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1 /* idl.c - ldap id list handling routines */
2 /* $OpenLDAP$ */
3 /* This work is part of OpenLDAP Software <http://www.openldap.org/>.
4  *
5  * Copyright 2000-2004 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
17 #include "portable.h"
18
19 #include <stdio.h>
20 #include <ac/string.h>
21
22 #include "back-bdb.h"
23 #include "idl.h"
24
25 #define IDL_MAX(x,y)    ( x > y ? x : y )
26 #define IDL_MIN(x,y)    ( x < y ? x : y )
27
28 #define IDL_CMP(x,y)    ( x < y ? -1 : ( x > y ? 1 : 0 ) )
29
30 #define IDL_LRU_DELETE( bdb, e ) do {                                   \
31         if ( e->idl_lru_prev != NULL ) {                                \
32                 e->idl_lru_prev->idl_lru_next = e->idl_lru_next;        \
33         } else {                                                        \
34                 bdb->bi_idl_lru_head = e->idl_lru_next;                 \
35         }                                                               \
36         if ( e->idl_lru_next != NULL ) {                                \
37                 e->idl_lru_next->idl_lru_prev = e->idl_lru_prev;        \
38         } else {                                                        \
39                 bdb->bi_idl_lru_tail = e->idl_lru_prev;                 \
40         }                                                               \
41 } while ( 0 )
42
43 #define IDL_LRU_ADD( bdb, e ) do {                                      \
44         e->idl_lru_next = bdb->bi_idl_lru_head;                         \
45         if ( e->idl_lru_next != NULL ) {                                \
46                 e->idl_lru_next->idl_lru_prev = (e);                    \
47         }                                                               \
48         (bdb)->bi_idl_lru_head = (e);                                   \
49         e->idl_lru_prev = NULL;                                         \
50         if ( (bdb)->bi_idl_lru_tail == NULL ) {                         \
51                 (bdb)->bi_idl_lru_tail = (e);                           \
52         }                                                               \
53 } while ( 0 )
54
55 static int
56 bdb_idl_entry_cmp( const void *v_idl1, const void *v_idl2 )
57 {
58         const bdb_idl_cache_entry_t *idl1 = v_idl1, *idl2 = v_idl2;
59         int rc;
60
61         if ((rc = SLAP_PTRCMP( idl1->db, idl2->db ))) return rc;
62         if ((rc = idl1->kstr.bv_len - idl2->kstr.bv_len )) return rc;
63         return ( memcmp ( idl1->kstr.bv_val, idl2->kstr.bv_val , idl1->kstr.bv_len ) );
64 }
65
66 #if IDL_DEBUG > 0
67 static void idl_check( ID *ids )
68 {
69         if( BDB_IDL_IS_RANGE( ids ) ) {
70                 assert( BDB_IDL_RANGE_FIRST(ids) <= BDB_IDL_RANGE_LAST(ids) );
71         } else {
72                 ID i;
73                 for( i=1; i < ids[0]; i++ ) {
74                         assert( ids[i+1] > ids[i] );
75                 }
76         }
77 }
78
79 #if IDL_DEBUG > 1
80 static void idl_dump( ID *ids )
81 {
82         if( BDB_IDL_IS_RANGE( ids ) ) {
83                 Debug( LDAP_DEBUG_ANY,
84                         "IDL: range ( %ld - %ld )\n",
85                         (long) BDB_IDL_RANGE_FIRST( ids ),
86                         (long) BDB_IDL_RANGE_LAST( ids ) );
87
88         } else {
89                 ID i;
90                 Debug( LDAP_DEBUG_ANY, "IDL: size %ld", (long) ids[0], 0, 0 );
91
92                 for( i=1; i<=ids[0]; i++ ) {
93                         if( i % 16 == 1 ) {
94                                 Debug( LDAP_DEBUG_ANY, "\n", 0, 0, 0 );
95                         }
96                         Debug( LDAP_DEBUG_ANY, "  %02lx", (long) ids[i], 0, 0 );
97                 }
98
99                 Debug( LDAP_DEBUG_ANY, "\n", 0, 0, 0 );
100         }
101
102         idl_check( ids );
103 }
104 #endif /* IDL_DEBUG > 1 */
105 #endif /* IDL_DEBUG > 0 */
106
107 unsigned bdb_idl_search( ID *ids, ID id )
108 {
109 #define IDL_BINARY_SEARCH 1
110 #ifdef IDL_BINARY_SEARCH
111         /*
112          * binary search of id in ids
113          * if found, returns position of id
114          * if not found, returns first postion greater than id
115          */
116         unsigned base = 0;
117         unsigned cursor = 0;
118         int val = 0;
119         unsigned n = ids[0];
120
121 #if IDL_DEBUG > 0
122         idl_check( ids );
123 #endif
124
125         while( 0 < n ) {
126                 int pivot = n >> 1;
127                 cursor = base + pivot;
128                 val = IDL_CMP( id, ids[cursor + 1] );
129
130                 if( val < 0 ) {
131                         n = pivot;
132
133                 } else if ( val > 0 ) {
134                         base = cursor + 1;
135                         n -= pivot + 1;
136
137                 } else {
138                         return cursor + 1;
139                 }
140         }
141         
142         if( val > 0 ) {
143                 return cursor + 2;
144         } else {
145                 return cursor + 1;
146         }
147
148 #else
149         /* (reverse) linear search */
150         int i;
151
152 #if IDL_DEBUG > 0
153         idl_check( ids );
154 #endif
155
156         for( i=ids[0]; i; i-- ) {
157                 if( id > ids[i] ) {
158                         break;
159                 }
160         }
161
162         return i+1;
163 #endif
164 }
165
166 int bdb_idl_insert( ID *ids, ID id )
167 {
168         unsigned x;
169
170 #if IDL_DEBUG > 1
171         Debug( LDAP_DEBUG_ANY, "insert: %04lx at %d\n", (long) id, x, 0 );
172         idl_dump( ids );
173 #elif IDL_DEBUG > 0
174         idl_check( ids );
175 #endif
176
177         if (BDB_IDL_IS_RANGE( ids )) {
178                 /* if already in range, treat as a dup */
179                 if (id >= BDB_IDL_FIRST(ids) && id <= BDB_IDL_LAST(ids))
180                         return -1;
181                 if (id < BDB_IDL_FIRST(ids))
182                         ids[1] = id;
183                 else if (id > BDB_IDL_LAST(ids))
184                         ids[2] = id;
185                 return 0;
186         }
187
188         x = bdb_idl_search( ids, id );
189         assert( x > 0 );
190
191         if( x < 1 ) {
192                 /* internal error */
193                 return -2;
194         }
195
196         if ( x <= ids[0] && ids[x] == id ) {
197                 /* duplicate */
198                 return -1;
199         }
200
201         if ( ++ids[0] >= BDB_IDL_DB_MAX ) {
202                 if( id < ids[1] ) {
203                         ids[1] = id;
204                         ids[2] = ids[ids[0]-1];
205                 } else if ( ids[ids[0]-1] < id ) {
206                         ids[2] = id;
207                 } else {
208                         ids[2] = ids[ids[0]-1];
209                 }
210                 ids[0] = NOID;
211         
212         } else {
213                 /* insert id */
214                 AC_MEMCPY( &ids[x+1], &ids[x], (ids[0]-x) * sizeof(ID) );
215                 ids[x] = id;
216         }
217
218 #if IDL_DEBUG > 1
219         idl_dump( ids );
220 #elif IDL_DEBUG > 0
221         idl_check( ids );
222 #endif
223
224         return 0;
225 }
226
227 #if 0   /* unused */
228 static int idl_delete( ID *ids, ID id )
229 {
230         unsigned x = bdb_idl_search( ids, id );
231
232 #if IDL_DEBUG > 1
233         Debug( LDAP_DEBUG_ANY, "delete: %04lx at %d\n", (long) id, x, 0 );
234         idl_dump( ids );
235 #elif IDL_DEBUG > 0
236         idl_check( ids );
237 #endif
238
239         assert( x > 0 );
240
241         if( x <= 0 ) {
242                 /* internal error */
243                 return -2;
244         }
245
246         if( x > ids[0] || ids[x] != id ) {
247                 /* not found */
248                 return -1;
249
250         } else if ( --ids[0] == 0 ) {
251                 if( x != 1 ) {
252                         return -3;
253                 }
254
255         } else {
256                 AC_MEMCPY( &ids[x], &ids[x+1], (1+ids[0]-x) * sizeof(ID) );
257         }
258
259 #if IDL_DEBUG > 1
260         idl_dump( ids );
261 #elif IDL_DEBUG > 0
262         idl_check( ids );
263 #endif
264
265         return 0;
266 }
267 #endif  /* unused */
268
269 static char *
270 bdb_show_key(
271         DBT             *key,
272         char            *buf )
273 {
274         if ( key->size == sizeof( ID ) ) {
275                 unsigned char *c = key->data;
276                 sprintf( buf, "[%02x%02x%02x%02x]", c[0], c[1], c[2], c[3] );
277                 return buf;
278         } else {
279                 return key->data;
280         }
281 }
282
283 /* Find a db/key pair in the IDL cache. If ids is non-NULL,
284  * copy the cached IDL into it, otherwise just return the status.
285  */
286 int
287 bdb_idl_cache_get(
288         struct bdb_info *bdb,
289         DB                      *db,
290         DBT                     *key,
291         ID                      *ids )
292 {
293         bdb_idl_cache_entry_t idl_tmp;
294         bdb_idl_cache_entry_t *matched_idl_entry;
295
296         DBT2bv( key, &idl_tmp.kstr );
297         idl_tmp.db = db;
298         ldap_pvt_thread_rdwr_rlock( &bdb->bi_idl_tree_rwlock );
299         matched_idl_entry = avl_find( bdb->bi_idl_tree, &idl_tmp,
300                                       bdb_idl_entry_cmp );
301         if ( matched_idl_entry != NULL ) {
302                 if ( matched_idl_entry->idl && ids )
303                         BDB_IDL_CPY( ids, matched_idl_entry->idl );
304                 ldap_pvt_thread_rdwr_runlock( &bdb->bi_idl_tree_rwlock );
305                 ldap_pvt_thread_mutex_lock( &bdb->bi_idl_tree_lrulock );
306                 IDL_LRU_DELETE( bdb, matched_idl_entry );
307                 IDL_LRU_ADD( bdb, matched_idl_entry );
308                 ldap_pvt_thread_mutex_unlock( &bdb->bi_idl_tree_lrulock );
309                 if ( matched_idl_entry->idl )
310                         return LDAP_SUCCESS;
311                 else
312                         return DB_NOTFOUND;
313         }
314         ldap_pvt_thread_rdwr_runlock( &bdb->bi_idl_tree_rwlock );
315
316         return LDAP_NO_SUCH_OBJECT;
317 }
318
319 void
320 bdb_idl_cache_put(
321         struct bdb_info *bdb,
322         DB                      *db,
323         DBT                     *key,
324         ID                      *ids,
325         int                     rc )
326 {
327         bdb_idl_cache_entry_t idl_tmp;
328         bdb_idl_cache_entry_t *ee;
329
330         DBT2bv( key, &idl_tmp.kstr );
331
332         ee = (bdb_idl_cache_entry_t *) ch_malloc(
333                 sizeof( bdb_idl_cache_entry_t ) );
334         ee->db = db;
335         if ( rc == DB_NOTFOUND) {
336                 ee->idl = NULL;
337         } else {
338                 ee->idl = (ID*) ch_malloc( BDB_IDL_SIZEOF ( ids ) );
339                 BDB_IDL_CPY( ee->idl, ids );
340         }
341         ee->idl_lru_prev = NULL;
342         ee->idl_lru_next = NULL;
343         ber_dupbv( &ee->kstr, &idl_tmp.kstr );
344         ldap_pvt_thread_rdwr_wlock( &bdb->bi_idl_tree_rwlock );
345         if ( avl_insert( &bdb->bi_idl_tree, (caddr_t) ee,
346                 bdb_idl_entry_cmp, avl_dup_error ))
347         {
348                 ch_free( ee->kstr.bv_val );
349                 ch_free( ee->idl );
350                 ch_free( ee );
351                 ldap_pvt_thread_rdwr_wunlock( &bdb->bi_idl_tree_rwlock );
352                 return;
353         }
354         ldap_pvt_thread_mutex_lock( &bdb->bi_idl_tree_lrulock );
355         IDL_LRU_ADD( bdb, ee );
356         if ( ++bdb->bi_idl_cache_size > bdb->bi_idl_cache_max_size ) {
357                 int i = 0;
358                 while ( bdb->bi_idl_lru_tail != NULL && i < 10 ) {
359                         ee = bdb->bi_idl_lru_tail;
360                         if ( avl_delete( &bdb->bi_idl_tree, (caddr_t) ee,
361                                     bdb_idl_entry_cmp ) == NULL ) {
362                                 Debug( LDAP_DEBUG_ANY, "=> bdb_idl_cache_put: "
363                                         "AVL delete failed\n",
364                                         0, 0, 0 );
365                         }
366                         IDL_LRU_DELETE( bdb, ee );
367                         i++;
368                         --bdb->bi_idl_cache_size;
369                         ch_free( ee->kstr.bv_val );
370                         ch_free( ee->idl );
371                         ch_free( ee );
372                 }
373         }
374
375         ldap_pvt_thread_mutex_unlock( &bdb->bi_idl_tree_lrulock );
376         ldap_pvt_thread_rdwr_wunlock( &bdb->bi_idl_tree_rwlock );
377 }
378
379 void
380 bdb_idl_cache_del(
381         struct bdb_info *bdb,
382         DB                      *db,
383         DBT                     *key )
384 {
385         bdb_idl_cache_entry_t *matched_idl_entry, idl_tmp;
386         DBT2bv( key, &idl_tmp.kstr );
387         idl_tmp.db = db;
388         ldap_pvt_thread_rdwr_wlock( &bdb->bi_idl_tree_rwlock );
389         matched_idl_entry = avl_find( bdb->bi_idl_tree, &idl_tmp,
390                                       bdb_idl_entry_cmp );
391         if ( matched_idl_entry != NULL ) {
392                 if ( avl_delete( &bdb->bi_idl_tree, (caddr_t) matched_idl_entry,
393                                     bdb_idl_entry_cmp ) == NULL ) {
394                         Debug( LDAP_DEBUG_ANY, "=> bdb_idl_cache_del: "
395                                 "AVL delete failed\n",
396                                 0, 0, 0 );
397                 }
398                 --bdb->bi_idl_cache_size;
399                 ldap_pvt_thread_mutex_lock( &bdb->bi_idl_tree_lrulock );
400                 IDL_LRU_DELETE( bdb, matched_idl_entry );
401                 ldap_pvt_thread_mutex_unlock( &bdb->bi_idl_tree_lrulock );
402                 free( matched_idl_entry->kstr.bv_val );
403                 if ( matched_idl_entry->idl )
404                         free( matched_idl_entry->idl );
405                 free( matched_idl_entry );
406         }
407         ldap_pvt_thread_rdwr_wunlock( &bdb->bi_idl_tree_rwlock );
408 }
409
410 int
411 bdb_idl_fetch_key(
412         BackendDB       *be,
413         DB                      *db,
414         DB_TXN          *tid,
415         DBT                     *key,
416         ID                      *ids,
417         DBC                     **saved_cursor,
418         int                     get_flag )
419 {
420         struct bdb_info *bdb = (struct bdb_info *) be->be_private;
421         int rc;
422         DBT data, key2, *kptr;
423         DBC *cursor;
424         ID *i;
425         void *ptr;
426         size_t len;
427         int rc2;
428         int flags = bdb->bi_db_opflags | DB_MULTIPLE;
429         int opflag;
430
431         /* If using BerkeleyDB 4.0, the buf must be large enough to
432          * grab the entire IDL in one get(), otherwise BDB will leak
433          * resources on subsequent get's.  We can safely call get()
434          * twice - once for the data, and once to get the DB_NOTFOUND
435          * result meaning there's no more data. See ITS#2040 for details.
436          * This bug is fixed in BDB 4.1 so a smaller buffer will work if
437          * stack space is too limited.
438          *
439          * configure now requires Berkeley DB 4.1.
440          */
441 #if DB_VERSION_FULL < 0x04010000
442 #       define BDB_ENOUGH 5
443 #else
444 #       define BDB_ENOUGH 1
445 #endif
446         ID buf[BDB_IDL_DB_SIZE*BDB_ENOUGH];
447
448         char keybuf[16];
449
450         Debug( LDAP_DEBUG_ARGS,
451                 "bdb_idl_fetch_key: %s\n", 
452                 bdb_show_key( key, keybuf ), 0, 0 );
453
454         assert( ids != NULL );
455
456         if ( saved_cursor && *saved_cursor ) {
457                 opflag = DB_NEXT;
458         } else if ( get_flag == LDAP_FILTER_GE ) {
459                 opflag = DB_SET_RANGE;
460         } else if ( get_flag == LDAP_FILTER_LE ) {
461                 opflag = DB_FIRST;
462         } else {
463                 opflag = DB_SET;
464         }
465
466         /* only non-range lookups can use the IDL cache */
467         if ( bdb->bi_idl_cache_size && opflag == DB_SET ) {
468                 rc = bdb_idl_cache_get( bdb, db, key, ids );
469                 if ( rc != LDAP_NO_SUCH_OBJECT ) return rc;
470         }
471
472         DBTzero( &data );
473
474         data.data = buf;
475         data.ulen = sizeof(buf);
476         data.flags = DB_DBT_USERMEM;
477
478         if ( tid ) flags |= DB_RMW;
479
480         /* If we're not reusing an existing cursor, get a new one */
481         if( opflag != DB_NEXT )
482                 rc = db->cursor( db, tid, &cursor, bdb->bi_db_opflags );
483         else
484                 cursor = *saved_cursor;
485         if( rc != 0 ) {
486                 Debug( LDAP_DEBUG_ANY, "=> bdb_idl_fetch_key: "
487                         "cursor failed: %s (%d)\n", db_strerror(rc), rc, 0 );
488                 return rc;
489         }
490         
491         /* If this is a LE lookup, save original key so we can determine
492          * when to stop. If this is a GE lookup, save the key since it
493          * will be overwritten.
494          */
495         if ( get_flag == LDAP_FILTER_LE || get_flag == LDAP_FILTER_GE ) {
496                 DBTzero( &key2 );
497                 key2.flags = DB_DBT_USERMEM;
498                 key2.ulen = sizeof(keybuf);
499                 key2.data = keybuf;
500                 key2.size = key->size;
501                 AC_MEMCPY( keybuf, key->data, key->size );
502                 kptr = &key2;
503         } else {
504                 kptr = key;
505         }
506         len = key->size;
507         rc = cursor->c_get( cursor, kptr, &data, flags | opflag );
508
509         /* skip presence key on range inequality lookups */
510         while (rc == 0 && kptr->size != len) {
511                 rc = cursor->c_get( cursor, kptr, &data, flags | DB_NEXT_NODUP );
512         }
513         /* If we're doing a LE compare and the new key is greater than
514          * our search key, we're done
515          */
516         if (rc == 0 && get_flag == LDAP_FILTER_LE && memcmp( kptr->data,
517                 key->data, key->size ) > 0 ) {
518                 rc = DB_NOTFOUND;
519         }
520         if (rc == 0) {
521                 i = ids;
522                 while (rc == 0) {
523                         u_int8_t *j;
524
525                         DB_MULTIPLE_INIT( ptr, &data );
526                         while (ptr) {
527                                 DB_MULTIPLE_NEXT(ptr, &data, j, len);
528                                 if (j) {
529                                         ++i;
530                                         AC_MEMCPY( i, j, sizeof(ID) );
531                                 }
532                         }
533                         rc = cursor->c_get( cursor, key, &data, flags | DB_NEXT_DUP );
534                 }
535                 if ( rc == DB_NOTFOUND ) rc = 0;
536                 ids[0] = i - ids;
537                 /* On disk, a range is denoted by 0 in the first element */
538                 if (ids[1] == 0) {
539                         if (ids[0] != BDB_IDL_RANGE_SIZE) {
540                                 Debug( LDAP_DEBUG_ANY, "=> bdb_idl_fetch_key: "
541                                         "range size mismatch: expected %d, got %ld\n",
542                                         BDB_IDL_RANGE_SIZE, ids[0], 0 );
543                                 cursor->c_close( cursor );
544                                 return -1;
545                         }
546                         BDB_IDL_RANGE( ids, ids[2], ids[3] );
547                 }
548                 data.size = BDB_IDL_SIZEOF(ids);
549         }
550
551         if ( saved_cursor && rc == 0 ) {
552                 if ( !*saved_cursor )
553                         *saved_cursor = cursor;
554                 rc2 = 0;
555         }
556         else
557                 rc2 = cursor->c_close( cursor );
558         if (rc2) {
559                 Debug( LDAP_DEBUG_ANY, "=> bdb_idl_fetch_key: "
560                         "close failed: %s (%d)\n", db_strerror(rc2), rc2, 0 );
561                 return rc2;
562         }
563
564         if( rc == DB_NOTFOUND ) {
565                 return rc;
566
567         } else if( rc != 0 ) {
568                 Debug( LDAP_DEBUG_ANY, "=> bdb_idl_fetch_key: "
569                         "get failed: %s (%d)\n",
570                         db_strerror(rc), rc, 0 );
571                 return rc;
572
573         } else if ( data.size == 0 || data.size % sizeof( ID ) ) {
574                 /* size not multiple of ID size */
575                 Debug( LDAP_DEBUG_ANY, "=> bdb_idl_fetch_key: "
576                         "odd size: expected %ld multiple, got %ld\n",
577                         (long) sizeof( ID ), (long) data.size, 0 );
578                 return -1;
579
580         } else if ( data.size != BDB_IDL_SIZEOF(ids) ) {
581                 /* size mismatch */
582                 Debug( LDAP_DEBUG_ANY, "=> bdb_idl_fetch_key: "
583                         "get size mismatch: expected %ld, got %ld\n",
584                         (long) ((1 + ids[0]) * sizeof( ID )), (long) data.size, 0 );
585                 return -1;
586         }
587
588         if ( bdb->bi_idl_cache_max_size ) {
589                 bdb_idl_cache_put( bdb, db, key, ids, rc );
590         }
591
592         return rc;
593 }
594
595
596 int
597 bdb_idl_insert_key(
598         BackendDB       *be,
599         DB                      *db,
600         DB_TXN          *tid,
601         DBT                     *key,
602         ID                      id )
603 {
604         struct bdb_info *bdb = (struct bdb_info *) be->be_private;
605         int     rc;
606         DBT data;
607         DBC *cursor;
608         ID lo, hi, tmp;
609         char *err;
610
611         {
612                 char buf[16];
613                 Debug( LDAP_DEBUG_ARGS,
614                         "bdb_idl_insert_key: %lx %s\n", 
615                         (long) id, bdb_show_key( key, buf ), 0 );
616         }
617
618         assert( id != NOID );
619
620         if ( bdb->bi_idl_cache_size ) {
621                 bdb_idl_cache_del( bdb, db, key );
622         }
623
624         DBTzero( &data );
625         data.size = sizeof( ID );
626         data.ulen = data.size;
627         data.flags = DB_DBT_USERMEM;
628
629         rc = db->cursor( db, tid, &cursor, bdb->bi_db_opflags );
630         if ( rc != 0 ) {
631                 Debug( LDAP_DEBUG_ANY, "=> bdb_idl_insert_key: "
632                         "cursor failed: %s (%d)\n", db_strerror(rc), rc, 0 );
633                 return rc;
634         }
635         data.data = &tmp;
636         /* Fetch the first data item for this key, to see if it
637          * exists and if it's a range.
638          */
639         rc = cursor->c_get( cursor, key, &data, DB_SET | DB_RMW );
640         err = "c_get";
641         if ( rc == 0 ) {
642                 if ( tmp != 0 ) {
643                         /* not a range, count the number of items */
644                         db_recno_t count;
645                         rc = cursor->c_count( cursor, &count, 0 );
646                         if ( rc != 0 ) {
647                                 err = "c_count";
648                                 goto fail;
649                         }
650                         if ( count >= BDB_IDL_DB_MAX ) {
651                         /* No room, convert to a range */
652                                 DBT key2 = *key;
653
654                                 key2.dlen = key2.ulen;
655                                 key2.flags |= DB_DBT_PARTIAL;
656
657                                 lo = tmp;
658                                 data.data = &hi;
659                                 rc = cursor->c_get( cursor, &key2, &data, DB_NEXT_NODUP );
660                                 if ( rc != 0 && rc != DB_NOTFOUND ) {
661                                         err = "c_get next_nodup";
662                                         goto fail;
663                                 }
664                                 if ( rc == DB_NOTFOUND ) {
665                                         rc = cursor->c_get( cursor, key, &data, DB_LAST );
666                                         if ( rc != 0 ) {
667                                                 err = "c_get last";
668                                                 goto fail;
669                                         }
670                                 } else {
671                                         rc = cursor->c_get( cursor, key, &data, DB_PREV );
672                                         if ( rc != 0 ) {
673                                                 err = "c_get prev";
674                                                 goto fail;
675                                         }
676                                 }
677                                 if ( id < lo )
678                                         lo = id;
679                                 else if ( id > hi )
680                                         hi = id;
681                                 rc = db->del( db, tid, key, 0 );
682                                 if ( rc != 0 ) {
683                                         err = "del";
684                                         goto fail;
685                                 }
686                                 data.data = &id;
687                                 id = 0;
688                                 rc = cursor->c_put( cursor, key, &data, DB_KEYFIRST );
689                                 if ( rc != 0 ) {
690                                         err = "c_put 0";
691                                         goto fail;
692                                 }
693                                 id = lo;
694                                 rc = cursor->c_put( cursor, key, &data, DB_KEYLAST );
695                                 if ( rc != 0 ) {
696                                         err = "c_put lo";
697                                         goto fail;
698                                 }
699                                 id = hi;
700                                 rc = cursor->c_put( cursor, key, &data, DB_KEYLAST );
701                                 if ( rc != 0 ) {
702                                         err = "c_put hi";
703                                         goto fail;
704                                 }
705                         } else {
706                         /* There's room, just store it */
707                                 goto put1;
708                         }
709                 } else {
710                         /* It's a range, see if we need to rewrite
711                          * the boundaries
712                          */
713                         hi = id;
714                         data.data = &lo;
715                         rc = cursor->c_get( cursor, key, &data, DB_NEXT_DUP );
716                         if ( rc != 0 ) {
717                                 err = "c_get lo";
718                                 goto fail;
719                         }
720                         if ( id > lo ) {
721                                 data.data = &hi;
722                                 rc = cursor->c_get( cursor, key, &data, DB_NEXT_DUP );
723                                 if ( rc != 0 ) {
724                                         err = "c_get hi";
725                                         goto fail;
726                                 }
727                         }
728                         if ( id < lo || id > hi ) {
729                                 /* Delete the current lo/hi */
730                                 rc = cursor->c_del( cursor, 0 );
731                                 if ( rc != 0 ) {
732                                         err = "c_del";
733                                         goto fail;
734                                 }
735                                 data.data = &id;
736                                 rc = cursor->c_put( cursor, key, &data, DB_KEYFIRST );
737                                 if ( rc != 0 ) {
738                                         err = "c_put lo/hi";
739                                         goto fail;
740                                 }
741                         }
742                 }
743         } else if ( rc == DB_NOTFOUND ) {
744 put1:           data.data = &id;
745                 rc = cursor->c_put( cursor, key, &data, DB_NODUPDATA );
746                 /* Don't worry if it's already there */
747                 if ( rc != 0 && rc != DB_KEYEXIST ) {
748                         err = "c_put id";
749                         goto fail;
750                 }
751         } else {
752                 /* initial c_get failed, nothing was done */
753 fail:
754                 Debug( LDAP_DEBUG_ANY, "=> bdb_idl_insert_key: "
755                         "%s failed: %s (%d)\n", err, db_strerror(rc), rc );
756                 cursor->c_close( cursor );
757                 return rc;
758         }
759         rc = cursor->c_close( cursor );
760         if( rc != 0 ) {
761                 Debug( LDAP_DEBUG_ANY, "=> bdb_idl_insert_key: "
762                         "c_close failed: %s (%d)\n",
763                         db_strerror(rc), rc, 0 );
764         }
765         return rc;
766 }
767
768 int
769 bdb_idl_delete_key(
770         BackendDB       *be,
771         DB                      *db,
772         DB_TXN          *tid,
773         DBT                     *key,
774         ID                      id )
775 {
776         struct bdb_info *bdb = (struct bdb_info *) be->be_private;
777         int     rc;
778         DBT data;
779         DBC *cursor;
780         ID lo, hi, tmp;
781         char *err;
782
783         {
784                 char buf[16];
785                 Debug( LDAP_DEBUG_ARGS,
786                         "bdb_idl_delete_key: %lx %s\n", 
787                         (long) id, bdb_show_key( key, buf ), 0 );
788         }
789         assert( id != NOID );
790
791         if ( bdb->bi_idl_cache_max_size ) {
792                 bdb_idl_cache_del( bdb, db, key );
793         }
794
795         DBTzero( &data );
796         data.data = &tmp;
797         data.size = sizeof( id );
798         data.ulen = data.size;
799         data.flags = DB_DBT_USERMEM;
800
801         rc = db->cursor( db, tid, &cursor, bdb->bi_db_opflags );
802         if ( rc != 0 ) {
803                 Debug( LDAP_DEBUG_ANY, "=> bdb_idl_delete_key: "
804                         "cursor failed: %s (%d)\n", db_strerror(rc), rc, 0 );
805                 return rc;
806         }
807         /* Fetch the first data item for this key, to see if it
808          * exists and if it's a range.
809          */
810         rc = cursor->c_get( cursor, key, &data, DB_SET | DB_RMW );
811         err = "c_get";
812         if ( rc == 0 ) {
813                 if ( tmp != 0 ) {
814                         /* Not a range, just delete it */
815                         if (tmp != id) {
816                                 /* position to correct item */
817                                 tmp = id;
818                                 rc = cursor->c_get( cursor, key, &data, 
819                                         DB_GET_BOTH | DB_RMW  );
820                                 if ( rc != 0 ) {
821                                         err = "c_get id";
822                                         goto fail;
823                                 }
824                         }
825                         rc = cursor->c_del( cursor, 0 );
826                         if ( rc != 0 ) {
827                                 err = "c_del id";
828                                 goto fail;
829                         }
830                 } else {
831                         /* It's a range, see if we need to rewrite
832                          * the boundaries
833                          */
834                         data.data = &lo;
835                         rc = cursor->c_get( cursor, key, &data, DB_NEXT_DUP );
836                         if ( rc != 0 ) {
837                                 err = "c_get lo";
838                                 goto fail;
839                         }
840                         data.data = &hi;
841                         rc = cursor->c_get( cursor, key, &data, DB_NEXT_DUP );
842                         if ( rc != 0 ) {
843                                 err = "c_get hi";
844                                 goto fail;
845                         }
846                         if ( id == lo || id == hi ) {
847                                 if ( id == lo ) {
848                                         id++;
849                                         lo = id;
850                                 } else if ( id == hi ) {
851                                         id--;
852                                         hi = id;
853                                 }
854                                 if ( lo >= hi ) {
855                                 /* The range has collapsed... */
856                                         rc = db->del( db, tid, key, 0 );
857                                         if ( rc != 0 ) {
858                                                 err = "del";
859                                                 goto fail;
860                                         }
861                                 } else {
862                                         if ( id == lo ) {
863                                                 /* reposition on lo slot */
864                                                 data.data = &lo;
865                                                 cursor->c_get( cursor, key, &data, DB_PREV );
866                                                 lo = id;
867                                         }
868                                         rc = cursor->c_del( cursor, 0 );
869                                         if ( rc != 0 ) {
870                                                 err = "c_del";
871                                                 goto fail;
872                                         }
873                                 }
874                                 if ( lo <= hi ) {
875                                         data.data = &id;
876                                         rc = cursor->c_put( cursor, key, &data, DB_KEYFIRST );
877                                         if ( rc != 0 ) {
878                                                 err = "c_put lo/hi";
879                                                 goto fail;
880                                         }
881                                 }
882                         }
883                 }
884         } else {
885                 /* initial c_get failed, nothing was done */
886 fail:
887                 if ( rc != DB_NOTFOUND ) {
888                 Debug( LDAP_DEBUG_ANY, "=> bdb_idl_delete_key: "
889                         "%s failed: %s (%d)\n", err, db_strerror(rc), rc );
890                 }
891                 cursor->c_close( cursor );
892                 return rc;
893         }
894         rc = cursor->c_close( cursor );
895         if( rc != 0 ) {
896                 Debug( LDAP_DEBUG_ANY,
897                         "=> bdb_idl_delete_key: c_close failed: %s (%d)\n",
898                         db_strerror(rc), rc, 0 );
899         }
900
901         return rc;
902 }
903
904
905 /*
906  * idl_intersection - return a = a intersection b
907  */
908 int
909 bdb_idl_intersection(
910         ID *a,
911         ID *b )
912 {
913         ID ida, idb;
914         ID idmax, idmin;
915         ID cursora = 0, cursorb = 0, cursorc;
916         int swap = 0;
917
918         if ( BDB_IDL_IS_ZERO( a ) || BDB_IDL_IS_ZERO( b ) ) {
919                 a[0] = 0;
920                 return 0;
921         }
922
923         idmin = IDL_MAX( BDB_IDL_FIRST(a), BDB_IDL_FIRST(b) );
924         idmax = IDL_MIN( BDB_IDL_LAST(a), BDB_IDL_LAST(b) );
925         if ( idmin > idmax ) {
926                 a[0] = 0;
927                 return 0;
928         } else if ( idmin == idmax ) {
929                 a[0] = 1;
930                 a[1] = idmin;
931                 return 0;
932         }
933
934         if ( BDB_IDL_IS_RANGE( a ) ) {
935                 if ( BDB_IDL_IS_RANGE(b) ) {
936                 /* If both are ranges, just shrink the boundaries */
937                         a[1] = idmin;
938                         a[2] = idmax;
939                         return 0;
940                 } else {
941                 /* Else swap so that b is the range, a is a list */
942                         ID *tmp = a;
943                         a = b;
944                         b = tmp;
945                         swap = 1;
946                 }
947         }
948
949         /* If a range completely covers the list, the result is
950          * just the list. If idmin to idmax is contiguous, just
951          * turn it into a range.
952          */
953         if ( BDB_IDL_IS_RANGE( b )
954                 && BDB_IDL_FIRST( b ) <= BDB_IDL_FIRST( a )
955                 && BDB_IDL_LAST( b ) >= BDB_IDL_LAST( a ) ) {
956                 if (idmax - idmin + 1 == a[0])
957                 {
958                         a[0] = NOID;
959                         a[1] = idmin;
960                         a[2] = idmax;
961                 }
962                 goto done;
963         }
964
965         /* Fine, do the intersection one element at a time.
966          * First advance to idmin in both IDLs.
967          */
968         cursora = cursorb = idmin;
969         ida = bdb_idl_first( a, &cursora );
970         idb = bdb_idl_first( b, &cursorb );
971         cursorc = 0;
972
973         while( ida <= idmax || idb <= idmax ) {
974                 if( ida == idb ) {
975                         a[++cursorc] = ida;
976                         ida = bdb_idl_next( a, &cursora );
977                         idb = bdb_idl_next( b, &cursorb );
978                 } else if ( ida < idb ) {
979                         ida = bdb_idl_next( a, &cursora );
980                 } else {
981                         idb = bdb_idl_next( b, &cursorb );
982                 }
983         }
984         a[0] = cursorc;
985 done:
986         if (swap)
987                 BDB_IDL_CPY( b, a );
988
989         return 0;
990 }
991
992
993 /*
994  * idl_union - return a = a union b
995  */
996 int
997 bdb_idl_union(
998         ID      *a,
999         ID      *b )
1000 {
1001         ID ida, idb;
1002         ID cursora = 0, cursorb = 0, cursorc;
1003
1004         if ( BDB_IDL_IS_ZERO( b ) ) {
1005                 return 0;
1006         }
1007
1008         if ( BDB_IDL_IS_ZERO( a ) ) {
1009                 BDB_IDL_CPY( a, b );
1010                 return 0;
1011         }
1012
1013         if ( BDB_IDL_IS_RANGE( a ) || BDB_IDL_IS_RANGE(b) ) {
1014 over:           ida = IDL_MIN( BDB_IDL_FIRST(a), BDB_IDL_FIRST(b) );
1015                 idb = IDL_MAX( BDB_IDL_LAST(a), BDB_IDL_LAST(b) );
1016                 a[0] = NOID;
1017                 a[1] = ida;
1018                 a[2] = idb;
1019                 return 0;
1020         }
1021
1022         ida = bdb_idl_first( a, &cursora );
1023         idb = bdb_idl_first( b, &cursorb );
1024
1025         cursorc = b[0];
1026
1027         /* The distinct elements of a are cat'd to b */
1028         while( ida != NOID || idb != NOID ) {
1029                 if ( ida < idb ) {
1030                         if( ++cursorc > BDB_IDL_UM_MAX ) {
1031                                 goto over;
1032                         }
1033                         b[cursorc] = ida;
1034                         ida = bdb_idl_next( a, &cursora );
1035
1036                 } else {
1037                         if ( ida == idb )
1038                                 ida = bdb_idl_next( a, &cursora );
1039                         idb = bdb_idl_next( b, &cursorb );
1040                 }
1041         }
1042
1043         /* b is copied back to a in sorted order */
1044         a[0] = cursorc;
1045         cursora = 1;
1046         cursorb = 1;
1047         cursorc = b[0]+1;
1048         while (cursorb <= b[0] || cursorc <= a[0]) {
1049                 if (cursorc > a[0])
1050                         idb = NOID;
1051                 else
1052                         idb = b[cursorc];
1053                 if (cursorb <= b[0] && b[cursorb] < idb)
1054                         a[cursora++] = b[cursorb++];
1055                 else {
1056                         a[cursora++] = idb;
1057                         cursorc++;
1058                 }
1059         }
1060
1061         return 0;
1062 }
1063
1064
1065 #if 0
1066 /*
1067  * bdb_idl_notin - return a intersection ~b (or a minus b)
1068  */
1069 int
1070 bdb_idl_notin(
1071         ID      *a,
1072         ID      *b,
1073         ID *ids )
1074 {
1075         ID ida, idb;
1076         ID cursora = 0, cursorb = 0;
1077
1078         if( BDB_IDL_IS_ZERO( a ) ||
1079                 BDB_IDL_IS_ZERO( b ) ||
1080                 BDB_IDL_IS_RANGE( b ) )
1081         {
1082                 BDB_IDL_CPY( ids, a );
1083                 return 0;
1084         }
1085
1086         if( BDB_IDL_IS_RANGE( a ) ) {
1087                 BDB_IDL_CPY( ids, a );
1088                 return 0;
1089         }
1090
1091         ida = bdb_idl_first( a, &cursora ),
1092         idb = bdb_idl_first( b, &cursorb );
1093
1094         ids[0] = 0;
1095
1096         while( ida != NOID ) {
1097                 if ( idb == NOID ) {
1098                         /* we could shortcut this */
1099                         ids[++ids[0]] = ida;
1100                         ida = bdb_idl_next( a, &cursora );
1101
1102                 } else if ( ida < idb ) {
1103                         ids[++ids[0]] = ida;
1104                         ida = bdb_idl_next( a, &cursora );
1105
1106                 } else if ( ida > idb ) {
1107                         idb = bdb_idl_next( b, &cursorb );
1108
1109                 } else {
1110                         ida = bdb_idl_next( a, &cursora );
1111                         idb = bdb_idl_next( b, &cursorb );
1112                 }
1113         }
1114
1115         return 0;
1116 }
1117 #endif
1118
1119 ID bdb_idl_first( ID *ids, ID *cursor )
1120 {
1121         ID pos;
1122
1123         if ( ids[0] == 0 ) {
1124                 *cursor = NOID;
1125                 return NOID;
1126         }
1127
1128         if ( BDB_IDL_IS_RANGE( ids ) ) {
1129                 if( *cursor < ids[1] ) {
1130                         *cursor = ids[1];
1131                 }
1132                 return *cursor;
1133         }
1134
1135         if ( *cursor == 0 )
1136                 pos = 1;
1137         else
1138                 pos = bdb_idl_search( ids, *cursor );
1139
1140         if( pos > ids[0] ) {
1141                 return NOID;
1142         }
1143
1144         *cursor = pos;
1145         return ids[pos];
1146 }
1147
1148 ID bdb_idl_next( ID *ids, ID *cursor )
1149 {
1150         if ( BDB_IDL_IS_RANGE( ids ) ) {
1151                 if( ids[2] < ++(*cursor) ) {
1152                         return NOID;
1153                 }
1154                 return *cursor;
1155         }
1156
1157         if ( ++(*cursor) <= ids[0] ) {
1158                 return ids[*cursor];
1159         }
1160
1161         return NOID;
1162 }
1163