struct berval matched_dn = BER_BVNULL;
538 1.1 tron
539 1.1 tron if ( matched != NULL ) {
540 1.1 tron BerVarray erefs = NULL;
541 1.1 tron
542 1.1 tron /* return referral only if "disclose"
543 1.1 tron * is granted on the object */
544 1.1 tron if ( ! access_allowed( op, matched,
545 1.1 tron slap_schema.si_ad_entry,
546 1.1 tron NULL, ACL_DISCLOSE, NULL ) )
547 1.1 tron {
548 1.1 tron rs->sr_err = LDAP_NO_SUCH_OBJECT;
549 1.1 tron
550 1.1 tron } else {
551 1.1 tron ber_dupbv( &matched_dn, &matched->e_name );
552 1.1 tron
553 1.1 tron erefs = is_entry_referral( matched )
554 1.1 tron ? get_entry_referrals( op, matched )
555 1.1 tron : NULL;
556 1.1 tron if ( rs->sr_err == MDB_NOTFOUND )
557 1.1 tron rs->sr_err = LDAP_REFERRAL;
558 1.1 tron rs->sr_matched = matched_dn.bv_val;
559 1.1 tron }
560 1.1 tron
561 1.1 tron mdb_entry_return(op, matched);
562 1.1 tron matched = NULL;
563 1.1 tron
564 1.1 tron if ( erefs ) {
565 1.1 tron rs->sr_ref = referral_rewrite( erefs, &matched_dn,
566 1.1 tron &op->o_req_dn, op->oq_search.rs_scope );
567 1.1 tron ber_bvarray_free( erefs );
568 1.1 tron }
569 1.1 tron
570 1.1 tron } else {
571 1.1 tron rs->sr_ref = referral_rewrite( default_referral,
572 1.1 tron NULL, &op->o_req_dn, op->oq_search.rs_scope );
573 1.1 tron rs->sr_err = rs->sr_ref != NULL ? LDAP_REFERRAL : LDAP_NO_SUCH_OBJECT;
574 1.1 tron }
575 1.1 tron
576 1.1 tron send_ldap_result( op, rs );
577 1.1 tron
578 1.1 tron if ( rs->sr_ref ) {
579 1.1 tron ber_bvarray_free( rs->sr_ref );
580 1.1 tron rs->sr_ref = NULL;
581 1.1 tron }
582 1.1 tron if ( !BER_BVISNULL( &matched_dn ) ) {
583 1.1 tron ber_memfree( matched_dn.bv_val );
584 1.1 tron rs->sr_matched = NULL;
585 1.1 tron }
586 1.1 tron goto done;
587 1.1 tron }
588 1.1 tron
589 1.1 tron /* NOTE: __NEW__ "search" access is required
590 1.1 tron * on searchBase object */
591 1.1 tron if ( ! access_allowed_mask( op, e, slap_schema.si_ad_entry,
592 1.1 tron NULL, ACL_SEARCH, NULL, &mask ) )
593 1.1 tron {
594 1.1 tron if ( !ACL_GRANT( mask, ACL_DISCLOSE ) ) {
595 1.1 tron rs->sr_err = LDAP_NO_SUCH_OBJECT;
596 1.1 tron } else {
597 1.1 tron rs->sr_err = LDAP_INSUFFICIENT_ACCESS;
598 1.1 tron }
599 1.1 tron
600 1.1 tron mdb_entry_return( op,e);
601 1.1 tron send_ldap_result( op, rs );
602 1.1 tron goto done;
603 1.1 tron }
604 1.1 tron
605 1.1 tron if ( !manageDSAit && is_entry_referral( e ) ) {
606 1.1 tron /* entry is a referral */
607 1.1 tron struct berval matched_dn = BER_BVNULL;
608 1.1 tron BerVarray erefs = NULL;
609 1.1 tron
610 1.1 tron ber_dupbv( &matched_dn, &e->e_name );
611 1.1 tron erefs = get_entry_referrals( op, e );
612 1.1 tron
613 1.1 tron rs->sr_err = LDAP_REFERRAL;
614 1.1 tron
615 1.1 tron mdb_entry_return( op, e );
616 1.1 tron e = NULL;
617 1.1 tron
618 1.1 tron if ( erefs ) {
619 1.1 tron rs->sr_ref = referral_rewrite( erefs, &matched_dn,
620 1.1 tron &op->o_req_dn, op->oq_search.rs_scope );
621 1.1 tron ber_bvarray_free( erefs );
622 1.1 tron
623 1.1 tron if ( !rs->sr_ref ) {
624 1.1 tron rs->sr_text = "bad_referral object";
625 1.1 tron }
626 1.1 tron }
627 1.1 tron
628 1.1 tron Debug( LDAP_DEBUG_TRACE,
629 1.3 christos LDAP_XSTRING(mdb_search) ": entry is referral\n" );
630 1.1 tron
631 1.1 tron rs->sr_matched = matched_dn.bv_val;
632 1.1 tron send_ldap_result( op, rs );
633 1.1 tron
634 1.1 tron ber_bvarray_free( rs->sr_ref );
635 1.1 tron rs->sr_ref = NULL;
636 1.1 tron ber_memfree( matched_dn.bv_val );
637 1.1 tron rs->sr_matched = NULL;
638 1.1 tron goto done;
639 1.1 tron }
640 1.1 tron
641 1.1 tron if ( get_assert( op ) &&
642 1.1 tron ( test_filter( op, e, get_assertion( op )) != LDAP_COMPARE_TRUE ))
643 1.1 tron {
644 1.1 tron rs->sr_err = LDAP_ASSERTION_FAILED;
645 1.1 tron mdb_entry_return( op,e);
646 1.1 tron send_ldap_result( op, rs );
647 1.1 tron goto done;
648 1.1 tron }
649 1.1 tron
650 1.1 tron /* compute it anyway; root does not use it */
651 1.1 tron stoptime = op->o_time + op->ors_tlimit;
652 1.1 tron
653 1.1 tron base = e;
654 1.1 tron
655 1.1 tron e = NULL;
656 1.1 tron
657 1.1 tron /* select candidates */
658 1.1 tron if ( op->oq_search.rs_scope == LDAP_SCOPE_BASE ) {
659 1.1 tron rs->sr_err = base_candidate( op->o_bd, base, candidates );
660 1.1 tron scopes[0].mid = 0;
661 1.1 tron ncand = 1;
662 1.1 tron } else {
663 1.1 tron if ( op->ors_scope == LDAP_SCOPE_ONELEVEL ) {
664 1.1 tron size_t nkids;
665 1.1 tron MDB_val key, data;
666 1.1 tron key.mv_data = &base->e_id;
667 1.1 tron key.mv_size = sizeof( ID );
668 1.1 tron mdb_cursor_get( mcd, &key, &data, MDB_SET );
669 1.1 tron mdb_cursor_count( mcd, &nkids );
670 1.1 tron nsubs = nkids - 1;
671 1.1 tron } else if ( !base->e_id ) {
672 1.1 tron /* we don't maintain nsubs for entryID 0.
673 1.1 tron * just grab entry count from id2entry stat
674 1.1 tron */
675 1.1 tron MDB_stat ms;
676 1.1 tron mdb_stat( ltid, mdb->mi_id2entry, &ms );
677 1.1 tron nsubs = ms.ms_entries;
678 1.1 tron }
679 1.1 tron MDB_IDL_ZERO( candidates );
680 1.1 tron scopes[0].mid = 1;
681 1.1 tron scopes[1].mid = base->e_id;
682 1.1 tron scopes[1].mval.mv_data = NULL;
683 1.1 tron rs->sr_err = search_candidates( op, rs, base,
684 1.2 christos &isc, mci, candidates, stack );
685 1.2 christos
686 1.3 christos if ( rs->sr_err == LDAP_ADMINLIMIT_EXCEEDED ) {
687 1.3 christos adminlimit:
688 1.3 christos rs->sr_err = LDAP_ADMINLIMIT_EXCEEDED;
689 1.3 christos send_ldap_result( op, rs );
690 1.3 christos rs->sr_err = LDAP_SUCCESS;
691 1.3 christos goto done;
692 1.3 christos }
693 1.2 christos
694 1.1 tron ncand = MDB_IDL_N( candidates );
695 1.1 tron if ( !base->e_id || ncand == NOID ) {
696 1.1 tron /* grab entry count from id2entry stat
697 1.1 tron */
698 1.1 tron MDB_stat ms;
699 1.1 tron mdb_stat( ltid, mdb->mi_id2entry, &ms );
700 1.1 tron if ( !base->e_id )
701 1.1 tron nsubs = ms.ms_entries;
702 1.1 tron if ( ncand == NOID )
703 1.1 tron ncand = ms.ms_entries;
704 1.1 tron }
705 1.1 tron }
706 1.1 tron
707 1.1 tron /* start cursor at beginning of candidates.
708 1.1 tron */
709 1.1 tron cursor = 0;
710 1.1 tron
711 1.1 tron if ( candidates[0] == 0 ) {
712 1.1 tron Debug( LDAP_DEBUG_TRACE,
713 1.3 christos LDAP_XSTRING(mdb_search) ": no candidates\n" );
714 1.1 tron
715 1.1 tron goto nochange;
716 1.1 tron }
717 1.1 tron
718 1.1 tron /* if not root and candidates exceed to-be-checked entries, abort */
719 1.1 tron if ( op->ors_limit /* isroot == FALSE */ &&
720 1.1 tron op->ors_limit->lms_s_unchecked != -1 &&
721 1.1 tron ncand > (unsigned) op->ors_limit->lms_s_unchecked )
722 1.1 tron {
723 1.3 christos admincheck = 1;
724 1.1 tron }
725 1.1 tron
726 1.1 tron if ( op->ors_limit == NULL /* isroot == TRUE */ ||
727 1.1 tron !op->ors_limit->lms_s_pr_hide )
728 1.1 tron {
729 1.1 tron tentries = ncand;
730 1.1 tron }
731 1.1 tron
732 1.2 christos wwctx.flag = 0;
733 1.3 christos wwctx.nentries = 0;
734 1.2 christos /* If we're running in our own read txn */
735 1.2 christos if ( moi == &opinfo ) {
736 1.2 christos cb.sc_writewait = mdb_writewait;
737 1.2 christos cb.sc_private = &wwctx;
738 1.2 christos wwctx.txn = ltid;
739 1.2 christos wwctx.mcd = NULL;
740 1.2 christos cb.sc_next = op->o_callback;
741 1.2 christos op->o_callback = &cb;
742 1.2 christos }
743 1.2 christos
744 1.1 tron if ( get_pagedresults( op ) > SLAP_CONTROL_IGNORED ) {
745 1.1 tron PagedResultsState *ps = op->o_pagedresults_state;
746 1.1 tron /* deferred cookie parsing */
747 1.1 tron rs->sr_err = parse_paged_cookie( op, rs );
748 1.1 tron if ( rs->sr_err != LDAP_SUCCESS ) {
749 1.1 tron send_ldap_result( op, rs );
750 1.1 tron goto done;
751 1.1 tron }
752 1.1 tron
753 1.1 tron cursor = (ID) ps->ps_cookie;
754 1.1 tron if ( cursor && ps->ps_size == 0 ) {
755 1.1 tron rs->sr_err = LDAP_SUCCESS;
756 1.1 tron rs->sr_text = "search abandoned by pagedResult size=0";
757 1.1 tron send_ldap_result( op, rs );
758 1.1 tron goto done;
759 1.1 tron }
760 1.3 christos
761 1.3 christos if ( admincheck )
762 1.3 christos goto adminlimit;
763 1.3 christos
764 1.1 tron id = mdb_idl_first( candidates, &cursor );
765 1.1 tron if ( id == NOID ) {
766 1.1 tron Debug( LDAP_DEBUG_TRACE,
767 1.1 tron LDAP_XSTRING(mdb_search)
768 1.3 christos ": no paged results candidates\n" );
769 1.1 tron send_paged_response( op, rs, &lastid, 0 );
770 1.1 tron
771 1.1 tron rs->sr_err = LDAP_OTHER;
772 1.1 tron goto done;
773 1.1 tron }
774 1.1 tron if ( id == (ID)ps->ps_cookie )
775 1.1 tron id = mdb_idl_next( candidates, &cursor );
776 1.1 tron nsubs = ncand; /* always bypass scope'd search */
777 1.1 tron goto loop_begin;
778 1.1 tron }
779 1.1 tron if ( nsubs < ncand ) {
780 1.1 tron int rc;
781 1.1 tron /* Do scope-based search */
782 1.3 christos if ( admincheck && nsubs > (unsigned) op->ors_limit->lms_s_unchecked )
783 1.3 christos goto adminlimit;
784 1.1 tron
785 1.1 tron /* if any alias scopes were set, save them */
786 1.1 tron if (scopes[0].mid > 1) {
787 1.1 tron cursor = 1;
788 1.1 tron for (cscope = 1; cscope <= scopes[0].mid; cscope++) {
789 1.1 tron /* Ignore the original base */
790 1.1 tron if (scopes[cscope].mid == base->e_id)
791 1.1 tron continue;
792 1.1 tron iscopes[cursor++] = scopes[cscope].mid;
793 1.1 tron }
794 1.1 tron iscopes[0] = scopes[0].mid - 1;
795 1.1 tron } else {
796 1.1 tron iscopes[0] = 0;
797 1.1 tron }
798 1.1 tron
799 1.2 christos wwctx.mcd = mcd;
800 1.1 tron isc.id = base->e_id;
801 1.1 tron isc.numrdns = 0;
802 1.1 tron rc = mdb_dn2id_walk( op, &isc );
803 1.1 tron if ( rc )
804 1.1 tron id = NOID;
805 1.1 tron else
806 1.1 tron id = isc.id;
807 1.1 tron cscope = 0;
808 1.1 tron } else {
809 1.3 christos if ( admincheck )
810 1.3 christos goto adminlimit;
811 1.1 tron id = mdb_idl_first( candidates, &cursor );
812 1.1 tron }
813 1.1 tron
814 1.1 tron while (id != NOID)
815 1.1 tron {
816 1.1 tron int scopeok;
817 1.1 tron MDB_val edata;
818 1.1 tron
819 1.1 tron loop_begin:
820 1.1 tron
821 1.1 tron /* check for abandon */
822 1.1 tron if ( op->o_abandon ) {
823 1.1 tron rs->sr_err = SLAPD_ABANDON;
824 1.1 tron send_ldap_result( op, rs );
825 1.1 tron goto done;
826 1.1 tron }
827 1.1 tron
828 1.1 tron /* mostly needed by internal searches,
829 1.1 tron * e.g. related to syncrepl, for whom
830 1.1 tron * abandon does not get set... */
831 1.1 tron if ( slapd_shutdown ) {
832 1.1 tron rs->sr_err = LDAP_UNAVAILABLE;
833 1.1 tron send_ldap_disconnect( op, rs );
834 1.1 tron goto done;
835 1.1 tron }
836 1.1 tron
837 1.1 tron /* check time limit */
838 1.1 tron if ( op->ors_tlimit != SLAP_NO_LIMIT
839 1.1 tron && slap_get_time() > stoptime )
840 1.1 tron {
841 1.1 tron rs->sr_err = LDAP_TIMELIMIT_EXCEEDED;
842 1.1 tron rs->sr_ref = rs->sr_v2ref;
843 1.1 tron send_ldap_result( op, rs );
844 1.1 tron rs->sr_err = LDAP_SUCCESS;
845 1.1 tron goto done;
846 1.1 tron }
847 1.1 tron
848 1.1 tron
849 1.1 tron if ( nsubs < ncand ) {
850 1.1 tron unsigned i;
851 1.1 tron /* Is this entry in the candidate list? */
852 1.1 tron scopeok = 0;
853 1.1 tron if (MDB_IDL_IS_RANGE( candidates )) {
854 1.1 tron if ( id >= MDB_IDL_RANGE_FIRST( candidates ) &&
855 1.1 tron id <= MDB_IDL_RANGE_LAST( candidates ))
856 1.1 tron scopeok = 1;
857 1.1 tron } else {
858 1.1 tron i = mdb_idl_search( candidates, id );
859 1.2 christos if (i <= candidates[0] && candidates[i] == id )
860 1.1 tron scopeok = 1;
861 1.1 tron }
862 1.1 tron if ( scopeok )
863 1.1 tron goto scopeok;
864 1.1 tron goto loop_continue;
865 1.1 tron }
866 1.1 tron
867 1.1 tron /* Does this candidate actually satisfy the search scope?
868 1.1 tron */
869 1.1 tron scopeok = 0;
870 1.1 tron isc.numrdns = 0;
871 1.1 tron switch( op->ors_scope ) {
872 1.1 tron case LDAP_SCOPE_BASE:
873 1.1 tron /* This is always true, yes? */
874 1.1 tron if ( id == base->e_id ) scopeok = 1;
875 1.1 tron break;
876 1.1 tron
877 1.1 tron #ifdef LDAP_SCOPE_CHILDREN
878 1.1 tron case LDAP_SCOPE_CHILDREN:
879 1.1 tron if ( id == base->e_id ) break;
880 1.1 tron /* Fall-thru */
881 1.1 tron #endif
882 1.1 tron case LDAP_SCOPE_SUBTREE:
883 1.1 tron if ( id == base->e_id ) {
884 1.1 tron scopeok = 1;
885 1.1 tron break;
886 1.1 tron }
887 1.1 tron /* Fall-thru */
888 1.1 tron case LDAP_SCOPE_ONELEVEL:
889 1.2 christos if ( id == base->e_id ) break;
890 1.1 tron isc.id = id;
891 1.1 tron isc.nscope = 0;
892 1.1 tron rs->sr_err = mdb_idscopes( op, &isc );
893 1.1 tron if ( rs->sr_err == MDB_SUCCESS ) {
894 1.1 tron if ( isc.nscope )
895 1.1 tron scopeok = 1;
896 1.1 tron } else {
897 1.1 tron if ( rs->sr_err == MDB_NOTFOUND )
898 1.1 tron goto notfound;
899 1.1 tron }
900 1.1 tron break;
901 1.1 tron }
902 1.1 tron
903 1.1 tron /* Not in scope, ignore it */
904 1.1 tron if ( !scopeok )
905 1.1 tron {
906 1.1 tron Debug( LDAP_DEBUG_TRACE,
907 1.1 tron LDAP_XSTRING(mdb_search)
908 1.1 tron ": %ld scope not okay\n",
909 1.3 christos (long) id );
910 1.1 tron goto loop_continue;
911 1.1 tron }
912 1.1 tron
913 1.1 tron scopeok:
914 1.1 tron if ( id == base->e_id ) {
915 1.1 tron e = base;
916 1.1 tron } else {
917 1.1 tron
918 1.1 tron /* get the entry */
919 1.1 tron rs->sr_err = mdb_id2edata( op, mci, id, &edata );
920 1.1 tron if ( rs->sr_err == MDB_NOTFOUND ) {
921 1.1 tron notfound:
922 1.1 tron if( nsubs < ncand )
923 1.1 tron goto loop_continue;
924 1.1 tron
925 1.1 tron if( !MDB_IDL_IS_RANGE(candidates) ) {
926 1.1 tron /* only complain for non-range IDLs */
927 1.1 tron Debug( LDAP_DEBUG_TRACE,
928 1.1 tron LDAP_XSTRING(mdb_search)
929 1.1 tron ": candidate %ld not found\n",
930 1.3 christos (long) id );
931 1.1 tron } else {
932 1.1 tron /* get the next ID from the DB */
933 1.1 tron rs->sr_err = mdb_get_nextid( mci, &cursor );
934 1.1 tron if ( rs->sr_err == MDB_NOTFOUND ) {
935 1.1 tron break;
936 1.1 tron }
937 1.1 tron if ( rs->sr_err ) {
938 1.1 tron rs->sr_err = LDAP_OTHER;
939 1.1 tron rs->sr_text = "internal error in get_nextid";
940 1.1 tron send_ldap_result( op, rs );
941 1.1 tron goto done;
942 1.1 tron }
943 1.1 tron cursor--;
944 1.1 tron }
945 1.1 tron
946 1.1 tron goto loop_continue;
947 1.1 tron } else if ( rs->sr_err ) {
948 1.1 tron rs->sr_err = LDAP_OTHER;
949 1.1 tron rs->sr_text = "internal error in mdb_id2edata";
950 1.1 tron send_ldap_result( op, rs );
951 1.1 tron goto done;
952 1.1 tron }
953 1.1 tron
954 1.3 christos rs->sr_err = mdb_entry_decode( op, ltid, &edata, id, &e );
955 1.1 tron if ( rs->sr_err ) {
956 1.1 tron rs->sr_err = LDAP_OTHER;
957 1.1 tron rs->sr_text = "internal error in mdb_entry_decode";
958 1.1 tron send_ldap_result( op, rs );
959 1.1 tron goto done;
960 1.1 tron }
961 1.1 tron e->e_id = id;
962 1.1 tron e->e_name.bv_val = NULL;
963 1.1 tron e->e_nname.bv_val = NULL;
964 1.1 tron }
965 1.1 tron
966 1.1 tron if ( is_entry_subentry( e ) ) {
967 1.1 tron if( op->oq_search.rs_scope != LDAP_SCOPE_BASE ) {
968 1.1 tron if(!get_subentries_visibility( op )) {
969 1.1 tron /* only subentries are visible */
970 1.1 tron goto loop_continue;
971 1.1 tron }
972 1.1 tron
973 1.1 tron } else if ( get_subentries( op ) &&
974 1.1 tron !get_subentries_visibility( op ))
975 1.1 tron {
976 1.1 tron /* only subentries are visible */
977 1.1 tron goto loop_continue;
978 1.1 tron }
979 1.1 tron
980 1.1 tron } else if ( get_subentries_visibility( op )) {
981 1.1 tron /* only subentries are visible */
982 1.1 tron goto loop_continue;
983 1.1 tron }
984 1.1 tron
985 1.1 tron /* aliases were already dereferenced in candidate list */
986 1.1 tron if ( op->ors_deref & LDAP_DEREF_SEARCHING ) {
987 1.1 tron /* but if the search base is an alias, and we didn't
988 1.1 tron * deref it when finding, return it.
989 1.1 tron */
990 1.1 tron if ( is_entry_alias(e) &&
991 1.1 tron ((op->ors_deref & LDAP_DEREF_FINDING) || e != base ))
992 1.1 tron {
993 1.1 tron goto loop_continue;
994 1.1 tron }
995 1.1 tron }
996 1.1 tron
997 1.1 tron if ( !manageDSAit && is_entry_glue( e )) {
998 1.1 tron goto loop_continue;
999 1.1 tron }
1000 1.1 tron
1001 1.1 tron if (e != base) {
1002 1.1 tron struct berval pdn, pndn;
1003 1.1 tron char *d, *n;
1004 1.1 tron int i;
1005 1.1 tron
1006 1.1 tron /* child of base, just append RDNs to base->e_name */
1007 1.1 tron if ( nsubs < ncand || isc.scopes[isc.nscope].mid == base->e_id ) {
1008 1.1 tron pdn = base->e_name;
1009 1.1 tron pndn = base->e_nname;
1010 1.1 tron } else {
1011 1.1 tron mdb_id2name( op, ltid, &isc.mc, scopes[isc.nscope].mid, &pdn, &pndn );
1012 1.1 tron }
1013 1.1 tron e->e_name.bv_len = pdn.bv_len;
1014 1.1 tron e->e_nname.bv_len = pndn.bv_len;
1015 1.1 tron for (i=0; i<isc.numrdns; i++) {
1016 1.1 tron e->e_name.bv_len += isc.rdns[i].bv_len + 1;
1017 1.1 tron e->e_nname.bv_len += isc.nrdns[i].bv_len + 1;
1018 1.1 tron }
1019 1.1 tron e->e_name.bv_val = op->o_tmpalloc(e->e_name.bv_len + 1, op->o_tmpmemctx);
1020 1.1 tron e->e_nname.bv_val = op->o_tmpalloc(e->e_nname.bv_len + 1, op->o_tmpmemctx);
1021 1.1 tron d = e->e_name.bv_val;
1022 1.1 tron n = e->e_nname.bv_val;
1023 1.1 tron if (nsubs < ncand) {
1024 1.1 tron /* RDNs are in top-down order */
1025 1.1 tron for (i=isc.numrdns-1; i>=0; i--) {
1026 1.1 tron memcpy(d, isc.rdns[i].bv_val, isc.rdns[i].bv_len);
1027 1.1 tron d += isc.rdns[i].bv_len;
1028 1.1 tron *d++ = ',';
1029 1.1 tron memcpy(n, isc.nrdns[i].bv_val, isc.nrdns[i].bv_len);
1030 1.1 tron n += isc.nrdns[i].bv_len;
1031 1.1 tron *n++ = ',';
1032 1.1 tron }
1033 1.1 tron } else {
1034 1.1 tron /* RDNs are in bottom-up order */
1035 1.1 tron for (i=0; i<isc.numrdns; i++) {
1036 1.1 tron memcpy(d, isc.rdns[i].bv_val, isc.rdns[i].bv_len);
1037 1.1 tron d += isc.rdns[i].bv_len;
1038 1.1 tron *d++ = ',';
1039 1.1 tron memcpy(n, isc.nrdns[i].bv_val, isc.nrdns[i].bv_len);
1040 1.1 tron n += isc.nrdns[i].bv_len;
1041 1.1 tron *n++ = ',';
1042 1.1 tron }
1043 1.1 tron }
1044 1.1 tron
1045 1.1 tron if (pdn.bv_len) {
1046 1.1 tron memcpy(d, pdn.bv_val, pdn.bv_len+1);
1047 1.1 tron memcpy(n, pndn.bv_val, pndn.bv_len+1);
1048 1.1 tron } else {
1049 1.1 tron *--d = '\0';
1050 1.1 tron *--n = '\0';
1051 1.1 tron e->e_name.bv_len--;
1052 1.1 tron e->e_nname.bv_len--;
1053 1.1 tron }
1054 1.1 tron if (pndn.bv_val != base->e_nname.bv_val) {
1055 1.1 tron op->o_tmpfree(pndn.bv_val, op->o_tmpmemctx);
1056 1.1 tron op->o_tmpfree(pdn.bv_val, op->o_tmpmemctx);
1057 1.1 tron }
1058 1.1 tron }
1059 1.1 tron
1060 1.1 tron /*
1061 1.1 tron * if it's a referral, add it to the list of referrals. only do
1062 1.1 tron * this for non-base searches, and don't check the filter
1063 1.1 tron * explicitly here since it's only a candidate anyway.
1064 1.1 tron */
1065 1.1 tron if ( !manageDSAit && op->oq_search.rs_scope != LDAP_SCOPE_BASE
1066 1.1 tron && is_entry_referral( e ) )
1067 1.1 tron {
1068 1.1 tron BerVarray erefs = get_entry_referrals( op, e );
1069 1.1 tron rs->sr_ref = referral_rewrite( erefs, &e->e_name, NULL,
1070 1.1 tron op->oq_search.rs_scope == LDAP_SCOPE_ONELEVEL
1071 1.1 tron ? LDAP_SCOPE_BASE : LDAP_SCOPE_SUBTREE );
1072 1.1 tron
1073 1.1 tron rs->sr_entry = e;
1074 1.1 tron rs->sr_flags = 0;
1075 1.1 tron
1076 1.1 tron send_search_reference( op, rs );
1077 1.1 tron
1078 1.2 christos if (e != base)
1079 1.2 christos mdb_entry_return( op, e );
1080 1.1 tron rs->sr_entry = NULL;
1081 1.1 tron e = NULL;
1082 1.1 tron
1083 1.1 tron ber_bvarray_free( rs->sr_ref );
1084 1.1 tron ber_bvarray_free( erefs );
1085 1.1 tron rs->sr_ref = NULL;
1086 1.1 tron
1087 1.1 tron goto loop_continue;
1088 1.1 tron }
1089 1.1 tron
1090 1.1 tron /* if it matches the filter and scope, send it */
1091 1.1 tron rs->sr_err = test_filter( op, e, op->oq_search.rs_filter );
1092 1.1 tron
1093 1.1 tron if ( rs->sr_err == LDAP_COMPARE_TRUE ) {
1094 1.1 tron /* check size limit */
1095 1.1 tron if ( get_pagedresults(op) > SLAP_CONTROL_IGNORED ) {
1096 1.1 tron if ( rs->sr_nentries >= ((PagedResultsState *)op->o_pagedresults_state)->ps_size ) {
1097 1.2 christos if (e != base)
1098 1.2 christos mdb_entry_return( op, e );
1099 1.1 tron e = NULL;
1100 1.1 tron send_paged_response( op, rs, &lastid, tentries );
1101 1.1 tron goto done;
1102 1.1 tron }
1103 1.1 tron lastid = id;
1104 1.1 tron }
1105 1.1 tron
1106 1.1 tron if (e) {
1107 1.1 tron /* safe default */
1108 1.1 tron rs->sr_attrs = op->oq_search.rs_attrs;
1109 1.1 tron rs->sr_operational_attrs = NULL;
1110 1.1 tron rs->sr_ctrls = NULL;
1111 1.1 tron rs->sr_entry = e;
1112 1.1 tron RS_ASSERT( e->e_private != NULL );
1113 1.1 tron rs->sr_flags = 0;
1114 1.1 tron rs->sr_err = LDAP_SUCCESS;
1115 1.1 tron rs->sr_err = send_search_entry( op, rs );
1116 1.1 tron rs->sr_attrs = NULL;
1117 1.1 tron rs->sr_entry = NULL;
1118 1.1 tron if (e != base)
1119 1.1 tron mdb_entry_return( op, e );
1120 1.1 tron e = NULL;
1121 1.1 tron
1122 1.1 tron switch ( rs->sr_err ) {
1123 1.1 tron case LDAP_SUCCESS: /* entry sent ok */
1124 1.1 tron break;
1125 1.1 tron default: /* entry not sent */
1126 1.1 tron break;
1127 1.1 tron case LDAP_BUSY:
1128 1.1 tron send_ldap_result( op, rs );
1129 1.1 tron goto done;
1130 1.1 tron case LDAP_UNAVAILABLE:
1131 1.1 tron case LDAP_SIZELIMIT_EXCEEDED:
1132 1.1 tron if ( rs->sr_err == LDAP_SIZELIMIT_EXCEEDED ) {
1133 1.1 tron rs->sr_ref = rs->sr_v2ref;
1134 1.1 tron send_ldap_result( op, rs );
1135 1.1 tron rs->sr_err = LDAP_SUCCESS;
1136 1.1 tron
1137 1.1 tron } else {
1138 1.1 tron rs->sr_err = LDAP_OTHER;
1139 1.1 tron }
1140 1.1 tron goto done;
1141 1.1 tron }
1142 1.1 tron }
1143 1.1 tron
1144 1.1 tron } else {
1145 1.1 tron Debug( LDAP_DEBUG_TRACE,
1146 1.1 tron LDAP_XSTRING(mdb_search)
1147 1.1 tron ": %ld does not match filter\n",
1148 1.3 christos (long) id );
1149 1.1 tron }
1150 1.1 tron
1151 1.1 tron loop_continue:
1152 1.2 christos if ( moi == &opinfo && !wwctx.flag && mdb->mi_rtxn_size ) {
1153 1.2 christos wwctx.nentries++;
1154 1.2 christos if ( wwctx.nentries >= mdb->mi_rtxn_size ) {
1155 1.2 christos MDB_envinfo ei;
1156 1.2 christos wwctx.nentries = 0;
1157 1.2 christos mdb_env_info(mdb->mi_dbenv, &ei);
1158 1.2 christos if ( ei.me_last_txnid > mdb_txn_id( ltid ))
1159 1.2 christos mdb_rtxn_snap( op, &wwctx );
1160 1.2 christos }
1161 1.2 christos }
1162 1.2 christos if ( wwctx.flag ) {
1163 1.2 christos rs->sr_err = mdb_waitfixup( op, &wwctx, mci, mcd, &isc );
1164 1.2 christos if ( rs->sr_err ) {
1165 1.2 christos send_ldap_result( op, rs );
1166 1.2 christos goto done;
1167 1.2 christos }
1168 1.2 christos }
1169 1.2 christos
1170 1.1 tron if( e != NULL ) {
1171 1.1 tron if ( e != base )
1172 1.1 tron mdb_entry_return( op, e );
1173 1.1 tron RS_ASSERT( rs->sr_entry == NULL );
1174 1.1 tron e = NULL;
1175 1.1 tron rs->sr_entry = NULL;
1176 1.1 tron }
1177 1.1 tron
1178 1.1 tron if ( nsubs < ncand ) {
1179 1.1 tron int rc = mdb_dn2id_walk( op, &isc );
1180 1.1 tron if (rc) {
1181 1.1 tron id = NOID;
1182 1.1 tron /* We got to the end of a subtree. If there are any
1183 1.1 tron * alias scopes left, search them too.
1184 1.1 tron */
1185 1.1 tron while (iscopes[0] && cscope < iscopes[0]) {
1186 1.1 tron cscope++;
1187 1.1 tron isc.id = iscopes[cscope];
1188 1.1 tron if ( base )
1189 1.1 tron mdb_entry_return( op, base );
1190 1.1 tron rs->sr_err = mdb_id2entry(op, mci, isc.id, &base);
1191 1.1 tron if ( !rs->sr_err ) {
1192 1.1 tron mdb_id2name( op, ltid, &isc.mc, isc.id, &base->e_name, &base->e_nname );
1193 1.1 tron isc.numrdns = 0;
1194 1.1 tron if (isc.oscope == LDAP_SCOPE_ONELEVEL)
1195 1.1 tron isc.oscope = LDAP_SCOPE_BASE;
1196 1.1 tron rc = mdb_dn2id_walk( op, &isc );
1197 1.1 tron if ( !rc ) {
1198 1.1 tron id = isc.id;
1199 1.1 tron break;
1200 1.1 tron }
1201 1.1 tron }
1202 1.1 tron }
1203 1.1 tron } else
1204 1.1 tron id = isc.id;
1205 1.1 tron } else {
1206 1.1 tron id = mdb_idl_next( candidates, &cursor );
1207 1.1 tron }
1208 1.1 tron }
1209 1.1 tron
1210 1.1 tron nochange:
1211 1.1 tron rs->sr_ctrls = NULL;
1212 1.1 tron rs->sr_ref = rs->sr_v2ref;
1213 1.1 tron rs->sr_err = (rs->sr_v2ref == NULL) ? LDAP_SUCCESS : LDAP_REFERRAL;
1214 1.1 tron rs->sr_rspoid = NULL;
1215 1.1 tron if ( get_pagedresults(op) > SLAP_CONTROL_IGNORED ) {
1216 1.1 tron send_paged_response( op, rs, NULL, 0 );
1217 1.1 tron } else {
1218 1.1 tron send_ldap_result( op, rs );
1219 1.1 tron }
1220 1.1 tron
1221 1.1 tron done:
1222 1.2 christos if ( cb.sc_private ) {
1223 1.2 christos /* remove our writewait callback */
1224 1.2 christos slap_callback **scp = &op->o_callback;
1225 1.2 christos while ( *scp ) {
1226 1.2 christos if ( *scp == &cb ) {
1227 1.2 christos *scp = cb.sc_next;
1228 1.2 christos cb.sc_private = NULL;
1229 1.2 christos break;
1230 1.2 christos }
1231 1.2 christos }
1232 1.2 christos }
1233 1.1 tron mdb_cursor_close( mcd );
1234 1.1 tron mdb_cursor_close( mci );
1235 1.1 tron if ( moi == &opinfo ) {
1236 1.1 tron mdb_txn_reset( moi->moi_txn );
1237 1.1 tron LDAP_SLIST_REMOVE( &op->o_extra, &moi->moi_oe, OpExtra, oe_next );
1238 1.1 tron } else {
1239 1.1 tron moi->moi_ref--;
1240 1.1 tron }
1241 1.1 tron if( rs->sr_v2ref ) {
1242 1.1 tron ber_bvarray_free( rs->sr_v2ref );
1243 1.1 tron rs->sr_v2ref = NULL;
1244 1.1 tron }
1245 1.1 tron if (base)
1246 1.2 christos mdb_entry_return( op, base );
1247 1.1 tron scope_chunk_ret( op, scopes );
1248 1.3 christos if ( candidates != c0 ) {
1249 1.3 christos ch_free( candidates );
1250 1.3 christos } else {
1251 1.3 christos MDB_IDL_ZERO( candidates );
1252 1.3 christos }
1253 1.1 tron
1254 1.1 tron return rs->sr_err;
1255 1.1 tron }
1256 1.1 tron
1257 1.1 tron
1258 1.1 tron static int base_candidate(
1259 1.1 tron BackendDB *be,
1260 1.1 tron Entry *e,
1261 1.1 tron ID *ids )
1262 1.1 tron {
1263 1.1 tron Debug(LDAP_DEBUG_ARGS, "base_candidates: base: \"%s\" (0x%08lx)\n",
1264 1.3 christos e->e_nname.bv_val, (long) e->e_id );
1265 1.1 tron
1266 1.1 tron ids[0] = 1;
1267 1.1 tron ids[1] = e->e_id;
1268 1.1 tron return 0;
1269 1.1 tron }
1270 1.1 tron
1271 1.1 tron /* Look for "objectClass Present" in this filter.
1272 1.1 tron * Also count depth of filter tree while we're at it.
1273 1.1 tron */
1274 1.1 tron static int oc_filter(
1275 1.1 tron Filter *f,
1276 1.1 tron int cur,
1277 1.1 tron int *max )
1278 1.1 tron {
1279 1.1 tron int rc = 0;
1280 1.1 tron
1281 1.1 tron assert( f != NULL );
1282 1.1 tron
1283 1.1 tron if( cur > *max ) *max = cur;
1284 1.1 tron
1285 1.1 tron switch( f->f_choice ) {
1286 1.1 tron case LDAP_FILTER_PRESENT:
1287 1.1 tron if (f->f_desc == slap_schema.si_ad_objectClass) {
1288 1.1 tron rc = 1;
1289 1.1 tron }
1290 1.1 tron break;
1291 1.1 tron
1292 1.1 tron case LDAP_FILTER_AND:
1293 1.1 tron case LDAP_FILTER_OR:
1294 1.1 tron cur++;
1295 1.1 tron for ( f=f->f_and; f; f=f->f_next ) {
1296 1.1 tron (void) oc_filter(f, cur, max);
1297 1.1 tron }
1298 1.1 tron break;
1299 1.1 tron
1300 1.1 tron default:
1301 1.1 tron break;
1302 1.1 tron }
1303 1.1 tron return rc;
1304 1.1 tron }
1305 1.1 tron
1306 1.3 christos typedef struct IDLchunk {
1307 1.3 christos unsigned int logn;
1308 1.3 christos unsigned int pad;
1309 1.3 christos } IDLchunk;
1310 1.3 christos
1311 1.1 tron static void search_stack_free( void *key, void *data )
1312 1.1 tron {
1313 1.1 tron ber_memfree_x(data, NULL);
1314 1.1 tron }
1315 1.1 tron
1316 1.1 tron static void *search_stack( Operation *op )
1317 1.1 tron {
1318 1.1 tron struct mdb_info *mdb = (struct mdb_info *) op->o_bd->be_private;
1319 1.3 christos IDLchunk *ic = NULL;
1320 1.1 tron
1321 1.1 tron if ( op->o_threadctx ) {
1322 1.1 tron ldap_pvt_thread_pool_getkey( op->o_threadctx, (void *)search_stack,
1323 1.3 christos (void **)&ic, NULL );
1324 1.1 tron } else {
1325 1.3 christos ic = mdb->mi_search_stack;
1326 1.3 christos }
1327 1.3 christos
1328 1.3 christos if ( ic && ic->logn != MDB_idl_logn ) {
1329 1.3 christos ber_memfree_x( ic, NULL );
1330 1.3 christos ic = NULL;
1331 1.1 tron }
1332 1.1 tron
1333 1.3 christos if ( !ic ) {
1334 1.4 christos ic = ch_malloc(( mdb->mi_search_stack_depth + 2 ) * (size_t)MDB_idl_um_size
1335 1.3 christos * sizeof( ID ) + sizeof( IDLchunk ) );
1336 1.3 christos ic->logn = MDB_idl_logn;
1337 1.1 tron if ( op->o_threadctx ) {
1338 1.1 tron ldap_pvt_thread_pool_setkey( op->o_threadctx, (void *)search_stack,
1339 1.3 christos ic, search_stack_free, NULL, NULL );
1340 1.1 tron } else {
1341 1.3 christos mdb->mi_search_stack = ic;
1342 1.1 tron }
1343 1.3 christos ID *idl = (ID *)( ic+1 );
1344 1.3 christos MDB_IDL_ZERO( idl );
1345 1.1 tron }
1346 1.3 christos return ic+1;
1347 1.1 tron }
1348 1.1 tron
1349 1.1 tron static int search_candidates(
1350 1.1 tron Operation *op,
1351 1.1 tron SlapReply *rs,
1352 1.1 tron Entry *e,
1353 1.2 christos IdScopes *isc,
1354 1.1 tron MDB_cursor *mci,
1355 1.1 tron ID *ids,
1356 1.2 christos ID *stack )
1357 1.1 tron {
1358 1.1 tron struct mdb_info *mdb = (struct mdb_info *) op->o_bd->be_private;
1359 1.1 tron int rc, depth = 1;
1360 1.1 tron Filter *f, rf, xf, nf, sf;
1361 1.1 tron AttributeAssertion aa_ref = ATTRIBUTEASSERTION_INIT;
1362 1.1 tron AttributeAssertion aa_subentry = ATTRIBUTEASSERTION_INIT;
1363 1.1 tron
1364 1.1 tron /*
1365 1.1 tron * This routine takes as input a filter (user-filter)
1366 1.1 tron * and rewrites it as follows:
1367 1.1 tron * (&(scope=DN)[(objectClass=subentry)]
1368 1.1 tron * (|[(objectClass=referral)](user-filter))
1369 1.1 tron */
1370 1.1 tron
1371 1.1 tron Debug(LDAP_DEBUG_TRACE,
1372 1.1 tron "search_candidates: base=\"%s\" (0x%08lx) scope=%d\n",
1373 1.1 tron e->e_nname.bv_val, (long) e->e_id, op->oq_search.rs_scope );
1374 1.1 tron
1375 1.1 tron f = op->oq_search.rs_filter;
1376 1.1 tron
1377 1.1 tron /* If the user's filter uses objectClass=*,
1378 1.1 tron * these clauses are redundant.
1379 1.1 tron */
1380 1.1 tron if (!oc_filter(op->oq_search.rs_filter, 1, &depth)
1381 1.1 tron && !get_subentries_visibility(op)) {
1382 1.1 tron if( !get_manageDSAit(op) && !get_domainScope(op) ) {
1383 1.1 tron /* match referral objects */
1384 1.1 tron struct berval bv_ref = BER_BVC( "referral" );
1385 1.1 tron rf.f_choice = LDAP_FILTER_EQUALITY;
1386 1.1 tron rf.f_ava = &aa_ref;
1387 1.1 tron rf.f_av_desc = slap_schema.si_ad_objectClass;
1388 1.1 tron rf.f_av_value = bv_ref;
1389 1.1 tron rf.f_next = f;
1390 1.1 tron xf.f_or = &rf;
1391 1.1 tron xf.f_choice = LDAP_FILTER_OR;
1392 1.1 tron xf.f_next = NULL;
1393 1.1 tron f = &xf;
1394 1.1 tron depth++;
1395 1.1 tron }
1396 1.1 tron }
1397 1.1 tron
1398 1.1 tron if( get_subentries_visibility( op ) ) {
1399 1.1 tron struct berval bv_subentry = BER_BVC( "subentry" );
1400 1.1 tron sf.f_choice = LDAP_FILTER_EQUALITY;
1401 1.1 tron sf.f_ava = &aa_subentry;
1402 1.1 tron sf.f_av_desc = slap_schema.si_ad_objectClass;
1403 1.1 tron sf.f_av_value = bv_subentry;
1404 1.1 tron sf.f_next = f;
1405 1.1 tron nf.f_choice = LDAP_FILTER_AND;
1406 1.1 tron nf.f_and = &sf;
1407 1.1 tron nf.f_next = NULL;
1408 1.1 tron f = &nf;
1409 1.1 tron depth++;
1410 1.1 tron }
1411 1.1 tron
1412 1.1 tron /* Allocate IDL stack, plus 1 more for former tmp */
1413 1.1 tron if ( depth+1 > mdb->mi_search_stack_depth ) {
1414 1.3 christos stack = ch_malloc( (depth + 1) * MDB_idl_um_size * sizeof( ID ) );
1415 1.1 tron }
1416 1.1 tron
1417 1.1 tron if( op->ors_deref & LDAP_DEREF_SEARCHING ) {
1418 1.2 christos rc = search_aliases( op, rs, e->e_id, isc, mci, stack );
1419 1.1 tron } else {
1420 1.1 tron rc = LDAP_SUCCESS;
1421 1.1 tron }
1422 1.1 tron
1423 1.1 tron if ( rc == LDAP_SUCCESS ) {
1424 1.2 christos rc = mdb_filter_candidates( op, isc->mt, f, ids,
1425 1.3 christos stack, stack+MDB_idl_um_size );
1426 1.1 tron }
1427 1.1 tron
1428 1.1 tron if ( depth+1 > mdb->mi_search_stack_depth ) {
1429 1.1 tron ch_free( stack );
1430 1.1 tron }
1431 1.1 tron
1432 1.1 tron if( rc ) {
1433 1.1 tron Debug(LDAP_DEBUG_TRACE,
1434 1.1 tron "mdb_search_candidates: failed (rc=%d)\n",
1435 1.3 christos rc );
1436 1.1 tron
1437 1.1 tron } else {
1438 1.1 tron Debug(LDAP_DEBUG_TRACE,
1439 1.1 tron "mdb_search_candidates: id=%ld first=%ld last=%ld\n",
1440 1.1 tron (long) ids[0],
1441 1.1 tron (long) MDB_IDL_FIRST(ids),
1442 1.1 tron (long) MDB_IDL_LAST(ids) );
1443 1.1 tron }
1444 1.1 tron
1445 1.1 tron return rc;
1446 1.1 tron }
1447 1.1 tron
1448 1.1 tron static int
1449 1.1 tron parse_paged_cookie( Operation *op, SlapReply *rs )
1450 1.1 tron {
1451 1.1 tron int rc = LDAP_SUCCESS;
1452 1.1 tron PagedResultsState *ps = op->o_pagedresults_state;
1453 1.1 tron
1454 1.1 tron /* this function must be invoked only if the pagedResults
1455 1.1 tron * control has been detected, parsed and partially checked
1456 1.1 tron * by the frontend */
1457 1.1 tron assert( get_pagedresults( op ) > SLAP_CONTROL_IGNORED );
1458 1.1 tron
1459 1.1 tron /* cookie decoding/checks deferred to backend... */
1460 1.1 tron if ( ps->ps_cookieval.bv_len ) {
1461 1.1 tron PagedResultsCookie reqcookie;
1462 1.1 tron if( ps->ps_cookieval.bv_len != sizeof( reqcookie ) ) {
1463 1.1 tron /* bad cookie */
1464 1.1 tron rs->sr_text = "paged results cookie is invalid";
1465 1.1 tron rc = LDAP_PROTOCOL_ERROR;
1466 1.1 tron goto done;
1467 1.1 tron }
1468 1.1 tron
1469 1.1 tron AC_MEMCPY( &reqcookie, ps->ps_cookieval.bv_val, sizeof( reqcookie ));
1470 1.1 tron
1471 1.1 tron if ( reqcookie > ps->ps_cookie ) {
1472 1.1 tron /* bad cookie */
1473 1.1 tron rs->sr_text = "paged results cookie is invalid";
1474 1.1 tron rc = LDAP_PROTOCOL_ERROR;
1475 1.1 tron goto done;
1476 1.1 tron
1477 1.1 tron } else if ( reqcookie < ps->ps_cookie ) {
1478 1.1 tron rs->sr_text = "paged results cookie is invalid or old";
1479 1.1 tron rc = LDAP_UNWILLING_TO_PERFORM;
1480 1.1 tron goto done;
1481 1.1 tron }
1482 1.1 tron
1483 1.1 tron } else {
1484 1.1 tron /* we're going to use ps_cookie */
1485 1.1 tron op->o_conn->c_pagedresults_state.ps_cookie = 0;
1486 1.1 tron }
1487 1.1 tron
1488 1.1 tron done:;
1489 1.1 tron
1490 1.1 tron return rc;
1491 1.1 tron }
1492 1.1 tron
1493 1.1 tron static void
1494 1.1 tron send_paged_response(
1495 1.1 tron Operation *op,
1496 1.1 tron SlapReply *rs,
1497 1.1 tron ID *lastid,
1498 1.1 tron int tentries )
1499 1.1 tron {
1500 1.1 tron LDAPControl *ctrls[2];
1501 1.1 tron BerElementBuffer berbuf;
1502 1.1 tron BerElement *ber = (BerElement *)&berbuf;
1503 1.1 tron PagedResultsCookie respcookie;
1504 1.1 tron struct berval cookie;
1505 1.1 tron
1506 1.1 tron Debug(LDAP_DEBUG_ARGS,
1507 1.1 tron "send_paged_response: lastid=0x%08lx nentries=%d\n",
1508 1.3 christos lastid ? *lastid : 0, rs->sr_nentries );
1509 1.1 tron
1510 1.1 tron ctrls[1] = NULL;
1511 1.1 tron
1512 1.1 tron ber_init2( ber, NULL, LBER_USE_DER );
1513 1.1 tron
1514 1.1 tron if ( lastid ) {
1515 1.1 tron respcookie = ( PagedResultsCookie )(*lastid);
1516 1.1 tron cookie.bv_len = sizeof( respcookie );
1517 1.1 tron cookie.bv_val = (char *)&respcookie;
1518 1.1 tron
1519 1.1 tron } else {
1520 1.1 tron respcookie = ( PagedResultsCookie )0;
1521 1.1 tron BER_BVSTR( &cookie, "" );
1522 1.1 tron }
1523 1.1 tron
1524 1.1 tron op->o_conn->c_pagedresults_state.ps_cookie = respcookie;
1525 1.1 tron op->o_conn->c_pagedresults_state.ps_count =
1526 1.1 tron ((PagedResultsState *)op->o_pagedresults_state)->ps_count +
1527 1.1 tron rs->sr_nentries;
1528 1.1 tron
1529 1.1 tron /* return size of 0 -- no estimate */
1530 1.1 tron ber_printf( ber, "{iO}", 0, &cookie );
1531 1.1 tron
1532 1.1 tron ctrls[0] = op->o_tmpalloc( sizeof(LDAPControl), op->o_tmpmemctx );
1533 1.1 tron if ( ber_flatten2( ber, &ctrls[0]->ldctl_value, 0 ) == -1 ) {
1534 1.1 tron goto done;
1535 1.1 tron }
1536 1.1 tron
1537 1.1 tron ctrls[0]->ldctl_oid = LDAP_CONTROL_PAGEDRESULTS;
1538 1.1 tron ctrls[0]->ldctl_iscritical = 0;
1539 1.1 tron
1540 1.1 tron slap_add_ctrls( op, rs, ctrls );
1541 1.1 tron rs->sr_err = LDAP_SUCCESS;
1542 1.1 tron send_ldap_result( op, rs );
1543 1.1 tron
1544 1.1 tron done:
1545 1.1 tron (void) ber_free_buf( ber );
1546 1.1 tron }
1547