Use pidl for _svcctl_StartServiceW().
[amitay/samba.git] / source3 / rpc_server / srv_svcctl_nt.c
1 /*
2  *  Unix SMB/CIFS implementation.
3  *  RPC Pipe client / server routines
4  *
5  *  Copyright (C) Marcin Krzysztof Porwit           2005.
6  *
7  *  Largely Rewritten (Again) by:
8  *  Copyright (C) Gerald (Jerry) Carter             2005.
9  *
10  *  This program is free software; you can redistribute it and/or modify
11  *  it under the terms of the GNU General Public License as published by
12  *  the Free Software Foundation; either version 3 of the License, or
13  *  (at your option) any later version.
14  *
15  *  This program is distributed in the hope that it will be useful,
16  *  but WITHOUT ANY WARRANTY; without even the implied warranty of
17  *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
18  *  GNU General Public License for more details.
19  *
20  *  You should have received a copy of the GNU General Public License
21  *  along with this program; if not, see <http://www.gnu.org/licenses/>.
22  */
23
24 #include "includes.h"
25
26 #undef DBGC_CLASS
27 #define DBGC_CLASS DBGC_RPC_SRV
28
29 struct service_control_op {
30         const char *name;
31         SERVICE_CONTROL_OPS *ops;
32 };
33
34 #define SVCCTL_NUM_INTERNAL_SERVICES    4
35
36 /* handle external services */
37 extern SERVICE_CONTROL_OPS rcinit_svc_ops;
38
39 /* builtin services (see service_db.c and services/svc_*.c */
40 extern SERVICE_CONTROL_OPS spoolss_svc_ops;
41 extern SERVICE_CONTROL_OPS netlogon_svc_ops;
42 extern SERVICE_CONTROL_OPS winreg_svc_ops;
43 extern SERVICE_CONTROL_OPS wins_svc_ops;
44
45 /* make sure this number patches the number of builtin
46    SERVICE_CONTROL_OPS structure listed above */
47
48 #define SVCCTL_NUM_INTERNAL_SERVICES    4
49
50 struct service_control_op *svcctl_ops;
51
52 static const struct generic_mapping scm_generic_map =
53         { SC_MANAGER_READ_ACCESS, SC_MANAGER_WRITE_ACCESS, SC_MANAGER_EXECUTE_ACCESS, SC_MANAGER_ALL_ACCESS };
54 static const struct generic_mapping svc_generic_map =
55         { SERVICE_READ_ACCESS, SERVICE_WRITE_ACCESS, SERVICE_EXECUTE_ACCESS, SERVICE_ALL_ACCESS };
56
57
58 /********************************************************************
59 ********************************************************************/
60
61 bool init_service_op_table( void )
62 {
63         const char **service_list = lp_svcctl_list();
64         int num_services = SVCCTL_NUM_INTERNAL_SERVICES + str_list_count( service_list );
65         int i;
66
67         if ( !(svcctl_ops = TALLOC_ARRAY( NULL, struct service_control_op, num_services+1)) ) {
68                 DEBUG(0,("init_service_op_table: talloc() failed!\n"));
69                 return False;
70         }
71
72         /* services listed in smb.conf get the rc.init interface */
73
74         for ( i=0; service_list && service_list[i]; i++ ) {
75                 svcctl_ops[i].name = talloc_strdup( svcctl_ops, service_list[i] );
76                 svcctl_ops[i].ops  = &rcinit_svc_ops;
77         }
78
79         /* add builtin services */
80
81         svcctl_ops[i].name = talloc_strdup( svcctl_ops, "Spooler" );
82         svcctl_ops[i].ops  = &spoolss_svc_ops;
83         i++;
84
85         svcctl_ops[i].name = talloc_strdup( svcctl_ops, "NETLOGON" );
86         svcctl_ops[i].ops  = &netlogon_svc_ops;
87         i++;
88
89         svcctl_ops[i].name = talloc_strdup( svcctl_ops, "RemoteRegistry" );
90         svcctl_ops[i].ops  = &winreg_svc_ops;
91         i++;
92
93         svcctl_ops[i].name = talloc_strdup( svcctl_ops, "WINS" );
94         svcctl_ops[i].ops  = &wins_svc_ops;
95         i++;
96
97         /* NULL terminate the array */
98
99         svcctl_ops[i].name = NULL;
100         svcctl_ops[i].ops  = NULL;
101
102         return True;
103 }
104
105 /********************************************************************
106 ********************************************************************/
107
108 static struct service_control_op* find_service_by_name( const char *name )
109 {
110         int i;
111
112         for ( i=0; svcctl_ops[i].name; i++ ) {
113                 if ( strequal( name, svcctl_ops[i].name ) )
114                         return &svcctl_ops[i];
115         }
116
117         return NULL;
118 }
119 /********************************************************************
120 ********************************************************************/
121
122 static NTSTATUS svcctl_access_check( SEC_DESC *sec_desc, NT_USER_TOKEN *token,
123                                      uint32 access_desired, uint32 *access_granted )
124 {
125         NTSTATUS result;
126
127         if ( geteuid() == sec_initial_uid() ) {
128                 DEBUG(5,("svcctl_access_check: using root's token\n"));
129                 token = get_root_nt_token();
130         }
131
132         se_access_check( sec_desc, token, access_desired, access_granted, &result );
133
134         return result;
135 }
136
137 /********************************************************************
138 ********************************************************************/
139
140 static SEC_DESC* construct_scm_sd( TALLOC_CTX *ctx )
141 {
142         SEC_ACE ace[2];
143         SEC_ACCESS mask;
144         size_t i = 0;
145         SEC_DESC *sd;
146         SEC_ACL *acl;
147         size_t sd_size;
148
149         /* basic access for Everyone */
150
151         init_sec_access(&mask, SC_MANAGER_READ_ACCESS );
152         init_sec_ace(&ace[i++], &global_sid_World, SEC_ACE_TYPE_ACCESS_ALLOWED, mask, 0);
153
154         /* Full Access 'BUILTIN\Administrators' */
155
156         init_sec_access(&mask,SC_MANAGER_ALL_ACCESS );
157         init_sec_ace(&ace[i++], &global_sid_Builtin_Administrators, SEC_ACE_TYPE_ACCESS_ALLOWED, mask, 0);
158
159
160         /* create the security descriptor */
161
162         if ( !(acl = make_sec_acl(ctx, NT4_ACL_REVISION, i, ace)) )
163                 return NULL;
164
165         if ( !(sd = make_sec_desc(ctx, SECURITY_DESCRIPTOR_REVISION_1,
166                                   SEC_DESC_SELF_RELATIVE, NULL, NULL, NULL,
167                                   acl, &sd_size)) )
168                 return NULL;
169
170         return sd;
171 }
172
173 /******************************************************************
174  free() function for REGISTRY_KEY
175  *****************************************************************/
176
177 static void free_service_handle_info(void *ptr)
178 {
179         TALLOC_FREE( ptr );
180 }
181
182 /******************************************************************
183  Find a registry key handle and return a SERVICE_INFO
184  *****************************************************************/
185
186 static SERVICE_INFO *find_service_info_by_hnd(pipes_struct *p, POLICY_HND *hnd)
187 {
188         SERVICE_INFO *service_info = NULL;
189
190         if( !find_policy_by_hnd( p, hnd, (void **)(void *)&service_info) ) {
191                 DEBUG(2,("find_service_info_by_hnd: handle not found"));
192                 return NULL;
193         }
194
195         return service_info;
196 }
197
198 /******************************************************************
199  *****************************************************************/
200
201 static WERROR create_open_service_handle( pipes_struct *p, POLICY_HND *handle, uint32 type,
202                                           const char *service, uint32 access_granted )
203 {
204         SERVICE_INFO *info = NULL;
205         WERROR result = WERR_OK;
206         struct service_control_op *s_op;
207
208         if ( !(info = TALLOC_ZERO_P( NULL, SERVICE_INFO )) )
209                 return WERR_NOMEM;
210
211         /* the Service Manager has a NULL name */
212
213         info->type = SVC_HANDLE_IS_SCM;
214
215         switch ( type ) {
216         case SVC_HANDLE_IS_SCM:
217                 info->type = SVC_HANDLE_IS_SCM;
218                 break;
219
220         case SVC_HANDLE_IS_DBLOCK:
221                 info->type = SVC_HANDLE_IS_DBLOCK;
222                 break;
223
224         case SVC_HANDLE_IS_SERVICE:
225                 info->type = SVC_HANDLE_IS_SERVICE;
226
227                 /* lookup the SERVICE_CONTROL_OPS */
228
229                 if ( !(s_op = find_service_by_name( service )) ) {
230                         result = WERR_NO_SUCH_SERVICE;
231                         goto done;
232                 }
233
234                 info->ops = s_op->ops;
235
236                 if ( !(info->name  = talloc_strdup( info, s_op->name )) ) {
237                         result = WERR_NOMEM;
238                         goto done;
239                 }
240                 break;
241
242         default:
243                 result = WERR_NO_SUCH_SERVICE;
244                 goto done;
245         }
246
247         info->access_granted = access_granted;
248
249         /* store the SERVICE_INFO and create an open handle */
250
251         if ( !create_policy_hnd( p, handle, free_service_handle_info, info ) ) {
252                 result = WERR_ACCESS_DENIED;
253                 goto done;
254         }
255
256 done:
257         if ( !W_ERROR_IS_OK(result) )
258                 free_service_handle_info( info );
259
260         return result;
261 }
262
263 /********************************************************************
264 ********************************************************************/
265
266 WERROR _svcctl_OpenSCManagerW(pipes_struct *p,
267                               struct svcctl_OpenSCManagerW *r)
268 {
269         SEC_DESC *sec_desc;
270         uint32 access_granted = 0;
271         NTSTATUS status;
272
273         /* perform access checks */
274
275         if ( !(sec_desc = construct_scm_sd( p->mem_ctx )) )
276                 return WERR_NOMEM;
277
278         se_map_generic( &r->in.access_mask, &scm_generic_map );
279         status = svcctl_access_check( sec_desc, p->pipe_user.nt_user_token, r->in.access_mask, &access_granted );
280         if ( !NT_STATUS_IS_OK(status) )
281                 return ntstatus_to_werror( status );
282
283         return create_open_service_handle( p, r->out.handle, SVC_HANDLE_IS_SCM, NULL, access_granted );
284 }
285
286 /********************************************************************
287  _svcctl_OpenServiceW
288 ********************************************************************/
289
290 WERROR _svcctl_OpenServiceW(pipes_struct *p,
291                             struct svcctl_OpenServiceW *r)
292 {
293         SEC_DESC *sec_desc;
294         uint32 access_granted = 0;
295         NTSTATUS status;
296         const char *service = NULL;
297
298         service = r->in.ServiceName;
299         if (!service) {
300                 return WERR_NOMEM;
301         }
302         DEBUG(5, ("_svcctl_OpenServiceW: Attempting to open Service [%s], \n", service));
303
304         /* based on my tests you can open a service if you have a valid scm handle */
305
306         if ( !find_service_info_by_hnd( p, r->in.scmanager_handle) )
307                 return WERR_BADFID;
308
309         /* perform access checks.  Use the root token in order to ensure that we
310            retrieve the security descriptor */
311
312         if ( !(sec_desc = svcctl_get_secdesc( p->mem_ctx, service, get_root_nt_token() )) )
313                 return WERR_NOMEM;
314
315         se_map_generic( &r->in.access_mask, &svc_generic_map );
316         status = svcctl_access_check( sec_desc, p->pipe_user.nt_user_token, r->in.access_mask, &access_granted );
317         if ( !NT_STATUS_IS_OK(status) )
318                 return ntstatus_to_werror( status );
319
320         return create_open_service_handle( p, r->out.handle, SVC_HANDLE_IS_SERVICE, service, access_granted );
321 }
322
323 /********************************************************************
324 ********************************************************************/
325
326 WERROR _svcctl_CloseServiceHandle(pipes_struct *p, struct svcctl_CloseServiceHandle *r)
327 {
328         if ( !close_policy_hnd( p, r->in.handle ) )
329                 return  WERR_BADFID;
330
331         return WERR_OK;
332 }
333
334 /********************************************************************
335  _svcctl_GetServiceDisplayNameW
336 ********************************************************************/
337
338 WERROR _svcctl_GetServiceDisplayNameW(pipes_struct *p,
339                                       struct svcctl_GetServiceDisplayNameW *r)
340 {
341         const char *service;
342         const char *display_name;
343         SERVICE_INFO *info = find_service_info_by_hnd( p, r->in.handle );
344
345         /* can only use an SCM handle here */
346
347         if ( !info || (info->type != SVC_HANDLE_IS_SCM) )
348                 return WERR_BADFID;
349
350         service = r->in.service_name;
351
352         display_name = svcctl_lookup_dispname(p->mem_ctx, service, p->pipe_user.nt_user_token );
353         if (!display_name) {
354                 display_name = "";
355         }
356
357         *r->out.display_name = display_name;
358         *r->out.display_name_length = strlen(display_name);
359
360         return WERR_OK;
361 }
362
363 /********************************************************************
364 ********************************************************************/
365
366 WERROR _svcctl_query_status(pipes_struct *p, SVCCTL_Q_QUERY_STATUS *q_u, SVCCTL_R_QUERY_STATUS *r_u)
367 {
368         SERVICE_INFO *info = find_service_info_by_hnd( p, &q_u->handle );
369
370         /* perform access checks */
371
372         if ( !info || (info->type != SVC_HANDLE_IS_SERVICE) )
373                 return WERR_BADFID;
374
375         if ( !(info->access_granted & SC_RIGHT_SVC_QUERY_STATUS) )
376                 return WERR_ACCESS_DENIED;
377
378         /* try the service specific status call */
379
380         return info->ops->service_status( info->name, &r_u->svc_status );
381 }
382
383 /********************************************************************
384 ********************************************************************/
385
386 static int enumerate_status( TALLOC_CTX *ctx, ENUM_SERVICES_STATUS **status, NT_USER_TOKEN *token )
387 {
388         int num_services = 0;
389         int i;
390         ENUM_SERVICES_STATUS *st;
391         const char *display_name;
392
393         /* just count */
394         while ( svcctl_ops[num_services].name )
395                 num_services++;
396
397         if ( !(st = TALLOC_ARRAY( ctx, ENUM_SERVICES_STATUS, num_services )) ) {
398                 DEBUG(0,("enumerate_status: talloc() failed!\n"));
399                 return -1;
400         }
401
402         for ( i=0; i<num_services; i++ ) {
403                 init_unistr( &st[i].servicename, svcctl_ops[i].name );
404
405                 display_name = svcctl_lookup_dispname(ctx, svcctl_ops[i].name, token );
406                 init_unistr( &st[i].displayname, display_name ? display_name : "");
407
408                 svcctl_ops[i].ops->service_status( svcctl_ops[i].name, &st[i].status );
409         }
410
411         *status = st;
412
413         return num_services;
414 }
415
416 /********************************************************************
417 ********************************************************************/
418
419 WERROR _svcctl_enum_services_status(pipes_struct *p, SVCCTL_Q_ENUM_SERVICES_STATUS *q_u, SVCCTL_R_ENUM_SERVICES_STATUS *r_u)
420 {
421         ENUM_SERVICES_STATUS *services = NULL;
422         int num_services;
423         int i = 0;
424         size_t buffer_size = 0;
425         WERROR result = WERR_OK;
426         SERVICE_INFO *info = find_service_info_by_hnd( p, &q_u->handle );
427         NT_USER_TOKEN *token = p->pipe_user.nt_user_token;
428
429         /* perform access checks */
430
431         if ( !info || (info->type != SVC_HANDLE_IS_SCM) )
432                 return WERR_BADFID;
433
434         if ( !(info->access_granted & SC_RIGHT_MGR_ENUMERATE_SERVICE) ) {
435                 return WERR_ACCESS_DENIED;
436         }
437
438         num_services = enumerate_status( p->mem_ctx, &services, token );
439         if (num_services == -1 ) {
440                 return WERR_NOMEM;
441         }
442
443         for ( i=0; i<num_services; i++ ) {
444                 buffer_size += svcctl_sizeof_enum_services_status(&services[i]);
445         }
446
447         buffer_size += buffer_size % 4;
448
449         if (buffer_size > q_u->buffer_size ) {
450                 num_services = 0;
451                 result = WERR_MORE_DATA;
452         }
453
454         rpcbuf_init(&r_u->buffer, q_u->buffer_size, p->mem_ctx);
455
456         if ( W_ERROR_IS_OK(result) ) {
457                 for ( i=0; i<num_services; i++ )
458                         svcctl_io_enum_services_status( "", &services[i], &r_u->buffer, 0 );
459         }
460
461         r_u->needed      = (buffer_size > q_u->buffer_size) ? buffer_size : q_u->buffer_size;
462         r_u->returned    = (uint32)num_services;
463
464         if ( !(r_u->resume = TALLOC_P( p->mem_ctx, uint32 )) )
465                 return WERR_NOMEM;
466
467         *r_u->resume = 0x0;
468
469         return result;
470 }
471
472 /********************************************************************
473  _svcctl_StartServiceW
474 ********************************************************************/
475
476 WERROR _svcctl_StartServiceW(pipes_struct *p,
477                              struct svcctl_StartServiceW *r)
478 {
479         SERVICE_INFO *info = find_service_info_by_hnd( p, r->in.handle );
480
481         /* perform access checks */
482
483         if ( !info || (info->type != SVC_HANDLE_IS_SERVICE) )
484                 return WERR_BADFID;
485
486         if ( !(info->access_granted & SC_RIGHT_SVC_START) )
487                 return WERR_ACCESS_DENIED;
488
489         return info->ops->start_service( info->name );
490 }
491
492 /********************************************************************
493 ********************************************************************/
494
495 WERROR _svcctl_control_service(pipes_struct *p, SVCCTL_Q_CONTROL_SERVICE *q_u, SVCCTL_R_CONTROL_SERVICE *r_u)
496 {
497         SERVICE_INFO *info = find_service_info_by_hnd( p, &q_u->handle );
498
499         /* perform access checks */
500
501         if ( !info || (info->type != SVC_HANDLE_IS_SERVICE) )
502                 return WERR_BADFID;
503
504         switch ( q_u->control ) {
505         case SVCCTL_CONTROL_STOP:
506                 if ( !(info->access_granted & SC_RIGHT_SVC_STOP) )
507                         return WERR_ACCESS_DENIED;
508
509                 return info->ops->stop_service( info->name, &r_u->svc_status );
510
511         case SVCCTL_CONTROL_INTERROGATE:
512                 if ( !(info->access_granted & SC_RIGHT_SVC_QUERY_STATUS) )
513                         return WERR_ACCESS_DENIED;
514
515                 return info->ops->service_status( info->name, &r_u->svc_status );
516         }
517
518         /* default control action */
519
520         return WERR_ACCESS_DENIED;
521 }
522
523 /********************************************************************
524 ********************************************************************/
525
526 WERROR _svcctl_enum_dependent_services( pipes_struct *p, SVCCTL_Q_ENUM_DEPENDENT_SERVICES *q_u, SVCCTL_R_ENUM_DEPENDENT_SERVICES *r_u )
527 {
528         SERVICE_INFO *info = find_service_info_by_hnd( p, &q_u->handle );
529
530         /* perform access checks */
531
532         if ( !info || (info->type != SVC_HANDLE_IS_SERVICE) )
533                 return WERR_BADFID;
534
535         if ( !(info->access_granted & SC_RIGHT_SVC_ENUMERATE_DEPENDENTS) )
536                 return WERR_ACCESS_DENIED;
537
538         /* we have to set the outgoing buffer size to the same as the
539            incoming buffer size (even in the case of failure */
540
541         rpcbuf_init( &r_u->buffer, q_u->buffer_size, p->mem_ctx );
542
543         r_u->needed      = q_u->buffer_size;
544
545         /* no dependent services...basically a stub function */
546         r_u->returned    = 0;
547
548         return WERR_OK;
549 }
550
551 /********************************************************************
552 ********************************************************************/
553
554 WERROR _svcctl_query_service_status_ex( pipes_struct *p, SVCCTL_Q_QUERY_SERVICE_STATUSEX *q_u, SVCCTL_R_QUERY_SERVICE_STATUSEX *r_u )
555 {
556         SERVICE_INFO *info = find_service_info_by_hnd( p, &q_u->handle );
557         uint32 buffer_size;
558
559         /* perform access checks */
560
561         if ( !info || (info->type != SVC_HANDLE_IS_SERVICE) )
562                 return WERR_BADFID;
563
564         if ( !(info->access_granted & SC_RIGHT_SVC_QUERY_STATUS) )
565                 return WERR_ACCESS_DENIED;
566
567         /* we have to set the outgoing buffer size to the same as the
568            incoming buffer size (even in the case of failure) */
569
570         rpcbuf_init( &r_u->buffer, q_u->buffer_size, p->mem_ctx );
571         r_u->needed = q_u->buffer_size;
572
573         switch ( q_u->level ) {
574                 case SVC_STATUS_PROCESS_INFO:
575                 {
576                         SERVICE_STATUS_PROCESS svc_stat_proc;
577
578                         /* Get the status of the service.. */
579                         info->ops->service_status( info->name, &svc_stat_proc.status );
580                         svc_stat_proc.process_id     = sys_getpid();
581                         svc_stat_proc.service_flags  = 0x0;
582
583                         svcctl_io_service_status_process( "", &svc_stat_proc, &r_u->buffer, 0 );
584                         buffer_size = sizeof(SERVICE_STATUS_PROCESS);
585                         break;
586                 }
587
588                 default:
589                         return WERR_UNKNOWN_LEVEL;
590         }
591
592
593         buffer_size += buffer_size % 4;
594         r_u->needed = (buffer_size > q_u->buffer_size) ? buffer_size : q_u->buffer_size;
595
596         if (buffer_size > q_u->buffer_size )
597                 return WERR_MORE_DATA;
598
599         return WERR_OK;
600 }
601
602 /********************************************************************
603 ********************************************************************/
604
605 static WERROR fill_svc_config( TALLOC_CTX *ctx, const char *name, SERVICE_CONFIG *config, NT_USER_TOKEN *token )
606 {
607         REGVAL_CTR *values;
608         REGISTRY_VALUE *val;
609
610         /* retrieve the registry values for this service */
611
612         if ( !(values = svcctl_fetch_regvalues( name, token )) )
613                 return WERR_REG_CORRUPT;
614
615         /* now fill in the individual values */
616
617         config->displayname = TALLOC_ZERO_P( ctx, UNISTR2 );
618         if ( (val = regval_ctr_getvalue( values, "DisplayName" )) != NULL )
619                 init_unistr2( config->displayname, regval_sz( val ), UNI_STR_TERMINATE );
620         else
621                 init_unistr2( config->displayname, name, UNI_STR_TERMINATE );
622
623         if ( (val = regval_ctr_getvalue( values, "ObjectName" )) != NULL ) {
624                 config->startname = TALLOC_ZERO_P( ctx, UNISTR2 );
625                 init_unistr2( config->startname, regval_sz( val ), UNI_STR_TERMINATE );
626         }
627
628         if ( (val = regval_ctr_getvalue( values, "ImagePath" )) != NULL ) {
629                 config->executablepath = TALLOC_ZERO_P( ctx, UNISTR2 );
630                 init_unistr2( config->executablepath, regval_sz( val ), UNI_STR_TERMINATE );
631         }
632
633         /* a few hard coded values */
634         /* loadordergroup and dependencies are empty */
635
636         config->tag_id           = 0x00000000;                  /* unassigned loadorder group */
637         config->service_type     = SVCCTL_WIN32_OWN_PROC;
638         config->error_control    = SVCCTL_SVC_ERROR_NORMAL;
639
640         /* set the start type.  NetLogon and WINS are disabled to prevent
641            the client from showing the "Start" button (if of course the services
642            are not running */
643
644         if ( strequal( name, "NETLOGON" ) && ( lp_servicenumber(name) == -1 ) )
645                 config->start_type = SVCCTL_DISABLED;
646         else if ( strequal( name, "WINS" ) && ( !lp_wins_support() ))
647                 config->start_type = SVCCTL_DISABLED;
648         else
649                 config->start_type = SVCCTL_DEMAND_START;
650
651
652         TALLOC_FREE( values );
653
654         return WERR_OK;
655 }
656
657 /********************************************************************
658 ********************************************************************/
659
660 WERROR _svcctl_query_service_config( pipes_struct *p, SVCCTL_Q_QUERY_SERVICE_CONFIG *q_u, SVCCTL_R_QUERY_SERVICE_CONFIG *r_u )
661 {
662         SERVICE_INFO *info = find_service_info_by_hnd( p, &q_u->handle );
663         uint32 buffer_size;
664         WERROR wresult;
665
666         /* perform access checks */
667
668         if ( !info || (info->type != SVC_HANDLE_IS_SERVICE) )
669                 return WERR_BADFID;
670
671         if ( !(info->access_granted & SC_RIGHT_SVC_QUERY_CONFIG) )
672                 return WERR_ACCESS_DENIED;
673
674         /* we have to set the outgoing buffer size to the same as the
675            incoming buffer size (even in the case of failure */
676
677         r_u->needed      = q_u->buffer_size;
678
679         wresult = fill_svc_config( p->mem_ctx, info->name, &r_u->config, p->pipe_user.nt_user_token );
680         if ( !W_ERROR_IS_OK(wresult) )
681                 return wresult;
682
683         buffer_size = svcctl_sizeof_service_config( &r_u->config );
684         r_u->needed = (buffer_size > q_u->buffer_size) ? buffer_size : q_u->buffer_size;
685
686         if (buffer_size > q_u->buffer_size ) {
687                 ZERO_STRUCTP( &r_u->config );
688                 return WERR_INSUFFICIENT_BUFFER;
689         }
690
691         return WERR_OK;
692 }
693
694 /********************************************************************
695 ********************************************************************/
696
697 WERROR _svcctl_query_service_config2( pipes_struct *p, SVCCTL_Q_QUERY_SERVICE_CONFIG2 *q_u, SVCCTL_R_QUERY_SERVICE_CONFIG2 *r_u )
698 {
699         SERVICE_INFO *info = find_service_info_by_hnd( p, &q_u->handle );
700         uint32 buffer_size;
701
702         /* perform access checks */
703
704         if ( !info || (info->type != SVC_HANDLE_IS_SERVICE) )
705                 return WERR_BADFID;
706
707         if ( !(info->access_granted & SC_RIGHT_SVC_QUERY_CONFIG) )
708                 return WERR_ACCESS_DENIED;
709
710         /* we have to set the outgoing buffer size to the same as the
711            incoming buffer size (even in the case of failure */
712
713         rpcbuf_init( &r_u->buffer, q_u->buffer_size, p->mem_ctx );
714         r_u->needed = q_u->buffer_size;
715
716         switch ( q_u->level ) {
717         case SERVICE_CONFIG_DESCRIPTION:
718                 {
719                         SERVICE_DESCRIPTION desc_buf;
720                         const char *description;
721
722                         description = svcctl_lookup_description(p->mem_ctx, info->name, p->pipe_user.nt_user_token );
723
724                         ZERO_STRUCTP( &desc_buf );
725
726                         init_service_description_buffer( &desc_buf, description ? description : "");
727                         svcctl_io_service_description( "", &desc_buf, &r_u->buffer, 0 );
728                         buffer_size = svcctl_sizeof_service_description( &desc_buf );
729
730                         break;
731                 }
732                 break;
733         case SERVICE_CONFIG_FAILURE_ACTIONS:
734                 {
735                         SERVICE_FAILURE_ACTIONS actions;
736
737                         /* nothing to say...just service the request */
738
739                         ZERO_STRUCTP( &actions );
740                         svcctl_io_service_fa( "", &actions, &r_u->buffer, 0 );
741                         buffer_size = svcctl_sizeof_service_fa( &actions );
742
743                         break;
744                 }
745                 break;
746
747         default:
748                 return WERR_UNKNOWN_LEVEL;
749         }
750
751         buffer_size += buffer_size % 4;
752         r_u->needed = (buffer_size > q_u->buffer_size) ? buffer_size : q_u->buffer_size;
753
754         if (buffer_size > q_u->buffer_size )
755                 return WERR_INSUFFICIENT_BUFFER;
756
757         return WERR_OK;
758 }
759
760 /********************************************************************
761 ********************************************************************/
762
763 WERROR _svcctl_lock_service_db( pipes_struct *p, SVCCTL_Q_LOCK_SERVICE_DB *q_u, SVCCTL_R_LOCK_SERVICE_DB *r_u )
764 {
765         SERVICE_INFO *info = find_service_info_by_hnd( p, &q_u->handle );
766
767         /* perform access checks */
768
769         if ( !info || (info->type != SVC_HANDLE_IS_SCM) )
770                 return WERR_BADFID;
771
772         if ( !(info->access_granted & SC_RIGHT_MGR_LOCK) )
773                 return WERR_ACCESS_DENIED;
774
775         /* Just open a handle.  Doesn't actually lock anything */
776
777         return create_open_service_handle( p, &r_u->h_lock, SVC_HANDLE_IS_DBLOCK, NULL, 0 );
778 ;
779 }
780
781 /********************************************************************
782 ********************************************************************/
783
784 WERROR _svcctl_unlock_service_db( pipes_struct *p, SVCCTL_Q_UNLOCK_SERVICE_DB *q_u, SVCCTL_R_UNLOCK_SERVICE_DB *r_u )
785 {
786         SERVICE_INFO *info = find_service_info_by_hnd( p, &q_u->h_lock );
787
788
789         if ( !info || (info->type != SVC_HANDLE_IS_DBLOCK) )
790                 return WERR_BADFID;
791
792         return close_policy_hnd( p, &q_u->h_lock) ? WERR_OK : WERR_BADFID;
793 }
794
795 /********************************************************************
796 ********************************************************************/
797
798 WERROR _svcctl_query_service_sec( pipes_struct *p, SVCCTL_Q_QUERY_SERVICE_SEC *q_u, SVCCTL_R_QUERY_SERVICE_SEC *r_u )
799 {
800         SERVICE_INFO *info = find_service_info_by_hnd( p, &q_u->handle );
801         SEC_DESC *sec_desc;
802
803
804         /* only support the SCM and individual services */
805
806         if ( !info || !(info->type & (SVC_HANDLE_IS_SERVICE|SVC_HANDLE_IS_SCM)) )
807                 return WERR_BADFID;
808
809         /* check access reights (according to MSDN) */
810
811         if ( !(info->access_granted & STD_RIGHT_READ_CONTROL_ACCESS) )
812                 return WERR_ACCESS_DENIED;
813
814         /* TODO: handle something besides DACL_SECURITY_INFORMATION */
815
816         if ( (q_u->security_flags & DACL_SECURITY_INFORMATION) != DACL_SECURITY_INFORMATION )
817                 return WERR_INVALID_PARAM;
818
819         /* lookup the security descriptor and marshall it up for a reply */
820
821         if ( !(sec_desc = svcctl_get_secdesc( p->mem_ctx, info->name, get_root_nt_token() )) )
822                 return WERR_NOMEM;
823
824         r_u->needed = ndr_size_security_descriptor( sec_desc, 0 );
825
826         if ( r_u->needed > q_u->buffer_size ) {
827                 ZERO_STRUCTP( &r_u->buffer );
828                 return WERR_INSUFFICIENT_BUFFER;
829         }
830
831         rpcbuf_init( &r_u->buffer, q_u->buffer_size, p->mem_ctx );
832
833         if ( !sec_io_desc("", &sec_desc, &r_u->buffer.prs, 0 ) )
834                 return WERR_NOMEM;
835
836         return WERR_OK;
837 }
838
839 /********************************************************************
840 ********************************************************************/
841
842 WERROR _svcctl_set_service_sec( pipes_struct *p, SVCCTL_Q_SET_SERVICE_SEC *q_u, SVCCTL_R_SET_SERVICE_SEC *r_u )
843 {
844         SERVICE_INFO *info = find_service_info_by_hnd( p, &q_u->handle );
845         SEC_DESC *sec_desc = NULL;
846         uint32 required_access;
847
848         if ( !info || !(info->type & (SVC_HANDLE_IS_SERVICE|SVC_HANDLE_IS_SCM))  )
849                 return WERR_BADFID;
850
851         /* can't set the security de4scriptor on the ServiceControlManager */
852
853         if ( info->type == SVC_HANDLE_IS_SCM )
854                 return WERR_ACCESS_DENIED;
855
856         /* check the access on the open handle */
857
858         switch ( q_u->security_flags ) {
859                 case DACL_SECURITY_INFORMATION:
860                         required_access = STD_RIGHT_WRITE_DAC_ACCESS;
861                         break;
862
863                 case OWNER_SECURITY_INFORMATION:
864                 case GROUP_SECURITY_INFORMATION:
865                         required_access = STD_RIGHT_WRITE_OWNER_ACCESS;
866                         break;
867
868                 case SACL_SECURITY_INFORMATION:
869                         return WERR_INVALID_PARAM;
870                 default:
871                         return WERR_INVALID_PARAM;
872         }
873
874         if ( !(info->access_granted & required_access) )
875                 return WERR_ACCESS_DENIED;
876
877         /* read the security descfriptor */
878
879         if ( !sec_io_desc("", &sec_desc, &q_u->buffer.prs, 0 ) )
880                 return WERR_NOMEM;
881
882         /* store the new SD */
883
884         if ( !svcctl_set_secdesc( p->mem_ctx, info->name, sec_desc, p->pipe_user.nt_user_token ) )
885                 return WERR_ACCESS_DENIED;
886
887         return WERR_OK;
888 }
889
890
891 WERROR _svcctl_ControlService(pipes_struct *p, struct svcctl_ControlService *r)
892 {
893         p->rng_fault_state = True;
894         return WERR_NOT_SUPPORTED;
895 }
896
897 WERROR _svcctl_DeleteService(pipes_struct *p, struct svcctl_DeleteService *r)
898 {
899         p->rng_fault_state = True;
900         return WERR_NOT_SUPPORTED;
901 }
902
903 WERROR _svcctl_LockServiceDatabase(pipes_struct *p, struct svcctl_LockServiceDatabase *r)
904 {
905         p->rng_fault_state = True;
906         return WERR_NOT_SUPPORTED;
907 }
908
909 WERROR _svcctl_QueryServiceObjectSecurity(pipes_struct *p, struct svcctl_QueryServiceObjectSecurity *r)
910 {
911         p->rng_fault_state = True;
912         return WERR_NOT_SUPPORTED;
913 }
914
915 WERROR _svcctl_SetServiceObjectSecurity(pipes_struct *p, struct svcctl_SetServiceObjectSecurity *r)
916 {
917         p->rng_fault_state = True;
918         return WERR_NOT_SUPPORTED;
919 }
920
921 WERROR _svcctl_QueryServiceStatus(pipes_struct *p, struct svcctl_QueryServiceStatus *r)
922 {
923         p->rng_fault_state = True;
924         return WERR_NOT_SUPPORTED;
925 }
926
927 WERROR _svcctl_SetServiceStatus(pipes_struct *p, struct svcctl_SetServiceStatus *r)
928 {
929         p->rng_fault_state = True;
930         return WERR_NOT_SUPPORTED;
931 }
932
933 WERROR _svcctl_UnlockServiceDatabase(pipes_struct *p, struct svcctl_UnlockServiceDatabase *r)
934 {
935         p->rng_fault_state = True;
936         return WERR_NOT_SUPPORTED;
937 }
938
939 WERROR _svcctl_NotifyBootConfigStatus(pipes_struct *p, struct svcctl_NotifyBootConfigStatus *r)
940 {
941         p->rng_fault_state = True;
942         return WERR_NOT_SUPPORTED;
943 }
944
945 WERROR _svcctl_SCSetServiceBitsW(pipes_struct *p, struct svcctl_SCSetServiceBitsW *r)
946 {
947         p->rng_fault_state = True;
948         return WERR_NOT_SUPPORTED;
949 }
950
951 WERROR _svcctl_ChangeServiceConfigW(pipes_struct *p, struct svcctl_ChangeServiceConfigW *r)
952 {
953         p->rng_fault_state = True;
954         return WERR_NOT_SUPPORTED;
955 }
956
957 WERROR _svcctl_CreateServiceW(pipes_struct *p, struct svcctl_CreateServiceW *r)
958 {
959         p->rng_fault_state = True;
960         return WERR_NOT_SUPPORTED;
961 }
962
963 WERROR _svcctl_EnumDependentServicesW(pipes_struct *p, struct svcctl_EnumDependentServicesW *r)
964 {
965         p->rng_fault_state = True;
966         return WERR_NOT_SUPPORTED;
967 }
968
969 WERROR _svcctl_EnumServicesStatusW(pipes_struct *p, struct svcctl_EnumServicesStatusW *r)
970 {
971         p->rng_fault_state = True;
972         return WERR_NOT_SUPPORTED;
973 }
974
975 WERROR _svcctl_QueryServiceConfigW(pipes_struct *p, struct svcctl_QueryServiceConfigW *r)
976 {
977         p->rng_fault_state = True;
978         return WERR_NOT_SUPPORTED;
979 }
980
981 WERROR _svcctl_QueryServiceLockStatusW(pipes_struct *p, struct svcctl_QueryServiceLockStatusW *r)
982 {
983         p->rng_fault_state = True;
984         return WERR_NOT_SUPPORTED;
985 }
986
987 WERROR _svcctl_GetServiceKeyNameW(pipes_struct *p, struct svcctl_GetServiceKeyNameW *r)
988 {
989         p->rng_fault_state = True;
990         return WERR_NOT_SUPPORTED;
991 }
992
993 WERROR _svcctl_SCSetServiceBitsA(pipes_struct *p, struct svcctl_SCSetServiceBitsA *r)
994 {
995         p->rng_fault_state = True;
996         return WERR_NOT_SUPPORTED;
997 }
998
999 WERROR _svcctl_ChangeServiceConfigA(pipes_struct *p, struct svcctl_ChangeServiceConfigA *r)
1000 {
1001         p->rng_fault_state = True;
1002         return WERR_NOT_SUPPORTED;
1003 }
1004
1005 WERROR _svcctl_CreateServiceA(pipes_struct *p, struct svcctl_CreateServiceA *r)
1006 {
1007         p->rng_fault_state = True;
1008         return WERR_NOT_SUPPORTED;
1009 }
1010
1011 WERROR _svcctl_EnumDependentServicesA(pipes_struct *p, struct svcctl_EnumDependentServicesA *r)
1012 {
1013         p->rng_fault_state = True;
1014         return WERR_NOT_SUPPORTED;
1015 }
1016
1017 WERROR _svcctl_EnumServicesStatusA(pipes_struct *p, struct svcctl_EnumServicesStatusA *r)
1018 {
1019         p->rng_fault_state = True;
1020         return WERR_NOT_SUPPORTED;
1021 }
1022
1023 WERROR _svcctl_OpenSCManagerA(pipes_struct *p, struct svcctl_OpenSCManagerA *r)
1024 {
1025         p->rng_fault_state = True;
1026         return WERR_NOT_SUPPORTED;
1027 }
1028
1029 WERROR _svcctl_OpenServiceA(pipes_struct *p, struct svcctl_OpenServiceA *r)
1030 {
1031         p->rng_fault_state = True;
1032         return WERR_NOT_SUPPORTED;
1033 }
1034
1035 WERROR _svcctl_QueryServiceConfigA(pipes_struct *p, struct svcctl_QueryServiceConfigA *r)
1036 {
1037         p->rng_fault_state = True;
1038         return WERR_NOT_SUPPORTED;
1039 }
1040
1041 WERROR _svcctl_QueryServiceLockStatusA(pipes_struct *p, struct svcctl_QueryServiceLockStatusA *r)
1042 {
1043         p->rng_fault_state = True;
1044         return WERR_NOT_SUPPORTED;
1045 }
1046
1047 WERROR _svcctl_StartServiceA(pipes_struct *p, struct svcctl_StartServiceA *r)
1048 {
1049         p->rng_fault_state = True;
1050         return WERR_NOT_SUPPORTED;
1051 }
1052
1053 WERROR _svcctl_GetServiceDisplayNameA(pipes_struct *p, struct svcctl_GetServiceDisplayNameA *r)
1054 {
1055         p->rng_fault_state = True;
1056         return WERR_NOT_SUPPORTED;
1057 }
1058
1059 WERROR _svcctl_GetServiceKeyNameA(pipes_struct *p, struct svcctl_GetServiceKeyNameA *r)
1060 {
1061         p->rng_fault_state = True;
1062         return WERR_NOT_SUPPORTED;
1063 }
1064
1065 WERROR _svcctl_GetCurrentGroupeStateW(pipes_struct *p, struct svcctl_GetCurrentGroupeStateW *r)
1066 {
1067         p->rng_fault_state = True;
1068         return WERR_NOT_SUPPORTED;
1069 }
1070
1071 WERROR _svcctl_EnumServiceGroupW(pipes_struct *p, struct svcctl_EnumServiceGroupW *r)
1072 {
1073         p->rng_fault_state = True;
1074         return WERR_NOT_SUPPORTED;
1075 }
1076
1077 WERROR _svcctl_ChangeServiceConfig2A(pipes_struct *p, struct svcctl_ChangeServiceConfig2A *r)
1078 {
1079         p->rng_fault_state = True;
1080         return WERR_NOT_SUPPORTED;
1081 }
1082
1083 WERROR _svcctl_ChangeServiceConfig2W(pipes_struct *p, struct svcctl_ChangeServiceConfig2W *r)
1084 {
1085         p->rng_fault_state = True;
1086         return WERR_NOT_SUPPORTED;
1087 }
1088
1089 WERROR _svcctl_QueryServiceConfig2A(pipes_struct *p, struct svcctl_QueryServiceConfig2A *r)
1090 {
1091         p->rng_fault_state = True;
1092         return WERR_NOT_SUPPORTED;
1093 }
1094
1095 WERROR _svcctl_QueryServiceConfig2W(pipes_struct *p, struct svcctl_QueryServiceConfig2W *r)
1096 {
1097         p->rng_fault_state = True;
1098         return WERR_NOT_SUPPORTED;
1099 }
1100
1101 WERROR _svcctl_QueryServiceStatusEx(pipes_struct *p, struct svcctl_QueryServiceStatusEx *r)
1102 {
1103         p->rng_fault_state = True;
1104         return WERR_NOT_SUPPORTED;
1105 }
1106
1107 WERROR _EnumServicesStatusExA(pipes_struct *p, struct EnumServicesStatusExA *r)
1108 {
1109         p->rng_fault_state = True;
1110         return WERR_NOT_SUPPORTED;
1111 }
1112
1113 WERROR _EnumServicesStatusExW(pipes_struct *p, struct EnumServicesStatusExW *r)
1114 {
1115         p->rng_fault_state = True;
1116         return WERR_NOT_SUPPORTED;
1117 }
1118
1119 WERROR _svcctl_SCSendTSMessage(pipes_struct *p, struct svcctl_SCSendTSMessage *r)
1120 {
1121         p->rng_fault_state = True;
1122         return WERR_NOT_SUPPORTED;
1123 }
1124