f26ec9232b1519fed11aeb3c50afef9b4275b702
[bbaumbach/samba-autobuild/.git] / source / nsswitch / winbindd_util.c
1 /* 
2    Unix SMB/CIFS implementation.
3
4    Winbind daemon for ntdom nss module
5
6    Copyright (C) Tim Potter 2000-2001
7    Copyright (C) 2001 by Martin Pool <mbp@samba.org>
8    
9    This program is free software; you can redistribute it and/or modify
10    it under the terms of the GNU General Public License as published by
11    the Free Software Foundation; either version 2 of the License, or
12    (at your option) any later version.
13    
14    This program is distributed in the hope that it will be useful,
15    but WITHOUT ANY WARRANTY; without even the implied warranty of
16    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17    GNU General Public License for more details.
18    
19    You should have received a copy of the GNU General Public License
20    along with this program; if not, write to the Free Software
21    Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
22 */
23
24 #include "includes.h"
25 #include "winbindd.h"
26
27 #undef DBGC_CLASS
28 #define DBGC_CLASS DBGC_WINBIND
29
30 /**
31  * @file winbindd_util.c
32  *
33  * Winbind daemon for NT domain authentication nss module.
34  **/
35
36
37 /**
38  * Used to clobber name fields that have an undefined value.
39  *
40  * Correct code should never look at a field that has this value.
41  **/
42
43 static const fstring name_deadbeef = "<deadbeef>";
44
45 /* The list of trusted domains.  Note that the list can be deleted and
46    recreated using the init_domain_list() function so pointers to
47    individual winbindd_domain structures cannot be made.  Keep a copy of
48    the domain name instead. */
49
50 static struct winbindd_domain *_domain_list;
51
52 /**
53    When was the last scan of trusted domains done?
54    
55    0 == not ever
56 */
57
58 static time_t last_trustdom_scan;
59
60 struct winbindd_domain *domain_list(void)
61 {
62         /* Initialise list */
63
64         if ((!_domain_list) && (!init_domain_list())) {
65                 smb_panic("Init_domain_list failed\n");
66         }
67
68         return _domain_list;
69 }
70
71 /* Free all entries in the trusted domain list */
72
73 void free_domain_list(void)
74 {
75         struct winbindd_domain *domain = _domain_list;
76
77         while(domain) {
78                 struct winbindd_domain *next = domain->next;
79                 
80                 DLIST_REMOVE(_domain_list, domain);
81                 SAFE_FREE(domain);
82                 domain = next;
83         }
84 }
85
86 static BOOL is_internal_domain(const DOM_SID *sid)
87 {
88         if (sid == NULL)
89                 return False;
90
91         return (sid_check_is_domain(sid) || sid_check_is_builtin(sid));
92 }
93
94 static BOOL is_in_internal_domain(const DOM_SID *sid)
95 {
96         if (sid == NULL)
97                 return False;
98
99         return (sid_check_is_in_our_domain(sid) || sid_check_is_in_builtin(sid));
100 }
101
102
103 /* Add a trusted domain to our list of domains */
104 static struct winbindd_domain *add_trusted_domain(const char *domain_name, const char *alt_name,
105                                                   struct winbindd_methods *methods,
106                                                   const DOM_SID *sid)
107 {
108         struct winbindd_domain *domain;
109         const char *alternative_name = NULL;
110         
111         /* ignore alt_name if we are not in an AD domain */
112         
113         if ( (lp_security() == SEC_ADS) && alt_name && *alt_name) {
114                 alternative_name = alt_name;
115         }
116         
117         /* We can't call domain_list() as this function is called from
118            init_domain_list() and we'll get stuck in a loop. */
119         for (domain = _domain_list; domain; domain = domain->next) {
120                 if (strequal(domain_name, domain->name) ||
121                     strequal(domain_name, domain->alt_name)) {
122                         return domain;
123                 }
124                 if (alternative_name && *alternative_name) {
125                         if (strequal(alternative_name, domain->name) ||
126                             strequal(alternative_name, domain->alt_name)) {
127                                 return domain;
128                         }
129                 }
130                 if (sid) {
131                         if (is_null_sid(sid)) {
132                                 
133                         } else if (sid_equal(sid, &domain->sid)) {
134                                 return domain;
135                         }
136                 }
137         }
138         
139         /* Create new domain entry */
140
141         if ((domain = SMB_MALLOC_P(struct winbindd_domain)) == NULL)
142                 return NULL;
143
144         /* Fill in fields */
145         
146         ZERO_STRUCTP(domain);
147
148         /* prioritise the short name */
149         if (strchr_m(domain_name, '.') && alternative_name && *alternative_name) {
150                 fstrcpy(domain->name, alternative_name);
151                 fstrcpy(domain->alt_name, domain_name);
152         } else {
153                 fstrcpy(domain->name, domain_name);
154                 if (alternative_name) {
155                         fstrcpy(domain->alt_name, alternative_name);
156                 }
157         }
158
159         domain->methods = methods;
160         domain->backend = NULL;
161         domain->internal = is_internal_domain(sid);
162         domain->sequence_number = DOM_SEQUENCE_NONE;
163         domain->last_seq_check = 0;
164         domain->initialized = False;
165         domain->online = is_internal_domain(sid);
166         if (sid) {
167                 sid_copy(&domain->sid, sid);
168         }
169         
170         /* Link to domain list */
171         DLIST_ADD(_domain_list, domain);
172         
173         DEBUG(2,("Added domain %s %s %s\n", 
174                  domain->name, domain->alt_name,
175                  &domain->sid?sid_string_static(&domain->sid):""));
176         
177         return domain;
178 }
179
180 /********************************************************************
181   rescan our domains looking for new trusted domains
182 ********************************************************************/
183
184 struct trustdom_state {
185         TALLOC_CTX *mem_ctx;
186         struct winbindd_response *response;
187 };
188
189 static void trustdom_recv(void *private_data, BOOL success);
190
191 static void add_trusted_domains( struct winbindd_domain *domain )
192 {
193         TALLOC_CTX *mem_ctx;
194         struct winbindd_request *request;
195         struct winbindd_response *response;
196
197         struct trustdom_state *state;
198
199         mem_ctx = talloc_init("add_trusted_domains");
200         if (mem_ctx == NULL) {
201                 DEBUG(0, ("talloc_init failed\n"));
202                 return;
203         }
204
205         request = TALLOC_ZERO_P(mem_ctx, struct winbindd_request);
206         response = TALLOC_P(mem_ctx, struct winbindd_response);
207         state = TALLOC_P(mem_ctx, struct trustdom_state);
208
209         if ((request == NULL) || (response == NULL) || (state == NULL)) {
210                 DEBUG(0, ("talloc failed\n"));
211                 talloc_destroy(mem_ctx);
212                 return;
213         }
214
215         state->mem_ctx = mem_ctx;
216         state->response = response;
217
218         request->length = sizeof(*request);
219         request->cmd = WINBINDD_LIST_TRUSTDOM;
220
221         async_domain_request(mem_ctx, domain, request, response,
222                              trustdom_recv, state);
223 }
224
225 static void trustdom_recv(void *private_data, BOOL success)
226 {
227         extern struct winbindd_methods cache_methods;
228         struct trustdom_state *state =
229                 talloc_get_type_abort(private_data, struct trustdom_state);
230         struct winbindd_response *response = state->response;
231         char *p;
232
233         if ((!success) || (response->result != WINBINDD_OK)) {
234                 DEBUG(1, ("Could not receive trustdoms\n"));
235                 talloc_destroy(state->mem_ctx);
236                 return;
237         }
238
239         p = (char *)response->extra_data.data;
240
241         while ((p != NULL) && (*p != '\0')) {
242                 char *q, *sidstr, *alt_name;
243                 DOM_SID sid;
244
245                 alt_name = strchr(p, '\\');
246                 if (alt_name == NULL) {
247                         DEBUG(0, ("Got invalid trustdom response\n"));
248                         break;
249                 }
250
251                 *alt_name = '\0';
252                 alt_name += 1;
253
254                 sidstr = strchr(alt_name, '\\');
255                 if (sidstr == NULL) {
256                         DEBUG(0, ("Got invalid trustdom response\n"));
257                         break;
258                 }
259
260                 *sidstr = '\0';
261                 sidstr += 1;
262
263                 q = strchr(sidstr, '\n');
264                 if (q != NULL)
265                         *q = '\0';
266
267                 if (!string_to_sid(&sid, sidstr)) {
268                         DEBUG(0, ("Got invalid trustdom response\n"));
269                         break;
270                 }
271
272                 if (find_domain_from_name_noinit(p) == NULL) {
273                         struct winbindd_domain *domain;
274                         char *alternate_name = NULL;
275                         
276                         /* use the real alt_name if we have one, else pass in NULL */
277
278                         if ( !strequal( alt_name, "(null)" ) )
279                                 alternate_name = alt_name;
280
281                         domain = add_trusted_domain(p, alternate_name,
282                                                     &cache_methods,
283                                                     &sid);
284                         setup_domain_child(domain, &domain->child, NULL);
285                 }
286                 p=q;
287                 if (p != NULL)
288                         p += 1;
289         }
290
291         SAFE_FREE(response->extra_data.data);
292         talloc_destroy(state->mem_ctx);
293 }
294
295 /********************************************************************
296  Periodically we need to refresh the trusted domain cache for smbd 
297 ********************************************************************/
298
299 void rescan_trusted_domains( void )
300 {
301         time_t now = time(NULL);
302         
303         /* see if the time has come... */
304         
305         if ((now >= last_trustdom_scan) &&
306             ((now-last_trustdom_scan) < WINBINDD_RESCAN_FREQ) )
307                 return;
308                 
309         /* this will only add new domains we didn't already know about */
310         
311         add_trusted_domains( find_our_domain() );
312
313         last_trustdom_scan = now;
314         
315         return; 
316 }
317
318 struct init_child_state {
319         TALLOC_CTX *mem_ctx;
320         struct winbindd_domain *domain;
321         struct winbindd_request *request;
322         struct winbindd_response *response;
323         void (*continuation)(void *private_data, BOOL success);
324         void *private_data;
325 };
326
327 static void init_child_recv(void *private_data, BOOL success);
328 static void init_child_getdc_recv(void *private_data, BOOL success);
329
330 enum winbindd_result init_child_connection(struct winbindd_domain *domain,
331                                            void (*continuation)(void *private_data,
332                                                                 BOOL success),
333                                            void *private_data)
334 {
335         TALLOC_CTX *mem_ctx;
336         struct winbindd_request *request;
337         struct winbindd_response *response;
338         struct init_child_state *state;
339         struct winbindd_domain *request_domain;
340
341         mem_ctx = talloc_init("init_child_connection");
342         if (mem_ctx == NULL) {
343                 DEBUG(0, ("talloc_init failed\n"));
344                 return WINBINDD_ERROR;
345         }
346
347         request = TALLOC_ZERO_P(mem_ctx, struct winbindd_request);
348         response = TALLOC_P(mem_ctx, struct winbindd_response);
349         state = TALLOC_P(mem_ctx, struct init_child_state);
350
351         if ((request == NULL) || (response == NULL) || (state == NULL)) {
352                 DEBUG(0, ("talloc failed\n"));
353                 TALLOC_FREE(mem_ctx);
354                 continuation(private_data, False);
355                 return WINBINDD_ERROR;
356         }
357
358         request->length = sizeof(*request);
359
360         state->mem_ctx = mem_ctx;
361         state->domain = domain;
362         state->request = request;
363         state->response = response;
364         state->continuation = continuation;
365         state->private_data = private_data;
366
367         if (IS_DC || domain->primary) {
368                 /* The primary domain has to find the DC name itself */
369                 request->cmd = WINBINDD_INIT_CONNECTION;
370                 fstrcpy(request->domain_name, domain->name);
371                 request->data.init_conn.is_primary = True;
372                 fstrcpy(request->data.init_conn.dcname, "");
373                 async_request(mem_ctx, &domain->child, request, response,
374                               init_child_recv, state);
375                 return WINBINDD_PENDING;
376         }
377
378         /* This is *not* the primary domain, let's ask our DC about a DC
379          * name */
380
381         request->cmd = WINBINDD_GETDCNAME;
382         fstrcpy(request->domain_name, domain->name);
383
384         /* save online flag */
385         request_domain = find_our_domain();
386         request_domain->online = domain->online;
387         
388         async_domain_request(mem_ctx, request_domain, request, response,
389                              init_child_getdc_recv, state);
390         return WINBINDD_PENDING;
391 }
392
393 static void init_child_getdc_recv(void *private_data, BOOL success)
394 {
395         struct init_child_state *state =
396                 talloc_get_type_abort(private_data, struct init_child_state);
397         const char *dcname = "";
398
399         DEBUG(10, ("Received getdcname response\n"));
400
401         if (success && (state->response->result == WINBINDD_OK)) {
402                 dcname = state->response->data.dc_name;
403         }
404
405         state->request->cmd = WINBINDD_INIT_CONNECTION;
406         fstrcpy(state->request->domain_name, state->domain->name);
407         state->request->data.init_conn.is_primary = False;
408         fstrcpy(state->request->data.init_conn.dcname, dcname);
409
410         async_request(state->mem_ctx, &state->domain->child,
411                       state->request, state->response,
412                       init_child_recv, state);
413 }
414
415 static void init_child_recv(void *private_data, BOOL success)
416 {
417         struct init_child_state *state =
418                 talloc_get_type_abort(private_data, struct init_child_state);
419
420         DEBUG(5, ("Received child initialization response for domain %s\n",
421                   state->domain->name));
422
423         if ((!success) || (state->response->result != WINBINDD_OK)) {
424                 DEBUG(3, ("Could not init child\n"));
425                 state->continuation(state->private_data, False);
426                 talloc_destroy(state->mem_ctx);
427                 return;
428         }
429
430         fstrcpy(state->domain->name,
431                 state->response->data.domain_info.name);
432         fstrcpy(state->domain->alt_name,
433                 state->response->data.domain_info.alt_name);
434         string_to_sid(&state->domain->sid,
435                       state->response->data.domain_info.sid);
436         state->domain->native_mode =
437                 state->response->data.domain_info.native_mode;
438         state->domain->active_directory =
439                 state->response->data.domain_info.active_directory;
440         state->domain->sequence_number =
441                 state->response->data.domain_info.sequence_number;
442
443         state->domain->initialized = 1;
444
445         if (state->continuation != NULL)
446                 state->continuation(state->private_data, True);
447         talloc_destroy(state->mem_ctx);
448 }
449
450 enum winbindd_result winbindd_dual_init_connection(struct winbindd_domain *domain,
451                                                    struct winbindd_cli_state *state)
452 {
453         struct in_addr ipaddr;
454
455         /* Ensure null termination */
456         state->request.domain_name
457                 [sizeof(state->request.domain_name)-1]='\0';
458         state->request.data.init_conn.dcname
459                 [sizeof(state->request.data.init_conn.dcname)-1]='\0';
460
461         if (strlen(state->request.data.init_conn.dcname) > 0) {
462                 fstrcpy(domain->dcname, state->request.data.init_conn.dcname);
463         }
464
465         if (strlen(domain->dcname) > 0) {
466                 if (!resolve_name(domain->dcname, &ipaddr, 0x20)) {
467                         DEBUG(2, ("Could not resolve DC name %s for domain %s\n",
468                                   domain->dcname, domain->name));
469                         return WINBINDD_ERROR;
470                 }
471
472                 domain->dcaddr.sin_family = PF_INET;
473                 putip((char *)&(domain->dcaddr.sin_addr), (char *)&ipaddr);
474                 domain->dcaddr.sin_port = 0;
475         }
476
477         set_dc_type_and_flags(domain);
478
479         if (!domain->initialized) {
480                 DEBUG(1, ("Could not initialize domain %s\n",
481                           state->request.domain_name));
482                 return WINBINDD_ERROR;
483         }
484
485         fstrcpy(state->response.data.domain_info.name, domain->name);
486         fstrcpy(state->response.data.domain_info.alt_name, domain->alt_name);
487         fstrcpy(state->response.data.domain_info.sid,
488                 sid_string_static(&domain->sid));
489         
490         state->response.data.domain_info.native_mode
491                 = domain->native_mode;
492         state->response.data.domain_info.active_directory
493                 = domain->active_directory;
494         state->response.data.domain_info.primary
495                 = domain->primary;
496         state->response.data.domain_info.sequence_number =
497                 domain->sequence_number;
498
499         return WINBINDD_OK;
500 }
501
502 /* Look up global info for the winbind daemon */
503 BOOL init_domain_list(void)
504 {
505         extern struct winbindd_methods cache_methods;
506         extern struct winbindd_methods passdb_methods;
507         struct winbindd_domain *domain;
508         int role = lp_server_role();
509
510         /* Free existing list */
511         free_domain_list();
512
513         /* Add ourselves as the first entry. */
514
515         if ( role == ROLE_DOMAIN_MEMBER ) {
516                 DOM_SID our_sid;
517
518                 if (!secrets_fetch_domain_sid(lp_workgroup(), &our_sid)) {
519                         DEBUG(0, ("Could not fetch our SID - did we join?\n"));
520                         return False;
521                 }
522         
523                 domain = add_trusted_domain( lp_workgroup(), lp_realm(),
524                                              &cache_methods, &our_sid);
525                 domain->primary = True;
526                 setup_domain_child(domain, &domain->child, NULL);
527         }
528
529         /* Local SAM */
530
531         domain = add_trusted_domain(get_global_sam_name(), NULL,
532                                     &passdb_methods, get_global_sam_sid());
533         if ( role != ROLE_DOMAIN_MEMBER ) {
534                 domain->primary = True;
535         }
536         setup_domain_child(domain, &domain->child, NULL);
537
538         /* BUILTIN domain */
539
540         domain = add_trusted_domain("BUILTIN", NULL, &passdb_methods,
541                                     &global_sid_Builtin);
542         setup_domain_child(domain, &domain->child, NULL);
543
544         return True;
545 }
546
547 /** 
548  * Given a domain name, return the struct winbindd domain info for it 
549  *
550  * @note Do *not* pass lp_workgroup() to this function.  domain_list
551  *       may modify it's value, and free that pointer.  Instead, our local
552  *       domain may be found by calling find_our_domain().
553  *       directly.
554  *
555  *
556  * @return The domain structure for the named domain, if it is working.
557  */
558
559 struct winbindd_domain *find_domain_from_name_noinit(const char *domain_name)
560 {
561         struct winbindd_domain *domain;
562
563         /* Search through list */
564
565         for (domain = domain_list(); domain != NULL; domain = domain->next) {
566                 if (strequal(domain_name, domain->name) ||
567                     (domain->alt_name[0] &&
568                      strequal(domain_name, domain->alt_name))) {
569                         return domain;
570                 }
571         }
572
573         /* Not found */
574
575         return NULL;
576 }
577
578 struct winbindd_domain *find_domain_from_name(const char *domain_name)
579 {
580         struct winbindd_domain *domain;
581
582         domain = find_domain_from_name_noinit(domain_name);
583
584         if (domain == NULL)
585                 return NULL;
586
587         if (!domain->initialized)
588                 set_dc_type_and_flags(domain);
589
590         return domain;
591 }
592
593 /* Given a domain sid, return the struct winbindd domain info for it */
594
595 struct winbindd_domain *find_domain_from_sid_noinit(const DOM_SID *sid)
596 {
597         struct winbindd_domain *domain;
598
599         /* Search through list */
600
601         for (domain = domain_list(); domain != NULL; domain = domain->next) {
602                 if (sid_compare_domain(sid, &domain->sid) == 0)
603                         return domain;
604         }
605
606         /* Not found */
607
608         return NULL;
609 }
610
611 /* Given a domain sid, return the struct winbindd domain info for it */
612
613 struct winbindd_domain *find_domain_from_sid(const DOM_SID *sid)
614 {
615         struct winbindd_domain *domain;
616
617         domain = find_domain_from_sid_noinit(sid);
618
619         if (domain == NULL)
620                 return NULL;
621
622         if (!domain->initialized)
623                 set_dc_type_and_flags(domain);
624
625         return domain;
626 }
627
628 struct winbindd_domain *find_our_domain(void)
629 {
630         struct winbindd_domain *domain;
631
632         /* Search through list */
633
634         for (domain = domain_list(); domain != NULL; domain = domain->next) {
635                 if (domain->primary)
636                         return domain;
637         }
638
639         smb_panic("Could not find our domain\n");
640         return NULL;
641 }
642
643 struct winbindd_domain *find_builtin_domain(void)
644 {
645         DOM_SID sid;
646         struct winbindd_domain *domain;
647
648         string_to_sid(&sid, "S-1-5-32");
649         domain = find_domain_from_sid(&sid);
650
651         if (domain == NULL)
652                 smb_panic("Could not find BUILTIN domain\n");
653
654         return domain;
655 }
656
657 /* Find the appropriate domain to lookup a name or SID */
658
659 struct winbindd_domain *find_lookup_domain_from_sid(const DOM_SID *sid)
660 {
661         /* A DC can't ask the local smbd for remote SIDs, here winbindd is the
662          * one to contact the external DC's. On member servers the internal
663          * domains are different: These are part of the local SAM. */
664
665         DEBUG(10, ("find_lookup_domain_from_sid(%s)\n",
666                    sid_string_static(sid)));
667
668         if (IS_DC || is_internal_domain(sid) || is_in_internal_domain(sid)) {
669                 DEBUG(10, ("calling find_domain_from_sid\n"));
670                 return find_domain_from_sid(sid);
671         }
672
673         /* On a member server a query for SID or name can always go to our
674          * primary DC. */
675
676         DEBUG(10, ("calling find_our_domain\n"));
677         return find_our_domain();
678 }
679
680 struct winbindd_domain *find_lookup_domain_from_name(const char *domain_name)
681 {
682         if (IS_DC || strequal(domain_name, "BUILTIN") ||
683             strequal(domain_name, get_global_sam_name()))
684                 return find_domain_from_name_noinit(domain_name);
685
686         return find_our_domain();
687 }
688
689 /* Lookup a sid in a domain from a name */
690
691 BOOL winbindd_lookup_sid_by_name(TALLOC_CTX *mem_ctx,
692                                  struct winbindd_domain *domain, 
693                                  const char *domain_name,
694                                  const char *name, DOM_SID *sid, 
695                                  enum lsa_SidType *type)
696 {
697         NTSTATUS result;
698
699         /* Lookup name */
700         result = domain->methods->name_to_sid(domain, mem_ctx, domain_name, name, sid, type);
701
702         /* Return rid and type if lookup successful */
703         if (!NT_STATUS_IS_OK(result)) {
704                 *type = SID_NAME_UNKNOWN;
705         }
706
707         return NT_STATUS_IS_OK(result);
708 }
709
710 /**
711  * @brief Lookup a name in a domain from a sid.
712  *
713  * @param sid Security ID you want to look up.
714  * @param name On success, set to the name corresponding to @p sid.
715  * @param dom_name On success, set to the 'domain name' corresponding to @p sid.
716  * @param type On success, contains the type of name: alias, group or
717  * user.
718  * @retval True if the name exists, in which case @p name and @p type
719  * are set, otherwise False.
720  **/
721 BOOL winbindd_lookup_name_by_sid(TALLOC_CTX *mem_ctx,
722                                  DOM_SID *sid,
723                                  fstring dom_name,
724                                  fstring name,
725                                  enum lsa_SidType *type)
726 {
727         char *names;
728         char *dom_names;
729         NTSTATUS result;
730         BOOL rv = False;
731         struct winbindd_domain *domain;
732
733         domain = find_lookup_domain_from_sid(sid);
734
735         if (!domain) {
736                 DEBUG(1,("Can't find domain from sid\n"));
737                 return False;
738         }
739
740         /* Lookup name */
741
742         result = domain->methods->sid_to_name(domain, mem_ctx, sid, &dom_names, &names, type);
743
744         /* Return name and type if successful */
745         
746         if ((rv = NT_STATUS_IS_OK(result))) {
747                 fstrcpy(dom_name, dom_names);
748                 fstrcpy(name, names);
749         } else {
750                 *type = SID_NAME_UNKNOWN;
751                 fstrcpy(name, name_deadbeef);
752         }
753         
754         return rv;
755 }
756
757 /* Free state information held for {set,get,end}{pw,gr}ent() functions */
758
759 void free_getent_state(struct getent_state *state)
760 {
761         struct getent_state *temp;
762
763         /* Iterate over state list */
764
765         temp = state;
766
767         while(temp != NULL) {
768                 struct getent_state *next;
769
770                 /* Free sam entries then list entry */
771
772                 SAFE_FREE(state->sam_entries);
773                 DLIST_REMOVE(state, state);
774                 next = temp->next;
775
776                 SAFE_FREE(temp);
777                 temp = next;
778         }
779 }
780
781 /* Parse winbindd related parameters */
782
783 BOOL winbindd_param_init(void)
784 {
785         /* Parse winbind uid and winbind_gid parameters */
786
787         if (!lp_idmap_uid(&server_state.uid_low, &server_state.uid_high)) {
788                 DEBUG(0, ("winbindd: idmap uid range missing or invalid\n"));
789                 DEBUG(0, ("winbindd: cannot continue, exiting.\n"));
790                 return False;
791         }
792         
793         if (!lp_idmap_gid(&server_state.gid_low, &server_state.gid_high)) {
794                 DEBUG(0, ("winbindd: idmap gid range missing or invalid\n"));
795                 DEBUG(0, ("winbindd: cannot continue, exiting.\n"));
796                 return False;
797         }
798         
799         return True;
800 }
801
802 BOOL is_in_uid_range(uid_t uid)
803 {
804         return ((uid >= server_state.uid_low) &&
805                 (uid <= server_state.uid_high));
806 }
807
808 BOOL is_in_gid_range(gid_t gid)
809 {
810         return ((gid >= server_state.gid_low) &&
811                 (gid <= server_state.gid_high));
812 }
813
814 /* Is this a domain which we may assume no DOMAIN\ prefix? */
815
816 static BOOL assume_domain(const char *domain)
817 {
818         /* never assume the domain on a standalone server */
819
820         if ( lp_server_role() == ROLE_STANDALONE )
821                 return False;
822
823         /* domain member servers may possibly assume for the domain name */
824
825         if ( lp_server_role() == ROLE_DOMAIN_MEMBER ) {
826                 if ( !strequal(lp_workgroup(), domain) )
827                         return False;
828
829                 if ( lp_winbind_use_default_domain() || lp_winbind_trusted_domains_only() )
830                         return True;
831         } 
832
833         /* only left with a domain controller */
834
835         if ( strequal(get_global_sam_name(), domain) )  {
836                 return True;
837         }
838         
839         return False;
840 }
841
842 /* Parse a string of the form DOMAIN\user into a domain and a user */
843
844 BOOL parse_domain_user(const char *domuser, fstring domain, fstring user)
845 {
846         char *p = strchr(domuser,*lp_winbind_separator());
847
848         if ( !p ) {
849                 fstrcpy(user, domuser);
850
851                 if ( assume_domain(lp_workgroup())) {
852                         fstrcpy(domain, lp_workgroup());
853                 } else {
854                         return False;
855                 }
856         } else {
857                 fstrcpy(user, p+1);
858                 fstrcpy(domain, domuser);
859                 domain[PTR_DIFF(p, domuser)] = 0;
860         }
861         
862         strupper_m(domain);
863         
864         return True;
865 }
866
867 BOOL parse_domain_user_talloc(TALLOC_CTX *mem_ctx, const char *domuser,
868                               char **domain, char **user)
869 {
870         fstring fstr_domain, fstr_user;
871         if (!parse_domain_user(domuser, fstr_domain, fstr_user)) {
872                 return False;
873         }
874         *domain = talloc_strdup(mem_ctx, fstr_domain);
875         *user = talloc_strdup(mem_ctx, fstr_user);
876         return ((*domain != NULL) && (*user != NULL));
877 }
878
879 /*
880     Fill DOMAIN\\USERNAME entry accounting 'winbind use default domain' and
881     'winbind separator' options.
882     This means:
883         - omit DOMAIN when 'winbind use default domain = true' and DOMAIN is
884         lp_workgroup()
885
886     If we are a PDC or BDC, and this is for our domain, do likewise.
887
888     Also, if omit DOMAIN if 'winbind trusted domains only = true', as the 
889     username is then unqualified in unix
890
891     We always canonicalize as UPPERCASE DOMAIN, lowercase username.
892 */
893 void fill_domain_username(fstring name, const char *domain, const char *user, BOOL can_assume)
894 {
895         fstring tmp_user;
896
897         fstrcpy(tmp_user, user);
898         strlower_m(tmp_user);
899
900         if (can_assume && assume_domain(domain)) {
901                 strlcpy(name, tmp_user, sizeof(fstring));
902         } else {
903                 slprintf(name, sizeof(fstring) - 1, "%s%c%s",
904                          domain, *lp_winbind_separator(),
905                          tmp_user);
906         }
907 }
908
909 /*
910  * Winbindd socket accessor functions
911  */
912
913 char *get_winbind_priv_pipe_dir(void) 
914 {
915         return lock_path(WINBINDD_PRIV_SOCKET_SUBDIR);
916 }
917
918 /* Open the winbindd socket */
919
920 static int _winbindd_socket = -1;
921 static int _winbindd_priv_socket = -1;
922
923 int open_winbindd_socket(void)
924 {
925         if (_winbindd_socket == -1) {
926                 _winbindd_socket = create_pipe_sock(
927                         WINBINDD_SOCKET_DIR, WINBINDD_SOCKET_NAME, 0755);
928                 DEBUG(10, ("open_winbindd_socket: opened socket fd %d\n",
929                            _winbindd_socket));
930         }
931
932         return _winbindd_socket;
933 }
934
935 int open_winbindd_priv_socket(void)
936 {
937         if (_winbindd_priv_socket == -1) {
938                 _winbindd_priv_socket = create_pipe_sock(
939                         get_winbind_priv_pipe_dir(), WINBINDD_SOCKET_NAME, 0750);
940                 DEBUG(10, ("open_winbindd_priv_socket: opened socket fd %d\n",
941                            _winbindd_priv_socket));
942         }
943
944         return _winbindd_priv_socket;
945 }
946
947 /* Close the winbindd socket */
948
949 void close_winbindd_socket(void)
950 {
951         if (_winbindd_socket != -1) {
952                 DEBUG(10, ("close_winbindd_socket: closing socket fd %d\n",
953                            _winbindd_socket));
954                 close(_winbindd_socket);
955                 _winbindd_socket = -1;
956         }
957         if (_winbindd_priv_socket != -1) {
958                 DEBUG(10, ("close_winbindd_socket: closing socket fd %d\n",
959                            _winbindd_priv_socket));
960                 close(_winbindd_priv_socket);
961                 _winbindd_priv_socket = -1;
962         }
963 }
964
965 /*
966  * Client list accessor functions
967  */
968
969 static struct winbindd_cli_state *_client_list;
970 static int _num_clients;
971
972 /* Return list of all connected clients */
973
974 struct winbindd_cli_state *winbindd_client_list(void)
975 {
976         return _client_list;
977 }
978
979 /* Add a connection to the list */
980
981 void winbindd_add_client(struct winbindd_cli_state *cli)
982 {
983         DLIST_ADD(_client_list, cli);
984         _num_clients++;
985 }
986
987 /* Remove a client from the list */
988
989 void winbindd_remove_client(struct winbindd_cli_state *cli)
990 {
991         DLIST_REMOVE(_client_list, cli);
992         _num_clients--;
993 }
994
995 /* Close all open clients */
996
997 void winbindd_kill_all_clients(void)
998 {
999         struct winbindd_cli_state *cl = winbindd_client_list();
1000
1001         DEBUG(10, ("winbindd_kill_all_clients: going postal\n"));
1002
1003         while (cl) {
1004                 struct winbindd_cli_state *next;
1005                 
1006                 next = cl->next;
1007                 winbindd_remove_client(cl);
1008                 cl = next;
1009         }
1010 }
1011
1012 /* Return number of open clients */
1013
1014 int winbindd_num_clients(void)
1015 {
1016         return _num_clients;
1017 }
1018
1019 /*****************************************************************************
1020  For idmap conversion: convert one record to new format
1021  Ancient versions (eg 2.2.3a) of winbindd_idmap.tdb mapped DOMAINNAME/rid
1022  instead of the SID.
1023 *****************************************************************************/
1024 static int convert_fn(TDB_CONTEXT *tdb, TDB_DATA key, TDB_DATA data, void *state)
1025 {
1026         struct winbindd_domain *domain;
1027         char *p;
1028         DOM_SID sid;
1029         uint32 rid;
1030         fstring keystr;
1031         fstring dom_name;
1032         TDB_DATA key2;
1033         BOOL *failed = (BOOL *)state;
1034
1035         DEBUG(10,("Converting %s\n", key.dptr));
1036
1037         p = strchr(key.dptr, '/');
1038         if (!p)
1039                 return 0;
1040
1041         *p = 0;
1042         fstrcpy(dom_name, key.dptr);
1043         *p++ = '/';
1044
1045         domain = find_domain_from_name(dom_name);
1046         if (domain == NULL) {
1047                 /* We must delete the old record. */
1048                 DEBUG(0,("Unable to find domain %s\n", dom_name ));
1049                 DEBUG(0,("deleting record %s\n", key.dptr ));
1050
1051                 if (tdb_delete(tdb, key) != 0) {
1052                         DEBUG(0, ("Unable to delete record %s\n", key.dptr));
1053                         *failed = True;
1054                         return -1;
1055                 }
1056
1057                 return 0;
1058         }
1059
1060         rid = atoi(p);
1061
1062         sid_copy(&sid, &domain->sid);
1063         sid_append_rid(&sid, rid);
1064
1065         sid_to_string(keystr, &sid);
1066         key2.dptr = keystr;
1067         key2.dsize = strlen(keystr) + 1;
1068
1069         if (tdb_store(tdb, key2, data, TDB_INSERT) != 0) {
1070                 DEBUG(0,("Unable to add record %s\n", key2.dptr ));
1071                 *failed = True;
1072                 return -1;
1073         }
1074
1075         if (tdb_store(tdb, data, key2, TDB_REPLACE) != 0) {
1076                 DEBUG(0,("Unable to update record %s\n", data.dptr ));
1077                 *failed = True;
1078                 return -1;
1079         }
1080
1081         if (tdb_delete(tdb, key) != 0) {
1082                 DEBUG(0,("Unable to delete record %s\n", key.dptr ));
1083                 *failed = True;
1084                 return -1;
1085         }
1086
1087         return 0;
1088 }
1089
1090 /* These definitions are from sam/idmap_tdb.c. Replicated here just
1091    out of laziness.... :-( */
1092
1093 /* High water mark keys */
1094 #define HWM_GROUP  "GROUP HWM"
1095 #define HWM_USER   "USER HWM"
1096
1097 /*****************************************************************************
1098  Convert the idmap database from an older version.
1099 *****************************************************************************/
1100
1101 static BOOL idmap_convert(const char *idmap_name)
1102 {
1103         int32 vers;
1104         BOOL bigendianheader;
1105         BOOL failed = False;
1106         TDB_CONTEXT *idmap_tdb;
1107
1108         if (!(idmap_tdb = tdb_open_log(idmap_name, 0,
1109                                         TDB_DEFAULT, O_RDWR,
1110                                         0600))) {
1111                 DEBUG(0, ("idmap_convert: Unable to open idmap database\n"));
1112                 return False;
1113         }
1114
1115         bigendianheader = (tdb_get_flags(idmap_tdb) & TDB_BIGENDIAN) ? True : False;
1116
1117         vers = tdb_fetch_int32(idmap_tdb, "IDMAP_VERSION");
1118
1119         if (((vers == -1) && bigendianheader) || (IREV(vers) == IDMAP_VERSION)) {
1120                 /* Arrggghh ! Bytereversed or old big-endian - make order independent ! */
1121                 /*
1122                  * high and low records were created on a
1123                  * big endian machine and will need byte-reversing.
1124                  */
1125
1126                 int32 wm;
1127
1128                 wm = tdb_fetch_int32(idmap_tdb, HWM_USER);
1129
1130                 if (wm != -1) {
1131                         wm = IREV(wm);
1132                 }  else {
1133                         wm = server_state.uid_low;
1134                 }
1135
1136                 if (tdb_store_int32(idmap_tdb, HWM_USER, wm) == -1) {
1137                         DEBUG(0, ("idmap_convert: Unable to byteswap user hwm in idmap database\n"));
1138                         tdb_close(idmap_tdb);
1139                         return False;
1140                 }
1141
1142                 wm = tdb_fetch_int32(idmap_tdb, HWM_GROUP);
1143                 if (wm != -1) {
1144                         wm = IREV(wm);
1145                 } else {
1146                         wm = server_state.gid_low;
1147                 }
1148
1149                 if (tdb_store_int32(idmap_tdb, HWM_GROUP, wm) == -1) {
1150                         DEBUG(0, ("idmap_convert: Unable to byteswap group hwm in idmap database\n"));
1151                         tdb_close(idmap_tdb);
1152                         return False;
1153                 }
1154         }
1155
1156         /* the old format stored as DOMAIN/rid - now we store the SID direct */
1157         tdb_traverse(idmap_tdb, convert_fn, &failed);
1158
1159         if (failed) {
1160                 DEBUG(0, ("Problem during conversion\n"));
1161                 tdb_close(idmap_tdb);
1162                 return False;
1163         }
1164
1165         if (tdb_store_int32(idmap_tdb, "IDMAP_VERSION", IDMAP_VERSION) == -1) {
1166                 DEBUG(0, ("idmap_convert: Unable to dtore idmap version in databse\n"));
1167                 tdb_close(idmap_tdb);
1168                 return False;
1169         }
1170
1171         tdb_close(idmap_tdb);
1172         return True;
1173 }
1174
1175 /*****************************************************************************
1176  Convert the idmap database from an older version if necessary
1177 *****************************************************************************/
1178
1179 BOOL winbindd_upgrade_idmap(void)
1180 {
1181         pstring idmap_name;
1182         pstring backup_name;
1183         SMB_STRUCT_STAT stbuf;
1184         TDB_CONTEXT *idmap_tdb;
1185
1186         pstrcpy(idmap_name, lock_path("winbindd_idmap.tdb"));
1187
1188         if (!file_exist(idmap_name, &stbuf)) {
1189                 /* nothing to convert return */
1190                 return True;
1191         }
1192
1193         if (!(idmap_tdb = tdb_open_log(idmap_name, 0,
1194                                         TDB_DEFAULT, O_RDWR,
1195                                         0600))) {
1196                 DEBUG(0, ("idmap_convert: Unable to open idmap database\n"));
1197                 return False;
1198         }
1199
1200         if (tdb_fetch_int32(idmap_tdb, "IDMAP_VERSION") == IDMAP_VERSION) {
1201                 /* nothing to convert return */
1202                 tdb_close(idmap_tdb);
1203                 return True;
1204         }
1205
1206         /* backup_tdb expects the tdb not to be open */
1207         tdb_close(idmap_tdb);
1208
1209         DEBUG(0, ("Upgrading winbindd_idmap.tdb from an old version\n"));
1210
1211         pstrcpy(backup_name, idmap_name);
1212         pstrcat(backup_name, ".bak");
1213
1214         if (backup_tdb(idmap_name, backup_name) != 0) {
1215                 DEBUG(0, ("Could not backup idmap database\n"));
1216                 return False;
1217         }
1218
1219         return idmap_convert(idmap_name);
1220 }
1221
1222 NTSTATUS lookup_usergroups_cached(struct winbindd_domain *domain,
1223                                   TALLOC_CTX *mem_ctx,
1224                                   const DOM_SID *user_sid,
1225                                   uint32 *p_num_groups, DOM_SID **user_sids)
1226 {
1227         NET_USER_INFO_3 *info3 = NULL;
1228         NTSTATUS status = NT_STATUS_NO_MEMORY;
1229         int i;
1230         size_t num_groups = 0;
1231         DOM_SID group_sid, primary_group;
1232         
1233         DEBUG(3,(": lookup_usergroups_cached\n"));
1234         
1235         *user_sids = NULL;
1236         num_groups = 0;
1237         *p_num_groups = 0;
1238
1239         info3 = netsamlogon_cache_get(mem_ctx, user_sid);
1240
1241         if (info3 == NULL) {
1242                 return NT_STATUS_OBJECT_NAME_NOT_FOUND;
1243         }
1244
1245         if (info3->num_groups == 0) {
1246                 SAFE_FREE(info3);
1247                 return NT_STATUS_UNSUCCESSFUL;
1248         }
1249         
1250         /* always add the primary group to the sid array */
1251         sid_compose(&primary_group, &info3->dom_sid.sid, info3->user_rid);
1252         
1253         add_sid_to_array(mem_ctx, &primary_group, user_sids, &num_groups);
1254
1255         for (i=0; i<info3->num_groups; i++) {
1256                 sid_copy(&group_sid, &info3->dom_sid.sid);
1257                 sid_append_rid(&group_sid, info3->gids[i].g_rid);
1258
1259                 add_sid_to_array(mem_ctx, &group_sid, user_sids,
1260                                  &num_groups);
1261         }
1262
1263         SAFE_FREE(info3);
1264         *p_num_groups = num_groups;
1265         status = (user_sids != NULL) ? NT_STATUS_OK : NT_STATUS_NO_MEMORY;
1266         
1267         DEBUG(3,(": lookup_usergroups_cached succeeded\n"));
1268
1269         return status;
1270 }